// /usr/libexec/gcc/i686-pc-linux-gnu/3.4.4/cc1plus -fpreprocessed /var/tmp/ccache/stringTerm.tmp.peti.cryp.to.22826.ii -fPIE -fstack-protector -fstack-protector-all -quiet -dumpbase stringTerm.tmp.peti.cryp.to.22826.ii -mtune=athlon-xp -auxbase-strip /var/tmp/ccache/tmp.hash.peti.cryp.to.22826.o -O3 -fomit-frame-pointer -fforce-addr -o - -frandom-seed=0 # 1 "stringTerm.cc" # 1 "" # 1 "" # 1 "stringTerm.cc" # 28 "stringTerm.cc" # 1 "../../src/Utility/macros.hh" 1 # 33 "../../src/Utility/macros.hh" # 1 "../../config.h" 1 # 34 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 151 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 3 4 typedef int ptrdiff_t; # 213 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 3 4 typedef unsigned int size_t; # 39 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 1 3 4 # 11 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/syslimits.h" 1 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 1 3 4 # 122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 3 4 # 1 "/usr/include/limits.h" 1 3 4 # 26 "/usr/include/limits.h" 3 4 # 1 "/usr/include/features.h" 1 3 4 # 309 "/usr/include/features.h" 3 4 # 1 "/usr/include/sys/cdefs.h" 1 3 4 # 310 "/usr/include/features.h" 2 3 4 # 332 "/usr/include/features.h" 3 4 # 1 "/usr/include/gnu/stubs.h" 1 3 4 # 333 "/usr/include/features.h" 2 3 4 # 27 "/usr/include/limits.h" 2 3 4 # 144 "/usr/include/limits.h" 3 4 # 1 "/usr/include/bits/posix1_lim.h" 1 3 4 # 153 "/usr/include/bits/posix1_lim.h" 3 4 # 1 "/usr/include/bits/local_lim.h" 1 3 4 # 36 "/usr/include/bits/local_lim.h" 3 4 # 1 "/usr/include/linux/limits.h" 1 3 4 # 37 "/usr/include/bits/local_lim.h" 2 3 4 # 154 "/usr/include/bits/posix1_lim.h" 2 3 4 # 145 "/usr/include/limits.h" 2 3 4 # 1 "/usr/include/bits/posix2_lim.h" 1 3 4 # 149 "/usr/include/limits.h" 2 3 4 # 1 "/usr/include/bits/xopen_lim.h" 1 3 4 # 34 "/usr/include/bits/xopen_lim.h" 3 4 # 1 "/usr/include/bits/stdio_lim.h" 1 3 4 # 35 "/usr/include/bits/xopen_lim.h" 2 3 4 # 153 "/usr/include/limits.h" 2 3 4 # 123 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 2 3 4 # 8 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/syslimits.h" 2 3 4 # 12 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 2 3 4 # 40 "../../src/Utility/macros.hh" 2 # 1 "/usr/include/stdlib.h" 1 3 4 # 33 "/usr/include/stdlib.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 34 "/usr/include/stdlib.h" 2 3 4 extern "C" { # 1 "/usr/include/bits/waitflags.h" 1 3 4 # 43 "/usr/include/stdlib.h" 2 3 4 # 1 "/usr/include/bits/waitstatus.h" 1 3 4 # 65 "/usr/include/bits/waitstatus.h" 3 4 # 1 "/usr/include/endian.h" 1 3 4 # 37 "/usr/include/endian.h" 3 4 # 1 "/usr/include/bits/endian.h" 1 3 4 # 38 "/usr/include/endian.h" 2 3 4 # 66 "/usr/include/bits/waitstatus.h" 2 3 4 union wait { int w_status; struct { unsigned int __w_termsig:7; unsigned int __w_coredump:1; unsigned int __w_retcode:8; unsigned int:16; } __wait_terminated; struct { unsigned int __w_stopval:8; unsigned int __w_stopsig:8; unsigned int:16; } __wait_stopped; }; # 44 "/usr/include/stdlib.h" 2 3 4 # 96 "/usr/include/stdlib.h" 3 4 typedef struct { int quot; int rem; } div_t; typedef struct { long int quot; long int rem; } ldiv_t; __extension__ typedef struct { long long int quot; long long int rem; } lldiv_t; # 140 "/usr/include/stdlib.h" 3 4 extern size_t __ctype_get_mb_cur_max (void) throw (); extern double atof (__const char *__nptr) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern int atoi (__const char *__nptr) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern long int atol (__const char *__nptr) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); __extension__ extern long long int atoll (__const char *__nptr) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern double strtod (__const char *__restrict __nptr, char **__restrict __endptr) throw () __attribute__ ((__nonnull__ (1))); extern float strtof (__const char *__restrict __nptr, char **__restrict __endptr) throw () __attribute__ ((__nonnull__ (1))); extern long double strtold (__const char *__restrict __nptr, char **__restrict __endptr) throw () __attribute__ ((__nonnull__ (1))); extern long int strtol (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); extern unsigned long int strtoul (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern long long int strtoq (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern unsigned long long int strtouq (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern long long int strtoll (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern unsigned long long int strtoull (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () __attribute__ ((__nonnull__ (1))); # 235 "/usr/include/stdlib.h" 3 4 # 1 "/usr/include/xlocale.h" 1 3 4 # 28 "/usr/include/xlocale.h" 3 4 typedef struct __locale_struct { struct locale_data *__locales[13]; const unsigned short int *__ctype_b; const int *__ctype_tolower; const int *__ctype_toupper; const char *__names[13]; } *__locale_t; # 236 "/usr/include/stdlib.h" 2 3 4 extern long int strtol_l (__const char *__restrict __nptr, char **__restrict __endptr, int __base, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 4))); extern unsigned long int strtoul_l (__const char *__restrict __nptr, char **__restrict __endptr, int __base, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 4))); __extension__ extern long long int strtoll_l (__const char *__restrict __nptr, char **__restrict __endptr, int __base, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 4))); __extension__ extern unsigned long long int strtoull_l (__const char *__restrict __nptr, char **__restrict __endptr, int __base, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 4))); extern double strtod_l (__const char *__restrict __nptr, char **__restrict __endptr, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 3))); extern float strtof_l (__const char *__restrict __nptr, char **__restrict __endptr, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 3))); extern long double strtold_l (__const char *__restrict __nptr, char **__restrict __endptr, __locale_t __loc) throw () __attribute__ ((__nonnull__ (1, 3))); extern double __strtod_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __group) throw () __attribute__ ((__nonnull__ (1))); extern float __strtof_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __group) throw () __attribute__ ((__nonnull__ (1))); extern long double __strtold_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __group) throw () __attribute__ ((__nonnull__ (1))); extern long int __strtol_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __base, int __group) throw () __attribute__ ((__nonnull__ (1))); extern unsigned long int __strtoul_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __base, int __group) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern long long int __strtoll_internal (__const char *__restrict __nptr, char **__restrict __endptr, int __base, int __group) throw () __attribute__ ((__nonnull__ (1))); __extension__ extern unsigned long long int __strtoull_internal (__const char * __restrict __nptr, char **__restrict __endptr, int __base, int __group) throw () __attribute__ ((__nonnull__ (1))); # 324 "/usr/include/stdlib.h" 3 4 extern __inline double strtod (__const char *__restrict __nptr, char **__restrict __endptr) throw () { return __strtod_internal (__nptr, __endptr, 0); } extern __inline long int strtol (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtol_internal (__nptr, __endptr, __base, 0); } extern __inline unsigned long int strtoul (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtoul_internal (__nptr, __endptr, __base, 0); } extern __inline float strtof (__const char *__restrict __nptr, char **__restrict __endptr) throw () { return __strtof_internal (__nptr, __endptr, 0); } extern __inline long double strtold (__const char *__restrict __nptr, char **__restrict __endptr) throw () { return __strtold_internal (__nptr, __endptr, 0); } __extension__ extern __inline long long int strtoq (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtoll_internal (__nptr, __endptr, __base, 0); } __extension__ extern __inline unsigned long long int strtouq (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtoull_internal (__nptr, __endptr, __base, 0); } __extension__ extern __inline long long int strtoll (__const char *__restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtoll_internal (__nptr, __endptr, __base, 0); } __extension__ extern __inline unsigned long long int strtoull (__const char * __restrict __nptr, char **__restrict __endptr, int __base) throw () { return __strtoull_internal (__nptr, __endptr, __base, 0); } extern __inline double atof (__const char *__nptr) throw () { return strtod (__nptr, (char **) __null); } extern __inline int atoi (__const char *__nptr) throw () { return (int) strtol (__nptr, (char **) __null, 10); } extern __inline long int atol (__const char *__nptr) throw () { return strtol (__nptr, (char **) __null, 10); } __extension__ extern __inline long long int atoll (__const char *__nptr) throw () { return strtoll (__nptr, (char **) __null, 10); } # 424 "/usr/include/stdlib.h" 3 4 extern char *l64a (long int __n) throw (); extern long int a64l (__const char *__s) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); # 1 "/usr/include/sys/types.h" 1 3 4 # 29 "/usr/include/sys/types.h" 3 4 extern "C" { # 1 "/usr/include/bits/types.h" 1 3 4 # 28 "/usr/include/bits/types.h" 3 4 # 1 "/usr/include/bits/wordsize.h" 1 3 4 # 29 "/usr/include/bits/types.h" 2 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 32 "/usr/include/bits/types.h" 2 3 4 typedef unsigned char __u_char; typedef unsigned short int __u_short; typedef unsigned int __u_int; typedef unsigned long int __u_long; typedef signed char __int8_t; typedef unsigned char __uint8_t; typedef signed short int __int16_t; typedef unsigned short int __uint16_t; typedef signed int __int32_t; typedef unsigned int __uint32_t; __extension__ typedef signed long long int __int64_t; __extension__ typedef unsigned long long int __uint64_t; __extension__ typedef long long int __quad_t; __extension__ typedef unsigned long long int __u_quad_t; # 129 "/usr/include/bits/types.h" 3 4 # 1 "/usr/include/bits/typesizes.h" 1 3 4 # 130 "/usr/include/bits/types.h" 2 3 4 __extension__ typedef __u_quad_t __dev_t; __extension__ typedef unsigned int __uid_t; __extension__ typedef unsigned int __gid_t; __extension__ typedef unsigned long int __ino_t; __extension__ typedef __u_quad_t __ino64_t; __extension__ typedef unsigned int __mode_t; __extension__ typedef unsigned int __nlink_t; __extension__ typedef long int __off_t; __extension__ typedef __quad_t __off64_t; __extension__ typedef int __pid_t; __extension__ typedef struct { int __val[2]; } __fsid_t; __extension__ typedef long int __clock_t; __extension__ typedef unsigned long int __rlim_t; __extension__ typedef __u_quad_t __rlim64_t; __extension__ typedef unsigned int __id_t; __extension__ typedef long int __time_t; __extension__ typedef unsigned int __useconds_t; __extension__ typedef long int __suseconds_t; __extension__ typedef int __daddr_t; __extension__ typedef long int __swblk_t; __extension__ typedef int __key_t; __extension__ typedef int __clockid_t; __extension__ typedef void * __timer_t; __extension__ typedef long int __blksize_t; __extension__ typedef long int __blkcnt_t; __extension__ typedef __quad_t __blkcnt64_t; __extension__ typedef unsigned long int __fsblkcnt_t; __extension__ typedef __u_quad_t __fsblkcnt64_t; __extension__ typedef unsigned long int __fsfilcnt_t; __extension__ typedef __u_quad_t __fsfilcnt64_t; __extension__ typedef int __ssize_t; typedef __off64_t __loff_t; typedef __quad_t *__qaddr_t; typedef char *__caddr_t; __extension__ typedef int __intptr_t; __extension__ typedef unsigned int __socklen_t; # 32 "/usr/include/sys/types.h" 2 3 4 typedef __u_char u_char; typedef __u_short u_short; typedef __u_int u_int; typedef __u_long u_long; typedef __quad_t quad_t; typedef __u_quad_t u_quad_t; typedef __fsid_t fsid_t; typedef __loff_t loff_t; typedef __ino_t ino_t; typedef __ino64_t ino64_t; typedef __dev_t dev_t; typedef __gid_t gid_t; typedef __mode_t mode_t; typedef __nlink_t nlink_t; typedef __uid_t uid_t; typedef __off_t off_t; typedef __off64_t off64_t; typedef __pid_t pid_t; typedef __id_t id_t; typedef __ssize_t ssize_t; typedef __daddr_t daddr_t; typedef __caddr_t caddr_t; typedef __key_t key_t; # 133 "/usr/include/sys/types.h" 3 4 # 1 "/usr/include/time.h" 1 3 4 # 58 "/usr/include/time.h" 3 4 typedef __clock_t clock_t; # 74 "/usr/include/time.h" 3 4 typedef __time_t time_t; # 92 "/usr/include/time.h" 3 4 typedef __clockid_t clockid_t; # 104 "/usr/include/time.h" 3 4 typedef __timer_t timer_t; # 134 "/usr/include/sys/types.h" 2 3 4 typedef __useconds_t useconds_t; typedef __suseconds_t suseconds_t; # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 148 "/usr/include/sys/types.h" 2 3 4 typedef unsigned long int ulong; typedef unsigned short int ushort; typedef unsigned int uint; # 191 "/usr/include/sys/types.h" 3 4 typedef int int8_t __attribute__ ((__mode__ (__QI__))); typedef int int16_t __attribute__ ((__mode__ (__HI__))); typedef int int32_t __attribute__ ((__mode__ (__SI__))); typedef int int64_t __attribute__ ((__mode__ (__DI__))); typedef unsigned int u_int8_t __attribute__ ((__mode__ (__QI__))); typedef unsigned int u_int16_t __attribute__ ((__mode__ (__HI__))); typedef unsigned int u_int32_t __attribute__ ((__mode__ (__SI__))); typedef unsigned int u_int64_t __attribute__ ((__mode__ (__DI__))); typedef int register_t __attribute__ ((__mode__ (__word__))); # 216 "/usr/include/sys/types.h" 3 4 # 1 "/usr/include/sys/select.h" 1 3 4 # 31 "/usr/include/sys/select.h" 3 4 # 1 "/usr/include/bits/select.h" 1 3 4 # 32 "/usr/include/sys/select.h" 2 3 4 # 1 "/usr/include/bits/sigset.h" 1 3 4 # 23 "/usr/include/bits/sigset.h" 3 4 typedef int __sig_atomic_t; typedef struct { unsigned long int __val[(1024 / (8 * sizeof (unsigned long int)))]; } __sigset_t; # 35 "/usr/include/sys/select.h" 2 3 4 typedef __sigset_t sigset_t; # 1 "/usr/include/time.h" 1 3 4 # 118 "/usr/include/time.h" 3 4 struct timespec { __time_t tv_sec; long int tv_nsec; }; # 45 "/usr/include/sys/select.h" 2 3 4 # 1 "/usr/include/bits/time.h" 1 3 4 # 69 "/usr/include/bits/time.h" 3 4 struct timeval { __time_t tv_sec; __suseconds_t tv_usec; }; # 47 "/usr/include/sys/select.h" 2 3 4 # 55 "/usr/include/sys/select.h" 3 4 typedef long int __fd_mask; # 67 "/usr/include/sys/select.h" 3 4 typedef struct { __fd_mask fds_bits[1024 / (8 * sizeof (__fd_mask))]; } fd_set; typedef __fd_mask fd_mask; # 99 "/usr/include/sys/select.h" 3 4 extern "C" { # 109 "/usr/include/sys/select.h" 3 4 extern int select (int __nfds, fd_set *__restrict __readfds, fd_set *__restrict __writefds, fd_set *__restrict __exceptfds, struct timeval *__restrict __timeout); # 121 "/usr/include/sys/select.h" 3 4 extern int pselect (int __nfds, fd_set *__restrict __readfds, fd_set *__restrict __writefds, fd_set *__restrict __exceptfds, const struct timespec *__restrict __timeout, const __sigset_t *__restrict __sigmask); } # 217 "/usr/include/sys/types.h" 2 3 4 # 1 "/usr/include/sys/sysmacros.h" 1 3 4 # 29 "/usr/include/sys/sysmacros.h" 3 4 __extension__ extern __inline unsigned int gnu_dev_major (unsigned long long int __dev) throw (); __extension__ extern __inline unsigned int gnu_dev_minor (unsigned long long int __dev) throw (); __extension__ extern __inline unsigned long long int gnu_dev_makedev (unsigned int __major, unsigned int __minor) throw (); __extension__ extern __inline unsigned int gnu_dev_major (unsigned long long int __dev) throw () { return ((__dev >> 8) & 0xfff) | ((unsigned int) (__dev >> 32) & ~0xfff); } __extension__ extern __inline unsigned int gnu_dev_minor (unsigned long long int __dev) throw () { return (__dev & 0xff) | ((unsigned int) (__dev >> 12) & ~0xff); } __extension__ extern __inline unsigned long long int gnu_dev_makedev (unsigned int __major, unsigned int __minor) throw () { return ((__minor & 0xff) | ((__major & 0xfff) << 8) | (((unsigned long long int) (__minor & ~0xff)) << 12) | (((unsigned long long int) (__major & ~0xfff)) << 32)); } # 220 "/usr/include/sys/types.h" 2 3 4 typedef __blksize_t blksize_t; typedef __blkcnt_t blkcnt_t; typedef __fsblkcnt_t fsblkcnt_t; typedef __fsfilcnt_t fsfilcnt_t; # 258 "/usr/include/sys/types.h" 3 4 typedef __blkcnt64_t blkcnt64_t; typedef __fsblkcnt64_t fsblkcnt64_t; typedef __fsfilcnt64_t fsfilcnt64_t; # 1 "/usr/include/bits/pthreadtypes.h" 1 3 4 # 36 "/usr/include/bits/pthreadtypes.h" 3 4 typedef unsigned long int pthread_t; typedef union { char __size[36]; long int __align; } pthread_attr_t; typedef union { struct { int __lock; unsigned int __count; int __owner; int __kind; unsigned int __nusers; int __spins; } __data; char __size[24]; long int __align; } pthread_mutex_t; typedef union { char __size[4]; long int __align; } pthread_mutexattr_t; typedef union { struct { int __lock; unsigned int __futex; __extension__ unsigned long long int __total_seq; __extension__ unsigned long long int __wakeup_seq; __extension__ unsigned long long int __woken_seq; void *__mutex; unsigned int __nwaiters; unsigned int __broadcast_seq; } __data; char __size[48]; __extension__ long long int __align; } pthread_cond_t; typedef union { char __size[4]; long int __align; } pthread_condattr_t; typedef unsigned int pthread_key_t; typedef int pthread_once_t; typedef union { struct { int __lock; unsigned int __nr_readers; unsigned int __readers_wakeup; unsigned int __writer_wakeup; unsigned int __nr_readers_queued; unsigned int __nr_writers_queued; unsigned int __flags; int __writer; } __data; char __size[32]; long int __align; } pthread_rwlock_t; typedef union { char __size[8]; long int __align; } pthread_rwlockattr_t; typedef volatile int pthread_spinlock_t; typedef union { char __size[20]; long int __align; } pthread_barrier_t; typedef union { char __size[4]; int __align; } pthread_barrierattr_t; # 267 "/usr/include/sys/types.h" 2 3 4 } # 434 "/usr/include/stdlib.h" 2 3 4 extern long int random (void) throw (); extern void srandom (unsigned int __seed) throw (); extern char *initstate (unsigned int __seed, char *__statebuf, size_t __statelen) throw () __attribute__ ((__nonnull__ (2))); extern char *setstate (char *__statebuf) throw () __attribute__ ((__nonnull__ (1))); struct random_data { int32_t *fptr; int32_t *rptr; int32_t *state; int rand_type; int rand_deg; int rand_sep; int32_t *end_ptr; }; extern int random_r (struct random_data *__restrict __buf, int32_t *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int srandom_r (unsigned int __seed, struct random_data *__buf) throw () __attribute__ ((__nonnull__ (2))); extern int initstate_r (unsigned int __seed, char *__restrict __statebuf, size_t __statelen, struct random_data *__restrict __buf) throw () __attribute__ ((__nonnull__ (2, 4))); extern int setstate_r (char *__restrict __statebuf, struct random_data *__restrict __buf) throw () __attribute__ ((__nonnull__ (1, 2))); extern int rand (void) throw (); extern void srand (unsigned int __seed) throw (); extern int rand_r (unsigned int *__seed) throw (); extern double drand48 (void) throw (); extern double erand48 (unsigned short int __xsubi[3]) throw () __attribute__ ((__nonnull__ (1))); extern long int lrand48 (void) throw (); extern long int nrand48 (unsigned short int __xsubi[3]) throw () __attribute__ ((__nonnull__ (1))); extern long int mrand48 (void) throw (); extern long int jrand48 (unsigned short int __xsubi[3]) throw () __attribute__ ((__nonnull__ (1))); extern void srand48 (long int __seedval) throw (); extern unsigned short int *seed48 (unsigned short int __seed16v[3]) throw () __attribute__ ((__nonnull__ (1))); extern void lcong48 (unsigned short int __param[7]) throw () __attribute__ ((__nonnull__ (1))); struct drand48_data { unsigned short int __x[3]; unsigned short int __old_x[3]; unsigned short int __c; unsigned short int __init; unsigned long long int __a; }; extern int drand48_r (struct drand48_data *__restrict __buffer, double *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int erand48_r (unsigned short int __xsubi[3], struct drand48_data *__restrict __buffer, double *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int lrand48_r (struct drand48_data *__restrict __buffer, long int *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int nrand48_r (unsigned short int __xsubi[3], struct drand48_data *__restrict __buffer, long int *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int mrand48_r (struct drand48_data *__restrict __buffer, long int *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int jrand48_r (unsigned short int __xsubi[3], struct drand48_data *__restrict __buffer, long int *__restrict __result) throw () __attribute__ ((__nonnull__ (1, 2))); extern int srand48_r (long int __seedval, struct drand48_data *__buffer) throw () __attribute__ ((__nonnull__ (2))); extern int seed48_r (unsigned short int __seed16v[3], struct drand48_data *__buffer) throw () __attribute__ ((__nonnull__ (1, 2))); extern int lcong48_r (unsigned short int __param[7], struct drand48_data *__buffer) throw () __attribute__ ((__nonnull__ (1, 2))); # 584 "/usr/include/stdlib.h" 3 4 extern void *malloc (size_t __size) throw () __attribute__ ((__malloc__)); extern void *calloc (size_t __nmemb, size_t __size) throw () __attribute__ ((__malloc__)); extern void *realloc (void *__ptr, size_t __size) throw () __attribute__ ((__malloc__)); extern void free (void *__ptr) throw (); extern void cfree (void *__ptr) throw (); # 1 "/usr/include/alloca.h" 1 3 4 # 25 "/usr/include/alloca.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 26 "/usr/include/alloca.h" 2 3 4 extern "C" { extern void *alloca (size_t __size) throw (); } # 607 "/usr/include/stdlib.h" 2 3 4 extern void *valloc (size_t __size) throw () __attribute__ ((__malloc__)); extern int posix_memalign (void **__memptr, size_t __alignment, size_t __size) throw () __attribute__ ((__malloc__)) __attribute__ ((__nonnull__ (1))); extern void abort (void) throw () __attribute__ ((__noreturn__)); extern int atexit (void (*__func) (void)) throw () __attribute__ ((__nonnull__ (1))); extern int on_exit (void (*__func) (int __status, void *__arg), void *__arg) throw () __attribute__ ((__nonnull__ (1))); extern void exit (int __status) throw () __attribute__ ((__noreturn__)); extern void _Exit (int __status) throw () __attribute__ ((__noreturn__)); extern char *getenv (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); extern char *__secure_getenv (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); extern int putenv (char *__string) throw () __attribute__ ((__nonnull__ (1))); extern int setenv (__const char *__name, __const char *__value, int __replace) throw () __attribute__ ((__nonnull__ (2))); extern int unsetenv (__const char *__name) throw (); extern int clearenv (void) throw (); # 691 "/usr/include/stdlib.h" 3 4 extern char *mktemp (char *__template) throw () __attribute__ ((__nonnull__ (1))); # 702 "/usr/include/stdlib.h" 3 4 extern int mkstemp (char *__template) __attribute__ ((__nonnull__ (1))); # 711 "/usr/include/stdlib.h" 3 4 extern int mkstemp64 (char *__template) __attribute__ ((__nonnull__ (1))); # 721 "/usr/include/stdlib.h" 3 4 extern char *mkdtemp (char *__template) throw () __attribute__ ((__nonnull__ (1))); # 730 "/usr/include/stdlib.h" 3 4 extern int system (__const char *__command); extern char *canonicalize_file_name (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); # 749 "/usr/include/stdlib.h" 3 4 extern char *realpath (__const char *__restrict __name, char *__restrict __resolved) throw (); typedef int (*__compar_fn_t) (__const void *, __const void *); typedef __compar_fn_t comparison_fn_t; extern void *bsearch (__const void *__key, __const void *__base, size_t __nmemb, size_t __size, __compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 2, 5))); extern void qsort (void *__base, size_t __nmemb, size_t __size, __compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 4))); extern int abs (int __x) throw () __attribute__ ((__const__)); extern long int labs (long int __x) throw () __attribute__ ((__const__)); __extension__ extern long long int llabs (long long int __x) throw () __attribute__ ((__const__)); extern div_t div (int __numer, int __denom) throw () __attribute__ ((__const__)); extern ldiv_t ldiv (long int __numer, long int __denom) throw () __attribute__ ((__const__)); __extension__ extern lldiv_t lldiv (long long int __numer, long long int __denom) throw () __attribute__ ((__const__)); # 814 "/usr/include/stdlib.h" 3 4 extern char *ecvt (double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign) throw () __attribute__ ((__nonnull__ (3, 4))); extern char *fcvt (double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign) throw () __attribute__ ((__nonnull__ (3, 4))); extern char *gcvt (double __value, int __ndigit, char *__buf) throw () __attribute__ ((__nonnull__ (3))); extern char *qecvt (long double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign) throw () __attribute__ ((__nonnull__ (3, 4))); extern char *qfcvt (long double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign) throw () __attribute__ ((__nonnull__ (3, 4))); extern char *qgcvt (long double __value, int __ndigit, char *__buf) throw () __attribute__ ((__nonnull__ (3))); extern int ecvt_r (double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign, char *__restrict __buf, size_t __len) throw () __attribute__ ((__nonnull__ (3, 4, 5))); extern int fcvt_r (double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign, char *__restrict __buf, size_t __len) throw () __attribute__ ((__nonnull__ (3, 4, 5))); extern int qecvt_r (long double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign, char *__restrict __buf, size_t __len) throw () __attribute__ ((__nonnull__ (3, 4, 5))); extern int qfcvt_r (long double __value, int __ndigit, int *__restrict __decpt, int *__restrict __sign, char *__restrict __buf, size_t __len) throw () __attribute__ ((__nonnull__ (3, 4, 5))); extern int mblen (__const char *__s, size_t __n) throw (); extern int mbtowc (wchar_t *__restrict __pwc, __const char *__restrict __s, size_t __n) throw (); extern int wctomb (char *__s, wchar_t __wchar) throw (); extern size_t mbstowcs (wchar_t *__restrict __pwcs, __const char *__restrict __s, size_t __n) throw (); extern size_t wcstombs (char *__restrict __s, __const wchar_t *__restrict __pwcs, size_t __n) throw (); # 891 "/usr/include/stdlib.h" 3 4 extern int rpmatch (__const char *__response) throw () __attribute__ ((__nonnull__ (1))); # 902 "/usr/include/stdlib.h" 3 4 extern int getsubopt (char **__restrict __optionp, char *__const *__restrict __tokens, char **__restrict __valuep) throw () __attribute__ ((__nonnull__ (1, 2, 3))); extern void setkey (__const char *__key) throw () __attribute__ ((__nonnull__ (1))); extern int posix_openpt (int __oflag); extern int grantpt (int __fd) throw (); extern int unlockpt (int __fd) throw (); extern char *ptsname (int __fd) throw (); extern int ptsname_r (int __fd, char *__buf, size_t __buflen) throw () __attribute__ ((__nonnull__ (2))); extern int getpt (void); extern int getloadavg (double __loadavg[], int __nelem) throw () __attribute__ ((__nonnull__ (1))); } # 41 "../../src/Utility/macros.hh" 2 # 1 "/usr/include/stdio.h" 1 3 4 # 30 "/usr/include/stdio.h" 3 4 extern "C" { # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 35 "/usr/include/stdio.h" 2 3 4 # 44 "/usr/include/stdio.h" 3 4 typedef struct _IO_FILE FILE; # 62 "/usr/include/stdio.h" 3 4 typedef struct _IO_FILE __FILE; # 72 "/usr/include/stdio.h" 3 4 # 1 "/usr/include/libio.h" 1 3 4 # 32 "/usr/include/libio.h" 3 4 # 1 "/usr/include/_G_config.h" 1 3 4 # 14 "/usr/include/_G_config.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 354 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 3 4 typedef unsigned int wint_t; # 15 "/usr/include/_G_config.h" 2 3 4 # 24 "/usr/include/_G_config.h" 3 4 # 1 "/usr/include/wchar.h" 1 3 4 # 48 "/usr/include/wchar.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 49 "/usr/include/wchar.h" 2 3 4 # 1 "/usr/include/bits/wchar.h" 1 3 4 # 51 "/usr/include/wchar.h" 2 3 4 # 76 "/usr/include/wchar.h" 3 4 typedef struct { int __count; union { wint_t __wch; char __wchb[4]; } __value; } __mbstate_t; # 25 "/usr/include/_G_config.h" 2 3 4 typedef struct { __off_t __pos; __mbstate_t __state; } _G_fpos_t; typedef struct { __off64_t __pos; __mbstate_t __state; } _G_fpos64_t; # 44 "/usr/include/_G_config.h" 3 4 # 1 "/usr/include/gconv.h" 1 3 4 # 28 "/usr/include/gconv.h" 3 4 # 1 "/usr/include/wchar.h" 1 3 4 # 48 "/usr/include/wchar.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 49 "/usr/include/wchar.h" 2 3 4 # 29 "/usr/include/gconv.h" 2 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 32 "/usr/include/gconv.h" 2 3 4 enum { __GCONV_OK = 0, __GCONV_NOCONV, __GCONV_NODB, __GCONV_NOMEM, __GCONV_EMPTY_INPUT, __GCONV_FULL_OUTPUT, __GCONV_ILLEGAL_INPUT, __GCONV_INCOMPLETE_INPUT, __GCONV_ILLEGAL_DESCRIPTOR, __GCONV_INTERNAL_ERROR }; enum { __GCONV_IS_LAST = 0x0001, __GCONV_IGNORE_ERRORS = 0x0002 }; struct __gconv_step; struct __gconv_step_data; struct __gconv_loaded_object; struct __gconv_trans_data; typedef int (*__gconv_fct) (struct __gconv_step *, struct __gconv_step_data *, __const unsigned char **, __const unsigned char *, unsigned char **, size_t *, int, int); typedef wint_t (*__gconv_btowc_fct) (struct __gconv_step *, unsigned char); typedef int (*__gconv_init_fct) (struct __gconv_step *); typedef void (*__gconv_end_fct) (struct __gconv_step *); typedef int (*__gconv_trans_fct) (struct __gconv_step *, struct __gconv_step_data *, void *, __const unsigned char *, __const unsigned char **, __const unsigned char *, unsigned char **, size_t *); typedef int (*__gconv_trans_context_fct) (void *, __const unsigned char *, __const unsigned char *, unsigned char *, unsigned char *); typedef int (*__gconv_trans_query_fct) (__const char *, __const char ***, size_t *); typedef int (*__gconv_trans_init_fct) (void **, const char *); typedef void (*__gconv_trans_end_fct) (void *); struct __gconv_trans_data { __gconv_trans_fct __trans_fct; __gconv_trans_context_fct __trans_context_fct; __gconv_trans_end_fct __trans_end_fct; void *__data; struct __gconv_trans_data *__next; }; struct __gconv_step { struct __gconv_loaded_object *__shlib_handle; __const char *__modname; int __counter; char *__from_name; char *__to_name; __gconv_fct __fct; __gconv_btowc_fct __btowc_fct; __gconv_init_fct __init_fct; __gconv_end_fct __end_fct; int __min_needed_from; int __max_needed_from; int __min_needed_to; int __max_needed_to; int __stateful; void *__data; }; struct __gconv_step_data { unsigned char *__outbuf; unsigned char *__outbufend; int __flags; int __invocation_counter; int __internal_use; __mbstate_t *__statep; __mbstate_t __state; struct __gconv_trans_data *__trans; }; typedef struct __gconv_info { size_t __nsteps; struct __gconv_step *__steps; __extension__ struct __gconv_step_data __data []; } *__gconv_t; # 45 "/usr/include/_G_config.h" 2 3 4 typedef union { struct __gconv_info __cd; struct { struct __gconv_info __cd; struct __gconv_step_data __data; } __combined; } _G_iconv_t; typedef int _G_int16_t __attribute__ ((__mode__ (__HI__))); typedef int _G_int32_t __attribute__ ((__mode__ (__SI__))); typedef unsigned int _G_uint16_t __attribute__ ((__mode__ (__HI__))); typedef unsigned int _G_uint32_t __attribute__ ((__mode__ (__SI__))); # 33 "/usr/include/libio.h" 2 3 4 # 53 "/usr/include/libio.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stdarg.h" 1 3 4 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stdarg.h" 3 4 typedef __builtin_va_list __gnuc_va_list; # 54 "/usr/include/libio.h" 2 3 4 # 166 "/usr/include/libio.h" 3 4 struct _IO_jump_t; struct _IO_FILE; # 176 "/usr/include/libio.h" 3 4 typedef void _IO_lock_t; struct _IO_marker { struct _IO_marker *_next; struct _IO_FILE *_sbuf; int _pos; # 199 "/usr/include/libio.h" 3 4 }; enum __codecvt_result { __codecvt_ok, __codecvt_partial, __codecvt_error, __codecvt_noconv }; # 267 "/usr/include/libio.h" 3 4 struct _IO_FILE { int _flags; char* _IO_read_ptr; char* _IO_read_end; char* _IO_read_base; char* _IO_write_base; char* _IO_write_ptr; char* _IO_write_end; char* _IO_buf_base; char* _IO_buf_end; char *_IO_save_base; char *_IO_backup_base; char *_IO_save_end; struct _IO_marker *_markers; struct _IO_FILE *_chain; int _fileno; int _flags2; __off_t _old_offset; unsigned short _cur_column; signed char _vtable_offset; char _shortbuf[1]; _IO_lock_t *_lock; # 315 "/usr/include/libio.h" 3 4 __off64_t _offset; void *__pad1; void *__pad2; int _mode; char _unused2[15 * sizeof (int) - 2 * sizeof (void *)]; }; struct _IO_FILE_plus; extern struct _IO_FILE_plus _IO_2_1_stdin_; extern struct _IO_FILE_plus _IO_2_1_stdout_; extern struct _IO_FILE_plus _IO_2_1_stderr_; # 354 "/usr/include/libio.h" 3 4 typedef __ssize_t __io_read_fn (void *__cookie, char *__buf, size_t __nbytes); typedef __ssize_t __io_write_fn (void *__cookie, __const char *__buf, size_t __n); typedef int __io_seek_fn (void *__cookie, __off64_t *__pos, int __w); typedef int __io_close_fn (void *__cookie); typedef __io_read_fn cookie_read_function_t; typedef __io_write_fn cookie_write_function_t; typedef __io_seek_fn cookie_seek_function_t; typedef __io_close_fn cookie_close_function_t; typedef struct { __io_read_fn *read; __io_write_fn *write; __io_seek_fn *seek; __io_close_fn *close; } _IO_cookie_io_functions_t; typedef _IO_cookie_io_functions_t cookie_io_functions_t; struct _IO_cookie_file; extern void _IO_cookie_init (struct _IO_cookie_file *__cfile, int __read_write, void *__cookie, _IO_cookie_io_functions_t __fns); extern "C" { extern int __underflow (_IO_FILE *) throw (); extern int __uflow (_IO_FILE *) throw (); extern int __overflow (_IO_FILE *, int) throw (); extern wint_t __wunderflow (_IO_FILE *) throw (); extern wint_t __wuflow (_IO_FILE *) throw (); extern wint_t __woverflow (_IO_FILE *, wint_t) throw (); # 444 "/usr/include/libio.h" 3 4 extern int _IO_getc (_IO_FILE *__fp) throw (); extern int _IO_putc (int __c, _IO_FILE *__fp) throw (); extern int _IO_feof (_IO_FILE *__fp) throw (); extern int _IO_ferror (_IO_FILE *__fp) throw (); extern int _IO_peekc_locked (_IO_FILE *__fp) throw (); extern void _IO_flockfile (_IO_FILE *) throw (); extern void _IO_funlockfile (_IO_FILE *) throw (); extern int _IO_ftrylockfile (_IO_FILE *) throw (); # 474 "/usr/include/libio.h" 3 4 extern int _IO_vfscanf (_IO_FILE * __restrict, const char * __restrict, __gnuc_va_list, int *__restrict) throw (); extern int _IO_vfprintf (_IO_FILE *__restrict, const char *__restrict, __gnuc_va_list) throw (); extern __ssize_t _IO_padn (_IO_FILE *, int, __ssize_t) throw (); extern size_t _IO_sgetn (_IO_FILE *, void *, size_t) throw (); extern __off64_t _IO_seekoff (_IO_FILE *, __off64_t, int, int) throw (); extern __off64_t _IO_seekpos (_IO_FILE *, __off64_t, int) throw (); extern void _IO_free_backup_area (_IO_FILE *) throw (); # 532 "/usr/include/libio.h" 3 4 } # 73 "/usr/include/stdio.h" 2 3 4 typedef __gnuc_va_list va_list; # 86 "/usr/include/stdio.h" 3 4 typedef _G_fpos_t fpos_t; typedef _G_fpos64_t fpos64_t; # 138 "/usr/include/stdio.h" 3 4 # 1 "/usr/include/bits/stdio_lim.h" 1 3 4 # 139 "/usr/include/stdio.h" 2 3 4 extern struct _IO_FILE *stdin; extern struct _IO_FILE *stdout; extern struct _IO_FILE *stderr; extern int remove (__const char *__filename) throw (); extern int rename (__const char *__old, __const char *__new) throw (); # 164 "/usr/include/stdio.h" 3 4 extern FILE *tmpfile (void); # 174 "/usr/include/stdio.h" 3 4 extern FILE *tmpfile64 (void); extern char *tmpnam (char *__s) throw (); extern char *tmpnam_r (char *__s) throw (); # 196 "/usr/include/stdio.h" 3 4 extern char *tempnam (__const char *__dir, __const char *__pfx) throw () __attribute__ ((__malloc__)); # 206 "/usr/include/stdio.h" 3 4 extern int fclose (FILE *__stream); extern int fflush (FILE *__stream); # 221 "/usr/include/stdio.h" 3 4 extern int fflush_unlocked (FILE *__stream); # 231 "/usr/include/stdio.h" 3 4 extern int fcloseall (void); # 241 "/usr/include/stdio.h" 3 4 extern FILE *fopen (__const char *__restrict __filename, __const char *__restrict __modes); extern FILE *freopen (__const char *__restrict __filename, __const char *__restrict __modes, FILE *__restrict __stream); # 262 "/usr/include/stdio.h" 3 4 extern FILE *fopen64 (__const char *__restrict __filename, __const char *__restrict __modes); extern FILE *freopen64 (__const char *__restrict __filename, __const char *__restrict __modes, FILE *__restrict __stream); extern FILE *fdopen (int __fd, __const char *__modes) throw (); extern FILE *fopencookie (void *__restrict __magic_cookie, __const char *__restrict __modes, _IO_cookie_io_functions_t __io_funcs) throw (); extern FILE *fmemopen (void *__s, size_t __len, __const char *__modes) throw (); extern FILE *open_memstream (char **__restrict __bufloc, size_t *__restrict __sizeloc) throw (); extern void setbuf (FILE *__restrict __stream, char *__restrict __buf) throw (); extern int setvbuf (FILE *__restrict __stream, char *__restrict __buf, int __modes, size_t __n) throw (); extern void setbuffer (FILE *__restrict __stream, char *__restrict __buf, size_t __size) throw (); extern void setlinebuf (FILE *__stream) throw (); # 321 "/usr/include/stdio.h" 3 4 extern int fprintf (FILE *__restrict __stream, __const char *__restrict __format, ...); extern int printf (__const char *__restrict __format, ...); extern int sprintf (char *__restrict __s, __const char *__restrict __format, ...) throw (); extern int vfprintf (FILE *__restrict __s, __const char *__restrict __format, __gnuc_va_list __arg); extern int vprintf (__const char *__restrict __format, __gnuc_va_list __arg); extern int vsprintf (char *__restrict __s, __const char *__restrict __format, __gnuc_va_list __arg) throw (); extern int snprintf (char *__restrict __s, size_t __maxlen, __const char *__restrict __format, ...) throw () __attribute__ ((__format__ (__printf__, 3, 4))); extern int vsnprintf (char *__restrict __s, size_t __maxlen, __const char *__restrict __format, __gnuc_va_list __arg) throw () __attribute__ ((__format__ (__printf__, 3, 0))); extern int vasprintf (char **__restrict __ptr, __const char *__restrict __f, __gnuc_va_list __arg) throw () __attribute__ ((__format__ (__printf__, 2, 0))); extern int __asprintf (char **__restrict __ptr, __const char *__restrict __fmt, ...) throw () __attribute__ ((__format__ (__printf__, 2, 3))); extern int asprintf (char **__restrict __ptr, __const char *__restrict __fmt, ...) throw () __attribute__ ((__format__ (__printf__, 2, 3))); extern int vdprintf (int __fd, __const char *__restrict __fmt, __gnuc_va_list __arg) __attribute__ ((__format__ (__printf__, 2, 0))); extern int dprintf (int __fd, __const char *__restrict __fmt, ...) __attribute__ ((__format__ (__printf__, 2, 3))); # 393 "/usr/include/stdio.h" 3 4 extern int fscanf (FILE *__restrict __stream, __const char *__restrict __format, ...); extern int scanf (__const char *__restrict __format, ...); extern int sscanf (__const char *__restrict __s, __const char *__restrict __format, ...) throw (); # 411 "/usr/include/stdio.h" 3 4 extern int vfscanf (FILE *__restrict __s, __const char *__restrict __format, __gnuc_va_list __arg) __attribute__ ((__format__ (__scanf__, 2, 0))); extern int vscanf (__const char *__restrict __format, __gnuc_va_list __arg) __attribute__ ((__format__ (__scanf__, 1, 0))); extern int vsscanf (__const char *__restrict __s, __const char *__restrict __format, __gnuc_va_list __arg) throw () __attribute__ ((__format__ (__scanf__, 2, 0))); # 435 "/usr/include/stdio.h" 3 4 extern int fgetc (FILE *__stream); extern int getc (FILE *__stream); extern int getchar (void); # 454 "/usr/include/stdio.h" 3 4 extern int getc_unlocked (FILE *__stream); extern int getchar_unlocked (void); # 465 "/usr/include/stdio.h" 3 4 extern int fgetc_unlocked (FILE *__stream); # 477 "/usr/include/stdio.h" 3 4 extern int fputc (int __c, FILE *__stream); extern int putc (int __c, FILE *__stream); extern int putchar (int __c); # 498 "/usr/include/stdio.h" 3 4 extern int fputc_unlocked (int __c, FILE *__stream); extern int putc_unlocked (int __c, FILE *__stream); extern int putchar_unlocked (int __c); extern int getw (FILE *__stream); extern int putw (int __w, FILE *__stream); # 526 "/usr/include/stdio.h" 3 4 extern char *fgets (char *__restrict __s, int __n, FILE *__restrict __stream); extern char *gets (char *__s); # 543 "/usr/include/stdio.h" 3 4 extern char *fgets_unlocked (char *__restrict __s, int __n, FILE *__restrict __stream); # 559 "/usr/include/stdio.h" 3 4 extern __ssize_t __getdelim (char **__restrict __lineptr, size_t *__restrict __n, int __delimiter, FILE *__restrict __stream); extern __ssize_t getdelim (char **__restrict __lineptr, size_t *__restrict __n, int __delimiter, FILE *__restrict __stream); extern __ssize_t getline (char **__restrict __lineptr, size_t *__restrict __n, FILE *__restrict __stream); # 583 "/usr/include/stdio.h" 3 4 extern int fputs (__const char *__restrict __s, FILE *__restrict __stream); extern int puts (__const char *__s); extern int ungetc (int __c, FILE *__stream); extern size_t fread (void *__restrict __ptr, size_t __size, size_t __n, FILE *__restrict __stream); extern size_t fwrite (__const void *__restrict __ptr, size_t __size, size_t __n, FILE *__restrict __s); # 620 "/usr/include/stdio.h" 3 4 extern int fputs_unlocked (__const char *__restrict __s, FILE *__restrict __stream); # 631 "/usr/include/stdio.h" 3 4 extern size_t fread_unlocked (void *__restrict __ptr, size_t __size, size_t __n, FILE *__restrict __stream); extern size_t fwrite_unlocked (__const void *__restrict __ptr, size_t __size, size_t __n, FILE *__restrict __stream); # 643 "/usr/include/stdio.h" 3 4 extern int fseek (FILE *__stream, long int __off, int __whence); extern long int ftell (FILE *__stream); extern void rewind (FILE *__stream); # 667 "/usr/include/stdio.h" 3 4 extern int fseeko (FILE *__stream, __off_t __off, int __whence); extern __off_t ftello (FILE *__stream); # 686 "/usr/include/stdio.h" 3 4 extern int fgetpos (FILE *__restrict __stream, fpos_t *__restrict __pos); extern int fsetpos (FILE *__stream, __const fpos_t *__pos); # 709 "/usr/include/stdio.h" 3 4 extern int fseeko64 (FILE *__stream, __off64_t __off, int __whence); extern __off64_t ftello64 (FILE *__stream); extern int fgetpos64 (FILE *__restrict __stream, fpos64_t *__restrict __pos); extern int fsetpos64 (FILE *__stream, __const fpos64_t *__pos); extern void clearerr (FILE *__stream) throw (); extern int feof (FILE *__stream) throw (); extern int ferror (FILE *__stream) throw (); extern void clearerr_unlocked (FILE *__stream) throw (); extern int feof_unlocked (FILE *__stream) throw (); extern int ferror_unlocked (FILE *__stream) throw (); # 740 "/usr/include/stdio.h" 3 4 extern void perror (__const char *__s); # 1 "/usr/include/bits/sys_errlist.h" 1 3 4 # 27 "/usr/include/bits/sys_errlist.h" 3 4 extern int sys_nerr; extern __const char *__const sys_errlist[]; extern int _sys_nerr; extern __const char *__const _sys_errlist[]; # 748 "/usr/include/stdio.h" 2 3 4 extern int fileno (FILE *__stream) throw (); extern int fileno_unlocked (FILE *__stream) throw (); # 767 "/usr/include/stdio.h" 3 4 extern FILE *popen (__const char *__command, __const char *__modes); extern int pclose (FILE *__stream); extern char *ctermid (char *__s) throw (); extern char *cuserid (char *__s); struct obstack; extern int obstack_printf (struct obstack *__restrict __obstack, __const char *__restrict __format, ...) throw () __attribute__ ((__format__ (__printf__, 2, 3))); extern int obstack_vprintf (struct obstack *__restrict __obstack, __const char *__restrict __format, __gnuc_va_list __args) throw () __attribute__ ((__format__ (__printf__, 2, 0))); extern void flockfile (FILE *__stream) throw (); extern int ftrylockfile (FILE *__stream) throw (); extern void funlockfile (FILE *__stream) throw (); # 828 "/usr/include/stdio.h" 3 4 # 1 "/usr/include/bits/stdio.h" 1 3 4 # 33 "/usr/include/bits/stdio.h" 3 4 inline int vprintf (__const char *__restrict __fmt, __gnuc_va_list __arg) { return vfprintf (stdout, __fmt, __arg); } inline int getchar (void) { return _IO_getc (stdin); } inline int getc_unlocked (FILE *__fp) { return (__builtin_expect ((__fp)->_IO_read_ptr >= (__fp)->_IO_read_end, 0) ? __uflow (__fp) : *(unsigned char *) (__fp)->_IO_read_ptr++); } inline int getchar_unlocked (void) { return (__builtin_expect ((stdin)->_IO_read_ptr >= (stdin)->_IO_read_end, 0) ? __uflow (stdin) : *(unsigned char *) (stdin)->_IO_read_ptr++); } inline int putchar (int __c) { return _IO_putc (__c, stdout); } inline int fputc_unlocked (int __c, FILE *__stream) { return (__builtin_expect ((__stream)->_IO_write_ptr >= (__stream)->_IO_write_end, 0) ? __overflow (__stream, (unsigned char) (__c)) : (unsigned char) (*(__stream)->_IO_write_ptr++ = (__c))); } inline int putc_unlocked (int __c, FILE *__stream) { return (__builtin_expect ((__stream)->_IO_write_ptr >= (__stream)->_IO_write_end, 0) ? __overflow (__stream, (unsigned char) (__c)) : (unsigned char) (*(__stream)->_IO_write_ptr++ = (__c))); } inline int putchar_unlocked (int __c) { return (__builtin_expect ((stdout)->_IO_write_ptr >= (stdout)->_IO_write_end, 0) ? __overflow (stdout, (unsigned char) (__c)) : (unsigned char) (*(stdout)->_IO_write_ptr++ = (__c))); } inline __ssize_t getline (char **__lineptr, size_t *__n, FILE *__stream) { return __getdelim (__lineptr, __n, '\n', __stream); } inline int feof_unlocked (FILE *__stream) throw () { return (((__stream)->_flags & 0x10) != 0); } inline int ferror_unlocked (FILE *__stream) throw () { return (((__stream)->_flags & 0x20) != 0); } # 829 "/usr/include/stdio.h" 2 3 4 } # 42 "../../src/Utility/macros.hh" 2 # 1 "/usr/include/ctype.h" 1 3 4 # 30 "/usr/include/ctype.h" 3 4 extern "C" { # 48 "/usr/include/ctype.h" 3 4 enum { _ISupper = ((0) < 8 ? ((1 << (0)) << 8) : ((1 << (0)) >> 8)), _ISlower = ((1) < 8 ? ((1 << (1)) << 8) : ((1 << (1)) >> 8)), _ISalpha = ((2) < 8 ? ((1 << (2)) << 8) : ((1 << (2)) >> 8)), _ISdigit = ((3) < 8 ? ((1 << (3)) << 8) : ((1 << (3)) >> 8)), _ISxdigit = ((4) < 8 ? ((1 << (4)) << 8) : ((1 << (4)) >> 8)), _ISspace = ((5) < 8 ? ((1 << (5)) << 8) : ((1 << (5)) >> 8)), _ISprint = ((6) < 8 ? ((1 << (6)) << 8) : ((1 << (6)) >> 8)), _ISgraph = ((7) < 8 ? ((1 << (7)) << 8) : ((1 << (7)) >> 8)), _ISblank = ((8) < 8 ? ((1 << (8)) << 8) : ((1 << (8)) >> 8)), _IScntrl = ((9) < 8 ? ((1 << (9)) << 8) : ((1 << (9)) >> 8)), _ISpunct = ((10) < 8 ? ((1 << (10)) << 8) : ((1 << (10)) >> 8)), _ISalnum = ((11) < 8 ? ((1 << (11)) << 8) : ((1 << (11)) >> 8)) }; # 81 "/usr/include/ctype.h" 3 4 extern __const unsigned short int **__ctype_b_loc (void) __attribute__ ((__const)); extern __const __int32_t **__ctype_tolower_loc (void) __attribute__ ((__const)); extern __const __int32_t **__ctype_toupper_loc (void) __attribute__ ((__const)); # 96 "/usr/include/ctype.h" 3 4 extern int isalnum (int) throw (); extern int isalpha (int) throw (); extern int iscntrl (int) throw (); extern int isdigit (int) throw (); extern int islower (int) throw (); extern int isgraph (int) throw (); extern int isprint (int) throw (); extern int ispunct (int) throw (); extern int isspace (int) throw (); extern int isupper (int) throw (); extern int isxdigit (int) throw (); extern int tolower (int __c) throw (); extern int toupper (int __c) throw (); # 128 "/usr/include/ctype.h" 3 4 extern int isblank (int) throw (); extern int isctype (int __c, int __mask) throw (); extern int isascii (int __c) throw (); extern int toascii (int __c) throw (); extern int _toupper (int) throw (); extern int _tolower (int) throw (); # 247 "/usr/include/ctype.h" 3 4 extern int isalnum_l (int, __locale_t) throw (); extern int isalpha_l (int, __locale_t) throw (); extern int iscntrl_l (int, __locale_t) throw (); extern int isdigit_l (int, __locale_t) throw (); extern int islower_l (int, __locale_t) throw (); extern int isgraph_l (int, __locale_t) throw (); extern int isprint_l (int, __locale_t) throw (); extern int ispunct_l (int, __locale_t) throw (); extern int isspace_l (int, __locale_t) throw (); extern int isupper_l (int, __locale_t) throw (); extern int isxdigit_l (int, __locale_t) throw (); extern int isblank_l (int, __locale_t) throw (); extern int __tolower_l (int __c, __locale_t __l) throw (); extern int tolower_l (int __c, __locale_t __l) throw (); extern int __toupper_l (int __c, __locale_t __l) throw (); extern int toupper_l (int __c, __locale_t __l) throw (); # 323 "/usr/include/ctype.h" 3 4 } # 43 "../../src/Utility/macros.hh" 2 # 1 "/usr/include/strings.h" 1 3 4 # 29 "/usr/include/strings.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 30 "/usr/include/strings.h" 2 3 4 extern "C" { extern int bcmp (__const void *__s1, __const void *__s2, size_t __n) throw () __attribute__ ((__pure__)); extern void bcopy (__const void *__src, void *__dest, size_t __n) throw (); extern void bzero (void *__s, size_t __n) throw (); extern int ffs (int __i) throw () __attribute__ ((const)); extern char *index (__const char *__s, int __c) throw () __attribute__ ((__pure__)); extern char *rindex (__const char *__s, int __c) throw () __attribute__ ((__pure__)); extern int strcasecmp (__const char *__s1, __const char *__s2) throw () __attribute__ ((__pure__)); extern int strncasecmp (__const char *__s1, __const char *__s2, size_t __n) throw () __attribute__ ((__pure__)); } # 45 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/new" 1 3 # 41 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/new" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstddef" 1 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstddef" 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstddef" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstddef" 2 3 namespace std { using ::ptrdiff_t; using ::size_t; } # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/new" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception" 1 3 # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception" 3 extern "C++" { namespace std { # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception" 3 class exception { public: exception() throw() { } virtual ~exception() throw(); virtual const char* what() const throw(); }; class bad_exception : public exception { public: bad_exception() throw() { } virtual ~bad_exception() throw(); }; typedef void (*terminate_handler) (); typedef void (*unexpected_handler) (); terminate_handler set_terminate(terminate_handler) throw(); void terminate() __attribute__ ((__noreturn__)); unexpected_handler set_unexpected(unexpected_handler) throw(); void unexpected() __attribute__ ((__noreturn__)); # 100 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception" 3 bool uncaught_exception() throw(); } namespace __gnu_cxx { # 115 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception" 3 void __verbose_terminate_handler (); } } # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/new" 2 3 extern "C++" { namespace std { class bad_alloc : public exception { public: bad_alloc() throw() { } virtual ~bad_alloc() throw(); }; struct nothrow_t { }; extern const nothrow_t nothrow; typedef void (*new_handler)(); new_handler set_new_handler(new_handler) throw(); } # 82 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/new" 3 void* operator new(std::size_t) throw (std::bad_alloc); void* operator new[](std::size_t) throw (std::bad_alloc); void operator delete(void*) throw(); void operator delete[](void*) throw(); void* operator new(std::size_t, const std::nothrow_t&) throw(); void* operator new[](std::size_t, const std::nothrow_t&) throw(); void operator delete(void*, const std::nothrow_t&) throw(); void operator delete[](void*, const std::nothrow_t&) throw(); inline void* operator new(std::size_t, void* __p) throw() { return __p; } inline void* operator new[](std::size_t, void* __p) throw() { return __p; } inline void operator delete (void*, void*) throw() { } inline void operator delete[](void*, void*) throw() { } } # 52 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++config.h" 1 3 # 35 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++config.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/os_defines.h" 1 3 # 36 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++config.h" 2 3 # 57 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++config.h" 3 namespace __gnu_debug_def { } namespace __gnu_debug { using namespace __gnu_debug_def; } # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stringfwd.h" 1 3 # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stringfwd.h" 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stringfwd.h" 3 namespace std { template class allocator; template struct char_traits; template, typename _Alloc = allocator<_CharT> > class basic_string; template<> struct char_traits; typedef basic_string string; template<> struct char_traits; typedef basic_string wstring; } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstring" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstring" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstring" 3 # 1 "/usr/include/string.h" 1 3 4 # 28 "/usr/include/string.h" 3 4 extern "C" { # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 34 "/usr/include/string.h" 2 3 4 extern void *memcpy (void *__restrict __dest, __const void *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern void *memmove (void *__dest, __const void *__src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern void *memccpy (void *__restrict __dest, __const void *__restrict __src, int __c, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern void *memset (void *__s, int __c, size_t __n) throw () __attribute__ ((__nonnull__ (1))); extern int memcmp (__const void *__s1, __const void *__s2, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern void *memchr (__const void *__s, int __c, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern void *rawmemchr (__const void *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern void *memrchr (__const void *__s, int __c, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern char *strcpy (char *__restrict __dest, __const char *__restrict __src) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *strncpy (char *__restrict __dest, __const char *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *strcat (char *__restrict __dest, __const char *__restrict __src) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *strncat (char *__restrict __dest, __const char *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern int strcmp (__const char *__s1, __const char *__s2) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern int strncmp (__const char *__s1, __const char *__s2, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern int strcoll (__const char *__s1, __const char *__s2) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern size_t strxfrm (char *__restrict __dest, __const char *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (2))); # 121 "/usr/include/string.h" 3 4 extern int strcoll_l (__const char *__s1, __const char *__s2, __locale_t __l) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 3))); extern size_t strxfrm_l (char *__dest, __const char *__src, size_t __n, __locale_t __l) throw () __attribute__ ((__nonnull__ (2, 4))); extern char *strdup (__const char *__s) throw () __attribute__ ((__malloc__)) __attribute__ ((__nonnull__ (1))); extern char *strndup (__const char *__string, size_t __n) throw () __attribute__ ((__malloc__)) __attribute__ ((__nonnull__ (1))); # 165 "/usr/include/string.h" 3 4 extern char *strchr (__const char *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern char *strrchr (__const char *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern char *strchrnul (__const char *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern size_t strcspn (__const char *__s, __const char *__reject) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern size_t strspn (__const char *__s, __const char *__accept) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern char *strpbrk (__const char *__s, __const char *__accept) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern char *strstr (__const char *__haystack, __const char *__needle) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern char *strtok (char *__restrict __s, __const char *__restrict __delim) throw () __attribute__ ((__nonnull__ (2))); extern char *__strtok_r (char *__restrict __s, __const char *__restrict __delim, char **__restrict __save_ptr) throw () __attribute__ ((__nonnull__ (2, 3))); extern char *strtok_r (char *__restrict __s, __const char *__restrict __delim, char **__restrict __save_ptr) throw () __attribute__ ((__nonnull__ (2, 3))); extern char *strcasestr (__const char *__haystack, __const char *__needle) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern void *memmem (__const void *__haystack, size_t __haystacklen, __const void *__needle, size_t __needlelen) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 3))); extern void *__mempcpy (void *__restrict __dest, __const void *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern void *mempcpy (void *__restrict __dest, __const void *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern size_t strlen (__const char *__s) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern size_t strnlen (__const char *__string, size_t __maxlen) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern char *strerror (int __errnum) throw (); # 281 "/usr/include/string.h" 3 4 extern char *strerror_r (int __errnum, char *__buf, size_t __buflen) throw () __attribute__ ((__nonnull__ (2))); extern void __bzero (void *__s, size_t __n) throw () __attribute__ ((__nonnull__ (1))); extern void bcopy (__const void *__src, void *__dest, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern void bzero (void *__s, size_t __n) throw () __attribute__ ((__nonnull__ (1))); extern int bcmp (__const void *__s1, __const void *__s2, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern char *index (__const char *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern char *rindex (__const char *__s, int __c) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))); extern int ffs (int __i) throw () __attribute__ ((__const__)); extern int ffsl (long int __l) throw () __attribute__ ((__const__)); __extension__ extern int ffsll (long long int __ll) throw () __attribute__ ((__const__)); extern int strcasecmp (__const char *__s1, __const char *__s2) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern int strncasecmp (__const char *__s1, __const char *__s2, size_t __n) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern int strcasecmp_l (__const char *__s1, __const char *__s2, __locale_t __loc) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 3))); extern int strncasecmp_l (__const char *__s1, __const char *__s2, size_t __n, __locale_t __loc) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 4))); extern char *strsep (char **__restrict __stringp, __const char *__restrict __delim) throw () __attribute__ ((__nonnull__ (1, 2))); extern int strverscmp (__const char *__s1, __const char *__s2) throw () __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2))); extern char *strsignal (int __sig) throw (); extern char *__stpcpy (char *__restrict __dest, __const char *__restrict __src) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *stpcpy (char *__restrict __dest, __const char *__restrict __src) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *__stpncpy (char *__restrict __dest, __const char *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *stpncpy (char *__restrict __dest, __const char *__restrict __src, size_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *strfry (char *__string) throw () __attribute__ ((__nonnull__ (1))); extern void *memfrob (void *__s, size_t __n) throw () __attribute__ ((__nonnull__ (1))); extern char *basename (__const char *__filename) throw () __attribute__ ((__nonnull__ (1))); # 426 "/usr/include/string.h" 3 4 } # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstring" 2 3 # 77 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstring" 3 namespace std { using ::memcpy; using ::memmove; using ::strcpy; using ::strncpy; using ::strcat; using ::strncat; using ::memcmp; using ::strcmp; using ::strcoll; using ::strncmp; using ::strxfrm; using ::strcspn; using ::strspn; using ::strtok; using ::memset; using ::strerror; using ::strlen; using ::memchr; inline void* memchr(void* __p, int __c, size_t __n) { return memchr(const_cast(__p), __c, __n); } using ::strchr; inline char* strchr(char* __s1, int __n) { return __builtin_strchr(const_cast(__s1), __n); } using ::strpbrk; inline char* strpbrk(char* __s1, const char* __s2) { return __builtin_strpbrk(const_cast(__s1), __s2); } using ::strrchr; inline char* strrchr(char* __s1, int __n) { return __builtin_strrchr(const_cast(__s1), __n); } using ::strstr; inline char* strstr(char* __s1, const char* __s2) { return __builtin_strstr(const_cast(__s1), __s2); } } # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 1 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/climits" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/climits" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/climits" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/limits.h" 1 3 4 # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/climits" 2 3 # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 3 # 84 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 3 namespace std { using ::div_t; using ::ldiv_t; using ::abort; using ::abs; using ::atexit; using ::atof; using ::atoi; using ::atol; using ::bsearch; using ::calloc; using ::div; using ::exit; using ::free; using ::getenv; using ::labs; using ::ldiv; using ::malloc; using ::mblen; using ::mbstowcs; using ::mbtowc; using ::qsort; using ::rand; using ::realloc; using ::srand; using ::strtod; using ::strtol; using ::strtoul; using ::system; using ::wcstombs; using ::wctomb; inline long abs(long __i) { return labs(__i); } inline ldiv_t div(long __i, long __j) { return ldiv(__i, __j); } } # 140 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 3 namespace __gnu_cxx { using ::lldiv_t; using ::_Exit; inline long long abs(long long __x) { return __x >= 0 ? __x : -__x; } inline long long llabs(long long __x) { return __x >= 0 ? __x : -__x; } inline lldiv_t div(long long __n, long long __d) { lldiv_t __q; __q.quot = __n / __d; __q.rem = __n % __d; return __q; } inline lldiv_t lldiv(long long __n, long long __d) { lldiv_t __q; __q.quot = __n / __d; __q.rem = __n % __d; return __q; } # 176 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdlib" 3 using ::atoll; using ::strtoll; using ::strtoull; using ::strtof; using ::strtold; } namespace std { using __gnu_cxx::lldiv_t; using __gnu_cxx::_Exit; using __gnu_cxx::abs; using __gnu_cxx::llabs; using __gnu_cxx::div; using __gnu_cxx::lldiv; using __gnu_cxx::atoll; using __gnu_cxx::strtof; using __gnu_cxx::strtoll; using __gnu_cxx::strtoull; using __gnu_cxx::strtold; } # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 1 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 3 # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 3 # 97 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 3 namespace std { using ::FILE; using ::fpos_t; using ::clearerr; using ::fclose; using ::feof; using ::ferror; using ::fflush; using ::fgetc; using ::fgetpos; using ::fgets; using ::fopen; using ::fprintf; using ::fputc; using ::fputs; using ::fread; using ::freopen; using ::fscanf; using ::fseek; using ::fsetpos; using ::ftell; using ::fwrite; using ::getc; using ::getchar; using ::gets; using ::perror; using ::printf; using ::putc; using ::putchar; using ::puts; using ::remove; using ::rename; using ::rewind; using ::scanf; using ::setbuf; using ::setvbuf; using ::sprintf; using ::sscanf; using ::tmpfile; using ::tmpnam; using ::ungetc; using ::vfprintf; using ::vprintf; using ::vsprintf; } # 153 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 3 namespace __gnu_cxx { # 167 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cstdio" 3 using ::snprintf; using ::vfscanf; using ::vscanf; using ::vsnprintf; using ::vsscanf; } namespace std { using __gnu_cxx::snprintf; using __gnu_cxx::vfscanf; using __gnu_cxx::vscanf; using __gnu_cxx::vsnprintf; using __gnu_cxx::vsscanf; } # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/clocale" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/clocale" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/clocale" 3 # 1 "/usr/include/locale.h" 1 3 4 # 29 "/usr/include/locale.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 30 "/usr/include/locale.h" 2 3 4 # 1 "/usr/include/bits/locale.h" 1 3 4 # 27 "/usr/include/bits/locale.h" 3 4 enum { __LC_CTYPE = 0, __LC_NUMERIC = 1, __LC_TIME = 2, __LC_COLLATE = 3, __LC_MONETARY = 4, __LC_MESSAGES = 5, __LC_ALL = 6, __LC_PAPER = 7, __LC_NAME = 8, __LC_ADDRESS = 9, __LC_TELEPHONE = 10, __LC_MEASUREMENT = 11, __LC_IDENTIFICATION = 12 }; # 31 "/usr/include/locale.h" 2 3 4 extern "C" { # 52 "/usr/include/locale.h" 3 4 struct lconv { char *decimal_point; char *thousands_sep; char *grouping; char *int_curr_symbol; char *currency_symbol; char *mon_decimal_point; char *mon_thousands_sep; char *mon_grouping; char *positive_sign; char *negative_sign; char int_frac_digits; char frac_digits; char p_cs_precedes; char p_sep_by_space; char n_cs_precedes; char n_sep_by_space; char p_sign_posn; char n_sign_posn; char int_p_cs_precedes; char int_p_sep_by_space; char int_n_cs_precedes; char int_n_sep_by_space; char int_p_sign_posn; char int_n_sign_posn; # 119 "/usr/include/locale.h" 3 4 }; extern char *setlocale (int __category, __const char *__locale) throw (); extern struct lconv *localeconv (void) throw (); # 148 "/usr/include/locale.h" 3 4 typedef __locale_t locale_t; extern __locale_t newlocale (int __category_mask, __const char *__locale, __locale_t __base) throw (); # 189 "/usr/include/locale.h" 3 4 extern __locale_t duplocale (__locale_t __dataset) throw (); extern void freelocale (__locale_t __dataset) throw (); extern __locale_t uselocale (__locale_t __dataset) throw (); } # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/clocale" 2 3 namespace std { using ::lconv; using ::setlocale; using ::localeconv; } # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 2 3 # 1 "/usr/include/langinfo.h" 1 3 4 # 24 "/usr/include/langinfo.h" 3 4 # 1 "/usr/include/nl_types.h" 1 3 4 # 31 "/usr/include/nl_types.h" 3 4 extern "C" { typedef void *nl_catd; typedef int nl_item; extern nl_catd catopen (__const char *__cat_name, int __flag) __attribute__ ((__nonnull__ (1))); extern char *catgets (nl_catd __catalog, int __set, int __number, __const char *__string) throw () __attribute__ ((__nonnull__ (1))); extern int catclose (nl_catd __catalog) throw () __attribute__ ((__nonnull__ (1))); } # 25 "/usr/include/langinfo.h" 2 3 4 # 1 "/usr/include/bits/locale.h" 1 3 4 # 27 "/usr/include/langinfo.h" 2 3 4 extern "C" { # 43 "/usr/include/langinfo.h" 3 4 enum { ABDAY_1 = (((__LC_TIME) << 16) | (0)), ABDAY_2, ABDAY_3, ABDAY_4, ABDAY_5, ABDAY_6, ABDAY_7, DAY_1, DAY_2, DAY_3, DAY_4, DAY_5, DAY_6, DAY_7, ABMON_1, ABMON_2, ABMON_3, ABMON_4, ABMON_5, ABMON_6, ABMON_7, ABMON_8, ABMON_9, ABMON_10, ABMON_11, ABMON_12, MON_1, MON_2, MON_3, MON_4, MON_5, MON_6, MON_7, MON_8, MON_9, MON_10, MON_11, MON_12, AM_STR, PM_STR, D_T_FMT, D_FMT, T_FMT, T_FMT_AMPM, ERA, __ERA_YEAR, ERA_D_FMT, ALT_DIGITS, ERA_D_T_FMT, ERA_T_FMT, _NL_TIME_ERA_NUM_ENTRIES, _NL_TIME_ERA_ENTRIES, _NL_WABDAY_1, _NL_WABDAY_2, _NL_WABDAY_3, _NL_WABDAY_4, _NL_WABDAY_5, _NL_WABDAY_6, _NL_WABDAY_7, _NL_WDAY_1, _NL_WDAY_2, _NL_WDAY_3, _NL_WDAY_4, _NL_WDAY_5, _NL_WDAY_6, _NL_WDAY_7, _NL_WABMON_1, _NL_WABMON_2, _NL_WABMON_3, _NL_WABMON_4, _NL_WABMON_5, _NL_WABMON_6, _NL_WABMON_7, _NL_WABMON_8, _NL_WABMON_9, _NL_WABMON_10, _NL_WABMON_11, _NL_WABMON_12, _NL_WMON_1, _NL_WMON_2, _NL_WMON_3, _NL_WMON_4, _NL_WMON_5, _NL_WMON_6, _NL_WMON_7, _NL_WMON_8, _NL_WMON_9, _NL_WMON_10, _NL_WMON_11, _NL_WMON_12, _NL_WAM_STR, _NL_WPM_STR, _NL_WD_T_FMT, _NL_WD_FMT, _NL_WT_FMT, _NL_WT_FMT_AMPM, _NL_WERA_YEAR, _NL_WERA_D_FMT, _NL_WALT_DIGITS, _NL_WERA_D_T_FMT, _NL_WERA_T_FMT, _NL_TIME_WEEK_NDAYS, _NL_TIME_WEEK_1STDAY, _NL_TIME_WEEK_1STWEEK, _NL_TIME_FIRST_WEEKDAY, _NL_TIME_FIRST_WORKDAY, _NL_TIME_CAL_DIRECTION, _NL_TIME_TIMEZONE, _DATE_FMT, _NL_W_DATE_FMT, _NL_TIME_CODESET, _NL_NUM_LC_TIME, _NL_COLLATE_NRULES = (((__LC_COLLATE) << 16) | (0)), _NL_COLLATE_RULESETS, _NL_COLLATE_TABLEMB, _NL_COLLATE_WEIGHTMB, _NL_COLLATE_EXTRAMB, _NL_COLLATE_INDIRECTMB, _NL_COLLATE_GAP1, _NL_COLLATE_GAP2, _NL_COLLATE_GAP3, _NL_COLLATE_TABLEWC, _NL_COLLATE_WEIGHTWC, _NL_COLLATE_EXTRAWC, _NL_COLLATE_INDIRECTWC, _NL_COLLATE_SYMB_HASH_SIZEMB, _NL_COLLATE_SYMB_TABLEMB, _NL_COLLATE_SYMB_EXTRAMB, _NL_COLLATE_COLLSEQMB, _NL_COLLATE_COLLSEQWC, _NL_COLLATE_CODESET, _NL_NUM_LC_COLLATE, _NL_CTYPE_CLASS = (((__LC_CTYPE) << 16) | (0)), _NL_CTYPE_TOUPPER, _NL_CTYPE_GAP1, _NL_CTYPE_TOLOWER, _NL_CTYPE_GAP2, _NL_CTYPE_CLASS32, _NL_CTYPE_GAP3, _NL_CTYPE_GAP4, _NL_CTYPE_GAP5, _NL_CTYPE_GAP6, _NL_CTYPE_CLASS_NAMES, _NL_CTYPE_MAP_NAMES, _NL_CTYPE_WIDTH, _NL_CTYPE_MB_CUR_MAX, _NL_CTYPE_CODESET_NAME, CODESET = _NL_CTYPE_CODESET_NAME, _NL_CTYPE_TOUPPER32, _NL_CTYPE_TOLOWER32, _NL_CTYPE_CLASS_OFFSET, _NL_CTYPE_MAP_OFFSET, _NL_CTYPE_INDIGITS_MB_LEN, _NL_CTYPE_INDIGITS0_MB, _NL_CTYPE_INDIGITS1_MB, _NL_CTYPE_INDIGITS2_MB, _NL_CTYPE_INDIGITS3_MB, _NL_CTYPE_INDIGITS4_MB, _NL_CTYPE_INDIGITS5_MB, _NL_CTYPE_INDIGITS6_MB, _NL_CTYPE_INDIGITS7_MB, _NL_CTYPE_INDIGITS8_MB, _NL_CTYPE_INDIGITS9_MB, _NL_CTYPE_INDIGITS_WC_LEN, _NL_CTYPE_INDIGITS0_WC, _NL_CTYPE_INDIGITS1_WC, _NL_CTYPE_INDIGITS2_WC, _NL_CTYPE_INDIGITS3_WC, _NL_CTYPE_INDIGITS4_WC, _NL_CTYPE_INDIGITS5_WC, _NL_CTYPE_INDIGITS6_WC, _NL_CTYPE_INDIGITS7_WC, _NL_CTYPE_INDIGITS8_WC, _NL_CTYPE_INDIGITS9_WC, _NL_CTYPE_OUTDIGIT0_MB, _NL_CTYPE_OUTDIGIT1_MB, _NL_CTYPE_OUTDIGIT2_MB, _NL_CTYPE_OUTDIGIT3_MB, _NL_CTYPE_OUTDIGIT4_MB, _NL_CTYPE_OUTDIGIT5_MB, _NL_CTYPE_OUTDIGIT6_MB, _NL_CTYPE_OUTDIGIT7_MB, _NL_CTYPE_OUTDIGIT8_MB, _NL_CTYPE_OUTDIGIT9_MB, _NL_CTYPE_OUTDIGIT0_WC, _NL_CTYPE_OUTDIGIT1_WC, _NL_CTYPE_OUTDIGIT2_WC, _NL_CTYPE_OUTDIGIT3_WC, _NL_CTYPE_OUTDIGIT4_WC, _NL_CTYPE_OUTDIGIT5_WC, _NL_CTYPE_OUTDIGIT6_WC, _NL_CTYPE_OUTDIGIT7_WC, _NL_CTYPE_OUTDIGIT8_WC, _NL_CTYPE_OUTDIGIT9_WC, _NL_CTYPE_TRANSLIT_TAB_SIZE, _NL_CTYPE_TRANSLIT_FROM_IDX, _NL_CTYPE_TRANSLIT_FROM_TBL, _NL_CTYPE_TRANSLIT_TO_IDX, _NL_CTYPE_TRANSLIT_TO_TBL, _NL_CTYPE_TRANSLIT_DEFAULT_MISSING_LEN, _NL_CTYPE_TRANSLIT_DEFAULT_MISSING, _NL_CTYPE_TRANSLIT_IGNORE_LEN, _NL_CTYPE_TRANSLIT_IGNORE, _NL_CTYPE_MAP_TO_NONASCII, _NL_CTYPE_EXTRA_MAP_1, _NL_CTYPE_EXTRA_MAP_2, _NL_CTYPE_EXTRA_MAP_3, _NL_CTYPE_EXTRA_MAP_4, _NL_CTYPE_EXTRA_MAP_5, _NL_CTYPE_EXTRA_MAP_6, _NL_CTYPE_EXTRA_MAP_7, _NL_CTYPE_EXTRA_MAP_8, _NL_CTYPE_EXTRA_MAP_9, _NL_CTYPE_EXTRA_MAP_10, _NL_CTYPE_EXTRA_MAP_11, _NL_CTYPE_EXTRA_MAP_12, _NL_CTYPE_EXTRA_MAP_13, _NL_CTYPE_EXTRA_MAP_14, _NL_NUM_LC_CTYPE, __INT_CURR_SYMBOL = (((__LC_MONETARY) << 16) | (0)), __CURRENCY_SYMBOL, __MON_DECIMAL_POINT, __MON_THOUSANDS_SEP, __MON_GROUPING, __POSITIVE_SIGN, __NEGATIVE_SIGN, __INT_FRAC_DIGITS, __FRAC_DIGITS, __P_CS_PRECEDES, __P_SEP_BY_SPACE, __N_CS_PRECEDES, __N_SEP_BY_SPACE, __P_SIGN_POSN, __N_SIGN_POSN, _NL_MONETARY_CRNCYSTR, __INT_P_CS_PRECEDES, __INT_P_SEP_BY_SPACE, __INT_N_CS_PRECEDES, __INT_N_SEP_BY_SPACE, __INT_P_SIGN_POSN, __INT_N_SIGN_POSN, _NL_MONETARY_DUO_INT_CURR_SYMBOL, _NL_MONETARY_DUO_CURRENCY_SYMBOL, _NL_MONETARY_DUO_INT_FRAC_DIGITS, _NL_MONETARY_DUO_FRAC_DIGITS, _NL_MONETARY_DUO_P_CS_PRECEDES, _NL_MONETARY_DUO_P_SEP_BY_SPACE, _NL_MONETARY_DUO_N_CS_PRECEDES, _NL_MONETARY_DUO_N_SEP_BY_SPACE, _NL_MONETARY_DUO_INT_P_CS_PRECEDES, _NL_MONETARY_DUO_INT_P_SEP_BY_SPACE, _NL_MONETARY_DUO_INT_N_CS_PRECEDES, _NL_MONETARY_DUO_INT_N_SEP_BY_SPACE, _NL_MONETARY_DUO_P_SIGN_POSN, _NL_MONETARY_DUO_N_SIGN_POSN, _NL_MONETARY_DUO_INT_P_SIGN_POSN, _NL_MONETARY_DUO_INT_N_SIGN_POSN, _NL_MONETARY_UNO_VALID_FROM, _NL_MONETARY_UNO_VALID_TO, _NL_MONETARY_DUO_VALID_FROM, _NL_MONETARY_DUO_VALID_TO, _NL_MONETARY_CONVERSION_RATE, _NL_MONETARY_DECIMAL_POINT_WC, _NL_MONETARY_THOUSANDS_SEP_WC, _NL_MONETARY_CODESET, _NL_NUM_LC_MONETARY, __DECIMAL_POINT = (((__LC_NUMERIC) << 16) | (0)), RADIXCHAR = __DECIMAL_POINT, __THOUSANDS_SEP, THOUSEP = __THOUSANDS_SEP, __GROUPING, _NL_NUMERIC_DECIMAL_POINT_WC, _NL_NUMERIC_THOUSANDS_SEP_WC, _NL_NUMERIC_CODESET, _NL_NUM_LC_NUMERIC, __YESEXPR = (((__LC_MESSAGES) << 16) | (0)), __NOEXPR, __YESSTR, __NOSTR, _NL_MESSAGES_CODESET, _NL_NUM_LC_MESSAGES, _NL_PAPER_HEIGHT = (((__LC_PAPER) << 16) | (0)), _NL_PAPER_WIDTH, _NL_PAPER_CODESET, _NL_NUM_LC_PAPER, _NL_NAME_NAME_FMT = (((__LC_NAME) << 16) | (0)), _NL_NAME_NAME_GEN, _NL_NAME_NAME_MR, _NL_NAME_NAME_MRS, _NL_NAME_NAME_MISS, _NL_NAME_NAME_MS, _NL_NAME_CODESET, _NL_NUM_LC_NAME, _NL_ADDRESS_POSTAL_FMT = (((__LC_ADDRESS) << 16) | (0)), _NL_ADDRESS_COUNTRY_NAME, _NL_ADDRESS_COUNTRY_POST, _NL_ADDRESS_COUNTRY_AB2, _NL_ADDRESS_COUNTRY_AB3, _NL_ADDRESS_COUNTRY_CAR, _NL_ADDRESS_COUNTRY_NUM, _NL_ADDRESS_COUNTRY_ISBN, _NL_ADDRESS_LANG_NAME, _NL_ADDRESS_LANG_AB, _NL_ADDRESS_LANG_TERM, _NL_ADDRESS_LANG_LIB, _NL_ADDRESS_CODESET, _NL_NUM_LC_ADDRESS, _NL_TELEPHONE_TEL_INT_FMT = (((__LC_TELEPHONE) << 16) | (0)), _NL_TELEPHONE_TEL_DOM_FMT, _NL_TELEPHONE_INT_SELECT, _NL_TELEPHONE_INT_PREFIX, _NL_TELEPHONE_CODESET, _NL_NUM_LC_TELEPHONE, _NL_MEASUREMENT_MEASUREMENT = (((__LC_MEASUREMENT) << 16) | (0)), _NL_MEASUREMENT_CODESET, _NL_NUM_LC_MEASUREMENT, _NL_IDENTIFICATION_TITLE = (((__LC_IDENTIFICATION) << 16) | (0)), _NL_IDENTIFICATION_SOURCE, _NL_IDENTIFICATION_ADDRESS, _NL_IDENTIFICATION_CONTACT, _NL_IDENTIFICATION_EMAIL, _NL_IDENTIFICATION_TEL, _NL_IDENTIFICATION_FAX, _NL_IDENTIFICATION_LANGUAGE, _NL_IDENTIFICATION_TERRITORY, _NL_IDENTIFICATION_AUDIENCE, _NL_IDENTIFICATION_APPLICATION, _NL_IDENTIFICATION_ABBREVIATION, _NL_IDENTIFICATION_REVISION, _NL_IDENTIFICATION_DATE, _NL_IDENTIFICATION_CATEGORY, _NL_IDENTIFICATION_CODESET, _NL_NUM_LC_IDENTIFICATION, _NL_NUM }; # 576 "/usr/include/langinfo.h" 3 4 extern char *nl_langinfo (nl_item __item) throw (); # 587 "/usr/include/langinfo.h" 3 4 extern char *nl_langinfo_l (nl_item __item, __locale_t l); } # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 2 3 # 1 "/usr/include/iconv.h" 1 3 4 # 24 "/usr/include/iconv.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 25 "/usr/include/iconv.h" 2 3 4 extern "C" { typedef void *iconv_t; extern iconv_t iconv_open (__const char *__tocode, __const char *__fromcode); extern size_t iconv (iconv_t __cd, char **__restrict __inbuf, size_t *__restrict __inbytesleft, char **__restrict __outbuf, size_t *__restrict __outbytesleft); extern int iconv_close (iconv_t __cd); } # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 2 3 # 1 "/usr/include/libintl.h" 1 3 4 # 35 "/usr/include/libintl.h" 3 4 extern "C" { extern char *gettext (__const char *__msgid) throw (); extern char *dgettext (__const char *__domainname, __const char *__msgid) throw (); extern char *__dgettext (__const char *__domainname, __const char *__msgid) throw () __attribute__ ((__format_arg__ (2))); extern char *dcgettext (__const char *__domainname, __const char *__msgid, int __category) throw (); extern char *__dcgettext (__const char *__domainname, __const char *__msgid, int __category) throw () __attribute__ ((__format_arg__ (2))); extern char *ngettext (__const char *__msgid1, __const char *__msgid2, unsigned long int __n) throw () __attribute__ ((__format_arg__ (1))) __attribute__ ((__format_arg__ (2))); extern char *dngettext (__const char *__domainname, __const char *__msgid1, __const char *__msgid2, unsigned long int __n) throw () __attribute__ ((__format_arg__ (2))) __attribute__ ((__format_arg__ (3))); extern char *dcngettext (__const char *__domainname, __const char *__msgid1, __const char *__msgid2, unsigned long int __n, int __category) throw () __attribute__ ((__format_arg__ (2))) __attribute__ ((__format_arg__ (3))); extern char *textdomain (__const char *__domainname) throw (); extern char *bindtextdomain (__const char *__domainname, __const char *__dirname) throw (); extern char *bind_textdomain_codeset (__const char *__domainname, __const char *__codeset) throw (); # 120 "/usr/include/libintl.h" 3 4 } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 2 3 namespace __gnu_cxx { extern "C" __typeof(uselocale) __uselocale; } namespace std { typedef __locale_t __c_locale; template int __convert_from_v(char* __out, const int __size, const char* __fmt, _Tv __v, const __c_locale& __cloc, int __prec) { __c_locale __old = __gnu_cxx::__uselocale(__cloc); # 84 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++locale.h" 3 const int __ret = std::snprintf(__out, __size, __fmt, __prec, __v); __gnu_cxx::__uselocale(__old); return __ret; } } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++io.h" 1 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++io.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr.h" 1 3 # 96 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 3 # 1 "/usr/include/pthread.h" 1 3 4 # 23 "/usr/include/pthread.h" 3 4 # 1 "/usr/include/sched.h" 1 3 4 # 29 "/usr/include/sched.h" 3 4 # 1 "/usr/include/time.h" 1 3 4 # 30 "/usr/include/sched.h" 2 3 4 # 1 "/usr/include/bits/sched.h" 1 3 4 # 62 "/usr/include/bits/sched.h" 3 4 struct sched_param { int __sched_priority; }; extern "C" { extern int clone (int (*__fn) (void *__arg), void *__child_stack, int __flags, void *__arg) throw (); } struct __sched_param { int __sched_priority; }; # 98 "/usr/include/bits/sched.h" 3 4 typedef unsigned long int __cpu_mask; typedef struct { __cpu_mask __bits[1024 / (8 * sizeof (__cpu_mask))]; } cpu_set_t; # 33 "/usr/include/sched.h" 2 3 4 extern "C" { extern int sched_setparam (__pid_t __pid, __const struct sched_param *__param) throw (); extern int sched_getparam (__pid_t __pid, struct sched_param *__param) throw (); extern int sched_setscheduler (__pid_t __pid, int __policy, __const struct sched_param *__param) throw (); extern int sched_getscheduler (__pid_t __pid) throw (); extern int sched_yield (void) throw (); extern int sched_get_priority_max (int __algorithm) throw (); extern int sched_get_priority_min (int __algorithm) throw (); extern int sched_rr_get_interval (__pid_t __pid, struct timespec *__t) throw (); # 76 "/usr/include/sched.h" 3 4 extern int sched_setaffinity (__pid_t __pid, size_t __cpusetsize, __const cpu_set_t *__cpuset) throw (); extern int sched_getaffinity (__pid_t __pid, size_t __cpusetsize, cpu_set_t *__cpuset) throw (); } # 24 "/usr/include/pthread.h" 2 3 4 # 1 "/usr/include/time.h" 1 3 4 # 30 "/usr/include/time.h" 3 4 extern "C" { # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 39 "/usr/include/time.h" 2 3 4 # 1 "/usr/include/bits/time.h" 1 3 4 # 43 "/usr/include/time.h" 2 3 4 # 129 "/usr/include/time.h" 3 4 struct tm { int tm_sec; int tm_min; int tm_hour; int tm_mday; int tm_mon; int tm_year; int tm_wday; int tm_yday; int tm_isdst; long int tm_gmtoff; __const char *tm_zone; }; # 159 "/usr/include/time.h" 3 4 struct itimerspec { struct timespec it_interval; struct timespec it_value; }; struct sigevent; # 178 "/usr/include/time.h" 3 4 extern clock_t clock (void) throw (); extern time_t time (time_t *__timer) throw (); extern double difftime (time_t __time1, time_t __time0) throw () __attribute__ ((__const__)); extern time_t mktime (struct tm *__tp) throw (); extern size_t strftime (char *__restrict __s, size_t __maxsize, __const char *__restrict __format, __const struct tm *__restrict __tp) throw (); extern char *strptime (__const char *__restrict __s, __const char *__restrict __fmt, struct tm *__tp) throw (); extern size_t strftime_l (char *__restrict __s, size_t __maxsize, __const char *__restrict __format, __const struct tm *__restrict __tp, __locale_t __loc) throw (); extern char *strptime_l (__const char *__restrict __s, __const char *__restrict __fmt, struct tm *__tp, __locale_t __loc) throw (); extern struct tm *gmtime (__const time_t *__timer) throw (); extern struct tm *localtime (__const time_t *__timer) throw (); extern struct tm *gmtime_r (__const time_t *__restrict __timer, struct tm *__restrict __tp) throw (); extern struct tm *localtime_r (__const time_t *__restrict __timer, struct tm *__restrict __tp) throw (); extern char *asctime (__const struct tm *__tp) throw (); extern char *ctime (__const time_t *__timer) throw (); extern char *asctime_r (__const struct tm *__restrict __tp, char *__restrict __buf) throw (); extern char *ctime_r (__const time_t *__restrict __timer, char *__restrict __buf) throw (); extern char *__tzname[2]; extern int __daylight; extern long int __timezone; extern char *tzname[2]; extern void tzset (void) throw (); extern int daylight; extern long int timezone; extern int stime (__const time_t *__when) throw (); # 309 "/usr/include/time.h" 3 4 extern time_t timegm (struct tm *__tp) throw (); extern time_t timelocal (struct tm *__tp) throw (); extern int dysize (int __year) throw () __attribute__ ((__const__)); # 324 "/usr/include/time.h" 3 4 extern int nanosleep (__const struct timespec *__requested_time, struct timespec *__remaining); extern int clock_getres (clockid_t __clock_id, struct timespec *__res) throw (); extern int clock_gettime (clockid_t __clock_id, struct timespec *__tp) throw (); extern int clock_settime (clockid_t __clock_id, __const struct timespec *__tp) throw (); extern int clock_nanosleep (clockid_t __clock_id, int __flags, __const struct timespec *__req, struct timespec *__rem); extern int clock_getcpuclockid (pid_t __pid, clockid_t *__clock_id) throw (); extern int timer_create (clockid_t __clock_id, struct sigevent *__restrict __evp, timer_t *__restrict __timerid) throw (); extern int timer_delete (timer_t __timerid) throw (); extern int timer_settime (timer_t __timerid, int __flags, __const struct itimerspec *__restrict __value, struct itimerspec *__restrict __ovalue) throw (); extern int timer_gettime (timer_t __timerid, struct itimerspec *__value) throw (); extern int timer_getoverrun (timer_t __timerid) throw (); # 386 "/usr/include/time.h" 3 4 extern int getdate_err; # 395 "/usr/include/time.h" 3 4 extern struct tm *getdate (__const char *__string); # 409 "/usr/include/time.h" 3 4 extern int getdate_r (__const char *__restrict __string, struct tm *__restrict __resbufp); } # 25 "/usr/include/pthread.h" 2 3 4 # 1 "/usr/include/signal.h" 1 3 4 # 31 "/usr/include/signal.h" 3 4 extern "C" { # 1 "/usr/include/bits/sigset.h" 1 3 4 # 34 "/usr/include/signal.h" 2 3 4 # 400 "/usr/include/signal.h" 3 4 } # 28 "/usr/include/pthread.h" 2 3 4 # 1 "/usr/include/bits/setjmp.h" 1 3 4 # 38 "/usr/include/bits/setjmp.h" 3 4 typedef int __jmp_buf[6]; # 30 "/usr/include/pthread.h" 2 3 4 # 1 "/usr/include/bits/wordsize.h" 1 3 4 # 31 "/usr/include/pthread.h" 2 3 4 enum { PTHREAD_CREATE_JOINABLE, PTHREAD_CREATE_DETACHED }; enum { PTHREAD_MUTEX_TIMED_NP, PTHREAD_MUTEX_RECURSIVE_NP, PTHREAD_MUTEX_ERRORCHECK_NP, PTHREAD_MUTEX_ADAPTIVE_NP , PTHREAD_MUTEX_NORMAL = PTHREAD_MUTEX_TIMED_NP, PTHREAD_MUTEX_RECURSIVE = PTHREAD_MUTEX_RECURSIVE_NP, PTHREAD_MUTEX_ERRORCHECK = PTHREAD_MUTEX_ERRORCHECK_NP, PTHREAD_MUTEX_DEFAULT = PTHREAD_MUTEX_NORMAL , PTHREAD_MUTEX_FAST_NP = PTHREAD_MUTEX_TIMED_NP }; # 87 "/usr/include/pthread.h" 3 4 enum { PTHREAD_RWLOCK_PREFER_READER_NP, PTHREAD_RWLOCK_PREFER_WRITER_NP, PTHREAD_RWLOCK_PREFER_WRITER_NONRECURSIVE_NP, PTHREAD_RWLOCK_DEFAULT_NP = PTHREAD_RWLOCK_PREFER_READER_NP }; # 112 "/usr/include/pthread.h" 3 4 enum { PTHREAD_INHERIT_SCHED, PTHREAD_EXPLICIT_SCHED }; enum { PTHREAD_SCOPE_SYSTEM, PTHREAD_SCOPE_PROCESS }; enum { PTHREAD_PROCESS_PRIVATE, PTHREAD_PROCESS_SHARED }; # 147 "/usr/include/pthread.h" 3 4 struct _pthread_cleanup_buffer { void (*__routine) (void *); void *__arg; int __canceltype; struct _pthread_cleanup_buffer *__prev; }; enum { PTHREAD_CANCEL_ENABLE, PTHREAD_CANCEL_DISABLE }; enum { PTHREAD_CANCEL_DEFERRED, PTHREAD_CANCEL_ASYNCHRONOUS }; # 185 "/usr/include/pthread.h" 3 4 extern "C" { extern int pthread_create (pthread_t *__restrict __newthread, __const pthread_attr_t *__restrict __attr, void *(*__start_routine) (void *), void *__restrict __arg) throw (); extern void pthread_exit (void *__retval) __attribute__ ((__noreturn__)); extern int pthread_join (pthread_t __th, void **__thread_return); extern int pthread_tryjoin_np (pthread_t __th, void **__thread_return) throw (); extern int pthread_timedjoin_np (pthread_t __th, void **__thread_return, __const struct timespec *__abstime); extern int pthread_detach (pthread_t __th) throw (); extern pthread_t pthread_self (void) throw () __attribute__ ((__const__)); extern int pthread_equal (pthread_t __thread1, pthread_t __thread2) throw (); extern int pthread_attr_init (pthread_attr_t *__attr) throw (); extern int pthread_attr_destroy (pthread_attr_t *__attr) throw (); extern int pthread_attr_getdetachstate (__const pthread_attr_t *__attr, int *__detachstate) throw (); extern int pthread_attr_setdetachstate (pthread_attr_t *__attr, int __detachstate) throw (); extern int pthread_attr_getguardsize (__const pthread_attr_t *__attr, size_t *__guardsize) throw (); extern int pthread_attr_setguardsize (pthread_attr_t *__attr, size_t __guardsize) throw (); extern int pthread_attr_getschedparam (__const pthread_attr_t *__restrict __attr, struct sched_param *__restrict __param) throw (); extern int pthread_attr_setschedparam (pthread_attr_t *__restrict __attr, __const struct sched_param *__restrict __param) throw (); extern int pthread_attr_getschedpolicy (__const pthread_attr_t *__restrict __attr, int *__restrict __policy) throw (); extern int pthread_attr_setschedpolicy (pthread_attr_t *__attr, int __policy) throw (); extern int pthread_attr_getinheritsched (__const pthread_attr_t *__restrict __attr, int *__restrict __inherit) throw (); extern int pthread_attr_setinheritsched (pthread_attr_t *__attr, int __inherit) throw (); extern int pthread_attr_getscope (__const pthread_attr_t *__restrict __attr, int *__restrict __scope) throw (); extern int pthread_attr_setscope (pthread_attr_t *__attr, int __scope) throw (); extern int pthread_attr_getstackaddr (__const pthread_attr_t *__restrict __attr, void **__restrict __stackaddr) throw () __attribute__ ((__deprecated__)); extern int pthread_attr_setstackaddr (pthread_attr_t *__attr, void *__stackaddr) throw () __attribute__ ((__deprecated__)); extern int pthread_attr_getstacksize (__const pthread_attr_t *__restrict __attr, size_t *__restrict __stacksize) throw (); extern int pthread_attr_setstacksize (pthread_attr_t *__attr, size_t __stacksize) throw (); extern int pthread_attr_getstack (__const pthread_attr_t *__restrict __attr, void **__restrict __stackaddr, size_t *__restrict __stacksize) throw (); extern int pthread_attr_setstack (pthread_attr_t *__attr, void *__stackaddr, size_t __stacksize) throw (); extern int pthread_attr_setaffinity_np (pthread_attr_t *__attr, size_t __cpusetsize, __const cpu_set_t *__cpuset) throw (); extern int pthread_attr_getaffinity_np (__const pthread_attr_t *__attr, size_t __cpusetsize, cpu_set_t *__cpuset) throw (); extern int pthread_getattr_np (pthread_t __th, pthread_attr_t *__attr) throw (); extern int pthread_setschedparam (pthread_t __target_thread, int __policy, __const struct sched_param *__param) throw (); extern int pthread_getschedparam (pthread_t __target_thread, int *__restrict __policy, struct sched_param *__restrict __param) throw (); extern int pthread_setschedprio (pthread_t __target_thread, int __prio) throw (); extern int pthread_getconcurrency (void) throw (); extern int pthread_setconcurrency (int __level) throw (); extern int pthread_yield (void) throw (); extern int pthread_setaffinity_np (pthread_t __th, size_t __cpusetsize, __const cpu_set_t *__cpuset) throw (); extern int pthread_getaffinity_np (pthread_t __th, size_t __cpusetsize, cpu_set_t *__cpuset) throw (); # 417 "/usr/include/pthread.h" 3 4 extern int pthread_once (pthread_once_t *__once_control, void (*__init_routine) (void)); # 429 "/usr/include/pthread.h" 3 4 extern int pthread_setcancelstate (int __state, int *__oldstate); extern int pthread_setcanceltype (int __type, int *__oldtype); extern int pthread_cancel (pthread_t __th); extern void pthread_testcancel (void); typedef struct { struct { __jmp_buf __cancel_jmp_buf; int __mask_was_saved; } __cancel_jmp_buf[1]; void *__pad[4]; } __pthread_unwind_buf_t __attribute__ ((__aligned__)); # 463 "/usr/include/pthread.h" 3 4 struct __pthread_cleanup_frame { void (*__cancel_routine) (void *); void *__cancel_arg; int __do_it; int __cancel_type; }; class __pthread_cleanup_class { void (*__cancel_routine) (void *); void *__cancel_arg; int __do_it; int __cancel_type; public: __pthread_cleanup_class (void (*__fct) (void *), void *__arg) : __cancel_routine (__fct), __cancel_arg (__arg), __do_it (1) { } ~__pthread_cleanup_class () { if (__do_it) __cancel_routine (__cancel_arg); } void __setdoit (int __newval) { __do_it = __newval; } void __defer () { pthread_setcanceltype (PTHREAD_CANCEL_DEFERRED, &__cancel_type); } void __restore () const { pthread_setcanceltype (__cancel_type, 0); } }; # 663 "/usr/include/pthread.h" 3 4 struct __jmp_buf_tag; extern int __sigsetjmp (struct __jmp_buf_tag *__env, int __savemask) throw (); extern int pthread_mutex_init (pthread_mutex_t *__mutex, __const pthread_mutexattr_t *__mutexattr) throw (); extern int pthread_mutex_destroy (pthread_mutex_t *__mutex) throw (); extern int pthread_mutex_trylock (pthread_mutex_t *_mutex) throw (); extern int pthread_mutex_lock (pthread_mutex_t *__mutex) throw (); extern int pthread_mutex_timedlock (pthread_mutex_t *__restrict __mutex, __const struct timespec *__restrict __abstime) throw (); extern int pthread_mutex_unlock (pthread_mutex_t *__mutex) throw (); extern int pthread_mutexattr_init (pthread_mutexattr_t *__attr) throw (); extern int pthread_mutexattr_destroy (pthread_mutexattr_t *__attr) throw (); extern int pthread_mutexattr_getpshared (__const pthread_mutexattr_t * __restrict __attr, int *__restrict __pshared) throw (); extern int pthread_mutexattr_setpshared (pthread_mutexattr_t *__attr, int __pshared) throw (); extern int pthread_mutexattr_gettype (__const pthread_mutexattr_t *__restrict __attr, int *__restrict __kind) throw (); extern int pthread_mutexattr_settype (pthread_mutexattr_t *__attr, int __kind) throw (); # 730 "/usr/include/pthread.h" 3 4 extern int pthread_rwlock_init (pthread_rwlock_t *__restrict __rwlock, __const pthread_rwlockattr_t *__restrict __attr) throw (); extern int pthread_rwlock_destroy (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlock_rdlock (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlock_tryrdlock (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlock_timedrdlock (pthread_rwlock_t *__restrict __rwlock, __const struct timespec *__restrict __abstime) throw (); extern int pthread_rwlock_wrlock (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlock_trywrlock (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlock_timedwrlock (pthread_rwlock_t *__restrict __rwlock, __const struct timespec *__restrict __abstime) throw (); extern int pthread_rwlock_unlock (pthread_rwlock_t *__rwlock) throw (); extern int pthread_rwlockattr_init (pthread_rwlockattr_t *__attr) throw (); extern int pthread_rwlockattr_destroy (pthread_rwlockattr_t *__attr) throw (); extern int pthread_rwlockattr_getpshared (__const pthread_rwlockattr_t * __restrict __attr, int *__restrict __pshared) throw (); extern int pthread_rwlockattr_setpshared (pthread_rwlockattr_t *__attr, int __pshared) throw (); extern int pthread_rwlockattr_getkind_np (__const pthread_rwlockattr_t * __restrict __attr, int *__restrict __pref) throw (); extern int pthread_rwlockattr_setkind_np (pthread_rwlockattr_t *__attr, int __pref) throw (); extern int pthread_cond_init (pthread_cond_t *__restrict __cond, __const pthread_condattr_t *__restrict __cond_attr) throw (); extern int pthread_cond_destroy (pthread_cond_t *__cond) throw (); extern int pthread_cond_signal (pthread_cond_t *__cond) throw (); extern int pthread_cond_broadcast (pthread_cond_t *__cond) throw (); extern int pthread_cond_wait (pthread_cond_t *__restrict __cond, pthread_mutex_t *__restrict __mutex); # 827 "/usr/include/pthread.h" 3 4 extern int pthread_cond_timedwait (pthread_cond_t *__restrict __cond, pthread_mutex_t *__restrict __mutex, __const struct timespec *__restrict __abstime); extern int pthread_condattr_init (pthread_condattr_t *__attr) throw (); extern int pthread_condattr_destroy (pthread_condattr_t *__attr) throw (); extern int pthread_condattr_getpshared (__const pthread_condattr_t * __restrict __attr, int *__restrict __pshared) throw (); extern int pthread_condattr_setpshared (pthread_condattr_t *__attr, int __pshared) throw (); extern int pthread_condattr_getclock (__const pthread_condattr_t * __restrict __attr, __clockid_t *__restrict __clock_id) throw (); extern int pthread_condattr_setclock (pthread_condattr_t *__attr, __clockid_t __clock_id) throw (); # 868 "/usr/include/pthread.h" 3 4 extern int pthread_spin_init (pthread_spinlock_t *__lock, int __pshared) throw (); extern int pthread_spin_destroy (pthread_spinlock_t *__lock) throw (); extern int pthread_spin_lock (pthread_spinlock_t *__lock) throw (); extern int pthread_spin_trylock (pthread_spinlock_t *__lock) throw (); extern int pthread_spin_unlock (pthread_spinlock_t *__lock) throw (); extern int pthread_barrier_init (pthread_barrier_t *__restrict __barrier, __const pthread_barrierattr_t *__restrict __attr, unsigned int __count) throw (); extern int pthread_barrier_destroy (pthread_barrier_t *__barrier) throw (); extern int pthread_barrier_wait (pthread_barrier_t *__barrier) throw (); extern int pthread_barrierattr_init (pthread_barrierattr_t *__attr) throw (); extern int pthread_barrierattr_destroy (pthread_barrierattr_t *__attr) throw (); extern int pthread_barrierattr_getpshared (__const pthread_barrierattr_t * __restrict __attr, int *__restrict __pshared) throw (); extern int pthread_barrierattr_setpshared (pthread_barrierattr_t *__attr, int __pshared) throw (); # 924 "/usr/include/pthread.h" 3 4 extern int pthread_key_create (pthread_key_t *__key, void (*__destr_function) (void *)) throw (); extern int pthread_key_delete (pthread_key_t __key) throw (); extern void *pthread_getspecific (pthread_key_t __key) throw (); extern int pthread_setspecific (pthread_key_t __key, __const void *__pointer) throw (); extern int pthread_getcpuclockid (pthread_t __thread_id, __clockid_t *__clock_id) throw (); # 956 "/usr/include/pthread.h" 3 4 extern int pthread_atfork (void (*__prepare) (void), void (*__parent) (void), void (*__child) (void)) throw (); } # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 2 3 # 1 "/usr/include/unistd.h" 1 3 4 # 28 "/usr/include/unistd.h" 3 4 extern "C" { # 171 "/usr/include/unistd.h" 3 4 # 1 "/usr/include/bits/posix_opt.h" 1 3 4 # 172 "/usr/include/unistd.h" 2 3 4 # 1 "/usr/include/bits/environments.h" 1 3 4 # 176 "/usr/include/unistd.h" 2 3 4 # 195 "/usr/include/unistd.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 196 "/usr/include/unistd.h" 2 3 4 # 236 "/usr/include/unistd.h" 3 4 typedef __intptr_t intptr_t; typedef __socklen_t socklen_t; # 256 "/usr/include/unistd.h" 3 4 extern int access (__const char *__name, int __type) throw () __attribute__ ((__nonnull__ (1))); extern int euidaccess (__const char *__name, int __type) throw () __attribute__ ((__nonnull__ (1))); # 287 "/usr/include/unistd.h" 3 4 extern __off_t lseek (int __fd, __off_t __offset, int __whence) throw (); # 298 "/usr/include/unistd.h" 3 4 extern __off64_t lseek64 (int __fd, __off64_t __offset, int __whence) throw (); extern int close (int __fd); extern ssize_t read (int __fd, void *__buf, size_t __nbytes); extern ssize_t write (int __fd, __const void *__buf, size_t __n); # 328 "/usr/include/unistd.h" 3 4 extern ssize_t pread (int __fd, void *__buf, size_t __nbytes, __off_t __offset); extern ssize_t pwrite (int __fd, __const void *__buf, size_t __n, __off_t __offset); # 356 "/usr/include/unistd.h" 3 4 extern ssize_t pread64 (int __fd, void *__buf, size_t __nbytes, __off64_t __offset); extern ssize_t pwrite64 (int __fd, __const void *__buf, size_t __n, __off64_t __offset); extern int pipe (int __pipedes[2]) throw (); # 378 "/usr/include/unistd.h" 3 4 extern unsigned int alarm (unsigned int __seconds) throw (); # 390 "/usr/include/unistd.h" 3 4 extern unsigned int sleep (unsigned int __seconds); extern __useconds_t ualarm (__useconds_t __value, __useconds_t __interval) throw (); extern int usleep (__useconds_t __useconds); # 414 "/usr/include/unistd.h" 3 4 extern int pause (void); extern int chown (__const char *__file, __uid_t __owner, __gid_t __group) throw () __attribute__ ((__nonnull__ (1))); extern int fchown (int __fd, __uid_t __owner, __gid_t __group) throw (); extern int lchown (__const char *__file, __uid_t __owner, __gid_t __group) throw () __attribute__ ((__nonnull__ (1))); extern int chdir (__const char *__path) throw () __attribute__ ((__nonnull__ (1))); extern int fchdir (int __fd) throw (); # 448 "/usr/include/unistd.h" 3 4 extern char *getcwd (char *__buf, size_t __size) throw (); extern char *get_current_dir_name (void) throw (); extern char *getwd (char *__buf) throw () __attribute__ ((__nonnull__ (1))); extern int dup (int __fd) throw (); extern int dup2 (int __fd, int __fd2) throw (); extern char **__environ; extern char **environ; extern int execve (__const char *__path, char *__const __argv[], char *__const __envp[]) throw () __attribute__ ((__nonnull__ (1))); extern int fexecve (int __fd, char *__const __argv[], char *__const __envp[]) throw (); extern int execv (__const char *__path, char *__const __argv[]) throw () __attribute__ ((__nonnull__ (1))); extern int execle (__const char *__path, __const char *__arg, ...) throw () __attribute__ ((__nonnull__ (1))); extern int execl (__const char *__path, __const char *__arg, ...) throw () __attribute__ ((__nonnull__ (1))); extern int execvp (__const char *__file, char *__const __argv[]) throw () __attribute__ ((__nonnull__ (1))); extern int execlp (__const char *__file, __const char *__arg, ...) throw () __attribute__ ((__nonnull__ (1))); extern int nice (int __inc) throw (); extern void _exit (int __status) __attribute__ ((__noreturn__)); # 1 "/usr/include/bits/confname.h" 1 3 4 # 26 "/usr/include/bits/confname.h" 3 4 enum { _PC_LINK_MAX, _PC_MAX_CANON, _PC_MAX_INPUT, _PC_NAME_MAX, _PC_PATH_MAX, _PC_PIPE_BUF, _PC_CHOWN_RESTRICTED, _PC_NO_TRUNC, _PC_VDISABLE, _PC_SYNC_IO, _PC_ASYNC_IO, _PC_PRIO_IO, _PC_SOCK_MAXBUF, _PC_FILESIZEBITS, _PC_REC_INCR_XFER_SIZE, _PC_REC_MAX_XFER_SIZE, _PC_REC_MIN_XFER_SIZE, _PC_REC_XFER_ALIGN, _PC_ALLOC_SIZE_MIN, _PC_SYMLINK_MAX, _PC_2_SYMLINKS }; enum { _SC_ARG_MAX, _SC_CHILD_MAX, _SC_CLK_TCK, _SC_NGROUPS_MAX, _SC_OPEN_MAX, _SC_STREAM_MAX, _SC_TZNAME_MAX, _SC_JOB_CONTROL, _SC_SAVED_IDS, _SC_REALTIME_SIGNALS, _SC_PRIORITY_SCHEDULING, _SC_TIMERS, _SC_ASYNCHRONOUS_IO, _SC_PRIORITIZED_IO, _SC_SYNCHRONIZED_IO, _SC_FSYNC, _SC_MAPPED_FILES, _SC_MEMLOCK, _SC_MEMLOCK_RANGE, _SC_MEMORY_PROTECTION, _SC_MESSAGE_PASSING, _SC_SEMAPHORES, _SC_SHARED_MEMORY_OBJECTS, _SC_AIO_LISTIO_MAX, _SC_AIO_MAX, _SC_AIO_PRIO_DELTA_MAX, _SC_DELAYTIMER_MAX, _SC_MQ_OPEN_MAX, _SC_MQ_PRIO_MAX, _SC_VERSION, _SC_PAGESIZE, _SC_RTSIG_MAX, _SC_SEM_NSEMS_MAX, _SC_SEM_VALUE_MAX, _SC_SIGQUEUE_MAX, _SC_TIMER_MAX, _SC_BC_BASE_MAX, _SC_BC_DIM_MAX, _SC_BC_SCALE_MAX, _SC_BC_STRING_MAX, _SC_COLL_WEIGHTS_MAX, _SC_EQUIV_CLASS_MAX, _SC_EXPR_NEST_MAX, _SC_LINE_MAX, _SC_RE_DUP_MAX, _SC_CHARCLASS_NAME_MAX, _SC_2_VERSION, _SC_2_C_BIND, _SC_2_C_DEV, _SC_2_FORT_DEV, _SC_2_FORT_RUN, _SC_2_SW_DEV, _SC_2_LOCALEDEF, _SC_PII, _SC_PII_XTI, _SC_PII_SOCKET, _SC_PII_INTERNET, _SC_PII_OSI, _SC_POLL, _SC_SELECT, _SC_UIO_MAXIOV, _SC_IOV_MAX = _SC_UIO_MAXIOV, _SC_PII_INTERNET_STREAM, _SC_PII_INTERNET_DGRAM, _SC_PII_OSI_COTS, _SC_PII_OSI_CLTS, _SC_PII_OSI_M, _SC_T_IOV_MAX, _SC_THREADS, _SC_THREAD_SAFE_FUNCTIONS, _SC_GETGR_R_SIZE_MAX, _SC_GETPW_R_SIZE_MAX, _SC_LOGIN_NAME_MAX, _SC_TTY_NAME_MAX, _SC_THREAD_DESTRUCTOR_ITERATIONS, _SC_THREAD_KEYS_MAX, _SC_THREAD_STACK_MIN, _SC_THREAD_THREADS_MAX, _SC_THREAD_ATTR_STACKADDR, _SC_THREAD_ATTR_STACKSIZE, _SC_THREAD_PRIORITY_SCHEDULING, _SC_THREAD_PRIO_INHERIT, _SC_THREAD_PRIO_PROTECT, _SC_THREAD_PROCESS_SHARED, _SC_NPROCESSORS_CONF, _SC_NPROCESSORS_ONLN, _SC_PHYS_PAGES, _SC_AVPHYS_PAGES, _SC_ATEXIT_MAX, _SC_PASS_MAX, _SC_XOPEN_VERSION, _SC_XOPEN_XCU_VERSION, _SC_XOPEN_UNIX, _SC_XOPEN_CRYPT, _SC_XOPEN_ENH_I18N, _SC_XOPEN_SHM, _SC_2_CHAR_TERM, _SC_2_C_VERSION, _SC_2_UPE, _SC_XOPEN_XPG2, _SC_XOPEN_XPG3, _SC_XOPEN_XPG4, _SC_CHAR_BIT, _SC_CHAR_MAX, _SC_CHAR_MIN, _SC_INT_MAX, _SC_INT_MIN, _SC_LONG_BIT, _SC_WORD_BIT, _SC_MB_LEN_MAX, _SC_NZERO, _SC_SSIZE_MAX, _SC_SCHAR_MAX, _SC_SCHAR_MIN, _SC_SHRT_MAX, _SC_SHRT_MIN, _SC_UCHAR_MAX, _SC_UINT_MAX, _SC_ULONG_MAX, _SC_USHRT_MAX, _SC_NL_ARGMAX, _SC_NL_LANGMAX, _SC_NL_MSGMAX, _SC_NL_NMAX, _SC_NL_SETMAX, _SC_NL_TEXTMAX, _SC_XBS5_ILP32_OFF32, _SC_XBS5_ILP32_OFFBIG, _SC_XBS5_LP64_OFF64, _SC_XBS5_LPBIG_OFFBIG, _SC_XOPEN_LEGACY, _SC_XOPEN_REALTIME, _SC_XOPEN_REALTIME_THREADS, _SC_ADVISORY_INFO, _SC_BARRIERS, _SC_BASE, _SC_C_LANG_SUPPORT, _SC_C_LANG_SUPPORT_R, _SC_CLOCK_SELECTION, _SC_CPUTIME, _SC_THREAD_CPUTIME, _SC_DEVICE_IO, _SC_DEVICE_SPECIFIC, _SC_DEVICE_SPECIFIC_R, _SC_FD_MGMT, _SC_FIFO, _SC_PIPE, _SC_FILE_ATTRIBUTES, _SC_FILE_LOCKING, _SC_FILE_SYSTEM, _SC_MONOTONIC_CLOCK, _SC_MULTI_PROCESS, _SC_SINGLE_PROCESS, _SC_NETWORKING, _SC_READER_WRITER_LOCKS, _SC_SPIN_LOCKS, _SC_REGEXP, _SC_REGEX_VERSION, _SC_SHELL, _SC_SIGNALS, _SC_SPAWN, _SC_SPORADIC_SERVER, _SC_THREAD_SPORADIC_SERVER, _SC_SYSTEM_DATABASE, _SC_SYSTEM_DATABASE_R, _SC_TIMEOUTS, _SC_TYPED_MEMORY_OBJECTS, _SC_USER_GROUPS, _SC_USER_GROUPS_R, _SC_2_PBS, _SC_2_PBS_ACCOUNTING, _SC_2_PBS_LOCATE, _SC_2_PBS_MESSAGE, _SC_2_PBS_TRACK, _SC_SYMLOOP_MAX, _SC_STREAMS, _SC_2_PBS_CHECKPOINT, _SC_V6_ILP32_OFF32, _SC_V6_ILP32_OFFBIG, _SC_V6_LP64_OFF64, _SC_V6_LPBIG_OFFBIG, _SC_HOST_NAME_MAX, _SC_TRACE, _SC_TRACE_EVENT_FILTER, _SC_TRACE_INHERIT, _SC_TRACE_LOG, _SC_LEVEL1_ICACHE_SIZE, _SC_LEVEL1_ICACHE_ASSOC, _SC_LEVEL1_ICACHE_LINESIZE, _SC_LEVEL1_DCACHE_SIZE, _SC_LEVEL1_DCACHE_ASSOC, _SC_LEVEL1_DCACHE_LINESIZE, _SC_LEVEL2_CACHE_SIZE, _SC_LEVEL2_CACHE_ASSOC, _SC_LEVEL2_CACHE_LINESIZE, _SC_LEVEL3_CACHE_SIZE, _SC_LEVEL3_CACHE_ASSOC, _SC_LEVEL3_CACHE_LINESIZE, _SC_LEVEL4_CACHE_SIZE, _SC_LEVEL4_CACHE_ASSOC, _SC_LEVEL4_CACHE_LINESIZE, _SC_IPV6 = _SC_LEVEL1_ICACHE_SIZE + 50, _SC_RAW_SOCKETS }; enum { _CS_PATH, _CS_V6_WIDTH_RESTRICTED_ENVS, _CS_GNU_LIBC_VERSION, _CS_GNU_LIBPTHREAD_VERSION, _CS_LFS_CFLAGS = 1000, _CS_LFS_LDFLAGS, _CS_LFS_LIBS, _CS_LFS_LINTFLAGS, _CS_LFS64_CFLAGS, _CS_LFS64_LDFLAGS, _CS_LFS64_LIBS, _CS_LFS64_LINTFLAGS, _CS_XBS5_ILP32_OFF32_CFLAGS = 1100, _CS_XBS5_ILP32_OFF32_LDFLAGS, _CS_XBS5_ILP32_OFF32_LIBS, _CS_XBS5_ILP32_OFF32_LINTFLAGS, _CS_XBS5_ILP32_OFFBIG_CFLAGS, _CS_XBS5_ILP32_OFFBIG_LDFLAGS, _CS_XBS5_ILP32_OFFBIG_LIBS, _CS_XBS5_ILP32_OFFBIG_LINTFLAGS, _CS_XBS5_LP64_OFF64_CFLAGS, _CS_XBS5_LP64_OFF64_LDFLAGS, _CS_XBS5_LP64_OFF64_LIBS, _CS_XBS5_LP64_OFF64_LINTFLAGS, _CS_XBS5_LPBIG_OFFBIG_CFLAGS, _CS_XBS5_LPBIG_OFFBIG_LDFLAGS, _CS_XBS5_LPBIG_OFFBIG_LIBS, _CS_XBS5_LPBIG_OFFBIG_LINTFLAGS, _CS_POSIX_V6_ILP32_OFF32_CFLAGS, _CS_POSIX_V6_ILP32_OFF32_LDFLAGS, _CS_POSIX_V6_ILP32_OFF32_LIBS, _CS_POSIX_V6_ILP32_OFF32_LINTFLAGS, _CS_POSIX_V6_ILP32_OFFBIG_CFLAGS, _CS_POSIX_V6_ILP32_OFFBIG_LDFLAGS, _CS_POSIX_V6_ILP32_OFFBIG_LIBS, _CS_POSIX_V6_ILP32_OFFBIG_LINTFLAGS, _CS_POSIX_V6_LP64_OFF64_CFLAGS, _CS_POSIX_V6_LP64_OFF64_LDFLAGS, _CS_POSIX_V6_LP64_OFF64_LIBS, _CS_POSIX_V6_LP64_OFF64_LINTFLAGS, _CS_POSIX_V6_LPBIG_OFFBIG_CFLAGS, _CS_POSIX_V6_LPBIG_OFFBIG_LDFLAGS, _CS_POSIX_V6_LPBIG_OFFBIG_LIBS, _CS_POSIX_V6_LPBIG_OFFBIG_LINTFLAGS }; # 531 "/usr/include/unistd.h" 2 3 4 extern long int pathconf (__const char *__path, int __name) throw () __attribute__ ((__nonnull__ (1))); extern long int fpathconf (int __fd, int __name) throw (); extern long int sysconf (int __name) throw () __attribute__ ((__const__)); extern size_t confstr (int __name, char *__buf, size_t __len) throw (); extern __pid_t getpid (void) throw (); extern __pid_t getppid (void) throw (); extern __pid_t getpgrp (void) throw (); # 567 "/usr/include/unistd.h" 3 4 extern __pid_t __getpgid (__pid_t __pid) throw (); extern __pid_t getpgid (__pid_t __pid) throw (); extern int setpgid (__pid_t __pid, __pid_t __pgid) throw (); # 593 "/usr/include/unistd.h" 3 4 extern int setpgrp (void) throw (); # 610 "/usr/include/unistd.h" 3 4 extern __pid_t setsid (void) throw (); extern __pid_t getsid (__pid_t __pid) throw (); extern __uid_t getuid (void) throw (); extern __uid_t geteuid (void) throw (); extern __gid_t getgid (void) throw (); extern __gid_t getegid (void) throw (); extern int getgroups (int __size, __gid_t __list[]) throw (); extern int group_member (__gid_t __gid) throw (); extern int setuid (__uid_t __uid) throw (); extern int setreuid (__uid_t __ruid, __uid_t __euid) throw (); extern int seteuid (__uid_t __uid) throw (); extern int setgid (__gid_t __gid) throw (); extern int setregid (__gid_t __rgid, __gid_t __egid) throw (); extern int setegid (__gid_t __gid) throw (); extern int getresuid (__uid_t *__euid, __uid_t *__ruid, __uid_t *__suid); extern int getresgid (__gid_t *__egid, __gid_t *__rgid, __gid_t *__sgid); extern int setresuid (__uid_t __euid, __uid_t __ruid, __uid_t __suid); extern int setresgid (__gid_t __egid, __gid_t __rgid, __gid_t __sgid); extern __pid_t fork (void) throw (); extern __pid_t vfork (void) throw (); extern char *ttyname (int __fd) throw (); extern int ttyname_r (int __fd, char *__buf, size_t __buflen) throw () __attribute__ ((__nonnull__ (2))); extern int isatty (int __fd) throw (); extern int ttyslot (void) throw (); extern int link (__const char *__from, __const char *__to) throw () __attribute__ ((__nonnull__ (1, 2))); extern int symlink (__const char *__from, __const char *__to) throw () __attribute__ ((__nonnull__ (1, 2))); extern int readlink (__const char *__restrict __path, char *__restrict __buf, size_t __len) throw () __attribute__ ((__nonnull__ (1, 2))); extern int unlink (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); extern int rmdir (__const char *__path) throw () __attribute__ ((__nonnull__ (1))); extern __pid_t tcgetpgrp (int __fd) throw (); extern int tcsetpgrp (int __fd, __pid_t __pgrp_id) throw (); extern char *getlogin (void); extern int getlogin_r (char *__name, size_t __name_len) __attribute__ ((__nonnull__ (1))); extern int setlogin (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); # 783 "/usr/include/unistd.h" 3 4 # 1 "/usr/include/getopt.h" 1 3 4 # 50 "/usr/include/getopt.h" 3 4 extern "C" { # 59 "/usr/include/getopt.h" 3 4 extern char *optarg; # 73 "/usr/include/getopt.h" 3 4 extern int optind; extern int opterr; extern int optopt; # 152 "/usr/include/getopt.h" 3 4 extern int getopt (int ___argc, char *const *___argv, const char *__shortopts) throw (); # 171 "/usr/include/getopt.h" 3 4 } # 784 "/usr/include/unistd.h" 2 3 4 extern int gethostname (char *__name, size_t __len) throw () __attribute__ ((__nonnull__ (1))); extern int sethostname (__const char *__name, size_t __len) throw () __attribute__ ((__nonnull__ (1))); extern int sethostid (long int __id) throw (); extern int getdomainname (char *__name, size_t __len) throw () __attribute__ ((__nonnull__ (1))); extern int setdomainname (__const char *__name, size_t __len) throw () __attribute__ ((__nonnull__ (1))); extern int vhangup (void) throw (); extern int revoke (__const char *__file) throw () __attribute__ ((__nonnull__ (1))); extern int profil (unsigned short int *__sample_buffer, size_t __size, size_t __offset, unsigned int __scale) throw () __attribute__ ((__nonnull__ (1))); extern int acct (__const char *__name) throw () __attribute__ ((__nonnull__ (1))); extern char *getusershell (void) throw (); extern void endusershell (void) throw (); extern void setusershell (void) throw (); extern int daemon (int __nochdir, int __noclose) throw (); extern int chroot (__const char *__path) throw () __attribute__ ((__nonnull__ (1))); extern char *getpass (__const char *__prompt) __attribute__ ((__nonnull__ (1))); # 869 "/usr/include/unistd.h" 3 4 extern int fsync (int __fd); extern long int gethostid (void); extern void sync (void) throw (); extern int getpagesize (void) throw () __attribute__ ((__const__)); extern int getdtablesize (void) throw (); extern int truncate (__const char *__file, __off_t __length) throw () __attribute__ ((__nonnull__ (1))); # 906 "/usr/include/unistd.h" 3 4 extern int truncate64 (__const char *__file, __off64_t __length) throw () __attribute__ ((__nonnull__ (1))); # 916 "/usr/include/unistd.h" 3 4 extern int ftruncate (int __fd, __off_t __length) throw (); # 926 "/usr/include/unistd.h" 3 4 extern int ftruncate64 (int __fd, __off64_t __length) throw (); # 936 "/usr/include/unistd.h" 3 4 extern int brk (void *__addr) throw (); extern void *sbrk (intptr_t __delta) throw (); # 957 "/usr/include/unistd.h" 3 4 extern long int syscall (long int __sysno, ...) throw (); # 980 "/usr/include/unistd.h" 3 4 extern int lockf (int __fd, int __cmd, __off_t __len); # 990 "/usr/include/unistd.h" 3 4 extern int lockf64 (int __fd, int __cmd, __off64_t __len); # 1011 "/usr/include/unistd.h" 3 4 extern int fdatasync (int __fildes) throw (); extern char *crypt (__const char *__key, __const char *__salt) throw () __attribute__ ((__nonnull__ (1, 2))); extern void encrypt (char *__block, int __edflag) throw () __attribute__ ((__nonnull__ (1))); extern void swab (__const void *__restrict __from, void *__restrict __to, ssize_t __n) throw () __attribute__ ((__nonnull__ (1, 2))); extern char *ctermid (char *__s) throw () __attribute__ ((__nonnull__ (1))); } # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 2 3 typedef pthread_key_t __gthread_key_t; typedef pthread_once_t __gthread_once_t; typedef pthread_mutex_t __gthread_mutex_t; #pragma weak pthread_once #pragma weak pthread_key_create #pragma weak pthread_key_delete #pragma weak pthread_getspecific #pragma weak pthread_setspecific #pragma weak pthread_create #pragma weak pthread_mutex_lock #pragma weak pthread_mutex_trylock #pragma weak pthread_mutex_unlock # 93 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 3 static inline int __gthread_active_p (void) { static void *const __gthread_active_ptr = (void *) &pthread_create; return __gthread_active_ptr != 0; } # 455 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr-default.h" 3 static inline int __gthread_once (__gthread_once_t *once, void (*func) (void)) { if (__gthread_active_p ()) return pthread_once (once, func); else return -1; } static inline int __gthread_key_create (__gthread_key_t *key, void (*dtor) (void *)) { return pthread_key_create (key, dtor); } static inline int __gthread_key_delete (__gthread_key_t key) { return pthread_key_delete (key); } static inline void * __gthread_getspecific (__gthread_key_t key) { return pthread_getspecific (key); } static inline int __gthread_setspecific (__gthread_key_t key, const void *ptr) { return pthread_setspecific (key, ptr); } static inline int __gthread_mutex_lock (__gthread_mutex_t *mutex) { if (__gthread_active_p ()) return pthread_mutex_lock (mutex); else return 0; } static inline int __gthread_mutex_trylock (__gthread_mutex_t *mutex) { if (__gthread_active_p ()) return pthread_mutex_trylock (mutex); else return 0; } static inline int __gthread_mutex_unlock (__gthread_mutex_t *mutex) { if (__gthread_active_p ()) return pthread_mutex_unlock (mutex); else return 0; } # 97 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/gthr.h" 2 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++io.h" 2 3 namespace std { typedef __gthread_mutex_t __c_lock; typedef FILE __c_file; struct __ios_flags { typedef short __int_type; static const __int_type _S_boolalpha = 0x0001; static const __int_type _S_dec = 0x0002; static const __int_type _S_fixed = 0x0004; static const __int_type _S_hex = 0x0008; static const __int_type _S_internal = 0x0010; static const __int_type _S_left = 0x0020; static const __int_type _S_oct = 0x0040; static const __int_type _S_right = 0x0080; static const __int_type _S_scientific = 0x0100; static const __int_type _S_showbase = 0x0200; static const __int_type _S_showpoint = 0x0400; static const __int_type _S_showpos = 0x0800; static const __int_type _S_skipws = 0x1000; static const __int_type _S_unitbuf = 0x2000; static const __int_type _S_uppercase = 0x4000; static const __int_type _S_adjustfield = 0x0020 | 0x0080 | 0x0010; static const __int_type _S_basefield = 0x0002 | 0x0040 | 0x0008; static const __int_type _S_floatfield = 0x0100 | 0x0004; static const __int_type _S_badbit = 0x01; static const __int_type _S_eofbit = 0x02; static const __int_type _S_failbit = 0x04; static const __int_type _S_app = 0x01; static const __int_type _S_ate = 0x02; static const __int_type _S_bin = 0x04; static const __int_type _S_in = 0x08; static const __int_type _S_out = 0x10; static const __int_type _S_trunc = 0x20; }; } # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cctype" 1 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cctype" 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cctype" 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cctype" 3 namespace std { using ::isalnum; using ::isalpha; using ::iscntrl; using ::isdigit; using ::isgraph; using ::islower; using ::isprint; using ::ispunct; using ::isspace; using ::isupper; using ::isxdigit; using ::tolower; using ::toupper; } # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 1 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 3 # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ctime" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ctime" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ctime" 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ctime" 3 namespace std { using ::clock_t; using ::time_t; using ::tm; using ::clock; using ::difftime; using ::mktime; using ::time; using ::asctime; using ::ctime; using ::gmtime; using ::localtime; using ::strftime; } # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 2 3 # 1 "/usr/include/wchar.h" 1 3 4 # 40 "/usr/include/wchar.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stdarg.h" 1 3 4 # 41 "/usr/include/wchar.h" 2 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 49 "/usr/include/wchar.h" 2 3 4 # 93 "/usr/include/wchar.h" 3 4 typedef __mbstate_t mbstate_t; # 118 "/usr/include/wchar.h" 3 4 extern "C" { struct tm; # 133 "/usr/include/wchar.h" 3 4 extern wchar_t *wcscpy (wchar_t *__restrict __dest, __const wchar_t *__restrict __src) throw (); extern wchar_t *wcsncpy (wchar_t *__restrict __dest, __const wchar_t *__restrict __src, size_t __n) throw (); extern wchar_t *wcscat (wchar_t *__restrict __dest, __const wchar_t *__restrict __src) throw (); extern wchar_t *wcsncat (wchar_t *__restrict __dest, __const wchar_t *__restrict __src, size_t __n) throw (); extern int wcscmp (__const wchar_t *__s1, __const wchar_t *__s2) throw () __attribute__ ((__pure__)); extern int wcsncmp (__const wchar_t *__s1, __const wchar_t *__s2, size_t __n) throw () __attribute__ ((__pure__)); extern int wcscasecmp (__const wchar_t *__s1, __const wchar_t *__s2) throw (); extern int wcsncasecmp (__const wchar_t *__s1, __const wchar_t *__s2, size_t __n) throw (); extern int wcscasecmp_l (__const wchar_t *__s1, __const wchar_t *__s2, __locale_t __loc) throw (); extern int wcsncasecmp_l (__const wchar_t *__s1, __const wchar_t *__s2, size_t __n, __locale_t __loc) throw (); extern int wcscoll (__const wchar_t *__s1, __const wchar_t *__s2) throw (); extern size_t wcsxfrm (wchar_t *__restrict __s1, __const wchar_t *__restrict __s2, size_t __n) throw (); # 192 "/usr/include/wchar.h" 3 4 extern int wcscoll_l (__const wchar_t *__s1, __const wchar_t *__s2, __locale_t __loc) throw (); extern size_t wcsxfrm_l (wchar_t *__s1, __const wchar_t *__s2, size_t __n, __locale_t __loc) throw (); extern wchar_t *wcsdup (__const wchar_t *__s) throw () __attribute__ ((__malloc__)); extern wchar_t *wcschr (__const wchar_t *__wcs, wchar_t __wc) throw () __attribute__ ((__pure__)); extern wchar_t *wcsrchr (__const wchar_t *__wcs, wchar_t __wc) throw () __attribute__ ((__pure__)); extern wchar_t *wcschrnul (__const wchar_t *__s, wchar_t __wc) throw () __attribute__ ((__pure__)); extern size_t wcscspn (__const wchar_t *__wcs, __const wchar_t *__reject) throw () __attribute__ ((__pure__)); extern size_t wcsspn (__const wchar_t *__wcs, __const wchar_t *__accept) throw () __attribute__ ((__pure__)); extern wchar_t *wcspbrk (__const wchar_t *__wcs, __const wchar_t *__accept) throw () __attribute__ ((__pure__)); extern wchar_t *wcsstr (__const wchar_t *__haystack, __const wchar_t *__needle) throw () __attribute__ ((__pure__)); extern wchar_t *wcstok (wchar_t *__restrict __s, __const wchar_t *__restrict __delim, wchar_t **__restrict __ptr) throw (); extern size_t wcslen (__const wchar_t *__s) throw () __attribute__ ((__pure__)); extern wchar_t *wcswcs (__const wchar_t *__haystack, __const wchar_t *__needle) throw () __attribute__ ((__pure__)); extern size_t wcsnlen (__const wchar_t *__s, size_t __maxlen) throw () __attribute__ ((__pure__)); extern wchar_t *wmemchr (__const wchar_t *__s, wchar_t __c, size_t __n) throw () __attribute__ ((__pure__)); extern int wmemcmp (__const wchar_t *__restrict __s1, __const wchar_t *__restrict __s2, size_t __n) throw () __attribute__ ((__pure__)); extern wchar_t *wmemcpy (wchar_t *__restrict __s1, __const wchar_t *__restrict __s2, size_t __n) throw (); extern wchar_t *wmemmove (wchar_t *__s1, __const wchar_t *__s2, size_t __n) throw (); extern wchar_t *wmemset (wchar_t *__s, wchar_t __c, size_t __n) throw (); extern wchar_t *wmempcpy (wchar_t *__restrict __s1, __const wchar_t *__restrict __s2, size_t __n) throw (); extern wint_t btowc (int __c) throw (); extern int wctob (wint_t __c) throw (); extern int mbsinit (__const mbstate_t *__ps) throw () __attribute__ ((__pure__)); extern size_t mbrtowc (wchar_t *__restrict __pwc, __const char *__restrict __s, size_t __n, mbstate_t *__p) throw (); extern size_t wcrtomb (char *__restrict __s, wchar_t __wc, mbstate_t *__restrict __ps) throw (); extern size_t __mbrlen (__const char *__restrict __s, size_t __n, mbstate_t *__restrict __ps) throw (); extern size_t mbrlen (__const char *__restrict __s, size_t __n, mbstate_t *__restrict __ps) throw (); extern __inline size_t mbrlen (__const char *__restrict __s, size_t __n, mbstate_t *__restrict __ps) throw () { return (__ps != __null ? mbrtowc (__null, __s, __n, __ps) : __mbrlen (__s, __n, __null)); } extern size_t mbsrtowcs (wchar_t *__restrict __dst, __const char **__restrict __src, size_t __len, mbstate_t *__restrict __ps) throw (); extern size_t wcsrtombs (char *__restrict __dst, __const wchar_t **__restrict __src, size_t __len, mbstate_t *__restrict __ps) throw (); extern size_t mbsnrtowcs (wchar_t *__restrict __dst, __const char **__restrict __src, size_t __nmc, size_t __len, mbstate_t *__restrict __ps) throw (); extern size_t wcsnrtombs (char *__restrict __dst, __const wchar_t **__restrict __src, size_t __nwc, size_t __len, mbstate_t *__restrict __ps) throw (); extern int wcwidth (wchar_t __c) throw (); extern int wcswidth (__const wchar_t *__s, size_t __n) throw (); extern double wcstod (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw (); extern float wcstof (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw (); extern long double wcstold (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw (); extern long int wcstol (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); extern unsigned long int wcstoul (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); __extension__ extern long long int wcstoll (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); __extension__ extern unsigned long long int wcstoull (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); __extension__ extern long long int wcstoq (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); __extension__ extern unsigned long long int wcstouq (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw (); # 449 "/usr/include/wchar.h" 3 4 extern long int wcstol_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, __locale_t __loc) throw (); extern unsigned long int wcstoul_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, __locale_t __loc) throw (); __extension__ extern long long int wcstoll_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, __locale_t __loc) throw (); __extension__ extern unsigned long long int wcstoull_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, __locale_t __loc) throw (); extern double wcstod_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, __locale_t __loc) throw (); extern float wcstof_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, __locale_t __loc) throw (); extern long double wcstold_l (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, __locale_t __loc) throw (); extern double __wcstod_internal (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __group) throw (); extern float __wcstof_internal (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __group) throw (); extern long double __wcstold_internal (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __group) throw (); extern long int __wcstol_internal (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, int __group) throw (); extern unsigned long int __wcstoul_internal (__const wchar_t *__restrict __npt, wchar_t **__restrict __endptr, int __base, int __group) throw (); __extension__ extern long long int __wcstoll_internal (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base, int __group) throw (); __extension__ extern unsigned long long int __wcstoull_internal (__const wchar_t * __restrict __nptr, wchar_t ** __restrict __endptr, int __base, int __group) throw (); # 529 "/usr/include/wchar.h" 3 4 extern __inline double wcstod (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw () { return __wcstod_internal (__nptr, __endptr, 0); } extern __inline long int wcstol (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw () { return __wcstol_internal (__nptr, __endptr, __base, 0); } extern __inline unsigned long int wcstoul (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw () { return __wcstoul_internal (__nptr, __endptr, __base, 0); } extern __inline float wcstof (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw () { return __wcstof_internal (__nptr, __endptr, 0); } extern __inline long double wcstold (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr) throw () { return __wcstold_internal (__nptr, __endptr, 0); } __extension__ extern __inline long long int wcstoq (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw () { return __wcstoll_internal (__nptr, __endptr, __base, 0); } __extension__ extern __inline unsigned long long int wcstouq (__const wchar_t *__restrict __nptr, wchar_t **__restrict __endptr, int __base) throw () { return __wcstoull_internal (__nptr, __endptr, __base, 0); } extern wchar_t *wcpcpy (wchar_t *__dest, __const wchar_t *__src) throw (); extern wchar_t *wcpncpy (wchar_t *__dest, __const wchar_t *__src, size_t __n) throw (); # 585 "/usr/include/wchar.h" 3 4 extern int fwide (__FILE *__fp, int __mode) throw (); extern int fwprintf (__FILE *__restrict __stream, __const wchar_t *__restrict __format, ...) ; extern int wprintf (__const wchar_t *__restrict __format, ...) ; extern int swprintf (wchar_t *__restrict __s, size_t __n, __const wchar_t *__restrict __format, ...) throw () ; extern int vfwprintf (__FILE *__restrict __s, __const wchar_t *__restrict __format, __gnuc_va_list __arg) ; extern int vwprintf (__const wchar_t *__restrict __format, __gnuc_va_list __arg) ; extern int vswprintf (wchar_t *__restrict __s, size_t __n, __const wchar_t *__restrict __format, __gnuc_va_list __arg) throw () ; extern int fwscanf (__FILE *__restrict __stream, __const wchar_t *__restrict __format, ...) ; extern int wscanf (__const wchar_t *__restrict __format, ...) ; extern int swscanf (__const wchar_t *__restrict __s, __const wchar_t *__restrict __format, ...) throw () ; # 657 "/usr/include/wchar.h" 3 4 extern int vfwscanf (__FILE *__restrict __s, __const wchar_t *__restrict __format, __gnuc_va_list __arg) ; extern int vwscanf (__const wchar_t *__restrict __format, __gnuc_va_list __arg) ; extern int vswscanf (__const wchar_t *__restrict __s, __const wchar_t *__restrict __format, __gnuc_va_list __arg) throw () ; # 683 "/usr/include/wchar.h" 3 4 extern wint_t fgetwc (__FILE *__stream); extern wint_t getwc (__FILE *__stream); extern wint_t getwchar (void); extern wint_t fputwc (wchar_t __wc, __FILE *__stream); extern wint_t putwc (wchar_t __wc, __FILE *__stream); extern wint_t putwchar (wchar_t __wc); extern wchar_t *fgetws (wchar_t *__restrict __ws, int __n, __FILE *__restrict __stream); extern int fputws (__const wchar_t *__restrict __ws, __FILE *__restrict __stream); extern wint_t ungetwc (wint_t __wc, __FILE *__stream); # 739 "/usr/include/wchar.h" 3 4 extern wint_t getwc_unlocked (__FILE *__stream); extern wint_t getwchar_unlocked (void); extern wint_t fgetwc_unlocked (__FILE *__stream); extern wint_t fputwc_unlocked (wchar_t __wc, __FILE *__stream); # 765 "/usr/include/wchar.h" 3 4 extern wint_t putwc_unlocked (wchar_t __wc, __FILE *__stream); extern wint_t putwchar_unlocked (wchar_t __wc); # 775 "/usr/include/wchar.h" 3 4 extern wchar_t *fgetws_unlocked (wchar_t *__restrict __ws, int __n, __FILE *__restrict __stream); extern int fputws_unlocked (__const wchar_t *__restrict __ws, __FILE *__restrict __stream); extern size_t wcsftime (wchar_t *__restrict __s, size_t __maxsize, __const wchar_t *__restrict __format, __const struct tm *__restrict __tp) throw (); extern size_t wcsftime_l (wchar_t *__restrict __s, size_t __maxsize, __const wchar_t *__restrict __format, __const struct tm *__restrict __tp, __locale_t __loc) throw (); # 820 "/usr/include/wchar.h" 3 4 } # 55 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 2 3 # 69 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 3 namespace std { using ::mbstate_t; } # 141 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 3 namespace std { using ::wint_t; using ::btowc; using ::fgetwc; using ::fgetws; using ::fputwc; using ::fputws; using ::fwide; using ::fwprintf; using ::fwscanf; using ::getwc; using ::getwchar; using ::mbrlen; using ::mbrtowc; using ::mbsinit; using ::mbsrtowcs; using ::putwc; using ::putwchar; using ::swprintf; using ::swscanf; using ::ungetwc; using ::vfwprintf; using ::vfwscanf; using ::vswprintf; using ::vswscanf; using ::vwprintf; using ::vwscanf; using ::wcrtomb; using ::wcscat; using ::wcscmp; using ::wcscoll; using ::wcscpy; using ::wcscspn; using ::wcsftime; using ::wcslen; using ::wcsncat; using ::wcsncmp; using ::wcsncpy; using ::wcsrtombs; using ::wcsspn; using ::wcstod; using ::wcstof; using ::wcstok; using ::wcstol; using ::wcstoul; using ::wcsxfrm; using ::wctob; using ::wmemcmp; using ::wmemcpy; using ::wmemmove; using ::wmemset; using ::wprintf; using ::wscanf; using ::wcschr; inline wchar_t* wcschr(wchar_t* __p, wchar_t __c) { return wcschr(const_cast(__p), __c); } using ::wcspbrk; inline wchar_t* wcspbrk(wchar_t* __s1, wchar_t* __s2) { return wcspbrk(const_cast(__s1), __s2); } using ::wcsrchr; inline wchar_t* wcsrchr(wchar_t* __p, wchar_t __c) { return wcsrchr(const_cast(__p), __c); } using ::wcsstr; inline wchar_t* wcsstr(wchar_t* __s1, const wchar_t* __s2) { return wcsstr(const_cast(__s1), __s2); } using ::wmemchr; inline wchar_t* wmemchr(wchar_t* __p, wchar_t __c, size_t __n) { return wmemchr(const_cast(__p), __c, __n); } } namespace __gnu_cxx { using ::wcstold; # 260 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwchar" 3 using ::wcstoll; using ::wcstoull; } namespace std { using __gnu_cxx::wcstold; using __gnu_cxx::wcstoll; using __gnu_cxx::wcstoull; } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 2 3 # 1 "/usr/include/stdint.h" 1 3 4 # 28 "/usr/include/stdint.h" 3 4 # 1 "/usr/include/bits/wordsize.h" 1 3 4 # 29 "/usr/include/stdint.h" 2 3 4 # 49 "/usr/include/stdint.h" 3 4 typedef unsigned char uint8_t; typedef unsigned short int uint16_t; typedef unsigned int uint32_t; __extension__ typedef unsigned long long int uint64_t; typedef signed char int_least8_t; typedef short int int_least16_t; typedef int int_least32_t; __extension__ typedef long long int int_least64_t; typedef unsigned char uint_least8_t; typedef unsigned short int uint_least16_t; typedef unsigned int uint_least32_t; __extension__ typedef unsigned long long int uint_least64_t; typedef signed char int_fast8_t; typedef int int_fast16_t; typedef int int_fast32_t; __extension__ typedef long long int int_fast64_t; typedef unsigned char uint_fast8_t; typedef unsigned int uint_fast16_t; typedef unsigned int uint_fast32_t; __extension__ typedef unsigned long long int uint_fast64_t; # 129 "/usr/include/stdint.h" 3 4 typedef unsigned int uintptr_t; # 138 "/usr/include/stdint.h" 3 4 __extension__ typedef long long int intmax_t; __extension__ typedef unsigned long long int uintmax_t; # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 2 3 namespace std { # 72 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 3 typedef int64_t streamoff; typedef ptrdiff_t streamsize; template class fpos; # 94 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 3 template class fpos { private: streamoff _M_off; _StateT _M_state; public: fpos() : _M_off(0), _M_state() { } # 116 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/postypes.h" 3 fpos(streamoff __off) : _M_off(__off), _M_state() { } operator streamoff() const { return _M_off; } void state(_StateT __st) { _M_state = __st; } _StateT state() const { return _M_state; } bool operator==(const fpos& __other) const { return _M_off == __other._M_off; } bool operator!=(const fpos& __other) const { return _M_off != __other._M_off; } fpos& operator+=(streamoff __off) { _M_off += __off; return *this; } fpos& operator-=(streamoff __off) { _M_off -= __off; return *this; } fpos operator+(streamoff __off) const { fpos __pos(*this); __pos += __off; return __pos; } fpos operator-(streamoff __off) const { fpos __pos(*this); __pos -= __off; return __pos; } streamoff operator-(const fpos& __other) const { return _M_off - __other._M_off; } }; typedef fpos streampos; typedef fpos wstreampos; } # 51 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 1 3 # 34 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/exception_defines.h" 1 3 # 35 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 2 3 namespace std { void __throw_bad_exception(void); void __throw_bad_alloc(void); void __throw_bad_cast(void); void __throw_bad_typeid(void); void __throw_logic_error(const char* __s); void __throw_domain_error(const char* __s); void __throw_invalid_argument(const char* __s); void __throw_length_error(const char* __s); void __throw_out_of_range(const char* __s); void __throw_runtime_error(const char* __s); void __throw_range_error(const char* __s); void __throw_overflow_error(const char* __s); void __throw_underflow_error(const char* __s); void __throw_ios_failure(const char* __s); } # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 2 3 namespace std { template > class basic_ios; template > class basic_streambuf; template > class basic_istream; template > class basic_ostream; template > class basic_iostream; template, typename _Alloc = allocator<_CharT> > class basic_stringbuf; template, typename _Alloc = allocator<_CharT> > class basic_istringstream; template, typename _Alloc = allocator<_CharT> > class basic_ostringstream; template, typename _Alloc = allocator<_CharT> > class basic_stringstream; template > class basic_filebuf; template > class basic_ifstream; template > class basic_ofstream; template > class basic_fstream; template > class istreambuf_iterator; template > class ostreambuf_iterator; class ios_base; # 136 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iosfwd" 3 typedef basic_ios ios; typedef basic_streambuf streambuf; typedef basic_istream istream; typedef basic_ostream ostream; typedef basic_iostream iostream; typedef basic_stringbuf stringbuf; typedef basic_istringstream istringstream; typedef basic_ostringstream ostringstream; typedef basic_stringstream stringstream; typedef basic_filebuf filebuf; typedef basic_ifstream ifstream; typedef basic_ofstream ofstream; typedef basic_fstream fstream; typedef basic_ios wios; typedef basic_streambuf wstreambuf; typedef basic_istream wistream; typedef basic_ostream wostream; typedef basic_iostream wiostream; typedef basic_stringbuf wstringbuf; typedef basic_istringstream wistringstream; typedef basic_ostringstream wostringstream; typedef basic_stringstream wstringstream; typedef basic_filebuf wfilebuf; typedef basic_ifstream wifstream; typedef basic_ofstream wofstream; typedef basic_fstream wfstream; } # 71 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_pair.h" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_pair.h" 3 namespace std { template struct pair { typedef _T1 first_type; typedef _T2 second_type; _T1 first; _T2 second; pair() : first(), second() { } pair(const _T1& __a, const _T2& __b) : first(__a), second(__b) { } template pair(const pair<_U1, _U2>& __p) : first(__p.first), second(__p.second) { } }; template inline bool operator==(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return __x.first == __y.first && __x.second == __y.second; } template inline bool operator<(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return __x.first < __y.first || (!(__y.first < __x.first) && __x.second < __y.second); } template inline bool operator!=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return !(__x == __y); } template inline bool operator>(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return __y < __x; } template inline bool operator<=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return !(__y < __x); } template inline bool operator>=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) { return !(__x < __y); } # 142 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_pair.h" 3 template inline pair<_T1, _T2> make_pair(_T1 __x, _T2 __y) { return pair<_T1, _T2>(__x, __y); } } # 72 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/type_traits.h" 1 3 # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/type_traits.h" 3 # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/type_traits.h" 3 # 90 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/type_traits.h" 3 struct __true_type {}; struct __false_type {}; template struct __type_traits { typedef __true_type this_dummy_member_must_be_first; # 114 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/type_traits.h" 3 typedef __false_type has_trivial_default_constructor; typedef __false_type has_trivial_copy_constructor; typedef __false_type has_trivial_assignment_operator; typedef __false_type has_trivial_destructor; typedef __false_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template<> struct __type_traits { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template struct __type_traits<_Tp*> { typedef __true_type has_trivial_default_constructor; typedef __true_type has_trivial_copy_constructor; typedef __true_type has_trivial_assignment_operator; typedef __true_type has_trivial_destructor; typedef __true_type is_POD_type; }; template struct _Is_integer { typedef __false_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template<> struct _Is_integer { typedef __true_type _Integral; }; template struct _Is_normal_iterator { typedef __false_type _Normal; }; namespace __gnu_cxx { template class __normal_iterator; } template struct _Is_normal_iterator< __gnu_cxx::__normal_iterator<_Iterator, _Container> > { typedef __true_type _Normal; }; # 73 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_types.h" 1 3 # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_types.h" 3 # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_types.h" 3 namespace std { # 80 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_types.h" 3 struct input_iterator_tag {}; struct output_iterator_tag {}; struct forward_iterator_tag : public input_iterator_tag {}; struct bidirectional_iterator_tag : public forward_iterator_tag {}; struct random_access_iterator_tag : public bidirectional_iterator_tag {}; # 104 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_types.h" 3 template struct iterator { typedef _Category iterator_category; typedef _Tp value_type; typedef _Distance difference_type; typedef _Pointer pointer; typedef _Reference reference; }; template struct iterator_traits { typedef typename _Iterator::iterator_category iterator_category; typedef typename _Iterator::value_type value_type; typedef typename _Iterator::difference_type difference_type; typedef typename _Iterator::pointer pointer; typedef typename _Iterator::reference reference; }; template struct iterator_traits<_Tp*> { typedef random_access_iterator_tag iterator_category; typedef _Tp value_type; typedef ptrdiff_t difference_type; typedef _Tp* pointer; typedef _Tp& reference; }; template struct iterator_traits { typedef random_access_iterator_tag iterator_category; typedef _Tp value_type; typedef ptrdiff_t difference_type; typedef const _Tp* pointer; typedef const _Tp& reference; }; template inline typename iterator_traits<_Iter>::iterator_category __iterator_category(const _Iter&) { return typename iterator_traits<_Iter>::iterator_category(); } } # 74 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 1 3 # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 3 # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/concept_check.h" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/concept_check.h" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/concept_check.h" 3 # 69 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 2 3 namespace std { template inline typename iterator_traits<_InputIterator>::difference_type __distance(_InputIterator __first, _InputIterator __last, input_iterator_tag) { typename iterator_traits<_InputIterator>::difference_type __n = 0; while (__first != __last) { ++__first; ++__n; } return __n; } template inline typename iterator_traits<_RandomAccessIterator>::difference_type __distance(_RandomAccessIterator __first, _RandomAccessIterator __last, random_access_iterator_tag) { return __last - __first; } # 112 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 3 template inline typename iterator_traits<_InputIterator>::difference_type distance(_InputIterator __first, _InputIterator __last) { return std::__distance(__first, __last, std::__iterator_category(__first)); } template inline void __advance(_InputIterator& __i, _Distance __n, input_iterator_tag) { while (__n--) ++__i; } template inline void __advance(_BidirectionalIterator& __i, _Distance __n, bidirectional_iterator_tag) { if (__n > 0) while (__n--) ++__i; else while (__n++) --__i; } template inline void __advance(_RandomAccessIterator& __i, _Distance __n, random_access_iterator_tag) { __i += __n; } # 170 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator_base_funcs.h" 3 template inline void advance(_InputIterator& __i, _Distance __n) { std::__advance(__i, __n, std::__iterator_category(__i)); } } # 75 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 1 3 # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 namespace std { # 89 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template class reverse_iterator : public iterator::iterator_category, typename iterator_traits<_Iterator>::value_type, typename iterator_traits<_Iterator>::difference_type, typename iterator_traits<_Iterator>::pointer, typename iterator_traits<_Iterator>::reference> { protected: _Iterator current; public: typedef _Iterator iterator_type; typedef typename iterator_traits<_Iterator>::difference_type difference_type; typedef typename iterator_traits<_Iterator>::reference reference; typedef typename iterator_traits<_Iterator>::pointer pointer; public: reverse_iterator() : current() { } explicit reverse_iterator(iterator_type __x) : current(__x) { } reverse_iterator(const reverse_iterator& __x) : current(__x.current) { } template reverse_iterator(const reverse_iterator<_Iter>& __x) : current(__x.base()) { } iterator_type base() const { return current; } reference operator*() const { _Iterator __tmp = current; return *--__tmp; } pointer operator->() const { return &(operator*()); } reverse_iterator& operator++() { --current; return *this; } reverse_iterator operator++(int) { reverse_iterator __tmp = *this; --current; return __tmp; } reverse_iterator& operator--() { ++current; return *this; } reverse_iterator operator--(int) { reverse_iterator __tmp = *this; ++current; return __tmp; } reverse_iterator operator+(difference_type __n) const { return reverse_iterator(current - __n); } reverse_iterator& operator+=(difference_type __n) { current -= __n; return *this; } reverse_iterator operator-(difference_type __n) const { return reverse_iterator(current + __n); } reverse_iterator& operator-=(difference_type __n) { current += __n; return *this; } reference operator[](difference_type __n) const { return *(*this + __n); } }; # 275 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template inline bool operator==(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return __x.base() == __y.base(); } template inline bool operator<(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return __y.base() < __x.base(); } template inline bool operator!=(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return !(__x == __y); } template inline bool operator>(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return __y < __x; } template inline bool operator<=(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return !(__y < __x); } template inline bool operator>=(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return !(__x < __y); } template inline typename reverse_iterator<_Iterator>::difference_type operator-(const reverse_iterator<_Iterator>& __x, const reverse_iterator<_Iterator>& __y) { return __y.base() - __x.base(); } template inline reverse_iterator<_Iterator> operator+(typename reverse_iterator<_Iterator>::difference_type __n, const reverse_iterator<_Iterator>& __x) { return reverse_iterator<_Iterator>(__x.base() - __n); } # 335 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template class back_insert_iterator : public iterator { protected: _Container* container; public: typedef _Container container_type; explicit back_insert_iterator(_Container& __x) : container(&__x) { } # 361 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 back_insert_iterator& operator=(typename _Container::const_reference __value) { container->push_back(__value); return *this; } back_insert_iterator& operator*() { return *this; } back_insert_iterator& operator++() { return *this; } back_insert_iterator operator++(int) { return *this; } }; # 395 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template inline back_insert_iterator<_Container> back_inserter(_Container& __x) { return back_insert_iterator<_Container>(__x); } # 410 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template class front_insert_iterator : public iterator { protected: _Container* container; public: typedef _Container container_type; explicit front_insert_iterator(_Container& __x) : container(&__x) { } # 435 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 front_insert_iterator& operator=(typename _Container::const_reference __value) { container->push_front(__value); return *this; } front_insert_iterator& operator*() { return *this; } front_insert_iterator& operator++() { return *this; } front_insert_iterator operator++(int) { return *this; } }; # 469 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template inline front_insert_iterator<_Container> front_inserter(_Container& __x) { return front_insert_iterator<_Container>(__x); } # 488 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template class insert_iterator : public iterator { protected: _Container* container; typename _Container::iterator iter; public: typedef _Container container_type; insert_iterator(_Container& __x, typename _Container::iterator __i) : container(&__x), iter(__i) {} # 530 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 insert_iterator& operator=(const typename _Container::const_reference __value) { iter = container->insert(iter, __value); ++iter; return *this; } insert_iterator& operator*() { return *this; } insert_iterator& operator++() { return *this; } insert_iterator& operator++(int) { return *this; } }; # 565 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template inline insert_iterator<_Container> inserter(_Container& __x, _Iterator __i) { return insert_iterator<_Container>(__x, typename _Container::iterator(__i)); } } namespace __gnu_cxx { using std::iterator_traits; using std::iterator; template class __normal_iterator { protected: _Iterator _M_current; public: typedef typename iterator_traits<_Iterator>::iterator_category iterator_category; typedef typename iterator_traits<_Iterator>::value_type value_type; typedef typename iterator_traits<_Iterator>::difference_type difference_type; typedef typename iterator_traits<_Iterator>::reference reference; typedef typename iterator_traits<_Iterator>::pointer pointer; __normal_iterator() : _M_current(_Iterator()) { } explicit __normal_iterator(const _Iterator& __i) : _M_current(__i) { } template inline __normal_iterator(const __normal_iterator<_Iter, _Container>& __i) : _M_current(__i.base()) { } reference operator*() const { return *_M_current; } pointer operator->() const { return _M_current; } __normal_iterator& operator++() { ++_M_current; return *this; } __normal_iterator operator++(int) { return __normal_iterator(_M_current++); } __normal_iterator& operator--() { --_M_current; return *this; } __normal_iterator operator--(int) { return __normal_iterator(_M_current--); } reference operator[](const difference_type& __n) const { return _M_current[__n]; } __normal_iterator& operator+=(const difference_type& __n) { _M_current += __n; return *this; } __normal_iterator operator+(const difference_type& __n) const { return __normal_iterator(_M_current + __n); } __normal_iterator& operator-=(const difference_type& __n) { _M_current -= __n; return *this; } __normal_iterator operator-(const difference_type& __n) const { return __normal_iterator(_M_current - __n); } const _Iterator& base() const { return _M_current; } }; # 678 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_iterator.h" 3 template inline bool operator==(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() == __rhs.base(); } template inline bool operator==(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() == __rhs.base(); } template inline bool operator!=(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() != __rhs.base(); } template inline bool operator!=(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() != __rhs.base(); } template inline bool operator<(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() < __rhs.base(); } template inline bool operator<(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() < __rhs.base(); } template inline bool operator>(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() > __rhs.base(); } template inline bool operator>(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() > __rhs.base(); } template inline bool operator<=(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() <= __rhs.base(); } template inline bool operator<=(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() <= __rhs.base(); } template inline bool operator>=(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() >= __rhs.base(); } template inline bool operator>=(const __normal_iterator<_Iterator, _Container>& __lhs, const __normal_iterator<_Iterator, _Container>& __rhs) { return __lhs.base() >= __rhs.base(); } template inline typename __normal_iterator<_IteratorL, _Container>::difference_type operator-(const __normal_iterator<_IteratorL, _Container>& __lhs, const __normal_iterator<_IteratorR, _Container>& __rhs) { return __lhs.base() - __rhs.base(); } template inline __normal_iterator<_Iterator, _Container> operator+(typename __normal_iterator<_Iterator, _Container>::difference_type __n, const __normal_iterator<_Iterator, _Container>& __i) { return __normal_iterator<_Iterator, _Container>(__i.base() + __n); } } # 76 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/debug/debug.h" 1 3 # 272 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/debug/debug.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cassert" 1 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cassert" 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cassert" 3 # 1 "/usr/include/assert.h" 1 3 4 # 65 "/usr/include/assert.h" 3 4 extern "C" { extern void __assert_fail (__const char *__assertion, __const char *__file, unsigned int __line, __const char *__function) throw () __attribute__ ((__noreturn__)); extern void __assert_perror_fail (int __errnum, __const char *__file, unsigned int __line, __const char *__function) throw () __attribute__ ((__noreturn__)); extern void __assert (const char *__assertion, const char *__file, int __line) throw () __attribute__ ((__noreturn__)); } # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cassert" 2 3 # 273 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/debug/debug.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 275 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/debug/debug.h" 2 3 namespace __gnu_debug { template class _Safe_iterator; inline bool __check_singular_aux(const void*) { return false; } template inline bool __check_singular(_Iterator& __x) { return __gnu_debug::__check_singular_aux(&__x); } template inline bool __check_singular(const _Tp* __ptr) { return __ptr == 0; } template inline bool __check_singular(const _Safe_iterator<_Iterator, _Sequence>& __x) { return __x._M_singular(); } template inline bool __check_dereferenceable(_Iterator&) { return true; } template inline bool __check_dereferenceable(const _Tp* __ptr) { return __ptr; } template inline bool __check_dereferenceable(const _Safe_iterator<_Iterator, _Sequence>& __x) { return __x._M_dereferenceable(); } template inline bool __valid_range_aux2(const _RandomAccessIterator& __first, const _RandomAccessIterator& __last, std::random_access_iterator_tag) { return __last - __first >= 0; } template inline bool __valid_range_aux2(const _InputIterator&, const _InputIterator&, std::input_iterator_tag) { return true; } template inline bool __valid_range_aux(const _Integral&, const _Integral&, __true_type) { return true; } template inline bool __valid_range_aux(const _InputIterator& __first, const _InputIterator& __last, __false_type) { typedef typename std::iterator_traits<_InputIterator>::iterator_category _Category; return __gnu_debug::__valid_range_aux2(__first, __last, _Category()); } template inline bool __valid_range(const _InputIterator& __first, const _InputIterator& __last) { typedef typename _Is_integer<_InputIterator>::_Integral _Integral; return __gnu_debug::__valid_range_aux(__first, __last, _Integral()); } template inline bool __valid_range(const _Safe_iterator<_Iterator, _Sequence>& __first, const _Safe_iterator<_Iterator, _Sequence>& __last) { return __first._M_valid_range(__last); } template inline _InputIterator __check_valid_range(const _InputIterator& __first, const _InputIterator& __last) { ; return __first; } template inline const _CharT* __check_string(const _CharT* __s, const _Integer& __n) { return __s; } template inline const _CharT* __check_string(const _CharT* __s) { return __s; } template inline bool __check_sorted_aux(const _InputIterator&, const _InputIterator&, std::input_iterator_tag) { return true; } template inline bool __check_sorted_aux(_ForwardIterator __first, _ForwardIterator __last, std::forward_iterator_tag) { if (__first == __last) return true; _ForwardIterator __next = __first; for (++__next; __next != __last; __first = __next, ++__next) { if (*__next < *__first) return false; } return true; } template inline bool __check_sorted_aux(const _InputIterator&, const _InputIterator&, _Predicate, std::input_iterator_tag) { return true; } template inline bool __check_sorted_aux(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred, std::forward_iterator_tag) { if (__first == __last) return true; _ForwardIterator __next = __first; for (++__next; __next != __last; __first = __next, ++__next) { if (__pred(*__next, *__first)) return false; } return true; } template inline bool __check_sorted(const _InputIterator& __first, const _InputIterator& __last) { typedef typename std::iterator_traits<_InputIterator>::iterator_category _Category; return __gnu_debug::__check_sorted_aux(__first, __last, _Category()); } template inline bool __check_sorted(const _InputIterator& __first, const _InputIterator& __last, _Predicate __pred) { typedef typename std::iterator_traits<_InputIterator>::iterator_category _Category; return __gnu_debug::__check_sorted_aux(__first, __last, __pred, _Category()); } template inline bool __check_partitioned(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __value) { while (__first != __last && *__first < __value) ++__first; while (__first != __last && !(*__first < __value)) ++__first; return __first == __last; } template inline bool __check_partitioned(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __value, _Pred __pred) { while (__first != __last && __pred(*__first, __value)) ++__first; while (__first != __last && !__pred(*__first, __value)) ++__first; return __first == __last; } } # 78 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 2 3 namespace std { # 90 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline void iter_swap(_ForwardIterator1 __a, _ForwardIterator2 __b) { typedef typename iterator_traits<_ForwardIterator1>::value_type _ValueType1; typedef typename iterator_traits<_ForwardIterator2>::value_type _ValueType2; # 109 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 const _ValueType1 __tmp = *__a; *__a = *__b; *__b = __tmp; } # 123 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline void swap(_Tp& __a, _Tp& __b) { const _Tp __tmp = __a; __a = __b; __b = __tmp; } # 148 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline const _Tp& min(const _Tp& __a, const _Tp& __b) { if (__b < __a) return __b; return __a; } # 170 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline const _Tp& max(const _Tp& __a, const _Tp& __b) { if (__a < __b) return __b; return __a; } # 192 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline const _Tp& min(const _Tp& __a, const _Tp& __b, _Compare __comp) { if (__comp(__b, __a)) return __b; return __a; } # 212 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline const _Tp& max(const _Tp& __a, const _Tp& __b, _Compare __comp) { if (__comp(__a, __b)) return __b; return __a; } template inline _OutputIterator __copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, input_iterator_tag) { for (; __first != __last; ++__result, ++__first) *__result = *__first; return __result; } template inline _OutputIterator __copy(_RandomAccessIterator __first, _RandomAccessIterator __last, _OutputIterator __result, random_access_iterator_tag) { typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; for (_Distance __n = __last - __first; __n > 0; --__n) { *__result = *__first; ++__first; ++__result; } return __result; } template inline _Tp* __copy_trivial(const _Tp* __first, const _Tp* __last, _Tp* __result) { std::memmove(__result, __first, sizeof(_Tp) * (__last - __first)); return __result + (__last - __first); } template inline _OutputIterator __copy_aux2(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __false_type) { return std::__copy(__first, __last, __result, std::__iterator_category(__first)); } template inline _OutputIterator __copy_aux2(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __true_type) { return std::__copy(__first, __last, __result, std::__iterator_category(__first)); } template inline _Tp* __copy_aux2(_Tp* __first, _Tp* __last, _Tp* __result, __true_type) { return std::__copy_trivial(__first, __last, __result); } template inline _Tp* __copy_aux2(const _Tp* __first, const _Tp* __last, _Tp* __result, __true_type) { return std::__copy_trivial(__first, __last, __result); } template inline _OutputIterator __copy_ni2(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __true_type) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; typedef typename __type_traits< _ValueType>::has_trivial_assignment_operator _Trivial; return _OutputIterator(std::__copy_aux2(__first, __last, __result.base(), _Trivial())); } template inline _OutputIterator __copy_ni2(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __false_type) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; typedef typename __type_traits< _ValueType>::has_trivial_assignment_operator _Trivial; return std::__copy_aux2(__first, __last, __result, _Trivial()); } template inline _OutputIterator __copy_ni1(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __true_type) { typedef typename _Is_normal_iterator<_OutputIterator>::_Normal __Normal; return std::__copy_ni2(__first.base(), __last.base(), __result, __Normal()); } template inline _OutputIterator __copy_ni1(_InputIterator __first, _InputIterator __last, _OutputIterator __result, __false_type) { typedef typename _Is_normal_iterator<_OutputIterator>::_Normal __Normal; return std::__copy_ni2(__first, __last, __result, __Normal()); } # 346 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline _OutputIterator copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { ; typedef typename _Is_normal_iterator<_InputIterator>::_Normal __Normal; return std::__copy_ni1(__first, __last, __result, __Normal()); } template inline _BidirectionalIterator2 __copy_backward(_BidirectionalIterator1 __first, _BidirectionalIterator1 __last, _BidirectionalIterator2 __result, bidirectional_iterator_tag) { while (__first != __last) *--__result = *--__last; return __result; } template inline _BidirectionalIterator __copy_backward(_RandomAccessIterator __first, _RandomAccessIterator __last, _BidirectionalIterator __result, random_access_iterator_tag) { typename iterator_traits<_RandomAccessIterator>::difference_type __n; for (__n = __last - __first; __n > 0; --__n) *--__result = *--__last; return __result; } template struct __copy_backward_dispatch { static _BidirectionalIterator2 copy(_BidirectionalIterator1 __first, _BidirectionalIterator1 __last, _BidirectionalIterator2 __result) { return std::__copy_backward(__first, __last, __result, std::__iterator_category(__first)); } }; template struct __copy_backward_dispatch<_Tp*, _Tp*, __true_type> { static _Tp* copy(const _Tp* __first, const _Tp* __last, _Tp* __result) { const ptrdiff_t _Num = __last - __first; std::memmove(__result - _Num, __first, sizeof(_Tp) * _Num); return __result - _Num; } }; template struct __copy_backward_dispatch { static _Tp* copy(const _Tp* __first, const _Tp* __last, _Tp* __result) { return std::__copy_backward_dispatch<_Tp*, _Tp*, __true_type> ::copy(__first, __last, __result); } }; template inline _BI2 __copy_backward_aux(_BI1 __first, _BI1 __last, _BI2 __result) { typedef typename __type_traits::value_type> ::has_trivial_assignment_operator _Trivial; return std::__copy_backward_dispatch<_BI1, _BI2, _Trivial>::copy(__first, __last, __result); } template inline _BI2 __copy_backward_output_normal_iterator(_BI1 __first, _BI1 __last, _BI2 __result, __true_type) { return _BI2(std::__copy_backward_aux(__first, __last, __result.base())); } template inline _BI2 __copy_backward_output_normal_iterator(_BI1 __first, _BI1 __last, _BI2 __result, __false_type) { return std::__copy_backward_aux(__first, __last, __result); } template inline _BI2 __copy_backward_input_normal_iterator(_BI1 __first, _BI1 __last, _BI2 __result, __true_type) { typedef typename _Is_normal_iterator<_BI2>::_Normal __Normal; return std::__copy_backward_output_normal_iterator(__first.base(), __last.base(), __result, __Normal()); } template inline _BI2 __copy_backward_input_normal_iterator(_BI1 __first, _BI1 __last, _BI2 __result, __false_type) { typedef typename _Is_normal_iterator<_BI2>::_Normal __Normal; return std::__copy_backward_output_normal_iterator(__first, __last, __result, __Normal()); } # 485 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline _BI2 copy_backward(_BI1 __first, _BI1 __last, _BI2 __result) { ; typedef typename _Is_normal_iterator<_BI1>::_Normal __Normal; return std::__copy_backward_input_normal_iterator(__first, __last, __result, __Normal()); } # 514 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template void fill(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __value) { ; for ( ; __first != __last; ++__first) *__first = __value; } # 538 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template _OutputIterator fill_n(_OutputIterator __first, _Size __n, const _Tp& __value) { for ( ; __n > 0; --__n, ++__first) *__first = __value; return __first; } inline void fill(unsigned char* __first, unsigned char* __last, const unsigned char& __c) { ; const unsigned char __tmp = __c; std::memset(__first, __tmp, __last - __first); } inline void fill(signed char* __first, signed char* __last, const signed char& __c) { ; const signed char __tmp = __c; std::memset(__first, static_cast(__tmp), __last - __first); } inline void fill(char* __first, char* __last, const char& __c) { ; const char __tmp = __c; std::memset(__first, static_cast(__tmp), __last - __first); } template inline unsigned char* fill_n(unsigned char* __first, _Size __n, const unsigned char& __c) { std::fill(__first, __first + __n, __c); return __first + __n; } template inline signed char* fill_n(char* __first, _Size __n, const signed char& __c) { std::fill(__first, __first + __n, __c); return __first + __n; } template inline char* fill_n(char* __first, _Size __n, const char& __c) { std::fill(__first, __first + __n, __c); return __first + __n; } # 612 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template pair<_InputIterator1, _InputIterator2> mismatch(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2) { ; while (__first1 != __last1 && *__first1 == *__first2) { ++__first1; ++__first2; } return pair<_InputIterator1, _InputIterator2>(__first1, __first2); } # 647 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template pair<_InputIterator1, _InputIterator2> mismatch(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _BinaryPredicate __binary_pred) { ; while (__first1 != __last1 && __binary_pred(*__first1, *__first2)) { ++__first1; ++__first2; } return pair<_InputIterator1, _InputIterator2>(__first1, __first2); } # 677 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline bool equal(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2) { ; for ( ; __first1 != __last1; ++__first1, ++__first2) if (!(*__first1 == *__first2)) return false; return true; } # 709 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template inline bool equal(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _BinaryPredicate __binary_pred) { ; for ( ; __first1 != __last1; ++__first1, ++__first2) if (!__binary_pred(*__first1, *__first2)) return false; return true; } # 741 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template bool lexicographical_compare(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2) { # 755 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 ; ; for (;__first1 != __last1 && __first2 != __last2; ++__first1, ++__first2) { if (*__first1 < *__first2) return true; if (*__first2 < *__first1) return false; } return __first1 == __last1 && __first2 != __last2; } # 780 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algobase.h" 3 template bool lexicographical_compare(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _Compare __comp) { ; ; for ( ; __first1 != __last1 && __first2 != __last2 ; ++__first1, ++__first2) { if (__comp(*__first1, *__first2)) return true; if (__comp(*__first2, *__first1)) return false; } return __first1 == __last1 && __first2 != __last2; } inline bool lexicographical_compare(const unsigned char* __first1, const unsigned char* __last1, const unsigned char* __first2, const unsigned char* __last2) { ; ; const size_t __len1 = __last1 - __first1; const size_t __len2 = __last2 - __first2; const int __result = std::memcmp(__first1, __first2, std::min(__len1, __len2)); return __result != 0 ? __result < 0 : __len1 < __len2; } inline bool lexicographical_compare(const char* __first1, const char* __last1, const char* __first2, const char* __last2) { ; ; return std::lexicographical_compare((const signed char*) __first1, (const signed char*) __last1, (const signed char*) __first2, (const signed char*) __last2); } } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 2 3 namespace __gnu_cxx { # 62 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 3 template struct _Char_types { typedef unsigned long int_type; typedef std::streampos pos_type; typedef std::streamoff off_type; typedef std::mbstate_t state_type; }; # 86 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 3 template struct char_traits { typedef _CharT char_type; typedef typename _Char_types<_CharT>::int_type int_type; typedef typename _Char_types<_CharT>::pos_type pos_type; typedef typename _Char_types<_CharT>::off_type off_type; typedef typename _Char_types<_CharT>::state_type state_type; static void assign(char_type& __c1, const char_type& __c2) { __c1 = __c2; } static bool eq(const char_type& __c1, const char_type& __c2) { return __c1 == __c2; } static bool lt(const char_type& __c1, const char_type& __c2) { return __c1 < __c2; } static int compare(const char_type* __s1, const char_type* __s2, std::size_t __n); static std::size_t length(const char_type* __s); static const char_type* find(const char_type* __s, std::size_t __n, const char_type& __a); static char_type* move(char_type* __s1, const char_type* __s2, std::size_t __n); static char_type* copy(char_type* __s1, const char_type* __s2, std::size_t __n); static char_type* assign(char_type* __s, std::size_t __n, char_type __a); static char_type to_char_type(const int_type& __c) { return static_cast(__c); } static int_type to_int_type(const char_type& __c) { return static_cast(__c); } static bool eq_int_type(const int_type& __c1, const int_type& __c2) { return __c1 == __c2; } static int_type eof() { return static_cast((-1)); } static int_type not_eof(const int_type& __c) { return !eq_int_type(__c, eof()) ? __c : to_int_type(char_type()); } }; template int char_traits<_CharT>:: compare(const char_type* __s1, const char_type* __s2, std::size_t __n) { for (size_t __i = 0; __i < __n; ++__i) if (lt(__s1[__i], __s2[__i])) return -1; else if (lt(__s2[__i], __s1[__i])) return 1; return 0; } template std::size_t char_traits<_CharT>:: length(const char_type* __p) { std::size_t __i = 0; while (!eq(__p[__i], char_type())) ++__i; return __i; } template const typename char_traits<_CharT>::char_type* char_traits<_CharT>:: find(const char_type* __s, std::size_t __n, const char_type& __a) { for (std::size_t __i = 0; __i < __n; ++__i) if (eq(__s[__i], __a)) return __s + __i; return 0; } template typename char_traits<_CharT>::char_type* char_traits<_CharT>:: move(char_type* __s1, const char_type* __s2, std::size_t __n) { return static_cast<_CharT*>(std::memmove(__s1, __s2, __n * sizeof(char_type))); } template typename char_traits<_CharT>::char_type* char_traits<_CharT>:: copy(char_type* __s1, const char_type* __s2, std::size_t __n) { std::copy(__s2, __s2 + __n, __s1); return __s1; } template typename char_traits<_CharT>::char_type* char_traits<_CharT>:: assign(char_type* __s, std::size_t __n, char_type __a) { std::fill_n(__s, __n, __a); return __s; } } namespace std { # 224 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/char_traits.h" 3 template struct char_traits : public __gnu_cxx::char_traits<_CharT> { }; template<> struct char_traits { typedef char char_type; typedef int int_type; typedef streampos pos_type; typedef streamoff off_type; typedef mbstate_t state_type; static void assign(char_type& __c1, const char_type& __c2) { __c1 = __c2; } static bool eq(const char_type& __c1, const char_type& __c2) { return __c1 == __c2; } static bool lt(const char_type& __c1, const char_type& __c2) { return __c1 < __c2; } static int compare(const char_type* __s1, const char_type* __s2, size_t __n) { return memcmp(__s1, __s2, __n); } static size_t length(const char_type* __s) { return strlen(__s); } static const char_type* find(const char_type* __s, size_t __n, const char_type& __a) { return static_cast(memchr(__s, __a, __n)); } static char_type* move(char_type* __s1, const char_type* __s2, size_t __n) { return static_cast(memmove(__s1, __s2, __n)); } static char_type* copy(char_type* __s1, const char_type* __s2, size_t __n) { return static_cast(memcpy(__s1, __s2, __n)); } static char_type* assign(char_type* __s, size_t __n, char_type __a) { return static_cast(memset(__s, __a, __n)); } static char_type to_char_type(const int_type& __c) { return static_cast(__c); } static int_type to_int_type(const char_type& __c) { return static_cast(static_cast(__c)); } static bool eq_int_type(const int_type& __c1, const int_type& __c2) { return __c1 == __c2; } static int_type eof() { return static_cast((-1)); } static int_type not_eof(const int_type& __c) { return (__c == eof()) ? 0 : __c; } }; template<> struct char_traits { typedef wchar_t char_type; typedef wint_t int_type; typedef streamoff off_type; typedef wstreampos pos_type; typedef mbstate_t state_type; static void assign(char_type& __c1, const char_type& __c2) { __c1 = __c2; } static bool eq(const char_type& __c1, const char_type& __c2) { return __c1 == __c2; } static bool lt(const char_type& __c1, const char_type& __c2) { return __c1 < __c2; } static int compare(const char_type* __s1, const char_type* __s2, size_t __n) { return wmemcmp(__s1, __s2, __n); } static size_t length(const char_type* __s) { return wcslen(__s); } static const char_type* find(const char_type* __s, size_t __n, const char_type& __a) { return wmemchr(__s, __a, __n); } static char_type* move(char_type* __s1, const char_type* __s2, size_t __n) { return wmemmove(__s1, __s2, __n); } static char_type* copy(char_type* __s1, const char_type* __s2, size_t __n) { return wmemcpy(__s1, __s2, __n); } static char_type* assign(char_type* __s, size_t __n, char_type __a) { return wmemset(__s, __a, __n); } static char_type to_char_type(const int_type& __c) { return char_type(__c); } static int_type to_int_type(const char_type& __c) { return int_type(__c); } static bool eq_int_type(const int_type& __c1, const int_type& __c2) { return __c1 == __c2; } static int_type eof() { return static_cast((0xffffffffu)); } static int_type not_eof(const int_type& __c) { return eq_int_type(__c, eof()) ? 0 : __c; } }; template struct _Char_traits_match { _CharT _M_c; _Char_traits_match(_CharT const& __c) : _M_c(__c) { } bool operator()(_CharT const& __a) { return _Traits::eq(_M_c, __a); } }; } # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 1 3 # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/allocator.h" 1 3 # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/allocator.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++allocator.h" 1 3 # 34 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++allocator.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/new_allocator.h" 1 3 # 35 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/new_allocator.h" 3 namespace __gnu_cxx { # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/new_allocator.h" 3 template class new_allocator { public: typedef size_t size_type; typedef ptrdiff_t difference_type; typedef _Tp* pointer; typedef const _Tp* const_pointer; typedef _Tp& reference; typedef const _Tp& const_reference; typedef _Tp value_type; template struct rebind { typedef new_allocator<_Tp1> other; }; new_allocator() throw() { } new_allocator(const new_allocator&) throw() { } template new_allocator(const new_allocator<_Tp1>&) throw() { } ~new_allocator() throw() { } pointer address(reference __x) const { return &__x; } const_pointer address(const_reference __x) const { return &__x; } pointer allocate(size_type __n, const void* = 0) { return static_cast<_Tp*>(::operator new(__n * sizeof(_Tp))); } void deallocate(pointer __p, size_type) { ::operator delete(__p); } size_type max_size() const throw() { return size_t(-1) / sizeof(_Tp); } void construct(pointer __p, const _Tp& __val) { ::new(__p) _Tp(__val); } void destroy(pointer __p) { __p->~_Tp(); } }; template inline bool operator==(const new_allocator<_Tp>&, const new_allocator<_Tp>&) { return true; } template inline bool operator!=(const new_allocator<_Tp>&, const new_allocator<_Tp>&) { return false; } } # 35 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/c++allocator.h" 2 3 # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/allocator.h" 2 3 #pragma GCC visibility push(default) namespace std { template class allocator; template<> class allocator { public: typedef size_t size_type; typedef ptrdiff_t difference_type; typedef void* pointer; typedef const void* const_pointer; typedef void value_type; template struct rebind { typedef allocator<_Tp1> other; }; }; template class allocator: public __gnu_cxx::new_allocator<_Tp> { public: typedef size_t size_type; typedef ptrdiff_t difference_type; typedef _Tp* pointer; typedef const _Tp* const_pointer; typedef _Tp& reference; typedef const _Tp& const_reference; typedef _Tp value_type; template struct rebind { typedef allocator<_Tp1> other; }; allocator() throw() { } allocator(const allocator& a) throw() : __gnu_cxx::new_allocator<_Tp>(a) { } template allocator(const allocator<_Tp1>&) throw() { } ~allocator() throw() { } }; template inline bool operator==(const allocator<_T1>&, const allocator<_T2>&) { return true; } template inline bool operator!=(const allocator<_T1>&, const allocator<_T2>&) { return false; } extern template class allocator; extern template class allocator; } #pragma GCC visibility pop # 56 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_construct.h" 1 3 # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_construct.h" 3 namespace std { template inline void _Construct(_T1* __p, const _T2& __value) { ::new(static_cast(__p)) _T1(__value); } template inline void _Construct(_T1* __p) { ::new(static_cast(__p)) _T1(); } template inline void _Destroy(_Tp* __pointer) { __pointer->~_Tp(); } # 116 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_construct.h" 3 template inline void __destroy_aux(_ForwardIterator __first, _ForwardIterator __last, __false_type) { for ( ; __first != __last; ++__first) std::_Destroy(&*__first); } # 131 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_construct.h" 3 template inline void __destroy_aux(_ForwardIterator, _ForwardIterator, __true_type) { } # 143 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_construct.h" 3 template inline void _Destroy(_ForwardIterator __first, _ForwardIterator __last) { typedef typename iterator_traits<_ForwardIterator>::value_type _Value_type; typedef typename __type_traits<_Value_type>::has_trivial_destructor _Has_trivial_destructor; std::__destroy_aux(__first, __last, _Has_trivial_destructor()); } } # 57 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 1 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 3 namespace std { template inline _ForwardIterator __uninitialized_copy_aux(_InputIterator __first, _InputIterator __last, _ForwardIterator __result, __true_type) { return std::copy(__first, __last, __result); } template inline _ForwardIterator __uninitialized_copy_aux(_InputIterator __first, _InputIterator __last, _ForwardIterator __result, __false_type) { _ForwardIterator __cur = __result; try { for ( ; __first != __last; ++__first, ++__cur) std::_Construct(&*__cur, *__first); return __cur; } catch(...) { std::_Destroy(__result, __cur); throw; } } # 105 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 3 template inline _ForwardIterator uninitialized_copy(_InputIterator __first, _InputIterator __last, _ForwardIterator __result) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename __type_traits<_ValueType>::is_POD_type _Is_POD; return std::__uninitialized_copy_aux(__first, __last, __result, _Is_POD()); } inline char* uninitialized_copy(const char* __first, const char* __last, char* __result) { std::memmove(__result, __first, __last - __first); return __result + (__last - __first); } inline wchar_t* uninitialized_copy(const wchar_t* __first, const wchar_t* __last, wchar_t* __result) { std::memmove(__result, __first, sizeof(wchar_t) * (__last - __first)); return __result + (__last - __first); } template inline void __uninitialized_fill_aux(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __x, __true_type) { std::fill(__first, __last, __x); } template void __uninitialized_fill_aux(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __x, __false_type) { _ForwardIterator __cur = __first; try { for ( ; __cur != __last; ++__cur) std::_Construct(&*__cur, __x); } catch(...) { std::_Destroy(__first, __cur); throw; } } # 167 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 3 template inline void uninitialized_fill(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __x) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename __type_traits<_ValueType>::is_POD_type _Is_POD; std::__uninitialized_fill_aux(__first, __last, __x, _Is_POD()); } template inline _ForwardIterator __uninitialized_fill_n_aux(_ForwardIterator __first, _Size __n, const _Tp& __x, __true_type) { return std::fill_n(__first, __n, __x); } template _ForwardIterator __uninitialized_fill_n_aux(_ForwardIterator __first, _Size __n, const _Tp& __x, __false_type) { _ForwardIterator __cur = __first; try { for ( ; __n > 0; --__n, ++__cur) std::_Construct(&*__cur, __x); return __cur; } catch(...) { std::_Destroy(__first, __cur); throw; } } # 213 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 3 template inline _ForwardIterator uninitialized_fill_n(_ForwardIterator __first, _Size __n, const _Tp& __x) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename __type_traits<_ValueType>::is_POD_type _Is_POD; return std::__uninitialized_fill_n_aux(__first, __n, __x, _Is_POD()); } # 230 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_uninitialized.h" 3 template inline _ForwardIterator __uninitialized_copy_copy(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _ForwardIterator __result) { _ForwardIterator __mid = std::uninitialized_copy(__first1, __last1, __result); try { return std::uninitialized_copy(__first2, __last2, __mid); } catch(...) { std::_Destroy(__result, __mid); throw; } } template inline _ForwardIterator __uninitialized_fill_copy(_ForwardIterator __result, _ForwardIterator __mid, const _Tp& __x, _InputIterator __first, _InputIterator __last) { std::uninitialized_fill(__result, __mid, __x); try { return std::uninitialized_copy(__first, __last, __mid); } catch(...) { std::_Destroy(__result, __mid); throw; } } template inline void __uninitialized_copy_fill(_InputIterator __first1, _InputIterator __last1, _ForwardIterator __first2, _ForwardIterator __last2, const _Tp& __x) { _ForwardIterator __mid2 = std::uninitialized_copy(__first1, __last1, __first2); try { std::uninitialized_fill(__mid2, __last2, __x); } catch(...) { std::_Destroy(__first2, __mid2); throw; } } } # 59 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_raw_storage_iter.h" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_raw_storage_iter.h" 3 namespace std { template class raw_storage_iterator : public iterator { protected: _ForwardIterator _M_iter; public: explicit raw_storage_iterator(_ForwardIterator __x) : _M_iter(__x) {} raw_storage_iterator& operator*() { return *this; } raw_storage_iterator& operator=(const _Tp& __element) { std::_Construct(&*_M_iter, __element); return *this; } raw_storage_iterator<_ForwardIterator, _Tp>& operator++() { ++_M_iter; return *this; } raw_storage_iterator<_ForwardIterator, _Tp> operator++(int) { raw_storage_iterator<_ForwardIterator, _Tp> __tmp = *this; ++_M_iter; return __tmp; } }; } # 60 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 1 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 3 # 150 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 3 namespace std { enum float_round_style { round_indeterminate = -1, round_toward_zero = 0, round_to_nearest = 1, round_toward_infinity = 2, round_toward_neg_infinity = 3 }; enum float_denorm_style { denorm_indeterminate = -1, denorm_absent = 0, denorm_present = 1 }; # 192 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 3 struct __numeric_limits_base { static const bool is_specialized = false; static const int digits = 0; static const int digits10 = 0; static const bool is_signed = false; static const bool is_integer = false; static const bool is_exact = false; static const int radix = 0; static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static const bool is_iec559 = false; static const bool is_bounded = false; static const bool is_modulo = false; static const bool traps = false; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; # 285 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/limits" 3 template struct numeric_limits : public __numeric_limits_base { static _Tp min() throw() { return static_cast<_Tp>(0); } static _Tp max() throw() { return static_cast<_Tp>(0); } static _Tp epsilon() throw() { return static_cast<_Tp>(0); } static _Tp round_error() throw() { return static_cast<_Tp>(0); } static _Tp infinity() throw() { return static_cast<_Tp>(0); } static _Tp quiet_NaN() throw() { return static_cast<_Tp>(0); } static _Tp signaling_NaN() throw() { return static_cast<_Tp>(0); } static _Tp denorm_min() throw() { return static_cast<_Tp>(0); } }; template<> struct numeric_limits { static const bool is_specialized = true; static bool min() throw() { return false; } static bool max() throw() { return true; } static const int digits = 1; static const int digits10 = 0; static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static bool epsilon() throw() { return false; } static bool round_error() throw() { return false; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static bool infinity() throw() { return false; } static bool quiet_NaN() throw() { return false; } static bool signaling_NaN() throw() { return false; } static bool denorm_min() throw() { return false; } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = false; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static char min() throw() { return (((char)(-1) < 0) ? (char)1 << (sizeof(char) * 8 - ((char)(-1) < 0)) : (char)0); } static char max() throw() { return (((char)(-1) < 0) ? ((char)1 << (sizeof(char) * 8 - ((char)(-1) < 0))) - 1 : ~(char)0); } static const int digits = (sizeof(char) * 8 - ((char)(-1) < 0)); static const int digits10 = ((sizeof(char) * 8 - ((char)(-1) < 0)) * 643 / 2136); static const bool is_signed = ((char)(-1) < 0); static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static char epsilon() throw() { return 0; } static char round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static char infinity() throw() { return char(); } static char quiet_NaN() throw() { return char(); } static char signaling_NaN() throw() { return char(); } static char denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static signed char min() throw() { return -127 - 1; } static signed char max() throw() { return 127; } static const int digits = (sizeof(signed char) * 8 - ((signed char)(-1) < 0)); static const int digits10 = ((sizeof(signed char) * 8 - ((signed char)(-1) < 0)) * 643 / 2136); static const bool is_signed = true; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static signed char epsilon() throw() { return 0; } static signed char round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static signed char infinity() throw() { return static_cast(0); } static signed char quiet_NaN() throw() { return static_cast(0); } static signed char signaling_NaN() throw() { return static_cast(0); } static signed char denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static unsigned char min() throw() { return 0; } static unsigned char max() throw() { return 127 * 2U + 1; } static const int digits = (sizeof(unsigned char) * 8 - ((unsigned char)(-1) < 0)); static const int digits10 = ((sizeof(unsigned char) * 8 - ((unsigned char)(-1) < 0)) * 643 / 2136); static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static unsigned char epsilon() throw() { return 0; } static unsigned char round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static unsigned char infinity() throw() { return static_cast(0); } static unsigned char quiet_NaN() throw() { return static_cast(0); } static unsigned char signaling_NaN() throw() { return static_cast(0); } static unsigned char denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static wchar_t min() throw() { return (((wchar_t)(-1) < 0) ? (wchar_t)1 << (sizeof(wchar_t) * 8 - ((wchar_t)(-1) < 0)) : (wchar_t)0); } static wchar_t max() throw() { return (((wchar_t)(-1) < 0) ? ((wchar_t)1 << (sizeof(wchar_t) * 8 - ((wchar_t)(-1) < 0))) - 1 : ~(wchar_t)0); } static const int digits = (sizeof(wchar_t) * 8 - ((wchar_t)(-1) < 0)); static const int digits10 = ((sizeof(wchar_t) * 8 - ((wchar_t)(-1) < 0)) * 643 / 2136); static const bool is_signed = ((wchar_t)(-1) < 0); static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static wchar_t epsilon() throw() { return 0; } static wchar_t round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static wchar_t infinity() throw() { return wchar_t(); } static wchar_t quiet_NaN() throw() { return wchar_t(); } static wchar_t signaling_NaN() throw() { return wchar_t(); } static wchar_t denorm_min() throw() { return wchar_t(); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static short min() throw() { return -32767 - 1; } static short max() throw() { return 32767; } static const int digits = (sizeof(short) * 8 - ((short)(-1) < 0)); static const int digits10 = ((sizeof(short) * 8 - ((short)(-1) < 0)) * 643 / 2136); static const bool is_signed = true; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static short epsilon() throw() { return 0; } static short round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static short infinity() throw() { return short(); } static short quiet_NaN() throw() { return short(); } static short signaling_NaN() throw() { return short(); } static short denorm_min() throw() { return short(); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static unsigned short min() throw() { return 0; } static unsigned short max() throw() { return 32767 * 2U + 1; } static const int digits = (sizeof(unsigned short) * 8 - ((unsigned short)(-1) < 0)); static const int digits10 = ((sizeof(unsigned short) * 8 - ((unsigned short)(-1) < 0)) * 643 / 2136); static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static unsigned short epsilon() throw() { return 0; } static unsigned short round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static unsigned short infinity() throw() { return static_cast(0); } static unsigned short quiet_NaN() throw() { return static_cast(0); } static unsigned short signaling_NaN() throw() { return static_cast(0); } static unsigned short denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static int min() throw() { return -2147483647 - 1; } static int max() throw() { return 2147483647; } static const int digits = (sizeof(int) * 8 - ((int)(-1) < 0)); static const int digits10 = ((sizeof(int) * 8 - ((int)(-1) < 0)) * 643 / 2136); static const bool is_signed = true; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static int epsilon() throw() { return 0; } static int round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static int infinity() throw() { return static_cast(0); } static int quiet_NaN() throw() { return static_cast(0); } static int signaling_NaN() throw() { return static_cast(0); } static int denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static unsigned int min() throw() { return 0; } static unsigned int max() throw() { return 2147483647 * 2U + 1; } static const int digits = (sizeof(unsigned int) * 8 - ((unsigned int)(-1) < 0)); static const int digits10 = ((sizeof(unsigned int) * 8 - ((unsigned int)(-1) < 0)) * 643 / 2136); static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static unsigned int epsilon() throw() { return 0; } static unsigned int round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static unsigned int infinity() throw() { return static_cast(0); } static unsigned int quiet_NaN() throw() { return static_cast(0); } static unsigned int signaling_NaN() throw() { return static_cast(0); } static unsigned int denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static long min() throw() { return -2147483647L - 1; } static long max() throw() { return 2147483647L; } static const int digits = (sizeof(long) * 8 - ((long)(-1) < 0)); static const int digits10 = ((sizeof(long) * 8 - ((long)(-1) < 0)) * 643 / 2136); static const bool is_signed = true; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static long epsilon() throw() { return 0; } static long round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static long infinity() throw() { return static_cast(0); } static long quiet_NaN() throw() { return static_cast(0); } static long signaling_NaN() throw() { return static_cast(0); } static long denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static unsigned long min() throw() { return 0; } static unsigned long max() throw() { return 2147483647L * 2UL + 1; } static const int digits = (sizeof(unsigned long) * 8 - ((unsigned long)(-1) < 0)); static const int digits10 = ((sizeof(unsigned long) * 8 - ((unsigned long)(-1) < 0)) * 643 / 2136); static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static unsigned long epsilon() throw() { return 0; } static unsigned long round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static unsigned long infinity() throw() { return static_cast(0); } static unsigned long quiet_NaN() throw() { return static_cast(0); } static unsigned long signaling_NaN() throw() { return static_cast(0); } static unsigned long denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static long long min() throw() { return -9223372036854775807LL - 1; } static long long max() throw() { return 9223372036854775807LL; } static const int digits = (sizeof(long long) * 8 - ((long long)(-1) < 0)); static const int digits10 = ((sizeof(long long) * 8 - ((long long)(-1) < 0)) * 643 / 2136); static const bool is_signed = true; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static long long epsilon() throw() { return 0; } static long long round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static long long infinity() throw() { return static_cast(0); } static long long quiet_NaN() throw() { return static_cast(0); } static long long signaling_NaN() throw() { return static_cast(0); } static long long denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static unsigned long long min() throw() { return 0; } static unsigned long long max() throw() { return 9223372036854775807LL * 2ULL + 1; } static const int digits = (sizeof(unsigned long long) * 8 - ((unsigned long long)(-1) < 0)); static const int digits10 = ((sizeof(unsigned long long) * 8 - ((unsigned long long)(-1) < 0)) * 643 / 2136); static const bool is_signed = false; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static unsigned long long epsilon() throw() { return 0; } static unsigned long long round_error() throw() { return 0; } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static unsigned long long infinity() throw() { return static_cast(0); } static unsigned long long quiet_NaN() throw() { return static_cast(0); } static unsigned long long signaling_NaN() throw() { return static_cast(0); } static unsigned long long denorm_min() throw() { return static_cast(0); } static const bool is_iec559 = false; static const bool is_bounded = true; static const bool is_modulo = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; template<> struct numeric_limits { static const bool is_specialized = true; static float min() throw() { return 1.17549435e-38F; } static float max() throw() { return 3.40282347e+38F; } static const int digits = 24; static const int digits10 = 6; static const bool is_signed = true; static const bool is_integer = false; static const bool is_exact = false; static const int radix = 2; static float epsilon() throw() { return 1.19209290e-7F; } static float round_error() throw() { return 0.5F; } static const int min_exponent = (-125); static const int min_exponent10 = (-37); static const int max_exponent = 128; static const int max_exponent10 = 38; static const bool has_infinity = 1; static const bool has_quiet_NaN = 1; static const bool has_signaling_NaN = has_quiet_NaN; static const float_denorm_style has_denorm = 1.40129846e-45F ? denorm_present : denorm_absent; static const bool has_denorm_loss = false; static float infinity() throw() { return __builtin_huge_valf (); } static float quiet_NaN() throw() { return __builtin_nanf (""); } static float signaling_NaN() throw() { return __builtin_nansf (""); } static float denorm_min() throw() { return 1.40129846e-45F; } static const bool is_iec559 = has_infinity && has_quiet_NaN && has_denorm == denorm_present; static const bool is_bounded = true; static const bool is_modulo = false; static const bool traps = false; static const bool tinyness_before = false; static const float_round_style round_style = round_to_nearest; }; template<> struct numeric_limits { static const bool is_specialized = true; static double min() throw() { return 2.2250738585072014e-308; } static double max() throw() { return 1.7976931348623157e+308; } static const int digits = 53; static const int digits10 = 15; static const bool is_signed = true; static const bool is_integer = false; static const bool is_exact = false; static const int radix = 2; static double epsilon() throw() { return 2.2204460492503131e-16; } static double round_error() throw() { return 0.5; } static const int min_exponent = (-1021); static const int min_exponent10 = (-307); static const int max_exponent = 1024; static const int max_exponent10 = 308; static const bool has_infinity = 1; static const bool has_quiet_NaN = 1; static const bool has_signaling_NaN = has_quiet_NaN; static const float_denorm_style has_denorm = 4.9406564584124654e-324 ? denorm_present : denorm_absent; static const bool has_denorm_loss = false; static double infinity() throw() { return __builtin_huge_val(); } static double quiet_NaN() throw() { return __builtin_nan (""); } static double signaling_NaN() throw() { return __builtin_nans (""); } static double denorm_min() throw() { return 4.9406564584124654e-324; } static const bool is_iec559 = has_infinity && has_quiet_NaN && has_denorm == denorm_present; static const bool is_bounded = true; static const bool is_modulo = false; static const bool traps = false; static const bool tinyness_before = false; static const float_round_style round_style = round_to_nearest; }; template<> struct numeric_limits { static const bool is_specialized = true; static long double min() throw() { return 3.36210314311209350626e-4932L; } static long double max() throw() { return 1.18973149535723176502e+4932L; } static const int digits = 64; static const int digits10 = 18; static const bool is_signed = true; static const bool is_integer = false; static const bool is_exact = false; static const int radix = 2; static long double epsilon() throw() { return 1.08420217248550443401e-19L; } static long double round_error() throw() { return 0.5L; } static const int min_exponent = (-16381); static const int min_exponent10 = (-4931); static const int max_exponent = 16384; static const int max_exponent10 = 4932; static const bool has_infinity = 1; static const bool has_quiet_NaN = 1; static const bool has_signaling_NaN = has_quiet_NaN; static const float_denorm_style has_denorm = 3.64519953188247460253e-4951L ? denorm_present : denorm_absent; static const bool has_denorm_loss = false; static long double infinity() throw() { return __builtin_huge_vall (); } static long double quiet_NaN() throw() { return __builtin_nanl (""); } static long double signaling_NaN() throw() { return __builtin_nansl (""); } static long double denorm_min() throw() { return 3.64519953188247460253e-4951L; } static const bool is_iec559 = has_infinity && has_quiet_NaN && has_denorm == denorm_present; static const bool is_bounded = true; static const bool is_modulo = false; static const bool traps = false; static const bool tinyness_before = false; static const float_round_style round_style = round_to_nearest; }; } # 62 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 2 3 namespace std { # 73 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template pair<_Tp*, ptrdiff_t> __get_temporary_buffer(ptrdiff_t __len, _Tp*) { const ptrdiff_t __max = numeric_limits::max() / sizeof(_Tp); if (__len > __max) __len = __max; while (__len > 0) { _Tp* __tmp = static_cast<_Tp*>(::operator new(__len * sizeof(_Tp), nothrow)); if (__tmp != 0) return pair<_Tp*, ptrdiff_t>(__tmp, __len); __len /= 2; } return pair<_Tp*, ptrdiff_t>(static_cast<_Tp*>(0), 0); } # 109 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template inline pair<_Tp*, ptrdiff_t> get_temporary_buffer(ptrdiff_t __len) { return std::__get_temporary_buffer(__len, static_cast<_Tp*>(0)); } # 121 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template void return_temporary_buffer(_Tp* __p) { ::operator delete(__p, nothrow); } # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template struct auto_ptr_ref { _Tp1* _M_ptr; explicit auto_ptr_ref(_Tp1* __p): _M_ptr(__p) { } }; # 174 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template class auto_ptr { private: _Tp* _M_ptr; public: typedef _Tp element_type; explicit auto_ptr(element_type* __p = 0) throw() : _M_ptr(__p) { } # 200 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 auto_ptr(auto_ptr& __a) throw() : _M_ptr(__a.release()) { } # 212 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template auto_ptr(auto_ptr<_Tp1>& __a) throw() : _M_ptr(__a.release()) { } # 223 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 auto_ptr& operator=(auto_ptr& __a) throw() { reset(__a.release()); return *this; } # 240 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 template auto_ptr& operator=(auto_ptr<_Tp1>& __a) throw() { reset(__a.release()); return *this; } # 260 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 ~auto_ptr() { delete _M_ptr; } # 270 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 element_type& operator*() const throw() { ; return *_M_ptr; } element_type* operator->() const throw() { ; return _M_ptr; } # 300 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 element_type* get() const throw() { return _M_ptr; } # 314 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 element_type* release() throw() { element_type* __tmp = _M_ptr; _M_ptr = 0; return __tmp; } # 329 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 void reset(element_type* __p = 0) throw() { if (__p != _M_ptr) { delete _M_ptr; _M_ptr = __p; } } # 350 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/memory" 3 auto_ptr(auto_ptr_ref __ref) throw() : _M_ptr(__ref._M_ptr) { } auto_ptr& operator=(auto_ptr_ref __ref) throw() { if (__ref._M_ptr != this->get()) { delete _M_ptr; _M_ptr = __ref._M_ptr; } return *this; } template operator auto_ptr_ref<_Tp1>() throw() { return auto_ptr_ref<_Tp1>(this->release()); } template operator auto_ptr<_Tp1>() throw() { return auto_ptr<_Tp1>(this->release()); } }; } # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 namespace std { # 101 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template struct unary_function { typedef _Arg argument_type; typedef _Result result_type; }; template struct binary_function { typedef _Arg1 first_argument_type; typedef _Arg2 second_argument_type; typedef _Result result_type; }; # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template struct plus : public binary_function<_Tp, _Tp, _Tp> { _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x + __y; } }; template struct minus : public binary_function<_Tp, _Tp, _Tp> { _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x - __y; } }; template struct multiplies : public binary_function<_Tp, _Tp, _Tp> { _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x * __y; } }; template struct divides : public binary_function<_Tp, _Tp, _Tp> { _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x / __y; } }; template struct modulus : public binary_function<_Tp, _Tp, _Tp> { _Tp operator()(const _Tp& __x, const _Tp& __y) const { return __x % __y; } }; template struct negate : public unary_function<_Tp, _Tp> { _Tp operator()(const _Tp& __x) const { return -__x; } }; # 195 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template struct equal_to : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x == __y; } }; template struct not_equal_to : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x != __y; } }; template struct greater : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x > __y; } }; template struct less : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x < __y; } }; template struct greater_equal : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x >= __y; } }; template struct less_equal : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x <= __y; } }; # 256 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template struct logical_and : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x && __y; } }; template struct logical_or : public binary_function<_Tp, _Tp, bool> { bool operator()(const _Tp& __x, const _Tp& __y) const { return __x || __y; } }; template struct logical_not : public unary_function<_Tp, bool> { bool operator()(const _Tp& __x) const { return !__x; } }; # 311 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template class unary_negate : public unary_function { protected: _Predicate _M_pred; public: explicit unary_negate(const _Predicate& __x) : _M_pred(__x) {} bool operator()(const typename _Predicate::argument_type& __x) const { return !_M_pred(__x); } }; template inline unary_negate<_Predicate> not1(const _Predicate& __pred) { return unary_negate<_Predicate>(__pred); } template class binary_negate : public binary_function { protected: _Predicate _M_pred; public: explicit binary_negate(const _Predicate& __x) : _M_pred(__x) { } bool operator()(const typename _Predicate::first_argument_type& __x, const typename _Predicate::second_argument_type& __y) const { return !_M_pred(__x, __y); } }; template inline binary_negate<_Predicate> not2(const _Predicate& __pred) { return binary_negate<_Predicate>(__pred); } # 391 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template class binder1st : public unary_function { protected: _Operation op; typename _Operation::first_argument_type value; public: binder1st(const _Operation& __x, const typename _Operation::first_argument_type& __y) : op(__x), value(__y) {} typename _Operation::result_type operator()(const typename _Operation::second_argument_type& __x) const { return op(value, __x); } typename _Operation::result_type operator()(typename _Operation::second_argument_type& __x) const { return op(value, __x); } }; template inline binder1st<_Operation> bind1st(const _Operation& __fn, const _Tp& __x) { typedef typename _Operation::first_argument_type _Arg1_type; return binder1st<_Operation>(__fn, _Arg1_type(__x)); } template class binder2nd : public unary_function { protected: _Operation op; typename _Operation::second_argument_type value; public: binder2nd(const _Operation& __x, const typename _Operation::second_argument_type& __y) : op(__x), value(__y) {} typename _Operation::result_type operator()(const typename _Operation::first_argument_type& __x) const { return op(__x, value); } typename _Operation::result_type operator()(typename _Operation::first_argument_type& __x) const { return op(__x, value); } }; template inline binder2nd<_Operation> bind2nd(const _Operation& __fn, const _Tp& __x) { typedef typename _Operation::second_argument_type _Arg2_type; return binder2nd<_Operation>(__fn, _Arg2_type(__x)); } # 480 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template class pointer_to_unary_function : public unary_function<_Arg, _Result> { protected: _Result (*_M_ptr)(_Arg); public: pointer_to_unary_function() {} explicit pointer_to_unary_function(_Result (*__x)(_Arg)) : _M_ptr(__x) {} _Result operator()(_Arg __x) const { return _M_ptr(__x); } }; template inline pointer_to_unary_function<_Arg, _Result> ptr_fun(_Result (*__x)(_Arg)) { return pointer_to_unary_function<_Arg, _Result>(__x); } template class pointer_to_binary_function : public binary_function<_Arg1, _Arg2, _Result> { protected: _Result (*_M_ptr)(_Arg1, _Arg2); public: pointer_to_binary_function() {} explicit pointer_to_binary_function(_Result (*__x)(_Arg1, _Arg2)) : _M_ptr(__x) {} _Result operator()(_Arg1 __x, _Arg2 __y) const { return _M_ptr(__x, __y); } }; template inline pointer_to_binary_function<_Arg1, _Arg2, _Result> ptr_fun(_Result (*__x)(_Arg1, _Arg2)) { return pointer_to_binary_function<_Arg1, _Arg2, _Result>(__x); } template struct _Identity : public unary_function<_Tp,_Tp> { _Tp& operator()(_Tp& __x) const { return __x; } const _Tp& operator()(const _Tp& __x) const { return __x; } }; template struct _Select1st : public unary_function<_Pair, typename _Pair::first_type> { typename _Pair::first_type& operator()(_Pair& __x) const { return __x.first; } const typename _Pair::first_type& operator()(const _Pair& __x) const { return __x.first; } }; template struct _Select2nd : public unary_function<_Pair, typename _Pair::second_type> { typename _Pair::second_type& operator()(_Pair& __x) const { return __x.second; } const typename _Pair::second_type& operator()(const _Pair& __x) const { return __x.second; } }; # 590 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_function.h" 3 template class mem_fun_t : public unary_function<_Tp*, _Ret> { public: explicit mem_fun_t(_Ret (_Tp::*__pf)()) : _M_f(__pf) {} _Ret operator()(_Tp* __p) const { return (__p->*_M_f)(); } private: _Ret (_Tp::*_M_f)(); }; template class const_mem_fun_t : public unary_function { public: explicit const_mem_fun_t(_Ret (_Tp::*__pf)() const) : _M_f(__pf) {} _Ret operator()(const _Tp* __p) const { return (__p->*_M_f)(); } private: _Ret (_Tp::*_M_f)() const; }; template class mem_fun_ref_t : public unary_function<_Tp, _Ret> { public: explicit mem_fun_ref_t(_Ret (_Tp::*__pf)()) : _M_f(__pf) {} _Ret operator()(_Tp& __r) const { return (__r.*_M_f)(); } private: _Ret (_Tp::*_M_f)(); }; template class const_mem_fun_ref_t : public unary_function<_Tp, _Ret> { public: explicit const_mem_fun_ref_t(_Ret (_Tp::*__pf)() const) : _M_f(__pf) {} _Ret operator()(const _Tp& __r) const { return (__r.*_M_f)(); } private: _Ret (_Tp::*_M_f)() const; }; template class mem_fun1_t : public binary_function<_Tp*, _Arg, _Ret> { public: explicit mem_fun1_t(_Ret (_Tp::*__pf)(_Arg)) : _M_f(__pf) {} _Ret operator()(_Tp* __p, _Arg __x) const { return (__p->*_M_f)(__x); } private: _Ret (_Tp::*_M_f)(_Arg); }; template class const_mem_fun1_t : public binary_function { public: explicit const_mem_fun1_t(_Ret (_Tp::*__pf)(_Arg) const) : _M_f(__pf) {} _Ret operator()(const _Tp* __p, _Arg __x) const { return (__p->*_M_f)(__x); } private: _Ret (_Tp::*_M_f)(_Arg) const; }; template class mem_fun1_ref_t : public binary_function<_Tp, _Arg, _Ret> { public: explicit mem_fun1_ref_t(_Ret (_Tp::*__pf)(_Arg)) : _M_f(__pf) {} _Ret operator()(_Tp& __r, _Arg __x) const { return (__r.*_M_f)(__x); } private: _Ret (_Tp::*_M_f)(_Arg); }; template class const_mem_fun1_ref_t : public binary_function<_Tp, _Arg, _Ret> { public: explicit const_mem_fun1_ref_t(_Ret (_Tp::*__pf)(_Arg) const) : _M_f(__pf) {} _Ret operator()(const _Tp& __r, _Arg __x) const { return (__r.*_M_f)(__x); } private: _Ret (_Tp::*_M_f)(_Arg) const; }; template class mem_fun_t : public unary_function<_Tp*, void> { public: explicit mem_fun_t(void (_Tp::*__pf)()) : _M_f(__pf) {} void operator()(_Tp* __p) const { (__p->*_M_f)(); } private: void (_Tp::*_M_f)(); }; template class const_mem_fun_t : public unary_function { public: explicit const_mem_fun_t(void (_Tp::*__pf)() const) : _M_f(__pf) {} void operator()(const _Tp* __p) const { (__p->*_M_f)(); } private: void (_Tp::*_M_f)() const; }; template class mem_fun_ref_t : public unary_function<_Tp, void> { public: explicit mem_fun_ref_t(void (_Tp::*__pf)()) : _M_f(__pf) {} void operator()(_Tp& __r) const { (__r.*_M_f)(); } private: void (_Tp::*_M_f)(); }; template class const_mem_fun_ref_t : public unary_function<_Tp, void> { public: explicit const_mem_fun_ref_t(void (_Tp::*__pf)() const) : _M_f(__pf) {} void operator()(const _Tp& __r) const { (__r.*_M_f)(); } private: void (_Tp::*_M_f)() const; }; template class mem_fun1_t : public binary_function<_Tp*, _Arg, void> { public: explicit mem_fun1_t(void (_Tp::*__pf)(_Arg)) : _M_f(__pf) {} void operator()(_Tp* __p, _Arg __x) const { (__p->*_M_f)(__x); } private: void (_Tp::*_M_f)(_Arg); }; template class const_mem_fun1_t : public binary_function { public: explicit const_mem_fun1_t(void (_Tp::*__pf)(_Arg) const) : _M_f(__pf) {} void operator()(const _Tp* __p, _Arg __x) const { (__p->*_M_f)(__x); } private: void (_Tp::*_M_f)(_Arg) const; }; template class mem_fun1_ref_t : public binary_function<_Tp, _Arg, void> { public: explicit mem_fun1_ref_t(void (_Tp::*__pf)(_Arg)) : _M_f(__pf) {} void operator()(_Tp& __r, _Arg __x) const { (__r.*_M_f)(__x); } private: void (_Tp::*_M_f)(_Arg); }; template class const_mem_fun1_ref_t : public binary_function<_Tp, _Arg, void> { public: explicit const_mem_fun1_ref_t(void (_Tp::*__pf)(_Arg) const) : _M_f(__pf) {} void operator()(const _Tp& __r, _Arg __x) const { (__r.*_M_f)(__x); } private: void (_Tp::*_M_f)(_Arg) const; }; template inline mem_fun_t<_Ret, _Tp> mem_fun(_Ret (_Tp::*__f)()) { return mem_fun_t<_Ret, _Tp>(__f); } template inline const_mem_fun_t<_Ret, _Tp> mem_fun(_Ret (_Tp::*__f)() const) { return const_mem_fun_t<_Ret, _Tp>(__f); } template inline mem_fun_ref_t<_Ret, _Tp> mem_fun_ref(_Ret (_Tp::*__f)()) { return mem_fun_ref_t<_Ret, _Tp>(__f); } template inline const_mem_fun_ref_t<_Ret, _Tp> mem_fun_ref(_Ret (_Tp::*__f)() const) { return const_mem_fun_ref_t<_Ret, _Tp>(__f); } template inline mem_fun1_t<_Ret, _Tp, _Arg> mem_fun(_Ret (_Tp::*__f)(_Arg)) { return mem_fun1_t<_Ret, _Tp, _Arg>(__f); } template inline const_mem_fun1_t<_Ret, _Tp, _Arg> mem_fun(_Ret (_Tp::*__f)(_Arg) const) { return const_mem_fun1_t<_Ret, _Tp, _Arg>(__f); } template inline mem_fun1_ref_t<_Ret, _Tp, _Arg> mem_fun_ref(_Ret (_Tp::*__f)(_Arg)) { return mem_fun1_ref_t<_Ret, _Tp, _Arg>(__f); } template inline const_mem_fun1_ref_t<_Ret, _Tp, _Arg> mem_fun_ref(_Ret (_Tp::*__f)(_Arg) const) { return const_mem_fun1_ref_t<_Ret, _Tp, _Arg>(__f); } } # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/atomicity.h" 1 3 # 33 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/atomicity.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/atomic_word.h" 1 3 # 33 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/atomic_word.h" 3 typedef int _Atomic_word; # 34 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/atomicity.h" 2 3 namespace __gnu_cxx { _Atomic_word __attribute__ ((__unused__)) __exchange_and_add(volatile _Atomic_word* __mem, int __val); void __attribute__ ((__unused__)) __atomic_add(volatile _Atomic_word* __mem, int __val); } # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 2 3 #pragma GCC visibility push(default) namespace std { # 111 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template class basic_string { public: typedef _Traits traits_type; typedef typename _Traits::char_type value_type; typedef _Alloc allocator_type; typedef typename _Alloc::size_type size_type; typedef typename _Alloc::difference_type difference_type; typedef typename _Alloc::reference reference; typedef typename _Alloc::const_reference const_reference; typedef typename _Alloc::pointer pointer; typedef typename _Alloc::const_pointer const_pointer; typedef __gnu_cxx::__normal_iterator iterator; typedef __gnu_cxx::__normal_iterator const_iterator; typedef std::reverse_iterator const_reverse_iterator; typedef std::reverse_iterator reverse_iterator; private: # 146 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 struct _Rep_base { size_type _M_length; size_type _M_capacity; _Atomic_word _M_refcount; }; struct _Rep : _Rep_base { typedef typename _Alloc::template rebind::other _Raw_bytes_alloc; # 171 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 static const size_type _S_max_size; static const _CharT _S_terminal; static size_type _S_empty_rep_storage[]; static _Rep& _S_empty_rep() { return *reinterpret_cast<_Rep*>(&_S_empty_rep_storage); } bool _M_is_leaked() const { return this->_M_refcount < 0; } bool _M_is_shared() const { return this->_M_refcount > 0; } void _M_set_leaked() { this->_M_refcount = -1; } void _M_set_sharable() { this->_M_refcount = 0; } _CharT* _M_refdata() throw() { return reinterpret_cast<_CharT*>(this + 1); } _CharT* _M_grab(const _Alloc& __alloc1, const _Alloc& __alloc2) { return (!_M_is_leaked() && __alloc1 == __alloc2) ? _M_refcopy() : _M_clone(__alloc1); } static _Rep* _S_create(size_type, size_type, const _Alloc&); void _M_dispose(const _Alloc& __a) { if (__builtin_expect(this != &_S_empty_rep(), false)) if (__gnu_cxx::__exchange_and_add(&this->_M_refcount, -1) <= 0) _M_destroy(__a); } void _M_destroy(const _Alloc&) throw(); _CharT* _M_refcopy() throw() { if (__builtin_expect(this != &_S_empty_rep(), false)) __gnu_cxx::__atomic_add(&this->_M_refcount, 1); return _M_refdata(); } _CharT* _M_clone(const _Alloc&, size_type __res = 0); }; struct _Alloc_hider : _Alloc { _Alloc_hider(_CharT* __dat, const _Alloc& __a) : _Alloc(__a), _M_p(__dat) { } _CharT* _M_p; }; public: static const size_type npos = static_cast(-1); private: mutable _Alloc_hider _M_dataplus; _CharT* _M_data() const { return _M_dataplus._M_p; } _CharT* _M_data(_CharT* __p) { return (_M_dataplus._M_p = __p); } _Rep* _M_rep() const { return &((reinterpret_cast<_Rep*> (_M_data()))[-1]); } iterator _M_ibegin() const { return iterator(_M_data()); } iterator _M_iend() const { return iterator(_M_data() + this->size()); } void _M_leak() { if (!_M_rep()->_M_is_leaked()) _M_leak_hard(); } size_type _M_check(size_type __pos, const char* __s) const { if (__pos > this->size()) __throw_out_of_range((__s)); return __pos; } size_type _M_limit(size_type __pos, size_type __off) const { const bool __testoff = __off < this->size() - __pos; return __testoff ? __off : this->size() - __pos; } template static void _S_copy_chars(_CharT* __p, _Iterator __k1, _Iterator __k2) { for (; __k1 != __k2; ++__k1, ++__p) traits_type::assign(*__p, *__k1); } static void _S_copy_chars(_CharT* __p, iterator __k1, iterator __k2) { _S_copy_chars(__p, __k1.base(), __k2.base()); } static void _S_copy_chars(_CharT* __p, const_iterator __k1, const_iterator __k2) { _S_copy_chars(__p, __k1.base(), __k2.base()); } static void _S_copy_chars(_CharT* __p, _CharT* __k1, _CharT* __k2) { traits_type::copy(__p, __k1, __k2 - __k1); } static void _S_copy_chars(_CharT* __p, const _CharT* __k1, const _CharT* __k2) { traits_type::copy(__p, __k1, __k2 - __k1); } void _M_mutate(size_type __pos, size_type __len1, size_type __len2); void _M_leak_hard(); static _Rep& _S_empty_rep() { return _Rep::_S_empty_rep(); } public: inline basic_string(); explicit basic_string(const _Alloc& __a); basic_string(const basic_string& __str); basic_string(const basic_string& __str, size_type __pos, size_type __n = npos); basic_string(const basic_string& __str, size_type __pos, size_type __n, const _Alloc& __a); # 390 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string(const _CharT* __s, size_type __n, const _Alloc& __a = _Alloc()); basic_string(const _CharT* __s, const _Alloc& __a = _Alloc()); basic_string(size_type __n, _CharT __c, const _Alloc& __a = _Alloc()); template basic_string(_InputIterator __beg, _InputIterator __end, const _Alloc& __a = _Alloc()); ~basic_string() { _M_rep()->_M_dispose(this->get_allocator()); } basic_string& operator=(const basic_string& __str) { this->assign(__str); return *this; } basic_string& operator=(const _CharT* __s) { this->assign(__s); return *this; } # 451 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& operator=(_CharT __c) { this->assign(1, __c); return *this; } iterator begin() { _M_leak(); return iterator(_M_data()); } const_iterator begin() const { return const_iterator(_M_data()); } iterator end() { _M_leak(); return iterator(_M_data() + this->size()); } const_iterator end() const { return const_iterator(_M_data() + this->size()); } reverse_iterator rbegin() { return reverse_iterator(this->end()); } const_reverse_iterator rbegin() const { return const_reverse_iterator(this->end()); } reverse_iterator rend() { return reverse_iterator(this->begin()); } const_reverse_iterator rend() const { return const_reverse_iterator(this->begin()); } public: size_type size() const { return _M_rep()->_M_length; } size_type length() const { return _M_rep()->_M_length; } size_type max_size() const { return _Rep::_S_max_size; } # 559 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 void resize(size_type __n, _CharT __c); # 572 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 void resize(size_type __n) { this->resize(__n, _CharT()); } size_type capacity() const { return _M_rep()->_M_capacity; } # 599 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 void reserve(size_type __res_arg = 0); void clear() { _M_mutate(0, this->size(), 0); } bool empty() const { return this->size() == 0; } # 625 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 const_reference operator[] (size_type __pos) const { ; return _M_data()[__pos]; } # 642 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 reference operator[](size_type __pos) { ; _M_leak(); return _M_data()[__pos]; } # 660 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 const_reference at(size_type __n) const { if (__n >= this->size()) __throw_out_of_range(("basic_string::at")); return _M_data()[__n]; } # 679 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 reference at(size_type __n) { if (__n >= size()) __throw_out_of_range(("basic_string::at")); _M_leak(); return _M_data()[__n]; } basic_string& operator+=(const basic_string& __str) { return this->append(__str); } basic_string& operator+=(const _CharT* __s) { return this->append(__s); } basic_string& operator+=(_CharT __c) { return this->append(size_type(1), __c); } basic_string& append(const basic_string& __str); # 733 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& append(const basic_string& __str, size_type __pos, size_type __n); basic_string& append(const _CharT* __s, size_type __n); basic_string& append(const _CharT* __s) { ; return this->append(__s, traits_type::length(__s)); } # 765 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& append(size_type __n, _CharT __c) { return _M_replace_aux(this->size(), size_type(0), __n, __c); } # 777 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_string& append(_InputIterator __first, _InputIterator __last) { return this->replace(_M_iend(), _M_iend(), __first, __last); } void push_back(_CharT __c) { _M_replace_aux(this->size(), size_type(0), size_type(1), __c); } basic_string& assign(const basic_string& __str); # 810 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& assign(const basic_string& __str, size_type __pos, size_type __n) { return this->assign(__str._M_data() + __str._M_check(__pos, "basic_string::assign"), __str._M_limit(__pos, __n)); } # 826 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& assign(const _CharT* __s, size_type __n); # 838 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& assign(const _CharT* __s) { ; return this->assign(__s, traits_type::length(__s)); } # 854 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& assign(size_type __n, _CharT __c) { return _M_replace_aux(size_type(0), this->size(), __n, __c); } # 866 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_string& assign(_InputIterator __first, _InputIterator __last) { return this->replace(_M_ibegin(), _M_iend(), __first, __last); } # 883 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 void insert(iterator __p, size_type __n, _CharT __c) { this->replace(__p, __p, __n, __c); } # 898 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template void insert(iterator __p, _InputIterator __beg, _InputIterator __end) { this->replace(__p, __p, __beg, __end); } # 913 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& insert(size_type __pos1, const basic_string& __str) { return this->insert(__pos1, __str, size_type(0), __str.size()); } # 935 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& insert(size_type __pos1, const basic_string& __str, size_type __pos2, size_type __n) { return this->insert(__pos1, __str._M_data() + __str._M_check(__pos2, "basic_string::insert"), __str._M_limit(__pos2, __n)); } # 958 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& insert(size_type __pos, const _CharT* __s, size_type __n); # 976 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& insert(size_type __pos, const _CharT* __s) { ; return this->insert(__pos, __s, traits_type::length(__s)); } # 999 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& insert(size_type __pos, size_type __n, _CharT __c) { return _M_replace_aux(_M_check(__pos, "basic_string::insert"), size_type(0), __n, __c); } # 1016 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 iterator insert(iterator __p, _CharT __c) { ; const size_type __pos = __p - _M_ibegin(); _M_replace_aux(__pos, size_type(0), size_type(1), __c); _M_rep()->_M_set_leaked(); return this->_M_ibegin() + __pos; } # 1040 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& erase(size_type __pos = 0, size_type __n = npos) { return _M_replace_safe(_M_check(__pos, "basic_string::erase"), _M_limit(__pos, __n), __null, size_type(0)); } # 1053 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 iterator erase(iterator __position) { ; const size_type __pos = __position - _M_ibegin(); _M_replace_safe(__pos, size_type(1), __null, size_type(0)); _M_rep()->_M_set_leaked(); return _M_ibegin() + __pos; } # 1073 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 iterator erase(iterator __first, iterator __last) { ; const size_type __pos = __first - _M_ibegin(); _M_replace_safe(__pos, __last - __first, __null, size_type(0)); _M_rep()->_M_set_leaked(); return _M_ibegin() + __pos; } # 1100 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(size_type __pos, size_type __n, const basic_string& __str) { return this->replace(__pos, __n, __str._M_data(), __str.size()); } # 1122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(size_type __pos1, size_type __n1, const basic_string& __str, size_type __pos2, size_type __n2) { return this->replace(__pos1, __n1, __str._M_data() + __str._M_check(__pos2, "basic_string::replace"), __str._M_limit(__pos2, __n2)); } # 1146 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(size_type __pos, size_type __n1, const _CharT* __s, size_type __n2); # 1165 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(size_type __pos, size_type __n1, const _CharT* __s) { ; return this->replace(__pos, __n1, __s, traits_type::length(__s)); } # 1188 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(size_type __pos, size_type __n1, size_type __n2, _CharT __c) { return _M_replace_aux(_M_check(__pos, "basic_string::replace"), _M_limit(__pos, __n1), __n2, __c); } # 1206 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(iterator __i1, iterator __i2, const basic_string& __str) { return this->replace(__i1, __i2, __str._M_data(), __str.size()); } # 1224 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(iterator __i1, iterator __i2, const _CharT* __s, size_type __n) { ; return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __s, __n); } # 1245 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(iterator __i1, iterator __i2, const _CharT* __s) { ; return this->replace(__i1, __i2, __s, traits_type::length(__s)); } # 1266 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string& replace(iterator __i1, iterator __i2, size_type __n, _CharT __c) { ; return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __c); } # 1288 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_string& replace(iterator __i1, iterator __i2, _InputIterator __k1, _InputIterator __k2) { ; ; typedef typename _Is_integer<_InputIterator>::_Integral _Integral; return _M_replace_dispatch(__i1, __i2, __k1, __k2, _Integral()); } basic_string& replace(iterator __i1, iterator __i2, _CharT* __k1, _CharT* __k2) { ; ; return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __k1, __k2 - __k1); } basic_string& replace(iterator __i1, iterator __i2, const _CharT* __k1, const _CharT* __k2) { ; ; return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __k1, __k2 - __k1); } basic_string& replace(iterator __i1, iterator __i2, iterator __k1, iterator __k2) { ; ; return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __k1.base(), __k2 - __k1); } basic_string& replace(iterator __i1, iterator __i2, const_iterator __k1, const_iterator __k2) { ; ; return this->replace(__i1 - _M_ibegin(), __i2 - __i1, __k1.base(), __k2 - __k1); } private: template basic_string& _M_replace_dispatch(iterator __i1, iterator __i2, _Integer __n, _Integer __val, __true_type) { return _M_replace_aux(__i1 - _M_ibegin(), __i2 - __i1, __n, __val); } template basic_string& _M_replace_dispatch(iterator __i1, iterator __i2, _InputIterator __k1, _InputIterator __k2, __false_type); basic_string& _M_replace_aux(size_type __pos1, size_type __n1, size_type __n2, _CharT __c) { if (this->max_size() - (this->size() - __n1) < __n2) __throw_length_error(("basic_string::_M_replace_aux")); _M_mutate(__pos1, __n1, __n2); if (__n2 == 1) _M_data()[__pos1] = __c; else if (__n2) traits_type::assign(_M_data() + __pos1, __n2, __c); return *this; } basic_string& _M_replace_safe(size_type __pos1, size_type __n1, const _CharT* __s, size_type __n2) { _M_mutate(__pos1, __n1, __n2); if (__n2 == 1) _M_data()[__pos1] = *__s; else if (__n2) traits_type::copy(_M_data() + __pos1, __s, __n2); return *this; } template static _CharT* _S_construct_aux(_InIterator __beg, _InIterator __end, const _Alloc& __a, __false_type) { typedef typename iterator_traits<_InIterator>::iterator_category _Tag; return _S_construct(__beg, __end, __a, _Tag()); } template static _CharT* _S_construct_aux(_InIterator __beg, _InIterator __end, const _Alloc& __a, __true_type) { return _S_construct(static_cast(__beg), static_cast(__end), __a); } template static _CharT* _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a) { typedef typename _Is_integer<_InIterator>::_Integral _Integral; return _S_construct_aux(__beg, __end, __a, _Integral()); } template static _CharT* _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a, input_iterator_tag); template static _CharT* _S_construct(_FwdIterator __beg, _FwdIterator __end, const _Alloc& __a, forward_iterator_tag); static _CharT* _S_construct(size_type __req, _CharT __c, const _Alloc& __a); public: # 1437 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type copy(_CharT* __s, size_type __n, size_type __pos = 0) const; # 1447 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 void swap(basic_string& __s); # 1457 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 const _CharT* c_str() const { return _M_data(); } const _CharT* data() const { return _M_data(); } allocator_type get_allocator() const { return _M_dataplus; } # 1486 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find(const _CharT* __s, size_type __pos, size_type __n) const; # 1499 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find(const basic_string& __str, size_type __pos = 0) const { return this->find(__str.data(), __pos, __str.size()); } # 1513 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find(const _CharT* __s, size_type __pos = 0) const { ; return this->find(__s, __pos, traits_type::length(__s)); } # 1530 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find(_CharT __c, size_type __pos = 0) const; # 1543 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type rfind(const basic_string& __str, size_type __pos = npos) const { return this->rfind(__str.data(), __pos, __str.size()); } # 1558 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type rfind(const _CharT* __s, size_type __pos, size_type __n) const; # 1571 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type rfind(const _CharT* __s, size_type __pos = npos) const { ; return this->rfind(__s, __pos, traits_type::length(__s)); } # 1588 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type rfind(_CharT __c, size_type __pos = npos) const; # 1601 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_of(const basic_string& __str, size_type __pos = 0) const { return this->find_first_of(__str.data(), __pos, __str.size()); } # 1616 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_of(const _CharT* __s, size_type __pos, size_type __n) const; # 1629 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_of(const _CharT* __s, size_type __pos = 0) const { ; return this->find_first_of(__s, __pos, traits_type::length(__s)); } # 1648 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_of(_CharT __c, size_type __pos = 0) const { return this->find(__c, __pos); } # 1662 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_of(const basic_string& __str, size_type __pos = npos) const { return this->find_last_of(__str.data(), __pos, __str.size()); } # 1677 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_of(const _CharT* __s, size_type __pos, size_type __n) const; # 1690 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_of(const _CharT* __s, size_type __pos = npos) const { ; return this->find_last_of(__s, __pos, traits_type::length(__s)); } # 1709 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_of(_CharT __c, size_type __pos = npos) const { return this->rfind(__c, __pos); } # 1723 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_not_of(const basic_string& __str, size_type __pos = 0) const { return this->find_first_not_of(__str.data(), __pos, __str.size()); } # 1738 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_not_of(const _CharT* __s, size_type __pos, size_type __n) const; # 1752 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_not_of(const _CharT* __s, size_type __pos = 0) const { ; return this->find_first_not_of(__s, __pos, traits_type::length(__s)); } # 1769 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_first_not_of(_CharT __c, size_type __pos = 0) const; # 1782 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_not_of(const basic_string& __str, size_type __pos = npos) const { return this->find_last_not_of(__str.data(), __pos, __str.size()); } # 1798 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_not_of(const _CharT* __s, size_type __pos, size_type __n) const; # 1811 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_not_of(const _CharT* __s, size_type __pos = npos) const { ; return this->find_last_not_of(__s, __pos, traits_type::length(__s)); } # 1828 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 size_type find_last_not_of(_CharT __c, size_type __pos = npos) const; # 1843 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 basic_string substr(size_type __pos = 0, size_type __n = npos) const { return basic_string(*this, _M_check(__pos, "basic_string::substr"), __n); } # 1861 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(const basic_string& __str) const { const size_type __size = this->size(); const size_type __osize = __str.size(); const size_type __len = std::min(__size, __osize); int __r = traits_type::compare(_M_data(), __str.data(), __len); if (!__r) __r = __size - __osize; return __r; } # 1891 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(size_type __pos, size_type __n, const basic_string& __str) const; # 1915 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(size_type __pos1, size_type __n1, const basic_string& __str, size_type __pos2, size_type __n2) const; # 1933 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(const _CharT* __s) const; # 1956 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(size_type __pos, size_type __n1, const _CharT* __s) const; # 1981 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 int compare(size_type __pos, size_type __n1, const _CharT* __s, size_type __n2) const; }; template inline basic_string<_CharT, _Traits, _Alloc>:: basic_string() : _M_dataplus(_S_empty_rep()._M_refdata(), _Alloc()) { } # 2002 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_string<_CharT, _Traits, _Alloc> operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { basic_string<_CharT, _Traits, _Alloc> __str(__lhs); __str.append(__rhs); return __str; } template basic_string<_CharT,_Traits,_Alloc> operator+(const _CharT* __lhs, const basic_string<_CharT,_Traits,_Alloc>& __rhs); template basic_string<_CharT,_Traits,_Alloc> operator+(_CharT __lhs, const basic_string<_CharT,_Traits,_Alloc>& __rhs); template inline basic_string<_CharT, _Traits, _Alloc> operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { basic_string<_CharT, _Traits, _Alloc> __str(__lhs); __str.append(__rhs); return __str; } template inline basic_string<_CharT, _Traits, _Alloc> operator+(const basic_string<_CharT, _Traits, _Alloc>& __lhs, _CharT __rhs) { typedef basic_string<_CharT, _Traits, _Alloc> __string_type; typedef typename __string_type::size_type __size_type; __string_type __str(__lhs); __str.append(__size_type(1), __rhs); return __str; } # 2073 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator==(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __lhs.compare(__rhs) == 0; } template inline bool operator==(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) == 0; } template inline bool operator==(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) == 0; } # 2110 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator!=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) != 0; } template inline bool operator!=(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) != 0; } template inline bool operator!=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) != 0; } # 2147 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator<(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __lhs.compare(__rhs) < 0; } template inline bool operator<(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) < 0; } template inline bool operator<(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) > 0; } # 2184 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator>(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __lhs.compare(__rhs) > 0; } template inline bool operator>(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) > 0; } template inline bool operator>(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) < 0; } # 2221 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator<=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __lhs.compare(__rhs) <= 0; } template inline bool operator<=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) <= 0; } template inline bool operator<=(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) >= 0; } # 2258 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline bool operator>=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __lhs.compare(__rhs) >= 0; } template inline bool operator>=(const basic_string<_CharT, _Traits, _Alloc>& __lhs, const _CharT* __rhs) { return __lhs.compare(__rhs) >= 0; } template inline bool operator>=(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { return __rhs.compare(__lhs) <= 0; } # 2295 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline void swap(basic_string<_CharT, _Traits, _Alloc>& __lhs, basic_string<_CharT, _Traits, _Alloc>& __rhs) { __lhs.swap(__rhs); } # 2312 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __is, basic_string<_CharT, _Traits, _Alloc>& __str); # 2326 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __os, const basic_string<_CharT, _Traits, _Alloc>& __str); # 2344 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template basic_istream<_CharT,_Traits>& getline(basic_istream<_CharT, _Traits>& __is, basic_string<_CharT, _Traits, _Alloc>& __str, _CharT __delim); # 2361 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.h" 3 template inline basic_istream<_CharT,_Traits>& getline(basic_istream<_CharT, _Traits>& __is, basic_string<_CharT, _Traits, _Alloc>& __str); } #pragma GCC visibility pop # 54 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/algorithm" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/algorithm" 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/algorithm" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 1 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 namespace std { template bool __is_heap(_RandomAccessIterator __first, _Distance __n) { _Distance __parent = 0; for (_Distance __child = 1; __child < __n; ++__child) { if (__first[__parent] < __first[__child]) return false; if ((__child & 1) == 0) ++__parent; } return true; } template bool __is_heap(_RandomAccessIterator __first, _StrictWeakOrdering __comp, _Distance __n) { _Distance __parent = 0; for (_Distance __child = 1; __child < __n; ++__child) { if (__comp(__first[__parent], __first[__child])) return false; if ((__child & 1) == 0) ++__parent; } return true; } template bool __is_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { return std::__is_heap(__first, std::distance(__first, __last)); } template bool __is_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _StrictWeakOrdering __comp) { return std::__is_heap(__first, __comp, std::distance(__first, __last)); } template void __push_heap(_RandomAccessIterator __first, _Distance __holeIndex, _Distance __topIndex, _Tp __value) { _Distance __parent = (__holeIndex - 1) / 2; while (__holeIndex > __topIndex && *(__first + __parent) < __value) { *(__first + __holeIndex) = *(__first + __parent); __holeIndex = __parent; __parent = (__holeIndex - 1) / 2; } *(__first + __holeIndex) = __value; } # 139 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template inline void push_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; std::__push_heap(__first, _DistanceType((__last - __first) - 1), _DistanceType(0), _ValueType(*(__last - 1))); } template void __push_heap(_RandomAccessIterator __first, _Distance __holeIndex, _Distance __topIndex, _Tp __value, _Compare __comp) { _Distance __parent = (__holeIndex - 1) / 2; while (__holeIndex > __topIndex && __comp(*(__first + __parent), __value)) { *(__first + __holeIndex) = *(__first + __parent); __holeIndex = __parent; __parent = (__holeIndex - 1) / 2; } *(__first + __holeIndex) = __value; } # 187 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template inline void push_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; ; std::__push_heap(__first, _DistanceType((__last - __first) - 1), _DistanceType(0), _ValueType(*(__last - 1)), __comp); } template void __adjust_heap(_RandomAccessIterator __first, _Distance __holeIndex, _Distance __len, _Tp __value) { const _Distance __topIndex = __holeIndex; _Distance __secondChild = 2 * __holeIndex + 2; while (__secondChild < __len) { if (*(__first + __secondChild) < *(__first + (__secondChild - 1))) __secondChild--; *(__first + __holeIndex) = *(__first + __secondChild); __holeIndex = __secondChild; __secondChild = 2 * (__secondChild + 1); } if (__secondChild == __len) { *(__first + __holeIndex) = *(__first + (__secondChild - 1)); __holeIndex = __secondChild - 1; } std::__push_heap(__first, __holeIndex, __topIndex, __value); } template inline void __pop_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _RandomAccessIterator __result, _Tp __value) { typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; *__result = *__first; std::__adjust_heap(__first, _Distance(0), _Distance(__last - __first), __value); } # 251 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template inline void pop_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; ; std::__pop_heap(__first, __last - 1, __last - 1, _ValueType(*(__last - 1))); } template void __adjust_heap(_RandomAccessIterator __first, _Distance __holeIndex, _Distance __len, _Tp __value, _Compare __comp) { const _Distance __topIndex = __holeIndex; _Distance __secondChild = 2 * __holeIndex + 2; while (__secondChild < __len) { if (__comp(*(__first + __secondChild), *(__first + (__secondChild - 1)))) __secondChild--; *(__first + __holeIndex) = *(__first + __secondChild); __holeIndex = __secondChild; __secondChild = 2 * (__secondChild + 1); } if (__secondChild == __len) { *(__first + __holeIndex) = *(__first + (__secondChild - 1)); __holeIndex = __secondChild - 1; } std::__push_heap(__first, __holeIndex, __topIndex, __value, __comp); } template inline void __pop_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _RandomAccessIterator __result, _Tp __value, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; *__result = *__first; std::__adjust_heap(__first, _Distance(0), _Distance(__last - __first), __value, __comp); } # 317 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template inline void pop_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { ; ; typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; std::__pop_heap(__first, __last - 1, __last - 1, _ValueType(*(__last - 1)), __comp); } # 342 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template void make_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; if (__last - __first < 2) return; const _DistanceType __len = __last - __first; _DistanceType __parent = (__len - 2) / 2; while (true) { std::__adjust_heap(__first, __parent, __len, _ValueType(*(__first + __parent))); if (__parent == 0) return; __parent--; } } # 382 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template inline void make_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; if (__last - __first < 2) return; const _DistanceType __len = __last - __first; _DistanceType __parent = (__len - 2) / 2; while (true) { std::__adjust_heap(__first, __parent, __len, _ValueType(*(__first + __parent)), __comp); if (__parent == 0) return; __parent--; } } # 420 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template void sort_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { ; while (__last - __first > 1) std::pop_heap(__first, __last--); } # 446 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_heap.h" 3 template void sort_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { ; ; while (__last - __first > 1) std::pop_heap(__first, __last--, __comp); } } # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_tempbuf.h" 1 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_tempbuf.h" 3 namespace std { template class _Temporary_buffer { public: typedef _Tp value_type; typedef value_type* pointer; typedef pointer iterator; typedef ptrdiff_t size_type; protected: size_type _M_original_len; size_type _M_len; pointer _M_buffer; void _M_initialize_buffer(const _Tp&, __true_type) { } void _M_initialize_buffer(const _Tp& val, __false_type) { std::uninitialized_fill_n(_M_buffer, _M_len, val); } public: size_type size() const { return _M_len; } size_type requested_size() const { return _M_original_len; } iterator begin() { return _M_buffer; } iterator end() { return _M_buffer + _M_len; } _Temporary_buffer(_ForwardIterator __first, _ForwardIterator __last); ~_Temporary_buffer() { std::_Destroy(_M_buffer, _M_buffer + _M_len); std::return_temporary_buffer(_M_buffer); } private: _Temporary_buffer(const _Temporary_buffer&); void operator=(const _Temporary_buffer&); }; template _Temporary_buffer<_ForwardIterator, _Tp>:: _Temporary_buffer(_ForwardIterator __first, _ForwardIterator __last) : _M_original_len(std::distance(__first, __last)), _M_len(0), _M_buffer(0) { typedef typename __type_traits<_Tp>::has_trivial_default_constructor _Trivial; try { pair __p(get_temporary_buffer< value_type>(_M_original_len)); _M_buffer = __p.first; _M_len = __p.second; if (_M_len > 0) _M_initialize_buffer(*__first, _Trivial()); } catch(...) { std::return_temporary_buffer(_M_buffer); _M_buffer = 0; _M_len = 0; throw; } } } # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 2 3 namespace std { # 84 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline const _Tp& __median(const _Tp& __a, const _Tp& __b, const _Tp& __c) { if (__a < __b) if (__b < __c) return __b; else if (__a < __c) return __c; else return __a; else if (__a < __c) return __a; else if (__b < __c) return __c; else return __b; } # 118 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline const _Tp& __median(const _Tp& __a, const _Tp& __b, const _Tp& __c, _Compare __comp) { if (__comp(__a, __b)) if (__comp(__b, __c)) return __b; else if (__comp(__a, __c)) return __c; else return __a; else if (__comp(__a, __c)) return __a; else if (__comp(__b, __c)) return __c; else return __b; } # 150 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _Function for_each(_InputIterator __first, _InputIterator __last, _Function __f) { ; for ( ; __first != __last; ++__first) __f(*__first); return __f; } template inline _InputIterator find(_InputIterator __first, _InputIterator __last, const _Tp& __val, input_iterator_tag) { while (__first != __last && !(*__first == __val)) ++__first; return __first; } template inline _InputIterator find_if(_InputIterator __first, _InputIterator __last, _Predicate __pred, input_iterator_tag) { while (__first != __last && !__pred(*__first)) ++__first; return __first; } template _RandomAccessIterator find(_RandomAccessIterator __first, _RandomAccessIterator __last, const _Tp& __val, random_access_iterator_tag) { typename iterator_traits<_RandomAccessIterator>::difference_type __trip_count = (__last - __first) >> 2; for ( ; __trip_count > 0 ; --__trip_count) { if (*__first == __val) return __first; ++__first; if (*__first == __val) return __first; ++__first; if (*__first == __val) return __first; ++__first; if (*__first == __val) return __first; ++__first; } switch (__last - __first) { case 3: if (*__first == __val) return __first; ++__first; case 2: if (*__first == __val) return __first; ++__first; case 1: if (*__first == __val) return __first; ++__first; case 0: default: return __last; } } template _RandomAccessIterator find_if(_RandomAccessIterator __first, _RandomAccessIterator __last, _Predicate __pred, random_access_iterator_tag) { typename iterator_traits<_RandomAccessIterator>::difference_type __trip_count = (__last - __first) >> 2; for ( ; __trip_count > 0 ; --__trip_count) { if (__pred(*__first)) return __first; ++__first; if (__pred(*__first)) return __first; ++__first; if (__pred(*__first)) return __first; ++__first; if (__pred(*__first)) return __first; ++__first; } switch (__last - __first) { case 3: if (__pred(*__first)) return __first; ++__first; case 2: if (__pred(*__first)) return __first; ++__first; case 1: if (__pred(*__first)) return __first; ++__first; case 0: default: return __last; } } # 304 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _InputIterator find(_InputIterator __first, _InputIterator __last, const _Tp& __val) { ; return std::find(__first, __last, __val, std::__iterator_category(__first)); } # 326 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _InputIterator find_if(_InputIterator __first, _InputIterator __last, _Predicate __pred) { ; return std::find_if(__first, __last, __pred, std::__iterator_category(__first)); } # 348 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator adjacent_find(_ForwardIterator __first, _ForwardIterator __last) { ; if (__first == __last) return __last; _ForwardIterator __next = __first; while(++__next != __last) { if (*__first == *__next) return __first; __first = __next; } return __last; } # 379 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator adjacent_find(_ForwardIterator __first, _ForwardIterator __last, _BinaryPredicate __binary_pred) { ; if (__first == __last) return __last; _ForwardIterator __next = __first; while(++__next != __last) { if (__binary_pred(*__first, *__next)) return __first; __first = __next; } return __last; } # 410 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template typename iterator_traits<_InputIterator>::difference_type count(_InputIterator __first, _InputIterator __last, const _Tp& __value) { ; typename iterator_traits<_InputIterator>::difference_type __n = 0; for ( ; __first != __last; ++__first) if (*__first == __value) ++__n; return __n; } # 435 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template typename iterator_traits<_InputIterator>::difference_type count_if(_InputIterator __first, _InputIterator __last, _Predicate __pred) { ; typename iterator_traits<_InputIterator>::difference_type __n = 0; for ( ; __first != __last; ++__first) if (__pred(*__first)) ++__n; return __n; } # 474 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator1 search(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2) { ; ; if (__first1 == __last1 || __first2 == __last2) return __first1; _ForwardIterator2 __tmp(__first2); ++__tmp; if (__tmp == __last2) return std::find(__first1, __last1, *__first2); _ForwardIterator2 __p1, __p; __p1 = __first2; ++__p1; _ForwardIterator1 __current = __first1; while (__first1 != __last1) { __first1 = std::find(__first1, __last1, *__first2); if (__first1 == __last1) return __last1; __p = __p1; __current = __first1; if (++__current == __last1) return __last1; while (*__current == *__p) { if (++__p == __last2) return __first1; if (++__current == __last1) return __last1; } ++__first1; } return __first1; } # 545 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator1 search(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2, _BinaryPredicate __predicate) { ; ; if (__first1 == __last1 || __first2 == __last2) return __first1; _ForwardIterator2 __tmp(__first2); ++__tmp; if (__tmp == __last2) { while (__first1 != __last1 && !__predicate(*__first1, *__first2)) ++__first1; return __first1; } _ForwardIterator2 __p1, __p; __p1 = __first2; ++__p1; _ForwardIterator1 __current = __first1; while (__first1 != __last1) { while (__first1 != __last1) { if (__predicate(*__first1, *__first2)) break; ++__first1; } while (__first1 != __last1 && !__predicate(*__first1, *__first2)) ++__first1; if (__first1 == __last1) return __last1; __p = __p1; __current = __first1; if (++__current == __last1) return __last1; while (__predicate(*__current, *__p)) { if (++__p == __last2) return __first1; if (++__current == __last1) return __last1; } ++__first1; } return __first1; } # 623 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator search_n(_ForwardIterator __first, _ForwardIterator __last, _Integer __count, const _Tp& __val) { ; if (__count <= 0) return __first; else { __first = std::find(__first, __last, __val); while (__first != __last) { typename iterator_traits<_ForwardIterator>::difference_type __n = __count; _ForwardIterator __i = __first; ++__i; while (__i != __last && __n != 1 && *__i == __val) { ++__i; --__n; } if (__n == 1) return __first; else __first = std::find(__i, __last, __val); } return __last; } } # 675 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator search_n(_ForwardIterator __first, _ForwardIterator __last, _Integer __count, const _Tp& __val, _BinaryPredicate __binary_pred) { ; if (__count <= 0) return __first; else { while (__first != __last) { if (__binary_pred(*__first, __val)) break; ++__first; } while (__first != __last) { typename iterator_traits<_ForwardIterator>::difference_type __n = __count; _ForwardIterator __i = __first; ++__i; while (__i != __last && __n != 1 && __binary_pred(*__i, __val)) { ++__i; --__n; } if (__n == 1) return __first; else { while (__i != __last) { if (__binary_pred(*__i, __val)) break; ++__i; } __first = __i; } } return __last; } } # 737 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator2 swap_ranges(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2) { # 753 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; for ( ; __first1 != __last1; ++__first1, ++__first2) std::iter_swap(__first1, __first2); return __first2; } # 775 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator transform(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _UnaryOperation __unary_op) { ; for ( ; __first != __last; ++__first, ++__result) *__result = __unary_op(*__first); return __result; } # 810 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator transform(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _OutputIterator __result, _BinaryOperation __binary_op) { ; for ( ; __first1 != __last1; ++__first1, ++__first2, ++__result) *__result = __binary_op(*__first1, *__first2); return __result; } # 842 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void replace(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __old_value, const _Tp& __new_value) { ; for ( ; __first != __last; ++__first) if (*__first == __old_value) *__first = __new_value; } # 873 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void replace_if(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred, const _Tp& __new_value) { ; for ( ; __first != __last; ++__first) if (__pred(*__first)) *__first = __new_value; } # 906 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator replace_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, const _Tp& __old_value, const _Tp& __new_value) { ; for ( ; __first != __last; ++__first, ++__result) *__result = *__first == __old_value ? __new_value : *__first; return __result; } # 939 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator replace_copy_if(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _Predicate __pred, const _Tp& __new_value) { ; for ( ; __first != __last; ++__first, ++__result) *__result = __pred(*__first) ? __new_value : *__first; return __result; } # 970 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void generate(_ForwardIterator __first, _ForwardIterator __last, _Generator __gen) { ; for ( ; __first != __last; ++__first) *__first = __gen(); } # 996 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator generate_n(_OutputIterator __first, _Size __n, _Generator __gen) { for ( ; __n > 0; --__n, ++__first) *__first = __gen(); return __first; } # 1023 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator remove_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, const _Tp& __value) { ; for ( ; __first != __last; ++__first) if (!(*__first == __value)) { *__result = *__first; ++__result; } return __result; } # 1059 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator remove_copy_if(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _Predicate __pred) { ; for ( ; __first != __last; ++__first) if (!__pred(*__first)) { *__result = *__first; ++__result; } return __result; } # 1098 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator remove(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __value) { ; __first = std::find(__first, __last, __value); _ForwardIterator __i = __first; return __first == __last ? __first : std::remove_copy(++__i, __last, __first, __value); } # 1133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator remove_if(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred) { ; __first = std::find_if(__first, __last, __pred); _ForwardIterator __i = __first; return __first == __last ? __first : std::remove_copy_if(++__i, __last, __first, __pred); } # 1159 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator __unique_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, output_iterator_tag) { typename iterator_traits<_InputIterator>::value_type __value = *__first; *__result = __value; while (++__first != __last) if (!(__value == *__first)) { __value = *__first; *++__result = __value; } return ++__result; } # 1184 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator __unique_copy(_InputIterator __first, _InputIterator __last, _ForwardIterator __result, forward_iterator_tag) { *__result = *__first; while (++__first != __last) if (!(*__result == *__first)) *++__result = *__first; return ++__result; } # 1206 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator __unique_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryPredicate __binary_pred, output_iterator_tag) { typename iterator_traits<_InputIterator>::value_type __value = *__first; *__result = __value; while (++__first != __last) if (!__binary_pred(__value, *__first)) { __value = *__first; *++__result = __value; } return ++__result; } # 1238 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator __unique_copy(_InputIterator __first, _InputIterator __last, _ForwardIterator __result, _BinaryPredicate __binary_pred, forward_iterator_tag) { *__result = *__first; while (++__first != __last) if (!__binary_pred(*__result, *__first)) *++__result = *__first; return ++__result; } # 1270 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _OutputIterator unique_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { ; typedef typename iterator_traits<_OutputIterator>::iterator_category _IterType; if (__first == __last) return __result; return std::__unique_copy(__first, __last, __result, _IterType()); } # 1305 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _OutputIterator unique_copy(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryPredicate __binary_pred) { ; typedef typename iterator_traits<_OutputIterator>::iterator_category _IterType; if (__first == __last) return __result; return std::__unique_copy(__first, __last, __result, __binary_pred, _IterType()); } # 1339 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator unique(_ForwardIterator __first, _ForwardIterator __last) { ; __first = std::adjacent_find(__first, __last); if (__first == __last) return __last; _ForwardIterator __dest = __first; ++__first; while (++__first != __last) if (!(*__dest == *__first)) *++__dest = *__first; return ++__dest; } # 1378 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator unique(_ForwardIterator __first, _ForwardIterator __last, _BinaryPredicate __binary_pred) { ; __first = std::adjacent_find(__first, __last, __binary_pred); if (__first == __last) return __last; _ForwardIterator __dest = __first; ++__first; while (++__first != __last) if (!__binary_pred(*__dest, *__first)) *++__dest = *__first; return ++__dest; } # 1412 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void __reverse(_BidirectionalIterator __first, _BidirectionalIterator __last, bidirectional_iterator_tag) { while (true) if (__first == __last || __first == --__last) return; else std::iter_swap(__first++, __last); } # 1431 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void __reverse(_RandomAccessIterator __first, _RandomAccessIterator __last, random_access_iterator_tag) { while (__first < __last) std::iter_swap(__first++, --__last); } # 1451 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void reverse(_BidirectionalIterator __first, _BidirectionalIterator __last) { ; std::__reverse(__first, __last, std::__iterator_category(__first)); } # 1477 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator reverse_copy(_BidirectionalIterator __first, _BidirectionalIterator __last, _OutputIterator __result) { ; while (__first != __last) { --__last; *__result = *__last; ++__result; } return __result; } # 1505 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _EuclideanRingElement __gcd(_EuclideanRingElement __m, _EuclideanRingElement __n) { while (__n != 0) { _EuclideanRingElement __t = __m % __n; __m = __n; __n = __t; } return __m; } template void __rotate(_ForwardIterator __first, _ForwardIterator __middle, _ForwardIterator __last, forward_iterator_tag) { if ((__first == __middle) || (__last == __middle)) return; _ForwardIterator __first2 = __middle; do { swap(*__first++, *__first2++); if (__first == __middle) __middle = __first2; } while (__first2 != __last); __first2 = __middle; while (__first2 != __last) { swap(*__first++, *__first2++); if (__first == __middle) __middle = __first2; else if (__first2 == __last) __first2 = __middle; } } template void __rotate(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, bidirectional_iterator_tag) { if ((__first == __middle) || (__last == __middle)) return; std::__reverse(__first, __middle, bidirectional_iterator_tag()); std::__reverse(__middle, __last, bidirectional_iterator_tag()); while (__first != __middle && __middle != __last) swap(*__first++, *--__last); if (__first == __middle) std::__reverse(__middle, __last, bidirectional_iterator_tag()); else std::__reverse(__first, __middle, bidirectional_iterator_tag()); } template void __rotate(_RandomAccessIterator __first, _RandomAccessIterator __middle, _RandomAccessIterator __last, random_access_iterator_tag) { if ((__first == __middle) || (__last == __middle)) return; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; const _Distance __n = __last - __first; const _Distance __k = __middle - __first; const _Distance __l = __n - __k; if (__k == __l) { std::swap_ranges(__first, __middle, __middle); return; } const _Distance __d = __gcd(__n, __k); for (_Distance __i = 0; __i < __d; __i++) { const _ValueType __tmp = *__first; _RandomAccessIterator __p = __first; if (__k < __l) { for (_Distance __j = 0; __j < __l / __d; __j++) { if (__p > __first + __l) { *__p = *(__p - __l); __p -= __l; } *__p = *(__p + __k); __p += __k; } } else { for (_Distance __j = 0; __j < __k / __d - 1; __j ++) { if (__p < __last - __k) { *__p = *(__p + __k); __p += __k; } *__p = * (__p - __l); __p -= __l; } } *__p = __tmp; ++__first; } } # 1677 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void rotate(_ForwardIterator __first, _ForwardIterator __middle, _ForwardIterator __last) { ; ; typedef typename iterator_traits<_ForwardIterator>::iterator_category _IterType; std::__rotate(__first, __middle, __last, _IterType()); } # 1710 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator rotate_copy(_ForwardIterator __first, _ForwardIterator __middle, _ForwardIterator __last, _OutputIterator __result) { ; ; return std::copy(__first, __middle, copy(__middle, __last, __result)); } # 1735 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void random_shuffle(_RandomAccessIterator __first, _RandomAccessIterator __last) { ; if (__first != __last) for (_RandomAccessIterator __i = __first + 1; __i != __last; ++__i) std::iter_swap(__i, __first + (std::rand() % ((__i - __first) + 1))); } # 1762 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void random_shuffle(_RandomAccessIterator __first, _RandomAccessIterator __last, _RandomNumberGenerator& __rand) { ; if (__first == __last) return; for (_RandomAccessIterator __i = __first + 1; __i != __last; ++__i) std::iter_swap(__i, __first + __rand((__i - __first) + 1)); } template _ForwardIterator __partition(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred, forward_iterator_tag) { if (__first == __last) return __first; while (__pred(*__first)) if (++__first == __last) return __first; _ForwardIterator __next = __first; while (++__next != __last) if (__pred(*__next)) { swap(*__first, *__next); ++__first; } return __first; } template _BidirectionalIterator __partition(_BidirectionalIterator __first, _BidirectionalIterator __last, _Predicate __pred, bidirectional_iterator_tag) { while (true) { while (true) if (__first == __last) return __first; else if (__pred(*__first)) ++__first; else break; --__last; while (true) if (__first == __last) return __first; else if (!__pred(*__last)) --__last; else break; std::iter_swap(__first, __last); ++__first; } } # 1856 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _ForwardIterator partition(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred) { ; return std::__partition(__first, __last, __pred, std::__iterator_category(__first)); } template _ForwardIterator __inplace_stable_partition(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred, _Distance __len) { if (__len == 1) return __pred(*__first) ? __last : __first; _ForwardIterator __middle = __first; std::advance(__middle, __len / 2); _ForwardIterator __begin = std::__inplace_stable_partition(__first, __middle, __pred, __len / 2); _ForwardIterator __end = std::__inplace_stable_partition(__middle, __last, __pred, __len - __len / 2); std::rotate(__begin, __middle, __end); std::advance(__begin, std::distance(__middle, __end)); return __begin; } template _ForwardIterator __stable_partition_adaptive(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred, _Distance __len, _Pointer __buffer, _Distance __buffer_size) { if (__len <= __buffer_size) { _ForwardIterator __result1 = __first; _Pointer __result2 = __buffer; for ( ; __first != __last ; ++__first) if (__pred(*__first)) { *__result1 = *__first; ++__result1; } else { *__result2 = *__first; ++__result2; } std::copy(__buffer, __result2, __result1); return __result1; } else { _ForwardIterator __middle = __first; std::advance(__middle, __len / 2); _ForwardIterator __begin = std::__stable_partition_adaptive(__first, __middle, __pred, __len / 2, __buffer, __buffer_size); _ForwardIterator __end = std::__stable_partition_adaptive(__middle, __last, __pred, __len - __len / 2, __buffer, __buffer_size); std::rotate(__begin, __middle, __end); std::advance(__begin, std::distance(__middle, __end)); return __begin; } } # 1967 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator stable_partition(_ForwardIterator __first, _ForwardIterator __last, _Predicate __pred) { ; if (__first == __last) return __first; else { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; _Temporary_buffer<_ForwardIterator, _ValueType> __buf(__first, __last); if (__buf.size() > 0) return std::__stable_partition_adaptive(__first, __last, __pred, _DistanceType(__buf.requested_size()), __buf.begin(), __buf.size()); else return std::__inplace_stable_partition(__first, __last, __pred, _DistanceType(__buf.requested_size())); } } template _RandomAccessIterator __unguarded_partition(_RandomAccessIterator __first, _RandomAccessIterator __last, _Tp __pivot) { while (true) { while (*__first < __pivot) ++__first; --__last; while (__pivot < *__last) --__last; if (!(__first < __last)) return __first; std::iter_swap(__first, __last); ++__first; } } template _RandomAccessIterator __unguarded_partition(_RandomAccessIterator __first, _RandomAccessIterator __last, _Tp __pivot, _Compare __comp) { while (true) { while (__comp(*__first, __pivot)) ++__first; --__last; while (__comp(__pivot, *__last)) --__last; if (!(__first < __last)) return __first; std::iter_swap(__first, __last); ++__first; } } enum { _S_threshold = 16 }; template void __unguarded_linear_insert(_RandomAccessIterator __last, _Tp __val) { _RandomAccessIterator __next = __last; --__next; while (__val < *__next) { *__last = *__next; __last = __next; --__next; } *__last = __val; } template void __unguarded_linear_insert(_RandomAccessIterator __last, _Tp __val, _Compare __comp) { _RandomAccessIterator __next = __last; --__next; while (__comp(__val, *__next)) { *__last = *__next; __last = __next; --__next; } *__last = __val; } template void __insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { if (__first == __last) return; for (_RandomAccessIterator __i = __first + 1; __i != __last; ++__i) { typename iterator_traits<_RandomAccessIterator>::value_type __val = *__i; if (__val < *__first) { std::copy_backward(__first, __i, __i + 1); *__first = __val; } else std::__unguarded_linear_insert(__i, __val); } } template void __insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { if (__first == __last) return; for (_RandomAccessIterator __i = __first + 1; __i != __last; ++__i) { typename iterator_traits<_RandomAccessIterator>::value_type __val = *__i; if (__comp(__val, *__first)) { std::copy_backward(__first, __i, __i + 1); *__first = __val; } else std::__unguarded_linear_insert(__i, __val, __comp); } } template inline void __unguarded_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; for (_RandomAccessIterator __i = __first; __i != __last; ++__i) std::__unguarded_linear_insert(__i, _ValueType(*__i)); } template inline void __unguarded_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; for (_RandomAccessIterator __i = __first; __i != __last; ++__i) std::__unguarded_linear_insert(__i, _ValueType(*__i), __comp); } template void __final_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { if (__last - __first > _S_threshold) { std::__insertion_sort(__first, __first + _S_threshold); std::__unguarded_insertion_sort(__first + _S_threshold, __last); } else std::__insertion_sort(__first, __last); } template void __final_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { if (__last - __first > _S_threshold) { std::__insertion_sort(__first, __first + _S_threshold, __comp); std::__unguarded_insertion_sort(__first + _S_threshold, __last, __comp); } else std::__insertion_sort(__first, __last, __comp); } template inline _Size __lg(_Size __n) { _Size __k; for (__k = 0; __n != 1; __n >>= 1) ++__k; return __k; } # 2256 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void partial_sort(_RandomAccessIterator __first, _RandomAccessIterator __middle, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; ; std::make_heap(__first, __middle); for (_RandomAccessIterator __i = __middle; __i < __last; ++__i) if (*__i < *__first) std::__pop_heap(__first, __middle, __i, _ValueType(*__i)); std::sort_heap(__first, __middle); } # 2297 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void partial_sort(_RandomAccessIterator __first, _RandomAccessIterator __middle, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; ; std::make_heap(__first, __middle, __comp); for (_RandomAccessIterator __i = __middle; __i < __last; ++__i) if (__comp(*__i, *__first)) std::__pop_heap(__first, __middle, __i, _ValueType(*__i), __comp); std::sort_heap(__first, __middle, __comp); } # 2339 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _RandomAccessIterator partial_sort_copy(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __result_first, _RandomAccessIterator __result_last) { typedef typename iterator_traits<_InputIterator>::value_type _InputValueType; typedef typename iterator_traits<_RandomAccessIterator>::value_type _OutputValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; ; if (__result_first == __result_last) return __result_last; _RandomAccessIterator __result_real_last = __result_first; while(__first != __last && __result_real_last != __result_last) { *__result_real_last = *__first; ++__result_real_last; ++__first; } std::make_heap(__result_first, __result_real_last); while (__first != __last) { if (*__first < *__result_first) std::__adjust_heap(__result_first, _DistanceType(0), _DistanceType(__result_real_last - __result_first), _InputValueType(*__first)); ++__first; } std::sort_heap(__result_first, __result_real_last); return __result_real_last; } # 2403 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _RandomAccessIterator partial_sort_copy(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __result_first, _RandomAccessIterator __result_last, _Compare __comp) { typedef typename iterator_traits<_InputIterator>::value_type _InputValueType; typedef typename iterator_traits<_RandomAccessIterator>::value_type _OutputValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; # 2425 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; if (__result_first == __result_last) return __result_last; _RandomAccessIterator __result_real_last = __result_first; while(__first != __last && __result_real_last != __result_last) { *__result_real_last = *__first; ++__result_real_last; ++__first; } std::make_heap(__result_first, __result_real_last, __comp); while (__first != __last) { if (__comp(*__first, *__result_first)) std::__adjust_heap(__result_first, _DistanceType(0), _DistanceType(__result_real_last - __result_first), _InputValueType(*__first), __comp); ++__first; } std::sort_heap(__result_first, __result_real_last, __comp); return __result_real_last; } template void __introsort_loop(_RandomAccessIterator __first, _RandomAccessIterator __last, _Size __depth_limit) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; while (__last - __first > _S_threshold) { if (__depth_limit == 0) { std::partial_sort(__first, __last, __last); return; } --__depth_limit; _RandomAccessIterator __cut = std::__unguarded_partition(__first, __last, _ValueType(std::__median(*__first, *(__first + (__last - __first) / 2), *(__last - 1)))); std::__introsort_loop(__cut, __last, __depth_limit); __last = __cut; } } template void __introsort_loop(_RandomAccessIterator __first, _RandomAccessIterator __last, _Size __depth_limit, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; while (__last - __first > _S_threshold) { if (__depth_limit == 0) { std::partial_sort(__first, __last, __last, __comp); return; } --__depth_limit; _RandomAccessIterator __cut = std::__unguarded_partition(__first, __last, _ValueType(std::__median(*__first, *(__first + (__last - __first) / 2), *(__last - 1), __comp)), __comp); std::__introsort_loop(__cut, __last, __depth_limit, __comp); __last = __cut; } } # 2538 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; if (__first != __last) { std::__introsort_loop(__first, __last, __lg(__last - __first) * 2); std::__final_insertion_sort(__first, __last); } } # 2572 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; if (__first != __last) { std::__introsort_loop(__first, __last, __lg(__last - __first) * 2, __comp); std::__final_insertion_sort(__first, __last, __comp); } } # 2605 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator lower_bound(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; # 2623 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (*__middle < __val) { __first = __middle; ++__first; __len = __len - __half - 1; } else __len = __half; } return __first; } # 2660 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator lower_bound(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val, _Compare __comp) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (__comp(*__middle, __val)) { __first = __middle; ++__first; __len = __len - __half - 1; } else __len = __half; } return __first; } # 2707 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator upper_bound(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (__val < *__middle) __len = __half; else { __first = __middle; ++__first; __len = __len - __half - 1; } } return __first; } # 2759 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator upper_bound(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val, _Compare __comp) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (__comp(__val, *__middle)) __len = __half; else { __first = __middle; ++__first; __len = __len - __half - 1; } } return __first; } template void __merge_without_buffer(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, _Distance __len1, _Distance __len2) { if (__len1 == 0 || __len2 == 0) return; if (__len1 + __len2 == 2) { if (*__middle < *__first) std::iter_swap(__first, __middle); return; } _BidirectionalIterator __first_cut = __first; _BidirectionalIterator __second_cut = __middle; _Distance __len11 = 0; _Distance __len22 = 0; if (__len1 > __len2) { __len11 = __len1 / 2; std::advance(__first_cut, __len11); __second_cut = std::lower_bound(__middle, __last, *__first_cut); __len22 = std::distance(__middle, __second_cut); } else { __len22 = __len2 / 2; std::advance(__second_cut, __len22); __first_cut = std::upper_bound(__first, __middle, *__second_cut); __len11 = std::distance(__first, __first_cut); } std::rotate(__first_cut, __middle, __second_cut); _BidirectionalIterator __new_middle = __first_cut; std::advance(__new_middle, std::distance(__middle, __second_cut)); std::__merge_without_buffer(__first, __first_cut, __new_middle, __len11, __len22); std::__merge_without_buffer(__new_middle, __second_cut, __last, __len1 - __len11, __len2 - __len22); } template void __merge_without_buffer(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, _Distance __len1, _Distance __len2, _Compare __comp) { if (__len1 == 0 || __len2 == 0) return; if (__len1 + __len2 == 2) { if (__comp(*__middle, *__first)) std::iter_swap(__first, __middle); return; } _BidirectionalIterator __first_cut = __first; _BidirectionalIterator __second_cut = __middle; _Distance __len11 = 0; _Distance __len22 = 0; if (__len1 > __len2) { __len11 = __len1 / 2; std::advance(__first_cut, __len11); __second_cut = std::lower_bound(__middle, __last, *__first_cut, __comp); __len22 = std::distance(__middle, __second_cut); } else { __len22 = __len2 / 2; std::advance(__second_cut, __len22); __first_cut = std::upper_bound(__first, __middle, *__second_cut, __comp); __len11 = std::distance(__first, __first_cut); } std::rotate(__first_cut, __middle, __second_cut); _BidirectionalIterator __new_middle = __first_cut; std::advance(__new_middle, std::distance(__middle, __second_cut)); std::__merge_without_buffer(__first, __first_cut, __new_middle, __len11, __len22, __comp); std::__merge_without_buffer(__new_middle, __second_cut, __last, __len1 - __len11, __len2 - __len22, __comp); } template void __inplace_stable_sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { if (__last - __first < 15) { std::__insertion_sort(__first, __last); return; } _RandomAccessIterator __middle = __first + (__last - __first) / 2; std::__inplace_stable_sort(__first, __middle); std::__inplace_stable_sort(__middle, __last); std::__merge_without_buffer(__first, __middle, __last, __middle - __first, __last - __middle); } template void __inplace_stable_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { if (__last - __first < 15) { std::__insertion_sort(__first, __last, __comp); return; } _RandomAccessIterator __middle = __first + (__last - __first) / 2; std::__inplace_stable_sort(__first, __middle, __comp); std::__inplace_stable_sort(__middle, __last, __comp); std::__merge_without_buffer(__first, __middle, __last, __middle - __first, __last - __middle, __comp); } # 2957 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator merge(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result) { # 2974 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) { if (*__first2 < *__first1) { *__result = *__first2; ++__first2; } else { *__result = *__first1; ++__first1; } ++__result; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } # 3015 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator merge(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result, _Compare __comp) { # 3033 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) { if (__comp(*__first2, *__first1)) { *__result = *__first2; ++__first2; } else { *__result = *__first1; ++__first1; } ++__result; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } template void __merge_sort_loop(_RandomAccessIterator1 __first, _RandomAccessIterator1 __last, _RandomAccessIterator2 __result, _Distance __step_size) { const _Distance __two_step = 2 * __step_size; while (__last - __first >= __two_step) { __result = std::merge(__first, __first + __step_size, __first + __step_size, __first + __two_step, __result); __first += __two_step; } __step_size = std::min(_Distance(__last - __first), __step_size); std::merge(__first, __first + __step_size, __first + __step_size, __last, __result); } template void __merge_sort_loop(_RandomAccessIterator1 __first, _RandomAccessIterator1 __last, _RandomAccessIterator2 __result, _Distance __step_size, _Compare __comp) { const _Distance __two_step = 2 * __step_size; while (__last - __first >= __two_step) { __result = std::merge(__first, __first + __step_size, __first + __step_size, __first + __two_step, __result, __comp); __first += __two_step; } __step_size = std::min(_Distance(__last - __first), __step_size); std::merge(__first, __first + __step_size, __first + __step_size, __last, __result, __comp); } enum { _S_chunk_size = 7 }; template void __chunk_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Distance __chunk_size) { while (__last - __first >= __chunk_size) { std::__insertion_sort(__first, __first + __chunk_size); __first += __chunk_size; } std::__insertion_sort(__first, __last); } template void __chunk_insertion_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Distance __chunk_size, _Compare __comp) { while (__last - __first >= __chunk_size) { std::__insertion_sort(__first, __first + __chunk_size, __comp); __first += __chunk_size; } std::__insertion_sort(__first, __last, __comp); } template void __merge_sort_with_buffer(_RandomAccessIterator __first, _RandomAccessIterator __last, _Pointer __buffer) { typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; const _Distance __len = __last - __first; const _Pointer __buffer_last = __buffer + __len; _Distance __step_size = _S_chunk_size; std::__chunk_insertion_sort(__first, __last, __step_size); while (__step_size < __len) { std::__merge_sort_loop(__first, __last, __buffer, __step_size); __step_size *= 2; std::__merge_sort_loop(__buffer, __buffer_last, __first, __step_size); __step_size *= 2; } } template void __merge_sort_with_buffer(_RandomAccessIterator __first, _RandomAccessIterator __last, _Pointer __buffer, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::difference_type _Distance; const _Distance __len = __last - __first; const _Pointer __buffer_last = __buffer + __len; _Distance __step_size = _S_chunk_size; std::__chunk_insertion_sort(__first, __last, __step_size, __comp); while (__step_size < __len) { std::__merge_sort_loop(__first, __last, __buffer, __step_size, __comp); __step_size *= 2; std::__merge_sort_loop(__buffer, __buffer_last, __first, __step_size, __comp); __step_size *= 2; } } template _BidirectionalIterator3 __merge_backward(_BidirectionalIterator1 __first1, _BidirectionalIterator1 __last1, _BidirectionalIterator2 __first2, _BidirectionalIterator2 __last2, _BidirectionalIterator3 __result) { if (__first1 == __last1) return std::copy_backward(__first2, __last2, __result); if (__first2 == __last2) return std::copy_backward(__first1, __last1, __result); --__last1; --__last2; while (true) { if (*__last2 < *__last1) { *--__result = *__last1; if (__first1 == __last1) return std::copy_backward(__first2, ++__last2, __result); --__last1; } else { *--__result = *__last2; if (__first2 == __last2) return std::copy_backward(__first1, ++__last1, __result); --__last2; } } } template _BidirectionalIterator3 __merge_backward(_BidirectionalIterator1 __first1, _BidirectionalIterator1 __last1, _BidirectionalIterator2 __first2, _BidirectionalIterator2 __last2, _BidirectionalIterator3 __result, _Compare __comp) { if (__first1 == __last1) return std::copy_backward(__first2, __last2, __result); if (__first2 == __last2) return std::copy_backward(__first1, __last1, __result); --__last1; --__last2; while (true) { if (__comp(*__last2, *__last1)) { *--__result = *__last1; if (__first1 == __last1) return std::copy_backward(__first2, ++__last2, __result); --__last1; } else { *--__result = *__last2; if (__first2 == __last2) return std::copy_backward(__first1, ++__last1, __result); --__last2; } } } template _BidirectionalIterator1 __rotate_adaptive(_BidirectionalIterator1 __first, _BidirectionalIterator1 __middle, _BidirectionalIterator1 __last, _Distance __len1, _Distance __len2, _BidirectionalIterator2 __buffer, _Distance __buffer_size) { _BidirectionalIterator2 __buffer_end; if (__len1 > __len2 && __len2 <= __buffer_size) { __buffer_end = std::copy(__middle, __last, __buffer); std::copy_backward(__first, __middle, __last); return std::copy(__buffer, __buffer_end, __first); } else if (__len1 <= __buffer_size) { __buffer_end = std::copy(__first, __middle, __buffer); std::copy(__middle, __last, __first); return std::copy_backward(__buffer, __buffer_end, __last); } else { std::rotate(__first, __middle, __last); std::advance(__first, std::distance(__middle, __last)); return __first; } } template void __merge_adaptive(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, _Distance __len1, _Distance __len2, _Pointer __buffer, _Distance __buffer_size) { if (__len1 <= __len2 && __len1 <= __buffer_size) { _Pointer __buffer_end = std::copy(__first, __middle, __buffer); std::merge(__buffer, __buffer_end, __middle, __last, __first); } else if (__len2 <= __buffer_size) { _Pointer __buffer_end = std::copy(__middle, __last, __buffer); std::__merge_backward(__first, __middle, __buffer, __buffer_end, __last); } else { _BidirectionalIterator __first_cut = __first; _BidirectionalIterator __second_cut = __middle; _Distance __len11 = 0; _Distance __len22 = 0; if (__len1 > __len2) { __len11 = __len1 / 2; std::advance(__first_cut, __len11); __second_cut = std::lower_bound(__middle, __last, *__first_cut); __len22 = std::distance(__middle, __second_cut); } else { __len22 = __len2 / 2; std::advance(__second_cut, __len22); __first_cut = std::upper_bound(__first, __middle, *__second_cut); __len11 = std::distance(__first, __first_cut); } _BidirectionalIterator __new_middle = std::__rotate_adaptive(__first_cut, __middle, __second_cut, __len1 - __len11, __len22, __buffer, __buffer_size); std::__merge_adaptive(__first, __first_cut, __new_middle, __len11, __len22, __buffer, __buffer_size); std::__merge_adaptive(__new_middle, __second_cut, __last, __len1 - __len11, __len2 - __len22, __buffer, __buffer_size); } } template void __merge_adaptive(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, _Distance __len1, _Distance __len2, _Pointer __buffer, _Distance __buffer_size, _Compare __comp) { if (__len1 <= __len2 && __len1 <= __buffer_size) { _Pointer __buffer_end = std::copy(__first, __middle, __buffer); std::merge(__buffer, __buffer_end, __middle, __last, __first, __comp); } else if (__len2 <= __buffer_size) { _Pointer __buffer_end = std::copy(__middle, __last, __buffer); std::__merge_backward(__first, __middle, __buffer, __buffer_end, __last, __comp); } else { _BidirectionalIterator __first_cut = __first; _BidirectionalIterator __second_cut = __middle; _Distance __len11 = 0; _Distance __len22 = 0; if (__len1 > __len2) { __len11 = __len1 / 2; std::advance(__first_cut, __len11); __second_cut = std::lower_bound(__middle, __last, *__first_cut, __comp); __len22 = std::distance(__middle, __second_cut); } else { __len22 = __len2 / 2; std::advance(__second_cut, __len22); __first_cut = std::upper_bound(__first, __middle, *__second_cut, __comp); __len11 = std::distance(__first, __first_cut); } _BidirectionalIterator __new_middle = std::__rotate_adaptive(__first_cut, __middle, __second_cut, __len1 - __len11, __len22, __buffer, __buffer_size); std::__merge_adaptive(__first, __first_cut, __new_middle, __len11, __len22, __buffer, __buffer_size, __comp); std::__merge_adaptive(__new_middle, __second_cut, __last, __len1 - __len11, __len2 - __len22, __buffer, __buffer_size, __comp); } } # 3435 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void inplace_merge(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last) { typedef typename iterator_traits<_BidirectionalIterator>::value_type _ValueType; typedef typename iterator_traits<_BidirectionalIterator>::difference_type _DistanceType; ; ; if (__first == __middle || __middle == __last) return; _DistanceType __len1 = std::distance(__first, __middle); _DistanceType __len2 = std::distance(__middle, __last); _Temporary_buffer<_BidirectionalIterator, _ValueType> __buf(__first, __last); if (__buf.begin() == 0) std::__merge_without_buffer(__first, __middle, __last, __len1, __len2); else std::__merge_adaptive(__first, __middle, __last, __len1, __len2, __buf.begin(), _DistanceType(__buf.size())); } # 3489 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void inplace_merge(_BidirectionalIterator __first, _BidirectionalIterator __middle, _BidirectionalIterator __last, _Compare __comp) { typedef typename iterator_traits<_BidirectionalIterator>::value_type _ValueType; typedef typename iterator_traits<_BidirectionalIterator>::difference_type _DistanceType; ; ; if (__first == __middle || __middle == __last) return; const _DistanceType __len1 = std::distance(__first, __middle); const _DistanceType __len2 = std::distance(__middle, __last); _Temporary_buffer<_BidirectionalIterator, _ValueType> __buf(__first, __last); if (__buf.begin() == 0) std::__merge_without_buffer(__first, __middle, __last, __len1, __len2, __comp); else std::__merge_adaptive(__first, __middle, __last, __len1, __len2, __buf.begin(), _DistanceType(__buf.size()), __comp); } template void __stable_sort_adaptive(_RandomAccessIterator __first, _RandomAccessIterator __last, _Pointer __buffer, _Distance __buffer_size) { const _Distance __len = (__last - __first + 1) / 2; const _RandomAccessIterator __middle = __first + __len; if (__len > __buffer_size) { std::__stable_sort_adaptive(__first, __middle, __buffer, __buffer_size); std::__stable_sort_adaptive(__middle, __last, __buffer, __buffer_size); } else { std::__merge_sort_with_buffer(__first, __middle, __buffer); std::__merge_sort_with_buffer(__middle, __last, __buffer); } std::__merge_adaptive(__first, __middle, __last, _Distance(__middle - __first), _Distance(__last - __middle), __buffer, __buffer_size); } template void __stable_sort_adaptive(_RandomAccessIterator __first, _RandomAccessIterator __last, _Pointer __buffer, _Distance __buffer_size, _Compare __comp) { const _Distance __len = (__last - __first + 1) / 2; const _RandomAccessIterator __middle = __first + __len; if (__len > __buffer_size) { std::__stable_sort_adaptive(__first, __middle, __buffer, __buffer_size, __comp); std::__stable_sort_adaptive(__middle, __last, __buffer, __buffer_size, __comp); } else { std::__merge_sort_with_buffer(__first, __middle, __buffer, __comp); std::__merge_sort_with_buffer(__middle, __last, __buffer, __comp); } std::__merge_adaptive(__first, __middle, __last, _Distance(__middle - __first), _Distance(__last - __middle), __buffer, __buffer_size, __comp); } # 3598 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void stable_sort(_RandomAccessIterator __first, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; _Temporary_buffer<_RandomAccessIterator, _ValueType> buf(__first, __last); if (buf.begin() == 0) std::__inplace_stable_sort(__first, __last); else std::__stable_sort_adaptive(__first, __last, buf.begin(), _DistanceType(buf.size())); } # 3639 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline void stable_sort(_RandomAccessIterator __first, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; typedef typename iterator_traits<_RandomAccessIterator>::difference_type _DistanceType; ; _Temporary_buffer<_RandomAccessIterator, _ValueType> buf(__first, __last); if (buf.begin() == 0) std::__inplace_stable_sort(__first, __last, __comp); else std::__stable_sort_adaptive(__first, __last, buf.begin(), _DistanceType(buf.size()), __comp); } # 3680 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void nth_element(_RandomAccessIterator __first, _RandomAccessIterator __nth, _RandomAccessIterator __last) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; ; while (__last - __first > 3) { _RandomAccessIterator __cut = std::__unguarded_partition(__first, __last, _ValueType(std::__median(*__first, *(__first + (__last - __first) / 2), *(__last - 1)))); if (__cut <= __nth) __first = __cut; else __last = __cut; } std::__insertion_sort(__first, __last); } # 3731 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template void nth_element(_RandomAccessIterator __first, _RandomAccessIterator __nth, _RandomAccessIterator __last, _Compare __comp) { typedef typename iterator_traits<_RandomAccessIterator>::value_type _ValueType; ; ; while (__last - __first > 3) { _RandomAccessIterator __cut = std::__unguarded_partition(__first, __last, _ValueType(std::__median(*__first, *(__first + (__last - __first) / 2), *(__last - 1), __comp)), __comp); if (__cut <= __nth) __first = __cut; else __last = __cut; } std::__insertion_sort(__first, __last, __comp); } # 3784 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template pair<_ForwardIterator, _ForwardIterator> equal_range(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle, __left, __right; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (*__middle < __val) { __first = __middle; ++__first; __len = __len - __half - 1; } else if (__val < *__middle) __len = __half; else { __left = std::lower_bound(__first, __middle, __val); std::advance(__first, __len); __right = std::upper_bound(++__middle, __first, __val); return pair<_ForwardIterator, _ForwardIterator>(__left, __right); } } return pair<_ForwardIterator, _ForwardIterator>(__first, __first); } # 3846 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template pair<_ForwardIterator, _ForwardIterator> equal_range(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val, _Compare __comp) { typedef typename iterator_traits<_ForwardIterator>::value_type _ValueType; typedef typename iterator_traits<_ForwardIterator>::difference_type _DistanceType; ; _DistanceType __len = std::distance(__first, __last); _DistanceType __half; _ForwardIterator __middle, __left, __right; while (__len > 0) { __half = __len >> 1; __middle = __first; std::advance(__middle, __half); if (__comp(*__middle, __val)) { __first = __middle; ++__first; __len = __len - __half - 1; } else if (__comp(__val, *__middle)) __len = __half; else { __left = std::lower_bound(__first, __middle, __val, __comp); std::advance(__first, __len); __right = std::upper_bound(++__middle, __first, __val, __comp); return pair<_ForwardIterator, _ForwardIterator>(__left, __right); } } return pair<_ForwardIterator, _ForwardIterator>(__first, __first); } # 3904 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool binary_search(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val) { ; _ForwardIterator __i = std::lower_bound(__first, __last, __val); return __i != __last && !(__val < *__i); } # 3936 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool binary_search(_ForwardIterator __first, _ForwardIterator __last, const _Tp& __val, _Compare __comp) { ; _ForwardIterator __i = std::lower_bound(__first, __last, __val, __comp); return __i != __last && !__comp(__val, *__i); } # 3974 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool includes(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2) { # 3987 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (*__first2 < *__first1) return false; else if(*__first1 < *__first2) ++__first1; else ++__first1, ++__first2; return __first2 == __last2; } # 4020 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool includes(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _Compare __comp) { # 4035 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (__comp(*__first2, *__first1)) return false; else if(__comp(*__first1, *__first2)) ++__first1; else ++__first1, ++__first2; return __first2 == __last2; } # 4066 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_union(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result) { # 4083 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) { if (*__first1 < *__first2) { *__result = *__first1; ++__first1; } else if (*__first2 < *__first1) { *__result = *__first2; ++__first2; } else { *__result = *__first1; ++__first1; ++__first2; } ++__result; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } # 4128 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_union(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result, _Compare __comp) { # 4146 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) { if (__comp(*__first1, *__first2)) { *__result = *__first1; ++__first1; } else if (__comp(*__first2, *__first1)) { *__result = *__first2; ++__first2; } else { *__result = *__first1; ++__first1; ++__first2; } ++__result; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } # 4189 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_intersection(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result) { # 4206 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (*__first1 < *__first2) ++__first1; else if (*__first2 < *__first1) ++__first2; else { *__result = *__first1; ++__first1; ++__first2; ++__result; } return __result; } # 4243 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_intersection(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result, _Compare __comp) { # 4261 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (__comp(*__first1, *__first2)) ++__first1; else if (__comp(*__first2, *__first1)) ++__first2; else { *__result = *__first1; ++__first1; ++__first2; ++__result; } return __result; } # 4297 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_difference(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result) { # 4314 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (*__first1 < *__first2) { *__result = *__first1; ++__first1; ++__result; } else if (*__first2 < *__first1) ++__first2; else { ++__first1; ++__first2; } return std::copy(__first1, __last1, __result); } # 4355 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_difference(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result, _Compare __comp) { # 4373 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (__comp(*__first1, *__first2)) { *__result = *__first1; ++__first1; ++__result; } else if (__comp(*__first2, *__first1)) ++__first2; else { ++__first1; ++__first2; } return std::copy(__first1, __last1, __result); } # 4409 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_symmetric_difference(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result) { # 4426 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (*__first1 < *__first2) { *__result = *__first1; ++__first1; ++__result; } else if (*__first2 < *__first1) { *__result = *__first2; ++__first2; ++__result; } else { ++__first1; ++__first2; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } # 4470 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _OutputIterator set_symmetric_difference(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2, _OutputIterator __result, _Compare __comp) { # 4489 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 ; ; while (__first1 != __last1 && __first2 != __last2) if (__comp(*__first1, *__first2)) { *__result = *__first1; ++__first1; ++__result; } else if (__comp(*__first2, *__first1)) { *__result = *__first2; ++__first2; ++__result; } else { ++__first1; ++__first2; } return std::copy(__first2, __last2, std::copy(__first1, __last1, __result)); } # 4523 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator max_element(_ForwardIterator __first, _ForwardIterator __last) { ; if (__first == __last) return __first; _ForwardIterator __result = __first; while (++__first != __last) if (*__result < *__first) __result = __first; return __result; } # 4550 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator max_element(_ForwardIterator __first, _ForwardIterator __last, _Compare __comp) { ; if (__first == __last) return __first; _ForwardIterator __result = __first; while (++__first != __last) if (__comp(*__result, *__first)) __result = __first; return __result; } template _ForwardIterator min_element(_ForwardIterator __first, _ForwardIterator __last) { ; if (__first == __last) return __first; _ForwardIterator __result = __first; while (++__first != __last) if (*__first < *__result) __result = __first; return __result; } # 4602 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator min_element(_ForwardIterator __first, _ForwardIterator __last, _Compare __comp) { ; if (__first == __last) return __first; _ForwardIterator __result = __first; while (++__first != __last) if (__comp(*__first, *__result)) __result = __first; return __result; } # 4637 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool next_permutation(_BidirectionalIterator __first, _BidirectionalIterator __last) { ; if (__first == __last) return false; _BidirectionalIterator __i = __first; ++__i; if (__i == __last) return false; __i = __last; --__i; for(;;) { _BidirectionalIterator __ii = __i; --__i; if (*__i < *__ii) { _BidirectionalIterator __j = __last; while (!(*__i < *--__j)) {} std::iter_swap(__i, __j); std::reverse(__ii, __last); return true; } if (__i == __first) { std::reverse(__first, __last); return false; } } } # 4693 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool next_permutation(_BidirectionalIterator __first, _BidirectionalIterator __last, _Compare __comp) { ; if (__first == __last) return false; _BidirectionalIterator __i = __first; ++__i; if (__i == __last) return false; __i = __last; --__i; for(;;) { _BidirectionalIterator __ii = __i; --__i; if (__comp(*__i, *__ii)) { _BidirectionalIterator __j = __last; while (!__comp(*__i, *--__j)) {} std::iter_swap(__i, __j); std::reverse(__ii, __last); return true; } if (__i == __first) { std::reverse(__first, __last); return false; } } } # 4748 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool prev_permutation(_BidirectionalIterator __first, _BidirectionalIterator __last) { ; if (__first == __last) return false; _BidirectionalIterator __i = __first; ++__i; if (__i == __last) return false; __i = __last; --__i; for(;;) { _BidirectionalIterator __ii = __i; --__i; if (*__ii < *__i) { _BidirectionalIterator __j = __last; while (!(*--__j < *__i)) {} std::iter_swap(__i, __j); std::reverse(__ii, __last); return true; } if (__i == __first) { std::reverse(__first, __last); return false; } } } # 4804 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template bool prev_permutation(_BidirectionalIterator __first, _BidirectionalIterator __last, _Compare __comp) { ; if (__first == __last) return false; _BidirectionalIterator __i = __first; ++__i; if (__i == __last) return false; __i = __last; --__i; for(;;) { _BidirectionalIterator __ii = __i; --__i; if (__comp(*__ii, *__i)) { _BidirectionalIterator __j = __last; while (!__comp(*--__j, *__i)) {} std::iter_swap(__i, __j); std::reverse(__ii, __last); return true; } if (__i == __first) { std::reverse(__first, __last); return false; } } } # 4863 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _InputIterator find_first_of(_InputIterator __first1, _InputIterator __last1, _ForwardIterator __first2, _ForwardIterator __last2) { ; ; for ( ; __first1 != __last1; ++__first1) for (_ForwardIterator __iter = __first2; __iter != __last2; ++__iter) if (*__first1 == *__iter) return __first1; return __last1; } # 4899 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _InputIterator find_first_of(_InputIterator __first1, _InputIterator __last1, _ForwardIterator __first2, _ForwardIterator __last2, _BinaryPredicate __comp) { ; ; for ( ; __first1 != __last1; ++__first1) for (_ForwardIterator __iter = __first2; __iter != __last2; ++__iter) if (__comp(*__first1, *__iter)) return __first1; return __last1; } # 4929 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template _ForwardIterator1 __find_end(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2, forward_iterator_tag, forward_iterator_tag) { if (__first2 == __last2) return __last1; else { _ForwardIterator1 __result = __last1; while (1) { _ForwardIterator1 __new_result = std::search(__first1, __last1, __first2, __last2); if (__new_result == __last1) return __result; else { __result = __new_result; __first1 = __new_result; ++__first1; } } } } template _ForwardIterator1 __find_end(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2, forward_iterator_tag, forward_iterator_tag, _BinaryPredicate __comp) { if (__first2 == __last2) return __last1; else { _ForwardIterator1 __result = __last1; while (1) { _ForwardIterator1 __new_result = std::search(__first1, __last1, __first2, __last2, __comp); if (__new_result == __last1) return __result; else { __result = __new_result; __first1 = __new_result; ++__first1; } } } } template _BidirectionalIterator1 __find_end(_BidirectionalIterator1 __first1, _BidirectionalIterator1 __last1, _BidirectionalIterator2 __first2, _BidirectionalIterator2 __last2, bidirectional_iterator_tag, bidirectional_iterator_tag) { typedef reverse_iterator<_BidirectionalIterator1> _RevIterator1; typedef reverse_iterator<_BidirectionalIterator2> _RevIterator2; _RevIterator1 __rlast1(__first1); _RevIterator2 __rlast2(__first2); _RevIterator1 __rresult = std::search(_RevIterator1(__last1), __rlast1, _RevIterator2(__last2), __rlast2); if (__rresult == __rlast1) return __last1; else { _BidirectionalIterator1 __result = __rresult.base(); std::advance(__result, -std::distance(__first2, __last2)); return __result; } } template _BidirectionalIterator1 __find_end(_BidirectionalIterator1 __first1, _BidirectionalIterator1 __last1, _BidirectionalIterator2 __first2, _BidirectionalIterator2 __last2, bidirectional_iterator_tag, bidirectional_iterator_tag, _BinaryPredicate __comp) { typedef reverse_iterator<_BidirectionalIterator1> _RevIterator1; typedef reverse_iterator<_BidirectionalIterator2> _RevIterator2; _RevIterator1 __rlast1(__first1); _RevIterator2 __rlast2(__first2); _RevIterator1 __rresult = std::search(_RevIterator1(__last1), __rlast1, _RevIterator2(__last2), __rlast2, __comp); if (__rresult == __rlast1) return __last1; else { _BidirectionalIterator1 __result = __rresult.base(); std::advance(__result, -std::distance(__first2, __last2)); return __result; } } # 5079 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _ForwardIterator1 find_end(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2) { ; ; return std::__find_end(__first1, __last1, __first2, __last2, std::__iterator_category(__first1), std::__iterator_category(__first2)); } # 5124 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_algo.h" 3 template inline _ForwardIterator1 find_end(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2, _ForwardIterator2 __last2, _BinaryPredicate __comp) { ; ; return std::__find_end(__first1, __last1, __first2, __last2, std::__iterator_category(__first1), std::__iterator_category(__first2), __comp); } } # 70 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/algorithm" 2 3 # 57 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.tcc" 1 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.tcc" 3 # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.tcc" 3 namespace std { template inline bool __is_null_pointer(_Type* __ptr) { return __ptr == 0; } template inline bool __is_null_pointer(_Type) { return false; } template const typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: _Rep::_S_max_size = (((npos - sizeof(_Rep_base))/sizeof(_CharT)) - 1) / 4; template const _CharT basic_string<_CharT, _Traits, _Alloc>:: _Rep::_S_terminal = _CharT(); template const typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>::npos; template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>::_Rep::_S_empty_rep_storage[ (sizeof(_Rep_base) + sizeof(_CharT) + sizeof(size_type) - 1) / sizeof(size_type)]; template template _CharT* basic_string<_CharT, _Traits, _Alloc>:: _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a, input_iterator_tag) { if (__beg == __end && __a == _Alloc()) return _S_empty_rep()._M_refdata(); _CharT __buf[128]; size_type __len = 0; while (__beg != __end && __len < sizeof(__buf) / sizeof(_CharT)) { __buf[__len++] = *__beg; ++__beg; } _Rep* __r = _Rep::_S_create(__len, size_type(0), __a); traits_type::copy(__r->_M_refdata(), __buf, __len); try { while (__beg != __end) { if (__len == __r->_M_capacity) { _Rep* __another = _Rep::_S_create(__len + 1, __len, __a); traits_type::copy(__another->_M_refdata(), __r->_M_refdata(), __len); __r->_M_destroy(__a); __r = __another; } __r->_M_refdata()[__len++] = *__beg; ++__beg; } } catch(...) { __r->_M_destroy(__a); throw; } __r->_M_length = __len; __r->_M_refdata()[__len] = _Rep::_S_terminal; return __r->_M_refdata(); } template template _CharT* basic_string<_CharT, _Traits, _Alloc>:: _S_construct(_InIterator __beg, _InIterator __end, const _Alloc& __a, forward_iterator_tag) { if (__beg == __end && __a == _Alloc()) return _S_empty_rep()._M_refdata(); if (__builtin_expect(__is_null_pointer(__beg) && __beg != __end, 0)) __throw_logic_error(("basic_string::_S_construct NULL not valid")); const size_type __dnew = static_cast(std::distance(__beg, __end)); _Rep* __r = _Rep::_S_create(__dnew, size_type(0), __a); try { _S_copy_chars(__r->_M_refdata(), __beg, __end); } catch(...) { __r->_M_destroy(__a); throw; } __r->_M_length = __dnew; __r->_M_refdata()[__dnew] = _Rep::_S_terminal; return __r->_M_refdata(); } template _CharT* basic_string<_CharT, _Traits, _Alloc>:: _S_construct(size_type __n, _CharT __c, const _Alloc& __a) { if (__n == 0 && __a == _Alloc()) return _S_empty_rep()._M_refdata(); _Rep* __r = _Rep::_S_create(__n, size_type(0), __a); if (__n) traits_type::assign(__r->_M_refdata(), __n, __c); __r->_M_length = __n; __r->_M_refdata()[__n] = _Rep::_S_terminal; return __r->_M_refdata(); } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const basic_string& __str) : _M_dataplus(__str._M_rep()->_M_grab(_Alloc(__str.get_allocator()), __str.get_allocator()), __str.get_allocator()) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const _Alloc& __a) : _M_dataplus(_S_construct(size_type(), _CharT(), __a), __a) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const basic_string& __str, size_type __pos, size_type __n) : _M_dataplus(_S_construct(__str._M_data() + __str._M_check(__pos, "basic_string::basic_string"), __str._M_data() + __str._M_limit(__pos, __n) + __pos, _Alloc()), _Alloc()) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const basic_string& __str, size_type __pos, size_type __n, const _Alloc& __a) : _M_dataplus(_S_construct(__str._M_data() + __str._M_check(__pos, "basic_string::basic_string"), __str._M_data() + __str._M_limit(__pos, __n) + __pos, __a), __a) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const _CharT* __s, size_type __n, const _Alloc& __a) : _M_dataplus(_S_construct(__s, __s + __n, __a), __a) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(const _CharT* __s, const _Alloc& __a) : _M_dataplus(_S_construct(__s, __s ? __s + traits_type::length(__s) : __s + npos, __a), __a) { } template basic_string<_CharT, _Traits, _Alloc>:: basic_string(size_type __n, _CharT __c, const _Alloc& __a) : _M_dataplus(_S_construct(__n, __c, __a), __a) { } template template basic_string<_CharT, _Traits, _Alloc>:: basic_string(_InputIterator __beg, _InputIterator __end, const _Alloc& __a) : _M_dataplus(_S_construct(__beg, __end, __a), __a) { } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: assign(const basic_string& __str) { if (_M_rep() != __str._M_rep()) { const allocator_type __a = this->get_allocator(); _CharT* __tmp = __str._M_rep()->_M_grab(__a, __str.get_allocator()); _M_rep()->_M_dispose(__a); _M_data(__tmp); } return *this; } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: assign(const _CharT* __s, size_type __n) { ; if (__n > this->max_size()) __throw_length_error(("basic_string::assign")); if (_M_rep()->_M_is_shared() || less()(__s, _M_data()) || less()(_M_data() + this->size(), __s)) return _M_replace_safe(size_type(0), this->size(), __s, __n); else { const size_type __pos = __s - _M_data(); if (__pos >= __n) traits_type::copy(_M_data(), __s, __n); else if (__pos) traits_type::move(_M_data(), __s, __n); _M_rep()->_M_set_sharable(); _M_rep()->_M_length = __n; _M_data()[__n] = _Rep::_S_terminal; return *this; } } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: insert(size_type __pos, const _CharT* __s, size_type __n) { ; _M_check(__pos, "basic_string::insert"); if (this->max_size() - this->size() < __n) __throw_length_error(("basic_string::insert")); if (_M_rep()->_M_is_shared() || less()(__s, _M_data()) || less()(_M_data() + this->size(), __s)) return _M_replace_safe(__pos, size_type(0), __s, __n); else { const size_type __off = __s - _M_data(); _M_mutate(__pos, 0, __n); __s = _M_data() + __off; _CharT* __p = _M_data() + __pos; if (__s + __n <= __p) traits_type::copy(__p, __s, __n); else if (__s >= __p) traits_type::copy(__p, __s + __n, __n); else { const size_type __nleft = __p - __s; traits_type::copy(__p, __s, __nleft); traits_type::copy(__p + __nleft, __p + __n, __n - __nleft); } return *this; } } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: replace(size_type __pos, size_type __n1, const _CharT* __s, size_type __n2) { ; _M_check(__pos, "basic_string::replace"); __n1 = _M_limit(__pos, __n1); if (this->max_size() - (this->size() - __n1) < __n2) __throw_length_error(("basic_string::replace")); bool __left; if (_M_rep()->_M_is_shared() || less()(__s, _M_data()) || less()(_M_data() + this->size(), __s)) return _M_replace_safe(__pos, __n1, __s, __n2); else if ((__left = __s + __n2 <= _M_data() + __pos) || _M_data() + __pos + __n1 <= __s) { const size_type __off = __s - _M_data(); _M_mutate(__pos, __n1, __n2); if (__left) traits_type::copy(_M_data() + __pos, _M_data() + __off, __n2); else traits_type::copy(_M_data() + __pos, _M_data() + __off + __n2 - __n1, __n2); return *this; } else { const basic_string __tmp(__s, __n2); return _M_replace_safe(__pos, __n1, __tmp._M_data(), __n2); } } template void basic_string<_CharT, _Traits, _Alloc>::_Rep:: _M_destroy(const _Alloc& __a) throw () { if (this == &_S_empty_rep()) return; const size_type __size = sizeof(_Rep_base) + (this->_M_capacity + 1) * sizeof(_CharT); _Raw_bytes_alloc(__a).deallocate(reinterpret_cast(this), __size); } template void basic_string<_CharT, _Traits, _Alloc>::_M_leak_hard() { if (_M_rep() == &_S_empty_rep()) return; if (_M_rep()->_M_is_shared()) _M_mutate(0, 0, 0); _M_rep()->_M_set_leaked(); } template void basic_string<_CharT, _Traits, _Alloc>:: _M_mutate(size_type __pos, size_type __len1, size_type __len2) { const size_type __old_size = this->size(); const size_type __new_size = __old_size + __len2 - __len1; const size_type __how_much = __old_size - __pos - __len1; if (__new_size > capacity() || _M_rep()->_M_is_shared()) { const allocator_type __a = get_allocator(); _Rep* __r = _Rep::_S_create(__new_size, capacity(), __a); if (__pos) traits_type::copy(__r->_M_refdata(), _M_data(), __pos); if (__how_much) traits_type::copy(__r->_M_refdata() + __pos + __len2, _M_data() + __pos + __len1, __how_much); _M_rep()->_M_dispose(__a); _M_data(__r->_M_refdata()); } else if (__how_much && __len1 != __len2) { traits_type::move(_M_data() + __pos + __len2, _M_data() + __pos + __len1, __how_much); } _M_rep()->_M_set_sharable(); _M_rep()->_M_length = __new_size; _M_data()[__new_size] = _Rep::_S_terminal; } template void basic_string<_CharT, _Traits, _Alloc>::reserve(size_type __res) { if (__res != this->capacity() || _M_rep()->_M_is_shared()) { if (__res > this->max_size()) __throw_length_error(("basic_string::reserve")); if (__res < this->size()) __res = this->size(); const allocator_type __a = get_allocator(); _CharT* __tmp = _M_rep()->_M_clone(__a, __res - this->size()); _M_rep()->_M_dispose(__a); _M_data(__tmp); } } template void basic_string<_CharT, _Traits, _Alloc>::swap(basic_string& __s) { if (_M_rep()->_M_is_leaked()) _M_rep()->_M_set_sharable(); if (__s._M_rep()->_M_is_leaked()) __s._M_rep()->_M_set_sharable(); if (this->get_allocator() == __s.get_allocator()) { _CharT* __tmp = _M_data(); _M_data(__s._M_data()); __s._M_data(__tmp); } else { const basic_string __tmp1(_M_ibegin(), _M_iend(), __s.get_allocator()); const basic_string __tmp2(__s._M_ibegin(), __s._M_iend(), this->get_allocator()); *this = __tmp2; __s = __tmp1; } } template typename basic_string<_CharT, _Traits, _Alloc>::_Rep* basic_string<_CharT, _Traits, _Alloc>::_Rep:: _S_create(size_type __capacity, size_type __old_capacity, const _Alloc& __alloc) { typedef basic_string<_CharT, _Traits, _Alloc> __string_type; if (__capacity > _S_max_size) __throw_length_error(("basic_string::_S_create")); # 501 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.tcc" 3 const size_type __pagesize = 4096; const size_type __subpagesize = 128; const size_type __malloc_header_size = 4 * sizeof (void*); # 513 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_string.tcc" 3 const size_type __page_capacity = ((__pagesize - __malloc_header_size - sizeof(_Rep) - sizeof(_CharT)) / sizeof(_CharT)); if (__capacity > __old_capacity && __capacity < 2 * __old_capacity && __capacity > __page_capacity) __capacity = 2 * __old_capacity; size_type __size = (__capacity + 1) * sizeof(_CharT) + sizeof(_Rep); const size_type __adj_size = __size + __malloc_header_size; if (__adj_size > __pagesize) { const size_type __extra = __pagesize - __adj_size % __pagesize; __capacity += __extra / sizeof(_CharT); if (__capacity > _S_max_size) __capacity = _S_max_size; __size = (__capacity + 1) * sizeof(_CharT) + sizeof(_Rep); } else if (__size > __subpagesize) { const size_type __extra = __subpagesize - __adj_size % __subpagesize; __capacity += __extra / sizeof(_CharT); __size = (__capacity + 1) * sizeof(_CharT) + sizeof(_Rep); } void* __place = _Raw_bytes_alloc(__alloc).allocate(__size); _Rep *__p = new (__place) _Rep; __p->_M_capacity = __capacity; __p->_M_set_sharable(); __p->_M_length = 0; return __p; } template _CharT* basic_string<_CharT, _Traits, _Alloc>::_Rep:: _M_clone(const _Alloc& __alloc, size_type __res) { const size_type __requested_cap = this->_M_length + __res; _Rep* __r = _Rep::_S_create(__requested_cap, this->_M_capacity, __alloc); if (this->_M_length) traits_type::copy(__r->_M_refdata(), _M_refdata(), this->_M_length); __r->_M_length = this->_M_length; __r->_M_refdata()[this->_M_length] = _Rep::_S_terminal; return __r->_M_refdata(); } template void basic_string<_CharT, _Traits, _Alloc>::resize(size_type __n, _CharT __c) { if (__n > max_size()) __throw_length_error(("basic_string::resize")); const size_type __size = this->size(); if (__size < __n) this->append(__n - __size, __c); else if (__n < __size) this->erase(__n); } template template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: _M_replace_dispatch(iterator __i1, iterator __i2, _InputIterator __k1, _InputIterator __k2, __false_type) { const basic_string __s(__k1, __k2); const size_type __n1 = __i2 - __i1; if (this->max_size() - (this->size() - __n1) < __s.size()) __throw_length_error(("basic_string::_M_replace_dispatch")); return _M_replace_safe(__i1 - _M_ibegin(), __n1, __s._M_data(), __s.size()); } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: append(const basic_string& __str) { const size_type __size = __str.size(); const size_type __len = __size + this->size(); if (__len > this->capacity()) this->reserve(__len); return _M_replace_safe(this->size(), size_type(0), __str._M_data(), __str.size()); } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: append(const basic_string& __str, size_type __pos, size_type __n) { __str._M_check(__pos, "basic_string::append"); __n = __str._M_limit(__pos, __n); const size_type __len = __n + this->size(); if (__len > this->capacity()) this->reserve(__len); return _M_replace_safe(this->size(), size_type(0), __str._M_data() + __pos, __n); } template basic_string<_CharT, _Traits, _Alloc>& basic_string<_CharT, _Traits, _Alloc>:: append(const _CharT* __s, size_type __n) { ; const size_type __len = __n + this->size(); if (__len > this->capacity()) this->reserve(__len); return _M_replace_safe(this->size(), size_type(0), __s, __n); } template basic_string<_CharT, _Traits, _Alloc> operator+(const _CharT* __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { ; typedef basic_string<_CharT, _Traits, _Alloc> __string_type; typedef typename __string_type::size_type __size_type; const __size_type __len = _Traits::length(__lhs); __string_type __str; __str.reserve(__len + __rhs.size()); __str.append(__lhs, __len); __str.append(__rhs); return __str; } template basic_string<_CharT, _Traits, _Alloc> operator+(_CharT __lhs, const basic_string<_CharT, _Traits, _Alloc>& __rhs) { typedef basic_string<_CharT, _Traits, _Alloc> __string_type; typedef typename __string_type::size_type __size_type; __string_type __str; const __size_type __len = __rhs.size(); __str.reserve(__len + 1); __str.append(__size_type(1), __lhs); __str.append(__rhs); return __str; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: copy(_CharT* __s, size_type __n, size_type __pos) const { _M_check(__pos, "basic_string::copy"); __n = _M_limit(__pos, __n); ; if (__n) traits_type::copy(__s, _M_data() + __pos, __n); return __n; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find(const _CharT* __s, size_type __pos, size_type __n) const { ; const size_type __size = this->size(); const _CharT* __data = _M_data(); for (; __pos + __n <= __size; ++__pos) if (traits_type::compare(__data + __pos, __s, __n) == 0) return __pos; return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find(_CharT __c, size_type __pos) const { const size_type __size = this->size(); size_type __ret = npos; if (__pos < __size) { const _CharT* __data = _M_data(); const size_type __n = __size - __pos; const _CharT* __p = traits_type::find(__data + __pos, __n, __c); if (__p) __ret = __p - __data; } return __ret; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: rfind(const _CharT* __s, size_type __pos, size_type __n) const { ; const size_type __size = this->size(); if (__n <= __size) { __pos = std::min(size_type(__size - __n), __pos); const _CharT* __data = _M_data(); do { if (traits_type::compare(__data + __pos, __s, __n) == 0) return __pos; } while (__pos-- > 0); } return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: rfind(_CharT __c, size_type __pos) const { size_type __size = this->size(); if (__size) { if (--__size > __pos) __size = __pos; for (++__size; __size-- > 0; ) if (traits_type::eq(_M_data()[__size], __c)) return __size; } return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_first_of(const _CharT* __s, size_type __pos, size_type __n) const { ; for (; __n && __pos < this->size(); ++__pos) { const _CharT* __p = traits_type::find(__s, __n, _M_data()[__pos]); if (__p) return __pos; } return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_last_of(const _CharT* __s, size_type __pos, size_type __n) const { ; size_type __size = this->size(); if (__size && __n) { if (--__size > __pos) __size = __pos; do { if (traits_type::find(__s, __n, _M_data()[__size])) return __size; } while (__size-- != 0); } return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_first_not_of(const _CharT* __s, size_type __pos, size_type __n) const { ; for (; __pos < this->size(); ++__pos) if (!traits_type::find(__s, __n, _M_data()[__pos])) return __pos; return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_first_not_of(_CharT __c, size_type __pos) const { for (; __pos < this->size(); ++__pos) if (!traits_type::eq(_M_data()[__pos], __c)) return __pos; return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_last_not_of(const _CharT* __s, size_type __pos, size_type __n) const { ; size_type __size = this->size(); if (__size) { if (--__size > __pos) __size = __pos; do { if (!traits_type::find(__s, __n, _M_data()[__size])) return __size; } while (__size--); } return npos; } template typename basic_string<_CharT, _Traits, _Alloc>::size_type basic_string<_CharT, _Traits, _Alloc>:: find_last_not_of(_CharT __c, size_type __pos) const { size_type __size = this->size(); if (__size) { if (--__size > __pos) __size = __pos; do { if (!traits_type::eq(_M_data()[__size], __c)) return __size; } while (__size--); } return npos; } template int basic_string<_CharT, _Traits, _Alloc>:: compare(size_type __pos, size_type __n, const basic_string& __str) const { _M_check(__pos, "basic_string::compare"); __n = _M_limit(__pos, __n); const size_type __osize = __str.size(); const size_type __len = std::min(__n, __osize); int __r = traits_type::compare(_M_data() + __pos, __str.data(), __len); if (!__r) __r = __n - __osize; return __r; } template int basic_string<_CharT, _Traits, _Alloc>:: compare(size_type __pos1, size_type __n1, const basic_string& __str, size_type __pos2, size_type __n2) const { _M_check(__pos1, "basic_string::compare"); __str._M_check(__pos2, "basic_string::compare"); __n1 = _M_limit(__pos1, __n1); __n2 = __str._M_limit(__pos2, __n2); const size_type __len = std::min(__n1, __n2); int __r = traits_type::compare(_M_data() + __pos1, __str.data() + __pos2, __len); if (!__r) __r = __n1 - __n2; return __r; } template int basic_string<_CharT, _Traits, _Alloc>:: compare(const _CharT* __s) const { ; const size_type __size = this->size(); const size_type __osize = traits_type::length(__s); const size_type __len = std::min(__size, __osize); int __r = traits_type::compare(_M_data(), __s, __len); if (!__r) __r = __size - __osize; return __r; } template int basic_string <_CharT, _Traits, _Alloc>:: compare(size_type __pos, size_type __n1, const _CharT* __s) const { ; _M_check(__pos, "basic_string::compare"); __n1 = _M_limit(__pos, __n1); const size_type __osize = traits_type::length(__s); const size_type __len = std::min(__n1, __osize); int __r = traits_type::compare(_M_data() + __pos, __s, __len); if (!__r) __r = __n1 - __osize; return __r; } template int basic_string <_CharT, _Traits, _Alloc>:: compare(size_type __pos, size_type __n1, const _CharT* __s, size_type __n2) const { ; _M_check(__pos, "basic_string::compare"); __n1 = _M_limit(__pos, __n1); const size_type __len = std::min(__n1, __n2); int __r = traits_type::compare(_M_data() + __pos, __s, __len); if (!__r) __r = __n1 - __n2; return __r; } extern template class basic_string; extern template basic_istream& operator>>(basic_istream&, string&); extern template basic_ostream& operator<<(basic_ostream&, const string&); extern template basic_istream& getline(basic_istream&, string&, char); extern template basic_istream& getline(basic_istream&, string&); extern template class basic_string; extern template basic_istream& operator>>(basic_istream&, wstring&); extern template basic_ostream& operator<<(basic_ostream&, const wstring&); extern template basic_istream& getline(basic_istream&, wstring&, wchar_t); extern template basic_istream& getline(basic_istream&, wstring&); } # 58 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/string" 2 3 # 53 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 1 3 # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 1 3 # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/localefwd.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/localefwd.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/localefwd.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 1 3 # 36 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 3 namespace std { void __throw_bad_exception(void); void __throw_bad_alloc(void); void __throw_bad_cast(void); void __throw_bad_typeid(void); void __throw_logic_error(const char* __s); void __throw_domain_error(const char* __s); void __throw_invalid_argument(const char* __s); void __throw_length_error(const char* __s); void __throw_out_of_range(const char* __s); void __throw_runtime_error(const char* __s); void __throw_range_error(const char* __s); void __throw_overflow_error(const char* __s); void __throw_underflow_error(const char* __s); void __throw_ios_failure(const char* __s); } # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/localefwd.h" 2 3 namespace std { class locale; template inline bool isspace(_CharT, const locale&); template inline bool isprint(_CharT, const locale&); template inline bool iscntrl(_CharT, const locale&); template inline bool isupper(_CharT, const locale&); template inline bool islower(_CharT, const locale&); template inline bool isalpha(_CharT, const locale&); template inline bool isdigit(_CharT, const locale&); template inline bool ispunct(_CharT, const locale&); template inline bool isxdigit(_CharT, const locale&); template inline bool isalnum(_CharT, const locale&); template inline bool isgraph(_CharT, const locale&); template inline _CharT toupper(_CharT, const locale&); template inline _CharT tolower(_CharT, const locale&); class ctype_base; template class ctype; template<> class ctype; template<> class ctype; template class ctype_byname; class codecvt_base; class __enc_traits; template class codecvt; template<> class codecvt; template<> class codecvt; template class codecvt_byname; template > class num_get; template > class num_put; template class numpunct; template class numpunct_byname; template class collate; template class collate_byname; class time_base; template > class time_get; template > class time_get_byname; template > class time_put; template > class time_put_byname; class money_base; template > class money_get; template > class money_put; template class moneypunct; template class moneypunct_byname; class messages_base; template class messages; template class messages_byname; template bool has_facet(const locale& __loc) throw(); template const _Facet& use_facet(const locale& __loc); template inline const _Facet& __check_facet(const _Facet* __f) { if (!__f) __throw_bad_cast(); return *__f; } } # 49 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 namespace std { # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 class locale { public: typedef int category; class facet; class id; class _Impl; friend class facet; friend class _Impl; template friend bool has_facet(const locale&) throw(); template friend const _Facet& use_facet(const locale&); template friend struct __use_cache; # 105 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 static const category none = 0; static const category ctype = 1L << 0; static const category numeric = 1L << 1; static const category collate = 1L << 2; static const category time = 1L << 3; static const category monetary = 1L << 4; static const category messages = 1L << 5; static const category all = (ctype | numeric | collate | time | monetary | messages); # 124 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 locale() throw(); # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 locale(const locale& __other) throw(); # 143 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 explicit locale(const char* __s); # 158 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 locale(const locale& __base, const char* __s, category __cat); # 171 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 locale(const locale& __base, const locale& __add, category __cat); # 183 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 template locale(const locale& __other, _Facet* __f); ~locale() throw(); # 197 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 const locale& operator=(const locale& __other) throw(); # 212 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 template locale combine(const locale& __other) const; string name() const; # 231 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 bool operator==(const locale& __other) const throw (); inline bool operator!=(const locale& __other) const throw () { return !(this->operator==(__other)); } # 259 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 template bool operator()(const basic_string<_Char, _Traits, _Alloc>& __s1, const basic_string<_Char, _Traits, _Alloc>& __s2) const; # 275 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 static locale global(const locale&); static const locale& classic(); private: _Impl* _M_impl; static _Impl* _S_classic; static _Impl* _S_global; static const char* const* const _S_categories; # 310 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 static const size_t _S_categories_size = 6 + 6; static __gthread_once_t _S_once; explicit locale(_Impl*) throw(); static void _S_initialize(); static void _S_initialize_once(); static category _S_normalize_category(category); void _M_coalesce(const locale& __base, const locale& __add, category __cat); }; # 343 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 class locale::facet { private: friend class locale; friend class locale::_Impl; mutable _Atomic_word _M_refcount; static __c_locale _S_c_locale; static const char _S_c_name[2]; static __gthread_once_t _S_once; static void _S_initialize_once(); protected: # 374 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 explicit facet(size_t __refs = 0) throw() : _M_refcount(__refs ? 1 : 0) { } virtual ~facet(); static void _S_create_c_locale(__c_locale& __cloc, const char* __s, __c_locale __old = 0); static __c_locale _S_clone_c_locale(__c_locale& __cloc); static void _S_destroy_c_locale(__c_locale& __cloc); static __c_locale _S_get_c_locale(); static const char* _S_get_c_name(); private: inline void _M_add_reference() const throw() { __gnu_cxx::__atomic_add(&_M_refcount, 1); } inline void _M_remove_reference() const throw() { if (__gnu_cxx::__exchange_and_add(&_M_refcount, -1) == 1) { try { delete this; } catch (...) { } } } facet(const facet&); facet& operator=(const facet&); }; # 434 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_classes.h" 3 class locale::id { private: friend class locale; friend class locale::_Impl; template friend const _Facet& use_facet(const locale&); template friend bool has_facet(const locale&) throw (); mutable size_t _M_index; static _Atomic_word _S_refcount; void operator=(const id&); id(const id&); public: id() { } size_t _M_id() const; }; class locale::_Impl { public: friend class locale; friend class locale::facet; template friend bool has_facet(const locale&) throw(); template friend const _Facet& use_facet(const locale&); template friend struct __use_cache; private: _Atomic_word _M_refcount; const facet** _M_facets; size_t _M_facets_size; const facet** _M_caches; char** _M_names; static const locale::id* const _S_id_ctype[]; static const locale::id* const _S_id_numeric[]; static const locale::id* const _S_id_collate[]; static const locale::id* const _S_id_time[]; static const locale::id* const _S_id_monetary[]; static const locale::id* const _S_id_messages[]; static const locale::id* const* const _S_facet_categories[]; inline void _M_add_reference() throw() { __gnu_cxx::__atomic_add(&_M_refcount, 1); } inline void _M_remove_reference() throw() { if (__gnu_cxx::__exchange_and_add(&_M_refcount, -1) == 1) { try { delete this; } catch(...) { } } } _Impl(const _Impl&, size_t); _Impl(const char*, size_t); _Impl(size_t) throw(); ~_Impl() throw(); _Impl(const _Impl&); void operator=(const _Impl&); inline bool _M_check_same_name() { bool __ret = true; for (size_t __i = 0; __ret && __i < _S_categories_size - 1; ++__i) __ret = std::strcmp(_M_names[__i], _M_names[__i + 1]) == 0; return __ret; } void _M_replace_categories(const _Impl*, category); void _M_replace_category(const _Impl*, const locale::id* const*); void _M_replace_facet(const _Impl*, const locale::id*); void _M_install_facet(const locale::id*, const facet*); template inline void _M_init_facet(_Facet* __facet) { _M_install_facet(&_Facet::id, __facet); } void _M_install_cache(const facet* __cache, size_t __index) throw() { __cache->_M_add_reference(); _M_caches[__index] = __cache; } }; template locale::locale(const locale& __other, _Facet* __f) { _M_impl = new _Impl(*__other._M_impl, 1); char* _M_tmp_names[_S_categories_size]; size_t __i = 0; try { for (; __i < _S_categories_size; ++__i) { _M_tmp_names[__i] = new char[2]; std::strcpy(_M_tmp_names[__i], "*"); } _M_impl->_M_install_facet(&_Facet::id, __f); } catch(...) { _M_impl->_M_remove_reference(); for (size_t __j = 0; __j < __i; ++__j) delete [] _M_tmp_names[__j]; throw; } for (size_t __k = 0; __k < _S_categories_size; ++__k) { delete [] _M_impl->_M_names[__k]; _M_impl->_M_names[__k] = _M_tmp_names[__k]; } } } # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 2 3 namespace std { enum _Ios_Fmtflags { _S_boolalpha = 1L << 0, _S_dec = 1L << 1, _S_fixed = 1L << 2, _S_hex = 1L << 3, _S_internal = 1L << 4, _S_left = 1L << 5, _S_oct = 1L << 6, _S_right = 1L << 7, _S_scientific = 1L << 8, _S_showbase = 1L << 9, _S_showpoint = 1L << 10, _S_showpos = 1L << 11, _S_skipws = 1L << 12, _S_unitbuf = 1L << 13, _S_uppercase = 1L << 14, _S_adjustfield = _S_left | _S_right | _S_internal, _S_basefield = _S_dec | _S_oct | _S_hex, _S_floatfield = _S_scientific | _S_fixed, _S_ios_fmtflags_end = 1L << 16 }; inline _Ios_Fmtflags operator&(_Ios_Fmtflags __a, _Ios_Fmtflags __b) { return _Ios_Fmtflags(static_cast(__a) & static_cast(__b)); } inline _Ios_Fmtflags operator|(_Ios_Fmtflags __a, _Ios_Fmtflags __b) { return _Ios_Fmtflags(static_cast(__a) | static_cast(__b)); } inline _Ios_Fmtflags operator^(_Ios_Fmtflags __a, _Ios_Fmtflags __b) { return _Ios_Fmtflags(static_cast(__a) ^ static_cast(__b)); } inline _Ios_Fmtflags& operator|=(_Ios_Fmtflags& __a, _Ios_Fmtflags __b) { return __a = __a | __b; } inline _Ios_Fmtflags& operator&=(_Ios_Fmtflags& __a, _Ios_Fmtflags __b) { return __a = __a & __b; } inline _Ios_Fmtflags& operator^=(_Ios_Fmtflags& __a, _Ios_Fmtflags __b) { return __a = __a ^ __b; } inline _Ios_Fmtflags operator~(_Ios_Fmtflags __a) { return _Ios_Fmtflags(~static_cast(__a)); } enum _Ios_Openmode { _S_app = 1L << 0, _S_ate = 1L << 1, _S_bin = 1L << 2, _S_in = 1L << 3, _S_out = 1L << 4, _S_trunc = 1L << 5, _S_ios_openmode_end = 1L << 16 }; inline _Ios_Openmode operator&(_Ios_Openmode __a, _Ios_Openmode __b) { return _Ios_Openmode(static_cast(__a) & static_cast(__b)); } inline _Ios_Openmode operator|(_Ios_Openmode __a, _Ios_Openmode __b) { return _Ios_Openmode(static_cast(__a) | static_cast(__b)); } inline _Ios_Openmode operator^(_Ios_Openmode __a, _Ios_Openmode __b) { return _Ios_Openmode(static_cast(__a) ^ static_cast(__b)); } inline _Ios_Openmode& operator|=(_Ios_Openmode& __a, _Ios_Openmode __b) { return __a = __a | __b; } inline _Ios_Openmode& operator&=(_Ios_Openmode& __a, _Ios_Openmode __b) { return __a = __a & __b; } inline _Ios_Openmode& operator^=(_Ios_Openmode& __a, _Ios_Openmode __b) { return __a = __a ^ __b; } inline _Ios_Openmode operator~(_Ios_Openmode __a) { return _Ios_Openmode(~static_cast(__a)); } enum _Ios_Iostate { _S_goodbit = 0, _S_badbit = 1L << 0, _S_eofbit = 1L << 1, _S_failbit = 1L << 2, _S_ios_iostate_end = 1L << 16 }; inline _Ios_Iostate operator&(_Ios_Iostate __a, _Ios_Iostate __b) { return _Ios_Iostate(static_cast(__a) & static_cast(__b)); } inline _Ios_Iostate operator|(_Ios_Iostate __a, _Ios_Iostate __b) { return _Ios_Iostate(static_cast(__a) | static_cast(__b)); } inline _Ios_Iostate operator^(_Ios_Iostate __a, _Ios_Iostate __b) { return _Ios_Iostate(static_cast(__a) ^ static_cast(__b)); } inline _Ios_Iostate& operator|=(_Ios_Iostate& __a, _Ios_Iostate __b) { return __a = __a | __b; } inline _Ios_Iostate& operator&=(_Ios_Iostate& __a, _Ios_Iostate __b) { return __a = __a & __b; } inline _Ios_Iostate& operator^=(_Ios_Iostate& __a, _Ios_Iostate __b) { return __a = __a ^ __b; } inline _Ios_Iostate operator~(_Ios_Iostate __a) { return _Ios_Iostate(~static_cast(__a)); } enum _Ios_Seekdir { _S_beg = 0, _S_cur = 1, _S_end = 2, _S_ios_seekdir_end = 1L << 16 }; # 201 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 class ios_base { public: class failure : public exception { public: explicit failure(const string& __str) throw(); virtual ~failure() throw(); virtual const char* what() const throw(); private: string _M_msg; }; # 253 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 typedef _Ios_Fmtflags fmtflags; static const fmtflags boolalpha = fmtflags(__ios_flags::_S_boolalpha); static const fmtflags dec = fmtflags(__ios_flags::_S_dec); static const fmtflags fixed = fmtflags(__ios_flags::_S_fixed); static const fmtflags hex = fmtflags(__ios_flags::_S_hex); static const fmtflags internal = fmtflags(__ios_flags::_S_internal); static const fmtflags left = fmtflags(__ios_flags::_S_left); static const fmtflags oct = fmtflags(__ios_flags::_S_oct); static const fmtflags right = fmtflags(__ios_flags::_S_right); static const fmtflags scientific = fmtflags(__ios_flags::_S_scientific); static const fmtflags showbase = fmtflags(__ios_flags::_S_showbase); static const fmtflags showpoint = fmtflags(__ios_flags::_S_showpoint); static const fmtflags showpos = fmtflags(__ios_flags::_S_showpos); static const fmtflags skipws = fmtflags(__ios_flags::_S_skipws); static const fmtflags unitbuf = fmtflags(__ios_flags::_S_unitbuf); static const fmtflags uppercase = fmtflags(__ios_flags::_S_uppercase); static const fmtflags adjustfield = fmtflags(__ios_flags::_S_adjustfield); static const fmtflags basefield = fmtflags(__ios_flags::_S_basefield); static const fmtflags floatfield = fmtflags(__ios_flags::_S_floatfield); # 328 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 typedef _Ios_Iostate iostate; static const iostate badbit = iostate(__ios_flags::_S_badbit); static const iostate eofbit = iostate(__ios_flags::_S_eofbit); static const iostate failbit = iostate(__ios_flags::_S_failbit); static const iostate goodbit = iostate(0); # 359 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 typedef _Ios_Openmode openmode; static const openmode app = openmode(__ios_flags::_S_app); static const openmode ate = openmode(__ios_flags::_S_ate); static const openmode binary = openmode(__ios_flags::_S_bin); static const openmode in = openmode(__ios_flags::_S_in); static const openmode out = openmode(__ios_flags::_S_out); static const openmode trunc = openmode(__ios_flags::_S_trunc); # 392 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 typedef _Ios_Seekdir seekdir; static const seekdir beg = seekdir(0); static const seekdir cur = seekdir(1); static const seekdir end = seekdir(2); # 420 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 enum event { erase_event, imbue_event, copyfmt_event }; # 437 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 typedef void (*event_callback) (event, ios_base&, int); # 449 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 void register_callback(event_callback __fn, int __index); protected: streamsize _M_precision; streamsize _M_width; fmtflags _M_flags; iostate _M_exception; iostate _M_streambuf_state; struct _Callback_list { _Callback_list* _M_next; ios_base::event_callback _M_fn; int _M_index; _Atomic_word _M_refcount; _Callback_list(ios_base::event_callback __fn, int __index, _Callback_list* __cb) : _M_next(__cb), _M_fn(__fn), _M_index(__index), _M_refcount(0) { } void _M_add_reference() { __gnu_cxx::__atomic_add(&_M_refcount, 1); } int _M_remove_reference() { return __gnu_cxx::__exchange_and_add(&_M_refcount, -1); } }; _Callback_list* _M_callbacks; void _M_call_callbacks(event __ev) throw(); void _M_dispose_callbacks(void); struct _Words { void* _M_pword; long _M_iword; _Words() : _M_pword(0), _M_iword(0) { } }; _Words _M_word_zero; static const int _S_local_word_size = 8; _Words _M_local_word[_S_local_word_size]; int _M_word_size; _Words* _M_word; _Words& _M_grow_words(int __index, bool __iword); locale _M_ios_locale; void _M_init(); public: class Init { friend class ios_base; public: Init(); ~Init(); private: static _Atomic_word _S_refcount; static bool _S_synced_with_stdio; }; inline fmtflags flags() const { return _M_flags; } # 559 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline fmtflags flags(fmtflags __fmtfl) { fmtflags __old = _M_flags; _M_flags = __fmtfl; return __old; } # 575 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline fmtflags setf(fmtflags __fmtfl) { fmtflags __old = _M_flags; _M_flags |= __fmtfl; return __old; } # 592 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline fmtflags setf(fmtflags __fmtfl, fmtflags __mask) { fmtflags __old = _M_flags; _M_flags &= ~__mask; _M_flags |= (__fmtfl & __mask); return __old; } inline void unsetf(fmtflags __mask) { _M_flags &= ~__mask; } # 619 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline streamsize precision() const { return _M_precision; } inline streamsize precision(streamsize __prec) { streamsize __old = _M_precision; _M_precision = __prec; return __old; } inline streamsize width() const { return _M_width; } inline streamsize width(streamsize __wide) { streamsize __old = _M_width; _M_width = __wide; return __old; } # 668 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 static bool sync_with_stdio(bool __sync = true); # 680 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 locale imbue(const locale& __loc); # 691 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline locale getloc() const { return _M_ios_locale; } # 701 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline const locale& _M_getloc() const { return _M_ios_locale; } # 719 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 static int xalloc() throw(); # 735 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline long& iword(int __ix) { _Words& __word = (__ix < _M_word_size) ? _M_word[__ix] : _M_grow_words(__ix, true); return __word._M_iword; } # 756 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 inline void*& pword(int __ix) { _Words& __word = (__ix < _M_word_size) ? _M_word[__ix] : _M_grow_words(__ix, false); return __word._M_pword; } # 773 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ios_base.h" 3 virtual ~ios_base(); protected: ios_base(); private: ios_base(const ios_base&); ios_base& operator=(const ios_base&); }; inline ios_base& boolalpha(ios_base& __base) { __base.setf(ios_base::boolalpha); return __base; } inline ios_base& noboolalpha(ios_base& __base) { __base.unsetf(ios_base::boolalpha); return __base; } inline ios_base& showbase(ios_base& __base) { __base.setf(ios_base::showbase); return __base; } inline ios_base& noshowbase(ios_base& __base) { __base.unsetf(ios_base::showbase); return __base; } inline ios_base& showpoint(ios_base& __base) { __base.setf(ios_base::showpoint); return __base; } inline ios_base& noshowpoint(ios_base& __base) { __base.unsetf(ios_base::showpoint); return __base; } inline ios_base& showpos(ios_base& __base) { __base.setf(ios_base::showpos); return __base; } inline ios_base& noshowpos(ios_base& __base) { __base.unsetf(ios_base::showpos); return __base; } inline ios_base& skipws(ios_base& __base) { __base.setf(ios_base::skipws); return __base; } inline ios_base& noskipws(ios_base& __base) { __base.unsetf(ios_base::skipws); return __base; } inline ios_base& uppercase(ios_base& __base) { __base.setf(ios_base::uppercase); return __base; } inline ios_base& nouppercase(ios_base& __base) { __base.unsetf(ios_base::uppercase); return __base; } inline ios_base& unitbuf(ios_base& __base) { __base.setf(ios_base::unitbuf); return __base; } inline ios_base& nounitbuf(ios_base& __base) { __base.unsetf(ios_base::unitbuf); return __base; } inline ios_base& internal(ios_base& __base) { __base.setf(ios_base::internal, ios_base::adjustfield); return __base; } inline ios_base& left(ios_base& __base) { __base.setf(ios_base::left, ios_base::adjustfield); return __base; } inline ios_base& right(ios_base& __base) { __base.setf(ios_base::right, ios_base::adjustfield); return __base; } inline ios_base& dec(ios_base& __base) { __base.setf(ios_base::dec, ios_base::basefield); return __base; } inline ios_base& hex(ios_base& __base) { __base.setf(ios_base::hex, ios_base::basefield); return __base; } inline ios_base& oct(ios_base& __base) { __base.setf(ios_base::oct, ios_base::basefield); return __base; } inline ios_base& fixed(ios_base& __base) { __base.setf(ios_base::fixed, ios_base::floatfield); return __base; } inline ios_base& scientific(ios_base& __base) { __base.setf(ios_base::scientific, ios_base::floatfield); return __base; } } # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 namespace std { template streamsize __copy_streambufs(basic_streambuf<_CharT, _Traits>* __sbin, basic_streambuf<_CharT, _Traits>* __sbout); # 122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 template class basic_streambuf { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename traits_type::int_type int_type; typedef typename traits_type::pos_type pos_type; typedef typename traits_type::off_type off_type; # 145 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 typedef basic_streambuf __streambuf_type; friend class basic_ios; friend class basic_istream; friend class basic_ostream; friend class istreambuf_iterator; friend class ostreambuf_iterator; friend streamsize __copy_streambufs<>(__streambuf_type* __sbin, __streambuf_type* __sbout); protected: # 169 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 char_type* _M_in_beg; char_type* _M_in_cur; char_type* _M_in_end; char_type* _M_out_beg; char_type* _M_out_cur; char_type* _M_out_end; locale _M_buf_locale; public: virtual ~basic_streambuf() { } # 197 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 locale pubimbue(const locale &__loc) { locale __tmp(this->getloc()); this->imbue(__loc); _M_buf_locale = __loc; return __tmp; } # 214 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 locale getloc() const { return _M_buf_locale; } # 227 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 __streambuf_type* pubsetbuf(char_type* __s, streamsize __n) { return this->setbuf(__s, __n); } pos_type pubseekoff(off_type __off, ios_base::seekdir __way, ios_base::openmode __mode = ios_base::in | ios_base::out) { return this->seekoff(__off, __way, __mode); } pos_type pubseekpos(pos_type __sp, ios_base::openmode __mode = ios_base::in | ios_base::out) { return this->seekpos(__sp, __mode); } int pubsync() { return this->sync(); } # 254 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 streamsize in_avail() { const streamsize __ret = this->egptr() - this->gptr(); return __ret ? __ret : this->showmanyc(); } # 268 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type snextc() { int_type __ret = traits_type::eof(); if (__builtin_expect(!traits_type::eq_int_type(this->sbumpc(), __ret), true)) __ret = this->sgetc(); return __ret; } # 286 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type sbumpc() { int_type __ret; if (__builtin_expect(this->gptr() < this->egptr(), true)) { __ret = traits_type::to_int_type(*this->gptr()); this->gbump(1); } else __ret = this->uflow(); return __ret; } # 308 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type sgetc() { int_type __ret; if (__builtin_expect(this->gptr() < this->egptr(), true)) __ret = traits_type::to_int_type(*this->gptr()); else __ret = this->underflow(); return __ret; } # 327 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 streamsize sgetn(char_type* __s, streamsize __n) { return this->xsgetn(__s, __n); } # 341 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type sputbackc(char_type __c) { int_type __ret; const bool __testpos = this->eback() < this->gptr(); if (__builtin_expect(!__testpos || !traits_type::eq(__c, this->gptr()[-1]), false)) __ret = this->pbackfail(traits_type::to_int_type(__c)); else { this->gbump(-1); __ret = traits_type::to_int_type(*this->gptr()); } return __ret; } # 366 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type sungetc() { int_type __ret; if (__builtin_expect(this->eback() < this->gptr(), true)) { this->gbump(-1); __ret = traits_type::to_int_type(*this->gptr()); } else __ret = this->pbackfail(); return __ret; } # 393 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 int_type sputc(char_type __c) { int_type __ret; if (__builtin_expect(this->pptr() < this->epptr(), true)) { *this->pptr() = __c; this->pbump(1); __ret = traits_type::to_int_type(__c); } else __ret = this->overflow(traits_type::to_int_type(__c)); return __ret; } # 419 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 streamsize sputn(const char_type* __s, streamsize __n) { return this->xsputn(__s, __n); } protected: # 433 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 basic_streambuf() : _M_in_beg(0), _M_in_cur(0), _M_in_end(0), _M_out_beg(0), _M_out_cur(0), _M_out_end(0), _M_buf_locale(locale()) { } # 451 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 char_type* eback() const { return _M_in_beg; } char_type* gptr() const { return _M_in_cur; } char_type* egptr() const { return _M_in_end; } # 467 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 void gbump(int __n) { _M_in_cur += __n; } # 478 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 void setg(char_type* __gbeg, char_type* __gnext, char_type* __gend) { _M_in_beg = __gbeg; _M_in_cur = __gnext; _M_in_end = __gend; } # 498 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 char_type* pbase() const { return _M_out_beg; } char_type* pptr() const { return _M_out_cur; } char_type* epptr() const { return _M_out_end; } # 514 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 void pbump(int __n) { _M_out_cur += __n; } # 524 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 void setp(char_type* __pbeg, char_type* __pend) { _M_out_beg = _M_out_cur = __pbeg; _M_out_end = __pend; } # 545 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual void imbue(const locale&) { } # 560 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual basic_streambuf* setbuf(char_type*, streamsize) { return this; } # 571 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual pos_type seekoff(off_type, ios_base::seekdir, ios_base::openmode = ios_base::in | ios_base::out) { return pos_type(off_type(-1)); } # 583 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual pos_type seekpos(pos_type, ios_base::openmode = ios_base::in | ios_base::out) { return pos_type(off_type(-1)); } # 596 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual int sync() { return 0; } # 618 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual streamsize showmanyc() { return 0; } # 634 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual streamsize xsgetn(char_type* __s, streamsize __n); # 656 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual int_type underflow() { return traits_type::eof(); } # 669 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual int_type uflow() { int_type __ret = traits_type::eof(); const bool __testeof = traits_type::eq_int_type(this->underflow(), __ret); if (!__testeof) { __ret = traits_type::to_int_type(*this->gptr()); this->gbump(1); } return __ret; } # 693 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual int_type pbackfail(int_type = traits_type::eof()) { return traits_type::eof(); } # 711 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual streamsize xsputn(const char_type* __s, streamsize __n); # 736 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 virtual int_type overflow(int_type = traits_type::eof()) { return traits_type::eof(); } # 765 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 3 private: basic_streambuf(const __streambuf_type& __sb) : _M_in_beg(__sb._M_in_beg), _M_in_cur(__sb._M_in_cur), _M_in_end(__sb._M_in_end), _M_out_beg(__sb._M_out_beg), _M_out_cur(__sb._M_out_cur), _M_out_end(__sb._M_out_cur), _M_buf_locale(__sb._M_buf_locale) { } __streambuf_type& operator=(const __streambuf_type&) { return *this; }; }; } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf.tcc" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf.tcc" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf.tcc" 3 namespace std { template streamsize basic_streambuf<_CharT, _Traits>:: xsgetn(char_type* __s, streamsize __n) { streamsize __ret = 0; while (__ret < __n) { const size_t __buf_len = this->egptr() - this->gptr(); if (__buf_len) { const size_t __remaining = __n - __ret; const size_t __len = std::min(__buf_len, __remaining); traits_type::copy(__s, this->gptr(), __len); __ret += __len; __s += __len; this->gbump(__len); } if (__ret < __n) { const int_type __c = this->uflow(); if (!traits_type::eq_int_type(__c, traits_type::eof())) { traits_type::assign(*__s++, traits_type::to_char_type(__c)); ++__ret; } else break; } } return __ret; } template streamsize basic_streambuf<_CharT, _Traits>:: xsputn(const char_type* __s, streamsize __n) { streamsize __ret = 0; while (__ret < __n) { const size_t __buf_len = this->epptr() - this->pptr(); if (__buf_len) { const size_t __remaining = __n - __ret; const size_t __len = std::min(__buf_len, __remaining); traits_type::copy(this->pptr(), __s, __len); __ret += __len; __s += __len; this->pbump(__len); } if (__ret < __n) { int_type __c = this->overflow(traits_type::to_int_type(*__s)); if (!traits_type::eq_int_type(__c, traits_type::eof())) { ++__ret; ++__s; } else break; } } return __ret; } template streamsize __copy_streambufs(basic_streambuf<_CharT, _Traits>* __sbin, basic_streambuf<_CharT, _Traits>* __sbout) { streamsize __ret = 0; typename _Traits::int_type __c = __sbin->sgetc(); while (!_Traits::eq_int_type(__c, _Traits::eof())) { const size_t __n = __sbin->egptr() - __sbin->gptr(); if (__n > 1) { const size_t __wrote = __sbout->sputn(__sbin->gptr(), __n); __sbin->gbump(__wrote); __ret += __wrote; if (__wrote < __n) break; __c = __sbin->underflow(); } else { __c = __sbout->sputc(_Traits::to_char_type(__c)); if (_Traits::eq_int_type(__c, _Traits::eof())) break; ++__ret; __c = __sbin->snextc(); } } return __ret; } extern template class basic_streambuf; extern template streamsize __copy_streambufs(basic_streambuf*, basic_streambuf*); extern template class basic_streambuf; extern template streamsize __copy_streambufs(basic_streambuf*, basic_streambuf*); } # 782 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/streambuf" 2 3 # 51 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 1 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf_iterator.h" 1 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf_iterator.h" 3 # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/streambuf_iterator.h" 3 namespace std { template class istreambuf_iterator : public iterator { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename _Traits::int_type int_type; typedef basic_streambuf<_CharT, _Traits> streambuf_type; typedef basic_istream<_CharT, _Traits> istream_type; private: mutable streambuf_type* _M_sbuf; int_type _M_c; public: istreambuf_iterator() throw() : _M_sbuf(0), _M_c(traits_type::eof()) { } istreambuf_iterator(istream_type& __s) throw() : _M_sbuf(__s.rdbuf()), _M_c(traits_type::eof()) { } istreambuf_iterator(streambuf_type* __s) throw() : _M_sbuf(__s), _M_c(traits_type::eof()) { } char_type operator*() const { return traits_type::to_char_type(_M_get()); } istreambuf_iterator& operator++() { ; const int_type __eof = traits_type::eof(); if (_M_sbuf && traits_type::eq_int_type(_M_sbuf->sbumpc(), __eof)) _M_sbuf = 0; else _M_c = __eof; return *this; } istreambuf_iterator operator++(int) { ; const int_type __eof = traits_type::eof(); istreambuf_iterator __old = *this; if (_M_sbuf && traits_type::eq_int_type((__old._M_c = _M_sbuf->sbumpc()), __eof)) _M_sbuf = 0; else _M_c = __eof; return __old; } bool equal(const istreambuf_iterator& __b) const { const bool __thiseof = _M_at_eof(); const bool __beof = __b._M_at_eof(); return (__thiseof && __beof || (!__thiseof && !__beof)); } private: int_type _M_get() const { const int_type __eof = traits_type::eof(); int_type __ret = __eof; if (_M_sbuf) { if (!traits_type::eq_int_type(_M_c, __eof)) __ret = _M_c; else if (traits_type::eq_int_type((__ret = _M_sbuf->sgetc()), __eof)) _M_sbuf = 0; } return __ret; } bool _M_at_eof() const { const int_type __eof = traits_type::eof(); return traits_type::eq_int_type(_M_get(), __eof); } }; template inline bool operator==(const istreambuf_iterator<_CharT, _Traits>& __a, const istreambuf_iterator<_CharT, _Traits>& __b) { return __a.equal(__b); } template inline bool operator!=(const istreambuf_iterator<_CharT, _Traits>& __a, const istreambuf_iterator<_CharT, _Traits>& __b) { return !__a.equal(__b); } template class ostreambuf_iterator : public iterator { public: typedef _CharT char_type; typedef _Traits traits_type; typedef basic_streambuf<_CharT, _Traits> streambuf_type; typedef basic_ostream<_CharT, _Traits> ostream_type; private: streambuf_type* _M_sbuf; bool _M_failed; public: ostreambuf_iterator(ostream_type& __s) throw () : _M_sbuf(__s.rdbuf()), _M_failed(!_M_sbuf) { } ostreambuf_iterator(streambuf_type* __s) throw () : _M_sbuf(__s), _M_failed(!_M_sbuf) { } ostreambuf_iterator& operator=(_CharT __c) { if (!_M_failed && _Traits::eq_int_type(_M_sbuf->sputc(__c), _Traits::eof())) _M_failed = true; return *this; } ostreambuf_iterator& operator*() { return *this; } ostreambuf_iterator& operator++(int) { return *this; } ostreambuf_iterator& operator++() { return *this; } bool failed() const throw() { return _M_failed; } ostreambuf_iterator& _M_put(const _CharT* __ws, streamsize __len) { if (__builtin_expect(!_M_failed, true) && __builtin_expect(this->_M_sbuf->sputn(__ws, __len) != __len, false)) _M_failed = true; return *this; } }; } # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwctype" 1 3 # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwctype" 3 # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwctype" 3 # 1 "/usr/include/wctype.h" 1 3 4 # 35 "/usr/include/wctype.h" 3 4 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/stddef.h" 1 3 4 # 36 "/usr/include/wctype.h" 2 3 4 # 45 "/usr/include/wctype.h" 3 4 # 64 "/usr/include/wctype.h" 3 4 typedef unsigned long int wctype_t; # 86 "/usr/include/wctype.h" 3 4 enum { __ISwupper = 0, __ISwlower = 1, __ISwalpha = 2, __ISwdigit = 3, __ISwxdigit = 4, __ISwspace = 5, __ISwprint = 6, __ISwgraph = 7, __ISwblank = 8, __ISwcntrl = 9, __ISwpunct = 10, __ISwalnum = 11, _ISwupper = ((__ISwupper) < 8 ? (int) ((1UL << (__ISwupper)) << 24) : ((__ISwupper) < 16 ? (int) ((1UL << (__ISwupper)) << 8) : ((__ISwupper) < 24 ? (int) ((1UL << (__ISwupper)) >> 8) : (int) ((1UL << (__ISwupper)) >> 24)))), _ISwlower = ((__ISwlower) < 8 ? (int) ((1UL << (__ISwlower)) << 24) : ((__ISwlower) < 16 ? (int) ((1UL << (__ISwlower)) << 8) : ((__ISwlower) < 24 ? (int) ((1UL << (__ISwlower)) >> 8) : (int) ((1UL << (__ISwlower)) >> 24)))), _ISwalpha = ((__ISwalpha) < 8 ? (int) ((1UL << (__ISwalpha)) << 24) : ((__ISwalpha) < 16 ? (int) ((1UL << (__ISwalpha)) << 8) : ((__ISwalpha) < 24 ? (int) ((1UL << (__ISwalpha)) >> 8) : (int) ((1UL << (__ISwalpha)) >> 24)))), _ISwdigit = ((__ISwdigit) < 8 ? (int) ((1UL << (__ISwdigit)) << 24) : ((__ISwdigit) < 16 ? (int) ((1UL << (__ISwdigit)) << 8) : ((__ISwdigit) < 24 ? (int) ((1UL << (__ISwdigit)) >> 8) : (int) ((1UL << (__ISwdigit)) >> 24)))), _ISwxdigit = ((__ISwxdigit) < 8 ? (int) ((1UL << (__ISwxdigit)) << 24) : ((__ISwxdigit) < 16 ? (int) ((1UL << (__ISwxdigit)) << 8) : ((__ISwxdigit) < 24 ? (int) ((1UL << (__ISwxdigit)) >> 8) : (int) ((1UL << (__ISwxdigit)) >> 24)))), _ISwspace = ((__ISwspace) < 8 ? (int) ((1UL << (__ISwspace)) << 24) : ((__ISwspace) < 16 ? (int) ((1UL << (__ISwspace)) << 8) : ((__ISwspace) < 24 ? (int) ((1UL << (__ISwspace)) >> 8) : (int) ((1UL << (__ISwspace)) >> 24)))), _ISwprint = ((__ISwprint) < 8 ? (int) ((1UL << (__ISwprint)) << 24) : ((__ISwprint) < 16 ? (int) ((1UL << (__ISwprint)) << 8) : ((__ISwprint) < 24 ? (int) ((1UL << (__ISwprint)) >> 8) : (int) ((1UL << (__ISwprint)) >> 24)))), _ISwgraph = ((__ISwgraph) < 8 ? (int) ((1UL << (__ISwgraph)) << 24) : ((__ISwgraph) < 16 ? (int) ((1UL << (__ISwgraph)) << 8) : ((__ISwgraph) < 24 ? (int) ((1UL << (__ISwgraph)) >> 8) : (int) ((1UL << (__ISwgraph)) >> 24)))), _ISwblank = ((__ISwblank) < 8 ? (int) ((1UL << (__ISwblank)) << 24) : ((__ISwblank) < 16 ? (int) ((1UL << (__ISwblank)) << 8) : ((__ISwblank) < 24 ? (int) ((1UL << (__ISwblank)) >> 8) : (int) ((1UL << (__ISwblank)) >> 24)))), _ISwcntrl = ((__ISwcntrl) < 8 ? (int) ((1UL << (__ISwcntrl)) << 24) : ((__ISwcntrl) < 16 ? (int) ((1UL << (__ISwcntrl)) << 8) : ((__ISwcntrl) < 24 ? (int) ((1UL << (__ISwcntrl)) >> 8) : (int) ((1UL << (__ISwcntrl)) >> 24)))), _ISwpunct = ((__ISwpunct) < 8 ? (int) ((1UL << (__ISwpunct)) << 24) : ((__ISwpunct) < 16 ? (int) ((1UL << (__ISwpunct)) << 8) : ((__ISwpunct) < 24 ? (int) ((1UL << (__ISwpunct)) >> 8) : (int) ((1UL << (__ISwpunct)) >> 24)))), _ISwalnum = ((__ISwalnum) < 8 ? (int) ((1UL << (__ISwalnum)) << 24) : ((__ISwalnum) < 16 ? (int) ((1UL << (__ISwalnum)) << 8) : ((__ISwalnum) < 24 ? (int) ((1UL << (__ISwalnum)) >> 8) : (int) ((1UL << (__ISwalnum)) >> 24)))) }; extern "C" { # 126 "/usr/include/wctype.h" 3 4 extern int iswalnum (wint_t __wc) throw (); extern int iswalpha (wint_t __wc) throw (); extern int iswcntrl (wint_t __wc) throw (); extern int iswdigit (wint_t __wc) throw (); extern int iswgraph (wint_t __wc) throw (); extern int iswlower (wint_t __wc) throw (); extern int iswprint (wint_t __wc) throw (); extern int iswpunct (wint_t __wc) throw (); extern int iswspace (wint_t __wc) throw (); extern int iswupper (wint_t __wc) throw (); extern int iswxdigit (wint_t __wc) throw (); extern int iswblank (wint_t __wc) throw (); # 186 "/usr/include/wctype.h" 3 4 extern wctype_t wctype (__const char *__property) throw (); extern int iswctype (wint_t __wc, wctype_t __desc) throw (); # 201 "/usr/include/wctype.h" 3 4 typedef __const __int32_t *wctrans_t; extern wint_t towlower (wint_t __wc) throw (); extern wint_t towupper (wint_t __wc) throw (); } # 228 "/usr/include/wctype.h" 3 4 extern "C" { extern wctrans_t wctrans (__const char *__property) throw (); extern wint_t towctrans (wint_t __wc, wctrans_t __desc) throw (); # 245 "/usr/include/wctype.h" 3 4 extern int iswalnum_l (wint_t __wc, __locale_t __locale) throw (); extern int iswalpha_l (wint_t __wc, __locale_t __locale) throw (); extern int iswcntrl_l (wint_t __wc, __locale_t __locale) throw (); extern int iswdigit_l (wint_t __wc, __locale_t __locale) throw (); extern int iswgraph_l (wint_t __wc, __locale_t __locale) throw (); extern int iswlower_l (wint_t __wc, __locale_t __locale) throw (); extern int iswprint_l (wint_t __wc, __locale_t __locale) throw (); extern int iswpunct_l (wint_t __wc, __locale_t __locale) throw (); extern int iswspace_l (wint_t __wc, __locale_t __locale) throw (); extern int iswupper_l (wint_t __wc, __locale_t __locale) throw (); extern int iswxdigit_l (wint_t __wc, __locale_t __locale) throw (); extern int iswblank_l (wint_t __wc, __locale_t __locale) throw (); extern wctype_t wctype_l (__const char *__property, __locale_t __locale) throw (); extern int iswctype_l (wint_t __wc, wctype_t __desc, __locale_t __locale) throw (); extern wint_t towlower_l (wint_t __wc, __locale_t __locale) throw (); extern wint_t towupper_l (wint_t __wc, __locale_t __locale) throw (); extern wctrans_t wctrans_l (__const char *__property, __locale_t __locale) throw (); extern wint_t towctrans_l (wint_t __wc, wctrans_t __desc, __locale_t __locale) throw (); } # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwctype" 2 3 # 79 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/cwctype" 3 namespace std { using ::wint_t; using ::wctype_t; using ::wctrans_t; using ::iswalnum; using ::iswalpha; using ::iswblank; using ::iswcntrl; using ::iswdigit; using ::iswgraph; using ::iswlower; using ::iswprint; using ::iswprint; using ::iswpunct; using ::iswspace; using ::iswupper; using ::iswxdigit; using ::iswctype; using ::towlower; using ::towupper; using ::towctrans; using ::wctrans; using ::wctype; } # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 namespace std { # 63 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template void __convert_to_v(const char* __in, _Tv& __out, ios_base::iostate& __err, const __c_locale& __cloc); template<> void __convert_to_v(const char*, float&, ios_base::iostate&, const __c_locale&); template<> void __convert_to_v(const char*, double&, ios_base::iostate&, const __c_locale&); template<> void __convert_to_v(const char*, long double&, ios_base::iostate&, const __c_locale&); template struct __pad { static void _S_pad(ios_base& __io, _CharT __fill, _CharT* __news, const _CharT* __olds, const streamsize __newlen, const streamsize __oldlen, const bool __num); }; template _CharT* __add_grouping(_CharT* __s, _CharT __sep, const char* __gbeg, size_t __gsize, const _CharT* __first, const _CharT* __last); template inline ostreambuf_iterator<_CharT> __write(ostreambuf_iterator<_CharT> __s, const _CharT* __ws, int __len) { __s._M_put(__ws, __len); return __s; } template inline _OutIter __write(_OutIter __s, const _CharT* __ws, int __len) { for (int __j = 0; __j < __len; __j++, ++__s) *__s = __ws[__j]; return __s; } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/ctype_base.h" 1 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/ctype_base.h" 3 struct ctype_base { typedef const int* __to_type; typedef unsigned short mask; static const mask upper = _ISupper; static const mask lower = _ISlower; static const mask alpha = _ISalpha; static const mask digit = _ISdigit; static const mask xdigit = _ISxdigit; static const mask space = _ISspace; static const mask print = _ISprint; static const mask graph = _ISalpha | _ISdigit | _ISpunct; static const mask cntrl = _IScntrl; static const mask punct = _ISpunct; static const mask alnum = _ISalpha | _ISdigit; }; # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 # 144 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class __ctype_abstract_base : public locale::facet, public ctype_base { public: typedef _CharT char_type; # 162 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 bool is(mask __m, char_type __c) const { return this->do_is(__m, __c); } # 179 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* is(const char_type *__lo, const char_type *__hi, mask *__vec) const { return this->do_is(__lo, __hi, __vec); } # 195 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* scan_is(mask __m, const char_type* __lo, const char_type* __hi) const { return this->do_scan_is(__m, __lo, __hi); } # 211 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* scan_not(mask __m, const char_type* __lo, const char_type* __hi) const { return this->do_scan_not(__m, __lo, __hi); } # 225 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type toupper(char_type __c) const { return this->do_toupper(__c); } # 240 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* toupper(char_type *__lo, const char_type* __hi) const { return this->do_toupper(__lo, __hi); } # 254 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type tolower(char_type __c) const { return this->do_tolower(__c); } # 269 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* tolower(char_type* __lo, const char_type* __hi) const { return this->do_tolower(__lo, __hi); } # 286 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type widen(char __c) const { return this->do_widen(__c); } # 305 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char* widen(const char* __lo, const char* __hi, char_type* __to) const { return this->do_widen(__lo, __hi, __to); } # 324 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char narrow(char_type __c, char __dfault) const { return this->do_narrow(__c, __dfault); } # 346 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* narrow(const char_type* __lo, const char_type* __hi, char __dfault, char *__to) const { return this->do_narrow(__lo, __hi, __dfault, __to); } protected: explicit __ctype_abstract_base(size_t __refs = 0): facet(__refs) { } virtual ~__ctype_abstract_base() { } # 371 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual bool do_is(mask __m, char_type __c) const = 0; # 390 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_is(const char_type* __lo, const char_type* __hi, mask* __vec) const = 0; # 409 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_scan_is(mask __m, const char_type* __lo, const char_type* __hi) const = 0; # 428 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_scan_not(mask __m, const char_type* __lo, const char_type* __hi) const = 0; # 446 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_toupper(char_type) const = 0; # 463 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_toupper(char_type* __lo, const char_type* __hi) const = 0; # 479 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_tolower(char_type) const = 0; # 496 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_tolower(char_type* __lo, const char_type* __hi) const = 0; # 515 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_widen(char) const = 0; # 536 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char* do_widen(const char* __lo, const char* __hi, char_type* __dest) const = 0; # 558 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char do_narrow(char_type, char __dfault) const = 0; # 582 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_narrow(const char_type* __lo, const char_type* __hi, char __dfault, char* __dest) const = 0; }; # 605 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class ctype : public __ctype_abstract_base<_CharT> { public: typedef _CharT char_type; typedef typename __ctype_abstract_base<_CharT>::mask mask; static locale::id id; explicit ctype(size_t __refs = 0) : __ctype_abstract_base<_CharT>(__refs) { } protected: virtual ~ctype(); virtual bool do_is(mask __m, char_type __c) const; virtual const char_type* do_is(const char_type* __lo, const char_type* __hi, mask* __vec) const; virtual const char_type* do_scan_is(mask __m, const char_type* __lo, const char_type* __hi) const; virtual const char_type* do_scan_not(mask __m, const char_type* __lo, const char_type* __hi) const; virtual char_type do_toupper(char_type __c) const; virtual const char_type* do_toupper(char_type* __lo, const char_type* __hi) const; virtual char_type do_tolower(char_type __c) const; virtual const char_type* do_tolower(char_type* __lo, const char_type* __hi) const; virtual char_type do_widen(char __c) const; virtual const char* do_widen(const char* __lo, const char* __hi, char_type* __dest) const; virtual char do_narrow(char_type, char __dfault) const; virtual const char_type* do_narrow(const char_type* __lo, const char_type* __hi, char __dfault, char* __dest) const; }; template locale::id ctype<_CharT>::id; # 674 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template<> class ctype : public locale::facet, public ctype_base { public: typedef char char_type; protected: __c_locale _M_c_locale_ctype; bool _M_del; __to_type _M_toupper; __to_type _M_tolower; const mask* _M_table; mutable char _M_widen_ok; mutable char _M_widen[1 + static_cast(-1)]; mutable char _M_narrow[1 + static_cast(-1)]; mutable char _M_narrow_ok; public: static locale::id id; static const size_t table_size = 1 + static_cast(-1); # 711 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit ctype(const mask* __table = 0, bool __del = false, size_t __refs = 0); # 724 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit ctype(__c_locale __cloc, const mask* __table = 0, bool __del = false, size_t __refs = 0); # 737 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 inline bool is(mask __m, char __c) const; # 752 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 inline const char* is(const char* __lo, const char* __hi, mask* __vec) const; # 766 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 inline const char* scan_is(mask __m, const char* __lo, const char* __hi) const; # 780 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 inline const char* scan_not(mask __m, const char* __lo, const char* __hi) const; # 795 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type toupper(char_type __c) const { return this->do_toupper(__c); } # 812 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* toupper(char_type *__lo, const char_type* __hi) const { return this->do_toupper(__lo, __hi); } # 828 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type tolower(char_type __c) const { return this->do_tolower(__c); } # 845 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* tolower(char_type* __lo, const char_type* __hi) const { return this->do_tolower(__lo, __hi); } # 865 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type widen(char __c) const { if (_M_widen_ok) return _M_widen[static_cast(__c)]; this->_M_widen_init(); return this->do_widen(__c); } # 892 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char* widen(const char* __lo, const char* __hi, char_type* __to) const { if (_M_widen_ok == 1) { memcpy(__to, __lo, __hi - __lo); return __hi; } if (!_M_widen_ok) _M_widen_init(); return this->do_widen(__lo, __hi, __to); } # 923 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char narrow(char_type __c, char __dfault) const { if (_M_narrow[static_cast(__c)]) return _M_narrow[static_cast(__c)]; const char __t = do_narrow(__c, __dfault); if (__t != __dfault) _M_narrow[static_cast(__c)] = __t; return __t; } # 956 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 const char_type* narrow(const char_type* __lo, const char_type* __hi, char __dfault, char *__to) const { if (__builtin_expect(_M_narrow_ok == 1, true)) { memcpy(__to, __lo, __hi - __lo); return __hi; } if (!_M_narrow_ok) _M_narrow_init(); return this->do_narrow(__lo, __hi, __dfault, __to); } protected: const mask* table() const throw() { return _M_table; } static const mask* classic_table() throw(); virtual ~ctype(); # 1003 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_toupper(char_type) const; # 1020 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_toupper(char_type* __lo, const char_type* __hi) const; # 1036 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_tolower(char_type) const; # 1053 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_tolower(char_type* __lo, const char_type* __hi) const; # 1073 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_widen(char __c) const { return __c; } # 1096 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char* do_widen(const char* __lo, const char* __hi, char_type* __dest) const { memcpy(__dest, __lo, __hi - __lo); return __hi; } # 1122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char do_narrow(char_type __c, char) const { return __c; } # 1148 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_narrow(const char_type* __lo, const char_type* __hi, char, char* __dest) const { memcpy(__dest, __lo, __hi - __lo); return __hi; } private: void _M_widen_init() const { char __tmp[sizeof(_M_widen)]; for (size_t __i = 0; __i < sizeof(_M_widen); ++__i) __tmp[__i] = __i; do_widen(__tmp, __tmp + sizeof(__tmp), _M_widen); _M_widen_ok = 1; if (memcmp(__tmp, _M_widen, sizeof(_M_widen))) _M_widen_ok = 2; } void _M_narrow_init() const { char __tmp[sizeof(_M_narrow)]; for (size_t __i = 0; __i < sizeof(_M_narrow); ++__i) __tmp[__i] = __i; do_narrow(__tmp, __tmp + sizeof(__tmp), 0, _M_narrow); _M_narrow_ok = 1; if (memcmp(__tmp, _M_narrow, sizeof(_M_narrow))) _M_narrow_ok = 2; else { char __c; do_narrow(__tmp, __tmp + 1, 1, &__c); if (__c == 1) _M_narrow_ok = 2; } } }; template<> const ctype& use_facet >(const locale& __loc); # 1212 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template<> class ctype : public __ctype_abstract_base { public: typedef wchar_t char_type; typedef wctype_t __wmask_type; protected: __c_locale _M_c_locale_ctype; bool _M_narrow_ok; char _M_narrow[128]; wint_t _M_widen[1 + static_cast(-1)]; mask _M_bit[16]; __wmask_type _M_wmask[16]; public: static locale::id id; # 1245 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit ctype(size_t __refs = 0); # 1256 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit ctype(__c_locale __cloc, size_t __refs = 0); protected: __wmask_type _M_convert_to_wmask(const mask __m) const; virtual ~ctype(); # 1280 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual bool do_is(mask __m, char_type __c) const; # 1299 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_is(const char_type* __lo, const char_type* __hi, mask* __vec) const; # 1317 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_scan_is(mask __m, const char_type* __lo, const char_type* __hi) const; # 1335 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_scan_not(mask __m, const char_type* __lo, const char_type* __hi) const; # 1352 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_toupper(char_type) const; # 1369 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_toupper(char_type* __lo, const char_type* __hi) const; # 1385 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_tolower(char_type) const; # 1402 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_tolower(char_type* __lo, const char_type* __hi) const; # 1422 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_widen(char) const; # 1444 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char* do_widen(const char* __lo, const char* __hi, char_type* __dest) const; # 1467 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char do_narrow(char_type, char __dfault) const; # 1493 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual const char_type* do_narrow(const char_type* __lo, const char_type* __hi, char __dfault, char* __dest) const; void _M_initialize_ctype(); }; template<> const ctype& use_facet >(const locale& __loc); # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/ctype_inline.h" 1 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/ctype_inline.h" 3 bool ctype:: is(mask __m, char __c) const { return _M_table[static_cast(__c)] & __m; } const char* ctype:: is(const char* __low, const char* __high, mask* __vec) const { while (__low < __high) *__vec++ = _M_table[static_cast(*__low++)]; return __high; } const char* ctype:: scan_is(mask __m, const char* __low, const char* __high) const { while (__low < __high && !(_M_table[static_cast(*__low)] & __m)) ++__low; return __low; } const char* ctype:: scan_not(mask __m, const char* __low, const char* __high) const { while (__low < __high && (_M_table[static_cast(*__low)] & __m) != 0) ++__low; return __low; } # 1509 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 template class ctype_byname : public ctype<_CharT> { public: typedef _CharT char_type; explicit ctype_byname(const char* __s, size_t __refs = 0); protected: virtual ~ctype_byname() { }; }; template<> ctype_byname::ctype_byname(const char*, size_t refs); template<> ctype_byname::ctype_byname(const char*, size_t refs); # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 1 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 class codecvt_base { public: enum result { ok, partial, error, noconv }; }; # 73 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 template class __codecvt_abstract_base : public locale::facet, public codecvt_base { public: typedef codecvt_base::result result; typedef _InternT intern_type; typedef _ExternT extern_type; typedef _StateT state_type; # 120 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 result out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const { return this->do_out(__state, __from, __from_end, __from_next, __to, __to_end, __to_next); } # 159 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 result unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const { return this->do_unshift(__state, __to,__to_end,__to_next); } # 199 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 result in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const { return this->do_in(__state, __from, __from_end, __from_next, __to, __to_end, __to_next); } int encoding() const throw() { return this->do_encoding(); } bool always_noconv() const throw() { return this->do_always_noconv(); } int length(state_type& __state, const extern_type* __from, const extern_type* __end, size_t __max) const { return this->do_length(__state, __from, __end, __max); } int max_length() const throw() { return this->do_max_length(); } protected: explicit __codecvt_abstract_base(size_t __refs = 0) : locale::facet(__refs) { } virtual ~__codecvt_abstract_base() { } # 240 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 3 virtual result do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const = 0; virtual result do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const = 0; virtual result do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const = 0; virtual int do_encoding() const throw() = 0; virtual bool do_always_noconv() const throw() = 0; virtual int do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const = 0; virtual int do_max_length() const throw() = 0; }; template class codecvt : public __codecvt_abstract_base<_InternT, _ExternT, _StateT> { public: typedef codecvt_base::result result; typedef _InternT intern_type; typedef _ExternT extern_type; typedef _StateT state_type; protected: __c_locale _M_c_locale_codecvt; public: static locale::id id; explicit codecvt(size_t __refs = 0) : __codecvt_abstract_base<_InternT, _ExternT, _StateT> (__refs) { } explicit codecvt(__c_locale __cloc, size_t __refs = 0); protected: virtual ~codecvt() { } virtual result do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const; virtual int do_encoding() const throw(); virtual bool do_always_noconv() const throw(); virtual int do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const; virtual int do_max_length() const throw(); }; template locale::id codecvt<_InternT, _ExternT, _StateT>::id; template<> class codecvt : public __codecvt_abstract_base { public: typedef char intern_type; typedef char extern_type; typedef mbstate_t state_type; protected: __c_locale _M_c_locale_codecvt; public: static locale::id id; explicit codecvt(size_t __refs = 0); explicit codecvt(__c_locale __cloc, size_t __refs = 0); protected: virtual ~codecvt(); virtual result do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const; virtual int do_encoding() const throw(); virtual bool do_always_noconv() const throw(); virtual int do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const; virtual int do_max_length() const throw(); }; template<> class codecvt : public __codecvt_abstract_base { public: typedef wchar_t intern_type; typedef char extern_type; typedef mbstate_t state_type; protected: __c_locale _M_c_locale_codecvt; public: static locale::id id; explicit codecvt(size_t __refs = 0); explicit codecvt(__c_locale __cloc, size_t __refs = 0); protected: virtual ~codecvt(); virtual result do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const; virtual int do_encoding() const throw(); virtual bool do_always_noconv() const throw(); virtual int do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const; virtual int do_max_length() const throw(); }; template class codecvt_byname : public codecvt<_InternT, _ExternT, _StateT> { public: explicit codecvt_byname(const char* __s, size_t __refs = 0) : codecvt<_InternT, _ExternT, _StateT>(__refs) { if (std::strcmp(__s, "C") != 0 && std::strcmp(__s, "POSIX") != 0) { this->_S_destroy_c_locale(this->_M_c_locale_codecvt); this->_S_create_c_locale(this->_M_c_locale_codecvt, __s); } } protected: virtual ~codecvt_byname() { } }; # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/codecvt_specializations.h" 1 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/codecvt_specializations.h" 3 class __enc_traits { public: typedef iconv_t __desc_type; protected: static const int _S_max_size = 32; char _M_int_enc[_S_max_size]; char _M_ext_enc[_S_max_size]; __desc_type _M_in_desc; __desc_type _M_out_desc; int _M_ext_bom; int _M_int_bom; public: explicit __enc_traits() : _M_in_desc(0), _M_out_desc(0), _M_ext_bom(0), _M_int_bom(0) { memset(_M_int_enc, 0, _S_max_size); memset(_M_ext_enc, 0, _S_max_size); } explicit __enc_traits(const char* __int, const char* __ext, int __ibom = 0, int __ebom = 0) : _M_in_desc(0), _M_out_desc(0), _M_ext_bom(__ebom), _M_int_bom(__ibom) { strncpy(_M_int_enc, __int, _S_max_size); strncpy(_M_ext_enc, __ext, _S_max_size); _M_init(); } # 99 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/codecvt_specializations.h" 3 __enc_traits(const __enc_traits& __obj): _M_in_desc(0), _M_out_desc(0) { strncpy(_M_int_enc, __obj._M_int_enc, _S_max_size); strncpy(_M_ext_enc, __obj._M_ext_enc, _S_max_size); _M_ext_bom = __obj._M_ext_bom; _M_int_bom = __obj._M_int_bom; _M_destroy(); _M_init(); } __enc_traits& operator=(const __enc_traits& __obj) { strncpy(_M_int_enc, __obj._M_int_enc, _S_max_size); strncpy(_M_ext_enc, __obj._M_ext_enc, _S_max_size); _M_ext_bom = __obj._M_ext_bom; _M_int_bom = __obj._M_int_bom; _M_destroy(); _M_init(); return *this; } ~__enc_traits() { _M_destroy(); } void _M_init() { const __desc_type __err = reinterpret_cast(-1); if (!_M_in_desc) { _M_in_desc = iconv_open(_M_int_enc, _M_ext_enc); if (_M_in_desc == __err) __throw_runtime_error(("__enc_traits::_M_init " "creating iconv input descriptor failed")); } if (!_M_out_desc) { _M_out_desc = iconv_open(_M_ext_enc, _M_int_enc); if (_M_out_desc == __err) __throw_runtime_error(("__enc_traits::_M_init " "creating iconv output descriptor failed")); } } void _M_destroy() { const __desc_type __err = reinterpret_cast(-1); if (_M_in_desc && _M_in_desc != __err) { iconv_close(_M_in_desc); _M_in_desc = 0; } if (_M_out_desc && _M_out_desc != __err) { iconv_close(_M_out_desc); _M_out_desc = 0; } } bool _M_good() { const __desc_type __err = reinterpret_cast(-1); bool __test = _M_in_desc && _M_in_desc != __err; __test &= _M_out_desc && _M_out_desc != __err; return __test; } const __desc_type* _M_get_in_descriptor() { return &_M_in_desc; } const __desc_type* _M_get_out_descriptor() { return &_M_out_desc; } int _M_get_external_bom() { return _M_ext_bom; } int _M_get_internal_bom() { return _M_int_bom; } const char* _M_get_internal_enc() { return _M_int_enc; } const char* _M_get_external_enc() { return _M_ext_enc; } }; template class codecvt<_InternT, _ExternT, __enc_traits> : public __codecvt_abstract_base<_InternT, _ExternT, __enc_traits> { public: typedef codecvt_base::result result; typedef _InternT intern_type; typedef _ExternT extern_type; typedef __enc_traits state_type; typedef __enc_traits::__desc_type __desc_type; typedef __enc_traits __enc_type; static locale::id id; explicit codecvt(size_t __refs = 0) : __codecvt_abstract_base(__refs) { } explicit codecvt(__enc_type* __enc, size_t __refs = 0) : __codecvt_abstract_base(__refs) { } protected: virtual ~codecvt() { } virtual result do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const; virtual result do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const; virtual int do_encoding() const throw(); virtual bool do_always_noconv() const throw(); virtual int do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const; virtual int do_max_length() const throw(); }; template locale::id codecvt<_InternT, _ExternT, __enc_traits>::id; template inline size_t __iconv_adaptor(size_t(*__func)(iconv_t, _T, size_t*, char**, size_t*), iconv_t __cd, char** __inbuf, size_t* __inbytes, char** __outbuf, size_t* __outbytes) { return __func(__cd, (_T)__inbuf, __inbytes, __outbuf, __outbytes); } template codecvt_base::result codecvt<_InternT, _ExternT, __enc_traits>:: do_out(state_type& __state, const intern_type* __from, const intern_type* __from_end, const intern_type*& __from_next, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const { result __ret = codecvt_base::error; if (__state._M_good()) { const __desc_type* __desc = __state._M_get_out_descriptor(); const size_t __fmultiple = sizeof(intern_type); size_t __fbytes = __fmultiple * (__from_end - __from); const size_t __tmultiple = sizeof(extern_type); size_t __tbytes = __tmultiple * (__to_end - __to); char* __cto = reinterpret_cast(__to); char* __cfrom; size_t __conv; int __int_bom = __state._M_get_internal_bom(); if (__int_bom) { size_t __size = __from_end - __from; intern_type* __cfixed = static_cast (__builtin_alloca(sizeof(intern_type) * (__size + 1))); __cfixed[0] = static_cast(__int_bom); char_traits::copy(__cfixed + 1, __from, __size); __cfrom = reinterpret_cast(__cfixed); __conv = __iconv_adaptor(iconv, *__desc, &__cfrom, &__fbytes, &__cto, &__tbytes); } else { intern_type* __cfixed = const_cast(__from); __cfrom = reinterpret_cast(__cfixed); __conv = __iconv_adaptor(iconv, *__desc, &__cfrom, &__fbytes, &__cto, &__tbytes); } if (__conv != size_t(-1)) { __from_next = reinterpret_cast(__cfrom); __to_next = reinterpret_cast(__cto); __ret = codecvt_base::ok; } else { if (__fbytes < __fmultiple * (__from_end - __from)) { __from_next = reinterpret_cast(__cfrom); __to_next = reinterpret_cast(__cto); __ret = codecvt_base::partial; } else __ret = codecvt_base::error; } } return __ret; } template codecvt_base::result codecvt<_InternT, _ExternT, __enc_traits>:: do_unshift(state_type& __state, extern_type* __to, extern_type* __to_end, extern_type*& __to_next) const { result __ret = codecvt_base::error; if (__state._M_good()) { const __desc_type* __desc = __state._M_get_in_descriptor(); const size_t __tmultiple = sizeof(intern_type); size_t __tlen = __tmultiple * (__to_end - __to); char* __cto = reinterpret_cast(__to); size_t __conv = __iconv_adaptor(iconv,*__desc, __null, __null, &__cto, &__tlen); if (__conv != size_t(-1)) { __to_next = reinterpret_cast(__cto); if (__tlen == __tmultiple * (__to_end - __to)) __ret = codecvt_base::noconv; else if (__tlen == 0) __ret = codecvt_base::ok; else __ret = codecvt_base::partial; } else __ret = codecvt_base::error; } return __ret; } template codecvt_base::result codecvt<_InternT, _ExternT, __enc_traits>:: do_in(state_type& __state, const extern_type* __from, const extern_type* __from_end, const extern_type*& __from_next, intern_type* __to, intern_type* __to_end, intern_type*& __to_next) const { result __ret = codecvt_base::error; if (__state._M_good()) { const __desc_type* __desc = __state._M_get_in_descriptor(); const size_t __fmultiple = sizeof(extern_type); size_t __flen = __fmultiple * (__from_end - __from); const size_t __tmultiple = sizeof(intern_type); size_t __tlen = __tmultiple * (__to_end - __to); char* __cto = reinterpret_cast(__to); char* __cfrom; size_t __conv; int __ext_bom = __state._M_get_external_bom(); if (__ext_bom) { size_t __size = __from_end - __from; extern_type* __cfixed = static_cast (__builtin_alloca(sizeof(extern_type) * (__size + 1))); __cfixed[0] = static_cast(__ext_bom); char_traits::copy(__cfixed + 1, __from, __size); __cfrom = reinterpret_cast(__cfixed); __conv = __iconv_adaptor(iconv, *__desc, &__cfrom, &__flen, &__cto, &__tlen); } else { extern_type* __cfixed = const_cast(__from); __cfrom = reinterpret_cast(__cfixed); __conv = __iconv_adaptor(iconv, *__desc, &__cfrom, &__flen, &__cto, &__tlen); } if (__conv != size_t(-1)) { __from_next = reinterpret_cast(__cfrom); __to_next = reinterpret_cast(__cto); __ret = codecvt_base::ok; } else { if (__flen < static_cast(__from_end - __from)) { __from_next = reinterpret_cast(__cfrom); __to_next = reinterpret_cast(__cto); __ret = codecvt_base::partial; } else __ret = codecvt_base::error; } } return __ret; } template int codecvt<_InternT, _ExternT, __enc_traits>:: do_encoding() const throw() { int __ret = 0; if (sizeof(_ExternT) <= sizeof(_InternT)) __ret = sizeof(_InternT)/sizeof(_ExternT); return __ret; } template bool codecvt<_InternT, _ExternT, __enc_traits>:: do_always_noconv() const throw() { return false; } template int codecvt<_InternT, _ExternT, __enc_traits>:: do_length(state_type&, const extern_type* __from, const extern_type* __end, size_t __max) const { return std::min(__max, static_cast(__end - __from)); } template int codecvt<_InternT, _ExternT, __enc_traits>:: do_max_length() const throw() { return 1; } # 476 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/codecvt.h" 2 3 # 1534 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 class __num_base { public: enum { _S_ominus, _S_oplus, _S_ox, _S_oX, _S_odigits, _S_odigits_end = _S_odigits + 16, _S_oudigits = _S_odigits_end, _S_oudigits_end = _S_oudigits + 16, _S_oe = _S_odigits + 14, _S_oE = _S_oudigits + 14, _S_oend = _S_oudigits_end }; static const char* _S_atoms_out; static const char* _S_atoms_in; enum { _S_iminus, _S_iplus, _S_ix, _S_iX, _S_izero, _S_ie = _S_izero + 14, _S_iE = _S_izero + 20, _S_iend = 26 }; static void _S_format_float(const ios_base& __io, char* __fptr, char __mod); }; template struct __numpunct_cache : public locale::facet { const char* _M_grouping; size_t _M_grouping_size; bool _M_use_grouping; const _CharT* _M_truename; size_t _M_truename_size; const _CharT* _M_falsename; size_t _M_falsename_size; _CharT _M_decimal_point; _CharT _M_thousands_sep; _CharT _M_atoms_out[__num_base::_S_oend]; _CharT _M_atoms_in[__num_base::_S_iend]; bool _M_allocated; __numpunct_cache(size_t __refs = 0) : facet(__refs), _M_grouping(__null), _M_grouping_size(0), _M_use_grouping(false), _M_truename(__null), _M_truename_size(0), _M_falsename(__null), _M_falsename_size(0), _M_decimal_point(_CharT()), _M_thousands_sep(_CharT()), _M_allocated(false) { } ~__numpunct_cache(); void _M_cache(const locale& __loc); private: __numpunct_cache& operator=(const __numpunct_cache&); explicit __numpunct_cache(const __numpunct_cache&); }; template __numpunct_cache<_CharT>::~__numpunct_cache() { if (_M_allocated) { delete [] _M_grouping; delete [] _M_truename; delete [] _M_falsename; } } # 1656 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class numpunct : public locale::facet { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; typedef __numpunct_cache<_CharT> __cache_type; protected: __cache_type* _M_data; public: static locale::id id; explicit numpunct(size_t __refs = 0) : facet(__refs), _M_data(__null) { _M_initialize_numpunct(); } # 1693 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit numpunct(__cache_type* __cache, size_t __refs = 0) : facet(__refs), _M_data(__cache) { _M_initialize_numpunct(); } # 1707 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit numpunct(__c_locale __cloc, size_t __refs = 0) : facet(__refs), _M_data(__null) { _M_initialize_numpunct(__cloc); } # 1721 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type decimal_point() const { return this->do_decimal_point(); } # 1734 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type thousands_sep() const { return this->do_thousands_sep(); } # 1765 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string grouping() const { return this->do_grouping(); } # 1778 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type truename() const { return this->do_truename(); } # 1791 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type falsename() const { return this->do_falsename(); } protected: virtual ~numpunct(); # 1808 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_decimal_point() const { return _M_data->_M_decimal_point; } # 1820 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_thousands_sep() const { return _M_data->_M_thousands_sep; } # 1833 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string do_grouping() const { return _M_data->_M_grouping; } # 1846 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_truename() const { return _M_data->_M_truename; } # 1859 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_falsename() const { return _M_data->_M_falsename; } void _M_initialize_numpunct(__c_locale __cloc = __null); }; template locale::id numpunct<_CharT>::id; template<> numpunct::~numpunct(); template<> void numpunct::_M_initialize_numpunct(__c_locale __cloc); template<> numpunct::~numpunct(); template<> void numpunct::_M_initialize_numpunct(__c_locale __cloc); template class numpunct_byname : public numpunct<_CharT> { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; explicit numpunct_byname(const char* __s, size_t __refs = 0) : numpunct<_CharT>(__refs) { if (std::strcmp(__s, "C") != 0 && std::strcmp(__s, "POSIX") != 0) { __c_locale __tmp; this->_S_create_c_locale(__tmp, __s); this->_M_initialize_numpunct(__tmp); this->_S_destroy_c_locale(__tmp); } } protected: virtual ~numpunct_byname() { } }; # 1924 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class num_get : public locale::facet { public: typedef _CharT char_type; typedef _InIter iter_type; static locale::id id; # 1945 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit num_get(size_t __refs = 0) : facet(__refs) { } # 1971 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, bool& __v) const { return this->do_get(__in, __end, __io, __err, __v); } # 2007 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, long& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned short& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned int& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned long& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, long long& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned long long& __v) const { return this->do_get(__in, __end, __io, __err, __v); } # 2066 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, float& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, double& __v) const { return this->do_get(__in, __end, __io, __err, __v); } iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, long double& __v) const { return this->do_get(__in, __end, __io, __err, __v); } # 2108 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __in, iter_type __end, ios_base& __io, ios_base::iostate& __err, void*& __v) const { return this->do_get(__in, __end, __io, __err, __v); } protected: virtual ~num_get() { } iter_type _M_extract_float(iter_type, iter_type, ios_base&, ios_base::iostate&, string& __xtrc) const; template iter_type _M_extract_int(iter_type, iter_type, ios_base&, ios_base::iostate&, _ValueT& __v) const; # 2141 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate&, bool&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate&, long&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, unsigned short&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, unsigned int&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, unsigned long&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, long long&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, unsigned long long&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, float&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, double&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, long double&) const; virtual iter_type do_get(iter_type, iter_type, ios_base&, ios_base::iostate& __err, void*&) const; }; template locale::id num_get<_CharT, _InIter>::id; # 2203 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class num_put : public locale::facet { public: typedef _CharT char_type; typedef _OutIter iter_type; static locale::id id; # 2224 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit num_put(size_t __refs = 0) : facet(__refs) { } # 2242 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __f, char_type __fill, bool __v) const { return this->do_put(__s, __f, __fill, __v); } # 2284 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __f, char_type __fill, long __v) const { return this->do_put(__s, __f, __fill, __v); } iter_type put(iter_type __s, ios_base& __f, char_type __fill, unsigned long __v) const { return this->do_put(__s, __f, __fill, __v); } iter_type put(iter_type __s, ios_base& __f, char_type __fill, long long __v) const { return this->do_put(__s, __f, __fill, __v); } iter_type put(iter_type __s, ios_base& __f, char_type __fill, unsigned long long __v) const { return this->do_put(__s, __f, __fill, __v); } # 2347 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __f, char_type __fill, double __v) const { return this->do_put(__s, __f, __fill, __v); } iter_type put(iter_type __s, ios_base& __f, char_type __fill, long double __v) const { return this->do_put(__s, __f, __fill, __v); } # 2372 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __f, char_type __fill, const void* __v) const { return this->do_put(__s, __f, __fill, __v); } protected: template iter_type _M_insert_float(iter_type, ios_base& __io, char_type __fill, char __mod, _ValueT __v) const; void _M_group_float(const char* __grouping, size_t __grouping_size, char_type __sep, const char_type* __p, char_type* __new, char_type* __cs, int& __len) const; template iter_type _M_insert_int(iter_type, ios_base& __io, char_type __fill, _ValueT __v) const; void _M_group_int(const char* __grouping, size_t __grouping_size, char_type __sep, ios_base& __io, char_type* __new, char_type* __cs, int& __len) const; void _M_pad(char_type __fill, streamsize __w, ios_base& __io, char_type* __new, const char_type* __cs, int& __len) const; virtual ~num_put() { }; # 2420 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_put(iter_type, ios_base&, char_type __fill, bool __v) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, long __v) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, unsigned long) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, long long __v) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, unsigned long long) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, double __v) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, long double __v) const; virtual iter_type do_put(iter_type, ios_base&, char_type __fill, const void* __v) const; }; template locale::id num_put<_CharT, _OutIter>::id; # 2464 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class collate : public locale::facet { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; protected: __c_locale _M_c_locale_collate; public: static locale::id id; # 2491 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit collate(size_t __refs = 0) : facet(__refs), _M_c_locale_collate(_S_get_c_locale()) { } # 2505 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit collate(__c_locale __cloc, size_t __refs = 0) : facet(__refs), _M_c_locale_collate(_S_clone_c_locale(__cloc)) { } # 2522 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 int compare(const _CharT* __lo1, const _CharT* __hi1, const _CharT* __lo2, const _CharT* __hi2) const { return this->do_compare(__lo1, __hi1, __lo2, __hi2); } # 2541 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type transform(const _CharT* __lo, const _CharT* __hi) const { return this->do_transform(__lo, __hi); } # 2555 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 long hash(const _CharT* __lo, const _CharT* __hi) const { return this->do_hash(__lo, __hi); } int _M_compare(const _CharT*, const _CharT*) const; size_t _M_transform(_CharT*, const _CharT*, size_t) const; protected: virtual ~collate() { _S_destroy_c_locale(_M_c_locale_collate); } # 2584 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual int do_compare(const _CharT* __lo1, const _CharT* __hi1, const _CharT* __lo2, const _CharT* __hi2) const; # 2600 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_transform(const _CharT* __lo, const _CharT* __hi) const; # 2613 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual long do_hash(const _CharT* __lo, const _CharT* __hi) const; }; template locale::id collate<_CharT>::id; template<> int collate::_M_compare(const char*, const char*) const; template<> size_t collate::_M_transform(char*, const char*, size_t) const; template<> int collate::_M_compare(const wchar_t*, const wchar_t*) const; template<> size_t collate::_M_transform(wchar_t*, const wchar_t*, size_t) const; template class collate_byname : public collate<_CharT> { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; explicit collate_byname(const char* __s, size_t __refs = 0) : collate<_CharT>(__refs) { if (std::strcmp(__s, "C") != 0 && std::strcmp(__s, "POSIX") != 0) { this->_S_destroy_c_locale(this->_M_c_locale_collate); this->_S_create_c_locale(this->_M_c_locale_collate, __s); } } protected: virtual ~collate_byname() { } }; # 2672 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 class time_base { public: enum dateorder { no_order, dmy, mdy, ymd, ydm }; }; template struct __timepunct_cache : public locale::facet { static const _CharT* _S_timezones[14]; const _CharT* _M_date_format; const _CharT* _M_date_era_format; const _CharT* _M_time_format; const _CharT* _M_time_era_format; const _CharT* _M_date_time_format; const _CharT* _M_date_time_era_format; const _CharT* _M_am; const _CharT* _M_pm; const _CharT* _M_am_pm_format; const _CharT* _M_day1; const _CharT* _M_day2; const _CharT* _M_day3; const _CharT* _M_day4; const _CharT* _M_day5; const _CharT* _M_day6; const _CharT* _M_day7; const _CharT* _M_aday1; const _CharT* _M_aday2; const _CharT* _M_aday3; const _CharT* _M_aday4; const _CharT* _M_aday5; const _CharT* _M_aday6; const _CharT* _M_aday7; const _CharT* _M_month01; const _CharT* _M_month02; const _CharT* _M_month03; const _CharT* _M_month04; const _CharT* _M_month05; const _CharT* _M_month06; const _CharT* _M_month07; const _CharT* _M_month08; const _CharT* _M_month09; const _CharT* _M_month10; const _CharT* _M_month11; const _CharT* _M_month12; const _CharT* _M_amonth01; const _CharT* _M_amonth02; const _CharT* _M_amonth03; const _CharT* _M_amonth04; const _CharT* _M_amonth05; const _CharT* _M_amonth06; const _CharT* _M_amonth07; const _CharT* _M_amonth08; const _CharT* _M_amonth09; const _CharT* _M_amonth10; const _CharT* _M_amonth11; const _CharT* _M_amonth12; bool _M_allocated; __timepunct_cache(size_t __refs = 0) : facet(__refs), _M_date_format(__null), _M_date_era_format(__null), _M_time_format(__null), _M_time_era_format(__null), _M_date_time_format(__null), _M_date_time_era_format(__null), _M_am(__null), _M_pm(__null), _M_am_pm_format(__null), _M_day1(__null), _M_day2(__null), _M_day3(__null), _M_day4(__null), _M_day5(__null), _M_day6(__null), _M_day7(__null), _M_aday1(__null), _M_aday2(__null), _M_aday3(__null), _M_aday4(__null), _M_aday5(__null), _M_aday6(__null), _M_aday7(__null), _M_month01(__null), _M_month02(__null), _M_month03(__null), _M_month04(__null), _M_month05(__null), _M_month06(__null), _M_month07(__null), _M_month08(__null), _M_month09(__null), _M_month10(__null), _M_month11(__null), _M_month12(__null), _M_amonth01(__null), _M_amonth02(__null), _M_amonth03(__null), _M_amonth04(__null), _M_amonth05(__null), _M_amonth06(__null), _M_amonth07(__null), _M_amonth08(__null), _M_amonth09(__null), _M_amonth10(__null), _M_amonth11(__null), _M_amonth12(__null), _M_allocated(false) { } ~__timepunct_cache(); void _M_cache(const locale& __loc); private: __timepunct_cache& operator=(const __timepunct_cache&); explicit __timepunct_cache(const __timepunct_cache&); }; template __timepunct_cache<_CharT>::~__timepunct_cache() { if (_M_allocated) { } } template<> const char* __timepunct_cache::_S_timezones[14]; template<> const wchar_t* __timepunct_cache::_S_timezones[14]; template const _CharT* __timepunct_cache<_CharT>::_S_timezones[14]; template class __timepunct : public locale::facet { public: typedef _CharT __char_type; typedef basic_string<_CharT> __string_type; typedef __timepunct_cache<_CharT> __cache_type; protected: __cache_type* _M_data; __c_locale _M_c_locale_timepunct; const char* _M_name_timepunct; public: static locale::id id; explicit __timepunct(size_t __refs = 0); explicit __timepunct(__cache_type* __cache, size_t __refs = 0); # 2830 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit __timepunct(__c_locale __cloc, const char* __s, size_t __refs = 0); void _M_put(_CharT* __s, size_t __maxlen, const _CharT* __format, const tm* __tm) const; void _M_date_formats(const _CharT** __date) const { __date[0] = _M_data->_M_date_format; __date[1] = _M_data->_M_date_era_format; } void _M_time_formats(const _CharT** __time) const { __time[0] = _M_data->_M_time_format; __time[1] = _M_data->_M_time_era_format; } void _M_date_time_formats(const _CharT** __dt) const { __dt[0] = _M_data->_M_date_time_format; __dt[1] = _M_data->_M_date_time_era_format; } void _M_am_pm_format(const _CharT* __ampm) const { __ampm = _M_data->_M_am_pm_format; } void _M_am_pm(const _CharT** __ampm) const { __ampm[0] = _M_data->_M_am; __ampm[1] = _M_data->_M_pm; } void _M_days(const _CharT** __days) const { __days[0] = _M_data->_M_day1; __days[1] = _M_data->_M_day2; __days[2] = _M_data->_M_day3; __days[3] = _M_data->_M_day4; __days[4] = _M_data->_M_day5; __days[5] = _M_data->_M_day6; __days[6] = _M_data->_M_day7; } void _M_days_abbreviated(const _CharT** __days) const { __days[0] = _M_data->_M_aday1; __days[1] = _M_data->_M_aday2; __days[2] = _M_data->_M_aday3; __days[3] = _M_data->_M_aday4; __days[4] = _M_data->_M_aday5; __days[5] = _M_data->_M_aday6; __days[6] = _M_data->_M_aday7; } void _M_months(const _CharT** __months) const { __months[0] = _M_data->_M_month01; __months[1] = _M_data->_M_month02; __months[2] = _M_data->_M_month03; __months[3] = _M_data->_M_month04; __months[4] = _M_data->_M_month05; __months[5] = _M_data->_M_month06; __months[6] = _M_data->_M_month07; __months[7] = _M_data->_M_month08; __months[8] = _M_data->_M_month09; __months[9] = _M_data->_M_month10; __months[10] = _M_data->_M_month11; __months[11] = _M_data->_M_month12; } void _M_months_abbreviated(const _CharT** __months) const { __months[0] = _M_data->_M_amonth01; __months[1] = _M_data->_M_amonth02; __months[2] = _M_data->_M_amonth03; __months[3] = _M_data->_M_amonth04; __months[4] = _M_data->_M_amonth05; __months[5] = _M_data->_M_amonth06; __months[6] = _M_data->_M_amonth07; __months[7] = _M_data->_M_amonth08; __months[8] = _M_data->_M_amonth09; __months[9] = _M_data->_M_amonth10; __months[10] = _M_data->_M_amonth11; __months[11] = _M_data->_M_amonth12; } protected: virtual ~__timepunct(); void _M_initialize_timepunct(__c_locale __cloc = __null); }; template locale::id __timepunct<_CharT>::id; template<> void __timepunct::_M_initialize_timepunct(__c_locale __cloc); template<> void __timepunct::_M_put(char*, size_t, const char*, const tm*) const; template<> void __timepunct::_M_initialize_timepunct(__c_locale __cloc); template<> void __timepunct::_M_put(wchar_t*, size_t, const wchar_t*, const tm*) const; # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/time_members.h" 1 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/time_members.h" 3 template __timepunct<_CharT>::__timepunct(size_t __refs) : facet(__refs), _M_data(__null), _M_c_locale_timepunct(__null), _M_name_timepunct(_S_get_c_name()) { _M_initialize_timepunct(); } template __timepunct<_CharT>::__timepunct(__cache_type* __cache, size_t __refs) : facet(__refs), _M_data(__cache), _M_c_locale_timepunct(__null), _M_name_timepunct(_S_get_c_name()) { _M_initialize_timepunct(); } template __timepunct<_CharT>::__timepunct(__c_locale __cloc, const char* __s, size_t __refs) : facet(__refs), _M_data(__null), _M_c_locale_timepunct(__null), _M_name_timepunct(__s) { char* __tmp = new char[std::strlen(__s) + 1]; std::strcpy(__tmp, __s); _M_name_timepunct = __tmp; _M_initialize_timepunct(__cloc); } template __timepunct<_CharT>::~__timepunct() { if (_M_name_timepunct != _S_get_c_name()) delete [] _M_name_timepunct; delete _M_data; _S_destroy_c_locale(_M_c_locale_timepunct); } # 2964 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 # 2977 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class time_get : public locale::facet, public time_base { public: typedef _CharT char_type; typedef _InIter iter_type; typedef basic_string<_CharT> __string_type; static locale::id id; # 2999 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit time_get(size_t __refs = 0) : facet (__refs) { } # 3016 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 dateorder date_order() const { return this->do_date_order(); } # 3040 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get_time(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { return this->do_get_time(__beg, __end, __io, __err, __tm); } # 3065 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get_date(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { return this->do_get_date(__beg, __end, __io, __err, __tm); } # 3093 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get_weekday(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { return this->do_get_weekday(__beg, __end, __io, __err, __tm); } # 3122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get_monthname(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { return this->do_get_monthname(__beg, __end, __io, __err, __tm); } # 3148 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get_year(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { return this->do_get_year(__beg, __end, __io, __err, __tm); } protected: virtual ~time_get() { } # 3168 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual dateorder do_date_order() const; # 3186 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get_time(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const; # 3205 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get_date(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const; # 3224 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get_weekday(iter_type __beg, iter_type __end, ios_base&, ios_base::iostate& __err, tm* __tm) const; # 3243 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get_monthname(iter_type __beg, iter_type __end, ios_base&, ios_base::iostate& __err, tm* __tm) const; # 3262 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get_year(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const; iter_type _M_extract_num(iter_type __beg, iter_type __end, int& __member, int __min, int __max, size_t __len, ios_base& __io, ios_base::iostate& __err) const; iter_type _M_extract_name(iter_type __beg, iter_type __end, int& __member, const _CharT** __names, size_t __indexlen, ios_base& __io, ios_base::iostate& __err) const; iter_type _M_extract_via_format(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm, const _CharT* __format) const; }; template locale::id time_get<_CharT, _InIter>::id; template class time_get_byname : public time_get<_CharT, _InIter> { public: typedef _CharT char_type; typedef _InIter iter_type; explicit time_get_byname(const char*, size_t __refs = 0) : time_get<_CharT, _InIter>(__refs) { } protected: virtual ~time_get_byname() { } }; # 3317 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class time_put : public locale::facet { public: typedef _CharT char_type; typedef _OutIter iter_type; static locale::id id; # 3338 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit time_put(size_t __refs = 0) : facet(__refs) { } # 3357 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __io, char_type __fill, const tm* __tm, const _CharT* __beg, const _CharT* __end) const; # 3377 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, ios_base& __io, char_type __fill, const tm* __tm, char __format, char __mod = 0) const { return this->do_put(__s, __io, __fill, __tm, __format, __mod); } protected: virtual ~time_put() { } # 3404 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_put(iter_type __s, ios_base& __io, char_type __fill, const tm* __tm, char __format, char __mod) const; }; template locale::id time_put<_CharT, _OutIter>::id; template class time_put_byname : public time_put<_CharT, _OutIter> { public: typedef _CharT char_type; typedef _OutIter iter_type; explicit time_put_byname(const char*, size_t __refs = 0) : time_put<_CharT, _OutIter>(__refs) { }; protected: virtual ~time_put_byname() { } }; # 3441 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 class money_base { public: enum part { none, space, symbol, sign, value }; struct pattern { char field[4]; }; static const pattern _S_default_pattern; enum { _S_minus, _S_zero, _S_end = 11 }; static const char* _S_atoms; static pattern _S_construct_pattern(char __precedes, char __space, char __posn); }; template struct __moneypunct_cache : public locale::facet { const char* _M_grouping; size_t _M_grouping_size; bool _M_use_grouping; _CharT _M_decimal_point; _CharT _M_thousands_sep; const _CharT* _M_curr_symbol; size_t _M_curr_symbol_size; const _CharT* _M_positive_sign; size_t _M_positive_sign_size; const _CharT* _M_negative_sign; size_t _M_negative_sign_size; int _M_frac_digits; money_base::pattern _M_pos_format; money_base::pattern _M_neg_format; _CharT _M_atoms[money_base::_S_end]; bool _M_allocated; __moneypunct_cache(size_t __refs = 0) : facet(__refs), _M_grouping(__null), _M_grouping_size(0), _M_use_grouping(false), _M_decimal_point(_CharT()), _M_thousands_sep(_CharT()), _M_curr_symbol(__null), _M_curr_symbol_size(0), _M_positive_sign(__null), _M_positive_sign_size(0), _M_negative_sign(__null), _M_negative_sign_size(0), _M_frac_digits(0), _M_pos_format(money_base::pattern()), _M_neg_format(money_base::pattern()), _M_allocated(false) { } ~__moneypunct_cache(); void _M_cache(const locale& __loc); private: __moneypunct_cache& operator=(const __moneypunct_cache&); explicit __moneypunct_cache(const __moneypunct_cache&); }; template __moneypunct_cache<_CharT, _Intl>::~__moneypunct_cache() { if (_M_allocated) { delete [] _M_grouping; delete [] _M_curr_symbol; delete [] _M_positive_sign; delete [] _M_negative_sign; } } template class moneypunct : public locale::facet, public money_base { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; typedef __moneypunct_cache<_CharT, _Intl> __cache_type; private: __cache_type* _M_data; public: static const bool intl = _Intl; static locale::id id; # 3562 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit moneypunct(size_t __refs = 0) : facet(__refs), _M_data(__null) { _M_initialize_moneypunct(); } # 3574 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit moneypunct(__cache_type* __cache, size_t __refs = 0) : facet(__refs), _M_data(__cache) { _M_initialize_moneypunct(); } # 3589 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit moneypunct(__c_locale __cloc, const char* __s, size_t __refs = 0) : facet(__refs), _M_data(__null) { _M_initialize_moneypunct(__cloc, __s); } # 3603 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type decimal_point() const { return this->do_decimal_point(); } # 3616 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 char_type thousands_sep() const { return this->do_thousands_sep(); } # 3645 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string grouping() const { return this->do_grouping(); } # 3658 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type curr_symbol() const { return this->do_curr_symbol(); } # 3675 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type positive_sign() const { return this->do_positive_sign(); } # 3692 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type negative_sign() const { return this->do_negative_sign(); } # 3708 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 int frac_digits() const { return this->do_frac_digits(); } # 3743 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 pattern pos_format() const { return this->do_pos_format(); } pattern neg_format() const { return this->do_neg_format(); } protected: virtual ~moneypunct(); # 3765 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_decimal_point() const { return _M_data->_M_decimal_point; } # 3777 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual char_type do_thousands_sep() const { return _M_data->_M_thousands_sep; } # 3790 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string do_grouping() const { return _M_data->_M_grouping; } # 3803 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_curr_symbol() const { return _M_data->_M_curr_symbol; } # 3816 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_positive_sign() const { return _M_data->_M_positive_sign; } # 3829 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_negative_sign() const { return _M_data->_M_negative_sign; } # 3843 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual int do_frac_digits() const { return _M_data->_M_frac_digits; } # 3857 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual pattern do_pos_format() const { return _M_data->_M_pos_format; } # 3871 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual pattern do_neg_format() const { return _M_data->_M_neg_format; } void _M_initialize_moneypunct(__c_locale __cloc = __null, const char* __name = __null); }; template locale::id moneypunct<_CharT, _Intl>::id; template const bool moneypunct<_CharT, _Intl>::intl; template<> moneypunct::~moneypunct(); template<> moneypunct::~moneypunct(); template<> void moneypunct::_M_initialize_moneypunct(__c_locale, const char*); template<> void moneypunct::_M_initialize_moneypunct(__c_locale, const char*); template<> moneypunct::~moneypunct(); template<> moneypunct::~moneypunct(); template<> void moneypunct::_M_initialize_moneypunct(__c_locale, const char*); template<> void moneypunct::_M_initialize_moneypunct(__c_locale, const char*); template class moneypunct_byname : public moneypunct<_CharT, _Intl> { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; static const bool intl = _Intl; explicit moneypunct_byname(const char* __s, size_t __refs = 0) : moneypunct<_CharT, _Intl>(__refs) { if (std::strcmp(__s, "C") != 0 && std::strcmp(__s, "POSIX") != 0) { __c_locale __tmp; this->_S_create_c_locale(__tmp, __s); this->_M_initialize_moneypunct(__tmp); this->_S_destroy_c_locale(__tmp); } } protected: virtual ~moneypunct_byname() { } }; template const bool moneypunct_byname<_CharT, _Intl>::intl; # 3961 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class money_get : public locale::facet { public: typedef _CharT char_type; typedef _InIter iter_type; typedef basic_string<_CharT> string_type; static locale::id id; # 3983 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit money_get(size_t __refs = 0) : facet(__refs) { } # 4013 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __s, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, long double& __units) const { return this->do_get(__s, __end, __intl, __io, __err, __units); } # 4043 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type get(iter_type __s, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, string_type& __digits) const { return this->do_get(__s, __end, __intl, __io, __err, __digits); } protected: virtual ~money_get() { } # 4060 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get(iter_type __s, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, long double& __units) const; # 4071 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_get(iter_type __s, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, string_type& __digits) const; template iter_type _M_extract(iter_type __s, iter_type __end, ios_base& __io, ios_base::iostate& __err, string& __digits) const; }; template locale::id money_get<_CharT, _InIter>::id; # 4096 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class money_put : public locale::facet { public: typedef _CharT char_type; typedef _OutIter iter_type; typedef basic_string<_CharT> string_type; static locale::id id; # 4117 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit money_put(size_t __refs = 0) : facet(__refs) { } # 4137 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, long double __units) const { return this->do_put(__s, __intl, __io, __fill, __units); } # 4159 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 iter_type put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, const string_type& __digits) const { return this->do_put(__s, __intl, __io, __fill, __digits); } protected: virtual ~money_put() { } # 4187 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, long double __units) const; # 4209 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual iter_type do_put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, const string_type& __digits) const; template iter_type _M_insert(iter_type __s, ios_base& __io, char_type __fill, const string_type& __digits) const; }; template locale::id money_put<_CharT, _OutIter>::id; struct messages_base { typedef int catalog; }; # 4250 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template class messages : public locale::facet, public messages_base { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; protected: __c_locale _M_c_locale_messages; const char* _M_name_messages; public: static locale::id id; # 4278 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit messages(size_t __refs = 0); # 4292 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 explicit messages(__c_locale __cloc, const char* __s, size_t __refs = 0); # 4305 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 catalog open(const basic_string& __s, const locale& __loc) const { return this->do_open(__s, __loc); } # 4323 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 catalog open(const basic_string&, const locale&, const char*) const; # 4341 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 string_type get(catalog __c, int __set, int __msgid, const string_type& __s) const { return this->do_get(__c, __set, __msgid, __s); } # 4352 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 void close(catalog __c) const { return this->do_close(__c); } protected: virtual ~messages(); # 4372 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual catalog do_open(const basic_string&, const locale&) const; # 4391 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 virtual string_type do_get(catalog, int, int, const string_type& __dfault) const; virtual void do_close(catalog) const; char* _M_convert_to_char(const string_type& __msg) const { return reinterpret_cast(const_cast<_CharT*>(__msg.c_str())); } string_type _M_convert_from_char(char*) const { # 4448 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 return string_type(); } }; template locale::id messages<_CharT>::id; template<> string messages::do_get(catalog, int, int, const string&) const; template<> wstring messages::do_get(catalog, int, int, const wstring&) const; template class messages_byname : public messages<_CharT> { public: typedef _CharT char_type; typedef basic_string<_CharT> string_type; explicit messages_byname(const char* __s, size_t __refs = 0); protected: virtual ~messages_byname() { } }; # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/messages_members.h" 1 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/messages_members.h" 3 template messages<_CharT>::messages(size_t __refs) : facet(__refs), _M_c_locale_messages(_S_get_c_locale()), _M_name_messages(_S_get_c_name()) { } template messages<_CharT>::messages(__c_locale __cloc, const char* __s, size_t __refs) : facet(__refs), _M_c_locale_messages(_S_clone_c_locale(__cloc)), _M_name_messages(__s) { char* __tmp = new char[std::strlen(__s) + 1]; std::strcpy(__tmp, __s); _M_name_messages = __tmp; } template typename messages<_CharT>::catalog messages<_CharT>::open(const basic_string& __s, const locale& __loc, const char* __dir) const { bindtextdomain(__s.c_str(), __dir); return this->do_open(__s, __loc); } template messages<_CharT>::~messages() { if (_M_name_messages != _S_get_c_name()) delete [] _M_name_messages; _S_destroy_c_locale(_M_c_locale_messages); } template typename messages<_CharT>::catalog messages<_CharT>::do_open(const basic_string& __s, const locale&) const { textdomain(__s.c_str()); return 0; } template void messages<_CharT>::do_close(catalog) const { } template messages_byname<_CharT>::messages_byname(const char* __s, size_t __refs) : messages<_CharT>(__refs) { if (this->_M_name_messages != locale::facet::_S_get_c_name()) delete [] this->_M_name_messages; char* __tmp = new char[std::strlen(__s) + 1]; std::strcpy(__tmp, __s); this->_M_name_messages = __tmp; if (std::strcmp(__s, "C") != 0 && std::strcmp(__s, "POSIX") != 0) { this->_S_destroy_c_locale(this->_M_c_locale_messages); this->_S_create_c_locale(this->_M_c_locale_messages, __s); } } # 4484 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 2 3 # 4492 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.h" 3 template inline bool isspace(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::space, __c); } template inline bool isprint(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::print, __c); } template inline bool iscntrl(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::cntrl, __c); } template inline bool isupper(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::upper, __c); } template inline bool islower(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::lower, __c); } template inline bool isalpha(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::alpha, __c); } template inline bool isdigit(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::digit, __c); } template inline bool ispunct(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::punct, __c); } template inline bool isxdigit(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::xdigit, __c); } template inline bool isalnum(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::alnum, __c); } template inline bool isgraph(_CharT __c, const locale& __loc) { return use_facet >(__loc).is(ctype_base::graph, __c); } template inline _CharT toupper(_CharT __c, const locale& __loc) { return use_facet >(__loc).toupper(__c); } template inline _CharT tolower(_CharT __c, const locale& __loc) { return use_facet >(__loc).tolower(__c); } } # 45 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 2 3 namespace std { template class basic_ios : public ios_base { public: typedef _CharT char_type; typedef typename _Traits::int_type int_type; typedef typename _Traits::pos_type pos_type; typedef typename _Traits::off_type off_type; typedef _Traits traits_type; # 78 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 typedef ctype<_CharT> __ctype_type; typedef num_put<_CharT, ostreambuf_iterator<_CharT, _Traits> > __num_put_type; typedef num_get<_CharT, istreambuf_iterator<_CharT, _Traits> > __num_get_type; protected: basic_ostream<_CharT, _Traits>* _M_tie; mutable char_type _M_fill; mutable bool _M_fill_init; basic_streambuf<_CharT, _Traits>* _M_streambuf; const __ctype_type* _M_ctype; const __num_put_type* _M_num_put; const __num_get_type* _M_num_get; public: operator void*() const { return this->fail() ? 0 : const_cast(this); } bool operator!() const { return this->fail(); } # 122 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 iostate rdstate() const { return _M_streambuf_state; } # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 void clear(iostate __state = goodbit); void setstate(iostate __state) { this->clear(this->rdstate() | __state); } void _M_setstate(iostate __state) { _M_streambuf_state |= __state; if (this->exceptions() & __state) throw; } bool good() const { return this->rdstate() == 0; } bool eof() const { return (this->rdstate() & eofbit) != 0; } # 186 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 bool fail() const { return (this->rdstate() & (badbit | failbit)) != 0; } bool bad() const { return (this->rdstate() & badbit) != 0; } # 207 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 iostate exceptions() const { return _M_exception; } # 242 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 void exceptions(iostate __except) { _M_exception = __except; this->clear(_M_streambuf_state); } explicit basic_ios(basic_streambuf<_CharT, _Traits>* __sb) : ios_base(), _M_tie(0), _M_fill(), _M_fill_init(false), _M_streambuf(0), _M_ctype(0), _M_num_put(0), _M_num_get(0) { this->init(__sb); } virtual ~basic_ios() { } # 280 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 basic_ostream<_CharT, _Traits>* tie() const { return _M_tie; } # 292 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 basic_ostream<_CharT, _Traits>* tie(basic_ostream<_CharT, _Traits>* __tiestr) { basic_ostream<_CharT, _Traits>* __old = _M_tie; _M_tie = __tiestr; return __old; } basic_streambuf<_CharT, _Traits>* rdbuf() const { return _M_streambuf; } # 332 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 basic_streambuf<_CharT, _Traits>* rdbuf(basic_streambuf<_CharT, _Traits>* __sb); # 346 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 basic_ios& copyfmt(const basic_ios& __rhs); char_type fill() const { if (!_M_fill_init) { _M_fill = this->widen(' '); _M_fill_init = true; } return _M_fill; } # 375 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 char_type fill(char_type __ch) { char_type __old = this->fill(); _M_fill = __ch; return __old; } # 395 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 locale imbue(const locale& __loc); # 415 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 char narrow(char_type __c, char __dfault) const; # 433 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 3 char_type widen(char __c) const; protected: basic_ios() : ios_base(), _M_tie(0), _M_fill(char_type()), _M_fill_init(false), _M_streambuf(0), _M_ctype(0), _M_num_put(0), _M_num_get(0) { } void init(basic_streambuf<_CharT, _Traits>* __sb); void _M_cache_locale(const locale& __loc); }; } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.tcc" 1 3 # 33 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.tcc" 3 # 34 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.tcc" 3 namespace std { template void basic_ios<_CharT, _Traits>::clear(iostate __state) { if (this->rdbuf()) _M_streambuf_state = __state; else _M_streambuf_state = __state | badbit; if (this->exceptions() & this->rdstate()) __throw_ios_failure(("basic_ios::clear")); } template basic_streambuf<_CharT, _Traits>* basic_ios<_CharT, _Traits>::rdbuf(basic_streambuf<_CharT, _Traits>* __sb) { basic_streambuf<_CharT, _Traits>* __old = _M_streambuf; _M_streambuf = __sb; this->clear(); return __old; } template basic_ios<_CharT, _Traits>& basic_ios<_CharT, _Traits>::copyfmt(const basic_ios& __rhs) { if (this != &__rhs) { _Words* __words = (__rhs._M_word_size <= _S_local_word_size) ? _M_local_word : new _Words[__rhs._M_word_size]; _Callback_list* __cb = __rhs._M_callbacks; if (__cb) __cb->_M_add_reference(); _M_call_callbacks(erase_event); if (_M_word != _M_local_word) { delete [] _M_word; _M_word = 0; } _M_dispose_callbacks(); _M_callbacks = __cb; for (int __i = 0; __i < __rhs._M_word_size; ++__i) __words[__i] = __rhs._M_word[__i]; if (_M_word != _M_local_word) { delete [] _M_word; _M_word = 0; } _M_word = __words; _M_word_size = __rhs._M_word_size; this->flags(__rhs.flags()); this->width(__rhs.width()); this->precision(__rhs.precision()); this->tie(__rhs.tie()); this->fill(__rhs.fill()); _M_ios_locale = __rhs.getloc(); _M_cache_locale(_M_ios_locale); _M_call_callbacks(copyfmt_event); this->exceptions(__rhs.exceptions()); } return *this; } template char basic_ios<_CharT, _Traits>::narrow(char_type __c, char __dfault) const { return __check_facet(_M_ctype).narrow(__c, __dfault); } template _CharT basic_ios<_CharT, _Traits>::widen(char __c) const { return __check_facet(_M_ctype).widen(__c); } template locale basic_ios<_CharT, _Traits>::imbue(const locale& __loc) { locale __old(this->getloc()); ios_base::imbue(__loc); _M_cache_locale(__loc); if (this->rdbuf() != 0) this->rdbuf()->pubimbue(__loc); return __old; } template void basic_ios<_CharT, _Traits>::init(basic_streambuf<_CharT, _Traits>* __sb) { ios_base::_M_init(); _M_cache_locale(_M_ios_locale); # 159 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.tcc" 3 _M_fill = _CharT(); _M_fill_init = false; _M_tie = 0; _M_exception = goodbit; _M_streambuf = __sb; _M_streambuf_state = __sb ? goodbit : badbit; } template void basic_ios<_CharT, _Traits>::_M_cache_locale(const locale& __loc) { if (__builtin_expect(has_facet<__ctype_type>(__loc), true)) _M_ctype = &use_facet<__ctype_type>(__loc); else _M_ctype = 0; if (__builtin_expect(has_facet<__num_put_type>(__loc), true)) _M_num_put = &use_facet<__num_put_type>(__loc); else _M_num_put = 0; if (__builtin_expect(has_facet<__num_get_type>(__loc), true)) _M_num_get = &use_facet<__num_get_type>(__loc); else _M_num_get = 0; } extern template class basic_ios; extern template class basic_ios; } # 465 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/basic_ios.h" 2 3 # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ios" 2 3 # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 2 3 #pragma GCC visibility push(default) namespace std { # 59 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 template class basic_ostream : virtual public basic_ios<_CharT, _Traits> { public: typedef _CharT char_type; typedef typename _Traits::int_type int_type; typedef typename _Traits::pos_type pos_type; typedef typename _Traits::off_type off_type; typedef _Traits traits_type; typedef basic_streambuf<_CharT, _Traits> __streambuf_type; typedef basic_ios<_CharT, _Traits> __ios_type; typedef basic_ostream<_CharT, _Traits> __ostream_type; typedef num_put<_CharT, ostreambuf_iterator<_CharT, _Traits> > __num_put_type; typedef ctype<_CharT> __ctype_type; template friend basic_ostream<_CharT2, _Traits2>& operator<<(basic_ostream<_CharT2, _Traits2>&, _CharT2); template friend basic_ostream& operator<<(basic_ostream&, char); template friend basic_ostream<_CharT2, _Traits2>& operator<<(basic_ostream<_CharT2, _Traits2>&, const _CharT2*); template friend basic_ostream& operator<<(basic_ostream&, const char*); template friend basic_ostream<_CharT2, _Traits2>& operator<<(basic_ostream<_CharT2, _Traits2>&, const char*); # 106 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 explicit basic_ostream(__streambuf_type* __sb) { this->init(__sb); } virtual ~basic_ostream() { } class sentry; friend class sentry; # 132 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 inline __ostream_type& operator<<(__ostream_type& (*__pf)(__ostream_type&)); inline __ostream_type& operator<<(__ios_type& (*__pf)(__ios_type&)); inline __ostream_type& operator<<(ios_base& (*__pf) (ios_base&)); # 169 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& operator<<(long __n); __ostream_type& operator<<(unsigned long __n); __ostream_type& operator<<(bool __n); __ostream_type& operator<<(short __n) { ios_base::fmtflags __fmt = this->flags() & ios_base::basefield; if (__fmt & ios_base::oct || __fmt & ios_base::hex) return this->operator<<(static_cast (static_cast(__n))); else return this->operator<<(static_cast(__n)); } __ostream_type& operator<<(unsigned short __n) { return this->operator<<(static_cast(__n)); } __ostream_type& operator<<(int __n) { ios_base::fmtflags __fmt = this->flags() & ios_base::basefield; if (__fmt & ios_base::oct || __fmt & ios_base::hex) return this->operator<<(static_cast (static_cast(__n))); else return this->operator<<(static_cast(__n)); } __ostream_type& operator<<(unsigned int __n) { return this->operator<<(static_cast(__n)); } __ostream_type& operator<<(long long __n); __ostream_type& operator<<(unsigned long long __n); __ostream_type& operator<<(double __f); __ostream_type& operator<<(float __f) { return this->operator<<(static_cast(__f)); } __ostream_type& operator<<(long double __f); __ostream_type& operator<<(const void* __p); # 250 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& operator<<(__streambuf_type* __sb); # 283 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& put(char_type __c); void _M_write(const char_type* __s, streamsize __n) { streamsize __put = this->rdbuf()->sputn(__s, __n); if (__put != __n) this->setstate(ios_base::badbit); } # 311 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& write(const char_type* __s, streamsize __n); # 324 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& flush(); # 335 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 pos_type tellp(); # 346 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& seekp(pos_type); # 358 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 __ostream_type& seekp(off_type, ios_base::seekdir); protected: explicit basic_ostream() { } }; # 376 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 template class basic_ostream<_CharT, _Traits>::sentry { bool _M_ok; basic_ostream<_CharT,_Traits>& _M_os; public: # 395 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 explicit sentry(basic_ostream<_CharT,_Traits>& __os); # 405 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 ~sentry() { if (_M_os.flags() & ios_base::unitbuf && !uncaught_exception()) { if (_M_os.rdbuf() && _M_os.rdbuf()->pubsync() == -1) _M_os.setstate(ios_base::badbit); } } # 423 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 operator bool() const { return _M_ok; } }; # 444 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, _CharT __c); template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, char __c) { return (__out << __out.widen(__c)); } template basic_ostream& operator<<(basic_ostream& __out, char __c); template basic_ostream& operator<<(basic_ostream& __out, signed char __c) { return (__out << static_cast(__c)); } template basic_ostream& operator<<(basic_ostream& __out, unsigned char __c) { return (__out << static_cast(__c)); } # 484 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, const _CharT* __s); template basic_ostream<_CharT, _Traits> & operator<<(basic_ostream<_CharT, _Traits>& __out, const char* __s); template basic_ostream& operator<<(basic_ostream& __out, const char* __s); template basic_ostream& operator<<(basic_ostream& __out, const signed char* __s) { return (__out << reinterpret_cast(__s)); } template basic_ostream & operator<<(basic_ostream& __out, const unsigned char* __s) { return (__out << reinterpret_cast(__s)); } # 518 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 3 template basic_ostream<_CharT, _Traits>& endl(basic_ostream<_CharT, _Traits>& __os) { return flush(__os.put(__os.widen('\n'))); } template basic_ostream<_CharT, _Traits>& ends(basic_ostream<_CharT, _Traits>& __os) { return __os.put(_CharT()); } template basic_ostream<_CharT, _Traits>& flush(basic_ostream<_CharT, _Traits>& __os) { return __os.flush(); } } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ostream.tcc" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ostream.tcc" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ostream.tcc" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/locale" 1 3 # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/locale" 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/locale" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 1 3 # 36 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 # 37 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/typeinfo" 1 3 # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/typeinfo" 3 extern "C++" { namespace __cxxabiv1 { class __class_type_info; } # 55 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/typeinfo" 3 namespace std { class type_info { public: virtual ~type_info(); private: type_info& operator=(const type_info&); type_info(const type_info&); protected: const char *__name; protected: explicit type_info(const char *__n): __name(__n) { } public: const char* name() const { return __name; } # 101 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/typeinfo" 3 bool before(const type_info& __arg) const { return __name < __arg.__name; } bool operator==(const type_info& __arg) const { return __name == __arg.__name; } bool operator!=(const type_info& __arg) const { return !operator==(__arg); } public: virtual bool __is_pointer_p() const; virtual bool __is_function_p() const; virtual bool __do_catch(const type_info *__thr_type, void **__thr_obj, unsigned __outer) const; virtual bool __do_upcast(const __cxxabiv1::__class_type_info *__target, void **__obj_ptr) const; }; class bad_cast : public exception { public: bad_cast() throw() { } virtual ~bad_cast() throw(); }; class bad_typeid : public exception { public: bad_typeid () throw() { } virtual ~bad_typeid() throw(); }; } } # 40 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 2 3 namespace std { template locale locale::combine(const locale& __other) const { _Impl* __tmp = new _Impl(*_M_impl, 1); try { __tmp->_M_replace_facet(__other._M_impl, &_Facet::id); } catch(...) { __tmp->_M_remove_reference(); throw; } return locale(__tmp); } template bool locale::operator()(const basic_string<_CharT, _Traits, _Alloc>& __s1, const basic_string<_CharT, _Traits, _Alloc>& __s2) const { typedef std::collate<_CharT> __collate_type; const __collate_type& __collate = use_facet<__collate_type>(*this); return (__collate.compare(__s1.data(), __s1.data() + __s1.length(), __s2.data(), __s2.data() + __s2.length()) < 0); } # 83 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 template inline bool has_facet(const locale& __loc) throw() { const size_t __i = _Facet::id._M_id(); const locale::facet** __facets = __loc._M_impl->_M_facets; return (__i < __loc._M_impl->_M_facets_size && __facets[__i]); } # 105 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 template inline const _Facet& use_facet(const locale& __loc) { const size_t __i = _Facet::id._M_id(); const locale::facet** __facets = __loc._M_impl->_M_facets; if (!(__i < __loc._M_impl->_M_facets_size && __facets[__i])) __throw_bad_cast(); return static_cast(*__facets[__i]); } template struct __use_cache { const _Facet* operator() (const locale& __loc) const; }; template struct __use_cache<__numpunct_cache<_CharT> > { const __numpunct_cache<_CharT>* operator() (const locale& __loc) const { const size_t __i = numpunct<_CharT>::id._M_id(); const locale::facet** __caches = __loc._M_impl->_M_caches; if (!__caches[__i]) { __numpunct_cache<_CharT>* __tmp = __null; try { __tmp = new __numpunct_cache<_CharT>; __tmp->_M_cache(__loc); } catch(...) { delete __tmp; throw; } __loc._M_impl->_M_install_cache(__tmp, __i); } return static_cast*>(__caches[__i]); } }; template struct __use_cache<__moneypunct_cache<_CharT, _Intl> > { const __moneypunct_cache<_CharT, _Intl>* operator() (const locale& __loc) const { const size_t __i = moneypunct<_CharT, _Intl>::id._M_id(); const locale::facet** __caches = __loc._M_impl->_M_caches; if (!__caches[__i]) { __moneypunct_cache<_CharT, _Intl>* __tmp = __null; try { __tmp = new __moneypunct_cache<_CharT, _Intl>; __tmp->_M_cache(__loc); } catch(...) { delete __tmp; throw; } __loc._M_impl->_M_install_cache(__tmp, __i); } return static_cast< const __moneypunct_cache<_CharT, _Intl>*>(__caches[__i]); } }; template void __numpunct_cache<_CharT>::_M_cache(const locale& __loc) { _M_allocated = true; const numpunct<_CharT>& __np = use_facet >(__loc); _M_grouping_size = __np.grouping().size(); char* __grouping = new char[_M_grouping_size]; __np.grouping().copy(__grouping, _M_grouping_size); _M_grouping = __grouping; _M_use_grouping = _M_grouping_size && __np.grouping()[0] != 0; _M_truename_size = __np.truename().size(); _CharT* __truename = new _CharT[_M_truename_size]; __np.truename().copy(__truename, _M_truename_size); _M_truename = __truename; _M_falsename_size = __np.falsename().size(); _CharT* __falsename = new _CharT[_M_falsename_size]; __np.falsename().copy(__falsename, _M_falsename_size); _M_falsename = __falsename; _M_decimal_point = __np.decimal_point(); _M_thousands_sep = __np.thousands_sep(); const ctype<_CharT>& __ct = use_facet >(__loc); __ct.widen(__num_base::_S_atoms_out, __num_base::_S_atoms_out + __num_base::_S_oend, _M_atoms_out); __ct.widen(__num_base::_S_atoms_in, __num_base::_S_atoms_in + __num_base::_S_iend, _M_atoms_in); } template void __moneypunct_cache<_CharT, _Intl>::_M_cache(const locale& __loc) { _M_allocated = true; const moneypunct<_CharT, _Intl>& __mp = use_facet >(__loc); _M_grouping_size = __mp.grouping().size(); char* __grouping = new char[_M_grouping_size]; __mp.grouping().copy(__grouping, _M_grouping_size); _M_grouping = __grouping; _M_use_grouping = _M_grouping_size && __mp.grouping()[0] != 0; _M_decimal_point = __mp.decimal_point(); _M_thousands_sep = __mp.thousands_sep(); _M_frac_digits = __mp.frac_digits(); _M_curr_symbol_size = __mp.curr_symbol().size(); _CharT* __curr_symbol = new _CharT[_M_curr_symbol_size]; __mp.curr_symbol().copy(__curr_symbol, _M_curr_symbol_size); _M_curr_symbol = __curr_symbol; _M_positive_sign_size = __mp.positive_sign().size(); _CharT* __positive_sign = new _CharT[_M_positive_sign_size]; __mp.positive_sign().copy(__positive_sign, _M_positive_sign_size); _M_positive_sign = __positive_sign; _M_negative_sign_size = __mp.negative_sign().size(); _CharT* __negative_sign = new _CharT[_M_negative_sign_size]; __mp.negative_sign().copy(__negative_sign, _M_negative_sign_size); _M_negative_sign = __negative_sign; _M_pos_format = __mp.pos_format(); _M_neg_format = __mp.neg_format(); const ctype<_CharT>& __ct = use_facet >(__loc); __ct.widen(money_base::_S_atoms, money_base::_S_atoms + money_base::_S_end, _M_atoms); } # 266 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 static bool __verify_grouping(const char* __grouping, size_t __grouping_size, const string& __grouping_tmp); template _InIter num_get<_CharT, _InIter>:: _M_extract_float(_InIter __beg, _InIter __end, ios_base& __io, ios_base::iostate& __err, string& __xtrc) const { typedef char_traits<_CharT> __traits_type; typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); const _CharT* __lit = __lc->_M_atoms_in; bool __found_mantissa = false; if (__beg != __end) { const char_type __c = *__beg; const bool __plus = __c == __lit[__num_base::_S_iplus]; if ((__plus || __c == __lit[__num_base::_S_iminus]) && !(__lc->_M_use_grouping && __c == __lc->_M_thousands_sep) && !(__c == __lc->_M_decimal_point)) { __xtrc += __plus ? '+' : '-'; ++__beg; } } while (__beg != __end) { const char_type __c = *__beg; if (__lc->_M_use_grouping && __c == __lc->_M_thousands_sep || __c == __lc->_M_decimal_point) break; else if (__c == __lit[__num_base::_S_izero]) { if (!__found_mantissa) { __xtrc += '0'; __found_mantissa = true; } ++__beg; } else break; } bool __found_dec = false; bool __found_sci = false; string __found_grouping; if (__lc->_M_use_grouping) __found_grouping.reserve(32); int __sep_pos = 0; const char_type* __lit_zero = __lit + __num_base::_S_izero; const char_type* __q; while (__beg != __end) { const char_type __c = *__beg; if (__lc->_M_use_grouping && __c == __lc->_M_thousands_sep) { if (!__found_dec && !__found_sci) { if (__sep_pos) { __found_grouping += static_cast(__sep_pos); __sep_pos = 0; ++__beg; } else { __err |= ios_base::failbit; break; } } else break; } else if (__c == __lc->_M_decimal_point) { if (!__found_dec && !__found_sci) { if (__found_grouping.size()) __found_grouping += static_cast(__sep_pos); __xtrc += '.'; __found_dec = true; ++__beg; } else break; } else if (__q = __traits_type::find(__lit_zero, 10, __c)) { __xtrc += __num_base::_S_atoms_in[__q - __lit]; __found_mantissa = true; ++__sep_pos; ++__beg; } else if ((__c == __lit[__num_base::_S_ie] || __c == __lit[__num_base::_S_iE]) && __found_mantissa && !__found_sci) { if (__found_grouping.size() && !__found_dec) __found_grouping += static_cast(__sep_pos); __xtrc += 'e'; __found_sci = true; if (++__beg != __end) { const bool __plus = *__beg == __lit[__num_base::_S_iplus]; if ((__plus || *__beg == __lit[__num_base::_S_iminus]) && !(__lc->_M_use_grouping && *__beg == __lc->_M_thousands_sep) && !(*__beg == __lc->_M_decimal_point)) { __xtrc += __plus ? '+' : '-'; ++__beg; } } } else break; } if (__lc->_M_use_grouping && __found_grouping.size()) { if (!__found_dec && !__found_sci) __found_grouping += static_cast(__sep_pos); if (!std::__verify_grouping(__lc->_M_grouping, __lc->_M_grouping_size, __found_grouping)) __err |= ios_base::failbit; } if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template template _InIter num_get<_CharT, _InIter>:: _M_extract_int(_InIter __beg, _InIter __end, ios_base& __io, ios_base::iostate& __err, _ValueT& __v) const { typedef char_traits<_CharT> __traits_type; typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); const _CharT* __lit = __lc->_M_atoms_in; const ios_base::fmtflags __basefield = __io.flags() & ios_base::basefield; const bool __oct = __basefield == ios_base::oct; int __base = __oct ? 8 : (__basefield == ios_base::hex ? 16 : 10); bool __found_num = false; bool __negative = false; if (__beg != __end) { const char_type __c = *__beg; if (numeric_limits<_ValueT>::is_signed) __negative = __c == __lit[__num_base::_S_iminus]; if ((__negative || __c == __lit[__num_base::_S_iplus]) && !(__lc->_M_use_grouping && __c == __lc->_M_thousands_sep) && !(__c == __lc->_M_decimal_point)) ++__beg; } while (__beg != __end) { const char_type __c = *__beg; if (__lc->_M_use_grouping && __c == __lc->_M_thousands_sep || __c == __lc->_M_decimal_point) break; else if (__c == __lit[__num_base::_S_izero] && (!__found_num || __base == 10)) { __found_num = true; ++__beg; } else if (__found_num) { if (__c == __lit[__num_base::_S_ix] || __c == __lit[__num_base::_S_iX]) { if (__basefield == 0) __base = 16; if (__base == 16) { __found_num = false; ++__beg; } } else if (__basefield == 0) __base = 8; break; } else break; } const size_t __len = __base == 16 ? (__num_base::_S_iend - __num_base::_S_izero) : __base; string __found_grouping; if (__lc->_M_use_grouping) __found_grouping.reserve(32); int __sep_pos = 0; bool __overflow = false; _ValueT __result = 0; const char_type* __lit_zero = __lit + __num_base::_S_izero; const char_type* __q; if (__negative) { const _ValueT __min = numeric_limits<_ValueT>::min() / __base; for (; __beg != __end; ++__beg) { const char_type __c = *__beg; if (__lc->_M_use_grouping && __c == __lc->_M_thousands_sep) { if (__sep_pos) { __found_grouping += static_cast(__sep_pos); __sep_pos = 0; } else { __err |= ios_base::failbit; break; } } else if (__c == __lc->_M_decimal_point) break; else if (__q = __traits_type::find(__lit_zero, __len, __c)) { int __digit = __q - __lit_zero; if (__digit > 15) __digit -= 6; if (__result < __min) __overflow = true; else { const _ValueT __new_result = __result * __base - __digit; __overflow |= __new_result > __result; __result = __new_result; ++__sep_pos; __found_num = true; } } else break; } } else { const _ValueT __max = numeric_limits<_ValueT>::max() / __base; for (; __beg != __end; ++__beg) { const char_type __c = *__beg; if (__lc->_M_use_grouping && __c == __lc->_M_thousands_sep) { if (__sep_pos) { __found_grouping += static_cast(__sep_pos); __sep_pos = 0; } else { __err |= ios_base::failbit; break; } } else if (__c == __lc->_M_decimal_point) break; else if (__q = __traits_type::find(__lit_zero, __len, __c)) { int __digit = __q - __lit_zero; if (__digit > 15) __digit -= 6; if (__result > __max) __overflow = true; else { const _ValueT __new_result = __result * __base + __digit; __overflow |= __new_result < __result; __result = __new_result; ++__sep_pos; __found_num = true; } } else break; } } if (__lc->_M_use_grouping && __found_grouping.size()) { __found_grouping += static_cast(__sep_pos); if (!std::__verify_grouping(__lc->_M_grouping, __lc->_M_grouping_size, __found_grouping)) __err |= ios_base::failbit; } if (!(__err & ios_base::failbit) && !__overflow && __found_num) __v = __result; else __err |= ios_base::failbit; if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, bool& __v) const { if (!(__io.flags() & ios_base::boolalpha)) { long __l = -1; __beg = _M_extract_int(__beg, __end, __io, __err, __l); if (__l == 0 || __l == 1) __v = __l; else __err |= ios_base::failbit; } else { typedef char_traits<_CharT> __traits_type; typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); bool __testf = true; bool __testt = true; size_t __n; for (__n = 0; __beg != __end; ++__n, ++__beg) { if (__testf) if (__n < __lc->_M_falsename_size) __testf = *__beg == __lc->_M_falsename[__n]; else break; if (__testt) if (__n < __lc->_M_truename_size) __testt = *__beg == __lc->_M_truename[__n]; else break; if (!__testf && !__testt) break; } if (__testf && __n == __lc->_M_falsename_size) __v = 0; else if (__testt && __n == __lc->_M_truename_size) __v = 1; else __err |= ios_base::failbit; if (__beg == __end) __err |= ios_base::eofbit; } return __beg; } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, long& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned short& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned int& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned long& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, long long& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, unsigned long long& __v) const { return _M_extract_int(__beg, __end, __io, __err, __v); } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, float& __v) const { string __xtrc; __xtrc.reserve(32); __beg = _M_extract_float(__beg, __end, __io, __err, __xtrc); std::__convert_to_v(__xtrc.c_str(), __v, __err, _S_get_c_locale()); return __beg; } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, double& __v) const { string __xtrc; __xtrc.reserve(32); __beg = _M_extract_float(__beg, __end, __io, __err, __xtrc); std::__convert_to_v(__xtrc.c_str(), __v, __err, _S_get_c_locale()); return __beg; } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, long double& __v) const { string __xtrc; __xtrc.reserve(32); __beg = _M_extract_float(__beg, __end, __io, __err, __xtrc); std::__convert_to_v(__xtrc.c_str(), __v, __err, _S_get_c_locale()); return __beg; } template _InIter num_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, void*& __v) const { typedef ios_base::fmtflags fmtflags; const fmtflags __fmt = __io.flags(); __io.flags(__fmt & ~ios_base::basefield | ios_base::hex); unsigned long __ul; __beg = _M_extract_int(__beg, __end, __io, __err, __ul); __io.flags(__fmt); if (!(__err & ios_base::failbit)) __v = reinterpret_cast(__ul); else __err |= ios_base::failbit; return __beg; } template void num_put<_CharT, _OutIter>:: _M_pad(_CharT __fill, streamsize __w, ios_base& __io, _CharT* __new, const _CharT* __cs, int& __len) const { __pad<_CharT, char_traits<_CharT> >::_S_pad(__io, __fill, __new, __cs, __w, __len, true); __len = static_cast(__w); } template inline int __int_to_char(_CharT* __bufend, long __v, const _CharT* __lit, ios_base::fmtflags __flags) { unsigned long __ul = static_cast(__v); bool __neg = false; if (__v < 0) { __ul = -__ul; __neg = true; } return __int_to_char(__bufend, __ul, __lit, __flags, __neg); } template inline int __int_to_char(_CharT* __bufend, unsigned long __v, const _CharT* __lit, ios_base::fmtflags __flags) { return __int_to_char(__bufend, __v, __lit, __flags & ~ios_base::showpos, false); } template inline int __int_to_char(_CharT* __bufend, long long __v, const _CharT* __lit, ios_base::fmtflags __flags) { unsigned long long __ull = static_cast(__v); bool __neg = false; if (__v < 0) { __ull = -__ull; __neg = true; } return __int_to_char(__bufend, __ull, __lit, __flags, __neg); } template inline int __int_to_char(_CharT* __bufend, unsigned long long __v, const _CharT* __lit, ios_base::fmtflags __flags) { return __int_to_char(__bufend, __v, __lit, __flags & ~ios_base::showpos, false); } template int __int_to_char(_CharT* __bufend, _ValueT __v, const _CharT* __lit, ios_base::fmtflags __flags, bool __neg) { const bool __showbase = (__flags & ios_base::showbase) && __v; const ios_base::fmtflags __basefield = __flags & ios_base::basefield; _CharT* __buf = __bufend - 1; if (__builtin_expect(__basefield != ios_base::oct && __basefield != ios_base::hex, true)) { do { *__buf-- = __lit[(__v % 10) + __num_base::_S_odigits]; __v /= 10; } while (__v != 0); if (__neg) *__buf-- = __lit[__num_base::_S_ominus]; else if (__flags & ios_base::showpos) *__buf-- = __lit[__num_base::_S_oplus]; } else if (__basefield == ios_base::oct) { do { *__buf-- = __lit[(__v & 0x7) + __num_base::_S_odigits]; __v >>= 3; } while (__v != 0); if (__showbase) *__buf-- = __lit[__num_base::_S_odigits]; } else { const bool __uppercase = __flags & ios_base::uppercase; const int __case_offset = __uppercase ? __num_base::_S_oudigits : __num_base::_S_odigits; do { *__buf-- = __lit[(__v & 0xf) + __case_offset]; __v >>= 4; } while (__v != 0); if (__showbase) { *__buf-- = __lit[__num_base::_S_ox + __uppercase]; *__buf-- = __lit[__num_base::_S_odigits]; } } return __bufend - __buf - 1; } template void num_put<_CharT, _OutIter>:: _M_group_int(const char* __grouping, size_t __grouping_size, _CharT __sep, ios_base& __io, _CharT* __new, _CharT* __cs, int& __len) const { streamsize __off = 0; const ios_base::fmtflags __basefield = __io.flags() & ios_base::basefield; if ((__io.flags() & ios_base::showbase) && __len > 1) if (__basefield == ios_base::oct) { __off = 1; __new[0] = __cs[0]; } else if (__basefield == ios_base::hex) { __off = 2; __new[0] = __cs[0]; __new[1] = __cs[1]; } _CharT* __p; __p = std::__add_grouping(__new + __off, __sep, __grouping, __grouping_size, __cs + __off, __cs + __len); __len = __p - __new; } template template _OutIter num_put<_CharT, _OutIter>:: _M_insert_int(_OutIter __s, ios_base& __io, _CharT __fill, _ValueT __v) const { typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); const _CharT* __lit = __lc->_M_atoms_out; const int __ilen = 4 * sizeof(_ValueT); _CharT* __cs = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __ilen)); int __len; __len = __int_to_char(__cs + __ilen, __v, __lit, __io.flags()); __cs += __ilen - __len; if (__lc->_M_use_grouping) { _CharT* __cs2 = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len * 2)); _M_group_int(__lc->_M_grouping, __lc->_M_grouping_size, __lc->_M_thousands_sep, __io, __cs2, __cs, __len); __cs = __cs2; } const streamsize __w = __io.width(); if (__w > static_cast(__len)) { _CharT* __cs3 = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __w)); _M_pad(__fill, __w, __io, __cs3, __cs, __len); __cs = __cs3; } __io.width(0); return std::__write(__s, __cs, __len); } template void num_put<_CharT, _OutIter>:: _M_group_float(const char* __grouping, size_t __grouping_size, _CharT __sep, const _CharT* __p, _CharT* __new, _CharT* __cs, int& __len) const { _CharT* __p2; const int __declen = __p ? __p - __cs : __len; __p2 = std::__add_grouping(__new, __sep, __grouping, __grouping_size, __cs, __cs + __declen); int __newlen = __p2 - __new; if (__p) { char_traits<_CharT>::copy(__p2, __p, __len - __declen); __newlen += __len - __declen; } __len = __newlen; } # 1041 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 template template _OutIter num_put<_CharT, _OutIter>:: _M_insert_float(_OutIter __s, ios_base& __io, _CharT __fill, char __mod, _ValueT __v) const { typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); streamsize __prec = __io.precision(); if (__prec < static_cast(0)) __prec = static_cast(6); const int __max_digits = numeric_limits<_ValueT>::digits10; int __len; char __fbuf[16]; int __cs_size = __max_digits * 3; char* __cs = static_cast(__builtin_alloca(__cs_size)); __num_base::_S_format_float(__io, __fbuf, __mod); __len = std::__convert_from_v(__cs, __cs_size, __fbuf, __v, _S_get_c_locale(), __prec); if (__len >= __cs_size) { __cs_size = __len + 1; __cs = static_cast(__builtin_alloca(__cs_size)); __len = std::__convert_from_v(__cs, __cs_size, __fbuf, __v, _S_get_c_locale(), __prec); } # 1105 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 const ctype<_CharT>& __ctype = use_facet >(__loc); _CharT* __ws = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len)); __ctype.widen(__cs, __cs + __len, __ws); const _CharT __cdec = __ctype.widen('.'); const _CharT __dec = __lc->_M_decimal_point; const _CharT* __p; if (__p = char_traits<_CharT>::find(__ws, __len, __cdec)) __ws[__p - __ws] = __dec; if (__lc->_M_use_grouping) { _CharT* __ws2 = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len * 2)); _M_group_float(__lc->_M_grouping, __lc->_M_grouping_size, __lc->_M_thousands_sep, __p, __ws2, __ws, __len); __ws = __ws2; } const streamsize __w = __io.width(); if (__w > static_cast(__len)) { _CharT* __ws3 = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __w)); _M_pad(__fill, __w, __io, __ws3, __ws, __len); __ws = __ws3; } __io.width(0); return std::__write(__s, __ws, __len); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, bool __v) const { const ios_base::fmtflags __flags = __io.flags(); if ((__flags & ios_base::boolalpha) == 0) { const long __l = __v; __s = _M_insert_int(__s, __io, __fill, __l); } else { typedef typename numpunct<_CharT>::__cache_type __cache_type; __use_cache<__cache_type> __uc; const locale& __loc = __io._M_getloc(); const __cache_type* __lc = __uc(__loc); const _CharT* __name = __v ? __lc->_M_truename : __lc->_M_falsename; int __len = __v ? __lc->_M_truename_size : __lc->_M_falsename_size; const streamsize __w = __io.width(); if (__w > static_cast(__len)) { _CharT* __cs = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __w)); _M_pad(__fill, __w, __io, __cs, __name, __len); __name = __cs; } __io.width(0); __s = std::__write(__s, __name, __len); } return __s; } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, long __v) const { return _M_insert_int(__s, __io, __fill, __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, unsigned long __v) const { return _M_insert_int(__s, __io, __fill, __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __b, char_type __fill, long long __v) const { return _M_insert_int(__s, __b, __fill, __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, unsigned long long __v) const { return _M_insert_int(__s, __io, __fill, __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, double __v) const { return _M_insert_float(__s, __io, __fill, char(), __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, long double __v) const { return _M_insert_float(__s, __io, __fill, 'L', __v); } template _OutIter num_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type __fill, const void* __v) const { const ios_base::fmtflags __flags = __io.flags(); const ios_base::fmtflags __fmt = ~(ios_base::basefield | ios_base::uppercase | ios_base::internal); __io.flags(__flags & __fmt | (ios_base::hex | ios_base::showbase)); __s = _M_insert_int(__s, __io, __fill, reinterpret_cast(__v)); __io.flags(__flags); return __s; } template template _InIter money_get<_CharT, _InIter>:: _M_extract(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, string& __units) const { typedef char_traits<_CharT> __traits_type; typedef typename string_type::size_type size_type; typedef money_base::part part; typedef moneypunct<_CharT, _Intl> __moneypunct_type; typedef typename __moneypunct_type::__cache_type __cache_type; const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); __use_cache<__cache_type> __uc; const __cache_type* __lc = __uc(__loc); const char_type* __lit = __lc->_M_atoms; bool __negative = false; size_type __sign_size = 0; const bool __mandatory_sign = (__lc->_M_positive_sign_size && __lc->_M_negative_sign_size); string __grouping_tmp; if (__lc->_M_use_grouping) __grouping_tmp.reserve(32); int __last_pos = 0; int __n = 0; bool __testvalid = true; bool __testdecfound = false; string __res; __res.reserve(32); const char_type* __lit_zero = __lit + money_base::_S_zero; const char_type* __q; const money_base::pattern __p = __lc->_M_neg_format; for (int __i = 0; __i < 4 && __testvalid; ++__i) { const part __which = static_cast(__p.field[__i]); switch (__which) { case money_base::symbol: if (__io.flags() & ios_base::showbase || __sign_size > 1 || __i == 0 || (__i == 1 && (__mandatory_sign || (static_cast(__p.field[0]) == money_base::sign) || (static_cast(__p.field[2]) == money_base::space))) || (__i == 2 && ((static_cast(__p.field[3]) == money_base::value) || __mandatory_sign && (static_cast(__p.field[3]) == money_base::sign)))) { const size_type __len = __lc->_M_curr_symbol_size; size_type __j = 0; for (; __beg != __end && __j < __len && *__beg == __lc->_M_curr_symbol[__j]; ++__beg, ++__j); if (__j != __len && (__j || __io.flags() & ios_base::showbase)) __testvalid = false; } break; case money_base::sign: if (__lc->_M_positive_sign_size && __beg != __end && *__beg == __lc->_M_positive_sign[0]) { __sign_size = __lc->_M_positive_sign_size; ++__beg; } else if (__lc->_M_negative_sign_size && __beg != __end && *__beg == __lc->_M_negative_sign[0]) { __negative = true; __sign_size = __lc->_M_negative_sign_size; ++__beg; } else if (__lc->_M_positive_sign_size && !__lc->_M_negative_sign_size) __negative = true; else if (__mandatory_sign) __testvalid = false; break; case money_base::value: for (; __beg != __end; ++__beg) if (__q = __traits_type::find(__lit_zero, 10, *__beg)) { __res += money_base::_S_atoms[__q - __lit]; ++__n; } else if (*__beg == __lc->_M_decimal_point && !__testdecfound) { __last_pos = __n; __n = 0; __testdecfound = true; } else if (__lc->_M_use_grouping && *__beg == __lc->_M_thousands_sep && !__testdecfound) { if (__n) { __grouping_tmp += static_cast(__n); __n = 0; } else { __testvalid = false; break; } } else break; if (__res.empty()) __testvalid = false; break; case money_base::space: if (__beg != __end && __ctype.is(ctype_base::space, *__beg)) ++__beg; else __testvalid = false; case money_base::none: if (__i != 3) for (; __beg != __end && __ctype.is(ctype_base::space, *__beg); ++__beg); break; } } if (__sign_size > 1 && __testvalid) { const char_type* __sign = __negative ? __lc->_M_negative_sign : __lc->_M_positive_sign; size_type __i = 1; for (; __beg != __end && __i < __sign_size && *__beg == __sign[__i]; ++__beg, ++__i); if (__i != __sign_size) __testvalid = false; } if (__testvalid) { if (__res.size() > 1) { const size_type __first = __res.find_first_not_of('0'); const bool __only_zeros = __first == string::npos; if (__first) __res.erase(0, __only_zeros ? __res.size() - 1 : __first); } if (__negative && __res[0] != '0') __res.insert(__res.begin(), '-'); if (__grouping_tmp.size()) { __grouping_tmp += static_cast(__testdecfound ? __last_pos : __n); if (!std::__verify_grouping(__lc->_M_grouping, __lc->_M_grouping_size, __grouping_tmp)) __testvalid = false; } if (__testdecfound && __lc->_M_frac_digits > 0 && __n != __lc->_M_frac_digits) __testvalid = false; } if (__beg == __end) __err |= ios_base::eofbit; if (!__testvalid) __err |= ios_base::failbit; else __units.swap(__res); return __beg; } template _InIter money_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, long double& __units) const { string __str; if (__intl) __beg = _M_extract(__beg, __end, __io, __err, __str); else __beg = _M_extract(__beg, __end, __io, __err, __str); std::__convert_to_v(__str.c_str(), __units, __err, _S_get_c_locale()); return __beg; } template _InIter money_get<_CharT, _InIter>:: do_get(iter_type __beg, iter_type __end, bool __intl, ios_base& __io, ios_base::iostate& __err, string_type& __units) const { typedef typename string::size_type size_type; const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); string __str; const iter_type __ret = __intl ? _M_extract(__beg, __end, __io, __err, __str) : _M_extract(__beg, __end, __io, __err, __str); const size_type __len = __str.size(); if (__len) { _CharT* __ws = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len)); __ctype.widen(__str.data(), __str.data() + __len, __ws); __units.assign(__ws, __len); } return __ret; } template template _OutIter money_put<_CharT, _OutIter>:: _M_insert(iter_type __s, ios_base& __io, char_type __fill, const string_type& __digits) const { typedef typename string_type::size_type size_type; typedef money_base::part part; typedef moneypunct<_CharT, _Intl> __moneypunct_type; typedef typename __moneypunct_type::__cache_type __cache_type; const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); __use_cache<__cache_type> __uc; const __cache_type* __lc = __uc(__loc); const char_type* __lit = __lc->_M_atoms; const char_type* __beg = __digits.data(); money_base::pattern __p; const char_type* __sign; size_type __sign_size; if (*__beg != __lit[money_base::_S_minus]) { __p = __lc->_M_pos_format; __sign = __lc->_M_positive_sign; __sign_size = __lc->_M_positive_sign_size; } else { __p = __lc->_M_neg_format; __sign = __lc->_M_negative_sign; __sign_size = __lc->_M_negative_sign_size; if (__digits.size()) ++__beg; } size_type __len = __ctype.scan_not(ctype_base::digit, __beg, __beg + __digits.size()) - __beg; if (__len) { string_type __value; __value.reserve(2 * __len); int __paddec = __len - __lc->_M_frac_digits; if (__paddec > 0) { if (__lc->_M_frac_digits < 0) __paddec = __len; if (__lc->_M_grouping_size) { _CharT* __ws = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * 2 * __len)); _CharT* __ws_end = std::__add_grouping(__ws, __lc->_M_thousands_sep, __lc->_M_grouping, __lc->_M_grouping_size, __beg, __beg + __paddec); __value.assign(__ws, __ws_end - __ws); } else __value.assign(__beg, __paddec); } if (__lc->_M_frac_digits > 0) { __value += __lc->_M_decimal_point; if (__paddec >= 0) __value.append(__beg + __paddec, __lc->_M_frac_digits); else { __value.append(-__paddec, __lit[money_base::_S_zero]); __value.append(__beg, __len); } } const ios_base::fmtflags __f = __io.flags() & ios_base::adjustfield; __len = __value.size() + __sign_size; __len += ((__io.flags() & ios_base::showbase) ? __lc->_M_curr_symbol_size : 0); string_type __res; __res.reserve(2 * __len); const size_type __width = static_cast(__io.width()); const bool __testipad = (__f == ios_base::internal && __len < __width); for (int __i = 0; __i < 4; ++__i) { const part __which = static_cast(__p.field[__i]); switch (__which) { case money_base::symbol: if (__io.flags() & ios_base::showbase) __res.append(__lc->_M_curr_symbol, __lc->_M_curr_symbol_size); break; case money_base::sign: if (__sign_size) __res += __sign[0]; break; case money_base::value: __res += __value; break; case money_base::space: if (__testipad) __res.append(__width - __len, __fill); else __res += __fill; break; case money_base::none: if (__testipad) __res.append(__width - __len, __fill); break; } } if (__sign_size > 1) __res.append(__sign + 1, __sign_size - 1); __len = __res.size(); if (__width > __len) { if (__f == ios_base::left) __res.append(__width - __len, __fill); else __res.insert(0, __width - __len, __fill); __len = __width; } __s = std::__write(__s, __res.data(), __len); } __io.width(0); return __s; } template _OutIter money_put<_CharT, _OutIter>:: do_put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, long double __units) const { const locale __loc = __io.getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); int __cs_size = 64; char* __cs = static_cast(__builtin_alloca(__cs_size)); int __len = std::__convert_from_v(__cs, __cs_size, "%.*Lf", __units, _S_get_c_locale(), 0); if (__len >= __cs_size) { __cs_size = __len + 1; __cs = static_cast(__builtin_alloca(__cs_size)); __len = std::__convert_from_v(__cs, __cs_size, "%.*Lf", __units, _S_get_c_locale(), 0); } _CharT* __ws = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __cs_size)); __ctype.widen(__cs, __cs + __len, __ws); const string_type __digits(__ws, __len); return __intl ? _M_insert(__s, __io, __fill, __digits) : _M_insert(__s, __io, __fill, __digits); } template _OutIter money_put<_CharT, _OutIter>:: do_put(iter_type __s, bool __intl, ios_base& __io, char_type __fill, const string_type& __digits) const { return __intl ? _M_insert(__s, __io, __fill, __digits) : _M_insert(__s, __io, __fill, __digits); } template time_base::dateorder time_get<_CharT, _InIter>::do_date_order() const { return time_base::no_order; } template _InIter time_get<_CharT, _InIter>:: _M_extract_via_format(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm, const _CharT* __format) const { const locale& __loc = __io._M_getloc(); const __timepunct<_CharT>& __tp = use_facet<__timepunct<_CharT> >(__loc); const ctype<_CharT>& __ctype = use_facet >(__loc); const size_t __len = char_traits<_CharT>::length(__format); for (size_t __i = 0; __beg != __end && __i < __len && !__err; ++__i) { if (__ctype.narrow(__format[__i], 0) == '%') { char __c = __ctype.narrow(__format[++__i], 0); int __mem = 0; if (__c == 'E' || __c == 'O') __c = __ctype.narrow(__format[++__i], 0); switch (__c) { const char* __cs; _CharT __wcs[10]; case 'a': const char_type* __days1[7]; __tp._M_days_abbreviated(__days1); __beg = _M_extract_name(__beg, __end, __tm->tm_wday, __days1, 7, __io, __err); break; case 'A': const char_type* __days2[7]; __tp._M_days(__days2); __beg = _M_extract_name(__beg, __end, __tm->tm_wday, __days2, 7, __io, __err); break; case 'h': case 'b': const char_type* __months1[12]; __tp._M_months_abbreviated(__months1); __beg = _M_extract_name(__beg, __end, __tm->tm_mon, __months1, 12, __io, __err); break; case 'B': const char_type* __months2[12]; __tp._M_months(__months2); __beg = _M_extract_name(__beg, __end, __tm->tm_mon, __months2, 12, __io, __err); break; case 'c': const char_type* __dt[2]; __tp._M_date_time_formats(__dt); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __dt[0]); break; case 'd': __beg = _M_extract_num(__beg, __end, __tm->tm_mday, 1, 31, 2, __io, __err); break; case 'e': if (__ctype.is(ctype_base::space, *__beg)) __beg = _M_extract_num(++__beg, __end, __tm->tm_mday, 1, 9, 1, __io, __err); else __beg = _M_extract_num(__beg, __end, __tm->tm_mday, 10, 31, 2, __io, __err); break; case 'D': __cs = "%m/%d/%y"; __ctype.widen(__cs, __cs + 9, __wcs); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __wcs); break; case 'H': __beg = _M_extract_num(__beg, __end, __tm->tm_hour, 0, 23, 2, __io, __err); break; case 'I': __beg = _M_extract_num(__beg, __end, __tm->tm_hour, 1, 12, 2, __io, __err); break; case 'm': __beg = _M_extract_num(__beg, __end, __mem, 1, 12, 2, __io, __err); if (!__err) __tm->tm_mon = __mem - 1; break; case 'M': __beg = _M_extract_num(__beg, __end, __tm->tm_min, 0, 59, 2, __io, __err); break; case 'n': if (__ctype.narrow(*__beg, 0) == '\n') ++__beg; else __err |= ios_base::failbit; break; case 'R': __cs = "%H:%M"; __ctype.widen(__cs, __cs + 6, __wcs); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __wcs); break; case 'S': __beg = _M_extract_num(__beg, __end, __tm->tm_sec, 0, 60, 2, __io, __err); break; case 't': if (__ctype.narrow(*__beg, 0) == '\t') ++__beg; else __err |= ios_base::failbit; break; case 'T': __cs = "%H:%M:%S"; __ctype.widen(__cs, __cs + 9, __wcs); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __wcs); break; case 'x': const char_type* __dates[2]; __tp._M_date_formats(__dates); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __dates[0]); break; case 'X': const char_type* __times[2]; __tp._M_time_formats(__times); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __times[0]); break; case 'y': case 'C': __beg = _M_extract_num(__beg, __end, __tm->tm_year, 0, 99, 2, __io, __err); break; case 'Y': __beg = _M_extract_num(__beg, __end, __mem, 0, 9999, 4, __io, __err); if (!__err) __tm->tm_year = __mem - 1900; break; case 'Z': if (__ctype.is(ctype_base::upper, *__beg)) { int __tmp; __beg = _M_extract_name(__beg, __end, __tmp, __timepunct_cache<_CharT>::_S_timezones, 14, __io, __err); if (__beg != __end && !__err && __tmp == 0 && (*__beg == __ctype.widen('-') || *__beg == __ctype.widen('+'))) { __beg = _M_extract_num(__beg, __end, __tmp, 0, 23, 2, __io, __err); __beg = _M_extract_num(__beg, __end, __tmp, 0, 59, 2, __io, __err); } } else __err |= ios_base::failbit; break; default: __err |= ios_base::failbit; } } else { if (__format[__i] == *__beg) ++__beg; else __err |= ios_base::failbit; } } return __beg; } template _InIter time_get<_CharT, _InIter>:: _M_extract_num(iter_type __beg, iter_type __end, int& __member, int __min, int __max, size_t __len, ios_base& __io, ios_base::iostate& __err) const { const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); int __mult = __len == 2 ? 10 : (__len == 4 ? 1000 : 1); ++__min; size_t __i = 0; int __value = 0; for (; __beg != __end && __i < __len; ++__beg, ++__i) { const char __c = __ctype.narrow(*__beg, '*'); if (__c >= '0' && __c <= '9') { __value = __value * 10 + (__c - '0'); const int __valuec = __value * __mult; if (__valuec > __max || __valuec + __mult < __min) break; __mult /= 10; } else break; } if (__i == __len) __member = __value; else __err |= ios_base::failbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: _M_extract_name(iter_type __beg, iter_type __end, int& __member, const _CharT** __names, size_t __indexlen, ios_base& __io, ios_base::iostate& __err) const { typedef char_traits<_CharT> __traits_type; const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); int* __matches = static_cast(__builtin_alloca(sizeof(int) * __indexlen)); size_t __nmatches = 0; size_t __pos = 0; bool __testvalid = true; const char_type* __name; if (__beg != __end) { const char_type __c = *__beg; for (size_t __i1 = 0; __i1 < __indexlen; ++__i1) if (__c == __names[__i1][0] || __c == __ctype.toupper(__names[__i1][0])) __matches[__nmatches++] = __i1; } while (__nmatches > 1) { size_t __minlen = __traits_type::length(__names[__matches[0]]); for (size_t __i2 = 1; __i2 < __nmatches; ++__i2) __minlen = std::min(__minlen, __traits_type::length(__names[__matches[__i2]])); ++__beg, ++__pos; if (__pos < __minlen && __beg != __end) for (size_t __i3 = 0; __i3 < __nmatches;) { __name = __names[__matches[__i3]]; if (__name[__pos] != *__beg) __matches[__i3] = __matches[--__nmatches]; else ++__i3; } else break; } if (__nmatches == 1) { ++__beg, ++__pos; __name = __names[__matches[0]]; const size_t __len = __traits_type::length(__name); while (__pos < __len && __beg != __end && __name[__pos] == *__beg) ++__beg, ++__pos; if (__len == __pos) __member = __matches[0]; else __testvalid = false; } else __testvalid = false; if (!__testvalid) __err |= ios_base::failbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: do_get_time(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { const locale& __loc = __io._M_getloc(); const __timepunct<_CharT>& __tp = use_facet<__timepunct<_CharT> >(__loc); const char_type* __times[2]; __tp._M_time_formats(__times); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __times[0]); if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: do_get_date(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { const locale& __loc = __io._M_getloc(); const __timepunct<_CharT>& __tp = use_facet<__timepunct<_CharT> >(__loc); const char_type* __dates[2]; __tp._M_date_formats(__dates); __beg = _M_extract_via_format(__beg, __end, __io, __err, __tm, __dates[0]); if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: do_get_weekday(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { typedef char_traits<_CharT> __traits_type; const locale& __loc = __io._M_getloc(); const __timepunct<_CharT>& __tp = use_facet<__timepunct<_CharT> >(__loc); const ctype<_CharT>& __ctype = use_facet >(__loc); const char_type* __days[7]; __tp._M_days_abbreviated(__days); int __tmpwday; __beg = _M_extract_name(__beg, __end, __tmpwday, __days, 7, __io, __err); if (!__err && __beg != __end) { size_t __pos = __traits_type::length(__days[__tmpwday]); __tp._M_days(__days); const char_type* __name = __days[__tmpwday]; if (__name[__pos] == *__beg) { const size_t __len = __traits_type::length(__name); while (__pos < __len && __beg != __end && __name[__pos] == *__beg) ++__beg, ++__pos; if (__len != __pos) __err |= ios_base::failbit; } } if (!__err) __tm->tm_wday = __tmpwday; if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: do_get_monthname(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { typedef char_traits<_CharT> __traits_type; const locale& __loc = __io._M_getloc(); const __timepunct<_CharT>& __tp = use_facet<__timepunct<_CharT> >(__loc); const ctype<_CharT>& __ctype = use_facet >(__loc); const char_type* __months[12]; __tp._M_months_abbreviated(__months); int __tmpmon; __beg = _M_extract_name(__beg, __end, __tmpmon, __months, 12, __io, __err); if (!__err && __beg != __end) { size_t __pos = __traits_type::length(__months[__tmpmon]); __tp._M_months(__months); const char_type* __name = __months[__tmpmon]; if (__name[__pos] == *__beg) { const size_t __len = __traits_type::length(__name); while (__pos < __len && __beg != __end && __name[__pos] == *__beg) ++__beg, ++__pos; if (__len != __pos) __err |= ios_base::failbit; } } if (!__err) __tm->tm_mon = __tmpmon; if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _InIter time_get<_CharT, _InIter>:: do_get_year(iter_type __beg, iter_type __end, ios_base& __io, ios_base::iostate& __err, tm* __tm) const { const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); size_t __i = 0; int __value = 0; for (; __beg != __end && __i < 4; ++__beg, ++__i) { const char __c = __ctype.narrow(*__beg, '*'); if (__c >= '0' && __c <= '9') __value = __value * 10 + (__c - '0'); else break; } if (__i == 2 || __i == 4) __tm->tm_year = __i == 2 ? __value : __value - 1900; else __err |= ios_base::failbit; if (__beg == __end) __err |= ios_base::eofbit; return __beg; } template _OutIter time_put<_CharT, _OutIter>:: put(iter_type __s, ios_base& __io, char_type __fill, const tm* __tm, const _CharT* __beg, const _CharT* __end) const { const locale& __loc = __io._M_getloc(); ctype<_CharT> const& __ctype = use_facet >(__loc); for (; __beg != __end; ++__beg) if (__ctype.narrow(*__beg, 0) != '%') { *__s = *__beg; ++__s; } else if (++__beg != __end) { char __format; char __mod = 0; const char __c = __ctype.narrow(*__beg, 0); if (__c != 'E' && __c != 'O') __format = __c; else if (++__beg != __end) { __mod = __c; __format = __ctype.narrow(*__beg, 0); } else break; __s = this->do_put(__s, __io, __fill, __tm, __format, __mod); } else break; return __s; } template _OutIter time_put<_CharT, _OutIter>:: do_put(iter_type __s, ios_base& __io, char_type, const tm* __tm, char __format, char __mod) const { const locale& __loc = __io._M_getloc(); ctype<_CharT> const& __ctype = use_facet >(__loc); __timepunct<_CharT> const& __tp = use_facet<__timepunct<_CharT> >(__loc); const size_t __maxlen = 128; char_type* __res = static_cast(__builtin_alloca(sizeof(char_type) * __maxlen)); char_type __fmt[4]; __fmt[0] = __ctype.widen('%'); if (!__mod) { __fmt[1] = __format; __fmt[2] = char_type(); } else { __fmt[1] = __mod; __fmt[2] = __format; __fmt[3] = char_type(); } __tp._M_put(__res, __maxlen, __fmt, __tm); return std::__write(__s, __res, char_traits::length(__res)); } template int collate<_CharT>::_M_compare(const _CharT*, const _CharT*) const { return 0; } template size_t collate<_CharT>::_M_transform(_CharT*, const _CharT*, size_t) const { return 0; } template int collate<_CharT>:: do_compare(const _CharT* __lo1, const _CharT* __hi1, const _CharT* __lo2, const _CharT* __hi2) const { const string_type __one(__lo1, __hi1); const string_type __two(__lo2, __hi2); const _CharT* __p = __one.c_str(); const _CharT* __pend = __one.data() + __one.length(); const _CharT* __q = __two.c_str(); const _CharT* __qend = __two.data() + __two.length(); for (;;) { const int __res = _M_compare(__p, __q); if (__res) return __res; __p += char_traits<_CharT>::length(__p); __q += char_traits<_CharT>::length(__q); if (__p == __pend && __q == __qend) return 0; else if (__p == __pend) return -1; else if (__q == __qend) return 1; __p++; __q++; } } template typename collate<_CharT>::string_type collate<_CharT>:: do_transform(const _CharT* __lo, const _CharT* __hi) const { string_type __str(__lo, __hi); const _CharT* __p = __str.c_str(); const _CharT* __pend = __str.data() + __str.length(); size_t __len = (__hi - __lo) * 2; string_type __ret; for (;;) { _CharT* __c = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len)); size_t __res = _M_transform(__c, __p, __len); if (__res >= __len) { __len = __res + 1; __c = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __len)); __res = _M_transform(__c, __p, __res + 1); } __ret.append(__c, __res); __p += char_traits<_CharT>::length(__p); if (__p == __pend) return __ret; __p++; __ret.push_back(_CharT()); } } template long collate<_CharT>:: do_hash(const _CharT* __lo, const _CharT* __hi) const { unsigned long __val = 0; for (; __lo < __hi; ++__lo) __val = *__lo + ((__val << 7) | (__val >> (numeric_limits::digits - 7))); return static_cast(__val); } # 2388 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/locale_facets.tcc" 3 template void __pad<_CharT, _Traits>::_S_pad(ios_base& __io, _CharT __fill, _CharT* __news, const _CharT* __olds, const streamsize __newlen, const streamsize __oldlen, const bool __num) { const size_t __plen = static_cast(__newlen - __oldlen); const ios_base::fmtflags __adjust = __io.flags() & ios_base::adjustfield; if (__adjust == ios_base::left) { _Traits::copy(__news, const_cast<_CharT*>(__olds), __oldlen); _Traits::assign(__news + __oldlen, __plen, __fill); return; } size_t __mod = 0; if (__adjust == ios_base::internal && __num) { const locale& __loc = __io._M_getloc(); const ctype<_CharT>& __ctype = use_facet >(__loc); const bool __testsign = (__ctype.widen('-') == __olds[0] || __ctype.widen('+') == __olds[0]); const bool __testhex = (__ctype.widen('0') == __olds[0] && __oldlen > 1 && (__ctype.widen('x') == __olds[1] || __ctype.widen('X') == __olds[1])); if (__testhex) { __news[0] = __olds[0]; __news[1] = __olds[1]; __mod = 2; __news += 2; } else if (__testsign) { __news[0] = __olds[0]; __mod = 1; ++__news; } } _Traits::assign(__news, __plen, __fill); _Traits::copy(__news + __plen, const_cast<_CharT*>(__olds + __mod), __oldlen - __mod); } bool __verify_grouping(const char* __grouping, size_t __grouping_size, const string& __grouping_tmp) { const size_t __n = __grouping_tmp.size() - 1; const size_t __min = std::min(__n, __grouping_size - 1); size_t __i = __n; bool __test = true; for (size_t __j = 0; __j < __min && __test; --__i, ++__j) __test = __grouping_tmp[__i] == __grouping[__j]; for (; __i && __test; --__i) __test = __grouping_tmp[__i] == __grouping[__min]; __test &= __grouping_tmp[0] <= __grouping[__min]; return __test; } template _CharT* __add_grouping(_CharT* __s, _CharT __sep, const char* __gbeg, size_t __gsize, const _CharT* __first, const _CharT* __last) { if (__last - __first > *__gbeg) { const bool __bump = __gsize != 1; __s = std::__add_grouping(__s, __sep, __gbeg + __bump, __gsize - __bump, __first, __last - *__gbeg); __first = __last - *__gbeg; *__s++ = __sep; } do *__s++ = *__first++; while (__first != __last); return __s; } extern template class moneypunct; extern template class moneypunct; extern template class moneypunct_byname; extern template class moneypunct_byname; extern template class money_get; extern template class money_put; extern template class numpunct; extern template class numpunct_byname; extern template class num_get; extern template class num_put; extern template class __timepunct; extern template class time_put; extern template class time_put_byname; extern template class time_get; extern template class time_get_byname; extern template class messages; extern template class messages_byname; extern template class ctype_byname; extern template class codecvt_byname; extern template class collate; extern template class collate_byname; extern template const codecvt& use_facet >(const locale&); extern template const collate& use_facet >(const locale&); extern template const numpunct& use_facet >(const locale&); extern template const num_put& use_facet >(const locale&); extern template const num_get& use_facet >(const locale&); extern template const moneypunct& use_facet >(const locale&); extern template const moneypunct& use_facet >(const locale&); extern template const money_put& use_facet >(const locale&); extern template const money_get& use_facet >(const locale&); extern template const __timepunct& use_facet<__timepunct >(const locale&); extern template const time_put& use_facet >(const locale&); extern template const time_get& use_facet >(const locale&); extern template const messages& use_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet<__timepunct >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template class moneypunct; extern template class moneypunct; extern template class moneypunct_byname; extern template class moneypunct_byname; extern template class money_get; extern template class money_put; extern template class numpunct; extern template class numpunct_byname; extern template class num_get; extern template class num_put; extern template class __timepunct; extern template class time_put; extern template class time_put_byname; extern template class time_get; extern template class time_get_byname; extern template class messages; extern template class messages_byname; extern template class ctype_byname; extern template class codecvt_byname; extern template class collate; extern template class collate_byname; extern template const codecvt& use_facet >(locale const&); extern template const collate& use_facet >(const locale&); extern template const numpunct& use_facet >(const locale&); extern template const num_put& use_facet >(const locale&); extern template const num_get& use_facet >(const locale&); extern template const moneypunct& use_facet >(const locale&); extern template const moneypunct& use_facet >(const locale&); extern template const money_put& use_facet >(const locale&); extern template const money_get& use_facet >(const locale&); extern template const __timepunct& use_facet<__timepunct >(const locale&); extern template const time_put& use_facet >(const locale&); extern template const time_get& use_facet >(const locale&); extern template const messages& use_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet<__timepunct >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); extern template bool has_facet >(const locale&); } # 48 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/locale" 2 3 # 41 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/ostream.tcc" 2 3 namespace std { template basic_ostream<_CharT, _Traits>::sentry:: sentry(basic_ostream<_CharT, _Traits>& __os) : _M_ok(false), _M_os(__os) { if (__os.tie() && __os.good()) __os.tie()->flush(); if (__os.good()) _M_ok = true; else __os.setstate(ios_base::failbit); } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(__ostream_type& (*__pf)(__ostream_type&)) { return __pf(*this); } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(__ios_type& (*__pf)(__ios_type&)) { __pf(*this); return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(ios_base& (*__pf)(ios_base&)) { __pf(*this); return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(bool __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(long __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { bool __b = false; const char_type __c = this->fill(); const ios_base::fmtflags __fmt = (this->flags() & ios_base::basefield); const __num_put_type& __np = __check_facet(this->_M_num_put); if ((__fmt & ios_base::oct) || (__fmt & ios_base::hex)) { const unsigned long __l = static_cast(__n); __b = __np.put(*this, *this, __c, __l).failed(); } else __b = __np.put(*this, *this, __c, __n).failed(); if (__b) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(unsigned long __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(long long __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { bool __b = false; const char_type __c = this->fill(); const ios_base::fmtflags __fmt = (this->flags() & ios_base::basefield); const __num_put_type& __np = __check_facet(this->_M_num_put); if ((__fmt & ios_base::oct) || (__fmt & ios_base::hex)) { const unsigned long long __l = (static_cast< unsigned long long>(__n)); __b = __np.put(*this, *this, __c, __l).failed(); } else __b = __np.put(*this, *this, __c, __n).failed(); if (__b) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(unsigned long long __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(double __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(long double __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(const void* __n) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_put_type& __np = __check_facet(this->_M_num_put); if (__np.put(*this, *this, this->fill(), __n).failed()) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: operator<<(__streambuf_type* __sbin) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this); if (__cerb && __sbin) { try { if (!__copy_streambufs(__sbin, this->rdbuf())) __err |= ios_base::failbit; } catch(...) { this->_M_setstate(ios_base::failbit); } } else if (!__sbin) __err |= ios_base::badbit; if (__err) this->setstate(__err); return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: put(char_type __c) { sentry __cerb(*this); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const int_type __put = this->rdbuf()->sputc(__c); if (traits_type::eq_int_type(__put, traits_type::eof())) __err |= ios_base::badbit; } catch (...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: write(const _CharT* __s, streamsize __n) { sentry __cerb(*this); if (__cerb) { try { _M_write(__s, __n); } catch (...) { this->_M_setstate(ios_base::badbit); } } return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: flush() { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { if (this->rdbuf() && this->rdbuf()->pubsync() == -1) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); return *this; } template typename basic_ostream<_CharT, _Traits>::pos_type basic_ostream<_CharT, _Traits>:: tellp() { pos_type __ret = pos_type(-1); try { if (!this->fail()) __ret = this->rdbuf()->pubseekoff(0, ios_base::cur, ios_base::out); } catch(...) { this->_M_setstate(ios_base::badbit); } return __ret; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: seekp(pos_type __pos) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { if (!this->fail()) { const pos_type __p = this->rdbuf()->pubseekpos(__pos, ios_base::out); if (__p == pos_type(off_type(-1))) __err |= ios_base::failbit; } } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); return *this; } template basic_ostream<_CharT, _Traits>& basic_ostream<_CharT, _Traits>:: seekp(off_type __off, ios_base::seekdir __dir) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { if (!this->fail()) { const pos_type __p = this->rdbuf()->pubseekoff(__off, __dir, ios_base::out); if (__p == pos_type(off_type(-1))) __err |= ios_base::failbit; } } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); return *this; } template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, _CharT __c) { typedef basic_ostream<_CharT, _Traits> __ostream_type; typename __ostream_type::sentry __cerb(__out); if (__cerb) { try { const streamsize __w = __out.width(); streamsize __len = 1; _CharT* __cs = &__c; if (__w > __len) { __cs = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __w)); __pad<_CharT, _Traits>::_S_pad(__out, __out.fill(), __cs, &__c, __w, __len, false); __len = __w; } __out._M_write(__cs, __len); __out.width(0); } catch(...) { __out._M_setstate(ios_base::badbit); } } return __out; } template basic_ostream& operator<<(basic_ostream& __out, char __c) { typedef basic_ostream __ostream_type; typename __ostream_type::sentry __cerb(__out); if (__cerb) { try { const streamsize __w = __out.width(); streamsize __len = 1; char* __cs = &__c; if (__w > __len) { __cs = static_cast(__builtin_alloca(__w)); __pad::_S_pad(__out, __out.fill(), __cs, &__c, __w, __len, false); __len = __w; } __out._M_write(__cs, __len); __out.width(0); } catch(...) { __out._M_setstate(ios_base::badbit); } } return __out; } template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, const _CharT* __s) { typedef basic_ostream<_CharT, _Traits> __ostream_type; typename __ostream_type::sentry __cerb(__out); if (__cerb && __s) { try { const streamsize __w = __out.width(); streamsize __len = static_cast(_Traits::length(__s)); if (__w > __len) { _CharT* __cs = (static_cast< _CharT*>(__builtin_alloca(sizeof(_CharT) * __w))); __pad<_CharT, _Traits>::_S_pad(__out, __out.fill(), __cs, __s, __w, __len, false); __s = __cs; __len = __w; } __out._M_write(__s, __len); __out.width(0); } catch(...) { __out._M_setstate(ios_base::badbit); } } else if (!__s) __out.setstate(ios_base::badbit); return __out; } template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, const char* __s) { typedef basic_ostream<_CharT, _Traits> __ostream_type; typedef char_traits __traits_type; typename __ostream_type::sentry __cerb(__out); if (__cerb && __s) { size_t __clen = __traits_type::length(__s); _CharT* __ws = static_cast<_CharT*>(__builtin_alloca(sizeof(_CharT) * __clen)); for (size_t __i = 0; __i < __clen; ++__i) __ws[__i] = __out.widen(__s[__i]); _CharT* __str = __ws; try { const streamsize __w = __out.width(); streamsize __len = static_cast(__clen); if (__w > __len) { _CharT* __cs = (static_cast< _CharT*>(__builtin_alloca(sizeof(_CharT) * __w))); __pad<_CharT, _Traits>::_S_pad(__out, __out.fill(), __cs, __ws, __w, __len, false); __str = __cs; __len = __w; } __out._M_write(__str, __len); __out.width(0); } catch(...) { __out._M_setstate(ios_base::badbit); } } else if (!__s) __out.setstate(ios_base::badbit); return __out; } template basic_ostream& operator<<(basic_ostream& __out, const char* __s) { typedef basic_ostream __ostream_type; typename __ostream_type::sentry __cerb(__out); if (__cerb && __s) { try { const streamsize __w = __out.width(); streamsize __len = static_cast(_Traits::length(__s)); if (__w > __len) { char* __cs = static_cast(__builtin_alloca(__w)); __pad::_S_pad(__out, __out.fill(), __cs, __s, __w, __len, false); __s = __cs; __len = __w; } __out._M_write(__s, __len); __out.width(0); } catch(...) { __out._M_setstate(ios_base::badbit); } } else if (!__s) __out.setstate(ios_base::badbit); return __out; } template basic_ostream<_CharT, _Traits>& operator<<(basic_ostream<_CharT, _Traits>& __out, const basic_string<_CharT, _Traits, _Alloc>& __str) { typedef basic_ostream<_CharT, _Traits> __ostream_type; typename __ostream_type::sentry __cerb(__out); if (__cerb) { const streamsize __w = __out.width(); streamsize __len = static_cast(__str.size()); const _CharT* __s = __str.data(); if (__w > __len) { _CharT* __cs = (static_cast< _CharT*>(__builtin_alloca(sizeof(_CharT) * __w))); __pad<_CharT, _Traits>::_S_pad(__out, __out.fill(), __cs, __s, __w, __len, false); __s = __cs; __len = __w; } __out._M_write(__s, __len); __out.width(0); } return __out; } extern template class basic_ostream; extern template ostream& endl(ostream&); extern template ostream& ends(ostream&); extern template ostream& flush(ostream&); extern template ostream& operator<<(ostream&, char); extern template ostream& operator<<(ostream&, unsigned char); extern template ostream& operator<<(ostream&, signed char); extern template ostream& operator<<(ostream&, const char*); extern template ostream& operator<<(ostream&, const unsigned char*); extern template ostream& operator<<(ostream&, const signed char*); extern template class basic_ostream; extern template wostream& endl(wostream&); extern template wostream& ends(wostream&); extern template wostream& flush(wostream&); extern template wostream& operator<<(wostream&, wchar_t); extern template wostream& operator<<(wostream&, char); extern template wostream& operator<<(wostream&, const wchar_t*); extern template wostream& operator<<(wostream&, const char*); } # 548 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ostream" 2 3 #pragma GCC visibility pop # 46 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 #pragma GCC visibility push(default) namespace std { # 60 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template class basic_istream : virtual public basic_ios<_CharT, _Traits> { public: typedef _CharT char_type; typedef typename _Traits::int_type int_type; typedef typename _Traits::pos_type pos_type; typedef typename _Traits::off_type off_type; typedef _Traits traits_type; typedef basic_streambuf<_CharT, _Traits> __streambuf_type; typedef basic_ios<_CharT, _Traits> __ios_type; typedef basic_istream<_CharT, _Traits> __istream_type; typedef num_get<_CharT, istreambuf_iterator<_CharT, _Traits> > __num_get_type; typedef ctype<_CharT> __ctype_type; template friend basic_istream<_CharT2, _Traits2>& operator>>(basic_istream<_CharT2, _Traits2>&, _CharT2&); template friend basic_istream<_CharT2, _Traits2>& operator>>(basic_istream<_CharT2, _Traits2>&, _CharT2*); protected: streamsize _M_gcount; public: # 106 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 explicit basic_istream(__streambuf_type* __sb): _M_gcount(streamsize(0)) { this->init(__sb); } virtual ~basic_istream() { _M_gcount = streamsize(0); } class sentry; friend class sentry; # 133 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 inline __istream_type& operator>>(__istream_type& (*__pf)(__istream_type&)); inline __istream_type& operator>>(__ios_type& (*__pf)(__ios_type&)); inline __istream_type& operator>>(ios_base& (*__pf)(ios_base&)); # 171 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& operator>>(bool& __n); __istream_type& operator>>(short& __n); __istream_type& operator>>(unsigned short& __n); __istream_type& operator>>(int& __n); __istream_type& operator>>(unsigned int& __n); __istream_type& operator>>(long& __n); __istream_type& operator>>(unsigned long& __n); __istream_type& operator>>(long long& __n); __istream_type& operator>>(unsigned long long& __n); __istream_type& operator>>(float& __f); __istream_type& operator>>(double& __f); __istream_type& operator>>(long double& __f); __istream_type& operator>>(void*& __p); # 232 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& operator>>(__streambuf_type* __sb); # 242 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 inline streamsize gcount() const { return _M_gcount; } # 274 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 int_type get(); # 288 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& get(char_type& __c); # 315 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& get(char_type* __s, streamsize __n, char_type __delim); # 326 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 inline __istream_type& get(char_type* __s, streamsize __n) { return this->get(__s, __n, this->widen('\n')); } # 349 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& get(__streambuf_type& __sb, char_type __delim); # 359 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 inline __istream_type& get(__streambuf_type& __sb) { return this->get(__sb, this->widen('\n')); } # 388 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& getline(char_type* __s, streamsize __n, char_type __delim); # 399 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 inline __istream_type& getline(char_type* __s, streamsize __n) { return this->getline(__s, __n, this->widen('\n')); } # 418 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& ignore(streamsize __n = 1, int_type __delim = traits_type::eof()); # 429 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 int_type peek(); # 447 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& read(char_type* __s, streamsize __n); # 466 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 streamsize readsome(char_type* __s, streamsize __n); # 482 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& putback(char_type __c); # 497 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& unget(); # 515 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 int sync(); # 529 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 pos_type tellg(); # 544 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& seekg(pos_type); # 560 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 __istream_type& seekg(off_type, ios_base::seekdir); protected: explicit basic_istream(): _M_gcount(streamsize(0)) { } }; # 580 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template class basic_istream<_CharT, _Traits>::sentry { public: typedef _Traits traits_type; typedef basic_streambuf<_CharT, _Traits> __streambuf_type; typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::__ctype_type __ctype_type; typedef typename _Traits::int_type __int_type; # 612 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 explicit sentry(basic_istream<_CharT, _Traits>& __is, bool __noskipws = false); # 622 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 operator bool() const { return _M_ok; } private: bool _M_ok; }; # 641 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __in, _CharT& __c); template basic_istream& operator>>(basic_istream& __in, unsigned char& __c) { return (__in >> reinterpret_cast(__c)); } template basic_istream& operator>>(basic_istream& __in, signed char& __c) { return (__in >> reinterpret_cast(__c)); } # 682 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __in, _CharT* __s); template basic_istream& operator>>(basic_istream& __in, unsigned char* __s) { return (__in >> reinterpret_cast(__s)); } template basic_istream& operator>>(basic_istream& __in, signed char* __s) { return (__in >> reinterpret_cast(__s)); } # 704 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template class basic_iostream : public basic_istream<_CharT, _Traits>, public basic_ostream<_CharT, _Traits> { public: typedef _CharT char_type; typedef typename _Traits::int_type int_type; typedef typename _Traits::pos_type pos_type; typedef typename _Traits::off_type off_type; typedef _Traits traits_type; typedef basic_istream<_CharT, _Traits> __istream_type; typedef basic_ostream<_CharT, _Traits> __ostream_type; explicit basic_iostream(basic_streambuf<_CharT, _Traits>* __sb) : __istream_type(), __ostream_type() { this->init(__sb); } virtual ~basic_iostream() { } protected: explicit basic_iostream() : __istream_type(), __ostream_type() { } }; # 767 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 3 template basic_istream<_CharT, _Traits>& ws(basic_istream<_CharT, _Traits>& __is); } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/istream.tcc" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/istream.tcc" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/istream.tcc" 3 namespace std { template basic_istream<_CharT, _Traits>::sentry:: sentry(basic_istream<_CharT, _Traits>& __in, bool __noskip) : _M_ok(false) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); if (__in.good()) { if (__in.tie()) __in.tie()->flush(); if (!__noskip && (__in.flags() & ios_base::skipws)) { const __int_type __eof = traits_type::eof(); __streambuf_type* __sb = __in.rdbuf(); __int_type __c = __sb->sgetc(); const __ctype_type& __ct = __check_facet(__in._M_ctype); while (!traits_type::eq_int_type(__c, __eof) && __ct.is(ctype_base::space, traits_type::to_char_type(__c))) __c = __sb->snextc(); if (traits_type::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; } } if (__in.good() && __err == ios_base::goodbit) _M_ok = true; else { __err |= ios_base::failbit; __in.setstate(__err); } } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(__istream_type& (*__pf)(__istream_type&)) { return __pf(*this); } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(__ios_type& (*__pf)(__ios_type&)) { __pf(*this); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(ios_base& (*__pf)(ios_base&)) { __pf(*this); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(bool& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(short& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { long __l; const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __l); if (!(__err & ios_base::failbit) && (numeric_limits::min() <= __l && __l <= numeric_limits::max())) __n = __l; else __err |= ios_base::failbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(unsigned short& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(int& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { long __l; const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __l); if (!(__err & ios_base::failbit) && (numeric_limits::min() <= __l && __l <= numeric_limits::max())) __n = __l; else __err |= ios_base::failbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(unsigned int& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(long& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(unsigned long& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(long long& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(unsigned long long& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(float& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(double& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(long double& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(void*& __n) { sentry __cerb(*this, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __num_get_type& __ng = __check_facet(this->_M_num_get); __ng.get(*this, 0, *this, __err, __n); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: operator>>(__streambuf_type* __sbout) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, false); if (__cerb && __sbout) { try { if (!__copy_streambufs(this->rdbuf(), __sbout)) __err |= ios_base::failbit; } catch(...) { this->_M_setstate(ios_base::failbit); } } else if (!__sbout) __err |= ios_base::failbit; if (__err) this->setstate(__err); return *this; } template typename basic_istream<_CharT, _Traits>::int_type basic_istream<_CharT, _Traits>:: get(void) { const int_type __eof = traits_type::eof(); int_type __c = __eof; _M_gcount = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, true); if (__cerb) { try { __c = this->rdbuf()->sbumpc(); if (!traits_type::eq_int_type(__c, __eof)) _M_gcount = 1; else __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } } if (!_M_gcount) __err |= ios_base::failbit; if (__err) this->setstate(__err); return __c; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: get(char_type& __c) { _M_gcount = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, true); if (__cerb) { try { const int_type __cb = this->rdbuf()->sbumpc(); if (!traits_type::eq_int_type(__cb, traits_type::eof())) { _M_gcount = 1; __c = traits_type::to_char_type(__cb); } else __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } } if (!_M_gcount) __err |= ios_base::failbit; if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: get(char_type* __s, streamsize __n, char_type __delim) { _M_gcount = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, true); if (__cerb) { try { const int_type __idelim = traits_type::to_int_type(__delim); const int_type __eof = traits_type::eof(); __streambuf_type* __sb = this->rdbuf(); int_type __c = __sb->sgetc(); while (_M_gcount + 1 < __n && !traits_type::eq_int_type(__c, __eof) && !traits_type::eq_int_type(__c, __idelim)) { *__s++ = traits_type::to_char_type(__c); ++_M_gcount; __c = __sb->snextc(); } if (traits_type::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } } *__s = char_type(); if (!_M_gcount) __err |= ios_base::failbit; if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: get(__streambuf_type& __sb, char_type __delim) { _M_gcount = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, true); if (__cerb) { try { const int_type __idelim = traits_type::to_int_type(__delim); const int_type __eof = traits_type::eof(); __streambuf_type* __this_sb = this->rdbuf(); int_type __c = __this_sb->sgetc(); char_type __c2 = traits_type::to_char_type(__c); while (!traits_type::eq_int_type(__c, __eof) && !traits_type::eq_int_type(__c, __idelim) && !traits_type::eq_int_type(__sb.sputc(__c2), __eof)) { ++_M_gcount; __c = __this_sb->snextc(); __c2 = traits_type::to_char_type(__c); } if (traits_type::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } } if (!_M_gcount) __err |= ios_base::failbit; if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: getline(char_type* __s, streamsize __n, char_type __delim) { _M_gcount = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); sentry __cerb(*this, true); if (__cerb) { try { const int_type __idelim = traits_type::to_int_type(__delim); const int_type __eof = traits_type::eof(); __streambuf_type* __sb = this->rdbuf(); int_type __c = __sb->sgetc(); while (_M_gcount + 1 < __n && !traits_type::eq_int_type(__c, __eof) && !traits_type::eq_int_type(__c, __idelim)) { streamsize __size = std::min(streamsize(__sb->egptr() - __sb->gptr()), __n - _M_gcount - 1); if (__size > 1) { const char_type* __p = traits_type::find(__sb->gptr(), __size, __delim); if (__p) __size = __p - __sb->gptr(); traits_type::copy(__s, __sb->gptr(), __size); __s += __size; __sb->gbump(__size); _M_gcount += __size; __c = __sb->sgetc(); } else { *__s++ = traits_type::to_char_type(__c); ++_M_gcount; __c = __sb->snextc(); } } if (traits_type::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; else if (traits_type::eq_int_type(__c, __idelim)) { ++_M_gcount; __sb->sbumpc(); } else __err |= ios_base::failbit; } catch(...) { this->_M_setstate(ios_base::badbit); } } *__s = char_type(); if (!_M_gcount) __err |= ios_base::failbit; if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: ignore(streamsize __n, int_type __delim) { _M_gcount = 0; sentry __cerb(*this, true); if (__cerb && __n > 0) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const int_type __eof = traits_type::eof(); __streambuf_type* __sb = this->rdbuf(); int_type __c; if (__n != numeric_limits::max()) --__n; while (_M_gcount <= __n && !traits_type::eq_int_type(__c = __sb->sbumpc(), __eof)) { ++_M_gcount; if (traits_type::eq_int_type(__c, __delim)) break; } if (traits_type::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template typename basic_istream<_CharT, _Traits>::int_type basic_istream<_CharT, _Traits>:: peek(void) { int_type __c = traits_type::eof(); _M_gcount = 0; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { __c = this->rdbuf()->sgetc(); if (traits_type::eq_int_type(__c, traits_type::eof())) __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return __c; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: read(char_type* __s, streamsize __n) { _M_gcount = 0; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { _M_gcount = this->rdbuf()->sgetn(__s, __n); if (_M_gcount != __n) __err |= (ios_base::eofbit | ios_base::failbit); } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template streamsize basic_istream<_CharT, _Traits>:: readsome(char_type* __s, streamsize __n) { _M_gcount = 0; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const streamsize __num = this->rdbuf()->in_avail(); if (__num > 0) _M_gcount = this->rdbuf()->sgetn(__s, std::min(__num, __n)); else if (__num == -1) __err |= ios_base::eofbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return _M_gcount; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: putback(char_type __c) { _M_gcount = 0; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const int_type __eof = traits_type::eof(); __streambuf_type* __sb = this->rdbuf(); if (!__sb || traits_type::eq_int_type(__sb->sputbackc(__c), __eof)) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: unget(void) { _M_gcount = 0; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const int_type __eof = traits_type::eof(); __streambuf_type* __sb = this->rdbuf(); if (!__sb || traits_type::eq_int_type(__sb->sungetc(), __eof)) __err |= ios_base::badbit; } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return *this; } template int basic_istream<_CharT, _Traits>:: sync(void) { int __ret = -1; sentry __cerb(*this, true); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { __streambuf_type* __sb = this->rdbuf(); if (__sb) { if (__sb->pubsync() == -1) __err |= ios_base::badbit; else __ret = 0; } } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); } return __ret; } template typename basic_istream<_CharT, _Traits>::pos_type basic_istream<_CharT, _Traits>:: tellg(void) { pos_type __ret = pos_type(-1); try { if (!this->fail()) __ret = this->rdbuf()->pubseekoff(0, ios_base::cur, ios_base::in); } catch(...) { this->_M_setstate(ios_base::badbit); } return __ret; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: seekg(pos_type __pos) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { if (!this->fail()) { const pos_type __p = this->rdbuf()->pubseekpos(__pos, ios_base::in); if (__p == pos_type(off_type(-1))) __err |= ios_base::failbit; } } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& basic_istream<_CharT, _Traits>:: seekg(off_type __off, ios_base::seekdir __dir) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { if (!this->fail()) { const pos_type __p = this->rdbuf()->pubseekoff(__off, __dir, ios_base::in); if (__p == pos_type(off_type(-1))) __err |= ios_base::failbit; } } catch(...) { this->_M_setstate(ios_base::badbit); } if (__err) this->setstate(__err); return *this; } template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __in, _CharT& __c) { typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::int_type __int_type; typename __istream_type::sentry __cerb(__in, false); if (__cerb) { ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); try { const __int_type __cb = __in.rdbuf()->sbumpc(); if (!_Traits::eq_int_type(__cb, _Traits::eof())) __c = _Traits::to_char_type(__cb); else __err |= (ios_base::eofbit | ios_base::failbit); } catch(...) { __in._M_setstate(ios_base::badbit); } if (__err) __in.setstate(__err); } return __in; } template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __in, _CharT* __s) { typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::__streambuf_type __streambuf_type; typedef typename _Traits::int_type int_type; typedef _CharT char_type; typedef ctype<_CharT> __ctype_type; streamsize __extracted = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); typename __istream_type::sentry __cerb(__in, false); if (__cerb) { try { streamsize __num = __in.width(); if (__num <= 0) __num = numeric_limits::max(); const __ctype_type& __ct = use_facet<__ctype_type>(__in.getloc()); const int_type __eof = _Traits::eof(); __streambuf_type* __sb = __in.rdbuf(); int_type __c = __sb->sgetc(); while (__extracted < __num - 1 && !_Traits::eq_int_type(__c, __eof) && !__ct.is(ctype_base::space, _Traits::to_char_type(__c))) { *__s++ = _Traits::to_char_type(__c); ++__extracted; __c = __sb->snextc(); } if (_Traits::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; *__s = char_type(); __in.width(0); } catch(...) { __in._M_setstate(ios_base::badbit); } } if (!__extracted) __err |= ios_base::failbit; if (__err) __in.setstate(__err); return __in; } template basic_istream<_CharT,_Traits>& ws(basic_istream<_CharT,_Traits>& __in) { typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::__streambuf_type __streambuf_type; typedef typename __istream_type::__ctype_type __ctype_type; typedef typename __istream_type::int_type __int_type; const __ctype_type& __ct = use_facet<__ctype_type>(__in.getloc()); const __int_type __eof = _Traits::eof(); __streambuf_type* __sb = __in.rdbuf(); __int_type __c = __sb->sgetc(); while (!_Traits::eq_int_type(__c, __eof) && __ct.is(ctype_base::space, _Traits::to_char_type(__c))) __c = __sb->snextc(); if (_Traits::eq_int_type(__c, __eof)) __in.setstate(ios_base::eofbit); return __in; } template basic_istream<_CharT, _Traits>& operator>>(basic_istream<_CharT, _Traits>& __in, basic_string<_CharT, _Traits, _Alloc>& __str) { typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::int_type __int_type; typedef typename __istream_type::__streambuf_type __streambuf_type; typedef typename __istream_type::__ctype_type __ctype_type; typedef basic_string<_CharT, _Traits, _Alloc> __string_type; typedef typename __string_type::size_type __size_type; __size_type __extracted = 0; ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); typename __istream_type::sentry __cerb(__in, false); if (__cerb) { try { __str.erase(); _CharT __buf[128]; __size_type __len = 0; const streamsize __w = __in.width(); const __size_type __n = __w > 0 ? static_cast<__size_type>(__w) : __str.max_size(); const __ctype_type& __ct = use_facet<__ctype_type>(__in.getloc()); const __int_type __eof = _Traits::eof(); __streambuf_type* __sb = __in.rdbuf(); __int_type __c = __sb->sgetc(); while (__extracted < __n && !_Traits::eq_int_type(__c, __eof) && !__ct.is(ctype_base::space, _Traits::to_char_type(__c))) { if (__len == sizeof(__buf) / sizeof(_CharT)) { __str.append(__buf, sizeof(__buf) / sizeof(_CharT)); __len = 0; } __buf[__len++] = _Traits::to_char_type(__c); ++__extracted; __c = __sb->snextc(); } __str.append(__buf, __len); if (_Traits::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; __in.width(0); } catch(...) { __in._M_setstate(ios_base::badbit); } } if (!__extracted) __err |= ios_base::failbit; if (__err) __in.setstate(__err); return __in; } template basic_istream<_CharT, _Traits>& getline(basic_istream<_CharT, _Traits>& __in, basic_string<_CharT, _Traits, _Alloc>& __str, _CharT __delim) { typedef basic_istream<_CharT, _Traits> __istream_type; typedef typename __istream_type::int_type __int_type; typedef typename __istream_type::__streambuf_type __streambuf_type; typedef typename __istream_type::__ctype_type __ctype_type; typedef basic_string<_CharT, _Traits, _Alloc> __string_type; typedef typename __string_type::size_type __size_type; __size_type __extracted = 0; const __size_type __n = __str.max_size(); ios_base::iostate __err = ios_base::iostate(ios_base::goodbit); typename __istream_type::sentry __cerb(__in, true); if (__cerb) { try { __str.erase(); _CharT __buf[128]; __size_type __len = 0; const __int_type __idelim = _Traits::to_int_type(__delim); const __int_type __eof = _Traits::eof(); __streambuf_type* __sb = __in.rdbuf(); __int_type __c = __sb->sgetc(); while (__extracted < __n && !_Traits::eq_int_type(__c, __eof) && !_Traits::eq_int_type(__c, __idelim)) { if (__len == sizeof(__buf) / sizeof(_CharT)) { __str.append(__buf, sizeof(__buf) / sizeof(_CharT)); __len = 0; } __buf[__len++] = _Traits::to_char_type(__c); ++__extracted; __c = __sb->snextc(); } __str.append(__buf, __len); if (_Traits::eq_int_type(__c, __eof)) __err |= ios_base::eofbit; else if (_Traits::eq_int_type(__c, __idelim)) { ++__extracted; __sb->sbumpc(); } else __err |= ios_base::failbit; } catch(...) { __in._M_setstate(ios_base::badbit); } } if (!__extracted) __err |= ios_base::failbit; if (__err) __in.setstate(__err); return __in; } template inline basic_istream<_CharT,_Traits>& getline(basic_istream<_CharT, _Traits>& __in, basic_string<_CharT,_Traits,_Alloc>& __str) { return getline(__in, __str, __in.widen('\n')); } extern template class basic_istream; extern template istream& ws(istream&); extern template istream& operator>>(istream&, char&); extern template istream& operator>>(istream&, char*); extern template istream& operator>>(istream&, unsigned char&); extern template istream& operator>>(istream&, signed char&); extern template istream& operator>>(istream&, unsigned char*); extern template istream& operator>>(istream&, signed char*); extern template class basic_iostream; extern template class basic_istream; extern template wistream& ws(wistream&); extern template wistream& operator>>(wistream&, wchar_t&); extern template wistream& operator>>(wistream&, wchar_t*); extern template class basic_iostream; } # 774 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/istream" 2 3 #pragma GCC visibility pop # 47 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 2 3 namespace std { # 63 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iostream" 3 extern istream cin; extern ostream cout; extern ostream cerr; extern ostream clog; extern wistream wcin; extern wostream wcout; extern wostream wcerr; extern wostream wclog; static ios_base::Init __ioinit; } # 54 "../../src/Utility/macros.hh" 2 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 1 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 # 44 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/basic_file.h" 1 3 # 42 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/basic_file.h" 3 # 43 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/i686-pc-linux-gnu/bits/basic_file.h" 3 namespace std { template class __basic_file; template<> class __basic_file { __c_file* _M_cfile; bool _M_cfile_created; public: __basic_file(__c_lock* __lock = 0); __basic_file* open(const char* __name, ios_base::openmode __mode, int __prot = 0664); __basic_file* sys_open(__c_file* __file, ios_base::openmode); __basic_file* sys_open(int __fd, ios_base::openmode __mode); __basic_file* close(); bool is_open() const; int fd(); __c_file* file(); ~__basic_file(); streamsize xsputn(const char* __s, streamsize __n); streamsize xsputn_2(const char* __s1, streamsize __n1, const char* __s2, streamsize __n2); streamsize xsgetn(char* __s, streamsize __n); streamoff seekoff(streamoff __off, ios_base::seekdir __way); int sync(); streamsize showmanyc(); }; } # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 2 3 #pragma GCC visibility push(default) namespace std { # 70 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 template class basic_filebuf : public basic_streambuf<_CharT, _Traits> { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename traits_type::int_type int_type; typedef typename traits_type::pos_type pos_type; typedef typename traits_type::off_type off_type; typedef basic_streambuf __streambuf_type; typedef basic_filebuf __filebuf_type; typedef __basic_file __file_type; typedef typename traits_type::state_type __state_type; typedef codecvt __codecvt_type; friend class ios_base; protected: __c_lock _M_lock; __file_type _M_file; ios_base::openmode _M_mode; __state_type _M_state_beg; # 137 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __state_type _M_state_cur; # 146 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __state_type _M_state_last; char_type* _M_buf; # 162 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 size_t _M_buf_size; bool _M_buf_allocated; # 181 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 bool _M_reading; bool _M_writing; # 192 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 char_type _M_pback; char_type* _M_pback_cur_save; char_type* _M_pback_end_save; bool _M_pback_init; const __codecvt_type* _M_codecvt; # 208 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 char* _M_ext_buf; streamsize _M_ext_buf_size; # 224 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 const char* _M_ext_next; char* _M_ext_end; # 234 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void _M_create_pback() { if (!_M_pback_init) { _M_pback_cur_save = this->gptr(); _M_pback_end_save = this->egptr(); this->setg(&_M_pback, &_M_pback, &_M_pback + 1); _M_pback_init = true; } } # 253 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void _M_destroy_pback() throw() { if (_M_pback_init) { _M_pback_cur_save += this->gptr() != this->eback(); this->setg(this->_M_buf, _M_pback_cur_save, _M_pback_end_save); _M_pback_init = false; } } public: basic_filebuf(); virtual ~basic_filebuf() { this->close(); } bool is_open() const throw() { return _M_file.is_open(); } # 302 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __filebuf_type* open(const char* __s, ios_base::openmode __mode); # 316 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __filebuf_type* close() throw(); protected: void _M_allocate_internal_buffer(); void _M_destroy_internal_buffer() throw(); virtual streamsize showmanyc(); virtual int_type underflow(); virtual int_type pbackfail(int_type __c = _Traits::eof()); # 366 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 virtual int_type overflow(int_type __c = _Traits::eof()); # 376 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 bool _M_convert_to_external(char_type*, streamsize); # 391 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 virtual __streambuf_type* setbuf(char_type* __s, streamsize __n); virtual pos_type seekoff(off_type __off, ios_base::seekdir __way, ios_base::openmode __mode = ios_base::in | ios_base::out); virtual pos_type seekpos(pos_type __pos, ios_base::openmode __mode = ios_base::in | ios_base::out); pos_type _M_seek(off_type __off, ios_base::seekdir __way, __state_type __state); virtual int sync(); virtual void imbue(const locale& __loc); virtual streamsize xsgetn(char_type* __s, streamsize __n); virtual streamsize xsputn(const char_type* __s, streamsize __n); bool _M_terminate_output(); # 452 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void _M_set_buffer(streamsize __off) { const bool __testin = this->_M_mode & ios_base::in; const bool __testout = this->_M_mode & ios_base::out; if (__testin && __off > 0) this->setg(this->_M_buf, this->_M_buf, this->_M_buf + __off); else this->setg(this->_M_buf, this->_M_buf, this->_M_buf); if (__testout && __off == 0 && this->_M_buf_size > 1 ) this->setp(this->_M_buf, this->_M_buf + this->_M_buf_size - 1); else this->setp(__null, __null); } }; # 479 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 template class basic_ifstream : public basic_istream<_CharT, _Traits> { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename traits_type::int_type int_type; typedef typename traits_type::pos_type pos_type; typedef typename traits_type::off_type off_type; typedef basic_filebuf __filebuf_type; typedef basic_istream __istream_type; private: __filebuf_type _M_filebuf; public: # 511 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 basic_ifstream() : __istream_type(), _M_filebuf() { this->init(&_M_filebuf); } # 524 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 explicit basic_ifstream(const char* __s, ios_base::openmode __mode = ios_base::in) : __istream_type(), _M_filebuf() { this->init(&_M_filebuf); this->open(__s, __mode); } ~basic_ifstream() { } # 548 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __filebuf_type* rdbuf() const { return const_cast<__filebuf_type*>(&_M_filebuf); } bool is_open() { return _M_filebuf.is_open(); } # 570 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void open(const char* __s, ios_base::openmode __mode = ios_base::in) { if (!_M_filebuf.open(__s, __mode | ios_base::in)) this->setstate(ios_base::failbit); } void close() { if (!_M_filebuf.close()) this->setstate(ios_base::failbit); } }; # 601 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 template class basic_ofstream : public basic_ostream<_CharT,_Traits> { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename traits_type::int_type int_type; typedef typename traits_type::pos_type pos_type; typedef typename traits_type::off_type off_type; typedef basic_filebuf __filebuf_type; typedef basic_ostream __ostream_type; private: __filebuf_type _M_filebuf; public: # 633 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 basic_ofstream(): __ostream_type(), _M_filebuf() { this->init(&_M_filebuf); } # 647 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 explicit basic_ofstream(const char* __s, ios_base::openmode __mode = ios_base::out|ios_base::trunc) : __ostream_type(), _M_filebuf() { this->init(&_M_filebuf); this->open(__s, __mode); } ~basic_ofstream() { } # 672 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __filebuf_type* rdbuf() const { return const_cast<__filebuf_type*>(&_M_filebuf); } bool is_open() { return _M_filebuf.is_open(); } # 694 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void open(const char* __s, ios_base::openmode __mode = ios_base::out | ios_base::trunc) { if (!_M_filebuf.open(__s, __mode | ios_base::out)) this->setstate(ios_base::failbit); } void close() { if (!_M_filebuf.close()) this->setstate(ios_base::failbit); } }; # 726 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 template class basic_fstream : public basic_iostream<_CharT, _Traits> { public: typedef _CharT char_type; typedef _Traits traits_type; typedef typename traits_type::int_type int_type; typedef typename traits_type::pos_type pos_type; typedef typename traits_type::off_type off_type; typedef basic_filebuf __filebuf_type; typedef basic_ios __ios_type; typedef basic_iostream __iostream_type; private: __filebuf_type _M_filebuf; public: # 759 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 basic_fstream() : __iostream_type(), _M_filebuf() { this->init(&_M_filebuf); } # 771 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 explicit basic_fstream(const char* __s, ios_base::openmode __mode = ios_base::in | ios_base::out) : __iostream_type(__null), _M_filebuf() { this->init(&_M_filebuf); this->open(__s, __mode); } ~basic_fstream() { } # 796 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 __filebuf_type* rdbuf() const { return const_cast<__filebuf_type*>(&_M_filebuf); } bool is_open() { return _M_filebuf.is_open(); } # 818 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 3 void open(const char* __s, ios_base::openmode __mode = ios_base::in | ios_base::out) { if (!_M_filebuf.open(__s, __mode)) this->setstate(ios_base::failbit); } void close() { if (!_M_filebuf.close()) this->setstate(ios_base::failbit); } }; } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/fstream.tcc" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/fstream.tcc" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/fstream.tcc" 3 namespace std { template void basic_filebuf<_CharT, _Traits>:: _M_allocate_internal_buffer() { if (!_M_buf_allocated && !this->_M_buf) { this->_M_buf = new char_type[this->_M_buf_size]; _M_buf_allocated = true; } } template void basic_filebuf<_CharT, _Traits>:: _M_destroy_internal_buffer() throw() { if (_M_buf_allocated) { delete [] this->_M_buf; this->_M_buf = __null; _M_buf_allocated = false; } delete [] _M_ext_buf; _M_ext_buf = __null; _M_ext_buf_size = 0; _M_ext_next = __null; _M_ext_end = __null; } template basic_filebuf<_CharT, _Traits>:: basic_filebuf() : __streambuf_type(), _M_lock(), _M_file(&_M_lock), _M_mode(ios_base::openmode(0)), _M_state_beg(), _M_state_cur(), _M_state_last(), _M_buf(__null), _M_buf_size(8192), _M_buf_allocated(false), _M_reading(false), _M_writing(false), _M_pback(), _M_pback_cur_save(0), _M_pback_end_save(0), _M_pback_init(false), _M_codecvt(0), _M_ext_buf(0), _M_ext_buf_size(0), _M_ext_next(0), _M_ext_end(0) { if (has_facet<__codecvt_type>(this->_M_buf_locale)) _M_codecvt = &use_facet<__codecvt_type>(this->_M_buf_locale); } template typename basic_filebuf<_CharT, _Traits>::__filebuf_type* basic_filebuf<_CharT, _Traits>:: open(const char* __s, ios_base::openmode __mode) { __filebuf_type *__ret = __null; if (!this->is_open()) { _M_file.open(__s, __mode); if (this->is_open()) { _M_allocate_internal_buffer(); this->_M_mode = __mode; _M_reading = false; _M_writing = false; _M_set_buffer(-1); _M_state_last = _M_state_cur = _M_state_beg; if ((__mode & ios_base::ate) && this->seekoff(0, ios_base::end, __mode) == pos_type(off_type(-1))) this->close(); else __ret = this; } } return __ret; } template typename basic_filebuf<_CharT, _Traits>::__filebuf_type* basic_filebuf<_CharT, _Traits>:: close() throw() { __filebuf_type* __ret = __null; if (this->is_open()) { bool __testfail = false; try { if (!_M_terminate_output()) __testfail = true; } catch(...) { __testfail = true; } this->_M_mode = ios_base::openmode(0); this->_M_pback_init = false; _M_destroy_internal_buffer(); _M_reading = false; _M_writing = false; _M_set_buffer(-1); _M_state_last = _M_state_cur = _M_state_beg; if (!_M_file.close()) __testfail = true; if (!__testfail) __ret = this; } return __ret; } template streamsize basic_filebuf<_CharT, _Traits>:: showmanyc() { streamsize __ret = -1; const bool __testin = this->_M_mode & ios_base::in; if (__testin && this->is_open()) { __ret = this->egptr() - this->gptr(); if (__check_facet(_M_codecvt).encoding() >= 0) __ret += _M_file.showmanyc() / _M_codecvt->max_length(); } return __ret; } template typename basic_filebuf<_CharT, _Traits>::int_type basic_filebuf<_CharT, _Traits>:: underflow() { int_type __ret = traits_type::eof(); const bool __testin = this->_M_mode & ios_base::in; if (__testin && !_M_writing) { _M_destroy_pback(); if (this->gptr() < this->egptr()) return traits_type::to_int_type(*this->gptr()); const size_t __buflen = this->_M_buf_size > 1 ? this->_M_buf_size - 1 : 1; bool __got_eof = false; streamsize __ilen = 0; codecvt_base::result __r = codecvt_base::ok; if (__check_facet(_M_codecvt).always_noconv()) { __ilen = _M_file.xsgetn(reinterpret_cast(this->eback()), __buflen); if (__ilen == 0) __got_eof = true; } else { const int __enc = _M_codecvt->encoding(); streamsize __blen; streamsize __rlen; if (__enc > 0) __blen = __rlen = __buflen * __enc; else { __blen = __buflen + _M_codecvt->max_length() - 1; __rlen = __buflen; } const streamsize __remainder = _M_ext_end - _M_ext_next; __rlen = __rlen > __remainder ? __rlen - __remainder : 0; if (_M_reading && this->egptr() == this->eback() && __remainder) __rlen = 0; if (_M_ext_buf_size < __blen) { char* __buf = new char[__blen]; if (__remainder) std::memcpy(__buf, _M_ext_next, __remainder); delete [] _M_ext_buf; _M_ext_buf = __buf; _M_ext_buf_size = __blen; } else if (__remainder) std::memmove(_M_ext_buf, _M_ext_next, __remainder); _M_ext_next = _M_ext_buf; _M_ext_end = _M_ext_buf + __remainder; _M_state_last = _M_state_cur; do { if (__rlen > 0) { if (_M_ext_end - _M_ext_buf + __rlen > _M_ext_buf_size) { __throw_ios_failure(("basic_filebuf::underflow " "codecvt::max_length() " "is not valid")); } streamsize __elen = _M_file.xsgetn(_M_ext_end, __rlen); if (__elen == 0) __got_eof = true; else if (__elen == -1) break; _M_ext_end += __elen; } char_type* __iend; __r = _M_codecvt->in(_M_state_cur, _M_ext_next, _M_ext_end, _M_ext_next, this->eback(), this->eback() + __buflen, __iend); if (__r == codecvt_base::noconv) { size_t __avail = _M_ext_end - _M_ext_buf; __ilen = std::min(__avail, __buflen); traits_type::copy(this->eback(), reinterpret_cast(_M_ext_buf), __ilen); _M_ext_next = _M_ext_buf + __ilen; } else __ilen = __iend - this->eback(); if (__r == codecvt_base::error) break; __rlen = 1; } while (__ilen == 0 && !__got_eof); } if (__ilen > 0) { _M_set_buffer(__ilen); _M_reading = true; __ret = traits_type::to_int_type(*this->gptr()); } else if (__got_eof) { _M_set_buffer(-1); _M_reading = false; if (__r == codecvt_base::partial) __throw_ios_failure(("basic_filebuf::underflow " "incomplete character in file")); } else if (__r == codecvt_base::error) __throw_ios_failure(("basic_filebuf::underflow " "invalid byte sequence in file")); else __throw_ios_failure(("basic_filebuf::underflow " "error reading the file")); } return __ret; } template typename basic_filebuf<_CharT, _Traits>::int_type basic_filebuf<_CharT, _Traits>:: pbackfail(int_type __i) { int_type __ret = traits_type::eof(); const bool __testin = this->_M_mode & ios_base::in; if (__testin && !_M_writing) { const bool __testpb = this->_M_pback_init; const bool __testeof = traits_type::eq_int_type(__i, __ret); int_type __tmp; if (this->eback() < this->gptr()) { this->gbump(-1); __tmp = traits_type::to_int_type(*this->gptr()); } else if (this->seekoff(-1, ios_base::cur) != pos_type(off_type(-1))) { __tmp = this->underflow(); if (traits_type::eq_int_type(__tmp, __ret)) return __ret; } else { return __ret; } if (!__testeof && traits_type::eq_int_type(__i, __tmp)) __ret = __i; else if (__testeof) __ret = traits_type::not_eof(__i); else if (!__testpb) { _M_create_pback(); _M_reading = true; *this->gptr() = traits_type::to_char_type(__i); __ret = __i; } } return __ret; } template typename basic_filebuf<_CharT, _Traits>::int_type basic_filebuf<_CharT, _Traits>:: overflow(int_type __c) { int_type __ret = traits_type::eof(); const bool __testeof = traits_type::eq_int_type(__c, __ret); const bool __testout = this->_M_mode & ios_base::out; if (__testout && !_M_reading) { if (this->pbase() < this->pptr()) { if (!__testeof) { *this->pptr() = traits_type::to_char_type(__c); this->pbump(1); } if (_M_convert_to_external(this->pbase(), this->pptr() - this->pbase())) { _M_set_buffer(0); __ret = traits_type::not_eof(__c); } } else if (this->_M_buf_size > 1) { _M_set_buffer(0); _M_writing = true; if (!__testeof) { *this->pptr() = traits_type::to_char_type(__c); this->pbump(1); } __ret = traits_type::not_eof(__c); } else { char_type __conv = traits_type::to_char_type(__c); if (__testeof || _M_convert_to_external(&__conv, 1)) { _M_writing = true; __ret = traits_type::not_eof(__c); } } } return __ret; } template bool basic_filebuf<_CharT, _Traits>:: _M_convert_to_external(_CharT* __ibuf, streamsize __ilen) { streamsize __elen; streamsize __plen; if (__check_facet(_M_codecvt).always_noconv()) { __elen = _M_file.xsputn(reinterpret_cast(__ibuf), __ilen); __plen = __ilen; } else { streamsize __blen = __ilen * _M_codecvt->max_length(); char* __buf = static_cast(__builtin_alloca(__blen)); char* __bend; const char_type* __iend; codecvt_base::result __r; __r = _M_codecvt->out(_M_state_cur, __ibuf, __ibuf + __ilen, __iend, __buf, __buf + __blen, __bend); if (__r == codecvt_base::ok || __r == codecvt_base::partial) __blen = __bend - __buf; else if (__r == codecvt_base::noconv) { __buf = reinterpret_cast(__ibuf); __blen = __ilen; } else __throw_ios_failure(("basic_filebuf::_M_convert_to_external " "conversion error")); __elen = _M_file.xsputn(__buf, __blen); __plen = __blen; if (__r == codecvt_base::partial && __elen == __plen) { const char_type* __iresume = __iend; streamsize __rlen = this->pptr() - __iend; __r = _M_codecvt->out(_M_state_cur, __iresume, __iresume + __rlen, __iend, __buf, __buf + __blen, __bend); if (__r != codecvt_base::error) { __rlen = __bend - __buf; __elen = _M_file.xsputn(__buf, __rlen); __plen = __rlen; } else __throw_ios_failure(("basic_filebuf::_M_convert_to_external " "conversion error")); } } return __elen == __plen; } template streamsize basic_filebuf<_CharT, _Traits>:: xsgetn(_CharT* __s, streamsize __n) { streamsize __ret = 0; if (this->_M_pback_init) { if (__n > 0 && this->gptr() == this->eback()) { *__s++ = *this->gptr(); this->gbump(1); __ret = 1; --__n; } _M_destroy_pback(); } const bool __testin = this->_M_mode & ios_base::in; const streamsize __buflen = this->_M_buf_size > 1 ? this->_M_buf_size - 1 : 1; if (__n > __buflen && __check_facet(_M_codecvt).always_noconv() && __testin && !_M_writing) { const streamsize __avail = this->egptr() - this->gptr(); if (__avail != 0) { if (__avail == 1) *__s = *this->gptr(); else traits_type::copy(__s, this->gptr(), __avail); __s += __avail; this->gbump(__avail); __ret += __avail; __n -= __avail; } const streamsize __len = _M_file.xsgetn(reinterpret_cast(__s), __n); if (__len == -1) __throw_ios_failure(("basic_filebuf::xsgetn " "error reading the file")); __ret += __len; if (__len == __n) { _M_set_buffer(0); _M_reading = true; } else if (__len == 0) { _M_set_buffer(-1); _M_reading = false; } } else __ret += __streambuf_type::xsgetn(__s, __n); return __ret; } template streamsize basic_filebuf<_CharT, _Traits>:: xsputn(const _CharT* __s, streamsize __n) { streamsize __ret = 0; const bool __testout = this->_M_mode & ios_base::out; if (__check_facet(_M_codecvt).always_noconv() && __testout && !_M_reading) { const streamsize __chunk = 1ul << 10; streamsize __bufavail = this->epptr() - this->pptr(); if (!_M_writing && this->_M_buf_size > 1) __bufavail = this->_M_buf_size - 1; const streamsize __limit = std::min(__chunk, __bufavail); if (__n >= __limit) { const streamsize __buffill = this->pptr() - this->pbase(); const char* __buf = reinterpret_cast(this->pbase()); __ret = _M_file.xsputn_2(__buf, __buffill, reinterpret_cast(__s), __n); if (__ret == __buffill + __n) { _M_set_buffer(0); _M_writing = true; } if (__ret > __buffill) __ret -= __buffill; else __ret = 0; } else __ret = __streambuf_type::xsputn(__s, __n); } else __ret = __streambuf_type::xsputn(__s, __n); return __ret; } template typename basic_filebuf<_CharT, _Traits>::__streambuf_type* basic_filebuf<_CharT, _Traits>:: setbuf(char_type* __s, streamsize __n) { if (!this->is_open()) if (__s == 0 && __n == 0) this->_M_buf_size = 1; else if (__s && __n > 0) { # 629 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/fstream.tcc" 3 this->_M_buf = __s; this->_M_buf_size = __n; } return this; } template typename basic_filebuf<_CharT, _Traits>::pos_type basic_filebuf<_CharT, _Traits>:: seekoff(off_type __off, ios_base::seekdir __way, ios_base::openmode) { int __width = 0; if (_M_codecvt) __width = _M_codecvt->encoding(); if (__width < 0) __width = 0; pos_type __ret = pos_type(off_type(-1)); const bool __testfail = __off != 0 && __width <= 0; if (this->is_open() && !__testfail) { _M_destroy_pback(); __state_type __state = _M_state_beg; off_type __computed_off = __off * __width; if (_M_reading && __way == ios_base::cur) { if (_M_codecvt->always_noconv()) __computed_off += this->gptr() - this->egptr(); else { const int __gptr_off = _M_codecvt->length(_M_state_last, _M_ext_buf, _M_ext_next, this->gptr() - this->eback()); __computed_off += _M_ext_buf + __gptr_off - _M_ext_end; __state = _M_state_last; } } __ret = _M_seek(__computed_off, __way, __state); } return __ret; } template typename basic_filebuf<_CharT, _Traits>::pos_type basic_filebuf<_CharT, _Traits>:: seekpos(pos_type __pos, ios_base::openmode) { pos_type __ret = pos_type(off_type(-1)); if (this->is_open()) { _M_destroy_pback(); __ret = _M_seek(off_type(__pos), ios_base::beg, __pos.state()); } return __ret; } template typename basic_filebuf<_CharT, _Traits>::pos_type basic_filebuf<_CharT, _Traits>:: _M_seek(off_type __off, ios_base::seekdir __way, __state_type __state) { pos_type __ret = pos_type(off_type(-1)); if (_M_terminate_output()) { __ret = pos_type(_M_file.seekoff(__off, __way)); _M_reading = false; _M_writing = false; _M_ext_next = _M_ext_end = _M_ext_buf; _M_set_buffer(-1); _M_state_cur = __state; __ret.state(_M_state_cur); } return __ret; } template bool basic_filebuf<_CharT, _Traits>:: _M_terminate_output() { bool __testvalid = true; if (this->pbase() < this->pptr()) { const int_type __tmp = this->overflow(); if (traits_type::eq_int_type(__tmp, traits_type::eof())) __testvalid = false; } if (_M_writing && !__check_facet(_M_codecvt).always_noconv() && __testvalid) { const size_t __blen = 128; char __buf[__blen]; codecvt_base::result __r; streamsize __ilen = 0; do { char* __next; __r = _M_codecvt->unshift(_M_state_cur, __buf, __buf + __blen, __next); if (__r == codecvt_base::error) __testvalid = false; else if (__r == codecvt_base::ok || __r == codecvt_base::partial) { __ilen = __next - __buf; if (__ilen > 0) { const streamsize __elen = _M_file.xsputn(__buf, __ilen); if (__elen != __ilen) __testvalid = false; } } } while (__r == codecvt_base::partial && __ilen > 0 && __testvalid); if (__testvalid) { const int_type __tmp = this->overflow(); if (traits_type::eq_int_type(__tmp, traits_type::eof())) __testvalid = false; } } return __testvalid; } template int basic_filebuf<_CharT, _Traits>:: sync() { int __ret = 0; if (this->pbase() < this->pptr()) { const int_type __tmp = this->overflow(); if (traits_type::eq_int_type(__tmp, traits_type::eof())) __ret = -1; } return __ret; } template void basic_filebuf<_CharT, _Traits>:: imbue(const locale& __loc) { bool __testvalid = true; const __codecvt_type* _M_codecvt_tmp = 0; if (__builtin_expect(has_facet<__codecvt_type>(__loc), true)) _M_codecvt_tmp = &use_facet<__codecvt_type>(__loc); if (this->is_open()) { if ((_M_reading || _M_writing) && __check_facet(_M_codecvt).encoding() == -1) __testvalid = false; else { if (_M_reading) { if (__check_facet(_M_codecvt).always_noconv()) { if (_M_codecvt_tmp && !__check_facet(_M_codecvt_tmp).always_noconv()) __testvalid = this->seekoff(0, ios_base::cur, this->_M_mode) != pos_type(off_type(-1)); } else { _M_ext_next = _M_ext_buf + _M_codecvt->length(_M_state_last, _M_ext_buf, _M_ext_next, this->gptr() - this->eback()); const streamsize __remainder = _M_ext_end - _M_ext_next; if (__remainder) std::memmove(_M_ext_buf, _M_ext_next, __remainder); _M_ext_next = _M_ext_buf; _M_ext_end = _M_ext_buf + __remainder; _M_set_buffer(-1); _M_state_last = _M_state_cur = _M_state_beg; } } else if (_M_writing && (__testvalid = _M_terminate_output())) _M_set_buffer(-1); } } if (__testvalid) _M_codecvt = _M_codecvt_tmp; else _M_codecvt = 0; } extern template class basic_filebuf; extern template class basic_ifstream; extern template class basic_ofstream; extern template class basic_fstream; extern template class basic_filebuf; extern template class basic_ifstream; extern template class basic_ofstream; extern template class basic_fstream; } # 843 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/fstream" 2 3 #pragma GCC visibility pop # 55 "../../src/Utility/macros.hh" 2 using namespace std; class NatSet; class Graph; class Digraph; class UnionFind; class DiophantineSystem; class SequencePartition; class StringTable; class SymbolTable; class PointerMap; class PointerSet; class BddUser; class Bdd; class Tty; class Timer; class FlagSet; typedef char Bool; typedef signed char Byte; typedef unsigned char Ubyte; typedef unsigned int Uint; # 101 "../../src/Utility/macros.hh" typedef long long int Int64; # 110 "../../src/Utility/macros.hh" typedef unsigned long long int Uint64; typedef int Int32; typedef unsigned int Uint32; # 144 "../../src/Utility/macros.hh" enum SpecialConstants { NR_PTR_LOSE_BITS = 3, WORD_SIZE = 32, LOG_WORD_SIZE = 5, UNBOUNDED = 2147483647, INT_TEXT_SIZE = 11, INT64_TEXT_SIZE = 20, DOUBLE_TEXT_SIZE = 24, UNDEFINED = -1, UNDECIDED = -1, UNUSED = -1, NONE = -1, DEFAULT = -1, BITS_PER_BYTE = 8, BITS_PER_INT = BITS_PER_BYTE * sizeof(int), BITS_PER_UINT = BITS_PER_BYTE * sizeof(unsigned int) }; # 223 "../../src/Utility/macros.hh" # 1 "../../src/Utility/tty.hh" 1 # 29 "../../src/Utility/tty.hh" class Tty { public: enum Attribute { RESET, BRIGHT, DIM, UNDERLINE, BLINK, REVERSE, HIDDEN, BLACK, RED, GREEN, YELLOW, BLUE, MAGENTA, CYAN, WHITE, BKGD_BLACK, BKGD_RED, BKGD_GREEN, BKGD_YELLOW, BKGD_BLUE, BKGD_MAGENTA, BKGD_CYAN, BKGD_WHITE }; Tty(Attribute attr); static void setEscapeSequencesAllowed(bool flag); const char* ctrlSequence() const; private: static const char* const ansiCode[]; static bool allowedFlag; const Attribute attr; }; inline Tty::Tty(Attribute attr) : attr(attr) { } inline void Tty::setEscapeSequencesAllowed(bool flag) { allowedFlag = flag; } inline ostream& operator<<(ostream& s, const Tty& t) { s << t.ctrlSequence(); return s; } # 224 "../../src/Utility/macros.hh" 2 # 254 "../../src/Utility/macros.hh" extern bool globalAdvisoryFlag; extern bool globalVerboseFlag; union MachineWord { void* pointer; int integer; size_t size; }; # 277 "../../src/Utility/macros.hh" inline int uplus(int a, int b) { return (a == UNBOUNDED || b == UNBOUNDED) ? UNBOUNDED : (a + b); } inline int floorDivision(int dividend, int divisor) { if (divisor > 0) { return (dividend >= 0) ? (dividend / divisor) : -((divisor - dividend - 1) / divisor); } else { ; return (dividend >= 0) ? -((dividend - divisor - 1) / (-divisor)) : ((-dividend) / (-divisor)); } } inline int ceilingDivision(int dividend, int divisor) { if (divisor > 0) { return (dividend >= 0) ? ((dividend + divisor - 1) / divisor) : -((-dividend) / divisor); } else { ; return (dividend >= 0) ? -(dividend / (-divisor)) : (((-dividend) + (-divisor) - 1) / (-divisor)); } } inline const char* pluralize(int quantity) { return (quantity == 1) ? "" : "s"; } # 332 "../../src/Utility/macros.hh" inline void setOnLs(int& d, int v, int t) { d += (t >> (BITS_PER_INT - 1)) & (v - d); } inline void setOnGeq(int& d, int v, int t) { d += (~(t >> (BITS_PER_INT - 1))) & (v - d); } inline int getSignBit(int n) { return (n >> (BITS_PER_INT - 1)) & 1; } const char* int64ToString(Int64 i, int base = 10); Int64 stringToInt64(const char* s, bool& error, int base = 10); bool looksLikeFloat(const char* s); const char* doubleToString(double d); double stringToDouble(const char* s, bool& error); void correctEcvt(double d, int nrDigits, char buffer[], int& decPt, int& sign); # 29 "stringTerm.cc" 2 # 1 "../../src/Utility/vector.hh" 1 # 28 "../../src/Utility/vector.hh" # 1 "../../src/Utility/preVector.hh" 1 # 35 "../../src/Utility/preVector.hh" class PreVector { public: void initEmpty(); void initAllocate(size_t atLeastBytes); void initSteal(PreVector& victim); void freeMemory(); size_t getAllocatedBytes() const; size_t getLength() const; void setLength(size_t length); const void* getBase() const; void* getBase(); bool empty() const; private: enum MallocSpecificValues { MIN_SIZE = 3 * sizeof(int), TAG_SIZE = sizeof(size_t) }; struct VectorHeader { size_t allocatedBytes; size_t length; }; VectorHeader* ptr; }; inline void PreVector::initEmpty() { ptr = 0; } inline void PreVector::initSteal(PreVector& victim) { ptr = victim.ptr; } inline void PreVector::freeMemory() { operator delete[](ptr - 1); } inline size_t PreVector::getAllocatedBytes() const { return (ptr == 0) ? 0 : ptr[-1].allocatedBytes; } inline size_t PreVector::getLength() const { return (ptr == 0) ? 0 : ptr[-1].length; } inline bool PreVector::empty() const { if (ptr == 0) return true; return ptr[-1].length == 0; # 121 "../../src/Utility/preVector.hh" } inline void PreVector::setLength(size_t length) { ; ptr[-1].length = length; } inline const void* PreVector::getBase() const { return static_cast(ptr); } inline void* PreVector::getBase() { return static_cast(ptr); } # 29 "../../src/Utility/vector.hh" 2 template class Vector { public: typedef T value_type; typedef value_type* pointer; typedef const value_type* const_pointer; typedef value_type& reference; typedef const value_type& const_reference; typedef size_t size_type; typedef ptrdiff_t difference_type; typedef pointer iterator; typedef const_pointer const_iterator; Vector(size_type length = 0); Vector(size_type length, size_type preallocate); Vector(const Vector& original); ~Vector(); iterator begin(); iterator end(); const_iterator begin() const; const_iterator end() const; const T& operator[](size_type i) const; T& operator[](size_type i); void expandTo(size_type newLength); void expandBy(size_type extra); void contractTo(size_type newLength); void resize(size_type length); void append(const T& item); size_type size() const; size_type capacity() const; Vector& operator=(const Vector& original); void swap(Vector& other); size_t bytesAllocated() const; bool isNull() const; bool empty() const; void clear(); int length() const; private: PreVector pv; }; template inline typename Vector::iterator Vector::begin() { return static_cast(pv.getBase()); } template inline typename Vector::iterator Vector::end() { return static_cast(pv.getBase()) + pv.getLength(); } template inline typename Vector::const_iterator Vector::begin() const { return static_cast(pv.getBase()); } template inline typename Vector::const_iterator Vector::end() const { return static_cast(pv.getBase()) + pv.getLength(); } # 156 "../../src/Utility/vector.hh" template inline typename Vector::size_type Vector::size() const { return pv.getLength(); } template inline typename Vector::size_type Vector::capacity() const { return pv.getAllocatedBytes() / sizeof(T); } template inline size_t Vector::bytesAllocated() const { return pv.getAllocatedBytes(); } template inline Vector::Vector(size_type length) { if (length == 0) pv.initEmpty(); else { pv.initAllocate(length * sizeof(T)); pv.setLength(length); T* vector = static_cast(pv.getBase()); size_type i = 0; do (void) new(vector + i) T(); while (++i < length); } } template inline Vector::Vector(size_type length, size_type preallocate) { ; if (preallocate == 0) pv.initEmpty(); else { pv.initAllocate(preallocate * sizeof(T)); pv.setLength(length); T* vector = static_cast(pv.getBase()); for (size_type i = 0; i < length; i++) (void) new(vector + i) T(); } } template inline Vector::Vector(const Vector& original) { size_type originalLength = original.length(); if (originalLength == 0) pv.initEmpty(); else { pv.initAllocate(originalLength * sizeof(T)); pv.setLength(originalLength); T* vector = static_cast(pv.getBase()); const T* originalVector = static_cast(original.pv.getBase()); size_type i = 0; do new(vector + i) T(originalVector[i]); while (++i < originalLength); } } template inline Vector::~Vector() { T* vector = static_cast(pv.getBase()); if (vector != 0) { size_type length = pv.getLength(); for (size_type i = 0; i < length; i++) vector[i].~T(); pv.freeMemory(); } } template inline const T& Vector::operator[](size_type i) const { ; return static_cast(pv.getBase())[i]; } template inline T& Vector::operator[](size_type i) { ; return static_cast(pv.getBase())[i]; } template inline void Vector::expandTo(size_type newLength) { size_type oldLength = pv.getLength(); ; size_t neededBytes = newLength * sizeof(T); if (pv.getAllocatedBytes() < neededBytes) { PreVector tmp; tmp.initAllocate(neededBytes); T* originalVector = static_cast(pv.getBase()); if (originalVector != 0) { T* vector = static_cast(tmp.getBase()); for (size_type i = 0; i < oldLength; i++) { new(vector + i) T(originalVector[i]); originalVector[i].~T(); } pv.freeMemory(); } pv.initSteal(tmp); } T* vector = static_cast(pv.getBase()); if (vector != 0) { pv.setLength(newLength); for (size_type i = oldLength; i < newLength; i++) new(vector + i) T(); } } template inline void Vector::expandBy(size_type extra) { if (extra > 0) expandTo(length() + extra); } template inline void Vector::contractTo(size_type newLength) { size_type oldLength = pv.getLength(); ; T* vector = static_cast(pv.getBase()); if (vector != 0) { pv.setLength(newLength); for (size_type i = newLength; i < oldLength; i++) vector[i].~T(); } } template inline void Vector::clear() { contractTo(0); } template inline void Vector::resize(size_type newLength) { size_type t = pv.getLength(); if (newLength > t) expandTo(newLength); else if (newLength < t) contractTo(newLength); } template inline void Vector::append(const T& item) { T* vector = static_cast(pv.getBase()); if (vector == 0) { pv.initAllocate(sizeof(T)); pv.setLength(1); new(static_cast(pv.getBase())) T(item); } else { size_type oldLength = pv.getLength(); size_type newLength = oldLength + 1; size_t neededBytes = newLength * sizeof(T); if (pv.getAllocatedBytes() < neededBytes) { PreVector tmp; tmp.initAllocate(neededBytes); T* newVector = static_cast(tmp.getBase()); for (size_type i = 0; i < oldLength; i++) { new(newVector + i) T(vector[i]); vector[i].~T(); } pv.freeMemory(); pv.initSteal(tmp); vector = newVector; } pv.setLength(newLength); new(vector + oldLength) T(item); } } template inline Vector& Vector::operator=(const Vector& original) { size_type length = pv.getLength(); T* vector = static_cast(pv.getBase()); for (size_type i = 0; i < length; i++) vector[i].~T(); size_type originalLength = original.pv.getLength(); size_t neededBytes = originalLength * sizeof(T); if (pv.getAllocatedBytes() < neededBytes) { if (vector != 0) pv.freeMemory(); pv.initAllocate(neededBytes); vector = static_cast(pv.getBase()); } const T* originalVector = static_cast(original.pv.getBase()); if (vector != 0) { pv.setLength(originalLength); for (size_type i = 0; i < originalLength; i++) new(vector + i) T(originalVector[i]); } return *this; } template inline void Vector::swap(Vector& other) { PreVector t(pv); pv = other.pv; other.pv = t; } template inline bool Vector::isNull() const { return pv.getBase() == 0; } template inline bool Vector::empty() const { return pv.empty(); } template inline int Vector::length() const { return pv.getLength(); } # 30 "stringTerm.cc" 2 # 1 "../../src/Interface/interface.hh" 1 # 32 "../../src/Interface/interface.hh" class Symbol; class BinarySymbol; class AssociativeSymbol; class Term; class RawArgumentIterator; class DagNode; class RawDagArgumentIterator; class LhsAutomaton; class RhsAutomaton; class Subproblem; class ExtensionInfo; # 33 "stringTerm.cc" 2 # 1 "../../src/Core/core.hh" 1 # 29 "../../src/Core/core.hh" class MemoryCell; class NamedEntity; class ModuleItem; class LineNumber; class Module; class Sort; class ConnectedComponent; class ArgumentIterator; class DagArgumentIterator; class VariableInfo; class Substitution; class LocalBinding; class SubproblemSequence; class SubproblemDisjunction; class SortCheckSubproblem; class VariableAbstractionSubproblem; class ExtensionMatchSubproblem; class EqualitySubproblem; class PreEquation; class Equation; class Rule; class Label; class SortConstraint; class Strategy; class SortTable; class SortConstraintTable; class EquationTable; class RuleTable; class RewritingContext; class SubproblemAccumulator; class DisjunctiveSubproblemAccumulator; class RedexPosition; class TermSet; class DagRoot; class SymbolMap; class CachedDag; class DagNodeSet; class RootContainer; class SimpleRootContainer; class BindingLhsAutomaton; class TrivialRhsAutomaton; class CopyRhsAutomaton; class TermBag; class RhsBuilder; class ConditionFragment; class ConditionState; class OpDeclaration; # 34 "stringTerm.cc" 2 # 1 "../../src/NA_Theory/NA_Theory.hh" 1 # 29 "../../src/NA_Theory/NA_Theory.hh" class NA_Symbol; class NA_Term; class NA_DagNode; class NA_LhsAutomaton; class NA_RhsAutomaton; # 35 "stringTerm.cc" 2 # 1 "../../src/Interface/symbol.hh" 1 # 28 "../../src/Interface/symbol.hh" # 1 "../../src/FullCompiler/fullCompiler.hh" 1 # 29 "../../src/FullCompiler/fullCompiler.hh" class CompilationContext; class VariableName; # 29 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/namedEntity.hh" 1 # 29 "../../src/Core/namedEntity.hh" class NamedEntity { public: NamedEntity(int id); int id() const; private: const int name; }; inline NamedEntity::NamedEntity(int id) : name(id) { } inline int NamedEntity::id() const { return name; } ostream& operator<<(ostream& s, const NamedEntity* e); # 31 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/lineNumber.hh" 1 # 29 "../../src/Core/lineNumber.hh" class LineNumber { public: LineNumber(int lineNumber = UNDEFINED); int getLineNumber() const; void setLineNumber(int lineNr); private: int lineNumber; }; inline LineNumber::LineNumber(int lineNumber) : lineNumber(lineNumber) { } inline int LineNumber::getLineNumber() const { return lineNumber; } inline void LineNumber::setLineNumber(int lineNr) { lineNumber = lineNr; } ostream& operator<<(ostream& s, const LineNumber& lineNumber); # 32 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/moduleItem.hh" 1 # 32 "../../src/Core/moduleItem.hh" class ModuleItem { public: void setModuleInfo(Module* module, int indexWithinModule); Module* getModule() const; int getIndexWithinModule() const; private: Module* parentModule; int indexWithinParent; }; inline void ModuleItem::setModuleInfo(Module* module, int indexWithinModule) { parentModule = module; indexWithinParent = indexWithinModule; } inline Module* ModuleItem::getModule() const { return parentModule; } inline int ModuleItem::getIndexWithinModule() const { return indexWithinParent; } # 33 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/sort.hh" 1 # 28 "../../src/Core/sort.hh" # 1 "../../src/Core/namedEntity.hh" 1 # 29 "../../src/Core/sort.hh" 2 # 1 "../../src/Core/lineNumber.hh" 1 # 30 "../../src/Core/sort.hh" 2 # 1 "../../src/Core/moduleItem.hh" 1 # 31 "../../src/Core/sort.hh" 2 # 1 "../../src/Utility/natSet.hh" 1 # 29 "../../src/Utility/natSet.hh" class NatSet { public: typedef int value_type; typedef unsigned int size_type; class iterator { public: bool operator==(const iterator& other) const; bool operator!=(const iterator& other) const; value_type operator*() const; iterator& operator++(); iterator operator++(int); private: value_type element; const NatSet* natSet; friend class NatSet; }; typedef iterator const_iterator; NatSet(); NatSet(const NatSet& original); void clear(); size_type size() const; bool empty() const; iterator begin() const; iterator end() const; void insert(value_type i); void insert(const NatSet& other); void subtract(value_type i); void subtract(const NatSet& other); void intersect(const NatSet& other); NatSet& operator=(const NatSet& original); bool contains(value_type i) const; bool contains(const NatSet& other) const; bool disjoint(const NatSet& other) const; bool operator==(const NatSet& other) const; bool operator!=(const NatSet& other) const; bool operator<(const NatSet& other) const; value_type max() const; value_type min() const; void swap(NatSet& other); void makeEmpty(); int cardinality() const; private: typedef unsigned int Word; static int topBit(Word w); static int bottomBit(Word w); static int countBits(Word w); static Word getMask(value_type i); static int getWordNr(value_type i); value_type arrayMin(int i) const; bool arrayContains(value_type i) const; Word firstWord; Vector array; friend class iterator; }; inline NatSet::NatSet() { firstWord = 0; } inline NatSet::NatSet(const NatSet& original) : firstWord(original.firstWord), array(original.array) { } inline void NatSet::clear() { firstWord = 0; array.contractTo(0); } inline NatSet& NatSet::operator=(const NatSet& original) { firstWord = original.firstWord; array = original.array; return *this; } inline bool NatSet::empty() const { return firstWord == 0 && array.length() == 0; } inline NatSet::value_type NatSet::min() const { return (firstWord == 0) ? arrayMin(0) : bottomBit(firstWord); } inline NatSet::iterator NatSet::begin() const { iterator i; i.natSet = this; i.element = min(); return i; } inline NatSet::iterator NatSet::end() const { iterator i; i.natSet = this; i.element = -1; return i; } inline bool NatSet::contains(value_type i) const { ; return i < WORD_SIZE ? (firstWord & (1 << i)) : arrayContains(i); } inline bool NatSet::operator!=(const NatSet& other) const { return !(*this == other); } inline NatSet::value_type NatSet::max() const { value_type len = array.length(); if (len == 0) return (firstWord == 0) ? -1 : topBit(firstWord); return (len << LOG_WORD_SIZE) + topBit(array[len - 1]); } inline void NatSet::swap(NatSet& other) { int t = firstWord; firstWord = other.firstWord; other.firstWord = t; array.swap(other.array); } inline bool NatSet::iterator::operator==(const iterator& other) const { return (element == other.element) && (natSet == other.natSet); } inline bool NatSet::iterator::operator!=(const iterator& other) const { return (element != other.element) || (natSet != other.natSet); } inline NatSet::value_type NatSet::iterator::operator*() const { ; return element; } inline NatSet::iterator NatSet::iterator::operator++(int) { NatSet::iterator tmp(*this); operator++(); return tmp; } ostream& operator<<(ostream& s, const NatSet& ns); inline void NatSet::makeEmpty() { clear(); } inline int NatSet::cardinality() const { return size(); } # 32 "../../src/Core/sort.hh" 2 # 1 "../../src/Core/connectedComponent.hh" 1 # 31 "../../src/Core/connectedComponent.hh" class ConnectedComponent : public ModuleItem { ConnectedComponent(const ConnectedComponent&); ConnectedComponent& operator=(const ConnectedComponent&); public: ConnectedComponent(Sort* firstSort); ~ConnectedComponent(); int nrSorts() const; int nrMaximalSorts() const; Sort* sort(int index) const; bool leq(int index1, int index2) const; void findMaximalSorts(const NatSet& uSorts, Vector& indices) const; int findIndex(const NatSet& leqSorts) const; const NatSet& getLeqSorts(int index) const; bool errorFree() const; void errorSortSeen(); void registerSort(Sort* sort); int appendSort(Sort* sort); private: int sortCount; short nrMaxSorts; Bool errorFreeFlag; Vector sorts; }; inline void ConnectedComponent::errorSortSeen() { errorFreeFlag = false; } inline bool ConnectedComponent::errorFree() const { return errorFreeFlag; } inline int ConnectedComponent::nrSorts() const { return sortCount; } inline int ConnectedComponent::nrMaximalSorts() const { return nrMaxSorts; } inline Sort* ConnectedComponent::sort(int index) const { return sorts[index]; } inline void ConnectedComponent::registerSort(Sort* ) { ++sortCount; } inline int ConnectedComponent::appendSort(Sort* sort) { int i = sorts.length(); sorts.append(sort); return i; } # 33 "../../src/Core/sort.hh" 2 # 1 "../../src/FullCompiler/fullCompiler.hh" 1 # 34 "../../src/Core/sort.hh" 2 class Sort : public NamedEntity, public LineNumber, public ModuleItem { Sort(const Sort&); Sort& operator=(const Sort&); public: enum SpecialSorts { KIND = 0, ERROR_SORT = 0, SORT_UNKNOWN = -1 }; Sort(int id); void insertSubsort(Sort* subsort); int index() const; ConnectedComponent* component() const; const Vector& getSubsorts() const; const Vector& getSupersorts() const; const NatSet& Sort::getLeqSorts() const; bool errorFreeMaximal() const; # 68 "../../src/Core/sort.hh" void registerConnectedSorts(ConnectedComponent* component); void processSubsorts(); void computeLeqSorts(); friend bool leq(const Sort* sort1, const Sort* sort2); friend bool leq(int index1, const Sort* sort2); friend bool leq(const Sort* sort1, int index2); private: union { int sortIndex; int nrUnresolvedSupersorts; }; int fastTest; ConnectedComponent* sortComponent; Vector subsorts; Vector supersorts; NatSet leqSorts; }; inline int Sort::index() const { return sortIndex; } inline ConnectedComponent* Sort::component() const { return sortComponent; } inline const Vector& Sort::getSubsorts() const { return subsorts; } inline const Vector& Sort::getSupersorts() const { return supersorts; } inline const NatSet& Sort::getLeqSorts() const { return leqSorts; } inline bool Sort::errorFreeMaximal() const { return sortIndex == 1 && sortComponent->nrMaximalSorts() == 1 && sortComponent->errorFree(); } inline bool leq(const Sort* sort1, const Sort* sort2) { return sort2->leqSorts.contains(sort1->sortIndex); } inline bool leq(int index1, const Sort* sort2) { ; if (index1 >= sort2->fastTest) return true; return sort2->leqSorts.contains(index1); } inline bool leq(const Sort* sort1, int index2) { return leq(sort1->sortIndex, sort1->sortComponent->sort(index2)); } ostream& operator<<(ostream& s, const Sort* sort); # 34 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/connectedComponent.hh" 1 # 35 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/sortTable.hh" 1 # 28 "../../src/Core/sortTable.hh" # 1 "../../src/Core/opDeclaration.hh" 1 # 29 "../../src/Core/opDeclaration.hh" class OpDeclaration { public: void setInfo(const Vector& domainAndRange, bool constructorFlag); const Vector& getDomainAndRange() const; bool isConstructor() const; private: Vector sortInfo; bool ctorFlag; }; inline void OpDeclaration::setInfo(const Vector& domainAndRange, bool constructorFlag) { sortInfo = domainAndRange; ctorFlag = constructorFlag; } inline const Vector& OpDeclaration::getDomainAndRange() const { return sortInfo; } inline bool OpDeclaration::isConstructor() const { return ctorFlag; } # 29 "../../src/Core/sortTable.hh" 2 class SortTable { SortTable(const SortTable&); SortTable& operator=(const SortTable&); public: enum CtorStatus { IS_CTOR = 1, IS_NON_CTOR = 2, IS_COMPLEX = IS_CTOR | IS_NON_CTOR }; SortTable(int arity); int arity() const; void addOpDeclaration(const Vector& domainAndRange, bool constructorFlag); const Vector& getOpDeclarations() const; ConnectedComponent* rangeComponent() const; const ConnectedComponent* domainComponent(int argNr) const; Sort* getSingleNonErrorSort() const; int getCtorStatus() const; virtual void compileOpDeclarations(); virtual void fillInSortInfo(Term* subject) = 0; virtual void finalizeSortInfo(); virtual bool canProduceErrorSort() const; int traverse(int position, int sortIndex) const; bool kindLevelDeclarationsOnly() const; protected: bool specialSortHandling() const; int ctorTraverse(int position, int sortIndex) const; private: void buildSortDiagram(); void buildCtorDiagram(); int findStateNumber(Vector& stateSet, const NatSet& state); int findMinSortIndex(const NatSet& state); bool partiallySubsumes(int subsumer, int victim, int argNr); void minimize(NatSet& alive, int argNr); int containsConstructor(const NatSet& state); static bool partlyMoreGeneral(const OpDeclaration& subsumer, const OpDeclaration& victim, int argNr); static bool ctorSubsumes(const OpDeclaration& subsumer, const OpDeclaration& victim, int argNr); void minimizeWrtCtor(NatSet& alive, int argNr) const; const int nrArgs; Vector opDeclarations; Vector componentVector; Vector sortDiagram; Sort* singleNonErrorSort; Vector ctorDiagram; int ctorStatus; }; inline int SortTable::arity() const { return nrArgs; } inline bool SortTable::specialSortHandling() const { return sortDiagram.isNull(); } inline void SortTable::addOpDeclaration(const Vector& domainAndRange, bool constructorFlag) { ; int nrOpDeclarations = opDeclarations.length(); opDeclarations.resize(nrOpDeclarations + 1); opDeclarations[nrOpDeclarations].setInfo(domainAndRange, constructorFlag); ctorStatus |= constructorFlag ? IS_CTOR : IS_NON_CTOR; } inline const Vector& SortTable::getOpDeclarations() const { return opDeclarations; } inline ConnectedComponent* SortTable::rangeComponent() const { return opDeclarations[0].getDomainAndRange()[nrArgs]->component(); } inline const ConnectedComponent* SortTable::domainComponent(int argNr) const { return opDeclarations[0].getDomainAndRange()[argNr]->component(); } inline Sort* SortTable::getSingleNonErrorSort() const { return singleNonErrorSort; } inline int SortTable::getCtorStatus() const { return ctorStatus; } inline int SortTable::traverse(int position, int sortIndex) const { return sortDiagram[position + sortIndex]; } inline int SortTable::ctorTraverse(int position, int sortIndex) const { return ctorDiagram[position + sortIndex]; } # 36 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/sortConstraintTable.hh" 1 # 29 "../../src/Core/sortConstraintTable.hh" class SortConstraintTable { public: SortConstraintTable(); void offerSortConstraint(SortConstraint* sortConstraint); const Vector& getSortConstraints() const; bool sortConstraintFree() const; void orderSortConstraints(); virtual void compileSortConstraints(); void constrainToSmallerSort(DagNode* subject, RewritingContext& context); void constrainToExactSort(DagNode* subject, RewritingContext& context); protected: bool safeToInspectSortConstraints(); virtual bool acceptSortConstraint(SortConstraint* sortConstraint) = 0; private: static bool sortConstraintLt(SortConstraint* const& sc1, SortConstraint* const& sc2); void constrainToSmallerSort2(DagNode* subject, RewritingContext& context); bool tableComplete; Vector sortConstraints; }; inline void SortConstraintTable::offerSortConstraint(SortConstraint* sortConstraint) { if (acceptSortConstraint(sortConstraint)) sortConstraints.append(sortConstraint); } inline const Vector& SortConstraintTable::getSortConstraints() const { return sortConstraints; } inline bool SortConstraintTable::sortConstraintFree() const { return sortConstraints.isNull(); } inline void SortConstraintTable::constrainToSmallerSort(DagNode* subject, RewritingContext& context) { if (!sortConstraintFree()) constrainToSmallerSort2(subject, context); } inline void SortConstraintTable::constrainToExactSort(DagNode* subject, RewritingContext& context) { if (!sortConstraintFree()) constrainToSmallerSort2(subject, context); } inline bool SortConstraintTable::safeToInspectSortConstraints() { return tableComplete; } # 37 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/equationTable.hh" 1 # 29 "../../src/Core/equationTable.hh" class EquationTable { public: void offerEquation(Equation* equation); const Vector& getEquations() const; bool equationFree() const; virtual void compileEquations(); protected: virtual bool acceptEquation(Equation* equation) = 0; bool applyReplace(DagNode* subject, RewritingContext& context, ExtensionInfo* extensionInfo = 0); bool applyReplaceNoOwise(DagNode* subject, RewritingContext& context, ExtensionInfo* extensionInfo = 0); private: Vector equations; }; inline void EquationTable::offerEquation(Equation* equation) { if (acceptEquation(equation)) equations.append(equation); } inline const Vector& EquationTable::getEquations() const { return equations; } inline bool EquationTable::equationFree() const { return equations.isNull(); } # 38 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/ruleTable.hh" 1 # 29 "../../src/Core/ruleTable.hh" class RuleTable { public: RuleTable(); void offerRule(Rule* rule); const Vector& getRules() const; bool ruleFree() const; virtual void compileRules(); virtual DagNode* ruleRewrite(DagNode* subject, RewritingContext& context); virtual void resetRules(); protected: virtual bool acceptRule(Rule* rule) = 0; DagNode* applyRules(DagNode* subject, RewritingContext& context, ExtensionInfo* extensionInfo); private: Vector rules; int nextRule; }; inline const Vector& RuleTable::getRules() const { return rules; } inline void RuleTable::offerRule(Rule* rule) { if (acceptRule(rule)) rules.append(rule); } inline bool RuleTable::ruleFree() const { return rules.isNull(); } inline void RuleTable::resetRules() { nextRule = 0; } # 39 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/strategy.hh" 1 # 30 "../../src/Core/strategy.hh" class Strategy { public: Strategy(); void setStrategy(const Vector& userStrategy, int nrArgs, bool memoFlag); virtual void setFrozen(const NatSet& frozen); const Vector& getStrategy() const; const NatSet& getFrozen() const; bool hasFrozenArguments() const; bool standardStrategy() const; bool unevaluatedArguments() const; bool eagerArgument(int argNr) const; bool evaluatedArgument(int argNr) const; protected: static const Vector standard; private: Bool stdStrategy; Bool unevalArgs; Vector strategy; NatSet eager; NatSet evaluated; NatSet frozen; }; inline const NatSet& Strategy::getFrozen() const { return frozen; } inline const Vector& Strategy::getStrategy() const { return strategy; } inline bool Strategy::standardStrategy() const { return stdStrategy; } inline bool Strategy::unevaluatedArguments() const { return unevalArgs; } inline bool Strategy::eagerArgument(int argNr) const { return stdStrategy || eager.contains(argNr); } inline bool Strategy::evaluatedArgument(int argNr) const { return stdStrategy || evaluated.contains(argNr); } # 40 "../../src/Interface/symbol.hh" 2 # 1 "../../src/Core/memoTable.hh" 1 # 28 "../../src/Core/memoTable.hh" # 1 "../../src/Core/simpleRootContainer.hh" 1 # 29 "../../src/Core/simpleRootContainer.hh" # 1 "../../src/Core/rootContainer.hh" 1 # 29 "../../src/Core/rootContainer.hh" class RootContainer { public: static void markPhase(); protected: void link(); void unlink(); virtual void markReachableNodes() = 0; private: static RootContainer* listHead; RootContainer* next; RootContainer* prev; }; inline void RootContainer::link() { prev = 0; next = listHead; if (listHead != 0) listHead->prev = this; listHead = this; } inline void RootContainer::unlink() { if (next != 0) next->prev = prev; if (prev != 0) prev->next = next; else listHead = next; } inline void RootContainer::markPhase() { for (RootContainer* p = listHead; p; p = p->next) p->markReachableNodes(); } # 30 "../../src/Core/simpleRootContainer.hh" 2 class SimpleRootContainer : protected RootContainer { protected: SimpleRootContainer(); ~SimpleRootContainer(); }; inline SimpleRootContainer::SimpleRootContainer() { link(); } inline SimpleRootContainer::~SimpleRootContainer() { unlink(); } # 29 "../../src/Core/memoTable.hh" 2 class MemoTable { public: class SourceSet : private SimpleRootContainer { void markReachableNodes(); Vector sources; friend class MemoTable; }; MemoTable(bool memoFlag); ~MemoTable(); bool isMemoized() const; bool memoRewrite(SourceSet& sourceSet, DagNode* subject, RewritingContext& context); void memoEnter(SourceSet& sourceSet, DagNode* destination); void clearMemo(); private: struct dagNodeLt; class MemoMap; const bool memo; MemoMap* memoMap; }; inline MemoTable::MemoTable(bool memoFlag) : memo(memoFlag) { memoMap = 0; } inline bool MemoTable::isMemoized() const { return memo; } # 41 "../../src/Interface/symbol.hh" 2 class Symbol : public RuleTable, public NamedEntity, public LineNumber, public ModuleItem, public SortTable, public SortConstraintTable, public EquationTable, public Strategy, public MemoTable { Symbol(const Symbol&); Symbol& operator=(const Symbol&); static const Vector noArgs; public: Symbol(int id, int arity, bool memoFlag = false); virtual ~Symbol(); unsigned int getHashValue(); int compare(const Symbol* other) const; bool mightMatchPattern(Term* pattern); void fastComputeTrueSort(DagNode* subject, RewritingContext& context); int getUniqueSortIndex(); virtual bool rangeSortNeverLeqThan(Sort* sort); virtual bool rangeSortAlwaysLeqThan(Sort* sort); virtual bool domainSortAlwaysLeqThan(Sort* sort, int argNr); void computePossibleDomainSorts(const NatSet& rangeSorts, Vector& domainSorts); virtual bool eqRewrite(DagNode* subject, RewritingContext& context) = 0; virtual void computeBaseSort(DagNode* subject) = 0; virtual void normalizeAndComputeTrueSort(DagNode* subject, RewritingContext& context) = 0; virtual Term* makeTerm(const Vector& args) = 0; virtual DagNode* makeDagNode(const Vector& args = noArgs) = 0; virtual void stackArguments(DagNode* subject, Vector& stack, int parentIndex) = 0; # 98 "../../src/Interface/symbol.hh" virtual bool interSymbolPass(); virtual void postInterSymbolPass(); virtual void postOpDeclarationPass(); virtual void reset(); void finalizeSortInfo(); void fillInSortInfo(Term* subject); virtual bool attachData(const Vector& opDeclaration, const char* purpose, const Vector& data); virtual bool attachSymbol(const char* purpose, Symbol* symbol); virtual bool attachTerm(const char* purpose, Term* term); virtual void copyAttachments(Symbol* original, SymbolMap* map); virtual void getDataAttachments(const Vector& opDeclaration, Vector& purposes, Vector >& data); virtual void getSymbolAttachments(Vector& purposes, Vector& symbols); virtual void getTermAttachments(Vector& purposes, Vector& terms); virtual bool isConstructor(DagNode* subject); # 136 "../../src/Interface/symbol.hh" protected: bool acceptSortConstraint(SortConstraint* sortConstraint); bool acceptEquation(Equation* equation); bool acceptRule(Rule* rule); private: bool mightMatchSymbol(Symbol* symbol); void slowComputeTrueSort(DagNode* subject, RewritingContext& context); static int symbolCount; const int orderInt; int uniqueSortIndex; }; inline unsigned int Symbol::getHashValue() { return orderInt; } inline int Symbol::compare(const Symbol* other) const { return orderInt - other->orderInt; } inline int Symbol::getUniqueSortIndex() { return uniqueSortIndex; } # 38 "stringTerm.cc" 2 # 1 "../../src/Interface/dagNode.hh" 1 # 28 "../../src/Interface/dagNode.hh" # 1 "../../src/Interface/symbol.hh" 1 # 29 "../../src/Interface/dagNode.hh" 2 # 1 "../../src/Core/redexPosition.hh" 1 # 29 "../../src/Core/redexPosition.hh" class RedexPosition { public: RedexPosition() {} RedexPosition(DagNode* node, int parentIndex, int argIndex); RedexPosition(DagNode* node, int parentIndex, int argIndex, bool eager); DagNode* node() const; int parentIndex() const; int argIndex() const; void replaceNode(DagNode* newNode); void setStale(); void clearStale(); bool isStale() const; bool isEager() const; private: enum Flags { STALE = 1, EAGER = 2 }; DagNode* dagNode; int pIndex; int aIndex; int flags; }; inline RedexPosition::RedexPosition(DagNode* node, int parentIndex, int argIndex) : dagNode(node), pIndex(parentIndex), aIndex(argIndex), flags(0) { } inline RedexPosition::RedexPosition(DagNode* node, int parentIndex, int argIndex, bool eager) : dagNode(node), pIndex(parentIndex), aIndex(argIndex), flags(eager ? EAGER : 0) { } inline DagNode* RedexPosition::node() const { return dagNode; } inline int RedexPosition::parentIndex() const { return pIndex; } inline int RedexPosition::argIndex() const { return aIndex; } inline void RedexPosition::replaceNode(DagNode* newNode) { dagNode = newNode; } inline void RedexPosition::setStale() { flags |= STALE; } inline void RedexPosition::clearStale() { flags &= ~STALE; } inline bool RedexPosition::isStale() const { return flags & STALE; } inline bool RedexPosition::isEager() const { return flags & EAGER; } # 30 "../../src/Interface/dagNode.hh" 2 class DagNode { DagNode(const DagNode&); DagNode& operator=(const DagNode&); public: DagNode(Symbol* symbol); virtual ~DagNode() {} void setCallDtor(); MemoryCell* getMemoryCell(); const MemoryCell* getMemoryCell() const; void* operator new(size_t size); void* operator new(size_t size, DagNode* old); Symbol* symbol() const; int compare(const DagNode* other) const; bool equal(const DagNode* other) const; bool leq(const Sort* sort) const; bool isReduced() const; void reduce(RewritingContext& context); void mark(); void setReduced(); void setUnrewritable(); bool isUnrewritable() const; void setUnstackable(); bool isUnstackable() const; void copySetRewritingFlags(const DagNode* other); Byte getTheoryByte() const; void setTheoryByte(Byte value); DagNode* copyReducible(); DagNode* copyEagerUptoReduced(); void clearCopyPointers(); DagNode* copyAndReduce(RewritingContext& context); void setSortIndex(int index); int getSortIndex() const; Sort* getSort() const; void computeTrueSort(RewritingContext& context); void repudiateSortInfo(); bool checkSort(const Sort* boundSort, Subproblem*& returnedSubproblem); bool checkSort(const Sort* boundSort, RewritingContext& context); bool inErrorSort(); bool matchVariable(int index, const Sort* sort, bool copyToAvoidOverwriting, Substitution& solution, Subproblem*& returnedSubproblem, ExtensionInfo* extensionInfo); virtual RawDagArgumentIterator* arguments() = 0; virtual size_t getHashValue() = 0; virtual int compareArguments(const DagNode* other) const = 0; virtual void overwriteWithClone(DagNode* old) = 0; virtual DagNode* makeClone() = 0; virtual DagNode* copyWithReplacement(int argIndex, DagNode* replacement) = 0; virtual DagNode* copyWithReplacement(Vector& redexStack, int first, int last) = 0; virtual void stackArguments(Vector& redexStack, int parentIndex, bool respectFrozen) = 0; virtual bool matchVariableWithExtension(int index, const Sort* sort, Substitution& solution, Subproblem*& returnedSubproblem, ExtensionInfo* extensionInfo); virtual void partialReplace(DagNode* replacement, ExtensionInfo* extensionInfo); virtual DagNode* partialConstruct(DagNode* replacement, ExtensionInfo* extensionInfo); virtual ExtensionInfo* makeExtensionInfo(); # 125 "../../src/Interface/dagNode.hh" protected: enum Sizes { nrWords = 3 }; static size_t hash(size_t v1, size_t v2); static size_t hash(size_t v1, size_t v2, size_t v3); void setHashValid(); bool isHashValid() const; virtual DagNode* markArguments() = 0; virtual DagNode* copyEagerUptoReduced2() = 0; virtual void clearCopyPointers2() = 0; private: enum Flags { REDUCED = 1, COPIED = 2, UNREWRITABLE = 4, UNSTACKABLE = 8, HASH_VALID = 32 }; bool isCopied() const; void setCopied(); void clearCopied(); union { Symbol* topSymbol; DagNode* copyPointer; }; }; ostream& operator<<(ostream& s, DagNode* dagNode); # 1 "../../src/Core/memoryCell.hh" 1 # 28 "../../src/Core/memoryCell.hh" # 1 "../../src/Core/sort.hh" 1 # 29 "../../src/Core/memoryCell.hh" 2 class MemoryCell { MemoryCell(const MemoryCell&); MemoryCell& operator=(const MemoryCell&); MemoryCell(){}; public: static MemoryCell* allocateMemoryCell(); static void* allocateStorage(size_t bytesNeeded); static void okToCollectGarbage(); static void setShowGC(bool polarity); int getHalfWord() const; void setHalfWord(int hw); int getByte() const; void setByte(int bt); bool getFlag(int flag) const; void setFlag(int flag); void clearFlag(int flag); void copySetFlags(int flags, const MemoryCell* other); bool isMarked() const; void setMarked(); bool needToCallDtor() const; void setCallDtor(); void clearAllExceptMarked(); private: enum Sizes { NR_EXTRA_WORDS = 5 }; enum Flags { MARKED = 64, CALL_DTOR = 128 }; enum MemoryManagementParameters { ARENA_SIZE = 5460, RESERVE_SIZE = 256, BUCKET_MULTIPLIER = 8, MIN_BUCKET_SIZE = 256 * 1024 - 8, INITIAL_TARGET = 220 * 1024, TARGET_MULTIPLIER = 8 }; struct Header; struct FullSizeMemoryCell; struct Arena; struct Bucket; static bool showGC; static int nrArenas; static int nrNodesInUse; static bool currentArenaPastActiveArena; static bool needToCollectGarbage; static Arena* firstArena; static Arena* lastArena; static Arena* currentArena; static FullSizeMemoryCell* nextNode; static FullSizeMemoryCell* endPointer; static Arena* lastActiveArena; static FullSizeMemoryCell* lastActiveNode; static int nrBuckets; static Bucket* bucketList; static Bucket* unusedList; static size_t bucketStorage; static size_t storageInUse; static size_t target; static Arena* allocateNewArena(); static void tidyArenas(); static MemoryCell* slowNew(); static void* slowAllocateStorage(size_t bytesNeeded); static void collectGarbage(); void callDtor(); # 151 "../../src/Core/memoryCell.hh" MachineWord filler[NR_EXTRA_WORDS]; static const int dagNodeSize; }; struct MemoryCell::Header { short halfWord; Byte byte; Ubyte flags; }; struct MemoryCell::FullSizeMemoryCell : MemoryCell { void initialize(); Header h; }; inline void MemoryCell::FullSizeMemoryCell::initialize() { h.flags = 0; h.halfWord = Sort::SORT_UNKNOWN; } struct MemoryCell::Bucket { size_t bytesFree; void* nextFree; size_t nrBytes; Bucket* nextBucket; }; inline int MemoryCell::getHalfWord() const { return (static_cast(this))->h.halfWord; } inline void MemoryCell::setHalfWord(int hw) { (static_cast(this))->h.halfWord = hw; } inline int MemoryCell::getByte() const { return (static_cast(this))->h.byte; } inline void MemoryCell::setByte(int bt) { (static_cast(this))->h.byte = bt; } inline bool MemoryCell::getFlag(int flag) const { return (static_cast(this))->h.flags & flag; } inline void MemoryCell::setFlag(int flag) { (static_cast(this))->h.flags |= flag; } inline void MemoryCell::clearFlag(int flag) { (static_cast(this))->h.flags &= ~flag; } inline void MemoryCell::copySetFlags(int flags, const MemoryCell* other) { (static_cast(this))->h.flags |= flags & (static_cast(other))->h.flags; } inline bool MemoryCell::isMarked() const { return getFlag(MARKED); } inline void MemoryCell::setMarked() { ++nrNodesInUse; setFlag(MARKED); } inline void MemoryCell::clearAllExceptMarked() { clearFlag(~MARKED); } inline bool MemoryCell::needToCallDtor() const { return getFlag(CALL_DTOR); } inline void MemoryCell::setCallDtor() { setFlag(CALL_DTOR); } inline void MemoryCell::okToCollectGarbage() { if (needToCollectGarbage || storageInUse > target) collectGarbage(); } inline void* MemoryCell::allocateStorage(size_t bytesNeeded) { ; storageInUse += bytesNeeded; for (Bucket* b = bucketList; b; b = b->nextBucket) { if (b->bytesFree >= bytesNeeded) { b->bytesFree -= bytesNeeded; void* t = b->nextFree; b->nextFree = static_cast(t) + bytesNeeded; return t; } } return slowAllocateStorage(bytesNeeded); } inline void MemoryCell::setShowGC(bool polarity) { showGC = polarity; } inline void MemoryCell::callDtor() { (static_cast(static_cast(this)))->~DagNode(); } inline MemoryCell* MemoryCell::allocateMemoryCell() { FullSizeMemoryCell* e = endPointer; for (FullSizeMemoryCell* c = nextNode; c != e; c++) { if ((c->h.flags & (MARKED | CALL_DTOR)) == 0) { c->initialize(); nextNode = c + 1; ; return c; } if ((c->h.flags & MARKED) == 0) { c->callDtor(); c->initialize(); nextNode = c + 1; ; return c; } c->clearFlag(MARKED); } return slowNew(); } # 185 "../../src/Interface/dagNode.hh" 2 inline MemoryCell* DagNode::getMemoryCell() { return static_cast(static_cast(this)); } inline const MemoryCell* DagNode::getMemoryCell() const { return static_cast(static_cast(this)); } inline void DagNode::copySetRewritingFlags(const DagNode* other) { getMemoryCell()->copySetFlags(REDUCED | UNREWRITABLE | UNSTACKABLE, other->getMemoryCell()); } inline void DagNode::setCallDtor() { getMemoryCell()->setCallDtor(); } inline int DagNode::getSortIndex() const { return getMemoryCell()->getHalfWord(); } inline void DagNode::setSortIndex(int index) { getMemoryCell()->setHalfWord(index); } inline void DagNode::repudiateSortInfo() { setSortIndex(Sort::SORT_UNKNOWN); } inline void* DagNode::operator new(size_t size) { ; return MemoryCell::allocateMemoryCell(); } inline void* DagNode::operator new(size_t , DagNode* old) { if (old->getMemoryCell()->needToCallDtor()) old->~DagNode(); old->getMemoryCell()->clearAllExceptMarked(); old->repudiateSortInfo(); ; return static_cast(old); } inline DagNode::DagNode(Symbol* symbol) { topSymbol = symbol; } inline Symbol* DagNode::symbol() const { return topSymbol; } inline int DagNode::compare(const DagNode* other) const { if (this == other) return 0; Symbol* s = other->topSymbol; return (topSymbol == s) ? compareArguments(other) : topSymbol->compare(s); } inline bool DagNode::equal(const DagNode* other) const { return this == other || (topSymbol == other->topSymbol && compareArguments(other) == 0); } inline bool DagNode::isReduced() const { return getMemoryCell()->getFlag(REDUCED); } inline void DagNode::setReduced() { getMemoryCell()->setFlag(REDUCED); } inline bool DagNode::isCopied() const { return getMemoryCell()->getFlag(COPIED); } inline void DagNode::setCopied() { getMemoryCell()->setFlag(COPIED); } inline void DagNode::clearCopied() { getMemoryCell()->clearFlag(COPIED); } inline void DagNode::setUnrewritable() { getMemoryCell()->setFlag(UNREWRITABLE); } inline bool DagNode::isUnrewritable() const { return getMemoryCell()->getFlag(UNREWRITABLE); } inline void DagNode::setUnstackable() { getMemoryCell()->setFlag(UNSTACKABLE); } inline bool DagNode::isUnstackable() const { return getMemoryCell()->getFlag(UNSTACKABLE); } inline void DagNode::setHashValid() { getMemoryCell()->setFlag(HASH_VALID); } inline bool DagNode::isHashValid() const { return getMemoryCell()->getFlag(HASH_VALID); } inline Byte DagNode::getTheoryByte() const { return getMemoryCell()->getByte(); } inline void DagNode::setTheoryByte(Byte value) { getMemoryCell()->setByte(value); } # 1 "../../src/Interface/symbol2.hh" 1 # 29 "../../src/Interface/symbol2.hh" inline void Symbol::fastComputeTrueSort(DagNode* subject, RewritingContext& context) { int t = uniqueSortIndex; if (t < 0) computeBaseSort(subject); else if (t > 0) subject->setSortIndex(t); else slowComputeTrueSort(subject, context); } # 367 "../../src/Interface/dagNode.hh" 2 inline void DagNode::reduce(RewritingContext& context) { if (!isReduced()) { while (topSymbol->eqRewrite(this, context)) ; setReduced(); topSymbol->fastComputeTrueSort(this, context); } } inline void DagNode::mark() { ; ; DagNode* d = this; while (!(d->getMemoryCell()->isMarked())) { d->getMemoryCell()->setMarked(); d = d->markArguments(); if (d == 0) break; } } inline bool DagNode::inErrorSort() { int t = getSortIndex(); if (t == Sort::SORT_UNKNOWN) { topSymbol->computeBaseSort(this); t = getSortIndex(); if (!(topSymbol->sortConstraintFree())) setSortIndex(Sort::SORT_UNKNOWN); } return t == Sort::ERROR_SORT; } inline Sort* DagNode::getSort() const { return (getSortIndex() == Sort::SORT_UNKNOWN) ? 0 : topSymbol->rangeComponent()->sort(getSortIndex()); } inline void DagNode::computeTrueSort(RewritingContext& context) { if (getSortIndex() == Sort::SORT_UNKNOWN) topSymbol->normalizeAndComputeTrueSort(this, context); } inline DagNode* DagNode::copyEagerUptoReduced() { if (isReduced()) return this; if (!isCopied()) { copyPointer = copyEagerUptoReduced2(); setCopied(); } return copyPointer; } inline void DagNode::clearCopyPointers() { if (isCopied()) { clearCopied(); topSymbol = copyPointer->topSymbol; clearCopyPointers2(); } } inline DagNode* DagNode::copyReducible() { DagNode* d = copyEagerUptoReduced(); clearCopyPointers(); return d; } inline DagNode* DagNode::copyAndReduce(RewritingContext& context) { DagNode* d = copyReducible(); d->reduce(context); return d; } inline bool DagNode::leq(const Sort* sort) const { return ::leq(getSortIndex(), sort); } inline size_t DagNode::hash(size_t v1, size_t v2) { return 3 * v1 + v2; } inline size_t DagNode::hash(size_t v1, size_t v2, size_t v3) { return 3 * v1 + v2 * v3; } # 39 "stringTerm.cc" 2 # 1 "../../src/Interface/term.hh" 1 # 31 "../../src/Interface/term.hh" # 1 "../../src/Interface/dagNode.hh" 1 # 32 "../../src/Interface/term.hh" 2 # 1 "../../src/Utility/natSet.hh" 1 # 33 "../../src/Interface/term.hh" 2 # 1 "../../src/Utility/pointerSet.hh" 1 # 34 "../../src/Utility/pointerSet.hh" class PointerSet { public: PointerSet(); PointerSet(const PointerSet& original); virtual ~PointerSet(); int insert(void* p); void subtract(void* p); bool contains(void* p) const; int pointer2Index(void *p) const; int insert(void* p, unsigned int rawHashValue); void subtract(void* p, unsigned int rawHashValue); bool contains(void* p, unsigned int rawHashValue) const; int pointer2Index(void *p, unsigned int rawHashValue) const; void makeEmpty(); void insert(const PointerSet& other); void subtract(const PointerSet& other); void intersect(const PointerSet& other); PointerSet& operator=(const PointerSet& original); bool empty() const; bool contains(const PointerSet& other) const; bool disjoint(const PointerSet& other) const; int cardinality() const; bool operator==(const PointerSet& other) const; bool operator!=(const PointerSet& other) const; void* index2Pointer(int i) const; void swap(PointerSet& other); protected: virtual unsigned int hash(void* pointer) const; virtual bool isEqual(void* pointer1, void* pointer2) const; private: enum Parameters { STARTING_HASH_TABLE_SIZE = 8 }; struct Pair { void* pointer; unsigned int rawHashValue; }; static int localHash(unsigned int rawHashValue); static int localHash2(unsigned int rawHashValue); bool isEqual(const Pair& pair, void* p, unsigned int rawHashValue) const; int findEntry(void* p, unsigned int rawHashValue) const; void resize(int minSize); void rehash(); Vector pointerTable; Vector hashTable; }; inline PointerSet::PointerSet() { } inline PointerSet::PointerSet(const PointerSet& original) : pointerTable(original.pointerTable), hashTable(original.hashTable) { } inline int PointerSet::insert(void* p) { return insert(p, hash(p)); } inline void PointerSet::subtract(void* p) { if (pointerTable.length() != 0) subtract(p, hash(p)); } inline bool PointerSet::contains(void* p) const { return pointerTable.length() != 0 && hashTable[findEntry(p, hash(p))] != UNUSED; } inline int PointerSet::pointer2Index(void *p) const { return (pointerTable.length() != 0) ? hashTable[findEntry(p, hash(p))] : NONE; } inline bool PointerSet::contains(void* p, unsigned int rawHashValue) const { return pointerTable.length() != 0 && hashTable[findEntry(p, rawHashValue)] != UNUSED; } inline int PointerSet::pointer2Index(void *p, unsigned int rawHashValue) const { return (pointerTable.length() != 0) ? hashTable[findEntry(p, rawHashValue)] : NONE; } inline void PointerSet::makeEmpty() { pointerTable.contractTo(0); hashTable.contractTo(0); } inline PointerSet& PointerSet::operator=(const PointerSet& original) { pointerTable = original.pointerTable; hashTable = original.hashTable; return *this; } inline bool PointerSet::empty() const { return pointerTable.length() == 0; } inline int PointerSet::cardinality() const { return pointerTable.length(); } inline bool PointerSet::operator==(const PointerSet& other) const { return pointerTable.length() == other.pointerTable.length() && contains(other); } inline bool PointerSet::operator!=(const PointerSet& other) const { return !(*this == other); } inline void* PointerSet::index2Pointer(int i) const { return pointerTable[i].pointer; } inline void PointerSet::swap(PointerSet& other) { pointerTable.swap(other.pointerTable); hashTable.swap(other.hashTable); } # 34 "../../src/Interface/term.hh" 2 # 1 "../../src/Core/termSet.hh" 1 # 28 "../../src/Core/termSet.hh" # 1 "../../src/Utility/pointerSet.hh" 1 # 29 "../../src/Core/termSet.hh" 2 class TermSet : private PointerSet { public: void insert(Term* t); int term2Index(Term* t) const; PointerSet::cardinality; PointerSet::makeEmpty; private: unsigned int hash(void* pointer) const; bool isEqual(void* pointer1, void* pointer2) const; }; # 35 "../../src/Interface/term.hh" 2 # 1 "../../src/Variable/variableSymbol.hh" 1 # 28 "../../src/Variable/variableSymbol.hh" # 1 "../../src/Interface/symbol.hh" 1 # 29 "../../src/Variable/variableSymbol.hh" 2 class VariableSymbol : public Symbol { VariableSymbol(const VariableSymbol&); VariableSymbol& operator=(const VariableSymbol&); public: VariableSymbol(int id); Term* makeTerm(const Vector& args); DagNode* makeDagNode(const Vector& args); bool eqRewrite(DagNode* subject, RewritingContext& context); void computeBaseSort(DagNode* subject); void normalizeAndComputeTrueSort(DagNode* subject, RewritingContext& context); void stackArguments(DagNode* subject, Vector& stack, int parentIndex); Sort* getSort(); }; inline Sort* VariableSymbol::getSort() { const Vector& s = getOpDeclarations(); ; const Vector& v = s[0].getDomainAndRange(); ; return v[0]; } # 36 "../../src/Interface/term.hh" 2 class Term : public LineNumber { Term(const Term&); Term& operator=(const Term&); static bool discard; public: enum ReturnValues { GREATER = 1, LESS = -2, EQUAL = 0, UNKNOWN = -1 }; Term(Symbol* symbol); virtual ~Term() {} Symbol* symbol() const; bool ground() const; bool stable() const; const NatSet& occursBelow() const; const NatSet& occursInContext() const; const PointerSet& collapseSymbols() const; unsigned int getHashValue() const; Term* deepCopy(SymbolMap* map = 0) const; int compare(const Term* other) const; int compare(const DagNode* other) const; bool equal(const Term* other) const; bool equal(const DagNode* other) const; bool leq(const Sort* sort) const; DagNode* term2Dag(bool setSortInfo = false); DagNode* dagify(); void indexVariables(VariableInfo& indicies); void determineContextVariables(); void markEager(int nrVariables, const NatSet& eagerVariables, Vector& problemVariables); ConnectedComponent* getComponent() const; int getSortIndex() const; Sort* getSort() const; void setSortInfo(ConnectedComponent* component, int index); int getSaveIndex() const; bool matchIndependent(const Term* other) const; bool honorsGroundOutMatch() const; void setHonorsGroundOutMatch(bool flag); bool willGroundOutMatch(const NatSet& boundUniquely) const; void analyseCollapses(); bool hasEagerContext() const; bool greedySafe(const VariableInfo& variableInfo, const NatSet& boundUniquely) const; LhsAutomaton* compileLhs(bool matchAtTop, const VariableInfo& variableInfo, NatSet& boundUniquely, bool& subproblemLikely); int compileRhs(RhsBuilder& rhsBuilder, VariableInfo& variableInfo, TermBag& availableTerms, bool eagerContext); void compileTopRhs(RhsBuilder& rhsBuilder, VariableInfo& variableInfo, TermBag& availableTerms); virtual RawArgumentIterator* arguments() = 0; virtual void deepSelfDestruct() = 0; virtual Term* deepCopy2(SymbolMap* map) const = 0; virtual Term* normalize(bool full, bool& changed = discard) = 0; virtual int compareArguments(const Term* other) const = 0; virtual int compareArguments(const DagNode* other) const = 0; virtual void findAvailableTerms(TermBag& availableTerms, bool eagerContext, bool atTop = false) = 0; virtual void findEagerVariables(bool atTop, NatSet& eagerVariables) const = 0; virtual void analyseConstraintPropagation(NatSet& boundUniquely) const = 0; virtual LhsAutomaton* compileLhs2(bool matchAtTop, const VariableInfo& variableInfo, NatSet& boundUniquely, bool& subproblemLikely) = 0; virtual void markEagerArguments(int nrVariables, const NatSet& eagerVariables, Vector& problemVariables) = 0; virtual int compileRhs2(RhsBuilder& rhsBuilder, VariableInfo& variableInfo, TermBag& availableTerms, bool eagerContext) = 0; virtual DagNode* dagify2() = 0; virtual bool earlyMatchFailOnInstanceOf(const Term* other) const; # 154 "../../src/Interface/term.hh" virtual bool subsumes(const Term* other, bool sameVariableSet) const; # 166 "../../src/Interface/term.hh" virtual void analyseCollapses2(); virtual void insertAbstractionVariables(VariableInfo& variableInfo); int partialCompare(const Substitution& partialSubstitution, DagNode* other) const; virtual int partialCompareUnstable(const Substitution& partialSubstitution, DagNode* other) const; virtual int partialCompareArguments(const Substitution& partialSubstitution, DagNode* other) const; # 207 "../../src/Interface/term.hh" protected: static unsigned int hash(unsigned int v1, unsigned int v2); static unsigned int hash(unsigned int v1, unsigned int v2, unsigned int v3); static void commonSymbols(Vector& terms, PointerSet& common); void addCollapseSymbol(Symbol* symbol); void addCollapseSymbols(const PointerSet& symbols); void setHashValue(unsigned int value); void setSaveIndex(int index); private: enum Flags { STABLE = 1, EAGER_CONTEXT = 2, HONORS_GROUND_OUT_MATCH = 4 }; static bool commonWithOtherPatterns(Vector& patterns, int excluded, Symbol* symbol); static bool hasGeqOrIncomparableVariable(Term* pattern, VariableSymbol* v); static Vector subDags; static TermSet converted; static bool setSortInfoFlag; Symbol* topSymbol; NatSet occursSet; NatSet contextSet; PointerSet collapseSet; Ubyte flags; short sortIndex; ConnectedComponent* connectedComponent; int saveIndex; unsigned int hashValue; }; inline Term::Term(Symbol* symbol) { topSymbol = symbol; flags = 0; sortIndex = Sort::SORT_UNKNOWN; saveIndex = NONE; } inline Symbol* Term::symbol() const { return topSymbol; } inline bool Term::ground() const { return occursSet.empty(); } inline bool Term::stable() const { return flags & STABLE; } inline const NatSet& Term::occursBelow() const { return occursSet; } inline const NatSet& Term::occursInContext() const { return contextSet; } inline const PointerSet& Term::collapseSymbols() const { return collapseSet; } inline Term* Term::deepCopy(SymbolMap* map) const { Term* t = deepCopy2(map); t->setLineNumber(getLineNumber()); return t; } inline int Term::compare(const Term* other) const { Symbol* s = other->topSymbol; return (topSymbol == s) ? compareArguments(other) : topSymbol->compare(s); } inline int Term::compare(const DagNode* other) const { Symbol* s = other->symbol(); return (topSymbol == s) ? compareArguments(other) : topSymbol->compare(s); } inline int Term::partialCompare(const Substitution& partialSubstitution, DagNode* other) const { if (!stable()) return partialCompareUnstable(partialSubstitution, other); Symbol* s = other->symbol(); if (topSymbol == s) return partialCompareArguments(partialSubstitution, other); return (topSymbol->compare(s) < 0) ? LESS : GREATER; } inline bool Term::equal(const Term* other) const { return topSymbol == other->topSymbol && compareArguments(other) == 0; } inline bool Term::equal(const DagNode* other) const { return topSymbol == other->symbol() && compareArguments(other) == 0; } inline DagNode* Term::dagify() { ; int e = converted.term2Index(this); if (e >= 0) return subDags[e]; DagNode* d = dagify2(); if (setSortInfoFlag) { ; d->setSortIndex(sortIndex); d->setReduced(); } converted.insert(this); subDags.append(d); return d; } inline void Term::markEager(int nrVariables, const NatSet& eagerVariables, Vector& problemVariables) { flags |= EAGER_CONTEXT; markEagerArguments(nrVariables, eagerVariables, problemVariables); } inline ConnectedComponent* Term::getComponent() const { return connectedComponent; } inline int Term::getSortIndex() const { return sortIndex; } inline Sort* Term::getSort() const { return (sortIndex == Sort::SORT_UNKNOWN) ? 0 : connectedComponent->sort(sortIndex); } inline int Term::getSaveIndex() const { return saveIndex; } inline void Term::setSaveIndex(int index) { saveIndex = index; } inline void Term::setSortInfo(ConnectedComponent* component, int index) { connectedComponent = component; sortIndex = index; } inline bool Term::matchIndependent(const Term* other) const { return earlyMatchFailOnInstanceOf(other) && other->earlyMatchFailOnInstanceOf(this); } inline void Term::addCollapseSymbol(Symbol* symbol) { (void) collapseSet.insert(symbol); } inline void Term::addCollapseSymbols(const PointerSet& symbols) { collapseSet.insert(symbols); } inline unsigned int Term::getHashValue() const { return hashValue; } inline unsigned int Term::hash(unsigned int v1, unsigned int v2) { return 3 * v1 + v2; } inline unsigned int Term::hash(unsigned int v1, unsigned int v2, unsigned int v3) { return 3 * v1 + v2 * v3; } inline void Term::setHashValue(unsigned int value) { hashValue = value; } inline bool Term::honorsGroundOutMatch() const { return flags & HONORS_GROUND_OUT_MATCH; } inline void Term::setHonorsGroundOutMatch(bool flag) { if (flag) flags |= HONORS_GROUND_OUT_MATCH; else flags &= ~HONORS_GROUND_OUT_MATCH; } inline bool Term::willGroundOutMatch(const NatSet& boundUniquely) const { return honorsGroundOutMatch() && boundUniquely.contains(occursSet); } inline bool Term::hasEagerContext() const { return flags & EAGER_CONTEXT; } inline bool Term::leq(const Sort* sort) const { return ::leq(sortIndex, sort); } ostream& operator<<(ostream& s, const Term* term); # 40 "stringTerm.cc" 2 # 1 "../../src/Core/symbolMap.hh" 1 # 29 "../../src/Core/symbolMap.hh" class SymbolMap { public: virtual Symbol* translate(Symbol* symbol) = 0; }; # 43 "stringTerm.cc" 2 # 1 "stringSymbol.hh" 1 # 28 "stringSymbol.hh" # 1 "../../src/NA_Theory/NA_Symbol.hh" 1 # 28 "../../src/NA_Theory/NA_Symbol.hh" # 1 "../../src/Interface/symbol.hh" 1 # 29 "../../src/NA_Theory/NA_Symbol.hh" 2 class NA_Symbol : public Symbol { public: NA_Symbol(int id); Term* makeTerm(const Vector& args); DagNode* makeDagNode(const Vector& args); bool eqRewrite(DagNode* subject, RewritingContext& context); void computeBaseSort(DagNode* subject); void normalizeAndComputeTrueSort(DagNode* subject, RewritingContext& context); void stackArguments(DagNode* subject, Vector& stack, int parentIndex); }; # 29 "stringSymbol.hh" 2 class StringSymbol : public NA_Symbol { public: StringSymbol(int id); void fillInSortInfo(Term* subject); void computeBaseSort(DagNode* subject); bool isConstructor(DagNode* subject); void compileOpDeclarations(); private: Sort* sort; Sort* charSort; }; # 46 "stringTerm.cc" 2 # 1 "stringTerm.hh" 1 # 28 "stringTerm.hh" # 1 "../../src/Utility/ropeStuff.hh" 1 # 37 "../../src/Utility/ropeStuff.hh" # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 1 3 # 57 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 1 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 namespace std { # 80 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _Tp accumulate(_InputIterator __first, _InputIterator __last, _Tp __init) { ; for ( ; __first != __last; ++__first) __init = __init + *__first; return __init; } # 106 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _Tp accumulate(_InputIterator __first, _InputIterator __last, _Tp __init, _BinaryOperation __binary_op) { ; for ( ; __first != __last; ++__first) __init = __binary_op(__init, *__first); return __init; } # 134 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _Tp inner_product(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _Tp __init) { ; for ( ; __first1 != __last1; ++__first1, ++__first2) __init = __init + (*__first1 * *__first2); return __init; } # 165 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _Tp inner_product(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _Tp __init, _BinaryOperation1 __binary_op1, _BinaryOperation2 __binary_op2) { ; for ( ; __first1 != __last1; ++__first1, ++__first2) __init = __binary_op1(__init, __binary_op2(*__first1, *__first2)); return __init; } # 197 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _OutputIterator partial_sum(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; ; if (__first == __last) return __result; *__result = *__first; _ValueType __value = *__first; while (++__first != __last) { __value = __value + *__first; *++__result = __value; } return ++__result; } # 233 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _OutputIterator partial_sum(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryOperation __binary_op) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; ; if (__first == __last) return __result; *__result = *__first; _ValueType __value = *__first; while (++__first != __last) { __value = __binary_op(__value, *__first); *++__result = __value; } return ++__result; } # 266 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _OutputIterator adjacent_difference(_InputIterator __first, _InputIterator __last, _OutputIterator __result) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; ; if (__first == __last) return __result; *__result = *__first; _ValueType __value = *__first; while (++__first != __last) { _ValueType __tmp = *__first; *++__result = __tmp - __value; __value = __tmp; } return ++__result; } # 301 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stl_numeric.h" 3 template _OutputIterator adjacent_difference(_InputIterator __first, _InputIterator __last, _OutputIterator __result, _BinaryOperation __binary_op) { typedef typename iterator_traits<_InputIterator>::value_type _ValueType; ; if (__first == __last) return __result; *__result = *__first; _ValueType __value = *__first; while (++__first != __last) { _ValueType __tmp = *__first; *++__result = __binary_op(__tmp, __value); __value = __tmp; } return ++__result; } } # 58 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/hash_fun.h" 1 3 # 67 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/hash_fun.h" 3 namespace __gnu_cxx { using std::size_t; template struct hash { }; inline size_t __stl_hash_string(const char* __s) { unsigned long __h = 0; for ( ; *__s; ++__s) __h = 5*__h + *__s; return size_t(__h); } template<> struct hash { size_t operator()(const char* __s) const { return __stl_hash_string(__s); } }; template<> struct hash { size_t operator()(const char* __s) const { return __stl_hash_string(__s); } }; template<> struct hash { size_t operator()(char __x) const { return __x; } }; template<> struct hash { size_t operator()(unsigned char __x) const { return __x; } }; template<> struct hash { size_t operator()(unsigned char __x) const { return __x; } }; template<> struct hash { size_t operator()(short __x) const { return __x; } }; template<> struct hash { size_t operator()(unsigned short __x) const { return __x; } }; template<> struct hash { size_t operator()(int __x) const { return __x; } }; template<> struct hash { size_t operator()(unsigned int __x) const { return __x; } }; template<> struct hash { size_t operator()(long __x) const { return __x; } }; template<> struct hash { size_t operator()(unsigned long __x) const { return __x; } }; } # 60 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 2 3 # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/memory" 1 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/memory" 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/memory" 3 namespace __gnu_cxx { using std::ptrdiff_t; using std::pair; using std::__iterator_category; using std::_Temporary_buffer; template pair<_InputIter, _ForwardIter> __uninitialized_copy_n(_InputIter __first, _Size __count, _ForwardIter __result, std::input_iterator_tag) { _ForwardIter __cur = __result; try { for ( ; __count > 0 ; --__count, ++__first, ++__cur) std::_Construct(&*__cur, *__first); return pair<_InputIter, _ForwardIter>(__first, __cur); } catch(...) { std::_Destroy(__result, __cur); throw; } } template inline pair<_RandomAccessIter, _ForwardIter> __uninitialized_copy_n(_RandomAccessIter __first, _Size __count, _ForwardIter __result, std::random_access_iterator_tag) { _RandomAccessIter __last = __first + __count; return pair<_RandomAccessIter, _ForwardIter>( __last, std::uninitialized_copy(__first, __last, __result)); } template inline pair<_InputIter, _ForwardIter> __uninitialized_copy_n(_InputIter __first, _Size __count, _ForwardIter __result) { return __uninitialized_copy_n(__first, __count, __result, __iterator_category(__first)); } # 127 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/memory" 3 template inline pair<_InputIter, _ForwardIter> uninitialized_copy_n(_InputIter __first, _Size __count, _ForwardIter __result) { return __uninitialized_copy_n(__first, __count, __result, __iterator_category(__first)); } # 157 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/memory" 3 template ::value_type > struct temporary_buffer : public _Temporary_buffer<_ForwardIterator, _Tp> { temporary_buffer(_ForwardIterator __first, _ForwardIterator __last) : _Temporary_buffer<_ForwardIterator, _Tp>(__first, __last) { } ~temporary_buffer() { } }; } # 69 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 2 3 namespace __gnu_cxx { using std::size_t; using std::ptrdiff_t; using std::allocator; using std::iterator; using std::reverse_iterator; using std::_Destroy; template inline _CharT _S_eos(_CharT*) { return _CharT(); } template inline bool _S_is_basic_char_type(_CharT*) { return false; } template inline bool _S_is_one_byte_char_type(_CharT*) { return false; } inline bool _S_is_basic_char_type(char*) { return true; } inline bool _S_is_one_byte_char_type(char*) { return true; } inline bool _S_is_basic_char_type(wchar_t*) { return true; } template inline void _S_cond_store_eos(_CharT&) {} inline void _S_cond_store_eos(char& __c) { __c = 0; } inline void _S_cond_store_eos(wchar_t& __c) { __c = 0; } template class char_producer { public: virtual ~char_producer() {}; virtual void operator()(size_t __start_pos, size_t __len, _CharT* __buffer) = 0; }; # 136 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 template class sequence_buffer : public iterator { public: typedef typename _Sequence::value_type value_type; protected: _Sequence* _M_prefix; value_type _M_buffer[_Buf_sz]; size_t _M_buf_count; public: void flush() { _M_prefix->append(_M_buffer, _M_buffer + _M_buf_count); _M_buf_count = 0; } ~sequence_buffer() { flush(); } sequence_buffer() : _M_prefix(0), _M_buf_count(0) {} sequence_buffer(const sequence_buffer& __x) { _M_prefix = __x._M_prefix; _M_buf_count = __x._M_buf_count; std::copy(__x._M_buffer, __x._M_buffer + __x._M_buf_count, _M_buffer); } sequence_buffer(sequence_buffer& __x) { __x.flush(); _M_prefix = __x._M_prefix; _M_buf_count = 0; } sequence_buffer(_Sequence& __s) : _M_prefix(&__s), _M_buf_count(0) {} sequence_buffer& operator= (sequence_buffer& __x) { __x.flush(); _M_prefix = __x._M_prefix; _M_buf_count = 0; return *this; } sequence_buffer& operator= (const sequence_buffer& __x) { _M_prefix = __x._M_prefix; _M_buf_count = __x._M_buf_count; std::copy(__x._M_buffer, __x._M_buffer + __x._M_buf_count, _M_buffer); return *this; } void push_back(value_type __x) { if (_M_buf_count < _Buf_sz) { _M_buffer[_M_buf_count] = __x; ++_M_buf_count; } else { flush(); _M_buffer[0] = __x; _M_buf_count = 1; } } void append(value_type* __s, size_t __len) { if (__len + _M_buf_count <= _Buf_sz) { size_t __i = _M_buf_count; for (size_t __j = 0; __j < __len; __i++, __j++) { _M_buffer[__i] = __s[__j]; } _M_buf_count += __len; } else if (0 == _M_buf_count) { _M_prefix->append(__s, __s + __len); } else { flush(); append(__s, __len); } } sequence_buffer& write(value_type* __s, size_t __len) { append(__s, __len); return *this; } sequence_buffer& put(value_type __x) { push_back(__x); return *this; } sequence_buffer& operator=(const value_type& __rhs) { push_back(__rhs); return *this; } sequence_buffer& operator*() { return *this; } sequence_buffer& operator++() { return *this; } sequence_buffer operator++(int) { return *this; } }; template class _Rope_char_consumer { public: virtual ~_Rope_char_consumer() {}; virtual bool operator()(const _CharT* __buffer, size_t __len) = 0; }; template > class rope; template struct _Rope_RopeConcatenation; template struct _Rope_RopeLeaf; template struct _Rope_RopeFunction; template struct _Rope_RopeSubstring; template class _Rope_iterator; template class _Rope_const_iterator; template class _Rope_char_ref_proxy; template class _Rope_char_ptr_proxy; template bool operator== (const _Rope_char_ptr_proxy<_CharT,_Alloc>& __x, const _Rope_char_ptr_proxy<_CharT,_Alloc>& __y); template _Rope_const_iterator<_CharT,_Alloc> operator- (const _Rope_const_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n); template _Rope_const_iterator<_CharT,_Alloc> operator+ (const _Rope_const_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n); template _Rope_const_iterator<_CharT,_Alloc> operator+ (ptrdiff_t __n, const _Rope_const_iterator<_CharT,_Alloc>& __x); template bool operator== (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y); template bool operator< (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y); template ptrdiff_t operator- (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y); template _Rope_iterator<_CharT,_Alloc> operator- (const _Rope_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n); template _Rope_iterator<_CharT,_Alloc> operator+ (const _Rope_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n); template _Rope_iterator<_CharT,_Alloc> operator+ (ptrdiff_t __n, const _Rope_iterator<_CharT,_Alloc>& __x); template bool operator== (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y); template bool operator< (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y); template ptrdiff_t operator- (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y); template rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, const rope<_CharT,_Alloc>& __right); template rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, const _CharT* __right); template rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, _CharT __right); template struct _Rope_Concat_fn : public std::binary_function, rope<_CharT,_Alloc>, rope<_CharT,_Alloc> > { rope<_CharT,_Alloc> operator() (const rope<_CharT,_Alloc>& __x, const rope<_CharT,_Alloc>& __y) { return __x + __y; } }; template inline rope<_CharT,_Alloc> identity_element(_Rope_Concat_fn<_CharT, _Alloc>) { return rope<_CharT,_Alloc>(); } struct _Refcount_Base { typedef size_t _RC_t; volatile _RC_t _M_ref_count; __gthread_mutex_t _M_ref_count_lock; _Refcount_Base(_RC_t __n) : _M_ref_count(__n), _M_ref_count_lock() { __gthread_mutex_t __tmp = { }; _M_ref_count_lock = __tmp; } void _M_incr() { __gthread_mutex_lock(&_M_ref_count_lock); ++_M_ref_count; __gthread_mutex_unlock(&_M_ref_count_lock); } _RC_t _M_decr() { __gthread_mutex_lock(&_M_ref_count_lock); volatile _RC_t __tmp = --_M_ref_count; __gthread_mutex_unlock(&_M_ref_count_lock); return __tmp; } }; # 437 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 template struct _Rope_rep_base : public _Alloc { typedef _Alloc allocator_type; allocator_type get_allocator() const { return *static_cast(this); } _Rope_rep_base(size_t __size, const allocator_type&) : _M_size(__size) {} size_t _M_size; # 458 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 typedef typename _Alloc::template rebind<_CharT>::other _DataAlloc; static _CharT* _Data_allocate(size_t __n) { return _DataAlloc().allocate(__n); } static void _Data_deallocate(_CharT *__p, size_t __n) { _DataAlloc().deallocate(__p, __n); } typedef _Rope_RopeConcatenation<_CharT,_Alloc> __C; typedef typename _Alloc::template rebind<__C>::other _CAlloc; static __C* _C_allocate(size_t __n) { return _CAlloc().allocate(__n); } static void _C_deallocate(__C *__p, size_t __n) { _CAlloc().deallocate(__p, __n); } typedef _Rope_RopeLeaf<_CharT,_Alloc> __L; typedef typename _Alloc::template rebind<__L>::other _LAlloc; static __L* _L_allocate(size_t __n) { return _LAlloc().allocate(__n); } static void _L_deallocate(__L *__p, size_t __n) { _LAlloc().deallocate(__p, __n); } typedef _Rope_RopeFunction<_CharT,_Alloc> __F; typedef typename _Alloc::template rebind<__F>::other _FAlloc; static __F* _F_allocate(size_t __n) { return _FAlloc().allocate(__n); } static void _F_deallocate(__F *__p, size_t __n) { _FAlloc().deallocate(__p, __n); } typedef _Rope_RopeSubstring<_CharT,_Alloc> __S; typedef typename _Alloc::template rebind<__S>::other _SAlloc; static __S* _S_allocate(size_t __n) { return _SAlloc().allocate(__n); } static void _S_deallocate(__S *__p, size_t __n) { _SAlloc().deallocate(__p, __n); } }; namespace _Rope_constants { enum { _S_max_rope_depth = 45 }; enum _Tag {_S_leaf, _S_concat, _S_substringfn, _S_function}; } template struct _Rope_RopeRep : public _Rope_rep_base<_CharT,_Alloc> , _Refcount_Base { public: _Rope_constants::_Tag _M_tag:8; bool _M_is_balanced:8; unsigned char _M_depth; _CharT* _M_c_string; __gthread_mutex_t _M_c_string_lock; typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type allocator_type; using _Rope_rep_base<_CharT,_Alloc>::get_allocator; _Rope_RopeRep(_Rope_constants::_Tag __t, int __d, bool __b, size_t __size, allocator_type __a) : _Rope_rep_base<_CharT,_Alloc>(__size, __a), _Refcount_Base(1), _M_tag(__t), _M_is_balanced(__b), _M_depth(__d), _M_c_string(0) { __gthread_mutex_t __tmp = { }; _M_c_string_lock = __tmp; } static void _S_free_string( _CharT*, size_t __len, allocator_type __a); # 518 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 void _M_free_c_string(); void _M_free_tree(); void _M_unref_nonnil() { if (0 == _M_decr()) _M_free_tree(); } void _M_ref_nonnil() { _M_incr(); } static void _S_unref(_Rope_RopeRep* __t) { if (0 != __t) { __t->_M_unref_nonnil(); } } static void _S_ref(_Rope_RopeRep* __t) { if (0 != __t) __t->_M_incr(); } static void _S_free_if_unref(_Rope_RopeRep* __t) { if (0 != __t && 0 == __t->_M_ref_count) __t->_M_free_tree(); } protected: _Rope_RopeRep& operator=(const _Rope_RopeRep&); _Rope_RopeRep(const _Rope_RopeRep&); }; template struct _Rope_RopeLeaf : public _Rope_RopeRep<_CharT,_Alloc> { public: enum { _S_alloc_granularity = 8 }; static size_t _S_rounded_up_size(size_t __n) { size_t __size_with_eos; if (_S_is_basic_char_type((_CharT*)0)) { __size_with_eos = __n + 1; } else { __size_with_eos = __n; } return (__size_with_eos + _S_alloc_granularity-1) &~ (_S_alloc_granularity-1); } _CharT* _M_data; typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type allocator_type; _Rope_RopeLeaf( _CharT* __d, size_t __size, allocator_type __a) : _Rope_RopeRep<_CharT,_Alloc>(_Rope_constants::_S_leaf, 0, true, __size, __a), _M_data(__d) { if (_S_is_basic_char_type((_CharT *)0)) { this->_M_c_string = __d; } } ~_Rope_RopeLeaf() throw() { if (_M_data != this->_M_c_string) { this->_M_free_c_string(); } _S_free_string(_M_data, this->_M_size, this->get_allocator());; } protected: _Rope_RopeLeaf& operator=(const _Rope_RopeLeaf&); _Rope_RopeLeaf(const _Rope_RopeLeaf&); }; template struct _Rope_RopeConcatenation : public _Rope_RopeRep<_CharT,_Alloc> { public: _Rope_RopeRep<_CharT,_Alloc>* _M_left; _Rope_RopeRep<_CharT,_Alloc>* _M_right; typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type allocator_type; _Rope_RopeConcatenation(_Rope_RopeRep<_CharT,_Alloc>* __l, _Rope_RopeRep<_CharT,_Alloc>* __r, allocator_type __a) : _Rope_RopeRep<_CharT,_Alloc>(_Rope_constants::_S_concat, std::max(__l->_M_depth, __r->_M_depth) + 1, false, __l->_M_size + __r->_M_size, __a), _M_left(__l), _M_right(__r) {} ~_Rope_RopeConcatenation() throw() { this->_M_free_c_string(); _M_left->_M_unref_nonnil(); _M_right->_M_unref_nonnil(); } protected: _Rope_RopeConcatenation& operator=(const _Rope_RopeConcatenation&); _Rope_RopeConcatenation(const _Rope_RopeConcatenation&); }; template struct _Rope_RopeFunction : public _Rope_RopeRep<_CharT,_Alloc> { public: char_producer<_CharT>* _M_fn; bool _M_delete_when_done; # 664 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type allocator_type; _Rope_RopeFunction(char_producer<_CharT>* __f, size_t __size, bool __d, allocator_type __a) : _Rope_RopeRep<_CharT,_Alloc>(_Rope_constants::_S_function, 0, true, __size, __a) , _M_fn(__f) , _M_delete_when_done(__d) { } ~_Rope_RopeFunction() throw() { this->_M_free_c_string(); if (_M_delete_when_done) { delete _M_fn; } } protected: _Rope_RopeFunction& operator=(const _Rope_RopeFunction&); _Rope_RopeFunction(const _Rope_RopeFunction&); }; template struct _Rope_RopeSubstring : public _Rope_RopeFunction<_CharT,_Alloc>, public char_producer<_CharT> { public: _Rope_RopeRep<_CharT,_Alloc>* _M_base; size_t _M_start; virtual void operator()(size_t __start_pos, size_t __req_len, _CharT* __buffer) { switch(_M_base->_M_tag) { case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: { char_producer<_CharT>* __fn = ((_Rope_RopeFunction<_CharT,_Alloc>*)_M_base)->_M_fn; (*__fn)(__start_pos + _M_start, __req_len, __buffer); } break; case _Rope_constants::_S_leaf: { _CharT* __s = ((_Rope_RopeLeaf<_CharT,_Alloc>*)_M_base)->_M_data; uninitialized_copy_n(__s + __start_pos + _M_start, __req_len, __buffer); } break; default: break; } } typedef typename _Rope_rep_base<_CharT,_Alloc>::allocator_type allocator_type; _Rope_RopeSubstring(_Rope_RopeRep<_CharT,_Alloc>* __b, size_t __s, size_t __l, allocator_type __a) : _Rope_RopeFunction<_CharT,_Alloc>(this, __l, false, __a), char_producer<_CharT>(), _M_base(__b), _M_start(__s) { _M_base->_M_ref_nonnil(); this->_M_tag = _Rope_constants::_S_substringfn; } virtual ~_Rope_RopeSubstring() throw() { _M_base->_M_unref_nonnil(); } }; # 767 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 template struct _Rope_self_destruct_ptr { _Rope_RopeRep<_CharT,_Alloc>* _M_ptr; ~_Rope_self_destruct_ptr() { _Rope_RopeRep<_CharT,_Alloc>::_S_unref(_M_ptr); } _Rope_self_destruct_ptr() : _M_ptr(0) {}; _Rope_self_destruct_ptr(_Rope_RopeRep<_CharT,_Alloc>* __p) : _M_ptr(__p) {} _Rope_RopeRep<_CharT,_Alloc>& operator*() { return *_M_ptr; } _Rope_RopeRep<_CharT,_Alloc>* operator->() { return _M_ptr; } operator _Rope_RopeRep<_CharT,_Alloc>*() { return _M_ptr; } _Rope_self_destruct_ptr& operator= (_Rope_RopeRep<_CharT,_Alloc>* __x) { _M_ptr = __x; return *this; } }; template class _Rope_char_ref_proxy { friend class rope<_CharT,_Alloc>; friend class _Rope_iterator<_CharT,_Alloc>; friend class _Rope_char_ptr_proxy<_CharT,_Alloc>; typedef _Rope_self_destruct_ptr<_CharT,_Alloc> _Self_destruct_ptr; typedef _Rope_RopeRep<_CharT,_Alloc> _RopeRep; typedef rope<_CharT,_Alloc> _My_rope; size_t _M_pos; _CharT _M_current; bool _M_current_valid; _My_rope* _M_root; public: _Rope_char_ref_proxy(_My_rope* __r, size_t __p) : _M_pos(__p), _M_current(), _M_current_valid(false), _M_root(__r) {} _Rope_char_ref_proxy(const _Rope_char_ref_proxy& __x) : _M_pos(__x._M_pos), _M_current(__x._M_current), _M_current_valid(false), _M_root(__x._M_root) {} _Rope_char_ref_proxy(_My_rope* __r, size_t __p, _CharT __c) : _M_pos(__p), _M_current(__c), _M_current_valid(true), _M_root(__r) {} inline operator _CharT () const; _Rope_char_ref_proxy& operator= (_CharT __c); _Rope_char_ptr_proxy<_CharT,_Alloc> operator& () const; _Rope_char_ref_proxy& operator= (const _Rope_char_ref_proxy& __c) { return operator=((_CharT)__c); } }; template inline void swap(_Rope_char_ref_proxy <_CharT, __Alloc > __a, _Rope_char_ref_proxy <_CharT, __Alloc > __b) { _CharT __tmp = __a; __a = __b; __b = __tmp; } template class _Rope_char_ptr_proxy { friend class _Rope_char_ref_proxy<_CharT,_Alloc>; size_t _M_pos; rope<_CharT,_Alloc>* _M_root; public: _Rope_char_ptr_proxy(const _Rope_char_ref_proxy<_CharT,_Alloc>& __x) : _M_pos(__x._M_pos), _M_root(__x._M_root) {} _Rope_char_ptr_proxy(const _Rope_char_ptr_proxy& __x) : _M_pos(__x._M_pos), _M_root(__x._M_root) {} _Rope_char_ptr_proxy() {} _Rope_char_ptr_proxy(_CharT* __x) : _M_root(0), _M_pos(0) { } _Rope_char_ptr_proxy& operator= (const _Rope_char_ptr_proxy& __x) { _M_pos = __x._M_pos; _M_root = __x._M_root; return *this; } template friend bool operator== (const _Rope_char_ptr_proxy<_CharT2,_Alloc2>& __x, const _Rope_char_ptr_proxy<_CharT2,_Alloc2>& __y); _Rope_char_ref_proxy<_CharT,_Alloc> operator*() const { return _Rope_char_ref_proxy<_CharT,_Alloc>(_M_root, _M_pos); } }; # 875 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 template class _Rope_iterator_base : public iterator { friend class rope<_CharT,_Alloc>; public: typedef _Alloc _allocator_type; typedef _Rope_RopeRep<_CharT,_Alloc> _RopeRep; protected: enum { _S_path_cache_len = 4 }; enum { _S_iterator_buf_len = 15 }; size_t _M_current_pos; _RopeRep* _M_root; size_t _M_leaf_pos; _CharT* _M_buf_start; _CharT* _M_buf_ptr; _CharT* _M_buf_end; const _RopeRep* _M_path_end[_S_path_cache_len]; int _M_leaf_index; unsigned char _M_path_directions; _CharT _M_tmp_buf[_S_iterator_buf_len]; static void _S_setbuf(_Rope_iterator_base& __x); static void _S_setcache(_Rope_iterator_base& __x); static void _S_setcache_for_incr(_Rope_iterator_base& __x); _Rope_iterator_base() {} _Rope_iterator_base(_RopeRep* __root, size_t __pos) : _M_current_pos(__pos), _M_root(__root), _M_buf_ptr(0) {} void _M_incr(size_t __n); void _M_decr(size_t __n); public: size_t index() const { return _M_current_pos; } _Rope_iterator_base(const _Rope_iterator_base& __x) { if (0 != __x._M_buf_ptr) { *this = __x; } else { _M_current_pos = __x._M_current_pos; _M_root = __x._M_root; _M_buf_ptr = 0; } } }; template class _Rope_iterator; template class _Rope_const_iterator : public _Rope_iterator_base<_CharT,_Alloc> { friend class rope<_CharT,_Alloc>; protected: typedef _Rope_RopeRep<_CharT,_Alloc> _RopeRep; _Rope_const_iterator(const _RopeRep* __root, size_t __pos): _Rope_iterator_base<_CharT,_Alloc>( const_cast<_RopeRep*>(__root), __pos) {} public: typedef _CharT reference; typedef const _CharT* pointer; public: _Rope_const_iterator() {}; _Rope_const_iterator(const _Rope_const_iterator& __x) : _Rope_iterator_base<_CharT,_Alloc>(__x) { } _Rope_const_iterator(const _Rope_iterator<_CharT,_Alloc>& __x); _Rope_const_iterator(const rope<_CharT,_Alloc>& __r, size_t __pos) : _Rope_iterator_base<_CharT,_Alloc>(__r._M_tree_ptr, __pos) {} _Rope_const_iterator& operator= (const _Rope_const_iterator& __x) { if (0 != __x._M_buf_ptr) { *(static_cast<_Rope_iterator_base<_CharT,_Alloc>*>(this)) = __x; } else { this->_M_current_pos = __x._M_current_pos; this->_M_root = __x._M_root; this->_M_buf_ptr = 0; } return(*this); } reference operator*() { if (0 == this->_M_buf_ptr) _S_setcache(*this); return *this->_M_buf_ptr; } _Rope_const_iterator& operator++() { _CharT* __next; if (0 != this->_M_buf_ptr && (__next = this->_M_buf_ptr + 1) < this->_M_buf_end) { this->_M_buf_ptr = __next; ++this->_M_current_pos; } else { this->_M_incr(1); } return *this; } _Rope_const_iterator& operator+=(ptrdiff_t __n) { if (__n >= 0) { this->_M_incr(__n); } else { this->_M_decr(-__n); } return *this; } _Rope_const_iterator& operator--() { this->_M_decr(1); return *this; } _Rope_const_iterator& operator-=(ptrdiff_t __n) { if (__n >= 0) { this->_M_decr(__n); } else { this->_M_incr(-__n); } return *this; } _Rope_const_iterator operator++(int) { size_t __old_pos = this->_M_current_pos; this->_M_incr(1); return _Rope_const_iterator<_CharT,_Alloc>(this->_M_root, __old_pos); } _Rope_const_iterator operator--(int) { size_t __old_pos = this->_M_current_pos; this->_M_decr(1); return _Rope_const_iterator<_CharT,_Alloc>(this->_M_root, __old_pos); } template friend _Rope_const_iterator<_CharT2,_Alloc2> operator- (const _Rope_const_iterator<_CharT2,_Alloc2>& __x, ptrdiff_t __n); template friend _Rope_const_iterator<_CharT2,_Alloc2> operator+ (const _Rope_const_iterator<_CharT2,_Alloc2>& __x, ptrdiff_t __n); template friend _Rope_const_iterator<_CharT2,_Alloc2> operator+ (ptrdiff_t __n, const _Rope_const_iterator<_CharT2,_Alloc2>& __x); reference operator[](size_t __n) { return rope<_CharT,_Alloc>::_S_fetch(this->_M_root, this->_M_current_pos + __n); } template friend bool operator== (const _Rope_const_iterator<_CharT2,_Alloc2>& __x, const _Rope_const_iterator<_CharT2,_Alloc2>& __y); template friend bool operator< (const _Rope_const_iterator<_CharT2,_Alloc2>& __x, const _Rope_const_iterator<_CharT2,_Alloc2>& __y); template friend ptrdiff_t operator- (const _Rope_const_iterator<_CharT2,_Alloc2>& __x, const _Rope_const_iterator<_CharT2,_Alloc2>& __y); }; template class _Rope_iterator : public _Rope_iterator_base<_CharT,_Alloc> { friend class rope<_CharT,_Alloc>; protected: typedef typename _Rope_iterator_base<_CharT,_Alloc>::_RopeRep _RopeRep; rope<_CharT,_Alloc>* _M_root_rope; _Rope_iterator(rope<_CharT,_Alloc>* __r, size_t __pos) : _Rope_iterator_base<_CharT,_Alloc>(__r->_M_tree_ptr, __pos), _M_root_rope(__r) { _RopeRep::_S_ref(this->_M_root); if (!(__r -> empty()))_S_setcache(*this); } void _M_check(); public: typedef _Rope_char_ref_proxy<_CharT,_Alloc> reference; typedef _Rope_char_ref_proxy<_CharT,_Alloc>* pointer; public: rope<_CharT,_Alloc>& container() { return *_M_root_rope; } _Rope_iterator() { this->_M_root = 0; }; _Rope_iterator(const _Rope_iterator& __x) : _Rope_iterator_base<_CharT,_Alloc>(__x) { _M_root_rope = __x._M_root_rope; _RopeRep::_S_ref(this->_M_root); } _Rope_iterator(rope<_CharT,_Alloc>& __r, size_t __pos); ~_Rope_iterator() { _RopeRep::_S_unref(this->_M_root); } _Rope_iterator& operator= (const _Rope_iterator& __x) { _RopeRep* __old = this->_M_root; _RopeRep::_S_ref(__x._M_root); if (0 != __x._M_buf_ptr) { _M_root_rope = __x._M_root_rope; *(static_cast<_Rope_iterator_base<_CharT,_Alloc>*>(this)) = __x; } else { this->_M_current_pos = __x._M_current_pos; this->_M_root = __x._M_root; _M_root_rope = __x._M_root_rope; this->_M_buf_ptr = 0; } _RopeRep::_S_unref(__old); return(*this); } reference operator*() { _M_check(); if (0 == this->_M_buf_ptr) { return _Rope_char_ref_proxy<_CharT,_Alloc>( _M_root_rope, this->_M_current_pos); } else { return _Rope_char_ref_proxy<_CharT,_Alloc>( _M_root_rope, this->_M_current_pos, *this->_M_buf_ptr); } } _Rope_iterator& operator++() { this->_M_incr(1); return *this; } _Rope_iterator& operator+=(ptrdiff_t __n) { if (__n >= 0) { this->_M_incr(__n); } else { this->_M_decr(-__n); } return *this; } _Rope_iterator& operator--() { this->_M_decr(1); return *this; } _Rope_iterator& operator-=(ptrdiff_t __n) { if (__n >= 0) { this->_M_decr(__n); } else { this->_M_incr(-__n); } return *this; } _Rope_iterator operator++(int) { size_t __old_pos = this->_M_current_pos; this->_M_incr(1); return _Rope_iterator<_CharT,_Alloc>(_M_root_rope, __old_pos); } _Rope_iterator operator--(int) { size_t __old_pos = this->_M_current_pos; this->_M_decr(1); return _Rope_iterator<_CharT,_Alloc>(_M_root_rope, __old_pos); } reference operator[](ptrdiff_t __n) { return _Rope_char_ref_proxy<_CharT,_Alloc>( _M_root_rope, this->_M_current_pos + __n); } template friend bool operator== (const _Rope_iterator<_CharT2,_Alloc2>& __x, const _Rope_iterator<_CharT2,_Alloc2>& __y); template friend bool operator< (const _Rope_iterator<_CharT2,_Alloc2>& __x, const _Rope_iterator<_CharT2,_Alloc2>& __y); template friend ptrdiff_t operator- (const _Rope_iterator<_CharT2,_Alloc2>& __x, const _Rope_iterator<_CharT2,_Alloc2>& __y); template friend _Rope_iterator<_CharT2,_Alloc2> operator- (const _Rope_iterator<_CharT2,_Alloc2>& __x, ptrdiff_t __n); template friend _Rope_iterator<_CharT2,_Alloc2> operator+ (const _Rope_iterator<_CharT2,_Alloc2>& __x, ptrdiff_t __n); template friend _Rope_iterator<_CharT2,_Alloc2> operator+ (ptrdiff_t __n, const _Rope_iterator<_CharT2,_Alloc2>& __x); }; template struct _Rope_base : public _Alloc { typedef _Alloc allocator_type; allocator_type get_allocator() const { return *static_cast(this); } typedef _Rope_RopeRep<_CharT,_Alloc> _RopeRep; _Rope_base(_RopeRep* __t, const allocator_type&) : _M_tree_ptr(__t) {} _Rope_base(const allocator_type&) {} _RopeRep *_M_tree_ptr; # 1217 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 typedef typename _Alloc::template rebind<_CharT>::other _DataAlloc; static _CharT* _Data_allocate(size_t __n) { return _DataAlloc().allocate(__n); } static void _Data_deallocate(_CharT *__p, size_t __n) { _DataAlloc().deallocate(__p, __n); } typedef _Rope_RopeConcatenation<_CharT,_Alloc> __C; typedef typename _Alloc::template rebind<__C>::other _CAlloc; static __C* _C_allocate(size_t __n) { return _CAlloc().allocate(__n); } static void _C_deallocate(__C *__p, size_t __n) { _CAlloc().deallocate(__p, __n); } typedef _Rope_RopeLeaf<_CharT,_Alloc> __L; typedef typename _Alloc::template rebind<__L>::other _LAlloc; static __L* _L_allocate(size_t __n) { return _LAlloc().allocate(__n); } static void _L_deallocate(__L *__p, size_t __n) { _LAlloc().deallocate(__p, __n); } typedef _Rope_RopeFunction<_CharT,_Alloc> __F; typedef typename _Alloc::template rebind<__F>::other _FAlloc; static __F* _F_allocate(size_t __n) { return _FAlloc().allocate(__n); } static void _F_deallocate(__F *__p, size_t __n) { _FAlloc().deallocate(__p, __n); } typedef _Rope_RopeSubstring<_CharT,_Alloc> __S; typedef typename _Alloc::template rebind<__S>::other _SAlloc; static __S* _S_allocate(size_t __n) { return _SAlloc().allocate(__n); } static void _S_deallocate(__S *__p, size_t __n) { _SAlloc().deallocate(__p, __n); } protected: _Rope_base& operator=(const _Rope_base&); _Rope_base(const _Rope_base&); }; template class rope : public _Rope_base<_CharT,_Alloc> { public: typedef _CharT value_type; typedef ptrdiff_t difference_type; typedef size_t size_type; typedef _CharT const_reference; typedef const _CharT* const_pointer; typedef _Rope_iterator<_CharT,_Alloc> iterator; typedef _Rope_const_iterator<_CharT,_Alloc> const_iterator; typedef _Rope_char_ref_proxy<_CharT,_Alloc> reference; typedef _Rope_char_ptr_proxy<_CharT,_Alloc> pointer; friend class _Rope_iterator<_CharT,_Alloc>; friend class _Rope_const_iterator<_CharT,_Alloc>; friend struct _Rope_RopeRep<_CharT,_Alloc>; friend class _Rope_iterator_base<_CharT,_Alloc>; friend class _Rope_char_ptr_proxy<_CharT,_Alloc>; friend class _Rope_char_ref_proxy<_CharT,_Alloc>; friend struct _Rope_RopeSubstring<_CharT,_Alloc>; protected: typedef _Rope_base<_CharT,_Alloc> _Base; typedef typename _Base::allocator_type allocator_type; using _Base::_M_tree_ptr; using _Base::get_allocator; typedef _CharT* _Cstrptr; static _CharT _S_empty_c_str[1]; static bool _S_is0(_CharT __c) { return __c == _S_eos((_CharT*)0); } enum { _S_copy_max = 23 }; typedef _Rope_RopeRep<_CharT,_Alloc> _RopeRep; typedef _Rope_RopeConcatenation<_CharT,_Alloc> _RopeConcatenation; typedef _Rope_RopeLeaf<_CharT,_Alloc> _RopeLeaf; typedef _Rope_RopeFunction<_CharT,_Alloc> _RopeFunction; typedef _Rope_RopeSubstring<_CharT,_Alloc> _RopeSubstring; static _CharT _S_fetch(_RopeRep* __r, size_type __pos); # 1284 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 static _CharT* _S_fetch_ptr(_RopeRep* __r, size_type __pos); static bool _S_apply_to_pieces( _Rope_char_consumer<_CharT>& __c, const _RopeRep* __r, size_t __begin, size_t __end); static void _S_unref(_RopeRep* __t) { _RopeRep::_S_unref(__t); } static void _S_ref(_RopeRep* __t) { _RopeRep::_S_ref(__t); } # 1312 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 typedef _Rope_self_destruct_ptr<_CharT,_Alloc> _Self_destruct_ptr; static _RopeRep* _S_substring(_RopeRep* __base, size_t __start, size_t __endp1); static _RopeRep* _S_concat_char_iter(_RopeRep* __r, const _CharT* __iter, size_t __slen); static _RopeRep* _S_destr_concat_char_iter(_RopeRep* __r, const _CharT* __iter, size_t __slen) ; static _RopeRep* _S_concat(_RopeRep* __left, _RopeRep* __right); public: void apply_to_pieces( size_t __begin, size_t __end, _Rope_char_consumer<_CharT>& __c) const { _S_apply_to_pieces(__c, this->_M_tree_ptr, __begin, __end); } protected: static size_t _S_rounded_up_size(size_t __n) { return _RopeLeaf::_S_rounded_up_size(__n); } static size_t _S_allocated_capacity(size_t __n) { if (_S_is_basic_char_type((_CharT*)0)) { return _S_rounded_up_size(__n) - 1; } else { return _S_rounded_up_size(__n); } } static _RopeLeaf* _S_new_RopeLeaf( _CharT *__s, size_t __size, allocator_type __a) { _RopeLeaf* __space = typename _Base::_LAlloc(__a).allocate(1); return new(__space) _RopeLeaf(__s, __size, __a); } static _RopeConcatenation* _S_new_RopeConcatenation( _RopeRep* __left, _RopeRep* __right, allocator_type __a) { _RopeConcatenation* __space = typename _Base::_CAlloc(__a).allocate(1); return new(__space) _RopeConcatenation(__left, __right, __a); } static _RopeFunction* _S_new_RopeFunction(char_producer<_CharT>* __f, size_t __size, bool __d, allocator_type __a) { _RopeFunction* __space = typename _Base::_FAlloc(__a).allocate(1); return new(__space) _RopeFunction(__f, __size, __d, __a); } static _RopeSubstring* _S_new_RopeSubstring( _Rope_RopeRep<_CharT,_Alloc>* __b, size_t __s, size_t __l, allocator_type __a) { _RopeSubstring* __space = typename _Base::_SAlloc(__a).allocate(1); return new(__space) _RopeSubstring(__b, __s, __l, __a); } static _RopeLeaf* _S_RopeLeaf_from_unowned_char_ptr(const _CharT *__s, size_t __size, allocator_type __a) { if (0 == __size) return 0; _CharT* __buf = __a.allocate(_S_rounded_up_size(__size)); uninitialized_copy_n(__s, __size, __buf); _S_cond_store_eos(__buf[__size]); try { return _S_new_RopeLeaf(__buf, __size, __a); } catch(...) { _RopeRep::_S_free_string(__buf, __size, __a);; throw; } } # 1421 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 static _RopeRep* _S_tree_concat(_RopeRep* __left, _RopeRep* __right); static _RopeLeaf* _S_leaf_concat_char_iter(_RopeLeaf* __r, const _CharT* __iter, size_t __slen); static _RopeLeaf* _S_destr_leaf_concat_char_iter (_RopeLeaf* __r, const _CharT* __iter, size_t __slen); private: static size_t _S_char_ptr_len(const _CharT* __s); rope(_RopeRep* __t, const allocator_type& __a = allocator_type()) : _Base(__t,__a) { } static _CharT* _S_flatten(_RopeRep* __r, _CharT* __buffer); static _CharT* _S_flatten(_RopeRep* __r, size_t __start, size_t __len, _CharT* __buffer); static const unsigned long _S_min_len[_Rope_constants::_S_max_rope_depth + 1]; static bool _S_is_balanced(_RopeRep* __r) { return (__r->_M_size >= _S_min_len[__r->_M_depth]); } static bool _S_is_almost_balanced(_RopeRep* __r) { return (__r->_M_depth == 0 || __r->_M_size >= _S_min_len[__r->_M_depth - 1]); } static bool _S_is_roughly_balanced(_RopeRep* __r) { return (__r->_M_depth <= 1 || __r->_M_size >= _S_min_len[__r->_M_depth - 2]); } static _RopeRep* _S_concat_and_set_balanced(_RopeRep* __left, _RopeRep* __right) { _RopeRep* __result = _S_concat(__left, __right); if (_S_is_balanced(__result)) __result->_M_is_balanced = true; return __result; } static _RopeRep* _S_balance(_RopeRep* __r); static void _S_add_to_forest(_RopeRep*__r, _RopeRep** __forest); static void _S_add_leaf_to_forest(_RopeRep* __r, _RopeRep** __forest); static void _S_dump(_RopeRep* __r, int __indent = 0); static int _S_compare(const _RopeRep* __x, const _RopeRep* __y); public: bool empty() const { return 0 == this->_M_tree_ptr; } int compare(const rope& __y) const { return _S_compare(this->_M_tree_ptr, __y._M_tree_ptr); } rope(const _CharT* __s, const allocator_type& __a = allocator_type()) : _Base(_S_RopeLeaf_from_unowned_char_ptr(__s, _S_char_ptr_len(__s), __a),__a) { } rope(const _CharT* __s, size_t __len, const allocator_type& __a = allocator_type()) : _Base(_S_RopeLeaf_from_unowned_char_ptr(__s, __len, __a), __a) { } rope(const _CharT *__s, const _CharT *__e, const allocator_type& __a = allocator_type()) : _Base(_S_RopeLeaf_from_unowned_char_ptr(__s, __e - __s, __a), __a) { } rope(const const_iterator& __s, const const_iterator& __e, const allocator_type& __a = allocator_type()) : _Base(_S_substring(__s._M_root, __s._M_current_pos, __e._M_current_pos), __a) { } rope(const iterator& __s, const iterator& __e, const allocator_type& __a = allocator_type()) : _Base(_S_substring(__s._M_root, __s._M_current_pos, __e._M_current_pos), __a) { } rope(_CharT __c, const allocator_type& __a = allocator_type()) : _Base(__a) { _CharT* __buf = this->_Data_allocate(_S_rounded_up_size(1)); std::_Construct(__buf, __c); try { this->_M_tree_ptr = _S_new_RopeLeaf(__buf, 1, __a); } catch(...) { _RopeRep::_S_free_string(__buf, 1, __a);; throw; } } rope(size_t __n, _CharT __c, const allocator_type& __a = allocator_type()); rope(const allocator_type& __a = allocator_type()) : _Base(0, __a) {} rope(char_producer<_CharT> *__fn, size_t __len, bool __delete_fn, const allocator_type& __a = allocator_type()) : _Base(__a) { this->_M_tree_ptr = (0 == __len) ? 0 : _S_new_RopeFunction(__fn, __len, __delete_fn, __a); } rope(const rope& __x, const allocator_type& __a = allocator_type()) : _Base(__x._M_tree_ptr, __a) { _S_ref(this->_M_tree_ptr); } ~rope() throw() { _S_unref(this->_M_tree_ptr); } rope& operator=(const rope& __x) { _RopeRep* __old = this->_M_tree_ptr; this->_M_tree_ptr = __x._M_tree_ptr; _S_ref(this->_M_tree_ptr); _S_unref(__old); return *this; } void clear() { _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = 0; } void push_back(_CharT __x) { _RopeRep* __old = this->_M_tree_ptr; this->_M_tree_ptr = _S_destr_concat_char_iter(this->_M_tree_ptr, &__x, 1); _S_unref(__old); } void pop_back() { _RopeRep* __old = this->_M_tree_ptr; this->_M_tree_ptr = _S_substring(this->_M_tree_ptr, 0, this->_M_tree_ptr->_M_size - 1); _S_unref(__old); } _CharT back() const { return _S_fetch(this->_M_tree_ptr, this->_M_tree_ptr->_M_size - 1); } void push_front(_CharT __x) { _RopeRep* __old = this->_M_tree_ptr; _RopeRep* __left = _S_RopeLeaf_from_unowned_char_ptr(&__x, 1, this->get_allocator()); try { this->_M_tree_ptr = _S_concat(__left, this->_M_tree_ptr); _S_unref(__old); _S_unref(__left); } catch(...) { _S_unref(__left); throw; } } void pop_front() { _RopeRep* __old = this->_M_tree_ptr; this->_M_tree_ptr = _S_substring(this->_M_tree_ptr, 1, this->_M_tree_ptr->_M_size); _S_unref(__old); } _CharT front() const { return _S_fetch(this->_M_tree_ptr, 0); } void balance() { _RopeRep* __old = this->_M_tree_ptr; this->_M_tree_ptr = _S_balance(this->_M_tree_ptr); _S_unref(__old); } void copy(_CharT* __buffer) const { _Destroy(__buffer, __buffer + size()); _S_flatten(this->_M_tree_ptr, __buffer); } size_type copy(size_type __pos, size_type __n, _CharT* __buffer) const { size_t __size = size(); size_t __len = (__pos + __n > __size? __size - __pos : __n); _Destroy(__buffer, __buffer + __len); _S_flatten(this->_M_tree_ptr, __pos, __len, __buffer); return __len; } void dump() { _S_dump(this->_M_tree_ptr); } const _CharT* c_str() const; const _CharT* replace_with_c_str(); void delete_c_str () { if (0 == this->_M_tree_ptr) return; if (_Rope_constants::_S_leaf == this->_M_tree_ptr->_M_tag && ((_RopeLeaf*)this->_M_tree_ptr)->_M_data == this->_M_tree_ptr->_M_c_string) { return; } this->_M_tree_ptr->_M_free_c_string(); this->_M_tree_ptr->_M_c_string = 0; } _CharT operator[] (size_type __pos) const { return _S_fetch(this->_M_tree_ptr, __pos); } _CharT at(size_type __pos) const { return (*this)[__pos]; } const_iterator begin() const { return(const_iterator(this->_M_tree_ptr, 0)); } const_iterator const_begin() const { return(const_iterator(this->_M_tree_ptr, 0)); } const_iterator end() const { return(const_iterator(this->_M_tree_ptr, size())); } const_iterator const_end() const { return(const_iterator(this->_M_tree_ptr, size())); } size_type size() const { return(0 == this->_M_tree_ptr? 0 : this->_M_tree_ptr->_M_size); } size_type length() const { return size(); } size_type max_size() const { return _S_min_len[_Rope_constants::_S_max_rope_depth - 1] - 1; } typedef reverse_iterator const_reverse_iterator; const_reverse_iterator rbegin() const { return const_reverse_iterator(end()); } const_reverse_iterator const_rbegin() const { return const_reverse_iterator(end()); } const_reverse_iterator rend() const { return const_reverse_iterator(begin()); } const_reverse_iterator const_rend() const { return const_reverse_iterator(begin()); } template friend rope<_CharT2,_Alloc2> operator+ (const rope<_CharT2,_Alloc2>& __left, const rope<_CharT2,_Alloc2>& __right); template friend rope<_CharT2,_Alloc2> operator+ (const rope<_CharT2,_Alloc2>& __left, const _CharT2* __right); template friend rope<_CharT2,_Alloc2> operator+ (const rope<_CharT2,_Alloc2>& __left, _CharT2 __right); rope& append(const _CharT* __iter, size_t __n) { _RopeRep* __result = _S_destr_concat_char_iter(this->_M_tree_ptr, __iter, __n); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; return *this; } rope& append(const _CharT* __c_string) { size_t __len = _S_char_ptr_len(__c_string); append(__c_string, __len); return(*this); } rope& append(const _CharT* __s, const _CharT* __e) { _RopeRep* __result = _S_destr_concat_char_iter(this->_M_tree_ptr, __s, __e - __s); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; return *this; } rope& append(const_iterator __s, const_iterator __e) { _Self_destruct_ptr __appendee(_S_substring( __s._M_root, __s._M_current_pos, __e._M_current_pos)); _RopeRep* __result = _S_concat(this->_M_tree_ptr, (_RopeRep*)__appendee); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; return *this; } rope& append(_CharT __c) { _RopeRep* __result = _S_destr_concat_char_iter(this->_M_tree_ptr, &__c, 1); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; return *this; } rope& append() { return append(_CharT()); } rope& append(const rope& __y) { _RopeRep* __result = _S_concat(this->_M_tree_ptr, __y._M_tree_ptr); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; return *this; } rope& append(size_t __n, _CharT __c) { rope<_CharT,_Alloc> __last(__n, __c); return append(__last); } void swap(rope& __b) { _RopeRep* __tmp = this->_M_tree_ptr; this->_M_tree_ptr = __b._M_tree_ptr; __b._M_tree_ptr = __tmp; } protected: static _RopeRep* replace(_RopeRep* __old, size_t __pos1, size_t __pos2, _RopeRep* __r) { if (0 == __old) { _S_ref(__r); return __r; } _Self_destruct_ptr __left( _S_substring(__old, 0, __pos1)); _Self_destruct_ptr __right( _S_substring(__old, __pos2, __old->_M_size)); _RopeRep* __result; if (0 == __r) { __result = _S_concat(__left, __right); } else { _Self_destruct_ptr __left_result(_S_concat(__left, __r)); __result = _S_concat(__left_result, __right); } return __result; } public: void insert(size_t __p, const rope& __r) { _RopeRep* __result = replace(this->_M_tree_ptr, __p, __p, __r._M_tree_ptr); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; } void insert(size_t __p, size_t __n, _CharT __c) { rope<_CharT,_Alloc> __r(__n,__c); insert(__p, __r); } void insert(size_t __p, const _CharT* __i, size_t __n) { _Self_destruct_ptr __left(_S_substring(this->_M_tree_ptr, 0, __p)); _Self_destruct_ptr __right(_S_substring(this->_M_tree_ptr, __p, size())); _Self_destruct_ptr __left_result( _S_concat_char_iter(__left, __i, __n)); _RopeRep* __result = _S_concat(__left_result, __right); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; } void insert(size_t __p, const _CharT* __c_string) { insert(__p, __c_string, _S_char_ptr_len(__c_string)); } void insert(size_t __p, _CharT __c) { insert(__p, &__c, 1); } void insert(size_t __p) { _CharT __c = _CharT(); insert(__p, &__c, 1); } void insert(size_t __p, const _CharT* __i, const _CharT* __j) { rope __r(__i, __j); insert(__p, __r); } void insert(size_t __p, const const_iterator& __i, const const_iterator& __j) { rope __r(__i, __j); insert(__p, __r); } void insert(size_t __p, const iterator& __i, const iterator& __j) { rope __r(__i, __j); insert(__p, __r); } void replace(size_t __p, size_t __n, const rope& __r) { _RopeRep* __result = replace(this->_M_tree_ptr, __p, __p + __n, __r._M_tree_ptr); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; } void replace(size_t __p, size_t __n, const _CharT* __i, size_t __i_len) { rope __r(__i, __i_len); replace(__p, __n, __r); } void replace(size_t __p, size_t __n, _CharT __c) { rope __r(__c); replace(__p, __n, __r); } void replace(size_t __p, size_t __n, const _CharT* __c_string) { rope __r(__c_string); replace(__p, __n, __r); } void replace(size_t __p, size_t __n, const _CharT* __i, const _CharT* __j) { rope __r(__i, __j); replace(__p, __n, __r); } void replace(size_t __p, size_t __n, const const_iterator& __i, const const_iterator& __j) { rope __r(__i, __j); replace(__p, __n, __r); } void replace(size_t __p, size_t __n, const iterator& __i, const iterator& __j) { rope __r(__i, __j); replace(__p, __n, __r); } void replace(size_t __p, _CharT __c) { iterator __i(this, __p); *__i = __c; } void replace(size_t __p, const rope& __r) { replace(__p, 1, __r); } void replace(size_t __p, const _CharT* __i, size_t __i_len) { replace(__p, 1, __i, __i_len); } void replace(size_t __p, const _CharT* __c_string) { replace(__p, 1, __c_string); } void replace(size_t __p, const _CharT* __i, const _CharT* __j) { replace(__p, 1, __i, __j); } void replace(size_t __p, const const_iterator& __i, const const_iterator& __j) { replace(__p, 1, __i, __j); } void replace(size_t __p, const iterator& __i, const iterator& __j) { replace(__p, 1, __i, __j); } void erase(size_t __p, size_t __n) { _RopeRep* __result = replace(this->_M_tree_ptr, __p, __p + __n, 0); _S_unref(this->_M_tree_ptr); this->_M_tree_ptr = __result; } void erase(size_t __p) { erase(__p, __p + 1); } iterator insert(const iterator& __p, const rope& __r) { insert(__p.index(), __r); return __p; } iterator insert(const iterator& __p, size_t __n, _CharT __c) { insert(__p.index(), __n, __c); return __p; } iterator insert(const iterator& __p, _CharT __c) { insert(__p.index(), __c); return __p; } iterator insert(const iterator& __p ) { insert(__p.index()); return __p; } iterator insert(const iterator& __p, const _CharT* c_string) { insert(__p.index(), c_string); return __p; } iterator insert(const iterator& __p, const _CharT* __i, size_t __n) { insert(__p.index(), __i, __n); return __p; } iterator insert(const iterator& __p, const _CharT* __i, const _CharT* __j) { insert(__p.index(), __i, __j); return __p; } iterator insert(const iterator& __p, const const_iterator& __i, const const_iterator& __j) { insert(__p.index(), __i, __j); return __p; } iterator insert(const iterator& __p, const iterator& __i, const iterator& __j) { insert(__p.index(), __i, __j); return __p; } void replace(const iterator& __p, const iterator& __q, const rope& __r) { replace(__p.index(), __q.index() - __p.index(), __r); } void replace(const iterator& __p, const iterator& __q, _CharT __c) { replace(__p.index(), __q.index() - __p.index(), __c); } void replace(const iterator& __p, const iterator& __q, const _CharT* __c_string) { replace(__p.index(), __q.index() - __p.index(), __c_string); } void replace(const iterator& __p, const iterator& __q, const _CharT* __i, size_t __n) { replace(__p.index(), __q.index() - __p.index(), __i, __n); } void replace(const iterator& __p, const iterator& __q, const _CharT* __i, const _CharT* __j) { replace(__p.index(), __q.index() - __p.index(), __i, __j); } void replace(const iterator& __p, const iterator& __q, const const_iterator& __i, const const_iterator& __j) { replace(__p.index(), __q.index() - __p.index(), __i, __j); } void replace(const iterator& __p, const iterator& __q, const iterator& __i, const iterator& __j) { replace(__p.index(), __q.index() - __p.index(), __i, __j); } void replace(const iterator& __p, const rope& __r) { replace(__p.index(), __r); } void replace(const iterator& __p, _CharT __c) { replace(__p.index(), __c); } void replace(const iterator& __p, const _CharT* __c_string) { replace(__p.index(), __c_string); } void replace(const iterator& __p, const _CharT* __i, size_t __n) { replace(__p.index(), __i, __n); } void replace(const iterator& __p, const _CharT* __i, const _CharT* __j) { replace(__p.index(), __i, __j); } void replace(const iterator& __p, const_iterator __i, const_iterator __j) { replace(__p.index(), __i, __j); } void replace(const iterator& __p, iterator __i, iterator __j) { replace(__p.index(), __i, __j); } iterator erase(const iterator& __p, const iterator& __q) { size_t __p_index = __p.index(); erase(__p_index, __q.index() - __p_index); return iterator(this, __p_index); } iterator erase(const iterator& __p) { size_t __p_index = __p.index(); erase(__p_index, 1); return iterator(this, __p_index); } rope substr(size_t __start, size_t __len = 1) const { return rope<_CharT,_Alloc>( _S_substring(this->_M_tree_ptr, __start, __start + __len)); } rope substr(iterator __start, iterator __end) const { return rope<_CharT,_Alloc>( _S_substring(this->_M_tree_ptr, __start.index(), __end.index())); } rope substr(iterator __start) const { size_t __pos = __start.index(); return rope<_CharT,_Alloc>( _S_substring(this->_M_tree_ptr, __pos, __pos + 1)); } rope substr(const_iterator __start, const_iterator __end) const { return rope<_CharT,_Alloc>( _S_substring(this->_M_tree_ptr, __start.index(), __end.index())); } rope<_CharT,_Alloc> substr(const_iterator __start) { size_t __pos = __start.index(); return rope<_CharT,_Alloc>( _S_substring(this->_M_tree_ptr, __pos, __pos + 1)); } static const size_type npos; size_type find(_CharT __c, size_type __pos = 0) const; size_type find(const _CharT* __s, size_type __pos = 0) const { size_type __result_pos; const_iterator __result = std::search(const_begin() + __pos, const_end(), __s, __s + _S_char_ptr_len(__s)); __result_pos = __result.index(); if (__result_pos == size()) __result_pos = npos; return __result_pos; } iterator mutable_begin() { return(iterator(this, 0)); } iterator mutable_end() { return(iterator(this, size())); } typedef reverse_iterator reverse_iterator; reverse_iterator mutable_rbegin() { return reverse_iterator(mutable_end()); } reverse_iterator mutable_rend() { return reverse_iterator(mutable_begin()); } reference mutable_reference_at(size_type __pos) { return reference(this, __pos); } # 2188 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 3 const_iterator end() { return const_end(); } const_iterator begin() { return const_begin(); } const_reverse_iterator rend() { return const_rend(); } const_reverse_iterator rbegin() { return const_rbegin(); } }; template const typename rope<_CharT, _Alloc>::size_type rope<_CharT, _Alloc>::npos = (size_type)(-1); template inline bool operator== (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return (__x._M_current_pos == __y._M_current_pos && __x._M_root == __y._M_root); } template inline bool operator< (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return (__x._M_current_pos < __y._M_current_pos); } template inline bool operator!= (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return !(__x == __y); } template inline bool operator> (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return __y < __x; } template inline bool operator<= (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return !(__y < __x); } template inline bool operator>= (const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return !(__x < __y); } template inline ptrdiff_t operator-(const _Rope_const_iterator<_CharT,_Alloc>& __x, const _Rope_const_iterator<_CharT,_Alloc>& __y) { return (ptrdiff_t)__x._M_current_pos - (ptrdiff_t)__y._M_current_pos; } template inline _Rope_const_iterator<_CharT,_Alloc> operator-(const _Rope_const_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n) { return _Rope_const_iterator<_CharT,_Alloc>( __x._M_root, __x._M_current_pos - __n); } template inline _Rope_const_iterator<_CharT,_Alloc> operator+(const _Rope_const_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n) { return _Rope_const_iterator<_CharT,_Alloc>( __x._M_root, __x._M_current_pos + __n); } template inline _Rope_const_iterator<_CharT,_Alloc> operator+(ptrdiff_t __n, const _Rope_const_iterator<_CharT,_Alloc>& __x) { return _Rope_const_iterator<_CharT,_Alloc>( __x._M_root, __x._M_current_pos + __n); } template inline bool operator== (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return (__x._M_current_pos == __y._M_current_pos && __x._M_root_rope == __y._M_root_rope); } template inline bool operator< (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return (__x._M_current_pos < __y._M_current_pos); } template inline bool operator!= (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return !(__x == __y); } template inline bool operator> (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return __y < __x; } template inline bool operator<= (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return !(__y < __x); } template inline bool operator>= (const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return !(__x < __y); } template inline ptrdiff_t operator-(const _Rope_iterator<_CharT,_Alloc>& __x, const _Rope_iterator<_CharT,_Alloc>& __y) { return (ptrdiff_t)__x._M_current_pos - (ptrdiff_t)__y._M_current_pos; } template inline _Rope_iterator<_CharT,_Alloc> operator-(const _Rope_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n) { return _Rope_iterator<_CharT,_Alloc>( __x._M_root_rope, __x._M_current_pos - __n); } template inline _Rope_iterator<_CharT,_Alloc> operator+(const _Rope_iterator<_CharT,_Alloc>& __x, ptrdiff_t __n) { return _Rope_iterator<_CharT,_Alloc>( __x._M_root_rope, __x._M_current_pos + __n); } template inline _Rope_iterator<_CharT,_Alloc> operator+(ptrdiff_t __n, const _Rope_iterator<_CharT,_Alloc>& __x) { return _Rope_iterator<_CharT,_Alloc>( __x._M_root_rope, __x._M_current_pos + __n); } template inline rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, const rope<_CharT,_Alloc>& __right) { return rope<_CharT,_Alloc>( rope<_CharT,_Alloc>::_S_concat(__left._M_tree_ptr, __right._M_tree_ptr)); } template inline rope<_CharT,_Alloc>& operator+= (rope<_CharT,_Alloc>& __left, const rope<_CharT,_Alloc>& __right) { __left.append(__right); return __left; } template inline rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, const _CharT* __right) { size_t __rlen = rope<_CharT,_Alloc>::_S_char_ptr_len(__right); return rope<_CharT,_Alloc>( rope<_CharT,_Alloc>::_S_concat_char_iter( __left._M_tree_ptr, __right, __rlen)); } template inline rope<_CharT,_Alloc>& operator+= (rope<_CharT,_Alloc>& __left, const _CharT* __right) { __left.append(__right); return __left; } template inline rope<_CharT,_Alloc> operator+ (const rope<_CharT,_Alloc>& __left, _CharT __right) { return rope<_CharT,_Alloc>( rope<_CharT,_Alloc>::_S_concat_char_iter( __left._M_tree_ptr, &__right, 1)); } template inline rope<_CharT,_Alloc>& operator+= (rope<_CharT,_Alloc>& __left, _CharT __right) { __left.append(__right); return __left; } template bool operator< (const rope<_CharT,_Alloc>& __left, const rope<_CharT,_Alloc>& __right) { return __left.compare(__right) < 0; } template bool operator== (const rope<_CharT,_Alloc>& __left, const rope<_CharT,_Alloc>& __right) { return __left.compare(__right) == 0; } template inline bool operator== (const _Rope_char_ptr_proxy<_CharT,_Alloc>& __x, const _Rope_char_ptr_proxy<_CharT,_Alloc>& __y) { return (__x._M_pos == __y._M_pos && __x._M_root == __y._M_root); } template inline bool operator!= (const rope<_CharT,_Alloc>& __x, const rope<_CharT,_Alloc>& __y) { return !(__x == __y); } template inline bool operator> (const rope<_CharT,_Alloc>& __x, const rope<_CharT,_Alloc>& __y) { return __y < __x; } template inline bool operator<= (const rope<_CharT,_Alloc>& __x, const rope<_CharT,_Alloc>& __y) { return !(__y < __x); } template inline bool operator>= (const rope<_CharT,_Alloc>& __x, const rope<_CharT,_Alloc>& __y) { return !(__x < __y); } template inline bool operator!= (const _Rope_char_ptr_proxy<_CharT,_Alloc>& __x, const _Rope_char_ptr_proxy<_CharT,_Alloc>& __y) { return !(__x == __y); } template std::basic_ostream<_CharT, _Traits>& operator<< (std::basic_ostream<_CharT, _Traits>& __o, const rope<_CharT, _Alloc>& __r); typedef rope crope; typedef rope wrope; inline crope::reference __mutable_reference_at(crope& __c, size_t __i) { return __c.mutable_reference_at(__i); } inline wrope::reference __mutable_reference_at(wrope& __c, size_t __i) { return __c.mutable_reference_at(__i); } template inline void swap(rope<_CharT,_Alloc>& __x, rope<_CharT,_Alloc>& __y) { __x.swap(__y); } template<> struct hash { size_t operator()(const crope& __str) const { size_t __size = __str.size(); if (0 == __size) return 0; return 13*__str[0] + 5*__str[__size - 1] + __size; } }; template<> struct hash { size_t operator()(const wrope& __str) const { size_t __size = __str.size(); if (0 == __size) return 0; return 13*__str[0] + 5*__str[__size - 1] + __size; } }; } # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 1 3 # 50 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 1 3 # 36 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/functexcept.h" 3 namespace std { void __throw_bad_exception(void); void __throw_bad_alloc(void); void __throw_bad_cast(void); void __throw_bad_typeid(void); void __throw_logic_error(const char* __s); void __throw_domain_error(const char* __s); void __throw_invalid_argument(const char* __s); void __throw_length_error(const char* __s); void __throw_out_of_range(const char* __s); void __throw_runtime_error(const char* __s); void __throw_range_error(const char* __s); void __throw_overflow_error(const char* __s); void __throw_underflow_error(const char* __s); void __throw_ios_failure(const char* __s); } # 51 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 1 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 namespace __gnu_cxx { using std::ptrdiff_t; using std::min; using std::pair; using std::input_iterator_tag; using std::random_access_iterator_tag; using std::iterator_traits; template pair<_InputIterator, _OutputIterator> __copy_n(_InputIterator __first, _Size __count, _OutputIterator __result, input_iterator_tag) { for ( ; __count > 0; --__count) { *__result = *__first; ++__first; ++__result; } return pair<_InputIterator, _OutputIterator>(__first, __result); } template inline pair<_RAIterator, _OutputIterator> __copy_n(_RAIterator __first, _Size __count, _OutputIterator __result, random_access_iterator_tag) { _RAIterator __last = __first + __count; return pair<_RAIterator, _OutputIterator>(__last, std::copy(__first, __last, __result)); } # 120 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 template inline pair<_InputIterator, _OutputIterator> copy_n(_InputIterator __first, _Size __count, _OutputIterator __result) { return __copy_n(__first, __count, __result, std::__iterator_category(__first)); } template int __lexicographical_compare_3way(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2) { while (__first1 != __last1 && __first2 != __last2) { if (*__first1 < *__first2) return -1; if (*__first2 < *__first1) return 1; ++__first1; ++__first2; } if (__first2 == __last2) { return !(__first1 == __last1); } else { return -1; } } inline int __lexicographical_compare_3way(const unsigned char* __first1, const unsigned char* __last1, const unsigned char* __first2, const unsigned char* __last2) { const ptrdiff_t __len1 = __last1 - __first1; const ptrdiff_t __len2 = __last2 - __first2; const int __result = std::memcmp(__first1, __first2, min(__len1, __len2)); return __result != 0 ? __result : (__len1 == __len2 ? 0 : (__len1 < __len2 ? -1 : 1)); } inline int __lexicographical_compare_3way(const char* __first1, const char* __last1, const char* __first2, const char* __last2) { return __lexicographical_compare_3way( (const signed char*) __first1, (const signed char*) __last1, (const signed char*) __first2, (const signed char*) __last2); } # 199 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 template int lexicographical_compare_3way(_InputIterator1 __first1, _InputIterator1 __last1, _InputIterator2 __first2, _InputIterator2 __last2) { ; ; return __lexicographical_compare_3way(__first1, __last1, __first2, __last2); } template void count(_InputIterator __first, _InputIterator __last, const _Tp& __value, _Size& __n) { ; for ( ; __first != __last; ++__first) if (*__first == __value) ++__n; } template void count_if(_InputIterator __first, _InputIterator __last, _Predicate __pred, _Size& __n) { ; for ( ; __first != __last; ++__first) if (__pred(*__first)) ++__n; } # 262 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 template _OutputIterator random_sample_n(_ForwardIterator __first, _ForwardIterator __last, _OutputIterator __out, const _Distance __n) { ; _Distance __remaining = std::distance(__first, __last); _Distance __m = min(__n, __remaining); while (__m > 0) { if ((std::rand() % __remaining) < __m) { *__out = *__first; ++__out; --__m; } --__remaining; ++__first; } return __out; } template _OutputIterator random_sample_n(_ForwardIterator __first, _ForwardIterator __last, _OutputIterator __out, const _Distance __n, _RandomNumberGenerator& __rand) { ; _Distance __remaining = std::distance(__first, __last); _Distance __m = min(__n, __remaining); while (__m > 0) { if (__rand(__remaining) < __m) { *__out = *__first; ++__out; --__m; } --__remaining; ++__first; } return __out; } template _RandomAccessIterator __random_sample(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __out, const _Distance __n) { _Distance __m = 0; _Distance __t = __n; for ( ; __first != __last && __m < __n; ++__m, ++__first) __out[__m] = *__first; while (__first != __last) { ++__t; _Distance __M = std::rand() % (__t); if (__M < __n) __out[__M] = *__first; ++__first; } return __out + __m; } template _RandomAccessIterator __random_sample(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __out, _RandomNumberGenerator& __rand, const _Distance __n) { _Distance __m = 0; _Distance __t = __n; for ( ; __first != __last && __m < __n; ++__m, ++__first) __out[__m] = *__first; while (__first != __last) { ++__t; _Distance __M = __rand(__t); if (__M < __n) __out[__M] = *__first; ++__first; } return __out + __m; } template inline _RandomAccessIterator random_sample(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __out_first, _RandomAccessIterator __out_last) { ; ; return __random_sample(__first, __last, __out_first, __out_last - __out_first); } template inline _RandomAccessIterator random_sample(_InputIterator __first, _InputIterator __last, _RandomAccessIterator __out_first, _RandomAccessIterator __out_last, _RandomNumberGenerator& __rand) { ; ; return __random_sample(__first, __last, __out_first, __rand, __out_last - __out_first); } template inline bool is_heap(_RandomAccessIterator __first, _RandomAccessIterator __last) { ; return std::__is_heap(__first, __last - __first); } template inline bool is_heap(_RandomAccessIterator __first, _RandomAccessIterator __last, _StrictWeakOrdering __comp) { ; return std::__is_heap(__first, __comp, __last - __first); } # 467 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/algorithm" 3 template bool is_sorted(_ForwardIterator __first, _ForwardIterator __last) { ; if (__first == __last) return true; _ForwardIterator __next = __first; for (++__next; __next != __last; __first = __next, ++__next) { if (*__next < *__first) return false; } return true; } template bool is_sorted(_ForwardIterator __first, _ForwardIterator __last, _StrictWeakOrdering __comp) { ; if (__first == __last) return true; _ForwardIterator __next = __first; for (++__next; __next != __last; __first = __next, ++__next) { if (__comp(*__next, *__first)) return false; } return true; } } # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 1 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/numeric" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/numeric" 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/numeric" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iterator" 1 3 # 64 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iterator" 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iterator" 3 # 73 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iterator" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stream_iterator.h" 1 3 # 38 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stream_iterator.h" 3 # 39 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stream_iterator.h" 3 namespace std { template, typename _Dist = ptrdiff_t> class istream_iterator : public iterator { public: typedef _CharT char_type; typedef _Traits traits_type; typedef basic_istream<_CharT, _Traits> istream_type; private: istream_type* _M_stream; _Tp _M_value; bool _M_ok; public: istream_iterator() : _M_stream(0), _M_ok(false) {} istream_iterator(istream_type& __s) : _M_stream(&__s) { _M_read(); } istream_iterator(const istream_iterator& __obj) : _M_stream(__obj._M_stream), _M_value(__obj._M_value), _M_ok(__obj._M_ok) { } const _Tp& operator*() const { ; return _M_value; } const _Tp* operator->() const { return &(operator*()); } istream_iterator& operator++() { ; _M_read(); return *this; } istream_iterator operator++(int) { ; istream_iterator __tmp = *this; _M_read(); return __tmp; } bool _M_equal(const istream_iterator& __x) const { return (_M_ok == __x._M_ok) && (!_M_ok || _M_stream == __x._M_stream); } private: void _M_read() { _M_ok = (_M_stream && *_M_stream) ? true : false; if (_M_ok) { *_M_stream >> _M_value; _M_ok = *_M_stream ? true : false; } } }; template inline bool operator==(const istream_iterator<_Tp, _CharT, _Traits, _Dist>& __x, const istream_iterator<_Tp, _CharT, _Traits, _Dist>& __y) { return __x._M_equal(__y); } template inline bool operator!=(const istream_iterator<_Tp, _CharT, _Traits, _Dist>& __x, const istream_iterator<_Tp, _CharT, _Traits, _Dist>& __y) { return !__x._M_equal(__y); } # 150 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stream_iterator.h" 3 template > class ostream_iterator : public iterator { public: typedef _CharT char_type; typedef _Traits traits_type; typedef basic_ostream<_CharT, _Traits> ostream_type; private: ostream_type* _M_stream; const _CharT* _M_string; public: ostream_iterator(ostream_type& __s) : _M_stream(&__s), _M_string(0) {} # 181 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/bits/stream_iterator.h" 3 ostream_iterator(ostream_type& __s, const _CharT* __c) : _M_stream(&__s), _M_string(__c) { } ostream_iterator(const ostream_iterator& __obj) : _M_stream(__obj._M_stream), _M_string(__obj._M_string) { } ostream_iterator& operator=(const _Tp& __value) { ; *_M_stream << __value; if (_M_string) *_M_stream << _M_string; return *this; } ostream_iterator& operator*() { return *this; } ostream_iterator& operator++() { return *this; } ostream_iterator& operator++(int) { return *this; } }; } # 74 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/iterator" 2 3 # 69 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/numeric" 2 3 # 69 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 2 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 1 3 # 65 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 # 66 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 # 1 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/functional" 1 3 # 52 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/functional" 3 # 53 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/functional" 3 # 68 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 2 3 namespace __gnu_cxx { using std::unary_function; using std::binary_function; using std::mem_fun1_t; using std::const_mem_fun1_t; using std::mem_fun1_ref_t; using std::const_mem_fun1_ref_t; # 88 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template inline _Tp identity_element(std::plus<_Tp>) { return _Tp(0); } template inline _Tp identity_element(std::multiplies<_Tp>) { return _Tp(1); } # 124 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template class unary_compose : public unary_function { protected: _Operation1 _M_fn1; _Operation2 _M_fn2; public: unary_compose(const _Operation1& __x, const _Operation2& __y) : _M_fn1(__x), _M_fn2(__y) {} typename _Operation1::result_type operator()(const typename _Operation2::argument_type& __x) const { return _M_fn1(_M_fn2(__x)); } }; template inline unary_compose<_Operation1,_Operation2> compose1(const _Operation1& __fn1, const _Operation2& __fn2) { return unary_compose<_Operation1,_Operation2>(__fn1, __fn2); } template class binary_compose : public unary_function { protected: _Operation1 _M_fn1; _Operation2 _M_fn2; _Operation3 _M_fn3; public: binary_compose(const _Operation1& __x, const _Operation2& __y, const _Operation3& __z) : _M_fn1(__x), _M_fn2(__y), _M_fn3(__z) { } typename _Operation1::result_type operator()(const typename _Operation2::argument_type& __x) const { return _M_fn1(_M_fn2(__x), _M_fn3(__x)); } }; template inline binary_compose<_Operation1, _Operation2, _Operation3> compose2(const _Operation1& __fn1, const _Operation2& __fn2, const _Operation3& __fn3) { return binary_compose<_Operation1,_Operation2,_Operation3> (__fn1, __fn2, __fn3); } # 185 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template struct identity : public std::_Identity<_Tp> {}; # 198 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template struct select1st : public std::_Select1st<_Pair> {}; template struct select2nd : public std::_Select2nd<_Pair> {}; template struct _Project1st : public binary_function<_Arg1, _Arg2, _Arg1> { _Arg1 operator()(const _Arg1& __x, const _Arg2&) const { return __x; } }; template struct _Project2nd : public binary_function<_Arg1, _Arg2, _Arg2> { _Arg2 operator()(const _Arg1&, const _Arg2& __y) const { return __y; } }; # 223 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template struct project1st : public _Project1st<_Arg1, _Arg2> {}; template struct project2nd : public _Project2nd<_Arg1, _Arg2> {}; template struct _Constant_void_fun { typedef _Result result_type; result_type _M_val; _Constant_void_fun(const result_type& __v) : _M_val(__v) {} const result_type& operator()() const { return _M_val; } }; template struct _Constant_unary_fun { typedef _Argument argument_type; typedef _Result result_type; result_type _M_val; _Constant_unary_fun(const result_type& __v) : _M_val(__v) {} const result_type& operator()(const _Argument&) const { return _M_val; } }; template struct _Constant_binary_fun { typedef _Arg1 first_argument_type; typedef _Arg2 second_argument_type; typedef _Result result_type; _Result _M_val; _Constant_binary_fun(const _Result& __v) : _M_val(__v) {} const result_type& operator()(const _Arg1&, const _Arg2&) const { return _M_val; } }; # 279 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 template struct constant_void_fun : public _Constant_void_fun<_Result> { constant_void_fun(const _Result& __v) : _Constant_void_fun<_Result>(__v) {} }; template struct constant_unary_fun : public _Constant_unary_fun<_Result, _Argument> { constant_unary_fun(const _Result& __v) : _Constant_unary_fun<_Result, _Argument>(__v) {} }; template struct constant_binary_fun : public _Constant_binary_fun<_Result, _Arg1, _Arg2> { constant_binary_fun(const _Result& __v) : _Constant_binary_fun<_Result, _Arg1, _Arg2>(__v) {} }; template inline constant_void_fun<_Result> constant0(const _Result& __val) { return constant_void_fun<_Result>(__val); } template inline constant_unary_fun<_Result,_Result> constant1(const _Result& __val) { return constant_unary_fun<_Result,_Result>(__val); } template inline constant_binary_fun<_Result,_Result,_Result> constant2(const _Result& __val) { return constant_binary_fun<_Result,_Result,_Result>(__val); } # 333 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/functional" 3 class subtractive_rng : public unary_function { private: unsigned int _M_table[55]; size_t _M_index1; size_t _M_index2; public: unsigned int operator()(unsigned int __limit) { _M_index1 = (_M_index1 + 1) % 55; _M_index2 = (_M_index2 + 1) % 55; _M_table[_M_index1] = _M_table[_M_index1] - _M_table[_M_index2]; return _M_table[_M_index1] % __limit; } void _M_initialize(unsigned int __seed) { unsigned int __k = 1; _M_table[54] = __seed; size_t __i; for (__i = 0; __i < 54; __i++) { size_t __ii = (21 * (__i + 1) % 55) - 1; _M_table[__ii] = __k; __k = __seed - __k; __seed = _M_table[__ii]; } for (int __loop = 0; __loop < 4; __loop++) { for (__i = 0; __i < 55; __i++) _M_table[__i] = _M_table[__i] - _M_table[(1 + __i + 30) % 55]; } _M_index1 = 0; _M_index2 = 31; } subtractive_rng(unsigned int __seed) { _M_initialize(__seed); } subtractive_rng() { _M_initialize(161803398u); } }; template inline mem_fun1_t<_Ret,_Tp,_Arg> mem_fun1(_Ret (_Tp::*__f)(_Arg)) { return mem_fun1_t<_Ret,_Tp,_Arg>(__f); } template inline const_mem_fun1_t<_Ret,_Tp,_Arg> mem_fun1(_Ret (_Tp::*__f)(_Arg) const) { return const_mem_fun1_t<_Ret,_Tp,_Arg>(__f); } template inline mem_fun1_ref_t<_Ret,_Tp,_Arg> mem_fun1_ref(_Ret (_Tp::*__f)(_Arg)) { return mem_fun1_ref_t<_Ret,_Tp,_Arg>(__f); } template inline const_mem_fun1_ref_t<_Ret,_Tp,_Arg> mem_fun1_ref(_Ret (_Tp::*__f)(_Arg) const) { return const_mem_fun1_ref_t<_Ret,_Tp,_Arg>(__f); } } # 71 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 2 3 namespace __gnu_cxx { template _Tp __power(_Tp __x, _Integer __n, _MonoidOperation __monoid_op) { if (__n == 0) return identity_element(__monoid_op); else { while ((__n & 1) == 0) { __n >>= 1; __x = __monoid_op(__x, __x); } _Tp __result = __x; __n >>= 1; while (__n != 0) { __x = __monoid_op(__x, __x); if ((__n & 1) != 0) __result = __monoid_op(__result, __x); __n >>= 1; } return __result; } } template inline _Tp __power(_Tp __x, _Integer __n) { return __power(__x, __n, std::multiplies<_Tp>()); } # 112 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/numeric" 3 template inline _Tp power(_Tp __x, _Integer __n, _MonoidOperation __monoid_op) { return __power(__x, __n, __monoid_op); } template inline _Tp power(_Tp __x, _Integer __n) { return __power(__x, __n); } template void iota(_ForwardIter __first, _ForwardIter __last, _Tp __value) { while (__first != __last) *__first++ = __value++; } } # 55 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 2 3 namespace __gnu_cxx { using std::size_t; using std::printf; using std::basic_ostream; using std::__throw_length_error; using std::_Destroy; using std::uninitialized_fill_n; template void _Rope_iterator_base<_CharT,_Alloc>::_S_setbuf( _Rope_iterator_base<_CharT,_Alloc>& __x) { const _RopeRep* __leaf = __x._M_path_end[__x._M_leaf_index]; size_t __leaf_pos = __x._M_leaf_pos; size_t __pos = __x._M_current_pos; switch(__leaf->_M_tag) { case _Rope_constants::_S_leaf: __x._M_buf_start = ((_Rope_RopeLeaf<_CharT,_Alloc>*)__leaf)->_M_data; __x._M_buf_ptr = __x._M_buf_start + (__pos - __leaf_pos); __x._M_buf_end = __x._M_buf_start + __leaf->_M_size; break; case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: { size_t __len = _S_iterator_buf_len; size_t __buf_start_pos = __leaf_pos; size_t __leaf_end = __leaf_pos + __leaf->_M_size; char_producer<_CharT>* __fn = ((_Rope_RopeFunction<_CharT,_Alloc>*)__leaf)->_M_fn; if (__buf_start_pos + __len <= __pos) { __buf_start_pos = __pos - __len/4; if (__buf_start_pos + __len > __leaf_end) { __buf_start_pos = __leaf_end - __len; } } if (__buf_start_pos + __len > __leaf_end) { __len = __leaf_end - __buf_start_pos; } (*__fn)(__buf_start_pos - __leaf_pos, __len, __x._M_tmp_buf); __x._M_buf_ptr = __x._M_tmp_buf + (__pos - __buf_start_pos); __x._M_buf_start = __x._M_tmp_buf; __x._M_buf_end = __x._M_tmp_buf + __len; } break; default: break; } } template void _Rope_iterator_base<_CharT,_Alloc>::_S_setcache (_Rope_iterator_base<_CharT,_Alloc>& __x) { const _RopeRep* __path[_Rope_constants::_S_max_rope_depth + 1]; const _RopeRep* __curr_rope; int __curr_depth = -1; size_t __curr_start_pos = 0; size_t __pos = __x._M_current_pos; unsigned char __dirns = 0; if (__pos >= __x._M_root->_M_size) { __x._M_buf_ptr = 0; return; } __curr_rope = __x._M_root; if (0 != __curr_rope->_M_c_string) { __x._M_buf_start = __curr_rope->_M_c_string; __x._M_buf_end = __curr_rope->_M_c_string + __curr_rope->_M_size; __x._M_buf_ptr = __curr_rope->_M_c_string + __pos; __x._M_path_end[0] = __curr_rope; __x._M_leaf_index = 0; __x._M_leaf_pos = 0; return; } for(;;) { ++__curr_depth; __path[__curr_depth] = __curr_rope; switch(__curr_rope->_M_tag) { case _Rope_constants::_S_leaf: case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: __x._M_leaf_pos = __curr_start_pos; goto done; case _Rope_constants::_S_concat: { _Rope_RopeConcatenation<_CharT,_Alloc>* __c = (_Rope_RopeConcatenation<_CharT,_Alloc>*)__curr_rope; _RopeRep* __left = __c->_M_left; size_t __left_len = __left->_M_size; __dirns <<= 1; if (__pos >= __curr_start_pos + __left_len) { __dirns |= 1; __curr_rope = __c->_M_right; __curr_start_pos += __left_len; } else { __curr_rope = __left; } } break; } } done: { int __i = -1; int __j = __curr_depth + 1 - _S_path_cache_len; if (__j < 0) __j = 0; while (__j <= __curr_depth) { __x._M_path_end[++__i] = __path[__j++]; } __x._M_leaf_index = __i; } __x._M_path_directions = __dirns; _S_setbuf(__x); } template void _Rope_iterator_base<_CharT,_Alloc>::_S_setcache_for_incr (_Rope_iterator_base<_CharT,_Alloc>& __x) { int __current_index = __x._M_leaf_index; const _RopeRep* __current_node = __x._M_path_end[__current_index]; size_t __len = __current_node->_M_size; size_t __node_start_pos = __x._M_leaf_pos; unsigned char __dirns = __x._M_path_directions; _Rope_RopeConcatenation<_CharT,_Alloc>* __c; if (__x._M_current_pos - __node_start_pos < __len) { _S_setbuf(__x); return; } while (--__current_index >= 0) { if (!(__dirns & 1) ) break; __current_node = __x._M_path_end[__current_index]; __c = (_Rope_RopeConcatenation<_CharT,_Alloc>*)__current_node; __node_start_pos -= __c->_M_left->_M_size; __dirns >>= 1; } if (__current_index < 0) { _S_setcache(__x); return; } __current_node = __x._M_path_end[__current_index]; __c = (_Rope_RopeConcatenation<_CharT,_Alloc>*)__current_node; __node_start_pos += __c->_M_left->_M_size; __current_node = __c->_M_right; __x._M_path_end[++__current_index] = __current_node; __dirns |= 1; while (_Rope_constants::_S_concat == __current_node->_M_tag) { ++__current_index; if (_S_path_cache_len == __current_index) { int __i; for (__i = 0; __i < _S_path_cache_len-1; __i++) { __x._M_path_end[__i] = __x._M_path_end[__i+1]; } --__current_index; } __current_node = ((_Rope_RopeConcatenation<_CharT,_Alloc>*)__current_node)->_M_left; __x._M_path_end[__current_index] = __current_node; __dirns <<= 1; } __x._M_leaf_index = __current_index; __x._M_leaf_pos = __node_start_pos; __x._M_path_directions = __dirns; _S_setbuf(__x); } template void _Rope_iterator_base<_CharT,_Alloc>::_M_incr(size_t __n) { _M_current_pos += __n; if (0 != _M_buf_ptr) { size_t __chars_left = _M_buf_end - _M_buf_ptr; if (__chars_left > __n) { _M_buf_ptr += __n; } else if (__chars_left == __n) { _M_buf_ptr += __n; _S_setcache_for_incr(*this); } else { _M_buf_ptr = 0; } } } template void _Rope_iterator_base<_CharT,_Alloc>::_M_decr(size_t __n) { if (0 != _M_buf_ptr) { size_t __chars_left = _M_buf_ptr - _M_buf_start; if (__chars_left >= __n) { _M_buf_ptr -= __n; } else { _M_buf_ptr = 0; } } _M_current_pos -= __n; } template void _Rope_iterator<_CharT,_Alloc>::_M_check() { if (_M_root_rope->_M_tree_ptr != this->_M_root) { _RopeRep::_S_unref(this->_M_root); this->_M_root = _M_root_rope->_M_tree_ptr; _RopeRep::_S_ref(this->_M_root); this->_M_buf_ptr = 0; } } template inline _Rope_const_iterator<_CharT, _Alloc>::_Rope_const_iterator( const _Rope_iterator<_CharT,_Alloc>& __x) : _Rope_iterator_base<_CharT,_Alloc>(__x) { } template inline _Rope_iterator<_CharT,_Alloc>::_Rope_iterator( rope<_CharT,_Alloc>& __r, size_t __pos) : _Rope_iterator_base<_CharT,_Alloc>(__r._M_tree_ptr, __pos), _M_root_rope(&__r) { _RopeRep::_S_ref(this->_M_root); } template inline size_t rope<_CharT,_Alloc>::_S_char_ptr_len(const _CharT* __s) { const _CharT* __p = __s; while (!_S_is0(*__p)) { ++__p; } return (__p - __s); } template inline void _Rope_RopeRep<_CharT,_Alloc>::_M_free_c_string() { _CharT* __cstr = _M_c_string; if (0 != __cstr) { size_t __size = this->_M_size + 1; _Destroy(__cstr, __cstr + __size); this->_Data_deallocate(__cstr, __size); } } template inline void _Rope_RopeRep<_CharT,_Alloc>::_S_free_string(_CharT* __s, size_t __n, allocator_type __a) { if (!_S_is_basic_char_type((_CharT*)0)) { _Destroy(__s, __s + __n); } __a.deallocate( __s, _Rope_RopeLeaf<_CharT,_Alloc>::_S_rounded_up_size(__n)); } # 350 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 3 template void _Rope_RopeRep<_CharT,_Alloc>::_M_free_tree() { switch(_M_tag) { case _Rope_constants::_S_leaf: { _Rope_RopeLeaf<_CharT,_Alloc>* __l = (_Rope_RopeLeaf<_CharT,_Alloc>*)this; __l->_Rope_RopeLeaf<_CharT,_Alloc>::~_Rope_RopeLeaf(); _L_deallocate(__l, 1); break; } case _Rope_constants::_S_concat: { _Rope_RopeConcatenation<_CharT,_Alloc>* __c = (_Rope_RopeConcatenation<_CharT,_Alloc>*)this; __c->_Rope_RopeConcatenation<_CharT,_Alloc>:: ~_Rope_RopeConcatenation(); _C_deallocate(__c, 1); break; } case _Rope_constants::_S_function: { _Rope_RopeFunction<_CharT,_Alloc>* __f = (_Rope_RopeFunction<_CharT,_Alloc>*)this; __f->_Rope_RopeFunction<_CharT,_Alloc>::~_Rope_RopeFunction(); _F_deallocate(__f, 1); break; } case _Rope_constants::_S_substringfn: { _Rope_RopeSubstring<_CharT,_Alloc>* __ss = (_Rope_RopeSubstring<_CharT,_Alloc>*)this; __ss->_Rope_RopeSubstring<_CharT,_Alloc>:: ~_Rope_RopeSubstring(); _S_deallocate(__ss, 1); break; } } } # 402 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 3 template typename rope<_CharT,_Alloc>::_RopeLeaf* rope<_CharT,_Alloc>::_S_leaf_concat_char_iter (_RopeLeaf* __r, const _CharT* __iter, size_t __len) { size_t __old_len = __r->_M_size; _CharT* __new_data = (_CharT*) _Data_allocate(_S_rounded_up_size(__old_len + __len)); _RopeLeaf* __result; uninitialized_copy_n(__r->_M_data, __old_len, __new_data); uninitialized_copy_n(__iter, __len, __new_data + __old_len); _S_cond_store_eos(__new_data[__old_len + __len]); try { __result = _S_new_RopeLeaf(__new_data, __old_len + __len, __r->get_allocator()); } catch(...) { _RopeRep::_S_free_string(__new_data, __old_len + __len, __r->get_allocator());; throw; } return __result; } template typename rope<_CharT,_Alloc>::_RopeLeaf* rope<_CharT,_Alloc>::_S_destr_leaf_concat_char_iter (_RopeLeaf* __r, const _CharT* __iter, size_t __len) { if (__r->_M_ref_count > 1) return _S_leaf_concat_char_iter(__r, __iter, __len); size_t __old_len = __r->_M_size; if (_S_allocated_capacity(__old_len) >= __old_len + __len) { uninitialized_copy_n(__iter, __len, __r->_M_data + __old_len); if (_S_is_basic_char_type((_CharT*)0)) { _S_cond_store_eos(__r->_M_data[__old_len + __len]); } else if (__r->_M_c_string != __r->_M_data && 0 != __r->_M_c_string) { __r->_M_free_c_string(); __r->_M_c_string = 0; } __r->_M_size = __old_len + __len; __r->_M_ref_count = 2; return __r; } else { _RopeLeaf* __result = _S_leaf_concat_char_iter(__r, __iter, __len); return __result; } } template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_tree_concat (_RopeRep* __left, _RopeRep* __right) { _RopeConcatenation* __result = _S_new_RopeConcatenation(__left, __right, __left->get_allocator()); size_t __depth = __result->_M_depth; if (__depth > 20 && (__result->_M_size < 1000 || __depth > _Rope_constants::_S_max_rope_depth)) { _RopeRep* __balanced; try { __balanced = _S_balance(__result); __result->_M_unref_nonnil(); } catch(...) { _C_deallocate(__result,1); throw; } return __balanced; } else return __result; } template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_concat_char_iter (_RopeRep* __r, const _CharT*__s, size_t __slen) { _RopeRep* __result; if (0 == __slen) { _S_ref(__r); return __r; } if (0 == __r) return _S_RopeLeaf_from_unowned_char_ptr(__s, __slen, __r->get_allocator()); if (_Rope_constants::_S_leaf == __r->_M_tag && __r->_M_size + __slen <= _S_copy_max) { __result = _S_leaf_concat_char_iter((_RopeLeaf*)__r, __s, __slen); return __result; } if (_Rope_constants::_S_concat == __r->_M_tag && _Rope_constants::_S_leaf == ((_RopeConcatenation*)__r)->_M_right->_M_tag) { _RopeLeaf* __right = (_RopeLeaf* )(((_RopeConcatenation* )__r)->_M_right); if (__right->_M_size + __slen <= _S_copy_max) { _RopeRep* __left = ((_RopeConcatenation*)__r)->_M_left; _RopeRep* __nright = _S_leaf_concat_char_iter((_RopeLeaf*)__right, __s, __slen); __left->_M_ref_nonnil(); try { __result = _S_tree_concat(__left, __nright); } catch(...) { _S_unref(__left); _S_unref(__nright); throw; } return __result; } } _RopeRep* __nright = _S_RopeLeaf_from_unowned_char_ptr(__s, __slen, __r->get_allocator()); try { __r->_M_ref_nonnil(); __result = _S_tree_concat(__r, __nright); } catch(...) { _S_unref(__r); _S_unref(__nright); throw; } return __result; } template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_destr_concat_char_iter( _RopeRep* __r, const _CharT* __s, size_t __slen) { _RopeRep* __result; if (0 == __r) return _S_RopeLeaf_from_unowned_char_ptr(__s, __slen, __r->get_allocator()); size_t __count = __r->_M_ref_count; size_t __orig_size = __r->_M_size; if (__count > 1) return _S_concat_char_iter(__r, __s, __slen); if (0 == __slen) { __r->_M_ref_count = 2; return __r; } if (__orig_size + __slen <= _S_copy_max && _Rope_constants::_S_leaf == __r->_M_tag) { __result = _S_destr_leaf_concat_char_iter((_RopeLeaf*)__r, __s, __slen); return __result; } if (_Rope_constants::_S_concat == __r->_M_tag) { _RopeLeaf* __right = (_RopeLeaf*)(((_RopeConcatenation*)__r)->_M_right); if (_Rope_constants::_S_leaf == __right->_M_tag && __right->_M_size + __slen <= _S_copy_max) { _RopeRep* __new_right = _S_destr_leaf_concat_char_iter(__right, __s, __slen); if (__right == __new_right) __new_right->_M_ref_count = 1; else __right->_M_unref_nonnil(); __r->_M_ref_count = 2; ((_RopeConcatenation*)__r)->_M_right = __new_right; __r->_M_size = __orig_size + __slen; if (0 != __r->_M_c_string) { __r->_M_free_c_string(); __r->_M_c_string = 0; } return __r; } } _RopeRep* __right = _S_RopeLeaf_from_unowned_char_ptr(__s, __slen, __r->get_allocator()); __r->_M_ref_nonnil(); try { __result = _S_tree_concat(__r, __right); } catch(...) { _S_unref(__r); _S_unref(__right); throw; } return __result; } template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_concat(_RopeRep* __left, _RopeRep* __right) { if (0 == __left) { _S_ref(__right); return __right; } if (0 == __right) { __left->_M_ref_nonnil(); return __left; } if (_Rope_constants::_S_leaf == __right->_M_tag) { if (_Rope_constants::_S_leaf == __left->_M_tag) { if (__right->_M_size + __left->_M_size <= _S_copy_max) { return _S_leaf_concat_char_iter((_RopeLeaf*)__left, ((_RopeLeaf*)__right)->_M_data, __right->_M_size); } } else if (_Rope_constants::_S_concat == __left->_M_tag && _Rope_constants::_S_leaf == ((_RopeConcatenation*)__left)->_M_right->_M_tag) { _RopeLeaf* __leftright = (_RopeLeaf*)(((_RopeConcatenation*)__left)->_M_right); if (__leftright->_M_size + __right->_M_size <= _S_copy_max) { _RopeRep* __leftleft = ((_RopeConcatenation*)__left)->_M_left; _RopeRep* __rest = _S_leaf_concat_char_iter(__leftright, ((_RopeLeaf*)__right)->_M_data, __right->_M_size); __leftleft->_M_ref_nonnil(); try { return(_S_tree_concat(__leftleft, __rest)); } catch(...) { _S_unref(__leftleft); _S_unref(__rest); throw; } } } } __left->_M_ref_nonnil(); __right->_M_ref_nonnil(); try { return(_S_tree_concat(__left, __right)); } catch(...) { _S_unref(__left); _S_unref(__right); throw; } } template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_substring(_RopeRep* __base, size_t __start, size_t __endp1) { if (0 == __base) return 0; size_t __len = __base->_M_size; size_t __adj_endp1; const size_t __lazy_threshold = 128; if (__endp1 >= __len) { if (0 == __start) { __base->_M_ref_nonnil(); return __base; } else { __adj_endp1 = __len; } } else { __adj_endp1 = __endp1; } switch(__base->_M_tag) { case _Rope_constants::_S_concat: { _RopeConcatenation* __c = (_RopeConcatenation*)__base; _RopeRep* __left = __c->_M_left; _RopeRep* __right = __c->_M_right; size_t __left_len = __left->_M_size; _RopeRep* __result; if (__adj_endp1 <= __left_len) { return _S_substring(__left, __start, __endp1); } else if (__start >= __left_len) { return _S_substring(__right, __start - __left_len, __adj_endp1 - __left_len); } _Self_destruct_ptr __left_result( _S_substring(__left, __start, __left_len)); _Self_destruct_ptr __right_result( _S_substring(__right, 0, __endp1 - __left_len)); __result = _S_concat(__left_result, __right_result); return __result; } case _Rope_constants::_S_leaf: { _RopeLeaf* __l = (_RopeLeaf*)__base; _RopeLeaf* __result; size_t __result_len; if (__start >= __adj_endp1) return 0; __result_len = __adj_endp1 - __start; if (__result_len > __lazy_threshold) goto lazy; __result = _S_RopeLeaf_from_unowned_char_ptr(__l->_M_data + __start, __result_len, __base->get_allocator()); return __result; } case _Rope_constants::_S_substringfn: { _RopeSubstring* __old = (_RopeSubstring*)__base; size_t __result_len; if (__start >= __adj_endp1) return 0; __result_len = __adj_endp1 - __start; if (__result_len > __lazy_threshold) { _RopeSubstring* __result = _S_new_RopeSubstring(__old->_M_base, __start + __old->_M_start, __adj_endp1 - __start, __base->get_allocator()); return __result; } } case _Rope_constants::_S_function: { _RopeFunction* __f = (_RopeFunction*)__base; _CharT* __section; size_t __result_len; if (__start >= __adj_endp1) return 0; __result_len = __adj_endp1 - __start; if (__result_len > __lazy_threshold) goto lazy; __section = (_CharT*) _Data_allocate(_S_rounded_up_size(__result_len)); try { (*(__f->_M_fn))(__start, __result_len, __section); } catch(...) { _RopeRep::_S_free_string(__section, __result_len, __base->get_allocator());; throw; } _S_cond_store_eos(__section[__result_len]); return _S_new_RopeLeaf(__section, __result_len, __base->get_allocator()); } } lazy: { return _S_new_RopeSubstring(__base, __start, __adj_endp1 - __start, __base->get_allocator()); } } template class _Rope_flatten_char_consumer : public _Rope_char_consumer<_CharT> { private: _CharT* _M_buf_ptr; public: _Rope_flatten_char_consumer(_CharT* __buffer) { _M_buf_ptr = __buffer; }; ~_Rope_flatten_char_consumer() {} bool operator() (const _CharT* __leaf, size_t __n) { uninitialized_copy_n(__leaf, __n, _M_buf_ptr); _M_buf_ptr += __n; return true; } }; template class _Rope_find_char_char_consumer : public _Rope_char_consumer<_CharT> { private: _CharT _M_pattern; public: size_t _M_count; _Rope_find_char_char_consumer(_CharT __p) : _M_pattern(__p), _M_count(0) {} ~_Rope_find_char_char_consumer() {} bool operator() (const _CharT* __leaf, size_t __n) { size_t __i; for (__i = 0; __i < __n; __i++) { if (__leaf[__i] == _M_pattern) { _M_count += __i; return false; } } _M_count += __n; return true; } }; template class _Rope_insert_char_consumer : public _Rope_char_consumer<_CharT> { private: typedef basic_ostream<_CharT,_Traits> _Insert_ostream; _Insert_ostream& _M_o; public: _Rope_insert_char_consumer(_Insert_ostream& __writer) : _M_o(__writer) {}; ~_Rope_insert_char_consumer() { }; bool operator() (const _CharT* __leaf, size_t __n); }; template bool _Rope_insert_char_consumer<_CharT, _Traits>::operator() (const _CharT* __leaf, size_t __n) { size_t __i; for (__i = 0; __i < __n; __i++) _M_o.put(__leaf[__i]); return true; } template bool rope<_CharT, _Alloc>::_S_apply_to_pieces( _Rope_char_consumer<_CharT>& __c, const _RopeRep* __r, size_t __begin, size_t __end) { if (0 == __r) return true; switch(__r->_M_tag) { case _Rope_constants::_S_concat: { _RopeConcatenation* __conc = (_RopeConcatenation*)__r; _RopeRep* __left = __conc->_M_left; size_t __left_len = __left->_M_size; if (__begin < __left_len) { size_t __left_end = std::min(__left_len, __end); if (!_S_apply_to_pieces(__c, __left, __begin, __left_end)) return false; } if (__end > __left_len) { _RopeRep* __right = __conc->_M_right; size_t __right_start = std::max(__left_len, __begin); if (!_S_apply_to_pieces(__c, __right, __right_start - __left_len, __end - __left_len)) { return false; } } } return true; case _Rope_constants::_S_leaf: { _RopeLeaf* __l = (_RopeLeaf*)__r; return __c(__l->_M_data + __begin, __end - __begin); } case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: { _RopeFunction* __f = (_RopeFunction*)__r; size_t __len = __end - __begin; bool __result; _CharT* __buffer = (_CharT*)_Alloc().allocate(__len * sizeof(_CharT)); try { (*(__f->_M_fn))(__begin, __len, __buffer); __result = __c(__buffer, __len); _Alloc().deallocate(__buffer, __len * sizeof(_CharT)); } catch(...) { _Alloc().deallocate(__buffer, __len * sizeof(_CharT)); throw; } return __result; } default: return false; } } template inline void _Rope_fill(basic_ostream<_CharT, _Traits>& __o, size_t __n) { char __f = __o.fill(); size_t __i; for (__i = 0; __i < __n; __i++) __o.put(__f); } template inline bool _Rope_is_simple(_CharT*) { return false; } inline bool _Rope_is_simple(char*) { return true; } inline bool _Rope_is_simple(wchar_t*) { return true; } template basic_ostream<_CharT, _Traits>& operator<< (basic_ostream<_CharT, _Traits>& __o, const rope<_CharT, _Alloc>& __r) { size_t __w = __o.width(); bool __left = bool(__o.flags() & std::ios::left); size_t __pad_len; size_t __rope_len = __r.size(); _Rope_insert_char_consumer<_CharT, _Traits> __c(__o); bool __is_simple = _Rope_is_simple((_CharT*)0); if (__rope_len < __w) { __pad_len = __w - __rope_len; } else { __pad_len = 0; } if (!__is_simple) __o.width(__w/__rope_len); try { if (__is_simple && !__left && __pad_len > 0) { _Rope_fill(__o, __pad_len); } __r.apply_to_pieces(0, __r.size(), __c); if (__is_simple && __left && __pad_len > 0) { _Rope_fill(__o, __pad_len); } if (!__is_simple) __o.width(__w); } catch(...) { if (!__is_simple) __o.width(__w); throw; } return __o; } template _CharT* rope<_CharT,_Alloc>::_S_flatten(_RopeRep* __r, size_t __start, size_t __len, _CharT* __buffer) { _Rope_flatten_char_consumer<_CharT> __c(__buffer); _S_apply_to_pieces(__c, __r, __start, __start + __len); return(__buffer + __len); } template size_t rope<_CharT,_Alloc>::find(_CharT __pattern, size_t __start) const { _Rope_find_char_char_consumer<_CharT> __c(__pattern); _S_apply_to_pieces(__c, this->_M_tree_ptr, __start, size()); size_type __result_pos = __start + __c._M_count; if (__result_pos == size()) __result_pos = npos; return __result_pos; } template _CharT* rope<_CharT,_Alloc>::_S_flatten(_RopeRep* __r, _CharT* __buffer) { if (0 == __r) return __buffer; switch(__r->_M_tag) { case _Rope_constants::_S_concat: { _RopeConcatenation* __c = (_RopeConcatenation*)__r; _RopeRep* __left = __c->_M_left; _RopeRep* __right = __c->_M_right; _CharT* __rest = _S_flatten(__left, __buffer); return _S_flatten(__right, __rest); } case _Rope_constants::_S_leaf: { _RopeLeaf* __l = (_RopeLeaf*)__r; return copy_n(__l->_M_data, __l->_M_size, __buffer).second; } case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: { _RopeFunction* __f = (_RopeFunction*)__r; (*(__f->_M_fn))(0, __f->_M_size, __buffer); return __buffer + __f->_M_size; } default: return 0; } } template void rope<_CharT,_Alloc>::_S_dump(_RopeRep* __r, int __indent) { for (int __i = 0; __i < __indent; __i++) putchar(' '); if (0 == __r) { printf("NULL\n"); return; } if (_Rope_constants::_S_concat == __r->_M_tag) { _RopeConcatenation* __c = (_RopeConcatenation*)__r; _RopeRep* __left = __c->_M_left; _RopeRep* __right = __c->_M_right; printf("Concatenation %p (rc = %ld, depth = %d, " "len = %ld, %s balanced)\n", __r, __r->_M_ref_count, __r->_M_depth, __r->_M_size, __r->_M_is_balanced? "" : "not"); _S_dump(__left, __indent + 2); _S_dump(__right, __indent + 2); return; } else { char* __kind; switch (__r->_M_tag) { case _Rope_constants::_S_leaf: __kind = "Leaf"; break; case _Rope_constants::_S_function: __kind = "Function"; break; case _Rope_constants::_S_substringfn: __kind = "Function representing substring"; break; default: __kind = "(corrupted kind field!)"; } printf("%s %p (rc = %ld, depth = %d, len = %ld) ", __kind, __r, __r->_M_ref_count, __r->_M_depth, __r->_M_size); if (_S_is_one_byte_char_type((_CharT*)0)) { const int __max_len = 40; _Self_destruct_ptr __prefix(_S_substring(__r, 0, __max_len)); _CharT __buffer[__max_len + 1]; bool __too_big = __r->_M_size > __prefix->_M_size; _S_flatten(__prefix, __buffer); __buffer[__prefix->_M_size] = _S_eos((_CharT*)0); printf("%s%s\n", (char*)__buffer, __too_big? "...\n" : "\n"); } else { printf("\n"); } } } template const unsigned long rope<_CharT,_Alloc>::_S_min_len[_Rope_constants::_S_max_rope_depth + 1] = { 1, 2, 3, 5, 8, 13, 21, 34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 4181, 6765, 10946, 17711, 28657, 46368, 75025, 121393, 196418, 317811, 514229, 832040, 1346269, 2178309, 3524578, 5702887, 9227465, 14930352, 24157817, 39088169, 63245986, 102334155, 165580141, 267914296, 433494437, 701408733, 1134903170, 1836311903, 2971215073u }; template typename rope<_CharT,_Alloc>::_RopeRep* rope<_CharT,_Alloc>::_S_balance(_RopeRep* __r) { _RopeRep* __forest[_Rope_constants::_S_max_rope_depth + 1]; _RopeRep* __result = 0; int __i; for (__i = 0; __i <= _Rope_constants::_S_max_rope_depth; ++__i) __forest[__i] = 0; try { _S_add_to_forest(__r, __forest); for (__i = 0; __i <= _Rope_constants::_S_max_rope_depth; ++__i) if (0 != __forest[__i]) { _Self_destruct_ptr __old(__result); __result = _S_concat(__forest[__i], __result); __forest[__i]->_M_unref_nonnil(); __forest[__i] = 0; } } catch(...) { for(__i = 0; __i <= _Rope_constants::_S_max_rope_depth; __i++) _S_unref(__forest[__i]); throw; } if (__result->_M_depth > _Rope_constants::_S_max_rope_depth) __throw_length_error(("rope::_S_balance")); return(__result); } template void rope<_CharT,_Alloc>::_S_add_to_forest(_RopeRep* __r, _RopeRep** __forest) { if (__r->_M_is_balanced) { _S_add_leaf_to_forest(__r, __forest); return; } { _RopeConcatenation* __c = (_RopeConcatenation*)__r; _S_add_to_forest(__c->_M_left, __forest); _S_add_to_forest(__c->_M_right, __forest); } } template void rope<_CharT,_Alloc>::_S_add_leaf_to_forest(_RopeRep* __r, _RopeRep** __forest) { _RopeRep* __insertee; _RopeRep* __too_tiny = 0; int __i; size_t __s = __r->_M_size; for (__i = 0; __s >= _S_min_len[__i+1] ; ++__i) { if (0 != __forest[__i]) { _Self_destruct_ptr __old(__too_tiny); __too_tiny = _S_concat_and_set_balanced(__forest[__i], __too_tiny); __forest[__i]->_M_unref_nonnil(); __forest[__i] = 0; } } { _Self_destruct_ptr __old(__too_tiny); __insertee = _S_concat_and_set_balanced(__too_tiny, __r); } for (;; ++__i) { if (0 != __forest[__i]) { _Self_destruct_ptr __old(__insertee); __insertee = _S_concat_and_set_balanced(__forest[__i], __insertee); __forest[__i]->_M_unref_nonnil(); __forest[__i] = 0; } if (__i == _Rope_constants::_S_max_rope_depth || __insertee->_M_size < _S_min_len[__i+1]) { __forest[__i] = __insertee; return; } } } template _CharT rope<_CharT,_Alloc>::_S_fetch(_RopeRep* __r, size_type __i) { _CharT* __cstr = __r->_M_c_string; if (0 != __cstr) return __cstr[__i]; for(;;) { switch(__r->_M_tag) { case _Rope_constants::_S_concat: { _RopeConcatenation* __c = (_RopeConcatenation*)__r; _RopeRep* __left = __c->_M_left; size_t __left_len = __left->_M_size; if (__i >= __left_len) { __i -= __left_len; __r = __c->_M_right; } else { __r = __left; } } break; case _Rope_constants::_S_leaf: { _RopeLeaf* __l = (_RopeLeaf*)__r; return __l->_M_data[__i]; } case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: { _RopeFunction* __f = (_RopeFunction*)__r; _CharT __result; (*(__f->_M_fn))(__i, 1, &__result); return __result; } } } } template _CharT* rope<_CharT,_Alloc>::_S_fetch_ptr(_RopeRep* __r, size_type __i) { _RopeRep* __clrstack[_Rope_constants::_S_max_rope_depth]; size_t __csptr = 0; for(;;) { if (__r->_M_ref_count > 1) return 0; switch(__r->_M_tag) { case _Rope_constants::_S_concat: { _RopeConcatenation* __c = (_RopeConcatenation*)__r; _RopeRep* __left = __c->_M_left; size_t __left_len = __left->_M_size; if (__c->_M_c_string != 0) __clrstack[__csptr++] = __c; if (__i >= __left_len) { __i -= __left_len; __r = __c->_M_right; } else { __r = __left; } } break; case _Rope_constants::_S_leaf: { _RopeLeaf* __l = (_RopeLeaf*)__r; if (__l->_M_c_string != __l->_M_data && __l->_M_c_string != 0) __clrstack[__csptr++] = __l; while (__csptr > 0) { -- __csptr; _RopeRep* __d = __clrstack[__csptr]; __d->_M_free_c_string(); __d->_M_c_string = 0; } return __l->_M_data + __i; } case _Rope_constants::_S_function: case _Rope_constants::_S_substringfn: return 0; } } } template int rope<_CharT,_Alloc>::_S_compare (const _RopeRep* __left, const _RopeRep* __right) { size_t __left_len; size_t __right_len; if (0 == __right) return 0 != __left; if (0 == __left) return -1; __left_len = __left->_M_size; __right_len = __right->_M_size; if (_Rope_constants::_S_leaf == __left->_M_tag) { _RopeLeaf* __l = (_RopeLeaf*) __left; if (_Rope_constants::_S_leaf == __right->_M_tag) { _RopeLeaf* __r = (_RopeLeaf*) __right; return lexicographical_compare_3way( __l->_M_data, __l->_M_data + __left_len, __r->_M_data, __r->_M_data + __right_len); } else { const_iterator __rstart(__right, 0); const_iterator __rend(__right, __right_len); return lexicographical_compare_3way( __l->_M_data, __l->_M_data + __left_len, __rstart, __rend); } } else { const_iterator __lstart(__left, 0); const_iterator __lend(__left, __left_len); if (_Rope_constants::_S_leaf == __right->_M_tag) { _RopeLeaf* __r = (_RopeLeaf*) __right; return lexicographical_compare_3way( __lstart, __lend, __r->_M_data, __r->_M_data + __right_len); } else { const_iterator __rstart(__right, 0); const_iterator __rend(__right, __right_len); return lexicographical_compare_3way( __lstart, __lend, __rstart, __rend); } } } template _Rope_char_ref_proxy<_CharT, _Alloc>& _Rope_char_ref_proxy<_CharT, _Alloc>::operator= (_CharT __c) { _RopeRep* __old = _M_root->_M_tree_ptr; _CharT* __ptr = _My_rope::_S_fetch_ptr(__old, _M_pos); if (0 != __ptr) { *__ptr = __c; return *this; } _Self_destruct_ptr __left( _My_rope::_S_substring(__old, 0, _M_pos)); _Self_destruct_ptr __right( _My_rope::_S_substring(__old, _M_pos+1, __old->_M_size)); _Self_destruct_ptr __result_left( _My_rope::_S_destr_concat_char_iter(__left, &__c, 1)); _RopeRep* __result = _My_rope::_S_concat(__result_left, __right); _RopeRep::_S_unref(__old); _M_root->_M_tree_ptr = __result; return *this; } template inline _Rope_char_ref_proxy<_CharT, _Alloc>::operator _CharT () const { if (_M_current_valid) { return _M_current; } else { return _My_rope::_S_fetch(_M_root->_M_tree_ptr, _M_pos); } } template _Rope_char_ptr_proxy<_CharT, _Alloc> _Rope_char_ref_proxy<_CharT, _Alloc>::operator& () const { return _Rope_char_ptr_proxy<_CharT, _Alloc>(*this); } template rope<_CharT, _Alloc>::rope(size_t __n, _CharT __c, const allocator_type& __a) : _Base(__a) { rope<_CharT,_Alloc> __result; const size_t __exponentiate_threshold = 32; size_t __exponent; size_t __rest; _CharT* __rest_buffer; _RopeRep* __remainder; rope<_CharT,_Alloc> __remainder_rope; if (0 == __n) return; __exponent = __n / __exponentiate_threshold; __rest = __n % __exponentiate_threshold; if (0 == __rest) { __remainder = 0; } else { __rest_buffer = this->_Data_allocate(_S_rounded_up_size(__rest)); uninitialized_fill_n(__rest_buffer, __rest, __c); _S_cond_store_eos(__rest_buffer[__rest]); try { __remainder = _S_new_RopeLeaf(__rest_buffer, __rest, __a); } catch(...) { _RopeRep::_S_free_string(__rest_buffer, __rest, __a);; throw; } } __remainder_rope._M_tree_ptr = __remainder; if (__exponent != 0) { _CharT* __base_buffer = this->_Data_allocate(_S_rounded_up_size(__exponentiate_threshold)); _RopeLeaf* __base_leaf; rope __base_rope; uninitialized_fill_n(__base_buffer, __exponentiate_threshold, __c); _S_cond_store_eos(__base_buffer[__exponentiate_threshold]); try { __base_leaf = _S_new_RopeLeaf(__base_buffer, __exponentiate_threshold, __a); } catch(...) { _RopeRep::_S_free_string(__base_buffer, __exponentiate_threshold, __a);; throw; } __base_rope._M_tree_ptr = __base_leaf; if (1 == __exponent) { __result = __base_rope; } else { __result = power(__base_rope, __exponent, _Rope_Concat_fn<_CharT,_Alloc>()); } if (0 != __remainder) { __result += __remainder_rope; } } else { __result = __remainder_rope; } this->_M_tree_ptr = __result._M_tree_ptr; this->_M_tree_ptr->_M_ref_nonnil(); } template _CharT rope<_CharT,_Alloc>::_S_empty_c_str[1]; template const _CharT* rope<_CharT,_Alloc>::c_str() const { if (0 == this->_M_tree_ptr) { _S_empty_c_str[0] = _S_eos((_CharT*)0); return _S_empty_c_str; } __gthread_mutex_lock (&this->_M_tree_ptr->_M_c_string_lock); _CharT* __result = this->_M_tree_ptr->_M_c_string; if (0 == __result) { size_t __s = size(); __result = this->_Data_allocate(__s + 1); _S_flatten(this->_M_tree_ptr, __result); __result[__s] = _S_eos((_CharT*)0); this->_M_tree_ptr->_M_c_string = __result; } __gthread_mutex_unlock (&this->_M_tree_ptr->_M_c_string_lock); return(__result); } template const _CharT* rope<_CharT,_Alloc>::replace_with_c_str() { if (0 == this->_M_tree_ptr) { _S_empty_c_str[0] = _S_eos((_CharT*)0); return _S_empty_c_str; } _CharT* __old_c_string = this->_M_tree_ptr->_M_c_string; if (_Rope_constants::_S_leaf == this->_M_tree_ptr->_M_tag && 0 != __old_c_string) { return(__old_c_string); } size_t __s = size(); _CharT* __result = this->_Data_allocate(_S_rounded_up_size(__s)); _S_flatten(this->_M_tree_ptr, __result); __result[__s] = _S_eos((_CharT*)0); this->_M_tree_ptr->_M_unref_nonnil(); this->_M_tree_ptr = _S_new_RopeLeaf(__result, __s, this->get_allocator()); return(__result); } template void _Rope_rotate(_Rope_iterator __first, _Rope_iterator __middle, _Rope_iterator __last) { typedef typename _Rope_iterator::value_type _CharT; typedef typename _Rope_iterator::_allocator_type _Alloc; rope<_CharT,_Alloc>& __r(__first.container()); rope<_CharT,_Alloc> __prefix = __r.substr(0, __first.index()); rope<_CharT,_Alloc> __suffix = __r.substr(__last.index(), __r.size() - __last.index()); rope<_CharT,_Alloc> __part1 = __r.substr(__middle.index(), __last.index() - __middle.index()); rope<_CharT,_Alloc> __part2 = __r.substr(__first.index(), __middle.index() - __first.index()); __r = __prefix; __r += __part1; __r += __part2; __r += __suffix; } # 1535 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/ropeimpl.h" 3 } # 2493 "/usr/lib/gcc/i686-pc-linux-gnu/3.4.4/include/g++-v3/ext/rope" 2 3 # 38 "../../src/Utility/ropeStuff.hh" 2 using namespace __gnu_cxx; # 29 "stringTerm.hh" 2 # 1 "../../src/NA_Theory/NA_Term.hh" 1 # 28 "../../src/NA_Theory/NA_Term.hh" # 1 "../../src/Interface/term.hh" 1 # 29 "../../src/NA_Theory/NA_Term.hh" 2 class NA_Term : public Term { public: NA_Term(NA_Symbol* symbol); # 42 "../../src/NA_Theory/NA_Term.hh" RawArgumentIterator* arguments(); void deepSelfDestruct(); void findEagerVariables(bool atTop, NatSet& eagerVariables) const; void analyseConstraintPropagation(NatSet& BoundUniquely) const; LhsAutomaton* compileLhs2(bool matchAtTop, const VariableInfo& variableInfo, NatSet& boundUniquely, bool& subproblemLikely); void markEagerArguments(int nrVariables, const NatSet& eagerVariables, Vector& problemVariables); DagNode* dagify2(); void findAvailableTerms(TermBag& availableTerms, bool eagerContext, bool atTop); int compileRhs2(RhsBuilder& rhsBuilder, VariableInfo& variableInfo, TermBag& availableTerms, bool eagerContext); virtual void overwriteWithDagNode(DagNode* old) const = 0; virtual NA_DagNode* makeDagNode() const = 0; }; # 30 "stringTerm.hh" 2 class StringTerm : public NA_Term { public: StringTerm(StringSymbol* symbol, const crope& value); Term* deepCopy2(SymbolMap* map) const; Term* normalize(bool full, bool& changed); int compareArguments(const Term* other) const; int compareArguments(const DagNode* other) const; void overwriteWithDagNode(DagNode* old) const; NA_DagNode* makeDagNode() const; const crope& getValue() const; private: const crope value; }; inline const crope& StringTerm::getValue() const { return value; } # 47 "stringTerm.cc" 2 # 1 "stringDagNode.hh" 1 # 29 "stringDagNode.hh" # 1 "../../src/NA_Theory/NA_DagNode.hh" 1 # 28 "../../src/NA_Theory/NA_DagNode.hh" # 1 "../../src/Interface/dagNode.hh" 1 # 29 "../../src/NA_Theory/NA_DagNode.hh" 2 class NA_DagNode : public DagNode { public: NA_DagNode(NA_Symbol* symbol); # 43 "../../src/NA_Theory/NA_DagNode.hh" RawDagArgumentIterator* arguments(); DagNode* copyWithReplacement(int argIndex, DagNode* replacement); DagNode* copyWithReplacement(Vector& redexStack, int first, int last); void stackArguments(Vector& stack, int parentIndex, bool respectFrozen); private: DagNode* markArguments(); DagNode* copyEagerUptoReduced2(); void clearCopyPointers2(); }; inline NA_DagNode::NA_DagNode(NA_Symbol* symbol) : DagNode(symbol) { } # 30 "stringDagNode.hh" 2 class StringDagNode : public NA_DagNode { public: StringDagNode(StringSymbol* symbol, const crope& value); size_t getHashValue(); int compareArguments(const DagNode* other) const; void overwriteWithClone(DagNode* old); DagNode* makeClone(); const crope& getValue() const; private: const crope value; }; inline const crope& StringDagNode::getValue() const { return value; } # 48 "stringTerm.cc" 2 # 57 "stringTerm.cc" StringTerm::StringTerm(StringSymbol* symbol, const crope& value) : NA_Term(symbol), value(value) { } Term* StringTerm::deepCopy2(SymbolMap* map) const { return new StringTerm(static_cast(map == 0 ? symbol() : map->translate(symbol())), value); } Term* StringTerm::normalize(bool , bool& changed) { changed = false; int hashValue = 0; for (crope::const_iterator i(value.begin()); i != value.end(); i++) hashValue = (hashValue << 1) + *i; setHashValue(hash(symbol()->getHashValue(), hashValue)); return this; } int StringTerm::compareArguments(const Term* other) const { return value.compare(static_cast(other)->value); } int StringTerm::compareArguments(const DagNode* other) const { return value.compare(static_cast(other)->getValue()); } void StringTerm::overwriteWithDagNode(DagNode* old) const { (void) new(old) StringDagNode(static_cast(symbol()), value); } NA_DagNode* StringTerm::makeDagNode() const { return new StringDagNode(static_cast(symbol()), value); }