version 1.77.2.4, 2011/05/09 13:52:24
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version 1.134, 2011/10/04 19:32:35
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/* |
/* |
================================================================================ |
================================================================================ |
RPL/2 (R) version 4.0.24 |
RPL/2 (R) version 4.1.4 |
Copyright (C) 1989-2011 Dr. BERTRAND Joël |
Copyright (C) 1989-2011 Dr. BERTRAND Joël |
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This file is part of RPL/2. |
This file is part of RPL/2. |
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#ifndef INCLUSION_RPL |
#ifndef INCLUSION_RPL |
#define INCLUSION_RPL |
#define INCLUSION_RPL |
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#define _GNU_SOURCE |
#ifndef __RPLCAS |
#define _POSIX_C_SOURCE 200112L |
# define _GNU_SOURCE |
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# define _XOPEN_SOURCE 700 |
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#endif |
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#define _REENTRANT |
#define _REENTRANT |
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#ifdef Darwin |
#ifndef __RPLCAS |
# define _DARWIN_C_SOURCE |
# ifdef Darwin |
#endif |
# define _DARWIN_C_SOURCE |
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# endif |
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#ifdef OpenBSD |
# ifdef OpenBSD |
# define _BSD_SOURCE |
# define _BSD_SOURCE |
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# endif |
#endif |
#endif |
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#ifdef OS2 |
#ifdef OS2 |
# define _BSD_SOURCE |
# ifndef __RPLCAS |
# define _XOPEN_SOURCE 600 |
# define _BSD_SOURCE |
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# define _XOPEN_SOURCE 600 |
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# endif |
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# include <types.h> |
# include <types.h> |
enum { SHUT_RD = 0, SHUT_WR, SHUT_RDWR }; |
enum { SHUT_RD = 0, SHUT_WR, SHUT_RDWR }; |
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# endif |
# endif |
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# include <pwd.h> |
# include <pwd.h> |
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# ifdef SHARED_MEMORY |
# ifdef _BROKEN_SIGINFO |
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# include <sys/ipc.h> |
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# include <sys/shm.h> |
# include <sys/shm.h> |
# endif |
# endif |
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ULONG *nopened; |
ULONG *nopened; |
ULONG allocated; |
ULONG allocated; |
} sem_t; |
} sem_t; |
# else |
# else // IPCS_SYSV |
typedef struct |
typedef struct |
{ |
{ |
int sem; |
int sem; |
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int alloue; |
unsigned char *path; |
unsigned char *path; |
pid_t pid; |
pid_t pid; |
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pthread_t tid; |
} sem_t; |
} sem_t; |
# endif |
# endif |
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# define SEM_FAILED NULL |
# ifndef SEM_FAILED |
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# define SEM_FAILED NULL |
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# endif |
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sem_t *sem_open_SysV(const char *nom, int oflag, ...); |
sem_t *sem_open_SysV(const char *nom, int oflag, ...); |
int sem_init_SysV(sem_t *sem, int shared, unsigned int value); |
int sem_init_SysV(sem_t *sem, int shared, unsigned int value); |
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# include "openssl/evp.h" |
# include "openssl/evp.h" |
# include "sqlite3.h" |
# include "sqlite3.h" |
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# include "sigsegv.h" |
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# define HAVE_INLINE |
# define HAVE_INLINE |
# define GSL_RANGE_CHECK_OFF |
# define GSL_RANGE_CHECK_OFF |
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================================================================================ |
================================================================================ |
*/ |
*/ |
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#ifdef _BROKEN_SIGINFO |
enum signaux_rpl |
# define SIGHANDLER_ARGS int signal |
{ |
# ifdef SA_SIGINFO |
rpl_signull = 0, |
# undef SA_SIGINFO |
rpl_sigint, |
# endif |
rpl_sigterm, |
# define SA_SIGINFO 0 |
rpl_sigstart, // Signal envoyé par un père pour lancer son fils. |
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rpl_sigcont, // Signal de redémarrage d'un processus arrêté par |
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// SUSPEND |
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rpl_sigstop, // Signal d'arrêt envoyé par l'instruction STOP ou |
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// FUSE. (FSTOP) |
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rpl_sigabort, // Signal envoyé par l'instruction ABORT (à regrouper |
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// avec FABORT) |
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rpl_sigurg, // Signal d'arrêt urgent |
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rpl_siginject, // Signal indiquant la présence d'une donnée à lire |
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// envoyée depuis le père |
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rpl_sigalrm, // Signal d'alarme (erreur système) depuis un fils |
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rpl_sighup, |
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rpl_sigtstp, |
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rpl_sigexcept, |
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rpl_sigmax |
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}; |
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# ifndef __BROKEN_SIGINFO_ROUTINES__ |
#define LONGUEUR_QUEUE_SIGNAUX 1024 |
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// pthread_kill() est une macro sous OS/2. |
// Une structure s_queue_signaux est créée par processus (et non par thread). |
# ifdef pthread_kill |
// Elle est projetée dans un segment de mémoire partagée pour qu'elle soit |
# undef pthread_kill |
// accessible à la fois du père et des fils. |
# endif |
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# define kill(a, b) kill_broken_siginfo(a, b) |
#ifndef RPLARGS |
# define pthread_kill(a, b) pthread_kill_broken_siginfo(a, b) |
typedef struct queue_signaux |
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{ |
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# ifndef IPCS_SYSV |
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# ifndef SEMAPHORES_NOMMES |
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sem_t semaphore; |
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# endif |
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# else |
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sem_t semaphore; |
# endif |
# endif |
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int kill_broken_siginfo(pid_t pid, int signal); |
volatile int pointeur_lecture; |
int pthread_kill_broken_siginfo(pthread_t tid, int signal); |
volatile int pointeur_ecriture; |
pid_t origine_signal(int signal); |
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int queue_in(pid_t pid, int signal); |
volatile struct |
#else |
{ |
# define SIGHANDLER_ARGS int signal, siginfo_t *siginfo, void *context |
pid_t pid; |
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enum signaux_rpl signal; |
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} queue[LONGUEUR_QUEUE_SIGNAUX]; |
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} struct_queue_signaux; |
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# ifndef MAIN_RPL |
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extern struct_queue_signaux *s_queue_signaux; |
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extern int f_queue_signaux; |
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# ifdef SEMAPHORES_NOMMES |
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extern sem_t *semaphore_queue_signaux; |
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# endif |
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# else |
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struct_queue_signaux *s_queue_signaux; |
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int f_queue_signaux; |
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# ifdef SEMAPHORES_NOMMES |
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sem_t *semaphore_queue_signaux; |
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# endif |
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# endif |
#endif |
#endif |
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#ifdef OpenBSD |
#ifdef OpenBSD |
Line 254 union semun
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Line 302 union semun
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}; |
}; |
#endif |
#endif |
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#ifndef RTLD_LOCAL |
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# define RTLD_LOCAL 0 |
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#endif |
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#ifndef SIGSTKSZ |
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# define SIGSTKSZ 65536 |
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#endif |
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/* |
/* |
================================================================================ |
================================================================================ |
Line 290 union semun
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Line 345 union semun
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// SIGPIPE |
// SIGPIPE |
// SIGALRM |
// SIGALRM |
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// Arrêt par STOP |
# define SIGTEST SIGUSR1 |
# define SIGFSTOP SIGUSR1 |
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// Démarrage d'un processus fils |
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# define SIGSTART SIGUSR2 |
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// Injection de données |
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# define SIGINJECT SIGQUIT |
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// Arrêt général |
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# ifndef OpenBSD |
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// La libpthread d'OpenBSD utilise SIGPROF |
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# define SIGABORT SIGPROF |
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# else |
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# define SIGABORT SIGTHR |
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# endif |
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// Arrêt d'un processus fils depuis autre chose que STOP |
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# if defined(Darwin) || defined(OpenBSD) |
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# define SIGFABORT SIGINFO |
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# else |
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# define SIGFABORT SIGPOLL |
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# endif |
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// Nombre d'interruptions disponibles |
// Nombre d'interruptions disponibles |
# define d_NOMBRE_INTERRUPTIONS 64 |
# define d_NOMBRE_INTERRUPTIONS 64 |
Line 376 typedef unsigned char t_8_bits;
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Line 413 typedef unsigned char t_8_bits;
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# endif |
# endif |
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# ifndef MAIN_RPL |
# ifndef MAIN_RPL |
# ifdef _BROKEN_SIGINFO |
extern jmp_buf contexte_ecriture; |
extern int *fifos_signaux; |
extern jmp_buf contexte_impression; |
# endif |
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extern jmp_buf contexte; |
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extern jmp_buf contexte_initial; |
extern jmp_buf contexte_initial; |
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extern jmp_buf contexte_processus; |
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extern jmp_buf contexte_thread; |
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# ifdef SEMAPHORES_NOMMES |
extern int signal_test; |
extern pthread_mutex_t mutex_sem; |
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# endif |
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extern pthread_key_t semaphore_fork_processus_courant; |
extern pid_t pid_processus_pere; |
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extern sem_t |
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# ifdef SEMAPHORES_NOMMES |
# ifdef SEMAPHORES_NOMMES |
* |
extern pthread_mutex_t mutex_sem; |
# endif |
# endif |
semaphore_liste_threads; |
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extern sem_t |
extern pthread_mutex_t mutex_liste_threads; |
# ifdef SEMAPHORES_NOMMES |
extern pthread_mutex_t mutex_gestionnaires_signaux_atomique; |
* |
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# endif |
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semaphore_gestionnaires_signaux; |
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extern sem_t |
extern sem_t |
# ifdef SEMAPHORES_NOMMES |
# ifdef SEMAPHORES_NOMMES |
* |
* |
# endif |
# endif |
semaphore_gestionnaires_signaux_atomique; |
semaphore_gestionnaires_signaux; |
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# ifdef SEMAPHORES_NOMMES |
extern volatile int routine_recursive; |
// 0 -> liste_threads |
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// 1 -> gestionnaire_signaux |
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// 2 -> gestionnaire_signaux_atomique |
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// 3 -> &((*s_etat_processus).semaphore_fork) |
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extern unsigned char noms_semaphores[4][LONGUEUR_NOM_SEMAPHORE]; |
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extern sem_t *semaphores_nommes[4]; |
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# endif |
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# else |
# else |
# ifdef _BROKEN_SIGINFO |
jmp_buf contexte_ecriture; |
int *fifos_signaux; |
jmp_buf contexte_impression; |
# endif |
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jmp_buf contexte; |
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jmp_buf contexte_initial; |
jmp_buf contexte_initial; |
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jmp_buf contexte_processus; |
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jmp_buf contexte_thread; |
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# ifdef SEMAPHORES_NOMMES |
int signal_test; |
pthread_mutex_t mutex_sem = PTHREAD_MUTEX_INITIALIZER; |
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# endif |
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pthread_key_t semaphore_fork_processus_courant; |
pid_t pid_processus_pere; |
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sem_t |
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# ifdef SEMAPHORES_NOMMES |
# ifdef SEMAPHORES_NOMMES |
* |
pthread_mutex_t mutex_sem = PTHREAD_MUTEX_INITIALIZER; |
# endif |
# endif |
semaphore_liste_threads; |
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pthread_mutex_t mutex_liste_threads = |
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PTHREAD_MUTEX_INITIALIZER; |
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pthread_mutex_t mutex_gestionnaires_signaux = |
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PTHREAD_MUTEX_INITIALIZER; |
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pthread_mutex_t mutex_gestionnaires_signaux_atomique = |
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PTHREAD_MUTEX_INITIALIZER; |
sem_t |
sem_t |
# ifdef SEMAPHORES_NOMMES |
# ifdef SEMAPHORES_NOMMES |
* |
* |
# endif |
# endif |
semaphore_gestionnaires_signaux; |
semaphore_gestionnaires_signaux; |
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sem_t |
volatile int routine_recursive; |
# ifdef SEMAPHORES_NOMMES |
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* |
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# endif |
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semaphore_gestionnaires_signaux_atomique; |
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# ifdef SEMAPHORES_NOMMES |
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unsigned char noms_semaphores[4][LONGUEUR_NOM_SEMAPHORE]; |
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sem_t *semaphores_nommes[4]; |
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# endif |
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# endif |
# endif |
#endif |
#endif |
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#ifdef SEMAPHORES_NOMMES |
#ifdef SEMAPHORES_NOMMES |
enum t_semaphore { sem_liste_threads = 0, |
#define SEM_FORK 0 |
sem_gestionnaires_signaux = 1, |
#define SEM_QUEUE 1 |
sem_gestionnaires_signaux_atomique = 2, |
#define SEM_SIGNAUX 2 |
sem_fork = 3 }; |
sem_t *sem_init2(unsigned int valeur, pid_t pid, int ordre); |
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sem_t *sem_init3(unsigned int valeur, pid_t pid, pthread_t tid, int ordre); |
sem_t *sem_init2(unsigned int valeur, enum t_semaphore semaphore); |
int sem_destroy2(sem_t *semaphore_p, pid_t pid, int ordre); |
int sem_destroy2(sem_t *semaphore_p, enum t_semaphore semaphore); |
int sem_destroy3(sem_t *semaphore_p, pid_t pid, pthread_t tid, int ordre); |
int sem_getvalue2(sem_t *semaphore, int *valeur); |
int sem_getvalue2(sem_t *semaphore, int *valeur); |
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sem_t *sem_open2(pid_t pid, int ordre); |
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// Le mutex est là uniquement pour pouvoir émuler le comportement |
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// de sem_getvalue() sur un système comme MacOS X qui ne possède pas |
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// cette fonction. |
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#define sem_getvalue(semaphore, value) sem_getvalue2(semaphore, value) |
#define sem_getvalue(semaphore, value) sem_getvalue2(semaphore, value) |
#define sem_post(semaphore) \ |
#define sem_post(semaphore) \ |
Line 494 int sem_getvalue2(sem_t *semaphore, int
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Line 513 int sem_getvalue2(sem_t *semaphore, int
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#define ufprintf(flux, ...) transliterated_fprintf(NULL, \ |
#define ufprintf(flux, ...) transliterated_fprintf(NULL, \ |
flux, __VA_ARGS__) |
flux, __VA_ARGS__) |
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// Tous les messages pour DISP, INPUT et les E/S par readline sont sur stderr. |
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// Cela évite aux messages envoyés par les gestionnaires de signaux d'être |
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// indéfiniment bloqués. |
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#ifdef SunOS |
#ifdef SunOS |
# define fopen(...) ({ FILE *desc; \ |
# define fopen(...) ({ FILE *desc; \ |
while((desc = fopen(__VA_ARGS__)) == NULL) \ |
while((desc = fopen(__VA_ARGS__)) == NULL) \ |
Line 923 pid_t debug_fork();
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Line 938 pid_t debug_fork();
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# define d_ex_nom_implicite __erreur(81) |
# define d_ex_nom_implicite __erreur(81) |
# define d_ex_version_bibliotheque __erreur(82) |
# define d_ex_version_bibliotheque __erreur(82) |
# define d_ex_creation_variable_globale __erreur(83) |
# define d_ex_creation_variable_globale __erreur(83) |
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# define d_ex_erreur_interne_rplcas __erreur(84) |
#endif |
#endif |
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Line 973 pid_t debug_fork();
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Line 989 pid_t debug_fork();
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#define VIN __RPL_VIN |
#define VIN __RPL_VIN |
#define VRL __RPL_VRL |
#define VRL __RPL_VRL |
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enum t_rplcas_commandes { RPLCAS_INTEGRATION = 0, RPLCAS_LIMITE }; |
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enum t_type { ADR = 0, ALG, BIN, CHN, CPL, FCH, FCT, INT, LST, |
enum t_type { ADR = 0, ALG, BIN, CHN, CPL, FCH, FCT, INT, LST, |
MCX, MIN, MRL, MTX, NOM, NON, PRC, REL, RPN, SCK, |
MCX, MIN, MRL, MTX, NOM, NON, PRC, REL, RPN, SCK, |
Line 1379 typedef struct descripteur_thread
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Line 1396 typedef struct descripteur_thread
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logical1 processus_detache; |
logical1 processus_detache; |
logical1 destruction_objet; |
logical1 destruction_objet; |
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sigset_t oldset; |
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sigset_t set; |
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volatile signed long nombre_references; |
volatile signed long nombre_references; |
} struct_descripteur_thread; |
} struct_descripteur_thread; |
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Line 1671 typedef struct rpl_arguments
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Line 1685 typedef struct rpl_arguments
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void *s_etat_processus; |
void *s_etat_processus; |
} struct_rpl_arguments; |
} struct_rpl_arguments; |
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/* |
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-------------------------------------------------------------------------------- |
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Structure d'arbre des instructions intrinsèques |
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-------------------------------------------------------------------------------- |
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*/ |
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#ifndef RPLARGS |
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typedef struct instruction |
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{ |
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struct instruction **noeuds; |
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void (*feuille)(struct processus *); |
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} struct_instruction; |
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#endif |
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/* |
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-------------------------------------------------------------------------------- |
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Structure d'arbre des variables variable globales et locales |
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-------------------------------------------------------------------------------- |
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*/ |
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#ifndef RPLARGS |
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typedef struct arbre_variables |
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{ |
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unsigned int noeuds_utilises; |
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signed int indice_tableau_pere; |
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struct arbre_variables *noeud_pere; |
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struct arbre_variables **noeuds; |
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struct liste_variables *feuille; |
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} struct_arbre_variables; |
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typedef struct tableau_variables |
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{ |
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unsigned char origine; |
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unsigned char *nom; // pointeur sur la struct_variable |
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// réelle et non copie de la chaîne |
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unsigned long niveau; |
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struct_objet *objet; // pointeur sur l'objet et non copie |
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// de l'objet. |
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logical1 variable_verrouillee; |
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union_position_variable variable_statique; |
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union_position_variable variable_partagee; |
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} struct_tableau_variables; |
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typedef struct liste_variables |
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{ |
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union |
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{ |
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// Utilisation dans la gestion des variables |
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struct_variable *variable; |
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// Utilisation dans la pile système (variables par niveau) |
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struct_liste_chainee *liste; |
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}; |
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struct arbre_variables *noeud_pere; |
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struct arbre_variables *noeud; |
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struct liste_variables *suivant; |
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struct liste_variables *precedent; |
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} struct_liste_variables; |
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#endif |
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/* |
/* |
-------------------------------------------------------------------------------- |
-------------------------------------------------------------------------------- |
Line 1717 typedef struct processus
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Line 1793 typedef struct processus
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int *pointeurs_caracteres; |
int *pointeurs_caracteres; |
int nombre_caracteres; |
int nombre_caracteres; |
struct instruction *arbre_instructions; |
struct_instruction *arbre_instructions; |
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/* Requetes */ |
/* Requetes */ |
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Line 1760 typedef struct processus
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Line 1836 typedef struct processus
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pthread_t thread_fusible; |
pthread_t thread_fusible; |
pthread_t thread_surveille_par_fusible; |
pthread_t thread_surveille_par_fusible; |
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# if !defined(Cygwin) |
volatile int pointeur_signal_ecriture; |
# if !(OpenBSD) |
volatile int pointeur_signal_lecture; |
stack_t pile_signal; |
volatile enum signaux_rpl signaux_en_queue[LONGUEUR_QUEUE_SIGNAUX]; |
# else |
volatile logical1 demarrage_fils; |
# ifdef SA_ONSTACK |
volatile logical1 redemarrage_processus; |
# undef SA_ONSTACK |
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# endif |
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# define SA_ONSTACK 0 |
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# endif |
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# else |
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# define SA_ONSTACK 0 |
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# define RTLD_LOCAL 0 |
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# endif |
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/* Contextes */ |
/* Contextes */ |
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Line 1781 typedef struct processus
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Line 1849 typedef struct processus
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/* Variables */ |
/* Variables */ |
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struct_variable *s_liste_variables; |
// La liste des variables par niveau est doublement chaînée. |
unsigned long nombre_variables; |
// À tout moment, elle pointe sur le niveau le plus haut existant et |
unsigned long nombre_variables_allouees; |
// l_liste_variable_par_niveau->precedent renvoie la liste des |
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// définitions. l_liste_variable_par_niveau->precedent->precedent pointe |
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// sur la liste des variables globales. |
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// |
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// À l'initialisation : |
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// l_liste_variables_par_niveau->suivant == l_liste_variables_par_niveau |
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// l_liste_variables_par_niveau->precedent == l_liste_variables_par_niveau |
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struct_arbre_variables *s_arbre_variables; |
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struct_liste_variables *l_liste_variables_par_niveau; |
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logical1 niveau_supprime; |
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struct_variable *pointeur_variable_courante; |
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struct_liste_variables *pointeur_feuille_courante; |
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int *pointeurs_caracteres_variables; |
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int nombre_caracteres_variables; |
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struct_variable_statique *s_liste_variables_statiques; |
struct_variable_statique *s_liste_variables_statiques; |
unsigned long nombre_variables_statiques; |
unsigned long nombre_variables_statiques; |
Line 1794 typedef struct processus
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Line 1878 typedef struct processus
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unsigned long niveau_courant; |
unsigned long niveau_courant; |
unsigned long niveau_initial; |
unsigned long niveau_initial; |
unsigned long position_variable_courante; |
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unsigned long position_variable_statique_courante; |
unsigned long position_variable_statique_courante; |
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logical1 creation_variables_statiques; |
logical1 creation_variables_statiques; |
Line 2060 typedef struct processus
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Line 2143 typedef struct processus
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gsl_rng *generateur_aleatoire; |
gsl_rng *generateur_aleatoire; |
const gsl_rng_type *type_generateur_aleatoire; |
const gsl_rng_type *type_generateur_aleatoire; |
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void *contexte_cas; |
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integer8 nombre_arguments; |
integer8 nombre_arguments; |
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/* |
/* |
Line 2097 typedef struct processus
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Line 2182 typedef struct processus
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pthread_mutex_t mutex; |
pthread_mutex_t mutex; |
pthread_mutex_t mutex_allocation; |
pthread_mutex_t mutex_allocation; |
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// Sémaphore autorisant les fork() |
// Mutex autorisant les fork() |
sem_t |
sem_t |
# ifdef SEMAPHORES_NOMMES |
# ifdef SEMAPHORES_NOMMES |
* |
* |
# endif |
# endif |
semaphore_fork; |
semaphore_fork; |
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/* Mutexes */ |
/* Mutexes */ |
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Line 2122 typedef struct processus
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Line 2207 typedef struct processus
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unsigned long taille_pile_objets; |
unsigned long taille_pile_objets; |
struct_objet *pile_objets; |
struct_objet *pile_objets; |
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# ifndef DEBUG_MALLOC |
# define TAILLE_CACHE 16384 |
# define TAILLE_CACHE 16384 |
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# else |
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# define TAILLE_CACHE 4 |
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# endif |
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unsigned long *objets_adr[TAILLE_CACHE]; |
unsigned long *objets_adr[TAILLE_CACHE]; |
int pointeur_adr; |
int pointeur_adr; |
Line 2160 typedef struct processus
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Line 2241 typedef struct processus
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struct_liste_chainee *maillons[TAILLE_CACHE]; |
struct_liste_chainee *maillons[TAILLE_CACHE]; |
int pointeur_maillons; |
int pointeur_maillons; |
} struct_processus; |
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#endif |
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/* |
struct_arbre_variables *variables_noeud[TAILLE_CACHE]; |
-------------------------------------------------------------------------------- |
int pointeur_variables_noeud; |
Structures instruction intrinsèque |
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-------------------------------------------------------------------------------- |
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*/ |
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#ifndef RPLARGS |
struct_liste_variables *variables_feuille[TAILLE_CACHE]; |
typedef struct instruction |
int pointeur_variables_feuille; |
{ |
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struct instruction **noeud; |
struct_variable *variables_variable[TAILLE_CACHE]; |
void (*feuille)(struct_processus *); |
int pointeur_variables_variable; |
} struct_instruction; |
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#endif |
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struct_arbre_variables **variables_tableau_noeuds[TAILLE_CACHE]; |
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int pointeur_variables_tableau_noeuds; |
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} struct_processus; |
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#endif |
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/* |
/* |
-------------------------------------------------------------------------------- |
-------------------------------------------------------------------------------- |
Line 2213 typedef struct fonction
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Line 2291 typedef struct fonction
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// BEGIN C PROTOTYPES |
// BEGIN C PROTOTYPES |
void instruction_sensible_e(struct_processus *s_etat_processus); |
void instruction_sensible_e(struct_processus *s_etat_processus); |
void instruction_sensible_i(struct_processus *s_etat_processus); |
void instruction_sensible_i(struct_processus *s_etat_processus); |
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void instruction_sensible_infinity(struct_processus *s_etat_processus); |
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void instruction_abort(struct_processus *s_etat_processus); |
void instruction_abort(struct_processus *s_etat_processus); |
void instruction_abs(struct_processus *s_etat_processus); |
void instruction_abs(struct_processus *s_etat_processus); |
Line 2409 void instruction_in(struct_processus *s_
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Line 2488 void instruction_in(struct_processus *s_
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void instruction_incr(struct_processus *s_etat_processus); |
void instruction_incr(struct_processus *s_etat_processus); |
void instruction_indep(struct_processus *s_etat_processus); |
void instruction_indep(struct_processus *s_etat_processus); |
void instruction_input(struct_processus *s_etat_processus); |
void instruction_input(struct_processus *s_etat_processus); |
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void instruction_infinity(struct_processus *s_etat_processus); |
void instruction_inquire(struct_processus *s_etat_processus); |
void instruction_inquire(struct_processus *s_etat_processus); |
void instruction_int(struct_processus *s_etat_processus); |
void instruction_int(struct_processus *s_etat_processus); |
void instruction_interrupt(struct_processus *s_etat_processus); |
void instruction_interrupt(struct_processus *s_etat_processus); |
Line 2432 void instruction_lcd_fleche(struct_proce
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Line 2512 void instruction_lcd_fleche(struct_proce
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void instruction_lchol(struct_processus *s_etat_processus); |
void instruction_lchol(struct_processus *s_etat_processus); |
void instruction_le(struct_processus *s_etat_processus); |
void instruction_le(struct_processus *s_etat_processus); |
void instruction_legv(struct_processus *s_etat_processus); |
void instruction_legv(struct_processus *s_etat_processus); |
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void instruction_limit(struct_processus *s_etat_processus); |
void instruction_line(struct_processus *s_etat_processus); |
void instruction_line(struct_processus *s_etat_processus); |
void instruction_list_fleche(struct_processus *s_etat_processus); |
void instruction_list_fleche(struct_processus *s_etat_processus); |
void instruction_ln(struct_processus *s_etat_processus); |
void instruction_ln(struct_processus *s_etat_processus); |
Line 2624 void instruction_sqlquery(struct_process
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Line 2705 void instruction_sqlquery(struct_process
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void instruction_sqrt(struct_processus *s_etat_processus); |
void instruction_sqrt(struct_processus *s_etat_processus); |
void instruction_sr(struct_processus *s_etat_processus); |
void instruction_sr(struct_processus *s_etat_processus); |
void instruction_srb(struct_processus *s_etat_processus); |
void instruction_srb(struct_processus *s_etat_processus); |
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void instruction_srev(struct_processus *s_etat_processus); |
void instruction_sst(struct_processus *s_etat_processus); |
void instruction_sst(struct_processus *s_etat_processus); |
void instruction_star_d(struct_processus *s_etat_processus); |
void instruction_star_d(struct_processus *s_etat_processus); |
void instruction_star_h(struct_processus *s_etat_processus); |
void instruction_star_h(struct_processus *s_etat_processus); |
Line 2685 void instruction_t_vers_l(struct_process
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Line 2767 void instruction_t_vers_l(struct_process
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void instruction_ucase(struct_processus *s_etat_processus); |
void instruction_ucase(struct_processus *s_etat_processus); |
void instruction_uchol(struct_processus *s_etat_processus); |
void instruction_uchol(struct_processus *s_etat_processus); |
void instruction_undo(struct_processus *s_etat_processus); |
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void instruction_unlock(struct_processus *s_etat_processus); |
void instruction_unlock(struct_processus *s_etat_processus); |
void instruction_unprotect(struct_processus *s_etat_processus); |
void instruction_unprotect(struct_processus *s_etat_processus); |
void instruction_until(struct_processus *s_etat_processus); |
void instruction_until(struct_processus *s_etat_processus); |
Line 2740 void affichage_pile(struct_processus *s_
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Line 2821 void affichage_pile(struct_processus *s_
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niveau_courant); |
niveau_courant); |
#endif |
#endif |
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void *allocation(struct_processus *s_etat_processus, enum t_type type); |
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void *allocation_maillon(struct_processus *s_etat_processus); |
void *allocation_maillon(struct_processus *s_etat_processus); |
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#ifndef RPLARGS |
#ifndef RPLARGS |
Line 2761 void conversion_hms_vers_decimal(real8 *
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Line 2841 void conversion_hms_vers_decimal(real8 *
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void conversion_majuscule_limitee(unsigned char *chaine_entree, |
void conversion_majuscule_limitee(unsigned char *chaine_entree, |
unsigned char *chaine_sortie, unsigned long longueur); |
unsigned char *chaine_sortie, unsigned long longueur); |
void conversion_radians_vers_degres(real8 *angle); |
void conversion_radians_vers_degres(real8 *angle); |
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void copie_arbre_variables(struct_processus *s_etat_processus, |
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struct_processus *s_nouvel_etat_processus); |
void correction_formateur_tex(struct_processus *s_etat_processus, |
void correction_formateur_tex(struct_processus *s_etat_processus, |
unsigned char **ligne); |
unsigned char **ligne); |
void depilement_pile_systeme(struct_processus *s_etat_processus); |
void depilement_pile_systeme(struct_processus *s_etat_processus); |
Line 2800 void impression_tex(struct_processus *s_
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Line 2882 void impression_tex(struct_processus *s_
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void informations(struct_processus *s_etat_processus); |
void informations(struct_processus *s_etat_processus); |
void initialisation_allocateur(struct_processus *s_etat_processus); |
void initialisation_allocateur(struct_processus *s_etat_processus); |
void initialisation_completion(void); |
void initialisation_completion(void); |
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void initialisation_contexte_cas(struct_processus *s_etat_processus); |
void initialisation_drapeaux(struct_processus *s_etat_processus); |
void initialisation_drapeaux(struct_processus *s_etat_processus); |
void initialisation_generateur_aleatoire(struct_processus *s_etat_processus, |
void initialisation_generateur_aleatoire(struct_processus *s_etat_processus, |
logical1 initialisation_automatique, unsigned long int racine); |
logical1 initialisation_automatique, unsigned long int racine); |
void initialisation_instructions(struct_processus *s_etat_processus); |
void initialisation_instructions(struct_processus *s_etat_processus); |
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void initialisation_variables(struct_processus *s_etat_processus); |
#endif |
#endif |
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void initialisation_objet(struct_objet *s_objet); |
void initialisation_objet(struct_objet *s_objet); |
Line 2816 void insertion_thread_surveillance(struc
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Line 2900 void insertion_thread_surveillance(struc
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void integrale_romberg(struct_processus *s_etat_processus, |
void integrale_romberg(struct_processus *s_etat_processus, |
struct_objet *s_expression, unsigned char *variable, |
struct_objet *s_expression, unsigned char *variable, |
real8 a, real8 b, real8 precision); |
real8 a, real8 b, real8 precision); |
void interruption1(SIGHANDLER_ARGS); |
void interface_cas(struct_processus *s_etat_processus, |
void interruption2(SIGHANDLER_ARGS); |
enum t_rplcas_commandes commande); |
void interruption3(SIGHANDLER_ARGS); |
void interruption1(int signal); |
void interruption4(SIGHANDLER_ARGS); |
void interruption2(int signal); |
void interruption5(SIGHANDLER_ARGS); |
void interruption3(int signal); |
void interruption6(SIGHANDLER_ARGS); |
void interruption4(int signal); |
void interruption7(SIGHANDLER_ARGS); |
void interruption5(int signal); |
void interruption8(SIGHANDLER_ARGS); |
void interruption_depassement_pile(int urgence, stackoverflow_context_t scp); |
void interruption9(SIGHANDLER_ARGS); |
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void interruption10(SIGHANDLER_ARGS); |
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void interruption11(SIGHANDLER_ARGS); |
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void inversion_matrice(struct_processus *s_etat_processus, |
void inversion_matrice(struct_processus *s_etat_processus, |
struct_matrice *s_matrice); |
struct_matrice *s_matrice); |
void lancement_daemon(struct_processus *s_etat_processus); |
void lancement_daemon(struct_processus *s_etat_processus); |
Line 2841 void liberation_maillon(struct_processus
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Line 2922 void liberation_maillon(struct_processus
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void liberation_allocateur(struct_processus *s_etat_processus); |
void liberation_allocateur(struct_processus *s_etat_processus); |
void liberation_arbre_instructions(struct_processus *s_etat_processus, |
void liberation_arbre_instructions(struct_processus *s_etat_processus, |
struct_instruction *arbre); |
struct_instruction *arbre); |
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void liberation_arbre_variables(struct_processus *s_etat_processus, |
|
struct_arbre_variables *arbre, logical1 definitions); |
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void liberation_contexte_cas(struct_processus *s_etat_processus); |
void liberation_generateur_aleatoire(struct_processus *s_etat_processus); |
void liberation_generateur_aleatoire(struct_processus *s_etat_processus); |
void liberation_threads(struct_processus *s_etat_processus); |
void liberation_threads(struct_processus *s_etat_processus); |
void liberation_profil(struct_processus *s_etat_processus); |
void liberation_profil(struct_processus *s_etat_processus); |
Line 2857 void retrait_thread(struct_processus *s_
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Line 2941 void retrait_thread(struct_processus *s_
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void retrait_thread_surveillance(struct_processus *s_etat_processus, |
void retrait_thread_surveillance(struct_processus *s_etat_processus, |
struct_descripteur_thread *s_argument_thread); |
struct_descripteur_thread *s_argument_thread); |
void rplcore(struct_processus *s_etat_processus); |
void rplcore(struct_processus *s_etat_processus); |
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#endif |
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void scrutation_injection(struct_processus *s_etat_processus); |
void scrutation_injection(struct_processus *s_etat_processus); |
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#ifndef RPLARGS |
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void scrutation_interruptions(struct_processus *s_etat_processus); |
void sf(struct_processus *s_etat_processus, unsigned char indice_drapeau); |
void sf(struct_processus *s_etat_processus, unsigned char indice_drapeau); |
void *surveillance_processus(void *argument); |
void *surveillance_processus(void *argument); |
void swap(void *variable_1, void *variable_2, unsigned long taille_octets); |
void swap(void *variable_1, void *variable_2, unsigned long taille_octets); |
Line 2885 void valeurs_singulieres(struct_processu
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Line 2974 void valeurs_singulieres(struct_processu
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void verrouillage_threads_concurrents(struct_processus *s_etat_processus); |
void verrouillage_threads_concurrents(struct_processus *s_etat_processus); |
#endif |
#endif |
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/* |
|
-------------------------------------------------------------------------------- |
|
Fonctions de gestion des signaux |
|
-------------------------------------------------------------------------------- |
|
*/ |
|
|
#ifndef RPLARGS |
#ifndef RPLARGS |
#ifdef _BROKEN_SIGINFO |
void creation_queue_signaux(struct_processus *s_etat_processus); |
void creation_fifos_signaux(struct_processus *s_etat_processus); |
void liberation_queue_signaux(struct_processus *s_etat_processus); |
void destruction_fifos_signaux(struct_processus *s_etat_processus); |
void destruction_queue_signaux(struct_processus *s_etat_processus); |
void liberation_fifos_signaux(struct_processus *s_etat_processus); |
int envoi_signal_contexte(struct_processus *s_etat_processus, |
#endif |
enum signaux_rpl signal); |
|
int envoi_signal_processus(pid_t pid, enum signaux_rpl signal); |
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int envoi_signal_thread(pthread_t tid, enum signaux_rpl signal); |
#endif |
#endif |
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/* |
/* |
Line 3069 logical1 ecriture_pipe(struct_processus
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Line 3166 logical1 ecriture_pipe(struct_processus
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struct_objet *s_objet); |
struct_objet *s_objet); |
logical1 recherche_variable(struct_processus *s_etat_processus, |
logical1 recherche_variable(struct_processus *s_etat_processus, |
unsigned char *nom_variable); |
unsigned char *nom_variable); |
|
logical1 recherche_variable_globale(struct_processus *s_etat_processus, |
|
unsigned char *nom_variable); |
logical1 recherche_variable_partagee(struct_processus *s_etat_processus, |
logical1 recherche_variable_partagee(struct_processus *s_etat_processus, |
unsigned char *nom_variable, union_position_variable position, |
unsigned char *nom_variable, union_position_variable position, |
unsigned char origine); |
unsigned char origine); |
Line 3101 ssize_t write_atomic(struct_processus *s
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Line 3200 ssize_t write_atomic(struct_processus *s
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*/ |
*/ |
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int alsprintf(unsigned char **strp, const char *fmt, ...); |
int alsprintf(unsigned char **strp, const char *fmt, ...); |
|
int interruption_violation_access(void *adresse_fautive, int gravite); |
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#ifndef RPLARGS |
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int liste_variables(struct_processus *s_etat_processus, |
|
struct_tableau_variables *tableau, int position, |
|
struct_arbre_variables *l_element_courant); |
|
int nombre_variables(struct_processus *s_etat_processus, |
|
struct_arbre_variables *l_element_courant); |
|
#endif |
int tex_fprintf(struct_processus *s_etat_processus, |
int tex_fprintf(struct_processus *s_etat_processus, |
file *flux, const char *format, ...); |
file *flux, const char *format, ...); |
int transliterated_fprintf(struct_processus *s_etat_processus, file *flux, |
int transliterated_fprintf(struct_processus *s_etat_processus, file *flux, |
Line 3182 struct_descripteur_fichier *descripteur_
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Line 3289 struct_descripteur_fichier *descripteur_
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struct_objet *copie_objet(struct_processus *s_etat_processus, |
struct_objet *copie_objet(struct_processus *s_etat_processus, |
struct_objet *s_objet, unsigned char type); |
struct_objet *s_objet, unsigned char type); |
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struct_objet *allocation(struct_processus *s_etat_processus, enum t_type type); |
#ifndef RPLARGS |
#ifndef RPLARGS |
struct_objet *formateur_date(struct_processus *s_etat_processus, |
struct_objet *formateur_date(struct_processus *s_etat_processus, |
struct timeval *temps); |
struct timeval *temps); |