version 1.37, 2012/01/05 10:19:05
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version 1.55, 2013/09/06 10:30:56
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/* |
/* |
================================================================================ |
================================================================================ |
RPL/2 (R) version 4.1.5 |
RPL/2 (R) version 4.1.16 |
Copyright (C) 1989-2012 Dr. BERTRAND Joël |
Copyright (C) 1989-2013 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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Line 38
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Line 38
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logical1 |
logical1 |
sequenceur_optimise(struct_processus *s_etat_processus) |
sequenceur_optimise(struct_processus *s_etat_processus) |
{ |
{ |
int i; |
integer8 adresse_point_entree; |
int nb_variables; |
integer8 i; |
int point_entree; |
integer8 j; |
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integer8 nb_variables; |
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integer8 point_entree; |
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logical1 erreur; |
logical1 erreur; |
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Line 51 sequenceur_optimise(struct_processus *s_
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Line 53 sequenceur_optimise(struct_processus *s_
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unsigned char *message; |
unsigned char *message; |
unsigned char registre; |
unsigned char registre; |
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unsigned long adresse_point_entree; |
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if ((*s_etat_processus).debug == d_vrai) |
if ((*s_etat_processus).debug == d_vrai) |
if (((*s_etat_processus).type_debug & |
if (((*s_etat_processus).type_debug & |
d_debug_analyse) != 0) |
d_debug_analyse) != 0) |
Line 79 sequenceur_optimise(struct_processus *s_
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Line 79 sequenceur_optimise(struct_processus *s_
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(*s_etat_processus).autorisation_empilement_programme = 'Y'; |
(*s_etat_processus).autorisation_empilement_programme = 'Y'; |
(*s_etat_processus).mode_execution_programme = 'N'; |
(*s_etat_processus).mode_execution_programme = 'N'; |
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nb_variables = nombre_variables(s_etat_processus, |
nb_variables = nombre_variables(s_etat_processus); |
(*s_etat_processus).s_arbre_variables); |
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if ((tableau = malloc(nb_variables * sizeof(struct_tableau_variables))) |
if ((tableau = malloc(((size_t) nb_variables) * |
== NULL) |
sizeof(struct_tableau_variables))) == NULL) |
{ |
{ |
if ((*s_etat_processus).langue == 'F') |
if ((*s_etat_processus).langue == 'F') |
{ |
{ |
Line 94 sequenceur_optimise(struct_processus *s_
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Line 93 sequenceur_optimise(struct_processus *s_
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printf("+++System : Not enough memory\n"); |
printf("+++System : Not enough memory\n"); |
} |
} |
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liberation_mutexes_arbre_variables_partagees(s_etat_processus, |
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(*(*s_etat_processus).s_arbre_variables_partagees)); |
return(d_erreur); |
return(d_erreur); |
} |
} |
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liste_variables(s_etat_processus, tableau, 0, |
nb_variables = liste_variables(s_etat_processus, tableau); |
(*s_etat_processus).s_arbre_variables); |
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for(i = 0; i < nb_variables; i++) |
for(i = 0; i < nb_variables; i++) |
{ |
{ |
Line 106 sequenceur_optimise(struct_processus *s_
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Line 106 sequenceur_optimise(struct_processus *s_
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{ |
{ |
// Variables qui contiennent les points d'entrée des définitions. |
// Variables qui contiennent les points d'entrée des définitions. |
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(*s_etat_processus).position_courante = (*((unsigned long *) |
(*s_etat_processus).position_courante = (*((integer8 *) |
(*(tableau[i].objet)).objet)); |
(*(tableau[i].objet)).objet)); |
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if (point_entree == -1) |
if (point_entree == -1) |
Line 137 sequenceur_optimise(struct_processus *s_
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Line 137 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 195 sequenceur_optimise(struct_processus *s_
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Line 203 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 214 sequenceur_optimise(struct_processus *s_
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Line 230 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 233 sequenceur_optimise(struct_processus *s_
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Line 257 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 259 sequenceur_optimise(struct_processus *s_
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Line 291 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 300 sequenceur_optimise(struct_processus *s_
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Line 340 sequenceur_optimise(struct_processus *s_
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printf("+++Fatal : Compilation failed\n"); |
printf("+++Fatal : Compilation failed\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
Line 324 sequenceur_optimise(struct_processus *s_
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Line 372 sequenceur_optimise(struct_processus *s_
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printf("+++System : Not enough memory\n"); |
printf("+++System : Not enough memory\n"); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
return(d_erreur); |
return(d_erreur); |
} |
} |
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for(j = 0; j < nb_variables; j++) |
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{ |
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if (tableau[j].mutex != NULL) |
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{ |
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pthread_mutex_unlock(tableau[j].mutex); |
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} |
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} |
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free(tableau); |
free(tableau); |
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erreur = evaluation(s_etat_processus, programme_principal, 'E'); |
erreur = evaluation(s_etat_processus, programme_principal, 'E'); |