1: /*
2: ================================================================================
3: RPL/2 (R) version 4.1.3
4: Copyright (C) 1989-2011 Dr. BERTRAND Joël
5:
6: This file is part of RPL/2.
7:
8: RPL/2 is free software; you can redistribute it and/or modify it
9: under the terms of the CeCILL V2 License as published by the french
10: CEA, CNRS and INRIA.
11:
12: RPL/2 is distributed in the hope that it will be useful, but WITHOUT
13: ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14: FITNESS FOR A PARTICULAR PURPOSE. See the CeCILL V2 License
15: for more details.
16:
17: You should have received a copy of the CeCILL License
18: along with RPL/2. If not, write to info@cecill.info.
19: ================================================================================
20: */
21:
22:
23: #include "rpl-conv.h"
24: #include "tex-conv.h"
25:
26: #include <stdarg.h>
27:
28: #undef fprintf
29: #undef printf
30:
31:
32: /*
33: ================================================================================
34: Fonction de translitération
35: ================================================================================
36: Entrées :
37: --------------------------------------------------------------------------------
38: Sorties :
39: --------------------------------------------------------------------------------
40: Effets de bord : néant
41: ================================================================================
42: */
43:
44: unsigned char *
45: transliteration(struct_processus *s_etat_processus,
46: unsigned char *chaine_entree,
47: unsigned char *codage_entree,
48: unsigned char *codage_sortie)
49: {
50: unsigned char *codage_sortie_transliteral;
51: unsigned char *tampon;
52:
53: if ((codage_sortie_transliteral = malloc((strlen(codage_sortie)
54: + strlen("//TRANSLIT") + 1) * sizeof(unsigned char))) == NULL)
55: {
56: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
57: return(NULL);
58: }
59:
60: sprintf(codage_sortie_transliteral, "%s//TRANSLIT", codage_sortie);
61:
62: tampon = reencodage(s_etat_processus, chaine_entree,
63: codage_entree, codage_sortie_transliteral);
64: free(codage_sortie_transliteral);
65:
66: return(tampon);
67: }
68:
69:
70: unsigned char *
71: reencodage(struct_processus *s_etat_processus,
72: unsigned char *chaine_entree,
73: unsigned char *codage_entree,
74: unsigned char *codage_sortie)
75: {
76: # define d_LONGUEUR 1024
77:
78: iconv_t transcodage;
79:
80: size_t ios;
81: size_t longueur_entree;
82: size_t longueur_sortie;
83:
84: unsigned char *buffer_entree;
85: unsigned char *buffer_sortie;
86: unsigned char *chaine_sortie;
87: unsigned char *pointeur;
88: unsigned char *tampon;
89:
90: if ((transcodage = iconv_open(codage_sortie, codage_entree)) ==
91: (iconv_t) -1)
92: {
93: (*s_etat_processus).erreur_execution = d_ex_erreur_transcodage;
94: return(NULL);
95: }
96:
97: buffer_entree = chaine_entree;
98: longueur_entree = strlen(chaine_entree);
99:
100: if ((chaine_sortie = malloc(sizeof(unsigned char))) == NULL)
101: {
102: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
103: return(NULL);
104: }
105:
106: chaine_sortie[0] = d_code_fin_chaine;
107:
108: if ((buffer_sortie = malloc((d_LONGUEUR + 1) * sizeof(unsigned char)))
109: == NULL)
110: {
111: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
112: return(NULL);
113: }
114:
115: do
116: {
117: longueur_sortie = d_LONGUEUR;
118: pointeur = buffer_sortie;
119:
120: if ((ios = iconv(transcodage, (char **) &buffer_entree,
121: &longueur_entree, (char **) &pointeur, &longueur_sortie))
122: == (size_t) -1)
123: {
124: // On autorise les erreurs EINVAL et EILSEQ
125: if (errno == EILSEQ)
126: {
127: free(buffer_sortie);
128: free(chaine_sortie);
129:
130: (*s_etat_processus).erreur_execution = d_ex_erreur_transcodage;
131: return(NULL);
132: }
133: }
134:
135: tampon = chaine_sortie;
136: (*pointeur) = d_code_fin_chaine;
137:
138: if ((chaine_sortie = malloc((strlen(tampon) + strlen(buffer_sortie) + 1)
139: * sizeof(unsigned char))) == NULL)
140: {
141: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
142: return(NULL);
143: }
144:
145: sprintf(chaine_sortie, "%s%s", tampon, buffer_sortie);
146: free(tampon);
147: } while((*buffer_entree) != d_code_fin_chaine);
148:
149: free(buffer_sortie);
150: iconv_close(transcodage);
151:
152: return(chaine_sortie);
153: }
154:
155:
156: /*
157: ================================================================================
158: Fonctions spécifiques
159: ================================================================================
160: Entrées :
161: --------------------------------------------------------------------------------
162: Sorties :
163: --------------------------------------------------------------------------------
164: Effets de bord : néant
165: ================================================================================
166: */
167:
168: void
169: localisation_courante(struct_processus *s_etat_processus)
170: {
171: char **arguments;
172:
173: int ios;
174: int pipes_entree[2];
175: int pipes_erreur[2];
176: int pipes_sortie[2];
177: int status;
178:
179: long i;
180: long nombre_arguments;
181:
182: pid_t pid;
183:
184: struct sigaction action_passee;
185:
186: unsigned char *tampon;
187:
188: unsigned long longueur_lecture;
189: unsigned long nombre_iterations;
190: unsigned long pointeur;
191:
192: if ((arguments = malloc(3 * sizeof(char **))) == NULL)
193: {
194: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
195: return;
196: }
197:
198: if ((arguments[0] = malloc((strlen("locale") + 1) * sizeof(char))) == NULL)
199: {
200: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
201: return;
202: }
203:
204: if ((arguments[1] = malloc((strlen("charmap") + 1) * sizeof(char))) == NULL)
205: {
206: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
207: return;
208: }
209:
210: strcpy(arguments[0], "locale");
211: strcpy(arguments[1], "charmap");
212: arguments[2] = NULL;
213:
214: nombre_arguments = 2;
215:
216: if (pipe(pipes_entree) != 0)
217: {
218: (*s_etat_processus).erreur_systeme = d_es_processus;
219: return;
220: }
221:
222: if (pipe(pipes_sortie) != 0)
223: {
224: (*s_etat_processus).erreur_systeme = d_es_processus;
225: return;
226: }
227:
228: if (pipe(pipes_erreur) != 0)
229: {
230: (*s_etat_processus).erreur_systeme = d_es_processus;
231: return;
232: }
233:
234: verrouillage_threads_concurrents(s_etat_processus);
235: pid = fork();
236: deverrouillage_threads_concurrents(s_etat_processus);
237:
238: if (pid < 0)
239: {
240: if (close(pipes_entree[0]) != 0)
241: {
242: (*s_etat_processus).erreur_systeme = d_es_processus;
243: return;
244: }
245:
246: if (close(pipes_entree[1]) != 0)
247: {
248: (*s_etat_processus).erreur_systeme = d_es_processus;
249: return;
250: }
251:
252: if (close(pipes_sortie[0]) != 0)
253: {
254: (*s_etat_processus).erreur_systeme = d_es_processus;
255: return;
256: }
257:
258: if (close(pipes_sortie[1]) != 0)
259: {
260: (*s_etat_processus).erreur_systeme = d_es_processus;
261: return;
262: }
263:
264: if (close(pipes_erreur[0]) != 0)
265: {
266: (*s_etat_processus).erreur_systeme = d_es_processus;
267: return;
268: }
269:
270: if (close(pipes_erreur[1]) != 0)
271: {
272: (*s_etat_processus).erreur_systeme = d_es_processus;
273: return;
274: }
275:
276: (*s_etat_processus).erreur_systeme = d_es_processus;
277: return;
278: }
279: else if (pid == 0)
280: {
281: if (close(pipes_entree[1]) != 0)
282: {
283: (*s_etat_processus).erreur_systeme = d_es_processus;
284: return;
285: }
286:
287: if (close(pipes_sortie[0]) != 0)
288: {
289: (*s_etat_processus).erreur_systeme = d_es_processus;
290: return;
291: }
292:
293: if (close(pipes_erreur[0]) != 0)
294: {
295: (*s_etat_processus).erreur_systeme = d_es_processus;
296: return;
297: }
298:
299: if (pipes_entree[0] != STDIN_FILENO)
300: {
301: if (dup2(pipes_entree[0], STDIN_FILENO) == -1)
302: {
303: (*s_etat_processus).erreur_systeme = d_es_processus;
304: return;
305: }
306: }
307:
308: if (pipes_sortie[1] != STDOUT_FILENO)
309: {
310: if (dup2(pipes_sortie[1], STDOUT_FILENO) == -1)
311: {
312: (*s_etat_processus).erreur_systeme = d_es_processus;
313: return;
314: }
315: }
316:
317: if (pipes_sortie[1] != STDERR_FILENO)
318: {
319: if (dup2(pipes_sortie[1], STDERR_FILENO) == -1)
320: {
321: (*s_etat_processus).erreur_systeme = d_es_processus;
322: return;
323: }
324: }
325:
326: if (nombre_arguments != 0)
327: {
328: execvp(arguments[0], arguments);
329: }
330: else
331: {
332: exit(EXIT_SUCCESS);
333: }
334:
335: /*
336: * L'appel système execvp() a généré une erreur et n'a pu exécuter
337: * argument[0] (fichier non exécutable ou inexistant).
338: */
339:
340: close(pipes_entree[0]);
341: close(pipes_sortie[1]);
342:
343: for(i = 0; i < nombre_arguments; i++)
344: {
345: free(arguments[i]);
346: }
347:
348: free(arguments);
349: (*s_etat_processus).erreur_systeme = d_es_processus;
350:
351: /*
352: * Envoi d'une erreur dans le pipe idoine. On ne regarde pas
353: * le nombre d'octets écrits car l'erreur ne pourra de toute
354: * façon pas être traitée.
355: */
356:
357: write_atomic(s_etat_processus, pipes_erreur[1], " ", 1);
358: close(pipes_erreur[1]);
359:
360: exit(EXIT_SUCCESS);
361: }
362: else
363: {
364: if (close(pipes_entree[0]) != 0)
365: {
366: (*s_etat_processus).erreur_systeme = d_es_processus;
367: return;
368: }
369:
370: if (close(pipes_sortie[1]) != 0)
371: {
372: (*s_etat_processus).erreur_systeme = d_es_processus;
373: return;
374: }
375:
376: if (close(pipes_erreur[1]) != 0)
377: {
378: (*s_etat_processus).erreur_systeme = d_es_processus;
379: return;
380: }
381:
382: if (close(pipes_entree[1]) != 0)
383: {
384: (*s_etat_processus).erreur_systeme = d_es_processus;
385: return;
386: }
387:
388: do
389: {
390: if (kill(pid, 0) != 0)
391: {
392: break;
393: }
394:
395: /*
396: * Récupération de la valeur de retour du processus détaché
397: */
398:
399: if (pthread_mutex_unlock(&((*s_etat_processus).mutex_fork)) != 0)
400: {
401: (*s_etat_processus).erreur_systeme = d_es_processus;
402: return;
403: }
404:
405: if (waitpid(pid, &status, 0) == -1)
406: {
407: if (pthread_mutex_lock(&((*s_etat_processus).mutex_fork)) != 0)
408: {
409: (*s_etat_processus).erreur_systeme = d_es_processus;
410: return;
411: }
412:
413: (*s_etat_processus).erreur_systeme = d_es_processus;
414: return;
415: }
416:
417: if (pthread_mutex_lock(&((*s_etat_processus).mutex_fork)) != 0)
418: {
419: (*s_etat_processus).erreur_systeme = d_es_processus;
420: return;
421: }
422: } while((!WIFEXITED(status)) && (!WIFSIGNALED(status)));
423:
424: longueur_lecture = 256;
425: pointeur = 0;
426: nombre_iterations = 1;
427:
428: if ((tampon = malloc((longueur_lecture + 1) *
429: sizeof(unsigned char))) == NULL)
430: {
431: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
432: return;
433: }
434:
435: tampon[0] = d_code_fin_chaine;
436:
437: if (pthread_mutex_unlock(&((*s_etat_processus).mutex_fork)) != 0)
438: {
439: (*s_etat_processus).erreur_systeme = d_es_processus;
440: return;
441: }
442:
443: while((ios = read_atomic(s_etat_processus,
444: pipes_sortie[0], &(tampon[pointeur]),
445: longueur_lecture)) > 0)
446: {
447: if (pthread_mutex_lock(&((*s_etat_processus).mutex_fork)) != 0)
448: {
449: (*s_etat_processus).erreur_systeme = d_es_processus;
450: return;
451: }
452:
453: tampon[pointeur + ios] = d_code_fin_chaine;
454: pointeur += longueur_lecture;
455: nombre_iterations++;
456:
457: if ((tampon = realloc(tampon,
458: ((nombre_iterations * longueur_lecture) + 1) *
459: sizeof(unsigned char))) == NULL)
460: {
461: (*s_etat_processus).erreur_systeme =
462: d_es_allocation_memoire;
463: return;
464: }
465:
466: if (pthread_mutex_unlock(&((*s_etat_processus).mutex_fork)) != 0)
467: {
468: (*s_etat_processus).erreur_systeme = d_es_processus;
469: return;
470: }
471: }
472:
473: if (pthread_mutex_lock(&((*s_etat_processus).mutex_fork)) != 0)
474: {
475: (*s_etat_processus).erreur_systeme = d_es_processus;
476: return;
477: }
478:
479: if (strlen(tampon) == 0)
480: {
481: (*s_etat_processus).erreur_systeme = d_es_processus;
482: return;
483: }
484:
485: tampon[strlen(tampon) - 1] = d_code_fin_chaine;
486:
487: if (ios == -1)
488: {
489: (*s_etat_processus).erreur_systeme = d_es_processus;
490: return;
491: }
492:
493: if (close(pipes_sortie[0]) != 0)
494: {
495: (*s_etat_processus).erreur_systeme = d_es_processus;
496: return;
497: }
498:
499: if (strlen(tampon) > 0)
500: {
501: (*s_etat_processus).localisation = tampon;
502: }
503: else
504: {
505: free(tampon);
506:
507: if (((*s_etat_processus).localisation = malloc((strlen(d_locale)
508: + 1) * sizeof(unsigned char))) == NULL)
509: {
510: (*s_etat_processus).erreur_systeme = d_es_processus;
511: return;
512: }
513:
514: strcpy((*s_etat_processus).localisation, d_locale);
515: }
516:
517: if (sigaction(SIGINT, &action_passee, NULL) != 0)
518: {
519: for(i = 0; i < nombre_arguments; i++)
520: {
521: free(arguments[i]);
522: }
523:
524: free(arguments);
525: (*s_etat_processus).erreur_systeme = d_es_signal;
526: return;
527: }
528:
529: for(i = 0; i < nombre_arguments; i++)
530: {
531: free(arguments[i]);
532: }
533:
534: free(arguments);
535:
536: if (pthread_mutex_unlock(&((*s_etat_processus).mutex_fork)) != 0)
537: {
538: (*s_etat_processus).erreur_systeme = d_es_processus;
539: return;
540: }
541:
542: if (read_atomic(s_etat_processus, pipes_erreur[0], tampon, 1) > 0)
543: {
544: // Le processus fils renvoie une erreur.
545:
546: free(tampon);
547:
548: if (((*s_etat_processus).localisation = malloc((strlen(d_locale)
549: + 1) * sizeof(unsigned char))) == NULL)
550: {
551: (*s_etat_processus).erreur_systeme = d_es_processus;
552: return;
553: }
554:
555: strcpy((*s_etat_processus).localisation, d_locale);
556: }
557:
558: if (pthread_mutex_lock(&((*s_etat_processus).mutex_fork)) != 0)
559: {
560: (*s_etat_processus).erreur_systeme = d_es_processus;
561: return;
562: }
563:
564: if (close(pipes_erreur[0]) != 0)
565: {
566: (*s_etat_processus).erreur_systeme = d_es_processus;
567: return;
568: }
569: }
570:
571: return;
572: }
573:
574:
575: int
576: transliterated_fprintf(struct_processus *s_etat_processus, file *flux,
577: const char *format, ...)
578: {
579: int ios;
580:
581: unsigned char *tampon;
582: unsigned char *tampon2;
583:
584: va_list arguments;
585:
586: va_start(arguments, format);
587:
588: # ifdef OS2
589: unsigned char *ptr_e;;
590: unsigned char *ptr_l;;
591: unsigned char *tampon3;
592:
593: unsigned long i;
594: # endif
595:
596: if (valsprintf(&tampon, format, arguments) < 0)
597: {
598: va_end(arguments);
599:
600: if (s_etat_processus != NULL)
601: {
602: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
603: }
604:
605: return(-1);
606: }
607:
608: va_end(arguments);
609:
610: if (s_etat_processus != NULL)
611: {
612: if ((tampon2 = transliteration(s_etat_processus, tampon,
613: d_locale, (*s_etat_processus).localisation)) == NULL)
614: {
615: free(tampon);
616: return(-1);
617: }
618:
619: free(tampon);
620: }
621: else
622: {
623: tampon2 = tampon;
624: }
625:
626: # ifdef OS2
627: if ((flux == stdin) || (flux == stdout))
628: {
629: i = 0;
630: ptr_l = tampon2;
631:
632: while((*ptr_l) != d_code_fin_chaine)
633: {
634: if ((*ptr_l) == '\n')
635: {
636: i++;
637: }
638:
639: ptr_l++;
640: }
641:
642: if ((tampon3 = malloc((strlen(tampon2) + i + 1) *
643: sizeof(unsigned char))) == NULL)
644: {
645: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
646: return(NULL);
647: }
648:
649: ptr_e = tampon3;
650: ptr_l = tampon2;
651:
652: while((*ptr_l) != d_code_fin_chaine)
653: {
654: (*ptr_e) = (*ptr_l);
655:
656: if ((*ptr_l) == '\n')
657: {
658: (*(++ptr_e)) = '\r';
659: ptr_e++;
660: ptr_l++;
661: }
662: else
663: {
664: ptr_e++;
665: ptr_l++;
666: }
667: }
668:
669: (*ptr_e) = d_code_fin_chaine;
670:
671: free(tampon2);
672: tampon2 = tampon3;
673: }
674: # endif
675:
676: # ifdef SunOS
677: while((ios = fprintf(flux, "%s", tampon2)) < 0)
678: {
679: if ((errno != EINTR) && (errno != 0))
680: {
681: break;
682: }
683: }
684: # else
685: ios = fprintf(flux, "%s", tampon2);
686: # endif
687:
688: free(tampon2);
689:
690: return(ios);
691: }
692:
693:
694: int
695: tex_fprintf(struct_processus *s_etat_processus,
696: file *flux, const char *format, ...)
697: {
698: int ios;
699:
700: unsigned char *tampon;
701: unsigned char *tampon2;
702:
703: va_list arguments;
704:
705: va_start(arguments, format);
706:
707: if (valsprintf(&tampon, format, arguments) < 0)
708: {
709: va_end(arguments);
710:
711: if (s_etat_processus != NULL)
712: {
713: (*s_etat_processus).erreur_systeme = d_es_allocation_memoire;
714: }
715:
716: return(-1);
717: }
718:
719: va_end(arguments);
720:
721: if ((tampon2 = transliteration(s_etat_processus, tampon,
722: d_locale, ds_tex_encodage_3)) == NULL)
723: {
724: free(tampon);
725: return(-1);
726: }
727:
728: free(tampon);
729:
730: # ifdef SunOS
731: while((ios = fprintf(flux, "%s", tampon2)) < 0)
732: {
733: if ((errno != EINTR) && (errno != 0))
734: {
735: break;
736: }
737: }
738: # else
739: ios = fprintf(flux, "%s", tampon2);
740: # endif
741:
742: free(tampon2);
743:
744: return(ios);
745: }
746:
747: #undef readline
748:
749: unsigned char *
750: readline_wrapper(unsigned char *invite)
751: {
752: unsigned char *chaine;
753:
754: chaine = readline(invite);
755: printf("\r");
756:
757: return(chaine);
758: }
759:
760:
761: #define fprintf NULL
762: #define printf NULL
763:
764: // vim: ts=4
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