mysh.c 12 KB

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  1. /*
  2. * File: mysh.c
  3. * Author: Arthur Brandao
  4. *
  5. * Created on 31 octobre 2018, 12:43
  6. */
  7. #define _POSIX_C_SOURCE 2
  8. #include <stdio.h>
  9. #include <stdlib.h>
  10. #include <unistd.h>
  11. #include <fcntl.h>
  12. #include <sys/stat.h>
  13. #include <sys/types.h>
  14. #include <wait.h>
  15. #include <signal.h>
  16. #include "error.h"
  17. #include "str.h"
  18. #include "parser.h"
  19. #include "command.h"
  20. #include "execute.h"
  21. #include "mysh.h"
  22. /* --- Extern --- */
  23. extern Error error;
  24. extern boolean exitsh;
  25. extern pid_t active;
  26. int status_cmd = -1;
  27. int result_cmd = -1;
  28. /* --- Global --- */
  29. pid_list pidlist;
  30. boolean fond = false;
  31. int job = 1;
  32. /* --- Fonctions privées --- */
  33. void test_write() {
  34. char* a = "azerty\n";
  35. int tmp = write(1, a, strlen(a));
  36. printf("%d\n", tmp);
  37. }
  38. void test_tmp_file(){
  39. int a;
  40. FILE* f = tmpfile();
  41. printf("F : %d\n", f == NULL);
  42. int fd = fileno(f);
  43. printf("%d : %ld\n", fd, write(fd, "bonjour", 8));
  44. a = lseek(fd, 0L, SEEK_SET);
  45. sleep(2);
  46. char buf[10];
  47. memset(buf, 0 , 10);
  48. a = read(fd, buf, 10);
  49. printf("%d : %s\n", a, buf);
  50. close(fd);
  51. }
  52. void test(){
  53. CommandTab ct;
  54. char str[BUFFER_SIZE];
  55. int a;
  56. //Initialisation structures
  57. error_finit("mysh.log");
  58. ini_pid_list(&pidlist);
  59. //Recup ligne
  60. //printf("%s\n", fgets(str, 500, stdin));&
  61. memset(str, 0, 500);
  62. a = read(STDIN, str, 500);
  63. printf("%s\n", str);
  64. //Separe les commandes
  65. a = parse_line(&ct, str);
  66. if(a == SHELL_ERR){
  67. addserror("Erreur lors du parse de la ligne");
  68. error.exit_err();
  69. }
  70. //Parse les commandes
  71. a = parse_all_command(&ct);
  72. if(a == SHELL_FAIL){
  73. addserror("Erreur lors du parse des commandes");
  74. error.exit_err();
  75. }
  76. //Affiche resultat
  77. for (int i = 0; i < ct.length; i++) {
  78. Command* c = ct.cmd[i];
  79. printf("Commande %d (%s) : \n", i, c->name);
  80. for (int j = 0; j < c->argc; j++) {
  81. printf(" Argument %d : %s\n", j, c->argv[j]);
  82. }
  83. printf("Commande en fond : %d\n\n", ct.bck);
  84. //Si c'est une commande interne on l'execute
  85. if(is_internal_cmd(ct.cmd[i]->name)){
  86. show_current_dir(NULL, "\n");
  87. printf("Result : %d\n", launch_internal_command(ct.cmd[i]));
  88. show_current_dir(NULL, "\n");
  89. }
  90. }
  91. //Nettoyage structures
  92. clean_command(&ct);
  93. clean_pid(&pidlist);
  94. error.exit();
  95. }
  96. /* --- Fonctions utilitaires --- */
  97. void show_current_dir(const char* before, const char* after) {
  98. char buffer[BUFFER_SIZE];
  99. if (getcwd(buffer, sizeof (buffer)) == NULL) {
  100. addperror("Erreur getcwd()");
  101. } else {
  102. if(before == NULL && after == NULL){
  103. printf("%s", buffer);
  104. } else if(before == NULL){
  105. printf("%s%s", buffer, after);
  106. } else if(after == NULL){
  107. printf("%s%s", before, buffer);
  108. } else {
  109. printf("%s%s%s", before, buffer, after);
  110. }
  111. }
  112. fflush(stdout);
  113. }
  114. int get_line(char* buffer){
  115. memset(buffer, 0, BUFFER_SIZE);
  116. if(read(STDIN, buffer, BUFFER_SIZE) == ERR){
  117. addperror("Impossible de lire dans STDIN");
  118. return SHELL_ERR;
  119. }
  120. return SHELL_OK;
  121. }
  122. int get_tmp_file(){
  123. FILE* f = tmpfile();
  124. if(f == NULL){
  125. adderror("Impossible de créer un fichier temporaire");
  126. return SHELL_ERR;
  127. }
  128. return fileno(f);
  129. }
  130. /* --- Main --- */
  131. int main(int argc, char* argv[]) {
  132. //Declaration variables
  133. CommandTab ct;
  134. int result;
  135. char line[BUFFER_SIZE], before[BUFFER_SIZE];
  136. sigset_t sigs_new, sigs_old, sigs_block;
  137. //Initialisation structures
  138. error_finit("mysh.log");
  139. ini_pid_list(&pidlist);
  140. //Preparation affichage
  141. sprintf(before, "\x1b[32m%s:\x1b[36m", getlogin());
  142. //Traitement des signeaux
  143. result = sigemptyset(&sigs_new);
  144. if(result == ERR){
  145. addperror("Impossible de récuperer un ensemble de signaux vide");
  146. error.print("Erreur pendant l'initialisation\n");
  147. clean_pid(&pidlist);
  148. error.exit_err();
  149. }
  150. //On bloque que sigchld
  151. result = sigaddset(&sigs_new, SIGCHLD);
  152. if(result == -1){
  153. addperror("Impossible d'ajouter SIGCHLD à l'ensemble de signaux");
  154. error.print("Erreur pendant l'initialisation\n");
  155. clean_pid(&pidlist);
  156. error.exit_err();
  157. }
  158. result = sigprocmask(SIG_BLOCK, &sigs_new, &sigs_old);
  159. if(result == -1){
  160. addperror("Impossible de bloquer les signaux de l'ensemble");
  161. error.print("Erreur pendant l'initialisation\n");
  162. clean_pid(&pidlist);
  163. error.exit_err();
  164. }
  165. //Gestion interuption
  166. signal(SIGINT, handler);
  167. //Boucle infini de lecture
  168. while(!exitsh){
  169. //On regarde si un fils en fond est mort
  170. if(sigpending(&sigs_block) == ERR){
  171. addperror("Impossible de recuperer les signaux en attentes");
  172. } else if(sigismember(&sigs_block, SIGCHLD)){
  173. job--;
  174. }
  175. //Affichage repertoire
  176. show_current_dir(before, ">\x1b[0m ");
  177. //Lecture ligne
  178. if(get_line(line) == SHELL_ERR){
  179. //error.print("Impossible de lire les commandes\n");
  180. continue;
  181. }
  182. //Parse la ligne et commandes
  183. result = parse_line(&ct, line);
  184. if(result == SHELL_ERR){
  185. error.print("Impossible d'analyser la ligne\n");
  186. addserror("Erreur lors du parse de la ligne");
  187. continue;
  188. }
  189. //Si aucune commande on passe
  190. printf("Nb cmd : %d\n", ct.length);
  191. if(ct.length == 0){
  192. clean_command(&ct);
  193. continue;
  194. }
  195. //Parse les commandes
  196. result = parse_all_command(&ct);
  197. if(result == SHELL_FAIL){
  198. error.print("Impossible d'analyser la commande\n");
  199. addserror("Erreur lors du parse des commandes");
  200. continue;
  201. }
  202. //Execute
  203. result_cmd = run(ct, &status_cmd);
  204. printf("Result : %d\n", result_cmd);
  205. //Vide le resultat du parse de la ligne de commande
  206. clean_command(&ct);
  207. }
  208. //Nettoyage
  209. clean_pid(&pidlist);
  210. error.end();
  211. return EXIT_SUCCESS;
  212. }
  213. int run(CommandTab ct, int* status){
  214. pid_t pid;
  215. int result = 0;
  216. //Si en fond creation d'un fork pour executer les commandes
  217. printf("bck : %d\n", ct.bck);
  218. if(ct.bck){
  219. pid = fork();
  220. if(pid == ERR){
  221. addperror("Erreur lors du fork pour l'execution des commandes");
  222. error.print("Erreur systeme, impossible de continuer\n");
  223. return SHELL_ERR;
  224. }
  225. //Fils
  226. if(pid == 0){
  227. int stat = 0;
  228. ct.bck = 0;
  229. fond = true;
  230. result = run(ct, &stat);
  231. //Message de fin + retour
  232. if(result == SHELL_FAIL){
  233. printf("\n%s (jobs=[%d], pid=%d) terminée avec status=-1\n", ct.line, job, getpid());
  234. exit(EXIT_FAILURE);
  235. }
  236. printf("\n%s (jobs=[%d], pid=%d) terminée avec status=%d\n", ct.line, job, getpid(), stat);
  237. exit(EXIT_SUCCESS);
  238. }
  239. printf("[%d] %d\n", job, pid);
  240. //Ajout du fils dans la liste des pid
  241. add_pid(&pidlist, pid, job++);
  242. //Pour le pere c'est fini
  243. return SHELL_OK;
  244. }
  245. //Sinon execution de chaque commande
  246. Command* c;
  247. int tube[ct.length][2];
  248. int tubepos = 0;
  249. int infd = -1, outfd = -1, errfd = -1;
  250. boolean bpipe = false, skippipe = false, skip = false;
  251. //Parcours les commandes
  252. for(int i = 0; i < ct.length; i++){
  253. c = ct.cmd[i];
  254. //Si on skip
  255. if(skip){
  256. skip = false;
  257. continue;
  258. }
  259. //Si pipe avant
  260. if(skippipe){
  261. //Si fin chaine pipe
  262. if(c->next != SHELL_PIPE){
  263. skippipe = false;
  264. }
  265. //Passe la commande
  266. continue;
  267. }
  268. //Si pipe creation d'un fichier commun
  269. skippipe = c->next == SHELL_PIPE ;
  270. if(c->next == SHELL_PIPE && c->output == STDOUT){
  271. skippipe = false;
  272. bpipe = true;
  273. //Creation tube
  274. if(pipe(tube[tubepos]) == ERR){
  275. addperror("Impossible de créer un tube");
  276. return SHELL_FAIL;
  277. }
  278. //Redirection
  279. c->output = tube[tubepos][TUBE_ECRITURE];
  280. if(ct.cmd[i + 1]->input == STDIN){
  281. ct.cmd[i + 1]->input = tube[tubepos][TUBE_LECTURE];
  282. }
  283. }
  284. //Effectue les redirections IO
  285. if(c->input != STDIN){
  286. infd = redirect_fd2(STDIN, c->input);
  287. if(infd == ERR){
  288. return SHELL_FAIL;
  289. }
  290. }
  291. if(c->output != STDOUT){
  292. outfd = redirect_fd2(STDOUT, c->output);
  293. if(outfd == ERR){
  294. return SHELL_FAIL;
  295. }
  296. }
  297. if(c->error != STDERR){
  298. errfd = redirect_fd2(STDERR, c->error);
  299. if(errfd == ERR){
  300. return SHELL_FAIL;
  301. }
  302. }
  303. //Execute la commande
  304. if(is_internal_cmd(c->name)){
  305. result = launch_internal_command(c);
  306. } else if(is_executable_file(c->name)){
  307. result = exec_file(c->name, c->argv);
  308. } else {
  309. result = exec_shell(c->name, c->argv);
  310. }
  311. //Si on a une variable pour stocker le status de retoure
  312. if(status != NULL){
  313. *status = result;
  314. }
  315. //Reset IO
  316. if(c->input != STDIN){
  317. infd = redirect_fd(STDIN, infd);
  318. if(infd == ERR){
  319. return SHELL_FAIL;
  320. }
  321. }
  322. if(c->output != STDOUT){
  323. outfd = redirect_fd(STDOUT, outfd);
  324. if(outfd == ERR){
  325. return SHELL_FAIL;
  326. }
  327. }
  328. if(c->error != STDERR){
  329. errfd = redirect_fd(STDERR, errfd);
  330. if(errfd == ERR){
  331. return SHELL_FAIL;
  332. }
  333. }
  334. //Fermeture tube
  335. if(bpipe){
  336. bpipe = false;
  337. if(close(outfd) == ERR){
  338. addperror("Impossible de fermer tube ecriture");
  339. return SHELL_FAIL;
  340. }
  341. if(close(c->output) == ERR){
  342. addperror("Impossible de fermer tube ecriture");
  343. return SHELL_FAIL;
  344. }
  345. c->output = STDOUT;
  346. }
  347. //Agit en fonction de la jointure avec la prochaine commande
  348. if(c->next == SHELL_IF){
  349. if(result != EXIT_SUCCESS){
  350. skip = true;
  351. }
  352. } else if(c->next == SHELL_ELSE){
  353. if(result == EXIT_SUCCESS){
  354. skip = true;
  355. }
  356. }
  357. }
  358. if(result != EXIT_SUCCESS){
  359. return SHELL_FAIL;
  360. }
  361. return SHELL_OK;
  362. }
  363. void handler(int sig){
  364. char reponse = ' ';
  365. pid_node* pn;
  366. //Repositionne le gestionnaire (Ne marche plus apres 1 utilisation)
  367. signal(SIGINT, handler);
  368. //Si on est en fond on est non concerné
  369. if(fond){
  370. return;
  371. }
  372. //Si il y a un process actif on le coupe
  373. printf("Active : %d\n", active);
  374. if(active != -1){
  375. if(kill(active, SIGINT) == ERR){
  376. addperror("Impossible de tuer le processus en cours");
  377. }
  378. active = -1;
  379. return;
  380. }
  381. //Sinon demande comfirmation pour finir le programme
  382. while(reponse != 'o' && reponse != 'O' && reponse != 'n' && reponse != 'N'){
  383. printf("Voulez vous vraiment quitter ? [O/N] ");
  384. if(scanf("%c", &reponse) == 0){
  385. reponse = ' ';
  386. }
  387. }
  388. //Si oui
  389. if(reponse == 'n' || reponse == 'N'){
  390. return;
  391. }
  392. //Coupe tous les processus en fond
  393. pn = pidlist.first;
  394. while(pn != NULL){
  395. if(kill(pn->pid, SIGINT) == ERR){
  396. addperror("Impossible de tuer le processus en fond");
  397. }
  398. pn = pn->next;
  399. }
  400. //Termine l'execution
  401. clean_pid(&pidlist);
  402. error.exit();
  403. }