unix.c 11 KB

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  1. /*
  2. * Unix support routines for PhysicsFS.
  3. *
  4. * Please see the file LICENSE.txt in the source's root directory.
  5. *
  6. * This file written by Ryan C. Gordon.
  7. */
  8. #define __PHYSICSFS_INTERNAL__
  9. #include "physfs_platforms.h"
  10. #ifdef PHYSFS_PLATFORM_UNIX
  11. #include <stdio.h>
  12. #include <stdlib.h>
  13. #include <string.h>
  14. #include <ctype.h>
  15. #include <unistd.h>
  16. #include <sys/types.h>
  17. #include <pwd.h>
  18. #include <sys/stat.h>
  19. #include <sys/param.h>
  20. #include <dirent.h>
  21. #include <time.h>
  22. #include <errno.h>
  23. #if (!defined PHYSFS_NO_THREAD_SUPPORT)
  24. #include <pthread.h>
  25. #endif
  26. #ifdef PHYSFS_HAVE_SYS_UCRED_H
  27. # ifdef PHYSFS_HAVE_MNTENT_H
  28. # undef PHYSFS_HAVE_MNTENT_H /* don't do both... */
  29. # endif
  30. # include <sys/ucred.h>
  31. # include <sys/mount.h>
  32. #endif
  33. #ifdef PHYSFS_HAVE_MNTENT_H
  34. #include <mntent.h>
  35. #endif
  36. #include "physfs_internal.h"
  37. #ifndef MAXPATHLEN
  38. #define MAXPATHLEN 1024
  39. #endif
  40. int __PHYSFS_platformInit(void)
  41. {
  42. return(1); /* always succeed. */
  43. } /* __PHYSFS_platformInit */
  44. int __PHYSFS_platformDeinit(void)
  45. {
  46. return(1); /* always succeed. */
  47. } /* __PHYSFS_platformDeinit */
  48. #ifdef PHYSFS_NO_CDROM_SUPPORT
  49. /* Stub version for platforms without CD-ROM support. */
  50. void __PHYSFS_platformDetectAvailableCDs(PHYSFS_StringCallback cb, void *data)
  51. {
  52. } /* __PHYSFS_platformDetectAvailableCDs */
  53. #elif (defined PHYSFS_HAVE_SYS_UCRED_H)
  54. void __PHYSFS_platformDetectAvailableCDs(PHYSFS_StringCallback cb, void *data)
  55. {
  56. int i;
  57. struct statfs *mntbufp = NULL;
  58. int mounts = getmntinfo(&mntbufp, MNT_WAIT);
  59. for (i = 0; i < mounts; i++)
  60. {
  61. int add_it = 0;
  62. if (strcmp(mntbufp[i].f_fstypename, "iso9660") == 0)
  63. add_it = 1;
  64. else if (strcmp( mntbufp[i].f_fstypename, "cd9660") == 0)
  65. add_it = 1;
  66. /* add other mount types here */
  67. if (add_it)
  68. cb(data, mntbufp[i].f_mntonname);
  69. } /* for */
  70. } /* __PHYSFS_platformDetectAvailableCDs */
  71. #elif (defined PHYSFS_HAVE_MNTENT_H)
  72. void __PHYSFS_platformDetectAvailableCDs(PHYSFS_StringCallback cb, void *data)
  73. {
  74. FILE *mounts = NULL;
  75. struct mntent *ent = NULL;
  76. mounts = setmntent("/etc/mtab", "r");
  77. BAIL_IF_MACRO(mounts == NULL, ERR_IO_ERROR, /*return void*/);
  78. while ( (ent = getmntent(mounts)) != NULL )
  79. {
  80. int add_it = 0;
  81. if (strcmp(ent->mnt_type, "iso9660") == 0)
  82. add_it = 1;
  83. else if (strcmp(ent->mnt_type, "udf") == 0)
  84. add_it = 1;
  85. /* !!! FIXME: these might pick up floppy drives, right? */
  86. else if (strcmp(ent->mnt_type, "auto") == 0)
  87. add_it = 1;
  88. else if (strcmp(ent->mnt_type, "supermount") == 0)
  89. add_it = 1;
  90. /* add other mount types here */
  91. if (add_it)
  92. cb(data, ent->mnt_dir);
  93. } /* while */
  94. endmntent(mounts);
  95. } /* __PHYSFS_platformDetectAvailableCDs */
  96. #endif
  97. /* this is in posix.c ... */
  98. extern char *__PHYSFS_platformCopyEnvironmentVariable(const char *varname);
  99. /*
  100. * See where program (bin) resides in the $PATH specified by (envr).
  101. * returns a copy of the first element in envr that contains it, or NULL
  102. * if it doesn't exist or there were other problems. PHYSFS_SetError() is
  103. * called if we have a problem.
  104. *
  105. * (envr) will be scribbled over, and you are expected to allocator.Free() the
  106. * return value when you're done with it.
  107. */
  108. static char *findBinaryInPath(const char *bin, char *envr)
  109. {
  110. size_t alloc_size = 0;
  111. char *exe = NULL;
  112. char *start = envr;
  113. char *ptr;
  114. BAIL_IF_MACRO(bin == NULL, ERR_INVALID_ARGUMENT, NULL);
  115. BAIL_IF_MACRO(envr == NULL, ERR_INVALID_ARGUMENT, NULL);
  116. do
  117. {
  118. size_t size;
  119. ptr = strchr(start, ':'); /* find next $PATH separator. */
  120. if (ptr)
  121. *ptr = '\0';
  122. size = strlen(start) + strlen(bin) + 2;
  123. if (size > alloc_size)
  124. {
  125. char *x = (char *) allocator.Realloc(exe, size);
  126. if (x == NULL)
  127. {
  128. if (exe != NULL)
  129. allocator.Free(exe);
  130. BAIL_MACRO(ERR_OUT_OF_MEMORY, NULL);
  131. } /* if */
  132. alloc_size = size;
  133. exe = x;
  134. } /* if */
  135. /* build full binary path... */
  136. strcpy(exe, start);
  137. if ((exe[0] == '\0') || (exe[strlen(exe) - 1] != '/'))
  138. strcat(exe, "/");
  139. strcat(exe, bin);
  140. if (access(exe, X_OK) == 0) /* Exists as executable? We're done. */
  141. {
  142. strcpy(exe, start); /* i'm lazy. piss off. */
  143. return(exe);
  144. } /* if */
  145. start = ptr + 1; /* start points to beginning of next element. */
  146. } while (ptr != NULL);
  147. if (exe != NULL)
  148. allocator.Free(exe);
  149. return(NULL); /* doesn't exist in path. */
  150. } /* findBinaryInPath */
  151. static char *readSymLink(const char *path)
  152. {
  153. ssize_t len = 64;
  154. ssize_t rc = -1;
  155. char *retval = NULL;
  156. while (1)
  157. {
  158. char *ptr = (char *) allocator.Realloc(retval, (size_t) len);
  159. if (ptr == NULL)
  160. break; /* out of memory. */
  161. retval = ptr;
  162. rc = readlink(path, retval, len);
  163. if (rc == -1)
  164. break; /* not a symlink, i/o error, etc. */
  165. else if (rc < len)
  166. {
  167. retval[rc] = '\0'; /* readlink doesn't null-terminate. */
  168. return retval; /* we're good to go. */
  169. } /* else if */
  170. len *= 2; /* grow buffer, try again. */
  171. } /* while */
  172. if (retval != NULL)
  173. allocator.Free(retval);
  174. return NULL;
  175. } /* readSymLink */
  176. char *__PHYSFS_platformCalcBaseDir(const char *argv0)
  177. {
  178. char *retval = NULL;
  179. char *envr = NULL;
  180. /* fast path: default behaviour can handle this. */
  181. if ( (argv0 != NULL) && (strchr(argv0, '/') != NULL) )
  182. return(NULL); /* higher level will parse out real path from argv0. */
  183. /*
  184. * Try to avoid using argv0 unless forced to. If there's a Linux-like
  185. * /proc filesystem, you can get the full path to the current process from
  186. * the /proc/self/exe symlink.
  187. */
  188. retval = readSymLink("/proc/self/exe");
  189. if (retval == NULL)
  190. {
  191. /* older kernels don't have /proc/self ... try PID version... */
  192. const unsigned long long pid = (unsigned long long) getpid();
  193. char path[64];
  194. const int rc = (int) snprintf(path,sizeof(path),"/proc/%llu/exe",pid);
  195. if ( (rc > 0) && (rc < sizeof(path)) )
  196. retval = readSymLink(path);
  197. } /* if */
  198. if (retval != NULL) /* chop off filename. */
  199. {
  200. char *ptr = strrchr(retval, '/');
  201. if (ptr != NULL)
  202. *ptr = '\0';
  203. } /* if */
  204. if ((retval == NULL) && (argv0 != NULL))
  205. {
  206. /* If there's no dirsep on argv0, then look through $PATH for it. */
  207. envr = __PHYSFS_platformCopyEnvironmentVariable("PATH");
  208. BAIL_IF_MACRO(!envr, NULL, NULL);
  209. retval = findBinaryInPath(argv0, envr);
  210. allocator.Free(envr);
  211. } /* if */
  212. if (retval != NULL)
  213. {
  214. /* try to shrink buffer... */
  215. char *ptr = (char *) allocator.Realloc(retval, strlen(retval) + 1);
  216. if (ptr != NULL)
  217. retval = ptr; /* oh well if it failed. */
  218. } /* if */
  219. return(retval);
  220. } /* __PHYSFS_platformCalcBaseDir */
  221. char *__PHYSFS_platformRealPath(const char *path)
  222. {
  223. char resolved_path[MAXPATHLEN];
  224. char *retval = NULL;
  225. errno = 0;
  226. BAIL_IF_MACRO(!realpath(path, resolved_path), strerror(errno), NULL);
  227. retval = (char *) allocator.Malloc(strlen(resolved_path) + 1);
  228. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  229. strcpy(retval, resolved_path);
  230. return(retval);
  231. } /* __PHYSFS_platformRealPath */
  232. char *__PHYSFS_platformCurrentDir(void)
  233. {
  234. /*
  235. * This can't just do platformRealPath("."), since that would eventually
  236. * just end up calling back into here.
  237. */
  238. int allocSize = 0;
  239. char *retval = NULL;
  240. char *ptr;
  241. do
  242. {
  243. allocSize += 100;
  244. ptr = (char *) allocator.Realloc(retval, allocSize);
  245. if (ptr == NULL)
  246. {
  247. if (retval != NULL)
  248. allocator.Free(retval);
  249. BAIL_MACRO(ERR_OUT_OF_MEMORY, NULL);
  250. } /* if */
  251. retval = ptr;
  252. ptr = getcwd(retval, allocSize);
  253. } while (ptr == NULL && errno == ERANGE);
  254. if (ptr == NULL && errno)
  255. {
  256. /*
  257. * getcwd() failed for some reason, for example current
  258. * directory not existing.
  259. */
  260. if (retval != NULL)
  261. allocator.Free(retval);
  262. BAIL_MACRO(ERR_NO_SUCH_FILE, NULL);
  263. } /* if */
  264. return(retval);
  265. } /* __PHYSFS_platformCurrentDir */
  266. int __PHYSFS_platformSetDefaultAllocator(PHYSFS_Allocator *a)
  267. {
  268. return(0); /* just use malloc() and friends. */
  269. } /* __PHYSFS_platformSetDefaultAllocator */
  270. #if (defined PHYSFS_NO_THREAD_SUPPORT)
  271. void *__PHYSFS_platformGetThreadID(void) { return((void *) 0x0001); }
  272. void *__PHYSFS_platformCreateMutex(void) { return((void *) 0x0001); }
  273. void __PHYSFS_platformDestroyMutex(void *mutex) {}
  274. int __PHYSFS_platformGrabMutex(void *mutex) { return(1); }
  275. void __PHYSFS_platformReleaseMutex(void *mutex) {}
  276. #else
  277. typedef struct
  278. {
  279. pthread_mutex_t mutex;
  280. pthread_t owner;
  281. PHYSFS_uint32 count;
  282. } PthreadMutex;
  283. void *__PHYSFS_platformGetThreadID(void)
  284. {
  285. return( (void *) ((size_t) pthread_self()) );
  286. } /* __PHYSFS_platformGetThreadID */
  287. void *__PHYSFS_platformCreateMutex(void)
  288. {
  289. int rc;
  290. PthreadMutex *m = (PthreadMutex *) allocator.Malloc(sizeof (PthreadMutex));
  291. BAIL_IF_MACRO(m == NULL, ERR_OUT_OF_MEMORY, NULL);
  292. rc = pthread_mutex_init(&m->mutex, NULL);
  293. if (rc != 0)
  294. {
  295. allocator.Free(m);
  296. BAIL_MACRO(strerror(rc), NULL);
  297. } /* if */
  298. m->count = 0;
  299. m->owner = (pthread_t) 0xDEADBEEF;
  300. return((void *) m);
  301. } /* __PHYSFS_platformCreateMutex */
  302. void __PHYSFS_platformDestroyMutex(void *mutex)
  303. {
  304. PthreadMutex *m = (PthreadMutex *) mutex;
  305. /* Destroying a locked mutex is a bug, but we'll try to be helpful. */
  306. if ((m->owner == pthread_self()) && (m->count > 0))
  307. pthread_mutex_unlock(&m->mutex);
  308. pthread_mutex_destroy(&m->mutex);
  309. allocator.Free(m);
  310. } /* __PHYSFS_platformDestroyMutex */
  311. int __PHYSFS_platformGrabMutex(void *mutex)
  312. {
  313. PthreadMutex *m = (PthreadMutex *) mutex;
  314. pthread_t tid = pthread_self();
  315. if (m->owner != tid)
  316. {
  317. if (pthread_mutex_lock(&m->mutex) != 0)
  318. return(0);
  319. m->owner = tid;
  320. } /* if */
  321. m->count++;
  322. return(1);
  323. } /* __PHYSFS_platformGrabMutex */
  324. void __PHYSFS_platformReleaseMutex(void *mutex)
  325. {
  326. PthreadMutex *m = (PthreadMutex *) mutex;
  327. if (m->owner == pthread_self())
  328. {
  329. if (--m->count == 0)
  330. {
  331. m->owner = (pthread_t) 0xDEADBEEF;
  332. pthread_mutex_unlock(&m->mutex);
  333. } /* if */
  334. } /* if */
  335. } /* __PHYSFS_platformReleaseMutex */
  336. #endif /* !PHYSFS_NO_THREAD_SUPPORT */
  337. #endif /* PHYSFS_PLATFORM_UNIX */
  338. /* end of unix.c ... */