windows.c 30 KB

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  1. /*
  2. * Windows 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, and made sane by Gregory S. Read.
  7. */
  8. #define __PHYSICSFS_INTERNAL__
  9. #include "physfs_platforms.h"
  10. #ifdef PHYSFS_PLATFORM_WINDOWS
  11. #include <windows.h>
  12. #include <stdio.h>
  13. #include <stdlib.h>
  14. #include <string.h>
  15. #include <errno.h>
  16. #include <ctype.h>
  17. #include <time.h>
  18. #include "physfs_internal.h"
  19. #if (!defined alloca)
  20. #if ((defined _MSC_VER)
  21. #define alloca(x) _alloca(x)
  22. #elif (defined __MINGW32__) /* scary...hopefully this is okay. */
  23. #define alloca(x) __builtin_alloca(x)
  24. #endif
  25. #endif
  26. #define LOWORDER_UINT64(pos) (PHYSFS_uint32) \
  27. (pos & 0x00000000FFFFFFFF)
  28. #define HIGHORDER_UINT64(pos) (PHYSFS_uint32) \
  29. (((pos & 0xFFFFFFFF00000000) >> 32) & 0x00000000FFFFFFFF)
  30. /* GetUserProfileDirectory() is only available on >= NT4 (no 9x/ME systems!) */
  31. typedef BOOL (STDMETHODCALLTYPE FAR * LPFNGETUSERPROFILEDIR) (
  32. HANDLE hToken,
  33. LPTSTR lpProfileDir,
  34. LPDWORD lpcchSize);
  35. /* GetFileAttributesEx() is only available on >= Win98 or WinNT4 ... */
  36. typedef BOOL (STDMETHODCALLTYPE FAR * LPFNGETFILEATTRIBUTESEX) (
  37. LPCTSTR lpFileName,
  38. GET_FILEEX_INFO_LEVELS fInfoLevelId,
  39. LPVOID lpFileInformation);
  40. typedef struct
  41. {
  42. HANDLE handle;
  43. int readonly;
  44. } win32file;
  45. const char *__PHYSFS_platformDirSeparator = "\\";
  46. static LPFNGETFILEATTRIBUTESEX pGetFileAttributesEx = NULL;
  47. static HANDLE libKernel32 = NULL;
  48. static char *userDir = NULL;
  49. /*
  50. * Users without the platform SDK don't have this defined. The original docs
  51. * for SetFilePointer() just said to compare with 0xFFFFFFFF, so this should
  52. * work as desired.
  53. */
  54. #define PHYSFS_INVALID_SET_FILE_POINTER 0xFFFFFFFF
  55. /* just in case... */
  56. #define PHYSFS_INVALID_FILE_ATTRIBUTES 0xFFFFFFFF
  57. /*
  58. * Figure out what the last failing Win32 API call was, and
  59. * generate a human-readable string for the error message.
  60. *
  61. * The return value is a static buffer that is overwritten with
  62. * each call to this function.
  63. */
  64. static const char *win32strerror(void)
  65. {
  66. static TCHAR msgbuf[255];
  67. TCHAR *ptr = msgbuf;
  68. FormatMessage(
  69. FORMAT_MESSAGE_FROM_SYSTEM |
  70. FORMAT_MESSAGE_IGNORE_INSERTS,
  71. NULL,
  72. GetLastError(),
  73. MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), /* Default language */
  74. msgbuf,
  75. sizeof (msgbuf) / sizeof (TCHAR),
  76. NULL
  77. );
  78. /* chop off newlines. */
  79. for (ptr = msgbuf; *ptr; ptr++)
  80. {
  81. if ((*ptr == '\n') || (*ptr == '\r'))
  82. {
  83. *ptr = ' ';
  84. break;
  85. } /* if */
  86. } /* for */
  87. return((const char *) msgbuf);
  88. } /* win32strerror */
  89. static char *getExePath(const char *argv0)
  90. {
  91. DWORD buflen;
  92. int success = 0;
  93. char *ptr = NULL;
  94. char *retval = (char *) allocator.Malloc(sizeof (TCHAR) * (MAX_PATH + 1));
  95. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  96. retval[0] = '\0';
  97. buflen = GetModuleFileName(NULL, retval, MAX_PATH + 1);
  98. if (buflen <= 0)
  99. __PHYSFS_setError(win32strerror());
  100. else
  101. {
  102. retval[buflen] = '\0'; /* does API always null-terminate this? */
  103. /* make sure the string was not truncated. */
  104. if (__PHYSFS_stricmpASCII(&retval[buflen - 4], ".exe") != 0)
  105. __PHYSFS_setError(ERR_GETMODFN_TRUNC);
  106. else
  107. {
  108. ptr = strrchr(retval, '\\');
  109. if (ptr == NULL)
  110. __PHYSFS_setError(ERR_GETMODFN_NO_DIR);
  111. else
  112. {
  113. *(ptr + 1) = '\0'; /* chop off filename. */
  114. success = 1;
  115. } /* else */
  116. } /* else */
  117. } /* else */
  118. /* if any part of the previous approach failed, try SearchPath()... */
  119. if (!success)
  120. {
  121. if (argv0 == NULL)
  122. __PHYSFS_setError(ERR_ARGV0_IS_NULL);
  123. else
  124. {
  125. buflen = SearchPath(NULL, argv0, NULL, MAX_PATH+1, retval, &ptr);
  126. if (buflen == 0)
  127. __PHYSFS_setError(win32strerror());
  128. else if (buflen > MAX_PATH)
  129. __PHYSFS_setError(ERR_SEARCHPATH_TRUNC);
  130. else
  131. success = 1;
  132. } /* else */
  133. } /* if */
  134. if (!success)
  135. {
  136. allocator.Free(retval);
  137. return(NULL); /* physfs error message will be set, above. */
  138. } /* if */
  139. /* free up the bytes we didn't actually use. */
  140. ptr = (char *) allocator.Realloc(retval, strlen(retval) + 1);
  141. if (ptr != NULL)
  142. retval = ptr;
  143. return(retval); /* w00t. */
  144. } /* getExePath */
  145. /*
  146. * Try to make use of GetUserProfileDirectory(), which isn't available on
  147. * some common variants of Win32. If we can't use this, we just punt and
  148. * use the physfs base dir for the user dir, too.
  149. *
  150. * On success, module-scope variable (userDir) will have a pointer to
  151. * a malloc()'d string of the user's profile dir, and a non-zero value is
  152. * returned. If we can't determine the profile dir, (userDir) will
  153. * be NULL, and zero is returned.
  154. */
  155. static int determineUserDir(void)
  156. {
  157. DWORD psize = 0;
  158. char dummy[1];
  159. BOOL rc = 0;
  160. HANDLE processHandle; /* Current process handle */
  161. HANDLE accessToken = NULL; /* Security handle to process */
  162. LPFNGETUSERPROFILEDIR GetUserProfileDirectory;
  163. HMODULE lib;
  164. assert(userDir == NULL);
  165. /*
  166. * GetUserProfileDirectory() is only available on NT 4.0 and later.
  167. * This means Win95/98/ME (and CE?) users have to do without, so for
  168. * them, we'll default to the base directory when we can't get the
  169. * function pointer.
  170. */
  171. lib = LoadLibrary("userenv.dll");
  172. if (lib)
  173. {
  174. /* !!! FIXME: Handle Unicode? */
  175. GetUserProfileDirectory = (LPFNGETUSERPROFILEDIR)
  176. GetProcAddress(lib, "GetUserProfileDirectoryA");
  177. if (GetUserProfileDirectory)
  178. {
  179. processHandle = GetCurrentProcess();
  180. if (OpenProcessToken(processHandle, TOKEN_QUERY, &accessToken))
  181. {
  182. /*
  183. * Should fail. Will write the size of the profile path in
  184. * psize. Also note that the second parameter can't be
  185. * NULL or the function fails.
  186. */
  187. rc = GetUserProfileDirectory(accessToken, dummy, &psize);
  188. assert(!rc); /* success?! */
  189. /* Allocate memory for the profile directory */
  190. userDir = (char *) allocator.Malloc(psize);
  191. if (userDir != NULL)
  192. {
  193. if (!GetUserProfileDirectory(accessToken, userDir, &psize))
  194. {
  195. allocator.Free(userDir);
  196. userDir = NULL;
  197. } /* if */
  198. } /* else */
  199. } /* if */
  200. CloseHandle(accessToken);
  201. } /* if */
  202. FreeLibrary(lib);
  203. } /* if */
  204. if (userDir == NULL) /* couldn't get profile for some reason. */
  205. {
  206. /* Might just be a non-NT system; resort to the basedir. */
  207. userDir = getExePath(NULL);
  208. BAIL_IF_MACRO(userDir == NULL, NULL, 0); /* STILL failed?! */
  209. } /* if */
  210. return(1); /* We made it: hit the showers. */
  211. } /* determineUserDir */
  212. static BOOL mediaInDrive(const char *drive)
  213. {
  214. UINT oldErrorMode;
  215. DWORD tmp;
  216. BOOL retval;
  217. /* Prevent windows warning message appearing when checking media size */
  218. oldErrorMode = SetErrorMode(SEM_FAILCRITICALERRORS);
  219. /* If this function succeeds, there's media in the drive */
  220. retval = GetVolumeInformation(drive, NULL, 0, NULL, NULL, &tmp, NULL, 0);
  221. /* Revert back to old windows error handler */
  222. SetErrorMode(oldErrorMode);
  223. return(retval);
  224. } /* mediaInDrive */
  225. void __PHYSFS_platformDetectAvailableCDs(PHYSFS_StringCallback cb, void *data)
  226. {
  227. char drive_str[4] = "x:\\";
  228. char ch;
  229. for (ch = 'A'; ch <= 'Z'; ch++)
  230. {
  231. drive_str[0] = ch;
  232. if (GetDriveType(drive_str) == DRIVE_CDROM && mediaInDrive(drive_str))
  233. cb(data, drive_str);
  234. } /* for */
  235. } /* __PHYSFS_platformDetectAvailableCDs */
  236. char *__PHYSFS_platformCalcBaseDir(const char *argv0)
  237. {
  238. if ((argv0 != NULL) && (strchr(argv0, '\\') != NULL))
  239. return(NULL); /* default behaviour can handle this. */
  240. return(getExePath(argv0));
  241. } /* __PHYSFS_platformCalcBaseDir */
  242. char *__PHYSFS_platformGetUserName(void)
  243. {
  244. DWORD bufsize = 0;
  245. LPTSTR retval = NULL;
  246. if (GetUserName(NULL, &bufsize) == 0) /* This SHOULD fail. */
  247. {
  248. retval = (LPTSTR) allocator.Malloc(bufsize);
  249. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  250. if (GetUserName(retval, &bufsize) == 0) /* ?! */
  251. {
  252. __PHYSFS_setError(win32strerror());
  253. allocator.Free(retval);
  254. retval = NULL;
  255. } /* if */
  256. } /* if */
  257. return((char *) retval);
  258. } /* __PHYSFS_platformGetUserName */
  259. char *__PHYSFS_platformGetUserDir(void)
  260. {
  261. char *retval = (char *) allocator.Malloc(strlen(userDir) + 1);
  262. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  263. strcpy(retval, userDir); /* calculated at init time. */
  264. return(retval);
  265. } /* __PHYSFS_platformGetUserDir */
  266. PHYSFS_uint64 __PHYSFS_platformGetThreadID(void)
  267. {
  268. return((PHYSFS_uint64) GetCurrentThreadId());
  269. } /* __PHYSFS_platformGetThreadID */
  270. int __PHYSFS_platformExists(const char *fname)
  271. {
  272. BAIL_IF_MACRO
  273. (
  274. GetFileAttributes(fname) == PHYSFS_INVALID_FILE_ATTRIBUTES,
  275. win32strerror(), 0
  276. );
  277. return(1);
  278. } /* __PHYSFS_platformExists */
  279. int __PHYSFS_platformIsSymLink(const char *fname)
  280. {
  281. return(0); /* no symlinks on win32. */
  282. } /* __PHYSFS_platformIsSymlink */
  283. int __PHYSFS_platformIsDirectory(const char *fname)
  284. {
  285. return((GetFileAttributes(fname) & FILE_ATTRIBUTE_DIRECTORY) != 0);
  286. } /* __PHYSFS_platformIsDirectory */
  287. char *__PHYSFS_platformCvtToDependent(const char *prepend,
  288. const char *dirName,
  289. const char *append)
  290. {
  291. int len = ((prepend) ? strlen(prepend) : 0) +
  292. ((append) ? strlen(append) : 0) +
  293. strlen(dirName) + 1;
  294. char *retval = (char *) allocator.Malloc(len);
  295. char *p;
  296. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  297. if (prepend)
  298. strcpy(retval, prepend);
  299. else
  300. retval[0] = '\0';
  301. strcat(retval, dirName);
  302. if (append)
  303. strcat(retval, append);
  304. for (p = strchr(retval, '/'); p != NULL; p = strchr(p + 1, '/'))
  305. *p = '\\';
  306. return(retval);
  307. } /* __PHYSFS_platformCvtToDependent */
  308. void __PHYSFS_platformEnumerateFiles(const char *dirname,
  309. int omitSymLinks,
  310. PHYSFS_EnumFilesCallback callback,
  311. const char *origdir,
  312. void *callbackdata)
  313. {
  314. HANDLE dir;
  315. WIN32_FIND_DATA ent;
  316. size_t len = strlen(dirname);
  317. char *SearchPath;
  318. /* Allocate a new string for path, maybe '\\', "*", and NULL terminator */
  319. SearchPath = (char *) alloca(len + 3);
  320. if (SearchPath == NULL)
  321. return;
  322. /* Copy current dirname */
  323. strcpy(SearchPath, dirname);
  324. /* if there's no '\\' at the end of the path, stick one in there. */
  325. if (SearchPath[len - 1] != '\\')
  326. {
  327. SearchPath[len++] = '\\';
  328. SearchPath[len] = '\0';
  329. } /* if */
  330. /* Append the "*" to the end of the string */
  331. strcat(SearchPath, "*");
  332. dir = FindFirstFile(SearchPath, &ent);
  333. if (dir == INVALID_HANDLE_VALUE)
  334. return;
  335. do
  336. {
  337. if (strcmp(ent.cFileName, ".") == 0)
  338. continue;
  339. if (strcmp(ent.cFileName, "..") == 0)
  340. continue;
  341. callback(callbackdata, origdir, ent.cFileName);
  342. } while (FindNextFile(dir, &ent) != 0);
  343. FindClose(dir);
  344. } /* __PHYSFS_platformEnumerateFiles */
  345. char *__PHYSFS_platformCurrentDir(void)
  346. {
  347. LPTSTR retval;
  348. DWORD buflen = 0;
  349. buflen = GetCurrentDirectory(buflen, NULL);
  350. retval = (LPTSTR) allocator.Malloc(sizeof (TCHAR) * (buflen + 2));
  351. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  352. GetCurrentDirectory(buflen, retval);
  353. if (retval[buflen - 2] != '\\')
  354. strcat(retval, "\\");
  355. return((char *) retval);
  356. } /* __PHYSFS_platformCurrentDir */
  357. /* this could probably use a cleanup. */
  358. char *__PHYSFS_platformRealPath(const char *path)
  359. {
  360. char *retval = NULL;
  361. char *p = NULL;
  362. BAIL_IF_MACRO(path == NULL, ERR_INVALID_ARGUMENT, NULL);
  363. BAIL_IF_MACRO(*path == '\0', ERR_INVALID_ARGUMENT, NULL);
  364. retval = (char *) allocator.Malloc(MAX_PATH);
  365. BAIL_IF_MACRO(retval == NULL, ERR_OUT_OF_MEMORY, NULL);
  366. /*
  367. * If in \\server\path format, it's already an absolute path.
  368. * We'll need to check for "." and ".." dirs, though, just in case.
  369. */
  370. if ((path[0] == '\\') && (path[1] == '\\'))
  371. strcpy(retval, path);
  372. else
  373. {
  374. char *currentDir = __PHYSFS_platformCurrentDir();
  375. if (currentDir == NULL)
  376. {
  377. allocator.Free(retval);
  378. BAIL_MACRO(ERR_OUT_OF_MEMORY, NULL);
  379. } /* if */
  380. if (path[1] == ':') /* drive letter specified? */
  381. {
  382. /*
  383. * Apparently, "D:mypath" is the same as "D:\\mypath" if
  384. * D: is not the current drive. However, if D: is the
  385. * current drive, then "D:mypath" is a relative path. Ugh.
  386. */
  387. if (path[2] == '\\') /* maybe an absolute path? */
  388. strcpy(retval, path);
  389. else /* definitely an absolute path. */
  390. {
  391. if (path[0] == currentDir[0]) /* current drive; relative. */
  392. {
  393. strcpy(retval, currentDir);
  394. strcat(retval, path + 2);
  395. } /* if */
  396. else /* not current drive; absolute. */
  397. {
  398. retval[0] = path[0];
  399. retval[1] = ':';
  400. retval[2] = '\\';
  401. strcpy(retval + 3, path + 2);
  402. } /* else */
  403. } /* else */
  404. } /* if */
  405. else /* no drive letter specified. */
  406. {
  407. if (path[0] == '\\') /* absolute path. */
  408. {
  409. retval[0] = currentDir[0];
  410. retval[1] = ':';
  411. strcpy(retval + 2, path);
  412. } /* if */
  413. else
  414. {
  415. strcpy(retval, currentDir);
  416. strcat(retval, path);
  417. } /* else */
  418. } /* else */
  419. allocator.Free(currentDir);
  420. } /* else */
  421. /* (whew.) Ok, now take out "." and ".." path entries... */
  422. p = retval;
  423. while ( (p = strstr(p, "\\.")) != NULL)
  424. {
  425. /* it's a "." entry that doesn't end the string. */
  426. if (p[2] == '\\')
  427. memmove(p + 1, p + 3, strlen(p + 3) + 1);
  428. /* it's a "." entry that ends the string. */
  429. else if (p[2] == '\0')
  430. p[0] = '\0';
  431. /* it's a ".." entry. */
  432. else if (p[2] == '.')
  433. {
  434. char *prevEntry = p - 1;
  435. while ((prevEntry != retval) && (*prevEntry != '\\'))
  436. prevEntry--;
  437. if (prevEntry == retval) /* make it look like a "." entry. */
  438. memmove(p + 1, p + 2, strlen(p + 2) + 1);
  439. else
  440. {
  441. if (p[3] != '\0') /* doesn't end string. */
  442. *prevEntry = '\0';
  443. else /* ends string. */
  444. memmove(prevEntry + 1, p + 4, strlen(p + 4) + 1);
  445. p = prevEntry;
  446. } /* else */
  447. } /* else if */
  448. else
  449. {
  450. p++; /* look past current char. */
  451. } /* else */
  452. } /* while */
  453. /* shrink the retval's memory block if possible... */
  454. p = (char *) allocator.Realloc(retval, strlen(retval) + 1);
  455. if (p != NULL)
  456. retval = p;
  457. return(retval);
  458. } /* __PHYSFS_platformRealPath */
  459. int __PHYSFS_platformMkDir(const char *path)
  460. {
  461. DWORD rc = CreateDirectory(path, NULL);
  462. BAIL_IF_MACRO(rc == 0, win32strerror(), 0);
  463. return(1);
  464. } /* __PHYSFS_platformMkDir */
  465. /*
  466. * Get OS info and save the important parts.
  467. *
  468. * Returns non-zero if successful, otherwise it returns zero on failure.
  469. */
  470. static int getOSInfo(void)
  471. {
  472. #if 0 /* we don't actually use this at the moment, but may in the future. */
  473. OSVERSIONINFO OSVersionInfo; /* Information about the OS */
  474. OSVersionInfo.dwOSVersionInfoSize = sizeof(OSVersionInfo);
  475. BAIL_IF_MACRO(!GetVersionEx(&OSVersionInfo), win32strerror(), 0);
  476. /* Set to TRUE if we are runnign a WinNT based OS 4.0 or greater */
  477. runningNT = ((OSVersionInfo.dwPlatformId == VER_PLATFORM_WIN32_NT) &&
  478. (OSVersionInfo.dwMajorVersion >= 4));
  479. #endif
  480. return(1);
  481. } /* getOSInfo */
  482. /*
  483. * Some things we want/need are in external DLLs that may or may not be
  484. * available, based on the operating system, etc. This function loads those
  485. * libraries and hunts down the needed pointers.
  486. *
  487. * Libraries that are one-shot deals, or better loaded as needed, are loaded
  488. * elsewhere (see determineUserDir()).
  489. *
  490. * Returns zero if a needed library couldn't load, non-zero if we have enough
  491. * to go on (which means some useful but non-crucial libraries may _NOT_ be
  492. * loaded; check the related module-scope variables).
  493. */
  494. static int loadLibraries(void)
  495. {
  496. /* If this get unwieldy, make it table driven. */
  497. int allNeededLibrariesLoaded = 1; /* flip to zero as needed. */
  498. libKernel32 = LoadLibrary("kernel32.dll");
  499. if (libKernel32)
  500. {
  501. pGetFileAttributesEx = (LPFNGETFILEATTRIBUTESEX)
  502. GetProcAddress(libKernel32, "GetFileAttributesExA");
  503. } /* if */
  504. /* add other DLLs here... */
  505. /* see if there's any reason to keep kernel32.dll around... */
  506. if (libKernel32)
  507. {
  508. if ((pGetFileAttributesEx == NULL) /* && (somethingElse == NULL) */ )
  509. {
  510. FreeLibrary(libKernel32);
  511. libKernel32 = NULL;
  512. } /* if */
  513. } /* if */
  514. return(allNeededLibrariesLoaded);
  515. } /* loadLibraries */
  516. int __PHYSFS_platformInit(void)
  517. {
  518. BAIL_IF_MACRO(!getOSInfo(), NULL, 0);
  519. BAIL_IF_MACRO(!loadLibraries(), NULL, 0);
  520. BAIL_IF_MACRO(!determineUserDir(), NULL, 0);
  521. return(1); /* It's all good */
  522. } /* __PHYSFS_platformInit */
  523. int __PHYSFS_platformDeinit(void)
  524. {
  525. if (userDir != NULL)
  526. {
  527. allocator.Free(userDir);
  528. userDir = NULL;
  529. } /* if */
  530. if (libKernel32)
  531. {
  532. FreeLibrary(libKernel32);
  533. libKernel32 = NULL;
  534. } /* if */
  535. return(1); /* It's all good */
  536. } /* __PHYSFS_platformDeinit */
  537. static void *doOpen(const char *fname, DWORD mode, DWORD creation, int rdonly)
  538. {
  539. HANDLE fileHandle;
  540. win32file *retval;
  541. fileHandle = CreateFile(fname, mode, FILE_SHARE_READ, NULL,
  542. creation, FILE_ATTRIBUTE_NORMAL, NULL);
  543. BAIL_IF_MACRO
  544. (
  545. fileHandle == INVALID_HANDLE_VALUE,
  546. win32strerror(), NULL
  547. );
  548. retval = (win32file *) allocator.Malloc(sizeof (win32file));
  549. if (retval == NULL)
  550. {
  551. CloseHandle(fileHandle);
  552. BAIL_MACRO(ERR_OUT_OF_MEMORY, NULL);
  553. } /* if */
  554. retval->readonly = rdonly;
  555. retval->handle = fileHandle;
  556. return(retval);
  557. } /* doOpen */
  558. void *__PHYSFS_platformOpenRead(const char *filename)
  559. {
  560. return(doOpen(filename, GENERIC_READ, OPEN_EXISTING, 1));
  561. } /* __PHYSFS_platformOpenRead */
  562. void *__PHYSFS_platformOpenWrite(const char *filename)
  563. {
  564. return(doOpen(filename, GENERIC_WRITE, CREATE_ALWAYS, 0));
  565. } /* __PHYSFS_platformOpenWrite */
  566. void *__PHYSFS_platformOpenAppend(const char *filename)
  567. {
  568. void *retval = doOpen(filename, GENERIC_WRITE, OPEN_ALWAYS, 0);
  569. if (retval != NULL)
  570. {
  571. HANDLE h = ((win32file *) retval)->handle;
  572. DWORD rc = SetFilePointer(h, 0, NULL, FILE_END);
  573. if (rc == PHYSFS_INVALID_SET_FILE_POINTER)
  574. {
  575. const char *err = win32strerror();
  576. CloseHandle(h);
  577. allocator.Free(retval);
  578. BAIL_MACRO(err, NULL);
  579. } /* if */
  580. } /* if */
  581. return(retval);
  582. } /* __PHYSFS_platformOpenAppend */
  583. PHYSFS_sint64 __PHYSFS_platformRead(void *opaque, void *buffer,
  584. PHYSFS_uint32 size, PHYSFS_uint32 count)
  585. {
  586. HANDLE Handle = ((win32file *) opaque)->handle;
  587. DWORD CountOfBytesRead;
  588. PHYSFS_sint64 retval;
  589. /* Read data from the file */
  590. /* !!! FIXME: uint32 might be a greater # than DWORD */
  591. if(!ReadFile(Handle, buffer, count * size, &CountOfBytesRead, NULL))
  592. {
  593. BAIL_MACRO(win32strerror(), -1);
  594. } /* if */
  595. else
  596. {
  597. /* Return the number of "objects" read. */
  598. /* !!! FIXME: What if not the right amount of bytes was read to make an object? */
  599. retval = CountOfBytesRead / size;
  600. } /* else */
  601. return(retval);
  602. } /* __PHYSFS_platformRead */
  603. PHYSFS_sint64 __PHYSFS_platformWrite(void *opaque, const void *buffer,
  604. PHYSFS_uint32 size, PHYSFS_uint32 count)
  605. {
  606. HANDLE Handle = ((win32file *) opaque)->handle;
  607. DWORD CountOfBytesWritten;
  608. PHYSFS_sint64 retval;
  609. /* Read data from the file */
  610. /* !!! FIXME: uint32 might be a greater # than DWORD */
  611. if(!WriteFile(Handle, buffer, count * size, &CountOfBytesWritten, NULL))
  612. {
  613. BAIL_MACRO(win32strerror(), -1);
  614. } /* if */
  615. else
  616. {
  617. /* Return the number of "objects" read. */
  618. /* !!! FIXME: What if not the right number of bytes was written? */
  619. retval = CountOfBytesWritten / size;
  620. } /* else */
  621. return(retval);
  622. } /* __PHYSFS_platformWrite */
  623. int __PHYSFS_platformSeek(void *opaque, PHYSFS_uint64 pos)
  624. {
  625. HANDLE Handle = ((win32file *) opaque)->handle;
  626. DWORD HighOrderPos;
  627. DWORD *pHighOrderPos;
  628. DWORD rc;
  629. /* Get the high order 32-bits of the position */
  630. HighOrderPos = HIGHORDER_UINT64(pos);
  631. /*
  632. * MSDN: "If you do not need the high-order 32 bits, this
  633. * pointer must be set to NULL."
  634. */
  635. pHighOrderPos = (HighOrderPos) ? &HighOrderPos : NULL;
  636. /*
  637. * !!! FIXME: MSDN: "Windows Me/98/95: If the pointer
  638. * !!! FIXME: lpDistanceToMoveHigh is not NULL, then it must
  639. * !!! FIXME: point to either 0, INVALID_SET_FILE_POINTER, or
  640. * !!! FIXME: the sign extension of the value of lDistanceToMove.
  641. * !!! FIXME: Any other value will be rejected."
  642. */
  643. /* Move pointer "pos" count from start of file */
  644. rc = SetFilePointer(Handle, LOWORDER_UINT64(pos),
  645. pHighOrderPos, FILE_BEGIN);
  646. if ( (rc == PHYSFS_INVALID_SET_FILE_POINTER) &&
  647. (GetLastError() != NO_ERROR) )
  648. {
  649. BAIL_MACRO(win32strerror(), 0);
  650. } /* if */
  651. return(1); /* No error occured */
  652. } /* __PHYSFS_platformSeek */
  653. PHYSFS_sint64 __PHYSFS_platformTell(void *opaque)
  654. {
  655. HANDLE Handle = ((win32file *) opaque)->handle;
  656. DWORD HighPos = 0;
  657. DWORD LowPos;
  658. PHYSFS_sint64 retval;
  659. /* Get current position */
  660. LowPos = SetFilePointer(Handle, 0, &HighPos, FILE_CURRENT);
  661. if ( (LowPos == PHYSFS_INVALID_SET_FILE_POINTER) &&
  662. (GetLastError() != NO_ERROR) )
  663. {
  664. BAIL_MACRO(win32strerror(), 0);
  665. } /* if */
  666. else
  667. {
  668. /* Combine the high/low order to create the 64-bit position value */
  669. retval = (((PHYSFS_uint64) HighPos) << 32) | LowPos;
  670. assert(retval >= 0);
  671. } /* else */
  672. return(retval);
  673. } /* __PHYSFS_platformTell */
  674. PHYSFS_sint64 __PHYSFS_platformFileLength(void *opaque)
  675. {
  676. HANDLE Handle = ((win32file *) opaque)->handle;
  677. DWORD SizeHigh;
  678. DWORD SizeLow;
  679. PHYSFS_sint64 retval;
  680. SizeLow = GetFileSize(Handle, &SizeHigh);
  681. if ( (SizeLow == PHYSFS_INVALID_SET_FILE_POINTER) &&
  682. (GetLastError() != NO_ERROR) )
  683. {
  684. BAIL_MACRO(win32strerror(), -1);
  685. } /* if */
  686. else
  687. {
  688. /* Combine the high/low order to create the 64-bit position value */
  689. retval = (((PHYSFS_uint64) SizeHigh) << 32) | SizeLow;
  690. assert(retval >= 0);
  691. } /* else */
  692. return(retval);
  693. } /* __PHYSFS_platformFileLength */
  694. int __PHYSFS_platformEOF(void *opaque)
  695. {
  696. PHYSFS_sint64 FilePosition;
  697. int retval = 0;
  698. /* Get the current position in the file */
  699. if ((FilePosition = __PHYSFS_platformTell(opaque)) != 0)
  700. {
  701. /* Non-zero if EOF is equal to the file length */
  702. retval = FilePosition == __PHYSFS_platformFileLength(opaque);
  703. } /* if */
  704. return(retval);
  705. } /* __PHYSFS_platformEOF */
  706. int __PHYSFS_platformFlush(void *opaque)
  707. {
  708. win32file *fh = ((win32file *) opaque);
  709. if (!fh->readonly)
  710. BAIL_IF_MACRO(!FlushFileBuffers(fh->handle), win32strerror(), 0);
  711. return(1);
  712. } /* __PHYSFS_platformFlush */
  713. int __PHYSFS_platformClose(void *opaque)
  714. {
  715. HANDLE Handle = ((win32file *) opaque)->handle;
  716. BAIL_IF_MACRO(!CloseHandle(Handle), win32strerror(), 0);
  717. allocator.Free(opaque);
  718. return(1);
  719. } /* __PHYSFS_platformClose */
  720. int __PHYSFS_platformDelete(const char *path)
  721. {
  722. /* If filename is a folder */
  723. if (GetFileAttributes(path) == FILE_ATTRIBUTE_DIRECTORY)
  724. {
  725. BAIL_IF_MACRO(!RemoveDirectory(path), win32strerror(), 0);
  726. } /* if */
  727. else
  728. {
  729. BAIL_IF_MACRO(!DeleteFile(path), win32strerror(), 0);
  730. } /* else */
  731. return(1); /* if you got here, it worked. */
  732. } /* __PHYSFS_platformDelete */
  733. void *__PHYSFS_platformCreateMutex(void)
  734. {
  735. return((void *) CreateMutex(NULL, FALSE, NULL));
  736. } /* __PHYSFS_platformCreateMutex */
  737. void __PHYSFS_platformDestroyMutex(void *mutex)
  738. {
  739. CloseHandle((HANDLE) mutex);
  740. } /* __PHYSFS_platformDestroyMutex */
  741. int __PHYSFS_platformGrabMutex(void *mutex)
  742. {
  743. return(WaitForSingleObject((HANDLE) mutex, INFINITE) != WAIT_FAILED);
  744. } /* __PHYSFS_platformGrabMutex */
  745. void __PHYSFS_platformReleaseMutex(void *mutex)
  746. {
  747. ReleaseMutex((HANDLE) mutex);
  748. } /* __PHYSFS_platformReleaseMutex */
  749. static PHYSFS_sint64 FileTimeToPhysfsTime(const FILETIME *ft)
  750. {
  751. SYSTEMTIME st_utc;
  752. SYSTEMTIME st_localtz;
  753. TIME_ZONE_INFORMATION tzi;
  754. DWORD tzid;
  755. PHYSFS_sint64 retval;
  756. struct tm tm;
  757. BAIL_IF_MACRO(!FileTimeToSystemTime(ft, &st_utc), win32strerror(), -1);
  758. tzid = GetTimeZoneInformation(&tzi);
  759. BAIL_IF_MACRO(tzid == TIME_ZONE_ID_INVALID, win32strerror(), -1);
  760. /* (This API is unsupported and fails on non-NT systems. */
  761. if (!SystemTimeToTzSpecificLocalTime(&tzi, &st_utc, &st_localtz))
  762. {
  763. /* do it by hand. Grumble... */
  764. ULARGE_INTEGER ui64;
  765. FILETIME new_ft;
  766. ui64.LowPart = ft->dwLowDateTime;
  767. ui64.HighPart = ft->dwHighDateTime;
  768. if (tzid == TIME_ZONE_ID_STANDARD)
  769. tzi.Bias += tzi.StandardBias;
  770. else if (tzid == TIME_ZONE_ID_DAYLIGHT)
  771. tzi.Bias += tzi.DaylightBias;
  772. /* convert from minutes to 100-nanosecond increments... */
  773. #if 0 /* For compilers that puke on 64-bit math. */
  774. /* goddamn this is inefficient... */
  775. while (tzi.Bias > 0)
  776. {
  777. DWORD tmp = ui64.LowPart - 60000000;
  778. if ((ui64.LowPart < tmp) && (tmp > 60000000))
  779. ui64.HighPart--;
  780. ui64.LowPart = tmp;
  781. tzi.Bias--;
  782. } /* while */
  783. while (tzi.Bias < 0)
  784. {
  785. DWORD tmp = ui64.LowPart + 60000000;
  786. if ((ui64.LowPart > tmp) && (tmp < 60000000))
  787. ui64.HighPart++;
  788. ui64.LowPart = tmp;
  789. tzi.Bias++;
  790. } /* while */
  791. #else
  792. ui64.QuadPart -= (((LONGLONG) tzi.Bias) * (600000000));
  793. #endif
  794. /* Move it back into a FILETIME structure... */
  795. new_ft.dwLowDateTime = ui64.LowPart;
  796. new_ft.dwHighDateTime = ui64.HighPart;
  797. /* Convert to something human-readable... */
  798. if (!FileTimeToSystemTime(&new_ft, &st_localtz))
  799. BAIL_MACRO(win32strerror(), -1);
  800. } /* if */
  801. /* Convert to a format that mktime() can grok... */
  802. tm.tm_sec = st_localtz.wSecond;
  803. tm.tm_min = st_localtz.wMinute;
  804. tm.tm_hour = st_localtz.wHour;
  805. tm.tm_mday = st_localtz.wDay;
  806. tm.tm_mon = st_localtz.wMonth - 1;
  807. tm.tm_year = st_localtz.wYear - 1900;
  808. tm.tm_wday = -1 /*st_localtz.wDayOfWeek*/;
  809. tm.tm_yday = -1;
  810. tm.tm_isdst = -1;
  811. /* Convert to a format PhysicsFS can grok... */
  812. retval = (PHYSFS_sint64) mktime(&tm);
  813. BAIL_IF_MACRO(retval == -1, strerror(errno), -1);
  814. return(retval);
  815. } /* FileTimeToPhysfsTime */
  816. PHYSFS_sint64 __PHYSFS_platformGetLastModTime(const char *fname)
  817. {
  818. PHYSFS_sint64 retval = -1;
  819. WIN32_FILE_ATTRIBUTE_DATA attrData;
  820. memset(&attrData, '\0', sizeof (attrData));
  821. /* GetFileAttributesEx didn't show up until Win98 and NT4. */
  822. if (pGetFileAttributesEx != NULL)
  823. {
  824. if (pGetFileAttributesEx(fname, GetFileExInfoStandard, &attrData))
  825. {
  826. /* 0 return value indicates an error or not supported */
  827. if ( (attrData.ftLastWriteTime.dwHighDateTime != 0) ||
  828. (attrData.ftLastWriteTime.dwLowDateTime != 0) )
  829. {
  830. retval = FileTimeToPhysfsTime(&attrData.ftLastWriteTime);
  831. } /* if */
  832. } /* if */
  833. } /* if */
  834. /* GetFileTime() has been in the Win32 API since the start. */
  835. if (retval == -1) /* try a fallback... */
  836. {
  837. FILETIME ft;
  838. BOOL rc;
  839. const char *err;
  840. win32file *f = (win32file *) __PHYSFS_platformOpenRead(fname);
  841. BAIL_IF_MACRO(f == NULL, NULL, -1)
  842. rc = GetFileTime(f->handle, NULL, NULL, &ft);
  843. err = win32strerror();
  844. CloseHandle(f->handle);
  845. allocator.Free(f);
  846. BAIL_IF_MACRO(!rc, err, -1);
  847. retval = FileTimeToPhysfsTime(&ft);
  848. } /* if */
  849. return(retval);
  850. } /* __PHYSFS_platformGetLastModTime */
  851. /* !!! FIXME: Don't use C runtime for allocators? */
  852. int __PHYSFS_platformSetDefaultAllocator(PHYSFS_Allocator *a)
  853. {
  854. return(0); /* just use malloc() and friends. */
  855. } /* __PHYSFS_platformSetDefaultAllocator */
  856. #endif /* PHYSFS_PLATFORM_WINDOWS */
  857. /* end of windows.c ... */