XP/2003 compatability fix
[fio.git] / os / windows / posix.c
CommitLineData
9277ec14
BC
1/* This file contains functions which implement those POSIX and Linux functions
2 * that MinGW and Microsoft don't provide. The implementations contain just enough
3 * functionality to support fio.
4 */
5
6#include <arpa/inet.h>
7#include <netinet/in.h>
8#include <windows.h>
9#include <stddef.h>
ad9c0fbc 10#include <string.h>
9277ec14
BC
11#include <stdlib.h>
12#include <unistd.h>
13#include <dirent.h>
14#include <pthread.h>
15#include <semaphore.h>
16#include <sys/shm.h>
17#include <sys/mman.h>
18#include <sys/uio.h>
19#include <sys/resource.h>
20#include <sys/poll.h>
21
22#include "../os-windows.h"
23
21c75387
BC
24extern unsigned long mtime_since_now(struct timeval *);
25extern void fio_gettime(struct timeval *, void *);
26
ad9c0fbc
BC
27/* These aren't defined in the MinGW headers */
28HRESULT WINAPI StringCchCopyA(
29 char *pszDest,
30 size_t cchDest,
31 const char *pszSrc);
32
33HRESULT WINAPI StringCchPrintfA(
34 char *pszDest,
35 size_t cchDest,
36 const char *pszFormat,
37 ...);
38
39int vsprintf_s(
40 char *buffer,
41 size_t numberOfElements,
42 const char *format,
43 va_list argptr);
44
9277ec14
BC
45long sysconf(int name)
46{
47 long long val = -1;
48 DWORD len;
49 SYSTEM_LOGICAL_PROCESSOR_INFORMATION processorInfo;
50 SYSTEM_INFO sysInfo;
51 MEMORYSTATUSEX status;
52
53 switch (name)
54 {
55 case _SC_NPROCESSORS_ONLN:
56 len = sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION);
57 GetLogicalProcessorInformation(&processorInfo, &len);
58 val = len / sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION);
59 break;
60
61 case _SC_PAGESIZE:
62 GetSystemInfo(&sysInfo);
63 val = sysInfo.dwPageSize;
64 break;
65
66 case _SC_PHYS_PAGES:
67 status.dwLength = sizeof(status);
68 GlobalMemoryStatusEx(&status);
69 val = status.ullTotalPhys;
70 break;
71 default:
72 log_err("sysconf(%d) is not implemented\n", name);
73 break;
74 }
75
76 return val;
77}
78
79char *dl_error = NULL;
80
81int dlclose(void *handle)
82{
83 return !FreeLibrary((HMODULE)handle);
84}
85
86void *dlopen(const char *file, int mode)
87{
88 HMODULE hMod;
89
90 hMod = LoadLibrary(file);
91 if (hMod == INVALID_HANDLE_VALUE)
92 dl_error = (char*)"LoadLibrary failed";
93 else
94 dl_error = NULL;
95
96 return hMod;
97}
98
99void *dlsym(void *handle, const char *name)
100{
101 FARPROC fnPtr;
102
103 fnPtr = GetProcAddress((HMODULE)handle, name);
104 if (fnPtr == NULL)
105 dl_error = (char*)"GetProcAddress failed";
106 else
107 dl_error = NULL;
108
109 return fnPtr;
110}
111
112char *dlerror(void)
113{
114 return dl_error;
115}
116
117int gettimeofday(struct timeval *restrict tp, void *restrict tzp)
118{
119 FILETIME fileTime;
9576f613
BC
120 uint64_t unix_time, windows_time;
121 const uint64_t MILLISECONDS_BETWEEN_1601_AND_1970 = 11644473600000;
9277ec14 122
fc0b830f 123 /* Ignore the timezone parameter */
9277ec14
BC
124 (void)tzp;
125
126 /*
127 * Windows time is stored as the number 100 ns intervals since January 1 1601.
128 * Conversion details from http://www.informit.com/articles/article.aspx?p=102236&seqNum=3
129 * Its precision is 100 ns but accuracy is only one clock tick, or normally around 15 ms.
130 */
131 GetSystemTimeAsFileTime(&fileTime);
9576f613 132 windows_time = ((uint64_t)fileTime.dwHighDateTime << 32) + fileTime.dwLowDateTime;
9277ec14
BC
133 /* Divide by 10,000 to convert to ms and subtract the time between 1601 and 1970 */
134 unix_time = (((windows_time)/10000) - MILLISECONDS_BETWEEN_1601_AND_1970);
135 /* unix_time is now the number of milliseconds since 1970 (the Unix epoch) */
136 tp->tv_sec = unix_time / 1000;
137 tp->tv_usec = (unix_time % 1000) * 1000;
138 return 0;
139}
140
9277ec14
BC
141int sigaction(int sig, const struct sigaction *act,
142 struct sigaction *oact)
143{
e5b8f91c
BC
144 int rc = 0;
145 void (*prev_handler)(int);
146
147 prev_handler = signal(sig, act->sa_handler);
148 if (oact != NULL)
149 oact->sa_handler = prev_handler;
150
151 if (prev_handler == SIG_ERR)
152 rc = -1;
153
154 return rc;
9277ec14
BC
155}
156
157int lstat(const char * path, struct stat * buf)
158{
159 return stat(path, buf);
160}
161
162void *mmap(void *addr, size_t len, int prot, int flags,
163 int fildes, off_t off)
164{
165 DWORD vaProt = 0;
166 void* allocAddr = NULL;
167
168 if (prot & PROT_NONE)
169 vaProt |= PAGE_NOACCESS;
170
171 if ((prot & PROT_READ) && !(prot & PROT_WRITE))
172 vaProt |= PAGE_READONLY;
173
174 if (prot & PROT_WRITE)
175 vaProt |= PAGE_READWRITE;
176
177 if ((flags & MAP_ANON) | (flags & MAP_ANONYMOUS))
178 {
179 allocAddr = VirtualAlloc(addr, len, MEM_COMMIT, vaProt);
180 }
181
182 return allocAddr;
183}
184
185int munmap(void *addr, size_t len)
186{
187 return !VirtualFree(addr, 0, MEM_RELEASE);
188}
189
190int fork(void)
191{
192 log_err("%s is not implemented\n", __func__);
193 errno = ENOSYS;
194 return (-1);
195}
196
197pid_t setsid(void)
198{
199 log_err("%s is not implemented\n", __func__);
200 errno = ENOSYS;
201 return (-1);
202}
203
ad9c0fbc
BC
204static HANDLE log_file = INVALID_HANDLE_VALUE;
205
9277ec14
BC
206void openlog(const char *ident, int logopt, int facility)
207{
ad9c0fbc
BC
208 if (log_file == INVALID_HANDLE_VALUE)
209 log_file = CreateFileA("syslog.txt", GENERIC_WRITE, FILE_SHARE_READ | FILE_SHARE_WRITE, NULL, OPEN_ALWAYS, 0, NULL);
9277ec14
BC
210}
211
212void closelog(void)
213{
ad9c0fbc
BC
214 CloseHandle(log_file);
215 log_file = INVALID_HANDLE_VALUE;
216}
217
218void syslog(int priority, const char *message, ... /* argument */)
219{
220 va_list v;
221 int len;
222 char *output;
223 DWORD bytes_written;
224
225 if (log_file == INVALID_HANDLE_VALUE) {
226 log_file = CreateFileA("syslog.txt", GENERIC_WRITE, FILE_SHARE_READ | FILE_SHARE_WRITE, NULL, OPEN_ALWAYS, 0, NULL);
227 }
228
229 if (log_file == INVALID_HANDLE_VALUE) {
230 log_err("syslog: failed to open log file\n");
231 return;
232 }
233
234 va_start(v, message);
235 len = _vscprintf(message, v);
236 output = malloc(len + sizeof(char));
98dc2db5 237 vsprintf(output, message, v);
ad9c0fbc
BC
238 WriteFile(log_file, output, len, &bytes_written, NULL);
239 va_end(v);
98dc2db5 240 free(output);
9277ec14
BC
241}
242
243int kill(pid_t pid, int sig)
244{
245 errno = ESRCH;
246 return (-1);
247}
248
fc0b830f
BC
249/*
250 * This is assumed to be used only by the network code,
251 * and so doesn't try and handle any of the other cases
252 */
9277ec14
BC
253int fcntl(int fildes, int cmd, ...)
254{
fc0b830f
BC
255 /*
256 * non-blocking mode doesn't work the same as in BSD sockets,
257 * so ignore it.
258 */
9277ec14
BC
259#if 0
260 va_list ap;
261 int val, opt, status;
262
263 if (cmd == F_GETFL)
264 return 0;
265 else if (cmd != F_SETFL) {
266 errno = EINVAL;
267 return (-1);
268 }
269
270 va_start(ap, 1);
271
272 opt = va_arg(ap, int);
273 if (opt & O_NONBLOCK)
274 val = 1;
275 else
276 val = 0;
277
278 status = ioctlsocket((SOCKET)fildes, opt, &val);
279
280 if (status == SOCKET_ERROR) {
281 errno = EINVAL;
282 val = -1;
283 }
284
285 va_end(ap);
286
287 return val;
288#endif
289return 0;
290}
291
292/*
293 * Get the value of a local clock source.
294 * This implementation supports 2 clocks: CLOCK_MONOTONIC provides high-accuracy
295 * relative time, while CLOCK_REALTIME provides a low-accuracy wall time.
296 */
297int clock_gettime(clockid_t clock_id, struct timespec *tp)
298{
299 int rc = 0;
300
301 if (clock_id == CLOCK_MONOTONIC)
302 {
303 static LARGE_INTEGER freq = {{0,0}};
304 LARGE_INTEGER counts;
305
306 QueryPerformanceCounter(&counts);
307 if (freq.QuadPart == 0)
308 QueryPerformanceFrequency(&freq);
309
310 tp->tv_sec = counts.QuadPart / freq.QuadPart;
311 /* Get the difference between the number of ns stored
312 * in 'tv_sec' and that stored in 'counts' */
9576f613 313 uint64_t t = tp->tv_sec * freq.QuadPart;
9277ec14
BC
314 t = counts.QuadPart - t;
315 /* 't' now contains the number of cycles since the last second.
316 * We want the number of nanoseconds, so multiply out by 1,000,000,000
317 * and then divide by the frequency. */
318 t *= 1000000000;
319 tp->tv_nsec = t / freq.QuadPart;
320 }
321 else if (clock_id == CLOCK_REALTIME)
322 {
323 /* clock_gettime(CLOCK_REALTIME,...) is just an alias for gettimeofday with a
324 * higher-precision field. */
325 struct timeval tv;
326 gettimeofday(&tv, NULL);
327 tp->tv_sec = tv.tv_sec;
328 tp->tv_nsec = tv.tv_usec * 1000;
329 } else {
330 errno = EINVAL;
331 rc = -1;
332 }
333
334 return rc;
335}
336
337int mlock(const void * addr, size_t len)
338{
339 return !VirtualLock((LPVOID)addr, len);
340}
341
342int munlock(const void * addr, size_t len)
343{
344 return !VirtualUnlock((LPVOID)addr, len);
345}
346
347pid_t waitpid(pid_t pid, int *stat_loc, int options)
348{
349 log_err("%s is not implemented\n", __func__);
350 errno = ENOSYS;
351 return -1;
352}
353
354int usleep(useconds_t useconds)
355{
356 Sleep(useconds / 1000);
357 return 0;
358}
359
360char *basename(char *path)
361{
362 static char name[MAX_PATH];
363 int i;
364
365 if (path == NULL || strlen(path) == 0)
366 return (char*)".";
367
368 i = strlen(path) - 1;
369
9576f613 370 while (path[i] != '\\' && path[i] != '/' && i >= 0)
9277ec14
BC
371 i--;
372
9576f613 373 strncpy(name, path + i + 1, MAX_PATH);
9277ec14
BC
374
375 return name;
376}
377
378int posix_fallocate(int fd, off_t offset, off_t len)
379{
ca48255b 380 const int BUFFER_SIZE = 256 * 1024;
f9a58c2a
BC
381 int rc = 0;
382 char *buf;
383 unsigned int write_len;
384 unsigned int bytes_written;
385 off_t bytes_remaining = len;
386
387 if (len == 0 || offset < 0)
388 return EINVAL;
389
390 buf = malloc(BUFFER_SIZE);
391
392 if (buf == NULL)
393 return ENOMEM;
394
395 memset(buf, 0, BUFFER_SIZE);
396
9576f613
BC
397 int64_t prev_pos = _telli64(fd);
398
399 if (_lseeki64(fd, offset, SEEK_SET) == -1)
f9a58c2a
BC
400 return errno;
401
402 while (bytes_remaining > 0) {
403 if (bytes_remaining < BUFFER_SIZE)
404 write_len = (unsigned int)bytes_remaining;
405 else
406 write_len = BUFFER_SIZE;
407
408 bytes_written = _write(fd, buf, write_len);
409 if (bytes_written == -1) {
410 rc = errno;
411 break;
412 }
413
414 bytes_remaining -= bytes_written;
415 }
416
417 free(buf);
9576f613 418 _lseeki64(fd, prev_pos, SEEK_SET);
f9a58c2a 419 return rc;
9277ec14
BC
420}
421
422int ftruncate(int fildes, off_t length)
423{
424 BOOL bSuccess;
9576f613
BC
425 int64_t prev_pos = _telli64(fildes);
426 _lseeki64(fildes, length, SEEK_SET);
9277ec14
BC
427 HANDLE hFile = (HANDLE)_get_osfhandle(fildes);
428 bSuccess = SetEndOfFile(hFile);
9576f613 429 _lseeki64(fildes, prev_pos, SEEK_SET);
9277ec14
BC
430 return !bSuccess;
431}
432
433int fsync(int fildes)
434{
435 HANDLE hFile = (HANDLE)_get_osfhandle(fildes);
436 return !FlushFileBuffers(hFile);
437}
438
439int nFileMappings = 0;
440HANDLE fileMappings[1024];
441
442int shmget(key_t key, size_t size, int shmflg)
443{
444 int mapid = -1;
d3987946
BC
445 uint32_t size_low = size & 0xFFFFFFFF;
446 uint32_t size_high = ((uint64_t)size) >> 32;
447 HANDLE hMapping = CreateFileMapping(INVALID_HANDLE_VALUE, NULL, (PAGE_EXECUTE_READWRITE | SEC_RESERVE), size_high, size_low, NULL);
9277ec14
BC
448 if (hMapping != NULL) {
449 fileMappings[nFileMappings] = hMapping;
450 mapid = nFileMappings;
451 nFileMappings++;
452 } else {
453 errno = ENOSYS;
454 }
455
456 return mapid;
457}
458
459void *shmat(int shmid, const void *shmaddr, int shmflg)
460{
461 void* mapAddr;
462 MEMORY_BASIC_INFORMATION memInfo;
463 mapAddr = MapViewOfFile(fileMappings[shmid], FILE_MAP_ALL_ACCESS, 0, 0, 0);
464 VirtualQuery(mapAddr, &memInfo, sizeof(memInfo));
465 mapAddr = VirtualAlloc(mapAddr, memInfo.RegionSize, MEM_COMMIT, PAGE_READWRITE);
466 return mapAddr;
467}
468
469int shmdt(const void *shmaddr)
470{
471 return !UnmapViewOfFile(shmaddr);
472}
473
474int shmctl(int shmid, int cmd, struct shmid_ds *buf)
475{
476 if (cmd == IPC_RMID) {
477 fileMappings[shmid] = INVALID_HANDLE_VALUE;
478 return 0;
479 } else {
480 log_err("%s is not implemented\n", __func__);
481 }
482 return (-1);
483}
484
485int setuid(uid_t uid)
486{
487 log_err("%s is not implemented\n", __func__);
488 errno = ENOSYS;
489 return (-1);
490}
491
492int setgid(gid_t gid)
493{
494 log_err("%s is not implemented\n", __func__);
495 errno = ENOSYS;
496 return (-1);
497}
498
499int nice(int incr)
500{
501 if (incr != 0) {
502 errno = EINVAL;
503 return -1;
504 }
505
506 return 0;
507}
508
509int getrusage(int who, struct rusage *r_usage)
510{
9576f613 511 const uint64_t SECONDS_BETWEEN_1601_AND_1970 = 11644473600;
9277ec14
BC
512 FILETIME cTime, eTime, kTime, uTime;
513 time_t time;
514
515 memset(r_usage, 0, sizeof(*r_usage));
516
517 HANDLE hProcess = GetCurrentProcess();
518 GetProcessTimes(hProcess, &cTime, &eTime, &kTime, &uTime);
9576f613 519 time = ((uint64_t)uTime.dwHighDateTime << 32) + uTime.dwLowDateTime;
9277ec14
BC
520 /* Divide by 10,000,000 to get the number of seconds and move the epoch from
521 * 1601 to 1970 */
522 time = (time_t)(((time)/10000000) - SECONDS_BETWEEN_1601_AND_1970);
523 r_usage->ru_utime.tv_sec = time;
524 /* getrusage() doesn't care about anything other than seconds, so set tv_usec to 0 */
525 r_usage->ru_utime.tv_usec = 0;
9576f613 526 time = ((uint64_t)kTime.dwHighDateTime << 32) + kTime.dwLowDateTime;
9277ec14
BC
527 /* Divide by 10,000,000 to get the number of seconds and move the epoch from
528 * 1601 to 1970 */
529 time = (time_t)(((time)/10000000) - SECONDS_BETWEEN_1601_AND_1970);
530 r_usage->ru_stime.tv_sec = time;
531 r_usage->ru_stime.tv_usec = 0;
532 return 0;
533}
534
535int posix_madvise(void *addr, size_t len, int advice)
536{
537 log_err("%s is not implemented\n", __func__);
538 return ENOSYS;
539}
540
fc0b830f 541/* Windows doesn't support advice for memory pages. Just ignore it. */
9277ec14
BC
542int msync(void *addr, size_t len, int flags)
543{
9277ec14
BC
544 errno = ENOSYS;
545 return -1;
546}
547
548int fdatasync(int fildes)
549{
550 return fsync(fildes);
551}
552
553ssize_t pwrite(int fildes, const void *buf, size_t nbyte,
554 off_t offset)
555{
9576f613
BC
556 int64_t pos = _telli64(fildes);
557 ssize_t len = _write(fildes, buf, nbyte);
558 _lseeki64(fildes, pos, SEEK_SET);
9277ec14
BC
559 return len;
560}
561
562ssize_t pread(int fildes, void *buf, size_t nbyte, off_t offset)
563{
9576f613 564 int64_t pos = _telli64(fildes);
9277ec14 565 ssize_t len = read(fildes, buf, nbyte);
9576f613 566 _lseeki64(fildes, pos, SEEK_SET);
9277ec14
BC
567 return len;
568}
569
570ssize_t readv(int fildes, const struct iovec *iov, int iovcnt)
571{
572 log_err("%s is not implemented\n", __func__);
573 errno = ENOSYS;
574 return (-1);
575}
576
577ssize_t writev(int fildes, const struct iovec *iov, int iovcnt)
578{
579 log_err("%s is not implemented\n", __func__);
580 errno = ENOSYS;
581 return (-1);
582}
583
584long long strtoll(const char *restrict str, char **restrict endptr,
585 int base)
586{
587 return _strtoi64(str, endptr, base);
588}
589
590char *strsep(char **stringp, const char *delim)
591{
592 char *orig = *stringp;
593 BOOL gotMatch = FALSE;
594 int i = 0;
595 int j = 0;
596
597 if (*stringp == NULL)
598 return NULL;
599
600 while ((*stringp)[i] != '\0') {
601 j = 0;
602 while (delim[j] != '\0') {
603 if ((*stringp)[i] == delim[j]) {
604 gotMatch = TRUE;
605 (*stringp)[i] = '\0';
606 *stringp = *stringp + i + 1;
607 break;
608 }
609 j++;
610 }
611 if (gotMatch)
612 break;
613
614 i++;
615 }
616
617 if (!gotMatch)
618 *stringp = NULL;
619
620 return orig;
621}
622
623int poll(struct pollfd fds[], nfds_t nfds, int timeout)
624{
625 struct timeval tv;
626 struct timeval *to = NULL;
627 fd_set readfds, writefds, exceptfds;
628 int i;
629 int rc;
630
631 if (timeout != -1)
f9a58c2a 632 to = &tv;
9277ec14
BC
633
634 to->tv_sec = timeout / 1000;
635 to->tv_usec = (timeout % 1000) * 1000;
636
637 FD_ZERO(&readfds);
638 FD_ZERO(&writefds);
639 FD_ZERO(&exceptfds);
640
641 for (i = 0; i < nfds; i++)
642 {
643 if (fds[i].fd < 0) {
644 fds[i].revents = 0;
645 continue;
646 }
647
648 if (fds[i].events & POLLIN)
649 FD_SET(fds[i].fd, &readfds);
650
651 if (fds[i].events & POLLOUT)
652 FD_SET(fds[i].fd, &writefds);
653
f9a58c2a 654 FD_SET(fds[i].fd, &exceptfds);
9277ec14
BC
655 }
656
657 rc = select(nfds, &readfds, &writefds, &exceptfds, to);
658
659 if (rc != SOCKET_ERROR) {
660 for (i = 0; i < nfds; i++)
661 {
662 if (fds[i].fd < 0) {
663 continue;
664 }
665
666 if ((fds[i].events & POLLIN) && FD_ISSET(fds[i].fd, &readfds))
667 fds[i].revents |= POLLIN;
668
669 if ((fds[i].events & POLLOUT) && FD_ISSET(fds[i].fd, &writefds))
670 fds[i].revents |= POLLOUT;
671
672 if (FD_ISSET(fds[i].fd, &exceptfds))
673 fds[i].revents |= POLLHUP;
674 }
675 }
676
677 return rc;
678}
679
680int nanosleep(const struct timespec *rqtp, struct timespec *rmtp)
681{
21c75387
BC
682 struct timeval tv;
683 DWORD ms_remaining;
684 DWORD ms_total = (rqtp->tv_sec * 1000) + (rqtp->tv_nsec / 1000000.0);
685
686 if (ms_total == 0)
687 ms_total = 1;
688
689 ms_remaining = ms_total;
690
691 /* Since Sleep() can sleep for less than the requested time, add a loop to
692 ensure we only return after the requested length of time has elapsed */
693 do {
694 fio_gettime(&tv, NULL);
695 Sleep(ms_remaining);
696 ms_remaining = ms_total - mtime_since_now(&tv);
697 } while (ms_remaining > 0 && ms_remaining < ms_total);
698
699 /* this implementation will never sleep for less than the requested time */
700 if (rmtp != NULL) {
701 rmtp->tv_sec = 0;
702 rmtp->tv_nsec = 0;
703 }
704
705 return 0;
9277ec14
BC
706}
707
708DIR *opendir(const char *dirname)
709{
ad9c0fbc
BC
710 struct dirent_ctx *dc = NULL;
711
712 /* See if we can open it. If not, we'll return an error here */
713 HANDLE file = CreateFileA(dirname, 0, FILE_SHARE_READ | FILE_SHARE_WRITE, NULL, OPEN_EXISTING, FILE_FLAG_BACKUP_SEMANTICS, NULL);
714 if (file != INVALID_HANDLE_VALUE) {
715 CloseHandle(file);
716 dc = (struct dirent_ctx*)malloc(sizeof(struct dirent_ctx));
717 StringCchCopyA(dc->dirname, MAX_PATH, dirname);
718 dc->find_handle = INVALID_HANDLE_VALUE;
719 } else {
720 DWORD error = GetLastError();
721 if (error == ERROR_FILE_NOT_FOUND)
722 errno = ENOENT;
723
724 else if (error == ERROR_PATH_NOT_FOUND)
725 errno = ENOTDIR;
726 else if (error == ERROR_TOO_MANY_OPEN_FILES)
727 errno = ENFILE;
728 else if (error == ERROR_ACCESS_DENIED)
729 errno = EACCES;
730 else
731 errno = error;
732 }
733
734 return dc;
9277ec14
BC
735}
736
737int closedir(DIR *dirp)
738{
ad9c0fbc
BC
739 if (dirp != NULL && dirp->find_handle != INVALID_HANDLE_VALUE)
740 FindClose(dirp->find_handle);
741
742 free(dirp);
743 return 0;
9277ec14
BC
744}
745
746struct dirent *readdir(DIR *dirp)
747{
ad9c0fbc
BC
748 static struct dirent de;
749 WIN32_FIND_DATA find_data;
750
751 if (dirp == NULL)
752 return NULL;
753
754 if (dirp->find_handle == INVALID_HANDLE_VALUE) {
755 char search_pattern[MAX_PATH];
756 StringCchPrintfA(search_pattern, MAX_PATH, "%s\\*", dirp->dirname);
757 dirp->find_handle = FindFirstFileA(search_pattern, &find_data);
758 if (dirp->find_handle == INVALID_HANDLE_VALUE)
759 return NULL;
760 } else {
761 if (!FindNextFile(dirp->find_handle, &find_data))
762 return NULL;
763 }
764
765 StringCchCopyA(de.d_name, MAX_PATH, find_data.cFileName);
766 de.d_ino = 0;
767
768 return &de;
9277ec14
BC
769}
770
771uid_t geteuid(void)
772{
773 log_err("%s is not implemented\n", __func__);
774 errno = ENOSYS;
775 return -1;
776}
777
9277ec14
BC
778const char* inet_ntop(int af, const void *restrict src,
779 char *restrict dst, socklen_t size)
780{
781 INT status = SOCKET_ERROR;
782 WSADATA wsd;
783 char *ret = NULL;
784
785 if (af != AF_INET && af != AF_INET6) {
786 errno = EAFNOSUPPORT;
787 return NULL;
788 }
789
790 WSAStartup(MAKEWORD(2,2), &wsd);
791
792 if (af == AF_INET) {
793 struct sockaddr_in si;
794 DWORD len = size;
795 memset(&si, 0, sizeof(si));
796 si.sin_family = af;
797 memcpy(&si.sin_addr, src, sizeof(si.sin_addr));
798 status = WSAAddressToString((struct sockaddr*)&si, sizeof(si), NULL, dst, &len);
799 } else if (af == AF_INET6) {
800 struct sockaddr_in6 si6;
801 DWORD len = size;
802 memset(&si6, 0, sizeof(si6));
803 si6.sin6_family = af;
804 memcpy(&si6.sin6_addr, src, sizeof(si6.sin6_addr));
805 status = WSAAddressToString((struct sockaddr*)&si6, sizeof(si6), NULL, dst, &len);
806 }
807
808 if (status != SOCKET_ERROR)
809 ret = dst;
810 else
811 errno = ENOSPC;
812
813 WSACleanup();
814 return ret;
815}
816
817int inet_pton(int af, const char *restrict src, void *restrict dst)
818{
819 INT status = SOCKET_ERROR;
820 WSADATA wsd;
821 int ret = 1;
822
823 if (af != AF_INET && af != AF_INET6) {
824 errno = EAFNOSUPPORT;
825 return -1;
826 }
827
828 WSAStartup(MAKEWORD(2,2), &wsd);
829
830 if (af == AF_INET) {
831 struct sockaddr_in si;
832 INT len = sizeof(si);
833 memset(&si, 0, sizeof(si));
834 si.sin_family = af;
835 status = WSAStringToAddressA((char*)src, af, NULL, (struct sockaddr*)&si, &len);
836 if (status != SOCKET_ERROR)
837 memcpy(dst, &si.sin_addr, sizeof(si.sin_addr));
838 } else if (af == AF_INET6) {
839 struct sockaddr_in6 si6;
840 INT len = sizeof(si6);
841 memset(&si6, 0, sizeof(si6));
842 si6.sin6_family = af;
843 status = WSAStringToAddressA((char*)src, af, NULL, (struct sockaddr*)&si6, &len);
844 if (status != SOCKET_ERROR)
845 memcpy(dst, &si6.sin6_addr, sizeof(si6.sin6_addr));
846 }
847
848 if (status == SOCKET_ERROR) {
849 errno = ENOSPC;
850 ret = 0;
851 }
852
853 WSACleanup();
854
855 return ret;
856}