Added updates with respect to recent changes to TimedRotatingFileHandler.
[python.git] / Modules / posixmodule.c
blob6a72166f5ecab5e5266b8b5e0ab8e14df9189b62
2 /* POSIX module implementation */
4 /* This file is also used for Windows NT/MS-Win and OS/2. In that case the
5 module actually calls itself 'nt' or 'os2', not 'posix', and a few
6 functions are either unimplemented or implemented differently. The source
7 assumes that for Windows NT, the macro 'MS_WINDOWS' is defined independent
8 of the compiler used. Different compilers define their own feature
9 test macro, e.g. '__BORLANDC__' or '_MSC_VER'. For OS/2, the compiler
10 independent macro PYOS_OS2 should be defined. On OS/2 the default
11 compiler is assumed to be IBM's VisualAge C++ (VACPP). PYCC_GCC is used
12 as the compiler specific macro for the EMX port of gcc to OS/2. */
14 /* See also ../Dos/dosmodule.c */
16 #ifdef __APPLE__
18 * Step 1 of support for weak-linking a number of symbols existing on
19 * OSX 10.4 and later, see the comment in the #ifdef __APPLE__ block
20 * at the end of this file for more information.
22 # pragma weak lchown
23 # pragma weak statvfs
24 # pragma weak fstatvfs
26 #endif /* __APPLE__ */
28 #define PY_SSIZE_T_CLEAN
30 #include "Python.h"
31 #include "structseq.h"
33 #if defined(__VMS)
34 # include <unixio.h>
35 #endif /* defined(__VMS) */
37 #ifdef __cplusplus
38 extern "C" {
39 #endif
41 PyDoc_STRVAR(posix__doc__,
42 "This module provides access to operating system functionality that is\n\
43 standardized by the C Standard and the POSIX standard (a thinly\n\
44 disguised Unix interface). Refer to the library manual and\n\
45 corresponding Unix manual entries for more information on calls.");
47 #ifndef Py_USING_UNICODE
48 /* This is used in signatures of functions. */
49 #define Py_UNICODE void
50 #endif
52 #if defined(PYOS_OS2)
53 #define INCL_DOS
54 #define INCL_DOSERRORS
55 #define INCL_DOSPROCESS
56 #define INCL_NOPMAPI
57 #include <os2.h>
58 #if defined(PYCC_GCC)
59 #include <ctype.h>
60 #include <io.h>
61 #include <stdio.h>
62 #include <process.h>
63 #endif
64 #include "osdefs.h"
65 #endif
67 #ifdef HAVE_SYS_TYPES_H
68 #include <sys/types.h>
69 #endif /* HAVE_SYS_TYPES_H */
71 #ifdef HAVE_SYS_STAT_H
72 #include <sys/stat.h>
73 #endif /* HAVE_SYS_STAT_H */
75 #ifdef HAVE_SYS_WAIT_H
76 #include <sys/wait.h> /* For WNOHANG */
77 #endif
79 #ifdef HAVE_SIGNAL_H
80 #include <signal.h>
81 #endif
83 #ifdef HAVE_FCNTL_H
84 #include <fcntl.h>
85 #endif /* HAVE_FCNTL_H */
87 #ifdef HAVE_GRP_H
88 #include <grp.h>
89 #endif
91 #ifdef HAVE_SYSEXITS_H
92 #include <sysexits.h>
93 #endif /* HAVE_SYSEXITS_H */
95 #ifdef HAVE_SYS_LOADAVG_H
96 #include <sys/loadavg.h>
97 #endif
99 /* Various compilers have only certain posix functions */
100 /* XXX Gosh I wish these were all moved into pyconfig.h */
101 #if defined(PYCC_VACPP) && defined(PYOS_OS2)
102 #include <process.h>
103 #else
104 #if defined(__WATCOMC__) && !defined(__QNX__) /* Watcom compiler */
105 #define HAVE_GETCWD 1
106 #define HAVE_OPENDIR 1
107 #define HAVE_SYSTEM 1
108 #if defined(__OS2__)
109 #define HAVE_EXECV 1
110 #define HAVE_WAIT 1
111 #endif
112 #include <process.h>
113 #else
114 #ifdef __BORLANDC__ /* Borland compiler */
115 #define HAVE_EXECV 1
116 #define HAVE_GETCWD 1
117 #define HAVE_OPENDIR 1
118 #define HAVE_PIPE 1
119 #define HAVE_POPEN 1
120 #define HAVE_SYSTEM 1
121 #define HAVE_WAIT 1
122 #else
123 #ifdef _MSC_VER /* Microsoft compiler */
124 #define HAVE_GETCWD 1
125 #define HAVE_SPAWNV 1
126 #define HAVE_EXECV 1
127 #define HAVE_PIPE 1
128 #define HAVE_POPEN 1
129 #define HAVE_SYSTEM 1
130 #define HAVE_CWAIT 1
131 #define HAVE_FSYNC 1
132 #define fsync _commit
133 #else
134 #if defined(PYOS_OS2) && defined(PYCC_GCC) || defined(__VMS)
135 /* Everything needed is defined in PC/os2emx/pyconfig.h or vms/pyconfig.h */
136 #else /* all other compilers */
137 /* Unix functions that the configure script doesn't check for */
138 #define HAVE_EXECV 1
139 #define HAVE_FORK 1
140 #if defined(__USLC__) && defined(__SCO_VERSION__) /* SCO UDK Compiler */
141 #define HAVE_FORK1 1
142 #endif
143 #define HAVE_GETCWD 1
144 #define HAVE_GETEGID 1
145 #define HAVE_GETEUID 1
146 #define HAVE_GETGID 1
147 #define HAVE_GETPPID 1
148 #define HAVE_GETUID 1
149 #define HAVE_KILL 1
150 #define HAVE_OPENDIR 1
151 #define HAVE_PIPE 1
152 #ifndef __rtems__
153 #define HAVE_POPEN 1
154 #endif
155 #define HAVE_SYSTEM 1
156 #define HAVE_WAIT 1
157 #define HAVE_TTYNAME 1
158 #endif /* PYOS_OS2 && PYCC_GCC && __VMS */
159 #endif /* _MSC_VER */
160 #endif /* __BORLANDC__ */
161 #endif /* ! __WATCOMC__ || __QNX__ */
162 #endif /* ! __IBMC__ */
164 #ifndef _MSC_VER
166 #if defined(__sgi)&&_COMPILER_VERSION>=700
167 /* declare ctermid_r if compiling with MIPSPro 7.x in ANSI C mode
168 (default) */
169 extern char *ctermid_r(char *);
170 #endif
172 #ifndef HAVE_UNISTD_H
173 #if defined(PYCC_VACPP)
174 extern int mkdir(char *);
175 #else
176 #if ( defined(__WATCOMC__) || defined(_MSC_VER) ) && !defined(__QNX__)
177 extern int mkdir(const char *);
178 #else
179 extern int mkdir(const char *, mode_t);
180 #endif
181 #endif
182 #if defined(__IBMC__) || defined(__IBMCPP__)
183 extern int chdir(char *);
184 extern int rmdir(char *);
185 #else
186 extern int chdir(const char *);
187 extern int rmdir(const char *);
188 #endif
189 #ifdef __BORLANDC__
190 extern int chmod(const char *, int);
191 #else
192 extern int chmod(const char *, mode_t);
193 #endif
194 /*#ifdef HAVE_FCHMOD
195 extern int fchmod(int, mode_t);
196 #endif*/
197 /*#ifdef HAVE_LCHMOD
198 extern int lchmod(const char *, mode_t);
199 #endif*/
200 extern int chown(const char *, uid_t, gid_t);
201 extern char *getcwd(char *, int);
202 extern char *strerror(int);
203 extern int link(const char *, const char *);
204 extern int rename(const char *, const char *);
205 extern int stat(const char *, struct stat *);
206 extern int unlink(const char *);
207 extern int pclose(FILE *);
208 #ifdef HAVE_SYMLINK
209 extern int symlink(const char *, const char *);
210 #endif /* HAVE_SYMLINK */
211 #ifdef HAVE_LSTAT
212 extern int lstat(const char *, struct stat *);
213 #endif /* HAVE_LSTAT */
214 #endif /* !HAVE_UNISTD_H */
216 #endif /* !_MSC_VER */
218 #ifdef HAVE_UTIME_H
219 #include <utime.h>
220 #endif /* HAVE_UTIME_H */
222 #ifdef HAVE_SYS_UTIME_H
223 #include <sys/utime.h>
224 #define HAVE_UTIME_H /* pretend we do for the rest of this file */
225 #endif /* HAVE_SYS_UTIME_H */
227 #ifdef HAVE_SYS_TIMES_H
228 #include <sys/times.h>
229 #endif /* HAVE_SYS_TIMES_H */
231 #ifdef HAVE_SYS_PARAM_H
232 #include <sys/param.h>
233 #endif /* HAVE_SYS_PARAM_H */
235 #ifdef HAVE_SYS_UTSNAME_H
236 #include <sys/utsname.h>
237 #endif /* HAVE_SYS_UTSNAME_H */
239 #ifdef HAVE_DIRENT_H
240 #include <dirent.h>
241 #define NAMLEN(dirent) strlen((dirent)->d_name)
242 #else
243 #if defined(__WATCOMC__) && !defined(__QNX__)
244 #include <direct.h>
245 #define NAMLEN(dirent) strlen((dirent)->d_name)
246 #else
247 #define dirent direct
248 #define NAMLEN(dirent) (dirent)->d_namlen
249 #endif
250 #ifdef HAVE_SYS_NDIR_H
251 #include <sys/ndir.h>
252 #endif
253 #ifdef HAVE_SYS_DIR_H
254 #include <sys/dir.h>
255 #endif
256 #ifdef HAVE_NDIR_H
257 #include <ndir.h>
258 #endif
259 #endif
261 #ifdef _MSC_VER
262 #ifdef HAVE_DIRECT_H
263 #include <direct.h>
264 #endif
265 #ifdef HAVE_IO_H
266 #include <io.h>
267 #endif
268 #ifdef HAVE_PROCESS_H
269 #include <process.h>
270 #endif
271 #include "osdefs.h"
272 #include <windows.h>
273 #include <shellapi.h> /* for ShellExecute() */
274 #define popen _popen
275 #define pclose _pclose
276 #endif /* _MSC_VER */
278 #if defined(PYCC_VACPP) && defined(PYOS_OS2)
279 #include <io.h>
280 #endif /* OS2 */
282 #ifndef MAXPATHLEN
283 #if defined(PATH_MAX) && PATH_MAX > 1024
284 #define MAXPATHLEN PATH_MAX
285 #else
286 #define MAXPATHLEN 1024
287 #endif
288 #endif /* MAXPATHLEN */
290 #ifdef UNION_WAIT
291 /* Emulate some macros on systems that have a union instead of macros */
293 #ifndef WIFEXITED
294 #define WIFEXITED(u_wait) (!(u_wait).w_termsig && !(u_wait).w_coredump)
295 #endif
297 #ifndef WEXITSTATUS
298 #define WEXITSTATUS(u_wait) (WIFEXITED(u_wait)?((u_wait).w_retcode):-1)
299 #endif
301 #ifndef WTERMSIG
302 #define WTERMSIG(u_wait) ((u_wait).w_termsig)
303 #endif
305 #define WAIT_TYPE union wait
306 #define WAIT_STATUS_INT(s) (s.w_status)
308 #else /* !UNION_WAIT */
309 #define WAIT_TYPE int
310 #define WAIT_STATUS_INT(s) (s)
311 #endif /* UNION_WAIT */
313 /* Don't use the "_r" form if we don't need it (also, won't have a
314 prototype for it, at least on Solaris -- maybe others as well?). */
315 #if defined(HAVE_CTERMID_R) && defined(WITH_THREAD)
316 #define USE_CTERMID_R
317 #endif
319 #if defined(HAVE_TMPNAM_R) && defined(WITH_THREAD)
320 #define USE_TMPNAM_R
321 #endif
323 /* choose the appropriate stat and fstat functions and return structs */
324 #undef STAT
325 #if defined(MS_WIN64) || defined(MS_WINDOWS)
326 # define STAT win32_stat
327 # define FSTAT win32_fstat
328 # define STRUCT_STAT struct win32_stat
329 #else
330 # define STAT stat
331 # define FSTAT fstat
332 # define STRUCT_STAT struct stat
333 #endif
335 #if defined(MAJOR_IN_MKDEV)
336 #include <sys/mkdev.h>
337 #else
338 #if defined(MAJOR_IN_SYSMACROS)
339 #include <sys/sysmacros.h>
340 #endif
341 #if defined(HAVE_MKNOD) && defined(HAVE_SYS_MKDEV_H)
342 #include <sys/mkdev.h>
343 #endif
344 #endif
346 /* Return a dictionary corresponding to the POSIX environment table */
347 #ifdef WITH_NEXT_FRAMEWORK
348 /* On Darwin/MacOSX a shared library or framework has no access to
349 ** environ directly, we must obtain it with _NSGetEnviron().
351 #include <crt_externs.h>
352 static char **environ;
353 #elif !defined(_MSC_VER) && ( !defined(__WATCOMC__) || defined(__QNX__) )
354 extern char **environ;
355 #endif /* !_MSC_VER */
357 static PyObject *
358 convertenviron(void)
360 PyObject *d;
361 char **e;
362 d = PyDict_New();
363 if (d == NULL)
364 return NULL;
365 #ifdef WITH_NEXT_FRAMEWORK
366 if (environ == NULL)
367 environ = *_NSGetEnviron();
368 #endif
369 if (environ == NULL)
370 return d;
371 /* This part ignores errors */
372 for (e = environ; *e != NULL; e++) {
373 PyObject *k;
374 PyObject *v;
375 char *p = strchr(*e, '=');
376 if (p == NULL)
377 continue;
378 k = PyString_FromStringAndSize(*e, (int)(p-*e));
379 if (k == NULL) {
380 PyErr_Clear();
381 continue;
383 v = PyString_FromString(p+1);
384 if (v == NULL) {
385 PyErr_Clear();
386 Py_DECREF(k);
387 continue;
389 if (PyDict_GetItem(d, k) == NULL) {
390 if (PyDict_SetItem(d, k, v) != 0)
391 PyErr_Clear();
393 Py_DECREF(k);
394 Py_DECREF(v);
396 #if defined(PYOS_OS2)
398 APIRET rc;
399 char buffer[1024]; /* OS/2 Provides a Documented Max of 1024 Chars */
401 rc = DosQueryExtLIBPATH(buffer, BEGIN_LIBPATH);
402 if (rc == NO_ERROR) { /* (not a type, envname is NOT 'BEGIN_LIBPATH') */
403 PyObject *v = PyString_FromString(buffer);
404 PyDict_SetItemString(d, "BEGINLIBPATH", v);
405 Py_DECREF(v);
407 rc = DosQueryExtLIBPATH(buffer, END_LIBPATH);
408 if (rc == NO_ERROR) { /* (not a typo, envname is NOT 'END_LIBPATH') */
409 PyObject *v = PyString_FromString(buffer);
410 PyDict_SetItemString(d, "ENDLIBPATH", v);
411 Py_DECREF(v);
414 #endif
415 return d;
419 /* Set a POSIX-specific error from errno, and return NULL */
421 static PyObject *
422 posix_error(void)
424 return PyErr_SetFromErrno(PyExc_OSError);
426 static PyObject *
427 posix_error_with_filename(char* name)
429 return PyErr_SetFromErrnoWithFilename(PyExc_OSError, name);
432 #ifdef Py_WIN_WIDE_FILENAMES
433 static PyObject *
434 posix_error_with_unicode_filename(Py_UNICODE* name)
436 return PyErr_SetFromErrnoWithUnicodeFilename(PyExc_OSError, name);
438 #endif /* Py_WIN_WIDE_FILENAMES */
441 static PyObject *
442 posix_error_with_allocated_filename(char* name)
444 PyObject *rc = PyErr_SetFromErrnoWithFilename(PyExc_OSError, name);
445 PyMem_Free(name);
446 return rc;
449 #ifdef MS_WINDOWS
450 static PyObject *
451 win32_error(char* function, char* filename)
453 /* XXX We should pass the function name along in the future.
454 (_winreg.c also wants to pass the function name.)
455 This would however require an additional param to the
456 Windows error object, which is non-trivial.
458 errno = GetLastError();
459 if (filename)
460 return PyErr_SetFromWindowsErrWithFilename(errno, filename);
461 else
462 return PyErr_SetFromWindowsErr(errno);
465 #ifdef Py_WIN_WIDE_FILENAMES
466 static PyObject *
467 win32_error_unicode(char* function, Py_UNICODE* filename)
469 /* XXX - see win32_error for comments on 'function' */
470 errno = GetLastError();
471 if (filename)
472 return PyErr_SetFromWindowsErrWithUnicodeFilename(errno, filename);
473 else
474 return PyErr_SetFromWindowsErr(errno);
477 static PyObject *_PyUnicode_FromFileSystemEncodedObject(register PyObject *obj)
481 /* Function suitable for O& conversion */
482 static int
483 convert_to_unicode(PyObject *arg, void* _param)
485 PyObject **param = (PyObject**)_param;
486 if (PyUnicode_CheckExact(arg)) {
487 Py_INCREF(arg);
488 *param = arg;
490 else if (PyUnicode_Check(arg)) {
491 /* For a Unicode subtype that's not a Unicode object,
492 return a true Unicode object with the same data. */
493 *param = PyUnicode_FromUnicode(PyUnicode_AS_UNICODE(arg),
494 PyUnicode_GET_SIZE(arg));
495 return *param != NULL;
497 else
498 *param = PyUnicode_FromEncodedObject(arg,
499 Py_FileSystemDefaultEncoding,
500 "strict");
501 return (*param) != NULL;
504 #endif /* Py_WIN_WIDE_FILENAMES */
506 #endif
508 #if defined(PYOS_OS2)
509 /**********************************************************************
510 * Helper Function to Trim and Format OS/2 Messages
511 **********************************************************************/
512 static void
513 os2_formatmsg(char *msgbuf, int msglen, char *reason)
515 msgbuf[msglen] = '\0'; /* OS/2 Doesn't Guarantee a Terminator */
517 if (strlen(msgbuf) > 0) { /* If Non-Empty Msg, Trim CRLF */
518 char *lastc = &msgbuf[ strlen(msgbuf)-1 ];
520 while (lastc > msgbuf && isspace(Py_CHARMASK(*lastc)))
521 *lastc-- = '\0'; /* Trim Trailing Whitespace (CRLF) */
524 /* Add Optional Reason Text */
525 if (reason) {
526 strcat(msgbuf, " : ");
527 strcat(msgbuf, reason);
531 /**********************************************************************
532 * Decode an OS/2 Operating System Error Code
534 * A convenience function to lookup an OS/2 error code and return a
535 * text message we can use to raise a Python exception.
537 * Notes:
538 * The messages for errors returned from the OS/2 kernel reside in
539 * the file OSO001.MSG in the \OS2 directory hierarchy.
541 **********************************************************************/
542 static char *
543 os2_strerror(char *msgbuf, int msgbuflen, int errorcode, char *reason)
545 APIRET rc;
546 ULONG msglen;
548 /* Retrieve Kernel-Related Error Message from OSO001.MSG File */
549 Py_BEGIN_ALLOW_THREADS
550 rc = DosGetMessage(NULL, 0, msgbuf, msgbuflen,
551 errorcode, "oso001.msg", &msglen);
552 Py_END_ALLOW_THREADS
554 if (rc == NO_ERROR)
555 os2_formatmsg(msgbuf, msglen, reason);
556 else
557 PyOS_snprintf(msgbuf, msgbuflen,
558 "unknown OS error #%d", errorcode);
560 return msgbuf;
563 /* Set an OS/2-specific error and return NULL. OS/2 kernel
564 errors are not in a global variable e.g. 'errno' nor are
565 they congruent with posix error numbers. */
567 static PyObject * os2_error(int code)
569 char text[1024];
570 PyObject *v;
572 os2_strerror(text, sizeof(text), code, "");
574 v = Py_BuildValue("(is)", code, text);
575 if (v != NULL) {
576 PyErr_SetObject(PyExc_OSError, v);
577 Py_DECREF(v);
579 return NULL; /* Signal to Python that an Exception is Pending */
582 #endif /* OS2 */
584 /* POSIX generic methods */
586 static PyObject *
587 posix_fildes(PyObject *fdobj, int (*func)(int))
589 int fd;
590 int res;
591 fd = PyObject_AsFileDescriptor(fdobj);
592 if (fd < 0)
593 return NULL;
594 Py_BEGIN_ALLOW_THREADS
595 res = (*func)(fd);
596 Py_END_ALLOW_THREADS
597 if (res < 0)
598 return posix_error();
599 Py_INCREF(Py_None);
600 return Py_None;
603 #ifdef Py_WIN_WIDE_FILENAMES
604 static int
605 unicode_file_names(void)
607 static int canusewide = -1;
608 if (canusewide == -1) {
609 /* As per doc for ::GetVersion(), this is the correct test for
610 the Windows NT family. */
611 canusewide = (GetVersion() < 0x80000000) ? 1 : 0;
613 return canusewide;
615 #endif
617 static PyObject *
618 posix_1str(PyObject *args, char *format, int (*func)(const char*))
620 char *path1 = NULL;
621 int res;
622 if (!PyArg_ParseTuple(args, format,
623 Py_FileSystemDefaultEncoding, &path1))
624 return NULL;
625 Py_BEGIN_ALLOW_THREADS
626 res = (*func)(path1);
627 Py_END_ALLOW_THREADS
628 if (res < 0)
629 return posix_error_with_allocated_filename(path1);
630 PyMem_Free(path1);
631 Py_INCREF(Py_None);
632 return Py_None;
635 static PyObject *
636 posix_2str(PyObject *args,
637 char *format,
638 int (*func)(const char *, const char *))
640 char *path1 = NULL, *path2 = NULL;
641 int res;
642 if (!PyArg_ParseTuple(args, format,
643 Py_FileSystemDefaultEncoding, &path1,
644 Py_FileSystemDefaultEncoding, &path2))
645 return NULL;
646 Py_BEGIN_ALLOW_THREADS
647 res = (*func)(path1, path2);
648 Py_END_ALLOW_THREADS
649 PyMem_Free(path1);
650 PyMem_Free(path2);
651 if (res != 0)
652 /* XXX how to report both path1 and path2??? */
653 return posix_error();
654 Py_INCREF(Py_None);
655 return Py_None;
658 #ifdef Py_WIN_WIDE_FILENAMES
659 static PyObject*
660 win32_1str(PyObject* args, char* func,
661 char* format, BOOL (__stdcall *funcA)(LPCSTR),
662 char* wformat, BOOL (__stdcall *funcW)(LPWSTR))
664 PyObject *uni;
665 char *ansi;
666 BOOL result;
667 if (unicode_file_names()) {
668 if (!PyArg_ParseTuple(args, wformat, &uni))
669 PyErr_Clear();
670 else {
671 Py_BEGIN_ALLOW_THREADS
672 result = funcW(PyUnicode_AsUnicode(uni));
673 Py_END_ALLOW_THREADS
674 if (!result)
675 return win32_error_unicode(func, PyUnicode_AsUnicode(uni));
676 Py_INCREF(Py_None);
677 return Py_None;
680 if (!PyArg_ParseTuple(args, format, &ansi))
681 return NULL;
682 Py_BEGIN_ALLOW_THREADS
683 result = funcA(ansi);
684 Py_END_ALLOW_THREADS
685 if (!result)
686 return win32_error(func, ansi);
687 Py_INCREF(Py_None);
688 return Py_None;
692 /* This is a reimplementation of the C library's chdir function,
693 but one that produces Win32 errors instead of DOS error codes.
694 chdir is essentially a wrapper around SetCurrentDirectory; however,
695 it also needs to set "magic" environment variables indicating
696 the per-drive current directory, which are of the form =<drive>: */
697 BOOL __stdcall
698 win32_chdir(LPCSTR path)
700 char new_path[MAX_PATH+1];
701 int result;
702 char env[4] = "=x:";
704 if(!SetCurrentDirectoryA(path))
705 return FALSE;
706 result = GetCurrentDirectoryA(MAX_PATH+1, new_path);
707 if (!result)
708 return FALSE;
709 /* In the ANSI API, there should not be any paths longer
710 than MAX_PATH. */
711 assert(result <= MAX_PATH+1);
712 if (strncmp(new_path, "\\\\", 2) == 0 ||
713 strncmp(new_path, "//", 2) == 0)
714 /* UNC path, nothing to do. */
715 return TRUE;
716 env[1] = new_path[0];
717 return SetEnvironmentVariableA(env, new_path);
720 /* The Unicode version differs from the ANSI version
721 since the current directory might exceed MAX_PATH characters */
722 BOOL __stdcall
723 win32_wchdir(LPCWSTR path)
725 wchar_t _new_path[MAX_PATH+1], *new_path = _new_path;
726 int result;
727 wchar_t env[4] = L"=x:";
729 if(!SetCurrentDirectoryW(path))
730 return FALSE;
731 result = GetCurrentDirectoryW(MAX_PATH+1, new_path);
732 if (!result)
733 return FALSE;
734 if (result > MAX_PATH+1) {
735 new_path = malloc(result);
736 if (!new_path) {
737 SetLastError(ERROR_OUTOFMEMORY);
738 return FALSE;
741 if (wcsncmp(new_path, L"\\\\", 2) == 0 ||
742 wcsncmp(new_path, L"//", 2) == 0)
743 /* UNC path, nothing to do. */
744 return TRUE;
745 env[1] = new_path[0];
746 result = SetEnvironmentVariableW(env, new_path);
747 if (new_path != _new_path)
748 free(new_path);
749 return result;
751 #endif
753 #ifdef MS_WINDOWS
754 /* The CRT of Windows has a number of flaws wrt. its stat() implementation:
755 - time stamps are restricted to second resolution
756 - file modification times suffer from forth-and-back conversions between
757 UTC and local time
758 Therefore, we implement our own stat, based on the Win32 API directly.
760 #define HAVE_STAT_NSEC 1
762 struct win32_stat{
763 int st_dev;
764 __int64 st_ino;
765 unsigned short st_mode;
766 int st_nlink;
767 int st_uid;
768 int st_gid;
769 int st_rdev;
770 __int64 st_size;
771 int st_atime;
772 int st_atime_nsec;
773 int st_mtime;
774 int st_mtime_nsec;
775 int st_ctime;
776 int st_ctime_nsec;
779 static __int64 secs_between_epochs = 11644473600; /* Seconds between 1.1.1601 and 1.1.1970 */
781 static void
782 FILE_TIME_to_time_t_nsec(FILETIME *in_ptr, int *time_out, int* nsec_out)
784 /* XXX endianness. Shouldn't matter, as all Windows implementations are little-endian */
785 /* Cannot simply cast and dereference in_ptr,
786 since it might not be aligned properly */
787 __int64 in;
788 memcpy(&in, in_ptr, sizeof(in));
789 *nsec_out = (int)(in % 10000000) * 100; /* FILETIME is in units of 100 nsec. */
790 /* XXX Win32 supports time stamps past 2038; we currently don't */
791 *time_out = Py_SAFE_DOWNCAST((in / 10000000) - secs_between_epochs, __int64, int);
794 static void
795 time_t_to_FILE_TIME(int time_in, int nsec_in, FILETIME *out_ptr)
797 /* XXX endianness */
798 __int64 out;
799 out = time_in + secs_between_epochs;
800 out = out * 10000000 + nsec_in / 100;
801 memcpy(out_ptr, &out, sizeof(out));
804 /* Below, we *know* that ugo+r is 0444 */
805 #if _S_IREAD != 0400
806 #error Unsupported C library
807 #endif
808 static int
809 attributes_to_mode(DWORD attr)
811 int m = 0;
812 if (attr & FILE_ATTRIBUTE_DIRECTORY)
813 m |= _S_IFDIR | 0111; /* IFEXEC for user,group,other */
814 else
815 m |= _S_IFREG;
816 if (attr & FILE_ATTRIBUTE_READONLY)
817 m |= 0444;
818 else
819 m |= 0666;
820 return m;
823 static int
824 attribute_data_to_stat(WIN32_FILE_ATTRIBUTE_DATA *info, struct win32_stat *result)
826 memset(result, 0, sizeof(*result));
827 result->st_mode = attributes_to_mode(info->dwFileAttributes);
828 result->st_size = (((__int64)info->nFileSizeHigh)<<32) + info->nFileSizeLow;
829 FILE_TIME_to_time_t_nsec(&info->ftCreationTime, &result->st_ctime, &result->st_ctime_nsec);
830 FILE_TIME_to_time_t_nsec(&info->ftLastWriteTime, &result->st_mtime, &result->st_mtime_nsec);
831 FILE_TIME_to_time_t_nsec(&info->ftLastAccessTime, &result->st_atime, &result->st_atime_nsec);
833 return 0;
836 /* Emulate GetFileAttributesEx[AW] on Windows 95 */
837 static int checked = 0;
838 static BOOL (CALLBACK *gfaxa)(LPCSTR, GET_FILEEX_INFO_LEVELS, LPVOID);
839 static BOOL (CALLBACK *gfaxw)(LPCWSTR, GET_FILEEX_INFO_LEVELS, LPVOID);
840 static void
841 check_gfax()
843 HINSTANCE hKernel32;
844 if (checked)
845 return;
846 checked = 1;
847 hKernel32 = GetModuleHandle("KERNEL32");
848 *(FARPROC*)&gfaxa = GetProcAddress(hKernel32, "GetFileAttributesExA");
849 *(FARPROC*)&gfaxw = GetProcAddress(hKernel32, "GetFileAttributesExW");
852 static BOOL
853 attributes_from_dir(LPCSTR pszFile, LPWIN32_FILE_ATTRIBUTE_DATA pfad)
855 HANDLE hFindFile;
856 WIN32_FIND_DATAA FileData;
857 hFindFile = FindFirstFileA(pszFile, &FileData);
858 if (hFindFile == INVALID_HANDLE_VALUE)
859 return FALSE;
860 FindClose(hFindFile);
861 pfad->dwFileAttributes = FileData.dwFileAttributes;
862 pfad->ftCreationTime = FileData.ftCreationTime;
863 pfad->ftLastAccessTime = FileData.ftLastAccessTime;
864 pfad->ftLastWriteTime = FileData.ftLastWriteTime;
865 pfad->nFileSizeHigh = FileData.nFileSizeHigh;
866 pfad->nFileSizeLow = FileData.nFileSizeLow;
867 return TRUE;
870 static BOOL
871 attributes_from_dir_w(LPCWSTR pszFile, LPWIN32_FILE_ATTRIBUTE_DATA pfad)
873 HANDLE hFindFile;
874 WIN32_FIND_DATAW FileData;
875 hFindFile = FindFirstFileW(pszFile, &FileData);
876 if (hFindFile == INVALID_HANDLE_VALUE)
877 return FALSE;
878 FindClose(hFindFile);
879 pfad->dwFileAttributes = FileData.dwFileAttributes;
880 pfad->ftCreationTime = FileData.ftCreationTime;
881 pfad->ftLastAccessTime = FileData.ftLastAccessTime;
882 pfad->ftLastWriteTime = FileData.ftLastWriteTime;
883 pfad->nFileSizeHigh = FileData.nFileSizeHigh;
884 pfad->nFileSizeLow = FileData.nFileSizeLow;
885 return TRUE;
888 static BOOL WINAPI
889 Py_GetFileAttributesExA(LPCSTR pszFile,
890 GET_FILEEX_INFO_LEVELS level,
891 LPVOID pv)
893 BOOL result;
894 LPWIN32_FILE_ATTRIBUTE_DATA pfad = pv;
895 /* First try to use the system's implementation, if that is
896 available and either succeeds to gives an error other than
897 that it isn't implemented. */
898 check_gfax();
899 if (gfaxa) {
900 result = gfaxa(pszFile, level, pv);
901 if (result || GetLastError() != ERROR_CALL_NOT_IMPLEMENTED)
902 return result;
904 /* It's either not present, or not implemented.
905 Emulate using FindFirstFile. */
906 if (level != GetFileExInfoStandard) {
907 SetLastError(ERROR_INVALID_PARAMETER);
908 return FALSE;
910 /* Use GetFileAttributes to validate that the file name
911 does not contain wildcards (which FindFirstFile would
912 accept). */
913 if (GetFileAttributesA(pszFile) == 0xFFFFFFFF)
914 return FALSE;
915 return attributes_from_dir(pszFile, pfad);
918 static BOOL WINAPI
919 Py_GetFileAttributesExW(LPCWSTR pszFile,
920 GET_FILEEX_INFO_LEVELS level,
921 LPVOID pv)
923 BOOL result;
924 LPWIN32_FILE_ATTRIBUTE_DATA pfad = pv;
925 /* First try to use the system's implementation, if that is
926 available and either succeeds to gives an error other than
927 that it isn't implemented. */
928 check_gfax();
929 if (gfaxa) {
930 result = gfaxw(pszFile, level, pv);
931 if (result || GetLastError() != ERROR_CALL_NOT_IMPLEMENTED)
932 return result;
934 /* It's either not present, or not implemented.
935 Emulate using FindFirstFile. */
936 if (level != GetFileExInfoStandard) {
937 SetLastError(ERROR_INVALID_PARAMETER);
938 return FALSE;
940 /* Use GetFileAttributes to validate that the file name
941 does not contain wildcards (which FindFirstFile would
942 accept). */
943 if (GetFileAttributesW(pszFile) == 0xFFFFFFFF)
944 return FALSE;
945 return attributes_from_dir_w(pszFile, pfad);
948 static int
949 win32_stat(const char* path, struct win32_stat *result)
951 WIN32_FILE_ATTRIBUTE_DATA info;
952 int code;
953 char *dot;
954 /* XXX not supported on Win95 and NT 3.x */
955 if (!Py_GetFileAttributesExA(path, GetFileExInfoStandard, &info)) {
956 if (GetLastError() != ERROR_SHARING_VIOLATION) {
957 /* Protocol violation: we explicitly clear errno, instead of
958 setting it to a POSIX error. Callers should use GetLastError. */
959 errno = 0;
960 return -1;
961 } else {
962 /* Could not get attributes on open file. Fall back to
963 reading the directory. */
964 if (!attributes_from_dir(path, &info)) {
965 /* Very strange. This should not fail now */
966 errno = 0;
967 return -1;
971 code = attribute_data_to_stat(&info, result);
972 if (code != 0)
973 return code;
974 /* Set S_IFEXEC if it is an .exe, .bat, ... */
975 dot = strrchr(path, '.');
976 if (dot) {
977 if (stricmp(dot, ".bat") == 0 ||
978 stricmp(dot, ".cmd") == 0 ||
979 stricmp(dot, ".exe") == 0 ||
980 stricmp(dot, ".com") == 0)
981 result->st_mode |= 0111;
983 return code;
986 static int
987 win32_wstat(const wchar_t* path, struct win32_stat *result)
989 int code;
990 const wchar_t *dot;
991 WIN32_FILE_ATTRIBUTE_DATA info;
992 /* XXX not supported on Win95 and NT 3.x */
993 if (!Py_GetFileAttributesExW(path, GetFileExInfoStandard, &info)) {
994 if (GetLastError() != ERROR_SHARING_VIOLATION) {
995 /* Protocol violation: we explicitly clear errno, instead of
996 setting it to a POSIX error. Callers should use GetLastError. */
997 errno = 0;
998 return -1;
999 } else {
1000 /* Could not get attributes on open file. Fall back to
1001 reading the directory. */
1002 if (!attributes_from_dir_w(path, &info)) {
1003 /* Very strange. This should not fail now */
1004 errno = 0;
1005 return -1;
1009 code = attribute_data_to_stat(&info, result);
1010 if (code < 0)
1011 return code;
1012 /* Set IFEXEC if it is an .exe, .bat, ... */
1013 dot = wcsrchr(path, '.');
1014 if (dot) {
1015 if (_wcsicmp(dot, L".bat") == 0 ||
1016 _wcsicmp(dot, L".cmd") == 0 ||
1017 _wcsicmp(dot, L".exe") == 0 ||
1018 _wcsicmp(dot, L".com") == 0)
1019 result->st_mode |= 0111;
1021 return code;
1024 static int
1025 win32_fstat(int file_number, struct win32_stat *result)
1027 BY_HANDLE_FILE_INFORMATION info;
1028 HANDLE h;
1029 int type;
1031 h = (HANDLE)_get_osfhandle(file_number);
1033 /* Protocol violation: we explicitly clear errno, instead of
1034 setting it to a POSIX error. Callers should use GetLastError. */
1035 errno = 0;
1037 if (h == INVALID_HANDLE_VALUE) {
1038 /* This is really a C library error (invalid file handle).
1039 We set the Win32 error to the closes one matching. */
1040 SetLastError(ERROR_INVALID_HANDLE);
1041 return -1;
1043 memset(result, 0, sizeof(*result));
1045 type = GetFileType(h);
1046 if (type == FILE_TYPE_UNKNOWN) {
1047 DWORD error = GetLastError();
1048 if (error != 0) {
1049 return -1;
1051 /* else: valid but unknown file */
1054 if (type != FILE_TYPE_DISK) {
1055 if (type == FILE_TYPE_CHAR)
1056 result->st_mode = _S_IFCHR;
1057 else if (type == FILE_TYPE_PIPE)
1058 result->st_mode = _S_IFIFO;
1059 return 0;
1062 if (!GetFileInformationByHandle(h, &info)) {
1063 return -1;
1066 /* similar to stat() */
1067 result->st_mode = attributes_to_mode(info.dwFileAttributes);
1068 result->st_size = (((__int64)info.nFileSizeHigh)<<32) + info.nFileSizeLow;
1069 FILE_TIME_to_time_t_nsec(&info.ftCreationTime, &result->st_ctime, &result->st_ctime_nsec);
1070 FILE_TIME_to_time_t_nsec(&info.ftLastWriteTime, &result->st_mtime, &result->st_mtime_nsec);
1071 FILE_TIME_to_time_t_nsec(&info.ftLastAccessTime, &result->st_atime, &result->st_atime_nsec);
1072 /* specific to fstat() */
1073 result->st_nlink = info.nNumberOfLinks;
1074 result->st_ino = (((__int64)info.nFileIndexHigh)<<32) + info.nFileIndexLow;
1075 return 0;
1078 #endif /* MS_WINDOWS */
1080 PyDoc_STRVAR(stat_result__doc__,
1081 "stat_result: Result from stat or lstat.\n\n\
1082 This object may be accessed either as a tuple of\n\
1083 (mode, ino, dev, nlink, uid, gid, size, atime, mtime, ctime)\n\
1084 or via the attributes st_mode, st_ino, st_dev, st_nlink, st_uid, and so on.\n\
1086 Posix/windows: If your platform supports st_blksize, st_blocks, st_rdev,\n\
1087 or st_flags, they are available as attributes only.\n\
1089 See os.stat for more information.");
1091 static PyStructSequence_Field stat_result_fields[] = {
1092 {"st_mode", "protection bits"},
1093 {"st_ino", "inode"},
1094 {"st_dev", "device"},
1095 {"st_nlink", "number of hard links"},
1096 {"st_uid", "user ID of owner"},
1097 {"st_gid", "group ID of owner"},
1098 {"st_size", "total size, in bytes"},
1099 /* The NULL is replaced with PyStructSequence_UnnamedField later. */
1100 {NULL, "integer time of last access"},
1101 {NULL, "integer time of last modification"},
1102 {NULL, "integer time of last change"},
1103 {"st_atime", "time of last access"},
1104 {"st_mtime", "time of last modification"},
1105 {"st_ctime", "time of last change"},
1106 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1107 {"st_blksize", "blocksize for filesystem I/O"},
1108 #endif
1109 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1110 {"st_blocks", "number of blocks allocated"},
1111 #endif
1112 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1113 {"st_rdev", "device type (if inode device)"},
1114 #endif
1115 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1116 {"st_flags", "user defined flags for file"},
1117 #endif
1118 #ifdef HAVE_STRUCT_STAT_ST_GEN
1119 {"st_gen", "generation number"},
1120 #endif
1121 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1122 {"st_birthtime", "time of creation"},
1123 #endif
1127 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1128 #define ST_BLKSIZE_IDX 13
1129 #else
1130 #define ST_BLKSIZE_IDX 12
1131 #endif
1133 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1134 #define ST_BLOCKS_IDX (ST_BLKSIZE_IDX+1)
1135 #else
1136 #define ST_BLOCKS_IDX ST_BLKSIZE_IDX
1137 #endif
1139 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1140 #define ST_RDEV_IDX (ST_BLOCKS_IDX+1)
1141 #else
1142 #define ST_RDEV_IDX ST_BLOCKS_IDX
1143 #endif
1145 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1146 #define ST_FLAGS_IDX (ST_RDEV_IDX+1)
1147 #else
1148 #define ST_FLAGS_IDX ST_RDEV_IDX
1149 #endif
1151 #ifdef HAVE_STRUCT_STAT_ST_GEN
1152 #define ST_GEN_IDX (ST_FLAGS_IDX+1)
1153 #else
1154 #define ST_GEN_IDX ST_FLAGS_IDX
1155 #endif
1157 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1158 #define ST_BIRTHTIME_IDX (ST_GEN_IDX+1)
1159 #else
1160 #define ST_BIRTHTIME_IDX ST_GEN_IDX
1161 #endif
1163 static PyStructSequence_Desc stat_result_desc = {
1164 "stat_result", /* name */
1165 stat_result__doc__, /* doc */
1166 stat_result_fields,
1170 PyDoc_STRVAR(statvfs_result__doc__,
1171 "statvfs_result: Result from statvfs or fstatvfs.\n\n\
1172 This object may be accessed either as a tuple of\n\
1173 (bsize, frsize, blocks, bfree, bavail, files, ffree, favail, flag, namemax),\n\
1174 or via the attributes f_bsize, f_frsize, f_blocks, f_bfree, and so on.\n\
1176 See os.statvfs for more information.");
1178 static PyStructSequence_Field statvfs_result_fields[] = {
1179 {"f_bsize", },
1180 {"f_frsize", },
1181 {"f_blocks", },
1182 {"f_bfree", },
1183 {"f_bavail", },
1184 {"f_files", },
1185 {"f_ffree", },
1186 {"f_favail", },
1187 {"f_flag", },
1188 {"f_namemax",},
1192 static PyStructSequence_Desc statvfs_result_desc = {
1193 "statvfs_result", /* name */
1194 statvfs_result__doc__, /* doc */
1195 statvfs_result_fields,
1199 static int initialized;
1200 static PyTypeObject StatResultType;
1201 static PyTypeObject StatVFSResultType;
1202 static newfunc structseq_new;
1204 static PyObject *
1205 statresult_new(PyTypeObject *type, PyObject *args, PyObject *kwds)
1207 PyStructSequence *result;
1208 int i;
1210 result = (PyStructSequence*)structseq_new(type, args, kwds);
1211 if (!result)
1212 return NULL;
1213 /* If we have been initialized from a tuple,
1214 st_?time might be set to None. Initialize it
1215 from the int slots. */
1216 for (i = 7; i <= 9; i++) {
1217 if (result->ob_item[i+3] == Py_None) {
1218 Py_DECREF(Py_None);
1219 Py_INCREF(result->ob_item[i]);
1220 result->ob_item[i+3] = result->ob_item[i];
1223 return (PyObject*)result;
1228 /* If true, st_?time is float. */
1229 static int _stat_float_times = 1;
1231 PyDoc_STRVAR(stat_float_times__doc__,
1232 "stat_float_times([newval]) -> oldval\n\n\
1233 Determine whether os.[lf]stat represents time stamps as float objects.\n\
1234 If newval is True, future calls to stat() return floats, if it is False,\n\
1235 future calls return ints. \n\
1236 If newval is omitted, return the current setting.\n");
1238 static PyObject*
1239 stat_float_times(PyObject* self, PyObject *args)
1241 int newval = -1;
1242 if (!PyArg_ParseTuple(args, "|i:stat_float_times", &newval))
1243 return NULL;
1244 if (newval == -1)
1245 /* Return old value */
1246 return PyBool_FromLong(_stat_float_times);
1247 _stat_float_times = newval;
1248 Py_INCREF(Py_None);
1249 return Py_None;
1252 static void
1253 fill_time(PyObject *v, int index, time_t sec, unsigned long nsec)
1255 PyObject *fval,*ival;
1256 #if SIZEOF_TIME_T > SIZEOF_LONG
1257 ival = PyLong_FromLongLong((PY_LONG_LONG)sec);
1258 #else
1259 ival = PyInt_FromLong((long)sec);
1260 #endif
1261 if (!ival)
1262 return;
1263 if (_stat_float_times) {
1264 fval = PyFloat_FromDouble(sec + 1e-9*nsec);
1265 } else {
1266 fval = ival;
1267 Py_INCREF(fval);
1269 PyStructSequence_SET_ITEM(v, index, ival);
1270 PyStructSequence_SET_ITEM(v, index+3, fval);
1273 /* pack a system stat C structure into the Python stat tuple
1274 (used by posix_stat() and posix_fstat()) */
1275 static PyObject*
1276 _pystat_fromstructstat(STRUCT_STAT *st)
1278 unsigned long ansec, mnsec, cnsec;
1279 PyObject *v = PyStructSequence_New(&StatResultType);
1280 if (v == NULL)
1281 return NULL;
1283 PyStructSequence_SET_ITEM(v, 0, PyInt_FromLong((long)st->st_mode));
1284 #ifdef HAVE_LARGEFILE_SUPPORT
1285 PyStructSequence_SET_ITEM(v, 1,
1286 PyLong_FromLongLong((PY_LONG_LONG)st->st_ino));
1287 #else
1288 PyStructSequence_SET_ITEM(v, 1, PyInt_FromLong((long)st->st_ino));
1289 #endif
1290 #if defined(HAVE_LONG_LONG) && !defined(MS_WINDOWS)
1291 PyStructSequence_SET_ITEM(v, 2,
1292 PyLong_FromLongLong((PY_LONG_LONG)st->st_dev));
1293 #else
1294 PyStructSequence_SET_ITEM(v, 2, PyInt_FromLong((long)st->st_dev));
1295 #endif
1296 PyStructSequence_SET_ITEM(v, 3, PyInt_FromLong((long)st->st_nlink));
1297 PyStructSequence_SET_ITEM(v, 4, PyInt_FromLong((long)st->st_uid));
1298 PyStructSequence_SET_ITEM(v, 5, PyInt_FromLong((long)st->st_gid));
1299 #ifdef HAVE_LARGEFILE_SUPPORT
1300 PyStructSequence_SET_ITEM(v, 6,
1301 PyLong_FromLongLong((PY_LONG_LONG)st->st_size));
1302 #else
1303 PyStructSequence_SET_ITEM(v, 6, PyInt_FromLong(st->st_size));
1304 #endif
1306 #if defined(HAVE_STAT_TV_NSEC)
1307 ansec = st->st_atim.tv_nsec;
1308 mnsec = st->st_mtim.tv_nsec;
1309 cnsec = st->st_ctim.tv_nsec;
1310 #elif defined(HAVE_STAT_TV_NSEC2)
1311 ansec = st->st_atimespec.tv_nsec;
1312 mnsec = st->st_mtimespec.tv_nsec;
1313 cnsec = st->st_ctimespec.tv_nsec;
1314 #elif defined(HAVE_STAT_NSEC)
1315 ansec = st->st_atime_nsec;
1316 mnsec = st->st_mtime_nsec;
1317 cnsec = st->st_ctime_nsec;
1318 #else
1319 ansec = mnsec = cnsec = 0;
1320 #endif
1321 fill_time(v, 7, st->st_atime, ansec);
1322 fill_time(v, 8, st->st_mtime, mnsec);
1323 fill_time(v, 9, st->st_ctime, cnsec);
1325 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1326 PyStructSequence_SET_ITEM(v, ST_BLKSIZE_IDX,
1327 PyInt_FromLong((long)st->st_blksize));
1328 #endif
1329 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1330 PyStructSequence_SET_ITEM(v, ST_BLOCKS_IDX,
1331 PyInt_FromLong((long)st->st_blocks));
1332 #endif
1333 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1334 PyStructSequence_SET_ITEM(v, ST_RDEV_IDX,
1335 PyInt_FromLong((long)st->st_rdev));
1336 #endif
1337 #ifdef HAVE_STRUCT_STAT_ST_GEN
1338 PyStructSequence_SET_ITEM(v, ST_GEN_IDX,
1339 PyInt_FromLong((long)st->st_gen));
1340 #endif
1341 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1343 PyObject *val;
1344 unsigned long bsec,bnsec;
1345 bsec = (long)st->st_birthtime;
1346 #ifdef HAVE_STAT_TV_NSEC2
1347 bnsec = st->st_birthtimespec.tv_nsec;
1348 #else
1349 bnsec = 0;
1350 #endif
1351 if (_stat_float_times) {
1352 val = PyFloat_FromDouble(bsec + 1e-9*bnsec);
1353 } else {
1354 val = PyInt_FromLong((long)bsec);
1356 PyStructSequence_SET_ITEM(v, ST_BIRTHTIME_IDX,
1357 val);
1359 #endif
1360 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1361 PyStructSequence_SET_ITEM(v, ST_FLAGS_IDX,
1362 PyInt_FromLong((long)st->st_flags));
1363 #endif
1365 if (PyErr_Occurred()) {
1366 Py_DECREF(v);
1367 return NULL;
1370 return v;
1373 #ifdef MS_WINDOWS
1375 /* IsUNCRoot -- test whether the supplied path is of the form \\SERVER\SHARE\,
1376 where / can be used in place of \ and the trailing slash is optional.
1377 Both SERVER and SHARE must have at least one character.
1380 #define ISSLASHA(c) ((c) == '\\' || (c) == '/')
1381 #define ISSLASHW(c) ((c) == L'\\' || (c) == L'/')
1382 #ifndef ARRAYSIZE
1383 #define ARRAYSIZE(a) (sizeof(a) / sizeof(a[0]))
1384 #endif
1386 static BOOL
1387 IsUNCRootA(char *path, int pathlen)
1389 #define ISSLASH ISSLASHA
1391 int i, share;
1393 if (pathlen < 5 || !ISSLASH(path[0]) || !ISSLASH(path[1]))
1394 /* minimum UNCRoot is \\x\y */
1395 return FALSE;
1396 for (i = 2; i < pathlen ; i++)
1397 if (ISSLASH(path[i])) break;
1398 if (i == 2 || i == pathlen)
1399 /* do not allow \\\SHARE or \\SERVER */
1400 return FALSE;
1401 share = i+1;
1402 for (i = share; i < pathlen; i++)
1403 if (ISSLASH(path[i])) break;
1404 return (i != share && (i == pathlen || i == pathlen-1));
1406 #undef ISSLASH
1409 #ifdef Py_WIN_WIDE_FILENAMES
1410 static BOOL
1411 IsUNCRootW(Py_UNICODE *path, int pathlen)
1413 #define ISSLASH ISSLASHW
1415 int i, share;
1417 if (pathlen < 5 || !ISSLASH(path[0]) || !ISSLASH(path[1]))
1418 /* minimum UNCRoot is \\x\y */
1419 return FALSE;
1420 for (i = 2; i < pathlen ; i++)
1421 if (ISSLASH(path[i])) break;
1422 if (i == 2 || i == pathlen)
1423 /* do not allow \\\SHARE or \\SERVER */
1424 return FALSE;
1425 share = i+1;
1426 for (i = share; i < pathlen; i++)
1427 if (ISSLASH(path[i])) break;
1428 return (i != share && (i == pathlen || i == pathlen-1));
1430 #undef ISSLASH
1432 #endif /* Py_WIN_WIDE_FILENAMES */
1433 #endif /* MS_WINDOWS */
1435 static PyObject *
1436 posix_do_stat(PyObject *self, PyObject *args,
1437 char *format,
1438 #ifdef __VMS
1439 int (*statfunc)(const char *, STRUCT_STAT *, ...),
1440 #else
1441 int (*statfunc)(const char *, STRUCT_STAT *),
1442 #endif
1443 char *wformat,
1444 int (*wstatfunc)(const Py_UNICODE *, STRUCT_STAT *))
1446 STRUCT_STAT st;
1447 char *path = NULL; /* pass this to stat; do not free() it */
1448 char *pathfree = NULL; /* this memory must be free'd */
1449 int res;
1450 PyObject *result;
1452 #ifdef Py_WIN_WIDE_FILENAMES
1453 /* If on wide-character-capable OS see if argument
1454 is Unicode and if so use wide API. */
1455 if (unicode_file_names()) {
1456 PyUnicodeObject *po;
1457 if (PyArg_ParseTuple(args, wformat, &po)) {
1458 Py_UNICODE *wpath = PyUnicode_AS_UNICODE(po);
1460 Py_BEGIN_ALLOW_THREADS
1461 /* PyUnicode_AS_UNICODE result OK without
1462 thread lock as it is a simple dereference. */
1463 res = wstatfunc(wpath, &st);
1464 Py_END_ALLOW_THREADS
1466 if (res != 0)
1467 return win32_error_unicode("stat", wpath);
1468 return _pystat_fromstructstat(&st);
1470 /* Drop the argument parsing error as narrow strings
1471 are also valid. */
1472 PyErr_Clear();
1474 #endif
1476 if (!PyArg_ParseTuple(args, format,
1477 Py_FileSystemDefaultEncoding, &path))
1478 return NULL;
1479 pathfree = path;
1481 Py_BEGIN_ALLOW_THREADS
1482 res = (*statfunc)(path, &st);
1483 Py_END_ALLOW_THREADS
1485 if (res != 0) {
1486 #ifdef MS_WINDOWS
1487 result = win32_error("stat", pathfree);
1488 #else
1489 result = posix_error_with_filename(pathfree);
1490 #endif
1492 else
1493 result = _pystat_fromstructstat(&st);
1495 PyMem_Free(pathfree);
1496 return result;
1499 /* POSIX methods */
1501 PyDoc_STRVAR(posix_access__doc__,
1502 "access(path, mode) -> True if granted, False otherwise\n\n\
1503 Use the real uid/gid to test for access to a path. Note that most\n\
1504 operations will use the effective uid/gid, therefore this routine can\n\
1505 be used in a suid/sgid environment to test if the invoking user has the\n\
1506 specified access to the path. The mode argument can be F_OK to test\n\
1507 existence, or the inclusive-OR of R_OK, W_OK, and X_OK.");
1509 static PyObject *
1510 posix_access(PyObject *self, PyObject *args)
1512 char *path;
1513 int mode;
1515 #ifdef Py_WIN_WIDE_FILENAMES
1516 DWORD attr;
1517 if (unicode_file_names()) {
1518 PyUnicodeObject *po;
1519 if (PyArg_ParseTuple(args, "Ui:access", &po, &mode)) {
1520 Py_BEGIN_ALLOW_THREADS
1521 /* PyUnicode_AS_UNICODE OK without thread lock as
1522 it is a simple dereference. */
1523 attr = GetFileAttributesW(PyUnicode_AS_UNICODE(po));
1524 Py_END_ALLOW_THREADS
1525 goto finish;
1527 /* Drop the argument parsing error as narrow strings
1528 are also valid. */
1529 PyErr_Clear();
1531 if (!PyArg_ParseTuple(args, "eti:access",
1532 Py_FileSystemDefaultEncoding, &path, &mode))
1533 return 0;
1534 Py_BEGIN_ALLOW_THREADS
1535 attr = GetFileAttributesA(path);
1536 Py_END_ALLOW_THREADS
1537 PyMem_Free(path);
1538 finish:
1539 if (attr == 0xFFFFFFFF)
1540 /* File does not exist, or cannot read attributes */
1541 return PyBool_FromLong(0);
1542 /* Access is possible if either write access wasn't requested, or
1543 the file isn't read-only, or if it's a directory, as there are
1544 no read-only directories on Windows. */
1545 return PyBool_FromLong(!(mode & 2)
1546 || !(attr & FILE_ATTRIBUTE_READONLY)
1547 || (attr & FILE_ATTRIBUTE_DIRECTORY));
1548 #else
1549 int res;
1550 if (!PyArg_ParseTuple(args, "eti:access",
1551 Py_FileSystemDefaultEncoding, &path, &mode))
1552 return NULL;
1553 Py_BEGIN_ALLOW_THREADS
1554 res = access(path, mode);
1555 Py_END_ALLOW_THREADS
1556 PyMem_Free(path);
1557 return PyBool_FromLong(res == 0);
1558 #endif
1561 #ifndef F_OK
1562 #define F_OK 0
1563 #endif
1564 #ifndef R_OK
1565 #define R_OK 4
1566 #endif
1567 #ifndef W_OK
1568 #define W_OK 2
1569 #endif
1570 #ifndef X_OK
1571 #define X_OK 1
1572 #endif
1574 #ifdef HAVE_TTYNAME
1575 PyDoc_STRVAR(posix_ttyname__doc__,
1576 "ttyname(fd) -> string\n\n\
1577 Return the name of the terminal device connected to 'fd'.");
1579 static PyObject *
1580 posix_ttyname(PyObject *self, PyObject *args)
1582 int id;
1583 char *ret;
1585 if (!PyArg_ParseTuple(args, "i:ttyname", &id))
1586 return NULL;
1588 #if defined(__VMS)
1589 /* file descriptor 0 only, the default input device (stdin) */
1590 if (id == 0) {
1591 ret = ttyname();
1593 else {
1594 ret = NULL;
1596 #else
1597 ret = ttyname(id);
1598 #endif
1599 if (ret == NULL)
1600 return posix_error();
1601 return PyString_FromString(ret);
1603 #endif
1605 #ifdef HAVE_CTERMID
1606 PyDoc_STRVAR(posix_ctermid__doc__,
1607 "ctermid() -> string\n\n\
1608 Return the name of the controlling terminal for this process.");
1610 static PyObject *
1611 posix_ctermid(PyObject *self, PyObject *noargs)
1613 char *ret;
1614 char buffer[L_ctermid];
1616 #ifdef USE_CTERMID_R
1617 ret = ctermid_r(buffer);
1618 #else
1619 ret = ctermid(buffer);
1620 #endif
1621 if (ret == NULL)
1622 return posix_error();
1623 return PyString_FromString(buffer);
1625 #endif
1627 PyDoc_STRVAR(posix_chdir__doc__,
1628 "chdir(path)\n\n\
1629 Change the current working directory to the specified path.");
1631 static PyObject *
1632 posix_chdir(PyObject *self, PyObject *args)
1634 #ifdef MS_WINDOWS
1635 return win32_1str(args, "chdir", "s:chdir", win32_chdir, "U:chdir", win32_wchdir);
1636 #elif defined(PYOS_OS2) && defined(PYCC_GCC)
1637 return posix_1str(args, "et:chdir", _chdir2);
1638 #elif defined(__VMS)
1639 return posix_1str(args, "et:chdir", (int (*)(const char *))chdir);
1640 #else
1641 return posix_1str(args, "et:chdir", chdir);
1642 #endif
1645 #ifdef HAVE_FCHDIR
1646 PyDoc_STRVAR(posix_fchdir__doc__,
1647 "fchdir(fildes)\n\n\
1648 Change to the directory of the given file descriptor. fildes must be\n\
1649 opened on a directory, not a file.");
1651 static PyObject *
1652 posix_fchdir(PyObject *self, PyObject *fdobj)
1654 return posix_fildes(fdobj, fchdir);
1656 #endif /* HAVE_FCHDIR */
1659 PyDoc_STRVAR(posix_chmod__doc__,
1660 "chmod(path, mode)\n\n\
1661 Change the access permissions of a file.");
1663 static PyObject *
1664 posix_chmod(PyObject *self, PyObject *args)
1666 char *path = NULL;
1667 int i;
1668 int res;
1669 #ifdef Py_WIN_WIDE_FILENAMES
1670 DWORD attr;
1671 if (unicode_file_names()) {
1672 PyUnicodeObject *po;
1673 if (PyArg_ParseTuple(args, "Ui|:chmod", &po, &i)) {
1674 Py_BEGIN_ALLOW_THREADS
1675 attr = GetFileAttributesW(PyUnicode_AS_UNICODE(po));
1676 if (attr != 0xFFFFFFFF) {
1677 if (i & _S_IWRITE)
1678 attr &= ~FILE_ATTRIBUTE_READONLY;
1679 else
1680 attr |= FILE_ATTRIBUTE_READONLY;
1681 res = SetFileAttributesW(PyUnicode_AS_UNICODE(po), attr);
1683 else
1684 res = 0;
1685 Py_END_ALLOW_THREADS
1686 if (!res)
1687 return win32_error_unicode("chmod",
1688 PyUnicode_AS_UNICODE(po));
1689 Py_INCREF(Py_None);
1690 return Py_None;
1692 /* Drop the argument parsing error as narrow strings
1693 are also valid. */
1694 PyErr_Clear();
1696 if (!PyArg_ParseTuple(args, "eti:chmod", Py_FileSystemDefaultEncoding,
1697 &path, &i))
1698 return NULL;
1699 Py_BEGIN_ALLOW_THREADS
1700 attr = GetFileAttributesA(path);
1701 if (attr != 0xFFFFFFFF) {
1702 if (i & _S_IWRITE)
1703 attr &= ~FILE_ATTRIBUTE_READONLY;
1704 else
1705 attr |= FILE_ATTRIBUTE_READONLY;
1706 res = SetFileAttributesA(path, attr);
1708 else
1709 res = 0;
1710 Py_END_ALLOW_THREADS
1711 if (!res) {
1712 win32_error("chmod", path);
1713 PyMem_Free(path);
1714 return NULL;
1716 PyMem_Free(path);
1717 Py_INCREF(Py_None);
1718 return Py_None;
1719 #else /* Py_WIN_WIDE_FILENAMES */
1720 if (!PyArg_ParseTuple(args, "eti:chmod", Py_FileSystemDefaultEncoding,
1721 &path, &i))
1722 return NULL;
1723 Py_BEGIN_ALLOW_THREADS
1724 res = chmod(path, i);
1725 Py_END_ALLOW_THREADS
1726 if (res < 0)
1727 return posix_error_with_allocated_filename(path);
1728 PyMem_Free(path);
1729 Py_INCREF(Py_None);
1730 return Py_None;
1731 #endif
1734 #ifdef HAVE_FCHMOD
1735 PyDoc_STRVAR(posix_fchmod__doc__,
1736 "fchmod(fd, mode)\n\n\
1737 Change the access permissions of the file given by file\n\
1738 descriptor fd.");
1740 static PyObject *
1741 posix_fchmod(PyObject *self, PyObject *args)
1743 int fd, mode, res;
1744 if (!PyArg_ParseTuple(args, "ii:fchmod", &fd, &mode))
1745 return NULL;
1746 Py_BEGIN_ALLOW_THREADS
1747 res = fchmod(fd, mode);
1748 Py_END_ALLOW_THREADS
1749 if (res < 0)
1750 return posix_error();
1751 Py_RETURN_NONE;
1753 #endif /* HAVE_FCHMOD */
1755 #ifdef HAVE_LCHMOD
1756 PyDoc_STRVAR(posix_lchmod__doc__,
1757 "lchmod(path, mode)\n\n\
1758 Change the access permissions of a file. If path is a symlink, this\n\
1759 affects the link itself rather than the target.");
1761 static PyObject *
1762 posix_lchmod(PyObject *self, PyObject *args)
1764 char *path = NULL;
1765 int i;
1766 int res;
1767 if (!PyArg_ParseTuple(args, "eti:lchmod", Py_FileSystemDefaultEncoding,
1768 &path, &i))
1769 return NULL;
1770 Py_BEGIN_ALLOW_THREADS
1771 res = lchmod(path, i);
1772 Py_END_ALLOW_THREADS
1773 if (res < 0)
1774 return posix_error_with_allocated_filename(path);
1775 PyMem_Free(path);
1776 Py_RETURN_NONE;
1778 #endif /* HAVE_LCHMOD */
1781 #ifdef HAVE_CHFLAGS
1782 PyDoc_STRVAR(posix_chflags__doc__,
1783 "chflags(path, flags)\n\n\
1784 Set file flags.");
1786 static PyObject *
1787 posix_chflags(PyObject *self, PyObject *args)
1789 char *path;
1790 unsigned long flags;
1791 int res;
1792 if (!PyArg_ParseTuple(args, "etk:chflags",
1793 Py_FileSystemDefaultEncoding, &path, &flags))
1794 return NULL;
1795 Py_BEGIN_ALLOW_THREADS
1796 res = chflags(path, flags);
1797 Py_END_ALLOW_THREADS
1798 if (res < 0)
1799 return posix_error_with_allocated_filename(path);
1800 PyMem_Free(path);
1801 Py_INCREF(Py_None);
1802 return Py_None;
1804 #endif /* HAVE_CHFLAGS */
1806 #ifdef HAVE_LCHFLAGS
1807 PyDoc_STRVAR(posix_lchflags__doc__,
1808 "lchflags(path, flags)\n\n\
1809 Set file flags.\n\
1810 This function will not follow symbolic links.");
1812 static PyObject *
1813 posix_lchflags(PyObject *self, PyObject *args)
1815 char *path;
1816 unsigned long flags;
1817 int res;
1818 if (!PyArg_ParseTuple(args, "etk:lchflags",
1819 Py_FileSystemDefaultEncoding, &path, &flags))
1820 return NULL;
1821 Py_BEGIN_ALLOW_THREADS
1822 res = lchflags(path, flags);
1823 Py_END_ALLOW_THREADS
1824 if (res < 0)
1825 return posix_error_with_allocated_filename(path);
1826 PyMem_Free(path);
1827 Py_INCREF(Py_None);
1828 return Py_None;
1830 #endif /* HAVE_LCHFLAGS */
1832 #ifdef HAVE_CHROOT
1833 PyDoc_STRVAR(posix_chroot__doc__,
1834 "chroot(path)\n\n\
1835 Change root directory to path.");
1837 static PyObject *
1838 posix_chroot(PyObject *self, PyObject *args)
1840 return posix_1str(args, "et:chroot", chroot);
1842 #endif
1844 #ifdef HAVE_FSYNC
1845 PyDoc_STRVAR(posix_fsync__doc__,
1846 "fsync(fildes)\n\n\
1847 force write of file with filedescriptor to disk.");
1849 static PyObject *
1850 posix_fsync(PyObject *self, PyObject *fdobj)
1852 return posix_fildes(fdobj, fsync);
1854 #endif /* HAVE_FSYNC */
1856 #ifdef HAVE_FDATASYNC
1858 #ifdef __hpux
1859 extern int fdatasync(int); /* On HP-UX, in libc but not in unistd.h */
1860 #endif
1862 PyDoc_STRVAR(posix_fdatasync__doc__,
1863 "fdatasync(fildes)\n\n\
1864 force write of file with filedescriptor to disk.\n\
1865 does not force update of metadata.");
1867 static PyObject *
1868 posix_fdatasync(PyObject *self, PyObject *fdobj)
1870 return posix_fildes(fdobj, fdatasync);
1872 #endif /* HAVE_FDATASYNC */
1875 #ifdef HAVE_CHOWN
1876 PyDoc_STRVAR(posix_chown__doc__,
1877 "chown(path, uid, gid)\n\n\
1878 Change the owner and group id of path to the numeric uid and gid.");
1880 static PyObject *
1881 posix_chown(PyObject *self, PyObject *args)
1883 char *path = NULL;
1884 long uid, gid;
1885 int res;
1886 if (!PyArg_ParseTuple(args, "etll:chown",
1887 Py_FileSystemDefaultEncoding, &path,
1888 &uid, &gid))
1889 return NULL;
1890 Py_BEGIN_ALLOW_THREADS
1891 res = chown(path, (uid_t) uid, (gid_t) gid);
1892 Py_END_ALLOW_THREADS
1893 if (res < 0)
1894 return posix_error_with_allocated_filename(path);
1895 PyMem_Free(path);
1896 Py_INCREF(Py_None);
1897 return Py_None;
1899 #endif /* HAVE_CHOWN */
1901 #ifdef HAVE_FCHOWN
1902 PyDoc_STRVAR(posix_fchown__doc__,
1903 "fchown(fd, uid, gid)\n\n\
1904 Change the owner and group id of the file given by file descriptor\n\
1905 fd to the numeric uid and gid.");
1907 static PyObject *
1908 posix_fchown(PyObject *self, PyObject *args)
1910 int fd, uid, gid;
1911 int res;
1912 if (!PyArg_ParseTuple(args, "iii:chown", &fd, &uid, &gid))
1913 return NULL;
1914 Py_BEGIN_ALLOW_THREADS
1915 res = fchown(fd, (uid_t) uid, (gid_t) gid);
1916 Py_END_ALLOW_THREADS
1917 if (res < 0)
1918 return posix_error();
1919 Py_RETURN_NONE;
1921 #endif /* HAVE_FCHOWN */
1923 #ifdef HAVE_LCHOWN
1924 PyDoc_STRVAR(posix_lchown__doc__,
1925 "lchown(path, uid, gid)\n\n\
1926 Change the owner and group id of path to the numeric uid and gid.\n\
1927 This function will not follow symbolic links.");
1929 static PyObject *
1930 posix_lchown(PyObject *self, PyObject *args)
1932 char *path = NULL;
1933 int uid, gid;
1934 int res;
1935 if (!PyArg_ParseTuple(args, "etii:lchown",
1936 Py_FileSystemDefaultEncoding, &path,
1937 &uid, &gid))
1938 return NULL;
1939 Py_BEGIN_ALLOW_THREADS
1940 res = lchown(path, (uid_t) uid, (gid_t) gid);
1941 Py_END_ALLOW_THREADS
1942 if (res < 0)
1943 return posix_error_with_allocated_filename(path);
1944 PyMem_Free(path);
1945 Py_INCREF(Py_None);
1946 return Py_None;
1948 #endif /* HAVE_LCHOWN */
1951 #ifdef HAVE_GETCWD
1952 PyDoc_STRVAR(posix_getcwd__doc__,
1953 "getcwd() -> path\n\n\
1954 Return a string representing the current working directory.");
1956 static PyObject *
1957 posix_getcwd(PyObject *self, PyObject *noargs)
1959 char buf[1026];
1960 char *res;
1962 Py_BEGIN_ALLOW_THREADS
1963 #if defined(PYOS_OS2) && defined(PYCC_GCC)
1964 res = _getcwd2(buf, sizeof buf);
1965 #else
1966 res = getcwd(buf, sizeof buf);
1967 #endif
1968 Py_END_ALLOW_THREADS
1969 if (res == NULL)
1970 return posix_error();
1971 return PyString_FromString(buf);
1974 #ifdef Py_USING_UNICODE
1975 PyDoc_STRVAR(posix_getcwdu__doc__,
1976 "getcwdu() -> path\n\n\
1977 Return a unicode string representing the current working directory.");
1979 static PyObject *
1980 posix_getcwdu(PyObject *self, PyObject *noargs)
1982 char buf[1026];
1983 char *res;
1985 #ifdef Py_WIN_WIDE_FILENAMES
1986 DWORD len;
1987 if (unicode_file_names()) {
1988 wchar_t wbuf[1026];
1989 wchar_t *wbuf2 = wbuf;
1990 PyObject *resobj;
1991 Py_BEGIN_ALLOW_THREADS
1992 len = GetCurrentDirectoryW(sizeof wbuf/ sizeof wbuf[0], wbuf);
1993 /* If the buffer is large enough, len does not include the
1994 terminating \0. If the buffer is too small, len includes
1995 the space needed for the terminator. */
1996 if (len >= sizeof wbuf/ sizeof wbuf[0]) {
1997 wbuf2 = malloc(len * sizeof(wchar_t));
1998 if (wbuf2)
1999 len = GetCurrentDirectoryW(len, wbuf2);
2001 Py_END_ALLOW_THREADS
2002 if (!wbuf2) {
2003 PyErr_NoMemory();
2004 return NULL;
2006 if (!len) {
2007 if (wbuf2 != wbuf) free(wbuf2);
2008 return win32_error("getcwdu", NULL);
2010 resobj = PyUnicode_FromWideChar(wbuf2, len);
2011 if (wbuf2 != wbuf) free(wbuf2);
2012 return resobj;
2014 #endif
2016 Py_BEGIN_ALLOW_THREADS
2017 #if defined(PYOS_OS2) && defined(PYCC_GCC)
2018 res = _getcwd2(buf, sizeof buf);
2019 #else
2020 res = getcwd(buf, sizeof buf);
2021 #endif
2022 Py_END_ALLOW_THREADS
2023 if (res == NULL)
2024 return posix_error();
2025 return PyUnicode_Decode(buf, strlen(buf), Py_FileSystemDefaultEncoding,"strict");
2027 #endif
2028 #endif
2031 #ifdef HAVE_LINK
2032 PyDoc_STRVAR(posix_link__doc__,
2033 "link(src, dst)\n\n\
2034 Create a hard link to a file.");
2036 static PyObject *
2037 posix_link(PyObject *self, PyObject *args)
2039 return posix_2str(args, "etet:link", link);
2041 #endif /* HAVE_LINK */
2044 PyDoc_STRVAR(posix_listdir__doc__,
2045 "listdir(path) -> list_of_strings\n\n\
2046 Return a list containing the names of the entries in the directory.\n\
2048 path: path of directory to list\n\
2050 The list is in arbitrary order. It does not include the special\n\
2051 entries '.' and '..' even if they are present in the directory.");
2053 static PyObject *
2054 posix_listdir(PyObject *self, PyObject *args)
2056 /* XXX Should redo this putting the (now four) versions of opendir
2057 in separate files instead of having them all here... */
2058 #if defined(MS_WINDOWS) && !defined(HAVE_OPENDIR)
2060 PyObject *d, *v;
2061 HANDLE hFindFile;
2062 BOOL result;
2063 WIN32_FIND_DATA FileData;
2064 char namebuf[MAX_PATH+5]; /* Overallocate for \\*.*\0 */
2065 char *bufptr = namebuf;
2066 Py_ssize_t len = sizeof(namebuf)-5; /* only claim to have space for MAX_PATH */
2068 #ifdef Py_WIN_WIDE_FILENAMES
2069 /* If on wide-character-capable OS see if argument
2070 is Unicode and if so use wide API. */
2071 if (unicode_file_names()) {
2072 PyObject *po;
2073 if (PyArg_ParseTuple(args, "U:listdir", &po)) {
2074 WIN32_FIND_DATAW wFileData;
2075 Py_UNICODE *wnamebuf;
2076 Py_UNICODE wch;
2077 /* Overallocate for \\*.*\0 */
2078 len = PyUnicode_GET_SIZE(po);
2079 wnamebuf = malloc((len + 5) * sizeof(wchar_t));
2080 if (!wnamebuf) {
2081 PyErr_NoMemory();
2082 return NULL;
2084 wcscpy(wnamebuf, PyUnicode_AS_UNICODE(po));
2085 wch = len > 0 ? wnamebuf[len-1] : '\0';
2086 if (wch != L'/' && wch != L'\\' && wch != L':')
2087 wnamebuf[len++] = L'\\';
2088 wcscpy(wnamebuf + len, L"*.*");
2089 if ((d = PyList_New(0)) == NULL) {
2090 free(wnamebuf);
2091 return NULL;
2093 hFindFile = FindFirstFileW(wnamebuf, &wFileData);
2094 if (hFindFile == INVALID_HANDLE_VALUE) {
2095 int error = GetLastError();
2096 if (error == ERROR_FILE_NOT_FOUND) {
2097 free(wnamebuf);
2098 return d;
2100 Py_DECREF(d);
2101 win32_error_unicode("FindFirstFileW", wnamebuf);
2102 free(wnamebuf);
2103 return NULL;
2105 do {
2106 /* Skip over . and .. */
2107 if (wcscmp(wFileData.cFileName, L".") != 0 &&
2108 wcscmp(wFileData.cFileName, L"..") != 0) {
2109 v = PyUnicode_FromUnicode(wFileData.cFileName, wcslen(wFileData.cFileName));
2110 if (v == NULL) {
2111 Py_DECREF(d);
2112 d = NULL;
2113 break;
2115 if (PyList_Append(d, v) != 0) {
2116 Py_DECREF(v);
2117 Py_DECREF(d);
2118 d = NULL;
2119 break;
2121 Py_DECREF(v);
2123 Py_BEGIN_ALLOW_THREADS
2124 result = FindNextFileW(hFindFile, &wFileData);
2125 Py_END_ALLOW_THREADS
2126 /* FindNextFile sets error to ERROR_NO_MORE_FILES if
2127 it got to the end of the directory. */
2128 if (!result && GetLastError() != ERROR_NO_MORE_FILES) {
2129 Py_DECREF(d);
2130 win32_error_unicode("FindNextFileW", wnamebuf);
2131 FindClose(hFindFile);
2132 free(wnamebuf);
2133 return NULL;
2135 } while (result == TRUE);
2137 if (FindClose(hFindFile) == FALSE) {
2138 Py_DECREF(d);
2139 win32_error_unicode("FindClose", wnamebuf);
2140 free(wnamebuf);
2141 return NULL;
2143 free(wnamebuf);
2144 return d;
2146 /* Drop the argument parsing error as narrow strings
2147 are also valid. */
2148 PyErr_Clear();
2150 #endif
2152 if (!PyArg_ParseTuple(args, "et#:listdir",
2153 Py_FileSystemDefaultEncoding, &bufptr, &len))
2154 return NULL;
2155 if (len > 0) {
2156 char ch = namebuf[len-1];
2157 if (ch != SEP && ch != ALTSEP && ch != ':')
2158 namebuf[len++] = '/';
2160 strcpy(namebuf + len, "*.*");
2162 if ((d = PyList_New(0)) == NULL)
2163 return NULL;
2165 hFindFile = FindFirstFile(namebuf, &FileData);
2166 if (hFindFile == INVALID_HANDLE_VALUE) {
2167 int error = GetLastError();
2168 if (error == ERROR_FILE_NOT_FOUND)
2169 return d;
2170 Py_DECREF(d);
2171 return win32_error("FindFirstFile", namebuf);
2173 do {
2174 /* Skip over . and .. */
2175 if (strcmp(FileData.cFileName, ".") != 0 &&
2176 strcmp(FileData.cFileName, "..") != 0) {
2177 v = PyString_FromString(FileData.cFileName);
2178 if (v == NULL) {
2179 Py_DECREF(d);
2180 d = NULL;
2181 break;
2183 if (PyList_Append(d, v) != 0) {
2184 Py_DECREF(v);
2185 Py_DECREF(d);
2186 d = NULL;
2187 break;
2189 Py_DECREF(v);
2191 Py_BEGIN_ALLOW_THREADS
2192 result = FindNextFile(hFindFile, &FileData);
2193 Py_END_ALLOW_THREADS
2194 /* FindNextFile sets error to ERROR_NO_MORE_FILES if
2195 it got to the end of the directory. */
2196 if (!result && GetLastError() != ERROR_NO_MORE_FILES) {
2197 Py_DECREF(d);
2198 win32_error("FindNextFile", namebuf);
2199 FindClose(hFindFile);
2200 return NULL;
2202 } while (result == TRUE);
2204 if (FindClose(hFindFile) == FALSE) {
2205 Py_DECREF(d);
2206 return win32_error("FindClose", namebuf);
2209 return d;
2211 #elif defined(PYOS_OS2)
2213 #ifndef MAX_PATH
2214 #define MAX_PATH CCHMAXPATH
2215 #endif
2216 char *name, *pt;
2217 Py_ssize_t len;
2218 PyObject *d, *v;
2219 char namebuf[MAX_PATH+5];
2220 HDIR hdir = 1;
2221 ULONG srchcnt = 1;
2222 FILEFINDBUF3 ep;
2223 APIRET rc;
2225 if (!PyArg_ParseTuple(args, "t#:listdir", &name, &len))
2226 return NULL;
2227 if (len >= MAX_PATH) {
2228 PyErr_SetString(PyExc_ValueError, "path too long");
2229 return NULL;
2231 strcpy(namebuf, name);
2232 for (pt = namebuf; *pt; pt++)
2233 if (*pt == ALTSEP)
2234 *pt = SEP;
2235 if (namebuf[len-1] != SEP)
2236 namebuf[len++] = SEP;
2237 strcpy(namebuf + len, "*.*");
2239 if ((d = PyList_New(0)) == NULL)
2240 return NULL;
2242 rc = DosFindFirst(namebuf, /* Wildcard Pattern to Match */
2243 &hdir, /* Handle to Use While Search Directory */
2244 FILE_READONLY | FILE_HIDDEN | FILE_SYSTEM | FILE_DIRECTORY,
2245 &ep, sizeof(ep), /* Structure to Receive Directory Entry */
2246 &srchcnt, /* Max and Actual Count of Entries Per Iteration */
2247 FIL_STANDARD); /* Format of Entry (EAs or Not) */
2249 if (rc != NO_ERROR) {
2250 errno = ENOENT;
2251 return posix_error_with_filename(name);
2254 if (srchcnt > 0) { /* If Directory is NOT Totally Empty, */
2255 do {
2256 if (ep.achName[0] == '.'
2257 && (ep.achName[1] == '\0' || (ep.achName[1] == '.' && ep.achName[2] == '\0')))
2258 continue; /* Skip Over "." and ".." Names */
2260 strcpy(namebuf, ep.achName);
2262 /* Leave Case of Name Alone -- In Native Form */
2263 /* (Removed Forced Lowercasing Code) */
2265 v = PyString_FromString(namebuf);
2266 if (v == NULL) {
2267 Py_DECREF(d);
2268 d = NULL;
2269 break;
2271 if (PyList_Append(d, v) != 0) {
2272 Py_DECREF(v);
2273 Py_DECREF(d);
2274 d = NULL;
2275 break;
2277 Py_DECREF(v);
2278 } while (DosFindNext(hdir, &ep, sizeof(ep), &srchcnt) == NO_ERROR && srchcnt > 0);
2281 return d;
2282 #else
2284 char *name = NULL;
2285 PyObject *d, *v;
2286 DIR *dirp;
2287 struct dirent *ep;
2288 int arg_is_unicode = 1;
2290 errno = 0;
2291 if (!PyArg_ParseTuple(args, "U:listdir", &v)) {
2292 arg_is_unicode = 0;
2293 PyErr_Clear();
2295 if (!PyArg_ParseTuple(args, "et:listdir", Py_FileSystemDefaultEncoding, &name))
2296 return NULL;
2297 if ((dirp = opendir(name)) == NULL) {
2298 return posix_error_with_allocated_filename(name);
2300 if ((d = PyList_New(0)) == NULL) {
2301 closedir(dirp);
2302 PyMem_Free(name);
2303 return NULL;
2305 for (;;) {
2306 Py_BEGIN_ALLOW_THREADS
2307 ep = readdir(dirp);
2308 Py_END_ALLOW_THREADS
2309 if (ep == NULL)
2310 break;
2311 if (ep->d_name[0] == '.' &&
2312 (NAMLEN(ep) == 1 ||
2313 (ep->d_name[1] == '.' && NAMLEN(ep) == 2)))
2314 continue;
2315 v = PyString_FromStringAndSize(ep->d_name, NAMLEN(ep));
2316 if (v == NULL) {
2317 Py_DECREF(d);
2318 d = NULL;
2319 break;
2321 #ifdef Py_USING_UNICODE
2322 if (arg_is_unicode) {
2323 PyObject *w;
2325 w = PyUnicode_FromEncodedObject(v,
2326 Py_FileSystemDefaultEncoding,
2327 "strict");
2328 if (w != NULL) {
2329 Py_DECREF(v);
2330 v = w;
2332 else {
2333 /* fall back to the original byte string, as
2334 discussed in patch #683592 */
2335 PyErr_Clear();
2338 #endif
2339 if (PyList_Append(d, v) != 0) {
2340 Py_DECREF(v);
2341 Py_DECREF(d);
2342 d = NULL;
2343 break;
2345 Py_DECREF(v);
2347 if (errno != 0 && d != NULL) {
2348 /* readdir() returned NULL and set errno */
2349 closedir(dirp);
2350 Py_DECREF(d);
2351 return posix_error_with_allocated_filename(name);
2353 closedir(dirp);
2354 PyMem_Free(name);
2356 return d;
2358 #endif /* which OS */
2359 } /* end of posix_listdir */
2361 #ifdef MS_WINDOWS
2362 /* A helper function for abspath on win32 */
2363 static PyObject *
2364 posix__getfullpathname(PyObject *self, PyObject *args)
2366 /* assume encoded strings wont more than double no of chars */
2367 char inbuf[MAX_PATH*2];
2368 char *inbufp = inbuf;
2369 Py_ssize_t insize = sizeof(inbuf);
2370 char outbuf[MAX_PATH*2];
2371 char *temp;
2372 #ifdef Py_WIN_WIDE_FILENAMES
2373 if (unicode_file_names()) {
2374 PyUnicodeObject *po;
2375 if (PyArg_ParseTuple(args, "U|:_getfullpathname", &po)) {
2376 Py_UNICODE woutbuf[MAX_PATH*2];
2377 Py_UNICODE *wtemp;
2378 if (!GetFullPathNameW(PyUnicode_AS_UNICODE(po),
2379 sizeof(woutbuf)/sizeof(woutbuf[0]),
2380 woutbuf, &wtemp))
2381 return win32_error("GetFullPathName", "");
2382 return PyUnicode_FromUnicode(woutbuf, wcslen(woutbuf));
2384 /* Drop the argument parsing error as narrow strings
2385 are also valid. */
2386 PyErr_Clear();
2388 #endif
2389 if (!PyArg_ParseTuple (args, "et#:_getfullpathname",
2390 Py_FileSystemDefaultEncoding, &inbufp,
2391 &insize))
2392 return NULL;
2393 if (!GetFullPathName(inbuf, sizeof(outbuf)/sizeof(outbuf[0]),
2394 outbuf, &temp))
2395 return win32_error("GetFullPathName", inbuf);
2396 if (PyUnicode_Check(PyTuple_GetItem(args, 0))) {
2397 return PyUnicode_Decode(outbuf, strlen(outbuf),
2398 Py_FileSystemDefaultEncoding, NULL);
2400 return PyString_FromString(outbuf);
2401 } /* end of posix__getfullpathname */
2402 #endif /* MS_WINDOWS */
2404 PyDoc_STRVAR(posix_mkdir__doc__,
2405 "mkdir(path [, mode=0777])\n\n\
2406 Create a directory.");
2408 static PyObject *
2409 posix_mkdir(PyObject *self, PyObject *args)
2411 int res;
2412 char *path = NULL;
2413 int mode = 0777;
2415 #ifdef Py_WIN_WIDE_FILENAMES
2416 if (unicode_file_names()) {
2417 PyUnicodeObject *po;
2418 if (PyArg_ParseTuple(args, "U|i:mkdir", &po, &mode)) {
2419 Py_BEGIN_ALLOW_THREADS
2420 /* PyUnicode_AS_UNICODE OK without thread lock as
2421 it is a simple dereference. */
2422 res = CreateDirectoryW(PyUnicode_AS_UNICODE(po), NULL);
2423 Py_END_ALLOW_THREADS
2424 if (!res)
2425 return win32_error_unicode("mkdir", PyUnicode_AS_UNICODE(po));
2426 Py_INCREF(Py_None);
2427 return Py_None;
2429 /* Drop the argument parsing error as narrow strings
2430 are also valid. */
2431 PyErr_Clear();
2433 if (!PyArg_ParseTuple(args, "et|i:mkdir",
2434 Py_FileSystemDefaultEncoding, &path, &mode))
2435 return NULL;
2436 Py_BEGIN_ALLOW_THREADS
2437 /* PyUnicode_AS_UNICODE OK without thread lock as
2438 it is a simple dereference. */
2439 res = CreateDirectoryA(path, NULL);
2440 Py_END_ALLOW_THREADS
2441 if (!res) {
2442 win32_error("mkdir", path);
2443 PyMem_Free(path);
2444 return NULL;
2446 PyMem_Free(path);
2447 Py_INCREF(Py_None);
2448 return Py_None;
2449 #else
2451 if (!PyArg_ParseTuple(args, "et|i:mkdir",
2452 Py_FileSystemDefaultEncoding, &path, &mode))
2453 return NULL;
2454 Py_BEGIN_ALLOW_THREADS
2455 #if ( defined(__WATCOMC__) || defined(PYCC_VACPP) ) && !defined(__QNX__)
2456 res = mkdir(path);
2457 #else
2458 res = mkdir(path, mode);
2459 #endif
2460 Py_END_ALLOW_THREADS
2461 if (res < 0)
2462 return posix_error_with_allocated_filename(path);
2463 PyMem_Free(path);
2464 Py_INCREF(Py_None);
2465 return Py_None;
2466 #endif
2470 /* sys/resource.h is needed for at least: wait3(), wait4(), broken nice. */
2471 #if defined(HAVE_SYS_RESOURCE_H)
2472 #include <sys/resource.h>
2473 #endif
2476 #ifdef HAVE_NICE
2477 PyDoc_STRVAR(posix_nice__doc__,
2478 "nice(inc) -> new_priority\n\n\
2479 Decrease the priority of process by inc and return the new priority.");
2481 static PyObject *
2482 posix_nice(PyObject *self, PyObject *args)
2484 int increment, value;
2486 if (!PyArg_ParseTuple(args, "i:nice", &increment))
2487 return NULL;
2489 /* There are two flavours of 'nice': one that returns the new
2490 priority (as required by almost all standards out there) and the
2491 Linux/FreeBSD/BSDI one, which returns '0' on success and advices
2492 the use of getpriority() to get the new priority.
2494 If we are of the nice family that returns the new priority, we
2495 need to clear errno before the call, and check if errno is filled
2496 before calling posix_error() on a returnvalue of -1, because the
2497 -1 may be the actual new priority! */
2499 errno = 0;
2500 value = nice(increment);
2501 #if defined(HAVE_BROKEN_NICE) && defined(HAVE_GETPRIORITY)
2502 if (value == 0)
2503 value = getpriority(PRIO_PROCESS, 0);
2504 #endif
2505 if (value == -1 && errno != 0)
2506 /* either nice() or getpriority() returned an error */
2507 return posix_error();
2508 return PyInt_FromLong((long) value);
2510 #endif /* HAVE_NICE */
2512 PyDoc_STRVAR(posix_rename__doc__,
2513 "rename(old, new)\n\n\
2514 Rename a file or directory.");
2516 static PyObject *
2517 posix_rename(PyObject *self, PyObject *args)
2519 #ifdef MS_WINDOWS
2520 PyObject *o1, *o2;
2521 char *p1, *p2;
2522 BOOL result;
2523 if (unicode_file_names()) {
2524 if (!PyArg_ParseTuple(args, "O&O&:rename",
2525 convert_to_unicode, &o1,
2526 convert_to_unicode, &o2))
2527 PyErr_Clear();
2528 else {
2529 Py_BEGIN_ALLOW_THREADS
2530 result = MoveFileW(PyUnicode_AsUnicode(o1),
2531 PyUnicode_AsUnicode(o2));
2532 Py_END_ALLOW_THREADS
2533 Py_DECREF(o1);
2534 Py_DECREF(o2);
2535 if (!result)
2536 return win32_error("rename", NULL);
2537 Py_INCREF(Py_None);
2538 return Py_None;
2541 if (!PyArg_ParseTuple(args, "ss:rename", &p1, &p2))
2542 return NULL;
2543 Py_BEGIN_ALLOW_THREADS
2544 result = MoveFileA(p1, p2);
2545 Py_END_ALLOW_THREADS
2546 if (!result)
2547 return win32_error("rename", NULL);
2548 Py_INCREF(Py_None);
2549 return Py_None;
2550 #else
2551 return posix_2str(args, "etet:rename", rename);
2552 #endif
2556 PyDoc_STRVAR(posix_rmdir__doc__,
2557 "rmdir(path)\n\n\
2558 Remove a directory.");
2560 static PyObject *
2561 posix_rmdir(PyObject *self, PyObject *args)
2563 #ifdef MS_WINDOWS
2564 return win32_1str(args, "rmdir", "s:rmdir", RemoveDirectoryA, "U:rmdir", RemoveDirectoryW);
2565 #else
2566 return posix_1str(args, "et:rmdir", rmdir);
2567 #endif
2571 PyDoc_STRVAR(posix_stat__doc__,
2572 "stat(path) -> stat result\n\n\
2573 Perform a stat system call on the given path.");
2575 static PyObject *
2576 posix_stat(PyObject *self, PyObject *args)
2578 #ifdef MS_WINDOWS
2579 return posix_do_stat(self, args, "et:stat", STAT, "U:stat", win32_wstat);
2580 #else
2581 return posix_do_stat(self, args, "et:stat", STAT, NULL, NULL);
2582 #endif
2586 #ifdef HAVE_SYSTEM
2587 PyDoc_STRVAR(posix_system__doc__,
2588 "system(command) -> exit_status\n\n\
2589 Execute the command (a string) in a subshell.");
2591 static PyObject *
2592 posix_system(PyObject *self, PyObject *args)
2594 char *command;
2595 long sts;
2596 if (!PyArg_ParseTuple(args, "s:system", &command))
2597 return NULL;
2598 Py_BEGIN_ALLOW_THREADS
2599 sts = system(command);
2600 Py_END_ALLOW_THREADS
2601 return PyInt_FromLong(sts);
2603 #endif
2606 PyDoc_STRVAR(posix_umask__doc__,
2607 "umask(new_mask) -> old_mask\n\n\
2608 Set the current numeric umask and return the previous umask.");
2610 static PyObject *
2611 posix_umask(PyObject *self, PyObject *args)
2613 int i;
2614 if (!PyArg_ParseTuple(args, "i:umask", &i))
2615 return NULL;
2616 i = (int)umask(i);
2617 if (i < 0)
2618 return posix_error();
2619 return PyInt_FromLong((long)i);
2623 PyDoc_STRVAR(posix_unlink__doc__,
2624 "unlink(path)\n\n\
2625 Remove a file (same as remove(path)).");
2627 PyDoc_STRVAR(posix_remove__doc__,
2628 "remove(path)\n\n\
2629 Remove a file (same as unlink(path)).");
2631 static PyObject *
2632 posix_unlink(PyObject *self, PyObject *args)
2634 #ifdef MS_WINDOWS
2635 return win32_1str(args, "remove", "s:remove", DeleteFileA, "U:remove", DeleteFileW);
2636 #else
2637 return posix_1str(args, "et:remove", unlink);
2638 #endif
2642 #ifdef HAVE_UNAME
2643 PyDoc_STRVAR(posix_uname__doc__,
2644 "uname() -> (sysname, nodename, release, version, machine)\n\n\
2645 Return a tuple identifying the current operating system.");
2647 static PyObject *
2648 posix_uname(PyObject *self, PyObject *noargs)
2650 struct utsname u;
2651 int res;
2653 Py_BEGIN_ALLOW_THREADS
2654 res = uname(&u);
2655 Py_END_ALLOW_THREADS
2656 if (res < 0)
2657 return posix_error();
2658 return Py_BuildValue("(sssss)",
2659 u.sysname,
2660 u.nodename,
2661 u.release,
2662 u.version,
2663 u.machine);
2665 #endif /* HAVE_UNAME */
2667 static int
2668 extract_time(PyObject *t, long* sec, long* usec)
2670 long intval;
2671 if (PyFloat_Check(t)) {
2672 double tval = PyFloat_AsDouble(t);
2673 PyObject *intobj = Py_TYPE(t)->tp_as_number->nb_int(t);
2674 if (!intobj)
2675 return -1;
2676 intval = PyInt_AsLong(intobj);
2677 Py_DECREF(intobj);
2678 if (intval == -1 && PyErr_Occurred())
2679 return -1;
2680 *sec = intval;
2681 *usec = (long)((tval - intval) * 1e6); /* can't exceed 1000000 */
2682 if (*usec < 0)
2683 /* If rounding gave us a negative number,
2684 truncate. */
2685 *usec = 0;
2686 return 0;
2688 intval = PyInt_AsLong(t);
2689 if (intval == -1 && PyErr_Occurred())
2690 return -1;
2691 *sec = intval;
2692 *usec = 0;
2693 return 0;
2696 PyDoc_STRVAR(posix_utime__doc__,
2697 "utime(path, (atime, mtime))\n\
2698 utime(path, None)\n\n\
2699 Set the access and modified time of the file to the given values. If the\n\
2700 second form is used, set the access and modified times to the current time.");
2702 static PyObject *
2703 posix_utime(PyObject *self, PyObject *args)
2705 #ifdef Py_WIN_WIDE_FILENAMES
2706 PyObject *arg;
2707 PyUnicodeObject *obwpath;
2708 wchar_t *wpath = NULL;
2709 char *apath = NULL;
2710 HANDLE hFile;
2711 long atimesec, mtimesec, ausec, musec;
2712 FILETIME atime, mtime;
2713 PyObject *result = NULL;
2715 if (unicode_file_names()) {
2716 if (PyArg_ParseTuple(args, "UO|:utime", &obwpath, &arg)) {
2717 wpath = PyUnicode_AS_UNICODE(obwpath);
2718 Py_BEGIN_ALLOW_THREADS
2719 hFile = CreateFileW(wpath, FILE_WRITE_ATTRIBUTES, 0,
2720 NULL, OPEN_EXISTING,
2721 FILE_FLAG_BACKUP_SEMANTICS, NULL);
2722 Py_END_ALLOW_THREADS
2723 if (hFile == INVALID_HANDLE_VALUE)
2724 return win32_error_unicode("utime", wpath);
2725 } else
2726 /* Drop the argument parsing error as narrow strings
2727 are also valid. */
2728 PyErr_Clear();
2730 if (!wpath) {
2731 if (!PyArg_ParseTuple(args, "etO:utime",
2732 Py_FileSystemDefaultEncoding, &apath, &arg))
2733 return NULL;
2734 Py_BEGIN_ALLOW_THREADS
2735 hFile = CreateFileA(apath, FILE_WRITE_ATTRIBUTES, 0,
2736 NULL, OPEN_EXISTING,
2737 FILE_FLAG_BACKUP_SEMANTICS, NULL);
2738 Py_END_ALLOW_THREADS
2739 if (hFile == INVALID_HANDLE_VALUE) {
2740 win32_error("utime", apath);
2741 PyMem_Free(apath);
2742 return NULL;
2744 PyMem_Free(apath);
2747 if (arg == Py_None) {
2748 SYSTEMTIME now;
2749 GetSystemTime(&now);
2750 if (!SystemTimeToFileTime(&now, &mtime) ||
2751 !SystemTimeToFileTime(&now, &atime)) {
2752 win32_error("utime", NULL);
2753 goto done;
2756 else if (!PyTuple_Check(arg) || PyTuple_Size(arg) != 2) {
2757 PyErr_SetString(PyExc_TypeError,
2758 "utime() arg 2 must be a tuple (atime, mtime)");
2759 goto done;
2761 else {
2762 if (extract_time(PyTuple_GET_ITEM(arg, 0),
2763 &atimesec, &ausec) == -1)
2764 goto done;
2765 time_t_to_FILE_TIME(atimesec, 1000*ausec, &atime);
2766 if (extract_time(PyTuple_GET_ITEM(arg, 1),
2767 &mtimesec, &musec) == -1)
2768 goto done;
2769 time_t_to_FILE_TIME(mtimesec, 1000*musec, &mtime);
2771 if (!SetFileTime(hFile, NULL, &atime, &mtime)) {
2772 /* Avoid putting the file name into the error here,
2773 as that may confuse the user into believing that
2774 something is wrong with the file, when it also
2775 could be the time stamp that gives a problem. */
2776 win32_error("utime", NULL);
2778 Py_INCREF(Py_None);
2779 result = Py_None;
2780 done:
2781 CloseHandle(hFile);
2782 return result;
2783 #else /* Py_WIN_WIDE_FILENAMES */
2785 char *path = NULL;
2786 long atime, mtime, ausec, musec;
2787 int res;
2788 PyObject* arg;
2790 #if defined(HAVE_UTIMES)
2791 struct timeval buf[2];
2792 #define ATIME buf[0].tv_sec
2793 #define MTIME buf[1].tv_sec
2794 #elif defined(HAVE_UTIME_H)
2795 /* XXX should define struct utimbuf instead, above */
2796 struct utimbuf buf;
2797 #define ATIME buf.actime
2798 #define MTIME buf.modtime
2799 #define UTIME_ARG &buf
2800 #else /* HAVE_UTIMES */
2801 time_t buf[2];
2802 #define ATIME buf[0]
2803 #define MTIME buf[1]
2804 #define UTIME_ARG buf
2805 #endif /* HAVE_UTIMES */
2808 if (!PyArg_ParseTuple(args, "etO:utime",
2809 Py_FileSystemDefaultEncoding, &path, &arg))
2810 return NULL;
2811 if (arg == Py_None) {
2812 /* optional time values not given */
2813 Py_BEGIN_ALLOW_THREADS
2814 res = utime(path, NULL);
2815 Py_END_ALLOW_THREADS
2817 else if (!PyTuple_Check(arg) || PyTuple_Size(arg) != 2) {
2818 PyErr_SetString(PyExc_TypeError,
2819 "utime() arg 2 must be a tuple (atime, mtime)");
2820 PyMem_Free(path);
2821 return NULL;
2823 else {
2824 if (extract_time(PyTuple_GET_ITEM(arg, 0),
2825 &atime, &ausec) == -1) {
2826 PyMem_Free(path);
2827 return NULL;
2829 if (extract_time(PyTuple_GET_ITEM(arg, 1),
2830 &mtime, &musec) == -1) {
2831 PyMem_Free(path);
2832 return NULL;
2834 ATIME = atime;
2835 MTIME = mtime;
2836 #ifdef HAVE_UTIMES
2837 buf[0].tv_usec = ausec;
2838 buf[1].tv_usec = musec;
2839 Py_BEGIN_ALLOW_THREADS
2840 res = utimes(path, buf);
2841 Py_END_ALLOW_THREADS
2842 #else
2843 Py_BEGIN_ALLOW_THREADS
2844 res = utime(path, UTIME_ARG);
2845 Py_END_ALLOW_THREADS
2846 #endif /* HAVE_UTIMES */
2848 if (res < 0) {
2849 return posix_error_with_allocated_filename(path);
2851 PyMem_Free(path);
2852 Py_INCREF(Py_None);
2853 return Py_None;
2854 #undef UTIME_ARG
2855 #undef ATIME
2856 #undef MTIME
2857 #endif /* Py_WIN_WIDE_FILENAMES */
2861 /* Process operations */
2863 PyDoc_STRVAR(posix__exit__doc__,
2864 "_exit(status)\n\n\
2865 Exit to the system with specified status, without normal exit processing.");
2867 static PyObject *
2868 posix__exit(PyObject *self, PyObject *args)
2870 int sts;
2871 if (!PyArg_ParseTuple(args, "i:_exit", &sts))
2872 return NULL;
2873 _exit(sts);
2874 return NULL; /* Make gcc -Wall happy */
2877 #if defined(HAVE_EXECV) || defined(HAVE_SPAWNV)
2878 static void
2879 free_string_array(char **array, Py_ssize_t count)
2881 Py_ssize_t i;
2882 for (i = 0; i < count; i++)
2883 PyMem_Free(array[i]);
2884 PyMem_DEL(array);
2886 #endif
2889 #ifdef HAVE_EXECV
2890 PyDoc_STRVAR(posix_execv__doc__,
2891 "execv(path, args)\n\n\
2892 Execute an executable path with arguments, replacing current process.\n\
2894 path: path of executable file\n\
2895 args: tuple or list of strings");
2897 static PyObject *
2898 posix_execv(PyObject *self, PyObject *args)
2900 char *path;
2901 PyObject *argv;
2902 char **argvlist;
2903 Py_ssize_t i, argc;
2904 PyObject *(*getitem)(PyObject *, Py_ssize_t);
2906 /* execv has two arguments: (path, argv), where
2907 argv is a list or tuple of strings. */
2909 if (!PyArg_ParseTuple(args, "etO:execv",
2910 Py_FileSystemDefaultEncoding,
2911 &path, &argv))
2912 return NULL;
2913 if (PyList_Check(argv)) {
2914 argc = PyList_Size(argv);
2915 getitem = PyList_GetItem;
2917 else if (PyTuple_Check(argv)) {
2918 argc = PyTuple_Size(argv);
2919 getitem = PyTuple_GetItem;
2921 else {
2922 PyErr_SetString(PyExc_TypeError, "execv() arg 2 must be a tuple or list");
2923 PyMem_Free(path);
2924 return NULL;
2927 argvlist = PyMem_NEW(char *, argc+1);
2928 if (argvlist == NULL) {
2929 PyMem_Free(path);
2930 return PyErr_NoMemory();
2932 for (i = 0; i < argc; i++) {
2933 if (!PyArg_Parse((*getitem)(argv, i), "et",
2934 Py_FileSystemDefaultEncoding,
2935 &argvlist[i])) {
2936 free_string_array(argvlist, i);
2937 PyErr_SetString(PyExc_TypeError,
2938 "execv() arg 2 must contain only strings");
2939 PyMem_Free(path);
2940 return NULL;
2944 argvlist[argc] = NULL;
2946 execv(path, argvlist);
2948 /* If we get here it's definitely an error */
2950 free_string_array(argvlist, argc);
2951 PyMem_Free(path);
2952 return posix_error();
2956 PyDoc_STRVAR(posix_execve__doc__,
2957 "execve(path, args, env)\n\n\
2958 Execute a path with arguments and environment, replacing current process.\n\
2960 path: path of executable file\n\
2961 args: tuple or list of arguments\n\
2962 env: dictionary of strings mapping to strings");
2964 static PyObject *
2965 posix_execve(PyObject *self, PyObject *args)
2967 char *path;
2968 PyObject *argv, *env;
2969 char **argvlist;
2970 char **envlist;
2971 PyObject *key, *val, *keys=NULL, *vals=NULL;
2972 Py_ssize_t i, pos, argc, envc;
2973 PyObject *(*getitem)(PyObject *, Py_ssize_t);
2974 Py_ssize_t lastarg = 0;
2976 /* execve has three arguments: (path, argv, env), where
2977 argv is a list or tuple of strings and env is a dictionary
2978 like posix.environ. */
2980 if (!PyArg_ParseTuple(args, "etOO:execve",
2981 Py_FileSystemDefaultEncoding,
2982 &path, &argv, &env))
2983 return NULL;
2984 if (PyList_Check(argv)) {
2985 argc = PyList_Size(argv);
2986 getitem = PyList_GetItem;
2988 else if (PyTuple_Check(argv)) {
2989 argc = PyTuple_Size(argv);
2990 getitem = PyTuple_GetItem;
2992 else {
2993 PyErr_SetString(PyExc_TypeError,
2994 "execve() arg 2 must be a tuple or list");
2995 goto fail_0;
2997 if (!PyMapping_Check(env)) {
2998 PyErr_SetString(PyExc_TypeError,
2999 "execve() arg 3 must be a mapping object");
3000 goto fail_0;
3003 argvlist = PyMem_NEW(char *, argc+1);
3004 if (argvlist == NULL) {
3005 PyErr_NoMemory();
3006 goto fail_0;
3008 for (i = 0; i < argc; i++) {
3009 if (!PyArg_Parse((*getitem)(argv, i),
3010 "et;execve() arg 2 must contain only strings",
3011 Py_FileSystemDefaultEncoding,
3012 &argvlist[i]))
3014 lastarg = i;
3015 goto fail_1;
3018 lastarg = argc;
3019 argvlist[argc] = NULL;
3021 i = PyMapping_Size(env);
3022 if (i < 0)
3023 goto fail_1;
3024 envlist = PyMem_NEW(char *, i + 1);
3025 if (envlist == NULL) {
3026 PyErr_NoMemory();
3027 goto fail_1;
3029 envc = 0;
3030 keys = PyMapping_Keys(env);
3031 vals = PyMapping_Values(env);
3032 if (!keys || !vals)
3033 goto fail_2;
3034 if (!PyList_Check(keys) || !PyList_Check(vals)) {
3035 PyErr_SetString(PyExc_TypeError,
3036 "execve(): env.keys() or env.values() is not a list");
3037 goto fail_2;
3040 for (pos = 0; pos < i; pos++) {
3041 char *p, *k, *v;
3042 size_t len;
3044 key = PyList_GetItem(keys, pos);
3045 val = PyList_GetItem(vals, pos);
3046 if (!key || !val)
3047 goto fail_2;
3049 if (!PyArg_Parse(
3050 key,
3051 "s;execve() arg 3 contains a non-string key",
3052 &k) ||
3053 !PyArg_Parse(
3054 val,
3055 "s;execve() arg 3 contains a non-string value",
3056 &v))
3058 goto fail_2;
3061 #if defined(PYOS_OS2)
3062 /* Omit Pseudo-Env Vars that Would Confuse Programs if Passed On */
3063 if (stricmp(k, "BEGINLIBPATH") != 0 && stricmp(k, "ENDLIBPATH") != 0) {
3064 #endif
3065 len = PyString_Size(key) + PyString_Size(val) + 2;
3066 p = PyMem_NEW(char, len);
3067 if (p == NULL) {
3068 PyErr_NoMemory();
3069 goto fail_2;
3071 PyOS_snprintf(p, len, "%s=%s", k, v);
3072 envlist[envc++] = p;
3073 #if defined(PYOS_OS2)
3075 #endif
3077 envlist[envc] = 0;
3079 execve(path, argvlist, envlist);
3081 /* If we get here it's definitely an error */
3083 (void) posix_error();
3085 fail_2:
3086 while (--envc >= 0)
3087 PyMem_DEL(envlist[envc]);
3088 PyMem_DEL(envlist);
3089 fail_1:
3090 free_string_array(argvlist, lastarg);
3091 Py_XDECREF(vals);
3092 Py_XDECREF(keys);
3093 fail_0:
3094 PyMem_Free(path);
3095 return NULL;
3097 #endif /* HAVE_EXECV */
3100 #ifdef HAVE_SPAWNV
3101 PyDoc_STRVAR(posix_spawnv__doc__,
3102 "spawnv(mode, path, args)\n\n\
3103 Execute the program 'path' in a new process.\n\
3105 mode: mode of process creation\n\
3106 path: path of executable file\n\
3107 args: tuple or list of strings");
3109 static PyObject *
3110 posix_spawnv(PyObject *self, PyObject *args)
3112 char *path;
3113 PyObject *argv;
3114 char **argvlist;
3115 int mode, i;
3116 Py_ssize_t argc;
3117 Py_intptr_t spawnval;
3118 PyObject *(*getitem)(PyObject *, Py_ssize_t);
3120 /* spawnv has three arguments: (mode, path, argv), where
3121 argv is a list or tuple of strings. */
3123 if (!PyArg_ParseTuple(args, "ietO:spawnv", &mode,
3124 Py_FileSystemDefaultEncoding,
3125 &path, &argv))
3126 return NULL;
3127 if (PyList_Check(argv)) {
3128 argc = PyList_Size(argv);
3129 getitem = PyList_GetItem;
3131 else if (PyTuple_Check(argv)) {
3132 argc = PyTuple_Size(argv);
3133 getitem = PyTuple_GetItem;
3135 else {
3136 PyErr_SetString(PyExc_TypeError,
3137 "spawnv() arg 2 must be a tuple or list");
3138 PyMem_Free(path);
3139 return NULL;
3142 argvlist = PyMem_NEW(char *, argc+1);
3143 if (argvlist == NULL) {
3144 PyMem_Free(path);
3145 return PyErr_NoMemory();
3147 for (i = 0; i < argc; i++) {
3148 if (!PyArg_Parse((*getitem)(argv, i), "et",
3149 Py_FileSystemDefaultEncoding,
3150 &argvlist[i])) {
3151 free_string_array(argvlist, i);
3152 PyErr_SetString(
3153 PyExc_TypeError,
3154 "spawnv() arg 2 must contain only strings");
3155 PyMem_Free(path);
3156 return NULL;
3159 argvlist[argc] = NULL;
3161 #if defined(PYOS_OS2) && defined(PYCC_GCC)
3162 Py_BEGIN_ALLOW_THREADS
3163 spawnval = spawnv(mode, path, argvlist);
3164 Py_END_ALLOW_THREADS
3165 #else
3166 if (mode == _OLD_P_OVERLAY)
3167 mode = _P_OVERLAY;
3169 Py_BEGIN_ALLOW_THREADS
3170 spawnval = _spawnv(mode, path, argvlist);
3171 Py_END_ALLOW_THREADS
3172 #endif
3174 free_string_array(argvlist, argc);
3175 PyMem_Free(path);
3177 if (spawnval == -1)
3178 return posix_error();
3179 else
3180 #if SIZEOF_LONG == SIZEOF_VOID_P
3181 return Py_BuildValue("l", (long) spawnval);
3182 #else
3183 return Py_BuildValue("L", (PY_LONG_LONG) spawnval);
3184 #endif
3188 PyDoc_STRVAR(posix_spawnve__doc__,
3189 "spawnve(mode, path, args, env)\n\n\
3190 Execute the program 'path' in a new process.\n\
3192 mode: mode of process creation\n\
3193 path: path of executable file\n\
3194 args: tuple or list of arguments\n\
3195 env: dictionary of strings mapping to strings");
3197 static PyObject *
3198 posix_spawnve(PyObject *self, PyObject *args)
3200 char *path;
3201 PyObject *argv, *env;
3202 char **argvlist;
3203 char **envlist;
3204 PyObject *key, *val, *keys=NULL, *vals=NULL, *res=NULL;
3205 int mode, pos, envc;
3206 Py_ssize_t argc, i;
3207 Py_intptr_t spawnval;
3208 PyObject *(*getitem)(PyObject *, Py_ssize_t);
3209 Py_ssize_t lastarg = 0;
3211 /* spawnve has four arguments: (mode, path, argv, env), where
3212 argv is a list or tuple of strings and env is a dictionary
3213 like posix.environ. */
3215 if (!PyArg_ParseTuple(args, "ietOO:spawnve", &mode,
3216 Py_FileSystemDefaultEncoding,
3217 &path, &argv, &env))
3218 return NULL;
3219 if (PyList_Check(argv)) {
3220 argc = PyList_Size(argv);
3221 getitem = PyList_GetItem;
3223 else if (PyTuple_Check(argv)) {
3224 argc = PyTuple_Size(argv);
3225 getitem = PyTuple_GetItem;
3227 else {
3228 PyErr_SetString(PyExc_TypeError,
3229 "spawnve() arg 2 must be a tuple or list");
3230 goto fail_0;
3232 if (!PyMapping_Check(env)) {
3233 PyErr_SetString(PyExc_TypeError,
3234 "spawnve() arg 3 must be a mapping object");
3235 goto fail_0;
3238 argvlist = PyMem_NEW(char *, argc+1);
3239 if (argvlist == NULL) {
3240 PyErr_NoMemory();
3241 goto fail_0;
3243 for (i = 0; i < argc; i++) {
3244 if (!PyArg_Parse((*getitem)(argv, i),
3245 "et;spawnve() arg 2 must contain only strings",
3246 Py_FileSystemDefaultEncoding,
3247 &argvlist[i]))
3249 lastarg = i;
3250 goto fail_1;
3253 lastarg = argc;
3254 argvlist[argc] = NULL;
3256 i = PyMapping_Size(env);
3257 if (i < 0)
3258 goto fail_1;
3259 envlist = PyMem_NEW(char *, i + 1);
3260 if (envlist == NULL) {
3261 PyErr_NoMemory();
3262 goto fail_1;
3264 envc = 0;
3265 keys = PyMapping_Keys(env);
3266 vals = PyMapping_Values(env);
3267 if (!keys || !vals)
3268 goto fail_2;
3269 if (!PyList_Check(keys) || !PyList_Check(vals)) {
3270 PyErr_SetString(PyExc_TypeError,
3271 "spawnve(): env.keys() or env.values() is not a list");
3272 goto fail_2;
3275 for (pos = 0; pos < i; pos++) {
3276 char *p, *k, *v;
3277 size_t len;
3279 key = PyList_GetItem(keys, pos);
3280 val = PyList_GetItem(vals, pos);
3281 if (!key || !val)
3282 goto fail_2;
3284 if (!PyArg_Parse(
3285 key,
3286 "s;spawnve() arg 3 contains a non-string key",
3287 &k) ||
3288 !PyArg_Parse(
3289 val,
3290 "s;spawnve() arg 3 contains a non-string value",
3291 &v))
3293 goto fail_2;
3295 len = PyString_Size(key) + PyString_Size(val) + 2;
3296 p = PyMem_NEW(char, len);
3297 if (p == NULL) {
3298 PyErr_NoMemory();
3299 goto fail_2;
3301 PyOS_snprintf(p, len, "%s=%s", k, v);
3302 envlist[envc++] = p;
3304 envlist[envc] = 0;
3306 #if defined(PYOS_OS2) && defined(PYCC_GCC)
3307 Py_BEGIN_ALLOW_THREADS
3308 spawnval = spawnve(mode, path, argvlist, envlist);
3309 Py_END_ALLOW_THREADS
3310 #else
3311 if (mode == _OLD_P_OVERLAY)
3312 mode = _P_OVERLAY;
3314 Py_BEGIN_ALLOW_THREADS
3315 spawnval = _spawnve(mode, path, argvlist, envlist);
3316 Py_END_ALLOW_THREADS
3317 #endif
3319 if (spawnval == -1)
3320 (void) posix_error();
3321 else
3322 #if SIZEOF_LONG == SIZEOF_VOID_P
3323 res = Py_BuildValue("l", (long) spawnval);
3324 #else
3325 res = Py_BuildValue("L", (PY_LONG_LONG) spawnval);
3326 #endif
3328 fail_2:
3329 while (--envc >= 0)
3330 PyMem_DEL(envlist[envc]);
3331 PyMem_DEL(envlist);
3332 fail_1:
3333 free_string_array(argvlist, lastarg);
3334 Py_XDECREF(vals);
3335 Py_XDECREF(keys);
3336 fail_0:
3337 PyMem_Free(path);
3338 return res;
3341 /* OS/2 supports spawnvp & spawnvpe natively */
3342 #if defined(PYOS_OS2)
3343 PyDoc_STRVAR(posix_spawnvp__doc__,
3344 "spawnvp(mode, file, args)\n\n\
3345 Execute the program 'file' in a new process, using the environment\n\
3346 search path to find the file.\n\
3348 mode: mode of process creation\n\
3349 file: executable file name\n\
3350 args: tuple or list of strings");
3352 static PyObject *
3353 posix_spawnvp(PyObject *self, PyObject *args)
3355 char *path;
3356 PyObject *argv;
3357 char **argvlist;
3358 int mode, i, argc;
3359 Py_intptr_t spawnval;
3360 PyObject *(*getitem)(PyObject *, Py_ssize_t);
3362 /* spawnvp has three arguments: (mode, path, argv), where
3363 argv is a list or tuple of strings. */
3365 if (!PyArg_ParseTuple(args, "ietO:spawnvp", &mode,
3366 Py_FileSystemDefaultEncoding,
3367 &path, &argv))
3368 return NULL;
3369 if (PyList_Check(argv)) {
3370 argc = PyList_Size(argv);
3371 getitem = PyList_GetItem;
3373 else if (PyTuple_Check(argv)) {
3374 argc = PyTuple_Size(argv);
3375 getitem = PyTuple_GetItem;
3377 else {
3378 PyErr_SetString(PyExc_TypeError,
3379 "spawnvp() arg 2 must be a tuple or list");
3380 PyMem_Free(path);
3381 return NULL;
3384 argvlist = PyMem_NEW(char *, argc+1);
3385 if (argvlist == NULL) {
3386 PyMem_Free(path);
3387 return PyErr_NoMemory();
3389 for (i = 0; i < argc; i++) {
3390 if (!PyArg_Parse((*getitem)(argv, i), "et",
3391 Py_FileSystemDefaultEncoding,
3392 &argvlist[i])) {
3393 free_string_array(argvlist, i);
3394 PyErr_SetString(
3395 PyExc_TypeError,
3396 "spawnvp() arg 2 must contain only strings");
3397 PyMem_Free(path);
3398 return NULL;
3401 argvlist[argc] = NULL;
3403 Py_BEGIN_ALLOW_THREADS
3404 #if defined(PYCC_GCC)
3405 spawnval = spawnvp(mode, path, argvlist);
3406 #else
3407 spawnval = _spawnvp(mode, path, argvlist);
3408 #endif
3409 Py_END_ALLOW_THREADS
3411 free_string_array(argvlist, argc);
3412 PyMem_Free(path);
3414 if (spawnval == -1)
3415 return posix_error();
3416 else
3417 return Py_BuildValue("l", (long) spawnval);
3421 PyDoc_STRVAR(posix_spawnvpe__doc__,
3422 "spawnvpe(mode, file, args, env)\n\n\
3423 Execute the program 'file' in a new process, using the environment\n\
3424 search path to find the file.\n\
3426 mode: mode of process creation\n\
3427 file: executable file name\n\
3428 args: tuple or list of arguments\n\
3429 env: dictionary of strings mapping to strings");
3431 static PyObject *
3432 posix_spawnvpe(PyObject *self, PyObject *args)
3434 char *path;
3435 PyObject *argv, *env;
3436 char **argvlist;
3437 char **envlist;
3438 PyObject *key, *val, *keys=NULL, *vals=NULL, *res=NULL;
3439 int mode, i, pos, argc, envc;
3440 Py_intptr_t spawnval;
3441 PyObject *(*getitem)(PyObject *, Py_ssize_t);
3442 int lastarg = 0;
3444 /* spawnvpe has four arguments: (mode, path, argv, env), where
3445 argv is a list or tuple of strings and env is a dictionary
3446 like posix.environ. */
3448 if (!PyArg_ParseTuple(args, "ietOO:spawnvpe", &mode,
3449 Py_FileSystemDefaultEncoding,
3450 &path, &argv, &env))
3451 return NULL;
3452 if (PyList_Check(argv)) {
3453 argc = PyList_Size(argv);
3454 getitem = PyList_GetItem;
3456 else if (PyTuple_Check(argv)) {
3457 argc = PyTuple_Size(argv);
3458 getitem = PyTuple_GetItem;
3460 else {
3461 PyErr_SetString(PyExc_TypeError,
3462 "spawnvpe() arg 2 must be a tuple or list");
3463 goto fail_0;
3465 if (!PyMapping_Check(env)) {
3466 PyErr_SetString(PyExc_TypeError,
3467 "spawnvpe() arg 3 must be a mapping object");
3468 goto fail_0;
3471 argvlist = PyMem_NEW(char *, argc+1);
3472 if (argvlist == NULL) {
3473 PyErr_NoMemory();
3474 goto fail_0;
3476 for (i = 0; i < argc; i++) {
3477 if (!PyArg_Parse((*getitem)(argv, i),
3478 "et;spawnvpe() arg 2 must contain only strings",
3479 Py_FileSystemDefaultEncoding,
3480 &argvlist[i]))
3482 lastarg = i;
3483 goto fail_1;
3486 lastarg = argc;
3487 argvlist[argc] = NULL;
3489 i = PyMapping_Size(env);
3490 if (i < 0)
3491 goto fail_1;
3492 envlist = PyMem_NEW(char *, i + 1);
3493 if (envlist == NULL) {
3494 PyErr_NoMemory();
3495 goto fail_1;
3497 envc = 0;
3498 keys = PyMapping_Keys(env);
3499 vals = PyMapping_Values(env);
3500 if (!keys || !vals)
3501 goto fail_2;
3502 if (!PyList_Check(keys) || !PyList_Check(vals)) {
3503 PyErr_SetString(PyExc_TypeError,
3504 "spawnvpe(): env.keys() or env.values() is not a list");
3505 goto fail_2;
3508 for (pos = 0; pos < i; pos++) {
3509 char *p, *k, *v;
3510 size_t len;
3512 key = PyList_GetItem(keys, pos);
3513 val = PyList_GetItem(vals, pos);
3514 if (!key || !val)
3515 goto fail_2;
3517 if (!PyArg_Parse(
3518 key,
3519 "s;spawnvpe() arg 3 contains a non-string key",
3520 &k) ||
3521 !PyArg_Parse(
3522 val,
3523 "s;spawnvpe() arg 3 contains a non-string value",
3524 &v))
3526 goto fail_2;
3528 len = PyString_Size(key) + PyString_Size(val) + 2;
3529 p = PyMem_NEW(char, len);
3530 if (p == NULL) {
3531 PyErr_NoMemory();
3532 goto fail_2;
3534 PyOS_snprintf(p, len, "%s=%s", k, v);
3535 envlist[envc++] = p;
3537 envlist[envc] = 0;
3539 Py_BEGIN_ALLOW_THREADS
3540 #if defined(PYCC_GCC)
3541 spawnval = spawnvpe(mode, path, argvlist, envlist);
3542 #else
3543 spawnval = _spawnvpe(mode, path, argvlist, envlist);
3544 #endif
3545 Py_END_ALLOW_THREADS
3547 if (spawnval == -1)
3548 (void) posix_error();
3549 else
3550 res = Py_BuildValue("l", (long) spawnval);
3552 fail_2:
3553 while (--envc >= 0)
3554 PyMem_DEL(envlist[envc]);
3555 PyMem_DEL(envlist);
3556 fail_1:
3557 free_string_array(argvlist, lastarg);
3558 Py_XDECREF(vals);
3559 Py_XDECREF(keys);
3560 fail_0:
3561 PyMem_Free(path);
3562 return res;
3564 #endif /* PYOS_OS2 */
3565 #endif /* HAVE_SPAWNV */
3568 #ifdef HAVE_FORK1
3569 PyDoc_STRVAR(posix_fork1__doc__,
3570 "fork1() -> pid\n\n\
3571 Fork a child process with a single multiplexed (i.e., not bound) thread.\n\
3573 Return 0 to child process and PID of child to parent process.");
3575 static PyObject *
3576 posix_fork1(PyObject *self, PyObject *noargs)
3578 pid_t pid = fork1();
3579 if (pid == -1)
3580 return posix_error();
3581 PyOS_AfterFork();
3582 return PyInt_FromLong(pid);
3584 #endif
3587 #ifdef HAVE_FORK
3588 PyDoc_STRVAR(posix_fork__doc__,
3589 "fork() -> pid\n\n\
3590 Fork a child process.\n\
3591 Return 0 to child process and PID of child to parent process.");
3593 static PyObject *
3594 posix_fork(PyObject *self, PyObject *noargs)
3596 pid_t pid = fork();
3597 if (pid == -1)
3598 return posix_error();
3599 if (pid == 0)
3600 PyOS_AfterFork();
3601 return PyInt_FromLong(pid);
3603 #endif
3605 /* AIX uses /dev/ptc but is otherwise the same as /dev/ptmx */
3606 /* IRIX has both /dev/ptc and /dev/ptmx, use ptmx */
3607 #if defined(HAVE_DEV_PTC) && !defined(HAVE_DEV_PTMX)
3608 #define DEV_PTY_FILE "/dev/ptc"
3609 #define HAVE_DEV_PTMX
3610 #else
3611 #define DEV_PTY_FILE "/dev/ptmx"
3612 #endif
3614 #if defined(HAVE_OPENPTY) || defined(HAVE_FORKPTY) || defined(HAVE_DEV_PTMX)
3615 #ifdef HAVE_PTY_H
3616 #include <pty.h>
3617 #else
3618 #ifdef HAVE_LIBUTIL_H
3619 #include <libutil.h>
3620 #endif /* HAVE_LIBUTIL_H */
3621 #endif /* HAVE_PTY_H */
3622 #ifdef HAVE_STROPTS_H
3623 #include <stropts.h>
3624 #endif
3625 #endif /* defined(HAVE_OPENPTY) || defined(HAVE_FORKPTY) || defined(HAVE_DEV_PTMX */
3627 #if defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX)
3628 PyDoc_STRVAR(posix_openpty__doc__,
3629 "openpty() -> (master_fd, slave_fd)\n\n\
3630 Open a pseudo-terminal, returning open fd's for both master and slave end.\n");
3632 static PyObject *
3633 posix_openpty(PyObject *self, PyObject *noargs)
3635 int master_fd, slave_fd;
3636 #ifndef HAVE_OPENPTY
3637 char * slave_name;
3638 #endif
3639 #if defined(HAVE_DEV_PTMX) && !defined(HAVE_OPENPTY) && !defined(HAVE__GETPTY)
3640 PyOS_sighandler_t sig_saved;
3641 #ifdef sun
3642 extern char *ptsname(int fildes);
3643 #endif
3644 #endif
3646 #ifdef HAVE_OPENPTY
3647 if (openpty(&master_fd, &slave_fd, NULL, NULL, NULL) != 0)
3648 return posix_error();
3649 #elif defined(HAVE__GETPTY)
3650 slave_name = _getpty(&master_fd, O_RDWR, 0666, 0);
3651 if (slave_name == NULL)
3652 return posix_error();
3654 slave_fd = open(slave_name, O_RDWR);
3655 if (slave_fd < 0)
3656 return posix_error();
3657 #else
3658 master_fd = open(DEV_PTY_FILE, O_RDWR | O_NOCTTY); /* open master */
3659 if (master_fd < 0)
3660 return posix_error();
3661 sig_saved = PyOS_setsig(SIGCHLD, SIG_DFL);
3662 /* change permission of slave */
3663 if (grantpt(master_fd) < 0) {
3664 PyOS_setsig(SIGCHLD, sig_saved);
3665 return posix_error();
3667 /* unlock slave */
3668 if (unlockpt(master_fd) < 0) {
3669 PyOS_setsig(SIGCHLD, sig_saved);
3670 return posix_error();
3672 PyOS_setsig(SIGCHLD, sig_saved);
3673 slave_name = ptsname(master_fd); /* get name of slave */
3674 if (slave_name == NULL)
3675 return posix_error();
3676 slave_fd = open(slave_name, O_RDWR | O_NOCTTY); /* open slave */
3677 if (slave_fd < 0)
3678 return posix_error();
3679 #if !defined(__CYGWIN__) && !defined(HAVE_DEV_PTC)
3680 ioctl(slave_fd, I_PUSH, "ptem"); /* push ptem */
3681 ioctl(slave_fd, I_PUSH, "ldterm"); /* push ldterm */
3682 #ifndef __hpux
3683 ioctl(slave_fd, I_PUSH, "ttcompat"); /* push ttcompat */
3684 #endif /* __hpux */
3685 #endif /* HAVE_CYGWIN */
3686 #endif /* HAVE_OPENPTY */
3688 return Py_BuildValue("(ii)", master_fd, slave_fd);
3691 #endif /* defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX) */
3693 #ifdef HAVE_FORKPTY
3694 PyDoc_STRVAR(posix_forkpty__doc__,
3695 "forkpty() -> (pid, master_fd)\n\n\
3696 Fork a new process with a new pseudo-terminal as controlling tty.\n\n\
3697 Like fork(), return 0 as pid to child process, and PID of child to parent.\n\
3698 To both, return fd of newly opened pseudo-terminal.\n");
3700 static PyObject *
3701 posix_forkpty(PyObject *self, PyObject *noargs)
3703 int master_fd = -1;
3704 pid_t pid;
3706 pid = forkpty(&master_fd, NULL, NULL, NULL);
3707 if (pid == -1)
3708 return posix_error();
3709 if (pid == 0)
3710 PyOS_AfterFork();
3711 return Py_BuildValue("(li)", pid, master_fd);
3713 #endif
3715 #ifdef HAVE_GETEGID
3716 PyDoc_STRVAR(posix_getegid__doc__,
3717 "getegid() -> egid\n\n\
3718 Return the current process's effective group id.");
3720 static PyObject *
3721 posix_getegid(PyObject *self, PyObject *noargs)
3723 return PyInt_FromLong((long)getegid());
3725 #endif
3728 #ifdef HAVE_GETEUID
3729 PyDoc_STRVAR(posix_geteuid__doc__,
3730 "geteuid() -> euid\n\n\
3731 Return the current process's effective user id.");
3733 static PyObject *
3734 posix_geteuid(PyObject *self, PyObject *noargs)
3736 return PyInt_FromLong((long)geteuid());
3738 #endif
3741 #ifdef HAVE_GETGID
3742 PyDoc_STRVAR(posix_getgid__doc__,
3743 "getgid() -> gid\n\n\
3744 Return the current process's group id.");
3746 static PyObject *
3747 posix_getgid(PyObject *self, PyObject *noargs)
3749 return PyInt_FromLong((long)getgid());
3751 #endif
3754 PyDoc_STRVAR(posix_getpid__doc__,
3755 "getpid() -> pid\n\n\
3756 Return the current process id");
3758 static PyObject *
3759 posix_getpid(PyObject *self, PyObject *noargs)
3761 return PyInt_FromLong((long)getpid());
3765 #ifdef HAVE_GETGROUPS
3766 PyDoc_STRVAR(posix_getgroups__doc__,
3767 "getgroups() -> list of group IDs\n\n\
3768 Return list of supplemental group IDs for the process.");
3770 static PyObject *
3771 posix_getgroups(PyObject *self, PyObject *noargs)
3773 PyObject *result = NULL;
3775 #ifdef NGROUPS_MAX
3776 #define MAX_GROUPS NGROUPS_MAX
3777 #else
3778 /* defined to be 16 on Solaris7, so this should be a small number */
3779 #define MAX_GROUPS 64
3780 #endif
3781 gid_t grouplist[MAX_GROUPS];
3782 int n;
3784 n = getgroups(MAX_GROUPS, grouplist);
3785 if (n < 0)
3786 posix_error();
3787 else {
3788 result = PyList_New(n);
3789 if (result != NULL) {
3790 int i;
3791 for (i = 0; i < n; ++i) {
3792 PyObject *o = PyInt_FromLong((long)grouplist[i]);
3793 if (o == NULL) {
3794 Py_DECREF(result);
3795 result = NULL;
3796 break;
3798 PyList_SET_ITEM(result, i, o);
3803 return result;
3805 #endif
3807 #ifdef HAVE_GETPGID
3808 PyDoc_STRVAR(posix_getpgid__doc__,
3809 "getpgid(pid) -> pgid\n\n\
3810 Call the system call getpgid().");
3812 static PyObject *
3813 posix_getpgid(PyObject *self, PyObject *args)
3815 int pid, pgid;
3816 if (!PyArg_ParseTuple(args, "i:getpgid", &pid))
3817 return NULL;
3818 pgid = getpgid(pid);
3819 if (pgid < 0)
3820 return posix_error();
3821 return PyInt_FromLong((long)pgid);
3823 #endif /* HAVE_GETPGID */
3826 #ifdef HAVE_GETPGRP
3827 PyDoc_STRVAR(posix_getpgrp__doc__,
3828 "getpgrp() -> pgrp\n\n\
3829 Return the current process group id.");
3831 static PyObject *
3832 posix_getpgrp(PyObject *self, PyObject *noargs)
3834 #ifdef GETPGRP_HAVE_ARG
3835 return PyInt_FromLong((long)getpgrp(0));
3836 #else /* GETPGRP_HAVE_ARG */
3837 return PyInt_FromLong((long)getpgrp());
3838 #endif /* GETPGRP_HAVE_ARG */
3840 #endif /* HAVE_GETPGRP */
3843 #ifdef HAVE_SETPGRP
3844 PyDoc_STRVAR(posix_setpgrp__doc__,
3845 "setpgrp()\n\n\
3846 Make this process a session leader.");
3848 static PyObject *
3849 posix_setpgrp(PyObject *self, PyObject *noargs)
3851 #ifdef SETPGRP_HAVE_ARG
3852 if (setpgrp(0, 0) < 0)
3853 #else /* SETPGRP_HAVE_ARG */
3854 if (setpgrp() < 0)
3855 #endif /* SETPGRP_HAVE_ARG */
3856 return posix_error();
3857 Py_INCREF(Py_None);
3858 return Py_None;
3861 #endif /* HAVE_SETPGRP */
3863 #ifdef HAVE_GETPPID
3864 PyDoc_STRVAR(posix_getppid__doc__,
3865 "getppid() -> ppid\n\n\
3866 Return the parent's process id.");
3868 static PyObject *
3869 posix_getppid(PyObject *self, PyObject *noargs)
3871 return PyInt_FromLong(getppid());
3873 #endif
3876 #ifdef HAVE_GETLOGIN
3877 PyDoc_STRVAR(posix_getlogin__doc__,
3878 "getlogin() -> string\n\n\
3879 Return the actual login name.");
3881 static PyObject *
3882 posix_getlogin(PyObject *self, PyObject *noargs)
3884 PyObject *result = NULL;
3885 char *name;
3886 int old_errno = errno;
3888 errno = 0;
3889 name = getlogin();
3890 if (name == NULL) {
3891 if (errno)
3892 posix_error();
3893 else
3894 PyErr_SetString(PyExc_OSError,
3895 "unable to determine login name");
3897 else
3898 result = PyString_FromString(name);
3899 errno = old_errno;
3901 return result;
3903 #endif
3905 #ifdef HAVE_GETUID
3906 PyDoc_STRVAR(posix_getuid__doc__,
3907 "getuid() -> uid\n\n\
3908 Return the current process's user id.");
3910 static PyObject *
3911 posix_getuid(PyObject *self, PyObject *noargs)
3913 return PyInt_FromLong((long)getuid());
3915 #endif
3918 #ifdef HAVE_KILL
3919 PyDoc_STRVAR(posix_kill__doc__,
3920 "kill(pid, sig)\n\n\
3921 Kill a process with a signal.");
3923 static PyObject *
3924 posix_kill(PyObject *self, PyObject *args)
3926 pid_t pid;
3927 int sig;
3928 if (!PyArg_ParseTuple(args, "ii:kill", &pid, &sig))
3929 return NULL;
3930 #if defined(PYOS_OS2) && !defined(PYCC_GCC)
3931 if (sig == XCPT_SIGNAL_INTR || sig == XCPT_SIGNAL_BREAK) {
3932 APIRET rc;
3933 if ((rc = DosSendSignalException(pid, sig)) != NO_ERROR)
3934 return os2_error(rc);
3936 } else if (sig == XCPT_SIGNAL_KILLPROC) {
3937 APIRET rc;
3938 if ((rc = DosKillProcess(DKP_PROCESS, pid)) != NO_ERROR)
3939 return os2_error(rc);
3941 } else
3942 return NULL; /* Unrecognized Signal Requested */
3943 #else
3944 if (kill(pid, sig) == -1)
3945 return posix_error();
3946 #endif
3947 Py_INCREF(Py_None);
3948 return Py_None;
3950 #endif
3952 #ifdef HAVE_KILLPG
3953 PyDoc_STRVAR(posix_killpg__doc__,
3954 "killpg(pgid, sig)\n\n\
3955 Kill a process group with a signal.");
3957 static PyObject *
3958 posix_killpg(PyObject *self, PyObject *args)
3960 int pgid, sig;
3961 if (!PyArg_ParseTuple(args, "ii:killpg", &pgid, &sig))
3962 return NULL;
3963 if (killpg(pgid, sig) == -1)
3964 return posix_error();
3965 Py_INCREF(Py_None);
3966 return Py_None;
3968 #endif
3970 #ifdef HAVE_PLOCK
3972 #ifdef HAVE_SYS_LOCK_H
3973 #include <sys/lock.h>
3974 #endif
3976 PyDoc_STRVAR(posix_plock__doc__,
3977 "plock(op)\n\n\
3978 Lock program segments into memory.");
3980 static PyObject *
3981 posix_plock(PyObject *self, PyObject *args)
3983 int op;
3984 if (!PyArg_ParseTuple(args, "i:plock", &op))
3985 return NULL;
3986 if (plock(op) == -1)
3987 return posix_error();
3988 Py_INCREF(Py_None);
3989 return Py_None;
3991 #endif
3994 #ifdef HAVE_POPEN
3995 PyDoc_STRVAR(posix_popen__doc__,
3996 "popen(command [, mode='r' [, bufsize]]) -> pipe\n\n\
3997 Open a pipe to/from a command returning a file object.");
3999 #if defined(PYOS_OS2)
4000 #if defined(PYCC_VACPP)
4001 static int
4002 async_system(const char *command)
4004 char errormsg[256], args[1024];
4005 RESULTCODES rcodes;
4006 APIRET rc;
4008 char *shell = getenv("COMSPEC");
4009 if (!shell)
4010 shell = "cmd";
4012 /* avoid overflowing the argument buffer */
4013 if (strlen(shell) + 3 + strlen(command) >= 1024)
4014 return ERROR_NOT_ENOUGH_MEMORY
4016 args[0] = '\0';
4017 strcat(args, shell);
4018 strcat(args, "/c ");
4019 strcat(args, command);
4021 /* execute asynchronously, inheriting the environment */
4022 rc = DosExecPgm(errormsg,
4023 sizeof(errormsg),
4024 EXEC_ASYNC,
4025 args,
4026 NULL,
4027 &rcodes,
4028 shell);
4029 return rc;
4032 static FILE *
4033 popen(const char *command, const char *mode, int pipesize, int *err)
4035 int oldfd, tgtfd;
4036 HFILE pipeh[2];
4037 APIRET rc;
4039 /* mode determines which of stdin or stdout is reconnected to
4040 * the pipe to the child
4042 if (strchr(mode, 'r') != NULL) {
4043 tgt_fd = 1; /* stdout */
4044 } else if (strchr(mode, 'w')) {
4045 tgt_fd = 0; /* stdin */
4046 } else {
4047 *err = ERROR_INVALID_ACCESS;
4048 return NULL;
4051 /* setup the pipe */
4052 if ((rc = DosCreatePipe(&pipeh[0], &pipeh[1], pipesize)) != NO_ERROR) {
4053 *err = rc;
4054 return NULL;
4057 /* prevent other threads accessing stdio */
4058 DosEnterCritSec();
4060 /* reconnect stdio and execute child */
4061 oldfd = dup(tgtfd);
4062 close(tgtfd);
4063 if (dup2(pipeh[tgtfd], tgtfd) == 0) {
4064 DosClose(pipeh[tgtfd]);
4065 rc = async_system(command);
4068 /* restore stdio */
4069 dup2(oldfd, tgtfd);
4070 close(oldfd);
4072 /* allow other threads access to stdio */
4073 DosExitCritSec();
4075 /* if execution of child was successful return file stream */
4076 if (rc == NO_ERROR)
4077 return fdopen(pipeh[1 - tgtfd], mode);
4078 else {
4079 DosClose(pipeh[1 - tgtfd]);
4080 *err = rc;
4081 return NULL;
4085 static PyObject *
4086 posix_popen(PyObject *self, PyObject *args)
4088 char *name;
4089 char *mode = "r";
4090 int err, bufsize = -1;
4091 FILE *fp;
4092 PyObject *f;
4093 if (!PyArg_ParseTuple(args, "s|si:popen", &name, &mode, &bufsize))
4094 return NULL;
4095 Py_BEGIN_ALLOW_THREADS
4096 fp = popen(name, mode, (bufsize > 0) ? bufsize : 4096, &err);
4097 Py_END_ALLOW_THREADS
4098 if (fp == NULL)
4099 return os2_error(err);
4101 f = PyFile_FromFile(fp, name, mode, fclose);
4102 if (f != NULL)
4103 PyFile_SetBufSize(f, bufsize);
4104 return f;
4107 #elif defined(PYCC_GCC)
4109 /* standard posix version of popen() support */
4110 static PyObject *
4111 posix_popen(PyObject *self, PyObject *args)
4113 char *name;
4114 char *mode = "r";
4115 int bufsize = -1;
4116 FILE *fp;
4117 PyObject *f;
4118 if (!PyArg_ParseTuple(args, "s|si:popen", &name, &mode, &bufsize))
4119 return NULL;
4120 Py_BEGIN_ALLOW_THREADS
4121 fp = popen(name, mode);
4122 Py_END_ALLOW_THREADS
4123 if (fp == NULL)
4124 return posix_error();
4125 f = PyFile_FromFile(fp, name, mode, pclose);
4126 if (f != NULL)
4127 PyFile_SetBufSize(f, bufsize);
4128 return f;
4131 /* fork() under OS/2 has lots'o'warts
4132 * EMX supports pipe() and spawn*() so we can synthesize popen[234]()
4133 * most of this code is a ripoff of the win32 code, but using the
4134 * capabilities of EMX's C library routines
4137 /* These tell _PyPopen() whether to return 1, 2, or 3 file objects. */
4138 #define POPEN_1 1
4139 #define POPEN_2 2
4140 #define POPEN_3 3
4141 #define POPEN_4 4
4143 static PyObject *_PyPopen(char *, int, int, int);
4144 static int _PyPclose(FILE *file);
4147 * Internal dictionary mapping popen* file pointers to process handles,
4148 * for use when retrieving the process exit code. See _PyPclose() below
4149 * for more information on this dictionary's use.
4151 static PyObject *_PyPopenProcs = NULL;
4153 /* os2emx version of popen2()
4155 * The result of this function is a pipe (file) connected to the
4156 * process's stdin, and a pipe connected to the process's stdout.
4159 static PyObject *
4160 os2emx_popen2(PyObject *self, PyObject *args)
4162 PyObject *f;
4163 int tm=0;
4165 char *cmdstring;
4166 char *mode = "t";
4167 int bufsize = -1;
4168 if (!PyArg_ParseTuple(args, "s|si:popen2", &cmdstring, &mode, &bufsize))
4169 return NULL;
4171 if (*mode == 't')
4172 tm = O_TEXT;
4173 else if (*mode != 'b') {
4174 PyErr_SetString(PyExc_ValueError, "mode must be 't' or 'b'");
4175 return NULL;
4176 } else
4177 tm = O_BINARY;
4179 f = _PyPopen(cmdstring, tm, POPEN_2, bufsize);
4181 return f;
4185 * Variation on os2emx.popen2
4187 * The result of this function is 3 pipes - the process's stdin,
4188 * stdout and stderr
4191 static PyObject *
4192 os2emx_popen3(PyObject *self, PyObject *args)
4194 PyObject *f;
4195 int tm = 0;
4197 char *cmdstring;
4198 char *mode = "t";
4199 int bufsize = -1;
4200 if (!PyArg_ParseTuple(args, "s|si:popen3", &cmdstring, &mode, &bufsize))
4201 return NULL;
4203 if (*mode == 't')
4204 tm = O_TEXT;
4205 else if (*mode != 'b') {
4206 PyErr_SetString(PyExc_ValueError, "mode must be 't' or 'b'");
4207 return NULL;
4208 } else
4209 tm = O_BINARY;
4211 f = _PyPopen(cmdstring, tm, POPEN_3, bufsize);
4213 return f;
4217 * Variation on os2emx.popen2
4219 * The result of this function is 2 pipes - the processes stdin,
4220 * and stdout+stderr combined as a single pipe.
4223 static PyObject *
4224 os2emx_popen4(PyObject *self, PyObject *args)
4226 PyObject *f;
4227 int tm = 0;
4229 char *cmdstring;
4230 char *mode = "t";
4231 int bufsize = -1;
4232 if (!PyArg_ParseTuple(args, "s|si:popen4", &cmdstring, &mode, &bufsize))
4233 return NULL;
4235 if (*mode == 't')
4236 tm = O_TEXT;
4237 else if (*mode != 'b') {
4238 PyErr_SetString(PyExc_ValueError, "mode must be 't' or 'b'");
4239 return NULL;
4240 } else
4241 tm = O_BINARY;
4243 f = _PyPopen(cmdstring, tm, POPEN_4, bufsize);
4245 return f;
4248 /* a couple of structures for convenient handling of multiple
4249 * file handles and pipes
4251 struct file_ref
4253 int handle;
4254 int flags;
4257 struct pipe_ref
4259 int rd;
4260 int wr;
4263 /* The following code is derived from the win32 code */
4265 static PyObject *
4266 _PyPopen(char *cmdstring, int mode, int n, int bufsize)
4268 struct file_ref stdio[3];
4269 struct pipe_ref p_fd[3];
4270 FILE *p_s[3];
4271 int file_count, i, pipe_err;
4272 pid_t pipe_pid;
4273 char *shell, *sh_name, *opt, *rd_mode, *wr_mode;
4274 PyObject *f, *p_f[3];
4276 /* file modes for subsequent fdopen's on pipe handles */
4277 if (mode == O_TEXT)
4279 rd_mode = "rt";
4280 wr_mode = "wt";
4282 else
4284 rd_mode = "rb";
4285 wr_mode = "wb";
4288 /* prepare shell references */
4289 if ((shell = getenv("EMXSHELL")) == NULL)
4290 if ((shell = getenv("COMSPEC")) == NULL)
4292 errno = ENOENT;
4293 return posix_error();
4296 sh_name = _getname(shell);
4297 if (stricmp(sh_name, "cmd.exe") == 0 || stricmp(sh_name, "4os2.exe") == 0)
4298 opt = "/c";
4299 else
4300 opt = "-c";
4302 /* save current stdio fds + their flags, and set not inheritable */
4303 i = pipe_err = 0;
4304 while (pipe_err >= 0 && i < 3)
4306 pipe_err = stdio[i].handle = dup(i);
4307 stdio[i].flags = fcntl(i, F_GETFD, 0);
4308 fcntl(stdio[i].handle, F_SETFD, stdio[i].flags | FD_CLOEXEC);
4309 i++;
4311 if (pipe_err < 0)
4313 /* didn't get them all saved - clean up and bail out */
4314 int saved_err = errno;
4315 while (i-- > 0)
4317 close(stdio[i].handle);
4319 errno = saved_err;
4320 return posix_error();
4323 /* create pipe ends */
4324 file_count = 2;
4325 if (n == POPEN_3)
4326 file_count = 3;
4327 i = pipe_err = 0;
4328 while ((pipe_err == 0) && (i < file_count))
4329 pipe_err = pipe((int *)&p_fd[i++]);
4330 if (pipe_err < 0)
4332 /* didn't get them all made - clean up and bail out */
4333 while (i-- > 0)
4335 close(p_fd[i].wr);
4336 close(p_fd[i].rd);
4338 errno = EPIPE;
4339 return posix_error();
4342 /* change the actual standard IO streams over temporarily,
4343 * making the retained pipe ends non-inheritable
4345 pipe_err = 0;
4347 /* - stdin */
4348 if (dup2(p_fd[0].rd, 0) == 0)
4350 close(p_fd[0].rd);
4351 i = fcntl(p_fd[0].wr, F_GETFD, 0);
4352 fcntl(p_fd[0].wr, F_SETFD, i | FD_CLOEXEC);
4353 if ((p_s[0] = fdopen(p_fd[0].wr, wr_mode)) == NULL)
4355 close(p_fd[0].wr);
4356 pipe_err = -1;
4359 else
4361 pipe_err = -1;
4364 /* - stdout */
4365 if (pipe_err == 0)
4367 if (dup2(p_fd[1].wr, 1) == 1)
4369 close(p_fd[1].wr);
4370 i = fcntl(p_fd[1].rd, F_GETFD, 0);
4371 fcntl(p_fd[1].rd, F_SETFD, i | FD_CLOEXEC);
4372 if ((p_s[1] = fdopen(p_fd[1].rd, rd_mode)) == NULL)
4374 close(p_fd[1].rd);
4375 pipe_err = -1;
4378 else
4380 pipe_err = -1;
4384 /* - stderr, as required */
4385 if (pipe_err == 0)
4386 switch (n)
4388 case POPEN_3:
4390 if (dup2(p_fd[2].wr, 2) == 2)
4392 close(p_fd[2].wr);
4393 i = fcntl(p_fd[2].rd, F_GETFD, 0);
4394 fcntl(p_fd[2].rd, F_SETFD, i | FD_CLOEXEC);
4395 if ((p_s[2] = fdopen(p_fd[2].rd, rd_mode)) == NULL)
4397 close(p_fd[2].rd);
4398 pipe_err = -1;
4401 else
4403 pipe_err = -1;
4405 break;
4408 case POPEN_4:
4410 if (dup2(1, 2) != 2)
4412 pipe_err = -1;
4414 break;
4418 /* spawn the child process */
4419 if (pipe_err == 0)
4421 pipe_pid = spawnlp(P_NOWAIT, shell, shell, opt, cmdstring, (char *)0);
4422 if (pipe_pid == -1)
4424 pipe_err = -1;
4426 else
4428 /* save the PID into the FILE structure
4429 * NOTE: this implementation doesn't actually
4430 * take advantage of this, but do it for
4431 * completeness - AIM Apr01
4433 for (i = 0; i < file_count; i++)
4434 p_s[i]->_pid = pipe_pid;
4438 /* reset standard IO to normal */
4439 for (i = 0; i < 3; i++)
4441 dup2(stdio[i].handle, i);
4442 fcntl(i, F_SETFD, stdio[i].flags);
4443 close(stdio[i].handle);
4446 /* if any remnant problems, clean up and bail out */
4447 if (pipe_err < 0)
4449 for (i = 0; i < 3; i++)
4451 close(p_fd[i].rd);
4452 close(p_fd[i].wr);
4454 errno = EPIPE;
4455 return posix_error_with_filename(cmdstring);
4458 /* build tuple of file objects to return */
4459 if ((p_f[0] = PyFile_FromFile(p_s[0], cmdstring, wr_mode, _PyPclose)) != NULL)
4460 PyFile_SetBufSize(p_f[0], bufsize);
4461 if ((p_f[1] = PyFile_FromFile(p_s[1], cmdstring, rd_mode, _PyPclose)) != NULL)
4462 PyFile_SetBufSize(p_f[1], bufsize);
4463 if (n == POPEN_3)
4465 if ((p_f[2] = PyFile_FromFile(p_s[2], cmdstring, rd_mode, _PyPclose)) != NULL)
4466 PyFile_SetBufSize(p_f[0], bufsize);
4467 f = PyTuple_Pack(3, p_f[0], p_f[1], p_f[2]);
4469 else
4470 f = PyTuple_Pack(2, p_f[0], p_f[1]);
4473 * Insert the files we've created into the process dictionary
4474 * all referencing the list with the process handle and the
4475 * initial number of files (see description below in _PyPclose).
4476 * Since if _PyPclose later tried to wait on a process when all
4477 * handles weren't closed, it could create a deadlock with the
4478 * child, we spend some energy here to try to ensure that we
4479 * either insert all file handles into the dictionary or none
4480 * at all. It's a little clumsy with the various popen modes
4481 * and variable number of files involved.
4483 if (!_PyPopenProcs)
4485 _PyPopenProcs = PyDict_New();
4488 if (_PyPopenProcs)
4490 PyObject *procObj, *pidObj, *intObj, *fileObj[3];
4491 int ins_rc[3];
4493 fileObj[0] = fileObj[1] = fileObj[2] = NULL;
4494 ins_rc[0] = ins_rc[1] = ins_rc[2] = 0;
4496 procObj = PyList_New(2);
4497 pidObj = PyInt_FromLong((long) pipe_pid);
4498 intObj = PyInt_FromLong((long) file_count);
4500 if (procObj && pidObj && intObj)
4502 PyList_SetItem(procObj, 0, pidObj);
4503 PyList_SetItem(procObj, 1, intObj);
4505 fileObj[0] = PyLong_FromVoidPtr(p_s[0]);
4506 if (fileObj[0])
4508 ins_rc[0] = PyDict_SetItem(_PyPopenProcs,
4509 fileObj[0],
4510 procObj);
4512 fileObj[1] = PyLong_FromVoidPtr(p_s[1]);
4513 if (fileObj[1])
4515 ins_rc[1] = PyDict_SetItem(_PyPopenProcs,
4516 fileObj[1],
4517 procObj);
4519 if (file_count >= 3)
4521 fileObj[2] = PyLong_FromVoidPtr(p_s[2]);
4522 if (fileObj[2])
4524 ins_rc[2] = PyDict_SetItem(_PyPopenProcs,
4525 fileObj[2],
4526 procObj);
4530 if (ins_rc[0] < 0 || !fileObj[0] ||
4531 ins_rc[1] < 0 || (file_count > 1 && !fileObj[1]) ||
4532 ins_rc[2] < 0 || (file_count > 2 && !fileObj[2]))
4534 /* Something failed - remove any dictionary
4535 * entries that did make it.
4537 if (!ins_rc[0] && fileObj[0])
4539 PyDict_DelItem(_PyPopenProcs,
4540 fileObj[0]);
4542 if (!ins_rc[1] && fileObj[1])
4544 PyDict_DelItem(_PyPopenProcs,
4545 fileObj[1]);
4547 if (!ins_rc[2] && fileObj[2])
4549 PyDict_DelItem(_PyPopenProcs,
4550 fileObj[2]);
4556 * Clean up our localized references for the dictionary keys
4557 * and value since PyDict_SetItem will Py_INCREF any copies
4558 * that got placed in the dictionary.
4560 Py_XDECREF(procObj);
4561 Py_XDECREF(fileObj[0]);
4562 Py_XDECREF(fileObj[1]);
4563 Py_XDECREF(fileObj[2]);
4566 /* Child is launched. */
4567 return f;
4571 * Wrapper for fclose() to use for popen* files, so we can retrieve the
4572 * exit code for the child process and return as a result of the close.
4574 * This function uses the _PyPopenProcs dictionary in order to map the
4575 * input file pointer to information about the process that was
4576 * originally created by the popen* call that created the file pointer.
4577 * The dictionary uses the file pointer as a key (with one entry
4578 * inserted for each file returned by the original popen* call) and a
4579 * single list object as the value for all files from a single call.
4580 * The list object contains the Win32 process handle at [0], and a file
4581 * count at [1], which is initialized to the total number of file
4582 * handles using that list.
4584 * This function closes whichever handle it is passed, and decrements
4585 * the file count in the dictionary for the process handle pointed to
4586 * by this file. On the last close (when the file count reaches zero),
4587 * this function will wait for the child process and then return its
4588 * exit code as the result of the close() operation. This permits the
4589 * files to be closed in any order - it is always the close() of the
4590 * final handle that will return the exit code.
4592 * NOTE: This function is currently called with the GIL released.
4593 * hence we use the GILState API to manage our state.
4596 static int _PyPclose(FILE *file)
4598 int result;
4599 int exit_code;
4600 pid_t pipe_pid;
4601 PyObject *procObj, *pidObj, *intObj, *fileObj;
4602 int file_count;
4603 #ifdef WITH_THREAD
4604 PyGILState_STATE state;
4605 #endif
4607 /* Close the file handle first, to ensure it can't block the
4608 * child from exiting if it's the last handle.
4610 result = fclose(file);
4612 #ifdef WITH_THREAD
4613 state = PyGILState_Ensure();
4614 #endif
4615 if (_PyPopenProcs)
4617 if ((fileObj = PyLong_FromVoidPtr(file)) != NULL &&
4618 (procObj = PyDict_GetItem(_PyPopenProcs,
4619 fileObj)) != NULL &&
4620 (pidObj = PyList_GetItem(procObj,0)) != NULL &&
4621 (intObj = PyList_GetItem(procObj,1)) != NULL)
4623 pipe_pid = (int) PyInt_AsLong(pidObj);
4624 file_count = (int) PyInt_AsLong(intObj);
4626 if (file_count > 1)
4628 /* Still other files referencing process */
4629 file_count--;
4630 PyList_SetItem(procObj,1,
4631 PyInt_FromLong((long) file_count));
4633 else
4635 /* Last file for this process */
4636 if (result != EOF &&
4637 waitpid(pipe_pid, &exit_code, 0) == pipe_pid)
4639 /* extract exit status */
4640 if (WIFEXITED(exit_code))
4642 result = WEXITSTATUS(exit_code);
4644 else
4646 errno = EPIPE;
4647 result = -1;
4650 else
4652 /* Indicate failure - this will cause the file object
4653 * to raise an I/O error and translate the last
4654 * error code from errno. We do have a problem with
4655 * last errors that overlap the normal errno table,
4656 * but that's a consistent problem with the file object.
4658 result = -1;
4662 /* Remove this file pointer from dictionary */
4663 PyDict_DelItem(_PyPopenProcs, fileObj);
4665 if (PyDict_Size(_PyPopenProcs) == 0)
4667 Py_DECREF(_PyPopenProcs);
4668 _PyPopenProcs = NULL;
4671 } /* if object retrieval ok */
4673 Py_XDECREF(fileObj);
4674 } /* if _PyPopenProcs */
4676 #ifdef WITH_THREAD
4677 PyGILState_Release(state);
4678 #endif
4679 return result;
4682 #endif /* PYCC_??? */
4684 #elif defined(MS_WINDOWS)
4687 * Portable 'popen' replacement for Win32.
4689 * Written by Bill Tutt <billtut@microsoft.com>. Minor tweaks
4690 * and 2.0 integration by Fredrik Lundh <fredrik@pythonware.com>
4691 * Return code handling by David Bolen <db3l@fitlinxx.com>.
4694 #include <malloc.h>
4695 #include <io.h>
4696 #include <fcntl.h>
4698 /* These tell _PyPopen() wether to return 1, 2, or 3 file objects. */
4699 #define POPEN_1 1
4700 #define POPEN_2 2
4701 #define POPEN_3 3
4702 #define POPEN_4 4
4704 static PyObject *_PyPopen(char *, int, int);
4705 static int _PyPclose(FILE *file);
4708 * Internal dictionary mapping popen* file pointers to process handles,
4709 * for use when retrieving the process exit code. See _PyPclose() below
4710 * for more information on this dictionary's use.
4712 static PyObject *_PyPopenProcs = NULL;
4715 /* popen that works from a GUI.
4717 * The result of this function is a pipe (file) connected to the
4718 * processes stdin or stdout, depending on the requested mode.
4721 static PyObject *
4722 posix_popen(PyObject *self, PyObject *args)
4724 PyObject *f;
4725 int tm = 0;
4727 char *cmdstring;
4728 char *mode = "r";
4729 int bufsize = -1;
4730 if (!PyArg_ParseTuple(args, "s|si:popen", &cmdstring, &mode, &bufsize))
4731 return NULL;
4733 if (*mode == 'r')
4734 tm = _O_RDONLY;
4735 else if (*mode != 'w') {
4736 PyErr_SetString(PyExc_ValueError, "popen() arg 2 must be 'r' or 'w'");
4737 return NULL;
4738 } else
4739 tm = _O_WRONLY;
4741 if (bufsize != -1) {
4742 PyErr_SetString(PyExc_ValueError, "popen() arg 3 must be -1");
4743 return NULL;
4746 if (*(mode+1) == 't')
4747 f = _PyPopen(cmdstring, tm | _O_TEXT, POPEN_1);
4748 else if (*(mode+1) == 'b')
4749 f = _PyPopen(cmdstring, tm | _O_BINARY, POPEN_1);
4750 else
4751 f = _PyPopen(cmdstring, tm | _O_TEXT, POPEN_1);
4753 return f;
4756 /* Variation on win32pipe.popen
4758 * The result of this function is a pipe (file) connected to the
4759 * process's stdin, and a pipe connected to the process's stdout.
4762 static PyObject *
4763 win32_popen2(PyObject *self, PyObject *args)
4765 PyObject *f;
4766 int tm=0;
4768 char *cmdstring;
4769 char *mode = "t";
4770 int bufsize = -1;
4771 if (!PyArg_ParseTuple(args, "s|si:popen2", &cmdstring, &mode, &bufsize))
4772 return NULL;
4774 if (*mode == 't')
4775 tm = _O_TEXT;
4776 else if (*mode != 'b') {
4777 PyErr_SetString(PyExc_ValueError, "popen2() arg 2 must be 't' or 'b'");
4778 return NULL;
4779 } else
4780 tm = _O_BINARY;
4782 if (bufsize != -1) {
4783 PyErr_SetString(PyExc_ValueError, "popen2() arg 3 must be -1");
4784 return NULL;
4787 f = _PyPopen(cmdstring, tm, POPEN_2);
4789 return f;
4793 * Variation on <om win32pipe.popen>
4795 * The result of this function is 3 pipes - the process's stdin,
4796 * stdout and stderr
4799 static PyObject *
4800 win32_popen3(PyObject *self, PyObject *args)
4802 PyObject *f;
4803 int tm = 0;
4805 char *cmdstring;
4806 char *mode = "t";
4807 int bufsize = -1;
4808 if (!PyArg_ParseTuple(args, "s|si:popen3", &cmdstring, &mode, &bufsize))
4809 return NULL;
4811 if (*mode == 't')
4812 tm = _O_TEXT;
4813 else if (*mode != 'b') {
4814 PyErr_SetString(PyExc_ValueError, "popen3() arg 2 must be 't' or 'b'");
4815 return NULL;
4816 } else
4817 tm = _O_BINARY;
4819 if (bufsize != -1) {
4820 PyErr_SetString(PyExc_ValueError, "popen3() arg 3 must be -1");
4821 return NULL;
4824 f = _PyPopen(cmdstring, tm, POPEN_3);
4826 return f;
4830 * Variation on win32pipe.popen
4832 * The result of this function is 2 pipes - the processes stdin,
4833 * and stdout+stderr combined as a single pipe.
4836 static PyObject *
4837 win32_popen4(PyObject *self, PyObject *args)
4839 PyObject *f;
4840 int tm = 0;
4842 char *cmdstring;
4843 char *mode = "t";
4844 int bufsize = -1;
4845 if (!PyArg_ParseTuple(args, "s|si:popen4", &cmdstring, &mode, &bufsize))
4846 return NULL;
4848 if (*mode == 't')
4849 tm = _O_TEXT;
4850 else if (*mode != 'b') {
4851 PyErr_SetString(PyExc_ValueError, "popen4() arg 2 must be 't' or 'b'");
4852 return NULL;
4853 } else
4854 tm = _O_BINARY;
4856 if (bufsize != -1) {
4857 PyErr_SetString(PyExc_ValueError, "popen4() arg 3 must be -1");
4858 return NULL;
4861 f = _PyPopen(cmdstring, tm, POPEN_4);
4863 return f;
4866 static BOOL
4867 _PyPopenCreateProcess(char *cmdstring,
4868 HANDLE hStdin,
4869 HANDLE hStdout,
4870 HANDLE hStderr,
4871 HANDLE *hProcess)
4873 PROCESS_INFORMATION piProcInfo;
4874 STARTUPINFO siStartInfo;
4875 DWORD dwProcessFlags = 0; /* no NEW_CONSOLE by default for Ctrl+C handling */
4876 char *s1,*s2, *s3 = " /c ";
4877 const char *szConsoleSpawn = "w9xpopen.exe";
4878 int i;
4879 Py_ssize_t x;
4881 if (i = GetEnvironmentVariable("COMSPEC",NULL,0)) {
4882 char *comshell;
4884 s1 = (char *)alloca(i);
4885 if (!(x = GetEnvironmentVariable("COMSPEC", s1, i)))
4886 /* x < i, so x fits into an integer */
4887 return (int)x;
4889 /* Explicitly check if we are using COMMAND.COM. If we are
4890 * then use the w9xpopen hack.
4892 comshell = s1 + x;
4893 while (comshell >= s1 && *comshell != '\\')
4894 --comshell;
4895 ++comshell;
4897 if (GetVersion() < 0x80000000 &&
4898 _stricmp(comshell, "command.com") != 0) {
4899 /* NT/2000 and not using command.com. */
4900 x = i + strlen(s3) + strlen(cmdstring) + 1;
4901 s2 = (char *)alloca(x);
4902 ZeroMemory(s2, x);
4903 PyOS_snprintf(s2, x, "%s%s%s", s1, s3, cmdstring);
4905 else {
4907 * Oh gag, we're on Win9x or using COMMAND.COM. Use
4908 * the workaround listed in KB: Q150956
4910 char modulepath[_MAX_PATH];
4911 struct stat statinfo;
4912 GetModuleFileName(NULL, modulepath, sizeof(modulepath));
4913 for (x = i = 0; modulepath[i]; i++)
4914 if (modulepath[i] == SEP)
4915 x = i+1;
4916 modulepath[x] = '\0';
4917 /* Create the full-name to w9xpopen, so we can test it exists */
4918 strncat(modulepath,
4919 szConsoleSpawn,
4920 (sizeof(modulepath)/sizeof(modulepath[0]))
4921 -strlen(modulepath));
4922 if (stat(modulepath, &statinfo) != 0) {
4923 size_t mplen = sizeof(modulepath)/sizeof(modulepath[0]);
4924 /* Eeek - file-not-found - possibly an embedding
4925 situation - see if we can locate it in sys.prefix
4927 strncpy(modulepath,
4928 Py_GetExecPrefix(),
4929 mplen);
4930 modulepath[mplen-1] = '\0';
4931 if (modulepath[strlen(modulepath)-1] != '\\')
4932 strcat(modulepath, "\\");
4933 strncat(modulepath,
4934 szConsoleSpawn,
4935 mplen-strlen(modulepath));
4936 /* No where else to look - raise an easily identifiable
4937 error, rather than leaving Windows to report
4938 "file not found" - as the user is probably blissfully
4939 unaware this shim EXE is used, and it will confuse them.
4940 (well, it confused me for a while ;-)
4942 if (stat(modulepath, &statinfo) != 0) {
4943 PyErr_Format(PyExc_RuntimeError,
4944 "Can not locate '%s' which is needed "
4945 "for popen to work with your shell "
4946 "or platform.",
4947 szConsoleSpawn);
4948 return FALSE;
4951 x = i + strlen(s3) + strlen(cmdstring) + 1 +
4952 strlen(modulepath) +
4953 strlen(szConsoleSpawn) + 1;
4955 s2 = (char *)alloca(x);
4956 ZeroMemory(s2, x);
4957 /* To maintain correct argument passing semantics,
4958 we pass the command-line as it stands, and allow
4959 quoting to be applied. w9xpopen.exe will then
4960 use its argv vector, and re-quote the necessary
4961 args for the ultimate child process.
4963 PyOS_snprintf(
4964 s2, x,
4965 "\"%s\" %s%s%s",
4966 modulepath,
4969 cmdstring);
4970 /* Not passing CREATE_NEW_CONSOLE has been known to
4971 cause random failures on win9x. Specifically a
4972 dialog:
4973 "Your program accessed mem currently in use at xxx"
4974 and a hopeful warning about the stability of your
4975 system.
4976 Cost is Ctrl+C wont kill children, but anyone
4977 who cares can have a go!
4979 dwProcessFlags |= CREATE_NEW_CONSOLE;
4983 /* Could be an else here to try cmd.exe / command.com in the path
4984 Now we'll just error out.. */
4985 else {
4986 PyErr_SetString(PyExc_RuntimeError,
4987 "Cannot locate a COMSPEC environment variable to "
4988 "use as the shell");
4989 return FALSE;
4992 ZeroMemory(&siStartInfo, sizeof(STARTUPINFO));
4993 siStartInfo.cb = sizeof(STARTUPINFO);
4994 siStartInfo.dwFlags = STARTF_USESTDHANDLES | STARTF_USESHOWWINDOW;
4995 siStartInfo.hStdInput = hStdin;
4996 siStartInfo.hStdOutput = hStdout;
4997 siStartInfo.hStdError = hStderr;
4998 siStartInfo.wShowWindow = SW_HIDE;
5000 if (CreateProcess(NULL,
5002 NULL,
5003 NULL,
5004 TRUE,
5005 dwProcessFlags,
5006 NULL,
5007 NULL,
5008 &siStartInfo,
5009 &piProcInfo) ) {
5010 /* Close the handles now so anyone waiting is woken. */
5011 CloseHandle(piProcInfo.hThread);
5013 /* Return process handle */
5014 *hProcess = piProcInfo.hProcess;
5015 return TRUE;
5017 win32_error("CreateProcess", s2);
5018 return FALSE;
5021 /* The following code is based off of KB: Q190351 */
5023 static PyObject *
5024 _PyPopen(char *cmdstring, int mode, int n)
5026 HANDLE hChildStdinRd, hChildStdinWr, hChildStdoutRd, hChildStdoutWr,
5027 hChildStderrRd, hChildStderrWr, hChildStdinWrDup, hChildStdoutRdDup,
5028 hChildStderrRdDup, hProcess; /* hChildStdoutWrDup; */
5030 SECURITY_ATTRIBUTES saAttr;
5031 BOOL fSuccess;
5032 int fd1, fd2, fd3;
5033 FILE *f1, *f2, *f3;
5034 long file_count;
5035 PyObject *f;
5037 saAttr.nLength = sizeof(SECURITY_ATTRIBUTES);
5038 saAttr.bInheritHandle = TRUE;
5039 saAttr.lpSecurityDescriptor = NULL;
5041 if (!CreatePipe(&hChildStdinRd, &hChildStdinWr, &saAttr, 0))
5042 return win32_error("CreatePipe", NULL);
5044 /* Create new output read handle and the input write handle. Set
5045 * the inheritance properties to FALSE. Otherwise, the child inherits
5046 * these handles; resulting in non-closeable handles to the pipes
5047 * being created. */
5048 fSuccess = DuplicateHandle(GetCurrentProcess(), hChildStdinWr,
5049 GetCurrentProcess(), &hChildStdinWrDup, 0,
5050 FALSE,
5051 DUPLICATE_SAME_ACCESS);
5052 if (!fSuccess)
5053 return win32_error("DuplicateHandle", NULL);
5055 /* Close the inheritable version of ChildStdin
5056 that we're using. */
5057 CloseHandle(hChildStdinWr);
5059 if (!CreatePipe(&hChildStdoutRd, &hChildStdoutWr, &saAttr, 0))
5060 return win32_error("CreatePipe", NULL);
5062 fSuccess = DuplicateHandle(GetCurrentProcess(), hChildStdoutRd,
5063 GetCurrentProcess(), &hChildStdoutRdDup, 0,
5064 FALSE, DUPLICATE_SAME_ACCESS);
5065 if (!fSuccess)
5066 return win32_error("DuplicateHandle", NULL);
5068 /* Close the inheritable version of ChildStdout
5069 that we're using. */
5070 CloseHandle(hChildStdoutRd);
5072 if (n != POPEN_4) {
5073 if (!CreatePipe(&hChildStderrRd, &hChildStderrWr, &saAttr, 0))
5074 return win32_error("CreatePipe", NULL);
5075 fSuccess = DuplicateHandle(GetCurrentProcess(),
5076 hChildStderrRd,
5077 GetCurrentProcess(),
5078 &hChildStderrRdDup, 0,
5079 FALSE, DUPLICATE_SAME_ACCESS);
5080 if (!fSuccess)
5081 return win32_error("DuplicateHandle", NULL);
5082 /* Close the inheritable version of ChildStdErr that we're using. */
5083 CloseHandle(hChildStderrRd);
5086 switch (n) {
5087 case POPEN_1:
5088 switch (mode & (_O_RDONLY | _O_TEXT | _O_BINARY | _O_WRONLY)) {
5089 case _O_WRONLY | _O_TEXT:
5090 /* Case for writing to child Stdin in text mode. */
5091 fd1 = _open_osfhandle((Py_intptr_t)hChildStdinWrDup, mode);
5092 f1 = _fdopen(fd1, "w");
5093 f = PyFile_FromFile(f1, cmdstring, "w", _PyPclose);
5094 PyFile_SetBufSize(f, 0);
5095 /* We don't care about these pipes anymore, so close them. */
5096 CloseHandle(hChildStdoutRdDup);
5097 CloseHandle(hChildStderrRdDup);
5098 break;
5100 case _O_RDONLY | _O_TEXT:
5101 /* Case for reading from child Stdout in text mode. */
5102 fd1 = _open_osfhandle((Py_intptr_t)hChildStdoutRdDup, mode);
5103 f1 = _fdopen(fd1, "r");
5104 f = PyFile_FromFile(f1, cmdstring, "r", _PyPclose);
5105 PyFile_SetBufSize(f, 0);
5106 /* We don't care about these pipes anymore, so close them. */
5107 CloseHandle(hChildStdinWrDup);
5108 CloseHandle(hChildStderrRdDup);
5109 break;
5111 case _O_RDONLY | _O_BINARY:
5112 /* Case for readinig from child Stdout in binary mode. */
5113 fd1 = _open_osfhandle((Py_intptr_t)hChildStdoutRdDup, mode);
5114 f1 = _fdopen(fd1, "rb");
5115 f = PyFile_FromFile(f1, cmdstring, "rb", _PyPclose);
5116 PyFile_SetBufSize(f, 0);
5117 /* We don't care about these pipes anymore, so close them. */
5118 CloseHandle(hChildStdinWrDup);
5119 CloseHandle(hChildStderrRdDup);
5120 break;
5122 case _O_WRONLY | _O_BINARY:
5123 /* Case for writing to child Stdin in binary mode. */
5124 fd1 = _open_osfhandle((Py_intptr_t)hChildStdinWrDup, mode);
5125 f1 = _fdopen(fd1, "wb");
5126 f = PyFile_FromFile(f1, cmdstring, "wb", _PyPclose);
5127 PyFile_SetBufSize(f, 0);
5128 /* We don't care about these pipes anymore, so close them. */
5129 CloseHandle(hChildStdoutRdDup);
5130 CloseHandle(hChildStderrRdDup);
5131 break;
5133 file_count = 1;
5134 break;
5136 case POPEN_2:
5137 case POPEN_4:
5139 char *m1, *m2;
5140 PyObject *p1, *p2;
5142 if (mode & _O_TEXT) {
5143 m1 = "r";
5144 m2 = "w";
5145 } else {
5146 m1 = "rb";
5147 m2 = "wb";
5150 fd1 = _open_osfhandle((Py_intptr_t)hChildStdinWrDup, mode);
5151 f1 = _fdopen(fd1, m2);
5152 fd2 = _open_osfhandle((Py_intptr_t)hChildStdoutRdDup, mode);
5153 f2 = _fdopen(fd2, m1);
5154 p1 = PyFile_FromFile(f1, cmdstring, m2, _PyPclose);
5155 PyFile_SetBufSize(p1, 0);
5156 p2 = PyFile_FromFile(f2, cmdstring, m1, _PyPclose);
5157 PyFile_SetBufSize(p2, 0);
5159 if (n != 4)
5160 CloseHandle(hChildStderrRdDup);
5162 f = PyTuple_Pack(2,p1,p2);
5163 Py_XDECREF(p1);
5164 Py_XDECREF(p2);
5165 file_count = 2;
5166 break;
5169 case POPEN_3:
5171 char *m1, *m2;
5172 PyObject *p1, *p2, *p3;
5174 if (mode & _O_TEXT) {
5175 m1 = "r";
5176 m2 = "w";
5177 } else {
5178 m1 = "rb";
5179 m2 = "wb";
5182 fd1 = _open_osfhandle((Py_intptr_t)hChildStdinWrDup, mode);
5183 f1 = _fdopen(fd1, m2);
5184 fd2 = _open_osfhandle((Py_intptr_t)hChildStdoutRdDup, mode);
5185 f2 = _fdopen(fd2, m1);
5186 fd3 = _open_osfhandle((Py_intptr_t)hChildStderrRdDup, mode);
5187 f3 = _fdopen(fd3, m1);
5188 p1 = PyFile_FromFile(f1, cmdstring, m2, _PyPclose);
5189 p2 = PyFile_FromFile(f2, cmdstring, m1, _PyPclose);
5190 p3 = PyFile_FromFile(f3, cmdstring, m1, _PyPclose);
5191 PyFile_SetBufSize(p1, 0);
5192 PyFile_SetBufSize(p2, 0);
5193 PyFile_SetBufSize(p3, 0);
5194 f = PyTuple_Pack(3,p1,p2,p3);
5195 Py_XDECREF(p1);
5196 Py_XDECREF(p2);
5197 Py_XDECREF(p3);
5198 file_count = 3;
5199 break;
5203 if (n == POPEN_4) {
5204 if (!_PyPopenCreateProcess(cmdstring,
5205 hChildStdinRd,
5206 hChildStdoutWr,
5207 hChildStdoutWr,
5208 &hProcess))
5209 return NULL;
5211 else {
5212 if (!_PyPopenCreateProcess(cmdstring,
5213 hChildStdinRd,
5214 hChildStdoutWr,
5215 hChildStderrWr,
5216 &hProcess))
5217 return NULL;
5221 * Insert the files we've created into the process dictionary
5222 * all referencing the list with the process handle and the
5223 * initial number of files (see description below in _PyPclose).
5224 * Since if _PyPclose later tried to wait on a process when all
5225 * handles weren't closed, it could create a deadlock with the
5226 * child, we spend some energy here to try to ensure that we
5227 * either insert all file handles into the dictionary or none
5228 * at all. It's a little clumsy with the various popen modes
5229 * and variable number of files involved.
5231 if (!_PyPopenProcs) {
5232 _PyPopenProcs = PyDict_New();
5235 if (_PyPopenProcs) {
5236 PyObject *procObj, *hProcessObj, *intObj, *fileObj[3];
5237 int ins_rc[3];
5239 fileObj[0] = fileObj[1] = fileObj[2] = NULL;
5240 ins_rc[0] = ins_rc[1] = ins_rc[2] = 0;
5242 procObj = PyList_New(2);
5243 hProcessObj = PyLong_FromVoidPtr(hProcess);
5244 intObj = PyInt_FromLong(file_count);
5246 if (procObj && hProcessObj && intObj) {
5247 PyList_SetItem(procObj,0,hProcessObj);
5248 PyList_SetItem(procObj,1,intObj);
5250 fileObj[0] = PyLong_FromVoidPtr(f1);
5251 if (fileObj[0]) {
5252 ins_rc[0] = PyDict_SetItem(_PyPopenProcs,
5253 fileObj[0],
5254 procObj);
5256 if (file_count >= 2) {
5257 fileObj[1] = PyLong_FromVoidPtr(f2);
5258 if (fileObj[1]) {
5259 ins_rc[1] = PyDict_SetItem(_PyPopenProcs,
5260 fileObj[1],
5261 procObj);
5264 if (file_count >= 3) {
5265 fileObj[2] = PyLong_FromVoidPtr(f3);
5266 if (fileObj[2]) {
5267 ins_rc[2] = PyDict_SetItem(_PyPopenProcs,
5268 fileObj[2],
5269 procObj);
5273 if (ins_rc[0] < 0 || !fileObj[0] ||
5274 ins_rc[1] < 0 || (file_count > 1 && !fileObj[1]) ||
5275 ins_rc[2] < 0 || (file_count > 2 && !fileObj[2])) {
5276 /* Something failed - remove any dictionary
5277 * entries that did make it.
5279 if (!ins_rc[0] && fileObj[0]) {
5280 PyDict_DelItem(_PyPopenProcs,
5281 fileObj[0]);
5283 if (!ins_rc[1] && fileObj[1]) {
5284 PyDict_DelItem(_PyPopenProcs,
5285 fileObj[1]);
5287 if (!ins_rc[2] && fileObj[2]) {
5288 PyDict_DelItem(_PyPopenProcs,
5289 fileObj[2]);
5295 * Clean up our localized references for the dictionary keys
5296 * and value since PyDict_SetItem will Py_INCREF any copies
5297 * that got placed in the dictionary.
5299 Py_XDECREF(procObj);
5300 Py_XDECREF(fileObj[0]);
5301 Py_XDECREF(fileObj[1]);
5302 Py_XDECREF(fileObj[2]);
5305 /* Child is launched. Close the parents copy of those pipe
5306 * handles that only the child should have open. You need to
5307 * make sure that no handles to the write end of the output pipe
5308 * are maintained in this process or else the pipe will not close
5309 * when the child process exits and the ReadFile will hang. */
5311 if (!CloseHandle(hChildStdinRd))
5312 return win32_error("CloseHandle", NULL);
5314 if (!CloseHandle(hChildStdoutWr))
5315 return win32_error("CloseHandle", NULL);
5317 if ((n != 4) && (!CloseHandle(hChildStderrWr)))
5318 return win32_error("CloseHandle", NULL);
5320 return f;
5324 * Wrapper for fclose() to use for popen* files, so we can retrieve the
5325 * exit code for the child process and return as a result of the close.
5327 * This function uses the _PyPopenProcs dictionary in order to map the
5328 * input file pointer to information about the process that was
5329 * originally created by the popen* call that created the file pointer.
5330 * The dictionary uses the file pointer as a key (with one entry
5331 * inserted for each file returned by the original popen* call) and a
5332 * single list object as the value for all files from a single call.
5333 * The list object contains the Win32 process handle at [0], and a file
5334 * count at [1], which is initialized to the total number of file
5335 * handles using that list.
5337 * This function closes whichever handle it is passed, and decrements
5338 * the file count in the dictionary for the process handle pointed to
5339 * by this file. On the last close (when the file count reaches zero),
5340 * this function will wait for the child process and then return its
5341 * exit code as the result of the close() operation. This permits the
5342 * files to be closed in any order - it is always the close() of the
5343 * final handle that will return the exit code.
5345 * NOTE: This function is currently called with the GIL released.
5346 * hence we use the GILState API to manage our state.
5349 static int _PyPclose(FILE *file)
5351 int result;
5352 DWORD exit_code;
5353 HANDLE hProcess;
5354 PyObject *procObj, *hProcessObj, *intObj, *fileObj;
5355 long file_count;
5356 #ifdef WITH_THREAD
5357 PyGILState_STATE state;
5358 #endif
5360 /* Close the file handle first, to ensure it can't block the
5361 * child from exiting if it's the last handle.
5363 result = fclose(file);
5364 #ifdef WITH_THREAD
5365 state = PyGILState_Ensure();
5366 #endif
5367 if (_PyPopenProcs) {
5368 if ((fileObj = PyLong_FromVoidPtr(file)) != NULL &&
5369 (procObj = PyDict_GetItem(_PyPopenProcs,
5370 fileObj)) != NULL &&
5371 (hProcessObj = PyList_GetItem(procObj,0)) != NULL &&
5372 (intObj = PyList_GetItem(procObj,1)) != NULL) {
5374 hProcess = PyLong_AsVoidPtr(hProcessObj);
5375 file_count = PyInt_AsLong(intObj);
5377 if (file_count > 1) {
5378 /* Still other files referencing process */
5379 file_count--;
5380 PyList_SetItem(procObj,1,
5381 PyInt_FromLong(file_count));
5382 } else {
5383 /* Last file for this process */
5384 if (result != EOF &&
5385 WaitForSingleObject(hProcess, INFINITE) != WAIT_FAILED &&
5386 GetExitCodeProcess(hProcess, &exit_code)) {
5387 /* Possible truncation here in 16-bit environments, but
5388 * real exit codes are just the lower byte in any event.
5390 result = exit_code;
5391 } else {
5392 /* Indicate failure - this will cause the file object
5393 * to raise an I/O error and translate the last Win32
5394 * error code from errno. We do have a problem with
5395 * last errors that overlap the normal errno table,
5396 * but that's a consistent problem with the file object.
5398 if (result != EOF) {
5399 /* If the error wasn't from the fclose(), then
5400 * set errno for the file object error handling.
5402 errno = GetLastError();
5404 result = -1;
5407 /* Free up the native handle at this point */
5408 CloseHandle(hProcess);
5411 /* Remove this file pointer from dictionary */
5412 PyDict_DelItem(_PyPopenProcs, fileObj);
5414 if (PyDict_Size(_PyPopenProcs) == 0) {
5415 Py_DECREF(_PyPopenProcs);
5416 _PyPopenProcs = NULL;
5419 } /* if object retrieval ok */
5421 Py_XDECREF(fileObj);
5422 } /* if _PyPopenProcs */
5424 #ifdef WITH_THREAD
5425 PyGILState_Release(state);
5426 #endif
5427 return result;
5430 #else /* which OS? */
5431 static PyObject *
5432 posix_popen(PyObject *self, PyObject *args)
5434 char *name;
5435 char *mode = "r";
5436 int bufsize = -1;
5437 FILE *fp;
5438 PyObject *f;
5439 if (!PyArg_ParseTuple(args, "s|si:popen", &name, &mode, &bufsize))
5440 return NULL;
5441 /* Strip mode of binary or text modifiers */
5442 if (strcmp(mode, "rb") == 0 || strcmp(mode, "rt") == 0)
5443 mode = "r";
5444 else if (strcmp(mode, "wb") == 0 || strcmp(mode, "wt") == 0)
5445 mode = "w";
5446 Py_BEGIN_ALLOW_THREADS
5447 fp = popen(name, mode);
5448 Py_END_ALLOW_THREADS
5449 if (fp == NULL)
5450 return posix_error();
5451 f = PyFile_FromFile(fp, name, mode, pclose);
5452 if (f != NULL)
5453 PyFile_SetBufSize(f, bufsize);
5454 return f;
5457 #endif /* PYOS_??? */
5458 #endif /* HAVE_POPEN */
5461 #ifdef HAVE_SETUID
5462 PyDoc_STRVAR(posix_setuid__doc__,
5463 "setuid(uid)\n\n\
5464 Set the current process's user id.");
5466 static PyObject *
5467 posix_setuid(PyObject *self, PyObject *args)
5469 int uid;
5470 if (!PyArg_ParseTuple(args, "i:setuid", &uid))
5471 return NULL;
5472 if (setuid(uid) < 0)
5473 return posix_error();
5474 Py_INCREF(Py_None);
5475 return Py_None;
5477 #endif /* HAVE_SETUID */
5480 #ifdef HAVE_SETEUID
5481 PyDoc_STRVAR(posix_seteuid__doc__,
5482 "seteuid(uid)\n\n\
5483 Set the current process's effective user id.");
5485 static PyObject *
5486 posix_seteuid (PyObject *self, PyObject *args)
5488 int euid;
5489 if (!PyArg_ParseTuple(args, "i", &euid)) {
5490 return NULL;
5491 } else if (seteuid(euid) < 0) {
5492 return posix_error();
5493 } else {
5494 Py_INCREF(Py_None);
5495 return Py_None;
5498 #endif /* HAVE_SETEUID */
5500 #ifdef HAVE_SETEGID
5501 PyDoc_STRVAR(posix_setegid__doc__,
5502 "setegid(gid)\n\n\
5503 Set the current process's effective group id.");
5505 static PyObject *
5506 posix_setegid (PyObject *self, PyObject *args)
5508 int egid;
5509 if (!PyArg_ParseTuple(args, "i", &egid)) {
5510 return NULL;
5511 } else if (setegid(egid) < 0) {
5512 return posix_error();
5513 } else {
5514 Py_INCREF(Py_None);
5515 return Py_None;
5518 #endif /* HAVE_SETEGID */
5520 #ifdef HAVE_SETREUID
5521 PyDoc_STRVAR(posix_setreuid__doc__,
5522 "setreuid(ruid, euid)\n\n\
5523 Set the current process's real and effective user ids.");
5525 static PyObject *
5526 posix_setreuid (PyObject *self, PyObject *args)
5528 int ruid, euid;
5529 if (!PyArg_ParseTuple(args, "ii", &ruid, &euid)) {
5530 return NULL;
5531 } else if (setreuid(ruid, euid) < 0) {
5532 return posix_error();
5533 } else {
5534 Py_INCREF(Py_None);
5535 return Py_None;
5538 #endif /* HAVE_SETREUID */
5540 #ifdef HAVE_SETREGID
5541 PyDoc_STRVAR(posix_setregid__doc__,
5542 "setregid(rgid, egid)\n\n\
5543 Set the current process's real and effective group ids.");
5545 static PyObject *
5546 posix_setregid (PyObject *self, PyObject *args)
5548 int rgid, egid;
5549 if (!PyArg_ParseTuple(args, "ii", &rgid, &egid)) {
5550 return NULL;
5551 } else if (setregid(rgid, egid) < 0) {
5552 return posix_error();
5553 } else {
5554 Py_INCREF(Py_None);
5555 return Py_None;
5558 #endif /* HAVE_SETREGID */
5560 #ifdef HAVE_SETGID
5561 PyDoc_STRVAR(posix_setgid__doc__,
5562 "setgid(gid)\n\n\
5563 Set the current process's group id.");
5565 static PyObject *
5566 posix_setgid(PyObject *self, PyObject *args)
5568 int gid;
5569 if (!PyArg_ParseTuple(args, "i:setgid", &gid))
5570 return NULL;
5571 if (setgid(gid) < 0)
5572 return posix_error();
5573 Py_INCREF(Py_None);
5574 return Py_None;
5576 #endif /* HAVE_SETGID */
5578 #ifdef HAVE_SETGROUPS
5579 PyDoc_STRVAR(posix_setgroups__doc__,
5580 "setgroups(list)\n\n\
5581 Set the groups of the current process to list.");
5583 static PyObject *
5584 posix_setgroups(PyObject *self, PyObject *groups)
5586 int i, len;
5587 gid_t grouplist[MAX_GROUPS];
5589 if (!PySequence_Check(groups)) {
5590 PyErr_SetString(PyExc_TypeError, "setgroups argument must be a sequence");
5591 return NULL;
5593 len = PySequence_Size(groups);
5594 if (len > MAX_GROUPS) {
5595 PyErr_SetString(PyExc_ValueError, "too many groups");
5596 return NULL;
5598 for(i = 0; i < len; i++) {
5599 PyObject *elem;
5600 elem = PySequence_GetItem(groups, i);
5601 if (!elem)
5602 return NULL;
5603 if (!PyInt_Check(elem)) {
5604 if (!PyLong_Check(elem)) {
5605 PyErr_SetString(PyExc_TypeError,
5606 "groups must be integers");
5607 Py_DECREF(elem);
5608 return NULL;
5609 } else {
5610 unsigned long x = PyLong_AsUnsignedLong(elem);
5611 if (PyErr_Occurred()) {
5612 PyErr_SetString(PyExc_TypeError,
5613 "group id too big");
5614 Py_DECREF(elem);
5615 return NULL;
5617 grouplist[i] = x;
5618 /* read back the value to see if it fitted in gid_t */
5619 if (grouplist[i] != x) {
5620 PyErr_SetString(PyExc_TypeError,
5621 "group id too big");
5622 Py_DECREF(elem);
5623 return NULL;
5626 } else {
5627 long x = PyInt_AsLong(elem);
5628 grouplist[i] = x;
5629 if (grouplist[i] != x) {
5630 PyErr_SetString(PyExc_TypeError,
5631 "group id too big");
5632 Py_DECREF(elem);
5633 return NULL;
5636 Py_DECREF(elem);
5639 if (setgroups(len, grouplist) < 0)
5640 return posix_error();
5641 Py_INCREF(Py_None);
5642 return Py_None;
5644 #endif /* HAVE_SETGROUPS */
5646 #if defined(HAVE_WAIT3) || defined(HAVE_WAIT4)
5647 static PyObject *
5648 wait_helper(pid_t pid, int status, struct rusage *ru)
5650 PyObject *result;
5651 static PyObject *struct_rusage;
5653 if (pid == -1)
5654 return posix_error();
5656 if (struct_rusage == NULL) {
5657 PyObject *m = PyImport_ImportModuleNoBlock("resource");
5658 if (m == NULL)
5659 return NULL;
5660 struct_rusage = PyObject_GetAttrString(m, "struct_rusage");
5661 Py_DECREF(m);
5662 if (struct_rusage == NULL)
5663 return NULL;
5666 /* XXX(nnorwitz): Copied (w/mods) from resource.c, there should be only one. */
5667 result = PyStructSequence_New((PyTypeObject*) struct_rusage);
5668 if (!result)
5669 return NULL;
5671 #ifndef doubletime
5672 #define doubletime(TV) ((double)(TV).tv_sec + (TV).tv_usec * 0.000001)
5673 #endif
5675 PyStructSequence_SET_ITEM(result, 0,
5676 PyFloat_FromDouble(doubletime(ru->ru_utime)));
5677 PyStructSequence_SET_ITEM(result, 1,
5678 PyFloat_FromDouble(doubletime(ru->ru_stime)));
5679 #define SET_INT(result, index, value)\
5680 PyStructSequence_SET_ITEM(result, index, PyInt_FromLong(value))
5681 SET_INT(result, 2, ru->ru_maxrss);
5682 SET_INT(result, 3, ru->ru_ixrss);
5683 SET_INT(result, 4, ru->ru_idrss);
5684 SET_INT(result, 5, ru->ru_isrss);
5685 SET_INT(result, 6, ru->ru_minflt);
5686 SET_INT(result, 7, ru->ru_majflt);
5687 SET_INT(result, 8, ru->ru_nswap);
5688 SET_INT(result, 9, ru->ru_inblock);
5689 SET_INT(result, 10, ru->ru_oublock);
5690 SET_INT(result, 11, ru->ru_msgsnd);
5691 SET_INT(result, 12, ru->ru_msgrcv);
5692 SET_INT(result, 13, ru->ru_nsignals);
5693 SET_INT(result, 14, ru->ru_nvcsw);
5694 SET_INT(result, 15, ru->ru_nivcsw);
5695 #undef SET_INT
5697 if (PyErr_Occurred()) {
5698 Py_DECREF(result);
5699 return NULL;
5702 return Py_BuildValue("iiN", pid, status, result);
5704 #endif /* HAVE_WAIT3 || HAVE_WAIT4 */
5706 #ifdef HAVE_WAIT3
5707 PyDoc_STRVAR(posix_wait3__doc__,
5708 "wait3(options) -> (pid, status, rusage)\n\n\
5709 Wait for completion of a child process.");
5711 static PyObject *
5712 posix_wait3(PyObject *self, PyObject *args)
5714 pid_t pid;
5715 int options;
5716 struct rusage ru;
5717 WAIT_TYPE status;
5718 WAIT_STATUS_INT(status) = 0;
5720 if (!PyArg_ParseTuple(args, "i:wait3", &options))
5721 return NULL;
5723 Py_BEGIN_ALLOW_THREADS
5724 pid = wait3(&status, options, &ru);
5725 Py_END_ALLOW_THREADS
5727 return wait_helper(pid, WAIT_STATUS_INT(status), &ru);
5729 #endif /* HAVE_WAIT3 */
5731 #ifdef HAVE_WAIT4
5732 PyDoc_STRVAR(posix_wait4__doc__,
5733 "wait4(pid, options) -> (pid, status, rusage)\n\n\
5734 Wait for completion of a given child process.");
5736 static PyObject *
5737 posix_wait4(PyObject *self, PyObject *args)
5739 pid_t pid;
5740 int options;
5741 struct rusage ru;
5742 WAIT_TYPE status;
5743 WAIT_STATUS_INT(status) = 0;
5745 if (!PyArg_ParseTuple(args, "ii:wait4", &pid, &options))
5746 return NULL;
5748 Py_BEGIN_ALLOW_THREADS
5749 pid = wait4(pid, &status, options, &ru);
5750 Py_END_ALLOW_THREADS
5752 return wait_helper(pid, WAIT_STATUS_INT(status), &ru);
5754 #endif /* HAVE_WAIT4 */
5756 #ifdef HAVE_WAITPID
5757 PyDoc_STRVAR(posix_waitpid__doc__,
5758 "waitpid(pid, options) -> (pid, status)\n\n\
5759 Wait for completion of a given child process.");
5761 static PyObject *
5762 posix_waitpid(PyObject *self, PyObject *args)
5764 pid_t pid;
5765 int options;
5766 WAIT_TYPE status;
5767 WAIT_STATUS_INT(status) = 0;
5769 if (!PyArg_ParseTuple(args, "ii:waitpid", &pid, &options))
5770 return NULL;
5771 Py_BEGIN_ALLOW_THREADS
5772 pid = waitpid(pid, &status, options);
5773 Py_END_ALLOW_THREADS
5774 if (pid == -1)
5775 return posix_error();
5777 return Py_BuildValue("ii", pid, WAIT_STATUS_INT(status));
5780 #elif defined(HAVE_CWAIT)
5782 /* MS C has a variant of waitpid() that's usable for most purposes. */
5783 PyDoc_STRVAR(posix_waitpid__doc__,
5784 "waitpid(pid, options) -> (pid, status << 8)\n\n"
5785 "Wait for completion of a given process. options is ignored on Windows.");
5787 static PyObject *
5788 posix_waitpid(PyObject *self, PyObject *args)
5790 Py_intptr_t pid;
5791 int status, options;
5793 if (!PyArg_ParseTuple(args, "ii:waitpid", &pid, &options))
5794 return NULL;
5795 Py_BEGIN_ALLOW_THREADS
5796 pid = _cwait(&status, pid, options);
5797 Py_END_ALLOW_THREADS
5798 if (pid == -1)
5799 return posix_error();
5801 /* shift the status left a byte so this is more like the POSIX waitpid */
5802 return Py_BuildValue("ii", pid, status << 8);
5804 #endif /* HAVE_WAITPID || HAVE_CWAIT */
5806 #ifdef HAVE_WAIT
5807 PyDoc_STRVAR(posix_wait__doc__,
5808 "wait() -> (pid, status)\n\n\
5809 Wait for completion of a child process.");
5811 static PyObject *
5812 posix_wait(PyObject *self, PyObject *noargs)
5814 pid_t pid;
5815 WAIT_TYPE status;
5816 WAIT_STATUS_INT(status) = 0;
5818 Py_BEGIN_ALLOW_THREADS
5819 pid = wait(&status);
5820 Py_END_ALLOW_THREADS
5821 if (pid == -1)
5822 return posix_error();
5824 return Py_BuildValue("ii", pid, WAIT_STATUS_INT(status));
5826 #endif
5829 PyDoc_STRVAR(posix_lstat__doc__,
5830 "lstat(path) -> stat result\n\n\
5831 Like stat(path), but do not follow symbolic links.");
5833 static PyObject *
5834 posix_lstat(PyObject *self, PyObject *args)
5836 #ifdef HAVE_LSTAT
5837 return posix_do_stat(self, args, "et:lstat", lstat, NULL, NULL);
5838 #else /* !HAVE_LSTAT */
5839 #ifdef MS_WINDOWS
5840 return posix_do_stat(self, args, "et:lstat", STAT, "U:lstat", win32_wstat);
5841 #else
5842 return posix_do_stat(self, args, "et:lstat", STAT, NULL, NULL);
5843 #endif
5844 #endif /* !HAVE_LSTAT */
5848 #ifdef HAVE_READLINK
5849 PyDoc_STRVAR(posix_readlink__doc__,
5850 "readlink(path) -> path\n\n\
5851 Return a string representing the path to which the symbolic link points.");
5853 static PyObject *
5854 posix_readlink(PyObject *self, PyObject *args)
5856 PyObject* v;
5857 char buf[MAXPATHLEN];
5858 char *path;
5859 int n;
5860 #ifdef Py_USING_UNICODE
5861 int arg_is_unicode = 0;
5862 #endif
5864 if (!PyArg_ParseTuple(args, "et:readlink",
5865 Py_FileSystemDefaultEncoding, &path))
5866 return NULL;
5867 #ifdef Py_USING_UNICODE
5868 v = PySequence_GetItem(args, 0);
5869 if (v == NULL) {
5870 PyMem_Free(path);
5871 return NULL;
5874 if (PyUnicode_Check(v)) {
5875 arg_is_unicode = 1;
5877 Py_DECREF(v);
5878 #endif
5880 Py_BEGIN_ALLOW_THREADS
5881 n = readlink(path, buf, (int) sizeof buf);
5882 Py_END_ALLOW_THREADS
5883 if (n < 0)
5884 return posix_error_with_allocated_filename(path);
5886 PyMem_Free(path);
5887 v = PyString_FromStringAndSize(buf, n);
5888 #ifdef Py_USING_UNICODE
5889 if (arg_is_unicode) {
5890 PyObject *w;
5892 w = PyUnicode_FromEncodedObject(v,
5893 Py_FileSystemDefaultEncoding,
5894 "strict");
5895 if (w != NULL) {
5896 Py_DECREF(v);
5897 v = w;
5899 else {
5900 /* fall back to the original byte string, as
5901 discussed in patch #683592 */
5902 PyErr_Clear();
5905 #endif
5906 return v;
5908 #endif /* HAVE_READLINK */
5911 #ifdef HAVE_SYMLINK
5912 PyDoc_STRVAR(posix_symlink__doc__,
5913 "symlink(src, dst)\n\n\
5914 Create a symbolic link pointing to src named dst.");
5916 static PyObject *
5917 posix_symlink(PyObject *self, PyObject *args)
5919 return posix_2str(args, "etet:symlink", symlink);
5921 #endif /* HAVE_SYMLINK */
5924 #ifdef HAVE_TIMES
5925 #ifndef HZ
5926 #define HZ 60 /* Universal constant :-) */
5927 #endif /* HZ */
5929 #if defined(PYCC_VACPP) && defined(PYOS_OS2)
5930 static long
5931 system_uptime(void)
5933 ULONG value = 0;
5935 Py_BEGIN_ALLOW_THREADS
5936 DosQuerySysInfo(QSV_MS_COUNT, QSV_MS_COUNT, &value, sizeof(value));
5937 Py_END_ALLOW_THREADS
5939 return value;
5942 static PyObject *
5943 posix_times(PyObject *self, PyObject *noargs)
5945 /* Currently Only Uptime is Provided -- Others Later */
5946 return Py_BuildValue("ddddd",
5947 (double)0 /* t.tms_utime / HZ */,
5948 (double)0 /* t.tms_stime / HZ */,
5949 (double)0 /* t.tms_cutime / HZ */,
5950 (double)0 /* t.tms_cstime / HZ */,
5951 (double)system_uptime() / 1000);
5953 #else /* not OS2 */
5954 static PyObject *
5955 posix_times(PyObject *self, PyObject *noargs)
5957 struct tms t;
5958 clock_t c;
5959 errno = 0;
5960 c = times(&t);
5961 if (c == (clock_t) -1)
5962 return posix_error();
5963 return Py_BuildValue("ddddd",
5964 (double)t.tms_utime / HZ,
5965 (double)t.tms_stime / HZ,
5966 (double)t.tms_cutime / HZ,
5967 (double)t.tms_cstime / HZ,
5968 (double)c / HZ);
5970 #endif /* not OS2 */
5971 #endif /* HAVE_TIMES */
5974 #ifdef MS_WINDOWS
5975 #define HAVE_TIMES /* so the method table will pick it up */
5976 static PyObject *
5977 posix_times(PyObject *self, PyObject *noargs)
5979 FILETIME create, exit, kernel, user;
5980 HANDLE hProc;
5981 hProc = GetCurrentProcess();
5982 GetProcessTimes(hProc, &create, &exit, &kernel, &user);
5983 /* The fields of a FILETIME structure are the hi and lo part
5984 of a 64-bit value expressed in 100 nanosecond units.
5985 1e7 is one second in such units; 1e-7 the inverse.
5986 429.4967296 is 2**32 / 1e7 or 2**32 * 1e-7.
5988 return Py_BuildValue(
5989 "ddddd",
5990 (double)(user.dwHighDateTime*429.4967296 +
5991 user.dwLowDateTime*1e-7),
5992 (double)(kernel.dwHighDateTime*429.4967296 +
5993 kernel.dwLowDateTime*1e-7),
5994 (double)0,
5995 (double)0,
5996 (double)0);
5998 #endif /* MS_WINDOWS */
6000 #ifdef HAVE_TIMES
6001 PyDoc_STRVAR(posix_times__doc__,
6002 "times() -> (utime, stime, cutime, cstime, elapsed_time)\n\n\
6003 Return a tuple of floating point numbers indicating process times.");
6004 #endif
6007 #ifdef HAVE_GETSID
6008 PyDoc_STRVAR(posix_getsid__doc__,
6009 "getsid(pid) -> sid\n\n\
6010 Call the system call getsid().");
6012 static PyObject *
6013 posix_getsid(PyObject *self, PyObject *args)
6015 pid_t pid;
6016 int sid;
6017 if (!PyArg_ParseTuple(args, "i:getsid", &pid))
6018 return NULL;
6019 sid = getsid(pid);
6020 if (sid < 0)
6021 return posix_error();
6022 return PyInt_FromLong((long)sid);
6024 #endif /* HAVE_GETSID */
6027 #ifdef HAVE_SETSID
6028 PyDoc_STRVAR(posix_setsid__doc__,
6029 "setsid()\n\n\
6030 Call the system call setsid().");
6032 static PyObject *
6033 posix_setsid(PyObject *self, PyObject *noargs)
6035 if (setsid() < 0)
6036 return posix_error();
6037 Py_INCREF(Py_None);
6038 return Py_None;
6040 #endif /* HAVE_SETSID */
6042 #ifdef HAVE_SETPGID
6043 PyDoc_STRVAR(posix_setpgid__doc__,
6044 "setpgid(pid, pgrp)\n\n\
6045 Call the system call setpgid().");
6047 static PyObject *
6048 posix_setpgid(PyObject *self, PyObject *args)
6050 pid_t pid;
6051 int pgrp;
6052 if (!PyArg_ParseTuple(args, "ii:setpgid", &pid, &pgrp))
6053 return NULL;
6054 if (setpgid(pid, pgrp) < 0)
6055 return posix_error();
6056 Py_INCREF(Py_None);
6057 return Py_None;
6059 #endif /* HAVE_SETPGID */
6062 #ifdef HAVE_TCGETPGRP
6063 PyDoc_STRVAR(posix_tcgetpgrp__doc__,
6064 "tcgetpgrp(fd) -> pgid\n\n\
6065 Return the process group associated with the terminal given by a fd.");
6067 static PyObject *
6068 posix_tcgetpgrp(PyObject *self, PyObject *args)
6070 int fd;
6071 pid_t pgid;
6072 if (!PyArg_ParseTuple(args, "i:tcgetpgrp", &fd))
6073 return NULL;
6074 pgid = tcgetpgrp(fd);
6075 if (pgid < 0)
6076 return posix_error();
6077 return PyInt_FromLong((long)pgid);
6079 #endif /* HAVE_TCGETPGRP */
6082 #ifdef HAVE_TCSETPGRP
6083 PyDoc_STRVAR(posix_tcsetpgrp__doc__,
6084 "tcsetpgrp(fd, pgid)\n\n\
6085 Set the process group associated with the terminal given by a fd.");
6087 static PyObject *
6088 posix_tcsetpgrp(PyObject *self, PyObject *args)
6090 int fd, pgid;
6091 if (!PyArg_ParseTuple(args, "ii:tcsetpgrp", &fd, &pgid))
6092 return NULL;
6093 if (tcsetpgrp(fd, pgid) < 0)
6094 return posix_error();
6095 Py_INCREF(Py_None);
6096 return Py_None;
6098 #endif /* HAVE_TCSETPGRP */
6100 /* Functions acting on file descriptors */
6102 PyDoc_STRVAR(posix_open__doc__,
6103 "open(filename, flag [, mode=0777]) -> fd\n\n\
6104 Open a file (for low level IO).");
6106 static PyObject *
6107 posix_open(PyObject *self, PyObject *args)
6109 char *file = NULL;
6110 int flag;
6111 int mode = 0777;
6112 int fd;
6114 #ifdef MS_WINDOWS
6115 if (unicode_file_names()) {
6116 PyUnicodeObject *po;
6117 if (PyArg_ParseTuple(args, "Ui|i:mkdir", &po, &flag, &mode)) {
6118 Py_BEGIN_ALLOW_THREADS
6119 /* PyUnicode_AS_UNICODE OK without thread
6120 lock as it is a simple dereference. */
6121 fd = _wopen(PyUnicode_AS_UNICODE(po), flag, mode);
6122 Py_END_ALLOW_THREADS
6123 if (fd < 0)
6124 return posix_error();
6125 return PyInt_FromLong((long)fd);
6127 /* Drop the argument parsing error as narrow strings
6128 are also valid. */
6129 PyErr_Clear();
6131 #endif
6133 if (!PyArg_ParseTuple(args, "eti|i",
6134 Py_FileSystemDefaultEncoding, &file,
6135 &flag, &mode))
6136 return NULL;
6138 Py_BEGIN_ALLOW_THREADS
6139 fd = open(file, flag, mode);
6140 Py_END_ALLOW_THREADS
6141 if (fd < 0)
6142 return posix_error_with_allocated_filename(file);
6143 PyMem_Free(file);
6144 return PyInt_FromLong((long)fd);
6148 PyDoc_STRVAR(posix_close__doc__,
6149 "close(fd)\n\n\
6150 Close a file descriptor (for low level IO).");
6152 static PyObject *
6153 posix_close(PyObject *self, PyObject *args)
6155 int fd, res;
6156 if (!PyArg_ParseTuple(args, "i:close", &fd))
6157 return NULL;
6158 Py_BEGIN_ALLOW_THREADS
6159 res = close(fd);
6160 Py_END_ALLOW_THREADS
6161 if (res < 0)
6162 return posix_error();
6163 Py_INCREF(Py_None);
6164 return Py_None;
6168 PyDoc_STRVAR(posix_closerange__doc__,
6169 "closerange(fd_low, fd_high)\n\n\
6170 Closes all file descriptors in [fd_low, fd_high), ignoring errors.");
6172 static PyObject *
6173 posix_closerange(PyObject *self, PyObject *args)
6175 int fd_from, fd_to, i;
6176 if (!PyArg_ParseTuple(args, "ii:closerange", &fd_from, &fd_to))
6177 return NULL;
6178 Py_BEGIN_ALLOW_THREADS
6179 for (i = fd_from; i < fd_to; i++)
6180 close(i);
6181 Py_END_ALLOW_THREADS
6182 Py_RETURN_NONE;
6186 PyDoc_STRVAR(posix_dup__doc__,
6187 "dup(fd) -> fd2\n\n\
6188 Return a duplicate of a file descriptor.");
6190 static PyObject *
6191 posix_dup(PyObject *self, PyObject *args)
6193 int fd;
6194 if (!PyArg_ParseTuple(args, "i:dup", &fd))
6195 return NULL;
6196 Py_BEGIN_ALLOW_THREADS
6197 fd = dup(fd);
6198 Py_END_ALLOW_THREADS
6199 if (fd < 0)
6200 return posix_error();
6201 return PyInt_FromLong((long)fd);
6205 PyDoc_STRVAR(posix_dup2__doc__,
6206 "dup2(old_fd, new_fd)\n\n\
6207 Duplicate file descriptor.");
6209 static PyObject *
6210 posix_dup2(PyObject *self, PyObject *args)
6212 int fd, fd2, res;
6213 if (!PyArg_ParseTuple(args, "ii:dup2", &fd, &fd2))
6214 return NULL;
6215 Py_BEGIN_ALLOW_THREADS
6216 res = dup2(fd, fd2);
6217 Py_END_ALLOW_THREADS
6218 if (res < 0)
6219 return posix_error();
6220 Py_INCREF(Py_None);
6221 return Py_None;
6225 PyDoc_STRVAR(posix_lseek__doc__,
6226 "lseek(fd, pos, how) -> newpos\n\n\
6227 Set the current position of a file descriptor.");
6229 static PyObject *
6230 posix_lseek(PyObject *self, PyObject *args)
6232 int fd, how;
6233 #if defined(MS_WIN64) || defined(MS_WINDOWS)
6234 PY_LONG_LONG pos, res;
6235 #else
6236 off_t pos, res;
6237 #endif
6238 PyObject *posobj;
6239 if (!PyArg_ParseTuple(args, "iOi:lseek", &fd, &posobj, &how))
6240 return NULL;
6241 #ifdef SEEK_SET
6242 /* Turn 0, 1, 2 into SEEK_{SET,CUR,END} */
6243 switch (how) {
6244 case 0: how = SEEK_SET; break;
6245 case 1: how = SEEK_CUR; break;
6246 case 2: how = SEEK_END; break;
6248 #endif /* SEEK_END */
6250 #if !defined(HAVE_LARGEFILE_SUPPORT)
6251 pos = PyInt_AsLong(posobj);
6252 #else
6253 pos = PyLong_Check(posobj) ?
6254 PyLong_AsLongLong(posobj) : PyInt_AsLong(posobj);
6255 #endif
6256 if (PyErr_Occurred())
6257 return NULL;
6259 Py_BEGIN_ALLOW_THREADS
6260 #if defined(MS_WIN64) || defined(MS_WINDOWS)
6261 res = _lseeki64(fd, pos, how);
6262 #else
6263 res = lseek(fd, pos, how);
6264 #endif
6265 Py_END_ALLOW_THREADS
6266 if (res < 0)
6267 return posix_error();
6269 #if !defined(HAVE_LARGEFILE_SUPPORT)
6270 return PyInt_FromLong(res);
6271 #else
6272 return PyLong_FromLongLong(res);
6273 #endif
6277 PyDoc_STRVAR(posix_read__doc__,
6278 "read(fd, buffersize) -> string\n\n\
6279 Read a file descriptor.");
6281 static PyObject *
6282 posix_read(PyObject *self, PyObject *args)
6284 int fd, size, n;
6285 PyObject *buffer;
6286 if (!PyArg_ParseTuple(args, "ii:read", &fd, &size))
6287 return NULL;
6288 if (size < 0) {
6289 errno = EINVAL;
6290 return posix_error();
6292 buffer = PyString_FromStringAndSize((char *)NULL, size);
6293 if (buffer == NULL)
6294 return NULL;
6295 Py_BEGIN_ALLOW_THREADS
6296 n = read(fd, PyString_AsString(buffer), size);
6297 Py_END_ALLOW_THREADS
6298 if (n < 0) {
6299 Py_DECREF(buffer);
6300 return posix_error();
6302 if (n != size)
6303 _PyString_Resize(&buffer, n);
6304 return buffer;
6308 PyDoc_STRVAR(posix_write__doc__,
6309 "write(fd, string) -> byteswritten\n\n\
6310 Write a string to a file descriptor.");
6312 static PyObject *
6313 posix_write(PyObject *self, PyObject *args)
6315 int fd;
6316 Py_ssize_t size;
6317 char *buffer;
6319 if (!PyArg_ParseTuple(args, "is#:write", &fd, &buffer, &size))
6320 return NULL;
6321 Py_BEGIN_ALLOW_THREADS
6322 size = write(fd, buffer, (size_t)size);
6323 Py_END_ALLOW_THREADS
6324 if (size < 0)
6325 return posix_error();
6326 return PyInt_FromSsize_t(size);
6330 PyDoc_STRVAR(posix_fstat__doc__,
6331 "fstat(fd) -> stat result\n\n\
6332 Like stat(), but for an open file descriptor.");
6334 static PyObject *
6335 posix_fstat(PyObject *self, PyObject *args)
6337 int fd;
6338 STRUCT_STAT st;
6339 int res;
6340 if (!PyArg_ParseTuple(args, "i:fstat", &fd))
6341 return NULL;
6342 #ifdef __VMS
6343 /* on OpenVMS we must ensure that all bytes are written to the file */
6344 fsync(fd);
6345 #endif
6346 Py_BEGIN_ALLOW_THREADS
6347 res = FSTAT(fd, &st);
6348 Py_END_ALLOW_THREADS
6349 if (res != 0) {
6350 #ifdef MS_WINDOWS
6351 return win32_error("fstat", NULL);
6352 #else
6353 return posix_error();
6354 #endif
6357 return _pystat_fromstructstat(&st);
6361 PyDoc_STRVAR(posix_fdopen__doc__,
6362 "fdopen(fd [, mode='r' [, bufsize]]) -> file_object\n\n\
6363 Return an open file object connected to a file descriptor.");
6365 static PyObject *
6366 posix_fdopen(PyObject *self, PyObject *args)
6368 int fd;
6369 char *orgmode = "r";
6370 int bufsize = -1;
6371 FILE *fp;
6372 PyObject *f;
6373 char *mode;
6374 if (!PyArg_ParseTuple(args, "i|si", &fd, &orgmode, &bufsize))
6375 return NULL;
6377 /* Sanitize mode. See fileobject.c */
6378 mode = PyMem_MALLOC(strlen(orgmode)+3);
6379 if (!mode) {
6380 PyErr_NoMemory();
6381 return NULL;
6383 strcpy(mode, orgmode);
6384 if (_PyFile_SanitizeMode(mode)) {
6385 PyMem_FREE(mode);
6386 return NULL;
6388 Py_BEGIN_ALLOW_THREADS
6389 #if !defined(MS_WINDOWS) && defined(HAVE_FCNTL_H)
6390 if (mode[0] == 'a') {
6391 /* try to make sure the O_APPEND flag is set */
6392 int flags;
6393 flags = fcntl(fd, F_GETFL);
6394 if (flags != -1)
6395 fcntl(fd, F_SETFL, flags | O_APPEND);
6396 fp = fdopen(fd, mode);
6397 if (fp == NULL && flags != -1)
6398 /* restore old mode if fdopen failed */
6399 fcntl(fd, F_SETFL, flags);
6400 } else {
6401 fp = fdopen(fd, mode);
6403 #else
6404 fp = fdopen(fd, mode);
6405 #endif
6406 Py_END_ALLOW_THREADS
6407 PyMem_FREE(mode);
6408 if (fp == NULL)
6409 return posix_error();
6410 f = PyFile_FromFile(fp, "<fdopen>", orgmode, fclose);
6411 if (f != NULL)
6412 PyFile_SetBufSize(f, bufsize);
6413 return f;
6416 PyDoc_STRVAR(posix_isatty__doc__,
6417 "isatty(fd) -> bool\n\n\
6418 Return True if the file descriptor 'fd' is an open file descriptor\n\
6419 connected to the slave end of a terminal.");
6421 static PyObject *
6422 posix_isatty(PyObject *self, PyObject *args)
6424 int fd;
6425 if (!PyArg_ParseTuple(args, "i:isatty", &fd))
6426 return NULL;
6427 return PyBool_FromLong(isatty(fd));
6430 #ifdef HAVE_PIPE
6431 PyDoc_STRVAR(posix_pipe__doc__,
6432 "pipe() -> (read_end, write_end)\n\n\
6433 Create a pipe.");
6435 static PyObject *
6436 posix_pipe(PyObject *self, PyObject *noargs)
6438 #if defined(PYOS_OS2)
6439 HFILE read, write;
6440 APIRET rc;
6442 Py_BEGIN_ALLOW_THREADS
6443 rc = DosCreatePipe( &read, &write, 4096);
6444 Py_END_ALLOW_THREADS
6445 if (rc != NO_ERROR)
6446 return os2_error(rc);
6448 return Py_BuildValue("(ii)", read, write);
6449 #else
6450 #if !defined(MS_WINDOWS)
6451 int fds[2];
6452 int res;
6453 Py_BEGIN_ALLOW_THREADS
6454 res = pipe(fds);
6455 Py_END_ALLOW_THREADS
6456 if (res != 0)
6457 return posix_error();
6458 return Py_BuildValue("(ii)", fds[0], fds[1]);
6459 #else /* MS_WINDOWS */
6460 HANDLE read, write;
6461 int read_fd, write_fd;
6462 BOOL ok;
6463 Py_BEGIN_ALLOW_THREADS
6464 ok = CreatePipe(&read, &write, NULL, 0);
6465 Py_END_ALLOW_THREADS
6466 if (!ok)
6467 return win32_error("CreatePipe", NULL);
6468 read_fd = _open_osfhandle((Py_intptr_t)read, 0);
6469 write_fd = _open_osfhandle((Py_intptr_t)write, 1);
6470 return Py_BuildValue("(ii)", read_fd, write_fd);
6471 #endif /* MS_WINDOWS */
6472 #endif
6474 #endif /* HAVE_PIPE */
6477 #ifdef HAVE_MKFIFO
6478 PyDoc_STRVAR(posix_mkfifo__doc__,
6479 "mkfifo(filename [, mode=0666])\n\n\
6480 Create a FIFO (a POSIX named pipe).");
6482 static PyObject *
6483 posix_mkfifo(PyObject *self, PyObject *args)
6485 char *filename;
6486 int mode = 0666;
6487 int res;
6488 if (!PyArg_ParseTuple(args, "s|i:mkfifo", &filename, &mode))
6489 return NULL;
6490 Py_BEGIN_ALLOW_THREADS
6491 res = mkfifo(filename, mode);
6492 Py_END_ALLOW_THREADS
6493 if (res < 0)
6494 return posix_error();
6495 Py_INCREF(Py_None);
6496 return Py_None;
6498 #endif
6501 #if defined(HAVE_MKNOD) && defined(HAVE_MAKEDEV)
6502 PyDoc_STRVAR(posix_mknod__doc__,
6503 "mknod(filename [, mode=0600, device])\n\n\
6504 Create a filesystem node (file, device special file or named pipe)\n\
6505 named filename. mode specifies both the permissions to use and the\n\
6506 type of node to be created, being combined (bitwise OR) with one of\n\
6507 S_IFREG, S_IFCHR, S_IFBLK, and S_IFIFO. For S_IFCHR and S_IFBLK,\n\
6508 device defines the newly created device special file (probably using\n\
6509 os.makedev()), otherwise it is ignored.");
6512 static PyObject *
6513 posix_mknod(PyObject *self, PyObject *args)
6515 char *filename;
6516 int mode = 0600;
6517 int device = 0;
6518 int res;
6519 if (!PyArg_ParseTuple(args, "s|ii:mknod", &filename, &mode, &device))
6520 return NULL;
6521 Py_BEGIN_ALLOW_THREADS
6522 res = mknod(filename, mode, device);
6523 Py_END_ALLOW_THREADS
6524 if (res < 0)
6525 return posix_error();
6526 Py_INCREF(Py_None);
6527 return Py_None;
6529 #endif
6531 #ifdef HAVE_DEVICE_MACROS
6532 PyDoc_STRVAR(posix_major__doc__,
6533 "major(device) -> major number\n\
6534 Extracts a device major number from a raw device number.");
6536 static PyObject *
6537 posix_major(PyObject *self, PyObject *args)
6539 int device;
6540 if (!PyArg_ParseTuple(args, "i:major", &device))
6541 return NULL;
6542 return PyInt_FromLong((long)major(device));
6545 PyDoc_STRVAR(posix_minor__doc__,
6546 "minor(device) -> minor number\n\
6547 Extracts a device minor number from a raw device number.");
6549 static PyObject *
6550 posix_minor(PyObject *self, PyObject *args)
6552 int device;
6553 if (!PyArg_ParseTuple(args, "i:minor", &device))
6554 return NULL;
6555 return PyInt_FromLong((long)minor(device));
6558 PyDoc_STRVAR(posix_makedev__doc__,
6559 "makedev(major, minor) -> device number\n\
6560 Composes a raw device number from the major and minor device numbers.");
6562 static PyObject *
6563 posix_makedev(PyObject *self, PyObject *args)
6565 int major, minor;
6566 if (!PyArg_ParseTuple(args, "ii:makedev", &major, &minor))
6567 return NULL;
6568 return PyInt_FromLong((long)makedev(major, minor));
6570 #endif /* device macros */
6573 #ifdef HAVE_FTRUNCATE
6574 PyDoc_STRVAR(posix_ftruncate__doc__,
6575 "ftruncate(fd, length)\n\n\
6576 Truncate a file to a specified length.");
6578 static PyObject *
6579 posix_ftruncate(PyObject *self, PyObject *args)
6581 int fd;
6582 off_t length;
6583 int res;
6584 PyObject *lenobj;
6586 if (!PyArg_ParseTuple(args, "iO:ftruncate", &fd, &lenobj))
6587 return NULL;
6589 #if !defined(HAVE_LARGEFILE_SUPPORT)
6590 length = PyInt_AsLong(lenobj);
6591 #else
6592 length = PyLong_Check(lenobj) ?
6593 PyLong_AsLongLong(lenobj) : PyInt_AsLong(lenobj);
6594 #endif
6595 if (PyErr_Occurred())
6596 return NULL;
6598 Py_BEGIN_ALLOW_THREADS
6599 res = ftruncate(fd, length);
6600 Py_END_ALLOW_THREADS
6601 if (res < 0) {
6602 PyErr_SetFromErrno(PyExc_IOError);
6603 return NULL;
6605 Py_INCREF(Py_None);
6606 return Py_None;
6608 #endif
6610 #ifdef HAVE_PUTENV
6611 PyDoc_STRVAR(posix_putenv__doc__,
6612 "putenv(key, value)\n\n\
6613 Change or add an environment variable.");
6615 /* Save putenv() parameters as values here, so we can collect them when they
6616 * get re-set with another call for the same key. */
6617 static PyObject *posix_putenv_garbage;
6619 static PyObject *
6620 posix_putenv(PyObject *self, PyObject *args)
6622 char *s1, *s2;
6623 char *newenv;
6624 PyObject *newstr;
6625 size_t len;
6627 if (!PyArg_ParseTuple(args, "ss:putenv", &s1, &s2))
6628 return NULL;
6630 #if defined(PYOS_OS2)
6631 if (stricmp(s1, "BEGINLIBPATH") == 0) {
6632 APIRET rc;
6634 rc = DosSetExtLIBPATH(s2, BEGIN_LIBPATH);
6635 if (rc != NO_ERROR)
6636 return os2_error(rc);
6638 } else if (stricmp(s1, "ENDLIBPATH") == 0) {
6639 APIRET rc;
6641 rc = DosSetExtLIBPATH(s2, END_LIBPATH);
6642 if (rc != NO_ERROR)
6643 return os2_error(rc);
6644 } else {
6645 #endif
6647 /* XXX This can leak memory -- not easy to fix :-( */
6648 len = strlen(s1) + strlen(s2) + 2;
6649 /* len includes space for a trailing \0; the size arg to
6650 PyString_FromStringAndSize does not count that */
6651 newstr = PyString_FromStringAndSize(NULL, (int)len - 1);
6652 if (newstr == NULL)
6653 return PyErr_NoMemory();
6654 newenv = PyString_AS_STRING(newstr);
6655 PyOS_snprintf(newenv, len, "%s=%s", s1, s2);
6656 if (putenv(newenv)) {
6657 Py_DECREF(newstr);
6658 posix_error();
6659 return NULL;
6661 /* Install the first arg and newstr in posix_putenv_garbage;
6662 * this will cause previous value to be collected. This has to
6663 * happen after the real putenv() call because the old value
6664 * was still accessible until then. */
6665 if (PyDict_SetItem(posix_putenv_garbage,
6666 PyTuple_GET_ITEM(args, 0), newstr)) {
6667 /* really not much we can do; just leak */
6668 PyErr_Clear();
6670 else {
6671 Py_DECREF(newstr);
6674 #if defined(PYOS_OS2)
6676 #endif
6677 Py_INCREF(Py_None);
6678 return Py_None;
6680 #endif /* putenv */
6682 #ifdef HAVE_UNSETENV
6683 PyDoc_STRVAR(posix_unsetenv__doc__,
6684 "unsetenv(key)\n\n\
6685 Delete an environment variable.");
6687 static PyObject *
6688 posix_unsetenv(PyObject *self, PyObject *args)
6690 char *s1;
6692 if (!PyArg_ParseTuple(args, "s:unsetenv", &s1))
6693 return NULL;
6695 unsetenv(s1);
6697 /* Remove the key from posix_putenv_garbage;
6698 * this will cause it to be collected. This has to
6699 * happen after the real unsetenv() call because the
6700 * old value was still accessible until then.
6702 if (PyDict_DelItem(posix_putenv_garbage,
6703 PyTuple_GET_ITEM(args, 0))) {
6704 /* really not much we can do; just leak */
6705 PyErr_Clear();
6708 Py_INCREF(Py_None);
6709 return Py_None;
6711 #endif /* unsetenv */
6713 PyDoc_STRVAR(posix_strerror__doc__,
6714 "strerror(code) -> string\n\n\
6715 Translate an error code to a message string.");
6717 static PyObject *
6718 posix_strerror(PyObject *self, PyObject *args)
6720 int code;
6721 char *message;
6722 if (!PyArg_ParseTuple(args, "i:strerror", &code))
6723 return NULL;
6724 message = strerror(code);
6725 if (message == NULL) {
6726 PyErr_SetString(PyExc_ValueError,
6727 "strerror() argument out of range");
6728 return NULL;
6730 return PyString_FromString(message);
6734 #ifdef HAVE_SYS_WAIT_H
6736 #ifdef WCOREDUMP
6737 PyDoc_STRVAR(posix_WCOREDUMP__doc__,
6738 "WCOREDUMP(status) -> bool\n\n\
6739 Return True if the process returning 'status' was dumped to a core file.");
6741 static PyObject *
6742 posix_WCOREDUMP(PyObject *self, PyObject *args)
6744 WAIT_TYPE status;
6745 WAIT_STATUS_INT(status) = 0;
6747 if (!PyArg_ParseTuple(args, "i:WCOREDUMP", &WAIT_STATUS_INT(status)))
6748 return NULL;
6750 return PyBool_FromLong(WCOREDUMP(status));
6752 #endif /* WCOREDUMP */
6754 #ifdef WIFCONTINUED
6755 PyDoc_STRVAR(posix_WIFCONTINUED__doc__,
6756 "WIFCONTINUED(status) -> bool\n\n\
6757 Return True if the process returning 'status' was continued from a\n\
6758 job control stop.");
6760 static PyObject *
6761 posix_WIFCONTINUED(PyObject *self, PyObject *args)
6763 WAIT_TYPE status;
6764 WAIT_STATUS_INT(status) = 0;
6766 if (!PyArg_ParseTuple(args, "i:WCONTINUED", &WAIT_STATUS_INT(status)))
6767 return NULL;
6769 return PyBool_FromLong(WIFCONTINUED(status));
6771 #endif /* WIFCONTINUED */
6773 #ifdef WIFSTOPPED
6774 PyDoc_STRVAR(posix_WIFSTOPPED__doc__,
6775 "WIFSTOPPED(status) -> bool\n\n\
6776 Return True if the process returning 'status' was stopped.");
6778 static PyObject *
6779 posix_WIFSTOPPED(PyObject *self, PyObject *args)
6781 WAIT_TYPE status;
6782 WAIT_STATUS_INT(status) = 0;
6784 if (!PyArg_ParseTuple(args, "i:WIFSTOPPED", &WAIT_STATUS_INT(status)))
6785 return NULL;
6787 return PyBool_FromLong(WIFSTOPPED(status));
6789 #endif /* WIFSTOPPED */
6791 #ifdef WIFSIGNALED
6792 PyDoc_STRVAR(posix_WIFSIGNALED__doc__,
6793 "WIFSIGNALED(status) -> bool\n\n\
6794 Return True if the process returning 'status' was terminated by a signal.");
6796 static PyObject *
6797 posix_WIFSIGNALED(PyObject *self, PyObject *args)
6799 WAIT_TYPE status;
6800 WAIT_STATUS_INT(status) = 0;
6802 if (!PyArg_ParseTuple(args, "i:WIFSIGNALED", &WAIT_STATUS_INT(status)))
6803 return NULL;
6805 return PyBool_FromLong(WIFSIGNALED(status));
6807 #endif /* WIFSIGNALED */
6809 #ifdef WIFEXITED
6810 PyDoc_STRVAR(posix_WIFEXITED__doc__,
6811 "WIFEXITED(status) -> bool\n\n\
6812 Return true if the process returning 'status' exited using the exit()\n\
6813 system call.");
6815 static PyObject *
6816 posix_WIFEXITED(PyObject *self, PyObject *args)
6818 WAIT_TYPE status;
6819 WAIT_STATUS_INT(status) = 0;
6821 if (!PyArg_ParseTuple(args, "i:WIFEXITED", &WAIT_STATUS_INT(status)))
6822 return NULL;
6824 return PyBool_FromLong(WIFEXITED(status));
6826 #endif /* WIFEXITED */
6828 #ifdef WEXITSTATUS
6829 PyDoc_STRVAR(posix_WEXITSTATUS__doc__,
6830 "WEXITSTATUS(status) -> integer\n\n\
6831 Return the process return code from 'status'.");
6833 static PyObject *
6834 posix_WEXITSTATUS(PyObject *self, PyObject *args)
6836 WAIT_TYPE status;
6837 WAIT_STATUS_INT(status) = 0;
6839 if (!PyArg_ParseTuple(args, "i:WEXITSTATUS", &WAIT_STATUS_INT(status)))
6840 return NULL;
6842 return Py_BuildValue("i", WEXITSTATUS(status));
6844 #endif /* WEXITSTATUS */
6846 #ifdef WTERMSIG
6847 PyDoc_STRVAR(posix_WTERMSIG__doc__,
6848 "WTERMSIG(status) -> integer\n\n\
6849 Return the signal that terminated the process that provided the 'status'\n\
6850 value.");
6852 static PyObject *
6853 posix_WTERMSIG(PyObject *self, PyObject *args)
6855 WAIT_TYPE status;
6856 WAIT_STATUS_INT(status) = 0;
6858 if (!PyArg_ParseTuple(args, "i:WTERMSIG", &WAIT_STATUS_INT(status)))
6859 return NULL;
6861 return Py_BuildValue("i", WTERMSIG(status));
6863 #endif /* WTERMSIG */
6865 #ifdef WSTOPSIG
6866 PyDoc_STRVAR(posix_WSTOPSIG__doc__,
6867 "WSTOPSIG(status) -> integer\n\n\
6868 Return the signal that stopped the process that provided\n\
6869 the 'status' value.");
6871 static PyObject *
6872 posix_WSTOPSIG(PyObject *self, PyObject *args)
6874 WAIT_TYPE status;
6875 WAIT_STATUS_INT(status) = 0;
6877 if (!PyArg_ParseTuple(args, "i:WSTOPSIG", &WAIT_STATUS_INT(status)))
6878 return NULL;
6880 return Py_BuildValue("i", WSTOPSIG(status));
6882 #endif /* WSTOPSIG */
6884 #endif /* HAVE_SYS_WAIT_H */
6887 #if defined(HAVE_FSTATVFS) && defined(HAVE_SYS_STATVFS_H)
6888 #ifdef _SCO_DS
6889 /* SCO OpenServer 5.0 and later requires _SVID3 before it reveals the
6890 needed definitions in sys/statvfs.h */
6891 #define _SVID3
6892 #endif
6893 #include <sys/statvfs.h>
6895 static PyObject*
6896 _pystatvfs_fromstructstatvfs(struct statvfs st) {
6897 PyObject *v = PyStructSequence_New(&StatVFSResultType);
6898 if (v == NULL)
6899 return NULL;
6901 #if !defined(HAVE_LARGEFILE_SUPPORT)
6902 PyStructSequence_SET_ITEM(v, 0, PyInt_FromLong((long) st.f_bsize));
6903 PyStructSequence_SET_ITEM(v, 1, PyInt_FromLong((long) st.f_frsize));
6904 PyStructSequence_SET_ITEM(v, 2, PyInt_FromLong((long) st.f_blocks));
6905 PyStructSequence_SET_ITEM(v, 3, PyInt_FromLong((long) st.f_bfree));
6906 PyStructSequence_SET_ITEM(v, 4, PyInt_FromLong((long) st.f_bavail));
6907 PyStructSequence_SET_ITEM(v, 5, PyInt_FromLong((long) st.f_files));
6908 PyStructSequence_SET_ITEM(v, 6, PyInt_FromLong((long) st.f_ffree));
6909 PyStructSequence_SET_ITEM(v, 7, PyInt_FromLong((long) st.f_favail));
6910 PyStructSequence_SET_ITEM(v, 8, PyInt_FromLong((long) st.f_flag));
6911 PyStructSequence_SET_ITEM(v, 9, PyInt_FromLong((long) st.f_namemax));
6912 #else
6913 PyStructSequence_SET_ITEM(v, 0, PyInt_FromLong((long) st.f_bsize));
6914 PyStructSequence_SET_ITEM(v, 1, PyInt_FromLong((long) st.f_frsize));
6915 PyStructSequence_SET_ITEM(v, 2,
6916 PyLong_FromLongLong((PY_LONG_LONG) st.f_blocks));
6917 PyStructSequence_SET_ITEM(v, 3,
6918 PyLong_FromLongLong((PY_LONG_LONG) st.f_bfree));
6919 PyStructSequence_SET_ITEM(v, 4,
6920 PyLong_FromLongLong((PY_LONG_LONG) st.f_bavail));
6921 PyStructSequence_SET_ITEM(v, 5,
6922 PyLong_FromLongLong((PY_LONG_LONG) st.f_files));
6923 PyStructSequence_SET_ITEM(v, 6,
6924 PyLong_FromLongLong((PY_LONG_LONG) st.f_ffree));
6925 PyStructSequence_SET_ITEM(v, 7,
6926 PyLong_FromLongLong((PY_LONG_LONG) st.f_favail));
6927 PyStructSequence_SET_ITEM(v, 8, PyInt_FromLong((long) st.f_flag));
6928 PyStructSequence_SET_ITEM(v, 9, PyInt_FromLong((long) st.f_namemax));
6929 #endif
6931 return v;
6934 PyDoc_STRVAR(posix_fstatvfs__doc__,
6935 "fstatvfs(fd) -> statvfs result\n\n\
6936 Perform an fstatvfs system call on the given fd.");
6938 static PyObject *
6939 posix_fstatvfs(PyObject *self, PyObject *args)
6941 int fd, res;
6942 struct statvfs st;
6944 if (!PyArg_ParseTuple(args, "i:fstatvfs", &fd))
6945 return NULL;
6946 Py_BEGIN_ALLOW_THREADS
6947 res = fstatvfs(fd, &st);
6948 Py_END_ALLOW_THREADS
6949 if (res != 0)
6950 return posix_error();
6952 return _pystatvfs_fromstructstatvfs(st);
6954 #endif /* HAVE_FSTATVFS && HAVE_SYS_STATVFS_H */
6957 #if defined(HAVE_STATVFS) && defined(HAVE_SYS_STATVFS_H)
6958 #include <sys/statvfs.h>
6960 PyDoc_STRVAR(posix_statvfs__doc__,
6961 "statvfs(path) -> statvfs result\n\n\
6962 Perform a statvfs system call on the given path.");
6964 static PyObject *
6965 posix_statvfs(PyObject *self, PyObject *args)
6967 char *path;
6968 int res;
6969 struct statvfs st;
6970 if (!PyArg_ParseTuple(args, "s:statvfs", &path))
6971 return NULL;
6972 Py_BEGIN_ALLOW_THREADS
6973 res = statvfs(path, &st);
6974 Py_END_ALLOW_THREADS
6975 if (res != 0)
6976 return posix_error_with_filename(path);
6978 return _pystatvfs_fromstructstatvfs(st);
6980 #endif /* HAVE_STATVFS */
6983 #ifdef HAVE_TEMPNAM
6984 PyDoc_STRVAR(posix_tempnam__doc__,
6985 "tempnam([dir[, prefix]]) -> string\n\n\
6986 Return a unique name for a temporary file.\n\
6987 The directory and a prefix may be specified as strings; they may be omitted\n\
6988 or None if not needed.");
6990 static PyObject *
6991 posix_tempnam(PyObject *self, PyObject *args)
6993 PyObject *result = NULL;
6994 char *dir = NULL;
6995 char *pfx = NULL;
6996 char *name;
6998 if (!PyArg_ParseTuple(args, "|zz:tempnam", &dir, &pfx))
6999 return NULL;
7001 if (PyErr_Warn(PyExc_RuntimeWarning,
7002 "tempnam is a potential security risk to your program") < 0)
7003 return NULL;
7005 #ifdef MS_WINDOWS
7006 name = _tempnam(dir, pfx);
7007 #else
7008 name = tempnam(dir, pfx);
7009 #endif
7010 if (name == NULL)
7011 return PyErr_NoMemory();
7012 result = PyString_FromString(name);
7013 free(name);
7014 return result;
7016 #endif
7019 #ifdef HAVE_TMPFILE
7020 PyDoc_STRVAR(posix_tmpfile__doc__,
7021 "tmpfile() -> file object\n\n\
7022 Create a temporary file with no directory entries.");
7024 static PyObject *
7025 posix_tmpfile(PyObject *self, PyObject *noargs)
7027 FILE *fp;
7029 fp = tmpfile();
7030 if (fp == NULL)
7031 return posix_error();
7032 return PyFile_FromFile(fp, "<tmpfile>", "w+b", fclose);
7034 #endif
7037 #ifdef HAVE_TMPNAM
7038 PyDoc_STRVAR(posix_tmpnam__doc__,
7039 "tmpnam() -> string\n\n\
7040 Return a unique name for a temporary file.");
7042 static PyObject *
7043 posix_tmpnam(PyObject *self, PyObject *noargs)
7045 char buffer[L_tmpnam];
7046 char *name;
7048 if (PyErr_Warn(PyExc_RuntimeWarning,
7049 "tmpnam is a potential security risk to your program") < 0)
7050 return NULL;
7052 #ifdef USE_TMPNAM_R
7053 name = tmpnam_r(buffer);
7054 #else
7055 name = tmpnam(buffer);
7056 #endif
7057 if (name == NULL) {
7058 PyObject *err = Py_BuildValue("is", 0,
7059 #ifdef USE_TMPNAM_R
7060 "unexpected NULL from tmpnam_r"
7061 #else
7062 "unexpected NULL from tmpnam"
7063 #endif
7065 PyErr_SetObject(PyExc_OSError, err);
7066 Py_XDECREF(err);
7067 return NULL;
7069 return PyString_FromString(buffer);
7071 #endif
7074 /* This is used for fpathconf(), pathconf(), confstr() and sysconf().
7075 * It maps strings representing configuration variable names to
7076 * integer values, allowing those functions to be called with the
7077 * magic names instead of polluting the module's namespace with tons of
7078 * rarely-used constants. There are three separate tables that use
7079 * these definitions.
7081 * This code is always included, even if none of the interfaces that
7082 * need it are included. The #if hackery needed to avoid it would be
7083 * sufficiently pervasive that it's not worth the loss of readability.
7085 struct constdef {
7086 char *name;
7087 long value;
7090 static int
7091 conv_confname(PyObject *arg, int *valuep, struct constdef *table,
7092 size_t tablesize)
7094 if (PyInt_Check(arg)) {
7095 *valuep = PyInt_AS_LONG(arg);
7096 return 1;
7098 if (PyString_Check(arg)) {
7099 /* look up the value in the table using a binary search */
7100 size_t lo = 0;
7101 size_t mid;
7102 size_t hi = tablesize;
7103 int cmp;
7104 char *confname = PyString_AS_STRING(arg);
7105 while (lo < hi) {
7106 mid = (lo + hi) / 2;
7107 cmp = strcmp(confname, table[mid].name);
7108 if (cmp < 0)
7109 hi = mid;
7110 else if (cmp > 0)
7111 lo = mid + 1;
7112 else {
7113 *valuep = table[mid].value;
7114 return 1;
7117 PyErr_SetString(PyExc_ValueError, "unrecognized configuration name");
7119 else
7120 PyErr_SetString(PyExc_TypeError,
7121 "configuration names must be strings or integers");
7122 return 0;
7126 #if defined(HAVE_FPATHCONF) || defined(HAVE_PATHCONF)
7127 static struct constdef posix_constants_pathconf[] = {
7128 #ifdef _PC_ABI_AIO_XFER_MAX
7129 {"PC_ABI_AIO_XFER_MAX", _PC_ABI_AIO_XFER_MAX},
7130 #endif
7131 #ifdef _PC_ABI_ASYNC_IO
7132 {"PC_ABI_ASYNC_IO", _PC_ABI_ASYNC_IO},
7133 #endif
7134 #ifdef _PC_ASYNC_IO
7135 {"PC_ASYNC_IO", _PC_ASYNC_IO},
7136 #endif
7137 #ifdef _PC_CHOWN_RESTRICTED
7138 {"PC_CHOWN_RESTRICTED", _PC_CHOWN_RESTRICTED},
7139 #endif
7140 #ifdef _PC_FILESIZEBITS
7141 {"PC_FILESIZEBITS", _PC_FILESIZEBITS},
7142 #endif
7143 #ifdef _PC_LAST
7144 {"PC_LAST", _PC_LAST},
7145 #endif
7146 #ifdef _PC_LINK_MAX
7147 {"PC_LINK_MAX", _PC_LINK_MAX},
7148 #endif
7149 #ifdef _PC_MAX_CANON
7150 {"PC_MAX_CANON", _PC_MAX_CANON},
7151 #endif
7152 #ifdef _PC_MAX_INPUT
7153 {"PC_MAX_INPUT", _PC_MAX_INPUT},
7154 #endif
7155 #ifdef _PC_NAME_MAX
7156 {"PC_NAME_MAX", _PC_NAME_MAX},
7157 #endif
7158 #ifdef _PC_NO_TRUNC
7159 {"PC_NO_TRUNC", _PC_NO_TRUNC},
7160 #endif
7161 #ifdef _PC_PATH_MAX
7162 {"PC_PATH_MAX", _PC_PATH_MAX},
7163 #endif
7164 #ifdef _PC_PIPE_BUF
7165 {"PC_PIPE_BUF", _PC_PIPE_BUF},
7166 #endif
7167 #ifdef _PC_PRIO_IO
7168 {"PC_PRIO_IO", _PC_PRIO_IO},
7169 #endif
7170 #ifdef _PC_SOCK_MAXBUF
7171 {"PC_SOCK_MAXBUF", _PC_SOCK_MAXBUF},
7172 #endif
7173 #ifdef _PC_SYNC_IO
7174 {"PC_SYNC_IO", _PC_SYNC_IO},
7175 #endif
7176 #ifdef _PC_VDISABLE
7177 {"PC_VDISABLE", _PC_VDISABLE},
7178 #endif
7181 static int
7182 conv_path_confname(PyObject *arg, int *valuep)
7184 return conv_confname(arg, valuep, posix_constants_pathconf,
7185 sizeof(posix_constants_pathconf)
7186 / sizeof(struct constdef));
7188 #endif
7190 #ifdef HAVE_FPATHCONF
7191 PyDoc_STRVAR(posix_fpathconf__doc__,
7192 "fpathconf(fd, name) -> integer\n\n\
7193 Return the configuration limit name for the file descriptor fd.\n\
7194 If there is no limit, return -1.");
7196 static PyObject *
7197 posix_fpathconf(PyObject *self, PyObject *args)
7199 PyObject *result = NULL;
7200 int name, fd;
7202 if (PyArg_ParseTuple(args, "iO&:fpathconf", &fd,
7203 conv_path_confname, &name)) {
7204 long limit;
7206 errno = 0;
7207 limit = fpathconf(fd, name);
7208 if (limit == -1 && errno != 0)
7209 posix_error();
7210 else
7211 result = PyInt_FromLong(limit);
7213 return result;
7215 #endif
7218 #ifdef HAVE_PATHCONF
7219 PyDoc_STRVAR(posix_pathconf__doc__,
7220 "pathconf(path, name) -> integer\n\n\
7221 Return the configuration limit name for the file or directory path.\n\
7222 If there is no limit, return -1.");
7224 static PyObject *
7225 posix_pathconf(PyObject *self, PyObject *args)
7227 PyObject *result = NULL;
7228 int name;
7229 char *path;
7231 if (PyArg_ParseTuple(args, "sO&:pathconf", &path,
7232 conv_path_confname, &name)) {
7233 long limit;
7235 errno = 0;
7236 limit = pathconf(path, name);
7237 if (limit == -1 && errno != 0) {
7238 if (errno == EINVAL)
7239 /* could be a path or name problem */
7240 posix_error();
7241 else
7242 posix_error_with_filename(path);
7244 else
7245 result = PyInt_FromLong(limit);
7247 return result;
7249 #endif
7251 #ifdef HAVE_CONFSTR
7252 static struct constdef posix_constants_confstr[] = {
7253 #ifdef _CS_ARCHITECTURE
7254 {"CS_ARCHITECTURE", _CS_ARCHITECTURE},
7255 #endif
7256 #ifdef _CS_HOSTNAME
7257 {"CS_HOSTNAME", _CS_HOSTNAME},
7258 #endif
7259 #ifdef _CS_HW_PROVIDER
7260 {"CS_HW_PROVIDER", _CS_HW_PROVIDER},
7261 #endif
7262 #ifdef _CS_HW_SERIAL
7263 {"CS_HW_SERIAL", _CS_HW_SERIAL},
7264 #endif
7265 #ifdef _CS_INITTAB_NAME
7266 {"CS_INITTAB_NAME", _CS_INITTAB_NAME},
7267 #endif
7268 #ifdef _CS_LFS64_CFLAGS
7269 {"CS_LFS64_CFLAGS", _CS_LFS64_CFLAGS},
7270 #endif
7271 #ifdef _CS_LFS64_LDFLAGS
7272 {"CS_LFS64_LDFLAGS", _CS_LFS64_LDFLAGS},
7273 #endif
7274 #ifdef _CS_LFS64_LIBS
7275 {"CS_LFS64_LIBS", _CS_LFS64_LIBS},
7276 #endif
7277 #ifdef _CS_LFS64_LINTFLAGS
7278 {"CS_LFS64_LINTFLAGS", _CS_LFS64_LINTFLAGS},
7279 #endif
7280 #ifdef _CS_LFS_CFLAGS
7281 {"CS_LFS_CFLAGS", _CS_LFS_CFLAGS},
7282 #endif
7283 #ifdef _CS_LFS_LDFLAGS
7284 {"CS_LFS_LDFLAGS", _CS_LFS_LDFLAGS},
7285 #endif
7286 #ifdef _CS_LFS_LIBS
7287 {"CS_LFS_LIBS", _CS_LFS_LIBS},
7288 #endif
7289 #ifdef _CS_LFS_LINTFLAGS
7290 {"CS_LFS_LINTFLAGS", _CS_LFS_LINTFLAGS},
7291 #endif
7292 #ifdef _CS_MACHINE
7293 {"CS_MACHINE", _CS_MACHINE},
7294 #endif
7295 #ifdef _CS_PATH
7296 {"CS_PATH", _CS_PATH},
7297 #endif
7298 #ifdef _CS_RELEASE
7299 {"CS_RELEASE", _CS_RELEASE},
7300 #endif
7301 #ifdef _CS_SRPC_DOMAIN
7302 {"CS_SRPC_DOMAIN", _CS_SRPC_DOMAIN},
7303 #endif
7304 #ifdef _CS_SYSNAME
7305 {"CS_SYSNAME", _CS_SYSNAME},
7306 #endif
7307 #ifdef _CS_VERSION
7308 {"CS_VERSION", _CS_VERSION},
7309 #endif
7310 #ifdef _CS_XBS5_ILP32_OFF32_CFLAGS
7311 {"CS_XBS5_ILP32_OFF32_CFLAGS", _CS_XBS5_ILP32_OFF32_CFLAGS},
7312 #endif
7313 #ifdef _CS_XBS5_ILP32_OFF32_LDFLAGS
7314 {"CS_XBS5_ILP32_OFF32_LDFLAGS", _CS_XBS5_ILP32_OFF32_LDFLAGS},
7315 #endif
7316 #ifdef _CS_XBS5_ILP32_OFF32_LIBS
7317 {"CS_XBS5_ILP32_OFF32_LIBS", _CS_XBS5_ILP32_OFF32_LIBS},
7318 #endif
7319 #ifdef _CS_XBS5_ILP32_OFF32_LINTFLAGS
7320 {"CS_XBS5_ILP32_OFF32_LINTFLAGS", _CS_XBS5_ILP32_OFF32_LINTFLAGS},
7321 #endif
7322 #ifdef _CS_XBS5_ILP32_OFFBIG_CFLAGS
7323 {"CS_XBS5_ILP32_OFFBIG_CFLAGS", _CS_XBS5_ILP32_OFFBIG_CFLAGS},
7324 #endif
7325 #ifdef _CS_XBS5_ILP32_OFFBIG_LDFLAGS
7326 {"CS_XBS5_ILP32_OFFBIG_LDFLAGS", _CS_XBS5_ILP32_OFFBIG_LDFLAGS},
7327 #endif
7328 #ifdef _CS_XBS5_ILP32_OFFBIG_LIBS
7329 {"CS_XBS5_ILP32_OFFBIG_LIBS", _CS_XBS5_ILP32_OFFBIG_LIBS},
7330 #endif
7331 #ifdef _CS_XBS5_ILP32_OFFBIG_LINTFLAGS
7332 {"CS_XBS5_ILP32_OFFBIG_LINTFLAGS", _CS_XBS5_ILP32_OFFBIG_LINTFLAGS},
7333 #endif
7334 #ifdef _CS_XBS5_LP64_OFF64_CFLAGS
7335 {"CS_XBS5_LP64_OFF64_CFLAGS", _CS_XBS5_LP64_OFF64_CFLAGS},
7336 #endif
7337 #ifdef _CS_XBS5_LP64_OFF64_LDFLAGS
7338 {"CS_XBS5_LP64_OFF64_LDFLAGS", _CS_XBS5_LP64_OFF64_LDFLAGS},
7339 #endif
7340 #ifdef _CS_XBS5_LP64_OFF64_LIBS
7341 {"CS_XBS5_LP64_OFF64_LIBS", _CS_XBS5_LP64_OFF64_LIBS},
7342 #endif
7343 #ifdef _CS_XBS5_LP64_OFF64_LINTFLAGS
7344 {"CS_XBS5_LP64_OFF64_LINTFLAGS", _CS_XBS5_LP64_OFF64_LINTFLAGS},
7345 #endif
7346 #ifdef _CS_XBS5_LPBIG_OFFBIG_CFLAGS
7347 {"CS_XBS5_LPBIG_OFFBIG_CFLAGS", _CS_XBS5_LPBIG_OFFBIG_CFLAGS},
7348 #endif
7349 #ifdef _CS_XBS5_LPBIG_OFFBIG_LDFLAGS
7350 {"CS_XBS5_LPBIG_OFFBIG_LDFLAGS", _CS_XBS5_LPBIG_OFFBIG_LDFLAGS},
7351 #endif
7352 #ifdef _CS_XBS5_LPBIG_OFFBIG_LIBS
7353 {"CS_XBS5_LPBIG_OFFBIG_LIBS", _CS_XBS5_LPBIG_OFFBIG_LIBS},
7354 #endif
7355 #ifdef _CS_XBS5_LPBIG_OFFBIG_LINTFLAGS
7356 {"CS_XBS5_LPBIG_OFFBIG_LINTFLAGS", _CS_XBS5_LPBIG_OFFBIG_LINTFLAGS},
7357 #endif
7358 #ifdef _MIPS_CS_AVAIL_PROCESSORS
7359 {"MIPS_CS_AVAIL_PROCESSORS", _MIPS_CS_AVAIL_PROCESSORS},
7360 #endif
7361 #ifdef _MIPS_CS_BASE
7362 {"MIPS_CS_BASE", _MIPS_CS_BASE},
7363 #endif
7364 #ifdef _MIPS_CS_HOSTID
7365 {"MIPS_CS_HOSTID", _MIPS_CS_HOSTID},
7366 #endif
7367 #ifdef _MIPS_CS_HW_NAME
7368 {"MIPS_CS_HW_NAME", _MIPS_CS_HW_NAME},
7369 #endif
7370 #ifdef _MIPS_CS_NUM_PROCESSORS
7371 {"MIPS_CS_NUM_PROCESSORS", _MIPS_CS_NUM_PROCESSORS},
7372 #endif
7373 #ifdef _MIPS_CS_OSREL_MAJ
7374 {"MIPS_CS_OSREL_MAJ", _MIPS_CS_OSREL_MAJ},
7375 #endif
7376 #ifdef _MIPS_CS_OSREL_MIN
7377 {"MIPS_CS_OSREL_MIN", _MIPS_CS_OSREL_MIN},
7378 #endif
7379 #ifdef _MIPS_CS_OSREL_PATCH
7380 {"MIPS_CS_OSREL_PATCH", _MIPS_CS_OSREL_PATCH},
7381 #endif
7382 #ifdef _MIPS_CS_OS_NAME
7383 {"MIPS_CS_OS_NAME", _MIPS_CS_OS_NAME},
7384 #endif
7385 #ifdef _MIPS_CS_OS_PROVIDER
7386 {"MIPS_CS_OS_PROVIDER", _MIPS_CS_OS_PROVIDER},
7387 #endif
7388 #ifdef _MIPS_CS_PROCESSORS
7389 {"MIPS_CS_PROCESSORS", _MIPS_CS_PROCESSORS},
7390 #endif
7391 #ifdef _MIPS_CS_SERIAL
7392 {"MIPS_CS_SERIAL", _MIPS_CS_SERIAL},
7393 #endif
7394 #ifdef _MIPS_CS_VENDOR
7395 {"MIPS_CS_VENDOR", _MIPS_CS_VENDOR},
7396 #endif
7399 static int
7400 conv_confstr_confname(PyObject *arg, int *valuep)
7402 return conv_confname(arg, valuep, posix_constants_confstr,
7403 sizeof(posix_constants_confstr)
7404 / sizeof(struct constdef));
7407 PyDoc_STRVAR(posix_confstr__doc__,
7408 "confstr(name) -> string\n\n\
7409 Return a string-valued system configuration variable.");
7411 static PyObject *
7412 posix_confstr(PyObject *self, PyObject *args)
7414 PyObject *result = NULL;
7415 int name;
7416 char buffer[256];
7418 if (PyArg_ParseTuple(args, "O&:confstr", conv_confstr_confname, &name)) {
7419 int len;
7421 errno = 0;
7422 len = confstr(name, buffer, sizeof(buffer));
7423 if (len == 0) {
7424 if (errno) {
7425 posix_error();
7427 else {
7428 result = Py_None;
7429 Py_INCREF(Py_None);
7432 else {
7433 if ((unsigned int)len >= sizeof(buffer)) {
7434 result = PyString_FromStringAndSize(NULL, len-1);
7435 if (result != NULL)
7436 confstr(name, PyString_AS_STRING(result), len);
7438 else
7439 result = PyString_FromStringAndSize(buffer, len-1);
7442 return result;
7444 #endif
7447 #ifdef HAVE_SYSCONF
7448 static struct constdef posix_constants_sysconf[] = {
7449 #ifdef _SC_2_CHAR_TERM
7450 {"SC_2_CHAR_TERM", _SC_2_CHAR_TERM},
7451 #endif
7452 #ifdef _SC_2_C_BIND
7453 {"SC_2_C_BIND", _SC_2_C_BIND},
7454 #endif
7455 #ifdef _SC_2_C_DEV
7456 {"SC_2_C_DEV", _SC_2_C_DEV},
7457 #endif
7458 #ifdef _SC_2_C_VERSION
7459 {"SC_2_C_VERSION", _SC_2_C_VERSION},
7460 #endif
7461 #ifdef _SC_2_FORT_DEV
7462 {"SC_2_FORT_DEV", _SC_2_FORT_DEV},
7463 #endif
7464 #ifdef _SC_2_FORT_RUN
7465 {"SC_2_FORT_RUN", _SC_2_FORT_RUN},
7466 #endif
7467 #ifdef _SC_2_LOCALEDEF
7468 {"SC_2_LOCALEDEF", _SC_2_LOCALEDEF},
7469 #endif
7470 #ifdef _SC_2_SW_DEV
7471 {"SC_2_SW_DEV", _SC_2_SW_DEV},
7472 #endif
7473 #ifdef _SC_2_UPE
7474 {"SC_2_UPE", _SC_2_UPE},
7475 #endif
7476 #ifdef _SC_2_VERSION
7477 {"SC_2_VERSION", _SC_2_VERSION},
7478 #endif
7479 #ifdef _SC_ABI_ASYNCHRONOUS_IO
7480 {"SC_ABI_ASYNCHRONOUS_IO", _SC_ABI_ASYNCHRONOUS_IO},
7481 #endif
7482 #ifdef _SC_ACL
7483 {"SC_ACL", _SC_ACL},
7484 #endif
7485 #ifdef _SC_AIO_LISTIO_MAX
7486 {"SC_AIO_LISTIO_MAX", _SC_AIO_LISTIO_MAX},
7487 #endif
7488 #ifdef _SC_AIO_MAX
7489 {"SC_AIO_MAX", _SC_AIO_MAX},
7490 #endif
7491 #ifdef _SC_AIO_PRIO_DELTA_MAX
7492 {"SC_AIO_PRIO_DELTA_MAX", _SC_AIO_PRIO_DELTA_MAX},
7493 #endif
7494 #ifdef _SC_ARG_MAX
7495 {"SC_ARG_MAX", _SC_ARG_MAX},
7496 #endif
7497 #ifdef _SC_ASYNCHRONOUS_IO
7498 {"SC_ASYNCHRONOUS_IO", _SC_ASYNCHRONOUS_IO},
7499 #endif
7500 #ifdef _SC_ATEXIT_MAX
7501 {"SC_ATEXIT_MAX", _SC_ATEXIT_MAX},
7502 #endif
7503 #ifdef _SC_AUDIT
7504 {"SC_AUDIT", _SC_AUDIT},
7505 #endif
7506 #ifdef _SC_AVPHYS_PAGES
7507 {"SC_AVPHYS_PAGES", _SC_AVPHYS_PAGES},
7508 #endif
7509 #ifdef _SC_BC_BASE_MAX
7510 {"SC_BC_BASE_MAX", _SC_BC_BASE_MAX},
7511 #endif
7512 #ifdef _SC_BC_DIM_MAX
7513 {"SC_BC_DIM_MAX", _SC_BC_DIM_MAX},
7514 #endif
7515 #ifdef _SC_BC_SCALE_MAX
7516 {"SC_BC_SCALE_MAX", _SC_BC_SCALE_MAX},
7517 #endif
7518 #ifdef _SC_BC_STRING_MAX
7519 {"SC_BC_STRING_MAX", _SC_BC_STRING_MAX},
7520 #endif
7521 #ifdef _SC_CAP
7522 {"SC_CAP", _SC_CAP},
7523 #endif
7524 #ifdef _SC_CHARCLASS_NAME_MAX
7525 {"SC_CHARCLASS_NAME_MAX", _SC_CHARCLASS_NAME_MAX},
7526 #endif
7527 #ifdef _SC_CHAR_BIT
7528 {"SC_CHAR_BIT", _SC_CHAR_BIT},
7529 #endif
7530 #ifdef _SC_CHAR_MAX
7531 {"SC_CHAR_MAX", _SC_CHAR_MAX},
7532 #endif
7533 #ifdef _SC_CHAR_MIN
7534 {"SC_CHAR_MIN", _SC_CHAR_MIN},
7535 #endif
7536 #ifdef _SC_CHILD_MAX
7537 {"SC_CHILD_MAX", _SC_CHILD_MAX},
7538 #endif
7539 #ifdef _SC_CLK_TCK
7540 {"SC_CLK_TCK", _SC_CLK_TCK},
7541 #endif
7542 #ifdef _SC_COHER_BLKSZ
7543 {"SC_COHER_BLKSZ", _SC_COHER_BLKSZ},
7544 #endif
7545 #ifdef _SC_COLL_WEIGHTS_MAX
7546 {"SC_COLL_WEIGHTS_MAX", _SC_COLL_WEIGHTS_MAX},
7547 #endif
7548 #ifdef _SC_DCACHE_ASSOC
7549 {"SC_DCACHE_ASSOC", _SC_DCACHE_ASSOC},
7550 #endif
7551 #ifdef _SC_DCACHE_BLKSZ
7552 {"SC_DCACHE_BLKSZ", _SC_DCACHE_BLKSZ},
7553 #endif
7554 #ifdef _SC_DCACHE_LINESZ
7555 {"SC_DCACHE_LINESZ", _SC_DCACHE_LINESZ},
7556 #endif
7557 #ifdef _SC_DCACHE_SZ
7558 {"SC_DCACHE_SZ", _SC_DCACHE_SZ},
7559 #endif
7560 #ifdef _SC_DCACHE_TBLKSZ
7561 {"SC_DCACHE_TBLKSZ", _SC_DCACHE_TBLKSZ},
7562 #endif
7563 #ifdef _SC_DELAYTIMER_MAX
7564 {"SC_DELAYTIMER_MAX", _SC_DELAYTIMER_MAX},
7565 #endif
7566 #ifdef _SC_EQUIV_CLASS_MAX
7567 {"SC_EQUIV_CLASS_MAX", _SC_EQUIV_CLASS_MAX},
7568 #endif
7569 #ifdef _SC_EXPR_NEST_MAX
7570 {"SC_EXPR_NEST_MAX", _SC_EXPR_NEST_MAX},
7571 #endif
7572 #ifdef _SC_FSYNC
7573 {"SC_FSYNC", _SC_FSYNC},
7574 #endif
7575 #ifdef _SC_GETGR_R_SIZE_MAX
7576 {"SC_GETGR_R_SIZE_MAX", _SC_GETGR_R_SIZE_MAX},
7577 #endif
7578 #ifdef _SC_GETPW_R_SIZE_MAX
7579 {"SC_GETPW_R_SIZE_MAX", _SC_GETPW_R_SIZE_MAX},
7580 #endif
7581 #ifdef _SC_ICACHE_ASSOC
7582 {"SC_ICACHE_ASSOC", _SC_ICACHE_ASSOC},
7583 #endif
7584 #ifdef _SC_ICACHE_BLKSZ
7585 {"SC_ICACHE_BLKSZ", _SC_ICACHE_BLKSZ},
7586 #endif
7587 #ifdef _SC_ICACHE_LINESZ
7588 {"SC_ICACHE_LINESZ", _SC_ICACHE_LINESZ},
7589 #endif
7590 #ifdef _SC_ICACHE_SZ
7591 {"SC_ICACHE_SZ", _SC_ICACHE_SZ},
7592 #endif
7593 #ifdef _SC_INF
7594 {"SC_INF", _SC_INF},
7595 #endif
7596 #ifdef _SC_INT_MAX
7597 {"SC_INT_MAX", _SC_INT_MAX},
7598 #endif
7599 #ifdef _SC_INT_MIN
7600 {"SC_INT_MIN", _SC_INT_MIN},
7601 #endif
7602 #ifdef _SC_IOV_MAX
7603 {"SC_IOV_MAX", _SC_IOV_MAX},
7604 #endif
7605 #ifdef _SC_IP_SECOPTS
7606 {"SC_IP_SECOPTS", _SC_IP_SECOPTS},
7607 #endif
7608 #ifdef _SC_JOB_CONTROL
7609 {"SC_JOB_CONTROL", _SC_JOB_CONTROL},
7610 #endif
7611 #ifdef _SC_KERN_POINTERS
7612 {"SC_KERN_POINTERS", _SC_KERN_POINTERS},
7613 #endif
7614 #ifdef _SC_KERN_SIM
7615 {"SC_KERN_SIM", _SC_KERN_SIM},
7616 #endif
7617 #ifdef _SC_LINE_MAX
7618 {"SC_LINE_MAX", _SC_LINE_MAX},
7619 #endif
7620 #ifdef _SC_LOGIN_NAME_MAX
7621 {"SC_LOGIN_NAME_MAX", _SC_LOGIN_NAME_MAX},
7622 #endif
7623 #ifdef _SC_LOGNAME_MAX
7624 {"SC_LOGNAME_MAX", _SC_LOGNAME_MAX},
7625 #endif
7626 #ifdef _SC_LONG_BIT
7627 {"SC_LONG_BIT", _SC_LONG_BIT},
7628 #endif
7629 #ifdef _SC_MAC
7630 {"SC_MAC", _SC_MAC},
7631 #endif
7632 #ifdef _SC_MAPPED_FILES
7633 {"SC_MAPPED_FILES", _SC_MAPPED_FILES},
7634 #endif
7635 #ifdef _SC_MAXPID
7636 {"SC_MAXPID", _SC_MAXPID},
7637 #endif
7638 #ifdef _SC_MB_LEN_MAX
7639 {"SC_MB_LEN_MAX", _SC_MB_LEN_MAX},
7640 #endif
7641 #ifdef _SC_MEMLOCK
7642 {"SC_MEMLOCK", _SC_MEMLOCK},
7643 #endif
7644 #ifdef _SC_MEMLOCK_RANGE
7645 {"SC_MEMLOCK_RANGE", _SC_MEMLOCK_RANGE},
7646 #endif
7647 #ifdef _SC_MEMORY_PROTECTION
7648 {"SC_MEMORY_PROTECTION", _SC_MEMORY_PROTECTION},
7649 #endif
7650 #ifdef _SC_MESSAGE_PASSING
7651 {"SC_MESSAGE_PASSING", _SC_MESSAGE_PASSING},
7652 #endif
7653 #ifdef _SC_MMAP_FIXED_ALIGNMENT
7654 {"SC_MMAP_FIXED_ALIGNMENT", _SC_MMAP_FIXED_ALIGNMENT},
7655 #endif
7656 #ifdef _SC_MQ_OPEN_MAX
7657 {"SC_MQ_OPEN_MAX", _SC_MQ_OPEN_MAX},
7658 #endif
7659 #ifdef _SC_MQ_PRIO_MAX
7660 {"SC_MQ_PRIO_MAX", _SC_MQ_PRIO_MAX},
7661 #endif
7662 #ifdef _SC_NACLS_MAX
7663 {"SC_NACLS_MAX", _SC_NACLS_MAX},
7664 #endif
7665 #ifdef _SC_NGROUPS_MAX
7666 {"SC_NGROUPS_MAX", _SC_NGROUPS_MAX},
7667 #endif
7668 #ifdef _SC_NL_ARGMAX
7669 {"SC_NL_ARGMAX", _SC_NL_ARGMAX},
7670 #endif
7671 #ifdef _SC_NL_LANGMAX
7672 {"SC_NL_LANGMAX", _SC_NL_LANGMAX},
7673 #endif
7674 #ifdef _SC_NL_MSGMAX
7675 {"SC_NL_MSGMAX", _SC_NL_MSGMAX},
7676 #endif
7677 #ifdef _SC_NL_NMAX
7678 {"SC_NL_NMAX", _SC_NL_NMAX},
7679 #endif
7680 #ifdef _SC_NL_SETMAX
7681 {"SC_NL_SETMAX", _SC_NL_SETMAX},
7682 #endif
7683 #ifdef _SC_NL_TEXTMAX
7684 {"SC_NL_TEXTMAX", _SC_NL_TEXTMAX},
7685 #endif
7686 #ifdef _SC_NPROCESSORS_CONF
7687 {"SC_NPROCESSORS_CONF", _SC_NPROCESSORS_CONF},
7688 #endif
7689 #ifdef _SC_NPROCESSORS_ONLN
7690 {"SC_NPROCESSORS_ONLN", _SC_NPROCESSORS_ONLN},
7691 #endif
7692 #ifdef _SC_NPROC_CONF
7693 {"SC_NPROC_CONF", _SC_NPROC_CONF},
7694 #endif
7695 #ifdef _SC_NPROC_ONLN
7696 {"SC_NPROC_ONLN", _SC_NPROC_ONLN},
7697 #endif
7698 #ifdef _SC_NZERO
7699 {"SC_NZERO", _SC_NZERO},
7700 #endif
7701 #ifdef _SC_OPEN_MAX
7702 {"SC_OPEN_MAX", _SC_OPEN_MAX},
7703 #endif
7704 #ifdef _SC_PAGESIZE
7705 {"SC_PAGESIZE", _SC_PAGESIZE},
7706 #endif
7707 #ifdef _SC_PAGE_SIZE
7708 {"SC_PAGE_SIZE", _SC_PAGE_SIZE},
7709 #endif
7710 #ifdef _SC_PASS_MAX
7711 {"SC_PASS_MAX", _SC_PASS_MAX},
7712 #endif
7713 #ifdef _SC_PHYS_PAGES
7714 {"SC_PHYS_PAGES", _SC_PHYS_PAGES},
7715 #endif
7716 #ifdef _SC_PII
7717 {"SC_PII", _SC_PII},
7718 #endif
7719 #ifdef _SC_PII_INTERNET
7720 {"SC_PII_INTERNET", _SC_PII_INTERNET},
7721 #endif
7722 #ifdef _SC_PII_INTERNET_DGRAM
7723 {"SC_PII_INTERNET_DGRAM", _SC_PII_INTERNET_DGRAM},
7724 #endif
7725 #ifdef _SC_PII_INTERNET_STREAM
7726 {"SC_PII_INTERNET_STREAM", _SC_PII_INTERNET_STREAM},
7727 #endif
7728 #ifdef _SC_PII_OSI
7729 {"SC_PII_OSI", _SC_PII_OSI},
7730 #endif
7731 #ifdef _SC_PII_OSI_CLTS
7732 {"SC_PII_OSI_CLTS", _SC_PII_OSI_CLTS},
7733 #endif
7734 #ifdef _SC_PII_OSI_COTS
7735 {"SC_PII_OSI_COTS", _SC_PII_OSI_COTS},
7736 #endif
7737 #ifdef _SC_PII_OSI_M
7738 {"SC_PII_OSI_M", _SC_PII_OSI_M},
7739 #endif
7740 #ifdef _SC_PII_SOCKET
7741 {"SC_PII_SOCKET", _SC_PII_SOCKET},
7742 #endif
7743 #ifdef _SC_PII_XTI
7744 {"SC_PII_XTI", _SC_PII_XTI},
7745 #endif
7746 #ifdef _SC_POLL
7747 {"SC_POLL", _SC_POLL},
7748 #endif
7749 #ifdef _SC_PRIORITIZED_IO
7750 {"SC_PRIORITIZED_IO", _SC_PRIORITIZED_IO},
7751 #endif
7752 #ifdef _SC_PRIORITY_SCHEDULING
7753 {"SC_PRIORITY_SCHEDULING", _SC_PRIORITY_SCHEDULING},
7754 #endif
7755 #ifdef _SC_REALTIME_SIGNALS
7756 {"SC_REALTIME_SIGNALS", _SC_REALTIME_SIGNALS},
7757 #endif
7758 #ifdef _SC_RE_DUP_MAX
7759 {"SC_RE_DUP_MAX", _SC_RE_DUP_MAX},
7760 #endif
7761 #ifdef _SC_RTSIG_MAX
7762 {"SC_RTSIG_MAX", _SC_RTSIG_MAX},
7763 #endif
7764 #ifdef _SC_SAVED_IDS
7765 {"SC_SAVED_IDS", _SC_SAVED_IDS},
7766 #endif
7767 #ifdef _SC_SCHAR_MAX
7768 {"SC_SCHAR_MAX", _SC_SCHAR_MAX},
7769 #endif
7770 #ifdef _SC_SCHAR_MIN
7771 {"SC_SCHAR_MIN", _SC_SCHAR_MIN},
7772 #endif
7773 #ifdef _SC_SELECT
7774 {"SC_SELECT", _SC_SELECT},
7775 #endif
7776 #ifdef _SC_SEMAPHORES
7777 {"SC_SEMAPHORES", _SC_SEMAPHORES},
7778 #endif
7779 #ifdef _SC_SEM_NSEMS_MAX
7780 {"SC_SEM_NSEMS_MAX", _SC_SEM_NSEMS_MAX},
7781 #endif
7782 #ifdef _SC_SEM_VALUE_MAX
7783 {"SC_SEM_VALUE_MAX", _SC_SEM_VALUE_MAX},
7784 #endif
7785 #ifdef _SC_SHARED_MEMORY_OBJECTS
7786 {"SC_SHARED_MEMORY_OBJECTS", _SC_SHARED_MEMORY_OBJECTS},
7787 #endif
7788 #ifdef _SC_SHRT_MAX
7789 {"SC_SHRT_MAX", _SC_SHRT_MAX},
7790 #endif
7791 #ifdef _SC_SHRT_MIN
7792 {"SC_SHRT_MIN", _SC_SHRT_MIN},
7793 #endif
7794 #ifdef _SC_SIGQUEUE_MAX
7795 {"SC_SIGQUEUE_MAX", _SC_SIGQUEUE_MAX},
7796 #endif
7797 #ifdef _SC_SIGRT_MAX
7798 {"SC_SIGRT_MAX", _SC_SIGRT_MAX},
7799 #endif
7800 #ifdef _SC_SIGRT_MIN
7801 {"SC_SIGRT_MIN", _SC_SIGRT_MIN},
7802 #endif
7803 #ifdef _SC_SOFTPOWER
7804 {"SC_SOFTPOWER", _SC_SOFTPOWER},
7805 #endif
7806 #ifdef _SC_SPLIT_CACHE
7807 {"SC_SPLIT_CACHE", _SC_SPLIT_CACHE},
7808 #endif
7809 #ifdef _SC_SSIZE_MAX
7810 {"SC_SSIZE_MAX", _SC_SSIZE_MAX},
7811 #endif
7812 #ifdef _SC_STACK_PROT
7813 {"SC_STACK_PROT", _SC_STACK_PROT},
7814 #endif
7815 #ifdef _SC_STREAM_MAX
7816 {"SC_STREAM_MAX", _SC_STREAM_MAX},
7817 #endif
7818 #ifdef _SC_SYNCHRONIZED_IO
7819 {"SC_SYNCHRONIZED_IO", _SC_SYNCHRONIZED_IO},
7820 #endif
7821 #ifdef _SC_THREADS
7822 {"SC_THREADS", _SC_THREADS},
7823 #endif
7824 #ifdef _SC_THREAD_ATTR_STACKADDR
7825 {"SC_THREAD_ATTR_STACKADDR", _SC_THREAD_ATTR_STACKADDR},
7826 #endif
7827 #ifdef _SC_THREAD_ATTR_STACKSIZE
7828 {"SC_THREAD_ATTR_STACKSIZE", _SC_THREAD_ATTR_STACKSIZE},
7829 #endif
7830 #ifdef _SC_THREAD_DESTRUCTOR_ITERATIONS
7831 {"SC_THREAD_DESTRUCTOR_ITERATIONS", _SC_THREAD_DESTRUCTOR_ITERATIONS},
7832 #endif
7833 #ifdef _SC_THREAD_KEYS_MAX
7834 {"SC_THREAD_KEYS_MAX", _SC_THREAD_KEYS_MAX},
7835 #endif
7836 #ifdef _SC_THREAD_PRIORITY_SCHEDULING
7837 {"SC_THREAD_PRIORITY_SCHEDULING", _SC_THREAD_PRIORITY_SCHEDULING},
7838 #endif
7839 #ifdef _SC_THREAD_PRIO_INHERIT
7840 {"SC_THREAD_PRIO_INHERIT", _SC_THREAD_PRIO_INHERIT},
7841 #endif
7842 #ifdef _SC_THREAD_PRIO_PROTECT
7843 {"SC_THREAD_PRIO_PROTECT", _SC_THREAD_PRIO_PROTECT},
7844 #endif
7845 #ifdef _SC_THREAD_PROCESS_SHARED
7846 {"SC_THREAD_PROCESS_SHARED", _SC_THREAD_PROCESS_SHARED},
7847 #endif
7848 #ifdef _SC_THREAD_SAFE_FUNCTIONS
7849 {"SC_THREAD_SAFE_FUNCTIONS", _SC_THREAD_SAFE_FUNCTIONS},
7850 #endif
7851 #ifdef _SC_THREAD_STACK_MIN
7852 {"SC_THREAD_STACK_MIN", _SC_THREAD_STACK_MIN},
7853 #endif
7854 #ifdef _SC_THREAD_THREADS_MAX
7855 {"SC_THREAD_THREADS_MAX", _SC_THREAD_THREADS_MAX},
7856 #endif
7857 #ifdef _SC_TIMERS
7858 {"SC_TIMERS", _SC_TIMERS},
7859 #endif
7860 #ifdef _SC_TIMER_MAX
7861 {"SC_TIMER_MAX", _SC_TIMER_MAX},
7862 #endif
7863 #ifdef _SC_TTY_NAME_MAX
7864 {"SC_TTY_NAME_MAX", _SC_TTY_NAME_MAX},
7865 #endif
7866 #ifdef _SC_TZNAME_MAX
7867 {"SC_TZNAME_MAX", _SC_TZNAME_MAX},
7868 #endif
7869 #ifdef _SC_T_IOV_MAX
7870 {"SC_T_IOV_MAX", _SC_T_IOV_MAX},
7871 #endif
7872 #ifdef _SC_UCHAR_MAX
7873 {"SC_UCHAR_MAX", _SC_UCHAR_MAX},
7874 #endif
7875 #ifdef _SC_UINT_MAX
7876 {"SC_UINT_MAX", _SC_UINT_MAX},
7877 #endif
7878 #ifdef _SC_UIO_MAXIOV
7879 {"SC_UIO_MAXIOV", _SC_UIO_MAXIOV},
7880 #endif
7881 #ifdef _SC_ULONG_MAX
7882 {"SC_ULONG_MAX", _SC_ULONG_MAX},
7883 #endif
7884 #ifdef _SC_USHRT_MAX
7885 {"SC_USHRT_MAX", _SC_USHRT_MAX},
7886 #endif
7887 #ifdef _SC_VERSION
7888 {"SC_VERSION", _SC_VERSION},
7889 #endif
7890 #ifdef _SC_WORD_BIT
7891 {"SC_WORD_BIT", _SC_WORD_BIT},
7892 #endif
7893 #ifdef _SC_XBS5_ILP32_OFF32
7894 {"SC_XBS5_ILP32_OFF32", _SC_XBS5_ILP32_OFF32},
7895 #endif
7896 #ifdef _SC_XBS5_ILP32_OFFBIG
7897 {"SC_XBS5_ILP32_OFFBIG", _SC_XBS5_ILP32_OFFBIG},
7898 #endif
7899 #ifdef _SC_XBS5_LP64_OFF64
7900 {"SC_XBS5_LP64_OFF64", _SC_XBS5_LP64_OFF64},
7901 #endif
7902 #ifdef _SC_XBS5_LPBIG_OFFBIG
7903 {"SC_XBS5_LPBIG_OFFBIG", _SC_XBS5_LPBIG_OFFBIG},
7904 #endif
7905 #ifdef _SC_XOPEN_CRYPT
7906 {"SC_XOPEN_CRYPT", _SC_XOPEN_CRYPT},
7907 #endif
7908 #ifdef _SC_XOPEN_ENH_I18N
7909 {"SC_XOPEN_ENH_I18N", _SC_XOPEN_ENH_I18N},
7910 #endif
7911 #ifdef _SC_XOPEN_LEGACY
7912 {"SC_XOPEN_LEGACY", _SC_XOPEN_LEGACY},
7913 #endif
7914 #ifdef _SC_XOPEN_REALTIME
7915 {"SC_XOPEN_REALTIME", _SC_XOPEN_REALTIME},
7916 #endif
7917 #ifdef _SC_XOPEN_REALTIME_THREADS
7918 {"SC_XOPEN_REALTIME_THREADS", _SC_XOPEN_REALTIME_THREADS},
7919 #endif
7920 #ifdef _SC_XOPEN_SHM
7921 {"SC_XOPEN_SHM", _SC_XOPEN_SHM},
7922 #endif
7923 #ifdef _SC_XOPEN_UNIX
7924 {"SC_XOPEN_UNIX", _SC_XOPEN_UNIX},
7925 #endif
7926 #ifdef _SC_XOPEN_VERSION
7927 {"SC_XOPEN_VERSION", _SC_XOPEN_VERSION},
7928 #endif
7929 #ifdef _SC_XOPEN_XCU_VERSION
7930 {"SC_XOPEN_XCU_VERSION", _SC_XOPEN_XCU_VERSION},
7931 #endif
7932 #ifdef _SC_XOPEN_XPG2
7933 {"SC_XOPEN_XPG2", _SC_XOPEN_XPG2},
7934 #endif
7935 #ifdef _SC_XOPEN_XPG3
7936 {"SC_XOPEN_XPG3", _SC_XOPEN_XPG3},
7937 #endif
7938 #ifdef _SC_XOPEN_XPG4
7939 {"SC_XOPEN_XPG4", _SC_XOPEN_XPG4},
7940 #endif
7943 static int
7944 conv_sysconf_confname(PyObject *arg, int *valuep)
7946 return conv_confname(arg, valuep, posix_constants_sysconf,
7947 sizeof(posix_constants_sysconf)
7948 / sizeof(struct constdef));
7951 PyDoc_STRVAR(posix_sysconf__doc__,
7952 "sysconf(name) -> integer\n\n\
7953 Return an integer-valued system configuration variable.");
7955 static PyObject *
7956 posix_sysconf(PyObject *self, PyObject *args)
7958 PyObject *result = NULL;
7959 int name;
7961 if (PyArg_ParseTuple(args, "O&:sysconf", conv_sysconf_confname, &name)) {
7962 int value;
7964 errno = 0;
7965 value = sysconf(name);
7966 if (value == -1 && errno != 0)
7967 posix_error();
7968 else
7969 result = PyInt_FromLong(value);
7971 return result;
7973 #endif
7976 /* This code is used to ensure that the tables of configuration value names
7977 * are in sorted order as required by conv_confname(), and also to build the
7978 * the exported dictionaries that are used to publish information about the
7979 * names available on the host platform.
7981 * Sorting the table at runtime ensures that the table is properly ordered
7982 * when used, even for platforms we're not able to test on. It also makes
7983 * it easier to add additional entries to the tables.
7986 static int
7987 cmp_constdefs(const void *v1, const void *v2)
7989 const struct constdef *c1 =
7990 (const struct constdef *) v1;
7991 const struct constdef *c2 =
7992 (const struct constdef *) v2;
7994 return strcmp(c1->name, c2->name);
7997 static int
7998 setup_confname_table(struct constdef *table, size_t tablesize,
7999 char *tablename, PyObject *module)
8001 PyObject *d = NULL;
8002 size_t i;
8004 qsort(table, tablesize, sizeof(struct constdef), cmp_constdefs);
8005 d = PyDict_New();
8006 if (d == NULL)
8007 return -1;
8009 for (i=0; i < tablesize; ++i) {
8010 PyObject *o = PyInt_FromLong(table[i].value);
8011 if (o == NULL || PyDict_SetItemString(d, table[i].name, o) == -1) {
8012 Py_XDECREF(o);
8013 Py_DECREF(d);
8014 return -1;
8016 Py_DECREF(o);
8018 return PyModule_AddObject(module, tablename, d);
8021 /* Return -1 on failure, 0 on success. */
8022 static int
8023 setup_confname_tables(PyObject *module)
8025 #if defined(HAVE_FPATHCONF) || defined(HAVE_PATHCONF)
8026 if (setup_confname_table(posix_constants_pathconf,
8027 sizeof(posix_constants_pathconf)
8028 / sizeof(struct constdef),
8029 "pathconf_names", module))
8030 return -1;
8031 #endif
8032 #ifdef HAVE_CONFSTR
8033 if (setup_confname_table(posix_constants_confstr,
8034 sizeof(posix_constants_confstr)
8035 / sizeof(struct constdef),
8036 "confstr_names", module))
8037 return -1;
8038 #endif
8039 #ifdef HAVE_SYSCONF
8040 if (setup_confname_table(posix_constants_sysconf,
8041 sizeof(posix_constants_sysconf)
8042 / sizeof(struct constdef),
8043 "sysconf_names", module))
8044 return -1;
8045 #endif
8046 return 0;
8050 PyDoc_STRVAR(posix_abort__doc__,
8051 "abort() -> does not return!\n\n\
8052 Abort the interpreter immediately. This 'dumps core' or otherwise fails\n\
8053 in the hardest way possible on the hosting operating system.");
8055 static PyObject *
8056 posix_abort(PyObject *self, PyObject *noargs)
8058 abort();
8059 /*NOTREACHED*/
8060 Py_FatalError("abort() called from Python code didn't abort!");
8061 return NULL;
8064 #ifdef MS_WINDOWS
8065 PyDoc_STRVAR(win32_startfile__doc__,
8066 "startfile(filepath [, operation]) - Start a file with its associated\n\
8067 application.\n\
8069 When \"operation\" is not specified or \"open\", this acts like\n\
8070 double-clicking the file in Explorer, or giving the file name as an\n\
8071 argument to the DOS \"start\" command: the file is opened with whatever\n\
8072 application (if any) its extension is associated.\n\
8073 When another \"operation\" is given, it specifies what should be done with\n\
8074 the file. A typical operation is \"print\".\n\
8076 startfile returns as soon as the associated application is launched.\n\
8077 There is no option to wait for the application to close, and no way\n\
8078 to retrieve the application's exit status.\n\
8080 The filepath is relative to the current directory. If you want to use\n\
8081 an absolute path, make sure the first character is not a slash (\"/\");\n\
8082 the underlying Win32 ShellExecute function doesn't work if it is.");
8084 static PyObject *
8085 win32_startfile(PyObject *self, PyObject *args)
8087 char *filepath;
8088 char *operation = NULL;
8089 HINSTANCE rc;
8090 #ifdef Py_WIN_WIDE_FILENAMES
8091 if (unicode_file_names()) {
8092 PyObject *unipath, *woperation = NULL;
8093 if (!PyArg_ParseTuple(args, "U|s:startfile",
8094 &unipath, &operation)) {
8095 PyErr_Clear();
8096 goto normal;
8100 if (operation) {
8101 woperation = PyUnicode_DecodeASCII(operation,
8102 strlen(operation), NULL);
8103 if (!woperation) {
8104 PyErr_Clear();
8105 operation = NULL;
8106 goto normal;
8110 Py_BEGIN_ALLOW_THREADS
8111 rc = ShellExecuteW((HWND)0, woperation ? PyUnicode_AS_UNICODE(woperation) : 0,
8112 PyUnicode_AS_UNICODE(unipath),
8113 NULL, NULL, SW_SHOWNORMAL);
8114 Py_END_ALLOW_THREADS
8116 Py_XDECREF(woperation);
8117 if (rc <= (HINSTANCE)32) {
8118 PyObject *errval = win32_error_unicode("startfile",
8119 PyUnicode_AS_UNICODE(unipath));
8120 return errval;
8122 Py_INCREF(Py_None);
8123 return Py_None;
8125 #endif
8127 normal:
8128 if (!PyArg_ParseTuple(args, "et|s:startfile",
8129 Py_FileSystemDefaultEncoding, &filepath,
8130 &operation))
8131 return NULL;
8132 Py_BEGIN_ALLOW_THREADS
8133 rc = ShellExecute((HWND)0, operation, filepath,
8134 NULL, NULL, SW_SHOWNORMAL);
8135 Py_END_ALLOW_THREADS
8136 if (rc <= (HINSTANCE)32) {
8137 PyObject *errval = win32_error("startfile", filepath);
8138 PyMem_Free(filepath);
8139 return errval;
8141 PyMem_Free(filepath);
8142 Py_INCREF(Py_None);
8143 return Py_None;
8145 #endif
8147 #ifdef HAVE_GETLOADAVG
8148 PyDoc_STRVAR(posix_getloadavg__doc__,
8149 "getloadavg() -> (float, float, float)\n\n\
8150 Return the number of processes in the system run queue averaged over\n\
8151 the last 1, 5, and 15 minutes or raises OSError if the load average\n\
8152 was unobtainable");
8154 static PyObject *
8155 posix_getloadavg(PyObject *self, PyObject *noargs)
8157 double loadavg[3];
8158 if (getloadavg(loadavg, 3)!=3) {
8159 PyErr_SetString(PyExc_OSError, "Load averages are unobtainable");
8160 return NULL;
8161 } else
8162 return Py_BuildValue("ddd", loadavg[0], loadavg[1], loadavg[2]);
8164 #endif
8166 #ifdef MS_WINDOWS
8168 PyDoc_STRVAR(win32_urandom__doc__,
8169 "urandom(n) -> str\n\n\
8170 Return a string of n random bytes suitable for cryptographic use.");
8172 typedef BOOL (WINAPI *CRYPTACQUIRECONTEXTA)(HCRYPTPROV *phProv,\
8173 LPCSTR pszContainer, LPCSTR pszProvider, DWORD dwProvType,\
8174 DWORD dwFlags );
8175 typedef BOOL (WINAPI *CRYPTGENRANDOM)(HCRYPTPROV hProv, DWORD dwLen,\
8176 BYTE *pbBuffer );
8178 static CRYPTGENRANDOM pCryptGenRandom = NULL;
8179 /* This handle is never explicitly released. Instead, the operating
8180 system will release it when the process terminates. */
8181 static HCRYPTPROV hCryptProv = 0;
8183 static PyObject*
8184 win32_urandom(PyObject *self, PyObject *args)
8186 int howMany;
8187 PyObject* result;
8189 /* Read arguments */
8190 if (! PyArg_ParseTuple(args, "i:urandom", &howMany))
8191 return NULL;
8192 if (howMany < 0)
8193 return PyErr_Format(PyExc_ValueError,
8194 "negative argument not allowed");
8196 if (hCryptProv == 0) {
8197 HINSTANCE hAdvAPI32 = NULL;
8198 CRYPTACQUIRECONTEXTA pCryptAcquireContext = NULL;
8200 /* Obtain handle to the DLL containing CryptoAPI
8201 This should not fail */
8202 hAdvAPI32 = GetModuleHandle("advapi32.dll");
8203 if(hAdvAPI32 == NULL)
8204 return win32_error("GetModuleHandle", NULL);
8206 /* Obtain pointers to the CryptoAPI functions
8207 This will fail on some early versions of Win95 */
8208 pCryptAcquireContext = (CRYPTACQUIRECONTEXTA)GetProcAddress(
8209 hAdvAPI32,
8210 "CryptAcquireContextA");
8211 if (pCryptAcquireContext == NULL)
8212 return PyErr_Format(PyExc_NotImplementedError,
8213 "CryptAcquireContextA not found");
8215 pCryptGenRandom = (CRYPTGENRANDOM)GetProcAddress(
8216 hAdvAPI32, "CryptGenRandom");
8217 if (pCryptGenRandom == NULL)
8218 return PyErr_Format(PyExc_NotImplementedError,
8219 "CryptGenRandom not found");
8221 /* Acquire context */
8222 if (! pCryptAcquireContext(&hCryptProv, NULL, NULL,
8223 PROV_RSA_FULL, CRYPT_VERIFYCONTEXT))
8224 return win32_error("CryptAcquireContext", NULL);
8227 /* Allocate bytes */
8228 result = PyString_FromStringAndSize(NULL, howMany);
8229 if (result != NULL) {
8230 /* Get random data */
8231 if (! pCryptGenRandom(hCryptProv, howMany, (unsigned char*)
8232 PyString_AS_STRING(result))) {
8233 Py_DECREF(result);
8234 return win32_error("CryptGenRandom", NULL);
8237 return result;
8239 #endif
8241 #ifdef __VMS
8242 /* Use openssl random routine */
8243 #include <openssl/rand.h>
8244 PyDoc_STRVAR(vms_urandom__doc__,
8245 "urandom(n) -> str\n\n\
8246 Return a string of n random bytes suitable for cryptographic use.");
8248 static PyObject*
8249 vms_urandom(PyObject *self, PyObject *args)
8251 int howMany;
8252 PyObject* result;
8254 /* Read arguments */
8255 if (! PyArg_ParseTuple(args, "i:urandom", &howMany))
8256 return NULL;
8257 if (howMany < 0)
8258 return PyErr_Format(PyExc_ValueError,
8259 "negative argument not allowed");
8261 /* Allocate bytes */
8262 result = PyString_FromStringAndSize(NULL, howMany);
8263 if (result != NULL) {
8264 /* Get random data */
8265 if (RAND_pseudo_bytes((unsigned char*)
8266 PyString_AS_STRING(result),
8267 howMany) < 0) {
8268 Py_DECREF(result);
8269 return PyErr_Format(PyExc_ValueError,
8270 "RAND_pseudo_bytes");
8273 return result;
8275 #endif
8277 static PyMethodDef posix_methods[] = {
8278 {"access", posix_access, METH_VARARGS, posix_access__doc__},
8279 #ifdef HAVE_TTYNAME
8280 {"ttyname", posix_ttyname, METH_VARARGS, posix_ttyname__doc__},
8281 #endif
8282 {"chdir", posix_chdir, METH_VARARGS, posix_chdir__doc__},
8283 #ifdef HAVE_CHFLAGS
8284 {"chflags", posix_chflags, METH_VARARGS, posix_chflags__doc__},
8285 #endif /* HAVE_CHFLAGS */
8286 {"chmod", posix_chmod, METH_VARARGS, posix_chmod__doc__},
8287 #ifdef HAVE_FCHMOD
8288 {"fchmod", posix_fchmod, METH_VARARGS, posix_fchmod__doc__},
8289 #endif /* HAVE_FCHMOD */
8290 #ifdef HAVE_CHOWN
8291 {"chown", posix_chown, METH_VARARGS, posix_chown__doc__},
8292 #endif /* HAVE_CHOWN */
8293 #ifdef HAVE_LCHMOD
8294 {"lchmod", posix_lchmod, METH_VARARGS, posix_lchmod__doc__},
8295 #endif /* HAVE_LCHMOD */
8296 #ifdef HAVE_FCHOWN
8297 {"fchown", posix_fchown, METH_VARARGS, posix_fchown__doc__},
8298 #endif /* HAVE_FCHOWN */
8299 #ifdef HAVE_LCHFLAGS
8300 {"lchflags", posix_lchflags, METH_VARARGS, posix_lchflags__doc__},
8301 #endif /* HAVE_LCHFLAGS */
8302 #ifdef HAVE_LCHOWN
8303 {"lchown", posix_lchown, METH_VARARGS, posix_lchown__doc__},
8304 #endif /* HAVE_LCHOWN */
8305 #ifdef HAVE_CHROOT
8306 {"chroot", posix_chroot, METH_VARARGS, posix_chroot__doc__},
8307 #endif
8308 #ifdef HAVE_CTERMID
8309 {"ctermid", posix_ctermid, METH_NOARGS, posix_ctermid__doc__},
8310 #endif
8311 #ifdef HAVE_GETCWD
8312 {"getcwd", posix_getcwd, METH_NOARGS, posix_getcwd__doc__},
8313 #ifdef Py_USING_UNICODE
8314 {"getcwdu", posix_getcwdu, METH_NOARGS, posix_getcwdu__doc__},
8315 #endif
8316 #endif
8317 #ifdef HAVE_LINK
8318 {"link", posix_link, METH_VARARGS, posix_link__doc__},
8319 #endif /* HAVE_LINK */
8320 {"listdir", posix_listdir, METH_VARARGS, posix_listdir__doc__},
8321 {"lstat", posix_lstat, METH_VARARGS, posix_lstat__doc__},
8322 {"mkdir", posix_mkdir, METH_VARARGS, posix_mkdir__doc__},
8323 #ifdef HAVE_NICE
8324 {"nice", posix_nice, METH_VARARGS, posix_nice__doc__},
8325 #endif /* HAVE_NICE */
8326 #ifdef HAVE_READLINK
8327 {"readlink", posix_readlink, METH_VARARGS, posix_readlink__doc__},
8328 #endif /* HAVE_READLINK */
8329 {"rename", posix_rename, METH_VARARGS, posix_rename__doc__},
8330 {"rmdir", posix_rmdir, METH_VARARGS, posix_rmdir__doc__},
8331 {"stat", posix_stat, METH_VARARGS, posix_stat__doc__},
8332 {"stat_float_times", stat_float_times, METH_VARARGS, stat_float_times__doc__},
8333 #ifdef HAVE_SYMLINK
8334 {"symlink", posix_symlink, METH_VARARGS, posix_symlink__doc__},
8335 #endif /* HAVE_SYMLINK */
8336 #ifdef HAVE_SYSTEM
8337 {"system", posix_system, METH_VARARGS, posix_system__doc__},
8338 #endif
8339 {"umask", posix_umask, METH_VARARGS, posix_umask__doc__},
8340 #ifdef HAVE_UNAME
8341 {"uname", posix_uname, METH_NOARGS, posix_uname__doc__},
8342 #endif /* HAVE_UNAME */
8343 {"unlink", posix_unlink, METH_VARARGS, posix_unlink__doc__},
8344 {"remove", posix_unlink, METH_VARARGS, posix_remove__doc__},
8345 {"utime", posix_utime, METH_VARARGS, posix_utime__doc__},
8346 #ifdef HAVE_TIMES
8347 {"times", posix_times, METH_NOARGS, posix_times__doc__},
8348 #endif /* HAVE_TIMES */
8349 {"_exit", posix__exit, METH_VARARGS, posix__exit__doc__},
8350 #ifdef HAVE_EXECV
8351 {"execv", posix_execv, METH_VARARGS, posix_execv__doc__},
8352 {"execve", posix_execve, METH_VARARGS, posix_execve__doc__},
8353 #endif /* HAVE_EXECV */
8354 #ifdef HAVE_SPAWNV
8355 {"spawnv", posix_spawnv, METH_VARARGS, posix_spawnv__doc__},
8356 {"spawnve", posix_spawnve, METH_VARARGS, posix_spawnve__doc__},
8357 #if defined(PYOS_OS2)
8358 {"spawnvp", posix_spawnvp, METH_VARARGS, posix_spawnvp__doc__},
8359 {"spawnvpe", posix_spawnvpe, METH_VARARGS, posix_spawnvpe__doc__},
8360 #endif /* PYOS_OS2 */
8361 #endif /* HAVE_SPAWNV */
8362 #ifdef HAVE_FORK1
8363 {"fork1", posix_fork1, METH_NOARGS, posix_fork1__doc__},
8364 #endif /* HAVE_FORK1 */
8365 #ifdef HAVE_FORK
8366 {"fork", posix_fork, METH_NOARGS, posix_fork__doc__},
8367 #endif /* HAVE_FORK */
8368 #if defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX)
8369 {"openpty", posix_openpty, METH_NOARGS, posix_openpty__doc__},
8370 #endif /* HAVE_OPENPTY || HAVE__GETPTY || HAVE_DEV_PTMX */
8371 #ifdef HAVE_FORKPTY
8372 {"forkpty", posix_forkpty, METH_NOARGS, posix_forkpty__doc__},
8373 #endif /* HAVE_FORKPTY */
8374 #ifdef HAVE_GETEGID
8375 {"getegid", posix_getegid, METH_NOARGS, posix_getegid__doc__},
8376 #endif /* HAVE_GETEGID */
8377 #ifdef HAVE_GETEUID
8378 {"geteuid", posix_geteuid, METH_NOARGS, posix_geteuid__doc__},
8379 #endif /* HAVE_GETEUID */
8380 #ifdef HAVE_GETGID
8381 {"getgid", posix_getgid, METH_NOARGS, posix_getgid__doc__},
8382 #endif /* HAVE_GETGID */
8383 #ifdef HAVE_GETGROUPS
8384 {"getgroups", posix_getgroups, METH_NOARGS, posix_getgroups__doc__},
8385 #endif
8386 {"getpid", posix_getpid, METH_NOARGS, posix_getpid__doc__},
8387 #ifdef HAVE_GETPGRP
8388 {"getpgrp", posix_getpgrp, METH_NOARGS, posix_getpgrp__doc__},
8389 #endif /* HAVE_GETPGRP */
8390 #ifdef HAVE_GETPPID
8391 {"getppid", posix_getppid, METH_NOARGS, posix_getppid__doc__},
8392 #endif /* HAVE_GETPPID */
8393 #ifdef HAVE_GETUID
8394 {"getuid", posix_getuid, METH_NOARGS, posix_getuid__doc__},
8395 #endif /* HAVE_GETUID */
8396 #ifdef HAVE_GETLOGIN
8397 {"getlogin", posix_getlogin, METH_NOARGS, posix_getlogin__doc__},
8398 #endif
8399 #ifdef HAVE_KILL
8400 {"kill", posix_kill, METH_VARARGS, posix_kill__doc__},
8401 #endif /* HAVE_KILL */
8402 #ifdef HAVE_KILLPG
8403 {"killpg", posix_killpg, METH_VARARGS, posix_killpg__doc__},
8404 #endif /* HAVE_KILLPG */
8405 #ifdef HAVE_PLOCK
8406 {"plock", posix_plock, METH_VARARGS, posix_plock__doc__},
8407 #endif /* HAVE_PLOCK */
8408 #ifdef HAVE_POPEN
8409 {"popen", posix_popen, METH_VARARGS, posix_popen__doc__},
8410 #ifdef MS_WINDOWS
8411 {"popen2", win32_popen2, METH_VARARGS},
8412 {"popen3", win32_popen3, METH_VARARGS},
8413 {"popen4", win32_popen4, METH_VARARGS},
8414 {"startfile", win32_startfile, METH_VARARGS, win32_startfile__doc__},
8415 #else
8416 #if defined(PYOS_OS2) && defined(PYCC_GCC)
8417 {"popen2", os2emx_popen2, METH_VARARGS},
8418 {"popen3", os2emx_popen3, METH_VARARGS},
8419 {"popen4", os2emx_popen4, METH_VARARGS},
8420 #endif
8421 #endif
8422 #endif /* HAVE_POPEN */
8423 #ifdef HAVE_SETUID
8424 {"setuid", posix_setuid, METH_VARARGS, posix_setuid__doc__},
8425 #endif /* HAVE_SETUID */
8426 #ifdef HAVE_SETEUID
8427 {"seteuid", posix_seteuid, METH_VARARGS, posix_seteuid__doc__},
8428 #endif /* HAVE_SETEUID */
8429 #ifdef HAVE_SETEGID
8430 {"setegid", posix_setegid, METH_VARARGS, posix_setegid__doc__},
8431 #endif /* HAVE_SETEGID */
8432 #ifdef HAVE_SETREUID
8433 {"setreuid", posix_setreuid, METH_VARARGS, posix_setreuid__doc__},
8434 #endif /* HAVE_SETREUID */
8435 #ifdef HAVE_SETREGID
8436 {"setregid", posix_setregid, METH_VARARGS, posix_setregid__doc__},
8437 #endif /* HAVE_SETREGID */
8438 #ifdef HAVE_SETGID
8439 {"setgid", posix_setgid, METH_VARARGS, posix_setgid__doc__},
8440 #endif /* HAVE_SETGID */
8441 #ifdef HAVE_SETGROUPS
8442 {"setgroups", posix_setgroups, METH_O, posix_setgroups__doc__},
8443 #endif /* HAVE_SETGROUPS */
8444 #ifdef HAVE_GETPGID
8445 {"getpgid", posix_getpgid, METH_VARARGS, posix_getpgid__doc__},
8446 #endif /* HAVE_GETPGID */
8447 #ifdef HAVE_SETPGRP
8448 {"setpgrp", posix_setpgrp, METH_NOARGS, posix_setpgrp__doc__},
8449 #endif /* HAVE_SETPGRP */
8450 #ifdef HAVE_WAIT
8451 {"wait", posix_wait, METH_NOARGS, posix_wait__doc__},
8452 #endif /* HAVE_WAIT */
8453 #ifdef HAVE_WAIT3
8454 {"wait3", posix_wait3, METH_VARARGS, posix_wait3__doc__},
8455 #endif /* HAVE_WAIT3 */
8456 #ifdef HAVE_WAIT4
8457 {"wait4", posix_wait4, METH_VARARGS, posix_wait4__doc__},
8458 #endif /* HAVE_WAIT4 */
8459 #if defined(HAVE_WAITPID) || defined(HAVE_CWAIT)
8460 {"waitpid", posix_waitpid, METH_VARARGS, posix_waitpid__doc__},
8461 #endif /* HAVE_WAITPID */
8462 #ifdef HAVE_GETSID
8463 {"getsid", posix_getsid, METH_VARARGS, posix_getsid__doc__},
8464 #endif /* HAVE_GETSID */
8465 #ifdef HAVE_SETSID
8466 {"setsid", posix_setsid, METH_NOARGS, posix_setsid__doc__},
8467 #endif /* HAVE_SETSID */
8468 #ifdef HAVE_SETPGID
8469 {"setpgid", posix_setpgid, METH_VARARGS, posix_setpgid__doc__},
8470 #endif /* HAVE_SETPGID */
8471 #ifdef HAVE_TCGETPGRP
8472 {"tcgetpgrp", posix_tcgetpgrp, METH_VARARGS, posix_tcgetpgrp__doc__},
8473 #endif /* HAVE_TCGETPGRP */
8474 #ifdef HAVE_TCSETPGRP
8475 {"tcsetpgrp", posix_tcsetpgrp, METH_VARARGS, posix_tcsetpgrp__doc__},
8476 #endif /* HAVE_TCSETPGRP */
8477 {"open", posix_open, METH_VARARGS, posix_open__doc__},
8478 {"close", posix_close, METH_VARARGS, posix_close__doc__},
8479 {"closerange", posix_closerange, METH_VARARGS, posix_closerange__doc__},
8480 {"dup", posix_dup, METH_VARARGS, posix_dup__doc__},
8481 {"dup2", posix_dup2, METH_VARARGS, posix_dup2__doc__},
8482 {"lseek", posix_lseek, METH_VARARGS, posix_lseek__doc__},
8483 {"read", posix_read, METH_VARARGS, posix_read__doc__},
8484 {"write", posix_write, METH_VARARGS, posix_write__doc__},
8485 {"fstat", posix_fstat, METH_VARARGS, posix_fstat__doc__},
8486 {"fdopen", posix_fdopen, METH_VARARGS, posix_fdopen__doc__},
8487 {"isatty", posix_isatty, METH_VARARGS, posix_isatty__doc__},
8488 #ifdef HAVE_PIPE
8489 {"pipe", posix_pipe, METH_NOARGS, posix_pipe__doc__},
8490 #endif
8491 #ifdef HAVE_MKFIFO
8492 {"mkfifo", posix_mkfifo, METH_VARARGS, posix_mkfifo__doc__},
8493 #endif
8494 #if defined(HAVE_MKNOD) && defined(HAVE_MAKEDEV)
8495 {"mknod", posix_mknod, METH_VARARGS, posix_mknod__doc__},
8496 #endif
8497 #ifdef HAVE_DEVICE_MACROS
8498 {"major", posix_major, METH_VARARGS, posix_major__doc__},
8499 {"minor", posix_minor, METH_VARARGS, posix_minor__doc__},
8500 {"makedev", posix_makedev, METH_VARARGS, posix_makedev__doc__},
8501 #endif
8502 #ifdef HAVE_FTRUNCATE
8503 {"ftruncate", posix_ftruncate, METH_VARARGS, posix_ftruncate__doc__},
8504 #endif
8505 #ifdef HAVE_PUTENV
8506 {"putenv", posix_putenv, METH_VARARGS, posix_putenv__doc__},
8507 #endif
8508 #ifdef HAVE_UNSETENV
8509 {"unsetenv", posix_unsetenv, METH_VARARGS, posix_unsetenv__doc__},
8510 #endif
8511 {"strerror", posix_strerror, METH_VARARGS, posix_strerror__doc__},
8512 #ifdef HAVE_FCHDIR
8513 {"fchdir", posix_fchdir, METH_O, posix_fchdir__doc__},
8514 #endif
8515 #ifdef HAVE_FSYNC
8516 {"fsync", posix_fsync, METH_O, posix_fsync__doc__},
8517 #endif
8518 #ifdef HAVE_FDATASYNC
8519 {"fdatasync", posix_fdatasync, METH_O, posix_fdatasync__doc__},
8520 #endif
8521 #ifdef HAVE_SYS_WAIT_H
8522 #ifdef WCOREDUMP
8523 {"WCOREDUMP", posix_WCOREDUMP, METH_VARARGS, posix_WCOREDUMP__doc__},
8524 #endif /* WCOREDUMP */
8525 #ifdef WIFCONTINUED
8526 {"WIFCONTINUED",posix_WIFCONTINUED, METH_VARARGS, posix_WIFCONTINUED__doc__},
8527 #endif /* WIFCONTINUED */
8528 #ifdef WIFSTOPPED
8529 {"WIFSTOPPED", posix_WIFSTOPPED, METH_VARARGS, posix_WIFSTOPPED__doc__},
8530 #endif /* WIFSTOPPED */
8531 #ifdef WIFSIGNALED
8532 {"WIFSIGNALED", posix_WIFSIGNALED, METH_VARARGS, posix_WIFSIGNALED__doc__},
8533 #endif /* WIFSIGNALED */
8534 #ifdef WIFEXITED
8535 {"WIFEXITED", posix_WIFEXITED, METH_VARARGS, posix_WIFEXITED__doc__},
8536 #endif /* WIFEXITED */
8537 #ifdef WEXITSTATUS
8538 {"WEXITSTATUS", posix_WEXITSTATUS, METH_VARARGS, posix_WEXITSTATUS__doc__},
8539 #endif /* WEXITSTATUS */
8540 #ifdef WTERMSIG
8541 {"WTERMSIG", posix_WTERMSIG, METH_VARARGS, posix_WTERMSIG__doc__},
8542 #endif /* WTERMSIG */
8543 #ifdef WSTOPSIG
8544 {"WSTOPSIG", posix_WSTOPSIG, METH_VARARGS, posix_WSTOPSIG__doc__},
8545 #endif /* WSTOPSIG */
8546 #endif /* HAVE_SYS_WAIT_H */
8547 #if defined(HAVE_FSTATVFS) && defined(HAVE_SYS_STATVFS_H)
8548 {"fstatvfs", posix_fstatvfs, METH_VARARGS, posix_fstatvfs__doc__},
8549 #endif
8550 #if defined(HAVE_STATVFS) && defined(HAVE_SYS_STATVFS_H)
8551 {"statvfs", posix_statvfs, METH_VARARGS, posix_statvfs__doc__},
8552 #endif
8553 #ifdef HAVE_TMPFILE
8554 {"tmpfile", posix_tmpfile, METH_NOARGS, posix_tmpfile__doc__},
8555 #endif
8556 #ifdef HAVE_TEMPNAM
8557 {"tempnam", posix_tempnam, METH_VARARGS, posix_tempnam__doc__},
8558 #endif
8559 #ifdef HAVE_TMPNAM
8560 {"tmpnam", posix_tmpnam, METH_NOARGS, posix_tmpnam__doc__},
8561 #endif
8562 #ifdef HAVE_CONFSTR
8563 {"confstr", posix_confstr, METH_VARARGS, posix_confstr__doc__},
8564 #endif
8565 #ifdef HAVE_SYSCONF
8566 {"sysconf", posix_sysconf, METH_VARARGS, posix_sysconf__doc__},
8567 #endif
8568 #ifdef HAVE_FPATHCONF
8569 {"fpathconf", posix_fpathconf, METH_VARARGS, posix_fpathconf__doc__},
8570 #endif
8571 #ifdef HAVE_PATHCONF
8572 {"pathconf", posix_pathconf, METH_VARARGS, posix_pathconf__doc__},
8573 #endif
8574 {"abort", posix_abort, METH_NOARGS, posix_abort__doc__},
8575 #ifdef MS_WINDOWS
8576 {"_getfullpathname", posix__getfullpathname, METH_VARARGS, NULL},
8577 #endif
8578 #ifdef HAVE_GETLOADAVG
8579 {"getloadavg", posix_getloadavg, METH_NOARGS, posix_getloadavg__doc__},
8580 #endif
8581 #ifdef MS_WINDOWS
8582 {"urandom", win32_urandom, METH_VARARGS, win32_urandom__doc__},
8583 #endif
8584 #ifdef __VMS
8585 {"urandom", vms_urandom, METH_VARARGS, vms_urandom__doc__},
8586 #endif
8587 {NULL, NULL} /* Sentinel */
8591 static int
8592 ins(PyObject *module, char *symbol, long value)
8594 return PyModule_AddIntConstant(module, symbol, value);
8597 #if defined(PYOS_OS2)
8598 /* Insert Platform-Specific Constant Values (Strings & Numbers) of Common Use */
8599 static int insertvalues(PyObject *module)
8601 APIRET rc;
8602 ULONG values[QSV_MAX+1];
8603 PyObject *v;
8604 char *ver, tmp[50];
8606 Py_BEGIN_ALLOW_THREADS
8607 rc = DosQuerySysInfo(1L, QSV_MAX, &values[1], sizeof(ULONG) * QSV_MAX);
8608 Py_END_ALLOW_THREADS
8610 if (rc != NO_ERROR) {
8611 os2_error(rc);
8612 return -1;
8615 if (ins(module, "meminstalled", values[QSV_TOTPHYSMEM])) return -1;
8616 if (ins(module, "memkernel", values[QSV_TOTRESMEM])) return -1;
8617 if (ins(module, "memvirtual", values[QSV_TOTAVAILMEM])) return -1;
8618 if (ins(module, "maxpathlen", values[QSV_MAX_PATH_LENGTH])) return -1;
8619 if (ins(module, "maxnamelen", values[QSV_MAX_COMP_LENGTH])) return -1;
8620 if (ins(module, "revision", values[QSV_VERSION_REVISION])) return -1;
8621 if (ins(module, "timeslice", values[QSV_MIN_SLICE])) return -1;
8623 switch (values[QSV_VERSION_MINOR]) {
8624 case 0: ver = "2.00"; break;
8625 case 10: ver = "2.10"; break;
8626 case 11: ver = "2.11"; break;
8627 case 30: ver = "3.00"; break;
8628 case 40: ver = "4.00"; break;
8629 case 50: ver = "5.00"; break;
8630 default:
8631 PyOS_snprintf(tmp, sizeof(tmp),
8632 "%d-%d", values[QSV_VERSION_MAJOR],
8633 values[QSV_VERSION_MINOR]);
8634 ver = &tmp[0];
8637 /* Add Indicator of the Version of the Operating System */
8638 if (PyModule_AddStringConstant(module, "version", tmp) < 0)
8639 return -1;
8641 /* Add Indicator of Which Drive was Used to Boot the System */
8642 tmp[0] = 'A' + values[QSV_BOOT_DRIVE] - 1;
8643 tmp[1] = ':';
8644 tmp[2] = '\0';
8646 return PyModule_AddStringConstant(module, "bootdrive", tmp);
8648 #endif
8650 static int
8651 all_ins(PyObject *d)
8653 #ifdef F_OK
8654 if (ins(d, "F_OK", (long)F_OK)) return -1;
8655 #endif
8656 #ifdef R_OK
8657 if (ins(d, "R_OK", (long)R_OK)) return -1;
8658 #endif
8659 #ifdef W_OK
8660 if (ins(d, "W_OK", (long)W_OK)) return -1;
8661 #endif
8662 #ifdef X_OK
8663 if (ins(d, "X_OK", (long)X_OK)) return -1;
8664 #endif
8665 #ifdef NGROUPS_MAX
8666 if (ins(d, "NGROUPS_MAX", (long)NGROUPS_MAX)) return -1;
8667 #endif
8668 #ifdef TMP_MAX
8669 if (ins(d, "TMP_MAX", (long)TMP_MAX)) return -1;
8670 #endif
8671 #ifdef WCONTINUED
8672 if (ins(d, "WCONTINUED", (long)WCONTINUED)) return -1;
8673 #endif
8674 #ifdef WNOHANG
8675 if (ins(d, "WNOHANG", (long)WNOHANG)) return -1;
8676 #endif
8677 #ifdef WUNTRACED
8678 if (ins(d, "WUNTRACED", (long)WUNTRACED)) return -1;
8679 #endif
8680 #ifdef O_RDONLY
8681 if (ins(d, "O_RDONLY", (long)O_RDONLY)) return -1;
8682 #endif
8683 #ifdef O_WRONLY
8684 if (ins(d, "O_WRONLY", (long)O_WRONLY)) return -1;
8685 #endif
8686 #ifdef O_RDWR
8687 if (ins(d, "O_RDWR", (long)O_RDWR)) return -1;
8688 #endif
8689 #ifdef O_NDELAY
8690 if (ins(d, "O_NDELAY", (long)O_NDELAY)) return -1;
8691 #endif
8692 #ifdef O_NONBLOCK
8693 if (ins(d, "O_NONBLOCK", (long)O_NONBLOCK)) return -1;
8694 #endif
8695 #ifdef O_APPEND
8696 if (ins(d, "O_APPEND", (long)O_APPEND)) return -1;
8697 #endif
8698 #ifdef O_DSYNC
8699 if (ins(d, "O_DSYNC", (long)O_DSYNC)) return -1;
8700 #endif
8701 #ifdef O_RSYNC
8702 if (ins(d, "O_RSYNC", (long)O_RSYNC)) return -1;
8703 #endif
8704 #ifdef O_SYNC
8705 if (ins(d, "O_SYNC", (long)O_SYNC)) return -1;
8706 #endif
8707 #ifdef O_NOCTTY
8708 if (ins(d, "O_NOCTTY", (long)O_NOCTTY)) return -1;
8709 #endif
8710 #ifdef O_CREAT
8711 if (ins(d, "O_CREAT", (long)O_CREAT)) return -1;
8712 #endif
8713 #ifdef O_EXCL
8714 if (ins(d, "O_EXCL", (long)O_EXCL)) return -1;
8715 #endif
8716 #ifdef O_TRUNC
8717 if (ins(d, "O_TRUNC", (long)O_TRUNC)) return -1;
8718 #endif
8719 #ifdef O_BINARY
8720 if (ins(d, "O_BINARY", (long)O_BINARY)) return -1;
8721 #endif
8722 #ifdef O_TEXT
8723 if (ins(d, "O_TEXT", (long)O_TEXT)) return -1;
8724 #endif
8725 #ifdef O_LARGEFILE
8726 if (ins(d, "O_LARGEFILE", (long)O_LARGEFILE)) return -1;
8727 #endif
8728 #ifdef O_SHLOCK
8729 if (ins(d, "O_SHLOCK", (long)O_SHLOCK)) return -1;
8730 #endif
8731 #ifdef O_EXLOCK
8732 if (ins(d, "O_EXLOCK", (long)O_EXLOCK)) return -1;
8733 #endif
8735 /* MS Windows */
8736 #ifdef O_NOINHERIT
8737 /* Don't inherit in child processes. */
8738 if (ins(d, "O_NOINHERIT", (long)O_NOINHERIT)) return -1;
8739 #endif
8740 #ifdef _O_SHORT_LIVED
8741 /* Optimize for short life (keep in memory). */
8742 /* MS forgot to define this one with a non-underscore form too. */
8743 if (ins(d, "O_SHORT_LIVED", (long)_O_SHORT_LIVED)) return -1;
8744 #endif
8745 #ifdef O_TEMPORARY
8746 /* Automatically delete when last handle is closed. */
8747 if (ins(d, "O_TEMPORARY", (long)O_TEMPORARY)) return -1;
8748 #endif
8749 #ifdef O_RANDOM
8750 /* Optimize for random access. */
8751 if (ins(d, "O_RANDOM", (long)O_RANDOM)) return -1;
8752 #endif
8753 #ifdef O_SEQUENTIAL
8754 /* Optimize for sequential access. */
8755 if (ins(d, "O_SEQUENTIAL", (long)O_SEQUENTIAL)) return -1;
8756 #endif
8758 /* GNU extensions. */
8759 #ifdef O_DIRECT
8760 /* Direct disk access. */
8761 if (ins(d, "O_DIRECT", (long)O_DIRECT)) return -1;
8762 #endif
8763 #ifdef O_DIRECTORY
8764 /* Must be a directory. */
8765 if (ins(d, "O_DIRECTORY", (long)O_DIRECTORY)) return -1;
8766 #endif
8767 #ifdef O_NOFOLLOW
8768 /* Do not follow links. */
8769 if (ins(d, "O_NOFOLLOW", (long)O_NOFOLLOW)) return -1;
8770 #endif
8771 #ifdef O_NOATIME
8772 /* Do not update the access time. */
8773 if (ins(d, "O_NOATIME", (long)O_NOATIME)) return -1;
8774 #endif
8776 /* These come from sysexits.h */
8777 #ifdef EX_OK
8778 if (ins(d, "EX_OK", (long)EX_OK)) return -1;
8779 #endif /* EX_OK */
8780 #ifdef EX_USAGE
8781 if (ins(d, "EX_USAGE", (long)EX_USAGE)) return -1;
8782 #endif /* EX_USAGE */
8783 #ifdef EX_DATAERR
8784 if (ins(d, "EX_DATAERR", (long)EX_DATAERR)) return -1;
8785 #endif /* EX_DATAERR */
8786 #ifdef EX_NOINPUT
8787 if (ins(d, "EX_NOINPUT", (long)EX_NOINPUT)) return -1;
8788 #endif /* EX_NOINPUT */
8789 #ifdef EX_NOUSER
8790 if (ins(d, "EX_NOUSER", (long)EX_NOUSER)) return -1;
8791 #endif /* EX_NOUSER */
8792 #ifdef EX_NOHOST
8793 if (ins(d, "EX_NOHOST", (long)EX_NOHOST)) return -1;
8794 #endif /* EX_NOHOST */
8795 #ifdef EX_UNAVAILABLE
8796 if (ins(d, "EX_UNAVAILABLE", (long)EX_UNAVAILABLE)) return -1;
8797 #endif /* EX_UNAVAILABLE */
8798 #ifdef EX_SOFTWARE
8799 if (ins(d, "EX_SOFTWARE", (long)EX_SOFTWARE)) return -1;
8800 #endif /* EX_SOFTWARE */
8801 #ifdef EX_OSERR
8802 if (ins(d, "EX_OSERR", (long)EX_OSERR)) return -1;
8803 #endif /* EX_OSERR */
8804 #ifdef EX_OSFILE
8805 if (ins(d, "EX_OSFILE", (long)EX_OSFILE)) return -1;
8806 #endif /* EX_OSFILE */
8807 #ifdef EX_CANTCREAT
8808 if (ins(d, "EX_CANTCREAT", (long)EX_CANTCREAT)) return -1;
8809 #endif /* EX_CANTCREAT */
8810 #ifdef EX_IOERR
8811 if (ins(d, "EX_IOERR", (long)EX_IOERR)) return -1;
8812 #endif /* EX_IOERR */
8813 #ifdef EX_TEMPFAIL
8814 if (ins(d, "EX_TEMPFAIL", (long)EX_TEMPFAIL)) return -1;
8815 #endif /* EX_TEMPFAIL */
8816 #ifdef EX_PROTOCOL
8817 if (ins(d, "EX_PROTOCOL", (long)EX_PROTOCOL)) return -1;
8818 #endif /* EX_PROTOCOL */
8819 #ifdef EX_NOPERM
8820 if (ins(d, "EX_NOPERM", (long)EX_NOPERM)) return -1;
8821 #endif /* EX_NOPERM */
8822 #ifdef EX_CONFIG
8823 if (ins(d, "EX_CONFIG", (long)EX_CONFIG)) return -1;
8824 #endif /* EX_CONFIG */
8825 #ifdef EX_NOTFOUND
8826 if (ins(d, "EX_NOTFOUND", (long)EX_NOTFOUND)) return -1;
8827 #endif /* EX_NOTFOUND */
8829 #ifdef HAVE_SPAWNV
8830 #if defined(PYOS_OS2) && defined(PYCC_GCC)
8831 if (ins(d, "P_WAIT", (long)P_WAIT)) return -1;
8832 if (ins(d, "P_NOWAIT", (long)P_NOWAIT)) return -1;
8833 if (ins(d, "P_OVERLAY", (long)P_OVERLAY)) return -1;
8834 if (ins(d, "P_DEBUG", (long)P_DEBUG)) return -1;
8835 if (ins(d, "P_SESSION", (long)P_SESSION)) return -1;
8836 if (ins(d, "P_DETACH", (long)P_DETACH)) return -1;
8837 if (ins(d, "P_PM", (long)P_PM)) return -1;
8838 if (ins(d, "P_DEFAULT", (long)P_DEFAULT)) return -1;
8839 if (ins(d, "P_MINIMIZE", (long)P_MINIMIZE)) return -1;
8840 if (ins(d, "P_MAXIMIZE", (long)P_MAXIMIZE)) return -1;
8841 if (ins(d, "P_FULLSCREEN", (long)P_FULLSCREEN)) return -1;
8842 if (ins(d, "P_WINDOWED", (long)P_WINDOWED)) return -1;
8843 if (ins(d, "P_FOREGROUND", (long)P_FOREGROUND)) return -1;
8844 if (ins(d, "P_BACKGROUND", (long)P_BACKGROUND)) return -1;
8845 if (ins(d, "P_NOCLOSE", (long)P_NOCLOSE)) return -1;
8846 if (ins(d, "P_NOSESSION", (long)P_NOSESSION)) return -1;
8847 if (ins(d, "P_QUOTE", (long)P_QUOTE)) return -1;
8848 if (ins(d, "P_TILDE", (long)P_TILDE)) return -1;
8849 if (ins(d, "P_UNRELATED", (long)P_UNRELATED)) return -1;
8850 if (ins(d, "P_DEBUGDESC", (long)P_DEBUGDESC)) return -1;
8851 #else
8852 if (ins(d, "P_WAIT", (long)_P_WAIT)) return -1;
8853 if (ins(d, "P_NOWAIT", (long)_P_NOWAIT)) return -1;
8854 if (ins(d, "P_OVERLAY", (long)_OLD_P_OVERLAY)) return -1;
8855 if (ins(d, "P_NOWAITO", (long)_P_NOWAITO)) return -1;
8856 if (ins(d, "P_DETACH", (long)_P_DETACH)) return -1;
8857 #endif
8858 #endif
8860 #if defined(PYOS_OS2)
8861 if (insertvalues(d)) return -1;
8862 #endif
8863 return 0;
8867 #if (defined(_MSC_VER) || defined(__WATCOMC__) || defined(__BORLANDC__)) && !defined(__QNX__)
8868 #define INITFUNC initnt
8869 #define MODNAME "nt"
8871 #elif defined(PYOS_OS2)
8872 #define INITFUNC initos2
8873 #define MODNAME "os2"
8875 #else
8876 #define INITFUNC initposix
8877 #define MODNAME "posix"
8878 #endif
8880 PyMODINIT_FUNC
8881 INITFUNC(void)
8883 PyObject *m, *v;
8885 m = Py_InitModule3(MODNAME,
8886 posix_methods,
8887 posix__doc__);
8888 if (m == NULL)
8889 return;
8891 /* Initialize environ dictionary */
8892 v = convertenviron();
8893 Py_XINCREF(v);
8894 if (v == NULL || PyModule_AddObject(m, "environ", v) != 0)
8895 return;
8896 Py_DECREF(v);
8898 if (all_ins(m))
8899 return;
8901 if (setup_confname_tables(m))
8902 return;
8904 Py_INCREF(PyExc_OSError);
8905 PyModule_AddObject(m, "error", PyExc_OSError);
8907 #ifdef HAVE_PUTENV
8908 if (posix_putenv_garbage == NULL)
8909 posix_putenv_garbage = PyDict_New();
8910 #endif
8912 if (!initialized) {
8913 stat_result_desc.name = MODNAME ".stat_result";
8914 stat_result_desc.fields[7].name = PyStructSequence_UnnamedField;
8915 stat_result_desc.fields[8].name = PyStructSequence_UnnamedField;
8916 stat_result_desc.fields[9].name = PyStructSequence_UnnamedField;
8917 PyStructSequence_InitType(&StatResultType, &stat_result_desc);
8918 structseq_new = StatResultType.tp_new;
8919 StatResultType.tp_new = statresult_new;
8921 statvfs_result_desc.name = MODNAME ".statvfs_result";
8922 PyStructSequence_InitType(&StatVFSResultType, &statvfs_result_desc);
8924 Py_INCREF((PyObject*) &StatResultType);
8925 PyModule_AddObject(m, "stat_result", (PyObject*) &StatResultType);
8926 Py_INCREF((PyObject*) &StatVFSResultType);
8927 PyModule_AddObject(m, "statvfs_result",
8928 (PyObject*) &StatVFSResultType);
8929 initialized = 1;
8931 #ifdef __APPLE__
8933 * Step 2 of weak-linking support on Mac OS X.
8935 * The code below removes functions that are not available on the
8936 * currently active platform.
8938 * This block allow one to use a python binary that was build on
8939 * OSX 10.4 on OSX 10.3, without loosing access to new APIs on
8940 * OSX 10.4.
8942 #ifdef HAVE_FSTATVFS
8943 if (fstatvfs == NULL) {
8944 if (PyObject_DelAttrString(m, "fstatvfs") == -1) {
8945 return;
8948 #endif /* HAVE_FSTATVFS */
8950 #ifdef HAVE_STATVFS
8951 if (statvfs == NULL) {
8952 if (PyObject_DelAttrString(m, "statvfs") == -1) {
8953 return;
8956 #endif /* HAVE_STATVFS */
8958 # ifdef HAVE_LCHOWN
8959 if (lchown == NULL) {
8960 if (PyObject_DelAttrString(m, "lchown") == -1) {
8961 return;
8964 #endif /* HAVE_LCHOWN */
8967 #endif /* __APPLE__ */
8971 #ifdef __cplusplus
8973 #endif