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 */
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.
24 # pragma weak fstatvfs
26 #endif /* __APPLE__ */
28 #define PY_SSIZE_T_CLEAN
31 #include "structseq.h"
35 #endif /* defined(__VMS) */
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
54 #define INCL_DOSERRORS
55 #define INCL_DOSPROCESS
67 #ifdef HAVE_SYS_TYPES_H
68 #include <sys/types.h>
69 #endif /* HAVE_SYS_TYPES_H */
71 #ifdef HAVE_SYS_STAT_H
73 #endif /* HAVE_SYS_STAT_H */
75 #ifdef HAVE_SYS_WAIT_H
76 #include <sys/wait.h> /* For WNOHANG */
85 #endif /* HAVE_FCNTL_H */
91 #ifdef HAVE_SYSEXITS_H
93 #endif /* HAVE_SYSEXITS_H */
95 #ifdef HAVE_SYS_LOADAVG_H
96 #include <sys/loadavg.h>
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)
104 #if defined(__WATCOMC__) && !defined(__QNX__) /* Watcom compiler */
105 #define HAVE_GETCWD 1
106 #define HAVE_OPENDIR 1
107 #define HAVE_SYSTEM 1
114 #ifdef __BORLANDC__ /* Borland compiler */
116 #define HAVE_GETCWD 1
117 #define HAVE_OPENDIR 1
120 #define HAVE_SYSTEM 1
123 #ifdef _MSC_VER /* Microsoft compiler */
124 #define HAVE_GETCWD 1
125 #define HAVE_SPAWNV 1
129 #define HAVE_SYSTEM 1
132 #define fsync _commit
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 */
140 #if defined(__USLC__) && defined(__SCO_VERSION__) /* SCO UDK Compiler */
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
150 #define HAVE_OPENDIR 1
155 #define HAVE_SYSTEM 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__ */
166 #if defined(__sgi)&&_COMPILER_VERSION>=700
167 /* declare ctermid_r if compiling with MIPSPro 7.x in ANSI C mode
169 extern char *ctermid_r(char *);
172 #ifndef HAVE_UNISTD_H
173 #if defined(PYCC_VACPP)
174 extern int mkdir(char *);
176 #if ( defined(__WATCOMC__) || defined(_MSC_VER) ) && !defined(__QNX__)
177 extern int mkdir(const char *);
179 extern int mkdir(const char *, mode_t
);
182 #if defined(__IBMC__) || defined(__IBMCPP__)
183 extern int chdir(char *);
184 extern int rmdir(char *);
186 extern int chdir(const char *);
187 extern int rmdir(const char *);
190 extern int chmod(const char *, int);
192 extern int chmod(const char *, mode_t
);
195 extern int fchmod(int, mode_t);
198 extern int lchmod(const char *, mode_t);
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 *);
209 extern int symlink(const char *, const char *);
210 #endif /* HAVE_SYMLINK */
212 extern int lstat(const char *, struct stat
*);
213 #endif /* HAVE_LSTAT */
214 #endif /* !HAVE_UNISTD_H */
216 #endif /* !_MSC_VER */
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 */
241 #define NAMLEN(dirent) strlen((dirent)->d_name)
243 #if defined(__WATCOMC__) && !defined(__QNX__)
245 #define NAMLEN(dirent) strlen((dirent)->d_name)
247 #define dirent direct
248 #define NAMLEN(dirent) (dirent)->d_namlen
250 #ifdef HAVE_SYS_NDIR_H
251 #include <sys/ndir.h>
253 #ifdef HAVE_SYS_DIR_H
268 #ifdef HAVE_PROCESS_H
274 #include <shellapi.h> /* for ShellExecute() */
276 #define pclose _pclose
277 #endif /* _MSC_VER */
279 #if defined(PYCC_VACPP) && defined(PYOS_OS2)
284 #if defined(PATH_MAX) && PATH_MAX > 1024
285 #define MAXPATHLEN PATH_MAX
287 #define MAXPATHLEN 1024
289 #endif /* MAXPATHLEN */
292 /* Emulate some macros on systems that have a union instead of macros */
295 #define WIFEXITED(u_wait) (!(u_wait).w_termsig && !(u_wait).w_coredump)
299 #define WEXITSTATUS(u_wait) (WIFEXITED(u_wait)?((u_wait).w_retcode):-1)
303 #define WTERMSIG(u_wait) ((u_wait).w_termsig)
306 #define WAIT_TYPE union wait
307 #define WAIT_STATUS_INT(s) (s.w_status)
309 #else /* !UNION_WAIT */
310 #define WAIT_TYPE int
311 #define WAIT_STATUS_INT(s) (s)
312 #endif /* UNION_WAIT */
314 /* Issue #1983: pid_t can be longer than a C long on some systems */
315 #if !defined(SIZEOF_PID_T) || SIZEOF_PID_T == SIZEOF_INT
316 #define PARSE_PID "i"
317 #define PyLong_FromPid PyInt_FromLong
318 #define PyLong_AsPid PyInt_AsLong
319 #elif SIZEOF_PID_T == SIZEOF_LONG
320 #define PARSE_PID "l"
321 #define PyLong_FromPid PyInt_FromLong
322 #define PyLong_AsPid PyInt_AsLong
323 #elif defined(SIZEOF_LONG_LONG) && SIZEOF_PID_T == SIZEOF_LONG_LONG
324 #define PARSE_PID "L"
325 #define PyLong_FromPid PyLong_FromLongLong
326 #define PyLong_AsPid PyInt_AsLongLong
328 #error "sizeof(pid_t) is neither sizeof(int), sizeof(long) or sizeof(long long)"
329 #endif /* SIZEOF_PID_T */
331 /* Don't use the "_r" form if we don't need it (also, won't have a
332 prototype for it, at least on Solaris -- maybe others as well?). */
333 #if defined(HAVE_CTERMID_R) && defined(WITH_THREAD)
334 #define USE_CTERMID_R
337 #if defined(HAVE_TMPNAM_R) && defined(WITH_THREAD)
341 /* choose the appropriate stat and fstat functions and return structs */
343 #if defined(MS_WIN64) || defined(MS_WINDOWS)
344 # define STAT win32_stat
345 # define FSTAT win32_fstat
346 # define STRUCT_STAT struct win32_stat
350 # define STRUCT_STAT struct stat
353 #if defined(MAJOR_IN_MKDEV)
354 #include <sys/mkdev.h>
356 #if defined(MAJOR_IN_SYSMACROS)
357 #include <sys/sysmacros.h>
359 #if defined(HAVE_MKNOD) && defined(HAVE_SYS_MKDEV_H)
360 #include <sys/mkdev.h>
364 #if defined _MSC_VER && _MSC_VER >= 1400
365 /* Microsoft CRT in VS2005 and higher will verify that a filehandle is
366 * valid and throw an assertion if it isn't.
367 * Normally, an invalid fd is likely to be a C program error and therefore
368 * an assertion can be useful, but it does contradict the POSIX standard
369 * which for write(2) states:
370 * "Otherwise, -1 shall be returned and errno set to indicate the error."
371 * "[EBADF] The fildes argument is not a valid file descriptor open for
373 * Furthermore, python allows the user to enter any old integer
374 * as a fd and should merely raise a python exception on error.
375 * The Microsoft CRT doesn't provide an official way to check for the
376 * validity of a file descriptor, but we can emulate its internal behaviour
377 * by using the exported __pinfo data member and knowledge of the
378 * internal structures involved.
379 * The structures below must be updated for each version of visual studio
380 * according to the file internal.h in the CRT source, until MS comes
381 * up with a less hacky way to do this.
382 * (all of this is to avoid globally modifying the CRT behaviour using
383 * _set_invalid_parameter_handler() and _CrtSetReportMode())
385 /* The actual size of the structure is determined at runtime.
386 * Only the first items must be present.
393 extern __declspec(dllimport
) char * __pioinfo
[];
395 #define IOINFO_ARRAY_ELTS (1 << IOINFO_L2E)
396 #define IOINFO_ARRAYS 64
397 #define _NHANDLE_ (IOINFO_ARRAYS * IOINFO_ARRAY_ELTS)
399 #define _NO_CONSOLE_FILENO (intptr_t)-2
401 /* This function emulates what the windows CRT does to validate file handles */
405 const int i1
= fd
>> IOINFO_L2E
;
406 const int i2
= fd
& ((1 << IOINFO_L2E
) - 1);
408 static int sizeof_ioinfo
= 0;
410 /* Determine the actual size of the ioinfo structure,
411 * as used by the CRT loaded in memory
413 if (sizeof_ioinfo
== 0 && __pioinfo
[0] != NULL
) {
414 sizeof_ioinfo
= _msize(__pioinfo
[0]) / IOINFO_ARRAY_ELTS
;
416 if (sizeof_ioinfo
== 0) {
417 /* This should not happen... */
421 /* See that it isn't a special CLEAR fileno */
422 if (fd
!= _NO_CONSOLE_FILENO
) {
423 /* Microsoft CRT would check that 0<=fd<_nhandle but we can't do that. Instead
424 * we check pointer validity and other info
426 if (0 <= i1
&& i1
< IOINFO_ARRAYS
&& __pioinfo
[i1
] != NULL
) {
427 /* finally, check that the file is open */
428 my_ioinfo
* info
= (my_ioinfo
*)(__pioinfo
[i1
] + i2
* sizeof_ioinfo
);
429 if (info
->osfile
& FOPEN
) {
439 /* the special case of checking dup2. The target fd must be in a sensible range */
441 _PyVerify_fd_dup2(int fd1
, int fd2
)
443 if (!_PyVerify_fd(fd1
))
445 if (fd2
== _NO_CONSOLE_FILENO
)
447 if ((unsigned)fd2
< _NHANDLE_
)
453 /* dummy version. _PyVerify_fd() is already defined in fileobject.h */
454 #define _PyVerify_fd_dup2(A, B) (1)
457 /* Return a dictionary corresponding to the POSIX environment table */
458 #ifdef WITH_NEXT_FRAMEWORK
459 /* On Darwin/MacOSX a shared library or framework has no access to
460 ** environ directly, we must obtain it with _NSGetEnviron().
462 #include <crt_externs.h>
463 static char **environ
;
464 #elif !defined(_MSC_VER) && ( !defined(__WATCOMC__) || defined(__QNX__) )
465 extern char **environ
;
466 #endif /* !_MSC_VER */
476 #ifdef WITH_NEXT_FRAMEWORK
478 environ
= *_NSGetEnviron();
482 /* This part ignores errors */
483 for (e
= environ
; *e
!= NULL
; e
++) {
486 char *p
= strchr(*e
, '=');
489 k
= PyString_FromStringAndSize(*e
, (int)(p
-*e
));
494 v
= PyString_FromString(p
+1);
500 if (PyDict_GetItem(d
, k
) == NULL
) {
501 if (PyDict_SetItem(d
, k
, v
) != 0)
507 #if defined(PYOS_OS2)
510 char buffer
[1024]; /* OS/2 Provides a Documented Max of 1024 Chars */
512 rc
= DosQueryExtLIBPATH(buffer
, BEGIN_LIBPATH
);
513 if (rc
== NO_ERROR
) { /* (not a type, envname is NOT 'BEGIN_LIBPATH') */
514 PyObject
*v
= PyString_FromString(buffer
);
515 PyDict_SetItemString(d
, "BEGINLIBPATH", v
);
518 rc
= DosQueryExtLIBPATH(buffer
, END_LIBPATH
);
519 if (rc
== NO_ERROR
) { /* (not a typo, envname is NOT 'END_LIBPATH') */
520 PyObject
*v
= PyString_FromString(buffer
);
521 PyDict_SetItemString(d
, "ENDLIBPATH", v
);
530 /* Set a POSIX-specific error from errno, and return NULL */
535 return PyErr_SetFromErrno(PyExc_OSError
);
538 posix_error_with_filename(char* name
)
540 return PyErr_SetFromErrnoWithFilename(PyExc_OSError
, name
);
545 posix_error_with_unicode_filename(Py_UNICODE
* name
)
547 return PyErr_SetFromErrnoWithUnicodeFilename(PyExc_OSError
, name
);
549 #endif /* MS_WINDOWS */
553 posix_error_with_allocated_filename(char* name
)
555 PyObject
*rc
= PyErr_SetFromErrnoWithFilename(PyExc_OSError
, name
);
562 win32_error(char* function
, char* filename
)
564 /* XXX We should pass the function name along in the future.
565 (_winreg.c also wants to pass the function name.)
566 This would however require an additional param to the
567 Windows error object, which is non-trivial.
569 errno
= GetLastError();
571 return PyErr_SetFromWindowsErrWithFilename(errno
, filename
);
573 return PyErr_SetFromWindowsErr(errno
);
577 win32_error_unicode(char* function
, Py_UNICODE
* filename
)
579 /* XXX - see win32_error for comments on 'function' */
580 errno
= GetLastError();
582 return PyErr_SetFromWindowsErrWithUnicodeFilename(errno
, filename
);
584 return PyErr_SetFromWindowsErr(errno
);
588 convert_to_unicode(PyObject
**param
)
590 if (PyUnicode_CheckExact(*param
))
592 else if (PyUnicode_Check(*param
))
593 /* For a Unicode subtype that's not a Unicode object,
594 return a true Unicode object with the same data. */
595 *param
= PyUnicode_FromUnicode(PyUnicode_AS_UNICODE(*param
),
596 PyUnicode_GET_SIZE(*param
));
598 *param
= PyUnicode_FromEncodedObject(*param
,
599 Py_FileSystemDefaultEncoding
,
601 return (*param
) != NULL
;
604 #endif /* MS_WINDOWS */
606 #if defined(PYOS_OS2)
607 /**********************************************************************
608 * Helper Function to Trim and Format OS/2 Messages
609 **********************************************************************/
611 os2_formatmsg(char *msgbuf
, int msglen
, char *reason
)
613 msgbuf
[msglen
] = '\0'; /* OS/2 Doesn't Guarantee a Terminator */
615 if (strlen(msgbuf
) > 0) { /* If Non-Empty Msg, Trim CRLF */
616 char *lastc
= &msgbuf
[ strlen(msgbuf
)-1 ];
618 while (lastc
> msgbuf
&& isspace(Py_CHARMASK(*lastc
)))
619 *lastc
-- = '\0'; /* Trim Trailing Whitespace (CRLF) */
622 /* Add Optional Reason Text */
624 strcat(msgbuf
, " : ");
625 strcat(msgbuf
, reason
);
629 /**********************************************************************
630 * Decode an OS/2 Operating System Error Code
632 * A convenience function to lookup an OS/2 error code and return a
633 * text message we can use to raise a Python exception.
636 * The messages for errors returned from the OS/2 kernel reside in
637 * the file OSO001.MSG in the \OS2 directory hierarchy.
639 **********************************************************************/
641 os2_strerror(char *msgbuf
, int msgbuflen
, int errorcode
, char *reason
)
646 /* Retrieve Kernel-Related Error Message from OSO001.MSG File */
647 Py_BEGIN_ALLOW_THREADS
648 rc
= DosGetMessage(NULL
, 0, msgbuf
, msgbuflen
,
649 errorcode
, "oso001.msg", &msglen
);
653 os2_formatmsg(msgbuf
, msglen
, reason
);
655 PyOS_snprintf(msgbuf
, msgbuflen
,
656 "unknown OS error #%d", errorcode
);
661 /* Set an OS/2-specific error and return NULL. OS/2 kernel
662 errors are not in a global variable e.g. 'errno' nor are
663 they congruent with posix error numbers. */
665 static PyObject
* os2_error(int code
)
670 os2_strerror(text
, sizeof(text
), code
, "");
672 v
= Py_BuildValue("(is)", code
, text
);
674 PyErr_SetObject(PyExc_OSError
, v
);
677 return NULL
; /* Signal to Python that an Exception is Pending */
682 /* POSIX generic methods */
685 posix_fildes(PyObject
*fdobj
, int (*func
)(int))
689 fd
= PyObject_AsFileDescriptor(fdobj
);
692 if (!_PyVerify_fd(fd
))
693 return posix_error();
694 Py_BEGIN_ALLOW_THREADS
698 return posix_error();
704 posix_1str(PyObject
*args
, char *format
, int (*func
)(const char*))
708 if (!PyArg_ParseTuple(args
, format
,
709 Py_FileSystemDefaultEncoding
, &path1
))
711 Py_BEGIN_ALLOW_THREADS
712 res
= (*func
)(path1
);
715 return posix_error_with_allocated_filename(path1
);
722 posix_2str(PyObject
*args
,
724 int (*func
)(const char *, const char *))
726 char *path1
= NULL
, *path2
= NULL
;
728 if (!PyArg_ParseTuple(args
, format
,
729 Py_FileSystemDefaultEncoding
, &path1
,
730 Py_FileSystemDefaultEncoding
, &path2
))
732 Py_BEGIN_ALLOW_THREADS
733 res
= (*func
)(path1
, path2
);
738 /* XXX how to report both path1 and path2??? */
739 return posix_error();
746 win32_1str(PyObject
* args
, char* func
,
747 char* format
, BOOL (__stdcall
*funcA
)(LPCSTR
),
748 char* wformat
, BOOL (__stdcall
*funcW
)(LPWSTR
))
754 if (!PyArg_ParseTuple(args
, wformat
, &uni
))
757 Py_BEGIN_ALLOW_THREADS
758 result
= funcW(PyUnicode_AsUnicode(uni
));
761 return win32_error_unicode(func
, PyUnicode_AsUnicode(uni
));
765 if (!PyArg_ParseTuple(args
, format
, &ansi
))
767 Py_BEGIN_ALLOW_THREADS
768 result
= funcA(ansi
);
771 return win32_error(func
, ansi
);
777 /* This is a reimplementation of the C library's chdir function,
778 but one that produces Win32 errors instead of DOS error codes.
779 chdir is essentially a wrapper around SetCurrentDirectory; however,
780 it also needs to set "magic" environment variables indicating
781 the per-drive current directory, which are of the form =<drive>: */
782 static BOOL __stdcall
783 win32_chdir(LPCSTR path
)
785 char new_path
[MAX_PATH
+1];
789 if(!SetCurrentDirectoryA(path
))
791 result
= GetCurrentDirectoryA(MAX_PATH
+1, new_path
);
794 /* In the ANSI API, there should not be any paths longer
796 assert(result
<= MAX_PATH
+1);
797 if (strncmp(new_path
, "\\\\", 2) == 0 ||
798 strncmp(new_path
, "//", 2) == 0)
799 /* UNC path, nothing to do. */
801 env
[1] = new_path
[0];
802 return SetEnvironmentVariableA(env
, new_path
);
805 /* The Unicode version differs from the ANSI version
806 since the current directory might exceed MAX_PATH characters */
807 static BOOL __stdcall
808 win32_wchdir(LPCWSTR path
)
810 wchar_t _new_path
[MAX_PATH
+1], *new_path
= _new_path
;
812 wchar_t env
[4] = L
"=x:";
814 if(!SetCurrentDirectoryW(path
))
816 result
= GetCurrentDirectoryW(MAX_PATH
+1, new_path
);
819 if (result
> MAX_PATH
+1) {
820 new_path
= malloc(result
* sizeof(wchar_t));
822 SetLastError(ERROR_OUTOFMEMORY
);
825 result
= GetCurrentDirectoryW(result
, new_path
);
831 if (wcsncmp(new_path
, L
"\\\\", 2) == 0 ||
832 wcsncmp(new_path
, L
"//", 2) == 0)
833 /* UNC path, nothing to do. */
835 env
[1] = new_path
[0];
836 result
= SetEnvironmentVariableW(env
, new_path
);
837 if (new_path
!= _new_path
)
844 /* The CRT of Windows has a number of flaws wrt. its stat() implementation:
845 - time stamps are restricted to second resolution
846 - file modification times suffer from forth-and-back conversions between
848 Therefore, we implement our own stat, based on the Win32 API directly.
850 #define HAVE_STAT_NSEC 1
855 unsigned short st_mode
;
869 static __int64 secs_between_epochs
= 11644473600; /* Seconds between 1.1.1601 and 1.1.1970 */
872 FILE_TIME_to_time_t_nsec(FILETIME
*in_ptr
, int *time_out
, int* nsec_out
)
874 /* XXX endianness. Shouldn't matter, as all Windows implementations are little-endian */
875 /* Cannot simply cast and dereference in_ptr,
876 since it might not be aligned properly */
878 memcpy(&in
, in_ptr
, sizeof(in
));
879 *nsec_out
= (int)(in
% 10000000) * 100; /* FILETIME is in units of 100 nsec. */
880 /* XXX Win32 supports time stamps past 2038; we currently don't */
881 *time_out
= Py_SAFE_DOWNCAST((in
/ 10000000) - secs_between_epochs
, __int64
, int);
885 time_t_to_FILE_TIME(int time_in
, int nsec_in
, FILETIME
*out_ptr
)
889 out
= time_in
+ secs_between_epochs
;
890 out
= out
* 10000000 + nsec_in
/ 100;
891 memcpy(out_ptr
, &out
, sizeof(out
));
894 /* Below, we *know* that ugo+r is 0444 */
896 #error Unsupported C library
899 attributes_to_mode(DWORD attr
)
902 if (attr
& FILE_ATTRIBUTE_DIRECTORY
)
903 m
|= _S_IFDIR
| 0111; /* IFEXEC for user,group,other */
906 if (attr
& FILE_ATTRIBUTE_READONLY
)
914 attribute_data_to_stat(WIN32_FILE_ATTRIBUTE_DATA
*info
, struct win32_stat
*result
)
916 memset(result
, 0, sizeof(*result
));
917 result
->st_mode
= attributes_to_mode(info
->dwFileAttributes
);
918 result
->st_size
= (((__int64
)info
->nFileSizeHigh
)<<32) + info
->nFileSizeLow
;
919 FILE_TIME_to_time_t_nsec(&info
->ftCreationTime
, &result
->st_ctime
, &result
->st_ctime_nsec
);
920 FILE_TIME_to_time_t_nsec(&info
->ftLastWriteTime
, &result
->st_mtime
, &result
->st_mtime_nsec
);
921 FILE_TIME_to_time_t_nsec(&info
->ftLastAccessTime
, &result
->st_atime
, &result
->st_atime_nsec
);
927 attributes_from_dir(LPCSTR pszFile
, LPWIN32_FILE_ATTRIBUTE_DATA pfad
)
930 WIN32_FIND_DATAA FileData
;
931 hFindFile
= FindFirstFileA(pszFile
, &FileData
);
932 if (hFindFile
== INVALID_HANDLE_VALUE
)
934 FindClose(hFindFile
);
935 pfad
->dwFileAttributes
= FileData
.dwFileAttributes
;
936 pfad
->ftCreationTime
= FileData
.ftCreationTime
;
937 pfad
->ftLastAccessTime
= FileData
.ftLastAccessTime
;
938 pfad
->ftLastWriteTime
= FileData
.ftLastWriteTime
;
939 pfad
->nFileSizeHigh
= FileData
.nFileSizeHigh
;
940 pfad
->nFileSizeLow
= FileData
.nFileSizeLow
;
945 attributes_from_dir_w(LPCWSTR pszFile
, LPWIN32_FILE_ATTRIBUTE_DATA pfad
)
948 WIN32_FIND_DATAW FileData
;
949 hFindFile
= FindFirstFileW(pszFile
, &FileData
);
950 if (hFindFile
== INVALID_HANDLE_VALUE
)
952 FindClose(hFindFile
);
953 pfad
->dwFileAttributes
= FileData
.dwFileAttributes
;
954 pfad
->ftCreationTime
= FileData
.ftCreationTime
;
955 pfad
->ftLastAccessTime
= FileData
.ftLastAccessTime
;
956 pfad
->ftLastWriteTime
= FileData
.ftLastWriteTime
;
957 pfad
->nFileSizeHigh
= FileData
.nFileSizeHigh
;
958 pfad
->nFileSizeLow
= FileData
.nFileSizeLow
;
963 win32_stat(const char* path
, struct win32_stat
*result
)
965 WIN32_FILE_ATTRIBUTE_DATA info
;
968 if (!GetFileAttributesExA(path
, GetFileExInfoStandard
, &info
)) {
969 if (GetLastError() != ERROR_SHARING_VIOLATION
) {
970 /* Protocol violation: we explicitly clear errno, instead of
971 setting it to a POSIX error. Callers should use GetLastError. */
975 /* Could not get attributes on open file. Fall back to
976 reading the directory. */
977 if (!attributes_from_dir(path
, &info
)) {
978 /* Very strange. This should not fail now */
984 code
= attribute_data_to_stat(&info
, result
);
987 /* Set S_IFEXEC if it is an .exe, .bat, ... */
988 dot
= strrchr(path
, '.');
990 if (stricmp(dot
, ".bat") == 0 ||
991 stricmp(dot
, ".cmd") == 0 ||
992 stricmp(dot
, ".exe") == 0 ||
993 stricmp(dot
, ".com") == 0)
994 result
->st_mode
|= 0111;
1000 win32_wstat(const wchar_t* path
, struct win32_stat
*result
)
1004 WIN32_FILE_ATTRIBUTE_DATA info
;
1005 if (!GetFileAttributesExW(path
, GetFileExInfoStandard
, &info
)) {
1006 if (GetLastError() != ERROR_SHARING_VIOLATION
) {
1007 /* Protocol violation: we explicitly clear errno, instead of
1008 setting it to a POSIX error. Callers should use GetLastError. */
1012 /* Could not get attributes on open file. Fall back to
1013 reading the directory. */
1014 if (!attributes_from_dir_w(path
, &info
)) {
1015 /* Very strange. This should not fail now */
1021 code
= attribute_data_to_stat(&info
, result
);
1024 /* Set IFEXEC if it is an .exe, .bat, ... */
1025 dot
= wcsrchr(path
, '.');
1027 if (_wcsicmp(dot
, L
".bat") == 0 ||
1028 _wcsicmp(dot
, L
".cmd") == 0 ||
1029 _wcsicmp(dot
, L
".exe") == 0 ||
1030 _wcsicmp(dot
, L
".com") == 0)
1031 result
->st_mode
|= 0111;
1037 win32_fstat(int file_number
, struct win32_stat
*result
)
1039 BY_HANDLE_FILE_INFORMATION info
;
1043 h
= (HANDLE
)_get_osfhandle(file_number
);
1045 /* Protocol violation: we explicitly clear errno, instead of
1046 setting it to a POSIX error. Callers should use GetLastError. */
1049 if (h
== INVALID_HANDLE_VALUE
) {
1050 /* This is really a C library error (invalid file handle).
1051 We set the Win32 error to the closes one matching. */
1052 SetLastError(ERROR_INVALID_HANDLE
);
1055 memset(result
, 0, sizeof(*result
));
1057 type
= GetFileType(h
);
1058 if (type
== FILE_TYPE_UNKNOWN
) {
1059 DWORD error
= GetLastError();
1063 /* else: valid but unknown file */
1066 if (type
!= FILE_TYPE_DISK
) {
1067 if (type
== FILE_TYPE_CHAR
)
1068 result
->st_mode
= _S_IFCHR
;
1069 else if (type
== FILE_TYPE_PIPE
)
1070 result
->st_mode
= _S_IFIFO
;
1074 if (!GetFileInformationByHandle(h
, &info
)) {
1078 /* similar to stat() */
1079 result
->st_mode
= attributes_to_mode(info
.dwFileAttributes
);
1080 result
->st_size
= (((__int64
)info
.nFileSizeHigh
)<<32) + info
.nFileSizeLow
;
1081 FILE_TIME_to_time_t_nsec(&info
.ftCreationTime
, &result
->st_ctime
, &result
->st_ctime_nsec
);
1082 FILE_TIME_to_time_t_nsec(&info
.ftLastWriteTime
, &result
->st_mtime
, &result
->st_mtime_nsec
);
1083 FILE_TIME_to_time_t_nsec(&info
.ftLastAccessTime
, &result
->st_atime
, &result
->st_atime_nsec
);
1084 /* specific to fstat() */
1085 result
->st_nlink
= info
.nNumberOfLinks
;
1086 result
->st_ino
= (((__int64
)info
.nFileIndexHigh
)<<32) + info
.nFileIndexLow
;
1090 #endif /* MS_WINDOWS */
1092 PyDoc_STRVAR(stat_result__doc__
,
1093 "stat_result: Result from stat or lstat.\n\n\
1094 This object may be accessed either as a tuple of\n\
1095 (mode, ino, dev, nlink, uid, gid, size, atime, mtime, ctime)\n\
1096 or via the attributes st_mode, st_ino, st_dev, st_nlink, st_uid, and so on.\n\
1098 Posix/windows: If your platform supports st_blksize, st_blocks, st_rdev,\n\
1099 or st_flags, they are available as attributes only.\n\
1101 See os.stat for more information.");
1103 static PyStructSequence_Field stat_result_fields
[] = {
1104 {"st_mode", "protection bits"},
1105 {"st_ino", "inode"},
1106 {"st_dev", "device"},
1107 {"st_nlink", "number of hard links"},
1108 {"st_uid", "user ID of owner"},
1109 {"st_gid", "group ID of owner"},
1110 {"st_size", "total size, in bytes"},
1111 /* The NULL is replaced with PyStructSequence_UnnamedField later. */
1112 {NULL
, "integer time of last access"},
1113 {NULL
, "integer time of last modification"},
1114 {NULL
, "integer time of last change"},
1115 {"st_atime", "time of last access"},
1116 {"st_mtime", "time of last modification"},
1117 {"st_ctime", "time of last change"},
1118 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1119 {"st_blksize", "blocksize for filesystem I/O"},
1121 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1122 {"st_blocks", "number of blocks allocated"},
1124 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1125 {"st_rdev", "device type (if inode device)"},
1127 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1128 {"st_flags", "user defined flags for file"},
1130 #ifdef HAVE_STRUCT_STAT_ST_GEN
1131 {"st_gen", "generation number"},
1133 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1134 {"st_birthtime", "time of creation"},
1139 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1140 #define ST_BLKSIZE_IDX 13
1142 #define ST_BLKSIZE_IDX 12
1145 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1146 #define ST_BLOCKS_IDX (ST_BLKSIZE_IDX+1)
1148 #define ST_BLOCKS_IDX ST_BLKSIZE_IDX
1151 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1152 #define ST_RDEV_IDX (ST_BLOCKS_IDX+1)
1154 #define ST_RDEV_IDX ST_BLOCKS_IDX
1157 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1158 #define ST_FLAGS_IDX (ST_RDEV_IDX+1)
1160 #define ST_FLAGS_IDX ST_RDEV_IDX
1163 #ifdef HAVE_STRUCT_STAT_ST_GEN
1164 #define ST_GEN_IDX (ST_FLAGS_IDX+1)
1166 #define ST_GEN_IDX ST_FLAGS_IDX
1169 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1170 #define ST_BIRTHTIME_IDX (ST_GEN_IDX+1)
1172 #define ST_BIRTHTIME_IDX ST_GEN_IDX
1175 static PyStructSequence_Desc stat_result_desc
= {
1176 "stat_result", /* name */
1177 stat_result__doc__
, /* doc */
1182 PyDoc_STRVAR(statvfs_result__doc__
,
1183 "statvfs_result: Result from statvfs or fstatvfs.\n\n\
1184 This object may be accessed either as a tuple of\n\
1185 (bsize, frsize, blocks, bfree, bavail, files, ffree, favail, flag, namemax),\n\
1186 or via the attributes f_bsize, f_frsize, f_blocks, f_bfree, and so on.\n\
1188 See os.statvfs for more information.");
1190 static PyStructSequence_Field statvfs_result_fields
[] = {
1204 static PyStructSequence_Desc statvfs_result_desc
= {
1205 "statvfs_result", /* name */
1206 statvfs_result__doc__
, /* doc */
1207 statvfs_result_fields
,
1211 static int initialized
;
1212 static PyTypeObject StatResultType
;
1213 static PyTypeObject StatVFSResultType
;
1214 static newfunc structseq_new
;
1217 statresult_new(PyTypeObject
*type
, PyObject
*args
, PyObject
*kwds
)
1219 PyStructSequence
*result
;
1222 result
= (PyStructSequence
*)structseq_new(type
, args
, kwds
);
1225 /* If we have been initialized from a tuple,
1226 st_?time might be set to None. Initialize it
1227 from the int slots. */
1228 for (i
= 7; i
<= 9; i
++) {
1229 if (result
->ob_item
[i
+3] == Py_None
) {
1231 Py_INCREF(result
->ob_item
[i
]);
1232 result
->ob_item
[i
+3] = result
->ob_item
[i
];
1235 return (PyObject
*)result
;
1240 /* If true, st_?time is float. */
1241 static int _stat_float_times
= 1;
1243 PyDoc_STRVAR(stat_float_times__doc__
,
1244 "stat_float_times([newval]) -> oldval\n\n\
1245 Determine whether os.[lf]stat represents time stamps as float objects.\n\
1246 If newval is True, future calls to stat() return floats, if it is False,\n\
1247 future calls return ints. \n\
1248 If newval is omitted, return the current setting.\n");
1251 stat_float_times(PyObject
* self
, PyObject
*args
)
1254 if (!PyArg_ParseTuple(args
, "|i:stat_float_times", &newval
))
1257 /* Return old value */
1258 return PyBool_FromLong(_stat_float_times
);
1259 _stat_float_times
= newval
;
1265 fill_time(PyObject
*v
, int index
, time_t sec
, unsigned long nsec
)
1267 PyObject
*fval
,*ival
;
1268 #if SIZEOF_TIME_T > SIZEOF_LONG
1269 ival
= PyLong_FromLongLong((PY_LONG_LONG
)sec
);
1271 ival
= PyInt_FromLong((long)sec
);
1275 if (_stat_float_times
) {
1276 fval
= PyFloat_FromDouble(sec
+ 1e-9*nsec
);
1281 PyStructSequence_SET_ITEM(v
, index
, ival
);
1282 PyStructSequence_SET_ITEM(v
, index
+3, fval
);
1285 /* pack a system stat C structure into the Python stat tuple
1286 (used by posix_stat() and posix_fstat()) */
1288 _pystat_fromstructstat(STRUCT_STAT
*st
)
1290 unsigned long ansec
, mnsec
, cnsec
;
1291 PyObject
*v
= PyStructSequence_New(&StatResultType
);
1295 PyStructSequence_SET_ITEM(v
, 0, PyInt_FromLong((long)st
->st_mode
));
1296 #ifdef HAVE_LARGEFILE_SUPPORT
1297 PyStructSequence_SET_ITEM(v
, 1,
1298 PyLong_FromLongLong((PY_LONG_LONG
)st
->st_ino
));
1300 PyStructSequence_SET_ITEM(v
, 1, PyInt_FromLong((long)st
->st_ino
));
1302 #if defined(HAVE_LONG_LONG) && !defined(MS_WINDOWS)
1303 PyStructSequence_SET_ITEM(v
, 2,
1304 PyLong_FromLongLong((PY_LONG_LONG
)st
->st_dev
));
1306 PyStructSequence_SET_ITEM(v
, 2, PyInt_FromLong((long)st
->st_dev
));
1308 PyStructSequence_SET_ITEM(v
, 3, PyInt_FromLong((long)st
->st_nlink
));
1309 PyStructSequence_SET_ITEM(v
, 4, PyInt_FromLong((long)st
->st_uid
));
1310 PyStructSequence_SET_ITEM(v
, 5, PyInt_FromLong((long)st
->st_gid
));
1311 #ifdef HAVE_LARGEFILE_SUPPORT
1312 PyStructSequence_SET_ITEM(v
, 6,
1313 PyLong_FromLongLong((PY_LONG_LONG
)st
->st_size
));
1315 PyStructSequence_SET_ITEM(v
, 6, PyInt_FromLong(st
->st_size
));
1318 #if defined(HAVE_STAT_TV_NSEC)
1319 ansec
= st
->st_atim
.tv_nsec
;
1320 mnsec
= st
->st_mtim
.tv_nsec
;
1321 cnsec
= st
->st_ctim
.tv_nsec
;
1322 #elif defined(HAVE_STAT_TV_NSEC2)
1323 ansec
= st
->st_atimespec
.tv_nsec
;
1324 mnsec
= st
->st_mtimespec
.tv_nsec
;
1325 cnsec
= st
->st_ctimespec
.tv_nsec
;
1326 #elif defined(HAVE_STAT_NSEC)
1327 ansec
= st
->st_atime_nsec
;
1328 mnsec
= st
->st_mtime_nsec
;
1329 cnsec
= st
->st_ctime_nsec
;
1331 ansec
= mnsec
= cnsec
= 0;
1333 fill_time(v
, 7, st
->st_atime
, ansec
);
1334 fill_time(v
, 8, st
->st_mtime
, mnsec
);
1335 fill_time(v
, 9, st
->st_ctime
, cnsec
);
1337 #ifdef HAVE_STRUCT_STAT_ST_BLKSIZE
1338 PyStructSequence_SET_ITEM(v
, ST_BLKSIZE_IDX
,
1339 PyInt_FromLong((long)st
->st_blksize
));
1341 #ifdef HAVE_STRUCT_STAT_ST_BLOCKS
1342 PyStructSequence_SET_ITEM(v
, ST_BLOCKS_IDX
,
1343 PyInt_FromLong((long)st
->st_blocks
));
1345 #ifdef HAVE_STRUCT_STAT_ST_RDEV
1346 PyStructSequence_SET_ITEM(v
, ST_RDEV_IDX
,
1347 PyInt_FromLong((long)st
->st_rdev
));
1349 #ifdef HAVE_STRUCT_STAT_ST_GEN
1350 PyStructSequence_SET_ITEM(v
, ST_GEN_IDX
,
1351 PyInt_FromLong((long)st
->st_gen
));
1353 #ifdef HAVE_STRUCT_STAT_ST_BIRTHTIME
1356 unsigned long bsec
,bnsec
;
1357 bsec
= (long)st
->st_birthtime
;
1358 #ifdef HAVE_STAT_TV_NSEC2
1359 bnsec
= st
->st_birthtimespec
.tv_nsec
;
1363 if (_stat_float_times
) {
1364 val
= PyFloat_FromDouble(bsec
+ 1e-9*bnsec
);
1366 val
= PyInt_FromLong((long)bsec
);
1368 PyStructSequence_SET_ITEM(v
, ST_BIRTHTIME_IDX
,
1372 #ifdef HAVE_STRUCT_STAT_ST_FLAGS
1373 PyStructSequence_SET_ITEM(v
, ST_FLAGS_IDX
,
1374 PyInt_FromLong((long)st
->st_flags
));
1377 if (PyErr_Occurred()) {
1387 /* IsUNCRoot -- test whether the supplied path is of the form \\SERVER\SHARE\,
1388 where / can be used in place of \ and the trailing slash is optional.
1389 Both SERVER and SHARE must have at least one character.
1392 #define ISSLASHA(c) ((c) == '\\' || (c) == '/')
1393 #define ISSLASHW(c) ((c) == L'\\' || (c) == L'/')
1395 #define ARRAYSIZE(a) (sizeof(a) / sizeof(a[0]))
1399 IsUNCRootA(char *path
, int pathlen
)
1401 #define ISSLASH ISSLASHA
1405 if (pathlen
< 5 || !ISSLASH(path
[0]) || !ISSLASH(path
[1]))
1406 /* minimum UNCRoot is \\x\y */
1408 for (i
= 2; i
< pathlen
; i
++)
1409 if (ISSLASH(path
[i
])) break;
1410 if (i
== 2 || i
== pathlen
)
1411 /* do not allow \\\SHARE or \\SERVER */
1414 for (i
= share
; i
< pathlen
; i
++)
1415 if (ISSLASH(path
[i
])) break;
1416 return (i
!= share
&& (i
== pathlen
|| i
== pathlen
-1));
1422 IsUNCRootW(Py_UNICODE
*path
, int pathlen
)
1424 #define ISSLASH ISSLASHW
1428 if (pathlen
< 5 || !ISSLASH(path
[0]) || !ISSLASH(path
[1]))
1429 /* minimum UNCRoot is \\x\y */
1431 for (i
= 2; i
< pathlen
; i
++)
1432 if (ISSLASH(path
[i
])) break;
1433 if (i
== 2 || i
== pathlen
)
1434 /* do not allow \\\SHARE or \\SERVER */
1437 for (i
= share
; i
< pathlen
; i
++)
1438 if (ISSLASH(path
[i
])) break;
1439 return (i
!= share
&& (i
== pathlen
|| i
== pathlen
-1));
1443 #endif /* MS_WINDOWS */
1446 posix_do_stat(PyObject
*self
, PyObject
*args
,
1449 int (*statfunc
)(const char *, STRUCT_STAT
*, ...),
1451 int (*statfunc
)(const char *, STRUCT_STAT
*),
1454 int (*wstatfunc
)(const Py_UNICODE
*, STRUCT_STAT
*))
1457 char *path
= NULL
; /* pass this to stat; do not free() it */
1458 char *pathfree
= NULL
; /* this memory must be free'd */
1463 PyUnicodeObject
*po
;
1464 if (PyArg_ParseTuple(args
, wformat
, &po
)) {
1465 Py_UNICODE
*wpath
= PyUnicode_AS_UNICODE(po
);
1467 Py_BEGIN_ALLOW_THREADS
1468 /* PyUnicode_AS_UNICODE result OK without
1469 thread lock as it is a simple dereference. */
1470 res
= wstatfunc(wpath
, &st
);
1471 Py_END_ALLOW_THREADS
1474 return win32_error_unicode("stat", wpath
);
1475 return _pystat_fromstructstat(&st
);
1477 /* Drop the argument parsing error as narrow strings
1482 if (!PyArg_ParseTuple(args
, format
,
1483 Py_FileSystemDefaultEncoding
, &path
))
1487 Py_BEGIN_ALLOW_THREADS
1488 res
= (*statfunc
)(path
, &st
);
1489 Py_END_ALLOW_THREADS
1493 result
= win32_error("stat", pathfree
);
1495 result
= posix_error_with_filename(pathfree
);
1499 result
= _pystat_fromstructstat(&st
);
1501 PyMem_Free(pathfree
);
1507 PyDoc_STRVAR(posix_access__doc__
,
1508 "access(path, mode) -> True if granted, False otherwise\n\n\
1509 Use the real uid/gid to test for access to a path. Note that most\n\
1510 operations will use the effective uid/gid, therefore this routine can\n\
1511 be used in a suid/sgid environment to test if the invoking user has the\n\
1512 specified access to the path. The mode argument can be F_OK to test\n\
1513 existence, or the inclusive-OR of R_OK, W_OK, and X_OK.");
1516 posix_access(PyObject
*self
, PyObject
*args
)
1523 PyUnicodeObject
*po
;
1524 if (PyArg_ParseTuple(args
, "Ui:access", &po
, &mode
)) {
1525 Py_BEGIN_ALLOW_THREADS
1526 /* PyUnicode_AS_UNICODE OK without thread lock as
1527 it is a simple dereference. */
1528 attr
= GetFileAttributesW(PyUnicode_AS_UNICODE(po
));
1529 Py_END_ALLOW_THREADS
1532 /* Drop the argument parsing error as narrow strings
1535 if (!PyArg_ParseTuple(args
, "eti:access",
1536 Py_FileSystemDefaultEncoding
, &path
, &mode
))
1538 Py_BEGIN_ALLOW_THREADS
1539 attr
= GetFileAttributesA(path
);
1540 Py_END_ALLOW_THREADS
1543 if (attr
== 0xFFFFFFFF)
1544 /* File does not exist, or cannot read attributes */
1545 return PyBool_FromLong(0);
1546 /* Access is possible if either write access wasn't requested, or
1547 the file isn't read-only, or if it's a directory, as there are
1548 no read-only directories on Windows. */
1549 return PyBool_FromLong(!(mode
& 2)
1550 || !(attr
& FILE_ATTRIBUTE_READONLY
)
1551 || (attr
& FILE_ATTRIBUTE_DIRECTORY
));
1552 #else /* MS_WINDOWS */
1554 if (!PyArg_ParseTuple(args
, "eti:access",
1555 Py_FileSystemDefaultEncoding
, &path
, &mode
))
1557 Py_BEGIN_ALLOW_THREADS
1558 res
= access(path
, mode
);
1559 Py_END_ALLOW_THREADS
1561 return PyBool_FromLong(res
== 0);
1562 #endif /* MS_WINDOWS */
1579 PyDoc_STRVAR(posix_ttyname__doc__
,
1580 "ttyname(fd) -> string\n\n\
1581 Return the name of the terminal device connected to 'fd'.");
1584 posix_ttyname(PyObject
*self
, PyObject
*args
)
1589 if (!PyArg_ParseTuple(args
, "i:ttyname", &id
))
1593 /* file descriptor 0 only, the default input device (stdin) */
1604 return posix_error();
1605 return PyString_FromString(ret
);
1610 PyDoc_STRVAR(posix_ctermid__doc__
,
1611 "ctermid() -> string\n\n\
1612 Return the name of the controlling terminal for this process.");
1615 posix_ctermid(PyObject
*self
, PyObject
*noargs
)
1618 char buffer
[L_ctermid
];
1620 #ifdef USE_CTERMID_R
1621 ret
= ctermid_r(buffer
);
1623 ret
= ctermid(buffer
);
1626 return posix_error();
1627 return PyString_FromString(buffer
);
1631 PyDoc_STRVAR(posix_chdir__doc__
,
1633 Change the current working directory to the specified path.");
1636 posix_chdir(PyObject
*self
, PyObject
*args
)
1639 return win32_1str(args
, "chdir", "s:chdir", win32_chdir
, "U:chdir", win32_wchdir
);
1640 #elif defined(PYOS_OS2) && defined(PYCC_GCC)
1641 return posix_1str(args
, "et:chdir", _chdir2
);
1642 #elif defined(__VMS)
1643 return posix_1str(args
, "et:chdir", (int (*)(const char *))chdir
);
1645 return posix_1str(args
, "et:chdir", chdir
);
1650 PyDoc_STRVAR(posix_fchdir__doc__
,
1651 "fchdir(fildes)\n\n\
1652 Change to the directory of the given file descriptor. fildes must be\n\
1653 opened on a directory, not a file.");
1656 posix_fchdir(PyObject
*self
, PyObject
*fdobj
)
1658 return posix_fildes(fdobj
, fchdir
);
1660 #endif /* HAVE_FCHDIR */
1663 PyDoc_STRVAR(posix_chmod__doc__
,
1664 "chmod(path, mode)\n\n\
1665 Change the access permissions of a file.");
1668 posix_chmod(PyObject
*self
, PyObject
*args
)
1675 PyUnicodeObject
*po
;
1676 if (PyArg_ParseTuple(args
, "Ui|:chmod", &po
, &i
)) {
1677 Py_BEGIN_ALLOW_THREADS
1678 attr
= GetFileAttributesW(PyUnicode_AS_UNICODE(po
));
1679 if (attr
!= 0xFFFFFFFF) {
1681 attr
&= ~FILE_ATTRIBUTE_READONLY
;
1683 attr
|= FILE_ATTRIBUTE_READONLY
;
1684 res
= SetFileAttributesW(PyUnicode_AS_UNICODE(po
), attr
);
1688 Py_END_ALLOW_THREADS
1690 return win32_error_unicode("chmod",
1691 PyUnicode_AS_UNICODE(po
));
1695 /* Drop the argument parsing error as narrow strings
1699 if (!PyArg_ParseTuple(args
, "eti:chmod", Py_FileSystemDefaultEncoding
,
1702 Py_BEGIN_ALLOW_THREADS
1703 attr
= GetFileAttributesA(path
);
1704 if (attr
!= 0xFFFFFFFF) {
1706 attr
&= ~FILE_ATTRIBUTE_READONLY
;
1708 attr
|= FILE_ATTRIBUTE_READONLY
;
1709 res
= SetFileAttributesA(path
, attr
);
1713 Py_END_ALLOW_THREADS
1715 win32_error("chmod", path
);
1722 #else /* MS_WINDOWS */
1723 if (!PyArg_ParseTuple(args
, "eti:chmod", Py_FileSystemDefaultEncoding
,
1726 Py_BEGIN_ALLOW_THREADS
1727 res
= chmod(path
, i
);
1728 Py_END_ALLOW_THREADS
1730 return posix_error_with_allocated_filename(path
);
1738 PyDoc_STRVAR(posix_fchmod__doc__
,
1739 "fchmod(fd, mode)\n\n\
1740 Change the access permissions of the file given by file\n\
1744 posix_fchmod(PyObject
*self
, PyObject
*args
)
1747 if (!PyArg_ParseTuple(args
, "ii:fchmod", &fd
, &mode
))
1749 Py_BEGIN_ALLOW_THREADS
1750 res
= fchmod(fd
, mode
);
1751 Py_END_ALLOW_THREADS
1753 return posix_error();
1756 #endif /* HAVE_FCHMOD */
1759 PyDoc_STRVAR(posix_lchmod__doc__
,
1760 "lchmod(path, mode)\n\n\
1761 Change the access permissions of a file. If path is a symlink, this\n\
1762 affects the link itself rather than the target.");
1765 posix_lchmod(PyObject
*self
, PyObject
*args
)
1770 if (!PyArg_ParseTuple(args
, "eti:lchmod", Py_FileSystemDefaultEncoding
,
1773 Py_BEGIN_ALLOW_THREADS
1774 res
= lchmod(path
, i
);
1775 Py_END_ALLOW_THREADS
1777 return posix_error_with_allocated_filename(path
);
1781 #endif /* HAVE_LCHMOD */
1785 PyDoc_STRVAR(posix_chflags__doc__
,
1786 "chflags(path, flags)\n\n\
1790 posix_chflags(PyObject
*self
, PyObject
*args
)
1793 unsigned long flags
;
1795 if (!PyArg_ParseTuple(args
, "etk:chflags",
1796 Py_FileSystemDefaultEncoding
, &path
, &flags
))
1798 Py_BEGIN_ALLOW_THREADS
1799 res
= chflags(path
, flags
);
1800 Py_END_ALLOW_THREADS
1802 return posix_error_with_allocated_filename(path
);
1807 #endif /* HAVE_CHFLAGS */
1809 #ifdef HAVE_LCHFLAGS
1810 PyDoc_STRVAR(posix_lchflags__doc__
,
1811 "lchflags(path, flags)\n\n\
1813 This function will not follow symbolic links.");
1816 posix_lchflags(PyObject
*self
, PyObject
*args
)
1819 unsigned long flags
;
1821 if (!PyArg_ParseTuple(args
, "etk:lchflags",
1822 Py_FileSystemDefaultEncoding
, &path
, &flags
))
1824 Py_BEGIN_ALLOW_THREADS
1825 res
= lchflags(path
, flags
);
1826 Py_END_ALLOW_THREADS
1828 return posix_error_with_allocated_filename(path
);
1833 #endif /* HAVE_LCHFLAGS */
1836 PyDoc_STRVAR(posix_chroot__doc__
,
1838 Change root directory to path.");
1841 posix_chroot(PyObject
*self
, PyObject
*args
)
1843 return posix_1str(args
, "et:chroot", chroot
);
1848 PyDoc_STRVAR(posix_fsync__doc__
,
1850 force write of file with filedescriptor to disk.");
1853 posix_fsync(PyObject
*self
, PyObject
*fdobj
)
1855 return posix_fildes(fdobj
, fsync
);
1857 #endif /* HAVE_FSYNC */
1859 #ifdef HAVE_FDATASYNC
1862 extern int fdatasync(int); /* On HP-UX, in libc but not in unistd.h */
1865 PyDoc_STRVAR(posix_fdatasync__doc__
,
1866 "fdatasync(fildes)\n\n\
1867 force write of file with filedescriptor to disk.\n\
1868 does not force update of metadata.");
1871 posix_fdatasync(PyObject
*self
, PyObject
*fdobj
)
1873 return posix_fildes(fdobj
, fdatasync
);
1875 #endif /* HAVE_FDATASYNC */
1879 PyDoc_STRVAR(posix_chown__doc__
,
1880 "chown(path, uid, gid)\n\n\
1881 Change the owner and group id of path to the numeric uid and gid.");
1884 posix_chown(PyObject
*self
, PyObject
*args
)
1889 if (!PyArg_ParseTuple(args
, "etll:chown",
1890 Py_FileSystemDefaultEncoding
, &path
,
1893 Py_BEGIN_ALLOW_THREADS
1894 res
= chown(path
, (uid_t
) uid
, (gid_t
) gid
);
1895 Py_END_ALLOW_THREADS
1897 return posix_error_with_allocated_filename(path
);
1902 #endif /* HAVE_CHOWN */
1905 PyDoc_STRVAR(posix_fchown__doc__
,
1906 "fchown(fd, uid, gid)\n\n\
1907 Change the owner and group id of the file given by file descriptor\n\
1908 fd to the numeric uid and gid.");
1911 posix_fchown(PyObject
*self
, PyObject
*args
)
1916 if (!PyArg_ParseTuple(args
, "ill:chown", &fd
, &uid
, &gid
))
1918 Py_BEGIN_ALLOW_THREADS
1919 res
= fchown(fd
, (uid_t
) uid
, (gid_t
) gid
);
1920 Py_END_ALLOW_THREADS
1922 return posix_error();
1925 #endif /* HAVE_FCHOWN */
1928 PyDoc_STRVAR(posix_lchown__doc__
,
1929 "lchown(path, uid, gid)\n\n\
1930 Change the owner and group id of path to the numeric uid and gid.\n\
1931 This function will not follow symbolic links.");
1934 posix_lchown(PyObject
*self
, PyObject
*args
)
1939 if (!PyArg_ParseTuple(args
, "etll:lchown",
1940 Py_FileSystemDefaultEncoding
, &path
,
1943 Py_BEGIN_ALLOW_THREADS
1944 res
= lchown(path
, (uid_t
) uid
, (gid_t
) gid
);
1945 Py_END_ALLOW_THREADS
1947 return posix_error_with_allocated_filename(path
);
1952 #endif /* HAVE_LCHOWN */
1956 PyDoc_STRVAR(posix_getcwd__doc__
,
1957 "getcwd() -> path\n\n\
1958 Return a string representing the current working directory.");
1961 posix_getcwd(PyObject
*self
, PyObject
*noargs
)
1963 int bufsize_incr
= 1024;
1965 char *tmpbuf
= NULL
;
1967 PyObject
*dynamic_return
;
1969 Py_BEGIN_ALLOW_THREADS
1971 bufsize
= bufsize
+ bufsize_incr
;
1972 tmpbuf
= malloc(bufsize
);
1973 if (tmpbuf
== NULL
) {
1976 #if defined(PYOS_OS2) && defined(PYCC_GCC)
1977 res
= _getcwd2(tmpbuf
, bufsize
);
1979 res
= getcwd(tmpbuf
, bufsize
);
1985 } while ((res
== NULL
) && (errno
== ERANGE
));
1986 Py_END_ALLOW_THREADS
1989 return posix_error();
1991 dynamic_return
= PyString_FromString(tmpbuf
);
1994 return dynamic_return
;
1997 #ifdef Py_USING_UNICODE
1998 PyDoc_STRVAR(posix_getcwdu__doc__
,
1999 "getcwdu() -> path\n\n\
2000 Return a unicode string representing the current working directory.");
2003 posix_getcwdu(PyObject
*self
, PyObject
*noargs
)
2011 wchar_t *wbuf2
= wbuf
;
2013 Py_BEGIN_ALLOW_THREADS
2014 len
= GetCurrentDirectoryW(sizeof wbuf
/ sizeof wbuf
[0], wbuf
);
2015 /* If the buffer is large enough, len does not include the
2016 terminating \0. If the buffer is too small, len includes
2017 the space needed for the terminator. */
2018 if (len
>= sizeof wbuf
/ sizeof wbuf
[0]) {
2019 wbuf2
= malloc(len
* sizeof(wchar_t));
2021 len
= GetCurrentDirectoryW(len
, wbuf2
);
2023 Py_END_ALLOW_THREADS
2029 if (wbuf2
!= wbuf
) free(wbuf2
);
2030 return win32_error("getcwdu", NULL
);
2032 resobj
= PyUnicode_FromWideChar(wbuf2
, len
);
2033 if (wbuf2
!= wbuf
) free(wbuf2
);
2035 #endif /* MS_WINDOWS */
2037 Py_BEGIN_ALLOW_THREADS
2038 #if defined(PYOS_OS2) && defined(PYCC_GCC)
2039 res
= _getcwd2(buf
, sizeof buf
);
2041 res
= getcwd(buf
, sizeof buf
);
2043 Py_END_ALLOW_THREADS
2045 return posix_error();
2046 return PyUnicode_Decode(buf
, strlen(buf
), Py_FileSystemDefaultEncoding
,"strict");
2048 #endif /* Py_USING_UNICODE */
2049 #endif /* HAVE_GETCWD */
2053 PyDoc_STRVAR(posix_link__doc__
,
2054 "link(src, dst)\n\n\
2055 Create a hard link to a file.");
2058 posix_link(PyObject
*self
, PyObject
*args
)
2060 return posix_2str(args
, "etet:link", link
);
2062 #endif /* HAVE_LINK */
2065 PyDoc_STRVAR(posix_listdir__doc__
,
2066 "listdir(path) -> list_of_strings\n\n\
2067 Return a list containing the names of the entries in the directory.\n\
2069 path: path of directory to list\n\
2071 The list is in arbitrary order. It does not include the special\n\
2072 entries '.' and '..' even if they are present in the directory.");
2075 posix_listdir(PyObject
*self
, PyObject
*args
)
2077 /* XXX Should redo this putting the (now four) versions of opendir
2078 in separate files instead of having them all here... */
2079 #if defined(MS_WINDOWS) && !defined(HAVE_OPENDIR)
2084 WIN32_FIND_DATA FileData
;
2085 char namebuf
[MAX_PATH
+5]; /* Overallocate for \\*.*\0 */
2086 char *bufptr
= namebuf
;
2087 Py_ssize_t len
= sizeof(namebuf
)-5; /* only claim to have space for MAX_PATH */
2090 if (PyArg_ParseTuple(args
, "U:listdir", &po
)) {
2091 WIN32_FIND_DATAW wFileData
;
2092 Py_UNICODE
*wnamebuf
;
2093 /* Overallocate for \\*.*\0 */
2094 len
= PyUnicode_GET_SIZE(po
);
2095 wnamebuf
= malloc((len
+ 5) * sizeof(wchar_t));
2100 wcscpy(wnamebuf
, PyUnicode_AS_UNICODE(po
));
2102 Py_UNICODE wch
= wnamebuf
[len
-1];
2103 if (wch
!= L
'/' && wch
!= L
'\\' && wch
!= L
':')
2104 wnamebuf
[len
++] = L
'\\';
2105 wcscpy(wnamebuf
+ len
, L
"*.*");
2107 if ((d
= PyList_New(0)) == NULL
) {
2111 hFindFile
= FindFirstFileW(wnamebuf
, &wFileData
);
2112 if (hFindFile
== INVALID_HANDLE_VALUE
) {
2113 int error
= GetLastError();
2114 if (error
== ERROR_FILE_NOT_FOUND
) {
2119 win32_error_unicode("FindFirstFileW", wnamebuf
);
2124 /* Skip over . and .. */
2125 if (wcscmp(wFileData
.cFileName
, L
".") != 0 &&
2126 wcscmp(wFileData
.cFileName
, L
"..") != 0) {
2127 v
= PyUnicode_FromUnicode(wFileData
.cFileName
, wcslen(wFileData
.cFileName
));
2133 if (PyList_Append(d
, v
) != 0) {
2141 Py_BEGIN_ALLOW_THREADS
2142 result
= FindNextFileW(hFindFile
, &wFileData
);
2143 Py_END_ALLOW_THREADS
2144 /* FindNextFile sets error to ERROR_NO_MORE_FILES if
2145 it got to the end of the directory. */
2146 if (!result
&& GetLastError() != ERROR_NO_MORE_FILES
) {
2148 win32_error_unicode("FindNextFileW", wnamebuf
);
2149 FindClose(hFindFile
);
2153 } while (result
== TRUE
);
2155 if (FindClose(hFindFile
) == FALSE
) {
2157 win32_error_unicode("FindClose", wnamebuf
);
2164 /* Drop the argument parsing error as narrow strings
2168 if (!PyArg_ParseTuple(args
, "et#:listdir",
2169 Py_FileSystemDefaultEncoding
, &bufptr
, &len
))
2172 char ch
= namebuf
[len
-1];
2173 if (ch
!= SEP
&& ch
!= ALTSEP
&& ch
!= ':')
2174 namebuf
[len
++] = '/';
2175 strcpy(namebuf
+ len
, "*.*");
2178 if ((d
= PyList_New(0)) == NULL
)
2181 hFindFile
= FindFirstFile(namebuf
, &FileData
);
2182 if (hFindFile
== INVALID_HANDLE_VALUE
) {
2183 int error
= GetLastError();
2184 if (error
== ERROR_FILE_NOT_FOUND
)
2187 return win32_error("FindFirstFile", namebuf
);
2190 /* Skip over . and .. */
2191 if (strcmp(FileData
.cFileName
, ".") != 0 &&
2192 strcmp(FileData
.cFileName
, "..") != 0) {
2193 v
= PyString_FromString(FileData
.cFileName
);
2199 if (PyList_Append(d
, v
) != 0) {
2207 Py_BEGIN_ALLOW_THREADS
2208 result
= FindNextFile(hFindFile
, &FileData
);
2209 Py_END_ALLOW_THREADS
2210 /* FindNextFile sets error to ERROR_NO_MORE_FILES if
2211 it got to the end of the directory. */
2212 if (!result
&& GetLastError() != ERROR_NO_MORE_FILES
) {
2214 win32_error("FindNextFile", namebuf
);
2215 FindClose(hFindFile
);
2218 } while (result
== TRUE
);
2220 if (FindClose(hFindFile
) == FALSE
) {
2222 return win32_error("FindClose", namebuf
);
2227 #elif defined(PYOS_OS2)
2230 #define MAX_PATH CCHMAXPATH
2235 char namebuf
[MAX_PATH
+5];
2241 if (!PyArg_ParseTuple(args
, "t#:listdir", &name
, &len
))
2243 if (len
>= MAX_PATH
) {
2244 PyErr_SetString(PyExc_ValueError
, "path too long");
2247 strcpy(namebuf
, name
);
2248 for (pt
= namebuf
; *pt
; pt
++)
2251 if (namebuf
[len
-1] != SEP
)
2252 namebuf
[len
++] = SEP
;
2253 strcpy(namebuf
+ len
, "*.*");
2255 if ((d
= PyList_New(0)) == NULL
)
2258 rc
= DosFindFirst(namebuf
, /* Wildcard Pattern to Match */
2259 &hdir
, /* Handle to Use While Search Directory */
2260 FILE_READONLY
| FILE_HIDDEN
| FILE_SYSTEM
| FILE_DIRECTORY
,
2261 &ep
, sizeof(ep
), /* Structure to Receive Directory Entry */
2262 &srchcnt
, /* Max and Actual Count of Entries Per Iteration */
2263 FIL_STANDARD
); /* Format of Entry (EAs or Not) */
2265 if (rc
!= NO_ERROR
) {
2267 return posix_error_with_filename(name
);
2270 if (srchcnt
> 0) { /* If Directory is NOT Totally Empty, */
2272 if (ep
.achName
[0] == '.'
2273 && (ep
.achName
[1] == '\0' || (ep
.achName
[1] == '.' && ep
.achName
[2] == '\0')))
2274 continue; /* Skip Over "." and ".." Names */
2276 strcpy(namebuf
, ep
.achName
);
2278 /* Leave Case of Name Alone -- In Native Form */
2279 /* (Removed Forced Lowercasing Code) */
2281 v
= PyString_FromString(namebuf
);
2287 if (PyList_Append(d
, v
) != 0) {
2294 } while (DosFindNext(hdir
, &ep
, sizeof(ep
), &srchcnt
) == NO_ERROR
&& srchcnt
> 0);
2304 int arg_is_unicode
= 1;
2307 if (!PyArg_ParseTuple(args
, "U:listdir", &v
)) {
2311 if (!PyArg_ParseTuple(args
, "et:listdir", Py_FileSystemDefaultEncoding
, &name
))
2313 if ((dirp
= opendir(name
)) == NULL
) {
2314 return posix_error_with_allocated_filename(name
);
2316 if ((d
= PyList_New(0)) == NULL
) {
2323 Py_BEGIN_ALLOW_THREADS
2325 Py_END_ALLOW_THREADS
2332 return posix_error_with_allocated_filename(name
);
2335 if (ep
->d_name
[0] == '.' &&
2337 (ep
->d_name
[1] == '.' && NAMLEN(ep
) == 2)))
2339 v
= PyString_FromStringAndSize(ep
->d_name
, NAMLEN(ep
));
2345 #ifdef Py_USING_UNICODE
2346 if (arg_is_unicode
) {
2349 w
= PyUnicode_FromEncodedObject(v
,
2350 Py_FileSystemDefaultEncoding
,
2357 /* fall back to the original byte string, as
2358 discussed in patch #683592 */
2363 if (PyList_Append(d
, v
) != 0) {
2376 #endif /* which OS */
2377 } /* end of posix_listdir */
2380 /* A helper function for abspath on win32 */
2382 posix__getfullpathname(PyObject
*self
, PyObject
*args
)
2384 /* assume encoded strings won't more than double no of chars */
2385 char inbuf
[MAX_PATH
*2];
2386 char *inbufp
= inbuf
;
2387 Py_ssize_t insize
= sizeof(inbuf
);
2388 char outbuf
[MAX_PATH
*2];
2391 PyUnicodeObject
*po
;
2392 if (PyArg_ParseTuple(args
, "U|:_getfullpathname", &po
)) {
2393 Py_UNICODE
*wpath
= PyUnicode_AS_UNICODE(po
);
2394 Py_UNICODE woutbuf
[MAX_PATH
*2], *woutbufp
= woutbuf
;
2398 result
= GetFullPathNameW(wpath
,
2399 sizeof(woutbuf
)/sizeof(woutbuf
[0]),
2401 if (result
> sizeof(woutbuf
)/sizeof(woutbuf
[0])) {
2402 woutbufp
= malloc(result
* sizeof(Py_UNICODE
));
2404 return PyErr_NoMemory();
2405 result
= GetFullPathNameW(wpath
, result
, woutbufp
, &wtemp
);
2408 v
= PyUnicode_FromUnicode(woutbufp
, wcslen(woutbufp
));
2410 v
= win32_error_unicode("GetFullPathNameW", wpath
);
2411 if (woutbufp
!= woutbuf
)
2415 /* Drop the argument parsing error as narrow strings
2419 if (!PyArg_ParseTuple (args
, "et#:_getfullpathname",
2420 Py_FileSystemDefaultEncoding
, &inbufp
,
2423 if (!GetFullPathName(inbuf
, sizeof(outbuf
)/sizeof(outbuf
[0]),
2425 return win32_error("GetFullPathName", inbuf
);
2426 if (PyUnicode_Check(PyTuple_GetItem(args
, 0))) {
2427 return PyUnicode_Decode(outbuf
, strlen(outbuf
),
2428 Py_FileSystemDefaultEncoding
, NULL
);
2430 return PyString_FromString(outbuf
);
2431 } /* end of posix__getfullpathname */
2432 #endif /* MS_WINDOWS */
2434 PyDoc_STRVAR(posix_mkdir__doc__
,
2435 "mkdir(path [, mode=0777])\n\n\
2436 Create a directory.");
2439 posix_mkdir(PyObject
*self
, PyObject
*args
)
2446 PyUnicodeObject
*po
;
2447 if (PyArg_ParseTuple(args
, "U|i:mkdir", &po
, &mode
)) {
2448 Py_BEGIN_ALLOW_THREADS
2449 /* PyUnicode_AS_UNICODE OK without thread lock as
2450 it is a simple dereference. */
2451 res
= CreateDirectoryW(PyUnicode_AS_UNICODE(po
), NULL
);
2452 Py_END_ALLOW_THREADS
2454 return win32_error_unicode("mkdir", PyUnicode_AS_UNICODE(po
));
2458 /* Drop the argument parsing error as narrow strings
2461 if (!PyArg_ParseTuple(args
, "et|i:mkdir",
2462 Py_FileSystemDefaultEncoding
, &path
, &mode
))
2464 Py_BEGIN_ALLOW_THREADS
2465 /* PyUnicode_AS_UNICODE OK without thread lock as
2466 it is a simple dereference. */
2467 res
= CreateDirectoryA(path
, NULL
);
2468 Py_END_ALLOW_THREADS
2470 win32_error("mkdir", path
);
2477 #else /* MS_WINDOWS */
2479 if (!PyArg_ParseTuple(args
, "et|i:mkdir",
2480 Py_FileSystemDefaultEncoding
, &path
, &mode
))
2482 Py_BEGIN_ALLOW_THREADS
2483 #if ( defined(__WATCOMC__) || defined(PYCC_VACPP) ) && !defined(__QNX__)
2486 res
= mkdir(path
, mode
);
2488 Py_END_ALLOW_THREADS
2490 return posix_error_with_allocated_filename(path
);
2494 #endif /* MS_WINDOWS */
2498 /* sys/resource.h is needed for at least: wait3(), wait4(), broken nice. */
2499 #if defined(HAVE_SYS_RESOURCE_H)
2500 #include <sys/resource.h>
2505 PyDoc_STRVAR(posix_nice__doc__
,
2506 "nice(inc) -> new_priority\n\n\
2507 Decrease the priority of process by inc and return the new priority.");
2510 posix_nice(PyObject
*self
, PyObject
*args
)
2512 int increment
, value
;
2514 if (!PyArg_ParseTuple(args
, "i:nice", &increment
))
2517 /* There are two flavours of 'nice': one that returns the new
2518 priority (as required by almost all standards out there) and the
2519 Linux/FreeBSD/BSDI one, which returns '0' on success and advices
2520 the use of getpriority() to get the new priority.
2522 If we are of the nice family that returns the new priority, we
2523 need to clear errno before the call, and check if errno is filled
2524 before calling posix_error() on a returnvalue of -1, because the
2525 -1 may be the actual new priority! */
2528 value
= nice(increment
);
2529 #if defined(HAVE_BROKEN_NICE) && defined(HAVE_GETPRIORITY)
2531 value
= getpriority(PRIO_PROCESS
, 0);
2533 if (value
== -1 && errno
!= 0)
2534 /* either nice() or getpriority() returned an error */
2535 return posix_error();
2536 return PyInt_FromLong((long) value
);
2538 #endif /* HAVE_NICE */
2540 PyDoc_STRVAR(posix_rename__doc__
,
2541 "rename(old, new)\n\n\
2542 Rename a file or directory.");
2545 posix_rename(PyObject
*self
, PyObject
*args
)
2551 if (!PyArg_ParseTuple(args
, "OO:rename", &o1
, &o2
))
2553 if (!convert_to_unicode(&o1
))
2555 if (!convert_to_unicode(&o2
)) {
2559 Py_BEGIN_ALLOW_THREADS
2560 result
= MoveFileW(PyUnicode_AsUnicode(o1
),
2561 PyUnicode_AsUnicode(o2
));
2562 Py_END_ALLOW_THREADS
2566 return win32_error("rename", NULL
);
2571 if (!PyArg_ParseTuple(args
, "ss:rename", &p1
, &p2
))
2573 Py_BEGIN_ALLOW_THREADS
2574 result
= MoveFileA(p1
, p2
);
2575 Py_END_ALLOW_THREADS
2577 return win32_error("rename", NULL
);
2581 return posix_2str(args
, "etet:rename", rename
);
2586 PyDoc_STRVAR(posix_rmdir__doc__
,
2588 Remove a directory.");
2591 posix_rmdir(PyObject
*self
, PyObject
*args
)
2594 return win32_1str(args
, "rmdir", "s:rmdir", RemoveDirectoryA
, "U:rmdir", RemoveDirectoryW
);
2596 return posix_1str(args
, "et:rmdir", rmdir
);
2601 PyDoc_STRVAR(posix_stat__doc__
,
2602 "stat(path) -> stat result\n\n\
2603 Perform a stat system call on the given path.");
2606 posix_stat(PyObject
*self
, PyObject
*args
)
2609 return posix_do_stat(self
, args
, "et:stat", STAT
, "U:stat", win32_wstat
);
2611 return posix_do_stat(self
, args
, "et:stat", STAT
, NULL
, NULL
);
2617 PyDoc_STRVAR(posix_system__doc__
,
2618 "system(command) -> exit_status\n\n\
2619 Execute the command (a string) in a subshell.");
2622 posix_system(PyObject
*self
, PyObject
*args
)
2626 if (!PyArg_ParseTuple(args
, "s:system", &command
))
2628 Py_BEGIN_ALLOW_THREADS
2629 sts
= system(command
);
2630 Py_END_ALLOW_THREADS
2631 return PyInt_FromLong(sts
);
2636 PyDoc_STRVAR(posix_umask__doc__
,
2637 "umask(new_mask) -> old_mask\n\n\
2638 Set the current numeric umask and return the previous umask.");
2641 posix_umask(PyObject
*self
, PyObject
*args
)
2644 if (!PyArg_ParseTuple(args
, "i:umask", &i
))
2648 return posix_error();
2649 return PyInt_FromLong((long)i
);
2653 PyDoc_STRVAR(posix_unlink__doc__
,
2655 Remove a file (same as remove(path)).");
2657 PyDoc_STRVAR(posix_remove__doc__
,
2659 Remove a file (same as unlink(path)).");
2662 posix_unlink(PyObject
*self
, PyObject
*args
)
2665 return win32_1str(args
, "remove", "s:remove", DeleteFileA
, "U:remove", DeleteFileW
);
2667 return posix_1str(args
, "et:remove", unlink
);
2673 PyDoc_STRVAR(posix_uname__doc__
,
2674 "uname() -> (sysname, nodename, release, version, machine)\n\n\
2675 Return a tuple identifying the current operating system.");
2678 posix_uname(PyObject
*self
, PyObject
*noargs
)
2683 Py_BEGIN_ALLOW_THREADS
2685 Py_END_ALLOW_THREADS
2687 return posix_error();
2688 return Py_BuildValue("(sssss)",
2695 #endif /* HAVE_UNAME */
2698 extract_time(PyObject
*t
, long* sec
, long* usec
)
2701 if (PyFloat_Check(t
)) {
2702 double tval
= PyFloat_AsDouble(t
);
2703 PyObject
*intobj
= Py_TYPE(t
)->tp_as_number
->nb_int(t
);
2706 intval
= PyInt_AsLong(intobj
);
2708 if (intval
== -1 && PyErr_Occurred())
2711 *usec
= (long)((tval
- intval
) * 1e6
); /* can't exceed 1000000 */
2713 /* If rounding gave us a negative number,
2718 intval
= PyInt_AsLong(t
);
2719 if (intval
== -1 && PyErr_Occurred())
2726 PyDoc_STRVAR(posix_utime__doc__
,
2727 "utime(path, (atime, mtime))\n\
2728 utime(path, None)\n\n\
2729 Set the access and modified time of the file to the given values. If the\n\
2730 second form is used, set the access and modified times to the current time.");
2733 posix_utime(PyObject
*self
, PyObject
*args
)
2737 PyUnicodeObject
*obwpath
;
2738 wchar_t *wpath
= NULL
;
2741 long atimesec
, mtimesec
, ausec
, musec
;
2742 FILETIME atime
, mtime
;
2743 PyObject
*result
= NULL
;
2745 if (PyArg_ParseTuple(args
, "UO|:utime", &obwpath
, &arg
)) {
2746 wpath
= PyUnicode_AS_UNICODE(obwpath
);
2747 Py_BEGIN_ALLOW_THREADS
2748 hFile
= CreateFileW(wpath
, FILE_WRITE_ATTRIBUTES
, 0,
2749 NULL
, OPEN_EXISTING
,
2750 FILE_FLAG_BACKUP_SEMANTICS
, NULL
);
2751 Py_END_ALLOW_THREADS
2752 if (hFile
== INVALID_HANDLE_VALUE
)
2753 return win32_error_unicode("utime", wpath
);
2755 /* Drop the argument parsing error as narrow strings
2760 if (!PyArg_ParseTuple(args
, "etO:utime",
2761 Py_FileSystemDefaultEncoding
, &apath
, &arg
))
2763 Py_BEGIN_ALLOW_THREADS
2764 hFile
= CreateFileA(apath
, FILE_WRITE_ATTRIBUTES
, 0,
2765 NULL
, OPEN_EXISTING
,
2766 FILE_FLAG_BACKUP_SEMANTICS
, NULL
);
2767 Py_END_ALLOW_THREADS
2768 if (hFile
== INVALID_HANDLE_VALUE
) {
2769 win32_error("utime", apath
);
2776 if (arg
== Py_None
) {
2778 GetSystemTime(&now
);
2779 if (!SystemTimeToFileTime(&now
, &mtime
) ||
2780 !SystemTimeToFileTime(&now
, &atime
)) {
2781 win32_error("utime", NULL
);
2785 else if (!PyTuple_Check(arg
) || PyTuple_Size(arg
) != 2) {
2786 PyErr_SetString(PyExc_TypeError
,
2787 "utime() arg 2 must be a tuple (atime, mtime)");
2791 if (extract_time(PyTuple_GET_ITEM(arg
, 0),
2792 &atimesec
, &ausec
) == -1)
2794 time_t_to_FILE_TIME(atimesec
, 1000*ausec
, &atime
);
2795 if (extract_time(PyTuple_GET_ITEM(arg
, 1),
2796 &mtimesec
, &musec
) == -1)
2798 time_t_to_FILE_TIME(mtimesec
, 1000*musec
, &mtime
);
2800 if (!SetFileTime(hFile
, NULL
, &atime
, &mtime
)) {
2801 /* Avoid putting the file name into the error here,
2802 as that may confuse the user into believing that
2803 something is wrong with the file, when it also
2804 could be the time stamp that gives a problem. */
2805 win32_error("utime", NULL
);
2812 #else /* MS_WINDOWS */
2815 long atime
, mtime
, ausec
, musec
;
2819 #if defined(HAVE_UTIMES)
2820 struct timeval buf
[2];
2821 #define ATIME buf[0].tv_sec
2822 #define MTIME buf[1].tv_sec
2823 #elif defined(HAVE_UTIME_H)
2824 /* XXX should define struct utimbuf instead, above */
2826 #define ATIME buf.actime
2827 #define MTIME buf.modtime
2828 #define UTIME_ARG &buf
2829 #else /* HAVE_UTIMES */
2831 #define ATIME buf[0]
2832 #define MTIME buf[1]
2833 #define UTIME_ARG buf
2834 #endif /* HAVE_UTIMES */
2837 if (!PyArg_ParseTuple(args
, "etO:utime",
2838 Py_FileSystemDefaultEncoding
, &path
, &arg
))
2840 if (arg
== Py_None
) {
2841 /* optional time values not given */
2842 Py_BEGIN_ALLOW_THREADS
2843 res
= utime(path
, NULL
);
2844 Py_END_ALLOW_THREADS
2846 else if (!PyTuple_Check(arg
) || PyTuple_Size(arg
) != 2) {
2847 PyErr_SetString(PyExc_TypeError
,
2848 "utime() arg 2 must be a tuple (atime, mtime)");
2853 if (extract_time(PyTuple_GET_ITEM(arg
, 0),
2854 &atime
, &ausec
) == -1) {
2858 if (extract_time(PyTuple_GET_ITEM(arg
, 1),
2859 &mtime
, &musec
) == -1) {
2866 buf
[0].tv_usec
= ausec
;
2867 buf
[1].tv_usec
= musec
;
2868 Py_BEGIN_ALLOW_THREADS
2869 res
= utimes(path
, buf
);
2870 Py_END_ALLOW_THREADS
2872 Py_BEGIN_ALLOW_THREADS
2873 res
= utime(path
, UTIME_ARG
);
2874 Py_END_ALLOW_THREADS
2875 #endif /* HAVE_UTIMES */
2878 return posix_error_with_allocated_filename(path
);
2886 #endif /* MS_WINDOWS */
2890 /* Process operations */
2892 PyDoc_STRVAR(posix__exit__doc__
,
2894 Exit to the system with specified status, without normal exit processing.");
2897 posix__exit(PyObject
*self
, PyObject
*args
)
2900 if (!PyArg_ParseTuple(args
, "i:_exit", &sts
))
2903 return NULL
; /* Make gcc -Wall happy */
2906 #if defined(HAVE_EXECV) || defined(HAVE_SPAWNV)
2908 free_string_array(char **array
, Py_ssize_t count
)
2911 for (i
= 0; i
< count
; i
++)
2912 PyMem_Free(array
[i
]);
2919 PyDoc_STRVAR(posix_execv__doc__
,
2920 "execv(path, args)\n\n\
2921 Execute an executable path with arguments, replacing current process.\n\
2923 path: path of executable file\n\
2924 args: tuple or list of strings");
2927 posix_execv(PyObject
*self
, PyObject
*args
)
2933 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
2935 /* execv has two arguments: (path, argv), where
2936 argv is a list or tuple of strings. */
2938 if (!PyArg_ParseTuple(args
, "etO:execv",
2939 Py_FileSystemDefaultEncoding
,
2942 if (PyList_Check(argv
)) {
2943 argc
= PyList_Size(argv
);
2944 getitem
= PyList_GetItem
;
2946 else if (PyTuple_Check(argv
)) {
2947 argc
= PyTuple_Size(argv
);
2948 getitem
= PyTuple_GetItem
;
2951 PyErr_SetString(PyExc_TypeError
, "execv() arg 2 must be a tuple or list");
2956 argvlist
= PyMem_NEW(char *, argc
+1);
2957 if (argvlist
== NULL
) {
2959 return PyErr_NoMemory();
2961 for (i
= 0; i
< argc
; i
++) {
2962 if (!PyArg_Parse((*getitem
)(argv
, i
), "et",
2963 Py_FileSystemDefaultEncoding
,
2965 free_string_array(argvlist
, i
);
2966 PyErr_SetString(PyExc_TypeError
,
2967 "execv() arg 2 must contain only strings");
2973 argvlist
[argc
] = NULL
;
2975 execv(path
, argvlist
);
2977 /* If we get here it's definitely an error */
2979 free_string_array(argvlist
, argc
);
2981 return posix_error();
2985 PyDoc_STRVAR(posix_execve__doc__
,
2986 "execve(path, args, env)\n\n\
2987 Execute a path with arguments and environment, replacing current process.\n\
2989 path: path of executable file\n\
2990 args: tuple or list of arguments\n\
2991 env: dictionary of strings mapping to strings");
2994 posix_execve(PyObject
*self
, PyObject
*args
)
2997 PyObject
*argv
, *env
;
3000 PyObject
*key
, *val
, *keys
=NULL
, *vals
=NULL
;
3001 Py_ssize_t i
, pos
, argc
, envc
;
3002 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
3003 Py_ssize_t lastarg
= 0;
3005 /* execve has three arguments: (path, argv, env), where
3006 argv is a list or tuple of strings and env is a dictionary
3007 like posix.environ. */
3009 if (!PyArg_ParseTuple(args
, "etOO:execve",
3010 Py_FileSystemDefaultEncoding
,
3011 &path
, &argv
, &env
))
3013 if (PyList_Check(argv
)) {
3014 argc
= PyList_Size(argv
);
3015 getitem
= PyList_GetItem
;
3017 else if (PyTuple_Check(argv
)) {
3018 argc
= PyTuple_Size(argv
);
3019 getitem
= PyTuple_GetItem
;
3022 PyErr_SetString(PyExc_TypeError
,
3023 "execve() arg 2 must be a tuple or list");
3026 if (!PyMapping_Check(env
)) {
3027 PyErr_SetString(PyExc_TypeError
,
3028 "execve() arg 3 must be a mapping object");
3032 argvlist
= PyMem_NEW(char *, argc
+1);
3033 if (argvlist
== NULL
) {
3037 for (i
= 0; i
< argc
; i
++) {
3038 if (!PyArg_Parse((*getitem
)(argv
, i
),
3039 "et;execve() arg 2 must contain only strings",
3040 Py_FileSystemDefaultEncoding
,
3048 argvlist
[argc
] = NULL
;
3050 i
= PyMapping_Size(env
);
3053 envlist
= PyMem_NEW(char *, i
+ 1);
3054 if (envlist
== NULL
) {
3059 keys
= PyMapping_Keys(env
);
3060 vals
= PyMapping_Values(env
);
3063 if (!PyList_Check(keys
) || !PyList_Check(vals
)) {
3064 PyErr_SetString(PyExc_TypeError
,
3065 "execve(): env.keys() or env.values() is not a list");
3069 for (pos
= 0; pos
< i
; pos
++) {
3073 key
= PyList_GetItem(keys
, pos
);
3074 val
= PyList_GetItem(vals
, pos
);
3080 "s;execve() arg 3 contains a non-string key",
3084 "s;execve() arg 3 contains a non-string value",
3090 #if defined(PYOS_OS2)
3091 /* Omit Pseudo-Env Vars that Would Confuse Programs if Passed On */
3092 if (stricmp(k
, "BEGINLIBPATH") != 0 && stricmp(k
, "ENDLIBPATH") != 0) {
3094 len
= PyString_Size(key
) + PyString_Size(val
) + 2;
3095 p
= PyMem_NEW(char, len
);
3100 PyOS_snprintf(p
, len
, "%s=%s", k
, v
);
3101 envlist
[envc
++] = p
;
3102 #if defined(PYOS_OS2)
3108 execve(path
, argvlist
, envlist
);
3110 /* If we get here it's definitely an error */
3112 (void) posix_error();
3116 PyMem_DEL(envlist
[envc
]);
3119 free_string_array(argvlist
, lastarg
);
3126 #endif /* HAVE_EXECV */
3130 PyDoc_STRVAR(posix_spawnv__doc__
,
3131 "spawnv(mode, path, args)\n\n\
3132 Execute the program 'path' in a new process.\n\
3134 mode: mode of process creation\n\
3135 path: path of executable file\n\
3136 args: tuple or list of strings");
3139 posix_spawnv(PyObject
*self
, PyObject
*args
)
3146 Py_intptr_t spawnval
;
3147 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
3149 /* spawnv has three arguments: (mode, path, argv), where
3150 argv is a list or tuple of strings. */
3152 if (!PyArg_ParseTuple(args
, "ietO:spawnv", &mode
,
3153 Py_FileSystemDefaultEncoding
,
3156 if (PyList_Check(argv
)) {
3157 argc
= PyList_Size(argv
);
3158 getitem
= PyList_GetItem
;
3160 else if (PyTuple_Check(argv
)) {
3161 argc
= PyTuple_Size(argv
);
3162 getitem
= PyTuple_GetItem
;
3165 PyErr_SetString(PyExc_TypeError
,
3166 "spawnv() arg 2 must be a tuple or list");
3171 argvlist
= PyMem_NEW(char *, argc
+1);
3172 if (argvlist
== NULL
) {
3174 return PyErr_NoMemory();
3176 for (i
= 0; i
< argc
; i
++) {
3177 if (!PyArg_Parse((*getitem
)(argv
, i
), "et",
3178 Py_FileSystemDefaultEncoding
,
3180 free_string_array(argvlist
, i
);
3183 "spawnv() arg 2 must contain only strings");
3188 argvlist
[argc
] = NULL
;
3190 #if defined(PYOS_OS2) && defined(PYCC_GCC)
3191 Py_BEGIN_ALLOW_THREADS
3192 spawnval
= spawnv(mode
, path
, argvlist
);
3193 Py_END_ALLOW_THREADS
3195 if (mode
== _OLD_P_OVERLAY
)
3198 Py_BEGIN_ALLOW_THREADS
3199 spawnval
= _spawnv(mode
, path
, argvlist
);
3200 Py_END_ALLOW_THREADS
3203 free_string_array(argvlist
, argc
);
3207 return posix_error();
3209 #if SIZEOF_LONG == SIZEOF_VOID_P
3210 return Py_BuildValue("l", (long) spawnval
);
3212 return Py_BuildValue("L", (PY_LONG_LONG
) spawnval
);
3217 PyDoc_STRVAR(posix_spawnve__doc__
,
3218 "spawnve(mode, path, args, env)\n\n\
3219 Execute the program 'path' in a new process.\n\
3221 mode: mode of process creation\n\
3222 path: path of executable file\n\
3223 args: tuple or list of arguments\n\
3224 env: dictionary of strings mapping to strings");
3227 posix_spawnve(PyObject
*self
, PyObject
*args
)
3230 PyObject
*argv
, *env
;
3233 PyObject
*key
, *val
, *keys
=NULL
, *vals
=NULL
, *res
=NULL
;
3234 int mode
, pos
, envc
;
3236 Py_intptr_t spawnval
;
3237 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
3238 Py_ssize_t lastarg
= 0;
3240 /* spawnve has four arguments: (mode, path, argv, env), where
3241 argv is a list or tuple of strings and env is a dictionary
3242 like posix.environ. */
3244 if (!PyArg_ParseTuple(args
, "ietOO:spawnve", &mode
,
3245 Py_FileSystemDefaultEncoding
,
3246 &path
, &argv
, &env
))
3248 if (PyList_Check(argv
)) {
3249 argc
= PyList_Size(argv
);
3250 getitem
= PyList_GetItem
;
3252 else if (PyTuple_Check(argv
)) {
3253 argc
= PyTuple_Size(argv
);
3254 getitem
= PyTuple_GetItem
;
3257 PyErr_SetString(PyExc_TypeError
,
3258 "spawnve() arg 2 must be a tuple or list");
3261 if (!PyMapping_Check(env
)) {
3262 PyErr_SetString(PyExc_TypeError
,
3263 "spawnve() arg 3 must be a mapping object");
3267 argvlist
= PyMem_NEW(char *, argc
+1);
3268 if (argvlist
== NULL
) {
3272 for (i
= 0; i
< argc
; i
++) {
3273 if (!PyArg_Parse((*getitem
)(argv
, i
),
3274 "et;spawnve() arg 2 must contain only strings",
3275 Py_FileSystemDefaultEncoding
,
3283 argvlist
[argc
] = NULL
;
3285 i
= PyMapping_Size(env
);
3288 envlist
= PyMem_NEW(char *, i
+ 1);
3289 if (envlist
== NULL
) {
3294 keys
= PyMapping_Keys(env
);
3295 vals
= PyMapping_Values(env
);
3298 if (!PyList_Check(keys
) || !PyList_Check(vals
)) {
3299 PyErr_SetString(PyExc_TypeError
,
3300 "spawnve(): env.keys() or env.values() is not a list");
3304 for (pos
= 0; pos
< i
; pos
++) {
3308 key
= PyList_GetItem(keys
, pos
);
3309 val
= PyList_GetItem(vals
, pos
);
3315 "s;spawnve() arg 3 contains a non-string key",
3319 "s;spawnve() arg 3 contains a non-string value",
3324 len
= PyString_Size(key
) + PyString_Size(val
) + 2;
3325 p
= PyMem_NEW(char, len
);
3330 PyOS_snprintf(p
, len
, "%s=%s", k
, v
);
3331 envlist
[envc
++] = p
;
3335 #if defined(PYOS_OS2) && defined(PYCC_GCC)
3336 Py_BEGIN_ALLOW_THREADS
3337 spawnval
= spawnve(mode
, path
, argvlist
, envlist
);
3338 Py_END_ALLOW_THREADS
3340 if (mode
== _OLD_P_OVERLAY
)
3343 Py_BEGIN_ALLOW_THREADS
3344 spawnval
= _spawnve(mode
, path
, argvlist
, envlist
);
3345 Py_END_ALLOW_THREADS
3349 (void) posix_error();
3351 #if SIZEOF_LONG == SIZEOF_VOID_P
3352 res
= Py_BuildValue("l", (long) spawnval
);
3354 res
= Py_BuildValue("L", (PY_LONG_LONG
) spawnval
);
3359 PyMem_DEL(envlist
[envc
]);
3362 free_string_array(argvlist
, lastarg
);
3370 /* OS/2 supports spawnvp & spawnvpe natively */
3371 #if defined(PYOS_OS2)
3372 PyDoc_STRVAR(posix_spawnvp__doc__
,
3373 "spawnvp(mode, file, args)\n\n\
3374 Execute the program 'file' in a new process, using the environment\n\
3375 search path to find the file.\n\
3377 mode: mode of process creation\n\
3378 file: executable file name\n\
3379 args: tuple or list of strings");
3382 posix_spawnvp(PyObject
*self
, PyObject
*args
)
3388 Py_intptr_t spawnval
;
3389 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
3391 /* spawnvp has three arguments: (mode, path, argv), where
3392 argv is a list or tuple of strings. */
3394 if (!PyArg_ParseTuple(args
, "ietO:spawnvp", &mode
,
3395 Py_FileSystemDefaultEncoding
,
3398 if (PyList_Check(argv
)) {
3399 argc
= PyList_Size(argv
);
3400 getitem
= PyList_GetItem
;
3402 else if (PyTuple_Check(argv
)) {
3403 argc
= PyTuple_Size(argv
);
3404 getitem
= PyTuple_GetItem
;
3407 PyErr_SetString(PyExc_TypeError
,
3408 "spawnvp() arg 2 must be a tuple or list");
3413 argvlist
= PyMem_NEW(char *, argc
+1);
3414 if (argvlist
== NULL
) {
3416 return PyErr_NoMemory();
3418 for (i
= 0; i
< argc
; i
++) {
3419 if (!PyArg_Parse((*getitem
)(argv
, i
), "et",
3420 Py_FileSystemDefaultEncoding
,
3422 free_string_array(argvlist
, i
);
3425 "spawnvp() arg 2 must contain only strings");
3430 argvlist
[argc
] = NULL
;
3432 Py_BEGIN_ALLOW_THREADS
3433 #if defined(PYCC_GCC)
3434 spawnval
= spawnvp(mode
, path
, argvlist
);
3436 spawnval
= _spawnvp(mode
, path
, argvlist
);
3438 Py_END_ALLOW_THREADS
3440 free_string_array(argvlist
, argc
);
3444 return posix_error();
3446 return Py_BuildValue("l", (long) spawnval
);
3450 PyDoc_STRVAR(posix_spawnvpe__doc__
,
3451 "spawnvpe(mode, file, args, env)\n\n\
3452 Execute the program 'file' in a new process, using the environment\n\
3453 search path to find the file.\n\
3455 mode: mode of process creation\n\
3456 file: executable file name\n\
3457 args: tuple or list of arguments\n\
3458 env: dictionary of strings mapping to strings");
3461 posix_spawnvpe(PyObject
*self
, PyObject
*args
)
3464 PyObject
*argv
, *env
;
3467 PyObject
*key
, *val
, *keys
=NULL
, *vals
=NULL
, *res
=NULL
;
3468 int mode
, i
, pos
, argc
, envc
;
3469 Py_intptr_t spawnval
;
3470 PyObject
*(*getitem
)(PyObject
*, Py_ssize_t
);
3473 /* spawnvpe has four arguments: (mode, path, argv, env), where
3474 argv is a list or tuple of strings and env is a dictionary
3475 like posix.environ. */
3477 if (!PyArg_ParseTuple(args
, "ietOO:spawnvpe", &mode
,
3478 Py_FileSystemDefaultEncoding
,
3479 &path
, &argv
, &env
))
3481 if (PyList_Check(argv
)) {
3482 argc
= PyList_Size(argv
);
3483 getitem
= PyList_GetItem
;
3485 else if (PyTuple_Check(argv
)) {
3486 argc
= PyTuple_Size(argv
);
3487 getitem
= PyTuple_GetItem
;
3490 PyErr_SetString(PyExc_TypeError
,
3491 "spawnvpe() arg 2 must be a tuple or list");
3494 if (!PyMapping_Check(env
)) {
3495 PyErr_SetString(PyExc_TypeError
,
3496 "spawnvpe() arg 3 must be a mapping object");
3500 argvlist
= PyMem_NEW(char *, argc
+1);
3501 if (argvlist
== NULL
) {
3505 for (i
= 0; i
< argc
; i
++) {
3506 if (!PyArg_Parse((*getitem
)(argv
, i
),
3507 "et;spawnvpe() arg 2 must contain only strings",
3508 Py_FileSystemDefaultEncoding
,
3516 argvlist
[argc
] = NULL
;
3518 i
= PyMapping_Size(env
);
3521 envlist
= PyMem_NEW(char *, i
+ 1);
3522 if (envlist
== NULL
) {
3527 keys
= PyMapping_Keys(env
);
3528 vals
= PyMapping_Values(env
);
3531 if (!PyList_Check(keys
) || !PyList_Check(vals
)) {
3532 PyErr_SetString(PyExc_TypeError
,
3533 "spawnvpe(): env.keys() or env.values() is not a list");
3537 for (pos
= 0; pos
< i
; pos
++) {
3541 key
= PyList_GetItem(keys
, pos
);
3542 val
= PyList_GetItem(vals
, pos
);
3548 "s;spawnvpe() arg 3 contains a non-string key",
3552 "s;spawnvpe() arg 3 contains a non-string value",
3557 len
= PyString_Size(key
) + PyString_Size(val
) + 2;
3558 p
= PyMem_NEW(char, len
);
3563 PyOS_snprintf(p
, len
, "%s=%s", k
, v
);
3564 envlist
[envc
++] = p
;
3568 Py_BEGIN_ALLOW_THREADS
3569 #if defined(PYCC_GCC)
3570 spawnval
= spawnvpe(mode
, path
, argvlist
, envlist
);
3572 spawnval
= _spawnvpe(mode
, path
, argvlist
, envlist
);
3574 Py_END_ALLOW_THREADS
3577 (void) posix_error();
3579 res
= Py_BuildValue("l", (long) spawnval
);
3583 PyMem_DEL(envlist
[envc
]);
3586 free_string_array(argvlist
, lastarg
);
3593 #endif /* PYOS_OS2 */
3594 #endif /* HAVE_SPAWNV */
3598 PyDoc_STRVAR(posix_fork1__doc__
,
3599 "fork1() -> pid\n\n\
3600 Fork a child process with a single multiplexed (i.e., not bound) thread.\n\
3602 Return 0 to child process and PID of child to parent process.");
3605 posix_fork1(PyObject
*self
, PyObject
*noargs
)
3609 _PyImport_AcquireLock();
3611 result
= _PyImport_ReleaseLock();
3613 return posix_error();
3617 /* Don't clobber the OSError if the fork failed. */
3618 PyErr_SetString(PyExc_RuntimeError
,
3619 "not holding the import lock");
3622 return PyLong_FromPid(pid
);
3628 PyDoc_STRVAR(posix_fork__doc__
,
3630 Fork a child process.\n\
3631 Return 0 to child process and PID of child to parent process.");
3634 posix_fork(PyObject
*self
, PyObject
*noargs
)
3638 _PyImport_AcquireLock();
3640 result
= _PyImport_ReleaseLock();
3642 return posix_error();
3646 /* Don't clobber the OSError if the fork failed. */
3647 PyErr_SetString(PyExc_RuntimeError
,
3648 "not holding the import lock");
3651 return PyLong_FromPid(pid
);
3655 /* AIX uses /dev/ptc but is otherwise the same as /dev/ptmx */
3656 /* IRIX has both /dev/ptc and /dev/ptmx, use ptmx */
3657 #if defined(HAVE_DEV_PTC) && !defined(HAVE_DEV_PTMX)
3658 #define DEV_PTY_FILE "/dev/ptc"
3659 #define HAVE_DEV_PTMX
3661 #define DEV_PTY_FILE "/dev/ptmx"
3664 #if defined(HAVE_OPENPTY) || defined(HAVE_FORKPTY) || defined(HAVE_DEV_PTMX)
3668 #ifdef HAVE_LIBUTIL_H
3669 #include <libutil.h>
3670 #endif /* HAVE_LIBUTIL_H */
3671 #endif /* HAVE_PTY_H */
3672 #ifdef HAVE_STROPTS_H
3673 #include <stropts.h>
3675 #endif /* defined(HAVE_OPENPTY) || defined(HAVE_FORKPTY) || defined(HAVE_DEV_PTMX */
3677 #if defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX)
3678 PyDoc_STRVAR(posix_openpty__doc__
,
3679 "openpty() -> (master_fd, slave_fd)\n\n\
3680 Open a pseudo-terminal, returning open fd's for both master and slave end.\n");
3683 posix_openpty(PyObject
*self
, PyObject
*noargs
)
3685 int master_fd
, slave_fd
;
3686 #ifndef HAVE_OPENPTY
3689 #if defined(HAVE_DEV_PTMX) && !defined(HAVE_OPENPTY) && !defined(HAVE__GETPTY)
3690 PyOS_sighandler_t sig_saved
;
3692 extern char *ptsname(int fildes
);
3697 if (openpty(&master_fd
, &slave_fd
, NULL
, NULL
, NULL
) != 0)
3698 return posix_error();
3699 #elif defined(HAVE__GETPTY)
3700 slave_name
= _getpty(&master_fd
, O_RDWR
, 0666, 0);
3701 if (slave_name
== NULL
)
3702 return posix_error();
3704 slave_fd
= open(slave_name
, O_RDWR
);
3706 return posix_error();
3708 master_fd
= open(DEV_PTY_FILE
, O_RDWR
| O_NOCTTY
); /* open master */
3710 return posix_error();
3711 sig_saved
= PyOS_setsig(SIGCHLD
, SIG_DFL
);
3712 /* change permission of slave */
3713 if (grantpt(master_fd
) < 0) {
3714 PyOS_setsig(SIGCHLD
, sig_saved
);
3715 return posix_error();
3718 if (unlockpt(master_fd
) < 0) {
3719 PyOS_setsig(SIGCHLD
, sig_saved
);
3720 return posix_error();
3722 PyOS_setsig(SIGCHLD
, sig_saved
);
3723 slave_name
= ptsname(master_fd
); /* get name of slave */
3724 if (slave_name
== NULL
)
3725 return posix_error();
3726 slave_fd
= open(slave_name
, O_RDWR
| O_NOCTTY
); /* open slave */
3728 return posix_error();
3729 #if !defined(__CYGWIN__) && !defined(HAVE_DEV_PTC)
3730 ioctl(slave_fd
, I_PUSH
, "ptem"); /* push ptem */
3731 ioctl(slave_fd
, I_PUSH
, "ldterm"); /* push ldterm */
3733 ioctl(slave_fd
, I_PUSH
, "ttcompat"); /* push ttcompat */
3735 #endif /* HAVE_CYGWIN */
3736 #endif /* HAVE_OPENPTY */
3738 return Py_BuildValue("(ii)", master_fd
, slave_fd
);
3741 #endif /* defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX) */
3744 PyDoc_STRVAR(posix_forkpty__doc__
,
3745 "forkpty() -> (pid, master_fd)\n\n\
3746 Fork a new process with a new pseudo-terminal as controlling tty.\n\n\
3747 Like fork(), return 0 as pid to child process, and PID of child to parent.\n\
3748 To both, return fd of newly opened pseudo-terminal.\n");
3751 posix_forkpty(PyObject
*self
, PyObject
*noargs
)
3753 int master_fd
= -1, result
;
3756 _PyImport_AcquireLock();
3757 pid
= forkpty(&master_fd
, NULL
, NULL
, NULL
);
3758 result
= _PyImport_ReleaseLock();
3760 return posix_error();
3764 /* Don't clobber the OSError if the fork failed. */
3765 PyErr_SetString(PyExc_RuntimeError
,
3766 "not holding the import lock");
3769 return Py_BuildValue("(Ni)", PyLong_FromPid(pid
), master_fd
);
3774 PyDoc_STRVAR(posix_getegid__doc__
,
3775 "getegid() -> egid\n\n\
3776 Return the current process's effective group id.");
3779 posix_getegid(PyObject
*self
, PyObject
*noargs
)
3781 return PyInt_FromLong((long)getegid());
3787 PyDoc_STRVAR(posix_geteuid__doc__
,
3788 "geteuid() -> euid\n\n\
3789 Return the current process's effective user id.");
3792 posix_geteuid(PyObject
*self
, PyObject
*noargs
)
3794 return PyInt_FromLong((long)geteuid());
3800 PyDoc_STRVAR(posix_getgid__doc__
,
3801 "getgid() -> gid\n\n\
3802 Return the current process's group id.");
3805 posix_getgid(PyObject
*self
, PyObject
*noargs
)
3807 return PyInt_FromLong((long)getgid());
3812 PyDoc_STRVAR(posix_getpid__doc__
,
3813 "getpid() -> pid\n\n\
3814 Return the current process id");
3817 posix_getpid(PyObject
*self
, PyObject
*noargs
)
3819 return PyLong_FromPid(getpid());
3823 #ifdef HAVE_GETGROUPS
3824 PyDoc_STRVAR(posix_getgroups__doc__
,
3825 "getgroups() -> list of group IDs\n\n\
3826 Return list of supplemental group IDs for the process.");
3829 posix_getgroups(PyObject
*self
, PyObject
*noargs
)
3831 PyObject
*result
= NULL
;
3834 #define MAX_GROUPS NGROUPS_MAX
3836 /* defined to be 16 on Solaris7, so this should be a small number */
3837 #define MAX_GROUPS 64
3839 gid_t grouplist
[MAX_GROUPS
];
3842 n
= getgroups(MAX_GROUPS
, grouplist
);
3846 result
= PyList_New(n
);
3847 if (result
!= NULL
) {
3849 for (i
= 0; i
< n
; ++i
) {
3850 PyObject
*o
= PyInt_FromLong((long)grouplist
[i
]);
3856 PyList_SET_ITEM(result
, i
, o
);
3865 #ifdef HAVE_INITGROUPS
3866 PyDoc_STRVAR(posix_initgroups__doc__
,
3867 "initgroups(username, gid) -> None\n\n\
3868 Call the system initgroups() to initialize the group access list with all of\n\
3869 the groups of which the specified username is a member, plus the specified\n\
3873 posix_initgroups(PyObject
*self
, PyObject
*args
)
3878 if (!PyArg_ParseTuple(args
, "sl:initgroups", &username
, &gid
))
3881 if (initgroups(username
, (gid_t
) gid
) == -1)
3882 return PyErr_SetFromErrno(PyExc_OSError
);
3890 PyDoc_STRVAR(posix_getpgid__doc__
,
3891 "getpgid(pid) -> pgid\n\n\
3892 Call the system call getpgid().");
3895 posix_getpgid(PyObject
*self
, PyObject
*args
)
3898 if (!PyArg_ParseTuple(args
, PARSE_PID
":getpgid", &pid
))
3900 pgid
= getpgid(pid
);
3902 return posix_error();
3903 return PyLong_FromPid(pgid
);
3905 #endif /* HAVE_GETPGID */
3909 PyDoc_STRVAR(posix_getpgrp__doc__
,
3910 "getpgrp() -> pgrp\n\n\
3911 Return the current process group id.");
3914 posix_getpgrp(PyObject
*self
, PyObject
*noargs
)
3916 #ifdef GETPGRP_HAVE_ARG
3917 return PyLong_FromPid(getpgrp(0));
3918 #else /* GETPGRP_HAVE_ARG */
3919 return PyLong_FromPid(getpgrp());
3920 #endif /* GETPGRP_HAVE_ARG */
3922 #endif /* HAVE_GETPGRP */
3926 PyDoc_STRVAR(posix_setpgrp__doc__
,
3928 Make this process a session leader.");
3931 posix_setpgrp(PyObject
*self
, PyObject
*noargs
)
3933 #ifdef SETPGRP_HAVE_ARG
3934 if (setpgrp(0, 0) < 0)
3935 #else /* SETPGRP_HAVE_ARG */
3937 #endif /* SETPGRP_HAVE_ARG */
3938 return posix_error();
3943 #endif /* HAVE_SETPGRP */
3946 PyDoc_STRVAR(posix_getppid__doc__
,
3947 "getppid() -> ppid\n\n\
3948 Return the parent's process id.");
3951 posix_getppid(PyObject
*self
, PyObject
*noargs
)
3953 return PyLong_FromPid(getppid());
3958 #ifdef HAVE_GETLOGIN
3959 PyDoc_STRVAR(posix_getlogin__doc__
,
3960 "getlogin() -> string\n\n\
3961 Return the actual login name.");
3964 posix_getlogin(PyObject
*self
, PyObject
*noargs
)
3966 PyObject
*result
= NULL
;
3968 int old_errno
= errno
;
3976 PyErr_SetString(PyExc_OSError
,
3977 "unable to determine login name");
3980 result
= PyString_FromString(name
);
3988 PyDoc_STRVAR(posix_getuid__doc__
,
3989 "getuid() -> uid\n\n\
3990 Return the current process's user id.");
3993 posix_getuid(PyObject
*self
, PyObject
*noargs
)
3995 return PyInt_FromLong((long)getuid());
4001 PyDoc_STRVAR(posix_kill__doc__
,
4002 "kill(pid, sig)\n\n\
4003 Kill a process with a signal.");
4006 posix_kill(PyObject
*self
, PyObject
*args
)
4010 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:kill", &pid
, &sig
))
4012 #if defined(PYOS_OS2) && !defined(PYCC_GCC)
4013 if (sig
== XCPT_SIGNAL_INTR
|| sig
== XCPT_SIGNAL_BREAK
) {
4015 if ((rc
= DosSendSignalException(pid
, sig
)) != NO_ERROR
)
4016 return os2_error(rc
);
4018 } else if (sig
== XCPT_SIGNAL_KILLPROC
) {
4020 if ((rc
= DosKillProcess(DKP_PROCESS
, pid
)) != NO_ERROR
)
4021 return os2_error(rc
);
4024 return NULL
; /* Unrecognized Signal Requested */
4026 if (kill(pid
, sig
) == -1)
4027 return posix_error();
4035 PyDoc_STRVAR(posix_killpg__doc__
,
4036 "killpg(pgid, sig)\n\n\
4037 Kill a process group with a signal.");
4040 posix_killpg(PyObject
*self
, PyObject
*args
)
4044 /* XXX some man pages make the `pgid` parameter an int, others
4045 a pid_t. Since getpgrp() returns a pid_t, we assume killpg should
4046 take the same type. Moreover, pid_t is always at least as wide as
4047 int (else compilation of this module fails), which is safe. */
4048 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:killpg", &pgid
, &sig
))
4050 if (killpg(pgid
, sig
) == -1)
4051 return posix_error();
4059 #ifdef HAVE_SYS_LOCK_H
4060 #include <sys/lock.h>
4063 PyDoc_STRVAR(posix_plock__doc__
,
4065 Lock program segments into memory.");
4068 posix_plock(PyObject
*self
, PyObject
*args
)
4071 if (!PyArg_ParseTuple(args
, "i:plock", &op
))
4073 if (plock(op
) == -1)
4074 return posix_error();
4082 PyDoc_STRVAR(posix_popen__doc__
,
4083 "popen(command [, mode='r' [, bufsize]]) -> pipe\n\n\
4084 Open a pipe to/from a command returning a file object.");
4086 #if defined(PYOS_OS2)
4087 #if defined(PYCC_VACPP)
4089 async_system(const char *command
)
4091 char errormsg
[256], args
[1024];
4095 char *shell
= getenv("COMSPEC");
4099 /* avoid overflowing the argument buffer */
4100 if (strlen(shell
) + 3 + strlen(command
) >= 1024)
4101 return ERROR_NOT_ENOUGH_MEMORY
4104 strcat(args
, shell
);
4105 strcat(args
, "/c ");
4106 strcat(args
, command
);
4108 /* execute asynchronously, inheriting the environment */
4109 rc
= DosExecPgm(errormsg
,
4120 popen(const char *command
, const char *mode
, int pipesize
, int *err
)
4126 /* mode determines which of stdin or stdout is reconnected to
4127 * the pipe to the child
4129 if (strchr(mode
, 'r') != NULL
) {
4130 tgt_fd
= 1; /* stdout */
4131 } else if (strchr(mode
, 'w')) {
4132 tgt_fd
= 0; /* stdin */
4134 *err
= ERROR_INVALID_ACCESS
;
4138 /* setup the pipe */
4139 if ((rc
= DosCreatePipe(&pipeh
[0], &pipeh
[1], pipesize
)) != NO_ERROR
) {
4144 /* prevent other threads accessing stdio */
4147 /* reconnect stdio and execute child */
4150 if (dup2(pipeh
[tgtfd
], tgtfd
) == 0) {
4151 DosClose(pipeh
[tgtfd
]);
4152 rc
= async_system(command
);
4159 /* allow other threads access to stdio */
4162 /* if execution of child was successful return file stream */
4164 return fdopen(pipeh
[1 - tgtfd
], mode
);
4166 DosClose(pipeh
[1 - tgtfd
]);
4173 posix_popen(PyObject
*self
, PyObject
*args
)
4177 int err
, bufsize
= -1;
4180 if (!PyArg_ParseTuple(args
, "s|si:popen", &name
, &mode
, &bufsize
))
4182 Py_BEGIN_ALLOW_THREADS
4183 fp
= popen(name
, mode
, (bufsize
> 0) ? bufsize
: 4096, &err
);
4184 Py_END_ALLOW_THREADS
4186 return os2_error(err
);
4188 f
= PyFile_FromFile(fp
, name
, mode
, fclose
);
4190 PyFile_SetBufSize(f
, bufsize
);
4194 #elif defined(PYCC_GCC)
4196 /* standard posix version of popen() support */
4198 posix_popen(PyObject
*self
, PyObject
*args
)
4205 if (!PyArg_ParseTuple(args
, "s|si:popen", &name
, &mode
, &bufsize
))
4207 Py_BEGIN_ALLOW_THREADS
4208 fp
= popen(name
, mode
);
4209 Py_END_ALLOW_THREADS
4211 return posix_error();
4212 f
= PyFile_FromFile(fp
, name
, mode
, pclose
);
4214 PyFile_SetBufSize(f
, bufsize
);
4218 /* fork() under OS/2 has lots'o'warts
4219 * EMX supports pipe() and spawn*() so we can synthesize popen[234]()
4220 * most of this code is a ripoff of the win32 code, but using the
4221 * capabilities of EMX's C library routines
4224 /* These tell _PyPopen() whether to return 1, 2, or 3 file objects. */
4230 static PyObject
*_PyPopen(char *, int, int, int);
4231 static int _PyPclose(FILE *file
);
4234 * Internal dictionary mapping popen* file pointers to process handles,
4235 * for use when retrieving the process exit code. See _PyPclose() below
4236 * for more information on this dictionary's use.
4238 static PyObject
*_PyPopenProcs
= NULL
;
4240 /* os2emx version of popen2()
4242 * The result of this function is a pipe (file) connected to the
4243 * process's stdin, and a pipe connected to the process's stdout.
4247 os2emx_popen2(PyObject
*self
, PyObject
*args
)
4255 if (!PyArg_ParseTuple(args
, "s|si:popen2", &cmdstring
, &mode
, &bufsize
))
4260 else if (*mode
!= 'b') {
4261 PyErr_SetString(PyExc_ValueError
, "mode must be 't' or 'b'");
4266 f
= _PyPopen(cmdstring
, tm
, POPEN_2
, bufsize
);
4272 * Variation on os2emx.popen2
4274 * The result of this function is 3 pipes - the process's stdin,
4279 os2emx_popen3(PyObject
*self
, PyObject
*args
)
4287 if (!PyArg_ParseTuple(args
, "s|si:popen3", &cmdstring
, &mode
, &bufsize
))
4292 else if (*mode
!= 'b') {
4293 PyErr_SetString(PyExc_ValueError
, "mode must be 't' or 'b'");
4298 f
= _PyPopen(cmdstring
, tm
, POPEN_3
, bufsize
);
4304 * Variation on os2emx.popen2
4306 * The result of this function is 2 pipes - the processes stdin,
4307 * and stdout+stderr combined as a single pipe.
4311 os2emx_popen4(PyObject
*self
, PyObject
*args
)
4319 if (!PyArg_ParseTuple(args
, "s|si:popen4", &cmdstring
, &mode
, &bufsize
))
4324 else if (*mode
!= 'b') {
4325 PyErr_SetString(PyExc_ValueError
, "mode must be 't' or 'b'");
4330 f
= _PyPopen(cmdstring
, tm
, POPEN_4
, bufsize
);
4335 /* a couple of structures for convenient handling of multiple
4336 * file handles and pipes
4350 /* The following code is derived from the win32 code */
4353 _PyPopen(char *cmdstring
, int mode
, int n
, int bufsize
)
4355 struct file_ref stdio
[3];
4356 struct pipe_ref p_fd
[3];
4358 int file_count
, i
, pipe_err
;
4360 char *shell
, *sh_name
, *opt
, *rd_mode
, *wr_mode
;
4361 PyObject
*f
, *p_f
[3];
4363 /* file modes for subsequent fdopen's on pipe handles */
4375 /* prepare shell references */
4376 if ((shell
= getenv("EMXSHELL")) == NULL
)
4377 if ((shell
= getenv("COMSPEC")) == NULL
)
4380 return posix_error();
4383 sh_name
= _getname(shell
);
4384 if (stricmp(sh_name
, "cmd.exe") == 0 || stricmp(sh_name
, "4os2.exe") == 0)
4389 /* save current stdio fds + their flags, and set not inheritable */
4391 while (pipe_err
>= 0 && i
< 3)
4393 pipe_err
= stdio
[i
].handle
= dup(i
);
4394 stdio
[i
].flags
= fcntl(i
, F_GETFD
, 0);
4395 fcntl(stdio
[i
].handle
, F_SETFD
, stdio
[i
].flags
| FD_CLOEXEC
);
4400 /* didn't get them all saved - clean up and bail out */
4401 int saved_err
= errno
;
4404 close(stdio
[i
].handle
);
4407 return posix_error();
4410 /* create pipe ends */
4415 while ((pipe_err
== 0) && (i
< file_count
))
4416 pipe_err
= pipe((int *)&p_fd
[i
++]);
4419 /* didn't get them all made - clean up and bail out */
4426 return posix_error();
4429 /* change the actual standard IO streams over temporarily,
4430 * making the retained pipe ends non-inheritable
4435 if (dup2(p_fd
[0].rd
, 0) == 0)
4438 i
= fcntl(p_fd
[0].wr
, F_GETFD
, 0);
4439 fcntl(p_fd
[0].wr
, F_SETFD
, i
| FD_CLOEXEC
);
4440 if ((p_s
[0] = fdopen(p_fd
[0].wr
, wr_mode
)) == NULL
)
4454 if (dup2(p_fd
[1].wr
, 1) == 1)
4457 i
= fcntl(p_fd
[1].rd
, F_GETFD
, 0);
4458 fcntl(p_fd
[1].rd
, F_SETFD
, i
| FD_CLOEXEC
);
4459 if ((p_s
[1] = fdopen(p_fd
[1].rd
, rd_mode
)) == NULL
)
4471 /* - stderr, as required */
4477 if (dup2(p_fd
[2].wr
, 2) == 2)
4480 i
= fcntl(p_fd
[2].rd
, F_GETFD
, 0);
4481 fcntl(p_fd
[2].rd
, F_SETFD
, i
| FD_CLOEXEC
);
4482 if ((p_s
[2] = fdopen(p_fd
[2].rd
, rd_mode
)) == NULL
)
4497 if (dup2(1, 2) != 2)
4505 /* spawn the child process */
4508 pipe_pid
= spawnlp(P_NOWAIT
, shell
, shell
, opt
, cmdstring
, (char *)0);
4515 /* save the PID into the FILE structure
4516 * NOTE: this implementation doesn't actually
4517 * take advantage of this, but do it for
4518 * completeness - AIM Apr01
4520 for (i
= 0; i
< file_count
; i
++)
4521 p_s
[i
]->_pid
= pipe_pid
;
4525 /* reset standard IO to normal */
4526 for (i
= 0; i
< 3; i
++)
4528 dup2(stdio
[i
].handle
, i
);
4529 fcntl(i
, F_SETFD
, stdio
[i
].flags
);
4530 close(stdio
[i
].handle
);
4533 /* if any remnant problems, clean up and bail out */
4536 for (i
= 0; i
< 3; i
++)
4542 return posix_error_with_filename(cmdstring
);
4545 /* build tuple of file objects to return */
4546 if ((p_f
[0] = PyFile_FromFile(p_s
[0], cmdstring
, wr_mode
, _PyPclose
)) != NULL
)
4547 PyFile_SetBufSize(p_f
[0], bufsize
);
4548 if ((p_f
[1] = PyFile_FromFile(p_s
[1], cmdstring
, rd_mode
, _PyPclose
)) != NULL
)
4549 PyFile_SetBufSize(p_f
[1], bufsize
);
4552 if ((p_f
[2] = PyFile_FromFile(p_s
[2], cmdstring
, rd_mode
, _PyPclose
)) != NULL
)
4553 PyFile_SetBufSize(p_f
[0], bufsize
);
4554 f
= PyTuple_Pack(3, p_f
[0], p_f
[1], p_f
[2]);
4557 f
= PyTuple_Pack(2, p_f
[0], p_f
[1]);
4560 * Insert the files we've created into the process dictionary
4561 * all referencing the list with the process handle and the
4562 * initial number of files (see description below in _PyPclose).
4563 * Since if _PyPclose later tried to wait on a process when all
4564 * handles weren't closed, it could create a deadlock with the
4565 * child, we spend some energy here to try to ensure that we
4566 * either insert all file handles into the dictionary or none
4567 * at all. It's a little clumsy with the various popen modes
4568 * and variable number of files involved.
4572 _PyPopenProcs
= PyDict_New();
4577 PyObject
*procObj
, *pidObj
, *intObj
, *fileObj
[3];
4580 fileObj
[0] = fileObj
[1] = fileObj
[2] = NULL
;
4581 ins_rc
[0] = ins_rc
[1] = ins_rc
[2] = 0;
4583 procObj
= PyList_New(2);
4584 pidObj
= PyLong_FromPid(pipe_pid
);
4585 intObj
= PyInt_FromLong((long) file_count
);
4587 if (procObj
&& pidObj
&& intObj
)
4589 PyList_SetItem(procObj
, 0, pidObj
);
4590 PyList_SetItem(procObj
, 1, intObj
);
4592 fileObj
[0] = PyLong_FromVoidPtr(p_s
[0]);
4595 ins_rc
[0] = PyDict_SetItem(_PyPopenProcs
,
4599 fileObj
[1] = PyLong_FromVoidPtr(p_s
[1]);
4602 ins_rc
[1] = PyDict_SetItem(_PyPopenProcs
,
4606 if (file_count
>= 3)
4608 fileObj
[2] = PyLong_FromVoidPtr(p_s
[2]);
4611 ins_rc
[2] = PyDict_SetItem(_PyPopenProcs
,
4617 if (ins_rc
[0] < 0 || !fileObj
[0] ||
4618 ins_rc
[1] < 0 || (file_count
> 1 && !fileObj
[1]) ||
4619 ins_rc
[2] < 0 || (file_count
> 2 && !fileObj
[2]))
4621 /* Something failed - remove any dictionary
4622 * entries that did make it.
4624 if (!ins_rc
[0] && fileObj
[0])
4626 PyDict_DelItem(_PyPopenProcs
,
4629 if (!ins_rc
[1] && fileObj
[1])
4631 PyDict_DelItem(_PyPopenProcs
,
4634 if (!ins_rc
[2] && fileObj
[2])
4636 PyDict_DelItem(_PyPopenProcs
,
4643 * Clean up our localized references for the dictionary keys
4644 * and value since PyDict_SetItem will Py_INCREF any copies
4645 * that got placed in the dictionary.
4647 Py_XDECREF(procObj
);
4648 Py_XDECREF(fileObj
[0]);
4649 Py_XDECREF(fileObj
[1]);
4650 Py_XDECREF(fileObj
[2]);
4653 /* Child is launched. */
4658 * Wrapper for fclose() to use for popen* files, so we can retrieve the
4659 * exit code for the child process and return as a result of the close.
4661 * This function uses the _PyPopenProcs dictionary in order to map the
4662 * input file pointer to information about the process that was
4663 * originally created by the popen* call that created the file pointer.
4664 * The dictionary uses the file pointer as a key (with one entry
4665 * inserted for each file returned by the original popen* call) and a
4666 * single list object as the value for all files from a single call.
4667 * The list object contains the Win32 process handle at [0], and a file
4668 * count at [1], which is initialized to the total number of file
4669 * handles using that list.
4671 * This function closes whichever handle it is passed, and decrements
4672 * the file count in the dictionary for the process handle pointed to
4673 * by this file. On the last close (when the file count reaches zero),
4674 * this function will wait for the child process and then return its
4675 * exit code as the result of the close() operation. This permits the
4676 * files to be closed in any order - it is always the close() of the
4677 * final handle that will return the exit code.
4679 * NOTE: This function is currently called with the GIL released.
4680 * hence we use the GILState API to manage our state.
4683 static int _PyPclose(FILE *file
)
4688 PyObject
*procObj
, *pidObj
, *intObj
, *fileObj
;
4691 PyGILState_STATE state
;
4694 /* Close the file handle first, to ensure it can't block the
4695 * child from exiting if it's the last handle.
4697 result
= fclose(file
);
4700 state
= PyGILState_Ensure();
4704 if ((fileObj
= PyLong_FromVoidPtr(file
)) != NULL
&&
4705 (procObj
= PyDict_GetItem(_PyPopenProcs
,
4706 fileObj
)) != NULL
&&
4707 (pidObj
= PyList_GetItem(procObj
,0)) != NULL
&&
4708 (intObj
= PyList_GetItem(procObj
,1)) != NULL
)
4710 pipe_pid
= (pid_t
) PyLong_AsPid(pidObj
);
4711 file_count
= (int) PyInt_AsLong(intObj
);
4715 /* Still other files referencing process */
4717 PyList_SetItem(procObj
,1,
4718 PyInt_FromLong((long) file_count
));
4722 /* Last file for this process */
4723 if (result
!= EOF
&&
4724 waitpid(pipe_pid
, &exit_code
, 0) == pipe_pid
)
4726 /* extract exit status */
4727 if (WIFEXITED(exit_code
))
4729 result
= WEXITSTATUS(exit_code
);
4739 /* Indicate failure - this will cause the file object
4740 * to raise an I/O error and translate the last
4741 * error code from errno. We do have a problem with
4742 * last errors that overlap the normal errno table,
4743 * but that's a consistent problem with the file object.
4749 /* Remove this file pointer from dictionary */
4750 PyDict_DelItem(_PyPopenProcs
, fileObj
);
4752 if (PyDict_Size(_PyPopenProcs
) == 0)
4754 Py_DECREF(_PyPopenProcs
);
4755 _PyPopenProcs
= NULL
;
4758 } /* if object retrieval ok */
4760 Py_XDECREF(fileObj
);
4761 } /* if _PyPopenProcs */
4764 PyGILState_Release(state
);
4769 #endif /* PYCC_??? */
4771 #elif defined(MS_WINDOWS)
4774 * Portable 'popen' replacement for Win32.
4776 * Written by Bill Tutt <billtut@microsoft.com>. Minor tweaks
4777 * and 2.0 integration by Fredrik Lundh <fredrik@pythonware.com>
4778 * Return code handling by David Bolen <db3l@fitlinxx.com>.
4785 /* These tell _PyPopen() wether to return 1, 2, or 3 file objects. */
4791 static PyObject
*_PyPopen(char *, int, int);
4792 static int _PyPclose(FILE *file
);
4795 * Internal dictionary mapping popen* file pointers to process handles,
4796 * for use when retrieving the process exit code. See _PyPclose() below
4797 * for more information on this dictionary's use.
4799 static PyObject
*_PyPopenProcs
= NULL
;
4802 /* popen that works from a GUI.
4804 * The result of this function is a pipe (file) connected to the
4805 * processes stdin or stdout, depending on the requested mode.
4809 posix_popen(PyObject
*self
, PyObject
*args
)
4817 if (!PyArg_ParseTuple(args
, "s|si:popen", &cmdstring
, &mode
, &bufsize
))
4822 else if (*mode
!= 'w') {
4823 PyErr_SetString(PyExc_ValueError
, "popen() arg 2 must be 'r' or 'w'");
4828 if (bufsize
!= -1) {
4829 PyErr_SetString(PyExc_ValueError
, "popen() arg 3 must be -1");
4833 if (*(mode
+1) == 't')
4834 f
= _PyPopen(cmdstring
, tm
| _O_TEXT
, POPEN_1
);
4835 else if (*(mode
+1) == 'b')
4836 f
= _PyPopen(cmdstring
, tm
| _O_BINARY
, POPEN_1
);
4838 f
= _PyPopen(cmdstring
, tm
| _O_TEXT
, POPEN_1
);
4843 /* Variation on win32pipe.popen
4845 * The result of this function is a pipe (file) connected to the
4846 * process's stdin, and a pipe connected to the process's stdout.
4850 win32_popen2(PyObject
*self
, PyObject
*args
)
4858 if (!PyArg_ParseTuple(args
, "s|si:popen2", &cmdstring
, &mode
, &bufsize
))
4863 else if (*mode
!= 'b') {
4864 PyErr_SetString(PyExc_ValueError
, "popen2() arg 2 must be 't' or 'b'");
4869 if (bufsize
!= -1) {
4870 PyErr_SetString(PyExc_ValueError
, "popen2() arg 3 must be -1");
4874 f
= _PyPopen(cmdstring
, tm
, POPEN_2
);
4880 * Variation on <om win32pipe.popen>
4882 * The result of this function is 3 pipes - the process's stdin,
4887 win32_popen3(PyObject
*self
, PyObject
*args
)
4895 if (!PyArg_ParseTuple(args
, "s|si:popen3", &cmdstring
, &mode
, &bufsize
))
4900 else if (*mode
!= 'b') {
4901 PyErr_SetString(PyExc_ValueError
, "popen3() arg 2 must be 't' or 'b'");
4906 if (bufsize
!= -1) {
4907 PyErr_SetString(PyExc_ValueError
, "popen3() arg 3 must be -1");
4911 f
= _PyPopen(cmdstring
, tm
, POPEN_3
);
4917 * Variation on win32pipe.popen
4919 * The result of this function is 2 pipes - the processes stdin,
4920 * and stdout+stderr combined as a single pipe.
4924 win32_popen4(PyObject
*self
, PyObject
*args
)
4932 if (!PyArg_ParseTuple(args
, "s|si:popen4", &cmdstring
, &mode
, &bufsize
))
4937 else if (*mode
!= 'b') {
4938 PyErr_SetString(PyExc_ValueError
, "popen4() arg 2 must be 't' or 'b'");
4943 if (bufsize
!= -1) {
4944 PyErr_SetString(PyExc_ValueError
, "popen4() arg 3 must be -1");
4948 f
= _PyPopen(cmdstring
, tm
, POPEN_4
);
4954 _PyPopenCreateProcess(char *cmdstring
,
4960 PROCESS_INFORMATION piProcInfo
;
4961 STARTUPINFO siStartInfo
;
4962 DWORD dwProcessFlags
= 0; /* no NEW_CONSOLE by default for Ctrl+C handling */
4963 char *s1
,*s2
, *s3
= " /c ";
4964 const char *szConsoleSpawn
= "w9xpopen.exe";
4968 if (i
= GetEnvironmentVariable("COMSPEC",NULL
,0)) {
4971 s1
= (char *)alloca(i
);
4972 if (!(x
= GetEnvironmentVariable("COMSPEC", s1
, i
)))
4973 /* x < i, so x fits into an integer */
4976 /* Explicitly check if we are using COMMAND.COM. If we are
4977 * then use the w9xpopen hack.
4980 while (comshell
>= s1
&& *comshell
!= '\\')
4984 if (GetVersion() < 0x80000000 &&
4985 _stricmp(comshell
, "command.com") != 0) {
4986 /* NT/2000 and not using command.com. */
4987 x
= i
+ strlen(s3
) + strlen(cmdstring
) + 1;
4988 s2
= (char *)alloca(x
);
4990 PyOS_snprintf(s2
, x
, "%s%s%s", s1
, s3
, cmdstring
);
4994 * Oh gag, we're on Win9x or using COMMAND.COM. Use
4995 * the workaround listed in KB: Q150956
4997 char modulepath
[_MAX_PATH
];
4998 struct stat statinfo
;
4999 GetModuleFileName(NULL
, modulepath
, sizeof(modulepath
));
5000 for (x
= i
= 0; modulepath
[i
]; i
++)
5001 if (modulepath
[i
] == SEP
)
5003 modulepath
[x
] = '\0';
5004 /* Create the full-name to w9xpopen, so we can test it exists */
5007 (sizeof(modulepath
)/sizeof(modulepath
[0]))
5008 -strlen(modulepath
));
5009 if (stat(modulepath
, &statinfo
) != 0) {
5010 size_t mplen
= sizeof(modulepath
)/sizeof(modulepath
[0]);
5011 /* Eeek - file-not-found - possibly an embedding
5012 situation - see if we can locate it in sys.prefix
5017 modulepath
[mplen
-1] = '\0';
5018 if (modulepath
[strlen(modulepath
)-1] != '\\')
5019 strcat(modulepath
, "\\");
5022 mplen
-strlen(modulepath
));
5023 /* No where else to look - raise an easily identifiable
5024 error, rather than leaving Windows to report
5025 "file not found" - as the user is probably blissfully
5026 unaware this shim EXE is used, and it will confuse them.
5027 (well, it confused me for a while ;-)
5029 if (stat(modulepath
, &statinfo
) != 0) {
5030 PyErr_Format(PyExc_RuntimeError
,
5031 "Can not locate '%s' which is needed "
5032 "for popen to work with your shell "
5038 x
= i
+ strlen(s3
) + strlen(cmdstring
) + 1 +
5039 strlen(modulepath
) +
5040 strlen(szConsoleSpawn
) + 1;
5042 s2
= (char *)alloca(x
);
5044 /* To maintain correct argument passing semantics,
5045 we pass the command-line as it stands, and allow
5046 quoting to be applied. w9xpopen.exe will then
5047 use its argv vector, and re-quote the necessary
5048 args for the ultimate child process.
5057 /* Not passing CREATE_NEW_CONSOLE has been known to
5058 cause random failures on win9x. Specifically a
5060 "Your program accessed mem currently in use at xxx"
5061 and a hopeful warning about the stability of your
5063 Cost is Ctrl+C won't kill children, but anyone
5064 who cares can have a go!
5066 dwProcessFlags
|= CREATE_NEW_CONSOLE
;
5070 /* Could be an else here to try cmd.exe / command.com in the path
5071 Now we'll just error out.. */
5073 PyErr_SetString(PyExc_RuntimeError
,
5074 "Cannot locate a COMSPEC environment variable to "
5075 "use as the shell");
5079 ZeroMemory(&siStartInfo
, sizeof(STARTUPINFO
));
5080 siStartInfo
.cb
= sizeof(STARTUPINFO
);
5081 siStartInfo
.dwFlags
= STARTF_USESTDHANDLES
| STARTF_USESHOWWINDOW
;
5082 siStartInfo
.hStdInput
= hStdin
;
5083 siStartInfo
.hStdOutput
= hStdout
;
5084 siStartInfo
.hStdError
= hStderr
;
5085 siStartInfo
.wShowWindow
= SW_HIDE
;
5087 if (CreateProcess(NULL
,
5097 /* Close the handles now so anyone waiting is woken. */
5098 CloseHandle(piProcInfo
.hThread
);
5100 /* Return process handle */
5101 *hProcess
= piProcInfo
.hProcess
;
5104 win32_error("CreateProcess", s2
);
5108 /* The following code is based off of KB: Q190351 */
5111 _PyPopen(char *cmdstring
, int mode
, int n
)
5113 HANDLE hChildStdinRd
, hChildStdinWr
, hChildStdoutRd
, hChildStdoutWr
,
5114 hChildStderrRd
, hChildStderrWr
, hChildStdinWrDup
, hChildStdoutRdDup
,
5115 hChildStderrRdDup
, hProcess
; /* hChildStdoutWrDup; */
5117 SECURITY_ATTRIBUTES saAttr
;
5124 saAttr
.nLength
= sizeof(SECURITY_ATTRIBUTES
);
5125 saAttr
.bInheritHandle
= TRUE
;
5126 saAttr
.lpSecurityDescriptor
= NULL
;
5128 if (!CreatePipe(&hChildStdinRd
, &hChildStdinWr
, &saAttr
, 0))
5129 return win32_error("CreatePipe", NULL
);
5131 /* Create new output read handle and the input write handle. Set
5132 * the inheritance properties to FALSE. Otherwise, the child inherits
5133 * these handles; resulting in non-closeable handles to the pipes
5135 fSuccess
= DuplicateHandle(GetCurrentProcess(), hChildStdinWr
,
5136 GetCurrentProcess(), &hChildStdinWrDup
, 0,
5138 DUPLICATE_SAME_ACCESS
);
5140 return win32_error("DuplicateHandle", NULL
);
5142 /* Close the inheritable version of ChildStdin
5143 that we're using. */
5144 CloseHandle(hChildStdinWr
);
5146 if (!CreatePipe(&hChildStdoutRd
, &hChildStdoutWr
, &saAttr
, 0))
5147 return win32_error("CreatePipe", NULL
);
5149 fSuccess
= DuplicateHandle(GetCurrentProcess(), hChildStdoutRd
,
5150 GetCurrentProcess(), &hChildStdoutRdDup
, 0,
5151 FALSE
, DUPLICATE_SAME_ACCESS
);
5153 return win32_error("DuplicateHandle", NULL
);
5155 /* Close the inheritable version of ChildStdout
5156 that we're using. */
5157 CloseHandle(hChildStdoutRd
);
5160 if (!CreatePipe(&hChildStderrRd
, &hChildStderrWr
, &saAttr
, 0))
5161 return win32_error("CreatePipe", NULL
);
5162 fSuccess
= DuplicateHandle(GetCurrentProcess(),
5164 GetCurrentProcess(),
5165 &hChildStderrRdDup
, 0,
5166 FALSE
, DUPLICATE_SAME_ACCESS
);
5168 return win32_error("DuplicateHandle", NULL
);
5169 /* Close the inheritable version of ChildStdErr that we're using. */
5170 CloseHandle(hChildStderrRd
);
5175 switch (mode
& (_O_RDONLY
| _O_TEXT
| _O_BINARY
| _O_WRONLY
)) {
5176 case _O_WRONLY
| _O_TEXT
:
5177 /* Case for writing to child Stdin in text mode. */
5178 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdinWrDup
, mode
);
5179 f1
= _fdopen(fd1
, "w");
5180 f
= PyFile_FromFile(f1
, cmdstring
, "w", _PyPclose
);
5181 PyFile_SetBufSize(f
, 0);
5182 /* We don't care about these pipes anymore, so close them. */
5183 CloseHandle(hChildStdoutRdDup
);
5184 CloseHandle(hChildStderrRdDup
);
5187 case _O_RDONLY
| _O_TEXT
:
5188 /* Case for reading from child Stdout in text mode. */
5189 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdoutRdDup
, mode
);
5190 f1
= _fdopen(fd1
, "r");
5191 f
= PyFile_FromFile(f1
, cmdstring
, "r", _PyPclose
);
5192 PyFile_SetBufSize(f
, 0);
5193 /* We don't care about these pipes anymore, so close them. */
5194 CloseHandle(hChildStdinWrDup
);
5195 CloseHandle(hChildStderrRdDup
);
5198 case _O_RDONLY
| _O_BINARY
:
5199 /* Case for readinig from child Stdout in binary mode. */
5200 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdoutRdDup
, mode
);
5201 f1
= _fdopen(fd1
, "rb");
5202 f
= PyFile_FromFile(f1
, cmdstring
, "rb", _PyPclose
);
5203 PyFile_SetBufSize(f
, 0);
5204 /* We don't care about these pipes anymore, so close them. */
5205 CloseHandle(hChildStdinWrDup
);
5206 CloseHandle(hChildStderrRdDup
);
5209 case _O_WRONLY
| _O_BINARY
:
5210 /* Case for writing to child Stdin in binary mode. */
5211 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdinWrDup
, mode
);
5212 f1
= _fdopen(fd1
, "wb");
5213 f
= PyFile_FromFile(f1
, cmdstring
, "wb", _PyPclose
);
5214 PyFile_SetBufSize(f
, 0);
5215 /* We don't care about these pipes anymore, so close them. */
5216 CloseHandle(hChildStdoutRdDup
);
5217 CloseHandle(hChildStderrRdDup
);
5229 if (mode
& _O_TEXT
) {
5237 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdinWrDup
, mode
);
5238 f1
= _fdopen(fd1
, m2
);
5239 fd2
= _open_osfhandle((Py_intptr_t
)hChildStdoutRdDup
, mode
);
5240 f2
= _fdopen(fd2
, m1
);
5241 p1
= PyFile_FromFile(f1
, cmdstring
, m2
, _PyPclose
);
5242 PyFile_SetBufSize(p1
, 0);
5243 p2
= PyFile_FromFile(f2
, cmdstring
, m1
, _PyPclose
);
5244 PyFile_SetBufSize(p2
, 0);
5247 CloseHandle(hChildStderrRdDup
);
5249 f
= PyTuple_Pack(2,p1
,p2
);
5259 PyObject
*p1
, *p2
, *p3
;
5261 if (mode
& _O_TEXT
) {
5269 fd1
= _open_osfhandle((Py_intptr_t
)hChildStdinWrDup
, mode
);
5270 f1
= _fdopen(fd1
, m2
);
5271 fd2
= _open_osfhandle((Py_intptr_t
)hChildStdoutRdDup
, mode
);
5272 f2
= _fdopen(fd2
, m1
);
5273 fd3
= _open_osfhandle((Py_intptr_t
)hChildStderrRdDup
, mode
);
5274 f3
= _fdopen(fd3
, m1
);
5275 p1
= PyFile_FromFile(f1
, cmdstring
, m2
, _PyPclose
);
5276 p2
= PyFile_FromFile(f2
, cmdstring
, m1
, _PyPclose
);
5277 p3
= PyFile_FromFile(f3
, cmdstring
, m1
, _PyPclose
);
5278 PyFile_SetBufSize(p1
, 0);
5279 PyFile_SetBufSize(p2
, 0);
5280 PyFile_SetBufSize(p3
, 0);
5281 f
= PyTuple_Pack(3,p1
,p2
,p3
);
5291 if (!_PyPopenCreateProcess(cmdstring
,
5299 if (!_PyPopenCreateProcess(cmdstring
,
5308 * Insert the files we've created into the process dictionary
5309 * all referencing the list with the process handle and the
5310 * initial number of files (see description below in _PyPclose).
5311 * Since if _PyPclose later tried to wait on a process when all
5312 * handles weren't closed, it could create a deadlock with the
5313 * child, we spend some energy here to try to ensure that we
5314 * either insert all file handles into the dictionary or none
5315 * at all. It's a little clumsy with the various popen modes
5316 * and variable number of files involved.
5318 if (!_PyPopenProcs
) {
5319 _PyPopenProcs
= PyDict_New();
5322 if (_PyPopenProcs
) {
5323 PyObject
*procObj
, *hProcessObj
, *intObj
, *fileObj
[3];
5326 fileObj
[0] = fileObj
[1] = fileObj
[2] = NULL
;
5327 ins_rc
[0] = ins_rc
[1] = ins_rc
[2] = 0;
5329 procObj
= PyList_New(2);
5330 hProcessObj
= PyLong_FromVoidPtr(hProcess
);
5331 intObj
= PyInt_FromLong(file_count
);
5333 if (procObj
&& hProcessObj
&& intObj
) {
5334 PyList_SetItem(procObj
,0,hProcessObj
);
5335 PyList_SetItem(procObj
,1,intObj
);
5337 fileObj
[0] = PyLong_FromVoidPtr(f1
);
5339 ins_rc
[0] = PyDict_SetItem(_PyPopenProcs
,
5343 if (file_count
>= 2) {
5344 fileObj
[1] = PyLong_FromVoidPtr(f2
);
5346 ins_rc
[1] = PyDict_SetItem(_PyPopenProcs
,
5351 if (file_count
>= 3) {
5352 fileObj
[2] = PyLong_FromVoidPtr(f3
);
5354 ins_rc
[2] = PyDict_SetItem(_PyPopenProcs
,
5360 if (ins_rc
[0] < 0 || !fileObj
[0] ||
5361 ins_rc
[1] < 0 || (file_count
> 1 && !fileObj
[1]) ||
5362 ins_rc
[2] < 0 || (file_count
> 2 && !fileObj
[2])) {
5363 /* Something failed - remove any dictionary
5364 * entries that did make it.
5366 if (!ins_rc
[0] && fileObj
[0]) {
5367 PyDict_DelItem(_PyPopenProcs
,
5370 if (!ins_rc
[1] && fileObj
[1]) {
5371 PyDict_DelItem(_PyPopenProcs
,
5374 if (!ins_rc
[2] && fileObj
[2]) {
5375 PyDict_DelItem(_PyPopenProcs
,
5382 * Clean up our localized references for the dictionary keys
5383 * and value since PyDict_SetItem will Py_INCREF any copies
5384 * that got placed in the dictionary.
5386 Py_XDECREF(procObj
);
5387 Py_XDECREF(fileObj
[0]);
5388 Py_XDECREF(fileObj
[1]);
5389 Py_XDECREF(fileObj
[2]);
5392 /* Child is launched. Close the parents copy of those pipe
5393 * handles that only the child should have open. You need to
5394 * make sure that no handles to the write end of the output pipe
5395 * are maintained in this process or else the pipe will not close
5396 * when the child process exits and the ReadFile will hang. */
5398 if (!CloseHandle(hChildStdinRd
))
5399 return win32_error("CloseHandle", NULL
);
5401 if (!CloseHandle(hChildStdoutWr
))
5402 return win32_error("CloseHandle", NULL
);
5404 if ((n
!= 4) && (!CloseHandle(hChildStderrWr
)))
5405 return win32_error("CloseHandle", NULL
);
5411 * Wrapper for fclose() to use for popen* files, so we can retrieve the
5412 * exit code for the child process and return as a result of the close.
5414 * This function uses the _PyPopenProcs dictionary in order to map the
5415 * input file pointer to information about the process that was
5416 * originally created by the popen* call that created the file pointer.
5417 * The dictionary uses the file pointer as a key (with one entry
5418 * inserted for each file returned by the original popen* call) and a
5419 * single list object as the value for all files from a single call.
5420 * The list object contains the Win32 process handle at [0], and a file
5421 * count at [1], which is initialized to the total number of file
5422 * handles using that list.
5424 * This function closes whichever handle it is passed, and decrements
5425 * the file count in the dictionary for the process handle pointed to
5426 * by this file. On the last close (when the file count reaches zero),
5427 * this function will wait for the child process and then return its
5428 * exit code as the result of the close() operation. This permits the
5429 * files to be closed in any order - it is always the close() of the
5430 * final handle that will return the exit code.
5432 * NOTE: This function is currently called with the GIL released.
5433 * hence we use the GILState API to manage our state.
5436 static int _PyPclose(FILE *file
)
5441 PyObject
*procObj
, *hProcessObj
, *intObj
, *fileObj
;
5444 PyGILState_STATE state
;
5447 /* Close the file handle first, to ensure it can't block the
5448 * child from exiting if it's the last handle.
5450 result
= fclose(file
);
5452 state
= PyGILState_Ensure();
5454 if (_PyPopenProcs
) {
5455 if ((fileObj
= PyLong_FromVoidPtr(file
)) != NULL
&&
5456 (procObj
= PyDict_GetItem(_PyPopenProcs
,
5457 fileObj
)) != NULL
&&
5458 (hProcessObj
= PyList_GetItem(procObj
,0)) != NULL
&&
5459 (intObj
= PyList_GetItem(procObj
,1)) != NULL
) {
5461 hProcess
= PyLong_AsVoidPtr(hProcessObj
);
5462 file_count
= PyInt_AsLong(intObj
);
5464 if (file_count
> 1) {
5465 /* Still other files referencing process */
5467 PyList_SetItem(procObj
,1,
5468 PyInt_FromLong(file_count
));
5470 /* Last file for this process */
5471 if (result
!= EOF
&&
5472 WaitForSingleObject(hProcess
, INFINITE
) != WAIT_FAILED
&&
5473 GetExitCodeProcess(hProcess
, &exit_code
)) {
5474 /* Possible truncation here in 16-bit environments, but
5475 * real exit codes are just the lower byte in any event.
5479 /* Indicate failure - this will cause the file object
5480 * to raise an I/O error and translate the last Win32
5481 * error code from errno. We do have a problem with
5482 * last errors that overlap the normal errno table,
5483 * but that's a consistent problem with the file object.
5485 if (result
!= EOF
) {
5486 /* If the error wasn't from the fclose(), then
5487 * set errno for the file object error handling.
5489 errno
= GetLastError();
5494 /* Free up the native handle at this point */
5495 CloseHandle(hProcess
);
5498 /* Remove this file pointer from dictionary */
5499 PyDict_DelItem(_PyPopenProcs
, fileObj
);
5501 if (PyDict_Size(_PyPopenProcs
) == 0) {
5502 Py_DECREF(_PyPopenProcs
);
5503 _PyPopenProcs
= NULL
;
5506 } /* if object retrieval ok */
5508 Py_XDECREF(fileObj
);
5509 } /* if _PyPopenProcs */
5512 PyGILState_Release(state
);
5517 #else /* which OS? */
5519 posix_popen(PyObject
*self
, PyObject
*args
)
5526 if (!PyArg_ParseTuple(args
, "s|si:popen", &name
, &mode
, &bufsize
))
5528 /* Strip mode of binary or text modifiers */
5529 if (strcmp(mode
, "rb") == 0 || strcmp(mode
, "rt") == 0)
5531 else if (strcmp(mode
, "wb") == 0 || strcmp(mode
, "wt") == 0)
5533 Py_BEGIN_ALLOW_THREADS
5534 fp
= popen(name
, mode
);
5535 Py_END_ALLOW_THREADS
5537 return posix_error();
5538 f
= PyFile_FromFile(fp
, name
, mode
, pclose
);
5540 PyFile_SetBufSize(f
, bufsize
);
5544 #endif /* PYOS_??? */
5545 #endif /* HAVE_POPEN */
5549 PyDoc_STRVAR(posix_setuid__doc__
,
5551 Set the current process's user id.");
5554 posix_setuid(PyObject
*self
, PyObject
*args
)
5558 if (!PyArg_ParseTuple(args
, "l:setuid", &uid_arg
))
5561 if (uid
!= uid_arg
) {
5562 PyErr_SetString(PyExc_OverflowError
, "user id too big");
5565 if (setuid(uid
) < 0)
5566 return posix_error();
5570 #endif /* HAVE_SETUID */
5574 PyDoc_STRVAR(posix_seteuid__doc__
,
5576 Set the current process's effective user id.");
5579 posix_seteuid (PyObject
*self
, PyObject
*args
)
5583 if (!PyArg_ParseTuple(args
, "l", &euid_arg
))
5586 if (euid
!= euid_arg
) {
5587 PyErr_SetString(PyExc_OverflowError
, "user id too big");
5590 if (seteuid(euid
) < 0) {
5591 return posix_error();
5597 #endif /* HAVE_SETEUID */
5600 PyDoc_STRVAR(posix_setegid__doc__
,
5602 Set the current process's effective group id.");
5605 posix_setegid (PyObject
*self
, PyObject
*args
)
5609 if (!PyArg_ParseTuple(args
, "l", &egid_arg
))
5612 if (egid
!= egid_arg
) {
5613 PyErr_SetString(PyExc_OverflowError
, "group id too big");
5616 if (setegid(egid
) < 0) {
5617 return posix_error();
5623 #endif /* HAVE_SETEGID */
5625 #ifdef HAVE_SETREUID
5626 PyDoc_STRVAR(posix_setreuid__doc__
,
5627 "setreuid(ruid, euid)\n\n\
5628 Set the current process's real and effective user ids.");
5631 posix_setreuid (PyObject
*self
, PyObject
*args
)
5633 long ruid_arg
, euid_arg
;
5635 if (!PyArg_ParseTuple(args
, "ll", &ruid_arg
, &euid_arg
))
5639 if (euid
!= euid_arg
|| ruid
!= ruid_arg
) {
5640 PyErr_SetString(PyExc_OverflowError
, "user id too big");
5643 if (setreuid(ruid
, euid
) < 0) {
5644 return posix_error();
5650 #endif /* HAVE_SETREUID */
5652 #ifdef HAVE_SETREGID
5653 PyDoc_STRVAR(posix_setregid__doc__
,
5654 "setregid(rgid, egid)\n\n\
5655 Set the current process's real and effective group ids.");
5658 posix_setregid (PyObject
*self
, PyObject
*args
)
5660 long rgid_arg
, egid_arg
;
5662 if (!PyArg_ParseTuple(args
, "ll", &rgid_arg
, &egid_arg
))
5666 if (egid
!= egid_arg
|| rgid
!= rgid_arg
) {
5667 PyErr_SetString(PyExc_OverflowError
, "group id too big");
5670 if (setregid(rgid
, egid
) < 0) {
5671 return posix_error();
5677 #endif /* HAVE_SETREGID */
5680 PyDoc_STRVAR(posix_setgid__doc__
,
5682 Set the current process's group id.");
5685 posix_setgid(PyObject
*self
, PyObject
*args
)
5689 if (!PyArg_ParseTuple(args
, "l:setgid", &gid_arg
))
5692 if (gid
!= gid_arg
) {
5693 PyErr_SetString(PyExc_OverflowError
, "group id too big");
5696 if (setgid(gid
) < 0)
5697 return posix_error();
5701 #endif /* HAVE_SETGID */
5703 #ifdef HAVE_SETGROUPS
5704 PyDoc_STRVAR(posix_setgroups__doc__
,
5705 "setgroups(list)\n\n\
5706 Set the groups of the current process to list.");
5709 posix_setgroups(PyObject
*self
, PyObject
*groups
)
5712 gid_t grouplist
[MAX_GROUPS
];
5714 if (!PySequence_Check(groups
)) {
5715 PyErr_SetString(PyExc_TypeError
, "setgroups argument must be a sequence");
5718 len
= PySequence_Size(groups
);
5719 if (len
> MAX_GROUPS
) {
5720 PyErr_SetString(PyExc_ValueError
, "too many groups");
5723 for(i
= 0; i
< len
; i
++) {
5725 elem
= PySequence_GetItem(groups
, i
);
5728 if (!PyInt_Check(elem
)) {
5729 if (!PyLong_Check(elem
)) {
5730 PyErr_SetString(PyExc_TypeError
,
5731 "groups must be integers");
5735 unsigned long x
= PyLong_AsUnsignedLong(elem
);
5736 if (PyErr_Occurred()) {
5737 PyErr_SetString(PyExc_TypeError
,
5738 "group id too big");
5743 /* read back to see if it fits in gid_t */
5744 if (grouplist
[i
] != x
) {
5745 PyErr_SetString(PyExc_TypeError
,
5746 "group id too big");
5752 long x
= PyInt_AsLong(elem
);
5754 if (grouplist
[i
] != x
) {
5755 PyErr_SetString(PyExc_TypeError
,
5756 "group id too big");
5764 if (setgroups(len
, grouplist
) < 0)
5765 return posix_error();
5769 #endif /* HAVE_SETGROUPS */
5771 #if defined(HAVE_WAIT3) || defined(HAVE_WAIT4)
5773 wait_helper(pid_t pid
, int status
, struct rusage
*ru
)
5776 static PyObject
*struct_rusage
;
5779 return posix_error();
5781 if (struct_rusage
== NULL
) {
5782 PyObject
*m
= PyImport_ImportModuleNoBlock("resource");
5785 struct_rusage
= PyObject_GetAttrString(m
, "struct_rusage");
5787 if (struct_rusage
== NULL
)
5791 /* XXX(nnorwitz): Copied (w/mods) from resource.c, there should be only one. */
5792 result
= PyStructSequence_New((PyTypeObject
*) struct_rusage
);
5797 #define doubletime(TV) ((double)(TV).tv_sec + (TV).tv_usec * 0.000001)
5800 PyStructSequence_SET_ITEM(result
, 0,
5801 PyFloat_FromDouble(doubletime(ru
->ru_utime
)));
5802 PyStructSequence_SET_ITEM(result
, 1,
5803 PyFloat_FromDouble(doubletime(ru
->ru_stime
)));
5804 #define SET_INT(result, index, value)\
5805 PyStructSequence_SET_ITEM(result, index, PyInt_FromLong(value))
5806 SET_INT(result
, 2, ru
->ru_maxrss
);
5807 SET_INT(result
, 3, ru
->ru_ixrss
);
5808 SET_INT(result
, 4, ru
->ru_idrss
);
5809 SET_INT(result
, 5, ru
->ru_isrss
);
5810 SET_INT(result
, 6, ru
->ru_minflt
);
5811 SET_INT(result
, 7, ru
->ru_majflt
);
5812 SET_INT(result
, 8, ru
->ru_nswap
);
5813 SET_INT(result
, 9, ru
->ru_inblock
);
5814 SET_INT(result
, 10, ru
->ru_oublock
);
5815 SET_INT(result
, 11, ru
->ru_msgsnd
);
5816 SET_INT(result
, 12, ru
->ru_msgrcv
);
5817 SET_INT(result
, 13, ru
->ru_nsignals
);
5818 SET_INT(result
, 14, ru
->ru_nvcsw
);
5819 SET_INT(result
, 15, ru
->ru_nivcsw
);
5822 if (PyErr_Occurred()) {
5827 return Py_BuildValue("NiN", PyLong_FromPid(pid
), status
, result
);
5829 #endif /* HAVE_WAIT3 || HAVE_WAIT4 */
5832 PyDoc_STRVAR(posix_wait3__doc__
,
5833 "wait3(options) -> (pid, status, rusage)\n\n\
5834 Wait for completion of a child process.");
5837 posix_wait3(PyObject
*self
, PyObject
*args
)
5843 WAIT_STATUS_INT(status
) = 0;
5845 if (!PyArg_ParseTuple(args
, "i:wait3", &options
))
5848 Py_BEGIN_ALLOW_THREADS
5849 pid
= wait3(&status
, options
, &ru
);
5850 Py_END_ALLOW_THREADS
5852 return wait_helper(pid
, WAIT_STATUS_INT(status
), &ru
);
5854 #endif /* HAVE_WAIT3 */
5857 PyDoc_STRVAR(posix_wait4__doc__
,
5858 "wait4(pid, options) -> (pid, status, rusage)\n\n\
5859 Wait for completion of a given child process.");
5862 posix_wait4(PyObject
*self
, PyObject
*args
)
5868 WAIT_STATUS_INT(status
) = 0;
5870 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:wait4", &pid
, &options
))
5873 Py_BEGIN_ALLOW_THREADS
5874 pid
= wait4(pid
, &status
, options
, &ru
);
5875 Py_END_ALLOW_THREADS
5877 return wait_helper(pid
, WAIT_STATUS_INT(status
), &ru
);
5879 #endif /* HAVE_WAIT4 */
5882 PyDoc_STRVAR(posix_waitpid__doc__
,
5883 "waitpid(pid, options) -> (pid, status)\n\n\
5884 Wait for completion of a given child process.");
5887 posix_waitpid(PyObject
*self
, PyObject
*args
)
5892 WAIT_STATUS_INT(status
) = 0;
5894 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:waitpid", &pid
, &options
))
5896 Py_BEGIN_ALLOW_THREADS
5897 pid
= waitpid(pid
, &status
, options
);
5898 Py_END_ALLOW_THREADS
5900 return posix_error();
5902 return Py_BuildValue("Ni", PyLong_FromPid(pid
), WAIT_STATUS_INT(status
));
5905 #elif defined(HAVE_CWAIT)
5907 /* MS C has a variant of waitpid() that's usable for most purposes. */
5908 PyDoc_STRVAR(posix_waitpid__doc__
,
5909 "waitpid(pid, options) -> (pid, status << 8)\n\n"
5910 "Wait for completion of a given process. options is ignored on Windows.");
5913 posix_waitpid(PyObject
*self
, PyObject
*args
)
5916 int status
, options
;
5918 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:waitpid", &pid
, &options
))
5920 Py_BEGIN_ALLOW_THREADS
5921 pid
= _cwait(&status
, pid
, options
);
5922 Py_END_ALLOW_THREADS
5924 return posix_error();
5926 /* shift the status left a byte so this is more like the POSIX waitpid */
5927 return Py_BuildValue("Ni", PyLong_FromPid(pid
), status
<< 8);
5929 #endif /* HAVE_WAITPID || HAVE_CWAIT */
5932 PyDoc_STRVAR(posix_wait__doc__
,
5933 "wait() -> (pid, status)\n\n\
5934 Wait for completion of a child process.");
5937 posix_wait(PyObject
*self
, PyObject
*noargs
)
5941 WAIT_STATUS_INT(status
) = 0;
5943 Py_BEGIN_ALLOW_THREADS
5944 pid
= wait(&status
);
5945 Py_END_ALLOW_THREADS
5947 return posix_error();
5949 return Py_BuildValue("Ni", PyLong_FromPid(pid
), WAIT_STATUS_INT(status
));
5954 PyDoc_STRVAR(posix_lstat__doc__
,
5955 "lstat(path) -> stat result\n\n\
5956 Like stat(path), but do not follow symbolic links.");
5959 posix_lstat(PyObject
*self
, PyObject
*args
)
5962 return posix_do_stat(self
, args
, "et:lstat", lstat
, NULL
, NULL
);
5963 #else /* !HAVE_LSTAT */
5965 return posix_do_stat(self
, args
, "et:lstat", STAT
, "U:lstat", win32_wstat
);
5967 return posix_do_stat(self
, args
, "et:lstat", STAT
, NULL
, NULL
);
5969 #endif /* !HAVE_LSTAT */
5973 #ifdef HAVE_READLINK
5974 PyDoc_STRVAR(posix_readlink__doc__
,
5975 "readlink(path) -> path\n\n\
5976 Return a string representing the path to which the symbolic link points.");
5979 posix_readlink(PyObject
*self
, PyObject
*args
)
5982 char buf
[MAXPATHLEN
];
5985 #ifdef Py_USING_UNICODE
5986 int arg_is_unicode
= 0;
5989 if (!PyArg_ParseTuple(args
, "et:readlink",
5990 Py_FileSystemDefaultEncoding
, &path
))
5992 #ifdef Py_USING_UNICODE
5993 v
= PySequence_GetItem(args
, 0);
5999 if (PyUnicode_Check(v
)) {
6005 Py_BEGIN_ALLOW_THREADS
6006 n
= readlink(path
, buf
, (int) sizeof buf
);
6007 Py_END_ALLOW_THREADS
6009 return posix_error_with_allocated_filename(path
);
6012 v
= PyString_FromStringAndSize(buf
, n
);
6013 #ifdef Py_USING_UNICODE
6014 if (arg_is_unicode
) {
6017 w
= PyUnicode_FromEncodedObject(v
,
6018 Py_FileSystemDefaultEncoding
,
6025 /* fall back to the original byte string, as
6026 discussed in patch #683592 */
6033 #endif /* HAVE_READLINK */
6037 PyDoc_STRVAR(posix_symlink__doc__
,
6038 "symlink(src, dst)\n\n\
6039 Create a symbolic link pointing to src named dst.");
6042 posix_symlink(PyObject
*self
, PyObject
*args
)
6044 return posix_2str(args
, "etet:symlink", symlink
);
6046 #endif /* HAVE_SYMLINK */
6050 #if defined(PYCC_VACPP) && defined(PYOS_OS2)
6056 Py_BEGIN_ALLOW_THREADS
6057 DosQuerySysInfo(QSV_MS_COUNT
, QSV_MS_COUNT
, &value
, sizeof(value
));
6058 Py_END_ALLOW_THREADS
6064 posix_times(PyObject
*self
, PyObject
*noargs
)
6066 /* Currently Only Uptime is Provided -- Others Later */
6067 return Py_BuildValue("ddddd",
6068 (double)0 /* t.tms_utime / HZ */,
6069 (double)0 /* t.tms_stime / HZ */,
6070 (double)0 /* t.tms_cutime / HZ */,
6071 (double)0 /* t.tms_cstime / HZ */,
6072 (double)system_uptime() / 1000);
6075 #define NEED_TICKS_PER_SECOND
6076 static long ticks_per_second
= -1;
6078 posix_times(PyObject
*self
, PyObject
*noargs
)
6084 if (c
== (clock_t) -1)
6085 return posix_error();
6086 return Py_BuildValue("ddddd",
6087 (double)t
.tms_utime
/ ticks_per_second
,
6088 (double)t
.tms_stime
/ ticks_per_second
,
6089 (double)t
.tms_cutime
/ ticks_per_second
,
6090 (double)t
.tms_cstime
/ ticks_per_second
,
6091 (double)c
/ ticks_per_second
);
6093 #endif /* not OS2 */
6094 #endif /* HAVE_TIMES */
6098 #define HAVE_TIMES /* so the method table will pick it up */
6100 posix_times(PyObject
*self
, PyObject
*noargs
)
6102 FILETIME create
, exit
, kernel
, user
;
6104 hProc
= GetCurrentProcess();
6105 GetProcessTimes(hProc
, &create
, &exit
, &kernel
, &user
);
6106 /* The fields of a FILETIME structure are the hi and lo part
6107 of a 64-bit value expressed in 100 nanosecond units.
6108 1e7 is one second in such units; 1e-7 the inverse.
6109 429.4967296 is 2**32 / 1e7 or 2**32 * 1e-7.
6111 return Py_BuildValue(
6113 (double)(user
.dwHighDateTime
*429.4967296 +
6114 user
.dwLowDateTime
*1e-7),
6115 (double)(kernel
.dwHighDateTime
*429.4967296 +
6116 kernel
.dwLowDateTime
*1e-7),
6121 #endif /* MS_WINDOWS */
6124 PyDoc_STRVAR(posix_times__doc__
,
6125 "times() -> (utime, stime, cutime, cstime, elapsed_time)\n\n\
6126 Return a tuple of floating point numbers indicating process times.");
6131 PyDoc_STRVAR(posix_getsid__doc__
,
6132 "getsid(pid) -> sid\n\n\
6133 Call the system call getsid().");
6136 posix_getsid(PyObject
*self
, PyObject
*args
)
6140 if (!PyArg_ParseTuple(args
, PARSE_PID
":getsid", &pid
))
6144 return posix_error();
6145 return PyInt_FromLong((long)sid
);
6147 #endif /* HAVE_GETSID */
6151 PyDoc_STRVAR(posix_setsid__doc__
,
6153 Call the system call setsid().");
6156 posix_setsid(PyObject
*self
, PyObject
*noargs
)
6159 return posix_error();
6163 #endif /* HAVE_SETSID */
6166 PyDoc_STRVAR(posix_setpgid__doc__
,
6167 "setpgid(pid, pgrp)\n\n\
6168 Call the system call setpgid().");
6171 posix_setpgid(PyObject
*self
, PyObject
*args
)
6175 if (!PyArg_ParseTuple(args
, PARSE_PID
"i:setpgid", &pid
, &pgrp
))
6177 if (setpgid(pid
, pgrp
) < 0)
6178 return posix_error();
6182 #endif /* HAVE_SETPGID */
6185 #ifdef HAVE_TCGETPGRP
6186 PyDoc_STRVAR(posix_tcgetpgrp__doc__
,
6187 "tcgetpgrp(fd) -> pgid\n\n\
6188 Return the process group associated with the terminal given by a fd.");
6191 posix_tcgetpgrp(PyObject
*self
, PyObject
*args
)
6195 if (!PyArg_ParseTuple(args
, "i:tcgetpgrp", &fd
))
6197 pgid
= tcgetpgrp(fd
);
6199 return posix_error();
6200 return PyLong_FromPid(pgid
);
6202 #endif /* HAVE_TCGETPGRP */
6205 #ifdef HAVE_TCSETPGRP
6206 PyDoc_STRVAR(posix_tcsetpgrp__doc__
,
6207 "tcsetpgrp(fd, pgid)\n\n\
6208 Set the process group associated with the terminal given by a fd.");
6211 posix_tcsetpgrp(PyObject
*self
, PyObject
*args
)
6215 if (!PyArg_ParseTuple(args
, "i" PARSE_PID
":tcsetpgrp", &fd
, &pgid
))
6217 if (tcsetpgrp(fd
, pgid
) < 0)
6218 return posix_error();
6222 #endif /* HAVE_TCSETPGRP */
6224 /* Functions acting on file descriptors */
6226 PyDoc_STRVAR(posix_open__doc__
,
6227 "open(filename, flag [, mode=0777]) -> fd\n\n\
6228 Open a file (for low level IO).");
6231 posix_open(PyObject
*self
, PyObject
*args
)
6239 PyUnicodeObject
*po
;
6240 if (PyArg_ParseTuple(args
, "Ui|i:mkdir", &po
, &flag
, &mode
)) {
6241 Py_BEGIN_ALLOW_THREADS
6242 /* PyUnicode_AS_UNICODE OK without thread
6243 lock as it is a simple dereference. */
6244 fd
= _wopen(PyUnicode_AS_UNICODE(po
), flag
, mode
);
6245 Py_END_ALLOW_THREADS
6247 return posix_error();
6248 return PyInt_FromLong((long)fd
);
6250 /* Drop the argument parsing error as narrow strings
6255 if (!PyArg_ParseTuple(args
, "eti|i",
6256 Py_FileSystemDefaultEncoding
, &file
,
6260 Py_BEGIN_ALLOW_THREADS
6261 fd
= open(file
, flag
, mode
);
6262 Py_END_ALLOW_THREADS
6264 return posix_error_with_allocated_filename(file
);
6266 return PyInt_FromLong((long)fd
);
6270 PyDoc_STRVAR(posix_close__doc__
,
6272 Close a file descriptor (for low level IO).");
6275 posix_close(PyObject
*self
, PyObject
*args
)
6278 if (!PyArg_ParseTuple(args
, "i:close", &fd
))
6280 if (!_PyVerify_fd(fd
))
6281 return posix_error();
6282 Py_BEGIN_ALLOW_THREADS
6284 Py_END_ALLOW_THREADS
6286 return posix_error();
6292 PyDoc_STRVAR(posix_closerange__doc__
,
6293 "closerange(fd_low, fd_high)\n\n\
6294 Closes all file descriptors in [fd_low, fd_high), ignoring errors.");
6297 posix_closerange(PyObject
*self
, PyObject
*args
)
6299 int fd_from
, fd_to
, i
;
6300 if (!PyArg_ParseTuple(args
, "ii:closerange", &fd_from
, &fd_to
))
6302 Py_BEGIN_ALLOW_THREADS
6303 for (i
= fd_from
; i
< fd_to
; i
++)
6304 if (_PyVerify_fd(i
))
6306 Py_END_ALLOW_THREADS
6311 PyDoc_STRVAR(posix_dup__doc__
,
6312 "dup(fd) -> fd2\n\n\
6313 Return a duplicate of a file descriptor.");
6316 posix_dup(PyObject
*self
, PyObject
*args
)
6319 if (!PyArg_ParseTuple(args
, "i:dup", &fd
))
6321 if (!_PyVerify_fd(fd
))
6322 return posix_error();
6323 Py_BEGIN_ALLOW_THREADS
6325 Py_END_ALLOW_THREADS
6327 return posix_error();
6328 return PyInt_FromLong((long)fd
);
6332 PyDoc_STRVAR(posix_dup2__doc__
,
6333 "dup2(old_fd, new_fd)\n\n\
6334 Duplicate file descriptor.");
6337 posix_dup2(PyObject
*self
, PyObject
*args
)
6340 if (!PyArg_ParseTuple(args
, "ii:dup2", &fd
, &fd2
))
6342 if (!_PyVerify_fd_dup2(fd
, fd2
))
6343 return posix_error();
6344 Py_BEGIN_ALLOW_THREADS
6345 res
= dup2(fd
, fd2
);
6346 Py_END_ALLOW_THREADS
6348 return posix_error();
6354 PyDoc_STRVAR(posix_lseek__doc__
,
6355 "lseek(fd, pos, how) -> newpos\n\n\
6356 Set the current position of a file descriptor.");
6359 posix_lseek(PyObject
*self
, PyObject
*args
)
6362 #if defined(MS_WIN64) || defined(MS_WINDOWS)
6363 PY_LONG_LONG pos
, res
;
6368 if (!PyArg_ParseTuple(args
, "iOi:lseek", &fd
, &posobj
, &how
))
6371 /* Turn 0, 1, 2 into SEEK_{SET,CUR,END} */
6373 case 0: how
= SEEK_SET
; break;
6374 case 1: how
= SEEK_CUR
; break;
6375 case 2: how
= SEEK_END
; break;
6377 #endif /* SEEK_END */
6379 #if !defined(HAVE_LARGEFILE_SUPPORT)
6380 pos
= PyInt_AsLong(posobj
);
6382 pos
= PyLong_Check(posobj
) ?
6383 PyLong_AsLongLong(posobj
) : PyInt_AsLong(posobj
);
6385 if (PyErr_Occurred())
6388 if (!_PyVerify_fd(fd
))
6389 return posix_error();
6390 Py_BEGIN_ALLOW_THREADS
6391 #if defined(MS_WIN64) || defined(MS_WINDOWS)
6392 res
= _lseeki64(fd
, pos
, how
);
6394 res
= lseek(fd
, pos
, how
);
6396 Py_END_ALLOW_THREADS
6398 return posix_error();
6400 #if !defined(HAVE_LARGEFILE_SUPPORT)
6401 return PyInt_FromLong(res
);
6403 return PyLong_FromLongLong(res
);
6408 PyDoc_STRVAR(posix_read__doc__
,
6409 "read(fd, buffersize) -> string\n\n\
6410 Read a file descriptor.");
6413 posix_read(PyObject
*self
, PyObject
*args
)
6417 if (!PyArg_ParseTuple(args
, "ii:read", &fd
, &size
))
6421 return posix_error();
6423 buffer
= PyString_FromStringAndSize((char *)NULL
, size
);
6426 if (!_PyVerify_fd(fd
))
6427 return posix_error();
6428 Py_BEGIN_ALLOW_THREADS
6429 n
= read(fd
, PyString_AsString(buffer
), size
);
6430 Py_END_ALLOW_THREADS
6433 return posix_error();
6436 _PyString_Resize(&buffer
, n
);
6441 PyDoc_STRVAR(posix_write__doc__
,
6442 "write(fd, string) -> byteswritten\n\n\
6443 Write a string to a file descriptor.");
6446 posix_write(PyObject
*self
, PyObject
*args
)
6452 if (!PyArg_ParseTuple(args
, "is*:write", &fd
, &pbuf
))
6454 if (!_PyVerify_fd(fd
))
6455 return posix_error();
6456 Py_BEGIN_ALLOW_THREADS
6457 size
= write(fd
, pbuf
.buf
, (size_t)pbuf
.len
);
6458 Py_END_ALLOW_THREADS
6459 PyBuffer_Release(&pbuf
);
6461 return posix_error();
6462 return PyInt_FromSsize_t(size
);
6466 PyDoc_STRVAR(posix_fstat__doc__
,
6467 "fstat(fd) -> stat result\n\n\
6468 Like stat(), but for an open file descriptor.");
6471 posix_fstat(PyObject
*self
, PyObject
*args
)
6476 if (!PyArg_ParseTuple(args
, "i:fstat", &fd
))
6479 /* on OpenVMS we must ensure that all bytes are written to the file */
6482 if (!_PyVerify_fd(fd
))
6483 return posix_error();
6484 Py_BEGIN_ALLOW_THREADS
6485 res
= FSTAT(fd
, &st
);
6486 Py_END_ALLOW_THREADS
6489 return win32_error("fstat", NULL
);
6491 return posix_error();
6495 return _pystat_fromstructstat(&st
);
6499 PyDoc_STRVAR(posix_fdopen__doc__
,
6500 "fdopen(fd [, mode='r' [, bufsize]]) -> file_object\n\n\
6501 Return an open file object connected to a file descriptor.");
6504 posix_fdopen(PyObject
*self
, PyObject
*args
)
6507 char *orgmode
= "r";
6512 if (!PyArg_ParseTuple(args
, "i|si", &fd
, &orgmode
, &bufsize
))
6515 /* Sanitize mode. See fileobject.c */
6516 mode
= PyMem_MALLOC(strlen(orgmode
)+3);
6521 strcpy(mode
, orgmode
);
6522 if (_PyFile_SanitizeMode(mode
)) {
6526 if (!_PyVerify_fd(fd
))
6527 return posix_error();
6528 Py_BEGIN_ALLOW_THREADS
6529 #if !defined(MS_WINDOWS) && defined(HAVE_FCNTL_H)
6530 if (mode
[0] == 'a') {
6531 /* try to make sure the O_APPEND flag is set */
6533 flags
= fcntl(fd
, F_GETFL
);
6535 fcntl(fd
, F_SETFL
, flags
| O_APPEND
);
6536 fp
= fdopen(fd
, mode
);
6537 if (fp
== NULL
&& flags
!= -1)
6538 /* restore old mode if fdopen failed */
6539 fcntl(fd
, F_SETFL
, flags
);
6541 fp
= fdopen(fd
, mode
);
6544 fp
= fdopen(fd
, mode
);
6546 Py_END_ALLOW_THREADS
6549 return posix_error();
6550 f
= PyFile_FromFile(fp
, "<fdopen>", orgmode
, fclose
);
6552 PyFile_SetBufSize(f
, bufsize
);
6556 PyDoc_STRVAR(posix_isatty__doc__
,
6557 "isatty(fd) -> bool\n\n\
6558 Return True if the file descriptor 'fd' is an open file descriptor\n\
6559 connected to the slave end of a terminal.");
6562 posix_isatty(PyObject
*self
, PyObject
*args
)
6565 if (!PyArg_ParseTuple(args
, "i:isatty", &fd
))
6567 if (!_PyVerify_fd(fd
))
6568 return PyBool_FromLong(0);
6569 return PyBool_FromLong(isatty(fd
));
6573 PyDoc_STRVAR(posix_pipe__doc__
,
6574 "pipe() -> (read_end, write_end)\n\n\
6578 posix_pipe(PyObject
*self
, PyObject
*noargs
)
6580 #if defined(PYOS_OS2)
6584 Py_BEGIN_ALLOW_THREADS
6585 rc
= DosCreatePipe( &read
, &write
, 4096);
6586 Py_END_ALLOW_THREADS
6588 return os2_error(rc
);
6590 return Py_BuildValue("(ii)", read
, write
);
6592 #if !defined(MS_WINDOWS)
6595 Py_BEGIN_ALLOW_THREADS
6597 Py_END_ALLOW_THREADS
6599 return posix_error();
6600 return Py_BuildValue("(ii)", fds
[0], fds
[1]);
6601 #else /* MS_WINDOWS */
6603 int read_fd
, write_fd
;
6605 Py_BEGIN_ALLOW_THREADS
6606 ok
= CreatePipe(&read
, &write
, NULL
, 0);
6607 Py_END_ALLOW_THREADS
6609 return win32_error("CreatePipe", NULL
);
6610 read_fd
= _open_osfhandle((Py_intptr_t
)read
, 0);
6611 write_fd
= _open_osfhandle((Py_intptr_t
)write
, 1);
6612 return Py_BuildValue("(ii)", read_fd
, write_fd
);
6613 #endif /* MS_WINDOWS */
6616 #endif /* HAVE_PIPE */
6620 PyDoc_STRVAR(posix_mkfifo__doc__
,
6621 "mkfifo(filename [, mode=0666])\n\n\
6622 Create a FIFO (a POSIX named pipe).");
6625 posix_mkfifo(PyObject
*self
, PyObject
*args
)
6630 if (!PyArg_ParseTuple(args
, "s|i:mkfifo", &filename
, &mode
))
6632 Py_BEGIN_ALLOW_THREADS
6633 res
= mkfifo(filename
, mode
);
6634 Py_END_ALLOW_THREADS
6636 return posix_error();
6643 #if defined(HAVE_MKNOD) && defined(HAVE_MAKEDEV)
6644 PyDoc_STRVAR(posix_mknod__doc__
,
6645 "mknod(filename [, mode=0600, device])\n\n\
6646 Create a filesystem node (file, device special file or named pipe)\n\
6647 named filename. mode specifies both the permissions to use and the\n\
6648 type of node to be created, being combined (bitwise OR) with one of\n\
6649 S_IFREG, S_IFCHR, S_IFBLK, and S_IFIFO. For S_IFCHR and S_IFBLK,\n\
6650 device defines the newly created device special file (probably using\n\
6651 os.makedev()), otherwise it is ignored.");
6655 posix_mknod(PyObject
*self
, PyObject
*args
)
6661 if (!PyArg_ParseTuple(args
, "s|ii:mknod", &filename
, &mode
, &device
))
6663 Py_BEGIN_ALLOW_THREADS
6664 res
= mknod(filename
, mode
, device
);
6665 Py_END_ALLOW_THREADS
6667 return posix_error();
6673 #ifdef HAVE_DEVICE_MACROS
6674 PyDoc_STRVAR(posix_major__doc__
,
6675 "major(device) -> major number\n\
6676 Extracts a device major number from a raw device number.");
6679 posix_major(PyObject
*self
, PyObject
*args
)
6682 if (!PyArg_ParseTuple(args
, "i:major", &device
))
6684 return PyInt_FromLong((long)major(device
));
6687 PyDoc_STRVAR(posix_minor__doc__
,
6688 "minor(device) -> minor number\n\
6689 Extracts a device minor number from a raw device number.");
6692 posix_minor(PyObject
*self
, PyObject
*args
)
6695 if (!PyArg_ParseTuple(args
, "i:minor", &device
))
6697 return PyInt_FromLong((long)minor(device
));
6700 PyDoc_STRVAR(posix_makedev__doc__
,
6701 "makedev(major, minor) -> device number\n\
6702 Composes a raw device number from the major and minor device numbers.");
6705 posix_makedev(PyObject
*self
, PyObject
*args
)
6708 if (!PyArg_ParseTuple(args
, "ii:makedev", &major
, &minor
))
6710 return PyInt_FromLong((long)makedev(major
, minor
));
6712 #endif /* device macros */
6715 #ifdef HAVE_FTRUNCATE
6716 PyDoc_STRVAR(posix_ftruncate__doc__
,
6717 "ftruncate(fd, length)\n\n\
6718 Truncate a file to a specified length.");
6721 posix_ftruncate(PyObject
*self
, PyObject
*args
)
6728 if (!PyArg_ParseTuple(args
, "iO:ftruncate", &fd
, &lenobj
))
6731 #if !defined(HAVE_LARGEFILE_SUPPORT)
6732 length
= PyInt_AsLong(lenobj
);
6734 length
= PyLong_Check(lenobj
) ?
6735 PyLong_AsLongLong(lenobj
) : PyInt_AsLong(lenobj
);
6737 if (PyErr_Occurred())
6740 Py_BEGIN_ALLOW_THREADS
6741 res
= ftruncate(fd
, length
);
6742 Py_END_ALLOW_THREADS
6744 return posix_error();
6751 PyDoc_STRVAR(posix_putenv__doc__
,
6752 "putenv(key, value)\n\n\
6753 Change or add an environment variable.");
6755 /* Save putenv() parameters as values here, so we can collect them when they
6756 * get re-set with another call for the same key. */
6757 static PyObject
*posix_putenv_garbage
;
6760 posix_putenv(PyObject
*self
, PyObject
*args
)
6767 if (!PyArg_ParseTuple(args
, "ss:putenv", &s1
, &s2
))
6770 #if defined(PYOS_OS2)
6771 if (stricmp(s1
, "BEGINLIBPATH") == 0) {
6774 rc
= DosSetExtLIBPATH(s2
, BEGIN_LIBPATH
);
6776 return os2_error(rc
);
6778 } else if (stricmp(s1
, "ENDLIBPATH") == 0) {
6781 rc
= DosSetExtLIBPATH(s2
, END_LIBPATH
);
6783 return os2_error(rc
);
6787 /* XXX This can leak memory -- not easy to fix :-( */
6788 len
= strlen(s1
) + strlen(s2
) + 2;
6789 /* len includes space for a trailing \0; the size arg to
6790 PyString_FromStringAndSize does not count that */
6791 newstr
= PyString_FromStringAndSize(NULL
, (int)len
- 1);
6793 return PyErr_NoMemory();
6794 newenv
= PyString_AS_STRING(newstr
);
6795 PyOS_snprintf(newenv
, len
, "%s=%s", s1
, s2
);
6796 if (putenv(newenv
)) {
6801 /* Install the first arg and newstr in posix_putenv_garbage;
6802 * this will cause previous value to be collected. This has to
6803 * happen after the real putenv() call because the old value
6804 * was still accessible until then. */
6805 if (PyDict_SetItem(posix_putenv_garbage
,
6806 PyTuple_GET_ITEM(args
, 0), newstr
)) {
6807 /* really not much we can do; just leak */
6814 #if defined(PYOS_OS2)
6822 #ifdef HAVE_UNSETENV
6823 PyDoc_STRVAR(posix_unsetenv__doc__
,
6825 Delete an environment variable.");
6828 posix_unsetenv(PyObject
*self
, PyObject
*args
)
6832 if (!PyArg_ParseTuple(args
, "s:unsetenv", &s1
))
6837 /* Remove the key from posix_putenv_garbage;
6838 * this will cause it to be collected. This has to
6839 * happen after the real unsetenv() call because the
6840 * old value was still accessible until then.
6842 if (PyDict_DelItem(posix_putenv_garbage
,
6843 PyTuple_GET_ITEM(args
, 0))) {
6844 /* really not much we can do; just leak */
6851 #endif /* unsetenv */
6853 PyDoc_STRVAR(posix_strerror__doc__
,
6854 "strerror(code) -> string\n\n\
6855 Translate an error code to a message string.");
6858 posix_strerror(PyObject
*self
, PyObject
*args
)
6862 if (!PyArg_ParseTuple(args
, "i:strerror", &code
))
6864 message
= strerror(code
);
6865 if (message
== NULL
) {
6866 PyErr_SetString(PyExc_ValueError
,
6867 "strerror() argument out of range");
6870 return PyString_FromString(message
);
6874 #ifdef HAVE_SYS_WAIT_H
6877 PyDoc_STRVAR(posix_WCOREDUMP__doc__
,
6878 "WCOREDUMP(status) -> bool\n\n\
6879 Return True if the process returning 'status' was dumped to a core file.");
6882 posix_WCOREDUMP(PyObject
*self
, PyObject
*args
)
6885 WAIT_STATUS_INT(status
) = 0;
6887 if (!PyArg_ParseTuple(args
, "i:WCOREDUMP", &WAIT_STATUS_INT(status
)))
6890 return PyBool_FromLong(WCOREDUMP(status
));
6892 #endif /* WCOREDUMP */
6895 PyDoc_STRVAR(posix_WIFCONTINUED__doc__
,
6896 "WIFCONTINUED(status) -> bool\n\n\
6897 Return True if the process returning 'status' was continued from a\n\
6898 job control stop.");
6901 posix_WIFCONTINUED(PyObject
*self
, PyObject
*args
)
6904 WAIT_STATUS_INT(status
) = 0;
6906 if (!PyArg_ParseTuple(args
, "i:WCONTINUED", &WAIT_STATUS_INT(status
)))
6909 return PyBool_FromLong(WIFCONTINUED(status
));
6911 #endif /* WIFCONTINUED */
6914 PyDoc_STRVAR(posix_WIFSTOPPED__doc__
,
6915 "WIFSTOPPED(status) -> bool\n\n\
6916 Return True if the process returning 'status' was stopped.");
6919 posix_WIFSTOPPED(PyObject
*self
, PyObject
*args
)
6922 WAIT_STATUS_INT(status
) = 0;
6924 if (!PyArg_ParseTuple(args
, "i:WIFSTOPPED", &WAIT_STATUS_INT(status
)))
6927 return PyBool_FromLong(WIFSTOPPED(status
));
6929 #endif /* WIFSTOPPED */
6932 PyDoc_STRVAR(posix_WIFSIGNALED__doc__
,
6933 "WIFSIGNALED(status) -> bool\n\n\
6934 Return True if the process returning 'status' was terminated by a signal.");
6937 posix_WIFSIGNALED(PyObject
*self
, PyObject
*args
)
6940 WAIT_STATUS_INT(status
) = 0;
6942 if (!PyArg_ParseTuple(args
, "i:WIFSIGNALED", &WAIT_STATUS_INT(status
)))
6945 return PyBool_FromLong(WIFSIGNALED(status
));
6947 #endif /* WIFSIGNALED */
6950 PyDoc_STRVAR(posix_WIFEXITED__doc__
,
6951 "WIFEXITED(status) -> bool\n\n\
6952 Return true if the process returning 'status' exited using the exit()\n\
6956 posix_WIFEXITED(PyObject
*self
, PyObject
*args
)
6959 WAIT_STATUS_INT(status
) = 0;
6961 if (!PyArg_ParseTuple(args
, "i:WIFEXITED", &WAIT_STATUS_INT(status
)))
6964 return PyBool_FromLong(WIFEXITED(status
));
6966 #endif /* WIFEXITED */
6969 PyDoc_STRVAR(posix_WEXITSTATUS__doc__
,
6970 "WEXITSTATUS(status) -> integer\n\n\
6971 Return the process return code from 'status'.");
6974 posix_WEXITSTATUS(PyObject
*self
, PyObject
*args
)
6977 WAIT_STATUS_INT(status
) = 0;
6979 if (!PyArg_ParseTuple(args
, "i:WEXITSTATUS", &WAIT_STATUS_INT(status
)))
6982 return Py_BuildValue("i", WEXITSTATUS(status
));
6984 #endif /* WEXITSTATUS */
6987 PyDoc_STRVAR(posix_WTERMSIG__doc__
,
6988 "WTERMSIG(status) -> integer\n\n\
6989 Return the signal that terminated the process that provided the 'status'\n\
6993 posix_WTERMSIG(PyObject
*self
, PyObject
*args
)
6996 WAIT_STATUS_INT(status
) = 0;
6998 if (!PyArg_ParseTuple(args
, "i:WTERMSIG", &WAIT_STATUS_INT(status
)))
7001 return Py_BuildValue("i", WTERMSIG(status
));
7003 #endif /* WTERMSIG */
7006 PyDoc_STRVAR(posix_WSTOPSIG__doc__
,
7007 "WSTOPSIG(status) -> integer\n\n\
7008 Return the signal that stopped the process that provided\n\
7009 the 'status' value.");
7012 posix_WSTOPSIG(PyObject
*self
, PyObject
*args
)
7015 WAIT_STATUS_INT(status
) = 0;
7017 if (!PyArg_ParseTuple(args
, "i:WSTOPSIG", &WAIT_STATUS_INT(status
)))
7020 return Py_BuildValue("i", WSTOPSIG(status
));
7022 #endif /* WSTOPSIG */
7024 #endif /* HAVE_SYS_WAIT_H */
7027 #if defined(HAVE_FSTATVFS) && defined(HAVE_SYS_STATVFS_H)
7029 /* SCO OpenServer 5.0 and later requires _SVID3 before it reveals the
7030 needed definitions in sys/statvfs.h */
7033 #include <sys/statvfs.h>
7036 _pystatvfs_fromstructstatvfs(struct statvfs st
) {
7037 PyObject
*v
= PyStructSequence_New(&StatVFSResultType
);
7041 #if !defined(HAVE_LARGEFILE_SUPPORT)
7042 PyStructSequence_SET_ITEM(v
, 0, PyInt_FromLong((long) st
.f_bsize
));
7043 PyStructSequence_SET_ITEM(v
, 1, PyInt_FromLong((long) st
.f_frsize
));
7044 PyStructSequence_SET_ITEM(v
, 2, PyInt_FromLong((long) st
.f_blocks
));
7045 PyStructSequence_SET_ITEM(v
, 3, PyInt_FromLong((long) st
.f_bfree
));
7046 PyStructSequence_SET_ITEM(v
, 4, PyInt_FromLong((long) st
.f_bavail
));
7047 PyStructSequence_SET_ITEM(v
, 5, PyInt_FromLong((long) st
.f_files
));
7048 PyStructSequence_SET_ITEM(v
, 6, PyInt_FromLong((long) st
.f_ffree
));
7049 PyStructSequence_SET_ITEM(v
, 7, PyInt_FromLong((long) st
.f_favail
));
7050 PyStructSequence_SET_ITEM(v
, 8, PyInt_FromLong((long) st
.f_flag
));
7051 PyStructSequence_SET_ITEM(v
, 9, PyInt_FromLong((long) st
.f_namemax
));
7053 PyStructSequence_SET_ITEM(v
, 0, PyInt_FromLong((long) st
.f_bsize
));
7054 PyStructSequence_SET_ITEM(v
, 1, PyInt_FromLong((long) st
.f_frsize
));
7055 PyStructSequence_SET_ITEM(v
, 2,
7056 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_blocks
));
7057 PyStructSequence_SET_ITEM(v
, 3,
7058 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_bfree
));
7059 PyStructSequence_SET_ITEM(v
, 4,
7060 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_bavail
));
7061 PyStructSequence_SET_ITEM(v
, 5,
7062 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_files
));
7063 PyStructSequence_SET_ITEM(v
, 6,
7064 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_ffree
));
7065 PyStructSequence_SET_ITEM(v
, 7,
7066 PyLong_FromLongLong((PY_LONG_LONG
) st
.f_favail
));
7067 PyStructSequence_SET_ITEM(v
, 8, PyInt_FromLong((long) st
.f_flag
));
7068 PyStructSequence_SET_ITEM(v
, 9, PyInt_FromLong((long) st
.f_namemax
));
7074 PyDoc_STRVAR(posix_fstatvfs__doc__
,
7075 "fstatvfs(fd) -> statvfs result\n\n\
7076 Perform an fstatvfs system call on the given fd.");
7079 posix_fstatvfs(PyObject
*self
, PyObject
*args
)
7084 if (!PyArg_ParseTuple(args
, "i:fstatvfs", &fd
))
7086 Py_BEGIN_ALLOW_THREADS
7087 res
= fstatvfs(fd
, &st
);
7088 Py_END_ALLOW_THREADS
7090 return posix_error();
7092 return _pystatvfs_fromstructstatvfs(st
);
7094 #endif /* HAVE_FSTATVFS && HAVE_SYS_STATVFS_H */
7097 #if defined(HAVE_STATVFS) && defined(HAVE_SYS_STATVFS_H)
7098 #include <sys/statvfs.h>
7100 PyDoc_STRVAR(posix_statvfs__doc__
,
7101 "statvfs(path) -> statvfs result\n\n\
7102 Perform a statvfs system call on the given path.");
7105 posix_statvfs(PyObject
*self
, PyObject
*args
)
7110 if (!PyArg_ParseTuple(args
, "s:statvfs", &path
))
7112 Py_BEGIN_ALLOW_THREADS
7113 res
= statvfs(path
, &st
);
7114 Py_END_ALLOW_THREADS
7116 return posix_error_with_filename(path
);
7118 return _pystatvfs_fromstructstatvfs(st
);
7120 #endif /* HAVE_STATVFS */
7124 PyDoc_STRVAR(posix_tempnam__doc__
,
7125 "tempnam([dir[, prefix]]) -> string\n\n\
7126 Return a unique name for a temporary file.\n\
7127 The directory and a prefix may be specified as strings; they may be omitted\n\
7128 or None if not needed.");
7131 posix_tempnam(PyObject
*self
, PyObject
*args
)
7133 PyObject
*result
= NULL
;
7138 if (!PyArg_ParseTuple(args
, "|zz:tempnam", &dir
, &pfx
))
7141 if (PyErr_Warn(PyExc_RuntimeWarning
,
7142 "tempnam is a potential security risk to your program") < 0)
7146 name
= _tempnam(dir
, pfx
);
7148 name
= tempnam(dir
, pfx
);
7151 return PyErr_NoMemory();
7152 result
= PyString_FromString(name
);
7160 PyDoc_STRVAR(posix_tmpfile__doc__
,
7161 "tmpfile() -> file object\n\n\
7162 Create a temporary file with no directory entries.");
7165 posix_tmpfile(PyObject
*self
, PyObject
*noargs
)
7171 return posix_error();
7172 return PyFile_FromFile(fp
, "<tmpfile>", "w+b", fclose
);
7178 PyDoc_STRVAR(posix_tmpnam__doc__
,
7179 "tmpnam() -> string\n\n\
7180 Return a unique name for a temporary file.");
7183 posix_tmpnam(PyObject
*self
, PyObject
*noargs
)
7185 char buffer
[L_tmpnam
];
7188 if (PyErr_Warn(PyExc_RuntimeWarning
,
7189 "tmpnam is a potential security risk to your program") < 0)
7193 name
= tmpnam_r(buffer
);
7195 name
= tmpnam(buffer
);
7198 PyObject
*err
= Py_BuildValue("is", 0,
7200 "unexpected NULL from tmpnam_r"
7202 "unexpected NULL from tmpnam"
7205 PyErr_SetObject(PyExc_OSError
, err
);
7209 return PyString_FromString(buffer
);
7214 /* This is used for fpathconf(), pathconf(), confstr() and sysconf().
7215 * It maps strings representing configuration variable names to
7216 * integer values, allowing those functions to be called with the
7217 * magic names instead of polluting the module's namespace with tons of
7218 * rarely-used constants. There are three separate tables that use
7219 * these definitions.
7221 * This code is always included, even if none of the interfaces that
7222 * need it are included. The #if hackery needed to avoid it would be
7223 * sufficiently pervasive that it's not worth the loss of readability.
7231 conv_confname(PyObject
*arg
, int *valuep
, struct constdef
*table
,
7234 if (PyInt_Check(arg
)) {
7235 *valuep
= PyInt_AS_LONG(arg
);
7238 if (PyString_Check(arg
)) {
7239 /* look up the value in the table using a binary search */
7242 size_t hi
= tablesize
;
7244 char *confname
= PyString_AS_STRING(arg
);
7246 mid
= (lo
+ hi
) / 2;
7247 cmp
= strcmp(confname
, table
[mid
].name
);
7253 *valuep
= table
[mid
].value
;
7257 PyErr_SetString(PyExc_ValueError
, "unrecognized configuration name");
7260 PyErr_SetString(PyExc_TypeError
,
7261 "configuration names must be strings or integers");
7266 #if defined(HAVE_FPATHCONF) || defined(HAVE_PATHCONF)
7267 static struct constdef posix_constants_pathconf
[] = {
7268 #ifdef _PC_ABI_AIO_XFER_MAX
7269 {"PC_ABI_AIO_XFER_MAX", _PC_ABI_AIO_XFER_MAX
},
7271 #ifdef _PC_ABI_ASYNC_IO
7272 {"PC_ABI_ASYNC_IO", _PC_ABI_ASYNC_IO
},
7275 {"PC_ASYNC_IO", _PC_ASYNC_IO
},
7277 #ifdef _PC_CHOWN_RESTRICTED
7278 {"PC_CHOWN_RESTRICTED", _PC_CHOWN_RESTRICTED
},
7280 #ifdef _PC_FILESIZEBITS
7281 {"PC_FILESIZEBITS", _PC_FILESIZEBITS
},
7284 {"PC_LAST", _PC_LAST
},
7287 {"PC_LINK_MAX", _PC_LINK_MAX
},
7289 #ifdef _PC_MAX_CANON
7290 {"PC_MAX_CANON", _PC_MAX_CANON
},
7292 #ifdef _PC_MAX_INPUT
7293 {"PC_MAX_INPUT", _PC_MAX_INPUT
},
7296 {"PC_NAME_MAX", _PC_NAME_MAX
},
7299 {"PC_NO_TRUNC", _PC_NO_TRUNC
},
7302 {"PC_PATH_MAX", _PC_PATH_MAX
},
7305 {"PC_PIPE_BUF", _PC_PIPE_BUF
},
7308 {"PC_PRIO_IO", _PC_PRIO_IO
},
7310 #ifdef _PC_SOCK_MAXBUF
7311 {"PC_SOCK_MAXBUF", _PC_SOCK_MAXBUF
},
7314 {"PC_SYNC_IO", _PC_SYNC_IO
},
7317 {"PC_VDISABLE", _PC_VDISABLE
},
7322 conv_path_confname(PyObject
*arg
, int *valuep
)
7324 return conv_confname(arg
, valuep
, posix_constants_pathconf
,
7325 sizeof(posix_constants_pathconf
)
7326 / sizeof(struct constdef
));
7330 #ifdef HAVE_FPATHCONF
7331 PyDoc_STRVAR(posix_fpathconf__doc__
,
7332 "fpathconf(fd, name) -> integer\n\n\
7333 Return the configuration limit name for the file descriptor fd.\n\
7334 If there is no limit, return -1.");
7337 posix_fpathconf(PyObject
*self
, PyObject
*args
)
7339 PyObject
*result
= NULL
;
7342 if (PyArg_ParseTuple(args
, "iO&:fpathconf", &fd
,
7343 conv_path_confname
, &name
)) {
7347 limit
= fpathconf(fd
, name
);
7348 if (limit
== -1 && errno
!= 0)
7351 result
= PyInt_FromLong(limit
);
7358 #ifdef HAVE_PATHCONF
7359 PyDoc_STRVAR(posix_pathconf__doc__
,
7360 "pathconf(path, name) -> integer\n\n\
7361 Return the configuration limit name for the file or directory path.\n\
7362 If there is no limit, return -1.");
7365 posix_pathconf(PyObject
*self
, PyObject
*args
)
7367 PyObject
*result
= NULL
;
7371 if (PyArg_ParseTuple(args
, "sO&:pathconf", &path
,
7372 conv_path_confname
, &name
)) {
7376 limit
= pathconf(path
, name
);
7377 if (limit
== -1 && errno
!= 0) {
7378 if (errno
== EINVAL
)
7379 /* could be a path or name problem */
7382 posix_error_with_filename(path
);
7385 result
= PyInt_FromLong(limit
);
7392 static struct constdef posix_constants_confstr
[] = {
7393 #ifdef _CS_ARCHITECTURE
7394 {"CS_ARCHITECTURE", _CS_ARCHITECTURE
},
7397 {"CS_HOSTNAME", _CS_HOSTNAME
},
7399 #ifdef _CS_HW_PROVIDER
7400 {"CS_HW_PROVIDER", _CS_HW_PROVIDER
},
7402 #ifdef _CS_HW_SERIAL
7403 {"CS_HW_SERIAL", _CS_HW_SERIAL
},
7405 #ifdef _CS_INITTAB_NAME
7406 {"CS_INITTAB_NAME", _CS_INITTAB_NAME
},
7408 #ifdef _CS_LFS64_CFLAGS
7409 {"CS_LFS64_CFLAGS", _CS_LFS64_CFLAGS
},
7411 #ifdef _CS_LFS64_LDFLAGS
7412 {"CS_LFS64_LDFLAGS", _CS_LFS64_LDFLAGS
},
7414 #ifdef _CS_LFS64_LIBS
7415 {"CS_LFS64_LIBS", _CS_LFS64_LIBS
},
7417 #ifdef _CS_LFS64_LINTFLAGS
7418 {"CS_LFS64_LINTFLAGS", _CS_LFS64_LINTFLAGS
},
7420 #ifdef _CS_LFS_CFLAGS
7421 {"CS_LFS_CFLAGS", _CS_LFS_CFLAGS
},
7423 #ifdef _CS_LFS_LDFLAGS
7424 {"CS_LFS_LDFLAGS", _CS_LFS_LDFLAGS
},
7427 {"CS_LFS_LIBS", _CS_LFS_LIBS
},
7429 #ifdef _CS_LFS_LINTFLAGS
7430 {"CS_LFS_LINTFLAGS", _CS_LFS_LINTFLAGS
},
7433 {"CS_MACHINE", _CS_MACHINE
},
7436 {"CS_PATH", _CS_PATH
},
7439 {"CS_RELEASE", _CS_RELEASE
},
7441 #ifdef _CS_SRPC_DOMAIN
7442 {"CS_SRPC_DOMAIN", _CS_SRPC_DOMAIN
},
7445 {"CS_SYSNAME", _CS_SYSNAME
},
7448 {"CS_VERSION", _CS_VERSION
},
7450 #ifdef _CS_XBS5_ILP32_OFF32_CFLAGS
7451 {"CS_XBS5_ILP32_OFF32_CFLAGS", _CS_XBS5_ILP32_OFF32_CFLAGS
},
7453 #ifdef _CS_XBS5_ILP32_OFF32_LDFLAGS
7454 {"CS_XBS5_ILP32_OFF32_LDFLAGS", _CS_XBS5_ILP32_OFF32_LDFLAGS
},
7456 #ifdef _CS_XBS5_ILP32_OFF32_LIBS
7457 {"CS_XBS5_ILP32_OFF32_LIBS", _CS_XBS5_ILP32_OFF32_LIBS
},
7459 #ifdef _CS_XBS5_ILP32_OFF32_LINTFLAGS
7460 {"CS_XBS5_ILP32_OFF32_LINTFLAGS", _CS_XBS5_ILP32_OFF32_LINTFLAGS
},
7462 #ifdef _CS_XBS5_ILP32_OFFBIG_CFLAGS
7463 {"CS_XBS5_ILP32_OFFBIG_CFLAGS", _CS_XBS5_ILP32_OFFBIG_CFLAGS
},
7465 #ifdef _CS_XBS5_ILP32_OFFBIG_LDFLAGS
7466 {"CS_XBS5_ILP32_OFFBIG_LDFLAGS", _CS_XBS5_ILP32_OFFBIG_LDFLAGS
},
7468 #ifdef _CS_XBS5_ILP32_OFFBIG_LIBS
7469 {"CS_XBS5_ILP32_OFFBIG_LIBS", _CS_XBS5_ILP32_OFFBIG_LIBS
},
7471 #ifdef _CS_XBS5_ILP32_OFFBIG_LINTFLAGS
7472 {"CS_XBS5_ILP32_OFFBIG_LINTFLAGS", _CS_XBS5_ILP32_OFFBIG_LINTFLAGS
},
7474 #ifdef _CS_XBS5_LP64_OFF64_CFLAGS
7475 {"CS_XBS5_LP64_OFF64_CFLAGS", _CS_XBS5_LP64_OFF64_CFLAGS
},
7477 #ifdef _CS_XBS5_LP64_OFF64_LDFLAGS
7478 {"CS_XBS5_LP64_OFF64_LDFLAGS", _CS_XBS5_LP64_OFF64_LDFLAGS
},
7480 #ifdef _CS_XBS5_LP64_OFF64_LIBS
7481 {"CS_XBS5_LP64_OFF64_LIBS", _CS_XBS5_LP64_OFF64_LIBS
},
7483 #ifdef _CS_XBS5_LP64_OFF64_LINTFLAGS
7484 {"CS_XBS5_LP64_OFF64_LINTFLAGS", _CS_XBS5_LP64_OFF64_LINTFLAGS
},
7486 #ifdef _CS_XBS5_LPBIG_OFFBIG_CFLAGS
7487 {"CS_XBS5_LPBIG_OFFBIG_CFLAGS", _CS_XBS5_LPBIG_OFFBIG_CFLAGS
},
7489 #ifdef _CS_XBS5_LPBIG_OFFBIG_LDFLAGS
7490 {"CS_XBS5_LPBIG_OFFBIG_LDFLAGS", _CS_XBS5_LPBIG_OFFBIG_LDFLAGS
},
7492 #ifdef _CS_XBS5_LPBIG_OFFBIG_LIBS
7493 {"CS_XBS5_LPBIG_OFFBIG_LIBS", _CS_XBS5_LPBIG_OFFBIG_LIBS
},
7495 #ifdef _CS_XBS5_LPBIG_OFFBIG_LINTFLAGS
7496 {"CS_XBS5_LPBIG_OFFBIG_LINTFLAGS", _CS_XBS5_LPBIG_OFFBIG_LINTFLAGS
},
7498 #ifdef _MIPS_CS_AVAIL_PROCESSORS
7499 {"MIPS_CS_AVAIL_PROCESSORS", _MIPS_CS_AVAIL_PROCESSORS
},
7501 #ifdef _MIPS_CS_BASE
7502 {"MIPS_CS_BASE", _MIPS_CS_BASE
},
7504 #ifdef _MIPS_CS_HOSTID
7505 {"MIPS_CS_HOSTID", _MIPS_CS_HOSTID
},
7507 #ifdef _MIPS_CS_HW_NAME
7508 {"MIPS_CS_HW_NAME", _MIPS_CS_HW_NAME
},
7510 #ifdef _MIPS_CS_NUM_PROCESSORS
7511 {"MIPS_CS_NUM_PROCESSORS", _MIPS_CS_NUM_PROCESSORS
},
7513 #ifdef _MIPS_CS_OSREL_MAJ
7514 {"MIPS_CS_OSREL_MAJ", _MIPS_CS_OSREL_MAJ
},
7516 #ifdef _MIPS_CS_OSREL_MIN
7517 {"MIPS_CS_OSREL_MIN", _MIPS_CS_OSREL_MIN
},
7519 #ifdef _MIPS_CS_OSREL_PATCH
7520 {"MIPS_CS_OSREL_PATCH", _MIPS_CS_OSREL_PATCH
},
7522 #ifdef _MIPS_CS_OS_NAME
7523 {"MIPS_CS_OS_NAME", _MIPS_CS_OS_NAME
},
7525 #ifdef _MIPS_CS_OS_PROVIDER
7526 {"MIPS_CS_OS_PROVIDER", _MIPS_CS_OS_PROVIDER
},
7528 #ifdef _MIPS_CS_PROCESSORS
7529 {"MIPS_CS_PROCESSORS", _MIPS_CS_PROCESSORS
},
7531 #ifdef _MIPS_CS_SERIAL
7532 {"MIPS_CS_SERIAL", _MIPS_CS_SERIAL
},
7534 #ifdef _MIPS_CS_VENDOR
7535 {"MIPS_CS_VENDOR", _MIPS_CS_VENDOR
},
7540 conv_confstr_confname(PyObject
*arg
, int *valuep
)
7542 return conv_confname(arg
, valuep
, posix_constants_confstr
,
7543 sizeof(posix_constants_confstr
)
7544 / sizeof(struct constdef
));
7547 PyDoc_STRVAR(posix_confstr__doc__
,
7548 "confstr(name) -> string\n\n\
7549 Return a string-valued system configuration variable.");
7552 posix_confstr(PyObject
*self
, PyObject
*args
)
7554 PyObject
*result
= NULL
;
7558 if (PyArg_ParseTuple(args
, "O&:confstr", conv_confstr_confname
, &name
)) {
7562 len
= confstr(name
, buffer
, sizeof(buffer
));
7573 if ((unsigned int)len
>= sizeof(buffer
)) {
7574 result
= PyString_FromStringAndSize(NULL
, len
-1);
7576 confstr(name
, PyString_AS_STRING(result
), len
);
7579 result
= PyString_FromStringAndSize(buffer
, len
-1);
7588 static struct constdef posix_constants_sysconf
[] = {
7589 #ifdef _SC_2_CHAR_TERM
7590 {"SC_2_CHAR_TERM", _SC_2_CHAR_TERM
},
7593 {"SC_2_C_BIND", _SC_2_C_BIND
},
7596 {"SC_2_C_DEV", _SC_2_C_DEV
},
7598 #ifdef _SC_2_C_VERSION
7599 {"SC_2_C_VERSION", _SC_2_C_VERSION
},
7601 #ifdef _SC_2_FORT_DEV
7602 {"SC_2_FORT_DEV", _SC_2_FORT_DEV
},
7604 #ifdef _SC_2_FORT_RUN
7605 {"SC_2_FORT_RUN", _SC_2_FORT_RUN
},
7607 #ifdef _SC_2_LOCALEDEF
7608 {"SC_2_LOCALEDEF", _SC_2_LOCALEDEF
},
7611 {"SC_2_SW_DEV", _SC_2_SW_DEV
},
7614 {"SC_2_UPE", _SC_2_UPE
},
7616 #ifdef _SC_2_VERSION
7617 {"SC_2_VERSION", _SC_2_VERSION
},
7619 #ifdef _SC_ABI_ASYNCHRONOUS_IO
7620 {"SC_ABI_ASYNCHRONOUS_IO", _SC_ABI_ASYNCHRONOUS_IO
},
7623 {"SC_ACL", _SC_ACL
},
7625 #ifdef _SC_AIO_LISTIO_MAX
7626 {"SC_AIO_LISTIO_MAX", _SC_AIO_LISTIO_MAX
},
7629 {"SC_AIO_MAX", _SC_AIO_MAX
},
7631 #ifdef _SC_AIO_PRIO_DELTA_MAX
7632 {"SC_AIO_PRIO_DELTA_MAX", _SC_AIO_PRIO_DELTA_MAX
},
7635 {"SC_ARG_MAX", _SC_ARG_MAX
},
7637 #ifdef _SC_ASYNCHRONOUS_IO
7638 {"SC_ASYNCHRONOUS_IO", _SC_ASYNCHRONOUS_IO
},
7640 #ifdef _SC_ATEXIT_MAX
7641 {"SC_ATEXIT_MAX", _SC_ATEXIT_MAX
},
7644 {"SC_AUDIT", _SC_AUDIT
},
7646 #ifdef _SC_AVPHYS_PAGES
7647 {"SC_AVPHYS_PAGES", _SC_AVPHYS_PAGES
},
7649 #ifdef _SC_BC_BASE_MAX
7650 {"SC_BC_BASE_MAX", _SC_BC_BASE_MAX
},
7652 #ifdef _SC_BC_DIM_MAX
7653 {"SC_BC_DIM_MAX", _SC_BC_DIM_MAX
},
7655 #ifdef _SC_BC_SCALE_MAX
7656 {"SC_BC_SCALE_MAX", _SC_BC_SCALE_MAX
},
7658 #ifdef _SC_BC_STRING_MAX
7659 {"SC_BC_STRING_MAX", _SC_BC_STRING_MAX
},
7662 {"SC_CAP", _SC_CAP
},
7664 #ifdef _SC_CHARCLASS_NAME_MAX
7665 {"SC_CHARCLASS_NAME_MAX", _SC_CHARCLASS_NAME_MAX
},
7668 {"SC_CHAR_BIT", _SC_CHAR_BIT
},
7671 {"SC_CHAR_MAX", _SC_CHAR_MAX
},
7674 {"SC_CHAR_MIN", _SC_CHAR_MIN
},
7676 #ifdef _SC_CHILD_MAX
7677 {"SC_CHILD_MAX", _SC_CHILD_MAX
},
7680 {"SC_CLK_TCK", _SC_CLK_TCK
},
7682 #ifdef _SC_COHER_BLKSZ
7683 {"SC_COHER_BLKSZ", _SC_COHER_BLKSZ
},
7685 #ifdef _SC_COLL_WEIGHTS_MAX
7686 {"SC_COLL_WEIGHTS_MAX", _SC_COLL_WEIGHTS_MAX
},
7688 #ifdef _SC_DCACHE_ASSOC
7689 {"SC_DCACHE_ASSOC", _SC_DCACHE_ASSOC
},
7691 #ifdef _SC_DCACHE_BLKSZ
7692 {"SC_DCACHE_BLKSZ", _SC_DCACHE_BLKSZ
},
7694 #ifdef _SC_DCACHE_LINESZ
7695 {"SC_DCACHE_LINESZ", _SC_DCACHE_LINESZ
},
7697 #ifdef _SC_DCACHE_SZ
7698 {"SC_DCACHE_SZ", _SC_DCACHE_SZ
},
7700 #ifdef _SC_DCACHE_TBLKSZ
7701 {"SC_DCACHE_TBLKSZ", _SC_DCACHE_TBLKSZ
},
7703 #ifdef _SC_DELAYTIMER_MAX
7704 {"SC_DELAYTIMER_MAX", _SC_DELAYTIMER_MAX
},
7706 #ifdef _SC_EQUIV_CLASS_MAX
7707 {"SC_EQUIV_CLASS_MAX", _SC_EQUIV_CLASS_MAX
},
7709 #ifdef _SC_EXPR_NEST_MAX
7710 {"SC_EXPR_NEST_MAX", _SC_EXPR_NEST_MAX
},
7713 {"SC_FSYNC", _SC_FSYNC
},
7715 #ifdef _SC_GETGR_R_SIZE_MAX
7716 {"SC_GETGR_R_SIZE_MAX", _SC_GETGR_R_SIZE_MAX
},
7718 #ifdef _SC_GETPW_R_SIZE_MAX
7719 {"SC_GETPW_R_SIZE_MAX", _SC_GETPW_R_SIZE_MAX
},
7721 #ifdef _SC_ICACHE_ASSOC
7722 {"SC_ICACHE_ASSOC", _SC_ICACHE_ASSOC
},
7724 #ifdef _SC_ICACHE_BLKSZ
7725 {"SC_ICACHE_BLKSZ", _SC_ICACHE_BLKSZ
},
7727 #ifdef _SC_ICACHE_LINESZ
7728 {"SC_ICACHE_LINESZ", _SC_ICACHE_LINESZ
},
7730 #ifdef _SC_ICACHE_SZ
7731 {"SC_ICACHE_SZ", _SC_ICACHE_SZ
},
7734 {"SC_INF", _SC_INF
},
7737 {"SC_INT_MAX", _SC_INT_MAX
},
7740 {"SC_INT_MIN", _SC_INT_MIN
},
7743 {"SC_IOV_MAX", _SC_IOV_MAX
},
7745 #ifdef _SC_IP_SECOPTS
7746 {"SC_IP_SECOPTS", _SC_IP_SECOPTS
},
7748 #ifdef _SC_JOB_CONTROL
7749 {"SC_JOB_CONTROL", _SC_JOB_CONTROL
},
7751 #ifdef _SC_KERN_POINTERS
7752 {"SC_KERN_POINTERS", _SC_KERN_POINTERS
},
7755 {"SC_KERN_SIM", _SC_KERN_SIM
},
7758 {"SC_LINE_MAX", _SC_LINE_MAX
},
7760 #ifdef _SC_LOGIN_NAME_MAX
7761 {"SC_LOGIN_NAME_MAX", _SC_LOGIN_NAME_MAX
},
7763 #ifdef _SC_LOGNAME_MAX
7764 {"SC_LOGNAME_MAX", _SC_LOGNAME_MAX
},
7767 {"SC_LONG_BIT", _SC_LONG_BIT
},
7770 {"SC_MAC", _SC_MAC
},
7772 #ifdef _SC_MAPPED_FILES
7773 {"SC_MAPPED_FILES", _SC_MAPPED_FILES
},
7776 {"SC_MAXPID", _SC_MAXPID
},
7778 #ifdef _SC_MB_LEN_MAX
7779 {"SC_MB_LEN_MAX", _SC_MB_LEN_MAX
},
7782 {"SC_MEMLOCK", _SC_MEMLOCK
},
7784 #ifdef _SC_MEMLOCK_RANGE
7785 {"SC_MEMLOCK_RANGE", _SC_MEMLOCK_RANGE
},
7787 #ifdef _SC_MEMORY_PROTECTION
7788 {"SC_MEMORY_PROTECTION", _SC_MEMORY_PROTECTION
},
7790 #ifdef _SC_MESSAGE_PASSING
7791 {"SC_MESSAGE_PASSING", _SC_MESSAGE_PASSING
},
7793 #ifdef _SC_MMAP_FIXED_ALIGNMENT
7794 {"SC_MMAP_FIXED_ALIGNMENT", _SC_MMAP_FIXED_ALIGNMENT
},
7796 #ifdef _SC_MQ_OPEN_MAX
7797 {"SC_MQ_OPEN_MAX", _SC_MQ_OPEN_MAX
},
7799 #ifdef _SC_MQ_PRIO_MAX
7800 {"SC_MQ_PRIO_MAX", _SC_MQ_PRIO_MAX
},
7802 #ifdef _SC_NACLS_MAX
7803 {"SC_NACLS_MAX", _SC_NACLS_MAX
},
7805 #ifdef _SC_NGROUPS_MAX
7806 {"SC_NGROUPS_MAX", _SC_NGROUPS_MAX
},
7808 #ifdef _SC_NL_ARGMAX
7809 {"SC_NL_ARGMAX", _SC_NL_ARGMAX
},
7811 #ifdef _SC_NL_LANGMAX
7812 {"SC_NL_LANGMAX", _SC_NL_LANGMAX
},
7814 #ifdef _SC_NL_MSGMAX
7815 {"SC_NL_MSGMAX", _SC_NL_MSGMAX
},
7818 {"SC_NL_NMAX", _SC_NL_NMAX
},
7820 #ifdef _SC_NL_SETMAX
7821 {"SC_NL_SETMAX", _SC_NL_SETMAX
},
7823 #ifdef _SC_NL_TEXTMAX
7824 {"SC_NL_TEXTMAX", _SC_NL_TEXTMAX
},
7826 #ifdef _SC_NPROCESSORS_CONF
7827 {"SC_NPROCESSORS_CONF", _SC_NPROCESSORS_CONF
},
7829 #ifdef _SC_NPROCESSORS_ONLN
7830 {"SC_NPROCESSORS_ONLN", _SC_NPROCESSORS_ONLN
},
7832 #ifdef _SC_NPROC_CONF
7833 {"SC_NPROC_CONF", _SC_NPROC_CONF
},
7835 #ifdef _SC_NPROC_ONLN
7836 {"SC_NPROC_ONLN", _SC_NPROC_ONLN
},
7839 {"SC_NZERO", _SC_NZERO
},
7842 {"SC_OPEN_MAX", _SC_OPEN_MAX
},
7845 {"SC_PAGESIZE", _SC_PAGESIZE
},
7847 #ifdef _SC_PAGE_SIZE
7848 {"SC_PAGE_SIZE", _SC_PAGE_SIZE
},
7851 {"SC_PASS_MAX", _SC_PASS_MAX
},
7853 #ifdef _SC_PHYS_PAGES
7854 {"SC_PHYS_PAGES", _SC_PHYS_PAGES
},
7857 {"SC_PII", _SC_PII
},
7859 #ifdef _SC_PII_INTERNET
7860 {"SC_PII_INTERNET", _SC_PII_INTERNET
},
7862 #ifdef _SC_PII_INTERNET_DGRAM
7863 {"SC_PII_INTERNET_DGRAM", _SC_PII_INTERNET_DGRAM
},
7865 #ifdef _SC_PII_INTERNET_STREAM
7866 {"SC_PII_INTERNET_STREAM", _SC_PII_INTERNET_STREAM
},
7869 {"SC_PII_OSI", _SC_PII_OSI
},
7871 #ifdef _SC_PII_OSI_CLTS
7872 {"SC_PII_OSI_CLTS", _SC_PII_OSI_CLTS
},
7874 #ifdef _SC_PII_OSI_COTS
7875 {"SC_PII_OSI_COTS", _SC_PII_OSI_COTS
},
7877 #ifdef _SC_PII_OSI_M
7878 {"SC_PII_OSI_M", _SC_PII_OSI_M
},
7880 #ifdef _SC_PII_SOCKET
7881 {"SC_PII_SOCKET", _SC_PII_SOCKET
},
7884 {"SC_PII_XTI", _SC_PII_XTI
},
7887 {"SC_POLL", _SC_POLL
},
7889 #ifdef _SC_PRIORITIZED_IO
7890 {"SC_PRIORITIZED_IO", _SC_PRIORITIZED_IO
},
7892 #ifdef _SC_PRIORITY_SCHEDULING
7893 {"SC_PRIORITY_SCHEDULING", _SC_PRIORITY_SCHEDULING
},
7895 #ifdef _SC_REALTIME_SIGNALS
7896 {"SC_REALTIME_SIGNALS", _SC_REALTIME_SIGNALS
},
7898 #ifdef _SC_RE_DUP_MAX
7899 {"SC_RE_DUP_MAX", _SC_RE_DUP_MAX
},
7901 #ifdef _SC_RTSIG_MAX
7902 {"SC_RTSIG_MAX", _SC_RTSIG_MAX
},
7904 #ifdef _SC_SAVED_IDS
7905 {"SC_SAVED_IDS", _SC_SAVED_IDS
},
7907 #ifdef _SC_SCHAR_MAX
7908 {"SC_SCHAR_MAX", _SC_SCHAR_MAX
},
7910 #ifdef _SC_SCHAR_MIN
7911 {"SC_SCHAR_MIN", _SC_SCHAR_MIN
},
7914 {"SC_SELECT", _SC_SELECT
},
7916 #ifdef _SC_SEMAPHORES
7917 {"SC_SEMAPHORES", _SC_SEMAPHORES
},
7919 #ifdef _SC_SEM_NSEMS_MAX
7920 {"SC_SEM_NSEMS_MAX", _SC_SEM_NSEMS_MAX
},
7922 #ifdef _SC_SEM_VALUE_MAX
7923 {"SC_SEM_VALUE_MAX", _SC_SEM_VALUE_MAX
},
7925 #ifdef _SC_SHARED_MEMORY_OBJECTS
7926 {"SC_SHARED_MEMORY_OBJECTS", _SC_SHARED_MEMORY_OBJECTS
},
7929 {"SC_SHRT_MAX", _SC_SHRT_MAX
},
7932 {"SC_SHRT_MIN", _SC_SHRT_MIN
},
7934 #ifdef _SC_SIGQUEUE_MAX
7935 {"SC_SIGQUEUE_MAX", _SC_SIGQUEUE_MAX
},
7937 #ifdef _SC_SIGRT_MAX
7938 {"SC_SIGRT_MAX", _SC_SIGRT_MAX
},
7940 #ifdef _SC_SIGRT_MIN
7941 {"SC_SIGRT_MIN", _SC_SIGRT_MIN
},
7943 #ifdef _SC_SOFTPOWER
7944 {"SC_SOFTPOWER", _SC_SOFTPOWER
},
7946 #ifdef _SC_SPLIT_CACHE
7947 {"SC_SPLIT_CACHE", _SC_SPLIT_CACHE
},
7949 #ifdef _SC_SSIZE_MAX
7950 {"SC_SSIZE_MAX", _SC_SSIZE_MAX
},
7952 #ifdef _SC_STACK_PROT
7953 {"SC_STACK_PROT", _SC_STACK_PROT
},
7955 #ifdef _SC_STREAM_MAX
7956 {"SC_STREAM_MAX", _SC_STREAM_MAX
},
7958 #ifdef _SC_SYNCHRONIZED_IO
7959 {"SC_SYNCHRONIZED_IO", _SC_SYNCHRONIZED_IO
},
7962 {"SC_THREADS", _SC_THREADS
},
7964 #ifdef _SC_THREAD_ATTR_STACKADDR
7965 {"SC_THREAD_ATTR_STACKADDR", _SC_THREAD_ATTR_STACKADDR
},
7967 #ifdef _SC_THREAD_ATTR_STACKSIZE
7968 {"SC_THREAD_ATTR_STACKSIZE", _SC_THREAD_ATTR_STACKSIZE
},
7970 #ifdef _SC_THREAD_DESTRUCTOR_ITERATIONS
7971 {"SC_THREAD_DESTRUCTOR_ITERATIONS", _SC_THREAD_DESTRUCTOR_ITERATIONS
},
7973 #ifdef _SC_THREAD_KEYS_MAX
7974 {"SC_THREAD_KEYS_MAX", _SC_THREAD_KEYS_MAX
},
7976 #ifdef _SC_THREAD_PRIORITY_SCHEDULING
7977 {"SC_THREAD_PRIORITY_SCHEDULING", _SC_THREAD_PRIORITY_SCHEDULING
},
7979 #ifdef _SC_THREAD_PRIO_INHERIT
7980 {"SC_THREAD_PRIO_INHERIT", _SC_THREAD_PRIO_INHERIT
},
7982 #ifdef _SC_THREAD_PRIO_PROTECT
7983 {"SC_THREAD_PRIO_PROTECT", _SC_THREAD_PRIO_PROTECT
},
7985 #ifdef _SC_THREAD_PROCESS_SHARED
7986 {"SC_THREAD_PROCESS_SHARED", _SC_THREAD_PROCESS_SHARED
},
7988 #ifdef _SC_THREAD_SAFE_FUNCTIONS
7989 {"SC_THREAD_SAFE_FUNCTIONS", _SC_THREAD_SAFE_FUNCTIONS
},
7991 #ifdef _SC_THREAD_STACK_MIN
7992 {"SC_THREAD_STACK_MIN", _SC_THREAD_STACK_MIN
},
7994 #ifdef _SC_THREAD_THREADS_MAX
7995 {"SC_THREAD_THREADS_MAX", _SC_THREAD_THREADS_MAX
},
7998 {"SC_TIMERS", _SC_TIMERS
},
8000 #ifdef _SC_TIMER_MAX
8001 {"SC_TIMER_MAX", _SC_TIMER_MAX
},
8003 #ifdef _SC_TTY_NAME_MAX
8004 {"SC_TTY_NAME_MAX", _SC_TTY_NAME_MAX
},
8006 #ifdef _SC_TZNAME_MAX
8007 {"SC_TZNAME_MAX", _SC_TZNAME_MAX
},
8009 #ifdef _SC_T_IOV_MAX
8010 {"SC_T_IOV_MAX", _SC_T_IOV_MAX
},
8012 #ifdef _SC_UCHAR_MAX
8013 {"SC_UCHAR_MAX", _SC_UCHAR_MAX
},
8016 {"SC_UINT_MAX", _SC_UINT_MAX
},
8018 #ifdef _SC_UIO_MAXIOV
8019 {"SC_UIO_MAXIOV", _SC_UIO_MAXIOV
},
8021 #ifdef _SC_ULONG_MAX
8022 {"SC_ULONG_MAX", _SC_ULONG_MAX
},
8024 #ifdef _SC_USHRT_MAX
8025 {"SC_USHRT_MAX", _SC_USHRT_MAX
},
8028 {"SC_VERSION", _SC_VERSION
},
8031 {"SC_WORD_BIT", _SC_WORD_BIT
},
8033 #ifdef _SC_XBS5_ILP32_OFF32
8034 {"SC_XBS5_ILP32_OFF32", _SC_XBS5_ILP32_OFF32
},
8036 #ifdef _SC_XBS5_ILP32_OFFBIG
8037 {"SC_XBS5_ILP32_OFFBIG", _SC_XBS5_ILP32_OFFBIG
},
8039 #ifdef _SC_XBS5_LP64_OFF64
8040 {"SC_XBS5_LP64_OFF64", _SC_XBS5_LP64_OFF64
},
8042 #ifdef _SC_XBS5_LPBIG_OFFBIG
8043 {"SC_XBS5_LPBIG_OFFBIG", _SC_XBS5_LPBIG_OFFBIG
},
8045 #ifdef _SC_XOPEN_CRYPT
8046 {"SC_XOPEN_CRYPT", _SC_XOPEN_CRYPT
},
8048 #ifdef _SC_XOPEN_ENH_I18N
8049 {"SC_XOPEN_ENH_I18N", _SC_XOPEN_ENH_I18N
},
8051 #ifdef _SC_XOPEN_LEGACY
8052 {"SC_XOPEN_LEGACY", _SC_XOPEN_LEGACY
},
8054 #ifdef _SC_XOPEN_REALTIME
8055 {"SC_XOPEN_REALTIME", _SC_XOPEN_REALTIME
},
8057 #ifdef _SC_XOPEN_REALTIME_THREADS
8058 {"SC_XOPEN_REALTIME_THREADS", _SC_XOPEN_REALTIME_THREADS
},
8060 #ifdef _SC_XOPEN_SHM
8061 {"SC_XOPEN_SHM", _SC_XOPEN_SHM
},
8063 #ifdef _SC_XOPEN_UNIX
8064 {"SC_XOPEN_UNIX", _SC_XOPEN_UNIX
},
8066 #ifdef _SC_XOPEN_VERSION
8067 {"SC_XOPEN_VERSION", _SC_XOPEN_VERSION
},
8069 #ifdef _SC_XOPEN_XCU_VERSION
8070 {"SC_XOPEN_XCU_VERSION", _SC_XOPEN_XCU_VERSION
},
8072 #ifdef _SC_XOPEN_XPG2
8073 {"SC_XOPEN_XPG2", _SC_XOPEN_XPG2
},
8075 #ifdef _SC_XOPEN_XPG3
8076 {"SC_XOPEN_XPG3", _SC_XOPEN_XPG3
},
8078 #ifdef _SC_XOPEN_XPG4
8079 {"SC_XOPEN_XPG4", _SC_XOPEN_XPG4
},
8084 conv_sysconf_confname(PyObject
*arg
, int *valuep
)
8086 return conv_confname(arg
, valuep
, posix_constants_sysconf
,
8087 sizeof(posix_constants_sysconf
)
8088 / sizeof(struct constdef
));
8091 PyDoc_STRVAR(posix_sysconf__doc__
,
8092 "sysconf(name) -> integer\n\n\
8093 Return an integer-valued system configuration variable.");
8096 posix_sysconf(PyObject
*self
, PyObject
*args
)
8098 PyObject
*result
= NULL
;
8101 if (PyArg_ParseTuple(args
, "O&:sysconf", conv_sysconf_confname
, &name
)) {
8105 value
= sysconf(name
);
8106 if (value
== -1 && errno
!= 0)
8109 result
= PyInt_FromLong(value
);
8116 /* This code is used to ensure that the tables of configuration value names
8117 * are in sorted order as required by conv_confname(), and also to build the
8118 * the exported dictionaries that are used to publish information about the
8119 * names available on the host platform.
8121 * Sorting the table at runtime ensures that the table is properly ordered
8122 * when used, even for platforms we're not able to test on. It also makes
8123 * it easier to add additional entries to the tables.
8127 cmp_constdefs(const void *v1
, const void *v2
)
8129 const struct constdef
*c1
=
8130 (const struct constdef
*) v1
;
8131 const struct constdef
*c2
=
8132 (const struct constdef
*) v2
;
8134 return strcmp(c1
->name
, c2
->name
);
8138 setup_confname_table(struct constdef
*table
, size_t tablesize
,
8139 char *tablename
, PyObject
*module
)
8144 qsort(table
, tablesize
, sizeof(struct constdef
), cmp_constdefs
);
8149 for (i
=0; i
< tablesize
; ++i
) {
8150 PyObject
*o
= PyInt_FromLong(table
[i
].value
);
8151 if (o
== NULL
|| PyDict_SetItemString(d
, table
[i
].name
, o
) == -1) {
8158 return PyModule_AddObject(module
, tablename
, d
);
8161 /* Return -1 on failure, 0 on success. */
8163 setup_confname_tables(PyObject
*module
)
8165 #if defined(HAVE_FPATHCONF) || defined(HAVE_PATHCONF)
8166 if (setup_confname_table(posix_constants_pathconf
,
8167 sizeof(posix_constants_pathconf
)
8168 / sizeof(struct constdef
),
8169 "pathconf_names", module
))
8173 if (setup_confname_table(posix_constants_confstr
,
8174 sizeof(posix_constants_confstr
)
8175 / sizeof(struct constdef
),
8176 "confstr_names", module
))
8180 if (setup_confname_table(posix_constants_sysconf
,
8181 sizeof(posix_constants_sysconf
)
8182 / sizeof(struct constdef
),
8183 "sysconf_names", module
))
8190 PyDoc_STRVAR(posix_abort__doc__
,
8191 "abort() -> does not return!\n\n\
8192 Abort the interpreter immediately. This 'dumps core' or otherwise fails\n\
8193 in the hardest way possible on the hosting operating system.");
8196 posix_abort(PyObject
*self
, PyObject
*noargs
)
8200 Py_FatalError("abort() called from Python code didn't abort!");
8205 PyDoc_STRVAR(win32_startfile__doc__
,
8206 "startfile(filepath [, operation]) - Start a file with its associated\n\
8209 When \"operation\" is not specified or \"open\", this acts like\n\
8210 double-clicking the file in Explorer, or giving the file name as an\n\
8211 argument to the DOS \"start\" command: the file is opened with whatever\n\
8212 application (if any) its extension is associated.\n\
8213 When another \"operation\" is given, it specifies what should be done with\n\
8214 the file. A typical operation is \"print\".\n\
8216 startfile returns as soon as the associated application is launched.\n\
8217 There is no option to wait for the application to close, and no way\n\
8218 to retrieve the application's exit status.\n\
8220 The filepath is relative to the current directory. If you want to use\n\
8221 an absolute path, make sure the first character is not a slash (\"/\");\n\
8222 the underlying Win32 ShellExecute function doesn't work if it is.");
8225 win32_startfile(PyObject
*self
, PyObject
*args
)
8228 char *operation
= NULL
;
8231 PyObject
*unipath
, *woperation
= NULL
;
8232 if (!PyArg_ParseTuple(args
, "U|s:startfile",
8233 &unipath
, &operation
)) {
8239 woperation
= PyUnicode_DecodeASCII(operation
,
8240 strlen(operation
), NULL
);
8248 Py_BEGIN_ALLOW_THREADS
8249 rc
= ShellExecuteW((HWND
)0, woperation
? PyUnicode_AS_UNICODE(woperation
) : 0,
8250 PyUnicode_AS_UNICODE(unipath
),
8251 NULL
, NULL
, SW_SHOWNORMAL
);
8252 Py_END_ALLOW_THREADS
8254 Py_XDECREF(woperation
);
8255 if (rc
<= (HINSTANCE
)32) {
8256 PyObject
*errval
= win32_error_unicode("startfile",
8257 PyUnicode_AS_UNICODE(unipath
));
8264 if (!PyArg_ParseTuple(args
, "et|s:startfile",
8265 Py_FileSystemDefaultEncoding
, &filepath
,
8268 Py_BEGIN_ALLOW_THREADS
8269 rc
= ShellExecute((HWND
)0, operation
, filepath
,
8270 NULL
, NULL
, SW_SHOWNORMAL
);
8271 Py_END_ALLOW_THREADS
8272 if (rc
<= (HINSTANCE
)32) {
8273 PyObject
*errval
= win32_error("startfile", filepath
);
8274 PyMem_Free(filepath
);
8277 PyMem_Free(filepath
);
8281 #endif /* MS_WINDOWS */
8283 #ifdef HAVE_GETLOADAVG
8284 PyDoc_STRVAR(posix_getloadavg__doc__
,
8285 "getloadavg() -> (float, float, float)\n\n\
8286 Return the number of processes in the system run queue averaged over\n\
8287 the last 1, 5, and 15 minutes or raises OSError if the load average\n\
8291 posix_getloadavg(PyObject
*self
, PyObject
*noargs
)
8294 if (getloadavg(loadavg
, 3)!=3) {
8295 PyErr_SetString(PyExc_OSError
, "Load averages are unobtainable");
8298 return Py_BuildValue("ddd", loadavg
[0], loadavg
[1], loadavg
[2]);
8304 PyDoc_STRVAR(win32_urandom__doc__
,
8305 "urandom(n) -> str\n\n\
8306 Return a string of n random bytes suitable for cryptographic use.");
8308 typedef BOOL (WINAPI
*CRYPTACQUIRECONTEXTA
)(HCRYPTPROV
*phProv
,\
8309 LPCSTR pszContainer
, LPCSTR pszProvider
, DWORD dwProvType
,\
8311 typedef BOOL (WINAPI
*CRYPTGENRANDOM
)(HCRYPTPROV hProv
, DWORD dwLen
,\
8314 static CRYPTGENRANDOM pCryptGenRandom
= NULL
;
8315 /* This handle is never explicitly released. Instead, the operating
8316 system will release it when the process terminates. */
8317 static HCRYPTPROV hCryptProv
= 0;
8320 win32_urandom(PyObject
*self
, PyObject
*args
)
8325 /* Read arguments */
8326 if (! PyArg_ParseTuple(args
, "i:urandom", &howMany
))
8329 return PyErr_Format(PyExc_ValueError
,
8330 "negative argument not allowed");
8332 if (hCryptProv
== 0) {
8333 HINSTANCE hAdvAPI32
= NULL
;
8334 CRYPTACQUIRECONTEXTA pCryptAcquireContext
= NULL
;
8336 /* Obtain handle to the DLL containing CryptoAPI
8337 This should not fail */
8338 hAdvAPI32
= GetModuleHandle("advapi32.dll");
8339 if(hAdvAPI32
== NULL
)
8340 return win32_error("GetModuleHandle", NULL
);
8342 /* Obtain pointers to the CryptoAPI functions
8343 This will fail on some early versions of Win95 */
8344 pCryptAcquireContext
= (CRYPTACQUIRECONTEXTA
)GetProcAddress(
8346 "CryptAcquireContextA");
8347 if (pCryptAcquireContext
== NULL
)
8348 return PyErr_Format(PyExc_NotImplementedError
,
8349 "CryptAcquireContextA not found");
8351 pCryptGenRandom
= (CRYPTGENRANDOM
)GetProcAddress(
8352 hAdvAPI32
, "CryptGenRandom");
8353 if (pCryptGenRandom
== NULL
)
8354 return PyErr_Format(PyExc_NotImplementedError
,
8355 "CryptGenRandom not found");
8357 /* Acquire context */
8358 if (! pCryptAcquireContext(&hCryptProv
, NULL
, NULL
,
8359 PROV_RSA_FULL
, CRYPT_VERIFYCONTEXT
))
8360 return win32_error("CryptAcquireContext", NULL
);
8363 /* Allocate bytes */
8364 result
= PyString_FromStringAndSize(NULL
, howMany
);
8365 if (result
!= NULL
) {
8366 /* Get random data */
8367 memset(PyString_AS_STRING(result
), 0, howMany
); /* zero seed */
8368 if (! pCryptGenRandom(hCryptProv
, howMany
, (unsigned char*)
8369 PyString_AS_STRING(result
))) {
8371 return win32_error("CryptGenRandom", NULL
);
8379 /* Use openssl random routine */
8380 #include <openssl/rand.h>
8381 PyDoc_STRVAR(vms_urandom__doc__
,
8382 "urandom(n) -> str\n\n\
8383 Return a string of n random bytes suitable for cryptographic use.");
8386 vms_urandom(PyObject
*self
, PyObject
*args
)
8391 /* Read arguments */
8392 if (! PyArg_ParseTuple(args
, "i:urandom", &howMany
))
8395 return PyErr_Format(PyExc_ValueError
,
8396 "negative argument not allowed");
8398 /* Allocate bytes */
8399 result
= PyString_FromStringAndSize(NULL
, howMany
);
8400 if (result
!= NULL
) {
8401 /* Get random data */
8402 if (RAND_pseudo_bytes((unsigned char*)
8403 PyString_AS_STRING(result
),
8406 return PyErr_Format(PyExc_ValueError
,
8407 "RAND_pseudo_bytes");
8414 #ifdef HAVE_SETRESUID
8415 PyDoc_STRVAR(posix_setresuid__doc__
,
8416 "setresuid(ruid, euid, suid)\n\n\
8417 Set the current process's real, effective, and saved user ids.");
8420 posix_setresuid (PyObject
*self
, PyObject
*args
)
8422 /* We assume uid_t is no larger than a long. */
8423 long ruid
, euid
, suid
;
8424 if (!PyArg_ParseTuple(args
, "lll", &ruid
, &euid
, &suid
))
8426 if (setresuid(ruid
, euid
, suid
) < 0)
8427 return posix_error();
8432 #ifdef HAVE_SETRESGID
8433 PyDoc_STRVAR(posix_setresgid__doc__
,
8434 "setresgid(rgid, egid, sgid)\n\n\
8435 Set the current process's real, effective, and saved group ids.");
8438 posix_setresgid (PyObject
*self
, PyObject
*args
)
8440 /* We assume uid_t is no larger than a long. */
8441 long rgid
, egid
, sgid
;
8442 if (!PyArg_ParseTuple(args
, "lll", &rgid
, &egid
, &sgid
))
8444 if (setresgid(rgid
, egid
, sgid
) < 0)
8445 return posix_error();
8450 #ifdef HAVE_GETRESUID
8451 PyDoc_STRVAR(posix_getresuid__doc__
,
8452 "getresuid() -> (ruid, euid, suid)\n\n\
8453 Get tuple of the current process's real, effective, and saved user ids.");
8456 posix_getresuid (PyObject
*self
, PyObject
*noargs
)
8458 uid_t ruid
, euid
, suid
;
8459 long l_ruid
, l_euid
, l_suid
;
8460 if (getresuid(&ruid
, &euid
, &suid
) < 0)
8461 return posix_error();
8462 /* Force the values into long's as we don't know the size of uid_t. */
8466 return Py_BuildValue("(lll)", l_ruid
, l_euid
, l_suid
);
8470 #ifdef HAVE_GETRESGID
8471 PyDoc_STRVAR(posix_getresgid__doc__
,
8472 "getresgid() -> (rgid, egid, sgid)\n\n\
8473 Get tuple of the current process's real, effective, and saved user ids.");
8476 posix_getresgid (PyObject
*self
, PyObject
*noargs
)
8478 uid_t rgid
, egid
, sgid
;
8479 long l_rgid
, l_egid
, l_sgid
;
8480 if (getresgid(&rgid
, &egid
, &sgid
) < 0)
8481 return posix_error();
8482 /* Force the values into long's as we don't know the size of uid_t. */
8486 return Py_BuildValue("(lll)", l_rgid
, l_egid
, l_sgid
);
8490 static PyMethodDef posix_methods
[] = {
8491 {"access", posix_access
, METH_VARARGS
, posix_access__doc__
},
8493 {"ttyname", posix_ttyname
, METH_VARARGS
, posix_ttyname__doc__
},
8495 {"chdir", posix_chdir
, METH_VARARGS
, posix_chdir__doc__
},
8497 {"chflags", posix_chflags
, METH_VARARGS
, posix_chflags__doc__
},
8498 #endif /* HAVE_CHFLAGS */
8499 {"chmod", posix_chmod
, METH_VARARGS
, posix_chmod__doc__
},
8501 {"fchmod", posix_fchmod
, METH_VARARGS
, posix_fchmod__doc__
},
8502 #endif /* HAVE_FCHMOD */
8504 {"chown", posix_chown
, METH_VARARGS
, posix_chown__doc__
},
8505 #endif /* HAVE_CHOWN */
8507 {"lchmod", posix_lchmod
, METH_VARARGS
, posix_lchmod__doc__
},
8508 #endif /* HAVE_LCHMOD */
8510 {"fchown", posix_fchown
, METH_VARARGS
, posix_fchown__doc__
},
8511 #endif /* HAVE_FCHOWN */
8512 #ifdef HAVE_LCHFLAGS
8513 {"lchflags", posix_lchflags
, METH_VARARGS
, posix_lchflags__doc__
},
8514 #endif /* HAVE_LCHFLAGS */
8516 {"lchown", posix_lchown
, METH_VARARGS
, posix_lchown__doc__
},
8517 #endif /* HAVE_LCHOWN */
8519 {"chroot", posix_chroot
, METH_VARARGS
, posix_chroot__doc__
},
8522 {"ctermid", posix_ctermid
, METH_NOARGS
, posix_ctermid__doc__
},
8525 {"getcwd", posix_getcwd
, METH_NOARGS
, posix_getcwd__doc__
},
8526 #ifdef Py_USING_UNICODE
8527 {"getcwdu", posix_getcwdu
, METH_NOARGS
, posix_getcwdu__doc__
},
8531 {"link", posix_link
, METH_VARARGS
, posix_link__doc__
},
8532 #endif /* HAVE_LINK */
8533 {"listdir", posix_listdir
, METH_VARARGS
, posix_listdir__doc__
},
8534 {"lstat", posix_lstat
, METH_VARARGS
, posix_lstat__doc__
},
8535 {"mkdir", posix_mkdir
, METH_VARARGS
, posix_mkdir__doc__
},
8537 {"nice", posix_nice
, METH_VARARGS
, posix_nice__doc__
},
8538 #endif /* HAVE_NICE */
8539 #ifdef HAVE_READLINK
8540 {"readlink", posix_readlink
, METH_VARARGS
, posix_readlink__doc__
},
8541 #endif /* HAVE_READLINK */
8542 {"rename", posix_rename
, METH_VARARGS
, posix_rename__doc__
},
8543 {"rmdir", posix_rmdir
, METH_VARARGS
, posix_rmdir__doc__
},
8544 {"stat", posix_stat
, METH_VARARGS
, posix_stat__doc__
},
8545 {"stat_float_times", stat_float_times
, METH_VARARGS
, stat_float_times__doc__
},
8547 {"symlink", posix_symlink
, METH_VARARGS
, posix_symlink__doc__
},
8548 #endif /* HAVE_SYMLINK */
8550 {"system", posix_system
, METH_VARARGS
, posix_system__doc__
},
8552 {"umask", posix_umask
, METH_VARARGS
, posix_umask__doc__
},
8554 {"uname", posix_uname
, METH_NOARGS
, posix_uname__doc__
},
8555 #endif /* HAVE_UNAME */
8556 {"unlink", posix_unlink
, METH_VARARGS
, posix_unlink__doc__
},
8557 {"remove", posix_unlink
, METH_VARARGS
, posix_remove__doc__
},
8558 {"utime", posix_utime
, METH_VARARGS
, posix_utime__doc__
},
8560 {"times", posix_times
, METH_NOARGS
, posix_times__doc__
},
8561 #endif /* HAVE_TIMES */
8562 {"_exit", posix__exit
, METH_VARARGS
, posix__exit__doc__
},
8564 {"execv", posix_execv
, METH_VARARGS
, posix_execv__doc__
},
8565 {"execve", posix_execve
, METH_VARARGS
, posix_execve__doc__
},
8566 #endif /* HAVE_EXECV */
8568 {"spawnv", posix_spawnv
, METH_VARARGS
, posix_spawnv__doc__
},
8569 {"spawnve", posix_spawnve
, METH_VARARGS
, posix_spawnve__doc__
},
8570 #if defined(PYOS_OS2)
8571 {"spawnvp", posix_spawnvp
, METH_VARARGS
, posix_spawnvp__doc__
},
8572 {"spawnvpe", posix_spawnvpe
, METH_VARARGS
, posix_spawnvpe__doc__
},
8573 #endif /* PYOS_OS2 */
8574 #endif /* HAVE_SPAWNV */
8576 {"fork1", posix_fork1
, METH_NOARGS
, posix_fork1__doc__
},
8577 #endif /* HAVE_FORK1 */
8579 {"fork", posix_fork
, METH_NOARGS
, posix_fork__doc__
},
8580 #endif /* HAVE_FORK */
8581 #if defined(HAVE_OPENPTY) || defined(HAVE__GETPTY) || defined(HAVE_DEV_PTMX)
8582 {"openpty", posix_openpty
, METH_NOARGS
, posix_openpty__doc__
},
8583 #endif /* HAVE_OPENPTY || HAVE__GETPTY || HAVE_DEV_PTMX */
8585 {"forkpty", posix_forkpty
, METH_NOARGS
, posix_forkpty__doc__
},
8586 #endif /* HAVE_FORKPTY */
8588 {"getegid", posix_getegid
, METH_NOARGS
, posix_getegid__doc__
},
8589 #endif /* HAVE_GETEGID */
8591 {"geteuid", posix_geteuid
, METH_NOARGS
, posix_geteuid__doc__
},
8592 #endif /* HAVE_GETEUID */
8594 {"getgid", posix_getgid
, METH_NOARGS
, posix_getgid__doc__
},
8595 #endif /* HAVE_GETGID */
8596 #ifdef HAVE_GETGROUPS
8597 {"getgroups", posix_getgroups
, METH_NOARGS
, posix_getgroups__doc__
},
8599 {"getpid", posix_getpid
, METH_NOARGS
, posix_getpid__doc__
},
8601 {"getpgrp", posix_getpgrp
, METH_NOARGS
, posix_getpgrp__doc__
},
8602 #endif /* HAVE_GETPGRP */
8604 {"getppid", posix_getppid
, METH_NOARGS
, posix_getppid__doc__
},
8605 #endif /* HAVE_GETPPID */
8607 {"getuid", posix_getuid
, METH_NOARGS
, posix_getuid__doc__
},
8608 #endif /* HAVE_GETUID */
8609 #ifdef HAVE_GETLOGIN
8610 {"getlogin", posix_getlogin
, METH_NOARGS
, posix_getlogin__doc__
},
8613 {"kill", posix_kill
, METH_VARARGS
, posix_kill__doc__
},
8614 #endif /* HAVE_KILL */
8616 {"killpg", posix_killpg
, METH_VARARGS
, posix_killpg__doc__
},
8617 #endif /* HAVE_KILLPG */
8619 {"plock", posix_plock
, METH_VARARGS
, posix_plock__doc__
},
8620 #endif /* HAVE_PLOCK */
8622 {"popen", posix_popen
, METH_VARARGS
, posix_popen__doc__
},
8624 {"popen2", win32_popen2
, METH_VARARGS
},
8625 {"popen3", win32_popen3
, METH_VARARGS
},
8626 {"popen4", win32_popen4
, METH_VARARGS
},
8627 {"startfile", win32_startfile
, METH_VARARGS
, win32_startfile__doc__
},
8629 #if defined(PYOS_OS2) && defined(PYCC_GCC)
8630 {"popen2", os2emx_popen2
, METH_VARARGS
},
8631 {"popen3", os2emx_popen3
, METH_VARARGS
},
8632 {"popen4", os2emx_popen4
, METH_VARARGS
},
8635 #endif /* HAVE_POPEN */
8637 {"setuid", posix_setuid
, METH_VARARGS
, posix_setuid__doc__
},
8638 #endif /* HAVE_SETUID */
8640 {"seteuid", posix_seteuid
, METH_VARARGS
, posix_seteuid__doc__
},
8641 #endif /* HAVE_SETEUID */
8643 {"setegid", posix_setegid
, METH_VARARGS
, posix_setegid__doc__
},
8644 #endif /* HAVE_SETEGID */
8645 #ifdef HAVE_SETREUID
8646 {"setreuid", posix_setreuid
, METH_VARARGS
, posix_setreuid__doc__
},
8647 #endif /* HAVE_SETREUID */
8648 #ifdef HAVE_SETREGID
8649 {"setregid", posix_setregid
, METH_VARARGS
, posix_setregid__doc__
},
8650 #endif /* HAVE_SETREGID */
8652 {"setgid", posix_setgid
, METH_VARARGS
, posix_setgid__doc__
},
8653 #endif /* HAVE_SETGID */
8654 #ifdef HAVE_SETGROUPS
8655 {"setgroups", posix_setgroups
, METH_O
, posix_setgroups__doc__
},
8656 #endif /* HAVE_SETGROUPS */
8657 #ifdef HAVE_INITGROUPS
8658 {"initgroups", posix_initgroups
, METH_VARARGS
, posix_initgroups__doc__
},
8659 #endif /* HAVE_INITGROUPS */
8661 {"getpgid", posix_getpgid
, METH_VARARGS
, posix_getpgid__doc__
},
8662 #endif /* HAVE_GETPGID */
8664 {"setpgrp", posix_setpgrp
, METH_NOARGS
, posix_setpgrp__doc__
},
8665 #endif /* HAVE_SETPGRP */
8667 {"wait", posix_wait
, METH_NOARGS
, posix_wait__doc__
},
8668 #endif /* HAVE_WAIT */
8670 {"wait3", posix_wait3
, METH_VARARGS
, posix_wait3__doc__
},
8671 #endif /* HAVE_WAIT3 */
8673 {"wait4", posix_wait4
, METH_VARARGS
, posix_wait4__doc__
},
8674 #endif /* HAVE_WAIT4 */
8675 #if defined(HAVE_WAITPID) || defined(HAVE_CWAIT)
8676 {"waitpid", posix_waitpid
, METH_VARARGS
, posix_waitpid__doc__
},
8677 #endif /* HAVE_WAITPID */
8679 {"getsid", posix_getsid
, METH_VARARGS
, posix_getsid__doc__
},
8680 #endif /* HAVE_GETSID */
8682 {"setsid", posix_setsid
, METH_NOARGS
, posix_setsid__doc__
},
8683 #endif /* HAVE_SETSID */
8685 {"setpgid", posix_setpgid
, METH_VARARGS
, posix_setpgid__doc__
},
8686 #endif /* HAVE_SETPGID */
8687 #ifdef HAVE_TCGETPGRP
8688 {"tcgetpgrp", posix_tcgetpgrp
, METH_VARARGS
, posix_tcgetpgrp__doc__
},
8689 #endif /* HAVE_TCGETPGRP */
8690 #ifdef HAVE_TCSETPGRP
8691 {"tcsetpgrp", posix_tcsetpgrp
, METH_VARARGS
, posix_tcsetpgrp__doc__
},
8692 #endif /* HAVE_TCSETPGRP */
8693 {"open", posix_open
, METH_VARARGS
, posix_open__doc__
},
8694 {"close", posix_close
, METH_VARARGS
, posix_close__doc__
},
8695 {"closerange", posix_closerange
, METH_VARARGS
, posix_closerange__doc__
},
8696 {"dup", posix_dup
, METH_VARARGS
, posix_dup__doc__
},
8697 {"dup2", posix_dup2
, METH_VARARGS
, posix_dup2__doc__
},
8698 {"lseek", posix_lseek
, METH_VARARGS
, posix_lseek__doc__
},
8699 {"read", posix_read
, METH_VARARGS
, posix_read__doc__
},
8700 {"write", posix_write
, METH_VARARGS
, posix_write__doc__
},
8701 {"fstat", posix_fstat
, METH_VARARGS
, posix_fstat__doc__
},
8702 {"fdopen", posix_fdopen
, METH_VARARGS
, posix_fdopen__doc__
},
8703 {"isatty", posix_isatty
, METH_VARARGS
, posix_isatty__doc__
},
8705 {"pipe", posix_pipe
, METH_NOARGS
, posix_pipe__doc__
},
8708 {"mkfifo", posix_mkfifo
, METH_VARARGS
, posix_mkfifo__doc__
},
8710 #if defined(HAVE_MKNOD) && defined(HAVE_MAKEDEV)
8711 {"mknod", posix_mknod
, METH_VARARGS
, posix_mknod__doc__
},
8713 #ifdef HAVE_DEVICE_MACROS
8714 {"major", posix_major
, METH_VARARGS
, posix_major__doc__
},
8715 {"minor", posix_minor
, METH_VARARGS
, posix_minor__doc__
},
8716 {"makedev", posix_makedev
, METH_VARARGS
, posix_makedev__doc__
},
8718 #ifdef HAVE_FTRUNCATE
8719 {"ftruncate", posix_ftruncate
, METH_VARARGS
, posix_ftruncate__doc__
},
8722 {"putenv", posix_putenv
, METH_VARARGS
, posix_putenv__doc__
},
8724 #ifdef HAVE_UNSETENV
8725 {"unsetenv", posix_unsetenv
, METH_VARARGS
, posix_unsetenv__doc__
},
8727 {"strerror", posix_strerror
, METH_VARARGS
, posix_strerror__doc__
},
8729 {"fchdir", posix_fchdir
, METH_O
, posix_fchdir__doc__
},
8732 {"fsync", posix_fsync
, METH_O
, posix_fsync__doc__
},
8734 #ifdef HAVE_FDATASYNC
8735 {"fdatasync", posix_fdatasync
, METH_O
, posix_fdatasync__doc__
},
8737 #ifdef HAVE_SYS_WAIT_H
8739 {"WCOREDUMP", posix_WCOREDUMP
, METH_VARARGS
, posix_WCOREDUMP__doc__
},
8740 #endif /* WCOREDUMP */
8742 {"WIFCONTINUED",posix_WIFCONTINUED
, METH_VARARGS
, posix_WIFCONTINUED__doc__
},
8743 #endif /* WIFCONTINUED */
8745 {"WIFSTOPPED", posix_WIFSTOPPED
, METH_VARARGS
, posix_WIFSTOPPED__doc__
},
8746 #endif /* WIFSTOPPED */
8748 {"WIFSIGNALED", posix_WIFSIGNALED
, METH_VARARGS
, posix_WIFSIGNALED__doc__
},
8749 #endif /* WIFSIGNALED */
8751 {"WIFEXITED", posix_WIFEXITED
, METH_VARARGS
, posix_WIFEXITED__doc__
},
8752 #endif /* WIFEXITED */
8754 {"WEXITSTATUS", posix_WEXITSTATUS
, METH_VARARGS
, posix_WEXITSTATUS__doc__
},
8755 #endif /* WEXITSTATUS */
8757 {"WTERMSIG", posix_WTERMSIG
, METH_VARARGS
, posix_WTERMSIG__doc__
},
8758 #endif /* WTERMSIG */
8760 {"WSTOPSIG", posix_WSTOPSIG
, METH_VARARGS
, posix_WSTOPSIG__doc__
},
8761 #endif /* WSTOPSIG */
8762 #endif /* HAVE_SYS_WAIT_H */
8763 #if defined(HAVE_FSTATVFS) && defined(HAVE_SYS_STATVFS_H)
8764 {"fstatvfs", posix_fstatvfs
, METH_VARARGS
, posix_fstatvfs__doc__
},
8766 #if defined(HAVE_STATVFS) && defined(HAVE_SYS_STATVFS_H)
8767 {"statvfs", posix_statvfs
, METH_VARARGS
, posix_statvfs__doc__
},
8770 {"tmpfile", posix_tmpfile
, METH_NOARGS
, posix_tmpfile__doc__
},
8773 {"tempnam", posix_tempnam
, METH_VARARGS
, posix_tempnam__doc__
},
8776 {"tmpnam", posix_tmpnam
, METH_NOARGS
, posix_tmpnam__doc__
},
8779 {"confstr", posix_confstr
, METH_VARARGS
, posix_confstr__doc__
},
8782 {"sysconf", posix_sysconf
, METH_VARARGS
, posix_sysconf__doc__
},
8784 #ifdef HAVE_FPATHCONF
8785 {"fpathconf", posix_fpathconf
, METH_VARARGS
, posix_fpathconf__doc__
},
8787 #ifdef HAVE_PATHCONF
8788 {"pathconf", posix_pathconf
, METH_VARARGS
, posix_pathconf__doc__
},
8790 {"abort", posix_abort
, METH_NOARGS
, posix_abort__doc__
},
8792 {"_getfullpathname", posix__getfullpathname
, METH_VARARGS
, NULL
},
8794 #ifdef HAVE_GETLOADAVG
8795 {"getloadavg", posix_getloadavg
, METH_NOARGS
, posix_getloadavg__doc__
},
8798 {"urandom", win32_urandom
, METH_VARARGS
, win32_urandom__doc__
},
8801 {"urandom", vms_urandom
, METH_VARARGS
, vms_urandom__doc__
},
8803 #ifdef HAVE_SETRESUID
8804 {"setresuid", posix_setresuid
, METH_VARARGS
, posix_setresuid__doc__
},
8806 #ifdef HAVE_SETRESGID
8807 {"setresgid", posix_setresgid
, METH_VARARGS
, posix_setresgid__doc__
},
8809 #ifdef HAVE_GETRESUID
8810 {"getresuid", posix_getresuid
, METH_NOARGS
, posix_getresuid__doc__
},
8812 #ifdef HAVE_GETRESGID
8813 {"getresgid", posix_getresgid
, METH_NOARGS
, posix_getresgid__doc__
},
8816 {NULL
, NULL
} /* Sentinel */
8821 ins(PyObject
*module
, char *symbol
, long value
)
8823 return PyModule_AddIntConstant(module
, symbol
, value
);
8826 #if defined(PYOS_OS2)
8827 /* Insert Platform-Specific Constant Values (Strings & Numbers) of Common Use */
8828 static int insertvalues(PyObject
*module
)
8831 ULONG values
[QSV_MAX
+1];
8835 Py_BEGIN_ALLOW_THREADS
8836 rc
= DosQuerySysInfo(1L, QSV_MAX
, &values
[1], sizeof(ULONG
) * QSV_MAX
);
8837 Py_END_ALLOW_THREADS
8839 if (rc
!= NO_ERROR
) {
8844 if (ins(module
, "meminstalled", values
[QSV_TOTPHYSMEM
])) return -1;
8845 if (ins(module
, "memkernel", values
[QSV_TOTRESMEM
])) return -1;
8846 if (ins(module
, "memvirtual", values
[QSV_TOTAVAILMEM
])) return -1;
8847 if (ins(module
, "maxpathlen", values
[QSV_MAX_PATH_LENGTH
])) return -1;
8848 if (ins(module
, "maxnamelen", values
[QSV_MAX_COMP_LENGTH
])) return -1;
8849 if (ins(module
, "revision", values
[QSV_VERSION_REVISION
])) return -1;
8850 if (ins(module
, "timeslice", values
[QSV_MIN_SLICE
])) return -1;
8852 switch (values
[QSV_VERSION_MINOR
]) {
8853 case 0: ver
= "2.00"; break;
8854 case 10: ver
= "2.10"; break;
8855 case 11: ver
= "2.11"; break;
8856 case 30: ver
= "3.00"; break;
8857 case 40: ver
= "4.00"; break;
8858 case 50: ver
= "5.00"; break;
8860 PyOS_snprintf(tmp
, sizeof(tmp
),
8861 "%d-%d", values
[QSV_VERSION_MAJOR
],
8862 values
[QSV_VERSION_MINOR
]);
8866 /* Add Indicator of the Version of the Operating System */
8867 if (PyModule_AddStringConstant(module
, "version", tmp
) < 0)
8870 /* Add Indicator of Which Drive was Used to Boot the System */
8871 tmp
[0] = 'A' + values
[QSV_BOOT_DRIVE
] - 1;
8875 return PyModule_AddStringConstant(module
, "bootdrive", tmp
);
8880 all_ins(PyObject
*d
)
8883 if (ins(d
, "F_OK", (long)F_OK
)) return -1;
8886 if (ins(d
, "R_OK", (long)R_OK
)) return -1;
8889 if (ins(d
, "W_OK", (long)W_OK
)) return -1;
8892 if (ins(d
, "X_OK", (long)X_OK
)) return -1;
8895 if (ins(d
, "NGROUPS_MAX", (long)NGROUPS_MAX
)) return -1;
8898 if (ins(d
, "TMP_MAX", (long)TMP_MAX
)) return -1;
8901 if (ins(d
, "WCONTINUED", (long)WCONTINUED
)) return -1;
8904 if (ins(d
, "WNOHANG", (long)WNOHANG
)) return -1;
8907 if (ins(d
, "WUNTRACED", (long)WUNTRACED
)) return -1;
8910 if (ins(d
, "O_RDONLY", (long)O_RDONLY
)) return -1;
8913 if (ins(d
, "O_WRONLY", (long)O_WRONLY
)) return -1;
8916 if (ins(d
, "O_RDWR", (long)O_RDWR
)) return -1;
8919 if (ins(d
, "O_NDELAY", (long)O_NDELAY
)) return -1;
8922 if (ins(d
, "O_NONBLOCK", (long)O_NONBLOCK
)) return -1;
8925 if (ins(d
, "O_APPEND", (long)O_APPEND
)) return -1;
8928 if (ins(d
, "O_DSYNC", (long)O_DSYNC
)) return -1;
8931 if (ins(d
, "O_RSYNC", (long)O_RSYNC
)) return -1;
8934 if (ins(d
, "O_SYNC", (long)O_SYNC
)) return -1;
8937 if (ins(d
, "O_NOCTTY", (long)O_NOCTTY
)) return -1;
8940 if (ins(d
, "O_CREAT", (long)O_CREAT
)) return -1;
8943 if (ins(d
, "O_EXCL", (long)O_EXCL
)) return -1;
8946 if (ins(d
, "O_TRUNC", (long)O_TRUNC
)) return -1;
8949 if (ins(d
, "O_BINARY", (long)O_BINARY
)) return -1;
8952 if (ins(d
, "O_TEXT", (long)O_TEXT
)) return -1;
8955 if (ins(d
, "O_LARGEFILE", (long)O_LARGEFILE
)) return -1;
8958 if (ins(d
, "O_SHLOCK", (long)O_SHLOCK
)) return -1;
8961 if (ins(d
, "O_EXLOCK", (long)O_EXLOCK
)) return -1;
8966 /* Don't inherit in child processes. */
8967 if (ins(d
, "O_NOINHERIT", (long)O_NOINHERIT
)) return -1;
8969 #ifdef _O_SHORT_LIVED
8970 /* Optimize for short life (keep in memory). */
8971 /* MS forgot to define this one with a non-underscore form too. */
8972 if (ins(d
, "O_SHORT_LIVED", (long)_O_SHORT_LIVED
)) return -1;
8975 /* Automatically delete when last handle is closed. */
8976 if (ins(d
, "O_TEMPORARY", (long)O_TEMPORARY
)) return -1;
8979 /* Optimize for random access. */
8980 if (ins(d
, "O_RANDOM", (long)O_RANDOM
)) return -1;
8983 /* Optimize for sequential access. */
8984 if (ins(d
, "O_SEQUENTIAL", (long)O_SEQUENTIAL
)) return -1;
8987 /* GNU extensions. */
8989 /* Send a SIGIO signal whenever input or output
8990 becomes available on file descriptor */
8991 if (ins(d
, "O_ASYNC", (long)O_ASYNC
)) return -1;
8994 /* Direct disk access. */
8995 if (ins(d
, "O_DIRECT", (long)O_DIRECT
)) return -1;
8998 /* Must be a directory. */
8999 if (ins(d
, "O_DIRECTORY", (long)O_DIRECTORY
)) return -1;
9002 /* Do not follow links. */
9003 if (ins(d
, "O_NOFOLLOW", (long)O_NOFOLLOW
)) return -1;
9006 /* Do not update the access time. */
9007 if (ins(d
, "O_NOATIME", (long)O_NOATIME
)) return -1;
9010 /* These come from sysexits.h */
9012 if (ins(d
, "EX_OK", (long)EX_OK
)) return -1;
9015 if (ins(d
, "EX_USAGE", (long)EX_USAGE
)) return -1;
9016 #endif /* EX_USAGE */
9018 if (ins(d
, "EX_DATAERR", (long)EX_DATAERR
)) return -1;
9019 #endif /* EX_DATAERR */
9021 if (ins(d
, "EX_NOINPUT", (long)EX_NOINPUT
)) return -1;
9022 #endif /* EX_NOINPUT */
9024 if (ins(d
, "EX_NOUSER", (long)EX_NOUSER
)) return -1;
9025 #endif /* EX_NOUSER */
9027 if (ins(d
, "EX_NOHOST", (long)EX_NOHOST
)) return -1;
9028 #endif /* EX_NOHOST */
9029 #ifdef EX_UNAVAILABLE
9030 if (ins(d
, "EX_UNAVAILABLE", (long)EX_UNAVAILABLE
)) return -1;
9031 #endif /* EX_UNAVAILABLE */
9033 if (ins(d
, "EX_SOFTWARE", (long)EX_SOFTWARE
)) return -1;
9034 #endif /* EX_SOFTWARE */
9036 if (ins(d
, "EX_OSERR", (long)EX_OSERR
)) return -1;
9037 #endif /* EX_OSERR */
9039 if (ins(d
, "EX_OSFILE", (long)EX_OSFILE
)) return -1;
9040 #endif /* EX_OSFILE */
9042 if (ins(d
, "EX_CANTCREAT", (long)EX_CANTCREAT
)) return -1;
9043 #endif /* EX_CANTCREAT */
9045 if (ins(d
, "EX_IOERR", (long)EX_IOERR
)) return -1;
9046 #endif /* EX_IOERR */
9048 if (ins(d
, "EX_TEMPFAIL", (long)EX_TEMPFAIL
)) return -1;
9049 #endif /* EX_TEMPFAIL */
9051 if (ins(d
, "EX_PROTOCOL", (long)EX_PROTOCOL
)) return -1;
9052 #endif /* EX_PROTOCOL */
9054 if (ins(d
, "EX_NOPERM", (long)EX_NOPERM
)) return -1;
9055 #endif /* EX_NOPERM */
9057 if (ins(d
, "EX_CONFIG", (long)EX_CONFIG
)) return -1;
9058 #endif /* EX_CONFIG */
9060 if (ins(d
, "EX_NOTFOUND", (long)EX_NOTFOUND
)) return -1;
9061 #endif /* EX_NOTFOUND */
9064 #if defined(PYOS_OS2) && defined(PYCC_GCC)
9065 if (ins(d
, "P_WAIT", (long)P_WAIT
)) return -1;
9066 if (ins(d
, "P_NOWAIT", (long)P_NOWAIT
)) return -1;
9067 if (ins(d
, "P_OVERLAY", (long)P_OVERLAY
)) return -1;
9068 if (ins(d
, "P_DEBUG", (long)P_DEBUG
)) return -1;
9069 if (ins(d
, "P_SESSION", (long)P_SESSION
)) return -1;
9070 if (ins(d
, "P_DETACH", (long)P_DETACH
)) return -1;
9071 if (ins(d
, "P_PM", (long)P_PM
)) return -1;
9072 if (ins(d
, "P_DEFAULT", (long)P_DEFAULT
)) return -1;
9073 if (ins(d
, "P_MINIMIZE", (long)P_MINIMIZE
)) return -1;
9074 if (ins(d
, "P_MAXIMIZE", (long)P_MAXIMIZE
)) return -1;
9075 if (ins(d
, "P_FULLSCREEN", (long)P_FULLSCREEN
)) return -1;
9076 if (ins(d
, "P_WINDOWED", (long)P_WINDOWED
)) return -1;
9077 if (ins(d
, "P_FOREGROUND", (long)P_FOREGROUND
)) return -1;
9078 if (ins(d
, "P_BACKGROUND", (long)P_BACKGROUND
)) return -1;
9079 if (ins(d
, "P_NOCLOSE", (long)P_NOCLOSE
)) return -1;
9080 if (ins(d
, "P_NOSESSION", (long)P_NOSESSION
)) return -1;
9081 if (ins(d
, "P_QUOTE", (long)P_QUOTE
)) return -1;
9082 if (ins(d
, "P_TILDE", (long)P_TILDE
)) return -1;
9083 if (ins(d
, "P_UNRELATED", (long)P_UNRELATED
)) return -1;
9084 if (ins(d
, "P_DEBUGDESC", (long)P_DEBUGDESC
)) return -1;
9086 if (ins(d
, "P_WAIT", (long)_P_WAIT
)) return -1;
9087 if (ins(d
, "P_NOWAIT", (long)_P_NOWAIT
)) return -1;
9088 if (ins(d
, "P_OVERLAY", (long)_OLD_P_OVERLAY
)) return -1;
9089 if (ins(d
, "P_NOWAITO", (long)_P_NOWAITO
)) return -1;
9090 if (ins(d
, "P_DETACH", (long)_P_DETACH
)) return -1;
9094 #if defined(PYOS_OS2)
9095 if (insertvalues(d
)) return -1;
9101 #if (defined(_MSC_VER) || defined(__WATCOMC__) || defined(__BORLANDC__)) && !defined(__QNX__)
9102 #define INITFUNC initnt
9103 #define MODNAME "nt"
9105 #elif defined(PYOS_OS2)
9106 #define INITFUNC initos2
9107 #define MODNAME "os2"
9110 #define INITFUNC initposix
9111 #define MODNAME "posix"
9119 m
= Py_InitModule3(MODNAME
,
9125 /* Initialize environ dictionary */
9126 v
= convertenviron();
9128 if (v
== NULL
|| PyModule_AddObject(m
, "environ", v
) != 0)
9135 if (setup_confname_tables(m
))
9138 Py_INCREF(PyExc_OSError
);
9139 PyModule_AddObject(m
, "error", PyExc_OSError
);
9142 if (posix_putenv_garbage
== NULL
)
9143 posix_putenv_garbage
= PyDict_New();
9147 stat_result_desc
.name
= MODNAME
".stat_result";
9148 stat_result_desc
.fields
[7].name
= PyStructSequence_UnnamedField
;
9149 stat_result_desc
.fields
[8].name
= PyStructSequence_UnnamedField
;
9150 stat_result_desc
.fields
[9].name
= PyStructSequence_UnnamedField
;
9151 PyStructSequence_InitType(&StatResultType
, &stat_result_desc
);
9152 structseq_new
= StatResultType
.tp_new
;
9153 StatResultType
.tp_new
= statresult_new
;
9155 statvfs_result_desc
.name
= MODNAME
".statvfs_result";
9156 PyStructSequence_InitType(&StatVFSResultType
, &statvfs_result_desc
);
9157 #ifdef NEED_TICKS_PER_SECOND
9158 # if defined(HAVE_SYSCONF) && defined(_SC_CLK_TCK)
9159 ticks_per_second
= sysconf(_SC_CLK_TCK
);
9161 ticks_per_second
= HZ
;
9163 ticks_per_second
= 60; /* magic fallback value; may be bogus */
9167 Py_INCREF((PyObject
*) &StatResultType
);
9168 PyModule_AddObject(m
, "stat_result", (PyObject
*) &StatResultType
);
9169 Py_INCREF((PyObject
*) &StatVFSResultType
);
9170 PyModule_AddObject(m
, "statvfs_result",
9171 (PyObject
*) &StatVFSResultType
);
9176 * Step 2 of weak-linking support on Mac OS X.
9178 * The code below removes functions that are not available on the
9179 * currently active platform.
9181 * This block allow one to use a python binary that was build on
9182 * OSX 10.4 on OSX 10.3, without loosing access to new APIs on
9185 #ifdef HAVE_FSTATVFS
9186 if (fstatvfs
== NULL
) {
9187 if (PyObject_DelAttrString(m
, "fstatvfs") == -1) {
9191 #endif /* HAVE_FSTATVFS */
9194 if (statvfs
== NULL
) {
9195 if (PyObject_DelAttrString(m
, "statvfs") == -1) {
9199 #endif /* HAVE_STATVFS */
9202 if (lchown
== NULL
) {
9203 if (PyObject_DelAttrString(m
, "lchown") == -1) {
9207 #endif /* HAVE_LCHOWN */
9210 #endif /* __APPLE__ */