blob: 20d0063aaf45eccfb6ff8cbf6b3558354c3880e3 [file] [log] [blame]
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001/*
2 * Support routines from the Windows API
3 *
4 * This module was originally created by merging PC/_subprocess.c with
5 * Modules/_multiprocessing/win32_functions.c.
6 *
7 * Copyright (c) 2004 by Fredrik Lundh <fredrik@pythonware.com>
8 * Copyright (c) 2004 by Secret Labs AB, http://www.pythonware.com
9 * Copyright (c) 2004 by Peter Astrand <astrand@lysator.liu.se>
10 *
11 * By obtaining, using, and/or copying this software and/or its
12 * associated documentation, you agree that you have read, understood,
13 * and will comply with the following terms and conditions:
14 *
15 * Permission to use, copy, modify, and distribute this software and
16 * its associated documentation for any purpose and without fee is
17 * hereby granted, provided that the above copyright notice appears in
18 * all copies, and that both that copyright notice and this permission
19 * notice appear in supporting documentation, and that the name of the
20 * authors not be used in advertising or publicity pertaining to
21 * distribution of the software without specific, written prior
22 * permission.
23 *
24 * THE AUTHORS DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
25 * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS.
26 * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY SPECIAL, INDIRECT OR
27 * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS
28 * OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT,
29 * NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION
30 * WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
31 *
32 */
33
34/* Licensed to PSF under a Contributor Agreement. */
35/* See http://www.python.org/2.4/license for licensing details. */
36
37#include "Python.h"
38#include "structmember.h"
39
40#define WINDOWS_LEAN_AND_MEAN
41#include "windows.h"
42#include <crtdbg.h>
43
44#if defined(MS_WIN32) && !defined(MS_WIN64)
45#define HANDLE_TO_PYNUM(handle) \
46 PyLong_FromUnsignedLong((unsigned long) handle)
47#define PYNUM_TO_HANDLE(obj) ((HANDLE)PyLong_AsUnsignedLong(obj))
48#define F_POINTER "k"
49#define T_POINTER T_ULONG
50#else
51#define HANDLE_TO_PYNUM(handle) \
52 PyLong_FromUnsignedLongLong((unsigned long long) handle)
53#define PYNUM_TO_HANDLE(obj) ((HANDLE)PyLong_AsUnsignedLongLong(obj))
54#define F_POINTER "K"
55#define T_POINTER T_ULONGLONG
56#endif
57
58#define F_HANDLE F_POINTER
59#define F_DWORD "k"
60#define F_BOOL "i"
61#define F_UINT "I"
62
63#define T_HANDLE T_POINTER
64
Victor Stinner71765772013-06-24 23:13:24 +020065#define DWORD_MAX 4294967295U
66
Antoine Pitrou23bba4c2012-04-18 20:51:15 +020067/* Grab CancelIoEx dynamically from kernel32 */
68static int has_CancelIoEx = -1;
69static BOOL (CALLBACK *Py_CancelIoEx)(HANDLE, LPOVERLAPPED);
70
71static int
72check_CancelIoEx()
73{
74 if (has_CancelIoEx == -1)
75 {
76 HINSTANCE hKernel32 = GetModuleHandle("KERNEL32");
77 * (FARPROC *) &Py_CancelIoEx = GetProcAddress(hKernel32,
78 "CancelIoEx");
79 has_CancelIoEx = (Py_CancelIoEx != NULL);
80 }
81 return has_CancelIoEx;
82}
83
84
85/*
86 * A Python object wrapping an OVERLAPPED structure and other useful data
87 * for overlapped I/O
88 */
89
90typedef struct {
91 PyObject_HEAD
92 OVERLAPPED overlapped;
93 /* For convenience, we store the file handle too */
94 HANDLE handle;
95 /* Whether there's I/O in flight */
96 int pending;
97 /* Whether I/O completed successfully */
98 int completed;
99 /* Buffer used for reading (optional) */
100 PyObject *read_buffer;
101 /* Buffer used for writing (optional) */
102 Py_buffer write_buffer;
103} OverlappedObject;
104
105static void
106overlapped_dealloc(OverlappedObject *self)
107{
108 DWORD bytes;
109 int err = GetLastError();
110 if (self->pending) {
111 /* make it a programming error to deallocate while operation
112 is pending, even if we can safely cancel it */
113 if (check_CancelIoEx() &&
114 Py_CancelIoEx(self->handle, &self->overlapped))
115 GetOverlappedResult(self->handle, &self->overlapped, &bytes, TRUE);
116 PyErr_SetString(PyExc_RuntimeError,
117 "I/O operations still in flight while destroying "
118 "Overlapped object, the process may crash");
119 PyErr_WriteUnraisable(NULL);
120 }
121 CloseHandle(self->overlapped.hEvent);
122 SetLastError(err);
123 if (self->write_buffer.obj)
124 PyBuffer_Release(&self->write_buffer);
125 Py_CLEAR(self->read_buffer);
126 PyObject_Del(self);
127}
128
129static PyObject *
130overlapped_GetOverlappedResult(OverlappedObject *self, PyObject *waitobj)
131{
132 int wait;
133 BOOL res;
134 DWORD transferred = 0;
135 DWORD err;
136
137 wait = PyObject_IsTrue(waitobj);
138 if (wait < 0)
139 return NULL;
140 Py_BEGIN_ALLOW_THREADS
141 res = GetOverlappedResult(self->handle, &self->overlapped, &transferred,
142 wait != 0);
143 Py_END_ALLOW_THREADS
144
145 err = res ? ERROR_SUCCESS : GetLastError();
146 switch (err) {
147 case ERROR_SUCCESS:
148 case ERROR_MORE_DATA:
149 case ERROR_OPERATION_ABORTED:
150 self->completed = 1;
151 self->pending = 0;
152 break;
153 case ERROR_IO_INCOMPLETE:
154 break;
155 default:
156 self->pending = 0;
157 return PyErr_SetExcFromWindowsErr(PyExc_IOError, err);
158 }
159 if (self->completed && self->read_buffer != NULL) {
160 assert(PyBytes_CheckExact(self->read_buffer));
161 if (transferred != PyBytes_GET_SIZE(self->read_buffer) &&
162 _PyBytes_Resize(&self->read_buffer, transferred))
163 return NULL;
164 }
165 return Py_BuildValue("II", (unsigned) transferred, (unsigned) err);
166}
167
168static PyObject *
169overlapped_getbuffer(OverlappedObject *self)
170{
171 PyObject *res;
172 if (!self->completed) {
173 PyErr_SetString(PyExc_ValueError,
174 "can't get read buffer before GetOverlappedResult() "
175 "signals the operation completed");
176 return NULL;
177 }
178 res = self->read_buffer ? self->read_buffer : Py_None;
179 Py_INCREF(res);
180 return res;
181}
182
183static PyObject *
184overlapped_cancel(OverlappedObject *self)
185{
186 BOOL res = TRUE;
187
188 if (self->pending) {
189 Py_BEGIN_ALLOW_THREADS
190 if (check_CancelIoEx())
191 res = Py_CancelIoEx(self->handle, &self->overlapped);
192 else
193 res = CancelIo(self->handle);
194 Py_END_ALLOW_THREADS
195 }
196
197 /* CancelIoEx returns ERROR_NOT_FOUND if the I/O completed in-between */
198 if (!res && GetLastError() != ERROR_NOT_FOUND)
199 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
200 self->pending = 0;
201 Py_RETURN_NONE;
202}
203
204static PyMethodDef overlapped_methods[] = {
205 {"GetOverlappedResult", (PyCFunction) overlapped_GetOverlappedResult,
206 METH_O, NULL},
207 {"getbuffer", (PyCFunction) overlapped_getbuffer, METH_NOARGS, NULL},
208 {"cancel", (PyCFunction) overlapped_cancel, METH_NOARGS, NULL},
209 {NULL}
210};
211
212static PyMemberDef overlapped_members[] = {
213 {"event", T_HANDLE,
214 offsetof(OverlappedObject, overlapped) + offsetof(OVERLAPPED, hEvent),
215 READONLY, "overlapped event handle"},
216 {NULL}
217};
218
219PyTypeObject OverlappedType = {
220 PyVarObject_HEAD_INIT(NULL, 0)
221 /* tp_name */ "_winapi.Overlapped",
222 /* tp_basicsize */ sizeof(OverlappedObject),
223 /* tp_itemsize */ 0,
224 /* tp_dealloc */ (destructor) overlapped_dealloc,
225 /* tp_print */ 0,
226 /* tp_getattr */ 0,
227 /* tp_setattr */ 0,
228 /* tp_reserved */ 0,
229 /* tp_repr */ 0,
230 /* tp_as_number */ 0,
231 /* tp_as_sequence */ 0,
232 /* tp_as_mapping */ 0,
233 /* tp_hash */ 0,
234 /* tp_call */ 0,
235 /* tp_str */ 0,
236 /* tp_getattro */ 0,
237 /* tp_setattro */ 0,
238 /* tp_as_buffer */ 0,
239 /* tp_flags */ Py_TPFLAGS_DEFAULT,
240 /* tp_doc */ "OVERLAPPED structure wrapper",
241 /* tp_traverse */ 0,
242 /* tp_clear */ 0,
243 /* tp_richcompare */ 0,
244 /* tp_weaklistoffset */ 0,
245 /* tp_iter */ 0,
246 /* tp_iternext */ 0,
247 /* tp_methods */ overlapped_methods,
248 /* tp_members */ overlapped_members,
249 /* tp_getset */ 0,
250 /* tp_base */ 0,
251 /* tp_dict */ 0,
252 /* tp_descr_get */ 0,
253 /* tp_descr_set */ 0,
254 /* tp_dictoffset */ 0,
255 /* tp_init */ 0,
256 /* tp_alloc */ 0,
257 /* tp_new */ 0,
258};
259
260static OverlappedObject *
261new_overlapped(HANDLE handle)
262{
263 OverlappedObject *self;
264
265 self = PyObject_New(OverlappedObject, &OverlappedType);
266 if (!self)
267 return NULL;
268 self->handle = handle;
269 self->read_buffer = NULL;
270 self->pending = 0;
271 self->completed = 0;
272 memset(&self->overlapped, 0, sizeof(OVERLAPPED));
273 memset(&self->write_buffer, 0, sizeof(Py_buffer));
274 /* Manual reset, initially non-signalled */
275 self->overlapped.hEvent = CreateEvent(NULL, TRUE, FALSE, NULL);
276 return self;
277}
278
279/* -------------------------------------------------------------------- */
280/* windows API functions */
281
282PyDoc_STRVAR(CloseHandle_doc,
283"CloseHandle(handle) -> None\n\
284\n\
285Close handle.");
286
287static PyObject *
288winapi_CloseHandle(PyObject *self, PyObject *args)
289{
290 HANDLE hObject;
291 BOOL success;
292
293 if (!PyArg_ParseTuple(args, F_HANDLE ":CloseHandle", &hObject))
294 return NULL;
295
296 Py_BEGIN_ALLOW_THREADS
297 success = CloseHandle(hObject);
298 Py_END_ALLOW_THREADS
299
300 if (!success)
301 return PyErr_SetFromWindowsErr(0);
302
303 Py_RETURN_NONE;
304}
305
306static PyObject *
307winapi_ConnectNamedPipe(PyObject *self, PyObject *args, PyObject *kwds)
308{
309 HANDLE hNamedPipe;
310 int use_overlapped = 0;
311 BOOL success;
312 OverlappedObject *overlapped = NULL;
313 static char *kwlist[] = {"handle", "overlapped", NULL};
314
315 if (!PyArg_ParseTupleAndKeywords(args, kwds,
316 F_HANDLE "|" F_BOOL, kwlist,
317 &hNamedPipe, &use_overlapped))
318 return NULL;
319
320 if (use_overlapped) {
321 overlapped = new_overlapped(hNamedPipe);
322 if (!overlapped)
323 return NULL;
324 }
325
326 Py_BEGIN_ALLOW_THREADS
327 success = ConnectNamedPipe(hNamedPipe,
328 overlapped ? &overlapped->overlapped : NULL);
329 Py_END_ALLOW_THREADS
330
331 if (overlapped) {
332 int err = GetLastError();
333 /* Overlapped ConnectNamedPipe never returns a success code */
334 assert(success == 0);
335 if (err == ERROR_IO_PENDING)
336 overlapped->pending = 1;
337 else if (err == ERROR_PIPE_CONNECTED)
338 SetEvent(overlapped->overlapped.hEvent);
339 else {
340 Py_DECREF(overlapped);
341 return PyErr_SetFromWindowsErr(err);
342 }
343 return (PyObject *) overlapped;
344 }
345 if (!success)
346 return PyErr_SetFromWindowsErr(0);
347
348 Py_RETURN_NONE;
349}
350
351static PyObject *
352winapi_CreateFile(PyObject *self, PyObject *args)
353{
354 LPCTSTR lpFileName;
355 DWORD dwDesiredAccess;
356 DWORD dwShareMode;
357 LPSECURITY_ATTRIBUTES lpSecurityAttributes;
358 DWORD dwCreationDisposition;
359 DWORD dwFlagsAndAttributes;
360 HANDLE hTemplateFile;
361 HANDLE handle;
362
363 if (!PyArg_ParseTuple(args, "s" F_DWORD F_DWORD F_POINTER
364 F_DWORD F_DWORD F_HANDLE,
365 &lpFileName, &dwDesiredAccess, &dwShareMode,
366 &lpSecurityAttributes, &dwCreationDisposition,
367 &dwFlagsAndAttributes, &hTemplateFile))
368 return NULL;
369
370 Py_BEGIN_ALLOW_THREADS
371 handle = CreateFile(lpFileName, dwDesiredAccess,
372 dwShareMode, lpSecurityAttributes,
373 dwCreationDisposition,
374 dwFlagsAndAttributes, hTemplateFile);
375 Py_END_ALLOW_THREADS
376
377 if (handle == INVALID_HANDLE_VALUE)
378 return PyErr_SetFromWindowsErr(0);
379
380 return Py_BuildValue(F_HANDLE, handle);
381}
382
383static PyObject *
384winapi_CreateNamedPipe(PyObject *self, PyObject *args)
385{
386 LPCTSTR lpName;
387 DWORD dwOpenMode;
388 DWORD dwPipeMode;
389 DWORD nMaxInstances;
390 DWORD nOutBufferSize;
391 DWORD nInBufferSize;
392 DWORD nDefaultTimeOut;
393 LPSECURITY_ATTRIBUTES lpSecurityAttributes;
394 HANDLE handle;
395
396 if (!PyArg_ParseTuple(args, "s" F_DWORD F_DWORD F_DWORD
397 F_DWORD F_DWORD F_DWORD F_POINTER,
398 &lpName, &dwOpenMode, &dwPipeMode,
399 &nMaxInstances, &nOutBufferSize,
400 &nInBufferSize, &nDefaultTimeOut,
401 &lpSecurityAttributes))
402 return NULL;
403
404 Py_BEGIN_ALLOW_THREADS
405 handle = CreateNamedPipe(lpName, dwOpenMode, dwPipeMode,
406 nMaxInstances, nOutBufferSize,
407 nInBufferSize, nDefaultTimeOut,
408 lpSecurityAttributes);
409 Py_END_ALLOW_THREADS
410
411 if (handle == INVALID_HANDLE_VALUE)
412 return PyErr_SetFromWindowsErr(0);
413
414 return Py_BuildValue(F_HANDLE, handle);
415}
416
417PyDoc_STRVAR(CreatePipe_doc,
418"CreatePipe(pipe_attrs, size) -> (read_handle, write_handle)\n\
419\n\
420Create an anonymous pipe, and return handles to the read and\n\
421write ends of the pipe.\n\
422\n\
423pipe_attrs is ignored internally and can be None.");
424
425static PyObject *
426winapi_CreatePipe(PyObject* self, PyObject* args)
427{
428 HANDLE read_pipe;
429 HANDLE write_pipe;
430 BOOL result;
431
432 PyObject* pipe_attributes; /* ignored */
433 DWORD size;
434
435 if (! PyArg_ParseTuple(args, "O" F_DWORD ":CreatePipe",
436 &pipe_attributes, &size))
437 return NULL;
438
439 Py_BEGIN_ALLOW_THREADS
440 result = CreatePipe(&read_pipe, &write_pipe, NULL, size);
441 Py_END_ALLOW_THREADS
442
443 if (! result)
444 return PyErr_SetFromWindowsErr(GetLastError());
445
446 return Py_BuildValue(
447 "NN", HANDLE_TO_PYNUM(read_pipe), HANDLE_TO_PYNUM(write_pipe));
448}
449
450/* helpers for createprocess */
451
452static unsigned long
453getulong(PyObject* obj, char* name)
454{
455 PyObject* value;
456 unsigned long ret;
457
458 value = PyObject_GetAttrString(obj, name);
459 if (! value) {
460 PyErr_Clear(); /* FIXME: propagate error? */
461 return 0;
462 }
463 ret = PyLong_AsUnsignedLong(value);
464 Py_DECREF(value);
465 return ret;
466}
467
468static HANDLE
469gethandle(PyObject* obj, char* name)
470{
471 PyObject* value;
472 HANDLE ret;
473
474 value = PyObject_GetAttrString(obj, name);
475 if (! value) {
476 PyErr_Clear(); /* FIXME: propagate error? */
477 return NULL;
478 }
479 if (value == Py_None)
480 ret = NULL;
481 else
482 ret = PYNUM_TO_HANDLE(value);
483 Py_DECREF(value);
484 return ret;
485}
486
487static PyObject*
488getenvironment(PyObject* environment)
489{
490 Py_ssize_t i, envsize, totalsize;
491 Py_UCS4 *buffer = NULL, *p, *end;
492 PyObject *keys, *values, *res;
493
Ezio Melotti85a86292013-08-17 16:57:41 +0300494 /* convert environment dictionary to windows environment string */
Antoine Pitrou23bba4c2012-04-18 20:51:15 +0200495 if (! PyMapping_Check(environment)) {
496 PyErr_SetString(
497 PyExc_TypeError, "environment must be dictionary or None");
498 return NULL;
499 }
500
501 envsize = PyMapping_Length(environment);
502
503 keys = PyMapping_Keys(environment);
504 values = PyMapping_Values(environment);
505 if (!keys || !values)
506 goto error;
507
508 totalsize = 1; /* trailing null character */
509 for (i = 0; i < envsize; i++) {
510 PyObject* key = PyList_GET_ITEM(keys, i);
511 PyObject* value = PyList_GET_ITEM(values, i);
512
513 if (! PyUnicode_Check(key) || ! PyUnicode_Check(value)) {
514 PyErr_SetString(PyExc_TypeError,
515 "environment can only contain strings");
516 goto error;
517 }
518 totalsize += PyUnicode_GET_LENGTH(key) + 1; /* +1 for '=' */
519 totalsize += PyUnicode_GET_LENGTH(value) + 1; /* +1 for '\0' */
520 }
521
522 buffer = PyMem_Malloc(totalsize * sizeof(Py_UCS4));
523 if (! buffer)
524 goto error;
525 p = buffer;
526 end = buffer + totalsize;
527
528 for (i = 0; i < envsize; i++) {
529 PyObject* key = PyList_GET_ITEM(keys, i);
530 PyObject* value = PyList_GET_ITEM(values, i);
531 if (!PyUnicode_AsUCS4(key, p, end - p, 0))
532 goto error;
533 p += PyUnicode_GET_LENGTH(key);
534 *p++ = '=';
535 if (!PyUnicode_AsUCS4(value, p, end - p, 0))
536 goto error;
537 p += PyUnicode_GET_LENGTH(value);
538 *p++ = '\0';
539 }
540
541 /* add trailing null byte */
542 *p++ = '\0';
543 assert(p == end);
544
545 Py_XDECREF(keys);
546 Py_XDECREF(values);
547
548 res = PyUnicode_FromKindAndData(PyUnicode_4BYTE_KIND, buffer, p - buffer);
549 PyMem_Free(buffer);
550 return res;
551
552 error:
553 PyMem_Free(buffer);
554 Py_XDECREF(keys);
555 Py_XDECREF(values);
556 return NULL;
557}
558
559PyDoc_STRVAR(CreateProcess_doc,
560"CreateProcess(app_name, cmd_line, proc_attrs, thread_attrs,\n\
561 inherit, flags, env_mapping, curdir,\n\
562 startup_info) -> (proc_handle, thread_handle,\n\
563 pid, tid)\n\
564\n\
565Create a new process and its primary thread. The return\n\
566value is a tuple of the process handle, thread handle,\n\
567process ID, and thread ID.\n\
568\n\
569proc_attrs and thread_attrs are ignored internally and can be None.");
570
571static PyObject *
572winapi_CreateProcess(PyObject* self, PyObject* args)
573{
574 BOOL result;
575 PROCESS_INFORMATION pi;
576 STARTUPINFOW si;
577 PyObject* environment;
578 wchar_t *wenvironment;
579
580 wchar_t* application_name;
581 wchar_t* command_line;
582 PyObject* process_attributes; /* ignored */
583 PyObject* thread_attributes; /* ignored */
584 BOOL inherit_handles;
585 DWORD creation_flags;
586 PyObject* env_mapping;
587 wchar_t* current_directory;
588 PyObject* startup_info;
589
590 if (! PyArg_ParseTuple(args, "ZZOO" F_BOOL F_DWORD "OZO:CreateProcess",
591 &application_name,
592 &command_line,
593 &process_attributes,
594 &thread_attributes,
595 &inherit_handles,
596 &creation_flags,
597 &env_mapping,
598 &current_directory,
599 &startup_info))
600 return NULL;
601
602 ZeroMemory(&si, sizeof(si));
603 si.cb = sizeof(si);
604
605 /* note: we only support a small subset of all SI attributes */
606 si.dwFlags = getulong(startup_info, "dwFlags");
607 si.wShowWindow = (WORD)getulong(startup_info, "wShowWindow");
608 si.hStdInput = gethandle(startup_info, "hStdInput");
609 si.hStdOutput = gethandle(startup_info, "hStdOutput");
610 si.hStdError = gethandle(startup_info, "hStdError");
611 if (PyErr_Occurred())
612 return NULL;
613
614 if (env_mapping != Py_None) {
615 environment = getenvironment(env_mapping);
616 if (! environment)
617 return NULL;
618 wenvironment = PyUnicode_AsUnicode(environment);
619 if (wenvironment == NULL)
620 {
621 Py_XDECREF(environment);
622 return NULL;
623 }
624 }
625 else {
626 environment = NULL;
627 wenvironment = NULL;
628 }
629
630 Py_BEGIN_ALLOW_THREADS
631 result = CreateProcessW(application_name,
632 command_line,
633 NULL,
634 NULL,
635 inherit_handles,
636 creation_flags | CREATE_UNICODE_ENVIRONMENT,
637 wenvironment,
638 current_directory,
639 &si,
640 &pi);
641 Py_END_ALLOW_THREADS
642
643 Py_XDECREF(environment);
644
645 if (! result)
646 return PyErr_SetFromWindowsErr(GetLastError());
647
648 return Py_BuildValue("NNkk",
649 HANDLE_TO_PYNUM(pi.hProcess),
650 HANDLE_TO_PYNUM(pi.hThread),
651 pi.dwProcessId,
652 pi.dwThreadId);
653}
654
655PyDoc_STRVAR(DuplicateHandle_doc,
656"DuplicateHandle(source_proc_handle, source_handle,\n\
657 target_proc_handle, target_handle, access,\n\
658 inherit[, options]) -> handle\n\
659\n\
660Return a duplicate handle object.\n\
661\n\
662The duplicate handle refers to the same object as the original\n\
663handle. Therefore, any changes to the object are reflected\n\
664through both handles.");
665
666static PyObject *
667winapi_DuplicateHandle(PyObject* self, PyObject* args)
668{
669 HANDLE target_handle;
670 BOOL result;
671
672 HANDLE source_process_handle;
673 HANDLE source_handle;
674 HANDLE target_process_handle;
675 DWORD desired_access;
676 BOOL inherit_handle;
677 DWORD options = 0;
678
679 if (! PyArg_ParseTuple(args,
680 F_HANDLE F_HANDLE F_HANDLE F_DWORD F_BOOL F_DWORD
681 ":DuplicateHandle",
682 &source_process_handle,
683 &source_handle,
684 &target_process_handle,
685 &desired_access,
686 &inherit_handle,
687 &options))
688 return NULL;
689
690 Py_BEGIN_ALLOW_THREADS
691 result = DuplicateHandle(
692 source_process_handle,
693 source_handle,
694 target_process_handle,
695 &target_handle,
696 desired_access,
697 inherit_handle,
698 options
699 );
700 Py_END_ALLOW_THREADS
701
702 if (! result)
703 return PyErr_SetFromWindowsErr(GetLastError());
704
705 return HANDLE_TO_PYNUM(target_handle);
706}
707
708static PyObject *
709winapi_ExitProcess(PyObject *self, PyObject *args)
710{
711 UINT uExitCode;
712
713 if (!PyArg_ParseTuple(args, F_UINT, &uExitCode))
714 return NULL;
715
716 #if defined(Py_DEBUG)
717 SetErrorMode(SEM_FAILCRITICALERRORS|SEM_NOALIGNMENTFAULTEXCEPT|
718 SEM_NOGPFAULTERRORBOX|SEM_NOOPENFILEERRORBOX);
719 _CrtSetReportMode(_CRT_ASSERT, _CRTDBG_MODE_DEBUG);
720 #endif
721
722 ExitProcess(uExitCode);
723
724 return NULL;
725}
726
727PyDoc_STRVAR(GetCurrentProcess_doc,
728"GetCurrentProcess() -> handle\n\
729\n\
730Return a handle object for the current process.");
731
732static PyObject *
733winapi_GetCurrentProcess(PyObject* self, PyObject* args)
734{
735 if (! PyArg_ParseTuple(args, ":GetCurrentProcess"))
736 return NULL;
737
738 return HANDLE_TO_PYNUM(GetCurrentProcess());
739}
740
741PyDoc_STRVAR(GetExitCodeProcess_doc,
742"GetExitCodeProcess(handle) -> Exit code\n\
743\n\
744Return the termination status of the specified process.");
745
746static PyObject *
747winapi_GetExitCodeProcess(PyObject* self, PyObject* args)
748{
749 DWORD exit_code;
750 BOOL result;
751
752 HANDLE process;
753 if (! PyArg_ParseTuple(args, F_HANDLE ":GetExitCodeProcess", &process))
754 return NULL;
755
756 result = GetExitCodeProcess(process, &exit_code);
757
758 if (! result)
759 return PyErr_SetFromWindowsErr(GetLastError());
760
761 return PyLong_FromUnsignedLong(exit_code);
762}
763
764static PyObject *
765winapi_GetLastError(PyObject *self, PyObject *args)
766{
767 return Py_BuildValue(F_DWORD, GetLastError());
768}
769
770PyDoc_STRVAR(GetModuleFileName_doc,
771"GetModuleFileName(module) -> path\n\
772\n\
773Return the fully-qualified path for the file that contains\n\
774the specified module. The module must have been loaded by the\n\
775current process.\n\
776\n\
777The module parameter should be a handle to the loaded module\n\
778whose path is being requested. If this parameter is 0, \n\
779GetModuleFileName retrieves the path of the executable file\n\
780of the current process.");
781
782static PyObject *
783winapi_GetModuleFileName(PyObject* self, PyObject* args)
784{
785 BOOL result;
786 HMODULE module;
787 WCHAR filename[MAX_PATH];
788
789 if (! PyArg_ParseTuple(args, F_HANDLE ":GetModuleFileName",
790 &module))
791 return NULL;
792
793 result = GetModuleFileNameW(module, filename, MAX_PATH);
794 filename[MAX_PATH-1] = '\0';
795
796 if (! result)
797 return PyErr_SetFromWindowsErr(GetLastError());
798
799 return PyUnicode_FromWideChar(filename, wcslen(filename));
800}
801
802PyDoc_STRVAR(GetStdHandle_doc,
803"GetStdHandle(handle) -> integer\n\
804\n\
805Return a handle to the specified standard device\n\
806(STD_INPUT_HANDLE, STD_OUTPUT_HANDLE, STD_ERROR_HANDLE).\n\
807The integer associated with the handle object is returned.");
808
809static PyObject *
810winapi_GetStdHandle(PyObject* self, PyObject* args)
811{
812 HANDLE handle;
813 DWORD std_handle;
814
815 if (! PyArg_ParseTuple(args, F_DWORD ":GetStdHandle", &std_handle))
816 return NULL;
817
818 Py_BEGIN_ALLOW_THREADS
819 handle = GetStdHandle(std_handle);
820 Py_END_ALLOW_THREADS
821
822 if (handle == INVALID_HANDLE_VALUE)
823 return PyErr_SetFromWindowsErr(GetLastError());
824
825 if (! handle) {
826 Py_INCREF(Py_None);
827 return Py_None;
828 }
829
830 /* note: returns integer, not handle object */
831 return HANDLE_TO_PYNUM(handle);
832}
833
834PyDoc_STRVAR(GetVersion_doc,
835"GetVersion() -> version\n\
836\n\
837Return the version number of the current operating system.");
838
839static PyObject *
840winapi_GetVersion(PyObject* self, PyObject* args)
841{
842 if (! PyArg_ParseTuple(args, ":GetVersion"))
843 return NULL;
844
845 return PyLong_FromUnsignedLong(GetVersion());
846}
847
848static PyObject *
849winapi_OpenProcess(PyObject *self, PyObject *args)
850{
851 DWORD dwDesiredAccess;
852 BOOL bInheritHandle;
853 DWORD dwProcessId;
854 HANDLE handle;
855
856 if (!PyArg_ParseTuple(args, F_DWORD F_BOOL F_DWORD,
857 &dwDesiredAccess, &bInheritHandle, &dwProcessId))
858 return NULL;
859
860 handle = OpenProcess(dwDesiredAccess, bInheritHandle, dwProcessId);
861 if (handle == NULL)
862 return PyErr_SetFromWindowsErr(0);
863
864 return Py_BuildValue(F_HANDLE, handle);
865}
866
867static PyObject *
868winapi_PeekNamedPipe(PyObject *self, PyObject *args)
869{
870 HANDLE handle;
871 int size = 0;
872 PyObject *buf = NULL;
873 DWORD nread, navail, nleft;
874 BOOL ret;
875
876 if (!PyArg_ParseTuple(args, F_HANDLE "|i:PeekNamedPipe" , &handle, &size))
877 return NULL;
878
879 if (size < 0) {
880 PyErr_SetString(PyExc_ValueError, "negative size");
881 return NULL;
882 }
883
884 if (size) {
885 buf = PyBytes_FromStringAndSize(NULL, size);
886 if (!buf)
887 return NULL;
888 Py_BEGIN_ALLOW_THREADS
889 ret = PeekNamedPipe(handle, PyBytes_AS_STRING(buf), size, &nread,
890 &navail, &nleft);
891 Py_END_ALLOW_THREADS
892 if (!ret) {
893 Py_DECREF(buf);
894 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
895 }
896 if (_PyBytes_Resize(&buf, nread))
897 return NULL;
898 return Py_BuildValue("Nii", buf, navail, nleft);
899 }
900 else {
901 Py_BEGIN_ALLOW_THREADS
902 ret = PeekNamedPipe(handle, NULL, 0, NULL, &navail, &nleft);
903 Py_END_ALLOW_THREADS
904 if (!ret) {
905 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
906 }
907 return Py_BuildValue("ii", navail, nleft);
908 }
909}
910
911static PyObject *
912winapi_ReadFile(PyObject *self, PyObject *args, PyObject *kwds)
913{
914 HANDLE handle;
915 int size;
916 DWORD nread;
917 PyObject *buf;
918 BOOL ret;
919 int use_overlapped = 0;
920 DWORD err;
921 OverlappedObject *overlapped = NULL;
922 static char *kwlist[] = {"handle", "size", "overlapped", NULL};
923
924 if (!PyArg_ParseTupleAndKeywords(args, kwds,
925 F_HANDLE "i|i:ReadFile", kwlist,
926 &handle, &size, &use_overlapped))
927 return NULL;
928
929 buf = PyBytes_FromStringAndSize(NULL, size);
930 if (!buf)
931 return NULL;
932 if (use_overlapped) {
933 overlapped = new_overlapped(handle);
934 if (!overlapped) {
935 Py_DECREF(buf);
936 return NULL;
937 }
938 /* Steals reference to buf */
939 overlapped->read_buffer = buf;
940 }
941
942 Py_BEGIN_ALLOW_THREADS
943 ret = ReadFile(handle, PyBytes_AS_STRING(buf), size, &nread,
944 overlapped ? &overlapped->overlapped : NULL);
945 Py_END_ALLOW_THREADS
946
947 err = ret ? 0 : GetLastError();
948
949 if (overlapped) {
950 if (!ret) {
951 if (err == ERROR_IO_PENDING)
952 overlapped->pending = 1;
953 else if (err != ERROR_MORE_DATA) {
954 Py_DECREF(overlapped);
955 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
956 }
957 }
958 return Py_BuildValue("NI", (PyObject *) overlapped, err);
959 }
960
961 if (!ret && err != ERROR_MORE_DATA) {
962 Py_DECREF(buf);
963 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
964 }
965 if (_PyBytes_Resize(&buf, nread))
966 return NULL;
967 return Py_BuildValue("NI", buf, err);
968}
969
970static PyObject *
971winapi_SetNamedPipeHandleState(PyObject *self, PyObject *args)
972{
973 HANDLE hNamedPipe;
974 PyObject *oArgs[3];
975 DWORD dwArgs[3], *pArgs[3] = {NULL, NULL, NULL};
976 int i;
977
978 if (!PyArg_ParseTuple(args, F_HANDLE "OOO",
979 &hNamedPipe, &oArgs[0], &oArgs[1], &oArgs[2]))
980 return NULL;
981
982 PyErr_Clear();
983
984 for (i = 0 ; i < 3 ; i++) {
985 if (oArgs[i] != Py_None) {
986 dwArgs[i] = PyLong_AsUnsignedLongMask(oArgs[i]);
987 if (PyErr_Occurred())
988 return NULL;
989 pArgs[i] = &dwArgs[i];
990 }
991 }
992
993 if (!SetNamedPipeHandleState(hNamedPipe, pArgs[0], pArgs[1], pArgs[2]))
994 return PyErr_SetFromWindowsErr(0);
995
996 Py_RETURN_NONE;
997}
998
999PyDoc_STRVAR(TerminateProcess_doc,
1000"TerminateProcess(handle, exit_code) -> None\n\
1001\n\
1002Terminate the specified process and all of its threads.");
1003
1004static PyObject *
1005winapi_TerminateProcess(PyObject* self, PyObject* args)
1006{
1007 BOOL result;
1008
1009 HANDLE process;
1010 UINT exit_code;
1011 if (! PyArg_ParseTuple(args, F_HANDLE F_UINT ":TerminateProcess",
1012 &process, &exit_code))
1013 return NULL;
1014
1015 result = TerminateProcess(process, exit_code);
1016
1017 if (! result)
1018 return PyErr_SetFromWindowsErr(GetLastError());
1019
1020 Py_INCREF(Py_None);
1021 return Py_None;
1022}
1023
1024static PyObject *
1025winapi_WaitNamedPipe(PyObject *self, PyObject *args)
1026{
1027 LPCTSTR lpNamedPipeName;
1028 DWORD nTimeOut;
1029 BOOL success;
1030
1031 if (!PyArg_ParseTuple(args, "s" F_DWORD, &lpNamedPipeName, &nTimeOut))
1032 return NULL;
1033
1034 Py_BEGIN_ALLOW_THREADS
1035 success = WaitNamedPipe(lpNamedPipeName, nTimeOut);
1036 Py_END_ALLOW_THREADS
1037
1038 if (!success)
1039 return PyErr_SetFromWindowsErr(0);
1040
1041 Py_RETURN_NONE;
1042}
1043
1044static PyObject *
1045winapi_WaitForMultipleObjects(PyObject* self, PyObject* args)
1046{
1047 DWORD result;
1048 PyObject *handle_seq;
1049 HANDLE handles[MAXIMUM_WAIT_OBJECTS];
1050 HANDLE sigint_event = NULL;
1051 Py_ssize_t nhandles, i;
1052 BOOL wait_flag;
1053 DWORD milliseconds = INFINITE;
1054
1055 if (!PyArg_ParseTuple(args, "O" F_BOOL "|" F_DWORD
1056 ":WaitForMultipleObjects",
1057 &handle_seq, &wait_flag, &milliseconds))
1058 return NULL;
1059
1060 if (!PySequence_Check(handle_seq)) {
1061 PyErr_Format(PyExc_TypeError,
1062 "sequence type expected, got '%s'",
Richard Oudkerk67339272012-08-21 14:54:22 +01001063 Py_TYPE(handle_seq)->tp_name);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001064 return NULL;
1065 }
1066 nhandles = PySequence_Length(handle_seq);
1067 if (nhandles == -1)
1068 return NULL;
1069 if (nhandles < 0 || nhandles >= MAXIMUM_WAIT_OBJECTS - 1) {
1070 PyErr_Format(PyExc_ValueError,
1071 "need at most %zd handles, got a sequence of length %zd",
1072 MAXIMUM_WAIT_OBJECTS - 1, nhandles);
1073 return NULL;
1074 }
1075 for (i = 0; i < nhandles; i++) {
1076 HANDLE h;
1077 PyObject *v = PySequence_GetItem(handle_seq, i);
1078 if (v == NULL)
1079 return NULL;
1080 if (!PyArg_Parse(v, F_HANDLE, &h)) {
1081 Py_DECREF(v);
1082 return NULL;
1083 }
1084 handles[i] = h;
1085 Py_DECREF(v);
1086 }
1087 /* If this is the main thread then make the wait interruptible
1088 by Ctrl-C unless we are waiting for *all* handles */
1089 if (!wait_flag && _PyOS_IsMainThread()) {
1090 sigint_event = _PyOS_SigintEvent();
1091 assert(sigint_event != NULL);
1092 handles[nhandles++] = sigint_event;
1093 }
1094
1095 Py_BEGIN_ALLOW_THREADS
1096 if (sigint_event != NULL)
1097 ResetEvent(sigint_event);
1098 result = WaitForMultipleObjects((DWORD) nhandles, handles,
1099 wait_flag, milliseconds);
1100 Py_END_ALLOW_THREADS
1101
1102 if (result == WAIT_FAILED)
1103 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
1104 else if (sigint_event != NULL && result == WAIT_OBJECT_0 + nhandles - 1) {
1105 errno = EINTR;
1106 return PyErr_SetFromErrno(PyExc_IOError);
1107 }
1108
1109 return PyLong_FromLong((int) result);
1110}
1111
1112PyDoc_STRVAR(WaitForSingleObject_doc,
1113"WaitForSingleObject(handle, timeout) -> result\n\
1114\n\
1115Wait until the specified object is in the signaled state or\n\
1116the time-out interval elapses. The timeout value is specified\n\
1117in milliseconds.");
1118
1119static PyObject *
1120winapi_WaitForSingleObject(PyObject* self, PyObject* args)
1121{
1122 DWORD result;
1123
1124 HANDLE handle;
1125 DWORD milliseconds;
1126 if (! PyArg_ParseTuple(args, F_HANDLE F_DWORD ":WaitForSingleObject",
1127 &handle,
1128 &milliseconds))
1129 return NULL;
1130
1131 Py_BEGIN_ALLOW_THREADS
1132 result = WaitForSingleObject(handle, milliseconds);
1133 Py_END_ALLOW_THREADS
1134
1135 if (result == WAIT_FAILED)
1136 return PyErr_SetFromWindowsErr(GetLastError());
1137
1138 return PyLong_FromUnsignedLong(result);
1139}
1140
1141static PyObject *
1142winapi_WriteFile(PyObject *self, PyObject *args, PyObject *kwds)
1143{
1144 HANDLE handle;
1145 Py_buffer _buf, *buf;
1146 PyObject *bufobj;
Victor Stinner71765772013-06-24 23:13:24 +02001147 DWORD len, written;
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001148 BOOL ret;
1149 int use_overlapped = 0;
1150 DWORD err;
1151 OverlappedObject *overlapped = NULL;
1152 static char *kwlist[] = {"handle", "buffer", "overlapped", NULL};
1153
1154 /* First get handle and use_overlapped to know which Py_buffer to use */
1155 if (!PyArg_ParseTupleAndKeywords(args, kwds,
1156 F_HANDLE "O|i:WriteFile", kwlist,
1157 &handle, &bufobj, &use_overlapped))
1158 return NULL;
1159
1160 if (use_overlapped) {
1161 overlapped = new_overlapped(handle);
1162 if (!overlapped)
1163 return NULL;
1164 buf = &overlapped->write_buffer;
1165 }
1166 else
1167 buf = &_buf;
1168
1169 if (!PyArg_Parse(bufobj, "y*", buf)) {
1170 Py_XDECREF(overlapped);
1171 return NULL;
1172 }
1173
1174 Py_BEGIN_ALLOW_THREADS
Victor Stinner71765772013-06-24 23:13:24 +02001175 len = (DWORD)Py_MIN(buf->len, DWORD_MAX);
1176 ret = WriteFile(handle, buf->buf, len, &written,
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001177 overlapped ? &overlapped->overlapped : NULL);
1178 Py_END_ALLOW_THREADS
1179
1180 err = ret ? 0 : GetLastError();
1181
1182 if (overlapped) {
1183 if (!ret) {
1184 if (err == ERROR_IO_PENDING)
1185 overlapped->pending = 1;
1186 else {
1187 Py_DECREF(overlapped);
1188 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
1189 }
1190 }
1191 return Py_BuildValue("NI", (PyObject *) overlapped, err);
1192 }
1193
1194 PyBuffer_Release(buf);
1195 if (!ret)
1196 return PyErr_SetExcFromWindowsErr(PyExc_IOError, 0);
1197 return Py_BuildValue("II", written, err);
1198}
1199
1200
1201static PyMethodDef winapi_functions[] = {
1202 {"CloseHandle", winapi_CloseHandle, METH_VARARGS,
1203 CloseHandle_doc},
1204 {"ConnectNamedPipe", (PyCFunction)winapi_ConnectNamedPipe,
1205 METH_VARARGS | METH_KEYWORDS, ""},
1206 {"CreateFile", winapi_CreateFile, METH_VARARGS,
1207 ""},
1208 {"CreateNamedPipe", winapi_CreateNamedPipe, METH_VARARGS,
1209 ""},
1210 {"CreatePipe", winapi_CreatePipe, METH_VARARGS,
1211 CreatePipe_doc},
1212 {"CreateProcess", winapi_CreateProcess, METH_VARARGS,
1213 CreateProcess_doc},
1214 {"DuplicateHandle", winapi_DuplicateHandle, METH_VARARGS,
1215 DuplicateHandle_doc},
1216 {"ExitProcess", winapi_ExitProcess, METH_VARARGS,
1217 ""},
1218 {"GetCurrentProcess", winapi_GetCurrentProcess, METH_VARARGS,
1219 GetCurrentProcess_doc},
1220 {"GetExitCodeProcess", winapi_GetExitCodeProcess, METH_VARARGS,
1221 GetExitCodeProcess_doc},
1222 {"GetLastError", winapi_GetLastError, METH_NOARGS,
1223 GetCurrentProcess_doc},
1224 {"GetModuleFileName", winapi_GetModuleFileName, METH_VARARGS,
1225 GetModuleFileName_doc},
1226 {"GetStdHandle", winapi_GetStdHandle, METH_VARARGS,
1227 GetStdHandle_doc},
1228 {"GetVersion", winapi_GetVersion, METH_VARARGS,
1229 GetVersion_doc},
1230 {"OpenProcess", winapi_OpenProcess, METH_VARARGS,
1231 ""},
1232 {"PeekNamedPipe", winapi_PeekNamedPipe, METH_VARARGS,
1233 ""},
1234 {"ReadFile", (PyCFunction)winapi_ReadFile, METH_VARARGS | METH_KEYWORDS,
1235 ""},
1236 {"SetNamedPipeHandleState", winapi_SetNamedPipeHandleState, METH_VARARGS,
1237 ""},
1238 {"TerminateProcess", winapi_TerminateProcess, METH_VARARGS,
1239 TerminateProcess_doc},
1240 {"WaitNamedPipe", winapi_WaitNamedPipe, METH_VARARGS,
1241 ""},
1242 {"WaitForMultipleObjects", winapi_WaitForMultipleObjects, METH_VARARGS,
1243 ""},
1244 {"WaitForSingleObject", winapi_WaitForSingleObject, METH_VARARGS,
1245 WaitForSingleObject_doc},
1246 {"WriteFile", (PyCFunction)winapi_WriteFile, METH_VARARGS | METH_KEYWORDS,
1247 ""},
1248 {NULL, NULL}
1249};
1250
1251static struct PyModuleDef winapi_module = {
1252 PyModuleDef_HEAD_INIT,
1253 "_winapi",
1254 NULL,
1255 -1,
1256 winapi_functions,
1257 NULL,
1258 NULL,
1259 NULL,
1260 NULL
1261};
1262
1263#define WINAPI_CONSTANT(fmt, con) \
1264 PyDict_SetItemString(d, #con, Py_BuildValue(fmt, con))
1265
1266PyMODINIT_FUNC
1267PyInit__winapi(void)
1268{
1269 PyObject *d;
1270 PyObject *m;
1271
1272 if (PyType_Ready(&OverlappedType) < 0)
1273 return NULL;
1274
1275 m = PyModule_Create(&winapi_module);
1276 if (m == NULL)
1277 return NULL;
1278 d = PyModule_GetDict(m);
1279
1280 PyDict_SetItemString(d, "Overlapped", (PyObject *) &OverlappedType);
1281
1282 /* constants */
1283 WINAPI_CONSTANT(F_DWORD, CREATE_NEW_CONSOLE);
1284 WINAPI_CONSTANT(F_DWORD, CREATE_NEW_PROCESS_GROUP);
1285 WINAPI_CONSTANT(F_DWORD, DUPLICATE_SAME_ACCESS);
Antoine Pitrou5438ed12012-04-24 22:56:57 +02001286 WINAPI_CONSTANT(F_DWORD, DUPLICATE_CLOSE_SOURCE);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001287 WINAPI_CONSTANT(F_DWORD, ERROR_ALREADY_EXISTS);
1288 WINAPI_CONSTANT(F_DWORD, ERROR_BROKEN_PIPE);
1289 WINAPI_CONSTANT(F_DWORD, ERROR_IO_PENDING);
1290 WINAPI_CONSTANT(F_DWORD, ERROR_MORE_DATA);
1291 WINAPI_CONSTANT(F_DWORD, ERROR_NETNAME_DELETED);
1292 WINAPI_CONSTANT(F_DWORD, ERROR_NO_SYSTEM_RESOURCES);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001293 WINAPI_CONSTANT(F_DWORD, ERROR_MORE_DATA);
1294 WINAPI_CONSTANT(F_DWORD, ERROR_NETNAME_DELETED);
Richard Oudkerkfdb8dcf2012-05-05 19:45:37 +01001295 WINAPI_CONSTANT(F_DWORD, ERROR_NO_DATA);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001296 WINAPI_CONSTANT(F_DWORD, ERROR_NO_SYSTEM_RESOURCES);
1297 WINAPI_CONSTANT(F_DWORD, ERROR_OPERATION_ABORTED);
1298 WINAPI_CONSTANT(F_DWORD, ERROR_PIPE_BUSY);
1299 WINAPI_CONSTANT(F_DWORD, ERROR_PIPE_CONNECTED);
1300 WINAPI_CONSTANT(F_DWORD, ERROR_SEM_TIMEOUT);
1301 WINAPI_CONSTANT(F_DWORD, FILE_FLAG_FIRST_PIPE_INSTANCE);
1302 WINAPI_CONSTANT(F_DWORD, FILE_FLAG_OVERLAPPED);
Antoine Pitrou5438ed12012-04-24 22:56:57 +02001303 WINAPI_CONSTANT(F_DWORD, FILE_GENERIC_READ);
1304 WINAPI_CONSTANT(F_DWORD, FILE_GENERIC_WRITE);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001305 WINAPI_CONSTANT(F_DWORD, GENERIC_READ);
1306 WINAPI_CONSTANT(F_DWORD, GENERIC_WRITE);
1307 WINAPI_CONSTANT(F_DWORD, INFINITE);
1308 WINAPI_CONSTANT(F_DWORD, NMPWAIT_WAIT_FOREVER);
1309 WINAPI_CONSTANT(F_DWORD, OPEN_EXISTING);
1310 WINAPI_CONSTANT(F_DWORD, PIPE_ACCESS_DUPLEX);
1311 WINAPI_CONSTANT(F_DWORD, PIPE_ACCESS_INBOUND);
1312 WINAPI_CONSTANT(F_DWORD, PIPE_READMODE_MESSAGE);
1313 WINAPI_CONSTANT(F_DWORD, PIPE_TYPE_MESSAGE);
1314 WINAPI_CONSTANT(F_DWORD, PIPE_UNLIMITED_INSTANCES);
1315 WINAPI_CONSTANT(F_DWORD, PIPE_WAIT);
1316 WINAPI_CONSTANT(F_DWORD, PROCESS_ALL_ACCESS);
Antoine Pitrou5438ed12012-04-24 22:56:57 +02001317 WINAPI_CONSTANT(F_DWORD, PROCESS_DUP_HANDLE);
Antoine Pitrou23bba4c2012-04-18 20:51:15 +02001318 WINAPI_CONSTANT(F_DWORD, STARTF_USESHOWWINDOW);
1319 WINAPI_CONSTANT(F_DWORD, STARTF_USESTDHANDLES);
1320 WINAPI_CONSTANT(F_DWORD, STD_INPUT_HANDLE);
1321 WINAPI_CONSTANT(F_DWORD, STD_OUTPUT_HANDLE);
1322 WINAPI_CONSTANT(F_DWORD, STD_ERROR_HANDLE);
1323 WINAPI_CONSTANT(F_DWORD, STILL_ACTIVE);
1324 WINAPI_CONSTANT(F_DWORD, SW_HIDE);
1325 WINAPI_CONSTANT(F_DWORD, WAIT_OBJECT_0);
1326 WINAPI_CONSTANT(F_DWORD, WAIT_TIMEOUT);
1327
1328 WINAPI_CONSTANT("i", NULL);
1329
1330 return m;
1331}