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[wxWidgets.git] / wxPython / src / helpers.cpp
1 /////////////////////////////////////////////////////////////////////////////
2 // Name: helpers.cpp
3 // Purpose: Helper functions/classes for the wxPython extension module
4 //
5 // Author: Robin Dunn
6 //
7 // Created: 1-July-1997
8 // RCS-ID: $Id$
9 // Copyright: (c) 1998 by Total Control Software
10 // Licence: wxWindows license
11 /////////////////////////////////////////////////////////////////////////////
12
13
14 #undef DEBUG
15 #include <Python.h>
16 #include "wx/wxPython/wxPython_int.h"
17 #include "wx/wxPython/pyistream.h"
18
19 #ifdef __WXMSW__
20 #include <wx/msw/private.h>
21 #include <wx/msw/winundef.h>
22 #include <wx/msw/msvcrt.h>
23 #endif
24
25 #ifdef __WXGTK__
26 #include <gdk/gdk.h>
27 #include <gdk/gdkx.h>
28 #include <gtk/gtk.h>
29 #include <gdk/gdkprivate.h>
30 #include <wx/gtk/win_gtk.h>
31 #define GetXWindow(wxwin) (wxwin)->m_wxwindow ? \
32 GDK_WINDOW_XWINDOW(GTK_PIZZA((wxwin)->m_wxwindow)->bin_window) : \
33 GDK_WINDOW_XWINDOW((wxwin)->m_widget->window)
34 #include <locale.h>
35 #endif
36
37 #ifdef __WXX11__
38 #include "wx/x11/privx.h"
39 #define GetXWindow(wxwin) ((Window)(wxwin)->GetHandle())
40 #endif
41
42 #ifdef __WXMAC__
43 #include <wx/mac/private.h>
44 #endif
45
46 #include <wx/clipbrd.h>
47 #include <wx/mimetype.h>
48 #include <wx/image.h>
49
50 //----------------------------------------------------------------------
51
52 #if PYTHON_API_VERSION <= 1007 && wxUSE_UNICODE
53 #error Python must support Unicode to use wxWindows Unicode
54 #endif
55
56 //----------------------------------------------------------------------
57
58 wxPyApp* wxPythonApp = NULL; // Global instance of application object
59 bool wxPyDoCleanup = false;
60 bool wxPyDoingCleanup = false;
61
62
63 #ifdef WXP_WITH_THREAD
64 struct wxPyThreadState {
65 unsigned long tid;
66 PyThreadState* tstate;
67
68 wxPyThreadState(unsigned long _tid=0, PyThreadState* _tstate=NULL)
69 : tid(_tid), tstate(_tstate) {}
70 };
71
72 #include <wx/dynarray.h>
73 WX_DECLARE_OBJARRAY(wxPyThreadState, wxPyThreadStateArray);
74 #include <wx/arrimpl.cpp>
75 WX_DEFINE_OBJARRAY(wxPyThreadStateArray);
76
77 wxPyThreadStateArray* wxPyTStates = NULL;
78 wxMutex* wxPyTMutex = NULL;
79 #endif
80
81
82 static PyObject* wxPython_dict = NULL;
83 static PyObject* wxPyAssertionError = NULL;
84 static PyObject* wxPyNoAppError = NULL;
85
86 PyObject* wxPyPtrTypeMap = NULL;
87
88
89 #ifdef __WXMSW__ // If building for win32...
90 //----------------------------------------------------------------------
91 // This gets run when the DLL is loaded. We just need to save a handle.
92 //----------------------------------------------------------------------
93
94 BOOL WINAPI DllMain(
95 HINSTANCE hinstDLL, // handle to DLL module
96 DWORD fdwReason, // reason for calling function
97 LPVOID lpvReserved // reserved
98 )
99 {
100 // If wxPython is embedded in another wxWindows app then
101 // the inatance has already been set.
102 if (! wxGetInstance())
103 wxSetInstance(hinstDLL);
104 return true;
105 }
106 #endif
107
108 //----------------------------------------------------------------------
109 // Classes for implementing the wxp main application shell.
110 //----------------------------------------------------------------------
111
112 IMPLEMENT_ABSTRACT_CLASS(wxPyApp, wxApp);
113
114
115 wxPyApp::wxPyApp() {
116 m_assertMode = wxPYAPP_ASSERT_EXCEPTION;
117 m_startupComplete = false;
118 }
119
120
121 wxPyApp::~wxPyApp() {
122 }
123
124
125 // This one isn't acutally called... We fake it with _BootstrapApp
126 bool wxPyApp::OnInit() {
127 return false;
128 }
129
130
131 int wxPyApp::MainLoop() {
132 int retval = 0;
133
134 DeletePendingObjects();
135 bool initialized = wxTopLevelWindows.GetCount() != 0;
136 if (initialized) {
137 if ( m_exitOnFrameDelete == Later ) {
138 m_exitOnFrameDelete = Yes;
139 }
140
141 retval = wxApp::MainLoop();
142 OnExit();
143 }
144 return retval;
145 }
146
147
148 bool wxPyApp::OnInitGui() {
149 bool rval=true;
150 wxApp::OnInitGui(); // in this case always call the base class version
151 bool blocked = wxPyBeginBlockThreads();
152 if (wxPyCBH_findCallback(m_myInst, "OnInitGui"))
153 rval = wxPyCBH_callCallback(m_myInst, Py_BuildValue("()"));
154 wxPyEndBlockThreads(blocked);
155 return rval;
156 }
157
158
159 int wxPyApp::OnExit() {
160 int rval=0;
161 bool blocked = wxPyBeginBlockThreads();
162 if (wxPyCBH_findCallback(m_myInst, "OnExit"))
163 rval = wxPyCBH_callCallback(m_myInst, Py_BuildValue("()"));
164 wxPyEndBlockThreads(blocked);
165 wxApp::OnExit(); // in this case always call the base class version
166 return rval;
167 }
168
169
170 #ifdef __WXDEBUG__
171 void wxPyApp::OnAssert(const wxChar *file,
172 int line,
173 const wxChar *cond,
174 const wxChar *msg) {
175
176 // if we're not fully initialized then just log the error
177 if (! m_startupComplete) {
178 wxString buf;
179 buf.Alloc(4096);
180 buf.Printf(wxT("%s(%d): assert \"%s\" failed"),
181 file, line, cond);
182 if (msg != NULL) {
183 buf += wxT(": ");
184 buf += msg;
185 }
186 wxLogDebug(buf);
187 return;
188 }
189
190 // If the OnAssert is overloaded in the Python class then call it...
191 bool found;
192 bool blocked = wxPyBeginBlockThreads();
193 if ((found = wxPyCBH_findCallback(m_myInst, "OnAssert"))) {
194 PyObject* fso = wx2PyString(file);
195 PyObject* cso = wx2PyString(file);
196 PyObject* mso;
197 if (msg != NULL)
198 mso = wx2PyString(file);
199 else {
200 mso = Py_None; Py_INCREF(Py_None);
201 }
202 wxPyCBH_callCallback(m_myInst, Py_BuildValue("(OiOO)", fso, line, cso, mso));
203 Py_DECREF(fso);
204 Py_DECREF(cso);
205 Py_DECREF(mso);
206 }
207 wxPyEndBlockThreads(blocked);
208
209 // ...otherwise do our own thing with it
210 if (! found) {
211 // ignore it?
212 if (m_assertMode & wxPYAPP_ASSERT_SUPPRESS)
213 return;
214
215 // turn it into a Python exception?
216 if (m_assertMode & wxPYAPP_ASSERT_EXCEPTION) {
217 wxString buf;
218 buf.Alloc(4096);
219 buf.Printf(wxT("C++ assertion \"%s\" failed in %s(%d)"), cond, file, line);
220 if (msg != NULL) {
221 buf += wxT(": ");
222 buf += msg;
223 }
224
225 // set the exception
226 bool blocked = wxPyBeginBlockThreads();
227 PyObject* s = wx2PyString(buf);
228 PyErr_SetObject(wxPyAssertionError, s);
229 Py_DECREF(s);
230 wxPyEndBlockThreads(blocked);
231
232 // Now when control returns to whatever API wrapper was called from
233 // Python it should detect that an exception is set and will return
234 // NULL, signalling the exception to Python.
235 }
236
237 // Send it to the normal log destination, but only if
238 // not _DIALOG because it will call this too
239 if ( (m_assertMode & wxPYAPP_ASSERT_LOG) && !(m_assertMode & wxPYAPP_ASSERT_DIALOG)) {
240 wxString buf;
241 buf.Alloc(4096);
242 buf.Printf(wxT("%s(%d): assert \"%s\" failed"),
243 file, line, cond);
244 if (msg != NULL) {
245 buf += wxT(": ");
246 buf += msg;
247 }
248 wxLogDebug(buf);
249 }
250
251 // do the normal wx assert dialog?
252 if (m_assertMode & wxPYAPP_ASSERT_DIALOG)
253 wxApp::OnAssert(file, line, cond, msg);
254 }
255 }
256 #endif
257
258 // For catching Apple Events
259 void wxPyApp::MacOpenFile(const wxString &fileName)
260 {
261 bool blocked = wxPyBeginBlockThreads();
262 if (wxPyCBH_findCallback(m_myInst, "MacOpenFile")) {
263 PyObject* s = wx2PyString(fileName);
264 wxPyCBH_callCallback(m_myInst, Py_BuildValue("(O)", s));
265 Py_DECREF(s);
266 }
267 wxPyEndBlockThreads(blocked);
268 }
269
270 void wxPyApp::MacPrintFile(const wxString &fileName)
271 {
272 bool blocked = wxPyBeginBlockThreads();
273 if (wxPyCBH_findCallback(m_myInst, "MacPrintFile")) {
274 PyObject* s = wx2PyString(fileName);
275 wxPyCBH_callCallback(m_myInst, Py_BuildValue("(O)", s));
276 Py_DECREF(s);
277 }
278 wxPyEndBlockThreads(blocked);
279 }
280
281 void wxPyApp::MacNewFile()
282 {
283 bool blocked = wxPyBeginBlockThreads();
284 if (wxPyCBH_findCallback(m_myInst, "MacNewFile"))
285 wxPyCBH_callCallback(m_myInst, Py_BuildValue("()"));
286 wxPyEndBlockThreads(blocked);
287 }
288
289 void wxPyApp::MacReopenApp()
290 {
291 bool blocked = wxPyBeginBlockThreads();
292 if (wxPyCBH_findCallback(m_myInst, "MacReopenApp"))
293 wxPyCBH_callCallback(m_myInst, Py_BuildValue("()"));
294 wxPyEndBlockThreads(blocked);
295 }
296
297
298 /*static*/
299 bool wxPyApp::GetMacSupportPCMenuShortcuts() {
300 #ifdef __WXMAC__
301 return s_macSupportPCMenuShortcuts;
302 #else
303 return 0;
304 #endif
305 }
306
307 /*static*/
308 long wxPyApp::GetMacAboutMenuItemId() {
309 #ifdef __WXMAC__
310 return s_macAboutMenuItemId;
311 #else
312 return 0;
313 #endif
314 }
315
316 /*static*/
317 long wxPyApp::GetMacPreferencesMenuItemId() {
318 #ifdef __WXMAC__
319 return s_macPreferencesMenuItemId;
320 #else
321 return 0;
322 #endif
323 }
324
325 /*static*/
326 long wxPyApp::GetMacExitMenuItemId() {
327 #ifdef __WXMAC__
328 return s_macExitMenuItemId;
329 #else
330 return 0;
331 #endif
332 }
333
334 /*static*/
335 wxString wxPyApp::GetMacHelpMenuTitleName() {
336 #ifdef __WXMAC__
337 return s_macHelpMenuTitleName;
338 #else
339 return wxEmptyString;
340 #endif
341 }
342
343 /*static*/
344 void wxPyApp::SetMacSupportPCMenuShortcuts(bool val) {
345 #ifdef __WXMAC__
346 s_macSupportPCMenuShortcuts = val;
347 #endif
348 }
349
350 /*static*/
351 void wxPyApp::SetMacAboutMenuItemId(long val) {
352 #ifdef __WXMAC__
353 s_macAboutMenuItemId = val;
354 #endif
355 }
356
357 /*static*/
358 void wxPyApp::SetMacPreferencesMenuItemId(long val) {
359 #ifdef __WXMAC__
360 s_macPreferencesMenuItemId = val;
361 #endif
362 }
363
364 /*static*/
365 void wxPyApp::SetMacExitMenuItemId(long val) {
366 #ifdef __WXMAC__
367 s_macExitMenuItemId = val;
368 #endif
369 }
370
371 /*static*/
372 void wxPyApp::SetMacHelpMenuTitleName(const wxString& val) {
373 #ifdef __WXMAC__
374 s_macHelpMenuTitleName = val;
375 #endif
376 }
377
378
379 // This finishes the initialization of wxWindows and then calls the OnInit
380 // that should be present in the derived (Python) class.
381 void wxPyApp::_BootstrapApp()
382 {
383 static bool haveInitialized = false;
384 bool result, blocked;
385 PyObject* retval = NULL;
386 PyObject* pyint = NULL;
387
388
389 // Only initialize wxWidgets once
390 if (! haveInitialized) {
391
392 // Get any command-line args passed to this program from the sys module
393 int argc = 0;
394 char** argv = NULL;
395 blocked = wxPyBeginBlockThreads();
396 PyObject* sysargv = PySys_GetObject("argv");
397 if (sysargv != NULL) {
398 argc = PyList_Size(sysargv);
399 argv = new char*[argc+1];
400 int x;
401 for(x=0; x<argc; x++) {
402 PyObject *pyArg = PyList_GetItem(sysargv, x);
403 argv[x] = PyString_AsString(pyArg);
404 }
405 argv[argc] = NULL;
406 }
407 wxPyEndBlockThreads(blocked);
408
409 // Initialize wxWidgets
410 result = wxEntryStart(argc, argv);
411 delete [] argv;
412
413 blocked = wxPyBeginBlockThreads();
414 if (! result) {
415 PyErr_SetString(PyExc_SystemError,
416 "wxEntryStart failed, unable to initialize wxWidgets!"
417 #ifdef __WXGTK__
418 " (Is DISPLAY set properly?)"
419 #endif
420 );
421 goto error;
422 }
423
424 // On wxGTK the locale will be changed to match the system settings, but
425 // Python needs to have LC_NUMERIC set to "C" in order for the floating
426 // point conversions and such to work right.
427 #if defined(__WXGTK__) && PYTHON_API_VERSION <= 1012
428 setlocale(LC_NUMERIC, "C");
429 #endif
430
431 // The stock objects were all NULL when they were loaded into
432 // SWIG generated proxies, so re-init those now...
433 wxPy_ReinitStockObjects(3);
434
435 wxPyEndBlockThreads(blocked);
436 haveInitialized = true;
437 }
438
439 // It's now ok to generate exceptions for assertion errors.
440 wxPythonApp->SetStartupComplete(true);
441
442 // Call the Python wxApp's OnInit function
443 blocked = wxPyBeginBlockThreads();
444 if (wxPyCBH_findCallback(m_myInst, "OnInit")) {
445
446 PyObject* method = m_myInst.GetLastFound();
447 PyObject* argTuple = PyTuple_New(0);
448 retval = PyEval_CallObject(method, argTuple);
449 Py_DECREF(argTuple);
450 Py_DECREF(method);
451 if (retval == NULL)
452 goto error;
453
454 pyint = PyNumber_Int(retval);
455 if (! pyint) {
456 PyErr_SetString(PyExc_TypeError, "OnInit should return a boolean value");
457 goto error;
458 }
459 result = PyInt_AS_LONG(pyint);
460 }
461 else {
462 // Is it okay if there is no OnInit? Probably so...
463 result = true;
464 }
465
466 if (! result) {
467 PyErr_SetString(PyExc_SystemExit, "OnInit returned false, exiting...");
468 }
469
470 error:
471 Py_XDECREF(retval);
472 Py_XDECREF(pyint);
473
474 wxPyEndBlockThreads(blocked);
475 };
476
477 //---------------------------------------------------------------------
478 //----------------------------------------------------------------------
479
480
481 #if 0
482 static char* wxPyCopyCString(const wxChar* src)
483 {
484 wxWX2MBbuf buff = (wxWX2MBbuf)wxConvCurrent->cWX2MB(src);
485 size_t len = strlen(buff);
486 char* dest = new char[len+1];
487 strcpy(dest, buff);
488 return dest;
489 }
490
491 #if wxUSE_UNICODE
492 static char* wxPyCopyCString(const char* src) // we need a char version too
493 {
494 size_t len = strlen(src);
495 char* dest = new char[len+1];
496 strcpy(dest, src);
497 return dest;
498 }
499 #endif
500
501 static wxChar* wxPyCopyWString(const char *src)
502 {
503 //wxMB2WXbuf buff = wxConvCurrent->cMB2WX(src);
504 wxString str(src, *wxConvCurrent);
505 return copystring(str);
506 }
507
508 #if wxUSE_UNICODE
509 static wxChar* wxPyCopyWString(const wxChar *src)
510 {
511 return copystring(src);
512 }
513 #endif
514 #endif
515
516
517 inline const char* dropwx(const char* name) {
518 if (name[0] == 'w' && name[1] == 'x')
519 return name+2;
520 else
521 return name;
522 }
523
524 //----------------------------------------------------------------------
525
526 // This function is called when the wx._core_ module is imported to do some
527 // initial setup. (Before there is a wxApp object.) The rest happens in
528 // wxPyApp::_BootstrapApp
529 void __wxPyPreStart(PyObject* moduleDict)
530 {
531
532 #ifdef __WXMSW__
533 // wxCrtSetDbgFlag(_CRTDBG_LEAK_CHECK_DF
534 // | _CRTDBG_CHECK_ALWAYS_DF
535 // | _CRTDBG_DELAY_FREE_MEM_DF
536 // );
537 #endif
538
539 #ifdef WXP_WITH_THREAD
540 PyEval_InitThreads();
541 wxPyTStates = new wxPyThreadStateArray;
542 wxPyTMutex = new wxMutex;
543
544 // Save the current (main) thread state in our array
545 PyThreadState* tstate = wxPyBeginAllowThreads();
546 wxPyEndAllowThreads(tstate);
547 #endif
548
549 // Ensure that the build options in the DLL (or whatever) match this build
550 wxApp::CheckBuildOptions(WX_BUILD_OPTIONS_SIGNATURE, "wxPython");
551
552 // Init the stock objects to a non-NULL value so SWIG doesn't create them as None
553 wxPy_ReinitStockObjects(1);
554
555 wxInitAllImageHandlers();
556 }
557
558
559
560 void __wxPyCleanup() {
561 wxPyDoingCleanup = true;
562 if (wxPyDoCleanup) {
563 wxPyDoCleanup = false;
564 wxEntryCleanup();
565 }
566 #ifdef WXP_WITH_THREAD
567 delete wxPyTMutex;
568 wxPyTMutex = NULL;
569 wxPyTStates->Empty();
570 delete wxPyTStates;
571 wxPyTStates = NULL;
572 #endif
573 }
574
575
576 // Save a reference to the dictionary of the wx._core module, and inject
577 // a few more things into it.
578 PyObject* __wxPySetDictionary(PyObject* /* self */, PyObject* args)
579 {
580
581 if (!PyArg_ParseTuple(args, "O", &wxPython_dict))
582 return NULL;
583
584 if (!PyDict_Check(wxPython_dict)) {
585 PyErr_SetString(PyExc_TypeError,
586 "_wxPySetDictionary must have dictionary object!");
587 return NULL;
588 }
589
590 if (! wxPyPtrTypeMap)
591 wxPyPtrTypeMap = PyDict_New();
592 PyDict_SetItemString(wxPython_dict, "__wxPyPtrTypeMap", wxPyPtrTypeMap);
593
594 // Create an exception object to use for wxASSERTions
595 wxPyAssertionError = PyErr_NewException("wx._core.PyAssertionError",
596 PyExc_AssertionError, NULL);
597 PyDict_SetItemString(wxPython_dict, "PyAssertionError", wxPyAssertionError);
598
599 // Create an exception object to use when the app object hasn't been created yet
600 wxPyNoAppError = PyErr_NewException("wx._core.PyNoAppError",
601 PyExc_RuntimeError, NULL);
602 PyDict_SetItemString(wxPython_dict, "PyNoAppError", wxPyNoAppError);
603
604
605
606 #ifdef __WXMOTIF__
607 #define wxPlatform "__WXMOTIF__"
608 #define wxPlatName "wxMotif"
609 #endif
610 #ifdef __WXX11__
611 #define wxPlatform "__WXX11__"
612 #define wxPlatName "wxX11"
613 #endif
614 #ifdef __WXGTK__
615 #define wxPlatform "__WXGTK__"
616 #define wxPlatName "wxGTK"
617 #endif
618 #ifdef __WXMSW__
619 #define wxPlatform "__WXMSW__"
620 #define wxPlatName "wxMSW"
621 #endif
622 #ifdef __WXMAC__
623 #define wxPlatform "__WXMAC__"
624 #define wxPlatName "wxMac"
625 #endif
626
627 #ifdef __WXDEBUG__
628 int wxdebug = 1;
629 #else
630 int wxdebug = 0;
631 #endif
632
633 // These should be deprecated in favor of the PlatformInfo tuple built below...
634 PyDict_SetItemString(wxPython_dict, "Platform", PyString_FromString(wxPlatform));
635 PyDict_SetItemString(wxPython_dict, "USE_UNICODE", PyInt_FromLong(wxUSE_UNICODE));
636 PyDict_SetItemString(wxPython_dict, "__WXDEBUG__", PyInt_FromLong(wxdebug));
637
638 // Make a tuple of strings that gives more info about the platform.
639 PyObject* PlatInfo = PyList_New(0);
640 PyObject* obj;
641
642 #define _AddInfoString(st) \
643 obj = PyString_FromString(st); \
644 PyList_Append(PlatInfo, obj); \
645 Py_DECREF(obj)
646
647 _AddInfoString(wxPlatform);
648 _AddInfoString(wxPlatName);
649 #if wxUSE_UNICODE
650 _AddInfoString("unicode");
651 #else
652 _AddInfoString("ansi");
653 #endif
654 #ifdef __WXGTK__
655 #ifdef __WXGTK20__
656 _AddInfoString("gtk2");
657 #else
658 _AddInfoString("gtk1");
659 #endif
660 #endif
661 #ifdef __WXDEBUG__
662 _AddInfoString("wx-assertions-on");
663 #else
664 _AddInfoString("wx-assertions-off");
665 #endif
666
667 #undef _AddInfoString
668
669 PyObject* PlatInfoTuple = PyList_AsTuple(PlatInfo);
670 Py_DECREF(PlatInfo);
671 PyDict_SetItemString(wxPython_dict, "PlatformInfo", PlatInfoTuple);
672
673 RETURN_NONE();
674 }
675
676
677 //---------------------------------------------------------------------------
678
679 // Python's PyInstance_Check does not return True for instances of new-style
680 // classes. This should get close enough for both new and old classes but I
681 // should re-evaluate the need for doing instance checks...
682 bool wxPyInstance_Check(PyObject* obj) {
683 return PyObject_HasAttrString(obj, "__class__") != 0;
684 }
685
686
687 // This one checks if the object is an instance of a SWIG proxy class (it has
688 // a .this attribute)
689 bool wxPySwigInstance_Check(PyObject* obj) {
690 return PyObject_HasAttrString(obj, "this") != 0;
691 }
692
693 //---------------------------------------------------------------------------
694
695 // The stock objects are no longer created when the wx._core_ module is
696 // imported, but only after the app object has been created. The
697 // wxPy_ReinitStockObjects function will be called 3 times to pass the stock
698 // objects though various stages of evolution:
699 //
700 // pass 1: Set all the pointers to a non-NULL value so the Python proxy
701 // object will be created (otherwise SWIG will just use None.)
702 //
703 // pass 2: After the module has been imported and the python proxys have
704 // been created, then set the __class__ to be _wxPyUnbornObject so
705 // it will catch any access to the object and will raise an exception.
706 //
707 // pass 3: Finally, from BootstrapApp patch things up so the stock objects
708 // can be used.
709
710
711 PyObject* __wxPyFixStockObjects(PyObject* /* self */, PyObject* args)
712 {
713 wxPy_ReinitStockObjects(2);
714 RETURN_NONE();
715 }
716
717
718 static void rsoPass2(const char* name)
719 {
720 static PyObject* unbornObjectClass = NULL;
721 PyObject* obj;
722
723 if (unbornObjectClass == NULL) {
724 unbornObjectClass = PyDict_GetItemString(wxPython_dict, "_wxPyUnbornObject");
725 Py_INCREF(unbornObjectClass);
726 }
727
728 // Find the object instance
729 obj = PyDict_GetItemString(wxPython_dict, (char*)dropwx(name));
730 wxCHECK_RET(obj != NULL, wxT("Unable to find stock object"));
731 wxCHECK_RET(wxPySwigInstance_Check(obj), wxT("Not a swig instance"));
732
733 // Change its class
734 PyObject_SetAttrString(obj, "__class__", unbornObjectClass);
735
736 }
737
738 static void rsoPass3(const char* name, const char* classname, void* ptr)
739 {
740 PyObject* obj;
741 PyObject* classobj;
742 PyObject* ptrobj;
743
744 // Find the object instance
745 obj = PyDict_GetItemString(wxPython_dict, (char*)dropwx(name));
746 wxCHECK_RET(obj != NULL, wxT("Unable to find stock object"));
747 wxCHECK_RET(wxPySwigInstance_Check(obj), wxT("Not a swig instance"));
748
749 // Find the class object and put it back in the instance
750 classobj = PyDict_GetItemString(wxPython_dict, (char*)dropwx(classname));
751 wxCHECK_RET(classobj != NULL, wxT("Unable to find stock class object"));
752 PyObject_SetAttrString(obj, "__class__", classobj);
753
754 // Rebuild the .this swigified pointer with the new value of the C++ pointer
755 ptrobj = wxPyMakeSwigPtr(ptr, wxString(classname, *wxConvCurrent));
756 PyObject_SetAttrString(obj, "this", ptrobj);
757 Py_DECREF(ptrobj);
758 }
759
760
761
762 void wxPy_ReinitStockObjects(int pass)
763 {
764
765 // If there is already an App object then wxPython is probably embedded in
766 // a wx C++ application, so there is no need to do all this.
767 static bool embedded = false;
768 if ((pass == 1 || pass == 2) && wxTheApp) {
769 embedded = true;
770 return;
771 }
772 if (pass == 3 && embedded)
773 return;
774
775
776 #define REINITOBJ(name, classname) \
777 if (pass == 1) { name = (classname*)0xC0C0C0C0; } \
778 else if (pass == 2) { rsoPass2(#name); } \
779 else if (pass == 3) { rsoPass3(#name, #classname, (void*)name); }
780
781
782 #define REINITOBJ2(name, classname) \
783 if (pass == 1) { } \
784 else if (pass == 2) { rsoPass2(#name); } \
785 else if (pass == 3) { rsoPass3(#name, #classname, (void*)&name); }
786
787
788 REINITOBJ(wxNORMAL_FONT, wxFont);
789 REINITOBJ(wxSMALL_FONT, wxFont);
790 REINITOBJ(wxITALIC_FONT, wxFont);
791 REINITOBJ(wxSWISS_FONT, wxFont);
792
793 REINITOBJ(wxRED_PEN, wxPen);
794 REINITOBJ(wxCYAN_PEN, wxPen);
795 REINITOBJ(wxGREEN_PEN, wxPen);
796 REINITOBJ(wxBLACK_PEN, wxPen);
797 REINITOBJ(wxWHITE_PEN, wxPen);
798 REINITOBJ(wxTRANSPARENT_PEN, wxPen);
799 REINITOBJ(wxBLACK_DASHED_PEN, wxPen);
800 REINITOBJ(wxGREY_PEN, wxPen);
801 REINITOBJ(wxMEDIUM_GREY_PEN, wxPen);
802 REINITOBJ(wxLIGHT_GREY_PEN, wxPen);
803
804 REINITOBJ(wxBLUE_BRUSH, wxBrush);
805 REINITOBJ(wxGREEN_BRUSH, wxBrush);
806 REINITOBJ(wxWHITE_BRUSH, wxBrush);
807 REINITOBJ(wxBLACK_BRUSH, wxBrush);
808 REINITOBJ(wxTRANSPARENT_BRUSH, wxBrush);
809 REINITOBJ(wxCYAN_BRUSH, wxBrush);
810 REINITOBJ(wxRED_BRUSH, wxBrush);
811 REINITOBJ(wxGREY_BRUSH, wxBrush);
812 REINITOBJ(wxMEDIUM_GREY_BRUSH, wxBrush);
813 REINITOBJ(wxLIGHT_GREY_BRUSH, wxBrush);
814
815 REINITOBJ(wxBLACK, wxColour);
816 REINITOBJ(wxWHITE, wxColour);
817 REINITOBJ(wxRED, wxColour);
818 REINITOBJ(wxBLUE, wxColour);
819 REINITOBJ(wxGREEN, wxColour);
820 REINITOBJ(wxCYAN, wxColour);
821 REINITOBJ(wxLIGHT_GREY, wxColour);
822
823 REINITOBJ(wxSTANDARD_CURSOR, wxCursor);
824 REINITOBJ(wxHOURGLASS_CURSOR, wxCursor);
825 REINITOBJ(wxCROSS_CURSOR, wxCursor);
826
827 REINITOBJ2(wxNullBitmap, wxBitmap);
828 REINITOBJ2(wxNullIcon, wxIcon);
829 REINITOBJ2(wxNullCursor, wxCursor);
830 REINITOBJ2(wxNullPen, wxPen);
831 REINITOBJ2(wxNullBrush, wxBrush);
832 REINITOBJ2(wxNullPalette, wxPalette);
833 REINITOBJ2(wxNullFont, wxFont);
834 REINITOBJ2(wxNullColour, wxColour);
835
836 REINITOBJ(wxTheFontList, wxFontList);
837 REINITOBJ(wxThePenList, wxPenList);
838 REINITOBJ(wxTheBrushList, wxBrushList);
839 REINITOBJ(wxTheColourDatabase, wxColourDatabase);
840
841
842 REINITOBJ2(wxDefaultValidator, wxValidator);
843 REINITOBJ2(wxNullImage, wxImage);
844 REINITOBJ2(wxNullAcceleratorTable, wxAcceleratorTable);
845
846 #undef REINITOBJ
847 #undef REINITOBJ2
848 }
849
850 //---------------------------------------------------------------------------
851
852 // Check for existence of a wxApp, setting an exception if there isn't one.
853 // This doesn't need to aquire the GIL because it should only be called from
854 // an %exception before the lock is released.
855
856 bool wxPyCheckForApp() {
857 if (wxTheApp != NULL)
858 return true;
859 else {
860 PyErr_SetString(wxPyNoAppError, "The wx.App object must be created first!");
861 return false;
862 }
863 }
864
865 //---------------------------------------------------------------------------
866
867
868 void wxPyClientData_dtor(wxPyClientData* self) {
869 if (! wxPyDoingCleanup) { // Don't do it during cleanup as Python
870 // may have already garbage collected the object...
871 bool blocked = wxPyBeginBlockThreads();
872 Py_DECREF(self->m_obj);
873 self->m_obj = NULL;
874 wxPyEndBlockThreads(blocked);
875 }
876 }
877
878 void wxPyUserData_dtor(wxPyUserData* self) {
879 if (! wxPyDoingCleanup) {
880 bool blocked = wxPyBeginBlockThreads();
881 Py_DECREF(self->m_obj);
882 self->m_obj = NULL;
883 wxPyEndBlockThreads(blocked);
884 }
885 }
886
887
888 // This is called when an OOR controled object is being destroyed. Although
889 // the C++ object is going away there is no way to force the Python object
890 // (and all references to it) to die too. This causes problems (crashes) in
891 // wxPython when a python shadow object attempts to call a C++ method using
892 // the now bogus pointer... So to try and prevent this we'll do a little black
893 // magic and change the class of the python instance to a class that will
894 // raise an exception for any attempt to call methods with it. See
895 // _wxPyDeadObject in _core_ex.py for the implementation of this class.
896 void wxPyOORClientData_dtor(wxPyOORClientData* self) {
897
898 static PyObject* deadObjectClass = NULL;
899
900 bool blocked = wxPyBeginBlockThreads();
901 if (deadObjectClass == NULL) {
902 deadObjectClass = PyDict_GetItemString(wxPython_dict, "_wxPyDeadObject");
903 // TODO: Can not wxASSERT here because inside a wxPyBeginBlock Threads,
904 // will lead to a deadlock when it tries to aquire the GIL again.
905 //wxASSERT_MSG(deadObjectClass != NULL, wxT("Can't get _wxPyDeadObject class!"));
906 Py_INCREF(deadObjectClass);
907 }
908
909
910 // Only if there is more than one reference to the object
911 if ( !wxPyDoingCleanup && self->m_obj->ob_refcnt > 1 ) {
912 // bool isInstance = wxPyInstance_Check(self->m_obj);
913 // TODO same here
914 //wxASSERT_MSG(isInstance, wxT("m_obj not an instance!?!?!"));
915
916 // Call __del__, if there is one.
917 PyObject* func = PyObject_GetAttrString(self->m_obj, "__del__");
918 if (func) {
919 PyObject* rv = PyObject_CallMethod(self->m_obj, "__del__", NULL);
920 Py_XDECREF(rv);
921 Py_DECREF(func);
922 }
923 if (PyErr_Occurred())
924 PyErr_Clear(); // just ignore it for now
925
926
927 PyObject* dict = PyObject_GetAttrString(self->m_obj, "__dict__");
928 if (dict) {
929 // Clear the instance's dictionary
930 PyDict_Clear(dict);
931
932 // put the name of the old class into the instance, and then reset the
933 // class to be the dead class.
934 PyObject* klass = PyObject_GetAttrString(self->m_obj, "__class__");
935 PyObject* name = PyObject_GetAttrString(klass, "__name__");
936 PyDict_SetItemString(dict, "_name", name);
937 PyObject_SetAttrString(self->m_obj, "__class__", deadObjectClass);
938 //Py_INCREF(deadObjectClass);
939 Py_DECREF(klass);
940 Py_DECREF(name);
941 }
942 }
943
944 // m_obj is DECREF'd in the base class dtor...
945 wxPyEndBlockThreads(blocked);
946 }
947
948
949 //---------------------------------------------------------------------------
950 // Stuff used by OOR to find the right wxPython class type to return and to
951 // build it.
952
953
954 // The pointer type map is used when the "pointer" type name generated by SWIG
955 // is not the same as the shadow class name, for example wxPyTreeCtrl
956 // vs. wxTreeCtrl. It needs to be referenced in Python as well as from C++,
957 // so we'll just make it a Python dictionary in the wx module's namespace.
958 // (See __wxSetDictionary)
959 void wxPyPtrTypeMap_Add(const char* commonName, const char* ptrName) {
960 if (! wxPyPtrTypeMap)
961 wxPyPtrTypeMap = PyDict_New();
962 PyDict_SetItemString(wxPyPtrTypeMap,
963 (char*)commonName,
964 PyString_FromString((char*)ptrName));
965 }
966
967
968
969
970 PyObject* wxPyMake_wxObject(wxObject* source, bool setThisOwn, bool checkEvtHandler) {
971 PyObject* target = NULL;
972 bool isEvtHandler = false;
973
974 if (source) {
975 // If it's derived from wxEvtHandler then there may
976 // already be a pointer to a Python object that we can use
977 // in the OOR data.
978 if (checkEvtHandler && wxIsKindOf(source, wxEvtHandler)) {
979 isEvtHandler = true;
980 wxEvtHandler* eh = (wxEvtHandler*)source;
981 wxPyOORClientData* data = (wxPyOORClientData*)eh->GetClientObject();
982 if (data) {
983 target = data->m_obj;
984 if (target)
985 Py_INCREF(target);
986 }
987 }
988
989 if (! target) {
990 // Otherwise make it the old fashioned way by making a new shadow
991 // object and putting this pointer in it. Look up the class
992 // heirarchy until we find a class name that is located in the
993 // python module.
994 const wxClassInfo* info = source->GetClassInfo();
995 wxString name = info->GetClassName();
996 bool exists = wxPyCheckSwigType(name);
997 while (info && !exists) {
998 info = info->GetBaseClass1();
999 name = info->GetClassName();
1000 exists = wxPyCheckSwigType(name);
1001 }
1002 if (info) {
1003 target = wxPyConstructObject((void*)source, name, setThisOwn);
1004 if (target && isEvtHandler)
1005 ((wxEvtHandler*)source)->SetClientObject(new wxPyOORClientData(target));
1006 } else {
1007 wxString msg(wxT("wxPython class not found for "));
1008 msg += source->GetClassInfo()->GetClassName();
1009 PyErr_SetString(PyExc_NameError, msg.mbc_str());
1010 target = NULL;
1011 }
1012 }
1013 } else { // source was NULL so return None.
1014 Py_INCREF(Py_None); target = Py_None;
1015 }
1016 return target;
1017 }
1018
1019
1020 PyObject* wxPyMake_wxSizer(wxSizer* source, bool setThisOwn) {
1021 PyObject* target = NULL;
1022
1023 if (source && wxIsKindOf(source, wxSizer)) {
1024 // If it's derived from wxSizer then there may already be a pointer to
1025 // a Python object that we can use in the OOR data.
1026 wxSizer* sz = (wxSizer*)source;
1027 wxPyOORClientData* data = (wxPyOORClientData*)sz->GetClientObject();
1028 if (data) {
1029 target = data->m_obj;
1030 if (target)
1031 Py_INCREF(target);
1032 }
1033 }
1034 if (! target) {
1035 target = wxPyMake_wxObject(source, setThisOwn, false);
1036 if (target != Py_None)
1037 ((wxSizer*)source)->SetClientObject(new wxPyOORClientData(target));
1038 }
1039 return target;
1040 }
1041
1042
1043 //---------------------------------------------------------------------------
1044
1045
1046 #ifdef WXP_WITH_THREAD
1047 inline
1048 unsigned long wxPyGetCurrentThreadId() {
1049 return wxThread::GetCurrentId();
1050 }
1051
1052 static wxPyThreadState gs_shutdownTState;
1053
1054 static
1055 wxPyThreadState* wxPyGetThreadState() {
1056 if (wxPyTMutex == NULL) // Python is shutting down...
1057 return &gs_shutdownTState;
1058
1059 unsigned long ctid = wxPyGetCurrentThreadId();
1060 wxPyThreadState* tstate = NULL;
1061
1062 wxPyTMutex->Lock();
1063 for(size_t i=0; i < wxPyTStates->GetCount(); i++) {
1064 wxPyThreadState& info = wxPyTStates->Item(i);
1065 if (info.tid == ctid) {
1066 tstate = &info;
1067 break;
1068 }
1069 }
1070 wxPyTMutex->Unlock();
1071 wxASSERT_MSG(tstate, wxT("PyThreadState should not be NULL!"));
1072 return tstate;
1073 }
1074
1075
1076 static
1077 void wxPySaveThreadState(PyThreadState* tstate) {
1078 if (wxPyTMutex == NULL) { // Python is shutting down, assume a single thread...
1079 gs_shutdownTState.tstate = tstate;
1080 return;
1081 }
1082 unsigned long ctid = wxPyGetCurrentThreadId();
1083 wxPyTMutex->Lock();
1084 for(size_t i=0; i < wxPyTStates->GetCount(); i++) {
1085 wxPyThreadState& info = wxPyTStates->Item(i);
1086 if (info.tid == ctid) {
1087 #if 0
1088 if (info.tstate != tstate)
1089 wxLogMessage("*** tstate mismatch!???");
1090 #endif
1091 info.tstate = tstate; // allow for transient tstates
1092 // Normally it will never change, but apparently COM callbacks
1093 // (i.e. ActiveX controls) will (incorrectly IMHO) use a transient
1094 // tstate which will then be garbage the next time we try to use
1095 // it...
1096
1097 wxPyTMutex->Unlock();
1098 return;
1099 }
1100 }
1101 // not found, so add it...
1102 wxPyTStates->Add(new wxPyThreadState(ctid, tstate));
1103 wxPyTMutex->Unlock();
1104 }
1105
1106 #endif
1107
1108
1109
1110 // Calls from Python to wxWindows code are wrapped in calls to these
1111 // functions:
1112
1113 PyThreadState* wxPyBeginAllowThreads() {
1114 #ifdef WXP_WITH_THREAD
1115 PyThreadState* saved = PyEval_SaveThread(); // Py_BEGIN_ALLOW_THREADS;
1116 wxPySaveThreadState(saved);
1117 return saved;
1118 #else
1119 return NULL;
1120 #endif
1121 }
1122
1123 void wxPyEndAllowThreads(PyThreadState* saved) {
1124 #ifdef WXP_WITH_THREAD
1125 PyEval_RestoreThread(saved); // Py_END_ALLOW_THREADS;
1126 #endif
1127 }
1128
1129
1130
1131 // Calls from wxWindows back to Python code, or even any PyObject
1132 // manipulations, PyDECREF's and etc. are wrapped in calls to these functions:
1133
1134 bool wxPyBeginBlockThreads() {
1135 #ifdef WXP_WITH_THREAD
1136 // This works in for 2.3, maybe a good alternative to find the needed tstate?
1137 // PyThreadState *check = PyGILState_GetThisThreadState();
1138
1139 PyThreadState *current = _PyThreadState_Current;
1140
1141 // Only block if there wasn't already a tstate, or if the current one is
1142 // not the one we are wanting to change to. This should prevent deadlock
1143 // if there are nested calls to wxPyBeginBlockThreads
1144 bool blocked = false;
1145 wxPyThreadState* tstate = wxPyGetThreadState();
1146 if (current != tstate->tstate) {
1147 PyEval_RestoreThread(tstate->tstate);
1148 blocked = true;
1149 }
1150 return blocked;
1151 #endif
1152 }
1153
1154
1155 void wxPyEndBlockThreads(bool blocked) {
1156 #ifdef WXP_WITH_THREAD
1157 // Only unblock if we blocked in the last call to wxPyBeginBlockThreads.
1158 // The value of blocked passed in needs to be the same as that returned
1159 // from wxPyBeginBlockThreads at the same nesting level.
1160 if ( blocked ) {
1161 PyEval_SaveThread();
1162 }
1163 #endif
1164 }
1165
1166
1167 //---------------------------------------------------------------------------
1168 // wxPyInputStream and wxPyCBInputStream methods
1169
1170
1171 void wxPyInputStream::close() {
1172 /* do nothing for now */
1173 }
1174
1175 void wxPyInputStream::flush() {
1176 /* do nothing for now */
1177 }
1178
1179 bool wxPyInputStream::eof() {
1180 if (m_wxis)
1181 return m_wxis->Eof();
1182 else
1183 return true;
1184 }
1185
1186 wxPyInputStream::~wxPyInputStream() {
1187 /* do nothing */
1188 }
1189
1190
1191
1192
1193 PyObject* wxPyInputStream::read(int size) {
1194 PyObject* obj = NULL;
1195 wxMemoryBuffer buf;
1196 const int BUFSIZE = 1024;
1197
1198 // check if we have a real wxInputStream to work with
1199 if (!m_wxis) {
1200 bool blocked = wxPyBeginBlockThreads();
1201 PyErr_SetString(PyExc_IOError, "no valid C-wxInputStream");
1202 wxPyEndBlockThreads(blocked);
1203 return NULL;
1204 }
1205
1206 if (size < 0) {
1207 // read while bytes are available on the stream
1208 while ( m_wxis->CanRead() ) {
1209 m_wxis->Read(buf.GetAppendBuf(BUFSIZE), BUFSIZE);
1210 buf.UngetAppendBuf(m_wxis->LastRead());
1211 }
1212
1213 } else { // Read only size number of characters
1214 m_wxis->Read(buf.GetWriteBuf(size), size);
1215 buf.UngetWriteBuf(m_wxis->LastRead());
1216 }
1217
1218 // error check
1219 bool blocked = wxPyBeginBlockThreads();
1220 wxStreamError err = m_wxis->GetLastError();
1221 if (err != wxSTREAM_NO_ERROR && err != wxSTREAM_EOF) {
1222 PyErr_SetString(PyExc_IOError,"IOError in wxInputStream");
1223 }
1224 else {
1225 // We use only strings for the streams, not unicode
1226 obj = PyString_FromStringAndSize(buf, buf.GetDataLen());
1227 }
1228 wxPyEndBlockThreads(blocked);
1229 return obj;
1230 }
1231
1232
1233 PyObject* wxPyInputStream::readline(int size) {
1234 PyObject* obj = NULL;
1235 wxMemoryBuffer buf;
1236 int i;
1237 char ch;
1238
1239 // check if we have a real wxInputStream to work with
1240 if (!m_wxis) {
1241 bool blocked = wxPyBeginBlockThreads();
1242 PyErr_SetString(PyExc_IOError,"no valid C-wxInputStream");
1243 wxPyEndBlockThreads(blocked);
1244 return NULL;
1245 }
1246
1247 // read until \n or byte limit reached
1248 for (i=ch=0; (ch != '\n') && (m_wxis->CanRead()) && ((size < 0) || (i < size)); i++) {
1249 ch = m_wxis->GetC();
1250 buf.AppendByte(ch);
1251 }
1252
1253 // errorcheck
1254 bool blocked = wxPyBeginBlockThreads();
1255 wxStreamError err = m_wxis->GetLastError();
1256 if (err != wxSTREAM_NO_ERROR && err != wxSTREAM_EOF) {
1257 PyErr_SetString(PyExc_IOError,"IOError in wxInputStream");
1258 }
1259 else {
1260 // We use only strings for the streams, not unicode
1261 obj = PyString_FromStringAndSize((char*)buf.GetData(), buf.GetDataLen());
1262 }
1263 wxPyEndBlockThreads(blocked);
1264 return obj;
1265 }
1266
1267
1268 PyObject* wxPyInputStream::readlines(int sizehint) {
1269 PyObject* pylist;
1270
1271 // check if we have a real wxInputStream to work with
1272 if (!m_wxis) {
1273 bool blocked = wxPyBeginBlockThreads();
1274 PyErr_SetString(PyExc_IOError,"no valid C-wxInputStream");
1275 wxPyEndBlockThreads(blocked);
1276 return NULL;
1277 }
1278
1279 // init list
1280 bool blocked = wxPyBeginBlockThreads();
1281 pylist = PyList_New(0);
1282 wxPyEndBlockThreads(blocked);
1283
1284 if (!pylist) {
1285 bool blocked = wxPyBeginBlockThreads();
1286 PyErr_NoMemory();
1287 wxPyEndBlockThreads(blocked);
1288 return NULL;
1289 }
1290
1291 // read sizehint bytes or until EOF
1292 int i;
1293 for (i=0; (m_wxis->CanRead()) && ((sizehint < 0) || (i < sizehint));) {
1294 PyObject* s = this->readline();
1295 if (s == NULL) {
1296 bool blocked = wxPyBeginBlockThreads();
1297 Py_DECREF(pylist);
1298 wxPyEndBlockThreads(blocked);
1299 return NULL;
1300 }
1301 bool blocked = wxPyBeginBlockThreads();
1302 PyList_Append(pylist, s);
1303 i += PyString_Size(s);
1304 wxPyEndBlockThreads(blocked);
1305 }
1306
1307 // error check
1308 wxStreamError err = m_wxis->GetLastError();
1309 if (err != wxSTREAM_NO_ERROR && err != wxSTREAM_EOF) {
1310 bool blocked = wxPyBeginBlockThreads();
1311 Py_DECREF(pylist);
1312 PyErr_SetString(PyExc_IOError,"IOError in wxInputStream");
1313 wxPyEndBlockThreads(blocked);
1314 return NULL;
1315 }
1316
1317 return pylist;
1318 }
1319
1320
1321 void wxPyInputStream::seek(int offset, int whence) {
1322 if (m_wxis)
1323 m_wxis->SeekI(offset, wxSeekMode(whence));
1324 }
1325
1326 int wxPyInputStream::tell(){
1327 if (m_wxis)
1328 return m_wxis->TellI();
1329 else return 0;
1330 }
1331
1332
1333
1334
1335 wxPyCBInputStream::wxPyCBInputStream(PyObject *r, PyObject *s, PyObject *t, bool block)
1336 : wxInputStream(), m_read(r), m_seek(s), m_tell(t), m_block(block)
1337 {}
1338
1339
1340 wxPyCBInputStream::~wxPyCBInputStream() {
1341 bool blocked=false;
1342 if (m_block) blocked = wxPyBeginBlockThreads();
1343 Py_XDECREF(m_read);
1344 Py_XDECREF(m_seek);
1345 Py_XDECREF(m_tell);
1346 if (m_block) wxPyEndBlockThreads(blocked);
1347 }
1348
1349
1350 wxPyCBInputStream* wxPyCBInputStream::create(PyObject *py, bool block) {
1351 bool blocked=false;
1352 if (block) blocked = wxPyBeginBlockThreads();
1353
1354 PyObject* read = getMethod(py, "read");
1355 PyObject* seek = getMethod(py, "seek");
1356 PyObject* tell = getMethod(py, "tell");
1357
1358 if (!read) {
1359 PyErr_SetString(PyExc_TypeError, "Not a file-like object");
1360 Py_XDECREF(read);
1361 Py_XDECREF(seek);
1362 Py_XDECREF(tell);
1363 if (block) wxPyEndBlockThreads(blocked);
1364 return NULL;
1365 }
1366
1367 if (block) wxPyEndBlockThreads(blocked);
1368 return new wxPyCBInputStream(read, seek, tell, block);
1369 }
1370
1371
1372 wxPyCBInputStream* wxPyCBInputStream_create(PyObject *py, bool block) {
1373 return wxPyCBInputStream::create(py, block);
1374 }
1375
1376 PyObject* wxPyCBInputStream::getMethod(PyObject* py, char* name) {
1377 if (!PyObject_HasAttrString(py, name))
1378 return NULL;
1379 PyObject* o = PyObject_GetAttrString(py, name);
1380 if (!PyMethod_Check(o) && !PyCFunction_Check(o)) {
1381 Py_DECREF(o);
1382 return NULL;
1383 }
1384 return o;
1385 }
1386
1387
1388 size_t wxPyCBInputStream::GetSize() const {
1389 wxPyCBInputStream* self = (wxPyCBInputStream*)this; // cast off const
1390 if (m_seek && m_tell) {
1391 wxFileOffset temp = self->OnSysTell();
1392 wxFileOffset ret = self->OnSysSeek(0, wxFromEnd);
1393 self->OnSysSeek(temp, wxFromStart);
1394 return ret;
1395 }
1396 else
1397 return 0;
1398 }
1399
1400
1401 size_t wxPyCBInputStream::OnSysRead(void *buffer, size_t bufsize) {
1402 if (bufsize == 0)
1403 return 0;
1404
1405 bool blocked = wxPyBeginBlockThreads();
1406 PyObject* arglist = Py_BuildValue("(i)", bufsize);
1407 PyObject* result = PyEval_CallObject(m_read, arglist);
1408 Py_DECREF(arglist);
1409
1410 size_t o = 0;
1411 if ((result != NULL) && PyString_Check(result)) {
1412 o = PyString_Size(result);
1413 if (o == 0)
1414 m_lasterror = wxSTREAM_EOF;
1415 if (o > bufsize)
1416 o = bufsize;
1417 memcpy((char*)buffer, PyString_AsString(result), o); // strings only, not unicode...
1418 Py_DECREF(result);
1419
1420 }
1421 else
1422 m_lasterror = wxSTREAM_READ_ERROR;
1423 wxPyEndBlockThreads(blocked);
1424 return o;
1425 }
1426
1427 size_t wxPyCBInputStream::OnSysWrite(const void *buffer, size_t bufsize) {
1428 m_lasterror = wxSTREAM_WRITE_ERROR;
1429 return 0;
1430 }
1431
1432 wxFileOffset wxPyCBInputStream::OnSysSeek(wxFileOffset off, wxSeekMode mode) {
1433 bool blocked = wxPyBeginBlockThreads();
1434 #if defined( __WINCE__) || defined(_LARGE_FILES) || wxHAS_HUGE_FILES
1435 // wxFileOffset is a 64-bit value...
1436 PyObject* arglist = Py_BuildValue("(Li)", off, mode);
1437 #else
1438 PyObject* arglist = Py_BuildValue("(ii)", off, mode);
1439 #endif
1440 PyObject* result = PyEval_CallObject(m_seek, arglist);
1441 Py_DECREF(arglist);
1442 Py_XDECREF(result);
1443 wxPyEndBlockThreads(blocked);
1444 return OnSysTell();
1445 }
1446
1447
1448 wxFileOffset wxPyCBInputStream::OnSysTell() const {
1449 bool blocked = wxPyBeginBlockThreads();
1450 PyObject* arglist = Py_BuildValue("()");
1451 PyObject* result = PyEval_CallObject(m_tell, arglist);
1452 Py_DECREF(arglist);
1453 wxFileOffset o = 0;
1454 if (result != NULL) {
1455 #if defined( __WINCE__) || defined(_LARGE_FILES) || wxHAS_HUGE_FILES
1456 if (PyLong_Check(result))
1457 o = PyLong_AsLongLong(result);
1458 else
1459 #endif
1460 o = PyInt_AsLong(result);
1461 Py_DECREF(result);
1462 };
1463 wxPyEndBlockThreads(blocked);
1464 return o;
1465 }
1466
1467 //----------------------------------------------------------------------
1468
1469 IMPLEMENT_ABSTRACT_CLASS(wxPyCallback, wxObject);
1470
1471 wxPyCallback::wxPyCallback(PyObject* func) {
1472 m_func = func;
1473 Py_INCREF(m_func);
1474 }
1475
1476 wxPyCallback::wxPyCallback(const wxPyCallback& other) {
1477 m_func = other.m_func;
1478 Py_INCREF(m_func);
1479 }
1480
1481 wxPyCallback::~wxPyCallback() {
1482 bool blocked = wxPyBeginBlockThreads();
1483 Py_DECREF(m_func);
1484 wxPyEndBlockThreads(blocked);
1485 }
1486
1487
1488 #define wxPy_PRECALLINIT "_preCallInit"
1489 #define wxPy_POSTCALLCLEANUP "_postCallCleanup"
1490
1491 // This function is used for all events destined for Python event handlers.
1492 void wxPyCallback::EventThunker(wxEvent& event) {
1493 wxPyCallback* cb = (wxPyCallback*)event.m_callbackUserData;
1494 PyObject* func = cb->m_func;
1495 PyObject* result;
1496 PyObject* arg;
1497 PyObject* tuple;
1498 bool checkSkip = false;
1499
1500 bool blocked = wxPyBeginBlockThreads();
1501 wxString className = event.GetClassInfo()->GetClassName();
1502
1503 // If the event is one of these types then pass the original
1504 // event object instead of the one passed to us.
1505 if ( className == wxT("wxPyEvent") ) {
1506 arg = ((wxPyEvent*)&event)->GetSelf();
1507 checkSkip = ((wxPyEvent*)&event)->GetCloned();
1508 }
1509 else if ( className == wxT("wxPyCommandEvent") ) {
1510 arg = ((wxPyCommandEvent*)&event)->GetSelf();
1511 checkSkip = ((wxPyCommandEvent*)&event)->GetCloned();
1512 }
1513 else {
1514 arg = wxPyConstructObject((void*)&event, className);
1515 }
1516
1517 if (!arg) {
1518 PyErr_Print();
1519 } else {
1520 // "intern" the pre/post method names to speed up the HasAttr
1521 static PyObject* s_preName = NULL;
1522 static PyObject* s_postName = NULL;
1523 if (s_preName == NULL) {
1524 s_preName = PyString_FromString(wxPy_PRECALLINIT);
1525 s_postName = PyString_FromString(wxPy_POSTCALLCLEANUP);
1526 }
1527
1528 // Check if the event object needs some preinitialization
1529 if (PyObject_HasAttr(arg, s_preName)) {
1530 result = PyObject_CallMethodObjArgs(arg, s_preName, arg, NULL);
1531 if ( result ) {
1532 Py_DECREF(result); // result is ignored, but we still need to decref it
1533 PyErr_Clear(); // Just in case...
1534 } else {
1535 PyErr_Print();
1536 }
1537 }
1538
1539 // Call the event handler, passing the event object
1540 tuple = PyTuple_New(1);
1541 PyTuple_SET_ITEM(tuple, 0, arg); // steals ref to arg
1542 result = PyEval_CallObject(func, tuple);
1543 if ( result ) {
1544 Py_DECREF(result); // result is ignored, but we still need to decref it
1545 PyErr_Clear(); // Just in case...
1546 } else {
1547 PyErr_Print();
1548 }
1549
1550 // Check if the event object needs some post cleanup
1551 if (PyObject_HasAttr(arg, s_postName)) {
1552 result = PyObject_CallMethodObjArgs(arg, s_postName, arg, NULL);
1553 if ( result ) {
1554 Py_DECREF(result); // result is ignored, but we still need to decref it
1555 PyErr_Clear(); // Just in case...
1556 } else {
1557 PyErr_Print();
1558 }
1559 }
1560
1561 if ( checkSkip ) {
1562 // if the event object was one of our special types and
1563 // it had been cloned, then we need to extract the Skipped
1564 // value from the original and set it in the clone.
1565 result = PyObject_CallMethod(arg, "GetSkipped", "");
1566 if ( result ) {
1567 event.Skip(PyInt_AsLong(result));
1568 Py_DECREF(result);
1569 } else {
1570 PyErr_Print();
1571 }
1572 }
1573 Py_DECREF(tuple);
1574 }
1575 wxPyEndBlockThreads(blocked);
1576 }
1577
1578
1579 //----------------------------------------------------------------------
1580
1581 wxPyCallbackHelper::wxPyCallbackHelper(const wxPyCallbackHelper& other) {
1582 m_lastFound = NULL;
1583 m_self = other.m_self;
1584 m_class = other.m_class;
1585 if (m_self) {
1586 Py_INCREF(m_self);
1587 Py_INCREF(m_class);
1588 }
1589 }
1590
1591
1592 void wxPyCallbackHelper::setSelf(PyObject* self, PyObject* klass, int incref) {
1593 m_self = self;
1594 m_class = klass;
1595 m_incRef = incref;
1596 if (incref) {
1597 Py_INCREF(m_self);
1598 Py_INCREF(m_class);
1599 }
1600 }
1601
1602
1603 #if PYTHON_API_VERSION >= 1011
1604
1605 // Prior to Python 2.2 PyMethod_GetClass returned the class object
1606 // in which the method was defined. Starting with 2.2 it returns
1607 // "class that asked for the method" which seems totally bogus to me
1608 // but apprently it fixes some obscure problem waiting to happen in
1609 // Python. Since the API was not documented Guido and the gang felt
1610 // safe in changing it. Needless to say that totally screwed up the
1611 // logic below in wxPyCallbackHelper::findCallback, hence this icky
1612 // code to find the class where the method is actually defined...
1613
1614 static
1615 PyObject* PyFindClassWithAttr(PyObject *klass, PyObject *name)
1616 {
1617 int i, n;
1618
1619 if (PyType_Check(klass)) { // new style classes
1620 // This code is borrowed/adapted from _PyType_Lookup in typeobject.c
1621 PyTypeObject* type = (PyTypeObject*)klass;
1622 PyObject *mro, *res, *base, *dict;
1623 /* Look in tp_dict of types in MRO */
1624 mro = type->tp_mro;
1625 assert(PyTuple_Check(mro));
1626 n = PyTuple_GET_SIZE(mro);
1627 for (i = 0; i < n; i++) {
1628 base = PyTuple_GET_ITEM(mro, i);
1629 if (PyClass_Check(base))
1630 dict = ((PyClassObject *)base)->cl_dict;
1631 else {
1632 assert(PyType_Check(base));
1633 dict = ((PyTypeObject *)base)->tp_dict;
1634 }
1635 assert(dict && PyDict_Check(dict));
1636 res = PyDict_GetItem(dict, name);
1637 if (res != NULL)
1638 return base;
1639 }
1640 return NULL;
1641 }
1642
1643 else if (PyClass_Check(klass)) { // old style classes
1644 // This code is borrowed/adapted from class_lookup in classobject.c
1645 PyClassObject* cp = (PyClassObject*)klass;
1646 PyObject *value = PyDict_GetItem(cp->cl_dict, name);
1647 if (value != NULL) {
1648 return (PyObject*)cp;
1649 }
1650 n = PyTuple_Size(cp->cl_bases);
1651 for (i = 0; i < n; i++) {
1652 PyObject* base = PyTuple_GetItem(cp->cl_bases, i);
1653 PyObject *v = PyFindClassWithAttr(base, name);
1654 if (v != NULL)
1655 return v;
1656 }
1657 return NULL;
1658 }
1659 return NULL;
1660 }
1661 #endif
1662
1663
1664 static
1665 PyObject* PyMethod_GetDefiningClass(PyObject* method, const char* name)
1666 {
1667 PyObject* mgc = PyMethod_GET_CLASS(method);
1668
1669 #if PYTHON_API_VERSION <= 1010 // prior to Python 2.2, the easy way
1670 return mgc;
1671 #else // 2.2 and after, the hard way...
1672
1673 PyObject* nameo = PyString_FromString(name);
1674 PyObject* klass = PyFindClassWithAttr(mgc, nameo);
1675 Py_DECREF(nameo);
1676 return klass;
1677 #endif
1678 }
1679
1680
1681
1682 bool wxPyCallbackHelper::findCallback(const char* name) const {
1683 wxPyCallbackHelper* self = (wxPyCallbackHelper*)this; // cast away const
1684 self->m_lastFound = NULL;
1685
1686 // If the object (m_self) has an attibute of the given name...
1687 if (m_self && PyObject_HasAttrString(m_self, (char*)name)) {
1688 PyObject *method, *klass;
1689 method = PyObject_GetAttrString(m_self, (char*)name);
1690
1691 // ...and if that attribute is a method, and if that method's class is
1692 // not from a base class...
1693 if (PyMethod_Check(method) &&
1694 (klass = PyMethod_GetDefiningClass(method, (char*)name)) != NULL &&
1695 ((klass == m_class) || PyObject_IsSubclass(klass, m_class))) {
1696
1697 // ...then we'll save a pointer to the method so callCallback can call it.
1698 self->m_lastFound = method;
1699 }
1700 else {
1701 Py_DECREF(method);
1702 }
1703 }
1704 return m_lastFound != NULL;
1705 }
1706
1707
1708 int wxPyCallbackHelper::callCallback(PyObject* argTuple) const {
1709 PyObject* result;
1710 int retval = false;
1711
1712 result = callCallbackObj(argTuple);
1713 if (result) { // Assumes an integer return type...
1714 retval = PyInt_AsLong(result);
1715 Py_DECREF(result);
1716 PyErr_Clear(); // forget about it if it's not...
1717 }
1718 return retval;
1719 }
1720
1721 // Invoke the Python callable object, returning the raw PyObject return
1722 // value. Caller should DECREF the return value and also manage the GIL.
1723 PyObject* wxPyCallbackHelper::callCallbackObj(PyObject* argTuple) const {
1724 PyObject* result;
1725
1726 // Save a copy of the pointer in case the callback generates another
1727 // callback. In that case m_lastFound will have a different value when
1728 // it gets back here...
1729 PyObject* method = m_lastFound;
1730
1731 result = PyEval_CallObject(method, argTuple);
1732 Py_DECREF(argTuple);
1733 Py_DECREF(method);
1734 if (!result) {
1735 PyErr_Print();
1736 }
1737 return result;
1738 }
1739
1740
1741 void wxPyCBH_setCallbackInfo(wxPyCallbackHelper& cbh, PyObject* self, PyObject* klass, int incref) {
1742 cbh.setSelf(self, klass, incref);
1743 }
1744
1745 bool wxPyCBH_findCallback(const wxPyCallbackHelper& cbh, const char* name) {
1746 return cbh.findCallback(name);
1747 }
1748
1749 int wxPyCBH_callCallback(const wxPyCallbackHelper& cbh, PyObject* argTuple) {
1750 return cbh.callCallback(argTuple);
1751 }
1752
1753 PyObject* wxPyCBH_callCallbackObj(const wxPyCallbackHelper& cbh, PyObject* argTuple) {
1754 return cbh.callCallbackObj(argTuple);
1755 }
1756
1757
1758 void wxPyCBH_delete(wxPyCallbackHelper* cbh) {
1759 if (cbh->m_incRef) {
1760 bool blocked = wxPyBeginBlockThreads();
1761 Py_XDECREF(cbh->m_self);
1762 Py_XDECREF(cbh->m_class);
1763 wxPyEndBlockThreads(blocked);
1764 }
1765 }
1766
1767 //---------------------------------------------------------------------------
1768 //---------------------------------------------------------------------------
1769 // These event classes can be derived from in Python and passed through the event
1770 // system without losing anything. They do this by keeping a reference to
1771 // themselves and some special case handling in wxPyCallback::EventThunker.
1772
1773
1774 wxPyEvtSelfRef::wxPyEvtSelfRef() {
1775 //m_self = Py_None; // **** We don't do normal ref counting to prevent
1776 //Py_INCREF(m_self); // circular loops...
1777 m_cloned = false;
1778 }
1779
1780 wxPyEvtSelfRef::~wxPyEvtSelfRef() {
1781 bool blocked = wxPyBeginBlockThreads();
1782 if (m_cloned)
1783 Py_DECREF(m_self);
1784 wxPyEndBlockThreads(blocked);
1785 }
1786
1787 void wxPyEvtSelfRef::SetSelf(PyObject* self, bool clone) {
1788 bool blocked = wxPyBeginBlockThreads();
1789 if (m_cloned)
1790 Py_DECREF(m_self);
1791 m_self = self;
1792 if (clone) {
1793 Py_INCREF(m_self);
1794 m_cloned = true;
1795 }
1796 wxPyEndBlockThreads(blocked);
1797 }
1798
1799 PyObject* wxPyEvtSelfRef::GetSelf() const {
1800 Py_INCREF(m_self);
1801 return m_self;
1802 }
1803
1804
1805 IMPLEMENT_ABSTRACT_CLASS(wxPyEvent, wxEvent);
1806 IMPLEMENT_ABSTRACT_CLASS(wxPyCommandEvent, wxCommandEvent);
1807
1808
1809 wxPyEvent::wxPyEvent(int winid, wxEventType commandType)
1810 : wxEvent(winid, commandType) {
1811 }
1812
1813
1814 wxPyEvent::wxPyEvent(const wxPyEvent& evt)
1815 : wxEvent(evt)
1816 {
1817 SetSelf(evt.m_self, true);
1818 }
1819
1820
1821 wxPyEvent::~wxPyEvent() {
1822 }
1823
1824
1825 wxPyCommandEvent::wxPyCommandEvent(wxEventType commandType, int id)
1826 : wxCommandEvent(commandType, id) {
1827 }
1828
1829
1830 wxPyCommandEvent::wxPyCommandEvent(const wxPyCommandEvent& evt)
1831 : wxCommandEvent(evt)
1832 {
1833 SetSelf(evt.m_self, true);
1834 }
1835
1836
1837 wxPyCommandEvent::~wxPyCommandEvent() {
1838 }
1839
1840
1841
1842
1843
1844 //---------------------------------------------------------------------------
1845 //---------------------------------------------------------------------------
1846 // Convert a wxList to a Python List, only works for lists of wxObjects
1847
1848 PyObject* wxPy_ConvertList(wxListBase* listbase) {
1849 wxList* list = (wxList*)listbase; // this is probably bad...
1850 PyObject* pyList;
1851 PyObject* pyObj;
1852 wxObject* wxObj;
1853 wxNode* node = list->GetFirst();
1854
1855 bool blocked = wxPyBeginBlockThreads();
1856 pyList = PyList_New(0);
1857 while (node) {
1858 wxObj = node->GetData();
1859 pyObj = wxPyMake_wxObject(wxObj,false);
1860 PyList_Append(pyList, pyObj);
1861 node = node->GetNext();
1862 }
1863 wxPyEndBlockThreads(blocked);
1864 return pyList;
1865 }
1866
1867 //----------------------------------------------------------------------
1868
1869 long wxPyGetWinHandle(wxWindow* win) {
1870
1871 #ifdef __WXMSW__
1872 return (long)win->GetHandle();
1873 #endif
1874
1875 #if defined(__WXGTK__) || defined(__WXX11)
1876 return (long)GetXWindow(win);
1877 #endif
1878
1879 #ifdef __WXMAC__
1880 //return (long)MAC_WXHWND(win->MacGetTopLevelWindowRef());
1881 return (long)win->GetHandle();
1882 #endif
1883
1884 return 0;
1885 }
1886
1887 //----------------------------------------------------------------------
1888 // Some helper functions for typemaps in my_typemaps.i, so they won't be
1889 // included in every file over and over again...
1890
1891 wxString* wxString_in_helper(PyObject* source) {
1892 wxString* target = NULL;
1893
1894 if (!PyString_Check(source) && !PyUnicode_Check(source)) {
1895 PyErr_SetString(PyExc_TypeError, "String or Unicode type required");
1896 return NULL;
1897 }
1898 #if wxUSE_UNICODE
1899 PyObject* uni = source;
1900 if (PyString_Check(source)) {
1901 uni = PyUnicode_FromObject(source);
1902 if (PyErr_Occurred()) return NULL;
1903 }
1904 target = new wxString();
1905 size_t len = PyUnicode_GET_SIZE(uni);
1906 if (len) {
1907 PyUnicode_AsWideChar((PyUnicodeObject*)uni, target->GetWriteBuf(len), len);
1908 target->UngetWriteBuf(len);
1909 }
1910
1911 if (PyString_Check(source))
1912 Py_DECREF(uni);
1913 #else
1914 char* tmpPtr; int tmpSize;
1915 if (PyString_AsStringAndSize(source, &tmpPtr, &tmpSize) == -1) {
1916 PyErr_SetString(PyExc_TypeError, "Unable to convert string");
1917 return NULL;
1918 }
1919 target = new wxString(tmpPtr, tmpSize);
1920 #endif // wxUSE_UNICODE
1921
1922 return target;
1923 }
1924
1925
1926 // Similar to above except doesn't use "new" and doesn't set an exception
1927 wxString Py2wxString(PyObject* source)
1928 {
1929 wxString target;
1930
1931 #if wxUSE_UNICODE
1932 // Convert to a unicode object, if not already, then to a wxString
1933 PyObject* uni = source;
1934 if (!PyUnicode_Check(source)) {
1935 uni = PyUnicode_FromObject(source);
1936 if (PyErr_Occurred()) return wxEmptyString; // TODO: should we PyErr_Clear?
1937 }
1938 size_t len = PyUnicode_GET_SIZE(uni);
1939 if (len) {
1940 PyUnicode_AsWideChar((PyUnicodeObject*)uni, target.GetWriteBuf(len), len);
1941 target.UngetWriteBuf();
1942 }
1943
1944 if (!PyUnicode_Check(source))
1945 Py_DECREF(uni);
1946 #else
1947 // Convert to a string object if it isn't already, then to wxString
1948 PyObject* str = source;
1949 if (!PyString_Check(source)) {
1950 str = PyObject_Str(source);
1951 if (PyErr_Occurred()) return wxEmptyString; // TODO: should we PyErr_Clear?
1952 }
1953 char* tmpPtr; int tmpSize;
1954 PyString_AsStringAndSize(str, &tmpPtr, &tmpSize);
1955 target = wxString(tmpPtr, tmpSize);
1956
1957 if (!PyString_Check(source))
1958 Py_DECREF(str);
1959 #endif // wxUSE_UNICODE
1960
1961 return target;
1962 }
1963
1964
1965 // Make either a Python String or Unicode object, depending on build mode
1966 PyObject* wx2PyString(const wxString& src)
1967 {
1968 PyObject* str;
1969 #if wxUSE_UNICODE
1970 str = PyUnicode_FromWideChar(src.c_str(), src.Len());
1971 #else
1972 str = PyString_FromStringAndSize(src.c_str(), src.Len());
1973 #endif
1974 return str;
1975 }
1976
1977
1978 //----------------------------------------------------------------------
1979
1980
1981 byte* byte_LIST_helper(PyObject* source) {
1982 if (!PyList_Check(source)) {
1983 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
1984 return NULL;
1985 }
1986 int count = PyList_Size(source);
1987 byte* temp = new byte[count];
1988 if (! temp) {
1989 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
1990 return NULL;
1991 }
1992 for (int x=0; x<count; x++) {
1993 PyObject* o = PyList_GetItem(source, x);
1994 if (! PyInt_Check(o)) {
1995 PyErr_SetString(PyExc_TypeError, "Expected a list of integers.");
1996 return NULL;
1997 }
1998 temp[x] = (byte)PyInt_AsLong(o);
1999 }
2000 return temp;
2001 }
2002
2003
2004 int* int_LIST_helper(PyObject* source) {
2005 if (!PyList_Check(source)) {
2006 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2007 return NULL;
2008 }
2009 int count = PyList_Size(source);
2010 int* temp = new int[count];
2011 if (! temp) {
2012 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2013 return NULL;
2014 }
2015 for (int x=0; x<count; x++) {
2016 PyObject* o = PyList_GetItem(source, x);
2017 if (! PyInt_Check(o)) {
2018 PyErr_SetString(PyExc_TypeError, "Expected a list of integers.");
2019 return NULL;
2020 }
2021 temp[x] = PyInt_AsLong(o);
2022 }
2023 return temp;
2024 }
2025
2026
2027 long* long_LIST_helper(PyObject* source) {
2028 if (!PyList_Check(source)) {
2029 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2030 return NULL;
2031 }
2032 int count = PyList_Size(source);
2033 long* temp = new long[count];
2034 if (! temp) {
2035 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2036 return NULL;
2037 }
2038 for (int x=0; x<count; x++) {
2039 PyObject* o = PyList_GetItem(source, x);
2040 if (! PyInt_Check(o)) {
2041 PyErr_SetString(PyExc_TypeError, "Expected a list of integers.");
2042 return NULL;
2043 }
2044 temp[x] = PyInt_AsLong(o);
2045 }
2046 return temp;
2047 }
2048
2049
2050 char** string_LIST_helper(PyObject* source) {
2051 if (!PyList_Check(source)) {
2052 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2053 return NULL;
2054 }
2055 int count = PyList_Size(source);
2056 char** temp = new char*[count];
2057 if (! temp) {
2058 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2059 return NULL;
2060 }
2061 for (int x=0; x<count; x++) {
2062 PyObject* o = PyList_GetItem(source, x);
2063 if (! PyString_Check(o)) {
2064 PyErr_SetString(PyExc_TypeError, "Expected a list of strings.");
2065 return NULL;
2066 }
2067 temp[x] = PyString_AsString(o);
2068 }
2069 return temp;
2070 }
2071
2072 //--------------------------------
2073 // Part of patch from Tim Hochberg
2074 static inline bool wxPointFromObjects(PyObject* o1, PyObject* o2, wxPoint* point) {
2075 if (PyInt_Check(o1) && PyInt_Check(o2)) {
2076 point->x = PyInt_AS_LONG(o1);
2077 point->y = PyInt_AS_LONG(o2);
2078 return true;
2079 }
2080 if (PyFloat_Check(o1) && PyFloat_Check(o2)) {
2081 point->x = (int)PyFloat_AS_DOUBLE(o1);
2082 point->y = (int)PyFloat_AS_DOUBLE(o2);
2083 return true;
2084 }
2085 if (wxPySwigInstance_Check(o1) || wxPySwigInstance_Check(o2)) { // TODO: Why???
2086 // Disallow instances because they can cause havok
2087 return false;
2088 }
2089 if (PyNumber_Check(o1) && PyNumber_Check(o2)) {
2090 // I believe this excludes instances, so this should be safe without INCREFFing o1 and o2
2091 point->x = PyInt_AsLong(o1);
2092 point->y = PyInt_AsLong(o2);
2093 return true;
2094 }
2095 return false;
2096 }
2097
2098
2099 wxPoint* wxPoint_LIST_helper(PyObject* source, int *count) {
2100 // Putting all of the declarations here allows
2101 // us to put the error handling all in one place.
2102 int x;
2103 wxPoint* temp;
2104 PyObject *o, *o1, *o2;
2105 bool isFast = PyList_Check(source) || PyTuple_Check(source);
2106
2107 if (!PySequence_Check(source)) {
2108 goto error0;
2109 }
2110
2111 // The length of the sequence is returned in count.
2112 *count = PySequence_Length(source);
2113 if (*count < 0) {
2114 goto error0;
2115 }
2116
2117 temp = new wxPoint[*count];
2118 if (!temp) {
2119 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2120 return NULL;
2121 }
2122 for (x=0; x<*count; x++) {
2123 // Get an item: try fast way first.
2124 if (isFast) {
2125 o = PySequence_Fast_GET_ITEM(source, x);
2126 }
2127 else {
2128 o = PySequence_GetItem(source, x);
2129 if (o == NULL) {
2130 goto error1;
2131 }
2132 }
2133
2134 // Convert o to wxPoint.
2135 if ((PyTuple_Check(o) && PyTuple_GET_SIZE(o) == 2) ||
2136 (PyList_Check(o) && PyList_GET_SIZE(o) == 2)) {
2137 o1 = PySequence_Fast_GET_ITEM(o, 0);
2138 o2 = PySequence_Fast_GET_ITEM(o, 1);
2139 if (!wxPointFromObjects(o1, o2, &temp[x])) {
2140 goto error2;
2141 }
2142 }
2143 else if (wxPySwigInstance_Check(o)) {
2144 wxPoint* pt;
2145 if (! wxPyConvertSwigPtr(o, (void **)&pt, wxT("wxPoint"))) {
2146 goto error2;
2147 }
2148 temp[x] = *pt;
2149 }
2150 else if (PySequence_Check(o) && PySequence_Length(o) == 2) {
2151 o1 = PySequence_GetItem(o, 0);
2152 o2 = PySequence_GetItem(o, 1);
2153 if (!wxPointFromObjects(o1, o2, &temp[x])) {
2154 goto error3;
2155 }
2156 Py_DECREF(o1);
2157 Py_DECREF(o2);
2158 }
2159 else {
2160 goto error2;
2161 }
2162 // Clean up.
2163 if (!isFast)
2164 Py_DECREF(o);
2165 }
2166 return temp;
2167
2168 error3:
2169 Py_DECREF(o1);
2170 Py_DECREF(o2);
2171 error2:
2172 if (!isFast)
2173 Py_DECREF(o);
2174 error1:
2175 delete [] temp;
2176 error0:
2177 PyErr_SetString(PyExc_TypeError, "Expected a sequence of length-2 sequences or wxPoints.");
2178 return NULL;
2179 }
2180 // end of patch
2181 //------------------------------
2182
2183
2184 wxBitmap** wxBitmap_LIST_helper(PyObject* source) {
2185 if (!PyList_Check(source)) {
2186 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2187 return NULL;
2188 }
2189 int count = PyList_Size(source);
2190 wxBitmap** temp = new wxBitmap*[count];
2191 if (! temp) {
2192 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2193 return NULL;
2194 }
2195 for (int x=0; x<count; x++) {
2196 PyObject* o = PyList_GetItem(source, x);
2197 if (wxPySwigInstance_Check(o)) {
2198 wxBitmap* pt;
2199 if (! wxPyConvertSwigPtr(o, (void **) &pt, wxT("wxBitmap"))) {
2200 PyErr_SetString(PyExc_TypeError,"Expected wxBitmap.");
2201 return NULL;
2202 }
2203 temp[x] = pt;
2204 }
2205 else {
2206 PyErr_SetString(PyExc_TypeError, "Expected a list of wxBitmaps.");
2207 return NULL;
2208 }
2209 }
2210 return temp;
2211 }
2212
2213
2214
2215 wxString* wxString_LIST_helper(PyObject* source) {
2216 if (!PyList_Check(source)) {
2217 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2218 return NULL;
2219 }
2220 int count = PyList_Size(source);
2221 wxString* temp = new wxString[count];
2222 if (! temp) {
2223 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2224 return NULL;
2225 }
2226 for (int x=0; x<count; x++) {
2227 PyObject* o = PyList_GetItem(source, x);
2228 #if PYTHON_API_VERSION >= 1009
2229 if (! PyString_Check(o) && ! PyUnicode_Check(o)) {
2230 PyErr_SetString(PyExc_TypeError, "Expected a list of string or unicode objects.");
2231 return NULL;
2232 }
2233 #else
2234 if (! PyString_Check(o)) {
2235 PyErr_SetString(PyExc_TypeError, "Expected a list of strings.");
2236 return NULL;
2237 }
2238 #endif
2239
2240 wxString* pStr = wxString_in_helper(o);
2241 temp[x] = *pStr;
2242 delete pStr;
2243 }
2244 return temp;
2245 }
2246
2247
2248 wxAcceleratorEntry* wxAcceleratorEntry_LIST_helper(PyObject* source) {
2249 if (!PyList_Check(source)) {
2250 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2251 return NULL;
2252 }
2253 int count = PyList_Size(source);
2254 wxAcceleratorEntry* temp = new wxAcceleratorEntry[count];
2255 if (! temp) {
2256 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2257 return NULL;
2258 }
2259 for (int x=0; x<count; x++) {
2260 PyObject* o = PyList_GetItem(source, x);
2261 if (wxPySwigInstance_Check(o)) {
2262 wxAcceleratorEntry* ae;
2263 if (! wxPyConvertSwigPtr(o, (void **) &ae, wxT("wxAcceleratorEntry"))) {
2264 PyErr_SetString(PyExc_TypeError,"Expected wxAcceleratorEntry.");
2265 return NULL;
2266 }
2267 temp[x] = *ae;
2268 }
2269 else if (PyTuple_Check(o)) {
2270 PyObject* o1 = PyTuple_GetItem(o, 0);
2271 PyObject* o2 = PyTuple_GetItem(o, 1);
2272 PyObject* o3 = PyTuple_GetItem(o, 2);
2273 temp[x].Set(PyInt_AsLong(o1), PyInt_AsLong(o2), PyInt_AsLong(o3));
2274 }
2275 else {
2276 PyErr_SetString(PyExc_TypeError, "Expected a list of 3-tuples or wxAcceleratorEntry objects.");
2277 return NULL;
2278 }
2279 }
2280 return temp;
2281 }
2282
2283
2284 wxPen** wxPen_LIST_helper(PyObject* source) {
2285 if (!PyList_Check(source)) {
2286 PyErr_SetString(PyExc_TypeError, "Expected a list object.");
2287 return NULL;
2288 }
2289 int count = PyList_Size(source);
2290 wxPen** temp = new wxPen*[count];
2291 if (!temp) {
2292 PyErr_SetString(PyExc_MemoryError, "Unable to allocate temporary array");
2293 return NULL;
2294 }
2295 for (int x=0; x<count; x++) {
2296 PyObject* o = PyList_GetItem(source, x);
2297 if (wxPySwigInstance_Check(o)) {
2298 wxPen* pt;
2299 if (! wxPyConvertSwigPtr(o, (void **)&pt, wxT("wxPen"))) {
2300 delete temp;
2301 PyErr_SetString(PyExc_TypeError,"Expected wxPen.");
2302 return NULL;
2303 }
2304 temp[x] = pt;
2305 }
2306 else {
2307 delete temp;
2308 PyErr_SetString(PyExc_TypeError, "Expected a list of wxPens.");
2309 return NULL;
2310 }
2311 }
2312 return temp;
2313 }
2314
2315
2316 bool wxPy2int_seq_helper(PyObject* source, int* i1, int* i2) {
2317 bool isFast = PyList_Check(source) || PyTuple_Check(source);
2318 PyObject *o1, *o2;
2319
2320 if (!PySequence_Check(source) || PySequence_Length(source) != 2)
2321 return false;
2322
2323 if (isFast) {
2324 o1 = PySequence_Fast_GET_ITEM(source, 0);
2325 o2 = PySequence_Fast_GET_ITEM(source, 1);
2326 }
2327 else {
2328 o1 = PySequence_GetItem(source, 0);
2329 o2 = PySequence_GetItem(source, 1);
2330 }
2331
2332 *i1 = PyInt_AsLong(o1);
2333 *i2 = PyInt_AsLong(o2);
2334
2335 if (! isFast) {
2336 Py_DECREF(o1);
2337 Py_DECREF(o2);
2338 }
2339 return true;
2340 }
2341
2342
2343 bool wxPy4int_seq_helper(PyObject* source, int* i1, int* i2, int* i3, int* i4) {
2344 bool isFast = PyList_Check(source) || PyTuple_Check(source);
2345 PyObject *o1, *o2, *o3, *o4;
2346
2347 if (!PySequence_Check(source) || PySequence_Length(source) != 4)
2348 return false;
2349
2350 if (isFast) {
2351 o1 = PySequence_Fast_GET_ITEM(source, 0);
2352 o2 = PySequence_Fast_GET_ITEM(source, 1);
2353 o3 = PySequence_Fast_GET_ITEM(source, 2);
2354 o4 = PySequence_Fast_GET_ITEM(source, 3);
2355 }
2356 else {
2357 o1 = PySequence_GetItem(source, 0);
2358 o2 = PySequence_GetItem(source, 1);
2359 o3 = PySequence_GetItem(source, 2);
2360 o4 = PySequence_GetItem(source, 3);
2361 }
2362
2363 *i1 = PyInt_AsLong(o1);
2364 *i2 = PyInt_AsLong(o2);
2365 *i3 = PyInt_AsLong(o3);
2366 *i4 = PyInt_AsLong(o4);
2367
2368 if (! isFast) {
2369 Py_DECREF(o1);
2370 Py_DECREF(o2);
2371 Py_DECREF(o3);
2372 Py_DECREF(o4);
2373 }
2374 return true;
2375 }
2376
2377
2378 //----------------------------------------------------------------------
2379
2380 bool wxPySimple_typecheck(PyObject* source, const wxChar* classname, int seqLen)
2381 {
2382 void* ptr;
2383
2384 if (wxPySwigInstance_Check(source) &&
2385 wxPyConvertSwigPtr(source, (void **)&ptr, classname))
2386 return true;
2387
2388 PyErr_Clear();
2389 if (PySequence_Check(source) && PySequence_Length(source) == seqLen)
2390 return true;
2391
2392 return false;
2393 }
2394
2395 bool wxSize_helper(PyObject* source, wxSize** obj)
2396 {
2397 if (source == Py_None) {
2398 **obj = wxSize(-1,-1);
2399 return true;
2400 }
2401 return wxPyTwoIntItem_helper(source, obj, wxT("wxSize"));
2402 }
2403
2404
2405 bool wxPoint_helper(PyObject* source, wxPoint** obj)
2406 {
2407 if (source == Py_None) {
2408 **obj = wxPoint(-1,-1);
2409 return true;
2410 }
2411 return wxPyTwoIntItem_helper(source, obj, wxT("wxPoint"));
2412 }
2413
2414
2415
2416 bool wxRealPoint_helper(PyObject* source, wxRealPoint** obj) {
2417
2418 if (source == Py_None) {
2419 **obj = wxRealPoint(-1,-1);
2420 return true;
2421 }
2422
2423 // If source is an object instance then it may already be the right type
2424 if (wxPySwigInstance_Check(source)) {
2425 wxRealPoint* ptr;
2426 if (! wxPyConvertSwigPtr(source, (void **)&ptr, wxT("wxRealPoint")))
2427 goto error;
2428 *obj = ptr;
2429 return true;
2430 }
2431 // otherwise a 2-tuple of floats is expected
2432 else if (PySequence_Check(source) && PyObject_Length(source) == 2) {
2433 PyObject* o1 = PySequence_GetItem(source, 0);
2434 PyObject* o2 = PySequence_GetItem(source, 1);
2435 if (!PyNumber_Check(o1) || !PyNumber_Check(o2)) {
2436 Py_DECREF(o1);
2437 Py_DECREF(o2);
2438 goto error;
2439 }
2440 **obj = wxRealPoint(PyFloat_AsDouble(o1), PyFloat_AsDouble(o2));
2441 Py_DECREF(o1);
2442 Py_DECREF(o2);
2443 return true;
2444 }
2445
2446 error:
2447 PyErr_SetString(PyExc_TypeError, "Expected a 2-tuple of floats or a wxRealPoint object.");
2448 return false;
2449 }
2450
2451
2452
2453 bool wxRect_helper(PyObject* source, wxRect** obj) {
2454
2455 if (source == Py_None) {
2456 **obj = wxRect(-1,-1,-1,-1);
2457 return true;
2458 }
2459
2460 // If source is an object instance then it may already be the right type
2461 if (wxPySwigInstance_Check(source)) {
2462 wxRect* ptr;
2463 if (! wxPyConvertSwigPtr(source, (void **)&ptr, wxT("wxRect")))
2464 goto error;
2465 *obj = ptr;
2466 return true;
2467 }
2468 // otherwise a 4-tuple of integers is expected
2469 else if (PySequence_Check(source) && PyObject_Length(source) == 4) {
2470 PyObject* o1 = PySequence_GetItem(source, 0);
2471 PyObject* o2 = PySequence_GetItem(source, 1);
2472 PyObject* o3 = PySequence_GetItem(source, 2);
2473 PyObject* o4 = PySequence_GetItem(source, 3);
2474 if (!PyNumber_Check(o1) || !PyNumber_Check(o2) ||
2475 !PyNumber_Check(o3) || !PyNumber_Check(o4)) {
2476 Py_DECREF(o1);
2477 Py_DECREF(o2);
2478 Py_DECREF(o3);
2479 Py_DECREF(o4);
2480 goto error;
2481 }
2482 **obj = wxRect(PyInt_AsLong(o1), PyInt_AsLong(o2),
2483 PyInt_AsLong(o3), PyInt_AsLong(o4));
2484 Py_DECREF(o1);
2485 Py_DECREF(o2);
2486 Py_DECREF(o3);
2487 Py_DECREF(o4);
2488 return true;
2489 }
2490
2491 error:
2492 PyErr_SetString(PyExc_TypeError, "Expected a 4-tuple of integers or a wxRect object.");
2493 return false;
2494 }
2495
2496
2497
2498 bool wxColour_helper(PyObject* source, wxColour** obj) {
2499
2500 if (source == Py_None) {
2501 **obj = wxNullColour;
2502 return true;
2503 }
2504
2505 // If source is an object instance then it may already be the right type
2506 if (wxPySwigInstance_Check(source)) {
2507 wxColour* ptr;
2508 if (! wxPyConvertSwigPtr(source, (void **)&ptr, wxT("wxColour")))
2509 goto error;
2510 *obj = ptr;
2511 return true;
2512 }
2513 // otherwise check for a string
2514 else if (PyString_Check(source) || PyUnicode_Check(source)) {
2515 wxString spec = Py2wxString(source);
2516 if (spec.GetChar(0) == '#' && spec.Length() == 7) { // It's #RRGGBB
2517 long red, green, blue;
2518 red = green = blue = 0;
2519 spec.Mid(1,2).ToLong(&red, 16);
2520 spec.Mid(3,2).ToLong(&green, 16);
2521 spec.Mid(5,2).ToLong(&blue, 16);
2522
2523 **obj = wxColour(red, green, blue);
2524 return true;
2525 }
2526 else { // it's a colour name
2527 **obj = wxColour(spec);
2528 return true;
2529 }
2530 }
2531 // last chance: 3-tuple of integers is expected
2532 else if (PySequence_Check(source) && PyObject_Length(source) == 3) {
2533 PyObject* o1 = PySequence_GetItem(source, 0);
2534 PyObject* o2 = PySequence_GetItem(source, 1);
2535 PyObject* o3 = PySequence_GetItem(source, 2);
2536 if (!PyNumber_Check(o1) || !PyNumber_Check(o2) || !PyNumber_Check(o3)) {
2537 Py_DECREF(o1);
2538 Py_DECREF(o2);
2539 Py_DECREF(o3);
2540 goto error;
2541 }
2542 **obj = wxColour(PyInt_AsLong(o1), PyInt_AsLong(o2), PyInt_AsLong(o3));
2543 Py_DECREF(o1);
2544 Py_DECREF(o2);
2545 Py_DECREF(o3);
2546 return true;
2547 }
2548
2549 error:
2550 PyErr_SetString(PyExc_TypeError,
2551 "Expected a wxColour object or a string containing a colour name or '#RRGGBB'.");
2552 return false;
2553 }
2554
2555
2556 bool wxColour_typecheck(PyObject* source) {
2557
2558 if (wxPySimple_typecheck(source, wxT("wxColour"), 3))
2559 return true;
2560
2561 if (PyString_Check(source) || PyUnicode_Check(source))
2562 return true;
2563
2564 return false;
2565 }
2566
2567
2568
2569 bool wxPoint2D_helper(PyObject* source, wxPoint2D** obj) {
2570
2571 if (source == Py_None) {
2572 **obj = wxPoint2D(-1,-1);
2573 return true;
2574 }
2575
2576 // If source is an object instance then it may already be the right type
2577 if (wxPySwigInstance_Check(source)) {
2578 wxPoint2D* ptr;
2579 if (! wxPyConvertSwigPtr(source, (void **)&ptr, wxT("wxPoint2D")))
2580 goto error;
2581 *obj = ptr;
2582 return true;
2583 }
2584 // otherwise a length-2 sequence of floats is expected
2585 if (PySequence_Check(source) && PySequence_Length(source) == 2) {
2586 PyObject* o1 = PySequence_GetItem(source, 0);
2587 PyObject* o2 = PySequence_GetItem(source, 1);
2588 // This should really check for floats, not numbers -- but that would break code.
2589 if (!PyNumber_Check(o1) || !PyNumber_Check(o2)) {
2590 Py_DECREF(o1);
2591 Py_DECREF(o2);
2592 goto error;
2593 }
2594 **obj = wxPoint2D(PyFloat_AsDouble(o1), PyFloat_AsDouble(o2));
2595 Py_DECREF(o1);
2596 Py_DECREF(o2);
2597 return true;
2598 }
2599 error:
2600 PyErr_SetString(PyExc_TypeError, "Expected a 2-tuple of floats or a wxPoint2D object.");
2601 return false;
2602 }
2603
2604
2605 //----------------------------------------------------------------------
2606
2607 PyObject* wxArrayString2PyList_helper(const wxArrayString& arr) {
2608
2609 PyObject* list = PyList_New(0);
2610 for (size_t i=0; i < arr.GetCount(); i++) {
2611 #if wxUSE_UNICODE
2612 PyObject* str = PyUnicode_FromWideChar(arr[i].c_str(), arr[i].Len());
2613 #else
2614 PyObject* str = PyString_FromStringAndSize(arr[i].c_str(), arr[i].Len());
2615 #endif
2616 PyList_Append(list, str);
2617 Py_DECREF(str);
2618 }
2619 return list;
2620 }
2621
2622
2623 PyObject* wxArrayInt2PyList_helper(const wxArrayInt& arr) {
2624
2625 PyObject* list = PyList_New(0);
2626 for (size_t i=0; i < arr.GetCount(); i++) {
2627 PyObject* number = PyInt_FromLong(arr[i]);
2628 PyList_Append(list, number);
2629 Py_DECREF(number);
2630 }
2631 return list;
2632 }
2633
2634
2635 //----------------------------------------------------------------------
2636 //----------------------------------------------------------------------
2637
2638
2639
2640