Sync to Wine-20050725:
[reactos.git] / reactos / lib / ole32 / ole16.c
1 /*
2 * 16 bit ole functions
3 *
4 * Copyright 1995 Martin von Loewis
5 * Copyright 1998 Justin Bradford
6 * Copyright 1999 Francis Beaudet
7 * Copyright 1999 Sylvain St-Germain
8 * Copyright 2002 Marcus Meissner
9 *
10 * This library is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU Lesser General Public
12 * License as published by the Free Software Foundation; either
13 * version 2.1 of the License, or (at your option) any later version.
14 *
15 * This library is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * Lesser General Public License for more details.
19 *
20 * You should have received a copy of the GNU Lesser General Public
21 * License along with this library; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
23 */
24
25 #include "config.h"
26
27 #include <stdlib.h>
28 #include <stdarg.h>
29 #include <stdio.h>
30 #include <string.h>
31 #include <assert.h>
32
33 #include "windef.h"
34 #include "winbase.h"
35 #include "winuser.h"
36 #include "objbase.h"
37 #include "ole2.h"
38 #include "ole2ver.h"
39 #include "rpc.h"
40 #include "winerror.h"
41 #include "winreg.h"
42 #include "wownt32.h"
43 #include "wtypes.h"
44 #include "wine/unicode.h"
45 #include "wine/winbase16.h"
46 #include "compobj_private.h"
47 #include "ifs.h"
48
49 #include "wine/debug.h"
50
51 WINE_DEFAULT_DEBUG_CHANNEL(ole);
52
53 static HTASK16 hETask = 0;
54 static WORD Table_ETask[62];
55
56 static LPMALLOC16 currentMalloc16=NULL;
57
58 /* --- IMalloc16 implementation */
59
60
61 typedef struct
62 {
63 /* IUnknown fields */
64 const IMalloc16Vtbl *lpVtbl;
65 DWORD ref;
66 /* IMalloc16 fields */
67 } IMalloc16Impl;
68
69 /******************************************************************************
70 * IMalloc16_QueryInterface [COMPOBJ.500]
71 */
72 HRESULT IMalloc16_fnQueryInterface(IMalloc16* iface,REFIID refiid,LPVOID *obj) {
73 IMalloc16Impl *This = (IMalloc16Impl *)iface;
74
75 TRACE("(%p)->QueryInterface(%s,%p)\n",This,debugstr_guid(refiid),obj);
76 if ( !memcmp(&IID_IUnknown,refiid,sizeof(IID_IUnknown)) ||
77 !memcmp(&IID_IMalloc,refiid,sizeof(IID_IMalloc))
78 ) {
79 *obj = This;
80 return 0;
81 }
82 return OLE_E_ENUM_NOMORE;
83 }
84
85 /******************************************************************************
86 * IMalloc16_AddRef [COMPOBJ.501]
87 */
88 ULONG IMalloc16_fnAddRef(IMalloc16* iface) {
89 IMalloc16Impl *This = (IMalloc16Impl *)iface;
90 TRACE("(%p)->AddRef()\n",This);
91 return 1; /* cannot be freed */
92 }
93
94 /******************************************************************************
95 * IMalloc16_Release [COMPOBJ.502]
96 */
97 ULONG IMalloc16_fnRelease(IMalloc16* iface) {
98 IMalloc16Impl *This = (IMalloc16Impl *)iface;
99 TRACE("(%p)->Release()\n",This);
100 return 1; /* cannot be freed */
101 }
102
103 /******************************************************************************
104 * IMalloc16_Alloc [COMPOBJ.503]
105 */
106 SEGPTR IMalloc16_fnAlloc(IMalloc16* iface,DWORD cb) {
107 IMalloc16Impl *This = (IMalloc16Impl *)iface;
108 TRACE("(%p)->Alloc(%ld)\n",This,cb);
109 return MapLS( HeapAlloc( GetProcessHeap(), 0, cb ) );
110 }
111
112 /******************************************************************************
113 * IMalloc16_Free [COMPOBJ.505]
114 */
115 VOID IMalloc16_fnFree(IMalloc16* iface,SEGPTR pv)
116 {
117 void *ptr = MapSL(pv);
118 IMalloc16Impl *This = (IMalloc16Impl *)iface;
119 TRACE("(%p)->Free(%08lx)\n",This,pv);
120 UnMapLS(pv);
121 HeapFree( GetProcessHeap(), 0, ptr );
122 }
123
124 /******************************************************************************
125 * IMalloc16_Realloc [COMPOBJ.504]
126 */
127 SEGPTR IMalloc16_fnRealloc(IMalloc16* iface,SEGPTR pv,DWORD cb)
128 {
129 SEGPTR ret;
130 IMalloc16Impl *This = (IMalloc16Impl *)iface;
131 TRACE("(%p)->Realloc(%08lx,%ld)\n",This,pv,cb);
132 if (!pv)
133 ret = IMalloc16_fnAlloc(iface, cb);
134 else if (cb) {
135 ret = MapLS( HeapReAlloc( GetProcessHeap(), 0, MapSL(pv), cb ) );
136 UnMapLS(pv);
137 } else {
138 IMalloc16_fnFree(iface, pv);
139 ret = 0;
140 }
141 return ret;
142 }
143
144 /******************************************************************************
145 * IMalloc16_GetSize [COMPOBJ.506]
146 */
147 DWORD IMalloc16_fnGetSize(const IMalloc16* iface,SEGPTR pv)
148 {
149 IMalloc16Impl *This = (IMalloc16Impl *)iface;
150 TRACE("(%p)->GetSize(%08lx)\n",This,pv);
151 return HeapSize( GetProcessHeap(), 0, MapSL(pv) );
152 }
153
154 /******************************************************************************
155 * IMalloc16_DidAlloc [COMPOBJ.507]
156 */
157 INT16 IMalloc16_fnDidAlloc(const IMalloc16* iface,LPVOID pv) {
158 IMalloc16 *This = (IMalloc16 *)iface;
159 TRACE("(%p)->DidAlloc(%p)\n",This,pv);
160 return (INT16)-1;
161 }
162
163 /******************************************************************************
164 * IMalloc16_HeapMinimize [COMPOBJ.508]
165 */
166 LPVOID IMalloc16_fnHeapMinimize(IMalloc16* iface) {
167 IMalloc16Impl *This = (IMalloc16Impl *)iface;
168 TRACE("(%p)->HeapMinimize()\n",This);
169 return NULL;
170 }
171
172 /******************************************************************************
173 * IMalloc16_Constructor [VTABLE]
174 */
175 LPMALLOC16
176 IMalloc16_Constructor()
177 {
178 static IMalloc16Vtbl vt16;
179 static SEGPTR msegvt16;
180 IMalloc16Impl* This;
181 HMODULE16 hcomp = GetModuleHandle16("COMPOBJ");
182
183 This = HeapAlloc( GetProcessHeap(), 0, sizeof(IMalloc16Impl) );
184 if (!msegvt16)
185 {
186 #define VTENT(x) vt16.x = (void*)GetProcAddress16(hcomp,"IMalloc16_"#x);assert(vt16.x)
187 VTENT(QueryInterface);
188 VTENT(AddRef);
189 VTENT(Release);
190 VTENT(Alloc);
191 VTENT(Realloc);
192 VTENT(Free);
193 VTENT(GetSize);
194 VTENT(DidAlloc);
195 VTENT(HeapMinimize);
196 #undef VTENT
197 msegvt16 = MapLS( &vt16 );
198 }
199 This->lpVtbl = (const IMalloc16Vtbl*)msegvt16;
200 This->ref = 1;
201 return (LPMALLOC16)MapLS( This );
202 }
203
204
205 /***********************************************************************
206 * CoGetMalloc [COMPOBJ.4]
207 * RETURNS
208 * The current win16 IMalloc
209 */
210 HRESULT WINAPI CoGetMalloc16(
211 DWORD dwMemContext, /* [in] unknown */
212 LPMALLOC16 * lpMalloc /* [out] current win16 malloc interface */
213 ) {
214 if(!currentMalloc16)
215 currentMalloc16 = IMalloc16_Constructor();
216 *lpMalloc = currentMalloc16;
217 return S_OK;
218 }
219
220 /***********************************************************************
221 * CoCreateStandardMalloc [COMPOBJ.71]
222 */
223 HRESULT WINAPI CoCreateStandardMalloc16(DWORD dwMemContext,
224 LPMALLOC16 *lpMalloc)
225 {
226 /* FIXME: docu says we shouldn't return the same allocator as in
227 * CoGetMalloc16 */
228 *lpMalloc = IMalloc16_Constructor();
229 return S_OK;
230 }
231
232 /******************************************************************************
233 * CoInitialize [COMPOBJ.2]
234 * Set the win16 IMalloc used for memory management
235 */
236 HRESULT WINAPI CoInitialize16(
237 LPVOID lpReserved /* [in] pointer to win16 malloc interface */
238 ) {
239 currentMalloc16 = (LPMALLOC16)lpReserved;
240 return S_OK;
241 }
242
243 /***********************************************************************
244 * CoUninitialize [COMPOBJ.3]
245 * Don't know what it does.
246 * 3-Nov-98 -- this was originally misspelled, I changed it to what I
247 * believe is the correct spelling
248 */
249 void WINAPI CoUninitialize16(void)
250 {
251 TRACE("()\n");
252 CoFreeAllLibraries();
253 }
254
255 /***********************************************************************
256 * IsEqualGUID [COMPOBJ.18]
257 *
258 * Compares two Unique Identifiers.
259 *
260 * RETURNS
261 * TRUE if equal
262 */
263 BOOL16 WINAPI IsEqualGUID16(
264 GUID* g1, /* [in] unique id 1 */
265 GUID* g2) /* [in] unique id 2 */
266 {
267 return !memcmp( g1, g2, sizeof(GUID) );
268 }
269
270 /******************************************************************************
271 * CLSIDFromString [COMPOBJ.20]
272 * Converts a unique identifier from its string representation into
273 * the GUID struct.
274 *
275 * Class id: DWORD-WORD-WORD-BYTES[2]-BYTES[6]
276 *
277 * RETURNS
278 * the converted GUID
279 */
280 HRESULT WINAPI CLSIDFromString16(
281 LPCOLESTR16 idstr, /* [in] string representation of guid */
282 CLSID *id) /* [out] GUID converted from string */
283 {
284
285 return __CLSIDFromStringA(idstr,id);
286 }
287
288 extern BOOL WINAPI K32WOWCallback16Ex( DWORD vpfn16, DWORD dwFlags,
289 DWORD cbArgs, LPVOID pArgs,
290 LPDWORD pdwRetCode );
291
292 /******************************************************************************
293 * _xmalloc16 [internal]
294 * Allocates size bytes from the standard ole16 allocator.
295 *
296 * RETURNS
297 * the allocated segmented pointer and a HRESULT
298 */
299 static HRESULT
300 _xmalloc16(DWORD size, SEGPTR *ptr) {
301 LPMALLOC16 mllc;
302 DWORD args[2];
303
304 if (CoGetMalloc16(0,&mllc))
305 return E_OUTOFMEMORY;
306
307 args[0] = (DWORD)mllc;
308 args[1] = size;
309 /* No need for a Callback entry, we have WOWCallback16Ex which does
310 * everything we need.
311 */
312 if (!K32WOWCallback16Ex(
313 (DWORD)((const IMalloc16Vtbl*)MapSL(
314 (SEGPTR)((LPMALLOC16)MapSL((SEGPTR)mllc))->lpVtbl )
315 )->Alloc,
316 WCB16_CDECL,
317 2*sizeof(DWORD),
318 (LPVOID)args,
319 (LPDWORD)ptr
320 )) {
321 ERR("CallTo16 IMalloc16 (%ld) failed\n",size);
322 return E_FAIL;
323 }
324 return S_OK;
325 }
326
327 /******************************************************************************
328 * StringFromCLSID [COMPOBJ.19]
329 * Converts a GUID into the respective string representation.
330 * The target string is allocated using the OLE IMalloc.
331 *
332 * RETURNS
333 * the string representation and HRESULT
334 */
335
336 HRESULT WINAPI StringFromCLSID16(
337 REFCLSID id, /* [in] the GUID to be converted */
338 LPOLESTR16 *idstr /* [out] a pointer to a to-be-allocated segmented pointer pointing to the resulting string */
339
340 ) {
341 HRESULT ret;
342
343 ret = _xmalloc16(40,(SEGPTR*)idstr);
344 if (ret != S_OK)
345 return ret;
346 return WINE_StringFromCLSID(id,MapSL((SEGPTR)*idstr));
347 }
348
349 /******************************************************************************
350 * ProgIDFromCLSID [COMPOBJ.62]
351 * Converts a class id into the respective Program ID. (By using a registry lookup)
352 * RETURNS S_OK on success
353 * riid associated with the progid
354 */
355 HRESULT WINAPI ProgIDFromCLSID16(
356 REFCLSID clsid, /* [in] class id as found in registry */
357 LPOLESTR16 *lplpszProgID/* [out] associated Prog ID */
358 ) {
359 static const WCHAR wszProgID[] = {'P','r','o','g','I','D',0};
360 HKEY xhkey;
361 HKEY hkey;
362 HRESULT ret = S_OK;
363
364 if (COM_OpenKeyForCLSID(clsid, KEY_READ, &hkey))
365 ret = REGDB_E_CLASSNOTREG;
366
367 if ((ret == S_OK) &&
368 RegOpenKeyW(hkey, wszProgID, &xhkey))
369 ret = REGDB_E_CLASSNOTREG;
370
371 if (ret == S_OK)
372 {
373 LONG buf2len;
374 char *buf2 = HeapAlloc(GetProcessHeap(), 0, 255);
375 buf2len = 255;
376 if (RegQueryValueA(xhkey, NULL, buf2, &buf2len))
377 ret = REGDB_E_CLASSNOTREG;
378
379 if (ret == S_OK)
380 {
381 ret = _xmalloc16(buf2len+1, (SEGPTR*)lplpszProgID);
382 if (ret == S_OK)
383 strcpy(MapSL((SEGPTR)*lplpszProgID),buf2);
384 }
385 HeapFree(GetProcessHeap(), 0, buf2);
386 }
387 RegCloseKey(xhkey);
388 return ret;
389 }
390
391 /***********************************************************************
392 * LookupETask (COMPOBJ.94)
393 */
394 HRESULT WINAPI LookupETask16(HTASK16 *hTask,LPVOID p) {
395 FIXME("(%p,%p),stub!\n",hTask,p);
396 if ((*hTask = GetCurrentTask()) == hETask) {
397 memcpy(p, Table_ETask, sizeof(Table_ETask));
398 }
399 return 0;
400 }
401
402 /***********************************************************************
403 * SetETask (COMPOBJ.95)
404 */
405 HRESULT WINAPI SetETask16(HTASK16 hTask, LPVOID p) {
406 FIXME("(%04x,%p),stub!\n",hTask,p);
407 hETask = hTask;
408 return 0;
409 }
410
411 /***********************************************************************
412 * CALLOBJECTINWOW (COMPOBJ.201)
413 */
414 HRESULT WINAPI CallObjectInWOW(LPVOID p1,LPVOID p2) {
415 FIXME("(%p,%p),stub!\n",p1,p2);
416 return 0;
417 }
418
419 /******************************************************************************
420 * CoRegisterClassObject [COMPOBJ.5]
421 *
422 * Don't know where it registers it ...
423 */
424 HRESULT WINAPI CoRegisterClassObject16(
425 REFCLSID rclsid,
426 LPUNKNOWN pUnk,
427 DWORD dwClsContext, /* [in] CLSCTX flags indicating the context in which to run the executable */
428 DWORD flags, /* [in] REGCLS flags indicating how connections are made */
429 LPDWORD lpdwRegister
430 ) {
431 FIXME("(%s,%p,0x%08lx,0x%08lx,%p),stub\n",
432 debugstr_guid(rclsid),pUnk,dwClsContext,flags,lpdwRegister
433 );
434 return 0;
435 }
436
437 /******************************************************************************
438 * CoRevokeClassObject [COMPOBJ.6]
439 *
440 */
441 HRESULT WINAPI CoRevokeClassObject16(DWORD dwRegister) /* [in] token on class obj */
442 {
443 FIXME("(0x%08lx),stub!\n", dwRegister);
444 return 0;
445 }
446
447 /******************************************************************************
448 * CoFileTimeToDosDateTime [COMPOBJ.30]
449 */
450 BOOL16 WINAPI CoFileTimeToDosDateTime16(const FILETIME *ft, LPWORD lpDosDate, LPWORD lpDosTime)
451 {
452 return FileTimeToDosDateTime(ft, lpDosDate, lpDosTime);
453 }
454
455 /******************************************************************************
456 * CoDosDateTimeToFileTime [COMPOBJ.31]
457 */
458 BOOL16 WINAPI CoDosDateTimeToFileTime16(WORD wDosDate, WORD wDosTime, FILETIME *ft)
459 {
460 return DosDateTimeToFileTime(wDosDate, wDosTime, ft);
461 }
462
463 /******************************************************************************
464 * CoRegisterMessageFilter [COMPOBJ.27]
465 */
466 HRESULT WINAPI CoRegisterMessageFilter16(
467 LPMESSAGEFILTER lpMessageFilter,
468 LPMESSAGEFILTER *lplpMessageFilter
469 ) {
470 FIXME("(%p,%p),stub!\n",lpMessageFilter,lplpMessageFilter);
471 return 0;
472 }
473
474 /******************************************************************************
475 * CoLockObjectExternal [COMPOBJ.63]
476 */
477 HRESULT WINAPI CoLockObjectExternal16(
478 LPUNKNOWN pUnk, /* [in] object to be locked */
479 BOOL16 fLock, /* [in] do lock */
480 BOOL16 fLastUnlockReleases /* [in] ? */
481 ) {
482 FIXME("(%p,%d,%d),stub!\n",pUnk,fLock,fLastUnlockReleases);
483 return S_OK;
484 }
485
486 /***********************************************************************
487 * CoGetState [COMPOBJ.115]
488 */
489 HRESULT WINAPI CoGetState16(LPDWORD state)
490 {
491 FIXME("(%p),stub!\n", state);
492
493 *state = 0;
494 return S_OK;
495 }
496
497 /***********************************************************************
498 * DllEntryPoint [COMPOBJ.116]
499 *
500 * Initialization code for the COMPOBJ DLL
501 *
502 * RETURNS:
503 */
504 BOOL WINAPI COMPOBJ_DllEntryPoint(DWORD Reason, HINSTANCE16 hInst, WORD ds, WORD HeapSize, DWORD res1, WORD res2)
505 {
506 TRACE("(%08lx, %04x, %04x, %04x, %08lx, %04x)\n", Reason, hInst, ds, HeapSize, res1, res2);
507 return TRUE;
508 }
509
510 /***********************************************************************
511 * CoMemAlloc [COMPOBJ.151]
512 */
513 SEGPTR WINAPI CoMemAlloc(DWORD size, DWORD dwMemContext, DWORD x) {
514 HRESULT hres;
515 SEGPTR segptr;
516
517 /* FIXME: check context handling */
518 TRACE("(%ld, 0x%08lx, 0x%08lx)\n", size, dwMemContext, x);
519 hres = _xmalloc16(size, &segptr);
520 if (hres != S_OK)
521 return (SEGPTR)0;
522 return segptr;
523 }