1 /*
2 * IDxDiagProvider Implementation
3 *
4 * Copyright 2004-2005 Raphael Junqueira
5 * Copyright 2010 Andrew Nguyen
6 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
20 *
21 */
22
23
24 #define COBJMACROS
25 #define NONAMELESSUNION
26 #define NONAMELESSSTRUCT
27
28 #ifdef __REACTOS__
29 #include <wchar.h>
30 #endif
31
32 #include "dxdiag_private.h"
33 #include "winver.h"
34 #include "objidl.h"
35 #include "uuids.h"
36 #include "vfw.h"
37 #include "mmddk.h"
38 #include "d3d9.h"
39 #include "strmif.h"
40 #include "initguid.h"
41 #include "wine/fil_data.h"
42 #include "psapi.h"
43 #include "wbemcli.h"
44 #include "dsound.h"
45
46 #include "wine/debug.h"
47
48 WINE_DEFAULT_DEBUG_CHANNEL(dxdiag);
49
50 static const WCHAR szEmpty[] = {0};
51
52 static HRESULT build_information_tree(IDxDiagContainerImpl_Container **pinfo_root);
53 static void free_information_tree(IDxDiagContainerImpl_Container *node);
54
55 static const WCHAR szDescription[] = {'s','z','D','e','s','c','r','i','p','t','i','o','n',0};
56 static const WCHAR szDeviceName[] = {'s','z','D','e','v','i','c','e','N','a','m','e',0};
57 static const WCHAR szKeyDeviceID[] = {'s','z','K','e','y','D','e','v','i','c','e','I','D',0};
58 static const WCHAR szKeyDeviceKey[] = {'s','z','K','e','y','D','e','v','i','c','e','K','e','y',0};
59 static const WCHAR szVendorId[] = {'s','z','V','e','n','d','o','r','I','d',0};
60 static const WCHAR szDeviceId[] = {'s','z','D','e','v','i','c','e','I','d',0};
61 static const WCHAR szDeviceIdentifier[] = {'s','z','D','e','v','i','c','e','I','d','e','n','t','i','f','i','e','r',0};
62 static const WCHAR dwWidth[] = {'d','w','W','i','d','t','h',0};
63 static const WCHAR dwHeight[] = {'d','w','H','e','i','g','h','t',0};
64 static const WCHAR dwBpp[] = {'d','w','B','p','p',0};
65 static const WCHAR szDisplayMemoryLocalized[] = {'s','z','D','i','s','p','l','a','y','M','e','m','o','r','y','L','o','c','a','l','i','z','e','d',0};
66 static const WCHAR szDisplayMemoryEnglish[] = {'s','z','D','i','s','p','l','a','y','M','e','m','o','r','y','E','n','g','l','i','s','h',0};
67 static const WCHAR szDisplayModeLocalized[] = {'s','z','D','i','s','p','l','a','y','M','o','d','e','L','o','c','a','l','i','z','e','d',0};
68 static const WCHAR szDisplayModeEnglish[] = {'s','z','D','i','s','p','l','a','y','M','o','d','e','E','n','g','l','i','s','h',0};
69 static const WCHAR szDriverName[] = {'s','z','D','r','i','v','e','r','N','a','m','e',0};
70 static const WCHAR szDriverVersion[] = {'s','z','D','r','i','v','e','r','V','e','r','s','i','o','n',0};
71 static const WCHAR szSubSysId[] = {'s','z','S','u','b','S','y','s','I','d',0};
72 static const WCHAR szRevisionId[] = {'s','z','R','e','v','i','s','i','o','n','I','d',0};
73 static const WCHAR dwRefreshRate[] = {'d','w','R','e','f','r','e','s','h','R','a','t','e',0};
74 static const WCHAR szManufacturer[] = {'s','z','M','a','n','u','f','a','c','t','u','r','e','r',0};
75 static const WCHAR szChipType[] = {'s','z','C','h','i','p','T','y','p','e',0};
76 static const WCHAR szDACType[] = {'s','z','D','A','C','T','y','p','e',0};
77 static const WCHAR szRevision[] = {'s','z','R','e','v','i','s','i','o','n',0};
78 static const WCHAR szMonitorName[] = {'s','z','M','o','n','i','t','o','r','N','a','m','e',0};
79 static const WCHAR szMonitorMaxRes[] = {'s','z','M','o','n','i','t','o','r','M','a','x','R','e','s',0};
80 static const WCHAR szDriverAttributes[] = {'s','z','D','r','i','v','e','r','A','t','t','r','i','b','u','t','e','s',0};
81 static const WCHAR szDriverLanguageEnglish[] = {'s','z','D','r','i','v','e','r','L','a','n','g','u','a','g','e','E','n','g','l','i','s','h',0};
82 static const WCHAR szDriverLanguageLocalized[] = {'s','z','D','r','i','v','e','r','L','a','n','g','u','a','g','e','L','o','c','a','l','i','z','e','d',0};
83 static const WCHAR szDriverDateEnglish[] = {'s','z','D','r','i','v','e','r','D','a','t','e','E','n','g','l','i','s','h',0};
84 static const WCHAR szDriverDateLocalized[] = {'s','z','D','r','i','v','e','r','D','a','t','e','L','o','c','a','l','i','z','e','d',0};
85 static const WCHAR lDriverSize[] = {'l','D','r','i','v','e','r','S','i','z','e',0};
86 static const WCHAR szMiniVdd[] = {'s','z','M','i','n','i','V','d','d',0};
87 static const WCHAR szMiniVddDateLocalized[] = {'s','z','M','i','n','i','V','d','d','D','a','t','e','L','o','c','a','l','i','z','e','d',0};
88 static const WCHAR szMiniVddDateEnglish[] = {'s','z','M','i','n','i','V','d','d','D','a','t','e','E','n','g','l','i','s','h',0};
89 static const WCHAR lMiniVddSize[] = {'l','M','i','n','i','V','d','d','S','i','z','e',0};
90 static const WCHAR szVdd[] = {'s','z','V','d','d',0};
91 static const WCHAR bCanRenderWindow[] = {'b','C','a','n','R','e','n','d','e','r','W','i','n','d','o','w',0};
92 static const WCHAR bDriverBeta[] = {'b','D','r','i','v','e','r','B','e','t','a',0};
93 static const WCHAR bDriverDebug[] = {'b','D','r','i','v','e','r','D','e','b','u','g',0};
94 static const WCHAR bDriverSigned[] = {'b','D','r','i','v','e','r','S','i','g','n','e','d',0};
95 static const WCHAR bDriverSignedValid[] = {'b','D','r','i','v','e','r','S','i','g','n','e','d','V','a','l','i','d',0};
96 static const WCHAR szDriverSignDate[] = {'s','z','D','r','i','v','e','r','S','i','g','n','D','a','t','e',0};
97 static const WCHAR dwDDIVersion[] = {'d','w','D','D','I','V','e','r','s','i','o','n',0};
98 static const WCHAR szDDIVersionEnglish[] = {'s','z','D','D','I','V','e','r','s','i','o','n','E','n','g','l','i','s','h',0};
99 static const WCHAR szDDIVersionLocalized[] = {'s','z','D','D','I','V','e','r','s','i','o','n','L','o','c','a','l','i','z','e','d',0};
100 static const WCHAR iAdapter[] = {'i','A','d','a','p','t','e','r',0};
101 static const WCHAR dwWHQLLevel[] = {'d','w','W','H','Q','L','L','e','v','e','l',0};
102
103 struct IDxDiagProviderImpl
104 {
105 IDxDiagProvider IDxDiagProvider_iface;
106 LONG ref;
107 BOOL init;
108 DXDIAG_INIT_PARAMS params;
109 IDxDiagContainerImpl_Container *info_root;
110 };
111
impl_from_IDxDiagProvider(IDxDiagProvider * iface)112 static inline IDxDiagProviderImpl *impl_from_IDxDiagProvider(IDxDiagProvider *iface)
113 {
114 return CONTAINING_RECORD(iface, IDxDiagProviderImpl, IDxDiagProvider_iface);
115 }
116
117 /* IDxDiagProvider IUnknown parts follow: */
IDxDiagProviderImpl_QueryInterface(IDxDiagProvider * iface,REFIID riid,void ** ppobj)118 static HRESULT WINAPI IDxDiagProviderImpl_QueryInterface(IDxDiagProvider *iface, REFIID riid,
119 void **ppobj)
120 {
121 IDxDiagProviderImpl *This = impl_from_IDxDiagProvider(iface);
122
123 if (!ppobj) return E_INVALIDARG;
124
125 if (IsEqualGUID(riid, &IID_IUnknown)
126 || IsEqualGUID(riid, &IID_IDxDiagProvider)) {
127 IUnknown_AddRef(iface);
128 *ppobj = This;
129 return S_OK;
130 }
131
132 WARN("(%p)->(%s,%p),not found\n",This,debugstr_guid(riid),ppobj);
133 *ppobj = NULL;
134 return E_NOINTERFACE;
135 }
136
IDxDiagProviderImpl_AddRef(IDxDiagProvider * iface)137 static ULONG WINAPI IDxDiagProviderImpl_AddRef(IDxDiagProvider *iface)
138 {
139 IDxDiagProviderImpl *This = impl_from_IDxDiagProvider(iface);
140 ULONG refCount = InterlockedIncrement(&This->ref);
141
142 TRACE("(%p)->(ref before=%u)\n", This, refCount - 1);
143
144 DXDIAGN_LockModule();
145
146 return refCount;
147 }
148
IDxDiagProviderImpl_Release(IDxDiagProvider * iface)149 static ULONG WINAPI IDxDiagProviderImpl_Release(IDxDiagProvider *iface)
150 {
151 IDxDiagProviderImpl *This = impl_from_IDxDiagProvider(iface);
152 ULONG refCount = InterlockedDecrement(&This->ref);
153
154 TRACE("(%p)->(ref before=%u)\n", This, refCount + 1);
155
156 if (!refCount) {
157 free_information_tree(This->info_root);
158 HeapFree(GetProcessHeap(), 0, This);
159 }
160
161 DXDIAGN_UnlockModule();
162
163 return refCount;
164 }
165
166 /* IDxDiagProvider Interface follow: */
IDxDiagProviderImpl_Initialize(IDxDiagProvider * iface,DXDIAG_INIT_PARAMS * pParams)167 static HRESULT WINAPI IDxDiagProviderImpl_Initialize(IDxDiagProvider *iface,
168 DXDIAG_INIT_PARAMS *pParams)
169 {
170 IDxDiagProviderImpl *This = impl_from_IDxDiagProvider(iface);
171 HRESULT hr;
172
173 TRACE("(%p,%p)\n", iface, pParams);
174
175 if (NULL == pParams) {
176 return E_POINTER;
177 }
178 if (pParams->dwSize != sizeof(DXDIAG_INIT_PARAMS) ||
179 pParams->dwDxDiagHeaderVersion != DXDIAG_DX9_SDK_VERSION) {
180 return E_INVALIDARG;
181 }
182
183 if (!This->info_root)
184 {
185 hr = build_information_tree(&This->info_root);
186 if (FAILED(hr))
187 return hr;
188 }
189
190 This->init = TRUE;
191 memcpy(&This->params, pParams, pParams->dwSize);
192 return S_OK;
193 }
194
IDxDiagProviderImpl_GetRootContainer(IDxDiagProvider * iface,IDxDiagContainer ** ppInstance)195 static HRESULT WINAPI IDxDiagProviderImpl_GetRootContainer(IDxDiagProvider *iface,
196 IDxDiagContainer **ppInstance)
197 {
198 IDxDiagProviderImpl *This = impl_from_IDxDiagProvider(iface);
199
200 TRACE("(%p,%p)\n", iface, ppInstance);
201
202 if (FALSE == This->init) {
203 return CO_E_NOTINITIALIZED;
204 }
205
206 return DXDiag_CreateDXDiagContainer(&IID_IDxDiagContainer, This->info_root,
207 &This->IDxDiagProvider_iface, (void **)ppInstance);
208 }
209
210 static const IDxDiagProviderVtbl DxDiagProvider_Vtbl =
211 {
212 IDxDiagProviderImpl_QueryInterface,
213 IDxDiagProviderImpl_AddRef,
214 IDxDiagProviderImpl_Release,
215 IDxDiagProviderImpl_Initialize,
216 IDxDiagProviderImpl_GetRootContainer
217 };
218
DXDiag_CreateDXDiagProvider(LPCLASSFACTORY iface,LPUNKNOWN punkOuter,REFIID riid,LPVOID * ppobj)219 HRESULT DXDiag_CreateDXDiagProvider(LPCLASSFACTORY iface, LPUNKNOWN punkOuter, REFIID riid, LPVOID *ppobj) {
220 IDxDiagProviderImpl* provider;
221
222 TRACE("(%p, %s, %p)\n", punkOuter, debugstr_guid(riid), ppobj);
223
224 *ppobj = NULL;
225 if (punkOuter) return CLASS_E_NOAGGREGATION;
226
227 provider = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, sizeof(IDxDiagProviderImpl));
228 if (NULL == provider) return E_OUTOFMEMORY;
229 provider->IDxDiagProvider_iface.lpVtbl = &DxDiagProvider_Vtbl;
230 provider->ref = 0; /* will be inited with QueryInterface */
231 return IDxDiagProviderImpl_QueryInterface(&provider->IDxDiagProvider_iface, riid, ppobj);
232 }
233
free_property_information(IDxDiagContainerImpl_Property * prop)234 static void free_property_information(IDxDiagContainerImpl_Property *prop)
235 {
236 VariantClear(&prop->vProp);
237 HeapFree(GetProcessHeap(), 0, prop->propName);
238 HeapFree(GetProcessHeap(), 0, prop);
239 }
240
free_information_tree(IDxDiagContainerImpl_Container * node)241 static void free_information_tree(IDxDiagContainerImpl_Container *node)
242 {
243 IDxDiagContainerImpl_Container *ptr, *cursor2;
244
245 if (!node)
246 return;
247
248 HeapFree(GetProcessHeap(), 0, node->contName);
249
250 LIST_FOR_EACH_ENTRY_SAFE(ptr, cursor2, &node->subContainers, IDxDiagContainerImpl_Container, entry)
251 {
252 IDxDiagContainerImpl_Property *prop, *prop_cursor2;
253
254 LIST_FOR_EACH_ENTRY_SAFE(prop, prop_cursor2, &ptr->properties, IDxDiagContainerImpl_Property, entry)
255 {
256 list_remove(&prop->entry);
257 free_property_information(prop);
258 }
259
260 list_remove(&ptr->entry);
261 free_information_tree(ptr);
262 }
263
264 HeapFree(GetProcessHeap(), 0, node);
265 }
266
allocate_information_node(const WCHAR * name)267 static IDxDiagContainerImpl_Container *allocate_information_node(const WCHAR *name)
268 {
269 IDxDiagContainerImpl_Container *ret;
270
271 ret = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, sizeof(*ret));
272 if (!ret)
273 return NULL;
274
275 if (name)
276 {
277 ret->contName = HeapAlloc(GetProcessHeap(), 0, (lstrlenW(name) + 1) * sizeof(*name));
278 if (!ret->contName)
279 {
280 HeapFree(GetProcessHeap(), 0, ret);
281 return NULL;
282 }
283 lstrcpyW(ret->contName, name);
284 }
285
286 list_init(&ret->subContainers);
287 list_init(&ret->properties);
288
289 return ret;
290 }
291
allocate_property_information(const WCHAR * name)292 static IDxDiagContainerImpl_Property *allocate_property_information(const WCHAR *name)
293 {
294 IDxDiagContainerImpl_Property *ret;
295
296 ret = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, sizeof(*ret));
297 if (!ret)
298 return NULL;
299
300 ret->propName = HeapAlloc(GetProcessHeap(), 0, (lstrlenW(name) + 1) * sizeof(*name));
301 if (!ret->propName)
302 {
303 HeapFree(GetProcessHeap(), 0, ret);
304 return NULL;
305 }
306 lstrcpyW(ret->propName, name);
307
308 return ret;
309 }
310
add_subcontainer(IDxDiagContainerImpl_Container * node,IDxDiagContainerImpl_Container * subCont)311 static inline void add_subcontainer(IDxDiagContainerImpl_Container *node, IDxDiagContainerImpl_Container *subCont)
312 {
313 list_add_tail(&node->subContainers, &subCont->entry);
314 ++node->nSubContainers;
315 }
316
add_bstr_property(IDxDiagContainerImpl_Container * node,const WCHAR * propName,const WCHAR * str)317 static inline HRESULT add_bstr_property(IDxDiagContainerImpl_Container *node, const WCHAR *propName, const WCHAR *str)
318 {
319 IDxDiagContainerImpl_Property *prop;
320 BSTR bstr;
321
322 prop = allocate_property_information(propName);
323 if (!prop)
324 return E_OUTOFMEMORY;
325
326 bstr = SysAllocString(str);
327 if (!bstr)
328 {
329 free_property_information(prop);
330 return E_OUTOFMEMORY;
331 }
332
333 V_VT(&prop->vProp) = VT_BSTR;
334 V_BSTR(&prop->vProp) = bstr;
335
336 list_add_tail(&node->properties, &prop->entry);
337 ++node->nProperties;
338
339 return S_OK;
340 }
341
add_ui4_property(IDxDiagContainerImpl_Container * node,const WCHAR * propName,DWORD data)342 static inline HRESULT add_ui4_property(IDxDiagContainerImpl_Container *node, const WCHAR *propName, DWORD data)
343 {
344 IDxDiagContainerImpl_Property *prop;
345
346 prop = allocate_property_information(propName);
347 if (!prop)
348 return E_OUTOFMEMORY;
349
350 V_VT(&prop->vProp) = VT_UI4;
351 V_UI4(&prop->vProp) = data;
352
353 list_add_tail(&node->properties, &prop->entry);
354 ++node->nProperties;
355
356 return S_OK;
357 }
358
add_i4_property(IDxDiagContainerImpl_Container * node,const WCHAR * propName,LONG data)359 static inline HRESULT add_i4_property(IDxDiagContainerImpl_Container *node, const WCHAR *propName, LONG data)
360 {
361 IDxDiagContainerImpl_Property *prop;
362
363 prop = allocate_property_information(propName);
364 if (!prop)
365 return E_OUTOFMEMORY;
366
367 V_VT(&prop->vProp) = VT_I4;
368 V_I4(&prop->vProp) = data;
369
370 list_add_tail(&node->properties, &prop->entry);
371 ++node->nProperties;
372
373 return S_OK;
374 }
375
add_bool_property(IDxDiagContainerImpl_Container * node,const WCHAR * propName,BOOL data)376 static inline HRESULT add_bool_property(IDxDiagContainerImpl_Container *node, const WCHAR *propName, BOOL data)
377 {
378 IDxDiagContainerImpl_Property *prop;
379
380 prop = allocate_property_information(propName);
381 if (!prop)
382 return E_OUTOFMEMORY;
383
384 V_VT(&prop->vProp) = VT_BOOL;
385 V_BOOL(&prop->vProp) = data ? VARIANT_TRUE : VARIANT_FALSE;
386
387 list_add_tail(&node->properties, &prop->entry);
388 ++node->nProperties;
389
390 return S_OK;
391 }
392
add_ull_as_bstr_property(IDxDiagContainerImpl_Container * node,const WCHAR * propName,ULONGLONG data)393 static inline HRESULT add_ull_as_bstr_property(IDxDiagContainerImpl_Container *node, const WCHAR *propName, ULONGLONG data )
394 {
395 IDxDiagContainerImpl_Property *prop;
396 HRESULT hr;
397
398 prop = allocate_property_information(propName);
399 if (!prop)
400 return E_OUTOFMEMORY;
401
402 V_VT(&prop->vProp) = VT_UI8;
403 V_UI8(&prop->vProp) = data;
404
405 hr = VariantChangeType(&prop->vProp, &prop->vProp, 0, VT_BSTR);
406 if (FAILED(hr))
407 {
408 free_property_information(prop);
409 return hr;
410 }
411
412 list_add_tail(&node->properties, &prop->entry);
413 ++node->nProperties;
414
415 return S_OK;
416 }
417
418 /* Copied from programs/taskkill/taskkill.c. */
enumerate_processes(DWORD * list_count)419 static DWORD *enumerate_processes(DWORD *list_count)
420 {
421 DWORD *pid_list, alloc_bytes = 1024 * sizeof(*pid_list), needed_bytes;
422
423 pid_list = HeapAlloc(GetProcessHeap(), 0, alloc_bytes);
424 if (!pid_list)
425 return NULL;
426
427 for (;;)
428 {
429 DWORD *realloc_list;
430
431 if (!EnumProcesses(pid_list, alloc_bytes, &needed_bytes))
432 {
433 HeapFree(GetProcessHeap(), 0, pid_list);
434 return NULL;
435 }
436
437 /* EnumProcesses can't signal an insufficient buffer condition, so the
438 * only way to possibly determine whether a larger buffer is required
439 * is to see whether the written number of bytes is the same as the
440 * buffer size. If so, the buffer will be reallocated to twice the
441 * size. */
442 if (alloc_bytes != needed_bytes)
443 break;
444
445 alloc_bytes *= 2;
446 realloc_list = HeapReAlloc(GetProcessHeap(), 0, pid_list, alloc_bytes);
447 if (!realloc_list)
448 {
449 HeapFree(GetProcessHeap(), 0, pid_list);
450 return NULL;
451 }
452 pid_list = realloc_list;
453 }
454
455 *list_count = needed_bytes / sizeof(*pid_list);
456 return pid_list;
457 }
458
459 /* Copied from programs/taskkill/taskkill.c. */
get_process_name_from_pid(DWORD pid,WCHAR * buf,DWORD chars)460 static BOOL get_process_name_from_pid(DWORD pid, WCHAR *buf, DWORD chars)
461 {
462 HANDLE process;
463 HMODULE module;
464 DWORD required_size;
465
466 process = OpenProcess(PROCESS_QUERY_INFORMATION | PROCESS_VM_READ, FALSE, pid);
467 if (!process)
468 return FALSE;
469
470 if (!EnumProcessModules(process, &module, sizeof(module), &required_size))
471 {
472 CloseHandle(process);
473 return FALSE;
474 }
475
476 if (!GetModuleBaseNameW(process, module, buf, chars))
477 {
478 CloseHandle(process);
479 return FALSE;
480 }
481
482 CloseHandle(process);
483 return TRUE;
484 }
485
486 /* dxdiagn's detection scheme is simply to look for a process called conf.exe. */
is_netmeeting_running(void)487 static BOOL is_netmeeting_running(void)
488 {
489 static const WCHAR conf_exe[] = {'c','o','n','f','.','e','x','e',0};
490
491 DWORD list_count;
492 DWORD *pid_list = enumerate_processes(&list_count);
493
494 if (pid_list)
495 {
496 DWORD i;
497 WCHAR process_name[MAX_PATH];
498
499 for (i = 0; i < list_count; i++)
500 {
501 if (get_process_name_from_pid(pid_list[i], process_name, ARRAY_SIZE(process_name)) &&
502 !lstrcmpW(conf_exe, process_name))
503 {
504 HeapFree(GetProcessHeap(), 0, pid_list);
505 return TRUE;
506 }
507 }
508 HeapFree(GetProcessHeap(), 0, pid_list);
509 }
510
511 return FALSE;
512 }
513
fill_language_information(IDxDiagContainerImpl_Container * node)514 static HRESULT fill_language_information(IDxDiagContainerImpl_Container *node)
515 {
516 static const WCHAR regional_setting_engW[] = {'R','e','g','i','o','n','a','l',' ','S','e','t','t','i','n','g',0};
517 static const WCHAR languages_fmtW[] = {'%','s',' ','(','%','s',':',' ','%','s',')',0};
518 static const WCHAR szLanguagesLocalized[] = {'s','z','L','a','n','g','u','a','g','e','s','L','o','c','a','l','i','z','e','d',0};
519 static const WCHAR szLanguagesEnglish[] = {'s','z','L','a','n','g','u','a','g','e','s','E','n','g','l','i','s','h',0};
520
521 WCHAR system_lang[80], regional_setting[100], user_lang[80], language_str[300];
522 HRESULT hr;
523
524 /* szLanguagesLocalized */
525 GetLocaleInfoW(LOCALE_SYSTEM_DEFAULT, LOCALE_SNATIVELANGNAME, system_lang, ARRAY_SIZE(system_lang));
526 LoadStringW(dxdiagn_instance, IDS_REGIONAL_SETTING, regional_setting, ARRAY_SIZE(regional_setting));
527 GetLocaleInfoW(LOCALE_USER_DEFAULT, LOCALE_SNATIVELANGNAME, user_lang, ARRAY_SIZE(user_lang));
528
529 swprintf(language_str, languages_fmtW, system_lang, regional_setting,
530 user_lang);
531
532 hr = add_bstr_property(node, szLanguagesLocalized, language_str);
533 if (FAILED(hr))
534 return hr;
535
536 /* szLanguagesEnglish */
537 GetLocaleInfoW(LOCALE_SYSTEM_DEFAULT, LOCALE_SENGLANGUAGE, system_lang, ARRAY_SIZE(system_lang));
538 GetLocaleInfoW(LOCALE_USER_DEFAULT, LOCALE_SENGLANGUAGE, user_lang, ARRAY_SIZE(user_lang));
539
540 swprintf(language_str, languages_fmtW, system_lang,
541 regional_setting_engW, user_lang);
542
543 hr = add_bstr_property(node, szLanguagesEnglish, language_str);
544 if (FAILED(hr))
545 return hr;
546
547 return S_OK;
548 }
549
fill_datetime_information(IDxDiagContainerImpl_Container * node)550 static HRESULT fill_datetime_information(IDxDiagContainerImpl_Container *node)
551 {
552 static const WCHAR date_fmtW[] = {'M','\'','/','\'','d','\'','/','\'','y','y','y','y',0};
553 static const WCHAR time_fmtW[] = {'H','H','\'',':','\'','m','m','\'',':','\'','s','s',0};
554 static const WCHAR datetime_fmtW[] = {'%','s',',',' ','%','s',0};
555 static const WCHAR szTimeLocalized[] = {'s','z','T','i','m','e','L','o','c','a','l','i','z','e','d',0};
556 static const WCHAR szTimeEnglish[] = {'s','z','T','i','m','e','E','n','g','l','i','s','h',0};
557
558 SYSTEMTIME curtime;
559 WCHAR date_str[80], time_str[80], datetime_str[200];
560 HRESULT hr;
561
562 GetLocalTime(&curtime);
563
564 GetTimeFormatW(LOCALE_NEUTRAL, 0, &curtime, time_fmtW, time_str, ARRAY_SIZE(time_str));
565
566 /* szTimeLocalized */
567 GetDateFormatW(LOCALE_USER_DEFAULT, DATE_LONGDATE, &curtime, NULL, date_str, ARRAY_SIZE(date_str));
568
569 swprintf(datetime_str, datetime_fmtW, date_str, time_str);
570
571 hr = add_bstr_property(node, szTimeLocalized, datetime_str);
572 if (FAILED(hr))
573 return hr;
574
575 /* szTimeEnglish */
576 GetDateFormatW(LOCALE_NEUTRAL, 0, &curtime, date_fmtW, date_str, ARRAY_SIZE(date_str));
577
578 swprintf(datetime_str, datetime_fmtW, date_str, time_str);
579
580 hr = add_bstr_property(node, szTimeEnglish, datetime_str);
581 if (FAILED(hr))
582 return hr;
583
584 return S_OK;
585 }
586
fill_os_string_information(IDxDiagContainerImpl_Container * node,OSVERSIONINFOW * info)587 static HRESULT fill_os_string_information(IDxDiagContainerImpl_Container *node, OSVERSIONINFOW *info)
588 {
589 static const WCHAR winxpW[] = {'W','i','n','d','o','w','s',' ','X','P',' ','P','r','o','f','e','s','s','i','o','n','a','l',0};
590 static const WCHAR szOSLocalized[] = {'s','z','O','S','L','o','c','a','l','i','z','e','d',0};
591 static const WCHAR szOSExLocalized[] = {'s','z','O','S','E','x','L','o','c','a','l','i','z','e','d',0};
592 static const WCHAR szOSExLongLocalized[] = {'s','z','O','S','E','x','L','o','n','g','L','o','c','a','l','i','z','e','d',0};
593 static const WCHAR szOSEnglish[] = {'s','z','O','S','E','n','g','l','i','s','h',0};
594 static const WCHAR szOSExEnglish[] = {'s','z','O','S','E','x','E','n','g','l','i','s','h',0};
595 static const WCHAR szOSExLongEnglish[] = {'s','z','O','S','E','x','L','o','n','g','E','n','g','l','i','s','h',0};
596
597 static const WCHAR *prop_list[] = {szOSLocalized, szOSExLocalized, szOSExLongLocalized,
598 szOSEnglish, szOSExEnglish, szOSExLongEnglish};
599
600 size_t i;
601 HRESULT hr;
602
603 /* FIXME: OS detection should be performed, and localized OS strings
604 * should contain translated versions of the "build" phrase. */
605 for (i = 0; i < ARRAY_SIZE(prop_list); i++)
606 {
607 hr = add_bstr_property(node, prop_list[i], winxpW);
608 if (FAILED(hr))
609 return hr;
610 }
611
612 return S_OK;
613 }
614
fill_processor_information(IDxDiagContainerImpl_Container * node)615 static HRESULT fill_processor_information(IDxDiagContainerImpl_Container *node)
616 {
617 static const WCHAR szProcessorEnglish[] = {'s','z','P','r','o','c','e','s','s','o','r','E','n','g','l','i','s','h',0};
618
619 static const WCHAR cimv2W[] = {'\\','\\','.','\\','r','o','o','t','\\','c','i','m','v','2',0};
620 static const WCHAR proc_classW[] = {'W','i','n','3','2','_','P','r','o','c','e','s','s','o','r',0};
621 static const WCHAR nameW[] = {'N','a','m','e',0};
622 static const WCHAR max_clock_speedW[] = {'M','a','x','C','l','o','c','k','S','p','e','e','d',0};
623 static const WCHAR cpu_noW[] = {'N','u','m','b','e','r','O','f','L','o','g','i','c','a','l','P','r','o','c','e','s','s','o','r','s',0};
624
625 static const WCHAR processor_fmtW[] = {'%','s','(','%','d',' ','C','P','U','s',')',',',' ','~','%','d','M','H','z',0};
626
627 IWbemLocator *wbem_locator;
628 IWbemServices *wbem_service;
629 IWbemClassObject *wbem_class;
630 IEnumWbemClassObject *wbem_enum;
631 VARIANT cpu_name, cpu_no, clock_speed;
632 WCHAR print_buf[200];
633 BSTR bstr;
634 ULONG no;
635 HRESULT hr;
636
637 hr = CoCreateInstance(&CLSID_WbemLocator, NULL, CLSCTX_INPROC_SERVER, &IID_IWbemLocator, (void**)&wbem_locator);
638 if(FAILED(hr))
639 return hr;
640
641 bstr = SysAllocString(cimv2W);
642 if(!bstr) {
643 IWbemLocator_Release(wbem_locator);
644 return E_OUTOFMEMORY;
645 }
646 hr = IWbemLocator_ConnectServer(wbem_locator, bstr, NULL, NULL, NULL, 0, NULL, NULL, &wbem_service);
647 IWbemLocator_Release(wbem_locator);
648 SysFreeString(bstr);
649 if(FAILED(hr))
650 return hr;
651
652 bstr = SysAllocString(proc_classW);
653 if(!bstr) {
654 IWbemServices_Release(wbem_service);
655 return E_OUTOFMEMORY;
656 }
657 hr = IWbemServices_CreateInstanceEnum(wbem_service, bstr, WBEM_FLAG_SYSTEM_ONLY, NULL, &wbem_enum);
658 IWbemServices_Release(wbem_service);
659 SysFreeString(bstr);
660 if(FAILED(hr))
661 return hr;
662
663 hr = IEnumWbemClassObject_Next(wbem_enum, 1000, 1, &wbem_class, &no);
664 IEnumWbemClassObject_Release(wbem_enum);
665 if(FAILED(hr))
666 return hr;
667
668 hr = IWbemClassObject_Get(wbem_class, cpu_noW, 0, &cpu_no, NULL, NULL);
669 if(FAILED(hr)) {
670 IWbemClassObject_Release(wbem_class);
671 return hr;
672 }
673 hr = IWbemClassObject_Get(wbem_class, max_clock_speedW, 0, &clock_speed, NULL, NULL);
674 if(FAILED(hr)) {
675 IWbemClassObject_Release(wbem_class);
676 return hr;
677 }
678 hr = IWbemClassObject_Get(wbem_class, nameW, 0, &cpu_name, NULL, NULL);
679 IWbemClassObject_Release(wbem_class);
680 if(FAILED(hr))
681 return hr;
682
683 swprintf(print_buf, processor_fmtW,
684 V_BSTR(&cpu_name), V_I4(&cpu_no), V_I4(&clock_speed));
685 VariantClear(&cpu_name);
686 VariantClear(&cpu_no);
687 VariantClear(&clock_speed);
688
689 return add_bstr_property(node, szProcessorEnglish, print_buf);
690 }
691
build_systeminfo_tree(IDxDiagContainerImpl_Container * node)692 static HRESULT build_systeminfo_tree(IDxDiagContainerImpl_Container *node)
693 {
694 static const WCHAR dwDirectXVersionMajor[] = {'d','w','D','i','r','e','c','t','X','V','e','r','s','i','o','n','M','a','j','o','r',0};
695 static const WCHAR dwDirectXVersionMinor[] = {'d','w','D','i','r','e','c','t','X','V','e','r','s','i','o','n','M','i','n','o','r',0};
696 static const WCHAR szDirectXVersionLetter[] = {'s','z','D','i','r','e','c','t','X','V','e','r','s','i','o','n','L','e','t','t','e','r',0};
697 static const WCHAR szDirectXVersionLetter_v[] = {'c',0};
698 static const WCHAR bDebug[] = {'b','D','e','b','u','g',0};
699 static const WCHAR bNECPC98[] = {'b','N','E','C','P','C','9','8',0};
700 static const WCHAR szDirectXVersionEnglish[] = {'s','z','D','i','r','e','c','t','X','V','e','r','s','i','o','n','E','n','g','l','i','s','h',0};
701 static const WCHAR szDirectXVersionEnglish_v[] = {'4','.','0','9','.','0','0','0','0','.','0','9','0','4',0};
702 static const WCHAR szDirectXVersionLongEnglish[] = {'s','z','D','i','r','e','c','t','X','V','e','r','s','i','o','n','L','o','n','g','E','n','g','l','i','s','h',0};
703 static const WCHAR szDirectXVersionLongEnglish_v[] = {'=',' ','"','D','i','r','e','c','t','X',' ','9','.','0','c',' ','(','4','.','0','9','.','0','0','0','0','.','0','9','0','4',')',0};
704 static const WCHAR ullPhysicalMemory[] = {'u','l','l','P','h','y','s','i','c','a','l','M','e','m','o','r','y',0};
705 static const WCHAR ullUsedPageFile[] = {'u','l','l','U','s','e','d','P','a','g','e','F','i','l','e',0};
706 static const WCHAR ullAvailPageFile[] = {'u','l','l','A','v','a','i','l','P','a','g','e','F','i','l','e',0};
707 static const WCHAR bNetMeetingRunning[] = {'b','N','e','t','M','e','e','t','i','n','g','R','u','n','n','i','n','g',0};
708 static const WCHAR szWindowsDir[] = {'s','z','W','i','n','d','o','w','s','D','i','r',0};
709 static const WCHAR dwOSMajorVersion[] = {'d','w','O','S','M','a','j','o','r','V','e','r','s','i','o','n',0};
710 static const WCHAR dwOSMinorVersion[] = {'d','w','O','S','M','i','n','o','r','V','e','r','s','i','o','n',0};
711 static const WCHAR dwOSBuildNumber[] = {'d','w','O','S','B','u','i','l','d','N','u','m','b','e','r',0};
712 static const WCHAR dwOSPlatformID[] = {'d','w','O','S','P','l','a','t','f','o','r','m','I','D',0};
713 static const WCHAR szCSDVersion[] = {'s','z','C','S','D','V','e','r','s','i','o','n',0};
714 static const WCHAR szPhysicalMemoryEnglish[] = {'s','z','P','h','y','s','i','c','a','l','M','e','m','o','r','y','E','n','g','l','i','s','h',0};
715 static const WCHAR szPageFileLocalized[] = {'s','z','P','a','g','e','F','i','l','e','L','o','c','a','l','i','z','e','d',0};
716 static const WCHAR szPageFileEnglish[] = {'s','z','P','a','g','e','F','i','l','e','E','n','g','l','i','s','h',0};
717 static const WCHAR szMachineNameLocalized[] = {'s','z','M','a','c','h','i','n','e','N','a','m','e','L','o','c','a','l','i','z','e','d',0};
718 static const WCHAR szMachineNameEnglish[] = {'s','z','M','a','c','h','i','n','e','N','a','m','e','E','n','g','l','i','s','h',0};
719 static const WCHAR szSystemManufacturerEnglish[] = {'s','z','S','y','s','t','e','m','M','a','n','u','f','a','c','t','u','r','e','r','E','n','g','l','i','s','h',0};
720 static const WCHAR szSystemModelEnglish[] = {'s','z','S','y','s','t','e','m','M','o','d','e','l','E','n','g','l','i','s','h',0};
721 static const WCHAR szBIOSEnglish[] = {'s','z','B','I','O','S','E','n','g','l','i','s','h',0};
722 static const WCHAR szSetupParamEnglish[] = {'s','z','S','e','t','u','p','P','a','r','a','m','E','n','g','l','i','s','h',0};
723 static const WCHAR szDxDiagVersion[] = {'s','z','D','x','D','i','a','g','V','e','r','s','i','o','n',0};
724
725 static const WCHAR notpresentW[] = {'N','o','t',' ','p','r','e','s','e','n','t',0};
726
727 static const WCHAR pagefile_fmtW[] = {'%','u','M','B',' ','u','s','e','d',',',' ','%','u','M','B',' ','a','v','a','i','l','a','b','l','e',0};
728 static const WCHAR physmem_fmtW[] = {'%','u','M','B',' ','R','A','M',0};
729
730 HRESULT hr;
731 MEMORYSTATUSEX msex;
732 OSVERSIONINFOW info;
733 DWORD count, usedpage_mb, availpage_mb;
734 WCHAR buffer[MAX_PATH], computer_name[MAX_COMPUTERNAME_LENGTH + 1], print_buf[200], localized_pagefile_fmt[200];
735 DWORD_PTR args[2];
736
737 hr = add_ui4_property(node, dwDirectXVersionMajor, 9);
738 if (FAILED(hr))
739 return hr;
740
741 hr = add_ui4_property(node, dwDirectXVersionMinor, 0);
742 if (FAILED(hr))
743 return hr;
744
745 hr = add_bstr_property(node, szDirectXVersionLetter, szDirectXVersionLetter_v);
746 if (FAILED(hr))
747 return hr;
748
749 hr = add_bstr_property(node, szDirectXVersionEnglish, szDirectXVersionEnglish_v);
750 if (FAILED(hr))
751 return hr;
752
753 hr = add_bstr_property(node, szDirectXVersionLongEnglish, szDirectXVersionLongEnglish_v);
754 if (FAILED(hr))
755 return hr;
756
757 hr = add_bool_property(node, bDebug, FALSE);
758 if (FAILED(hr))
759 return hr;
760
761 hr = add_bool_property(node, bNECPC98, FALSE);
762 if (FAILED(hr))
763 return hr;
764
765 msex.dwLength = sizeof(msex);
766 GlobalMemoryStatusEx(&msex);
767
768 hr = add_ull_as_bstr_property(node, ullPhysicalMemory, msex.ullTotalPhys);
769 if (FAILED(hr))
770 return hr;
771
772 hr = add_ull_as_bstr_property(node, ullUsedPageFile, msex.ullTotalPageFile - msex.ullAvailPageFile);
773 if (FAILED(hr))
774 return hr;
775
776 hr = add_ull_as_bstr_property(node, ullAvailPageFile, msex.ullAvailPageFile);
777 if (FAILED(hr))
778 return hr;
779
780 hr = add_bool_property(node, bNetMeetingRunning, is_netmeeting_running());
781 if (FAILED(hr))
782 return hr;
783
784 info.dwOSVersionInfoSize = sizeof(info);
785 GetVersionExW(&info);
786
787 hr = add_ui4_property(node, dwOSMajorVersion, info.dwMajorVersion);
788 if (FAILED(hr))
789 return hr;
790
791 hr = add_ui4_property(node, dwOSMinorVersion, info.dwMinorVersion);
792 if (FAILED(hr))
793 return hr;
794
795 hr = add_ui4_property(node, dwOSBuildNumber, info.dwBuildNumber);
796 if (FAILED(hr))
797 return hr;
798
799 hr = add_ui4_property(node, dwOSPlatformID, info.dwPlatformId);
800 if (FAILED(hr))
801 return hr;
802
803 hr = add_bstr_property(node, szCSDVersion, info.szCSDVersion);
804 if (FAILED(hr))
805 return hr;
806
807 /* FIXME: Roundoff should not be done with truncated division. */
808 swprintf(print_buf, physmem_fmtW,
809 (DWORD)(msex.ullTotalPhys / (1024 * 1024)));
810 hr = add_bstr_property(node, szPhysicalMemoryEnglish, print_buf);
811 if (FAILED(hr))
812 return hr;
813
814 usedpage_mb = (DWORD)((msex.ullTotalPageFile - msex.ullAvailPageFile) / (1024 * 1024));
815 availpage_mb = (DWORD)(msex.ullAvailPageFile / (1024 * 1024));
816 LoadStringW(dxdiagn_instance, IDS_PAGE_FILE_FORMAT, localized_pagefile_fmt,
817 ARRAY_SIZE(localized_pagefile_fmt));
818 args[0] = usedpage_mb;
819 args[1] = availpage_mb;
820 FormatMessageW(FORMAT_MESSAGE_FROM_STRING|FORMAT_MESSAGE_ARGUMENT_ARRAY, localized_pagefile_fmt,
821 0, 0, print_buf, ARRAY_SIZE(print_buf), (__ms_va_list*)args);
822
823 hr = add_bstr_property(node, szPageFileLocalized, print_buf);
824 if (FAILED(hr))
825 return hr;
826
827 swprintf(print_buf, pagefile_fmtW, usedpage_mb, availpage_mb);
828
829 hr = add_bstr_property(node, szPageFileEnglish, print_buf);
830 if (FAILED(hr))
831 return hr;
832
833 GetWindowsDirectoryW(buffer, MAX_PATH);
834
835 hr = add_bstr_property(node, szWindowsDir, buffer);
836 if (FAILED(hr))
837 return hr;
838
839 count = ARRAY_SIZE(computer_name);
840 if (!GetComputerNameW(computer_name, &count))
841 return E_FAIL;
842
843 hr = add_bstr_property(node, szMachineNameLocalized, computer_name);
844 if (FAILED(hr))
845 return hr;
846
847 hr = add_bstr_property(node, szMachineNameEnglish, computer_name);
848 if (FAILED(hr))
849 return hr;
850
851 hr = add_bstr_property(node, szSystemManufacturerEnglish, szEmpty);
852 if (FAILED(hr))
853 return hr;
854
855 hr = add_bstr_property(node, szSystemModelEnglish, szEmpty);
856 if (FAILED(hr))
857 return hr;
858
859 hr = add_bstr_property(node, szBIOSEnglish, szEmpty);
860 if (FAILED(hr))
861 return hr;
862
863 hr = fill_processor_information(node);
864 if (FAILED(hr))
865 return hr;
866
867 hr = add_bstr_property(node, szSetupParamEnglish, notpresentW);
868 if (FAILED(hr))
869 return hr;
870
871 hr = add_bstr_property(node, szDxDiagVersion, szEmpty);
872 if (FAILED(hr))
873 return hr;
874
875 hr = fill_language_information(node);
876 if (FAILED(hr))
877 return hr;
878
879 hr = fill_datetime_information(node);
880 if (FAILED(hr))
881 return hr;
882
883 hr = fill_os_string_information(node, &info);
884 if (FAILED(hr))
885 return hr;
886
887 return S_OK;
888 }
889
890 /* The logic from pixelformat_for_depth() in dlls/wined3d/utils.c is reversed. */
depth_for_pixelformat(D3DFORMAT format)891 static DWORD depth_for_pixelformat(D3DFORMAT format)
892 {
893 switch (format)
894 {
895 case D3DFMT_P8: return 8;
896 case D3DFMT_X1R5G5B5: return 15;
897 case D3DFMT_R5G6B5: return 16;
898 /* This case will fail to distinguish an original bpp of 24. */
899 case D3DFMT_X8R8G8B8: return 32;
900 default:
901 FIXME("Unknown D3DFORMAT %d, returning 32 bpp\n", format);
902 return 32;
903 }
904 }
905
get_texture_memory(GUID * adapter,DWORD * available_mem)906 static BOOL get_texture_memory(GUID *adapter, DWORD *available_mem)
907 {
908 IDirectDraw7 *pDirectDraw;
909 HRESULT hr;
910 DDSCAPS2 dd_caps;
911
912 hr = DirectDrawCreateEx(adapter, (void **)&pDirectDraw, &IID_IDirectDraw7, NULL);
913 if (SUCCEEDED(hr))
914 {
915 dd_caps.dwCaps = DDSCAPS_LOCALVIDMEM | DDSCAPS_VIDEOMEMORY;
916 dd_caps.dwCaps2 = dd_caps.dwCaps3 = dd_caps.u1.dwCaps4 = 0;
917 hr = IDirectDraw7_GetAvailableVidMem(pDirectDraw, &dd_caps, available_mem, NULL);
918 IDirectDraw7_Release(pDirectDraw);
919 if (SUCCEEDED(hr))
920 return TRUE;
921 }
922
923 return FALSE;
924 }
925
vendor_id_to_manufacturer_string(DWORD vendor_id)926 static const WCHAR *vendor_id_to_manufacturer_string(DWORD vendor_id)
927 {
928 unsigned int i;
929
930 static const WCHAR atiW[] = {'A','T','I',' ','T','e','c','h','n','o','l','o','g','i','e','s',' ','I','n','c','.',0};
931 static const WCHAR nvidiaW[] = {'N','V','I','D','I','A',0};
932 static const WCHAR intelW[] = {'I','n','t','e','l',' ','C','o','r','p','o','r','a','t','i','o','n',0};
933 static const WCHAR vmwareW[] = {'V','M','w','a','r','e',0};
934 static const WCHAR redhatW[] = {'R','e','d',' ','H','a','t',0};
935 static const WCHAR unknownW[] = {'U','n','k','n','o','w','n',0};
936 static const struct
937 {
938 DWORD id;
939 const WCHAR *name;
940 }
941 vendors[] =
942 {
943 {0x1002, atiW},
944 {0x10de, nvidiaW},
945 {0x15ad, vmwareW},
946 {0x1af4, redhatW},
947 {0x8086, intelW},
948 };
949
950 for (i = 0; i < ARRAY_SIZE(vendors); ++i)
951 {
952 if (vendors[i].id == vendor_id)
953 return vendors[i].name;
954 }
955
956 FIXME("Unknown PCI vendor ID 0x%04x.\n", vendor_id);
957
958 return unknownW;
959 }
960
fill_display_information_d3d(IDxDiagContainerImpl_Container * node)961 static HRESULT fill_display_information_d3d(IDxDiagContainerImpl_Container *node)
962 {
963 IDxDiagContainerImpl_Container *display_adapter;
964 HRESULT hr;
965 IDirect3D9 *pDirect3D9;
966 WCHAR buffer[256];
967 UINT index, count;
968
969 pDirect3D9 = Direct3DCreate9(D3D_SDK_VERSION);
970 if (!pDirect3D9)
971 return E_FAIL;
972
973 count = IDirect3D9_GetAdapterCount(pDirect3D9);
974 for (index = 0; index < count; index++)
975 {
976 static const WCHAR adapterid_fmtW[] = {'%','u',0};
977 static const WCHAR driverversion_fmtW[] = {'%','u','.','%','u','.','%','0','4','u','.','%','0','4','u',0};
978 static const WCHAR id_fmtW[] = {'0','x','%','0','4','x',0};
979 static const WCHAR subsysid_fmtW[] = {'0','x','%','0','8','x',0};
980 static const WCHAR mem_fmt[] = {'%','.','1','f',' ','M','B',0};
981 static const WCHAR b3DAccelerationExists[] = {'b','3','D','A','c','c','e','l','e','r','a','t','i','o','n','E','x','i','s','t','s',0};
982 static const WCHAR b3DAccelerationEnabled[] = {'b','3','D','A','c','c','e','l','e','r','a','t','i','o','n','E','n','a','b','l','e','d',0};
983 static const WCHAR bDDAccelerationEnabled[] = {'b','D','D','A','c','c','e','l','e','r','a','t','i','o','n','E','n','a','b','l','e','d',0};
984 static const WCHAR bNoHardware[] = {'b','N','o','H','a','r','d','w','a','r','e',0};
985 static const WCHAR mode_fmtW[] = {'%','d',' ','x',' ','%','d',' ','(','%','d',' ','b','i','t',')',' ','(','%','d','H','z',')',0};
986 static const WCHAR gernericPNPMonitorW[] = {'G','e','n','e','r','i','c',' ','P','n','P',' ','M','o','n','i','t','o','r',0};
987 static const WCHAR failedToGetParameterW[] = {'F','a','i','l','e','d',' ','t','o',' ','g','e','t',' ','p','a','r','a','m','e','t','e','r',0};
988 static const WCHAR driverAttributesW[] = {'F','i','n','a','l',' ','R','e','t','a','i','l',0};
989 static const WCHAR englishW[] = {'E','n','g','l','i','s','h',0};
990 static const WCHAR driverDateEnglishW[] = {'1','/','1','/','2','0','1','6',' ','1','0',':','0','0',':','0','0',0};
991 static const WCHAR driverDateLocalW[] = {'1','/','1','/','2','0','1','6',' ','1','0',':','0','0',':','0','0',' ','A','M',0};
992 static const WCHAR naW[] = {'n','/','a',0};
993 static const WCHAR ddi11W[] = {'1','1',0};
994
995 D3DADAPTER_IDENTIFIER9 adapter_info;
996 D3DDISPLAYMODE adapter_mode;
997 D3DCAPS9 device_caps;
998 DWORD available_mem = 0;
999 BOOL hardware_accel;
1000
1001 swprintf(buffer, adapterid_fmtW, index);
1002 display_adapter = allocate_information_node(buffer);
1003 if (!display_adapter)
1004 {
1005 hr = E_OUTOFMEMORY;
1006 goto cleanup;
1007 }
1008
1009 add_subcontainer(node, display_adapter);
1010
1011 hr = IDirect3D9_GetAdapterIdentifier(pDirect3D9, index, 0, &adapter_info);
1012 if (SUCCEEDED(hr))
1013 {
1014 WCHAR driverW[sizeof(adapter_info.Driver)];
1015 WCHAR descriptionW[sizeof(adapter_info.Description)];
1016 WCHAR devicenameW[sizeof(adapter_info.DeviceName)];
1017
1018 MultiByteToWideChar(CP_ACP, 0, adapter_info.Driver, -1, driverW, ARRAY_SIZE(driverW));
1019 MultiByteToWideChar(CP_ACP, 0, adapter_info.Description, -1, descriptionW,
1020 ARRAY_SIZE(descriptionW));
1021 MultiByteToWideChar(CP_ACP, 0, adapter_info.DeviceName, -1, devicenameW,
1022 ARRAY_SIZE(devicenameW));
1023
1024 hr = add_bstr_property(display_adapter, szDriverName, driverW);
1025 if (FAILED(hr))
1026 goto cleanup;
1027
1028 hr = add_bstr_property(display_adapter, szDescription, descriptionW);
1029 if (FAILED(hr))
1030 goto cleanup;
1031
1032 hr = add_bstr_property(display_adapter, szDeviceName, devicenameW);
1033 if (FAILED(hr))
1034 goto cleanup;
1035
1036 swprintf(buffer, driverversion_fmtW,
1037 HIWORD(adapter_info.DriverVersion.u.HighPart), LOWORD(adapter_info.DriverVersion.u.HighPart),
1038 HIWORD(adapter_info.DriverVersion.u.LowPart), LOWORD(adapter_info.DriverVersion.u.LowPart));
1039
1040 hr = add_bstr_property(display_adapter, szDriverVersion, buffer);
1041 if (FAILED(hr))
1042 goto cleanup;
1043
1044 swprintf(buffer, id_fmtW, adapter_info.VendorId);
1045 hr = add_bstr_property(display_adapter, szVendorId, buffer);
1046 if (FAILED(hr))
1047 goto cleanup;
1048
1049 swprintf(buffer, id_fmtW, adapter_info.DeviceId);
1050 hr = add_bstr_property(display_adapter, szDeviceId, buffer);
1051 if (FAILED(hr))
1052 goto cleanup;
1053
1054 swprintf(buffer, subsysid_fmtW, adapter_info.SubSysId);
1055 hr = add_bstr_property(display_adapter, szSubSysId, buffer);
1056 if (FAILED(hr))
1057 goto cleanup;
1058
1059 swprintf(buffer, id_fmtW, adapter_info.Revision);
1060 hr = add_bstr_property(display_adapter, szRevisionId, buffer);
1061 if (FAILED(hr))
1062 goto cleanup;
1063
1064 StringFromGUID2(&adapter_info.DeviceIdentifier, buffer, 39);
1065 hr = add_bstr_property(display_adapter, szDeviceIdentifier, buffer);
1066 if (FAILED(hr))
1067 goto cleanup;
1068
1069 hr = add_bstr_property(display_adapter, szManufacturer, vendor_id_to_manufacturer_string(adapter_info.VendorId));
1070 if (FAILED(hr))
1071 goto cleanup;
1072 }
1073
1074 hr = IDirect3D9_GetAdapterDisplayMode(pDirect3D9, index, &adapter_mode);
1075 if (SUCCEEDED(hr))
1076 {
1077 hr = add_ui4_property(display_adapter, dwWidth, adapter_mode.Width);
1078 if (FAILED(hr))
1079 goto cleanup;
1080
1081 hr = add_ui4_property(display_adapter, dwHeight, adapter_mode.Height);
1082 if (FAILED(hr))
1083 goto cleanup;
1084
1085 hr = add_ui4_property(display_adapter, dwRefreshRate, adapter_mode.RefreshRate);
1086 if (FAILED(hr))
1087 goto cleanup;
1088
1089 hr = add_ui4_property(display_adapter, dwBpp, depth_for_pixelformat(adapter_mode.Format));
1090 if (FAILED(hr))
1091 goto cleanup;
1092
1093 swprintf(buffer, mode_fmtW, adapter_mode.Width, adapter_mode.Height,
1094 depth_for_pixelformat(adapter_mode.Format), adapter_mode.RefreshRate);
1095
1096 hr = add_bstr_property(display_adapter, szDisplayModeLocalized, buffer);
1097 if (FAILED(hr))
1098 goto cleanup;
1099
1100 hr = add_bstr_property(display_adapter, szDisplayModeEnglish, buffer);
1101 if (FAILED(hr))
1102 goto cleanup;
1103 }
1104
1105 hr = add_bstr_property(display_adapter, szKeyDeviceKey, szEmpty);
1106 if (FAILED(hr))
1107 goto cleanup;
1108
1109 hr = add_bstr_property(display_adapter, szKeyDeviceID, szEmpty);
1110 if (FAILED(hr))
1111 goto cleanup;
1112
1113 hr = add_bstr_property(display_adapter, szChipType, szEmpty);
1114 if (FAILED(hr))
1115 goto cleanup;
1116
1117 hr = add_bstr_property(display_adapter, szDACType, szEmpty);
1118 if (FAILED(hr))
1119 goto cleanup;
1120
1121 hr = add_bstr_property(display_adapter, szRevision, szEmpty);
1122 if (FAILED(hr))
1123 goto cleanup;
1124
1125 if (!get_texture_memory(&adapter_info.DeviceIdentifier, &available_mem))
1126 WARN("get_texture_memory helper failed\n");
1127
1128 swprintf(buffer, mem_fmt, available_mem / 1000000.0f);
1129
1130 hr = add_bstr_property(display_adapter, szDisplayMemoryLocalized, buffer);
1131 if (FAILED(hr))
1132 goto cleanup;
1133
1134 hr = add_bstr_property(display_adapter, szDisplayMemoryEnglish, buffer);
1135 if (FAILED(hr))
1136 goto cleanup;
1137
1138 hr = IDirect3D9_GetDeviceCaps(pDirect3D9, index, D3DDEVTYPE_HAL, &device_caps);
1139 hardware_accel = SUCCEEDED(hr);
1140
1141 hr = add_bool_property(display_adapter, b3DAccelerationEnabled, hardware_accel);
1142 if (FAILED(hr))
1143 goto cleanup;
1144
1145 hr = add_bool_property(display_adapter, b3DAccelerationExists, hardware_accel);
1146 if (FAILED(hr))
1147 goto cleanup;
1148
1149 hr = add_bool_property(display_adapter, bDDAccelerationEnabled, hardware_accel);
1150 if (FAILED(hr))
1151 goto cleanup;
1152
1153 hr = add_bool_property(display_adapter, bNoHardware, FALSE);
1154 if (FAILED(hr))
1155 goto cleanup;
1156
1157 hr = add_bool_property(display_adapter, bCanRenderWindow, TRUE);
1158 if (FAILED(hr))
1159 goto cleanup;
1160
1161 hr = add_bstr_property(display_adapter, szMonitorName, gernericPNPMonitorW);
1162 if (FAILED(hr))
1163 goto cleanup;
1164
1165 hr = add_bstr_property(display_adapter, szMonitorMaxRes, failedToGetParameterW);
1166 if (FAILED(hr))
1167 goto cleanup;
1168
1169 hr = add_bstr_property(display_adapter, szDriverAttributes, driverAttributesW);
1170 if (FAILED(hr))
1171 goto cleanup;
1172
1173 hr = add_bstr_property(display_adapter, szDriverLanguageEnglish, englishW);
1174 if (FAILED(hr))
1175 goto cleanup;
1176
1177 hr = add_bstr_property(display_adapter, szDriverLanguageLocalized, englishW);
1178 if (FAILED(hr))
1179 goto cleanup;
1180
1181 hr = add_bstr_property(display_adapter, szDriverDateEnglish, driverDateEnglishW);
1182 if (FAILED(hr))
1183 goto cleanup;
1184
1185 hr = add_bstr_property(display_adapter, szDriverDateLocalized, driverDateLocalW);
1186 if (FAILED(hr))
1187 goto cleanup;
1188
1189 hr = add_i4_property(display_adapter, lDriverSize, 10 * 1024 * 1024);
1190 if (FAILED(hr))
1191 goto cleanup;
1192
1193 hr = add_bstr_property(display_adapter, szMiniVdd, naW);
1194 if (FAILED(hr))
1195 goto cleanup;
1196
1197 hr = add_bstr_property(display_adapter, szMiniVddDateLocalized, naW);
1198 if (FAILED(hr))
1199 goto cleanup;
1200
1201 hr = add_bstr_property(display_adapter, szMiniVddDateEnglish, naW);
1202 if (FAILED(hr))
1203 goto cleanup;
1204
1205 hr = add_i4_property(display_adapter, lMiniVddSize, 0);
1206 if (FAILED(hr))
1207 goto cleanup;
1208
1209 hr = add_bstr_property(display_adapter, szVdd, naW);
1210 if (FAILED(hr))
1211 goto cleanup;
1212
1213 hr = add_bool_property(display_adapter, bDriverBeta, FALSE);
1214 if (FAILED(hr))
1215 goto cleanup;
1216
1217 hr = add_bool_property(display_adapter, bDriverDebug, FALSE);
1218 if (FAILED(hr))
1219 goto cleanup;
1220
1221 hr = add_bool_property(display_adapter, bDriverSigned, TRUE);
1222 if (FAILED(hr))
1223 goto cleanup;
1224
1225 hr = add_bool_property(display_adapter, bDriverSignedValid, TRUE);
1226 if (FAILED(hr))
1227 goto cleanup;
1228
1229 hr = add_bstr_property(display_adapter, szDriverSignDate, naW);
1230 if (FAILED(hr))
1231 goto cleanup;
1232
1233 hr = add_ui4_property(display_adapter, dwDDIVersion, 11);
1234 if (FAILED(hr))
1235 goto cleanup;
1236
1237 hr = add_bstr_property(display_adapter, szDDIVersionEnglish, ddi11W);
1238 if (FAILED(hr))
1239 goto cleanup;
1240
1241 hr = add_bstr_property(display_adapter, szDDIVersionLocalized, ddi11W);
1242 if (FAILED(hr))
1243 goto cleanup;
1244
1245 hr = add_ui4_property(display_adapter, iAdapter, index);
1246 if (FAILED(hr))
1247 goto cleanup;
1248
1249 hr = add_ui4_property(display_adapter, dwWHQLLevel, 0);
1250 if (FAILED(hr))
1251 goto cleanup;
1252 }
1253
1254 hr = S_OK;
1255 cleanup:
1256 IDirect3D9_Release(pDirect3D9);
1257 return hr;
1258 }
1259
fill_display_information_fallback(IDxDiagContainerImpl_Container * node)1260 static HRESULT fill_display_information_fallback(IDxDiagContainerImpl_Container *node)
1261 {
1262 static const WCHAR szAdapterID[] = {'0',0};
1263 static const WCHAR *empty_properties[] = {szDeviceIdentifier, szVendorId, szDeviceId,
1264 szKeyDeviceKey, szKeyDeviceID, szDriverName,
1265 szDriverVersion, szSubSysId, szRevisionId,
1266 szManufacturer, szChipType, szDACType, szRevision};
1267
1268 IDxDiagContainerImpl_Container *display_adapter;
1269 HRESULT hr;
1270 IDirectDraw7 *pDirectDraw;
1271 DDSCAPS2 dd_caps;
1272 DISPLAY_DEVICEW disp_dev;
1273 DDSURFACEDESC2 surface_descr;
1274 DWORD tmp;
1275 WCHAR buffer[256];
1276
1277 display_adapter = allocate_information_node(szAdapterID);
1278 if (!display_adapter)
1279 return E_OUTOFMEMORY;
1280
1281 add_subcontainer(node, display_adapter);
1282
1283 disp_dev.cb = sizeof(disp_dev);
1284 if (EnumDisplayDevicesW( NULL, 0, &disp_dev, 0 ))
1285 {
1286 hr = add_bstr_property(display_adapter, szDeviceName, disp_dev.DeviceName);
1287 if (FAILED(hr))
1288 return hr;
1289
1290 hr = add_bstr_property(display_adapter, szDescription, disp_dev.DeviceString);
1291 if (FAILED(hr))
1292 return hr;
1293 }
1294
1295 /* Silently ignore a failure from DirectDrawCreateEx. */
1296 hr = DirectDrawCreateEx(NULL, (void **)&pDirectDraw, &IID_IDirectDraw7, NULL);
1297 if (FAILED(hr))
1298 return S_OK;
1299
1300 dd_caps.dwCaps = DDSCAPS_LOCALVIDMEM | DDSCAPS_VIDEOMEMORY;
1301 dd_caps.dwCaps2 = dd_caps.dwCaps3 = dd_caps.u1.dwCaps4 = 0;
1302 hr = IDirectDraw7_GetAvailableVidMem(pDirectDraw, &dd_caps, &tmp, NULL);
1303 if (SUCCEEDED(hr))
1304 {
1305 static const WCHAR mem_fmt[] = {'%','.','1','f',' ','M','B',0};
1306
1307 swprintf(buffer, mem_fmt, tmp / 1000000.0f);
1308
1309 hr = add_bstr_property(display_adapter, szDisplayMemoryLocalized, buffer);
1310 if (FAILED(hr))
1311 goto cleanup;
1312
1313 hr = add_bstr_property(display_adapter, szDisplayMemoryEnglish, buffer);
1314 if (FAILED(hr))
1315 goto cleanup;
1316 }
1317
1318 surface_descr.dwSize = sizeof(surface_descr);
1319 hr = IDirectDraw7_GetDisplayMode(pDirectDraw, &surface_descr);
1320 if (SUCCEEDED(hr))
1321 {
1322 if (surface_descr.dwFlags & DDSD_WIDTH)
1323 {
1324 hr = add_ui4_property(display_adapter, dwWidth, surface_descr.dwWidth);
1325 if (FAILED(hr))
1326 goto cleanup;
1327 }
1328
1329 if (surface_descr.dwFlags & DDSD_HEIGHT)
1330 {
1331 hr = add_ui4_property(display_adapter, dwHeight, surface_descr.dwHeight);
1332 if (FAILED(hr))
1333 goto cleanup;
1334 }
1335
1336 if (surface_descr.dwFlags & DDSD_PIXELFORMAT)
1337 {
1338 hr = add_ui4_property(display_adapter, dwBpp, surface_descr.u4.ddpfPixelFormat.u1.dwRGBBitCount);
1339 if (FAILED(hr))
1340 goto cleanup;
1341 }
1342 }
1343
1344 hr = add_ui4_property(display_adapter, dwRefreshRate, 60);
1345 if (FAILED(hr))
1346 goto cleanup;
1347
1348 for (tmp = 0; tmp < ARRAY_SIZE(empty_properties); tmp++)
1349 {
1350 hr = add_bstr_property(display_adapter, empty_properties[tmp], szEmpty);
1351 if (FAILED(hr))
1352 goto cleanup;
1353 }
1354
1355 hr = S_OK;
1356 cleanup:
1357 IDirectDraw7_Release(pDirectDraw);
1358 return hr;
1359 }
1360
build_displaydevices_tree(IDxDiagContainerImpl_Container * node)1361 static HRESULT build_displaydevices_tree(IDxDiagContainerImpl_Container *node)
1362 {
1363 HRESULT hr;
1364
1365 /* Try to use Direct3D to obtain the required information first. */
1366 hr = fill_display_information_d3d(node);
1367 if (hr != E_FAIL)
1368 return hr;
1369
1370 return fill_display_information_fallback(node);
1371 }
1372
1373 struct enum_context
1374 {
1375 IDxDiagContainerImpl_Container *cont;
1376 HRESULT hr;
1377 int index;
1378 };
1379
1380 static const WCHAR szGUIDFmt[] =
1381 {
1382 '%','0','8','x','-','%','0','4','x','-','%','0','4','x','-','%','0',
1383 '2','x','%','0','2','x','-','%','0','2','x','%','0','2','x','%','0','2',
1384 'x','%','0','2','x','%','0','2','x','%','0','2','x',0
1385 };
1386
guid_to_string(LPWSTR lpwstr,REFGUID lpcguid)1387 static LPWSTR guid_to_string(LPWSTR lpwstr, REFGUID lpcguid)
1388 {
1389 wsprintfW(lpwstr, szGUIDFmt, lpcguid->Data1, lpcguid->Data2,
1390 lpcguid->Data3, lpcguid->Data4[0], lpcguid->Data4[1],
1391 lpcguid->Data4[2], lpcguid->Data4[3], lpcguid->Data4[4],
1392 lpcguid->Data4[5], lpcguid->Data4[6], lpcguid->Data4[7]);
1393
1394 return lpwstr;
1395 }
1396
dsound_enum(LPGUID guid,LPCWSTR desc,LPCWSTR module,LPVOID context)1397 BOOL CALLBACK dsound_enum(LPGUID guid, LPCWSTR desc, LPCWSTR module, LPVOID context)
1398 {
1399 static const WCHAR deviceid_fmtW[] = {'%','u',0};
1400 static const WCHAR szGuidDeviceID[] = {'s','z','G','u','i','d','D','e','v','i','c','e','I','D',0};
1401 static const WCHAR szDriverPath[] = {'s','z','D','r','i','v','e','r','P','a','t','h',0};
1402
1403 struct enum_context *enum_ctx = context;
1404 IDxDiagContainerImpl_Container *device;
1405 WCHAR buffer[256];
1406 const WCHAR *p, *name;
1407
1408 /* the default device is enumerated twice, one time without GUID */
1409 if (!guid) return TRUE;
1410
1411 _snwprintf(buffer, sizeof(buffer)/sizeof(WCHAR), deviceid_fmtW, enum_ctx->index);
1412 device = allocate_information_node(buffer);
1413 if (!device)
1414 {
1415 enum_ctx->hr = E_OUTOFMEMORY;
1416 return FALSE;
1417 }
1418
1419 add_subcontainer(enum_ctx->cont, device);
1420
1421 guid_to_string(buffer, guid);
1422 enum_ctx->hr = add_bstr_property(device, szGuidDeviceID, buffer);
1423 if (FAILED(enum_ctx->hr))
1424 return FALSE;
1425
1426 enum_ctx->hr = add_bstr_property(device, szDescription, desc);
1427 if (FAILED(enum_ctx->hr))
1428 return FALSE;
1429
1430 enum_ctx->hr = add_bstr_property(device, szDriverPath, module);
1431 if (FAILED(enum_ctx->hr))
1432 return FALSE;
1433
1434 name = module;
1435 if ((p = wcsrchr(name, '\\'))) name = p + 1;
1436 if ((p = wcsrchr(name, '/'))) name = p + 1;
1437
1438 enum_ctx->hr = add_bstr_property(device, szDriverName, name);
1439 if (FAILED(enum_ctx->hr))
1440 return FALSE;
1441
1442 enum_ctx->index++;
1443 return TRUE;
1444 }
1445
build_directsound_tree(IDxDiagContainerImpl_Container * node)1446 static HRESULT build_directsound_tree(IDxDiagContainerImpl_Container *node)
1447 {
1448 static const WCHAR DxDiag_SoundDevices[] = {'D','x','D','i','a','g','_','S','o','u','n','d','D','e','v','i','c','e','s',0};
1449 static const WCHAR DxDiag_SoundCaptureDevices[] = {'D','x','D','i','a','g','_','S','o','u','n','d','C','a','p','t','u','r','e','D','e','v','i','c','e','s',0};
1450
1451 struct enum_context enum_ctx;
1452 IDxDiagContainerImpl_Container *cont;
1453
1454 cont = allocate_information_node(DxDiag_SoundDevices);
1455 if (!cont)
1456 return E_OUTOFMEMORY;
1457
1458 add_subcontainer(node, cont);
1459
1460 enum_ctx.cont = cont;
1461 enum_ctx.hr = S_OK;
1462 enum_ctx.index = 0;
1463
1464 DirectSoundEnumerateW(dsound_enum, &enum_ctx);
1465 if (FAILED(enum_ctx.hr))
1466 return enum_ctx.hr;
1467
1468 cont = allocate_information_node(DxDiag_SoundCaptureDevices);
1469 if (!cont)
1470 return E_OUTOFMEMORY;
1471
1472 add_subcontainer(node, cont);
1473
1474 enum_ctx.cont = cont;
1475 enum_ctx.hr = S_OK;
1476 enum_ctx.index = 0;
1477
1478 DirectSoundCaptureEnumerateW(dsound_enum, &enum_ctx);
1479 if (FAILED(enum_ctx.hr))
1480 return enum_ctx.hr;
1481
1482 return S_OK;
1483 }
1484
build_directmusic_tree(IDxDiagContainerImpl_Container * node)1485 static HRESULT build_directmusic_tree(IDxDiagContainerImpl_Container *node)
1486 {
1487 return S_OK;
1488 }
1489
build_directinput_tree(IDxDiagContainerImpl_Container * node)1490 static HRESULT build_directinput_tree(IDxDiagContainerImpl_Container *node)
1491 {
1492 return S_OK;
1493 }
1494
build_directplay_tree(IDxDiagContainerImpl_Container * node)1495 static HRESULT build_directplay_tree(IDxDiagContainerImpl_Container *node)
1496 {
1497 return S_OK;
1498 }
1499
build_systemdevices_tree(IDxDiagContainerImpl_Container * node)1500 static HRESULT build_systemdevices_tree(IDxDiagContainerImpl_Container *node)
1501 {
1502 return S_OK;
1503 }
1504
fill_file_description(IDxDiagContainerImpl_Container * node,const WCHAR * szFilePath,const WCHAR * szFileName)1505 static HRESULT fill_file_description(IDxDiagContainerImpl_Container *node, const WCHAR *szFilePath, const WCHAR *szFileName)
1506 {
1507 static const WCHAR szSlashSep[] = {'\\',0};
1508 static const WCHAR szPath[] = {'s','z','P','a','t','h',0};
1509 static const WCHAR szName[] = {'s','z','N','a','m','e',0};
1510 static const WCHAR szVersion[] = {'s','z','V','e','r','s','i','o','n',0};
1511 static const WCHAR szAttributes[] = {'s','z','A','t','t','r','i','b','u','t','e','s',0};
1512 static const WCHAR szLanguageEnglish[] = {'s','z','L','a','n','g','u','a','g','e','E','n','g','l','i','s','h',0};
1513 static const WCHAR dwFileTimeHigh[] = {'d','w','F','i','l','e','T','i','m','e','H','i','g','h',0};
1514 static const WCHAR dwFileTimeLow[] = {'d','w','F','i','l','e','T','i','m','e','L','o','w',0};
1515 static const WCHAR bBeta[] = {'b','B','e','t','a',0};
1516 static const WCHAR bDebug[] = {'b','D','e','b','u','g',0};
1517 static const WCHAR bExists[] = {'b','E','x','i','s','t','s',0};
1518
1519 /* Values */
1520 static const WCHAR szFinal_Retail_v[] = {'F','i','n','a','l',' ','R','e','t','a','i','l',0};
1521 static const WCHAR szEnglish_v[] = {'E','n','g','l','i','s','h',0};
1522 static const WCHAR szVersionFormat[] = {'%','u','.','%','0','2','u','.','%','0','4','u','.','%','0','4','u',0};
1523
1524 HRESULT hr;
1525 WCHAR *szFile;
1526 WCHAR szVersion_v[1024];
1527 DWORD retval, hdl;
1528 void *pVersionInfo = NULL;
1529 BOOL boolret = FALSE;
1530 UINT uiLength;
1531 VS_FIXEDFILEINFO *pFileInfo;
1532
1533 TRACE("Filling container %p for %s in %s\n", node,
1534 debugstr_w(szFileName), debugstr_w(szFilePath));
1535
1536 szFile = HeapAlloc(GetProcessHeap(), 0, sizeof(WCHAR) * (lstrlenW(szFilePath) +
1537 lstrlenW(szFileName) + 2 /* slash + terminator */));
1538 if (!szFile)
1539 return E_OUTOFMEMORY;
1540
1541 lstrcpyW(szFile, szFilePath);
1542 lstrcatW(szFile, szSlashSep);
1543 lstrcatW(szFile, szFileName);
1544
1545 retval = GetFileVersionInfoSizeW(szFile, &hdl);
1546 if (retval)
1547 {
1548 pVersionInfo = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, retval);
1549 if (!pVersionInfo)
1550 {
1551 hr = E_OUTOFMEMORY;
1552 goto cleanup;
1553 }
1554
1555 if (GetFileVersionInfoW(szFile, 0, retval, pVersionInfo) &&
1556 VerQueryValueW(pVersionInfo, szSlashSep, (void **)&pFileInfo, &uiLength))
1557 boolret = TRUE;
1558 }
1559
1560 hr = add_bstr_property(node, szPath, szFile);
1561 if (FAILED(hr))
1562 goto cleanup;
1563
1564 hr = add_bstr_property(node, szName, szFileName);
1565 if (FAILED(hr))
1566 goto cleanup;
1567
1568 hr = add_bool_property(node, bExists, boolret);
1569 if (FAILED(hr))
1570 goto cleanup;
1571
1572 if (boolret)
1573 {
1574 swprintf(szVersion_v, szVersionFormat,
1575 HIWORD(pFileInfo->dwFileVersionMS), LOWORD(pFileInfo->dwFileVersionMS),
1576 HIWORD(pFileInfo->dwFileVersionLS), LOWORD(pFileInfo->dwFileVersionLS));
1577
1578 TRACE("Found version as (%s)\n", debugstr_w(szVersion_v));
1579
1580 hr = add_bstr_property(node, szVersion, szVersion_v);
1581 if (FAILED(hr))
1582 goto cleanup;
1583
1584 hr = add_bstr_property(node, szAttributes, szFinal_Retail_v);
1585 if (FAILED(hr))
1586 goto cleanup;
1587
1588 hr = add_bstr_property(node, szLanguageEnglish, szEnglish_v);
1589 if (FAILED(hr))
1590 goto cleanup;
1591
1592 hr = add_ui4_property(node, dwFileTimeHigh, pFileInfo->dwFileDateMS);
1593 if (FAILED(hr))
1594 goto cleanup;
1595
1596 hr = add_ui4_property(node, dwFileTimeLow, pFileInfo->dwFileDateLS);
1597 if (FAILED(hr))
1598 goto cleanup;
1599
1600 hr = add_bool_property(node, bBeta, ((pFileInfo->dwFileFlags & pFileInfo->dwFileFlagsMask) & VS_FF_PRERELEASE) != 0);
1601 if (FAILED(hr))
1602 goto cleanup;
1603
1604 hr = add_bool_property(node, bDebug, ((pFileInfo->dwFileFlags & pFileInfo->dwFileFlagsMask) & VS_FF_DEBUG) != 0);
1605 if (FAILED(hr))
1606 goto cleanup;
1607 }
1608
1609 hr = S_OK;
1610 cleanup:
1611 HeapFree(GetProcessHeap(), 0, pVersionInfo);
1612 HeapFree(GetProcessHeap(), 0, szFile);
1613
1614 return hr;
1615 }
build_directxfiles_tree(IDxDiagContainerImpl_Container * node)1616 static HRESULT build_directxfiles_tree(IDxDiagContainerImpl_Container *node)
1617 {
1618 static const WCHAR dlls[][15] =
1619 {
1620 {'d','3','d','8','.','d','l','l',0},
1621 {'d','3','d','9','.','d','l','l',0},
1622 {'d','d','r','a','w','.','d','l','l',0},
1623 {'d','e','v','e','n','u','m','.','d','l','l',0},
1624 {'d','i','n','p','u','t','8','.','d','l','l',0},
1625 {'d','i','n','p','u','t','.','d','l','l',0},
1626 {'d','m','b','a','n','d','.','d','l','l',0},
1627 {'d','m','c','o','m','p','o','s','.','d','l','l',0},
1628 {'d','m','i','m','e','.','d','l','l',0},
1629 {'d','m','l','o','a','d','e','r','.','d','l','l',0},
1630 {'d','m','s','c','r','i','p','t','.','d','l','l',0},
1631 {'d','m','s','t','y','l','e','.','d','l','l',0},
1632 {'d','m','s','y','n','t','h','.','d','l','l',0},
1633 {'d','m','u','s','i','c','.','d','l','l',0},
1634 {'d','p','l','a','y','x','.','d','l','l',0},
1635 {'d','p','n','e','t','.','d','l','l',0},
1636 {'d','s','o','u','n','d','.','d','l','l',0},
1637 {'d','s','w','a','v','e','.','d','l','l',0},
1638 {'d','x','d','i','a','g','n','.','d','l','l',0},
1639 {'q','u','a','r','t','z','.','d','l','l',0}
1640 };
1641
1642 HRESULT hr;
1643 WCHAR szFilePath[MAX_PATH];
1644 INT i;
1645
1646 GetSystemDirectoryW(szFilePath, MAX_PATH);
1647
1648 for (i = 0; i < ARRAY_SIZE(dlls); i++)
1649 {
1650 static const WCHAR szFormat[] = {'%','d',0};
1651
1652 WCHAR szFileID[5];
1653 IDxDiagContainerImpl_Container *file_container;
1654
1655 swprintf(szFileID, szFormat, i);
1656
1657 file_container = allocate_information_node(szFileID);
1658 if (!file_container)
1659 return E_OUTOFMEMORY;
1660
1661 hr = fill_file_description(file_container, szFilePath, dlls[i]);
1662 if (FAILED(hr))
1663 {
1664 free_information_tree(file_container);
1665 continue;
1666 }
1667
1668 add_subcontainer(node, file_container);
1669 }
1670
1671 return S_OK;
1672 }
1673
read_property_names(IPropertyBag * pPropBag,VARIANT * friendly_name,VARIANT * clsid_name)1674 static HRESULT read_property_names(IPropertyBag *pPropBag, VARIANT *friendly_name, VARIANT *clsid_name)
1675 {
1676 static const WCHAR wszFriendlyName[] = {'F','r','i','e','n','d','l','y','N','a','m','e',0};
1677 static const WCHAR wszClsidName[] = {'C','L','S','I','D',0};
1678
1679 HRESULT hr;
1680
1681 VariantInit(friendly_name);
1682 VariantInit(clsid_name);
1683
1684 hr = IPropertyBag_Read(pPropBag, wszFriendlyName, friendly_name, 0);
1685 if (FAILED(hr))
1686 return hr;
1687
1688 hr = IPropertyBag_Read(pPropBag, wszClsidName, clsid_name, 0);
1689 if (FAILED(hr))
1690 {
1691 VariantClear(friendly_name);
1692 return hr;
1693 }
1694
1695 return S_OK;
1696 }
1697
fill_filter_data_information(IDxDiagContainerImpl_Container * subcont,BYTE * pData,ULONG cb)1698 static HRESULT fill_filter_data_information(IDxDiagContainerImpl_Container *subcont, BYTE *pData, ULONG cb)
1699 {
1700 static const WCHAR szVersionW[] = {'s','z','V','e','r','s','i','o','n',0};
1701 static const WCHAR dwInputs[] = {'d','w','I','n','p','u','t','s',0};
1702 static const WCHAR dwOutputs[] = {'d','w','O','u','t','p','u','t','s',0};
1703 static const WCHAR dwMeritW[] = {'d','w','M','e','r','i','t',0};
1704 static const WCHAR szVersionFormat[] = {'v','%','d',0};
1705
1706 HRESULT hr;
1707 IFilterMapper2 *pFileMapper = NULL;
1708 IAMFilterData *pFilterData = NULL;
1709 BYTE *ppRF = NULL;
1710 REGFILTER2 *pRF = NULL;
1711 WCHAR bufferW[10];
1712 ULONG j;
1713 DWORD dwNOutputs = 0;
1714 DWORD dwNInputs = 0;
1715
1716 hr = CoCreateInstance(&CLSID_FilterMapper2, NULL, CLSCTX_INPROC, &IID_IFilterMapper2,
1717 (void **)&pFileMapper);
1718 if (FAILED(hr))
1719 return hr;
1720
1721 hr = IFilterMapper2_QueryInterface(pFileMapper, &IID_IAMFilterData, (void **)&pFilterData);
1722 if (FAILED(hr))
1723 goto cleanup;
1724
1725 hr = IAMFilterData_ParseFilterData(pFilterData, pData, cb, &ppRF);
1726 if (FAILED(hr))
1727 goto cleanup;
1728 pRF = ((REGFILTER2**)ppRF)[0];
1729
1730 swprintf(bufferW, szVersionFormat, pRF->dwVersion);
1731 hr = add_bstr_property(subcont, szVersionW, bufferW);
1732 if (FAILED(hr))
1733 goto cleanup;
1734
1735 if (pRF->dwVersion == 1)
1736 {
1737 for (j = 0; j < pRF->u.s1.cPins; j++)
1738 if (pRF->u.s1.rgPins[j].bOutput)
1739 dwNOutputs++;
1740 else
1741 dwNInputs++;
1742 }
1743 else if (pRF->dwVersion == 2)
1744 {
1745 for (j = 0; j < pRF->u.s2.cPins2; j++)
1746 if (pRF->u.s2.rgPins2[j].dwFlags & REG_PINFLAG_B_OUTPUT)
1747 dwNOutputs++;
1748 else
1749 dwNInputs++;
1750 }
1751
1752 hr = add_ui4_property(subcont, dwInputs, dwNInputs);
1753 if (FAILED(hr))
1754 goto cleanup;
1755
1756 hr = add_ui4_property(subcont, dwOutputs, dwNOutputs);
1757 if (FAILED(hr))
1758 goto cleanup;
1759
1760 hr = add_ui4_property(subcont, dwMeritW, pRF->dwMerit);
1761 if (FAILED(hr))
1762 goto cleanup;
1763
1764 hr = S_OK;
1765 cleanup:
1766 CoTaskMemFree(pRF);
1767 if (pFilterData) IAMFilterData_Release(pFilterData);
1768 if (pFileMapper) IFilterMapper2_Release(pFileMapper);
1769
1770 return hr;
1771 }
1772
fill_filter_container(IDxDiagContainerImpl_Container * subcont,IMoniker * pMoniker)1773 static HRESULT fill_filter_container(IDxDiagContainerImpl_Container *subcont, IMoniker *pMoniker)
1774 {
1775 static const WCHAR szName[] = {'s','z','N','a','m','e',0};
1776 static const WCHAR ClsidFilterW[] = {'C','l','s','i','d','F','i','l','t','e','r',0};
1777 static const WCHAR wszFilterDataName[] = {'F','i','l','t','e','r','D','a','t','a',0};
1778
1779 HRESULT hr;
1780 IPropertyBag *pPropFilterBag = NULL;
1781 BYTE *pData;
1782 VARIANT friendly_name;
1783 VARIANT clsid_name;
1784 VARIANT v;
1785
1786 VariantInit(&friendly_name);
1787 VariantInit(&clsid_name);
1788 VariantInit(&v);
1789
1790 hr = IMoniker_BindToStorage(pMoniker, NULL, NULL, &IID_IPropertyBag, (void **)&pPropFilterBag);
1791 if (FAILED(hr))
1792 return hr;
1793
1794 hr = read_property_names(pPropFilterBag, &friendly_name, &clsid_name);
1795 if (FAILED(hr))
1796 goto cleanup;
1797
1798 TRACE("Name = %s\n", debugstr_w(V_BSTR(&friendly_name)));
1799 TRACE("CLSID = %s\n", debugstr_w(V_BSTR(&clsid_name)));
1800
1801 hr = add_bstr_property(subcont, szName, V_BSTR(&friendly_name));
1802 if (FAILED(hr))
1803 goto cleanup;
1804
1805 hr = add_bstr_property(subcont, ClsidFilterW, V_BSTR(&clsid_name));
1806 if (FAILED(hr))
1807 goto cleanup;
1808
1809 hr = IPropertyBag_Read(pPropFilterBag, wszFilterDataName, &v, NULL);
1810 if (FAILED(hr))
1811 goto cleanup;
1812
1813 hr = SafeArrayAccessData(V_ARRAY(&v), (void **)&pData);
1814 if (FAILED(hr))
1815 goto cleanup;
1816
1817 hr = fill_filter_data_information(subcont, pData, V_ARRAY(&v)->rgsabound->cElements);
1818 SafeArrayUnaccessData(V_ARRAY(&v));
1819 if (FAILED(hr))
1820 goto cleanup;
1821
1822 hr = S_OK;
1823 cleanup:
1824 VariantClear(&v);
1825 VariantClear(&clsid_name);
1826 VariantClear(&friendly_name);
1827 if (pPropFilterBag) IPropertyBag_Release(pPropFilterBag);
1828
1829 return hr;
1830 }
1831
build_directshowfilters_tree(IDxDiagContainerImpl_Container * node)1832 static HRESULT build_directshowfilters_tree(IDxDiagContainerImpl_Container *node)
1833 {
1834 static const WCHAR szCatName[] = {'s','z','C','a','t','N','a','m','e',0};
1835 static const WCHAR ClsidCatW[] = {'C','l','s','i','d','C','a','t',0};
1836 static const WCHAR szIdFormat[] = {'%','d',0};
1837
1838 HRESULT hr;
1839 int i = 0;
1840 ICreateDevEnum *pCreateDevEnum;
1841 IEnumMoniker *pEmCat = NULL;
1842 IMoniker *pMCat = NULL;
1843 IEnumMoniker *pEnum = NULL;
1844
1845 hr = CoCreateInstance(&CLSID_SystemDeviceEnum, NULL, CLSCTX_INPROC_SERVER,
1846 &IID_ICreateDevEnum, (void **)&pCreateDevEnum);
1847 if (FAILED(hr))
1848 return hr;
1849
1850 hr = ICreateDevEnum_CreateClassEnumerator(pCreateDevEnum, &CLSID_ActiveMovieCategories, &pEmCat, 0);
1851 if (FAILED(hr))
1852 goto cleanup;
1853
1854 while (IEnumMoniker_Next(pEmCat, 1, &pMCat, NULL) == S_OK)
1855 {
1856 VARIANT vCatName;
1857 VARIANT vCatClsid;
1858 IPropertyBag *pPropBag;
1859 CLSID clsidCat;
1860 IMoniker *pMoniker = NULL;
1861
1862 hr = IMoniker_BindToStorage(pMCat, NULL, NULL, &IID_IPropertyBag, (void **)&pPropBag);
1863 if (FAILED(hr))
1864 {
1865 IMoniker_Release(pMCat);
1866 break;
1867 }
1868
1869 hr = read_property_names(pPropBag, &vCatName, &vCatClsid);
1870 IPropertyBag_Release(pPropBag);
1871 if (FAILED(hr))
1872 {
1873 IMoniker_Release(pMCat);
1874 break;
1875 }
1876
1877 hr = CLSIDFromString(V_BSTR(&vCatClsid), &clsidCat);
1878 if (FAILED(hr))
1879 {
1880 IMoniker_Release(pMCat);
1881 VariantClear(&vCatClsid);
1882 VariantClear(&vCatName);
1883 break;
1884 }
1885
1886 hr = ICreateDevEnum_CreateClassEnumerator(pCreateDevEnum, &clsidCat, &pEnum, 0);
1887 if (hr != S_OK)
1888 {
1889 IMoniker_Release(pMCat);
1890 VariantClear(&vCatClsid);
1891 VariantClear(&vCatName);
1892 continue;
1893 }
1894
1895 TRACE("Enumerating class %s\n", debugstr_guid(&clsidCat));
1896
1897 while (IEnumMoniker_Next(pEnum, 1, &pMoniker, NULL) == S_OK)
1898 {
1899 WCHAR bufferW[10];
1900 IDxDiagContainerImpl_Container *subcont;
1901
1902 swprintf(bufferW, szIdFormat, i);
1903 subcont = allocate_information_node(bufferW);
1904 if (!subcont)
1905 {
1906 hr = E_OUTOFMEMORY;
1907 IMoniker_Release(pMoniker);
1908 break;
1909 }
1910
1911 hr = add_bstr_property(subcont, szCatName, V_BSTR(&vCatName));
1912 if (FAILED(hr))
1913 {
1914 free_information_tree(subcont);
1915 IMoniker_Release(pMoniker);
1916 break;
1917 }
1918
1919 hr = add_bstr_property(subcont, ClsidCatW, V_BSTR(&vCatClsid));
1920 if (FAILED(hr))
1921 {
1922 free_information_tree(subcont);
1923 IMoniker_Release(pMoniker);
1924 break;
1925 }
1926
1927 hr = fill_filter_container(subcont, pMoniker);
1928 IMoniker_Release(pMoniker);
1929 if (FAILED(hr))
1930 {
1931 WARN("Skipping invalid filter\n");
1932 free_information_tree(subcont);
1933 hr = S_OK;
1934 continue;
1935 }
1936
1937 add_subcontainer(node, subcont);
1938 i++;
1939 }
1940
1941 IEnumMoniker_Release(pEnum);
1942 IMoniker_Release(pMCat);
1943 VariantClear(&vCatClsid);
1944 VariantClear(&vCatName);
1945
1946 if (FAILED(hr))
1947 break;
1948 }
1949
1950 cleanup:
1951 if (pEmCat) IEnumMoniker_Release(pEmCat);
1952 ICreateDevEnum_Release(pCreateDevEnum);
1953 return hr;
1954 }
1955
build_logicaldisks_tree(IDxDiagContainerImpl_Container * node)1956 static HRESULT build_logicaldisks_tree(IDxDiagContainerImpl_Container *node)
1957 {
1958 return S_OK;
1959 }
1960
build_information_tree(IDxDiagContainerImpl_Container ** pinfo_root)1961 static HRESULT build_information_tree(IDxDiagContainerImpl_Container **pinfo_root)
1962 {
1963 static const WCHAR DxDiag_SystemInfo[] = {'D','x','D','i','a','g','_','S','y','s','t','e','m','I','n','f','o',0};
1964 static const WCHAR DxDiag_DisplayDevices[] = {'D','x','D','i','a','g','_','D','i','s','p','l','a','y','D','e','v','i','c','e','s',0};
1965 static const WCHAR DxDiag_DirectSound[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','S','o','u','n','d',0};
1966 static const WCHAR DxDiag_DirectMusic[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','M','u','s','i','c',0};
1967 static const WCHAR DxDiag_DirectInput[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','I','n','p','u','t',0};
1968 static const WCHAR DxDiag_DirectPlay[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','P','l','a','y',0};
1969 static const WCHAR DxDiag_SystemDevices[] = {'D','x','D','i','a','g','_','S','y','s','t','e','m','D','e','v','i','c','e','s',0};
1970 static const WCHAR DxDiag_DirectXFiles[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','X','F','i','l','e','s',0};
1971 static const WCHAR DxDiag_DirectShowFilters[] = {'D','x','D','i','a','g','_','D','i','r','e','c','t','S','h','o','w','F','i','l','t','e','r','s',0};
1972 static const WCHAR DxDiag_LogicalDisks[] = {'D','x','D','i','a','g','_','L','o','g','i','c','a','l','D','i','s','k','s',0};
1973
1974 static const struct
1975 {
1976 const WCHAR *name;
1977 HRESULT (*initfunc)(IDxDiagContainerImpl_Container *);
1978 } root_children[] =
1979 {
1980 {DxDiag_SystemInfo, build_systeminfo_tree},
1981 {DxDiag_DisplayDevices, build_displaydevices_tree},
1982 {DxDiag_DirectSound, build_directsound_tree},
1983 {DxDiag_DirectMusic, build_directmusic_tree},
1984 {DxDiag_DirectInput, build_directinput_tree},
1985 {DxDiag_DirectPlay, build_directplay_tree},
1986 {DxDiag_SystemDevices, build_systemdevices_tree},
1987 {DxDiag_DirectXFiles, build_directxfiles_tree},
1988 {DxDiag_DirectShowFilters, build_directshowfilters_tree},
1989 {DxDiag_LogicalDisks, build_logicaldisks_tree},
1990 };
1991
1992 IDxDiagContainerImpl_Container *info_root;
1993 size_t index;
1994
1995 info_root = allocate_information_node(NULL);
1996 if (!info_root)
1997 return E_OUTOFMEMORY;
1998
1999 for (index = 0; index < ARRAY_SIZE(root_children); index++)
2000 {
2001 IDxDiagContainerImpl_Container *node;
2002 HRESULT hr;
2003
2004 node = allocate_information_node(root_children[index].name);
2005 if (!node)
2006 {
2007 free_information_tree(info_root);
2008 return E_OUTOFMEMORY;
2009 }
2010
2011 hr = root_children[index].initfunc(node);
2012 if (FAILED(hr))
2013 {
2014 free_information_tree(node);
2015 free_information_tree(info_root);
2016 return hr;
2017 }
2018
2019 add_subcontainer(info_root, node);
2020 }
2021
2022 *pinfo_root = info_root;
2023 return S_OK;
2024 }
2025