msvcrt: Added fputwc tests.
[wine] / dlls / wbemprox / builtin.c
1 /*
2  * Copyright 2012 Hans Leidekker for CodeWeavers
3  *
4  * This library is free software; you can redistribute it and/or
5  * modify it under the terms of the GNU Lesser General Public
6  * License as published by the Free Software Foundation; either
7  * version 2.1 of the License, or (at your option) any later version.
8  *
9  * This library is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
12  * Lesser General Public License for more details.
13  *
14  * You should have received a copy of the GNU Lesser General Public
15  * License along with this library; if not, write to the Free Software
16  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
17  */
18
19 #define COBJMACROS
20 #define NONAMELESSUNION
21 #define NONAMELESSSTRUCT
22
23 #include "config.h"
24 #include <stdarg.h>
25
26 #include "ntstatus.h"
27 #define WIN32_NO_STATUS
28 #include "windef.h"
29 #include "winbase.h"
30 #include "initguid.h"
31 #include "wbemcli.h"
32 #include "wbemprov.h"
33 #include "winsock2.h"
34 #include "iphlpapi.h"
35 #include "tlhelp32.h"
36 #include "d3d10.h"
37 #include "winternl.h"
38 #include "winioctl.h"
39 #include "winsvc.h"
40
41 #include "wine/debug.h"
42 #include "wbemprox_private.h"
43
44 WINE_DEFAULT_DEBUG_CHANNEL(wbemprox);
45
46 static const WCHAR class_baseboardW[] =
47     {'W','i','n','3','2','_','B','a','s','e','B','o','a','r','d',0};
48 static const WCHAR class_biosW[] =
49     {'W','i','n','3','2','_','B','I','O','S',0};
50 static const WCHAR class_cdromdriveW[] =
51     {'W','i','n','3','2','_','C','D','R','O','M','D','r','i','v','e',0};
52 static const WCHAR class_compsysW[] =
53     {'W','i','n','3','2','_','C','o','m','p','u','t','e','r','S','y','s','t','e','m',0};
54 static const WCHAR class_diskdriveW[] =
55     {'W','i','n','3','2','_','D','i','s','k','D','r','i','v','e',0};
56 static const WCHAR class_logicaldiskW[] =
57     {'W','i','n','3','2','_','L','o','g','i','c','a','l','D','i','s','k',0};
58 static const WCHAR class_networkadapterW[] =
59     {'W','i','n','3','2','_','N','e','t','w','o','r','k','A','d','a','p','t','e','r',0};
60 static const WCHAR class_osW[] =
61     {'W','i','n','3','2','_','O','p','e','r','a','t','i','n','g','S','y','s','t','e','m',0};
62 static const WCHAR class_paramsW[] =
63     {'_','_','P','A','R','A','M','E','T','E','R','S',0};
64 static const WCHAR class_processW[] =
65     {'W','i','n','3','2','_','P','r','o','c','e','s','s',0};
66 static const WCHAR class_processorW[] =
67     {'W','i','n','3','2','_','P','r','o','c','e','s','s','o','r',0};
68 static const WCHAR class_sounddeviceW[] =
69     {'W','i','n','3','2','_','S','o','u','n','d','D','e','v','i','c','e',0};
70 static const WCHAR class_videocontrollerW[] =
71     {'W','i','n','3','2','_','V','i','d','e','o','C','o','n','t','r','o','l','l','e','r',0};
72
73 static const WCHAR prop_adaptertypeW[] =
74     {'A','d','a','p','t','e','r','T','y','p','e',0};
75 static const WCHAR prop_acceptpauseW[] =
76     {'A','c','c','e','p','t','P','a','u','s','e',0};
77 static const WCHAR prop_acceptstopW[] =
78     {'A','c','c','e','p','t','S','t','o','p',0};
79 static const WCHAR prop_adapterramW[] =
80     {'A','d','a','p','t','e','r','R','A','M',0};
81 static const WCHAR prop_captionW[] =
82     {'C','a','p','t','i','o','n',0};
83 static const WCHAR prop_classW[] =
84     {'C','l','a','s','s',0};
85 static const WCHAR prop_commandlineW[] =
86     {'C','o','m','m','a','n','d','L','i','n','e',0};
87 static const WCHAR prop_cpustatusW[] =
88     {'C','p','u','S','t','a','t','u','s',0};
89 static const WCHAR prop_csdversionW[] =
90     {'C','S','D','V','e','r','s','i','o','n',0};
91 static const WCHAR prop_currentbitsperpixelW[] =
92     {'C','u','r','r','e','n','t','B','i','t','s','P','e','r','P','i','x','e','l',0};
93 static const WCHAR prop_currenthorizontalresW[] =
94     {'C','u','r','r','e','n','t','H','o','r','i','z','o','n','t','a','l','R','e','s','o','l','u','t','i','o','n',0};
95 static const WCHAR prop_currentverticalresW[] =
96     {'C','u','r','r','e','n','t','V','e','r','t','i','c','a','l','R','e','s','o','l','u','t','i','o','n',0};
97 static const WCHAR prop_defaultvalueW[] =
98     {'D','e','f','a','u','l','t','V','a','l','u','e',0};
99 static const WCHAR prop_descriptionW[] =
100     {'D','e','s','c','r','i','p','t','i','o','n',0};
101 static const WCHAR prop_deviceidW[] =
102     {'D','e','v','i','c','e','I','d',0};
103 static const WCHAR prop_directionW[] =
104     {'D','i','r','e','c','t','i','o','n',0};
105 static const WCHAR prop_displaynameW[] =
106     {'D','i','s','p','l','a','y','N','a','m','e',0};
107 static const WCHAR prop_domainW[] =
108     {'D','o','m','a','i','n',0};
109 static const WCHAR prop_domainroleW[] =
110     {'D','o','m','a','i','n','R','o','l','e',0};
111 static const WCHAR prop_drivetypeW[] =
112     {'D','r','i','v','e','T','y','p','e',0};
113 static const WCHAR prop_filesystemW[] =
114     {'F','i','l','e','S','y','s','t','e','m',0};
115 static const WCHAR prop_freespaceW[] =
116     {'F','r','e','e','S','p','a','c','e',0};
117 static const WCHAR prop_handleW[] =
118     {'H','a','n','d','l','e',0};
119 static const WCHAR prop_interfaceindexW[] =
120     {'I','n','t','e','r','f','a','c','e','I','n','d','e','x',0};
121 static const WCHAR prop_lastbootuptimeW[] =
122     {'L','a','s','t','B','o','o','t','U','p','T','i','m','e',0};
123 static const WCHAR prop_macaddressW[] =
124     {'M','A','C','A','d','d','r','e','s','s',0};
125 static const WCHAR prop_manufacturerW[] =
126     {'M','a','n','u','f','a','c','t','u','r','e','r',0};
127 static const WCHAR prop_maxclockspeedW[] =
128     {'M','a','x','C','l','o','c','k','S','p','e','e','d',0};
129 static const WCHAR prop_methodW[] =
130     {'M','e','t','h','o','d',0};
131 static const WCHAR prop_modelW[] =
132     {'M','o','d','e','l',0};
133 static const WCHAR prop_netconnectionstatusW[] =
134     {'N','e','t','C','o','n','n','e','c','t','i','o','n','S','t','a','t','u','s',0};
135 static const WCHAR prop_numlogicalprocessorsW[] =
136     {'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};
137 static const WCHAR prop_numprocessorsW[] =
138     {'N','u','m','b','e','r','O','f','P','r','o','c','e','s','s','o','r','s',0};
139 static const WCHAR prop_osarchitectureW[] =
140     {'O','S','A','r','c','h','i','t','e','c','t','u','r','e',0};
141 static const WCHAR prop_oslanguageW[] =
142     {'O','S','L','a','n','g','u','a','g','e',0};
143 static const WCHAR prop_parameterW[] =
144     {'P','a','r','a','m','e','t','e','r',0};
145 static const WCHAR prop_pnpdeviceidW[] =
146     {'P','N','P','D','e','v','i','c','e','I','D',0};
147 static const WCHAR prop_pprocessidW[] =
148     {'P','a','r','e','n','t','P','r','o','c','e','s','s','I','D',0};
149 static const WCHAR prop_processidW[] =
150     {'P','r','o','c','e','s','s','I','D',0};
151 static const WCHAR prop_processoridW[] =
152     {'P','r','o','c','e','s','s','o','r','I','d',0};
153 static const WCHAR prop_productnameW[] =
154     {'P','r','o','d','u','c','t','N','a','m','e',0};
155 static const WCHAR prop_releasedateW[] =
156     {'R','e','l','e','a','s','e','D','a','t','e',0};
157 static const WCHAR prop_serialnumberW[] =
158     {'S','e','r','i','a','l','N','u','m','b','e','r',0};
159 static const WCHAR prop_servicetypeW[] =
160     {'S','e','r','v','i','c','e','T','y','p','e',0};
161 static const WCHAR prop_startmodeW[] =
162     {'S','t','a','r','t','M','o','d','e',0};
163 static const WCHAR prop_sizeW[] =
164     {'S','i','z','e',0};
165 static const WCHAR prop_speedW[] =
166     {'S','p','e','e','d',0};
167 static const WCHAR prop_stateW[] =
168     {'S','t','a','t','e',0};
169 static const WCHAR prop_systemdirectoryW[] =
170     {'S','y','s','t','e','m','D','i','r','e','c','t','o','r','y',0};
171 static const WCHAR prop_systemnameW[] =
172     {'S','y','s','t','e','m','N','a','m','e',0};
173 static const WCHAR prop_tagW[] =
174     {'T','a','g',0};
175 static const WCHAR prop_threadcountW[] =
176     {'T','h','r','e','a','d','C','o','u','n','t',0};
177 static const WCHAR prop_totalphysicalmemoryW[] =
178     {'T','o','t','a','l','P','h','y','s','i','c','a','l','M','e','m','o','r','y',0};
179 static const WCHAR prop_typeW[] =
180     {'T','y','p','e',0};
181 static const WCHAR prop_uniqueidW[] =
182     {'U','n','i','q','u','e','I','d',0};
183 static const WCHAR prop_varianttypeW[] =
184     {'V','a','r','i','a','n','t','T','y','p','e',0};
185 static const WCHAR prop_versionW[] =
186     {'V','e','r','s','i','o','n',0};
187
188 /* column definitions must be kept in sync with record structures below */
189 static const struct column col_baseboard[] =
190 {
191     { prop_manufacturerW,  CIM_STRING },
192     { prop_serialnumberW,  CIM_STRING },
193     { prop_tagW,           CIM_STRING|COL_FLAG_KEY }
194 };
195 static const struct column col_bios[] =
196 {
197     { prop_descriptionW,  CIM_STRING },
198     { prop_manufacturerW, CIM_STRING },
199     { prop_releasedateW,  CIM_DATETIME },
200     { prop_serialnumberW, CIM_STRING },
201     { prop_versionW,      CIM_STRING|COL_FLAG_KEY }
202 };
203 static const struct column col_cdromdrive[] =
204 {
205     { prop_nameW, CIM_STRING }
206 };
207 static const struct column col_compsys[] =
208 {
209     { prop_descriptionW,          CIM_STRING },
210     { prop_domainW,               CIM_STRING },
211     { prop_domainroleW,           CIM_UINT16 },
212     { prop_manufacturerW,         CIM_STRING },
213     { prop_modelW,                CIM_STRING },
214     { prop_numlogicalprocessorsW, CIM_UINT32, VT_I4 },
215     { prop_numprocessorsW,        CIM_UINT32, VT_I4 },
216     { prop_totalphysicalmemoryW,  CIM_UINT64 }
217 };
218 static const struct column col_diskdrive[] =
219 {
220     { prop_manufacturerW, CIM_STRING },
221     { prop_modelW,        CIM_STRING },
222     { prop_serialnumberW, CIM_STRING }
223 };
224 static const struct column col_logicaldisk[] =
225 {
226     { prop_deviceidW,   CIM_STRING|COL_FLAG_DYNAMIC|COL_FLAG_KEY },
227     { prop_drivetypeW,  CIM_UINT32, VT_I4 },
228     { prop_filesystemW, CIM_STRING|COL_FLAG_DYNAMIC },
229     { prop_freespaceW,  CIM_UINT64 },
230     { prop_nameW,       CIM_STRING|COL_FLAG_DYNAMIC },
231     { prop_sizeW,       CIM_UINT64 }
232 };
233 static const struct column col_networkadapter[] =
234 {
235     { prop_adaptertypeW,         CIM_STRING },
236     { prop_deviceidW,            CIM_STRING|COL_FLAG_DYNAMIC|COL_FLAG_KEY },
237     { prop_interfaceindexW,      CIM_UINT32, VT_I4 },
238     { prop_macaddressW,          CIM_STRING|COL_FLAG_DYNAMIC },
239     { prop_manufacturerW,        CIM_STRING },
240     { prop_netconnectionstatusW, CIM_UINT16, VT_I4 },
241     { prop_pnpdeviceidW,         CIM_STRING },
242     { prop_speedW,               CIM_UINT64 }
243 };
244 static const struct column col_os[] =
245 {
246     { prop_captionW,         CIM_STRING },
247     { prop_csdversionW,      CIM_STRING },
248     { prop_lastbootuptimeW,  CIM_DATETIME|COL_FLAG_DYNAMIC },
249     { prop_osarchitectureW,  CIM_STRING },
250     { prop_oslanguageW,      CIM_UINT32, VT_I4 },
251     { prop_systemdirectoryW, CIM_STRING|COL_FLAG_DYNAMIC }
252 };
253 static const struct column col_params[] =
254 {
255     { prop_classW,        CIM_STRING },
256     { prop_methodW,       CIM_STRING },
257     { prop_directionW,    CIM_SINT32 },
258     { prop_parameterW,    CIM_STRING },
259     { prop_typeW,         CIM_UINT32 },
260     { prop_varianttypeW,  CIM_UINT32 },
261     { prop_defaultvalueW, CIM_UINT32 }
262 };
263 static const struct column col_process[] =
264 {
265     { prop_captionW,     CIM_STRING|COL_FLAG_DYNAMIC },
266     { prop_commandlineW, CIM_STRING|COL_FLAG_DYNAMIC },
267     { prop_descriptionW, CIM_STRING|COL_FLAG_DYNAMIC },
268     { prop_handleW,      CIM_STRING|COL_FLAG_DYNAMIC|COL_FLAG_KEY },
269     { prop_pprocessidW,  CIM_UINT32, VT_I4 },
270     { prop_processidW,   CIM_UINT32, VT_I4 },
271     { prop_threadcountW, CIM_UINT32, VT_I4 }
272 };
273 static const struct column col_processor[] =
274 {
275     { prop_cpustatusW,            CIM_UINT16 },
276     { prop_deviceidW,             CIM_STRING|COL_FLAG_DYNAMIC|COL_FLAG_KEY },
277     { prop_manufacturerW,         CIM_STRING|COL_FLAG_DYNAMIC },
278     { prop_maxclockspeedW,        CIM_UINT32, VT_I4 },
279     { prop_nameW,                 CIM_STRING|COL_FLAG_DYNAMIC },
280     { prop_numlogicalprocessorsW, CIM_UINT32, VT_I4 },
281     { prop_processoridW,          CIM_STRING|COL_FLAG_DYNAMIC },
282     { prop_uniqueidW,             CIM_STRING }
283 };
284 static const struct column col_service[] =
285 {
286     { prop_acceptpauseW,      CIM_BOOLEAN },
287     { prop_acceptstopW,       CIM_BOOLEAN },
288     { prop_displaynameW,      CIM_STRING|COL_FLAG_DYNAMIC },
289     { prop_nameW,             CIM_STRING|COL_FLAG_DYNAMIC|COL_FLAG_KEY },
290     { prop_processidW,        CIM_UINT32 },
291     { prop_servicetypeW,      CIM_STRING },
292     { prop_startmodeW,        CIM_STRING },
293     { prop_stateW,            CIM_STRING },
294     { prop_systemnameW,       CIM_STRING|COL_FLAG_DYNAMIC },
295     /* methods */
296     { method_pauseserviceW,   CIM_FLAG_ARRAY|COL_FLAG_METHOD },
297     { method_resumeserviceW,  CIM_FLAG_ARRAY|COL_FLAG_METHOD },
298     { method_startserviceW,   CIM_FLAG_ARRAY|COL_FLAG_METHOD },
299     { method_stopserviceW,    CIM_FLAG_ARRAY|COL_FLAG_METHOD }
300 };
301 static const struct column col_sounddevice[] =
302 {
303     { prop_productnameW, CIM_STRING }
304 };
305 static const struct column col_stdregprov[] =
306 {
307     { method_enumkeyW,        CIM_FLAG_ARRAY|COL_FLAG_METHOD },
308     { method_enumvaluesW,     CIM_FLAG_ARRAY|COL_FLAG_METHOD },
309     { method_getstringvalueW, CIM_FLAG_ARRAY|COL_FLAG_METHOD }
310 };
311 static const struct column col_videocontroller[] =
312 {
313     { prop_adapterramW,           CIM_UINT32 },
314     { prop_currentbitsperpixelW,  CIM_UINT32 },
315     { prop_currenthorizontalresW, CIM_UINT32 },
316     { prop_currentverticalresW,   CIM_UINT32 },
317     { prop_descriptionW,          CIM_STRING|COL_FLAG_DYNAMIC },
318     { prop_deviceidW,             CIM_STRING|COL_FLAG_KEY },
319     { prop_nameW,                 CIM_STRING|COL_FLAG_DYNAMIC }
320 };
321
322 static const WCHAR baseboard_manufacturerW[] =
323     {'I','n','t','e','l',' ','C','o','r','p','o','r','a','t','i','o','n',0};
324 static const WCHAR baseboard_serialnumberW[] =
325     {'N','o','n','e',0};
326 static const WCHAR baseboard_tagW[] =
327     {'B','a','s','e',' ','B','o','a','r','d',0};
328 static const WCHAR bios_descriptionW[] =
329     {'D','e','f','a','u','l','t',' ','S','y','s','t','e','m',' ','B','I','O','S',0};
330 static const WCHAR bios_manufacturerW[] =
331     {'T','h','e',' ','W','i','n','e',' ','P','r','o','j','e','c','t',0};
332 static const WCHAR bios_releasedateW[] =
333     {'2','0','1','2','0','6','0','8','0','0','0','0','0','0','.','0','0','0','0','0','0','+','0','0','0',0};
334 static const WCHAR bios_serialnumberW[] =
335     {'0',0};
336 static const WCHAR bios_versionW[] =
337     {'W','I','N','E',' ',' ',' ','-',' ','1',0};
338 static const WCHAR cdromdrive_nameW[] =
339     {'W','i','n','e',' ','C','D','-','R','O','M',' ','A','T','A',' ','D','e','v','i','c','e',0};
340 static const WCHAR compsys_descriptionW[] =
341     {'A','T','/','A','T',' ','C','O','M','P','A','T','I','B','L','E',0};
342 static const WCHAR compsys_domainW[] =
343     {'W','O','R','K','G','R','O','U','P',0};
344 static const WCHAR compsys_manufacturerW[] =
345     {'T','h','e',' ','W','i','n','e',' ','P','r','o','j','e','c','t',0};
346 static const WCHAR compsys_modelW[] =
347     {'W','i','n','e',0};
348 static const WCHAR diskdrive_modelW[] =
349     {'W','i','n','e',' ','D','i','s','k',' ','D','r','i','v','e',0};
350 static const WCHAR diskdrive_manufacturerW[] =
351     {'(','S','t','a','n','d','a','r','d',' ','d','i','s','k',' ','d','r','i','v','e','s',')',0};
352 static const WCHAR networkadapter_pnpdeviceidW[]=
353     {'P','C','I','\\','V','E','N','_','8','0','8','6','&','D','E','V','_','1','0','0','E','&',
354      'S','U','B','S','Y','S','_','0','0','1','E','8','0','8','6','&','R','E','V','_','0','2','\\',
355      '3','&','2','6','7','A','6','1','6','A','&','1','&','1','8',0};
356 static const WCHAR os_captionW[] =
357     {'M','i','c','r','o','s','o','f','t',' ','W','i','n','d','o','w','s',' ','X','P',' ',
358      'V','e','r','s','i','o','n',' ','=',' ','5','.','1','.','2','6','0','0',0};
359 static const WCHAR os_csdversionW[] =
360     {'S','e','r','v','i','c','e',' ','P','a','c','k',' ','3',0};
361 static const WCHAR os_32bitW[] =
362     {'3','2','-','b','i','t',0};
363 static const WCHAR os_64bitW[] =
364     {'6','4','-','b','i','t',0};
365 static const WCHAR sounddevice_productnameW[] =
366     {'W','i','n','e',' ','A','u','d','i','o',' ','D','e','v','i','c','e',0};
367 static const WCHAR videocontroller_deviceidW[] =
368     {'V','i','d','e','o','C','o','n','t','r','o','l','l','e','r','1',0};
369
370 #include "pshpack1.h"
371 struct record_baseboard
372 {
373     const WCHAR *manufacturer;
374     const WCHAR *serialnumber;
375     const WCHAR *tag;
376 };
377 struct record_bios
378 {
379     const WCHAR *description;
380     const WCHAR *manufacturer;
381     const WCHAR *releasedate;
382     const WCHAR *serialnumber;
383     const WCHAR *version;
384 };
385 struct record_cdromdrive
386 {
387     const WCHAR *name;
388 };
389 struct record_computersystem
390 {
391     const WCHAR *description;
392     const WCHAR *domain;
393     UINT16       domainrole;
394     const WCHAR *manufacturer;
395     const WCHAR *model;
396     UINT32       num_logical_processors;
397     UINT32       num_processors;
398     UINT64       total_physical_memory;
399 };
400 struct record_diskdrive
401 {
402     const WCHAR *manufacturer;
403     const WCHAR *name;
404     const WCHAR *serialnumber;
405 };
406 struct record_logicaldisk
407 {
408     const WCHAR *device_id;
409     UINT32       drivetype;
410     const WCHAR *filesystem;
411     UINT64       freespace;
412     const WCHAR *name;
413     UINT64       size;
414 };
415 struct record_networkadapter
416 {
417     const WCHAR *adaptertype;
418     const WCHAR *device_id;
419     INT32        interface_index;
420     const WCHAR *mac_address;
421     const WCHAR *manufacturer;
422     UINT16       netconnection_status;
423     const WCHAR *pnpdevice_id;
424     UINT64       speed;
425 };
426 struct record_operatingsystem
427 {
428     const WCHAR *caption;
429     const WCHAR *csdversion;
430     const WCHAR *lastbootuptime;
431     const WCHAR *osarchitecture;
432     UINT32       oslanguage;
433     const WCHAR *systemdirectory;
434 };
435 struct record_params
436 {
437     const WCHAR *class;
438     const WCHAR *method;
439     INT32        direction;
440     const WCHAR *parameter;
441     UINT32       type;
442     UINT32       varianttype;
443     UINT32       defaultvalue;
444 };
445 struct record_process
446 {
447     const WCHAR *caption;
448     const WCHAR *commandline;
449     const WCHAR *description;
450     const WCHAR *handle;
451     UINT32       pprocess_id;
452     UINT32       process_id;
453     UINT32       thread_count;
454 };
455 struct record_processor
456 {
457     UINT16       cpu_status;
458     const WCHAR *device_id;
459     const WCHAR *manufacturer;
460     UINT32       maxclockspeed;
461     const WCHAR *name;
462     UINT32       num_logical_processors;
463     const WCHAR *processor_id;
464     const WCHAR *unique_id;
465 };
466 struct record_service
467 {
468     int          accept_pause;
469     int          accept_stop;
470     const WCHAR *displayname;
471     const WCHAR *name;
472     UINT32       process_id;
473     const WCHAR *servicetype;
474     const WCHAR *startmode;
475     const WCHAR *state;
476     const WCHAR *systemname;
477     /* methods */
478     class_method *pause_service;
479     class_method *resume_service;
480     class_method *start_service;
481     class_method *stop_service;
482 };
483 struct record_sounddevice
484 {
485     const WCHAR *productname;
486 };
487 struct record_stdregprov
488 {
489     class_method *enumkey;
490     class_method *enumvalues;
491     class_method *getstringvalue;
492 };
493 struct record_videocontroller
494 {
495     UINT32       adapter_ram;
496     UINT32       current_bitsperpixel;
497     UINT32       current_horizontalres;
498     UINT32       current_verticalres;
499     const WCHAR *description;
500     const WCHAR *device_id;
501     const WCHAR *name;
502 };
503 #include "poppack.h"
504
505 static const struct record_baseboard data_baseboard[] =
506 {
507     { baseboard_manufacturerW, baseboard_serialnumberW, baseboard_tagW }
508 };
509 static const struct record_bios data_bios[] =
510 {
511     { bios_descriptionW, bios_manufacturerW, bios_releasedateW, bios_serialnumberW, bios_versionW }
512 };
513 static const struct record_cdromdrive data_cdromdrive[] =
514 {
515     { cdromdrive_nameW }
516 };
517 static const struct record_diskdrive data_diskdrive[] =
518 {
519     { diskdrive_manufacturerW, diskdrive_modelW }
520 };
521 static const struct record_params data_params[] =
522 {
523     { class_serviceW, method_pauseserviceW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
524     { class_serviceW, method_resumeserviceW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
525     { class_serviceW, method_startserviceW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
526     { class_serviceW, method_stopserviceW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
527     { class_stdregprovW, method_enumkeyW, 1, param_defkeyW, CIM_SINT32, 0, 0x80000002 },
528     { class_stdregprovW, method_enumkeyW, 1, param_subkeynameW, CIM_STRING },
529     { class_stdregprovW, method_enumkeyW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
530     { class_stdregprovW, method_enumkeyW, -1, param_namesW, CIM_STRING|CIM_FLAG_ARRAY },
531     { class_stdregprovW, method_enumvaluesW, 1, param_defkeyW, CIM_SINT32, 0, 0x80000002 },
532     { class_stdregprovW, method_enumvaluesW, 1, param_subkeynameW, CIM_STRING },
533     { class_stdregprovW, method_enumvaluesW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
534     { class_stdregprovW, method_enumvaluesW, -1, param_namesW, CIM_STRING|CIM_FLAG_ARRAY },
535     { class_stdregprovW, method_enumvaluesW, -1, param_typesW, CIM_SINT32|CIM_FLAG_ARRAY },
536     { class_stdregprovW, method_getstringvalueW, 1, param_defkeyW, CIM_SINT32, 0, 0x80000002 },
537     { class_stdregprovW, method_getstringvalueW, 1, param_subkeynameW, CIM_STRING },
538     { class_stdregprovW, method_getstringvalueW, 1, param_valuenameW, CIM_STRING },
539     { class_stdregprovW, method_getstringvalueW, -1, param_returnvalueW, CIM_UINT32, VT_I4 },
540     { class_stdregprovW, method_getstringvalueW, -1, param_valueW, CIM_STRING }
541 };
542 static const struct record_sounddevice data_sounddevice[] =
543 {
544     { sounddevice_productnameW }
545 };
546 static const struct record_stdregprov data_stdregprov[] =
547 {
548     { reg_enum_key, reg_enum_values, reg_get_stringvalue }
549 };
550
551 static UINT get_processor_count(void)
552 {
553     SYSTEM_BASIC_INFORMATION info;
554
555     if (NtQuerySystemInformation( SystemBasicInformation, &info, sizeof(info), NULL )) return 1;
556     return info.NumberOfProcessors;
557 }
558
559 static UINT get_logical_processor_count(void)
560 {
561     SYSTEM_LOGICAL_PROCESSOR_INFORMATION *info;
562     UINT i, j, count = 0;
563     NTSTATUS status;
564     ULONG len;
565
566     status = NtQuerySystemInformation( SystemLogicalProcessorInformation, NULL, 0, &len );
567     if (status != STATUS_INFO_LENGTH_MISMATCH) return get_processor_count();
568
569     if (!(info = heap_alloc( len ))) return get_processor_count();
570     status = NtQuerySystemInformation( SystemLogicalProcessorInformation, info, len, &len );
571     if (status != STATUS_SUCCESS)
572     {
573         heap_free( info );
574         return get_processor_count();
575     }
576     for (i = 0; i < len / sizeof(*info); i++)
577     {
578         if (info[i].Relationship != RelationProcessorCore) continue;
579         for (j = 0; j < sizeof(ULONG_PTR); j++) if (info[i].ProcessorMask & (1 << j)) count++;
580     }
581     heap_free( info );
582     return count;
583 }
584
585 static UINT64 get_total_physical_memory(void)
586 {
587     MEMORYSTATUSEX status;
588
589     status.dwLength = sizeof(status);
590     if (!GlobalMemoryStatusEx( &status )) return 1024 * 1024 * 1024;
591     return status.ullTotalPhys;
592 }
593
594 static void fill_compsys( struct table *table )
595 {
596     struct record_computersystem *rec;
597
598     if (!(table->data = heap_alloc( sizeof(*rec) ))) return;
599
600     rec = (struct record_computersystem *)table->data;
601     rec->description            = compsys_descriptionW;
602     rec->domain                 = compsys_domainW;
603     rec->domainrole             = 0; /* standalone workstation */
604     rec->manufacturer           = compsys_manufacturerW;
605     rec->model                  = compsys_modelW;
606     rec->num_logical_processors = get_logical_processor_count();
607     rec->num_processors         = get_processor_count();
608     rec->total_physical_memory  = get_total_physical_memory();
609
610     TRACE("created 1 row\n");
611     table->num_rows = 1;
612 }
613
614 static WCHAR *get_filesystem( const WCHAR *root )
615 {
616     static const WCHAR ntfsW[] = {'N','T','F','S',0};
617     WCHAR buffer[MAX_PATH + 1];
618
619     if (GetVolumeInformationW( root, NULL, 0, NULL, NULL, NULL, buffer, MAX_PATH + 1 ))
620         return heap_strdupW( buffer );
621     return heap_strdupW( ntfsW );
622 }
623
624 static UINT64 get_freespace( const WCHAR *dir, UINT64 *disksize )
625 {
626     WCHAR root[] = {'\\','\\','.','\\','A',':',0};
627     ULARGE_INTEGER free;
628     DISK_GEOMETRY_EX info;
629     HANDLE handle;
630
631     free.QuadPart = 512 * 1024 * 1024;
632     GetDiskFreeSpaceExW( dir, NULL, NULL, &free );
633
634     root[4] = dir[0];
635     handle = CreateFileW( root, GENERIC_READ, FILE_SHARE_READ|FILE_SHARE_WRITE, NULL, OPEN_EXISTING, 0, 0 );
636     if (handle != INVALID_HANDLE_VALUE)
637     {
638         if (DeviceIoControl( handle, IOCTL_DISK_GET_DRIVE_GEOMETRY_EX, NULL, 0, &info, sizeof(info), NULL, NULL ))
639             *disksize = info.DiskSize.QuadPart;
640         CloseHandle( handle );
641     }
642     return free.QuadPart;
643 }
644
645 static void fill_logicaldisk( struct table *table )
646 {
647     static const WCHAR fmtW[] = {'%','c',':',0};
648     WCHAR device_id[3], root[] = {'A',':','\\',0};
649     struct record_logicaldisk *rec;
650     UINT i, num_rows = 0, offset = 0, count = 4, type;
651     UINT64 size = 1024 * 1024 * 1024;
652     DWORD drives = GetLogicalDrives();
653
654     if (!(table->data = heap_alloc( count * sizeof(*rec) ))) return;
655
656     for (i = 0; i < sizeof(drives); i++)
657     {
658         if (drives & (1 << i))
659         {
660             root[0] = 'A' + i;
661             type = GetDriveTypeW( root );
662             if (type != DRIVE_FIXED && type != DRIVE_CDROM && type != DRIVE_REMOVABLE)
663                 continue;
664
665             if (num_rows > count)
666             {
667                 BYTE *data;
668                 count *= 2;
669                 if (!(data = heap_realloc( table->data, count * sizeof(*rec) ))) return;
670                 table->data = data;
671             }
672             rec = (struct record_logicaldisk *)(table->data + offset);
673             sprintfW( device_id, fmtW, 'A' + i );
674             rec->device_id  = heap_strdupW( device_id );
675             rec->drivetype  = type;
676             rec->filesystem = get_filesystem( root );
677             rec->freespace  = get_freespace( root, &size );
678             rec->name       = heap_strdupW( device_id );
679             rec->size       = size;
680             offset += sizeof(*rec);
681             num_rows++;
682         }
683     }
684     TRACE("created %u rows\n", num_rows);
685     table->num_rows = num_rows;
686 }
687
688 static UINT16 get_connection_status( IF_OPER_STATUS status )
689 {
690     switch (status)
691     {
692     case IfOperStatusDown:
693         return 0; /* Disconnected */
694     case IfOperStatusUp:
695         return 2; /* Connected */
696     default:
697         ERR("unhandled status %u\n", status);
698         break;
699     }
700     return 0;
701 }
702 static WCHAR *get_mac_address( const BYTE *addr, DWORD len )
703 {
704     static const WCHAR fmtW[] =
705         {'%','0','2','x',':','%','0','2','x',':','%','0','2','x',':',
706          '%','0','2','x',':','%','0','2','x',':','%','0','2','x',0};
707     WCHAR *ret;
708
709     if (len != 6 || !(ret = heap_alloc( 18 * sizeof(WCHAR) ))) return NULL;
710     sprintfW( ret, fmtW, addr[0], addr[1], addr[2], addr[3], addr[4], addr[5] );
711     return ret;
712 }
713 static const WCHAR *get_adaptertype( DWORD type )
714 {
715     static const WCHAR ethernetW[] = {'E','t','h','e','r','n','e','t',' ','8','0','2','.','3',0};
716     static const WCHAR wirelessW[] = {'W','i','r','e','l','e','s','s',0};
717     static const WCHAR firewireW[] = {'1','3','9','4',0};
718     static const WCHAR tunnelW[]   = {'T','u','n','n','e','l',0};
719
720     switch (type)
721     {
722     case IF_TYPE_ETHERNET_CSMACD: return ethernetW;
723     case IF_TYPE_IEEE80211:       return wirelessW;
724     case IF_TYPE_IEEE1394:        return firewireW;
725     case IF_TYPE_TUNNEL:          return tunnelW;
726     default: break;
727     }
728     return NULL;
729 }
730
731 static void fill_networkadapter( struct table *table )
732 {
733     static const WCHAR fmtW[] = {'%','u',0};
734     WCHAR device_id[11];
735     struct record_networkadapter *rec;
736     IP_ADAPTER_ADDRESSES *aa, *buffer;
737     UINT num_rows = 0, offset = 0;
738     DWORD size = 0, ret;
739
740     ret = GetAdaptersAddresses( AF_UNSPEC, 0, NULL, NULL, &size );
741     if (ret != ERROR_BUFFER_OVERFLOW) return;
742
743     if (!(buffer = heap_alloc( size ))) return;
744     if (GetAdaptersAddresses( AF_UNSPEC, 0, NULL, buffer, &size ))
745     {
746         heap_free( buffer );
747         return;
748     }
749     for (aa = buffer; aa; aa = aa->Next) num_rows++;
750     if (!(table->data = heap_alloc( sizeof(*rec) * num_rows )))
751     {
752         heap_free( buffer );
753         return;
754     }
755     for (aa = buffer; aa; aa = aa->Next)
756     {
757         rec = (struct record_networkadapter *)(table->data + offset);
758         sprintfW( device_id, fmtW, aa->u.s.IfIndex );
759         rec->adaptertype          = get_adaptertype( aa->IfType );
760         rec->device_id            = heap_strdupW( device_id );
761         rec->interface_index      = aa->u.s.IfIndex;
762         rec->mac_address          = get_mac_address( aa->PhysicalAddress, aa->PhysicalAddressLength );
763         rec->manufacturer         = compsys_manufacturerW;
764         rec->netconnection_status = get_connection_status( aa->OperStatus );
765         rec->pnpdevice_id         = networkadapter_pnpdeviceidW;
766         rec->speed                = 1000000;
767         offset += sizeof(*rec);
768     }
769     TRACE("created %u rows\n", num_rows);
770     table->num_rows = num_rows;
771
772     heap_free( buffer );
773 }
774
775 static WCHAR *get_cmdline( DWORD process_id )
776 {
777     if (process_id == GetCurrentProcessId()) return heap_strdupW( GetCommandLineW() );
778     return NULL; /* FIXME handle different process case */
779 }
780
781 static void fill_process( struct table *table )
782 {
783     static const WCHAR fmtW[] = {'%','u',0};
784     WCHAR handle[11];
785     struct record_process *rec;
786     PROCESSENTRY32W entry;
787     HANDLE snap;
788     UINT num_rows = 0, offset = 0, count = 8;
789
790     snap = CreateToolhelp32Snapshot( TH32CS_SNAPPROCESS, 0 );
791     if (snap == INVALID_HANDLE_VALUE) return;
792
793     entry.dwSize = sizeof(entry);
794     if (!Process32FirstW( snap, &entry )) goto done;
795     if (!(table->data = heap_alloc( count * sizeof(*rec) ))) goto done;
796
797     do
798     {
799         if (num_rows > count)
800         {
801             BYTE *data;
802             count *= 2;
803             if (!(data = heap_realloc( table->data, count * sizeof(*rec) ))) goto done;
804             table->data = data;
805         }
806         rec = (struct record_process *)(table->data + offset);
807         rec->caption      = heap_strdupW( entry.szExeFile );
808         rec->commandline  = get_cmdline( entry.th32ProcessID );
809         rec->description  = heap_strdupW( entry.szExeFile );
810         sprintfW( handle, fmtW, entry.th32ProcessID );
811         rec->handle       = heap_strdupW( handle );
812         rec->process_id   = entry.th32ProcessID;
813         rec->pprocess_id  = entry.th32ParentProcessID;
814         rec->thread_count = entry.cntThreads;
815         offset += sizeof(*rec);
816         num_rows++;
817     } while (Process32NextW( snap, &entry ));
818
819     TRACE("created %u rows\n", num_rows);
820     table->num_rows = num_rows;
821
822 done:
823     CloseHandle( snap );
824 }
825
826 static inline void do_cpuid( unsigned int ax, unsigned int *p )
827 {
828 #ifdef __i386__
829     __asm__("pushl %%ebx\n\t"
830                 "cpuid\n\t"
831                 "movl %%ebx, %%esi\n\t"
832                 "popl %%ebx"
833                 : "=a" (p[0]), "=S" (p[1]), "=c" (p[2]), "=d" (p[3])
834                 :  "0" (ax));
835 #endif
836 }
837
838 static void get_processor_id( WCHAR *processor_id )
839 {
840     static const WCHAR fmtW[] = {'%','0','8','X','%','0','8','X',0};
841     unsigned int regs[4] = {0, 0, 0, 0};
842
843     do_cpuid( 1, regs );
844     sprintfW( processor_id, fmtW, regs[3], regs[0] );
845 }
846 static void regs_to_str( unsigned int *regs, unsigned int len, WCHAR *buffer )
847 {
848     unsigned int i;
849     unsigned char *p = (unsigned char *)regs;
850
851     for (i = 0; i < len; i++)
852     {
853         buffer[i] = *p++;
854     }
855     buffer[i] = 0;
856 }
857 static void get_processor_manufacturer( WCHAR *manufacturer )
858 {
859     unsigned int tmp, regs[4] = {0, 0, 0, 0};
860
861     do_cpuid( 0, regs );
862     tmp = regs[2];      /* swap edx and ecx */
863     regs[2] = regs[3];
864     regs[3] = tmp;
865
866     regs_to_str( regs + 1, 12, manufacturer );
867 }
868 static void get_processor_name( WCHAR *name )
869 {
870     unsigned int regs[4] = {0, 0, 0, 0};
871
872     do_cpuid( 0x80000000, regs );
873     if (regs[0] >= 0x80000004)
874     {
875         do_cpuid( 0x80000002, regs );
876         regs_to_str( regs, 16, name );
877         do_cpuid( 0x80000003, regs );
878         regs_to_str( regs, 16, name + 16 );
879         do_cpuid( 0x80000004, regs );
880         regs_to_str( regs, 16, name + 32 );
881     }
882 }
883 static UINT get_processor_maxclockspeed( void )
884 {
885     PROCESSOR_POWER_INFORMATION *info;
886     UINT ret = 1000, size = get_processor_count() * sizeof(PROCESSOR_POWER_INFORMATION);
887     NTSTATUS status;
888
889     if ((info = heap_alloc( size )))
890     {
891         status = NtPowerInformation( ProcessorInformation, NULL, 0, info, size );
892         if (!status) ret = info[0].MaxMhz;
893         heap_free( info );
894     }
895     return ret;
896 }
897
898 static void fill_processor( struct table *table )
899 {
900     static const WCHAR fmtW[] = {'C','P','U','%','u',0};
901     WCHAR device_id[14], processor_id[17], manufacturer[13], name[49] = {0};
902     struct record_processor *rec;
903     UINT i, offset = 0, maxclockspeed, num_logical_processors, count = get_processor_count();
904
905     if (!(table->data = heap_alloc( sizeof(*rec) * count ))) return;
906
907     get_processor_id( processor_id );
908     get_processor_manufacturer( manufacturer );
909     get_processor_name( name );
910
911     maxclockspeed = get_processor_maxclockspeed();
912     num_logical_processors = get_logical_processor_count() / count;
913
914     for (i = 0; i < count; i++)
915     {
916         rec = (struct record_processor *)(table->data + offset);
917         rec->cpu_status             = 1; /* CPU Enabled */
918         sprintfW( device_id, fmtW, i );
919         rec->device_id              = heap_strdupW( device_id );
920         rec->manufacturer           = heap_strdupW( manufacturer );
921         rec->maxclockspeed          = maxclockspeed;
922         rec->name                   = heap_strdupW( name );
923         rec->num_logical_processors = num_logical_processors;
924         rec->processor_id           = heap_strdupW( processor_id );
925         rec->unique_id              = NULL;
926         offset += sizeof(*rec);
927     }
928
929     TRACE("created %u rows\n", count);
930     table->num_rows = count;
931 }
932
933 static WCHAR *get_lastbootuptime(void)
934 {
935     static const WCHAR fmtW[] =
936         {'%','0','4','u','%','0','2','u','%','0','2','u','%','0','2','u','%','0','2','u','%','0','2','u',
937          '.','%','0','6','u','+','0','0','0',0};
938     SYSTEMTIME st;
939     FILETIME ft;
940     ULARGE_INTEGER ticks;
941     WCHAR *ret;
942
943     if (!(ret = heap_alloc( 26 * sizeof(WCHAR) ))) return NULL;
944     GetSystemTime( &st );
945     SystemTimeToFileTime( &st, &ft );
946     ticks.u.LowPart  = ft.dwLowDateTime;
947     ticks.u.HighPart = ft.dwHighDateTime;
948     ticks.QuadPart -= GetTickCount64() * 10000;
949     ft.dwLowDateTime  = ticks.u.LowPart;
950     ft.dwHighDateTime = ticks.u.HighPart;
951     FileTimeToSystemTime( &ft, &st );
952     sprintfW( ret, fmtW, st.wYear, st.wMonth, st.wDay, st.wHour, st.wMinute, st.wSecond, st.wMilliseconds * 1000 );
953     return ret;
954 }
955 static const WCHAR *get_osarchitecture(void)
956 {
957     SYSTEM_INFO info;
958     GetNativeSystemInfo( &info );
959     if (info.u.s.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) return os_64bitW;
960     return os_32bitW;
961 }
962 static WCHAR *get_systemdirectory(void)
963 {
964     void *redir;
965     WCHAR *ret;
966
967     if (!(ret = heap_alloc( MAX_PATH * sizeof(WCHAR) ))) return NULL;
968     Wow64DisableWow64FsRedirection( &redir );
969     GetSystemDirectoryW( ret, MAX_PATH );
970     Wow64RevertWow64FsRedirection( redir );
971     return ret;
972 }
973
974 static void fill_os( struct table *table )
975 {
976     struct record_operatingsystem *rec;
977
978     if (!(table->data = heap_alloc( sizeof(*rec) ))) return;
979
980     rec = (struct record_operatingsystem *)table->data;
981     rec->caption         = os_captionW;
982     rec->csdversion      = os_csdversionW;
983     rec->lastbootuptime  = get_lastbootuptime();
984     rec->osarchitecture  = get_osarchitecture();
985     rec->oslanguage      = MAKELANGID( LANG_ENGLISH, SUBLANG_ENGLISH_US );
986     rec->systemdirectory = get_systemdirectory();
987
988     TRACE("created 1 row\n");
989     table->num_rows = 1;
990 }
991
992 static const WCHAR *get_service_type( DWORD type )
993 {
994     static const WCHAR filesystem_driverW[] =
995         {'F','i','l','e',' ','S','y','s','t','e','m',' ','D','r','i','v','e','r',0};
996     static const WCHAR kernel_driverW[] =
997         {'K','e','r','n','e','l',' ','D','r','i','v','e','r',0};
998     static const WCHAR own_processW[] =
999         {'O','w','n',' ','P','r','o','c','e','s','s',0};
1000     static const WCHAR share_processW[] =
1001         {'S','h','a','r','e',' ','P','r','o','c','e','s','s',0};
1002
1003     if (type & SERVICE_KERNEL_DRIVER)            return kernel_driverW;
1004     else if (type & SERVICE_FILE_SYSTEM_DRIVER)  return filesystem_driverW;
1005     else if (type & SERVICE_WIN32_OWN_PROCESS)   return own_processW;
1006     else if (type & SERVICE_WIN32_SHARE_PROCESS) return share_processW;
1007     else ERR("unhandled type 0x%08x\n", type);
1008     return NULL;
1009 }
1010 static const WCHAR *get_service_state( DWORD state )
1011 {
1012     static const WCHAR runningW[] =
1013         {'R','u','n','n','i','n','g',0};
1014     static const WCHAR start_pendingW[] =
1015         {'S','t','a','r','t',' ','P','e','n','d','i','n','g',0};
1016     static const WCHAR stop_pendingW[] =
1017         {'S','t','o','p',' ','P','e','n','d','i','n','g',0};
1018     static const WCHAR stoppedW[] =
1019         {'S','t','o','p','p','e','d',0};
1020     static const WCHAR unknownW[] =
1021         {'U','n','k','n','o','w','n',0};
1022
1023     switch (state)
1024     {
1025     case SERVICE_STOPPED:       return stoppedW;
1026     case SERVICE_START_PENDING: return start_pendingW;
1027     case SERVICE_STOP_PENDING:  return stop_pendingW;
1028     case SERVICE_RUNNING:       return runningW;
1029     default:
1030         ERR("unknown state %u\n", state);
1031         return unknownW;
1032     }
1033 }
1034
1035 static const WCHAR *get_service_startmode( DWORD mode )
1036 {
1037     static const WCHAR bootW[] = {'B','o','o','t',0};
1038     static const WCHAR systemW[] = {'S','y','s','t','e','m',0};
1039     static const WCHAR autoW[] = {'A','u','t','o',0};
1040     static const WCHAR manualW[] = {'M','a','n','u','a','l',0};
1041     static const WCHAR disabledW[] = {'D','i','s','a','b','l','e','d',0};
1042     static const WCHAR unknownW[] = {'U','n','k','n','o','w','n',0};
1043
1044     switch (mode)
1045     {
1046     case SERVICE_BOOT_START:   return bootW;
1047     case SERVICE_SYSTEM_START: return systemW;
1048     case SERVICE_AUTO_START:   return autoW;
1049     case SERVICE_DEMAND_START: return manualW;
1050     case SERVICE_DISABLED:     return disabledW;
1051     default:
1052         ERR("unknown mode 0x%x\n", mode);
1053         return unknownW;
1054     }
1055 }
1056
1057 static QUERY_SERVICE_CONFIGW *query_service_config( SC_HANDLE manager, const WCHAR *name )
1058 {
1059     QUERY_SERVICE_CONFIGW *config = NULL;
1060     SC_HANDLE service;
1061     DWORD size;
1062
1063     if (!(service = OpenServiceW( manager, name, SERVICE_QUERY_CONFIG ))) return NULL;
1064     QueryServiceConfigW( service, NULL, 0, &size );
1065     if (GetLastError() != ERROR_INSUFFICIENT_BUFFER) goto done;
1066     if (!(config = heap_alloc( size ))) goto done;
1067     if (QueryServiceConfigW( service, config, size, &size )) goto done;
1068     heap_free( config );
1069     config = NULL;
1070
1071 done:
1072     CloseServiceHandle( service );
1073     return config;
1074 }
1075
1076 static void fill_service( struct table *table )
1077 {
1078     struct record_service *rec;
1079     SC_HANDLE manager;
1080     ENUM_SERVICE_STATUS_PROCESSW *tmp, *services = NULL;
1081     SERVICE_STATUS_PROCESS *status;
1082     WCHAR sysnameW[MAX_COMPUTERNAME_LENGTH + 1];
1083     DWORD len = sizeof(sysnameW) / sizeof(sysnameW[0]);
1084     UINT i, num_rows = 0, offset = 0, size = 256, needed, count;
1085     BOOL ret;
1086
1087     if (!(manager = OpenSCManagerW( NULL, NULL, SC_MANAGER_ENUMERATE_SERVICE ))) return;
1088     if (!(services = heap_alloc( size ))) goto done;
1089
1090     ret = EnumServicesStatusExW( manager, SC_ENUM_PROCESS_INFO, SERVICE_TYPE_ALL,
1091                                  SERVICE_STATE_ALL, (BYTE *)services, size, &needed,
1092                                  &count, NULL, NULL );
1093     if (!ret)
1094     {
1095         if (GetLastError() != ERROR_MORE_DATA) goto done;
1096         size = needed;
1097         if (!(tmp = heap_realloc( services, size ))) goto done;
1098         services = tmp;
1099         ret = EnumServicesStatusExW( manager, SC_ENUM_PROCESS_INFO, SERVICE_TYPE_ALL,
1100                                      SERVICE_STATE_ALL, (BYTE *)services, size, &needed,
1101                                      &count, NULL, NULL );
1102         if (!ret) goto done;
1103     }
1104     if (!(table->data = heap_alloc( sizeof(*rec) * count ))) goto done;
1105
1106     GetComputerNameW( sysnameW, &len );
1107
1108     for (i = 0; i < count; i++)
1109     {
1110         QUERY_SERVICE_CONFIGW *config;
1111
1112         if (!(config = query_service_config( manager, services[i].lpServiceName ))) continue;
1113
1114         status = &services[i].ServiceStatusProcess;
1115         rec = (struct record_service *)(table->data + offset);
1116         rec->accept_pause   = (status->dwControlsAccepted & SERVICE_ACCEPT_PAUSE_CONTINUE) ? -1 : 0;
1117         rec->accept_stop    = (status->dwControlsAccepted & SERVICE_ACCEPT_STOP) ? -1 : 0;
1118         rec->displayname    = heap_strdupW( services[i].lpDisplayName );
1119         rec->name           = heap_strdupW( services[i].lpServiceName );
1120         rec->process_id     = status->dwProcessId;
1121         rec->servicetype    = get_service_type( status->dwServiceType );
1122         rec->startmode      = get_service_startmode( config->dwStartType );
1123         rec->state          = get_service_state( status->dwCurrentState );
1124         rec->systemname     = heap_strdupW( sysnameW );
1125         rec->pause_service  = service_pause_service;
1126         rec->resume_service = service_resume_service;
1127         rec->start_service  = service_start_service;
1128         rec->stop_service   = service_stop_service;
1129         heap_free( config );
1130         offset += sizeof(*rec);
1131         num_rows++;
1132     }
1133
1134     TRACE("created %u rows\n", num_rows);
1135     table->num_rows = num_rows;
1136
1137 done:
1138     CloseServiceHandle( manager );
1139     heap_free( services );
1140 }
1141
1142 static UINT32 get_bits_per_pixel( UINT *hres, UINT *vres )
1143 {
1144     HDC hdc = GetDC( NULL );
1145     UINT32 ret;
1146
1147     if (!hdc) return 32;
1148     ret = GetDeviceCaps( hdc, BITSPIXEL );
1149     *hres = GetDeviceCaps( hdc, HORZRES );
1150     *vres = GetDeviceCaps( hdc, VERTRES );
1151     ReleaseDC( NULL, hdc );
1152     return ret;
1153 }
1154
1155 static void fill_videocontroller( struct table *table )
1156 {
1157
1158     struct record_videocontroller *rec;
1159     HRESULT hr;
1160     IDXGIFactory *factory = NULL;
1161     IDXGIAdapter *adapter = NULL;
1162     DXGI_ADAPTER_DESC desc;
1163     UINT hres = 1024, vres = 768, vidmem = 512 * 1024 * 1024;
1164     const WCHAR *name = videocontroller_deviceidW;
1165
1166     if (!(table->data = heap_alloc( sizeof(*rec) ))) return;
1167
1168     hr = CreateDXGIFactory( &IID_IDXGIFactory, (void **)&factory );
1169     if (FAILED(hr)) goto done;
1170
1171     hr = IDXGIFactory_EnumAdapters( factory, 0, &adapter );
1172     if (FAILED(hr)) goto done;
1173
1174     hr = IDXGIAdapter_GetDesc( adapter, &desc );
1175     if (SUCCEEDED(hr))
1176     {
1177         vidmem = desc.DedicatedVideoMemory;
1178         name   = desc.Description;
1179     }
1180
1181 done:
1182     rec = (struct record_videocontroller *)table->data;
1183     rec->adapter_ram           = vidmem;
1184     rec->current_bitsperpixel  = get_bits_per_pixel( &hres, &vres );
1185     rec->current_horizontalres = hres;
1186     rec->current_verticalres   = vres;
1187     rec->description           = heap_strdupW( name );
1188     rec->device_id             = videocontroller_deviceidW;
1189     rec->name                  = heap_strdupW( name );
1190
1191     TRACE("created 1 row\n");
1192     table->num_rows = 1;
1193
1194     if (adapter) IDXGIAdapter_Release( adapter );
1195     if (factory) IDXGIFactory_Release( factory );
1196 }
1197
1198 static struct table builtin_classes[] =
1199 {
1200     { class_baseboardW, SIZEOF(col_baseboard), col_baseboard, SIZEOF(data_baseboard), (BYTE *)data_baseboard },
1201     { class_biosW, SIZEOF(col_bios), col_bios, SIZEOF(data_bios), (BYTE *)data_bios },
1202     { class_cdromdriveW, SIZEOF(col_cdromdrive), col_cdromdrive, SIZEOF(data_cdromdrive), (BYTE *)data_cdromdrive },
1203     { class_compsysW, SIZEOF(col_compsys), col_compsys, 0, NULL, fill_compsys },
1204     { class_diskdriveW, SIZEOF(col_diskdrive), col_diskdrive, SIZEOF(data_diskdrive), (BYTE *)data_diskdrive },
1205     { class_logicaldiskW, SIZEOF(col_logicaldisk), col_logicaldisk, 0, NULL, fill_logicaldisk },
1206     { class_networkadapterW, SIZEOF(col_networkadapter), col_networkadapter, 0, NULL, fill_networkadapter },
1207     { class_osW, SIZEOF(col_os), col_os, 0, NULL, fill_os },
1208     { class_paramsW, SIZEOF(col_params), col_params, SIZEOF(data_params), (BYTE *)data_params },
1209     { class_processW, SIZEOF(col_process), col_process, 0, NULL, fill_process },
1210     { class_processorW, SIZEOF(col_processor), col_processor, 0, NULL, fill_processor },
1211     { class_serviceW, SIZEOF(col_service), col_service, 0, NULL, fill_service },
1212     { class_sounddeviceW, SIZEOF(col_sounddevice), col_sounddevice, SIZEOF(data_sounddevice), (BYTE *)data_sounddevice },
1213     { class_stdregprovW, SIZEOF(col_stdregprov), col_stdregprov, SIZEOF(data_stdregprov), (BYTE *)data_stdregprov },
1214     { class_videocontrollerW, SIZEOF(col_videocontroller), col_videocontroller, 0, NULL, fill_videocontroller }
1215 };
1216
1217 void init_table_list( void )
1218 {
1219     static struct list tables = LIST_INIT( tables );
1220     UINT i;
1221
1222     for (i = 0; i < SIZEOF(builtin_classes); i++)
1223     {
1224         list_add_tail( &tables, &builtin_classes[i].entry );
1225     }
1226     table_list = &tables;
1227 }