Release 1.5.29.
[wine] / dlls / winmm / tests / wave.c
1 /*
2  * Test winmm sound playback in each sound format
3  *
4  * Copyright (c) 2002 Francois Gouget
5  *
6  * This library is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * This library is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with this library; if not, write to the Free Software
18  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19  */
20
21 #include <stdarg.h>
22 #include <stdio.h>
23 #include <stdlib.h>
24 #include <math.h>
25
26 #include "wine/test.h"
27 #include "windef.h"
28 #include "winbase.h"
29 #include "winuser.h"
30 #include "winnls.h"
31 #include "mmsystem.h"
32 #define NOBITMAP
33 #include "mmddk.h"
34 #include "mmreg.h"
35 #include "ks.h"
36 #include "ksguid.h"
37 #include "ksmedia.h"
38
39 #include "winmm_test.h"
40
41 static DWORD g_tid;
42
43 static void test_multiple_waveopens(void)
44 {
45     HWAVEOUT handle1, handle2;
46     MMRESULT ret;
47     WAVEFORMATEX wfx;
48
49     wfx.wFormatTag = WAVE_FORMAT_PCM;
50     wfx.nChannels = 1;
51     wfx.nSamplesPerSec = 11025;
52     wfx.nBlockAlign = 1;
53     wfx.nAvgBytesPerSec = wfx.nSamplesPerSec * wfx.nBlockAlign;
54     wfx.wBitsPerSample = 8;
55     wfx.cbSize = 0;
56
57     ret = waveOutOpen(&handle1, 0, &wfx, 0, 0, 0);
58     if (ret != MMSYSERR_NOERROR)
59     {
60         skip("Could not do the duplicate waveopen test\n");
61         return;
62     }
63
64     ret = waveOutOpen(&handle2, 0, &wfx, 0, 0, 0);
65     /* Modern Windows allows for wave-out devices to be opened multiple times.
66      * Some Wine audio drivers allow that and some don't.  To avoid false alarms
67      * for those that do, don't "todo_wine ok(...)" on success.
68      */
69     if (ret != MMSYSERR_NOERROR)
70     {
71         todo_wine ok(ret == MMSYSERR_NOERROR || broken(ret == MMSYSERR_ALLOCATED), /* winME */
72                      "second waveOutOpen returns: %x\n", ret);
73     }
74     else
75         waveOutClose(handle2);
76
77     waveOutClose(handle1);
78 }
79
80 /*
81  * Note that in most of this test we may get MMSYSERR_BADDEVICEID errors
82  * at about any time if the user starts another application that uses the
83  * sound device. So we should not report these as test failures.
84  *
85  * This test can play a test tone. But this only makes sense if someone
86  * is going to carefully listen to it, and would only bother everyone else.
87  * So this is only done if the test is being run in interactive mode.
88  */
89
90 #define PI 3.14159265358979323846
91 static char* wave_generate_la(WAVEFORMATEX* wfx, double duration, DWORD* size)
92 {
93     int i,j;
94     int nb_samples;
95     char* buf;
96     char* b;
97     WAVEFORMATEXTENSIBLE *wfex = (WAVEFORMATEXTENSIBLE*)wfx;
98
99     nb_samples=(int)(duration*wfx->nSamplesPerSec);
100     *size=nb_samples*wfx->nBlockAlign;
101     b=buf=HeapAlloc(GetProcessHeap(), 0, *size);
102     for (i=0;i<nb_samples;i++) {
103         double y=sin(440.0*2*PI*i/wfx->nSamplesPerSec);
104         if (wfx->wBitsPerSample==8) {
105             unsigned char sample=(unsigned char)((double)127.5*(y+1.0));
106             for (j = 0; j < wfx->nChannels; j++)
107                 *b++=sample;
108         } else if (wfx->wBitsPerSample==16) {
109             signed short sample=(signed short)((double)32767.5*y-0.5);
110             for (j = 0; j < wfx->nChannels; j++) {
111                 b[0]=sample & 0xff;
112                 b[1]=sample >> 8;
113                 b+=2;
114             }
115         } else if (wfx->wBitsPerSample==24) {
116             signed int sample=(signed int)(((double)0x7fffff+0.5)*y-0.5);
117             for (j = 0; j < wfx->nChannels; j++) {
118                 b[0]=sample & 0xff;
119                 b[1]=(sample >> 8) & 0xff;
120                 b[2]=(sample >> 16) & 0xff;
121                 b+=3;
122             }
123         } else if ((wfx->wBitsPerSample==32) && ((wfx->wFormatTag == WAVE_FORMAT_PCM) ||
124             ((wfx->wFormatTag == WAVE_FORMAT_EXTENSIBLE) &&
125             IsEqualGUID(&wfex->SubFormat, &KSDATAFORMAT_SUBTYPE_PCM)))) {
126             signed int sample=(signed int)(((double)0x7fffffff+0.5)*y-0.5);
127             for (j = 0; j < wfx->nChannels; j++) {
128                 b[0]=sample & 0xff;
129                 b[1]=(sample >> 8) & 0xff;
130                 b[2]=(sample >> 16) & 0xff;
131                 b[3]=(sample >> 24) & 0xff;
132                 b+=4;
133             }
134         } else if ((wfx->wBitsPerSample==32) && (wfx->wFormatTag == WAVE_FORMAT_EXTENSIBLE) &&
135             IsEqualGUID(&wfex->SubFormat, &KSDATAFORMAT_SUBTYPE_IEEE_FLOAT)) {
136             union { float f; char c[4]; } sample;
137             sample.f=(float)y;
138             for (j = 0; j < wfx->nChannels; j++) {
139                 b[0]=sample.c[0];
140                 b[1]=sample.c[1];
141                 b[2]=sample.c[2];
142                 b[3]=sample.c[3];
143                 b+=4;
144             }
145         }
146     }
147     return buf;
148 }
149
150 static char* wave_generate_silence(WAVEFORMATEX* wfx, double duration, DWORD* size)
151 {
152     int i,j;
153     int nb_samples;
154     char* buf;
155     char* b;
156     WAVEFORMATEXTENSIBLE *wfex = (WAVEFORMATEXTENSIBLE*)wfx;
157
158     nb_samples=(int)(duration*wfx->nSamplesPerSec);
159     *size=nb_samples*wfx->nBlockAlign;
160     b=buf=HeapAlloc(GetProcessHeap(), 0, *size);
161     for (i=0;i<nb_samples;i++) {
162         if (wfx->wBitsPerSample==8) {
163             for (j = 0; j < wfx->nChannels; j++)
164                 *b++=128;
165         } else if (wfx->wBitsPerSample==16) {
166             for (j = 0; j < wfx->nChannels; j++) {
167                 b[0]=0;
168                 b[1]=0;
169                 b+=2;
170             }
171         } else if (wfx->wBitsPerSample==24) {
172             for (j = 0; j < wfx->nChannels; j++) {
173                 b[0]=0;
174                 b[1]=0;
175                 b[2]=0;
176                 b+=3;
177             }
178         } else if ((wfx->wBitsPerSample==32) && ((wfx->wFormatTag == WAVE_FORMAT_PCM) ||
179             ((wfx->wFormatTag == WAVE_FORMAT_EXTENSIBLE) &&
180             IsEqualGUID(&wfex->SubFormat, &KSDATAFORMAT_SUBTYPE_PCM)))) {
181             for (j = 0; j < wfx->nChannels; j++) {
182                 b[0]=0;
183                 b[1]=0;
184                 b[2]=0;
185                 b[3]=0;
186                 b+=4;
187             }
188         } else if ((wfx->wBitsPerSample==32) && (wfx->wFormatTag == WAVE_FORMAT_EXTENSIBLE) &&
189             IsEqualGUID(&wfex->SubFormat, &KSDATAFORMAT_SUBTYPE_IEEE_FLOAT)) {
190             union { float f; char c[4]; } sample;
191             sample.f=0;
192             for (j = 0; j < wfx->nChannels; j++) {
193                 b[0]=sample.c[0];
194                 b[1]=sample.c[1];
195                 b[2]=sample.c[2];
196                 b[3]=sample.c[3];
197                 b+=4;
198             }
199         }
200     }
201     return buf;
202 }
203
204 const char * dev_name(int device)
205 {
206     static char name[16];
207     if (device == WAVE_MAPPER)
208         return "WAVE_MAPPER";
209     sprintf(name, "%d", device);
210     return name;
211 }
212
213 const char* mmsys_error(MMRESULT error)
214 {
215 #define ERR_TO_STR(dev) case dev: return #dev
216     static char unknown[32];
217     switch (error) {
218     ERR_TO_STR(MMSYSERR_NOERROR);
219     ERR_TO_STR(MMSYSERR_ERROR);
220     ERR_TO_STR(MMSYSERR_BADDEVICEID);
221     ERR_TO_STR(MMSYSERR_NOTENABLED);
222     ERR_TO_STR(MMSYSERR_ALLOCATED);
223     ERR_TO_STR(MMSYSERR_INVALHANDLE);
224     ERR_TO_STR(MMSYSERR_NODRIVER);
225     ERR_TO_STR(MMSYSERR_NOMEM);
226     ERR_TO_STR(MMSYSERR_NOTSUPPORTED);
227     ERR_TO_STR(MMSYSERR_BADERRNUM);
228     ERR_TO_STR(MMSYSERR_INVALFLAG);
229     ERR_TO_STR(MMSYSERR_INVALPARAM);
230     ERR_TO_STR(WAVERR_BADFORMAT);
231     ERR_TO_STR(WAVERR_STILLPLAYING);
232     ERR_TO_STR(WAVERR_UNPREPARED);
233     ERR_TO_STR(WAVERR_SYNC);
234     ERR_TO_STR(MIDIERR_UNPREPARED);
235     ERR_TO_STR(MIDIERR_STILLPLAYING);
236     ERR_TO_STR(MIDIERR_NOTREADY);
237     ERR_TO_STR(MIDIERR_NODEVICE);
238     ERR_TO_STR(MIDIERR_INVALIDSETUP);
239     ERR_TO_STR(TIMERR_NOCANDO);
240     ERR_TO_STR(TIMERR_STRUCT);
241     ERR_TO_STR(JOYERR_PARMS);
242     ERR_TO_STR(JOYERR_NOCANDO);
243     ERR_TO_STR(JOYERR_UNPLUGGED);
244     ERR_TO_STR(MIXERR_INVALLINE);
245     ERR_TO_STR(MIXERR_INVALCONTROL);
246     ERR_TO_STR(MIXERR_INVALVALUE);
247     ERR_TO_STR(MMIOERR_FILENOTFOUND);
248     ERR_TO_STR(MMIOERR_OUTOFMEMORY);
249     ERR_TO_STR(MMIOERR_CANNOTOPEN);
250     ERR_TO_STR(MMIOERR_CANNOTCLOSE);
251     ERR_TO_STR(MMIOERR_CANNOTREAD);
252     ERR_TO_STR(MMIOERR_CANNOTWRITE);
253     ERR_TO_STR(MMIOERR_CANNOTSEEK);
254     ERR_TO_STR(MMIOERR_CANNOTEXPAND);
255     ERR_TO_STR(MMIOERR_CHUNKNOTFOUND);
256     ERR_TO_STR(MMIOERR_UNBUFFERED);
257     }
258     sprintf(unknown, "Unknown(0x%08x)", error);
259     return unknown;
260 #undef ERR_TO_STR
261 }
262
263 const char* wave_out_error(MMRESULT error)
264 {
265     static char msg[1024];
266     static char long_msg[1100];
267     MMRESULT rc;
268
269     rc = waveOutGetErrorText(error, msg, sizeof(msg));
270     if (rc != MMSYSERR_NOERROR)
271         sprintf(long_msg, "waveOutGetErrorText(%x) failed with error %x",
272                 error, rc);
273     else
274         sprintf(long_msg, "%s(%s)", mmsys_error(error), msg);
275     return long_msg;
276 }
277
278 const char * wave_open_flags(DWORD flags)
279 {
280     static char msg[1024];
281     int first = TRUE;
282     msg[0] = 0;
283     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_EVENT) {
284         strcat(msg, "CALLBACK_EVENT");
285         first = FALSE;
286     }
287     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_FUNCTION) {
288         if (!first) strcat(msg, "|");
289         strcat(msg, "CALLBACK_FUNCTION");
290         first = FALSE;
291     }
292     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_NULL) {
293         if (!first) strcat(msg, "|");
294         strcat(msg, "CALLBACK_NULL");
295         first = FALSE;
296     }
297     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_THREAD) {
298         if (!first) strcat(msg, "|");
299         strcat(msg, "CALLBACK_THREAD");
300         first = FALSE;
301     }
302     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_WINDOW) {
303         if (!first) strcat(msg, "|");
304         strcat(msg, "CALLBACK_WINDOW");
305         first = FALSE;
306     }
307     if ((flags & WAVE_ALLOWSYNC) == WAVE_ALLOWSYNC) {
308         if (!first) strcat(msg, "|");
309         strcat(msg, "WAVE_ALLOWSYNC");
310         first = FALSE;
311     }
312     if ((flags & WAVE_FORMAT_DIRECT) == WAVE_FORMAT_DIRECT) {
313         if (!first) strcat(msg, "|");
314         strcat(msg, "WAVE_FORMAT_DIRECT");
315         first = FALSE;
316     }
317     if ((flags & WAVE_FORMAT_QUERY) == WAVE_FORMAT_QUERY) {
318         if (!first) strcat(msg, "|");
319         strcat(msg, "WAVE_FORMAT_QUERY");
320         first = FALSE;
321     }
322     if ((flags & WAVE_MAPPED) == WAVE_MAPPED) {
323         if (!first) strcat(msg, "|");
324         strcat(msg, "WAVE_MAPPED");
325     }
326     return msg;
327 }
328
329 static const char * wave_header_flags(DWORD flags)
330 {
331 #define WHDR_MASK (WHDR_BEGINLOOP|WHDR_DONE|WHDR_ENDLOOP|WHDR_INQUEUE|WHDR_PREPARED)
332     static char msg[1024];
333     int first = TRUE;
334     msg[0] = 0;
335     if (flags & WHDR_BEGINLOOP) {
336         strcat(msg, "WHDR_BEGINLOOP");
337         first = FALSE;
338     }
339     if (flags & WHDR_DONE) {
340         if (!first) strcat(msg, " ");
341         strcat(msg, "WHDR_DONE");
342         first = FALSE;
343     }
344     if (flags & WHDR_ENDLOOP) {
345         if (!first) strcat(msg, " ");
346         strcat(msg, "WHDR_ENDLOOP");
347         first = FALSE;
348     }
349     if (flags & WHDR_INQUEUE) {
350         if (!first) strcat(msg, " ");
351         strcat(msg, "WHDR_INQUEUE");
352         first = FALSE;
353     }
354     if (flags & WHDR_PREPARED) {
355         if (!first) strcat(msg, " ");
356         strcat(msg, "WHDR_PREPARED");
357         first = FALSE;
358     }
359     if (flags & ~WHDR_MASK) {
360         char temp[32];
361         sprintf(temp, "UNKNOWN(0x%08x)", flags & ~WHDR_MASK);
362         if (!first) strcat(msg, " ");
363         strcat(msg, temp);
364     }
365     return msg;
366 }
367
368 static const char * wave_out_caps(DWORD dwSupport)
369 {
370 #define ADD_FLAG(f) if (dwSupport & f) strcat(msg, " " #f)
371     static char msg[256];
372     msg[0] = 0;
373
374     ADD_FLAG(WAVECAPS_PITCH);
375     ADD_FLAG(WAVECAPS_PLAYBACKRATE);
376     ADD_FLAG(WAVECAPS_VOLUME);
377     ADD_FLAG(WAVECAPS_LRVOLUME);
378     ADD_FLAG(WAVECAPS_SYNC);
379     ADD_FLAG(WAVECAPS_SAMPLEACCURATE);
380
381     return msg[0] ? msg + 1 : "";
382 #undef ADD_FLAG
383 }
384
385 const char * wave_time_format(UINT type)
386 {
387     static char msg[32];
388 #define TIME_FORMAT(f) case f: return #f
389     switch (type) {
390     TIME_FORMAT(TIME_MS);
391     TIME_FORMAT(TIME_SAMPLES);
392     TIME_FORMAT(TIME_BYTES);
393     TIME_FORMAT(TIME_SMPTE);
394     TIME_FORMAT(TIME_MIDI);
395     TIME_FORMAT(TIME_TICKS);
396     }
397 #undef TIME_FORMAT
398     sprintf(msg, "Unknown(0x%04x)", type);
399     return msg;
400 }
401
402 const char * get_format_str(WORD format)
403 {
404     static char msg[32];
405 #define WAVE_FORMAT(f) case f: return #f
406     switch (format) {
407     WAVE_FORMAT(WAVE_FORMAT_PCM);
408     WAVE_FORMAT(WAVE_FORMAT_ADPCM);
409     WAVE_FORMAT(WAVE_FORMAT_IBM_CVSD);
410     WAVE_FORMAT(WAVE_FORMAT_ALAW);
411     WAVE_FORMAT(WAVE_FORMAT_MULAW);
412     WAVE_FORMAT(WAVE_FORMAT_OKI_ADPCM);
413     WAVE_FORMAT(WAVE_FORMAT_IMA_ADPCM);
414     WAVE_FORMAT(WAVE_FORMAT_MEDIASPACE_ADPCM);
415     WAVE_FORMAT(WAVE_FORMAT_SIERRA_ADPCM);
416     WAVE_FORMAT(WAVE_FORMAT_G723_ADPCM);
417     WAVE_FORMAT(WAVE_FORMAT_DIGISTD);
418     WAVE_FORMAT(WAVE_FORMAT_DIGIFIX);
419     WAVE_FORMAT(WAVE_FORMAT_DIALOGIC_OKI_ADPCM);
420     WAVE_FORMAT(WAVE_FORMAT_YAMAHA_ADPCM);
421     WAVE_FORMAT(WAVE_FORMAT_SONARC);
422     WAVE_FORMAT(WAVE_FORMAT_DSPGROUP_TRUESPEECH);
423     WAVE_FORMAT(WAVE_FORMAT_ECHOSC1);
424     WAVE_FORMAT(WAVE_FORMAT_AUDIOFILE_AF36);
425     WAVE_FORMAT(WAVE_FORMAT_APTX);
426     WAVE_FORMAT(WAVE_FORMAT_AUDIOFILE_AF10);
427     WAVE_FORMAT(WAVE_FORMAT_DOLBY_AC2);
428     WAVE_FORMAT(WAVE_FORMAT_GSM610);
429     WAVE_FORMAT(WAVE_FORMAT_ANTEX_ADPCME);
430     WAVE_FORMAT(WAVE_FORMAT_CONTROL_RES_VQLPC);
431     WAVE_FORMAT(WAVE_FORMAT_DIGIREAL);
432     WAVE_FORMAT(WAVE_FORMAT_DIGIADPCM);
433     WAVE_FORMAT(WAVE_FORMAT_CONTROL_RES_CR10);
434     WAVE_FORMAT(WAVE_FORMAT_NMS_VBXADPCM);
435     WAVE_FORMAT(WAVE_FORMAT_G721_ADPCM);
436     WAVE_FORMAT(WAVE_FORMAT_MPEG);
437     WAVE_FORMAT(WAVE_FORMAT_MPEGLAYER3);
438     WAVE_FORMAT(WAVE_FORMAT_CREATIVE_ADPCM);
439     WAVE_FORMAT(WAVE_FORMAT_CREATIVE_FASTSPEECH8);
440     WAVE_FORMAT(WAVE_FORMAT_CREATIVE_FASTSPEECH10);
441     WAVE_FORMAT(WAVE_FORMAT_FM_TOWNS_SND);
442     WAVE_FORMAT(WAVE_FORMAT_OLIGSM);
443     WAVE_FORMAT(WAVE_FORMAT_OLIADPCM);
444     WAVE_FORMAT(WAVE_FORMAT_OLICELP);
445     WAVE_FORMAT(WAVE_FORMAT_OLISBC);
446     WAVE_FORMAT(WAVE_FORMAT_OLIOPR);
447     WAVE_FORMAT(WAVE_FORMAT_DEVELOPMENT);
448     WAVE_FORMAT(WAVE_FORMAT_EXTENSIBLE);
449     }
450 #undef WAVE_FORMAT
451     sprintf(msg, "Unknown(0x%04x)", format);
452     return msg;
453 }
454
455 DWORD bytes_to_samples(DWORD bytes, LPWAVEFORMATEX pwfx)
456 {
457     return bytes / pwfx->nBlockAlign;
458 }
459
460 DWORD bytes_to_ms(DWORD bytes, LPWAVEFORMATEX pwfx)
461 {
462     return bytes_to_samples(bytes, pwfx) * 1000 / pwfx->nSamplesPerSec;
463 }
464
465 DWORD time_to_bytes(LPMMTIME mmtime, LPWAVEFORMATEX pwfx)
466 {
467     if (mmtime->wType == TIME_BYTES)
468         return mmtime->u.cb;
469     else if (mmtime->wType == TIME_SAMPLES)
470         return mmtime->u.sample * pwfx->nBlockAlign;
471     else if (mmtime->wType == TIME_MS)
472         return mmtime->u.ms * pwfx->nAvgBytesPerSec / 1000;
473     else if (mmtime->wType == TIME_SMPTE)
474         return ((mmtime->u.smpte.hour * 60 * 60) +
475                 (mmtime->u.smpte.min * 60) +
476                 (mmtime->u.smpte.sec)) * pwfx->nAvgBytesPerSec +
477                 mmtime->u.smpte.frame  * pwfx->nAvgBytesPerSec / 30;
478
479     trace("FIXME: time_to_bytes() type not supported\n");
480     return -1;
481 }
482
483 static void check_position(int device, HWAVEOUT wout, DWORD bytes,
484                            LPWAVEFORMATEX pwfx )
485 {
486     MMTIME mmtime;
487     MMRESULT rc;
488     DWORD returned;
489
490     mmtime.wType = TIME_BYTES;
491     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
492     ok(rc==MMSYSERR_NOERROR,
493        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
494     if (mmtime.wType != TIME_BYTES && winetest_debug > 1)
495         trace("waveOutGetPosition(%s): TIME_BYTES not supported, returned %s\n",
496               dev_name(device),wave_time_format(mmtime.wType));
497     returned = time_to_bytes(&mmtime, pwfx);
498     ok(returned == bytes, "waveOutGetPosition(%s): returned %d bytes, "
499        "should be %d\n", dev_name(device), returned, bytes);
500
501     mmtime.wType = TIME_SAMPLES;
502     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
503     ok(rc==MMSYSERR_NOERROR,
504        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
505     if (mmtime.wType != TIME_SAMPLES && winetest_debug > 1)
506         trace("waveOutGetPosition(%s): TIME_SAMPLES not supported, "
507               "returned %s\n",dev_name(device),wave_time_format(mmtime.wType));
508     returned = time_to_bytes(&mmtime, pwfx);
509     ok(returned == bytes, "waveOutGetPosition(%s): returned %d samples "
510        "(%d bytes), should be %d (%d bytes)\n", dev_name(device),
511        bytes_to_samples(returned, pwfx), returned,
512        bytes_to_samples(bytes, pwfx), bytes);
513
514     mmtime.wType = TIME_MS;
515     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
516     ok(rc==MMSYSERR_NOERROR,
517        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
518     if (mmtime.wType != TIME_MS && winetest_debug > 1)
519         trace("waveOutGetPosition(%s): TIME_MS not supported, returned %s\n",
520               dev_name(device), wave_time_format(mmtime.wType));
521     returned = time_to_bytes(&mmtime, pwfx);
522     ok(returned == bytes, "waveOutGetPosition(%s): returned %d ms, "
523        "(%d bytes), should be %d (%d bytes)\n", dev_name(device),
524        bytes_to_ms(returned, pwfx), returned,
525        bytes_to_ms(bytes, pwfx), bytes);
526
527     mmtime.wType = TIME_SMPTE;
528     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
529     ok(rc==MMSYSERR_NOERROR,
530        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
531     if (mmtime.wType != TIME_SMPTE && winetest_debug > 1)
532         trace("waveOutGetPosition(%s): TIME_SMPTE not supported, returned %s\n",
533               dev_name(device),wave_time_format(mmtime.wType));
534     returned = time_to_bytes(&mmtime, pwfx);
535     ok(returned == bytes, "waveOutGetPosition(%s): SMPTE test failed\n",
536        dev_name(device));
537
538     mmtime.wType = TIME_MIDI;
539     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
540     ok(rc==MMSYSERR_NOERROR,
541        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
542     if (mmtime.wType != TIME_MIDI && winetest_debug > 1)
543         trace("waveOutGetPosition(%s): TIME_MIDI not supported, returned %s\n",
544               dev_name(device),wave_time_format(mmtime.wType));
545     returned = time_to_bytes(&mmtime, pwfx);
546     ok(returned == bytes, "waveOutGetPosition(%s): MIDI test failed\n",
547        dev_name(device));
548
549     mmtime.wType = TIME_TICKS;
550     rc=waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
551     ok(rc==MMSYSERR_NOERROR,
552        "waveOutGetPosition(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
553     if (mmtime.wType != TIME_TICKS && winetest_debug > 1)
554         trace("waveOutGetPosition(%s): TIME_TICKS not supported, returned %s\n",
555               dev_name(device),wave_time_format(mmtime.wType));
556     returned = time_to_bytes(&mmtime, pwfx);
557     ok(returned == bytes, "waveOutGetPosition(%s): TICKS test failed\n",
558        dev_name(device));
559 }
560
561 static void CALLBACK callback_func(HWAVEOUT hwo, UINT uMsg,
562                                    DWORD_PTR dwInstance,
563                                    DWORD dwParam1, DWORD dwParam2)
564 {
565     if(uMsg == WOM_OPEN || uMsg == WOM_CLOSE)
566         ok(GetCurrentThreadId() == g_tid, "Got different thread ID\n");
567     SetEvent((HANDLE)dwInstance);
568 }
569
570 static DWORD WINAPI callback_thread(LPVOID lpParameter)
571 {
572     MSG msg;
573
574     PeekMessageW( &msg, 0, 0, 0, PM_NOREMOVE );  /* make sure the thread has a message queue */
575     SetEvent(lpParameter);
576
577     while (GetMessage(&msg, 0, 0, 0)) {
578         UINT message = msg.message;
579         /* for some reason XP sends a WM_USER message before WOM_OPEN */
580         ok (message == WOM_OPEN || message == WOM_DONE ||
581             message == WOM_CLOSE || message == WM_USER || message == WM_APP,
582             "GetMessage returned unexpected message: %u\n", message);
583         if (message == WOM_OPEN || message == WOM_DONE || message == WOM_CLOSE)
584             SetEvent(lpParameter);
585         else if (message == WM_APP) {
586             SetEvent(lpParameter);
587             return 0;
588         }
589     }
590
591     return 0;
592 }
593
594 static void wave_out_test_deviceOut(int device, double duration,
595                                     int headers, int loops,
596                                     LPWAVEFORMATEX pwfx, DWORD format,
597                                     DWORD flags, LPWAVEOUTCAPS pcaps,
598                                     BOOL interactive, BOOL sine, BOOL pause)
599 {
600     HWAVEOUT wout;
601     HANDLE hevent;
602     WAVEHDR *frags = 0;
603     MMRESULT rc;
604     DWORD volume;
605     WORD nChannels = pwfx->nChannels;
606     WORD wBitsPerSample = pwfx->wBitsPerSample;
607     DWORD nSamplesPerSec = pwfx->nSamplesPerSec;
608     BOOL has_volume = (pcaps->dwSupport & WAVECAPS_VOLUME) != 0;
609     double paused = 0.0;
610     DWORD_PTR callback = 0;
611     DWORD_PTR callback_instance = 0;
612     HANDLE thread = 0;
613     DWORD thread_id;
614     char * buffer;
615     DWORD length;
616     DWORD frag_length;
617     int i, j;
618
619     hevent=CreateEvent(NULL,FALSE,FALSE,NULL);
620     ok(hevent!=NULL,"CreateEvent(): error=%d\n",GetLastError());
621     if (hevent==NULL)
622         return;
623
624     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_EVENT) {
625         callback = (DWORD_PTR)hevent;
626         callback_instance = 0;
627     } else if ((flags & CALLBACK_TYPEMASK) == CALLBACK_FUNCTION) {
628         callback = (DWORD_PTR)callback_func;
629         callback_instance = (DWORD_PTR)hevent;
630     } else if ((flags & CALLBACK_TYPEMASK) == CALLBACK_THREAD) {
631         thread = CreateThread(NULL, 0, callback_thread, hevent, 0, &thread_id);
632         if (thread) {
633             /* make sure thread is running */
634             WaitForSingleObject(hevent,10000);
635             callback = thread_id;
636             callback_instance = 0;
637         } else {
638             trace("CreateThread() failed\n");
639             CloseHandle(hevent);
640             return;
641         }
642     } else if ((flags & CALLBACK_TYPEMASK) == CALLBACK_WINDOW) {
643         trace("CALLBACK_THREAD not implemented\n");
644         CloseHandle(hevent);
645         return;
646     } else if (flags & CALLBACK_TYPEMASK) {
647         trace("Undefined callback type!\n");
648         CloseHandle(hevent);
649         return;
650     } else {
651         trace("CALLBACK_NULL not implemented\n");
652         CloseHandle(hevent);
653         return;
654     }
655     wout=NULL;
656     g_tid = GetCurrentThreadId();
657     rc=waveOutOpen(&wout,device,pwfx,callback,callback_instance,flags);
658     /* Note: Win9x doesn't know WAVE_FORMAT_DIRECT */
659     /* It is acceptable to fail on formats that are not specified to work */
660     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_BADDEVICEID ||
661        rc==MMSYSERR_NOTENABLED || rc==MMSYSERR_NODRIVER ||
662        rc==MMSYSERR_ALLOCATED ||
663        ((rc==WAVERR_BADFORMAT || rc==MMSYSERR_NOTSUPPORTED) &&
664        (flags & WAVE_FORMAT_DIRECT) && !(pcaps->dwFormats & format)) ||
665        ((rc==WAVERR_BADFORMAT || rc==MMSYSERR_NOTSUPPORTED) &&
666        (!(flags & WAVE_FORMAT_DIRECT) || (flags & WAVE_MAPPED)) &&
667        !(pcaps->dwFormats & format)) ||
668        (rc==MMSYSERR_INVALFLAG && (flags & WAVE_FORMAT_DIRECT)),
669        "waveOutOpen(%s): format=%dx%2dx%d flags=%x(%s) rc=%s\n",
670        dev_name(device),pwfx->nSamplesPerSec,pwfx->wBitsPerSample,
671        pwfx->nChannels,CALLBACK_EVENT|flags,
672        wave_open_flags(CALLBACK_EVENT|flags),wave_out_error(rc));
673     if ((rc==WAVERR_BADFORMAT || rc==MMSYSERR_NOTSUPPORTED) &&
674        (flags & WAVE_FORMAT_DIRECT) && (pcaps->dwFormats & format))
675         trace(" Reason: The device lists this format as supported in it's "
676               "capabilities but opening it failed.\n");
677     if ((rc==WAVERR_BADFORMAT || rc==MMSYSERR_NOTSUPPORTED) &&
678        !(pcaps->dwFormats & format))
679         trace("waveOutOpen(%s): format=%dx%2dx%d %s rc=%s failed but format "
680               "not supported so OK.\n", dev_name(device), pwfx->nSamplesPerSec,
681               pwfx->wBitsPerSample,pwfx->nChannels,
682               flags & WAVE_FORMAT_DIRECT ? "flags=WAVE_FORMAT_DIRECT" :
683               flags & WAVE_MAPPED ? "flags=WAVE_MAPPED" : "", mmsys_error(rc));
684     if (rc!=MMSYSERR_NOERROR)
685         goto EXIT;
686
687     rc=WaitForSingleObject(hevent,9000);
688     ok(rc==WAIT_OBJECT_0, "missing WOM_OPEN notification\n");
689
690     ok(pwfx->nChannels==nChannels &&
691        pwfx->wBitsPerSample==wBitsPerSample &&
692        pwfx->nSamplesPerSec==nSamplesPerSec,
693        "got the wrong format: %dx%2dx%d instead of %dx%2dx%d\n",
694        pwfx->nSamplesPerSec, pwfx->wBitsPerSample,
695        pwfx->nChannels, nSamplesPerSec, wBitsPerSample, nChannels);
696
697     frags = HeapAlloc(GetProcessHeap(), 0, headers * sizeof(WAVEHDR));
698
699     if (sine)
700         buffer=wave_generate_la(pwfx,duration / (loops + 1),&length);
701     else
702         buffer=wave_generate_silence(pwfx,duration / (loops + 1),&length);
703
704     rc=waveOutGetVolume(wout,0);
705     ok(rc==MMSYSERR_INVALPARAM,"waveOutGetVolume(%s,0) expected "
706        "MMSYSERR_INVALPARAM, got %s\n", dev_name(device),wave_out_error(rc));
707     rc=waveOutGetVolume(wout,&volume);
708     if (rc == MMSYSERR_NOTSUPPORTED) has_volume = FALSE;
709     ok(has_volume ? rc==MMSYSERR_NOERROR : rc==MMSYSERR_NOTSUPPORTED,
710        "waveOutGetVolume(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
711
712     /* make sure fragment length is a multiple of block size */
713     frag_length = ((length / headers) / pwfx->nBlockAlign) * pwfx->nBlockAlign;
714
715     for (i = 0; i < headers; i++) {
716         frags[i].lpData=buffer + (i * frag_length);
717         if (i != (headers-1))
718             frags[i].dwBufferLength=frag_length;
719         else {
720             /* use remainder of buffer for last fragment */
721             frags[i].dwBufferLength=length - (i * frag_length);
722         }
723         frags[i].dwFlags=0;
724         frags[i].dwLoops=0;
725         rc=waveOutPrepareHeader(wout, &frags[i], sizeof(frags[0]));
726         ok(rc==MMSYSERR_NOERROR,
727            "waveOutPrepareHeader(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
728     }
729
730     if (interactive && rc==MMSYSERR_NOERROR) {
731         trace("Playing %g second %s at %5dx%2dx%d %2d header%s %d loop%s %d bytes %s %s\n",duration,
732               sine ? "440Hz tone" : "silence",pwfx->nSamplesPerSec,
733               pwfx->wBitsPerSample,pwfx->nChannels, headers, headers > 1 ? "s": " ",
734               loops, loops == 1 ? " " : "s", length * (loops + 1),
735               get_format_str(pwfx->wFormatTag),
736               wave_open_flags(flags));
737         if (sine && has_volume && volume == 0)
738             trace("*** Warning the sound is muted, you will not hear the test\n");
739
740         /* Check that the position is 0 at start */
741         check_position(device, wout, 0, pwfx);
742
743         rc=waveOutSetVolume(wout,0x20002000);
744         ok(has_volume ? rc==MMSYSERR_NOERROR : rc==MMSYSERR_NOTSUPPORTED,
745            "waveOutSetVolume(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
746
747         rc=waveOutSetVolume(wout,volume);
748         ok(has_volume ? rc==MMSYSERR_NOERROR : rc==MMSYSERR_NOTSUPPORTED,
749            "waveOutSetVolume(%s): rc=%s\n",dev_name(device),wave_out_error(rc));
750
751         rc=waveOutWrite(wout, &frags[0], sizeof(frags[0]));
752         ok(rc==MMSYSERR_NOERROR,"waveOutWrite(%s): rc=%s\n",
753            dev_name(device),wave_out_error(rc));
754
755         ok(frags[0].dwFlags==(WHDR_PREPARED|WHDR_INQUEUE),
756            "WHDR_INQUEUE WHDR_PREPARED expected, got= %s\n",
757            wave_header_flags(frags[0].dwFlags));
758
759         rc=waveOutWrite(wout, &frags[0], sizeof(frags[0]));
760         ok(rc==WAVERR_STILLPLAYING,
761            "waveOutWrite(%s): WAVE_STILLPLAYING expected, got %s\n",
762            dev_name(device),wave_out_error(rc));
763
764         ok(frags[0].dwFlags==(WHDR_PREPARED|WHDR_INQUEUE),
765            "WHDR_INQUEUE WHDR_PREPARED expected, got %s\n",
766            wave_header_flags(frags[0].dwFlags));
767
768         if (headers == 1 && loops == 0 && pause) {
769             paused = duration / 2;
770             Sleep(paused * 1000);
771             rc=waveOutPause(wout);
772             ok(rc==MMSYSERR_NOERROR,"waveOutPause(%s): rc=%s\n",
773                dev_name(device),wave_out_error(rc));
774             trace("pausing for %g seconds\n", paused);
775             Sleep(paused * 1000);
776             rc=waveOutRestart(wout);
777             ok(rc==MMSYSERR_NOERROR,"waveOutRestart(%s): rc=%s\n",
778                dev_name(device),wave_out_error(rc));
779         }
780
781         for (j = 0; j <= loops; j++) {
782             for (i = 0; i < headers; i++) {
783                 /* don't do last one */
784                 if (!((j == loops) && (i == (headers - 1)))) {
785                     if (j > 0)
786                         frags[(i+1) % headers].dwFlags = WHDR_PREPARED;
787                     rc=waveOutWrite(wout, &frags[(i+1) % headers], sizeof(frags[0]));
788                     ok(rc==MMSYSERR_NOERROR,"waveOutWrite(%s, header[%d]): rc=%s\n",
789                        dev_name(device),(i+1)%headers,wave_out_error(rc));
790                 }
791                 rc=WaitForSingleObject(hevent,8000);
792                 ok(rc==WAIT_OBJECT_0, "missing WOM_DONE notification\n");
793             }
794         }
795
796         for (i = 0; i < headers; i++) {
797             ok(frags[i].dwFlags==(WHDR_DONE|WHDR_PREPARED) ||
798                broken((flags & CALLBACK_TYPEMASK)==CALLBACK_EVENT &&
799                        frags[i].dwFlags==(WHDR_DONE|WHDR_PREPARED|0x1000)), /* < NT4 */
800                "(%02d) WHDR_DONE WHDR_PREPARED expected, got %s\n",
801                i, wave_header_flags(frags[i].dwFlags));
802         }
803         check_position(device, wout, length * (loops + 1), pwfx);
804     }
805
806     for (i = 0; i < headers; i++) {
807         rc=waveOutUnprepareHeader(wout, &frags[i], sizeof(frags[0]));
808         ok(rc==MMSYSERR_NOERROR,
809            "waveOutUnprepareHeader(%s): rc=%s\n",dev_name(device),
810            wave_out_error(rc));
811     }
812
813     ok(frags[0].dwFlags==(interactive ? WHDR_DONE : 0), "dwFlags(%d)=%x\n",device,frags[0].dwFlags);
814
815     frags[0].dwFlags |= WHDR_DONE;
816     rc=waveOutUnprepareHeader(wout, &frags[0], sizeof(frags[0]));
817     ok(rc==MMSYSERR_NOERROR, "waveOutUnprepareHeader(%d): rc=%s\n",device,wave_out_error(rc));
818     ok(frags[0].dwFlags==WHDR_DONE, "dwFlags(%d)=%x\n",device,frags[0].dwFlags);
819
820     frags[0].dwFlags |= WHDR_INQUEUE;
821     rc=waveOutPrepareHeader(wout, &frags[0], sizeof(frags[0]));
822     ok(rc==MMSYSERR_NOERROR, "waveOutPrepareHeader(%d): rc=%s\n",device,wave_out_error(rc));
823     ok(frags[0].dwFlags==WHDR_PREPARED, "dwFlags(%d)=%x\n",device,frags[0].dwFlags);
824
825     frags[0].dwFlags |= WHDR_INQUEUE;
826     rc=waveOutPrepareHeader(wout, &frags[0], sizeof(frags[0]));
827     ok(rc==MMSYSERR_NOERROR, "waveOutPrepareHeader(%d): rc=%s\n",device,wave_out_error(rc));
828     ok(frags[0].dwFlags==(WHDR_PREPARED|WHDR_INQUEUE), "dwFlags(%d)=%x\n",device,frags[0].dwFlags);
829
830     frags[0].dwFlags &= ~(WHDR_INQUEUE|WHDR_DONE);
831     rc=waveOutUnprepareHeader(wout, &frags[0], sizeof(frags[0]));
832     ok(rc==MMSYSERR_NOERROR, "waveOutUnprepareHeader(%d): rc=%s\n",device,wave_out_error(rc));
833     ok(frags[0].dwFlags==0, "dwFlags(%d)=%x\n",device,frags[0].dwFlags);
834
835     rc=waveOutClose(wout);
836     ok(rc==MMSYSERR_NOERROR,"waveOutClose(%s): rc=%s\n",dev_name(device),
837        wave_out_error(rc));
838     if (rc==WAVERR_STILLPLAYING) {
839         /* waveOutReset ought to return all buffers s.t. waveOutClose succeeds */
840         rc=waveOutReset(wout);
841         ok(rc==MMSYSERR_NOERROR,"waveOutReset(%s): rc=%s\n",dev_name(device),
842            wave_out_error(rc));
843
844         for (i = 0; i < headers; i++) {
845             rc=waveOutUnprepareHeader(wout, &frags[i], sizeof(frags[0]));
846             ok(rc==MMSYSERR_NOERROR,
847                "waveOutUnprepareHeader(%s): rc=%s\n",dev_name(device),
848                wave_out_error(rc));
849         }
850         rc=waveOutClose(wout);
851         ok(rc==MMSYSERR_NOERROR,"waveOutClose(%s): rc=%s\n",dev_name(device),
852            wave_out_error(rc));
853     }
854     rc=WaitForSingleObject(hevent,1500);
855     ok(rc==WAIT_OBJECT_0, "missing WOM_CLOSE notification\n");
856
857     wout = (HWAVEOUT)0xdeadf00d;
858     rc=waveOutOpen(&wout,device,pwfx,callback,callback_instance,flags|WAVE_FORMAT_QUERY);
859     ok(rc==MMSYSERR_NOERROR, "WAVE_FORMAT_QUERY(%s): rc=%s\n",dev_name(device),
860        wave_out_error(rc));
861     ok(wout==(HWAVEOUT)0xdeadf00d, "WAVE_FORMAT_QUERY handle %p\n", wout);
862
863     rc=WaitForSingleObject(hevent,20);
864     ok(rc==WAIT_TIMEOUT, "Notification from %s rc=%x\n",
865        wave_open_flags(flags|WAVE_FORMAT_QUERY),rc);
866
867     HeapFree(GetProcessHeap(), 0, buffer);
868 EXIT:
869     if ((flags & CALLBACK_TYPEMASK) == CALLBACK_THREAD) {
870         PostThreadMessage(thread_id, WM_APP, 0, 0);
871         WaitForSingleObject(hevent,10000);
872     }
873     CloseHandle(hevent);
874     HeapFree(GetProcessHeap(), 0, frags);
875 }
876
877 static void wave_out_test_device(UINT_PTR device)
878 {
879     WAVEOUTCAPSA capsA;
880     WAVEOUTCAPSW capsW;
881     WAVEFORMATEX format;
882     WAVEFORMATEXTENSIBLE wfex;
883     IMAADPCMWAVEFORMAT wfa;
884     HWAVEOUT wout;
885     MMRESULT rc;
886     UINT f;
887     WCHAR * nameW;
888     CHAR * nameA;
889     DWORD size;
890     DWORD dwPageSize;
891     BYTE * twoPages;
892     SYSTEM_INFO sSysInfo;
893     DWORD flOldProtect;
894     BOOL res;
895
896     GetSystemInfo(&sSysInfo);
897     dwPageSize = sSysInfo.dwPageSize;
898
899     rc=waveOutGetDevCapsA(device,&capsA,sizeof(capsA));
900     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_BADDEVICEID ||
901        rc==MMSYSERR_NODRIVER,
902        "waveOutGetDevCapsA(%s): failed to get capabilities: rc=%s\n",
903        dev_name(device),wave_out_error(rc));
904     if (rc==MMSYSERR_BADDEVICEID || rc==MMSYSERR_NODRIVER)
905         return;
906
907     rc=waveOutGetDevCapsW(device,&capsW,sizeof(capsW));
908     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_NOTSUPPORTED,
909        "waveOutGetDevCapsW(%s): MMSYSERR_NOERROR or MMSYSERR_NOTSUPPORTED "
910        "expected, got %s\n",dev_name(device),wave_out_error(rc));
911
912     rc=waveOutGetDevCapsA(device,0,sizeof(capsA));
913     ok(rc==MMSYSERR_INVALPARAM,
914        "waveOutGetDevCapsA(%s): MMSYSERR_INVALPARAM expected, "
915        "got %s\n",dev_name(device),wave_out_error(rc));
916
917     rc=waveOutGetDevCapsW(device,0,sizeof(capsW));
918     ok(rc==MMSYSERR_INVALPARAM || rc==MMSYSERR_NOTSUPPORTED,
919        "waveOutGetDevCapsW(%s): MMSYSERR_INVALPARAM or MMSYSERR_NOTSUPPORTED "
920        "expected, got %s\n",dev_name(device),wave_out_error(rc));
921
922     if (0)
923     {
924     /* FIXME: this works on windows but crashes wine */
925     rc=waveOutGetDevCapsA(device,(LPWAVEOUTCAPSA)1,sizeof(capsA));
926     ok(rc==MMSYSERR_INVALPARAM,
927        "waveOutGetDevCapsA(%s): MMSYSERR_INVALPARAM expected, got %s\n",
928        dev_name(device),wave_out_error(rc));
929
930     rc=waveOutGetDevCapsW(device,(LPWAVEOUTCAPSW)1,sizeof(capsW));
931     ok(rc==MMSYSERR_INVALPARAM || rc==MMSYSERR_NOTSUPPORTED,
932        "waveOutGetDevCapsW(%s): MMSYSERR_INVALPARAM or MMSYSERR_NOTSUPPORTED "
933        "expected, got %s\n",dev_name(device),wave_out_error(rc));
934     }
935
936     rc=waveOutGetDevCapsA(device,&capsA,4);
937     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_INVALPARAM,
938        "waveOutGetDevCapsA(%s): MMSYSERR_NOERROR or MMSYSERR_INVALPARAM "
939        "expected, got %s\n", dev_name(device),wave_out_error(rc));
940
941     rc=waveOutGetDevCapsW(device,&capsW,4);
942     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_NOTSUPPORTED ||
943        rc==MMSYSERR_INVALPARAM, /* Vista, W2K8 */
944        "waveOutGetDevCapsW(%s): unexpected return value %s\n",
945        dev_name(device),wave_out_error(rc));
946
947     rc=waveOutMessage((HWAVEOUT)device, DRV_QUERYMAPPABLE, 0, 0);
948     ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_NOTSUPPORTED,
949             "DRV_QUERYMAPPABLE(%s): unexpected return value %s\n",
950             dev_name(device),wave_out_error(rc));
951
952     nameA=NULL;
953     rc=waveOutMessage((HWAVEOUT)device, DRV_QUERYDEVICEINTERFACESIZE,
954                       (DWORD_PTR)&size, 0);
955     ok(rc==MMSYSERR_NOERROR || broken(rc==MMSYSERR_INVALPARAM ||
956        rc==MMSYSERR_NOTSUPPORTED),
957        "waveOutMessage(%s): failed to get interface size, rc=%s\n",
958        dev_name(device),wave_out_error(rc));
959     if (rc==MMSYSERR_NOERROR) {
960         nameW = HeapAlloc(GetProcessHeap(), 0, size);
961         rc=waveOutMessage((HWAVEOUT)device, DRV_QUERYDEVICEINTERFACE,
962                           (DWORD_PTR)nameW, size);
963         ok(rc==MMSYSERR_NOERROR,"waveOutMessage(%s): failed to get interface "
964            "name, rc=%s\n",dev_name(device),wave_out_error(rc));
965         ok(lstrlenW(nameW)+1==size/sizeof(WCHAR),"got an incorrect size %d\n",size);
966         if (rc==MMSYSERR_NOERROR) {
967             nameA = HeapAlloc(GetProcessHeap(), 0, size/sizeof(WCHAR));
968             WideCharToMultiByte(CP_ACP, 0, nameW, size/sizeof(WCHAR), nameA,
969                                 size/sizeof(WCHAR), NULL, NULL);
970         }
971         HeapFree(GetProcessHeap(), 0, nameW);
972     }
973     else if (rc==MMSYSERR_NOTSUPPORTED) {
974         nameA=HeapAlloc(GetProcessHeap(), 0, sizeof("not supported"));
975         strcpy(nameA, "not supported");
976     }
977
978     rc=waveOutGetDevCapsA(device,&capsA,sizeof(capsA));
979     ok(rc==MMSYSERR_NOERROR,
980        "waveOutGetDevCapsA(%s): MMSYSERR_NOERROR expected, got %s\n",
981        dev_name(device),wave_out_error(rc));
982     if (rc!=MMSYSERR_NOERROR)
983         return;
984
985     trace("  %s: \"%s\" (%s) %d.%d (%d:%d)\n",dev_name(device),capsA.szPname,
986           (nameA?nameA:"failed"),capsA.vDriverVersion >> 8,
987           capsA.vDriverVersion & 0xff, capsA.wMid,capsA.wPid);
988     trace("     channels=%d formats=%05x support=%04x\n",
989           capsA.wChannels,capsA.dwFormats,capsA.dwSupport);
990     trace("     %s\n",wave_out_caps(capsA.dwSupport));
991     HeapFree(GetProcessHeap(), 0, nameA);
992
993     if (winetest_interactive && (device != WAVE_MAPPER))
994     {
995         trace("Playing a 5 seconds reference tone.\n");
996         trace("All subsequent tones should be identical to this one.\n");
997         trace("Listen for stutter, changes in pitch, volume, etc.\n");
998         format.wFormatTag=WAVE_FORMAT_PCM;
999         format.nChannels=1;
1000         format.wBitsPerSample=8;
1001         format.nSamplesPerSec=22050;
1002         format.nBlockAlign=format.nChannels*format.wBitsPerSample/8;
1003         format.nAvgBytesPerSec=format.nSamplesPerSec*format.nBlockAlign;
1004         format.cbSize=0;
1005
1006         wave_out_test_deviceOut(device,5.0,1,0,&format,WAVE_FORMAT_2M08,
1007                                 CALLBACK_EVENT,&capsA,TRUE,TRUE,FALSE);
1008         wave_out_test_deviceOut(device,5.0,1,0,&format,WAVE_FORMAT_2M08,
1009                                 CALLBACK_FUNCTION,&capsA,TRUE,TRUE,FALSE);
1010         wave_out_test_deviceOut(device,5.0,1,0,&format,WAVE_FORMAT_2M08,
1011                                 CALLBACK_THREAD,&capsA,TRUE,TRUE,FALSE);
1012
1013         wave_out_test_deviceOut(device,5.0,10,0,&format,WAVE_FORMAT_2M08,
1014                                 CALLBACK_EVENT,&capsA,TRUE,TRUE,FALSE);
1015         wave_out_test_deviceOut(device,5.0,5,1,&format,WAVE_FORMAT_2M08,
1016                                 CALLBACK_EVENT,&capsA,TRUE,TRUE,FALSE);
1017     } else {
1018         format.wFormatTag=WAVE_FORMAT_PCM;
1019         format.nChannels=1;
1020         format.wBitsPerSample=8;
1021         format.nSamplesPerSec=22050;
1022         format.nBlockAlign=format.nChannels*format.wBitsPerSample/8;
1023         format.nAvgBytesPerSec=format.nSamplesPerSec*format.nBlockAlign;
1024         format.cbSize=0;
1025         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1026                                 CALLBACK_EVENT,&capsA,TRUE,FALSE,FALSE);
1027         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1028                                 CALLBACK_EVENT,&capsA,TRUE,FALSE,TRUE);
1029         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1030                                 CALLBACK_FUNCTION,&capsA,TRUE,FALSE,FALSE);
1031         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1032                                 CALLBACK_FUNCTION,&capsA,TRUE,FALSE,TRUE);
1033         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1034                                 CALLBACK_THREAD,&capsA,TRUE,FALSE,FALSE);
1035         wave_out_test_deviceOut(device,0.6,1,0,&format,WAVE_FORMAT_2M08,
1036                                 CALLBACK_THREAD,&capsA,TRUE,FALSE,TRUE);
1037
1038         wave_out_test_deviceOut(device,0.8,10,0,&format,WAVE_FORMAT_2M08,
1039                                 CALLBACK_EVENT,&capsA,TRUE,FALSE,FALSE);
1040         wave_out_test_deviceOut(device,1.0,5,1,&format,WAVE_FORMAT_2M08,
1041                                 CALLBACK_EVENT,&capsA,TRUE,FALSE,FALSE);
1042     }
1043
1044     for (f=0;f<NB_WIN_FORMATS;f++) {
1045         format.wFormatTag=WAVE_FORMAT_PCM;
1046         format.nChannels=win_formats[f][3];
1047         format.wBitsPerSample=win_formats[f][2];
1048         format.nSamplesPerSec=win_formats[f][1];
1049         format.nBlockAlign=format.nChannels*format.wBitsPerSample/8;
1050         format.nAvgBytesPerSec=format.nSamplesPerSec*format.nBlockAlign;
1051         format.cbSize=0;
1052         wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1053                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1054                                 TRUE,FALSE);
1055         wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1056                                 CALLBACK_FUNCTION,&capsA,winetest_interactive,
1057                                 TRUE,FALSE);
1058         wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1059                                 CALLBACK_THREAD,&capsA,winetest_interactive,
1060                                 TRUE,FALSE);
1061
1062         wave_out_test_deviceOut(device,1.0,10,0,&format,win_formats[f][0],
1063                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1064                                 TRUE,FALSE);
1065         wave_out_test_deviceOut(device,1.0,5,1,&format,win_formats[f][0],
1066                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1067                                 TRUE,FALSE);
1068
1069         if (winetest_interactive) {
1070             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1071                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1072                                     TRUE,TRUE);
1073             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1074                                     CALLBACK_FUNCTION,&capsA,winetest_interactive,
1075                                     TRUE,TRUE);
1076             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1077                                     CALLBACK_THREAD,&capsA,winetest_interactive,
1078                                     TRUE,TRUE);
1079
1080             wave_out_test_deviceOut(device,1.0,10,0,&format,win_formats[f][0],
1081                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1082                                     TRUE,TRUE);
1083             wave_out_test_deviceOut(device,1.0,5,1,&format,win_formats[f][0],
1084                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1085                                     TRUE,TRUE);
1086         }
1087         if (device != WAVE_MAPPER)
1088         {
1089             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1090                                     CALLBACK_EVENT|WAVE_FORMAT_DIRECT,&capsA,
1091                                     winetest_interactive,TRUE,FALSE);
1092             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1093                                     CALLBACK_EVENT|WAVE_MAPPED,&capsA,
1094                                     winetest_interactive,TRUE,FALSE);
1095             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1096                                     CALLBACK_FUNCTION|WAVE_FORMAT_DIRECT,&capsA,
1097                                     winetest_interactive,TRUE,FALSE);
1098             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1099                                     CALLBACK_FUNCTION|WAVE_MAPPED,&capsA,
1100                                     winetest_interactive,TRUE,FALSE);
1101             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1102                                     CALLBACK_THREAD|WAVE_FORMAT_DIRECT,&capsA,
1103                                     winetest_interactive,TRUE,FALSE);
1104             wave_out_test_deviceOut(device,1.0,1,0,&format,win_formats[f][0],
1105                                     CALLBACK_THREAD|WAVE_MAPPED,&capsA,
1106                                     winetest_interactive,TRUE,FALSE);
1107
1108             wave_out_test_deviceOut(device,1.0,10,0,&format,win_formats[f][0],
1109                                     CALLBACK_EVENT|WAVE_FORMAT_DIRECT,&capsA,
1110                                     winetest_interactive,TRUE,FALSE);
1111             wave_out_test_deviceOut(device,1.0,5,1,&format,win_formats[f][0],
1112                                     CALLBACK_EVENT|WAVE_FORMAT_DIRECT,&capsA,
1113                                     winetest_interactive,TRUE,FALSE);
1114         }
1115     }
1116
1117     /* Try a PCMWAVEFORMAT aligned next to an unaccessible page for bounds
1118      * checking */
1119     twoPages = VirtualAlloc(NULL, 2 * dwPageSize, MEM_RESERVE | MEM_COMMIT,
1120                             PAGE_READWRITE);
1121     ok(twoPages!=NULL,"Failed to allocate 2 pages of memory\n");
1122     if (twoPages) {
1123         res = VirtualProtect(twoPages + dwPageSize, dwPageSize, PAGE_NOACCESS,
1124                              &flOldProtect);
1125         ok(res, "Failed to set memory access on second page\n");
1126         if (res) {
1127             LPWAVEFORMATEX pwfx = (LPWAVEFORMATEX)(twoPages + dwPageSize -
1128                 sizeof(PCMWAVEFORMAT));
1129             pwfx->wFormatTag=WAVE_FORMAT_PCM;
1130             pwfx->nChannels=1;
1131             pwfx->wBitsPerSample=8;
1132             pwfx->nSamplesPerSec=22050;
1133             pwfx->nBlockAlign=pwfx->nChannels*pwfx->wBitsPerSample/8;
1134             pwfx->nAvgBytesPerSec=pwfx->nSamplesPerSec*pwfx->nBlockAlign;
1135             wave_out_test_deviceOut(device,1.0,1,0,pwfx,WAVE_FORMAT_2M08,
1136                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1137                                     TRUE,FALSE);
1138             wave_out_test_deviceOut(device,1.0,10,0,pwfx,WAVE_FORMAT_2M08,
1139                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1140                                     TRUE,FALSE);
1141             wave_out_test_deviceOut(device,1.0,5,1,pwfx,WAVE_FORMAT_2M08,
1142                                     CALLBACK_EVENT,&capsA,winetest_interactive,
1143                                     TRUE,FALSE);
1144             if (device != WAVE_MAPPER)
1145             {
1146                 wave_out_test_deviceOut(device,1.0,1,0,pwfx,WAVE_FORMAT_2M08,
1147                                         CALLBACK_EVENT|WAVE_FORMAT_DIRECT,
1148                                         &capsA,winetest_interactive,TRUE,FALSE);
1149                 wave_out_test_deviceOut(device,1.0,1,0,pwfx,WAVE_FORMAT_2M08,
1150                                         CALLBACK_EVENT|WAVE_MAPPED,&capsA,
1151                                         winetest_interactive,TRUE,FALSE);
1152                 wave_out_test_deviceOut(device,1.0,10,0,pwfx,WAVE_FORMAT_2M08,
1153                                         CALLBACK_EVENT|WAVE_FORMAT_DIRECT,
1154                                         &capsA,winetest_interactive,TRUE,FALSE);
1155                 wave_out_test_deviceOut(device,1.0,10,0,pwfx,WAVE_FORMAT_2M08,
1156                                         CALLBACK_EVENT|WAVE_MAPPED,&capsA,
1157                                         winetest_interactive,TRUE,FALSE);
1158                 wave_out_test_deviceOut(device,1.0,5,1,pwfx,WAVE_FORMAT_2M08,
1159                                         CALLBACK_EVENT|WAVE_FORMAT_DIRECT,
1160                                         &capsA,winetest_interactive,TRUE,FALSE);
1161                 wave_out_test_deviceOut(device,1.0,5,1,pwfx,WAVE_FORMAT_2M08,
1162                                         CALLBACK_EVENT|WAVE_MAPPED,&capsA,
1163                                         winetest_interactive,TRUE,FALSE);
1164             }
1165         }
1166         VirtualFree(twoPages, 0, MEM_RELEASE);
1167     }
1168
1169     /* try some non PCM formats */
1170     format.wFormatTag=WAVE_FORMAT_MULAW;
1171     format.nChannels=1;
1172     format.wBitsPerSample=8;
1173     format.nSamplesPerSec=8000;
1174     format.nBlockAlign=format.nChannels*format.wBitsPerSample/8;
1175     format.nAvgBytesPerSec=format.nSamplesPerSec*format.nBlockAlign;
1176     format.cbSize=0;
1177     rc=waveOutOpen(&wout,device,&format,0,0,CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1178     ok(rc==MMSYSERR_NOERROR ||rc==WAVERR_BADFORMAT ||
1179        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1180        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1181     if (rc==MMSYSERR_NOERROR) {
1182         waveOutClose(wout);
1183         wave_out_test_deviceOut(device,1.0,1,0,&format,0,CALLBACK_EVENT,
1184                                 &capsA,winetest_interactive,TRUE,FALSE);
1185         wave_out_test_deviceOut(device,1.0,10,0,&format,0,CALLBACK_EVENT,
1186                                 &capsA,winetest_interactive,TRUE,FALSE);
1187         wave_out_test_deviceOut(device,1.0,5,1,&format,0,CALLBACK_EVENT,
1188                                 &capsA,winetest_interactive,TRUE,FALSE);
1189     } else
1190         trace("waveOutOpen(%s): WAVE_FORMAT_MULAW not supported\n",
1191               dev_name(device));
1192
1193     wfa.wfx.wFormatTag=WAVE_FORMAT_IMA_ADPCM;
1194     wfa.wfx.nChannels=1;
1195     wfa.wfx.nSamplesPerSec=11025;
1196     wfa.wfx.nAvgBytesPerSec=5588;
1197     wfa.wfx.nBlockAlign=256;
1198     wfa.wfx.wBitsPerSample=4; /* see imaadp32.c */
1199     wfa.wfx.cbSize=2;
1200     wfa.wSamplesPerBlock=505;
1201     rc=waveOutOpen(&wout,device,&wfa.wfx,0,0,CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1202     ok(rc==MMSYSERR_NOERROR ||rc==WAVERR_BADFORMAT ||
1203        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1204        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1205     if (rc==MMSYSERR_NOERROR) {
1206         waveOutClose(wout);
1207         /* TODO: teach wave_generate_* ADPCM
1208         wave_out_test_deviceOut(device,1.0,1,0,&wfa.wfx,0,CALLBACK_EVENT,
1209                                 &capsA,winetest_interactive,TRUE,FALSE);
1210         wave_out_test_deviceOut(device,1.0,10,0,&wfa.wfx,0,CALLBACK_EVENT,
1211                                 &capsA,winetest_interactive,TRUE,FALSE);
1212         wave_out_test_deviceOut(device,1.0,5,1,&wfa.wfx,0,CALLBACK_EVENT,
1213                                 &capsA,winetest_interactive,TRUE,FALSE);
1214         */
1215     } else
1216         trace("waveOutOpen(%s): WAVE_FORMAT_IMA_ADPCM not supported\n",
1217               dev_name(device));
1218
1219     /* test if WAVEFORMATEXTENSIBLE supported */
1220     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1221     wfex.Format.nChannels=2;
1222     wfex.Format.wBitsPerSample=16;
1223     wfex.Format.nSamplesPerSec=22050;
1224     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1225     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1226         wfex.Format.nBlockAlign;
1227     wfex.Format.cbSize=22;
1228     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1229     wfex.dwChannelMask=SPEAKER_ALL;
1230     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_PCM;
1231     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1232                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1233     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1234        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1235        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1236     if (rc==MMSYSERR_NOERROR) {
1237         waveOutClose(wout);
1238         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,WAVE_FORMAT_2M16,
1239                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1240                                 TRUE,FALSE);
1241         wave_out_test_deviceOut(device,1.0,10,0,&wfex.Format,WAVE_FORMAT_2M16,
1242                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1243                                 TRUE,FALSE);
1244         wave_out_test_deviceOut(device,1.0,5,1,&wfex.Format,WAVE_FORMAT_2M16,
1245                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1246                                 TRUE,FALSE);
1247     } else
1248         trace("waveOutOpen(%s): WAVE_FORMAT_EXTENSIBLE not supported\n",
1249               dev_name(device));
1250
1251     /* test if 4 channels supported */
1252     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1253     wfex.Format.nChannels=4;
1254     wfex.Format.wBitsPerSample=16;
1255     wfex.Format.nSamplesPerSec=22050;
1256     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1257     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1258         wfex.Format.nBlockAlign;
1259     wfex.Format.cbSize=22;
1260     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1261     wfex.dwChannelMask=SPEAKER_ALL;
1262     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_PCM;
1263     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1264                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1265     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1266        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1267        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1268     if (rc==MMSYSERR_NOERROR) {
1269         waveOutClose(wout);
1270         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,0,CALLBACK_EVENT,
1271                                 &capsA,winetest_interactive,TRUE,FALSE);
1272         wave_out_test_deviceOut(device,1.0,10,0,&wfex.Format,0,CALLBACK_EVENT,
1273                                 &capsA,winetest_interactive,TRUE,FALSE);
1274         wave_out_test_deviceOut(device,1.0,5,1,&wfex.Format,0,CALLBACK_EVENT,
1275                                 &capsA,winetest_interactive,TRUE,FALSE);
1276     } else
1277         trace("waveOutOpen(%s): 4 channels not supported\n",
1278               dev_name(device));
1279
1280     /* test if 6 channels supported */
1281     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1282     wfex.Format.nChannels=6;
1283     wfex.Format.wBitsPerSample=16;
1284     wfex.Format.nSamplesPerSec=22050;
1285     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1286     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1287         wfex.Format.nBlockAlign;
1288     wfex.Format.cbSize=22;
1289     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1290     wfex.dwChannelMask=SPEAKER_ALL;
1291     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_PCM;
1292     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1293                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1294     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1295        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1296        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1297     if (rc==MMSYSERR_NOERROR) {
1298         waveOutClose(wout);
1299         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,WAVE_FORMAT_2M16,
1300                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1301                                 TRUE,FALSE);
1302         wave_out_test_deviceOut(device,1.0,10,0,&wfex.Format,WAVE_FORMAT_2M16,
1303                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1304                                 TRUE,FALSE);
1305         wave_out_test_deviceOut(device,1.0,5,1,&wfex.Format,WAVE_FORMAT_2M16,
1306                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1307                                 TRUE,FALSE);
1308     } else
1309         trace("waveOutOpen(%s): 6 channels not supported\n",
1310               dev_name(device));
1311
1312     if (0)
1313     {
1314     /* FIXME: ALSA doesn't like this format */
1315     /* test if 24 bit samples supported */
1316     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1317     wfex.Format.nChannels=2;
1318     wfex.Format.wBitsPerSample=24;
1319     wfex.Format.nSamplesPerSec=22050;
1320     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1321     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1322         wfex.Format.nBlockAlign;
1323     wfex.Format.cbSize=22;
1324     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1325     wfex.dwChannelMask=SPEAKER_ALL;
1326     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_PCM;
1327     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1328                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1329     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1330        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1331        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1332     if (rc==MMSYSERR_NOERROR) {
1333         waveOutClose(wout);
1334         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,WAVE_FORMAT_2M16,
1335                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1336                                 TRUE,FALSE);
1337     } else
1338         trace("waveOutOpen(%s): 24 bit samples not supported\n",
1339               dev_name(device));
1340     }
1341
1342     /* test if 32 bit samples supported */
1343     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1344     wfex.Format.nChannels=2;
1345     wfex.Format.wBitsPerSample=32;
1346     wfex.Format.nSamplesPerSec=22050;
1347     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1348     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1349         wfex.Format.nBlockAlign;
1350     wfex.Format.cbSize=22;
1351     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1352     wfex.dwChannelMask=SPEAKER_ALL;
1353     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_PCM;
1354     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1355                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1356     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1357        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1358        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1359     if (rc==MMSYSERR_NOERROR) {
1360         waveOutClose(wout);
1361         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,WAVE_FORMAT_2M16,
1362                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1363                                 TRUE,FALSE);
1364         wave_out_test_deviceOut(device,1.0,10,0,&wfex.Format,WAVE_FORMAT_2M16,
1365                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1366                                 TRUE,FALSE);
1367         wave_out_test_deviceOut(device,1.0,5,1,&wfex.Format,WAVE_FORMAT_2M16,
1368                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1369                                 TRUE,FALSE);
1370     } else
1371         trace("waveOutOpen(%s): 32 bit samples not supported\n",
1372               dev_name(device));
1373
1374     /* test if 32 bit float samples supported */
1375     wfex.Format.wFormatTag=WAVE_FORMAT_EXTENSIBLE;
1376     wfex.Format.nChannels=2;
1377     wfex.Format.wBitsPerSample=32;
1378     wfex.Format.nSamplesPerSec=22050;
1379     wfex.Format.nBlockAlign=wfex.Format.nChannels*wfex.Format.wBitsPerSample/8;
1380     wfex.Format.nAvgBytesPerSec=wfex.Format.nSamplesPerSec*
1381         wfex.Format.nBlockAlign;
1382     wfex.Format.cbSize=22;
1383     wfex.Samples.wValidBitsPerSample=wfex.Format.wBitsPerSample;
1384     wfex.dwChannelMask=SPEAKER_ALL;
1385     wfex.SubFormat=KSDATAFORMAT_SUBTYPE_IEEE_FLOAT;
1386     rc=waveOutOpen(&wout,device,&wfex.Format,0,0,
1387                    CALLBACK_NULL|WAVE_FORMAT_DIRECT);
1388     ok(rc==MMSYSERR_NOERROR || rc==WAVERR_BADFORMAT ||
1389        rc==MMSYSERR_INVALFLAG || rc==MMSYSERR_INVALPARAM,
1390        "waveOutOpen(%s): returned %s\n",dev_name(device),wave_out_error(rc));
1391     if (rc==MMSYSERR_NOERROR) {
1392         waveOutClose(wout);
1393         wave_out_test_deviceOut(device,1.0,1,0,&wfex.Format,WAVE_FORMAT_2M16,
1394                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1395                                 TRUE,FALSE);
1396         wave_out_test_deviceOut(device,1.0,10,0,&wfex.Format,WAVE_FORMAT_2M16,
1397                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1398                                 TRUE,FALSE);
1399         wave_out_test_deviceOut(device,1.0,5,1,&wfex.Format,WAVE_FORMAT_2M16,
1400                                 CALLBACK_EVENT,&capsA,winetest_interactive,
1401                                 TRUE,FALSE);
1402     } else
1403         trace("waveOutOpen(%s): 32 bit float samples not supported\n",
1404               dev_name(device));
1405 }
1406
1407 static void wave_out_tests(void)
1408 {
1409     WAVEOUTCAPSA capsA;
1410     WAVEOUTCAPSW capsW;
1411     WAVEFORMATEX format;
1412     HWAVEOUT wout;
1413     MMRESULT rc;
1414     DWORD preferred, status;
1415     UINT ndev,d;
1416
1417     ndev=waveOutGetNumDevs();
1418     trace("found %d WaveOut devices\n",ndev);
1419
1420     rc = waveOutMessage((HWAVEOUT)WAVE_MAPPER, DRVM_MAPPER_PREFERRED_GET,
1421             (DWORD_PTR)&preferred, (DWORD_PTR)&status);
1422     ok((ndev == 0 && (rc == MMSYSERR_NODRIVER || rc == MMSYSERR_BADDEVICEID)) ||
1423             rc == MMSYSERR_NOERROR, "waveOutMessage(DRVM_MAPPER_PREFERRED_GET) failed: %u\n", rc);
1424
1425     ok((ndev == 0 && (preferred == -1 || broken(preferred != -1))) ||
1426             preferred < ndev, "Got invalid preferred device: 0x%x\n", preferred);
1427
1428     rc=waveOutGetDevCapsA(ndev+1,&capsA,sizeof(capsA));
1429     ok(rc==MMSYSERR_BADDEVICEID,
1430        "waveOutGetDevCapsA(%s): MMSYSERR_BADDEVICEID expected, got %s\n",
1431        dev_name(ndev+1),mmsys_error(rc));
1432
1433     rc=waveOutGetDevCapsW(ndev+1,&capsW,sizeof(capsW));
1434     ok(rc==MMSYSERR_BADDEVICEID || rc==MMSYSERR_NOTSUPPORTED,
1435        "waveOutGetDevCapsW(%s): MMSYSERR_BADDEVICEID or MMSYSERR_NOTSUPPORTED "
1436        "expected, got %s\n",dev_name(ndev+1),mmsys_error(rc));
1437
1438     rc=waveOutGetDevCapsA(WAVE_MAPPER,&capsA,sizeof(capsA));
1439     if (ndev>0)
1440         ok(rc==MMSYSERR_NOERROR,
1441            "waveOutGetDevCapsA(%s): MMSYSERR_NOERROR expected, got %s\n",
1442            dev_name(WAVE_MAPPER),mmsys_error(rc));
1443     else
1444         ok(rc==MMSYSERR_BADDEVICEID || rc==MMSYSERR_NODRIVER,
1445            "waveOutGetDevCapsA(%s): MMSYSERR_BADDEVICEID or MMSYSERR_NODRIVER "
1446            "expected, got %s\n",dev_name(WAVE_MAPPER),mmsys_error(rc));
1447
1448     rc=waveOutGetDevCapsW(WAVE_MAPPER,&capsW,sizeof(capsW));
1449     if (ndev>0)
1450         ok(rc==MMSYSERR_NOERROR || rc==MMSYSERR_NOTSUPPORTED,
1451            "waveOutGetDevCapsW(%s): MMSYSERR_NOERROR or MMSYSERR_NOTSUPPORTED "
1452            "expected, got %s\n",dev_name(WAVE_MAPPER),mmsys_error(rc));
1453     else
1454         ok(rc==MMSYSERR_BADDEVICEID || rc==MMSYSERR_NODRIVER ||
1455            rc==MMSYSERR_NOTSUPPORTED,
1456            "waveOutGetDevCapsW(%s): MMSYSERR_BADDEVICEID or MMSYSERR_NODRIVER "
1457            " or MMSYSERR_NOTSUPPORTED expected, got %s\n",
1458            dev_name(WAVE_MAPPER),mmsys_error(rc));
1459
1460     format.wFormatTag=WAVE_FORMAT_PCM;
1461     format.nChannels=2;
1462     format.wBitsPerSample=16;
1463     format.nSamplesPerSec=44100;
1464     format.nBlockAlign=format.nChannels*format.wBitsPerSample/8;
1465     format.nAvgBytesPerSec=format.nSamplesPerSec*format.nBlockAlign;
1466     format.cbSize=0;
1467     rc=waveOutOpen(&wout,ndev+1,&format,0,0,CALLBACK_NULL);
1468     ok(rc==MMSYSERR_BADDEVICEID,
1469        "waveOutOpen(%s): MMSYSERR_BADDEVICEID expected, got %s\n",
1470        dev_name(ndev+1),mmsys_error(rc));
1471
1472     for (d=0;d<ndev;d++)
1473         wave_out_test_device(d);
1474
1475     if (ndev>0)
1476         wave_out_test_device(WAVE_MAPPER);
1477 }
1478
1479 static void test_sndPlaySound(void)
1480 {
1481     BOOL br;
1482
1483     static const WCHAR not_existW[] = {'C',':','\\','n','o','t','_','e','x','i','s','t','.','w','a','v',0};
1484     static const WCHAR SystemAsteriskW[] = {'S','y','s','t','e','m','A','s','t','e','r','i','s','k',0};
1485
1486     br = sndPlaySoundA((LPCSTR)SND_ALIAS_SYSTEMASTERISK, SND_ALIAS_ID|SND_SYNC);
1487     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1488
1489     br = sndPlaySoundW((LPCWSTR)SND_ALIAS_SYSTEMASTERISK, SND_ALIAS_ID|SND_SYNC);
1490     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1491
1492     br = sndPlaySoundA((LPCSTR)sndAlias('X','Y'), SND_ALIAS_ID|SND_SYNC);
1493     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1494
1495     br = sndPlaySoundW((LPCWSTR)sndAlias('X','Y'), SND_ALIAS_ID|SND_SYNC);
1496     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1497
1498     br = sndPlaySoundA("SystemAsterisk", SND_ALIAS|SND_SYNC);
1499     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1500
1501     br = sndPlaySoundW(SystemAsteriskW, SND_ALIAS|SND_SYNC);
1502     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1503
1504     br = sndPlaySoundA("C:\not_exist.wav", SND_FILENAME|SND_SYNC);
1505     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1506
1507     br = sndPlaySoundW(not_existW, SND_FILENAME|SND_SYNC);
1508     ok(br == TRUE || br == FALSE, "sndPlaySound gave strange return: %u\n", br);
1509 }
1510
1511 static void test_fragmentsize(void)
1512 {
1513     MMRESULT rc;
1514     WAVEHDR hdr[2];
1515     HWAVEOUT wout;
1516     WAVEFORMATEX fmt;
1517     MMTIME mmtime;
1518     DWORD wait;
1519     HANDLE hevent;
1520
1521     if(waveOutGetNumDevs() == 0)
1522         return;
1523
1524     fmt.wFormatTag = WAVE_FORMAT_PCM;
1525     fmt.nChannels = 2;
1526     fmt.nSamplesPerSec = 44100;
1527     fmt.wBitsPerSample = 16;
1528     fmt.nBlockAlign = fmt.nChannels * fmt.wBitsPerSample / 8;
1529     fmt.nAvgBytesPerSec = fmt.nBlockAlign * fmt.nSamplesPerSec;
1530     fmt.cbSize = sizeof(WAVEFORMATEX);
1531
1532     hevent = CreateEvent(NULL, FALSE, FALSE, NULL);
1533     g_tid = GetCurrentThreadId();
1534
1535     rc = waveOutOpen(&wout, WAVE_MAPPER, &fmt, (DWORD_PTR)callback_func,
1536             (DWORD_PTR)hevent, CALLBACK_FUNCTION);
1537     ok(rc == MMSYSERR_NOERROR || rc == WAVERR_BADFORMAT ||
1538            rc == MMSYSERR_INVALFLAG || rc == MMSYSERR_INVALPARAM,
1539            "waveOutOpen(%s) failed: %s\n", dev_name(WAVE_MAPPER), wave_out_error(rc));
1540     if(rc != MMSYSERR_NOERROR){
1541         CloseHandle(hevent);
1542         return;
1543     }
1544
1545     wait = WaitForSingleObject(hevent, 1000);
1546     ok(wait == WAIT_OBJECT_0, "wave open callback missed\n");
1547
1548     memset(hdr, 0, sizeof(hdr));
1549     hdr[0].dwBufferLength = (fmt.nSamplesPerSec * fmt.nBlockAlign / 4) + 1;
1550     hdr[1].dwBufferLength = hdr[0].dwBufferLength - 2;
1551     hdr[1].lpData = hdr[0].lpData =
1552         HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, hdr[0].dwBufferLength);
1553
1554     rc = waveOutPrepareHeader(wout, &hdr[0], sizeof(hdr[0]));
1555     ok(rc == MMSYSERR_NOERROR, "waveOutPrepareHeader failed: %s\n", wave_out_error(rc));
1556
1557     rc = waveOutPrepareHeader(wout, &hdr[1], sizeof(hdr[1]));
1558     ok(rc == MMSYSERR_NOERROR, "waveOutPrepareHeader failed: %s\n", wave_out_error(rc));
1559
1560     trace("writing %u bytes then %u bytes\n", hdr[0].dwBufferLength, hdr[1].dwBufferLength);
1561     rc = waveOutWrite(wout, &hdr[0], sizeof(hdr[0]));
1562     ok(rc == MMSYSERR_NOERROR, "waveOutWrite failed: %s\n", wave_out_error(rc));
1563
1564     rc = waveOutWrite(wout, &hdr[1], sizeof(hdr[1]));
1565     ok(rc == MMSYSERR_NOERROR, "waveOutWrite failed: %s\n", wave_out_error(rc));
1566
1567     wait = WaitForSingleObject(hevent, 1000);
1568     ok(wait == WAIT_OBJECT_0, "header 1 callback missed\n");
1569
1570     wait = WaitForSingleObject(hevent, 1000);
1571     ok(wait == WAIT_OBJECT_0, "header 2 callback missed\n");
1572
1573     memset(&mmtime, 0, sizeof(mmtime));
1574     mmtime.wType = TIME_BYTES;
1575
1576     rc = waveOutGetPosition(wout, &mmtime, sizeof(mmtime));
1577     ok(rc == MMSYSERR_NOERROR, "waveOutGetPosition failed: %s\n", wave_out_error(rc));
1578
1579     /* windows behavior is inconsistent */
1580     ok(mmtime.u.cb == 88200 ||
1581             mmtime.u.cb == 88196, "after position: %u\n", mmtime.u.cb);
1582
1583     rc = waveOutClose(wout);
1584     ok(rc == MMSYSERR_NOERROR, "waveOutClose failed: %s\n", wave_out_error(rc));
1585
1586     CloseHandle(hevent);
1587 }
1588
1589 START_TEST(wave)
1590 {
1591     test_multiple_waveopens();
1592     wave_out_tests();
1593     test_sndPlaySound();
1594     test_fragmentsize();
1595 }