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-rw-r--r--core/multimedia/opieplayer/audiodevice.cpp8
-rw-r--r--core/multimedia/opieplayer/loopcontrol.cpp14
2 files changed, 15 insertions, 7 deletions
diff --git a/core/multimedia/opieplayer/audiodevice.cpp b/core/multimedia/opieplayer/audiodevice.cpp
index ad44abb..e0989d0 100644
--- a/core/multimedia/opieplayer/audiodevice.cpp
+++ b/core/multimedia/opieplayer/audiodevice.cpp
@@ -110,247 +110,255 @@ void AudioDevice::getVolume( unsigned int& leftVolume, unsigned int& rightVolume
110 if ( waveOutGetVolume( handle, (LPDWORD)&volume ) ) 110 if ( waveOutGetVolume( handle, (LPDWORD)&volume ) )
111// qDebug( "get volume of audio device failed" ); 111// qDebug( "get volume of audio device failed" );
112 waveOutClose( handle ); 112 waveOutClose( handle );
113 leftVolume = volume & 0xFFFF; 113 leftVolume = volume & 0xFFFF;
114 rightVolume = volume >> 16; 114 rightVolume = volume >> 16;
115#else 115#else
116 int mixerHandle = open( "/dev/mixer", O_RDWR ); 116 int mixerHandle = open( "/dev/mixer", O_RDWR );
117 if ( mixerHandle >= 0 ) { 117 if ( mixerHandle >= 0 ) {
118 if(ioctl( mixerHandle, MIXER_READ(0), &volume )==-1) 118 if(ioctl( mixerHandle, MIXER_READ(0), &volume )==-1)
119 perror("ioctl(\"MIXER_READ\")"); 119 perror("ioctl(\"MIXER_READ\")");
120 close( mixerHandle ); 120 close( mixerHandle );
121 } else 121 } else
122 perror("open(\"/dev/mixer\")"); 122 perror("open(\"/dev/mixer\")");
123 leftVolume = ((volume & 0x00FF) << 16) / 101; 123 leftVolume = ((volume & 0x00FF) << 16) / 101;
124 rightVolume = ((volume & 0xFF00) << 8) / 101; 124 rightVolume = ((volume & 0xFF00) << 8) / 101;
125#endif 125#endif
126} 126}
127 127
128 128
129void AudioDevice::setVolume( unsigned int leftVolume, unsigned int rightVolume, bool muted ) { 129void AudioDevice::setVolume( unsigned int leftVolume, unsigned int rightVolume, bool muted ) {
130 AudioDevicePrivate::muted = muted; 130 AudioDevicePrivate::muted = muted;
131 if ( muted ) { 131 if ( muted ) {
132 AudioDevicePrivate::leftVolume = leftVolume; 132 AudioDevicePrivate::leftVolume = leftVolume;
133 AudioDevicePrivate::rightVolume = rightVolume; 133 AudioDevicePrivate::rightVolume = rightVolume;
134 leftVolume = 0; 134 leftVolume = 0;
135 rightVolume = 0; 135 rightVolume = 0;
136 } else { 136 } else {
137 leftVolume = ( (int) leftVolume < 0 ) ? 0 : (( leftVolume > 0xFFFF ) ? 0xFFFF : leftVolume ); 137 leftVolume = ( (int) leftVolume < 0 ) ? 0 : (( leftVolume > 0xFFFF ) ? 0xFFFF : leftVolume );
138 rightVolume = ( (int)rightVolume < 0 ) ? 0 : (( rightVolume > 0xFFFF ) ? 0xFFFF : rightVolume ); 138 rightVolume = ( (int)rightVolume < 0 ) ? 0 : (( rightVolume > 0xFFFF ) ? 0xFFFF : rightVolume );
139 } 139 }
140#ifdef Q_OS_WIN32 140#ifdef Q_OS_WIN32
141 HWAVEOUT handle; 141 HWAVEOUT handle;
142 WAVEFORMATEX formatData; 142 WAVEFORMATEX formatData;
143 formatData.cbSize = sizeof(WAVEFORMATEX); 143 formatData.cbSize = sizeof(WAVEFORMATEX);
144 formatData.wFormatTag = WAVE_FORMAT_PCM; 144 formatData.wFormatTag = WAVE_FORMAT_PCM;
145 formatData.nAvgBytesPerSec = 4 * 44000; 145 formatData.nAvgBytesPerSec = 4 * 44000;
146 formatData.nBlockAlign = 4; 146 formatData.nBlockAlign = 4;
147 formatData.nChannels = 2; 147 formatData.nChannels = 2;
148 formatData.nSamplesPerSec = 44000; 148 formatData.nSamplesPerSec = 44000;
149 formatData.wBitsPerSample = 16; 149 formatData.wBitsPerSample = 16;
150 waveOutOpen(&handle, WAVE_MAPPER, &formatData, 0L, 0L, CALLBACK_NULL); 150 waveOutOpen(&handle, WAVE_MAPPER, &formatData, 0L, 0L, CALLBACK_NULL);
151 unsigned int volume = (rightVolume << 16) | leftVolume; 151 unsigned int volume = (rightVolume << 16) | leftVolume;
152 if ( waveOutSetVolume( handle, volume ) ) 152 if ( waveOutSetVolume( handle, volume ) )
153// qDebug( "set volume of audio device failed" ); 153// qDebug( "set volume of audio device failed" );
154 waveOutClose( handle ); 154 waveOutClose( handle );
155#else 155#else
156 // Volume can be from 0 to 100 which is 101 distinct values 156 // Volume can be from 0 to 100 which is 101 distinct values
157 unsigned int rV = (rightVolume * 101) >> 16; 157 unsigned int rV = (rightVolume * 101) >> 16;
158 158
159# if 0 159# if 0
160 unsigned int lV = (leftVolume * 101) >> 16; 160 unsigned int lV = (leftVolume * 101) >> 16;
161 unsigned int volume = ((rV << 8) & 0xFF00) | (lV & 0x00FF); 161 unsigned int volume = ((rV << 8) & 0xFF00) | (lV & 0x00FF);
162 int mixerHandle = 0; 162 int mixerHandle = 0;
163 if ( ( mixerHandle = open( "/dev/mixer", O_RDWR ) ) >= 0 ) { 163 if ( ( mixerHandle = open( "/dev/mixer", O_RDWR ) ) >= 0 ) {
164 if(ioctl( mixerHandle, MIXER_WRITE(0), &volume ) ==-1) 164 if(ioctl( mixerHandle, MIXER_WRITE(0), &volume ) ==-1)
165 perror("ioctl(\"MIXER_WRITE\")"); 165 perror("ioctl(\"MIXER_WRITE\")");
166 close( mixerHandle ); 166 close( mixerHandle );
167 } else 167 } else
168 perror("open(\"/dev/mixer\")"); 168 perror("open(\"/dev/mixer\")");
169 169
170# else 170# else
171 // This is the way this has to be done now I guess, doesn't allow for 171 // This is the way this has to be done now I guess, doesn't allow for
172 // independant right and left channel setting, or setting for different outputs 172 // independant right and left channel setting, or setting for different outputs
173 Config cfg("Sound"); 173 Config cfg("Sound");
174 cfg.setGroup("System"); 174 cfg.setGroup("System");
175 cfg.writeEntry("Volume",(int)rV); 175 cfg.writeEntry("Volume",(int)rV);
176# endif 176# endif
177 177
178#endif 178#endif
179// qDebug( "setting volume to: 0x%x", volume ); 179// qDebug( "setting volume to: 0x%x", volume );
180#if ( defined Q_WS_QWS || defined(_WS_QWS_) ) && !defined(QT_NO_COP) 180#if ( defined Q_WS_QWS || defined(_WS_QWS_) ) && !defined(QT_NO_COP)
181 // Send notification that the volume has changed 181 // Send notification that the volume has changed
182 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << muted; 182 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << muted;
183#endif 183#endif
184} 184}
185 185
186 186
187 187
188 188
189AudioDevice::AudioDevice( unsigned int f, unsigned int chs, unsigned int bps ) { 189AudioDevice::AudioDevice( unsigned int f, unsigned int chs, unsigned int bps ) {
190 qDebug("creating new audio device"); 190 qDebug("creating new audio device");
191 d = new AudioDevicePrivate; 191 d = new AudioDevicePrivate;
192 d->frequency = f; 192 d->frequency = f;
193 d->channels = chs; 193 d->channels = chs;
194 d->bytesPerSample = bps; 194 d->bytesPerSample = bps;
195 qDebug("%d",bps); 195 qDebug("%d",bps);
196 int format=0; 196 int format=0;
197 if( bps == 8) format = AFMT_U8; 197 if( bps == 8) format = AFMT_U8;
198 else if( bps <= 0) format = AFMT_S16_LE; 198 else if( bps <= 0) format = AFMT_S16_LE;
199 else format = AFMT_S16_LE; 199 else format = AFMT_S16_LE;
200 qDebug("AD- freq %d, channels %d, b/sample %d, bitrate %d",f,chs,bps,format); 200 qDebug("AD- freq %d, channels %d, b/sample %d, bitrate %d",f,chs,bps,format);
201 connect( qApp, SIGNAL( volumeChanged(bool) ), this, SLOT( volumeChanged(bool) ) ); 201 connect( qApp, SIGNAL( volumeChanged(bool) ), this, SLOT( volumeChanged(bool) ) );
202 202
203 int fragments = 0x10000 * 8 + sound_fragment_shift; 203 int fragments = 0x10000 * 8 + sound_fragment_shift;
204 int capabilities = 0; 204 int capabilities = 0;
205 205
206 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << TRUE;
207
206#ifdef KEEP_DEVICE_OPEN 208#ifdef KEEP_DEVICE_OPEN
207 if ( AudioDevicePrivate::dspFd == 0 ) { 209 if ( AudioDevicePrivate::dspFd == 0 ) {
208#endif 210#endif
209 if ( ( d->handle = ::open( "/dev/dsp", O_WRONLY ) ) < 0 ) { 211 if ( ( d->handle = ::open( "/dev/dsp", O_WRONLY ) ) < 0 ) {
210 perror("open(\"/dev/dsp\") sending to /dev/null instead"); 212 perror("open(\"/dev/dsp\") sending to /dev/null instead");
211 d->handle = ::open( "/dev/null", O_WRONLY ); 213 d->handle = ::open( "/dev/null", O_WRONLY );
212 } 214 }
213#ifdef KEEP_DEVICE_OPEN 215#ifdef KEEP_DEVICE_OPEN
214 AudioDevicePrivate::dspFd = d->handle; 216 AudioDevicePrivate::dspFd = d->handle;
215 } else { 217 } else {
216 d->handle = AudioDevicePrivate::dspFd; 218 d->handle = AudioDevicePrivate::dspFd;
217 } 219 }
218#endif 220#endif
219 221
220 if(ioctl( d->handle, SNDCTL_DSP_GETCAPS, &capabilities )==-1) 222 if(ioctl( d->handle, SNDCTL_DSP_GETCAPS, &capabilities )==-1)
221 perror("ioctl(\"SNDCTL_DSP_GETCAPS\")"); 223 perror("ioctl(\"SNDCTL_DSP_GETCAPS\")");
222 if(ioctl( d->handle, SNDCTL_DSP_SETFRAGMENT, &fragments )==-1) 224 if(ioctl( d->handle, SNDCTL_DSP_SETFRAGMENT, &fragments )==-1)
223 perror("ioctl(\"SNDCTL_DSP_SETFRAGMENT\")"); 225 perror("ioctl(\"SNDCTL_DSP_SETFRAGMENT\")");
224 if(ioctl( d->handle, SNDCTL_DSP_SETFMT, & format )==-1) 226 if(ioctl( d->handle, SNDCTL_DSP_SETFMT, & format )==-1)
225 perror("ioctl(\"SNDCTL_DSP_SETFMT\")"); 227 perror("ioctl(\"SNDCTL_DSP_SETFMT\")");
226 qDebug("freq %d", d->frequency); 228 qDebug("freq %d", d->frequency);
227 if(ioctl( d->handle, SNDCTL_DSP_SPEED, &d->frequency )==-1) 229 if(ioctl( d->handle, SNDCTL_DSP_SPEED, &d->frequency )==-1)
228 perror("ioctl(\"SNDCTL_DSP_SPEED\")"); 230 perror("ioctl(\"SNDCTL_DSP_SPEED\")");
229 qDebug("channels %d",d->channels); 231 qDebug("channels %d",d->channels);
230 if ( ioctl( d->handle, SNDCTL_DSP_CHANNELS, &d->channels ) == -1 ) { 232 if ( ioctl( d->handle, SNDCTL_DSP_CHANNELS, &d->channels ) == -1 ) {
231 d->channels = ( d->channels == 1 ) ? 2 : d->channels; 233 d->channels = ( d->channels == 1 ) ? 2 : d->channels;
232 if(ioctl( d->handle, SNDCTL_DSP_CHANNELS, &d->channels )==-1) 234 if(ioctl( d->handle, SNDCTL_DSP_CHANNELS, &d->channels )==-1)
233 perror("ioctl(\"SNDCTL_DSP_CHANNELS\")"); 235 perror("ioctl(\"SNDCTL_DSP_CHANNELS\")");
234 } 236 }
235 237
236 d->bufferSize = sound_fragment_bytes; 238 d->bufferSize = sound_fragment_bytes;
237 d->unwrittenBuffer = new char[d->bufferSize]; 239 d->unwrittenBuffer = new char[d->bufferSize];
238 d->unwritten = 0; 240 d->unwritten = 0;
239 d->can_GETOSPACE = TRUE; // until we find otherwise 241 d->can_GETOSPACE = TRUE; // until we find otherwise
240 242
241 //if ( chs != d->channels ) qDebug( "Wanted %d, got %d channels", chs, d->channels ); 243 //if ( chs != d->channels ) qDebug( "Wanted %d, got %d channels", chs, d->channels );
242 //if ( f != d->frequency ) qDebug( "wanted %dHz, got %dHz", f, d->frequency ); 244 //if ( f != d->frequency ) qDebug( "wanted %dHz, got %dHz", f, d->frequency );
243 //if ( capabilities & DSP_CAP_BATCH ) qDebug( "Sound card has local buffer" ); 245 //if ( capabilities & DSP_CAP_BATCH ) qDebug( "Sound card has local buffer" );
244 //if ( capabilities & DSP_CAP_REALTIME )qDebug( "Sound card has realtime sync" ); 246 //if ( capabilities & DSP_CAP_REALTIME )qDebug( "Sound card has realtime sync" );
245 //if ( capabilities & DSP_CAP_TRIGGER ) qDebug( "Sound card has precise trigger" ); 247 //if ( capabilities & DSP_CAP_TRIGGER ) qDebug( "Sound card has precise trigger" );
246 //if ( capabilities & DSP_CAP_MMAP ) qDebug( "Sound card can mmap" ); 248 //if ( capabilities & DSP_CAP_MMAP ) qDebug( "Sound card can mmap" );
249 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << FALSE;
250
247} 251}
248 252
249 253
250AudioDevice::~AudioDevice() { 254AudioDevice::~AudioDevice() {
251 qDebug("destryo audiodevice"); 255 qDebug("destryo audiodevice");
256 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << TRUE;
257
252#ifdef Q_OS_WIN32 258#ifdef Q_OS_WIN32
253 waveOutClose( (HWAVEOUT)d->handle ); 259 waveOutClose( (HWAVEOUT)d->handle );
254#else 260#else
255# ifndef KEEP_DEVICE_OPEN 261# ifndef KEEP_DEVICE_OPEN
256 close( d->handle ); // Now it should be safe to shut the handle 262 close( d->handle ); // Now it should be safe to shut the handle
257# endif 263# endif
258 delete d->unwrittenBuffer; 264 delete d->unwrittenBuffer;
259 delete d; 265 delete d;
260#endif 266#endif
267 QCopEnvelope( "QPE/System", "volumeChange(bool)" ) << FALSE;
268
261} 269}
262 270
263 271
264void AudioDevice::volumeChanged( bool muted ) 272void AudioDevice::volumeChanged( bool muted )
265{ 273{
266 AudioDevicePrivate::muted = muted; 274 AudioDevicePrivate::muted = muted;
267} 275}
268 276
269 277
270void AudioDevice::write( char *buffer, unsigned int length ) 278void AudioDevice::write( char *buffer, unsigned int length )
271{ 279{
272#ifdef Q_OS_WIN32 280#ifdef Q_OS_WIN32
273 // returns immediately and (to be implemented) emits completedIO() when finished writing 281 // returns immediately and (to be implemented) emits completedIO() when finished writing
274 WAVEHDR *lpWaveHdr = (WAVEHDR *)malloc( sizeof(WAVEHDR) ); 282 WAVEHDR *lpWaveHdr = (WAVEHDR *)malloc( sizeof(WAVEHDR) );
275 // maybe the buffer should be copied so that this fool proof, but its a performance hit 283 // maybe the buffer should be copied so that this fool proof, but its a performance hit
276 lpWaveHdr->lpData = buffer; 284 lpWaveHdr->lpData = buffer;
277 lpWaveHdr->dwBufferLength = length; 285 lpWaveHdr->dwBufferLength = length;
278 lpWaveHdr->dwFlags = 0L; 286 lpWaveHdr->dwFlags = 0L;
279 lpWaveHdr->dwLoops = 0L; 287 lpWaveHdr->dwLoops = 0L;
280 waveOutPrepareHeader( (HWAVEOUT)d->handle, lpWaveHdr, sizeof(WAVEHDR) ); 288 waveOutPrepareHeader( (HWAVEOUT)d->handle, lpWaveHdr, sizeof(WAVEHDR) );
281 // waveOutWrite returns immediately. the data is sent in the background. 289 // waveOutWrite returns immediately. the data is sent in the background.
282 if ( waveOutWrite( (HWAVEOUT)d->handle, lpWaveHdr, sizeof(WAVEHDR) ) ) 290 if ( waveOutWrite( (HWAVEOUT)d->handle, lpWaveHdr, sizeof(WAVEHDR) ) )
283 qDebug( "failed to write block to audio device" ); 291 qDebug( "failed to write block to audio device" );
284 // emit completedIO(); 292 // emit completedIO();
285#else 293#else
286 int t = ::write( d->handle, buffer, length ); 294 int t = ::write( d->handle, buffer, length );
287 if ( t<0 ) t = 0; 295 if ( t<0 ) t = 0;
288 if ( t != (int)length) { 296 if ( t != (int)length) {
289 qDebug("Ahhh!! memcpys 1"); 297 qDebug("Ahhh!! memcpys 1");
290 memcpy(d->unwrittenBuffer,buffer+t,length-t); 298 memcpy(d->unwrittenBuffer,buffer+t,length-t);
291 d->unwritten = length-t; 299 d->unwritten = length-t;
292 } 300 }
293#endif 301#endif
294} 302}
295 303
296 304
297unsigned int AudioDevice::channels() const 305unsigned int AudioDevice::channels() const
298{ 306{
299 return d->channels; 307 return d->channels;
300} 308}
301 309
302 310
303unsigned int AudioDevice::frequency() const 311unsigned int AudioDevice::frequency() const
304{ 312{
305 return d->frequency; 313 return d->frequency;
306} 314}
307 315
308 316
309unsigned int AudioDevice::bytesPerSample() const 317unsigned int AudioDevice::bytesPerSample() const
310{ 318{
311 return d->bytesPerSample; 319 return d->bytesPerSample;
312} 320}
313 321
314 322
315unsigned int AudioDevice::bufferSize() const 323unsigned int AudioDevice::bufferSize() const
316{ 324{
317 return d->bufferSize; 325 return d->bufferSize;
318} 326}
319 327
320unsigned int AudioDevice::canWrite() const 328unsigned int AudioDevice::canWrite() const
321{ 329{
322#ifdef Q_OS_WIN32 330#ifdef Q_OS_WIN32
323 return bufferSize(); // Any better? 331 return bufferSize(); // Any better?
324#else 332#else
325 audio_buf_info info; 333 audio_buf_info info;
326 if ( d->can_GETOSPACE && ioctl(d->handle,SNDCTL_DSP_GETOSPACE,&info) ) { 334 if ( d->can_GETOSPACE && ioctl(d->handle,SNDCTL_DSP_GETOSPACE,&info) ) {
327 d->can_GETOSPACE = FALSE; 335 d->can_GETOSPACE = FALSE;
328 fcntl( d->handle, F_SETFL, O_NONBLOCK ); 336 fcntl( d->handle, F_SETFL, O_NONBLOCK );
329 } 337 }
330 if ( d->can_GETOSPACE ) { 338 if ( d->can_GETOSPACE ) {
331 int t = info.fragments * sound_fragment_bytes; 339 int t = info.fragments * sound_fragment_bytes;
332 return QMIN(t,(int)bufferSize()); 340 return QMIN(t,(int)bufferSize());
333 } else { 341 } else {
334 if ( d->unwritten ) { 342 if ( d->unwritten ) {
335 int t = ::write( d->handle, d->unwrittenBuffer, d->unwritten ); 343 int t = ::write( d->handle, d->unwrittenBuffer, d->unwritten );
336 if ( t<0 ) t = 0; 344 if ( t<0 ) t = 0;
337 if ( (unsigned)t!=d->unwritten ) { 345 if ( (unsigned)t!=d->unwritten ) {
338 memcpy(d->unwrittenBuffer,d->unwrittenBuffer+t,d->unwritten-t); 346 memcpy(d->unwrittenBuffer,d->unwrittenBuffer+t,d->unwritten-t);
339 d->unwritten -= t; 347 d->unwritten -= t;
340 } else { 348 } else {
341 d->unwritten = 0; 349 d->unwritten = 0;
342 } 350 }
343 } 351 }
344 if ( d->unwritten ) 352 if ( d->unwritten )
345 return 0; 353 return 0;
346 else 354 else
347 return d->bufferSize; 355 return d->bufferSize;
348 } 356 }
349#endif 357#endif
350} 358}
351 359
352 360
353int AudioDevice::bytesWritten() { 361int AudioDevice::bytesWritten() {
354#ifdef Q_OS_WIN32 362#ifdef Q_OS_WIN32
355 MMTIME pmmt = { TIME_BYTES, 0 }; 363 MMTIME pmmt = { TIME_BYTES, 0 };
356 if ( ( waveOutGetPosition( (HWAVEOUT)d->handle, &pmmt, sizeof(MMTIME) ) != MMSYSERR_NOERROR ) || ( pmmt.wType != TIME_BYTES ) ) { 364 if ( ( waveOutGetPosition( (HWAVEOUT)d->handle, &pmmt, sizeof(MMTIME) ) != MMSYSERR_NOERROR ) || ( pmmt.wType != TIME_BYTES ) ) {
diff --git a/core/multimedia/opieplayer/loopcontrol.cpp b/core/multimedia/opieplayer/loopcontrol.cpp
index 6f86b4a..3171c4b 100644
--- a/core/multimedia/opieplayer/loopcontrol.cpp
+++ b/core/multimedia/opieplayer/loopcontrol.cpp
@@ -144,200 +144,200 @@ void LoopControl::timerEvent( QTimerEvent *te ) {
144 } 144 }
145 } 145 }
146 146
147 if ( !moreVideo && !moreAudio ) { 147 if ( !moreVideo && !moreAudio ) {
148 mediaPlayerState->setPlaying( FALSE ); 148 mediaPlayerState->setPlaying( FALSE );
149 mediaPlayerState->setNext(); 149 mediaPlayerState->setNext();
150 } 150 }
151} 151}
152 152
153 153
154void LoopControl::setPosition( long pos ) { 154void LoopControl::setPosition( long pos ) {
155 audioMutex->lock(); 155 audioMutex->lock();
156 156
157 if ( hasVideoChannel && hasAudioChannel ) { 157 if ( hasVideoChannel && hasAudioChannel ) {
158 playtime.restart(); 158 playtime.restart();
159 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / framerate) ); 159 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / framerate) );
160 current_frame = pos + 1; 160 current_frame = pos + 1;
161 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream ); 161 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream );
162 prev_frame = current_frame - 1; 162 prev_frame = current_frame - 1;
163 currentSample = (int)( (double)current_frame * freq / framerate ); 163 currentSample = (int)( (double)current_frame * freq / framerate );
164 mediaPlayerState->curDecoder()->audioSetSample( currentSample, stream ); 164 mediaPlayerState->curDecoder()->audioSetSample( currentSample, stream );
165 audioSampleCounter = currentSample - 1; 165 audioSampleCounter = currentSample - 1;
166 } else if ( hasVideoChannel ) { 166 } else if ( hasVideoChannel ) {
167 playtime.restart(); 167 playtime.restart();
168 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / framerate) ); 168 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / framerate) );
169 current_frame = pos + 1; 169 current_frame = pos + 1;
170 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream ); 170 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream );
171 prev_frame = current_frame - 1; 171 prev_frame = current_frame - 1;
172 } else if ( hasAudioChannel ) { 172 } else if ( hasAudioChannel ) {
173 playtime.restart(); 173 playtime.restart();
174 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / freq) ); 174 playtime = playtime.addMSecs( long((double)-pos * 1000.0 / freq) );
175 currentSample = pos + 1; 175 currentSample = pos + 1;
176 mediaPlayerState->curDecoder()->audioSetSample( currentSample, stream ); 176 mediaPlayerState->curDecoder()->audioSetSample( currentSample, stream );
177 audioSampleCounter = currentSample - 1; 177 audioSampleCounter = currentSample - 1;
178 } 178 }
179 179
180 audioMutex->unlock(); 180 audioMutex->unlock();
181} 181}
182 182
183 183
184void LoopControl::startVideo() { 184void LoopControl::startVideo() {
185 185
186 if ( moreVideo ) { 186 if ( moreVideo ) {
187 187
188 if ( mediaPlayerState->curDecoder() ) { 188 if ( mediaPlayerState->curDecoder() ) {
189 189
190 if ( hasAudioChannel && !isMuted ) { 190 if ( hasAudioChannel && !isMuted ) {
191 191
192 current_frame = long( playtime.elapsed() * framerate / 1000 ); 192 current_frame = long( playtime.elapsed() * framerate / 1000 );
193 193
194 if ( prev_frame != -1 && current_frame <= prev_frame ) 194 if ( prev_frame != -1 && current_frame <= prev_frame )
195 return; 195 return;
196 196
197 } else { 197 } else {
198 // Don't skip 198 // Don't skip
199 current_frame++; 199 current_frame++;
200 } 200 }
201 201
202 if ( prev_frame == -1 || current_frame > prev_frame ) { 202 if ( prev_frame == -1 || current_frame > prev_frame ) {
203 if ( current_frame > prev_frame + 1 ) { 203 if ( current_frame > prev_frame + 1 ) {
204 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream ); 204 mediaPlayerState->curDecoder()->videoSetFrame( current_frame, stream );
205 } 205 }
206 moreVideo = videoUI->playVideo(); 206 moreVideo = videoUI->playVideo();
207 prev_frame = current_frame; 207 prev_frame = current_frame;
208 } 208 }
209 209
210 } else { 210 } else {
211 211
212 moreVideo = FALSE; 212 moreVideo = FALSE;
213 killTimer( videoId ); 213 killTimer( videoId );
214 214
215 } 215 }
216 216
217 } 217 }
218} 218}
219 219
220 220
221void LoopControl::startAudio() { 221void LoopControl::startAudio() {
222 222
223//qDebug("start audio"); 223//qDebug("start audio");
224 audioMutex->lock(); 224 audioMutex->lock();
225 if ( moreAudio ) { 225 if ( moreAudio ) {
226 226
227 if ( !isMuted && mediaPlayerState->curDecoder() ) { 227 if ( !isMuted && mediaPlayerState->curDecoder() ) {
228 228
229 currentSample = audioSampleCounter + 1; 229 currentSample = audioSampleCounter + 1;
230 230
231 if ( currentSample != audioSampleCounter + 1 ) 231 if ( currentSample != audioSampleCounter + 1 )
232 qDebug("out of sync with decoder %i %i", currentSample, audioSampleCounter); 232 qDebug("out of sync with decoder %i %i", currentSample, audioSampleCounter);
233 233
234 long samplesRead = 0; 234 long samplesRead = 0;
235 bool readOk=mediaPlayerState->curDecoder()->audioReadSamples( (short*)audioBuffer, channels, 1024, samplesRead, stream ); 235 bool readOk=mediaPlayerState->curDecoder()->audioReadSamples( (short*)audioBuffer, channels, 1024, samplesRead, stream );
236 long sampleWeShouldBeAt = long( playtime.elapsed() ) * freq / 1000; 236 long sampleWeShouldBeAt = long( playtime.elapsed() ) * freq / 1000;
237 long sampleWaitTime = currentSample - sampleWeShouldBeAt; 237 long sampleWaitTime = currentSample - sampleWeShouldBeAt;
238 238
239// this causes drop outs not sure why its even here 239// this causes drop outs not sure why its even here
240// if ( ( sampleWaitTime > 2000 ) && ( sampleWaitTime < 20000 ) ) { 240 if ( ( sampleWaitTime > 2000 ) && ( sampleWaitTime < 20000 ) ) {
241// usleep( (long)((double)sampleWaitTime * 1000000.0 / freq) ); 241 usleep( (long)((double)sampleWaitTime * 1000000.0 / freq) );
242// } 242 }
243// else if ( sampleWaitTime <= -5000 ) { 243 else if ( sampleWaitTime <= -5000 ) {
244// qDebug("need to catch up by: %li (%i,%li)", -sampleWaitTime, currentSample, sampleWeShouldBeAt ); 244 qDebug("need to catch up by: %li (%i,%li)", -sampleWaitTime, currentSample, sampleWeShouldBeAt );
245// //mediaPlayerState->curDecoder()->audioSetSample( sampleWeShouldBeAt, stream ); 245// //mediaPlayerState->curDecoder()->audioSetSample( sampleWeShouldBeAt, stream );
246// currentSample = sampleWeShouldBeAt; 246 currentSample = sampleWeShouldBeAt;
247// } 247 }
248 248
249 audioDevice->write( audioBuffer, samplesRead * 2 * channels ); 249 audioDevice->write( audioBuffer, samplesRead * 2 * channels );
250 250
251 if( mediaPlayerState->isStreaming == FALSE) 251 if( mediaPlayerState->isStreaming == FALSE)
252 audioSampleCounter = currentSample + samplesRead - 1; 252 audioSampleCounter = currentSample + samplesRead - 1;
253 253
254 moreAudio = readOk && (audioSampleCounter <= total_audio_samples); 254 moreAudio = readOk && (audioSampleCounter <= total_audio_samples);
255 255
256 } else { 256 } else {
257 257
258 moreAudio = FALSE; 258 moreAudio = FALSE;
259 259
260 } 260 }
261 261
262 } 262 }
263 263
264 audioMutex->unlock(); 264 audioMutex->unlock();
265} 265}
266 266
267 267
268void LoopControl::killTimers() { 268void LoopControl::killTimers() {
269 269
270 audioMutex->lock(); 270 audioMutex->lock();
271 271
272 if ( hasVideoChannel ) 272 if ( hasVideoChannel )
273 killTimer( videoId ); 273 killTimer( videoId );
274 killTimer( sliderId ); 274 killTimer( sliderId );
275 threadOkToGo = FALSE; 275 threadOkToGo = FALSE;
276 276
277 audioMutex->unlock(); 277 audioMutex->unlock();
278} 278}
279 279
280 280
281void LoopControl::startTimers() { 281void LoopControl::startTimers() {
282 282
283 audioMutex->lock(); 283 audioMutex->lock();
284 284
285 moreVideo = FALSE; 285 moreVideo = FALSE;
286 moreAudio = FALSE; 286 moreAudio = FALSE;
287 287
288 if ( hasVideoChannel ) { 288 if ( hasVideoChannel ) {
289 moreVideo = TRUE; 289 moreVideo = TRUE;
290 int mSecsBetweenFrames = (int)(100 / framerate); // 10% of the real value 290 int mSecsBetweenFrames = (int)(100 / framerate); // 10% of the real value
291 videoId = startTimer( mSecsBetweenFrames ); 291 videoId = startTimer( mSecsBetweenFrames );
292 } 292 }
293 293
294 if ( hasAudioChannel ) { 294 if ( hasAudioChannel ) {
295 moreAudio = TRUE; 295 moreAudio = TRUE;
296 threadOkToGo = TRUE; 296 threadOkToGo = TRUE;
297 } 297 }
298 298
299 sliderId = startTimer( 300 ); // update slider every 1/3 second 299 sliderId = startTimer( 300 ); // update slider every 1/3 second
300 300
301 audioMutex->unlock(); 301 audioMutex->unlock();
302} 302}
303 303
304 304
305void LoopControl::setPaused( bool pause ) { 305void LoopControl::setPaused( bool pause ) {
306 306
307 if ( !mediaPlayerState->curDecoder() || !mediaPlayerState->curDecoder()->isOpen() ) 307 if ( !mediaPlayerState->curDecoder() || !mediaPlayerState->curDecoder()->isOpen() )
308 return; 308 return;
309 309
310 if ( pause ) { 310 if ( pause ) {
311 killTimers(); 311 killTimers();
312 } else { 312 } else {
313 // Force an update of the position 313 // Force an update of the position
314 mediaPlayerState->setPosition( mediaPlayerState->position() + 1 ); 314 mediaPlayerState->setPosition( mediaPlayerState->position() + 1 );
315 mediaPlayerState->setPosition( mediaPlayerState->position() - 1 ); 315 mediaPlayerState->setPosition( mediaPlayerState->position() - 1 );
316 // Just like we never stopped 316 // Just like we never stopped
317 startTimers(); 317 startTimers();
318 } 318 }
319} 319}
320 320
321 321
322void LoopControl::stop( bool willPlayAgainShortly ) { 322void LoopControl::stop( bool willPlayAgainShortly ) {
323 323
324#if defined(Q_WS_QWS) && !defined(QT_NO_COP) 324#if defined(Q_WS_QWS) && !defined(QT_NO_COP)
325 if ( !willPlayAgainShortly && disabledSuspendScreenSaver ) { 325 if ( !willPlayAgainShortly && disabledSuspendScreenSaver ) {
326 disabledSuspendScreenSaver = FALSE; 326 disabledSuspendScreenSaver = FALSE;
327 // Re-enable the suspend mode 327 // Re-enable the suspend mode
328 QCopEnvelope("QPE/System", "setScreenSaverMode(int)" ) << QPEApplication::Enable; 328 QCopEnvelope("QPE/System", "setScreenSaverMode(int)" ) << QPEApplication::Enable;
329 } 329 }
330#endif 330#endif
331 331
332 if ( mediaPlayerState->curDecoder() && mediaPlayerState->curDecoder()->isOpen() ) { 332 if ( mediaPlayerState->curDecoder() && mediaPlayerState->curDecoder()->isOpen() ) {
333 333
334 killTimers(); 334 killTimers();
335 335
336 audioMutex->lock(); 336 audioMutex->lock();
337 337
338 mediaPlayerState->curDecoder()->close(); 338 mediaPlayerState->curDecoder()->close();
339 339
340 if ( audioDevice ) { 340 if ( audioDevice ) {
341 delete audioDevice; 341 delete audioDevice;
342 delete audioBuffer; 342 delete audioBuffer;
343 audioDevice = 0; 343 audioDevice = 0;