xref: /haiku/src/add-ons/media/media-add-ons/mixer/MixerInput.cpp (revision af8d0a4d4e15c210c51678cd34de4057e43cf96e)
1678c2017Sbeveloper #include <MediaNode.h>
22e9d6607Sbeveloper #include <Buffer.h>
32e9d6607Sbeveloper #include <RealtimeAlloc.h>
47b0daf5cSbeveloper #include <string.h>
58d28117fSbeveloper #include <TimeSource.h> // XXX debug only
6678c2017Sbeveloper #include "MixerInput.h"
7678c2017Sbeveloper #include "MixerCore.h"
8e6c7c99fSbeveloper #include "MixerUtils.h"
97b0daf5cSbeveloper #include "Resampler.h"
1088777023Sbeveloper #include "ByteSwap.h"
11e6c7c99fSbeveloper #include "debug.h"
12678c2017Sbeveloper 
137b0daf5cSbeveloper template<class t> const t & max(const t &t1, const t &t2) { return (t1 > t2) ?  t1 : t2; }
147b0daf5cSbeveloper 
158d28117fSbeveloper MixerInput::MixerInput(MixerCore *core, const media_input &input, float mixFrameRate, int32 mixFrameCount)
16e6c7c99fSbeveloper  :	fCore(core),
172e9d6607Sbeveloper  	fInput(input),
1888777023Sbeveloper 	fInputByteSwap(0),
192e9d6607Sbeveloper 	fInputChannelInfo(0),
202e9d6607Sbeveloper 	fInputChannelCount(0),
212e9d6607Sbeveloper 	fInputChannelMask(0),
222e9d6607Sbeveloper 	fMixerChannelInfo(0),
232e9d6607Sbeveloper 	fMixerChannelCount(0),
242e9d6607Sbeveloper 	fMixBuffer(0),
257b0daf5cSbeveloper 	fMixBufferFrameRate(0),
267b0daf5cSbeveloper 	fMixBufferFrameCount(0),
27*af8d0a4dSbeveloper 	fLastDataAvailableTime(-1),
287b0daf5cSbeveloper 	fResampler(0),
29356855c3Sbeveloper 	fRtmPool(0),
302e9d6607Sbeveloper 	fUserOverridesChannelDesignations(false)
31678c2017Sbeveloper {
32e6c7c99fSbeveloper 	fix_multiaudio_format(&fInput.format.u.raw_audio);
33e6c7c99fSbeveloper 	PRINT_INPUT("MixerInput::MixerInput", fInput);
34e6c7c99fSbeveloper 	PRINT_CHANNEL_MASK(fInput.format);
352e9d6607Sbeveloper 
362e9d6607Sbeveloper 	ASSERT(fInput.format.u.raw_audio.channel_count > 0);
372e9d6607Sbeveloper 
382e9d6607Sbeveloper 	fInputChannelCount = fInput.format.u.raw_audio.channel_count;
392e9d6607Sbeveloper 	fInputChannelMask = fInput.format.u.raw_audio.channel_mask;
402e9d6607Sbeveloper 	fInputChannelInfo = new input_chan_info[fInputChannelCount];
412e9d6607Sbeveloper 
4288777023Sbeveloper 	// perhaps we need byte swapping
4388777023Sbeveloper 	if (fInput.format.u.raw_audio.byte_order != B_MEDIA_HOST_ENDIAN) {
4488777023Sbeveloper 		if (	fInput.format.u.raw_audio.format == media_raw_audio_format::B_AUDIO_FLOAT
4588777023Sbeveloper 			 ||	fInput.format.u.raw_audio.format == media_raw_audio_format::B_AUDIO_INT
4688777023Sbeveloper 			 ||	fInput.format.u.raw_audio.format == media_raw_audio_format::B_AUDIO_SHORT) {
4788777023Sbeveloper 			fInputByteSwap = new ByteSwap(fInput.format.u.raw_audio.format);
4888777023Sbeveloper 		}
4988777023Sbeveloper 	}
5088777023Sbeveloper 
512e9d6607Sbeveloper 	// initialize fInputChannelInfo
522e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++) {
532e9d6607Sbeveloper 		fInputChannelInfo[i].buffer_base = 0;	// will be set by SetMixBufferFormat()
542e9d6607Sbeveloper 		fInputChannelInfo[i].designations = 0;	// will be set by UpdateChannelDesignations()
552e9d6607Sbeveloper 		fInputChannelInfo[i].gain = 1.0;
562e9d6607Sbeveloper 	}
572e9d6607Sbeveloper 
587b0daf5cSbeveloper 	// create resamplers
597b0daf5cSbeveloper 	fResampler = new Resampler * [fInputChannelCount];
607b0daf5cSbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
617b0daf5cSbeveloper 		fResampler[i] = new Resampler(fInput.format.u.raw_audio.format, media_raw_audio_format::B_AUDIO_FLOAT);
627b0daf5cSbeveloper 
632e9d6607Sbeveloper 	// fMixerChannelInfo and fMixerChannelCount will be initialized by UpdateMixerChannels()
642e9d6607Sbeveloper 
658d28117fSbeveloper 	SetMixBufferFormat(mixFrameRate, mixFrameCount);
662e9d6607Sbeveloper 
672e9d6607Sbeveloper 	// XXX a test:
688d28117fSbeveloper /*
692e9d6607Sbeveloper 	SetMixerChannelGain(0, 0.222);
702e9d6607Sbeveloper 	SetMixerChannelGain(1, 0.444);
712e9d6607Sbeveloper 	AddInputChannelDesignation(0, B_CHANNEL_REARRIGHT);
722e9d6607Sbeveloper 	SetMixerChannelGain(2, 0.666);
732e9d6607Sbeveloper 	AddInputChannelDesignation(1, B_CHANNEL_REARLEFT);
748d28117fSbeveloper */
75678c2017Sbeveloper }
76678c2017Sbeveloper 
77678c2017Sbeveloper MixerInput::~MixerInput()
78678c2017Sbeveloper {
792e9d6607Sbeveloper 	if (fMixBuffer)
802e9d6607Sbeveloper 		rtm_free(fMixBuffer);
81356855c3Sbeveloper 	if (fRtmPool)
82356855c3Sbeveloper 		rtm_delete_pool(fRtmPool);
832e9d6607Sbeveloper 	delete [] fInputChannelInfo;
842e9d6607Sbeveloper 	delete [] fMixerChannelInfo;
857b0daf5cSbeveloper 
867b0daf5cSbeveloper 	// delete resamplers
877b0daf5cSbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
887b0daf5cSbeveloper 		delete fResampler[i];
897b0daf5cSbeveloper 	delete [] fResampler;
90678c2017Sbeveloper }
91678c2017Sbeveloper 
92678c2017Sbeveloper void
93678c2017Sbeveloper MixerInput::BufferReceived(BBuffer *buffer)
94678c2017Sbeveloper {
9588777023Sbeveloper 	void *data;
9688777023Sbeveloper 	size_t size;
9788777023Sbeveloper 	bigtime_t start;
9888777023Sbeveloper 
99d5848e21Sbeveloper 	if (!fMixBuffer) {
100a2ca4723Sbeveloper 		ERROR("MixerInput::BufferReceived: dropped incoming buffer as we don't have a mix buffer\n");
101d5848e21Sbeveloper 		return;
102d5848e21Sbeveloper 	}
1032e9d6607Sbeveloper 
10488777023Sbeveloper 	data = buffer->Data();
10588777023Sbeveloper 	size = buffer->SizeUsed();
10688777023Sbeveloper 	start = buffer->Header()->start_time;
1078d28117fSbeveloper 	if (start < 0) {
108a2ca4723Sbeveloper 		ERROR("MixerInput::BufferReceived: buffer with negative start time of %Ld dropped\n", start);
1098d28117fSbeveloper 		return;
1108d28117fSbeveloper 	}
11188777023Sbeveloper 
112*af8d0a4dSbeveloper 	fLastDataAvailableTime = start + buffer_duration(fInput.format.u.raw_audio);
113*af8d0a4dSbeveloper 
11488777023Sbeveloper 	// swap the byte order of this buffer, if necessary
11588777023Sbeveloper 	if (fInputByteSwap)
11688777023Sbeveloper 		fInputByteSwap->Swap(data, size);
11788777023Sbeveloper 
1188d28117fSbeveloper 	int32 offset = frames_for_duration(fMixBufferFrameRate, start) % fMixBufferFrameCount;
1198d28117fSbeveloper 
120191033efSbeveloper 	PRINT(4, "MixerInput::BufferReceived: buffer start %10Ld, offset %6d\n", start, offset);
1217b0daf5cSbeveloper 
122191033efSbeveloper 	int in_frames = size / bytes_per_frame(fInput.format.u.raw_audio);
1237619f562Sbeveloper 	int out_frames = int((in_frames * fMixBufferFrameRate) / fInput.format.u.raw_audio.frame_rate); // XXX losing fractions
1247619f562Sbeveloper 	// XXX we should better accumulate the fractions from previous buffers, and also check previous end offset
1257619f562Sbeveloper 	// XXX to only add an output frame if needed (but we also need to use arrival times to cope with lost buffers).
1267619f562Sbeveloper 	// XXX This workaround will very often (but not always) cause the first sample of the next buffer to overwrite
1277619f562Sbeveloper 	// XXX the last sample of the current buffer (but that's better then having some random data at that place)
1287619f562Sbeveloper 	if (fMixBufferFrameRate % int(0.5 + fInput.format.u.raw_audio.frame_rate) != 0)
1297619f562Sbeveloper 		out_frames++;
1307b0daf5cSbeveloper 
1318d28117fSbeveloper 	//printf("data arrived for %10Ld to %10Ld, storing at frames %ld to %ld\n", start, start + duration_for_frames(fInput.format.u.raw_audio.frame_rate, frames_per_buffer(fInput.format.u.raw_audio)), offset, offset + out_frames);
1328df36cddSbeveloper 
1337b0daf5cSbeveloper 	if (offset + out_frames > fMixBufferFrameCount) {
1347b0daf5cSbeveloper 
1357b0daf5cSbeveloper 		int out_frames1 = fMixBufferFrameCount - offset;
1367b0daf5cSbeveloper 		int out_frames2 = out_frames - out_frames1;
1377b0daf5cSbeveloper 		int in_frames1 = (out_frames1 * in_frames) / out_frames;
1387b0daf5cSbeveloper 		int in_frames2 = in_frames - in_frames1;
1397b0daf5cSbeveloper 
1407619f562Sbeveloper 		PRINT(3, "at %10Ld, data arrived for %10Ld to %10Ld, storing at frames %ld to %ld and %ld to %ld\n", fCore->fTimeSource->Now(), start, start + duration_for_frames(fInput.format.u.raw_audio.frame_rate, frames_per_buffer(fInput.format.u.raw_audio)), offset, offset + out_frames1 - 1, 0, out_frames2 - 1);
1418df36cddSbeveloper 
142191033efSbeveloper 		PRINT(5, "  in_frames %5d, out_frames %5d, in_frames1 %5d, out_frames1 %5d, in_frames2 %5d, out_frames2 %5d\n",
143191033efSbeveloper 			  in_frames, out_frames, in_frames1, out_frames1, in_frames2, out_frames2);
1447b0daf5cSbeveloper 
1458d28117fSbeveloper 		offset *= sizeof(float) * fInputChannelCount; // convert offset from frames into bytes
1468d28117fSbeveloper 
1477b0daf5cSbeveloper 		for (int i = 0; i < fInputChannelCount; i++) {
14878563dcaSbeveloper 			fResampler[i]->Resample(reinterpret_cast<char *>(data) + i * bytes_per_sample(fInput.format.u.raw_audio),
14978563dcaSbeveloper 									bytes_per_frame(fInput.format.u.raw_audio),
1507b0daf5cSbeveloper 									in_frames1,
1518d28117fSbeveloper 									reinterpret_cast<char *>(fInputChannelInfo[i].buffer_base) + offset,
1527b0daf5cSbeveloper 									fInputChannelCount * sizeof(float),
1537b0daf5cSbeveloper 									out_frames1,
1547b0daf5cSbeveloper 									fInputChannelInfo[i].gain);
1557b0daf5cSbeveloper 
1567d970b31Sbeveloper 			fResampler[i]->Resample(reinterpret_cast<char *>(data) + i * bytes_per_sample(fInput.format.u.raw_audio) + in_frames1 * bytes_per_frame(fInput.format.u.raw_audio),
15778563dcaSbeveloper 									bytes_per_frame(fInput.format.u.raw_audio),
1587b0daf5cSbeveloper 									in_frames2,
1597b0daf5cSbeveloper 									reinterpret_cast<char *>(fInputChannelInfo[i].buffer_base),
1607b0daf5cSbeveloper 									fInputChannelCount * sizeof(float),
1617b0daf5cSbeveloper 									out_frames2,
1627b0daf5cSbeveloper 									fInputChannelInfo[i].gain);
1637b0daf5cSbeveloper 		}
1647b0daf5cSbeveloper 	} else {
1657b0daf5cSbeveloper 
1667619f562Sbeveloper 		PRINT(3, "at %10Ld, data arrived for %10Ld to %10Ld, storing at frames %ld to %ld\n", fCore->fTimeSource->Now(), start, start + duration_for_frames(fInput.format.u.raw_audio.frame_rate, frames_per_buffer(fInput.format.u.raw_audio)), offset, offset + out_frames - 1);
167191033efSbeveloper 		PRINT(5, "  in_frames %5d, out_frames %5d\n", in_frames, out_frames);
1688d28117fSbeveloper 
1698d28117fSbeveloper 		offset *= sizeof(float) * fInputChannelCount; // convert offset from frames into bytes
1707b0daf5cSbeveloper 
1717b0daf5cSbeveloper 		for (int i = 0; i < fInputChannelCount; i++) {
17278563dcaSbeveloper 			fResampler[i]->Resample(reinterpret_cast<char *>(data) + i * bytes_per_sample(fInput.format.u.raw_audio),
17378563dcaSbeveloper 									bytes_per_frame(fInput.format.u.raw_audio),
1747b0daf5cSbeveloper 									in_frames,
1758d28117fSbeveloper 									reinterpret_cast<char *>(fInputChannelInfo[i].buffer_base) + offset,
1767b0daf5cSbeveloper 									fInputChannelCount * sizeof(float),
1777b0daf5cSbeveloper 									out_frames,
1787b0daf5cSbeveloper 									fInputChannelInfo[i].gain);
1797b0daf5cSbeveloper 		}
1807b0daf5cSbeveloper 	}
181678c2017Sbeveloper }
1827ee2c804Sbeveloper 
1837ee2c804Sbeveloper media_input &
1847ee2c804Sbeveloper MixerInput::MediaInput()
1857ee2c804Sbeveloper {
1867ee2c804Sbeveloper 	return fInput;
1877ee2c804Sbeveloper }
188e6c7c99fSbeveloper 
189e6c7c99fSbeveloper int32
190e6c7c99fSbeveloper MixerInput::ID()
191e6c7c99fSbeveloper {
192e6c7c99fSbeveloper 	return fInput.destination.id;
193e6c7c99fSbeveloper }
194e6c7c99fSbeveloper 
195fae6ce82Sbeveloper uint32
196fae6ce82Sbeveloper MixerInput::GetInputChannelCount()
197fae6ce82Sbeveloper {
198fae6ce82Sbeveloper 	return fInputChannelCount;
199fae6ce82Sbeveloper }
200fae6ce82Sbeveloper 
2012e9d6607Sbeveloper void
2022e9d6607Sbeveloper MixerInput::AddInputChannelDesignation(int channel, uint32 des)
2032e9d6607Sbeveloper {
2042e9d6607Sbeveloper 	ASSERT(count_nonzero_bits(des) == 1);
205e6c7c99fSbeveloper 
2062e9d6607Sbeveloper 	// test if the channel is valid
2072e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2082e9d6607Sbeveloper 		return;
2092e9d6607Sbeveloper 
2102e9d6607Sbeveloper 	// test if it is already set
2112e9d6607Sbeveloper 	if (fInputChannelInfo[channel].designations & des)
2122e9d6607Sbeveloper 		return;
2132e9d6607Sbeveloper 
2142e9d6607Sbeveloper 	// remove it from all other channels that might have it
2152e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
2162e9d6607Sbeveloper 		fInputChannelInfo[i].designations &= ~des;
2172e9d6607Sbeveloper 
2182e9d6607Sbeveloper 	// add it to specified channel
2192e9d6607Sbeveloper 	fInputChannelInfo[channel].designations |= des;
2202e9d6607Sbeveloper 
2212e9d6607Sbeveloper 	fUserOverridesChannelDesignations = true;
2222e9d6607Sbeveloper 	UpdateMixerChannels();
2232e9d6607Sbeveloper }
2242e9d6607Sbeveloper 
2252e9d6607Sbeveloper void
2262e9d6607Sbeveloper MixerInput::RemoveInputChannelDesignation(int channel, uint32 des)
2272e9d6607Sbeveloper {
2282e9d6607Sbeveloper 	ASSERT(count_nonzero_bits(des) == 1);
2292e9d6607Sbeveloper 
2302e9d6607Sbeveloper 	// test if the channel is valid
2312e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2322e9d6607Sbeveloper 		return;
2332e9d6607Sbeveloper 
2342e9d6607Sbeveloper 	// test if it is really set
2352e9d6607Sbeveloper 	if ((fInputChannelInfo[channel].designations & des) == 0)
2362e9d6607Sbeveloper 		return;
2372e9d6607Sbeveloper 
2382e9d6607Sbeveloper 	// remove it from specified channel
2392e9d6607Sbeveloper 	fInputChannelInfo[channel].designations &= ~des;
2402e9d6607Sbeveloper 
2412e9d6607Sbeveloper 	fUserOverridesChannelDesignations = true;
2422e9d6607Sbeveloper 	UpdateMixerChannels();
2432e9d6607Sbeveloper }
2442e9d6607Sbeveloper 
2452e9d6607Sbeveloper uint32
2462e9d6607Sbeveloper MixerInput::GetInputChannelDesignations(int channel)
2472e9d6607Sbeveloper {
2482e9d6607Sbeveloper 	// test if the channel is valid
2492e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2502e9d6607Sbeveloper 		return 0;
2512e9d6607Sbeveloper 	return fInputChannelInfo[channel].designations;
2522e9d6607Sbeveloper }
2532e9d6607Sbeveloper 
2542e9d6607Sbeveloper uint32
2552e9d6607Sbeveloper MixerInput::GetInputChannelType(int channel)
2562e9d6607Sbeveloper {
2572e9d6607Sbeveloper 	// test if the channel is valid
2582e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2592e9d6607Sbeveloper 		return 0;
2602e9d6607Sbeveloper 	return GetChannelMask(channel, fInputChannelMask);
2612e9d6607Sbeveloper }
2622e9d6607Sbeveloper 
2632e9d6607Sbeveloper void
2642e9d6607Sbeveloper MixerInput::SetInputChannelGain(int channel, float gain)
2652e9d6607Sbeveloper {
2662e9d6607Sbeveloper 	// test if the channel is valid
2672e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2682e9d6607Sbeveloper 		return;
2692e9d6607Sbeveloper 	if (gain < 0.0f)
2702e9d6607Sbeveloper 		gain = 0.0f;
2712e9d6607Sbeveloper 
2722e9d6607Sbeveloper 	fInputChannelInfo[channel].gain = gain;
2732e9d6607Sbeveloper }
2742e9d6607Sbeveloper 
2752e9d6607Sbeveloper float
2762e9d6607Sbeveloper MixerInput::GetInputChannelGain(int channel)
2772e9d6607Sbeveloper {
2782e9d6607Sbeveloper 	// test if the channel is valid
2792e9d6607Sbeveloper 	if (channel < 0 || channel >= fInputChannelCount)
2802e9d6607Sbeveloper 		return 0.0f;
2812e9d6607Sbeveloper 	return fInputChannelInfo[channel].gain;
2822e9d6607Sbeveloper }
2832e9d6607Sbeveloper 
2842e9d6607Sbeveloper void
2852e9d6607Sbeveloper MixerInput::UpdateChannelDesignations()
2862e9d6607Sbeveloper {
2872e9d6607Sbeveloper 	// is the user already messed with the assignmens, don't do anything.
2882e9d6607Sbeveloper 	if (fUserOverridesChannelDesignations)
2892e9d6607Sbeveloper 		return;
2902e9d6607Sbeveloper 
291a2ca4723Sbeveloper 	TRACE("UpdateChannelDesignations: enter\n");
2922e9d6607Sbeveloper 
293806cf560Sbeveloper 	// first apply a 1:1 mapping
2942e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
2952e9d6607Sbeveloper 		fInputChannelInfo[i].designations = GetChannelMask(i, fInputChannelMask);
296806cf560Sbeveloper 
297806cf560Sbeveloper 	// specialize this, depending on the available physical output channels
298806cf560Sbeveloper 	switch (fCore->OutputChannelCount()) {
299806cf560Sbeveloper 		case 0:
300806cf560Sbeveloper 		case 1:
301806cf560Sbeveloper 			break;
302806cf560Sbeveloper 
303806cf560Sbeveloper 		case 2:
304806cf560Sbeveloper 			if (fInputChannelCount == 1 && (GetChannelMask(0, fInputChannelMask) & (B_CHANNEL_LEFT | B_CHANNEL_RIGHT))) {
305806cf560Sbeveloper 				fInputChannelInfo[0].designations = B_CHANNEL_LEFT | B_CHANNEL_RIGHT;
306806cf560Sbeveloper 			}
307806cf560Sbeveloper 			break;
308806cf560Sbeveloper 
309806cf560Sbeveloper 		default:
310806cf560Sbeveloper 			if (fInputChannelCount == 1 && (GetChannelMask(0, fInputChannelMask) & (B_CHANNEL_LEFT | B_CHANNEL_RIGHT))) {
311806cf560Sbeveloper 				fInputChannelInfo[0].designations = B_CHANNEL_LEFT | B_CHANNEL_RIGHT | B_CHANNEL_REARLEFT | B_CHANNEL_REARRIGHT;
312806cf560Sbeveloper 			}
313806cf560Sbeveloper 			if (fInputChannelCount == 2 && (GetChannelMask(0, fInputChannelMask) & B_CHANNEL_LEFT)) {
314806cf560Sbeveloper 				fInputChannelInfo[0].designations = B_CHANNEL_LEFT | B_CHANNEL_REARLEFT;
315806cf560Sbeveloper 			}
316806cf560Sbeveloper 			if (fInputChannelCount == 2 && (GetChannelMask(0, fInputChannelMask) & B_CHANNEL_RIGHT)) {
317806cf560Sbeveloper 				fInputChannelInfo[0].designations = B_CHANNEL_RIGHT | B_CHANNEL_REARRIGHT;
318806cf560Sbeveloper 			}
319806cf560Sbeveloper 			if (fInputChannelCount == 2 && (GetChannelMask(1, fInputChannelMask) & B_CHANNEL_LEFT)) {
320806cf560Sbeveloper 				fInputChannelInfo[1].designations = B_CHANNEL_LEFT | B_CHANNEL_REARLEFT;
321806cf560Sbeveloper 			}
322806cf560Sbeveloper 			if (fInputChannelCount == 2 && (GetChannelMask(1, fInputChannelMask) & B_CHANNEL_RIGHT)) {
323806cf560Sbeveloper 				fInputChannelInfo[1].designations = B_CHANNEL_RIGHT | B_CHANNEL_REARRIGHT;
324806cf560Sbeveloper 			}
325806cf560Sbeveloper 			break;
3262e9d6607Sbeveloper 	}
3272e9d6607Sbeveloper 
3282e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
329a2ca4723Sbeveloper 		TRACE("UpdateChannelDesignations: input channel %d, designations 0x%08X, base %p, gain %.3f\n", i, fInputChannelInfo[i].designations, fInputChannelInfo[i].buffer_base, fInputChannelInfo[i].gain);
3302e9d6607Sbeveloper 
331a2ca4723Sbeveloper 	TRACE("UpdateChannelDesignations: leave\n");
3322e9d6607Sbeveloper }
3332e9d6607Sbeveloper 
3342e9d6607Sbeveloper void
3352e9d6607Sbeveloper MixerInput::UpdateMixerChannels()
3362e9d6607Sbeveloper {
3372e9d6607Sbeveloper 	uint32 channel_count;
3382e9d6607Sbeveloper 	uint32 all_bits;
3392e9d6607Sbeveloper 	uint32 mask;
3402e9d6607Sbeveloper 
3412e9d6607Sbeveloper 	mixer_chan_info *old_mixer_channel_info;
3422e9d6607Sbeveloper 	uint32 old_mixer_channel_count;
3432e9d6607Sbeveloper 
344a2ca4723Sbeveloper 	TRACE("UpdateMixerChannels: enter\n");
3452e9d6607Sbeveloper 
3462e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
347a2ca4723Sbeveloper 		TRACE("UpdateMixerChannels: input channel %d, designations 0x%08X, base %p, gain %.3f\n", i, fInputChannelInfo[i].designations, fInputChannelInfo[i].buffer_base, fInputChannelInfo[i].gain);
3482e9d6607Sbeveloper 
3492e9d6607Sbeveloper 	all_bits = 0;
3502e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
3512e9d6607Sbeveloper 		all_bits |= fInputChannelInfo[i].designations;
3522e9d6607Sbeveloper 
353a2ca4723Sbeveloper 	TRACE("UpdateMixerChannels: all_bits = %08x\n", all_bits);
3542e9d6607Sbeveloper 
3552e9d6607Sbeveloper 	channel_count = count_nonzero_bits(all_bits);
3562e9d6607Sbeveloper 
357a2ca4723Sbeveloper 	TRACE("UpdateMixerChannels: %ld input channels, %ld mixer channels (%ld old)\n", fInputChannelCount, channel_count, fMixerChannelCount);
3582e9d6607Sbeveloper 
3592e9d6607Sbeveloper 	// If we resize the channel info array, we preserve the gain setting
3602e9d6607Sbeveloper 	// by saving the old array until new assignments are finished, and
3612e9d6607Sbeveloper 	// then applying the old gains. New gains are set to 1.0
3622e9d6607Sbeveloper 	if (channel_count != fMixerChannelCount) {
3632e9d6607Sbeveloper 		old_mixer_channel_info = fMixerChannelInfo;
3642e9d6607Sbeveloper 		old_mixer_channel_count = fMixerChannelCount;
3652e9d6607Sbeveloper 		fMixerChannelInfo = new mixer_chan_info[channel_count];
3662e9d6607Sbeveloper 		fMixerChannelCount = channel_count;
3672e9d6607Sbeveloper 		for (int i = 0; i < fMixerChannelCount; i++)
3682e9d6607Sbeveloper 			fMixerChannelInfo[i].gain = 1.0;
3692e9d6607Sbeveloper 	} else {
3702e9d6607Sbeveloper 		old_mixer_channel_info = 0;
3712e9d6607Sbeveloper 		old_mixer_channel_count = 0;
3722e9d6607Sbeveloper 	}
3732e9d6607Sbeveloper 
3742e9d6607Sbeveloper 	// assign each mixer channel one type
3752e9d6607Sbeveloper 	for (int i  = 0, mask = 1; i < fMixerChannelCount; i++) {
3762e9d6607Sbeveloper 		while (mask != 0 && (all_bits & mask) == 0)
3772e9d6607Sbeveloper 			mask <<= 1;
378a4b8db85Sbeveloper 		fMixerChannelInfo[i].type = ChannelMaskToChannelType(mask);
3792e9d6607Sbeveloper 		mask <<= 1;
3802e9d6607Sbeveloper 	}
3812e9d6607Sbeveloper 
3822e9d6607Sbeveloper 	// assign buffer_base pointer for each mixer channel
3832e9d6607Sbeveloper 	for (int i  = 0; i < fMixerChannelCount; i++) {
3842e9d6607Sbeveloper 		int j;
3852e9d6607Sbeveloper 		for (j = 0; j < fInputChannelCount; j++) {
386a4b8db85Sbeveloper 			if (fInputChannelInfo[j].designations & ChannelTypeToChannelMask(fMixerChannelInfo[i].type)) {
387d5848e21Sbeveloper 				fMixerChannelInfo[i].buffer_base = fMixBuffer ? &fMixBuffer[j] : 0;
3882e9d6607Sbeveloper 				break;
3892e9d6607Sbeveloper 			}
3902e9d6607Sbeveloper 		}
3912e9d6607Sbeveloper 		if (j == fInputChannelCount) {
392a2ca4723Sbeveloper 			ERROR("buffer assignment failed for mixer chan %d\n", i);
3932e9d6607Sbeveloper 			fMixerChannelInfo[i].buffer_base = fMixBuffer;
3942e9d6607Sbeveloper 		}
3952e9d6607Sbeveloper 	}
3962e9d6607Sbeveloper 
3972e9d6607Sbeveloper 	// apply old gains, overriding the 1.0 defaults for the old channels
3982e9d6607Sbeveloper 	if (old_mixer_channel_info != 0) {
3992e9d6607Sbeveloper 		for (int i  = 0; i < fMixerChannelCount; i++) {
4002e9d6607Sbeveloper 			for (int j = 0; j < old_mixer_channel_count; j++) {
401a4b8db85Sbeveloper 				if (fMixerChannelInfo[i].type == old_mixer_channel_info[j].type) {
4022e9d6607Sbeveloper 					fMixerChannelInfo[i].gain = old_mixer_channel_info[j].gain;
4032e9d6607Sbeveloper 					break;
4042e9d6607Sbeveloper 				}
4052e9d6607Sbeveloper 			}
4062e9d6607Sbeveloper 		}
4072e9d6607Sbeveloper 		// also delete the old info array
4082e9d6607Sbeveloper 		delete [] old_mixer_channel_info;
4092e9d6607Sbeveloper 	}
4102e9d6607Sbeveloper 
4112e9d6607Sbeveloper 	for (int i = 0; i < fMixerChannelCount; i++)
412a2ca4723Sbeveloper 		TRACE("UpdateMixerChannels: mixer channel %d, type %2d, des 0x%08X, base %p, gain %.3f\n", i, fMixerChannelInfo[i].type, ChannelTypeToChannelMask(fMixerChannelInfo[i].type), fMixerChannelInfo[i].buffer_base, fMixerChannelInfo[i].gain);
4132e9d6607Sbeveloper 
414a2ca4723Sbeveloper 	TRACE("UpdateMixerChannels: leave\n");
4152e9d6607Sbeveloper }
4162e9d6607Sbeveloper 
4172e9d6607Sbeveloper uint32
4182e9d6607Sbeveloper MixerInput::GetMixerChannelCount()
4192e9d6607Sbeveloper {
4202e9d6607Sbeveloper 	return fMixerChannelCount;
4212e9d6607Sbeveloper }
4222e9d6607Sbeveloper 
4232e9d6607Sbeveloper void
4242e9d6607Sbeveloper MixerInput::SetMixerChannelGain(int channel, float gain)
4252e9d6607Sbeveloper {
4262e9d6607Sbeveloper 	if (channel < 0 || channel >= fMixerChannelCount)
4272e9d6607Sbeveloper 		return;
4282e9d6607Sbeveloper 	if (gain < 0.0f)
4292e9d6607Sbeveloper 		gain = 0.0f;
4302e9d6607Sbeveloper 	fMixerChannelInfo[channel].gain = gain;
4312e9d6607Sbeveloper }
4322e9d6607Sbeveloper 
4332e9d6607Sbeveloper float
4342e9d6607Sbeveloper MixerInput::GetMixerChannelGain(int channel)
4352e9d6607Sbeveloper {
4362e9d6607Sbeveloper 	if (channel < 0 || channel >= fMixerChannelCount)
4372e9d6607Sbeveloper 		return 1.0;
4382e9d6607Sbeveloper 	return fMixerChannelInfo[channel].gain;
4392e9d6607Sbeveloper }
4402e9d6607Sbeveloper 
4412e9d6607Sbeveloper void
4428d28117fSbeveloper MixerInput::SetMixBufferFormat(int32 framerate, int32 frames)
4432e9d6607Sbeveloper {
444a2ca4723Sbeveloper 	TRACE("MixerInput::SetMixBufferFormat: framerate %ld, frames %ld\n", framerate, frames);
445d5848e21Sbeveloper 
4467b0daf5cSbeveloper 	fMixBufferFrameRate = framerate;
4478df36cddSbeveloper 	debugMixBufferFrames = frames;
4482e9d6607Sbeveloper 
449d5848e21Sbeveloper 	// frames and/or framerate can be 0 (if no output is connected)
450d5848e21Sbeveloper 	if (framerate == 0 || frames == 0) {
451d5848e21Sbeveloper 		if (fMixBuffer) {
452d5848e21Sbeveloper 			rtm_free(fMixBuffer);
453d5848e21Sbeveloper 			fMixBuffer = 0;
454d5848e21Sbeveloper 		}
455d5848e21Sbeveloper 		for (int i = 0; i < fInputChannelCount; i++)
456d5848e21Sbeveloper 			fInputChannelInfo[i].buffer_base = 0;
457d5848e21Sbeveloper 		fMixBufferFrameCount = 0;
458d5848e21Sbeveloper 
459d5848e21Sbeveloper 		UpdateChannelDesignations();
460d5848e21Sbeveloper 		UpdateMixerChannels();
461d5848e21Sbeveloper 		return;
462d5848e21Sbeveloper 	}
4637b0daf5cSbeveloper 
4647b0daf5cSbeveloper 	// make fMixBufferFrameCount an integral multiple of frames,
4657b0daf5cSbeveloper 	// but at least 3 times duration of our input buffer
4667b0daf5cSbeveloper 	// and at least 2 times duration of the output buffer
4677b0daf5cSbeveloper 	bigtime_t inputBufferLength  = duration_for_frames(fInput.format.u.raw_audio.frame_rate, frames_per_buffer(fInput.format.u.raw_audio));
4687b0daf5cSbeveloper 	bigtime_t outputBufferLength = duration_for_frames(framerate, frames);
4697b0daf5cSbeveloper 	bigtime_t mixerBufferLength = max_c(3 * inputBufferLength, 2 * outputBufferLength);
4707b0daf5cSbeveloper 	int temp = frames_for_duration(framerate, mixerBufferLength);
4717b0daf5cSbeveloper 	fMixBufferFrameCount = ((temp / frames) + 1) * frames;
4727b0daf5cSbeveloper 
473a2ca4723Sbeveloper 	TRACE("  inputBufferLength  %10Ld\n", inputBufferLength);
474a2ca4723Sbeveloper 	TRACE("  outputBufferLength %10Ld\n", outputBufferLength);
475a2ca4723Sbeveloper 	TRACE("  mixerBufferLength  %10Ld\n", mixerBufferLength);
476a2ca4723Sbeveloper 	TRACE("  fMixBufferFrameCount   %10ld\n", fMixBufferFrameCount);
4777b0daf5cSbeveloper 
4788d28117fSbeveloper 	ASSERT((fMixBufferFrameCount % frames) == 0);
4798d28117fSbeveloper 
4802e9d6607Sbeveloper 	if (fMixBuffer)
4812e9d6607Sbeveloper 		rtm_free(fMixBuffer);
482356855c3Sbeveloper 	if (fRtmPool)
483356855c3Sbeveloper 		rtm_delete_pool(fRtmPool);
4847b0daf5cSbeveloper 	int size = sizeof(float) * fInputChannelCount * fMixBufferFrameCount;
485356855c3Sbeveloper 	if (B_OK != rtm_create_pool(&fRtmPool, size))
486356855c3Sbeveloper 		fRtmPool = 0;
487356855c3Sbeveloper 	fMixBuffer = (float *)rtm_alloc(fRtmPool, size);
4887b0daf5cSbeveloper 	ASSERT(fMixBuffer);
4897b0daf5cSbeveloper 
4907b0daf5cSbeveloper 	memset(fMixBuffer, 0, size);
4912e9d6607Sbeveloper 
4922e9d6607Sbeveloper 	for (int i = 0; i < fInputChannelCount; i++)
4937b0daf5cSbeveloper 		fInputChannelInfo[i].buffer_base = &fMixBuffer[i];
494d5848e21Sbeveloper 
495d5848e21Sbeveloper 	UpdateChannelDesignations();
496d5848e21Sbeveloper 	UpdateMixerChannels();
4972e9d6607Sbeveloper }
498