mirror of
https://github.com/Ardour/ardour.git
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219 lines
5.5 KiB
C++
219 lines
5.5 KiB
C++
/*
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Copyright (C) 2006 Paul Davis
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <pbd/error.h>
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#include <ardour/coreaudio_source.h>
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#include "i18n.h"
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#include <AudioToolbox/AudioFormat.h>
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using namespace ARDOUR;
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CoreAudioSource::CoreAudioSource (const XMLNode& node)
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: ExternalSource (node)
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{
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init (_name, true);
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SourceCreated (this); /* EMIT SIGNAL */
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}
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CoreAudioSource::CoreAudioSource (const string& idstr, bool build_peak)
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: ExternalSource(idstr, build_peak)
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{
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init (idstr, build_peak);
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if (build_peak) {
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SourceCreated (this); /* EMIT SIGNAL */
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}
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}
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void
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CoreAudioSource::init (const string& idstr, bool build_peak)
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{
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string::size_type pos;
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string file;
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tmpbuf = 0;
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tmpbufsize = 0;
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af = 0;
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OSStatus err = noErr;
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_name = idstr;
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if ((pos = idstr.find_last_of (':')) == string::npos) {
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channel = 0;
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file = idstr;
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} else {
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channel = atoi (idstr.substr (pos+1).c_str());
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file = idstr.substr (0, pos);
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}
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/* note that we temporarily truncated _id at the colon */
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FSRef fsr;
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err = FSPathMakeRef ((UInt8*)file.c_str(), &fsr, 0);
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if (err != noErr) {
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cerr << "FSPathMakeRef " << err << endl;
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throw failed_constructor();
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}
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err = ExtAudioFileOpen (&fsr, &af);
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if (err != noErr) {
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cerr << "ExtAudioFileOpen " << err << endl;
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ExtAudioFileDispose (af);
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throw failed_constructor();
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}
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AudioStreamBasicDescription file_asbd;
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memset(&file_asbd, 0, sizeof(AudioStreamBasicDescription));
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size_t asbd_size = sizeof(AudioStreamBasicDescription);
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err = ExtAudioFileGetProperty(af,
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kExtAudioFileProperty_FileDataFormat, &asbd_size, &file_asbd);
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if (err != noErr) {
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cerr << "ExtAudioFileGetProperty1 " << err << endl;
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ExtAudioFileDispose (af);
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throw failed_constructor();
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}
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n_channels = file_asbd.mChannelsPerFrame;
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cerr << "number of channels: " << n_channels << endl;
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if (channel >= n_channels) {
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error << string_compose(_("CoreAudioSource: file only contains %1 channels; %2 is invalid as a channel number"), n_channels, channel) << endmsg;
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ExtAudioFileDispose (af);
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throw failed_constructor();
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}
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int64_t ca_frames;
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size_t prop_size = sizeof(int64_t);
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err = ExtAudioFileGetProperty(af, kExtAudioFileProperty_FileLengthFrames, &prop_size, &ca_frames);
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if (err != noErr) {
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cerr << "ExtAudioFileGetProperty2 " << err << endl;
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ExtAudioFileDispose (af);
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throw failed_constructor();
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}
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_length = ca_frames;
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_path = file;
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AudioStreamBasicDescription client_asbd;
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memset(&client_asbd, 0, sizeof(AudioStreamBasicDescription));
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client_asbd.mSampleRate = file_asbd.mSampleRate;
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client_asbd.mFormatID = kAudioFormatLinearPCM;
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client_asbd.mFormatFlags = kLinearPCMFormatFlagIsFloat;
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client_asbd.mBytesPerPacket = file_asbd.mChannelsPerFrame * 4;
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client_asbd.mFramesPerPacket = 1;
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client_asbd.mBytesPerFrame = client_asbd.mBytesPerPacket;
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client_asbd.mChannelsPerFrame = file_asbd.mChannelsPerFrame;
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client_asbd.mBitsPerChannel = 32;
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err = ExtAudioFileSetProperty (af, kExtAudioFileProperty_ClientDataFormat, asbd_size, &client_asbd);
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if (err != noErr) {
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cerr << "ExtAudioFileSetProperty3 " << err << endl;
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ExtAudioFileDispose (af);
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throw failed_constructor ();
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}
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if (build_peak) {
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if (initialize_peakfile (false, file)) {
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error << "initialize peakfile failed" << endmsg;
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ExtAudioFileDispose (af);
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throw failed_constructor ();
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}
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}
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}
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CoreAudioSource::~CoreAudioSource ()
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{
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GoingAway (this); /* EMIT SIGNAL */
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if (af) {
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ExtAudioFileDispose (af);
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}
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if (tmpbuf) {
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delete [] tmpbuf;
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}
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}
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jack_nframes_t
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CoreAudioSource::read (Sample *dst, jack_nframes_t start, jack_nframes_t cnt, char * workbuf) const
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{
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OSStatus err = noErr;
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err = ExtAudioFileSeek(af, start);
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if (err != noErr) {
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error << string_compose(_("CoreAudioSource: could not seek to frame %1 within %2 (%3)"), start, _name.substr (1), err) << endmsg;
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return 0;
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}
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AudioBufferList abl;
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abl.mNumberBuffers = 1;
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abl.mBuffers[0].mNumberChannels = n_channels;
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abl.mBuffers[0].mDataByteSize = cnt * sizeof(Sample);
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abl.mBuffers[0].mData = dst;
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if (n_channels == 1) {
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err = ExtAudioFileRead(af, (UInt32*) &cnt, &abl);
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_read_data_count = cnt * sizeof(float);
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return cnt;
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}
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uint32_t real_cnt = cnt * n_channels;
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{
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Glib::Mutex::Lock lm (_tmpbuf_lock);
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if (tmpbufsize < real_cnt) {
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if (tmpbuf) {
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delete [] tmpbuf;
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}
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tmpbufsize = real_cnt;
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tmpbuf = new float[tmpbufsize];
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}
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abl.mBuffers[0].mDataByteSize = real_cnt * sizeof(Sample);
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abl.mBuffers[0].mData = tmpbuf;
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err = ExtAudioFileRead(af, (UInt32*) &real_cnt, &abl);
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float *ptr = tmpbuf + channel;
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real_cnt /= n_channels;
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/* stride through the interleaved data */
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for (uint32_t n = 0; n < real_cnt; ++n) {
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dst[n] = *ptr;
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ptr += n_channels;
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}
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}
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_read_data_count = cnt * sizeof(float);
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return real_cnt;
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}
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float
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CoreAudioSource::sample_rate() const
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{
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/* XXX taybin fill me in please */
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return 44100.0f;
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}
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