142 lines
4.6 KiB
C++
142 lines
4.6 KiB
C++
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#ifndef LUPPP_EVENT_HANDLER_DSP_H
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#define LUPPP_EVENT_HANDLER_DSP_H
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// Library
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#include <cstring>
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#include <iostream>
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#include <jack/ringbuffer.h>
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// Internal
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#include "jack.hxx"
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#include "event.hxx"
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#include "eventhandler.hxx"
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using namespace std;
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extern Jack* jack;
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void handleDspEvents()
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{
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uint availableRead = jack_ringbuffer_read_space( rbToDsp );
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while ( availableRead >= sizeof(EventBase) )
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{
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jack_ringbuffer_peek( rbToDsp, (char*)processDspMem, sizeof(EventBase) );
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EventBase* e = (EventBase*)processDspMem;
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// recheck the size against the actual event size
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if ( availableRead >= e->size() )
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{
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switch ( e->type() )
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{
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case Event::MASTER_VOL: {
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if ( availableRead >= sizeof(EventMasterVol) ) {
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EventMasterVol ev(0);
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventMasterVol) );
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//jack->masterVolume = ev.vol;
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} break; }
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case Event::LOOPER_LOAD: {
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if ( availableRead >= sizeof(EventLooperLoad) ) {
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EventLooperLoad ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventLooperLoad) );
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Looper* l = jack->getLooper( ev.track );
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l->setSample( ev.clip, (AudioBuffer*)ev.audioBuffer );
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} break; }
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case Event::METRONOME_ACTIVE: {
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if ( availableRead >= sizeof(EventMetronomeActive) ) {
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EventMetronomeActive ev(false);
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventMetronomeActive) );
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jack->getMetronome()->setActive(ev.active);
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} break; }
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case Event::LOOPER_STATE: {
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if ( availableRead >= sizeof(EventLooperState) ) {
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EventLooperState ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventLooperState) );
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//jack->setLooperState( ev.track, ev.scene, ev.state );
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} break; }
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case Event::LOOPER_LOOP_LENGTH: {
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if ( availableRead >= sizeof(EventLooperLoopLength) ) {
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EventLooperLoopLength ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventLooperLoopLength) );
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//jack->setLooperLoopLength( ev.track, ev.scale );
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} break; }
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case Event::TIME_BPM: {
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if ( availableRead >= sizeof(EventTimeBPM) ) {
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EventTimeBPM ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventTimeBPM) );
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jack->getTimeManager()->setBpm(ev.bpm);
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} break; }
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case Event::TIME_TEMPO_TAP: {
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if ( availableRead >= sizeof(EventTimeTempoTap) ) {
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EventTimeTempoTap ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventTimeTempoTap) );
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jack->getTimeManager()->tap();
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} break; }
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// ======== FX ===========
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case Event::FX_REVERB: {
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if ( availableRead >= sizeof(EventFxReverb) ) {
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EventFxReverb ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventFxReverb) );
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jack->setReverb( ev.enable, ev.damping, ev.rtSize );
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break; }
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}
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case Event::TRACK_VOLUME: {
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if ( availableRead >= sizeof(EventTrackVol) ) {
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EventTrackVol ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventTrackVol) );
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jack->getTrackOutput(ev.track)->setMaster( ev.vol );
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break; }
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}
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case Event::TRACK_SEND: {
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if ( availableRead >= sizeof(EventTrackSend) ) {
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EventTrackSend ev;
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jack_ringbuffer_read( rbToDsp, (char*)&ev, sizeof(EventTrackSend) );
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if ( ev.send == SEND_REV )
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jack->getTrackOutput(ev.track)->setReverb( ev.value );
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else if ( ev.send == SEND_SIDE )
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jack->getTrackOutput(ev.track)->setSidechain( ev.value );
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else if ( ev.send == SEND_POST )
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jack->getTrackOutput(ev.track)->setPostSidechain( ev.value );
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else
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{
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// nothing
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}
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} break; }
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default:
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{
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cout << "DSP: Unkown message!! Will clog ringbuffer" << endl;
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// just do nothing
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break;
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}
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}
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}
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else
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{
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// next call will get the half-written event
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return;
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}
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// update available read, and loop over events
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availableRead = jack_ringbuffer_read_space( rbToDsp );
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}
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}
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void writeToDspRingbuffer(EventBase* e)
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{
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if ( jack_ringbuffer_write_space(rbToDsp) >= e->size() )
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{
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jack_ringbuffer_write( rbToDsp, (const char*)e, e->size() );
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}
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else
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{
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cout << "->DSP ringbuffer full!" << endl;
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}
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}
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#endif // LUPPP_EVENT_HANDLER_DSP_H
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