7c4339c195
It's best to avoid using doubles in the mixer since the FPU's set to single- precision mode. The new clock timing is similar to the device clock timing, and should hopefully be less prone to drift caused by fp rounding errors.
240 lines
5.9 KiB
C
240 lines
5.9 KiB
C
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#include "config.h"
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#include <stdlib.h>
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#include <string.h>
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#include <limits.h>
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#include "midi/base.h"
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#include "alMidi.h"
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#include "alMain.h"
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#include "alError.h"
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#include "alThunk.h"
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#include "evtqueue.h"
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#include "rwlock.h"
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#include "alu.h"
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/* MIDI events */
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#define SYSEX_EVENT (0xF0)
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void InitEvtQueue(EvtQueue *queue)
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{
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queue->events = NULL;
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queue->maxsize = 0;
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queue->size = 0;
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queue->pos = 0;
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}
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void ResetEvtQueue(EvtQueue *queue)
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{
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ALsizei i;
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for(i = 0;i < queue->size;i++)
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{
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if(queue->events[i].event == SYSEX_EVENT)
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{
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free(queue->events[i].param.sysex.data);
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queue->events[i].param.sysex.data = NULL;
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}
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}
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free(queue->events);
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queue->events = NULL;
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queue->maxsize = 0;
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queue->size = 0;
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queue->pos = 0;
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}
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ALenum InsertEvtQueue(EvtQueue *queue, const MidiEvent *evt)
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{
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ALsizei pos;
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if(queue->maxsize == queue->size)
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{
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if(queue->pos > 0)
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{
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/* Queue has some stale entries, remove them to make space for more
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* events. */
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for(pos = 0;pos < queue->pos;pos++)
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{
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if(queue->events[pos].event == SYSEX_EVENT)
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{
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free(queue->events[pos].param.sysex.data);
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queue->events[pos].param.sysex.data = NULL;
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}
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}
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memmove(&queue->events[0], &queue->events[queue->pos],
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(queue->size-queue->pos)*sizeof(queue->events[0]));
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queue->size -= queue->pos;
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queue->pos = 0;
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}
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else
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{
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/* Queue is full, double the allocated space. */
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void *temp = NULL;
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ALsizei newsize;
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newsize = (queue->maxsize ? (queue->maxsize<<1) : 16);
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if(newsize > queue->maxsize)
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temp = realloc(queue->events, newsize * sizeof(queue->events[0]));
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if(!temp)
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return AL_OUT_OF_MEMORY;
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queue->events = temp;
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queue->maxsize = newsize;
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}
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}
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pos = queue->pos;
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if(queue->size > 0)
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{
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ALsizei high = queue->size - 1;
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while(pos < high)
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{
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ALsizei mid = pos + (high-pos)/2;
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if(queue->events[mid].time < evt->time)
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pos = mid + 1;
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else
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high = mid;
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}
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while(pos < queue->size && queue->events[pos].time <= evt->time)
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pos++;
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if(pos < queue->size)
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memmove(&queue->events[pos+1], &queue->events[pos],
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(queue->size-pos)*sizeof(queue->events[0]));
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}
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queue->events[pos] = *evt;
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queue->size++;
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return AL_NO_ERROR;
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}
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void MidiSynth_Construct(MidiSynth *self, ALCdevice *device)
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{
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InitEvtQueue(&self->EventQueue);
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RWLockInit(&self->Lock);
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self->Soundfonts = NULL;
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self->NumSoundfonts = 0;
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self->Gain = 1.0f;
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self->State = AL_INITIAL;
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self->ClockBase = 0;
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self->SamplesDone = 0;
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self->SampleRate = device->Frequency;
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}
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void MidiSynth_Destruct(MidiSynth *self)
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{
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ALsizei i;
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for(i = 0;i < self->NumSoundfonts;i++)
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DecrementRef(&self->Soundfonts[i]->ref);
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free(self->Soundfonts);
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self->Soundfonts = NULL;
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self->NumSoundfonts = 0;
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ResetEvtQueue(&self->EventQueue);
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}
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ALenum MidiSynth_selectSoundfonts(MidiSynth *self, ALCcontext *context, ALsizei count, const ALuint *ids)
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{
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ALCdevice *device = context->Device;
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ALsoundfont **sfonts;
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ALsizei i;
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if(self->State != AL_INITIAL && self->State != AL_STOPPED)
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return AL_INVALID_OPERATION;
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sfonts = calloc(1, count * sizeof(sfonts[0]));
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if(!sfonts) return AL_OUT_OF_MEMORY;
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for(i = 0;i < count;i++)
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{
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if(ids[i] == 0)
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sfonts[i] = ALsoundfont_getDefSoundfont(context);
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else if(!(sfonts[i]=LookupSfont(device, ids[i])))
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{
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free(sfonts);
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return AL_INVALID_VALUE;
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}
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}
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for(i = 0;i < count;i++)
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IncrementRef(&sfonts[i]->ref);
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sfonts = ExchangePtr((XchgPtr*)&self->Soundfonts, sfonts);
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count = ExchangeInt(&self->NumSoundfonts, count);
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for(i = 0;i < count;i++)
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DecrementRef(&sfonts[i]->ref);
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free(sfonts);
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return AL_NO_ERROR;
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}
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extern inline void MidiSynth_setGain(MidiSynth *self, ALfloat gain);
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extern inline ALfloat MidiSynth_getGain(const MidiSynth *self);
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extern inline void MidiSynth_setState(MidiSynth *self, ALenum state);
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extern inline ALenum MidiSynth_getState(const MidiSynth *self);
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void MidiSynth_stop(MidiSynth *self)
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{
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ResetEvtQueue(&self->EventQueue);
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self->ClockBase = 0;
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self->SamplesDone = 0;
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}
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extern inline void MidiSynth_reset(MidiSynth *self);
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extern inline ALuint64 MidiSynth_getTime(const MidiSynth *self);
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extern inline ALuint64 MidiSynth_getNextEvtTime(const MidiSynth *self);
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void MidiSynth_setSampleRate(MidiSynth *self, ALuint srate)
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{
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if(self->SampleRate != srate)
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{
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self->ClockBase += self->SamplesDone * MIDI_CLOCK_RES / self->SampleRate;
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self->SamplesDone = 0;
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self->SampleRate = srate;
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}
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}
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extern inline void MidiSynth_update(MidiSynth *self, ALCdevice *device);
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ALenum MidiSynth_insertEvent(MidiSynth *self, ALuint64 time, ALuint event, ALsizei param1, ALsizei param2)
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{
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MidiEvent entry;
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entry.time = time;
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entry.event = event;
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entry.param.val[0] = param1;
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entry.param.val[1] = param2;
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return InsertEvtQueue(&self->EventQueue, &entry);
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}
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ALenum MidiSynth_insertSysExEvent(MidiSynth *self, ALuint64 time, const ALbyte *data, ALsizei size)
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{
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MidiEvent entry;
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ALenum err;
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entry.time = time;
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entry.event = SYSEX_EVENT;
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entry.param.sysex.size = size;
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entry.param.sysex.data = malloc(size);
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if(!entry.param.sysex.data)
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return AL_OUT_OF_MEMORY;
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memcpy(entry.param.sysex.data, data, size);
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err = InsertEvtQueue(&self->EventQueue, &entry);
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if(err != AL_NO_ERROR)
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free(entry.param.sysex.data);
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return err;
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}
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