MIDI Plugin: Vital changes for stability
Among the changes, range checking on lots of things, and especially, the pre-render-loop backlog handler, which rendered samples left over from the previous call, would possibly over-render by way too much, due to a stupid backwards subtraction I managed to type into there. This is totally fixed now. Signed-off-by: Christopher Snowhill <kode54@gmail.com>CQTexperiment
parent
b1a98139cb
commit
808b14a358
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@ -14,20 +14,20 @@ MIDIPlayer::MIDIPlayer() {
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void MIDIPlayer::setSampleRate(unsigned long rate) {
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if(mStream.size()) {
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for(unsigned long i = 0; i < mStream.size(); i++) {
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mStream[i].m_timestamp = (unsigned long)((uint64_t)mStream[i].m_timestamp * rate / uSampleRate);
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mStream.at(i).m_timestamp = (unsigned long)((uint64_t)mStream.at(i).m_timestamp * rate / uSampleRate);
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}
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}
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if(uTimeCurrent) {
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uTimeCurrent = (unsigned long)((uint64_t)uTimeCurrent * rate / uSampleRate);
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uTimeCurrent = static_cast<unsigned long>(static_cast<uint64_t>(uTimeCurrent) * rate / uSampleRate);
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}
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if(uTimeEnd) {
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uTimeEnd = (unsigned long)((uint64_t)uTimeEnd * rate / uSampleRate);
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uTimeEnd = static_cast<unsigned long>(static_cast<uint64_t>(uTimeEnd) * rate / uSampleRate);
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}
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if(uTimeLoopStart) {
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uTimeLoopStart = (unsigned long)((uint64_t)uTimeLoopStart * rate / uSampleRate);
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uTimeLoopStart = static_cast<unsigned long>(static_cast<uint64_t>(uTimeLoopStart) * rate / uSampleRate);
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}
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uSampleRate = rate;
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@ -63,28 +63,30 @@ bool MIDIPlayer::Load(const midi_container &midi_file, unsigned subsong, unsigne
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if((uLoopMode & loop_mode_force)) {
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unsigned long i;
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unsigned char note_on[128 * 16];
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memset(note_on, 0, sizeof(note_on));
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uint8_t nullByte = 0;
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std::vector<uint8_t> note_on;
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note_on.resize(128 * 16, nullByte);
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memset(¬e_on[0], 0, sizeof(note_on));
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for(i = 0; i < mStream.size() && i < uStreamEnd; i++) {
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uint32_t ev = mStream[i].m_event & 0x800000F0;
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uint32_t ev = mStream.at(i).m_event & 0x800000F0;
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if(ev == 0x90 || ev == 0x80) {
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unsigned long port = (mStream[i].m_event & 0x7F000000) >> 24;
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unsigned long ch = mStream[i].m_event & 0x0F;
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unsigned long note = (mStream[i].m_event >> 8) & 0x7F;
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unsigned long on = (ev == 0x90) && (mStream[i].m_event & 0xFF0000);
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unsigned long bit = 1 << port;
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note_on[ch * 128 + note] = (note_on[ch * 128 + note] & ~bit) | (bit * on);
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const unsigned long port = (mStream.at(i).m_event & 0x7F000000) >> 24;
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const unsigned long ch = mStream.at(i).m_event & 0x0F;
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const unsigned long note = (mStream.at(i).m_event >> 8) & 0x7F;
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const bool on = (ev == 0x90) && (mStream.at(i).m_event & 0xFF0000);
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const unsigned long bit = 1 << port;
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note_on.at(ch * 128 + note) = (note_on.at(ch * 128 + note) & ~bit) | (bit * on);
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}
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}
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mStream.resize(i);
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uTimeEnd = uTimeLoopEnd - 1;
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if(uTimeEnd < mStream[i - 1].m_timestamp)
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uTimeEnd = mStream[i - 1].m_timestamp;
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if(uTimeEnd < mStream.at(i - 1).m_timestamp)
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uTimeEnd = mStream.at(i - 1).m_timestamp;
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for(unsigned long j = 0; j < 128 * 16; j++) {
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if(note_on[j]) {
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if(note_on.at(j)) {
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for(unsigned long k = 0; k < 8; k++) {
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if(note_on[j] & (1 << k)) {
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mStream.push_back(midi_stream_event(uTimeEnd, (uint32_t)((k << 24) + (j >> 7) + (j & 0x7F) * 0x100 + 0x90)));
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if(note_on.at(j) & (1 << k)) {
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mStream.push_back(midi_stream_event(uTimeEnd, static_cast<uint32_t>((k << 24) + (j >> 7) + (j & 0x7F) * 0x100 + 0x90)));
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}
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}
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}
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@ -94,7 +96,7 @@ bool MIDIPlayer::Load(const midi_container &midi_file, unsigned subsong, unsigne
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}
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if(uSampleRate != 1000) {
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unsigned long rate = uSampleRate;
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unsigned long rate = static_cast<unsigned long>(uSampleRate);
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uSampleRate = 1000;
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setSampleRate(rate);
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}
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@ -112,14 +114,14 @@ unsigned long MIDIPlayer::Play(float *out, unsigned long count) {
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unsigned long done = 0;
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unsigned int needs_block_size = send_event_needs_time();
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const unsigned int needs_block_size = send_event_needs_time();
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unsigned int into_block = 0;
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// This should be a multiple of block size, and have leftover
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while(uSamplesRemaining) {
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while(uSamplesRemaining && done < count) {
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unsigned long todo = uSamplesRemaining;
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if(todo > done - count) todo = done - count;
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if(todo > count - done) todo = count - done;
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if(needs_block_size && todo > needs_block_size)
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todo = needs_block_size;
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if(todo < needs_block_size) {
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@ -137,16 +139,16 @@ unsigned long MIDIPlayer::Play(float *out, unsigned long count) {
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unsigned long todo = uTimeEnd - uTimeCurrent;
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if(todo > count - done) todo = count - done;
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unsigned long time_target = todo + uTimeCurrent;
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const unsigned long time_target = todo + uTimeCurrent;
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unsigned long stream_end = uStreamPosition;
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while(stream_end < mStream.size() && mStream[stream_end].m_timestamp < time_target) stream_end++;
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while(stream_end < mStream.size() && mStream.at(stream_end).m_timestamp < time_target) stream_end++;
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if(stream_end > uStreamPosition) {
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for(; uStreamPosition < stream_end; uStreamPosition++) {
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midi_stream_event *me = &mStream[uStreamPosition];
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const midi_stream_event &me = mStream.at(uStreamPosition);
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unsigned long samples_todo = me->m_timestamp - uTimeCurrent - into_block;
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unsigned long samples_todo = me.m_timestamp - uTimeCurrent - into_block;
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if(samples_todo) {
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if(samples_todo > count - done) {
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uSamplesRemaining = samples_todo - (count - done);
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@ -172,16 +174,16 @@ unsigned long MIDIPlayer::Play(float *out, unsigned long count) {
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into_block -= needs_block_size;
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uTimeCurrent += needs_block_size;
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}
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send_event_time_filtered(me->m_event, into_block);
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send_event_time_filtered(me.m_event, into_block);
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} else
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send_event_filtered(me->m_event);
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send_event_filtered(me.m_event);
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}
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}
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if(done < count) {
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unsigned long samples_todo;
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if(uStreamPosition < mStream.size())
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samples_todo = mStream[uStreamPosition].m_timestamp;
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samples_todo = mStream.at(uStreamPosition).m_timestamp;
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else
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samples_todo = uTimeEnd;
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samples_todo -= uTimeCurrent;
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@ -207,9 +209,9 @@ unsigned long MIDIPlayer::Play(float *out, unsigned long count) {
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if(uStreamPosition < mStream.size()) {
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for(; uStreamPosition < mStream.size(); uStreamPosition++) {
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if(needs_block_size)
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send_event_time_filtered(mStream[uStreamPosition].m_event, into_block);
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send_event_time_filtered(mStream.at(uStreamPosition).m_event, into_block);
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else
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send_event_filtered(mStream[uStreamPosition].m_event);
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send_event_filtered(mStream.at(uStreamPosition).m_event);
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}
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}
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@ -241,7 +243,6 @@ void MIDIPlayer::Seek(unsigned long sample) {
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}
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if(uTimeCurrent > sample) {
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// hokkai, let's kill any hanging notes
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uStreamPosition = 0;
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shutdown();
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@ -255,20 +256,22 @@ void MIDIPlayer::Seek(unsigned long sample) {
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unsigned long stream_start = uStreamPosition;
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for(; uStreamPosition < mStream.size() && mStream[uStreamPosition].m_timestamp < uTimeCurrent; uStreamPosition++)
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for(; uStreamPosition < mStream.size() && mStream.at(uStreamPosition).m_timestamp < uTimeCurrent; uStreamPosition++)
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;
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uSamplesRemaining = mStream[uStreamPosition].m_timestamp - uTimeCurrent;
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if(uStreamPosition == mStream.size())
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uSamplesRemaining = uTimeEnd - uTimeCurrent;
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else
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uSamplesRemaining = mStream.at(uStreamPosition).m_timestamp - uTimeCurrent;
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if(uStreamPosition > stream_start) {
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filler.resize(uStreamPosition - stream_start);
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filler.assign(&mStream[stream_start], &mStream[uStreamPosition]);
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filler.assign(&mStream.at(stream_start), &mStream.at(uStreamPosition));
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unsigned long i, j;
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midi_stream_event *me = &filler[0];
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for(i = 0, stream_start = uStreamPosition - stream_start; i < stream_start; i++) {
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midi_stream_event &e = me[i];
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midi_stream_event &e = filler.at(i);
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if((e.m_event & 0x800000F0) == 0x90 && (e.m_event & 0xFF0000)) // note on
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{
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if((e.m_event & 0x0F) == 9) // hax
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@ -276,10 +279,10 @@ void MIDIPlayer::Seek(unsigned long sample) {
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e.m_event = 0;
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continue;
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}
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uint32_t m = (e.m_event & 0x7F00FF0F) | 0x80; // note off
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uint32_t m2 = e.m_event & 0x7F00FFFF; // also note off
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const uint32_t m = (e.m_event & 0x7F00FF0F) | 0x80; // note off
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const uint32_t m2 = (e.m_event & 0x7F00FFFF); // also note off
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for(j = i + 1; j < stream_start; j++) {
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midi_stream_event &e2 = me[j];
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midi_stream_event &e2 = filler.at(j);
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if((e2.m_event & 0xFF00FFFF) == m || e2.m_event == m2) {
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// kill 'em
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e.m_event = 0;
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@ -291,24 +294,24 @@ void MIDIPlayer::Seek(unsigned long sample) {
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}
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float *temp;
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unsigned int needs_time = send_event_needs_time();
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const unsigned int needs_time = send_event_needs_time();
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if(needs_time) {
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temp = (float *)malloc(needs_time * 2 * sizeof(float));
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temp = new float[needs_time * 2];
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if(temp) {
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render(temp, needs_time); // flush events
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unsigned int render_junk = 0;
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bool timestamp_set = false;
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unsigned last_timestamp = 0;
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for(i = 0; i < stream_start; i++) {
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if(me[i].m_event) {
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send_event_time_filtered(me[i].m_event, render_junk);
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if(filler[i].m_event) {
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send_event_time_filtered(filler[i].m_event, render_junk);
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if(timestamp_set) {
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if(me[i].m_timestamp != last_timestamp) {
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if(filler[i].m_timestamp != last_timestamp) {
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render_junk += 16;
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}
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}
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last_timestamp = me[i].m_timestamp;
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last_timestamp = filler[i].m_timestamp;
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timestamp_set = true;
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if(render_junk >= needs_time) {
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render(temp, needs_time);
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@ -317,28 +320,28 @@ void MIDIPlayer::Seek(unsigned long sample) {
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}
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}
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render(temp, needs_time);
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free(temp);
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delete[] temp;
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}
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} else {
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temp = (float *)malloc(16 * 2 * sizeof(float));
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temp = new float[16 * 2];
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if(temp) {
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render(temp, 16);
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bool timestamp_set = false;
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unsigned last_timestamp = 0;
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for(i = 0; i < stream_start; i++) {
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if(me[i].m_event) {
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if(filler[i].m_event) {
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if(timestamp_set) {
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if(me[i].m_timestamp != last_timestamp) {
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if(filler[i].m_timestamp != last_timestamp) {
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render(temp, 16);
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}
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}
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last_timestamp = me[i].m_timestamp;
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last_timestamp = filler[i].m_timestamp;
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timestamp_set = true;
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send_event_filtered(me[i].m_event);
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send_event_filtered(filler[i].m_event);
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}
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}
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render(temp, 16);
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free(temp);
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delete[] temp;
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}
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}
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}
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@ -358,7 +361,7 @@ void MIDIPlayer::send_event_filtered(uint32_t b) {
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if(!(b & 0x80000000u)) {
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send_event(b);
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} else {
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unsigned int p_index = b & 0xffffff;
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const unsigned int p_index = b & 0xffffff;
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const uint8_t *p_data;
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size_t p_size, p_port;
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mSysexMap.get_entry(p_index, p_data, p_size, p_port);
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@ -369,13 +372,13 @@ void MIDIPlayer::send_event_filtered(uint32_t b) {
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void MIDIPlayer::send_event_time_filtered(uint32_t b, unsigned int time) {
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if(!(b & 0x80000000u)) {
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if(reverb_chorus_disabled) {
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uint32_t _b = b & 0x7FF0;
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const uint32_t _b = b & 0x7FF0;
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if(_b == 0x5BB0 || _b == 0x5DB0)
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return;
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}
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send_event_time(b, time);
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} else {
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unsigned int p_index = b & 0xffffff;
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const unsigned int p_index = b & 0xffffff;
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const uint8_t *p_data;
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size_t p_size, p_port;
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mSysexMap.get_entry(p_index, p_data, p_size, p_port);
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@ -410,7 +413,7 @@ static bool syx_equal(const uint8_t *a, const uint8_t *b) {
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}
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static bool syx_is_reset(const uint8_t *data) {
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return syx_equal(data, syx_reset_gm) || syx_equal(data, syx_reset_gm2) || syx_equal(data, syx_reset_gs) || syx_equal(data, syx_reset_xg);
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return syx_equal(data, &syx_reset_gm[0]) || syx_equal(data, &syx_reset_gm2[0]) || syx_equal(data, &syx_reset_gs[0]) || syx_equal(data, &syx_reset_xg[0]);
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}
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void MIDIPlayer::sysex_send_gs(size_t port, uint8_t *data, size_t size, unsigned int time) {
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@ -430,7 +433,7 @@ void MIDIPlayer::sysex_reset_sc(uint32_t port, unsigned int time) {
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unsigned int i;
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uint8_t message[11];
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memcpy(message, syx_gs_limit_bank_lsb, 11);
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memcpy(&message[0], &syx_gs_limit_bank_lsb[0], sizeof(message));
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message[7] = 1;
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@ -458,26 +461,26 @@ void MIDIPlayer::sysex_reset_sc(uint32_t port, unsigned int time) {
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for(i = 0x41; i <= 0x49; ++i) {
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message[6] = i;
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sysex_send_gs(port, message, sizeof(message), time);
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sysex_send_gs(port, &message[0], sizeof(message), time);
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}
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message[6] = 0x40;
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sysex_send_gs(port, message, sizeof(message), time);
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sysex_send_gs(port, &message[0], sizeof(message), time);
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for(i = 0x4A; i <= 0x4F; ++i) {
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message[6] = i;
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sysex_send_gs(port, message, sizeof(message), time);
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sysex_send_gs(port, &message[0], sizeof(message), time);
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}
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}
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void MIDIPlayer::sysex_reset(size_t port, unsigned int time) {
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if(initialized) {
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if(time) {
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send_sysex_time(syx_reset_xg, sizeof(syx_reset_xg), port, time);
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send_sysex_time(syx_reset_gm2, sizeof(syx_reset_gm2), port, time);
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send_sysex_time(syx_reset_gm, sizeof(syx_reset_gm), port, time);
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send_sysex_time(&syx_reset_xg[0], sizeof(syx_reset_xg), port, time);
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send_sysex_time(&syx_reset_gm2[0], sizeof(syx_reset_gm2), port, time);
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send_sysex_time(&syx_reset_gm[0], sizeof(syx_reset_gm), port, time);
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} else {
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send_sysex(syx_reset_xg, sizeof(syx_reset_xg), port);
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send_sysex(syx_reset_gm2, sizeof(syx_reset_gm2), port);
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send_sysex(syx_reset_gm, sizeof(syx_reset_gm), port);
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send_sysex(&syx_reset_xg[0], sizeof(syx_reset_xg), port);
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send_sysex(&syx_reset_gm2[0], sizeof(syx_reset_gm2), port);
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send_sysex(&syx_reset_gm[0], sizeof(syx_reset_gm), port);
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}
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switch(mode) {
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@ -492,9 +495,9 @@ void MIDIPlayer::sysex_reset(size_t port, unsigned int time) {
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case filter_gm2:
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if(time)
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send_sysex_time(syx_reset_gm2, sizeof(syx_reset_gm2), port, time);
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send_sysex_time(&syx_reset_gm2[0], sizeof(syx_reset_gm2), port, time);
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else
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send_sysex(syx_reset_gm2, sizeof(syx_reset_gm2), port);
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send_sysex(&syx_reset_gm2[0], sizeof(syx_reset_gm2), port);
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break;
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case filter_sc55:
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@ -503,17 +506,17 @@ void MIDIPlayer::sysex_reset(size_t port, unsigned int time) {
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case filter_sc8850:
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case filter_default:
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if(time)
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send_sysex_time(syx_reset_gs, sizeof(syx_reset_gs), port, time);
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send_sysex_time(&syx_reset_gs[0], sizeof(syx_reset_gs), port, time);
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else
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send_sysex(syx_reset_gs, sizeof(syx_reset_gs), port);
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send_sysex(&syx_reset_gs[0], sizeof(syx_reset_gs), port);
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sysex_reset_sc(port, time);
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break;
|
||||
|
||||
case filter_xg:
|
||||
if(time)
|
||||
send_sysex_time(syx_reset_xg, sizeof(syx_reset_xg), port, time);
|
||||
send_sysex_time(&syx_reset_xg[0], sizeof(syx_reset_xg), port, time);
|
||||
else
|
||||
send_sysex(syx_reset_xg, sizeof(syx_reset_xg), port);
|
||||
send_sysex(&syx_reset_xg[0], sizeof(syx_reset_xg), port);
|
||||
break;
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in New Issue