118 lines
2.9 KiB
C++
118 lines
2.9 KiB
C++
![]() |
#include "engine.h"
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void DivEngine::nextOrder() {
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curRow=0;
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if (++curOrder>=song.ordersLen) {
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curOrder=0;
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}
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}
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const char* notes[12]={
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"C-", "C#", "D-", "D#", "E-", "F-", "F#", "G-", "G#", "A-", "A#", "B-"
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};
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const char* formatNote(unsigned char note, unsigned char octave) {
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static char ret[4];
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if (note==100) {
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return "OFF";
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} else if (octave==0) {
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return "---";
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}
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snprintf(ret,4,"%s%d",notes[note%12],octave+note/12);
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return ret;
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}
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void DivEngine::nextRow() {
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static char pb[4096];
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static char pb1[4096];
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static char pb2[4096];
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static char pb3[4096];
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if (++curRow>=song.patLen) {
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nextOrder();
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}
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strcpy(pb1,"");
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strcpy(pb3,"");
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for (int i=0; i<chans; i++) {
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snprintf(pb,4095," %.2x",song.orders.ord[i][curOrder]);
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strcat(pb1,pb);
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DivPattern* pat=song.pat[i]->data[curOrder];
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snprintf(pb2,4095,"\x1b[37m %s",
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formatNote(pat->data[curRow][0],pat->data[curRow][1]));
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strcat(pb3,pb2);
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if (pat->data[curRow][3]==255) {
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strcat(pb3,"\x1b[m--");
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} else {
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snprintf(pb2,4095,"\x1b[1;32m%.2x",pat->data[curRow][3]);
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strcat(pb3,pb2);
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}
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if (pat->data[curRow][2]==255) {
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strcat(pb3,"\x1b[m--");
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} else {
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snprintf(pb2,4095,"\x1b[0;36m%.2x",pat->data[curRow][2]);
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strcat(pb3,pb2);
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}
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for (int j=0; j<song.pat[i]->effectRows; j++) {
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if (pat->data[curRow][4+(j<<1)]==255) {
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strcat(pb3,"\x1b[m--");
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} else {
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snprintf(pb2,4095,"\x1b[1;31m%.2x",pat->data[curRow][4+(j<<1)]);
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strcat(pb3,pb2);
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}
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if (pat->data[curRow][5+(j<<1)]==255) {
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strcat(pb3,"\x1b[m--");
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} else {
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snprintf(pb2,4095,"\x1b[1;37m%.2x",pat->data[curRow][5+(j<<1)]);
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strcat(pb3,pb2);
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}
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}
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}
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printf("| %.2x:%s | \x1b[1;33m%3d%s\x1b[m\n",curOrder,pb1,curRow,pb3);
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}
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void DivEngine::nextTick() {
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if (song.customTempo) {
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cycles=dispatch->rate/song.hz;
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} else {
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if (song.pal) {
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cycles=dispatch->rate/60;
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} else {
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cycles=dispatch->rate/50;
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}
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}
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if (--ticks<=0) {
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if (speedAB) {
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ticks=song.speed2*(song.timeBase+1);
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} else {
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ticks=song.speed1*(song.timeBase+1);
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}
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speedAB=!speedAB;
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nextRow();
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}
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}
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void DivEngine::nextBuf(float** in, float** out, int inChans, int outChans, unsigned int size) {
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size_t runtotal=blip_clocks_needed(bb[0],size);
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for (size_t i=0; i<runtotal; i++) {
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if (--cycles<=0) {
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nextTick();
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}
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dispatch->acquire(temp[0],temp[1]);
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blip_add_delta(bb[0],i,temp[0]-prevSample[0]);
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blip_add_delta(bb[1],i,temp[1]-prevSample[1]);
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prevSample[0]=temp[0];
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prevSample[1]=temp[1];
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}
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blip_end_frame(bb[0],runtotal);
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blip_end_frame(bb[1],runtotal);
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blip_read_samples(bb[0],bbOut[0],size,0);
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blip_read_samples(bb[1],bbOut[1],size,0);
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for (size_t i=0; i<size; i++) {
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out[0][i]=(float)bbOut[0][i]/32768.0;
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out[1][i]=(float)bbOut[1][i]/32768.0;
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}
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}
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