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331 lines
8.8 KiB
331 lines
8.8 KiB
/*
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std synth implementation
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Copyright (C) 2001 Martin Vogt
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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 Library General Public License as published by
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the Free Software Foundation.
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For more information look at the file COPYRIGHT in this package
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*/
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#include "synthesis.h"
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#include "dct64.cpp"
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#include <iostream>
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using namespace std;
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inline void Synthesis::computebuffer_Std(REAL *fraction,
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REAL buffer[2][CALCBUFFERSIZE]) {
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REAL *out1,*out2;
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out1=buffer[currentcalcbuffer]+calcbufferoffset;
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out2=buffer[currentcalcbuffer^1]+calcbufferoffset;
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dct64(out1,out2,fraction);
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}
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#define SAVE putraw(r);
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#define OS r=*vp * *dp++
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#define XX vp+=15;r+=*vp * *dp++
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#define OP r+=*--vp * *dp++
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inline void Synthesis::generatesingle_Std(void) {
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int i;
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register REAL r, *vp;
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register const REAL *dp;
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i=32;
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dp=filter;
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vp=calcbuffer[LS][currentcalcbuffer]+calcbufferoffset;
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// actual_v+actual_write_pos;
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switch (calcbufferoffset)
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{
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case 0:for(;i;i--,vp+=15){
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OS;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 1:for(;i;i--,vp+=15){
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OS;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 2:for(;i;i--,vp+=15){
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OS;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 3:for(;i;i--,vp+=15){
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OS;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 4:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 5:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 6:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 7:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 8:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 9:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 10:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;
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SAVE;}break;
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case 11:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;
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SAVE;}break;
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case 12:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;
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SAVE;}break;
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case 13:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;
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SAVE;}break;
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case 14:for(;i;i--,vp+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;
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SAVE;}break;
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case 15:for(;i;i--,vp+=31){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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}
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}
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#undef OS
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#undef XX
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#undef OP
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#undef SAVE
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#define SAVE putraw(r1); putraw(r2);
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#define OS r1=*vp1 * *dp; \
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r2=*vp2 * *dp++
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#define XX vp1+=15;r1+=*vp1 * *dp; \
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vp2+=15;r2+=*vp2 * *dp++
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#define OP r1+=*--vp1 * *dp; \
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r2+=*--vp2 * *dp++
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/*
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inline void Synthesis::generate_old(void)
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{
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int i;
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REAL r1,r2;
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register REAL *vp1,*vp2;
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register const REAL *dp;
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dp=filter;
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vp1=calcbuffer[LS][currentcalcbuffer]+calcbufferoffset;
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vp2=calcbuffer[RS][currentcalcbuffer]+calcbufferoffset;
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// actual_v+actual_write_pos;
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i=32;
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switch (calcbufferoffset)
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{
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case 0:for(;i;i--,vp1+=15,vp2+=15){
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OS;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 1:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 2:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 3:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 4:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 5:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 6:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 7:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 8:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 9:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;OP;
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SAVE;}break;
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case 10:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;OP;
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SAVE;}break;
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case 11:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;OP;
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SAVE;}break;
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case 12:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;OP;
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SAVE;}break;
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case 13:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;OP;
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SAVE;}break;
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case 14:for(;i;i--,vp1+=15,vp2+=15){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;XX;
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SAVE;}break;
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case 15:for(;i;i--,vp1+=31,vp2+=31){
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OS;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;OP;
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SAVE;}break;
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}
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}
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*/
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#undef OS
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#undef XX
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#undef OP
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#undef SAVE
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#include "op.h"
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#define SAVE putraw(r1); putraw(r2);
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inline void Synthesis::generate_Std(void)
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{
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int i;
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REAL r1,r2;
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register REAL *vp1;
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register const REAL *dp;
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dp=filter;
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vp1=calcbuffer[LS][currentcalcbuffer]+calcbufferoffset;
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// we calculate cp2 from vp1 because they are both
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// in the same array. code was:
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// register REAL* vp2
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//vp2=calcbuffer[RS][currentcalcbuffer]+calcbufferoffset;
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i=32;
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switch (calcbufferoffset)
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{
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case 0:for(;i;i--,OP_END_1(15,14)){
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OS;XX1;XX2;OP14;
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SAVE;}break;
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case 1:for(;i;i--,OP_END_1(15,13)){
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OS;OP;OP_END_2(1);XX2;OP13;
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SAVE;}break;
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case 2:for(;i;i--,OP_END_1(15,12)){
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OS;OP2;OP_END_2(2);XX2;OP12;
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SAVE;}break;
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case 3:for(;i;i--,OP_END_1(15,11)){
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OS;OP3;OP_END_2(3);XX2;OP11;
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SAVE;}break;
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case 4:for(;i;i--,OP_END_1(15,10)){
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OS;OP4;OP_END_2(4);XX2;OP10;
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SAVE;}break;
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case 5:for(;i;i--,OP_END_1(15,9)){
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OS;OP5;OP_END_2(5);XX2;OP9;
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SAVE;}break;
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case 6:for(;i;i--,OP_END_1(15,8)){
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OS;OP6;OP_END_2(6);XX2;OP8;
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SAVE;}break;
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case 7:for(;i;i--,OP_END_1(15,7)){
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OS;OP7;OP_END_2(7);XX2;OP7;
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SAVE;}break;
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case 8:for(;i;i--,OP_END_1(15,6)){
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OS;OP8;OP_END_2(8);XX2;OP6;
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SAVE;}break;
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case 9:for(;i;i--,OP_END_1(15,5)){
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OS;OP9;OP_END_2(9);XX2;OP5;
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SAVE;}break;
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case 10:for(;i;i--,OP_END_1(15,4)){
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OS;OP10;OP_END_2(10);XX2;OP4;
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SAVE;}break;
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case 11:for(;i;i--,OP_END_1(15,3)){
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OS;OP11;OP_END_2(11);XX2;OP3;
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SAVE;}break;
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case 12:for(;i;i--,OP_END_1(15,2)){
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OS;OP12;OP_END_2(12);XX2;OP2;
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SAVE;}break;
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case 13:for(;i;i--,OP_END_1(15,1)){
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OS;OP13;OP_END_2(13);XX2;OP;
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SAVE;}break;
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case 14:for(;i;i--,vp1+=15){
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OS;OP14;OP_END_2(14);XX2;
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SAVE;}break;
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case 15:for(;i;i--,OP_END_1(31,15)){
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OS;OP15;
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SAVE;}break;
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}
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}
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#undef OP_END_1
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#undef OP_END_2
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#undef OP
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#undef OP1
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#undef OP2
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#undef OP3
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#undef OP4
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#undef OP5
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#undef OP6
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#undef OP7
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#undef OP8
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#undef OP9
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#undef OP10
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#undef OP11
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#undef OP12
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#undef OP13
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#undef OP14
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#undef OP15
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#undef OS
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#undef XX1
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#undef XX2
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#undef SCHEDULE
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#undef SCHEDULE1
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#undef SCHEDULE2
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#undef SAVE
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void Synthesis::synth_Std(int lOutputStereo,REAL *fractionL,REAL *fractionR) {
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switch(lOutputStereo) {
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case true:
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computebuffer_Std(fractionL,calcbuffer[LS]);
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computebuffer_Std(fractionR,calcbuffer[RS]);
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generate_Std();
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nextOffset();
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break;
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case false:
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computebuffer_Std(fractionL,calcbuffer[LS]);
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generatesingle_Std();
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nextOffset();
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break;
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default:
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cout << "unknown lOutputStereo in Synthesis::synth_Std"<<endl;
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exit(0);
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}
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}
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void Synthesis::synthMP3_Std(int lOutputStereo,
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REAL hout [2][SSLIMIT][SBLIMIT]) {
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int ss;
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switch(lOutputStereo) {
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case true:
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for(ss=0;ss<SSLIMIT;ss++) {
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computebuffer_Std(hout[LS][ss],calcbuffer[LS]);
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computebuffer_Std(hout[RS][ss],calcbuffer[RS]);
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generate_Std();
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nextOffset();
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}
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break;
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case false:
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for(ss=0;ss<SSLIMIT;ss++) {
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computebuffer_Std(hout[LS][ss],calcbuffer[LS]);
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generatesingle_Std();
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nextOffset();
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}
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break;
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default:
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cout << "unknown lOutputStereo in Synthesis::synth_Std"<<endl;
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exit(0);
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}
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}
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