03b6d2c2ef
Parameter exposure (AU/iOS AUv3/VST/VST3) for host automation. iOS Universal build with iPhone support. Enhanced AUv3 GUI window display fit. AUv3 GUI scrolling using left and right border sides.
213 lines
No EOL
5.5 KiB
C++
Executable file
213 lines
No EOL
5.5 KiB
C++
Executable file
#include "JuceHeader.h"
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#include <stdio.h>
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#include <string.h>
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#include "drov1.h"
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// http://sourceforge.net/p/dosbox/code-0/HEAD/tree/dosbox/tags/RELEASE_0_72/src/hardware/adlib.cpp#l196
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// from mem.h
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typedef Bit8u * HostPt;
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#if defined(WORDS_BIGENDIAN) || !defined(C_UNALIGNED_MEMORY)
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INLINE Bit8u host_readb(HostPt off) {
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return off[0];
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};
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INLINE Bit16u host_readw(HostPt off) {
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return off[0] | (off[1] << 8);
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};
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INLINE Bit32u host_readd(HostPt off) {
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return off[0] | (off[1] << 8) | (off[2] << 16) | (off[3] << 24);
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};
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INLINE void host_writeb(HostPt off,Bit8u val) {
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off[0]=val;
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};
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INLINE void host_writew(HostPt off,Bit16u val) {
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off[0]=(Bit8u)(val);
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off[1]=(Bit8u)(val >> 8);
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};
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INLINE void host_writed(HostPt off,Bit32u val) {
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off[0]=(Bit8u)(val);
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off[1]=(Bit8u)(val >> 8);
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off[2]=(Bit8u)(val >> 16);
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off[3]=(Bit8u)(val >> 24);
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};
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#else
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INLINE Bit8u host_readb(HostPt off) {
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return *(Bit8u *)off;
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};
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INLINE Bit16u host_readw(HostPt off) {
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return *(Bit16u *)off;
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};
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INLINE Bit32u host_readd(HostPt off) {
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return *(Bit32u *)off;
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};
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INLINE void host_writeb(HostPt off,Bit8u val) {
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*(Bit8u *)(off)=val;
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};
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INLINE void host_writew(HostPt off,Bit16u val) {
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*(Bit16u *)(off)=val;
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};
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INLINE void host_writed(HostPt off,Bit32u val) {
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*(Bit32u *)(off)=val;
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};
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#endif
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#define RAW_SIZE 1024
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static struct {
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struct {
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FILE * handle;
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bool capturing;
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Bit64s start;
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Bit64s last;
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Bit8u index;
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Bit8u buffer[RAW_SIZE+8];
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Bit8u regs[2][256];
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Bit32u used;
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Bit32u done;
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Bit8u cmd[2];
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bool opl3;
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bool dualopl2;
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} raw;
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} opl;
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static void OPL_RawAdd(Bitu index,Bitu val);
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static Bit8u dro_header[]={
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'D','B','R','A', /* 0x00, Bit32u ID */
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'W','O','P','L', /* 0x04, Bit32u ID */
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0x0,0x00, /* 0x08, Bit16u version low */
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0x1,0x00, /* 0x09, Bit16u version high */
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0x0,0x0,0x0,0x0, /* 0x0c, Bit32u total milliseconds */
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0x0,0x0,0x0,0x0, /* 0x10, Bit32u total data */
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0x0,0x0,0x0,0x0 /* 0x14, Bit32u Type 0=opl2,1=opl3,2=dual-opl2 */
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};
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/* Commands
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0x00 Bit8u, millisecond delay+1
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0x02 none, Use the low index/data pair
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0x03 none, Use the high index/data pair
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0x10 Bit16u, millisecond delay+1
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0xxx Bit8u, send command and data to current index/data pair
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*/
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static void OPL_RawEmptyBuffer(void) {
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fwrite(opl.raw.buffer,1,opl.raw.used,opl.raw.handle);
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opl.raw.done+=opl.raw.used;
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opl.raw.used=0;
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}
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#define ADDBUF(_VAL_) opl.raw.buffer[opl.raw.used++]=_VAL_;
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void OPL_CaptureReg(Bitu reg, Bitu val) { if (opl.raw.capturing) {
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/* Check if we have yet to start */
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if (!opl.raw.handle) {
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if (reg<0xb0 || reg>0xb8) return;
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if (!(val&0x20)) return;
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Bitu i;
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Bit64s t = Time::currentTimeMillis();
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opl.raw.last=t;
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opl.raw.start=t;
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opl.raw.handle=fopen("c:\\temp\\cap.dro", "wb");
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if (!opl.raw.handle) {
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opl.raw.capturing=false;
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return;
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}
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memset(opl.raw.buffer,0,sizeof(opl.raw.buffer));
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fwrite(dro_header,1,sizeof(dro_header),opl.raw.handle);
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/* Check the registers to add */
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for (i=0;i<256;i++) {
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if (!opl.raw.regs[0][i]) continue;
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if (i>=0xb0 && i<=0xb8) continue;
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ADDBUF((Bit8u)i);
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ADDBUF(opl.raw.regs[0][i]);
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}
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bool donesecond=false;
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/* Check if we already have an opl3 enable bit logged */
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if (opl.raw.regs[1][5] & 1)
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opl.raw.opl3 = true;
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for (i=0;i<256;i++) {
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if (!opl.raw.regs[1][i]) continue;
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if (i>=0xb0 && i<=0xb8) continue;
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if (!donesecond) {
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/* Or already have dual opl2 */
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opl.raw.dualopl2 = true;
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donesecond=true;
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ADDBUF(0x3);
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}
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ADDBUF((Bit8u)i);
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ADDBUF(opl.raw.regs[1][i]);
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}
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if (donesecond) ADDBUF(0x2);
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}
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/* Check if we enable opl3 or access dual opl2 mode */
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if (cmd == 5 && index && (val & 1)) {
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opl.raw.opl3 = true;
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}
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if (index && val && cmd>=0xb0 && cmd<=0xb8) {
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opl.raw.dualopl2 = true;
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}
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/* Check how much time has passed, Allow an extra 5 milliseconds? */
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Bit64s t = Time::currentTimeMillis();
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if (t > (opl.raw.last+5)) {
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Bitu passed = (Bitu)(t - opl.raw.last);
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opl.raw.last = t;
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while (passed) {
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passed-=1;
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if (passed<256) {
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ADDBUF(0x00); //8bit delay
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ADDBUF((Bit8u)passed); //8bit delay
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passed=0;
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} else if (passed<0x10000) {
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ADDBUF(0x01); //16bit delay
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ADDBUF((Bit8u)(passed & 0xff)); //lo-byte
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ADDBUF((Bit8u)(passed >> 8)); //hi-byte
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passed=0;
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} else {
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ADDBUF(0x01); //16bit delay
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ADDBUF(0xff); //lo-byte
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ADDBUF(0xff); //hi-byte
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passed-=0xffff;
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}
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}
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}
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/* Check if we're still sending to the correct index */
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if (opl.raw.index != index) {
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opl.raw.index=(Bit8u)index;
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ADDBUF(opl.raw.index ? 0x3 : 0x2);
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}
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ADDBUF(cmd);
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ADDBUF((Bit8u)val);
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if (opl.raw.used>=RAW_SIZE) OPL_RawEmptyBuffer();
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}}
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void OPL_ToggleCapture() {
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/* Check for previously opened file */
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if (opl.raw.handle) {
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OPL_RawEmptyBuffer();
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/* Fill in the header with useful information */
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host_writed(&dro_header[0x0c],(Bit32u)(opl.raw.last-opl.raw.start));
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host_writed(&dro_header[0x10],opl.raw.done);
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if (opl.raw.opl3 && opl.raw.dualopl2) host_writed(&dro_header[0x14],0x1);
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else if (opl.raw.dualopl2) host_writed(&dro_header[0x14],0x2);
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else host_writed(&dro_header[0x14],0x0);
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fseek(opl.raw.handle,0,0);
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fwrite(dro_header,1,sizeof(dro_header),opl.raw.handle);
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fclose(opl.raw.handle);
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opl.raw.handle=0;
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}
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if (opl.raw.capturing) {
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opl.raw.capturing=false;
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//LOG_MSG("Stopping Raw OPL capturing.");
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} else {
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//LOG_MSG("Preparing to capture Raw OPL, will start with first note played.");
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opl.raw.capturing=true;
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opl.raw.index=0;
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opl.raw.used=0;
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opl.raw.done=0;
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opl.raw.start=0;
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opl.raw.last=0;
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}
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} |