mirror of
https://github.com/cookiengineer/audacity
synced 2025-04-30 07:39:42 +02:00
487 lines
12 KiB
C++
487 lines
12 KiB
C++
/*
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* Read a Standard MIDI File. Externally-assigned function pointers are
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* called upon recognizing things in the file. See midifile(3).
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*/
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/*****************************************************************************
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* Change Log
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* Date | who : Change
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*-----------+-----------------------------------------------------------------
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* 2-Mar-92 | GWL : created changelog; MIDIFILE_ERROR to satisfy compiler
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*****************************************************************************/
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#include "stdio.h"
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#include "mfmidi.h"
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#include "string.h"
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#include "assert.h"
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#define MIDIFILE_ERROR -1
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/* public stuff */
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extern int abort_flag;
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void Midifile_reader::midifile()
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{
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int ntrks;
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midifile_error = 0;
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ntrks = readheader();
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if (midifile_error) return;
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if (ntrks <= 0) {
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mferror("No tracks!");
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/* no need to return since midifile_error is set */
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}
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while (ntrks-- > 0 && !midifile_error) readtrack();
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}
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int Midifile_reader::readmt(const char *s, int skip)
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/* read through the "MThd" or "MTrk" header string */
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/* if skip == 1, we attempt to skip initial garbage. */
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{
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assert(strlen(s) == 4); // must be "MThd" or "MTrk"
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int nread = 0;
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char b[4];
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char buff[32];
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int c;
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const char *errmsg = "expecting ";
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retry:
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while ( nread<4 ) {
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c = Mf_getc();
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if ( c == EOF ) {
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errmsg = "EOF while expecting ";
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goto err;
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}
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b[nread++] = c;
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}
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/* See if we found the 4 characters we're looking for */
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if ( s[0]==b[0] && s[1]==b[1] && s[2]==b[2] && s[3]==b[3] )
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return(0);
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if ( skip ) {
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/* If we are supposed to skip initial garbage, */
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/* try again with the next character. */
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b[0]=b[1];
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b[1]=b[2];
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b[2]=b[3];
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nread = 3;
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goto retry;
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}
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err:
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#pragma warning(disable: 4996) // strcpy is safe since strings have known lengths
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(void) strcpy(buff,errmsg);
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(void) strcat(buff,s);
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#pragma warning(default: 4996) // turn it back on
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mferror(buff);
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return(0);
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}
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int Midifile_reader::egetc()
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/* read a single character and abort on EOF */
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{
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int c = Mf_getc();
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if ( c == EOF ) {
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mferror("premature EOF");
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return EOF;
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}
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Mf_toberead--;
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return(c);
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}
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int Midifile_reader::readheader()
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/* read a header chunk */
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{
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int format, ntrks, division;
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if ( readmt("MThd",Mf_skipinit) == EOF )
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return(0);
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Mf_toberead = read32bit();
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if (midifile_error) return MIDIFILE_ERROR;
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format = read16bit();
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if (midifile_error) return MIDIFILE_ERROR;
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ntrks = read16bit();
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if (midifile_error) return MIDIFILE_ERROR;
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division = read16bit();
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if (midifile_error) return MIDIFILE_ERROR;
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Mf_header(format,ntrks,division);
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/* flush any extra stuff, in case the length of header is not 6 */
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while ( Mf_toberead > 0 && !midifile_error)
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(void) egetc();
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return(ntrks);
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}
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void Midifile_reader::readtrack()
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/* read a track chunk */
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{
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/* This array is indexed by the high half of a status byte. It's */
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/* value is either the number of bytes needed (1 or 2) for a channel */
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/* message, or 0 (meaning it's not a channel message). */
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static int chantype[] = {
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0, 0, 0, 0, 0, 0, 0, 0, /* 0x00 through 0x70 */
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2, 2, 2, 2, 1, 1, 2, 0 /* 0x80 through 0xf0 */
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};
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long lookfor, lng;
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int c, c1, type;
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int sysexcontinue = 0; /* 1 if last message was an unfinished sysex */
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int running = 0; /* 1 when running status used */
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int status = 0; /* (possibly running) status byte */
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int needed;
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if ( readmt("MTrk",0) == EOF )
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return;
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Mf_toberead = read32bit();
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if (midifile_error) return;
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Mf_currtime = 0L;
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Mf_starttrack();
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while ( Mf_toberead > 0 ) {
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Mf_currtime += readvarinum(); /* delta time */
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if (midifile_error) return;
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c = egetc();
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if (midifile_error) return;
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if ( sysexcontinue && c != 0xf7 ) {
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mferror("didn't find expected continuation of a sysex");
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return;
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}
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if ( (c & 0x80) == 0 ) { /* running status? */
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if ( status == 0 ) {
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mferror("unexpected running status");
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return;
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}
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running = 1;
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} else {
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status = c;
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running = 0;
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}
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needed = chantype[ (status>>4) & 0xf ];
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if ( needed ) { /* ie. is it a channel message? */
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if ( running )
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c1 = c;
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else {
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c1 = egetc();
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if (midifile_error) return;
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}
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chanmessage( status, c1, (needed>1) ? egetc() : 0 );
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if (midifile_error) return;
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continue;;
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}
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switch ( c ) {
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case 0xff: /* meta event */
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type = egetc();
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if (midifile_error) return;
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/* watch out - Don't combine the next 2 statements */
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lng = readvarinum();
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if (midifile_error) return;
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lookfor = Mf_toberead - lng;
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msginit();
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while ( Mf_toberead > lookfor ) {
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unsigned char c = egetc();
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if (midifile_error) return;
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msgadd(c);
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}
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metaevent(type);
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break;
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case 0xf0: /* start of system exclusive */
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/* watch out - Don't combine the next 2 statements */
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lng = readvarinum();
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if (midifile_error) return;
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lookfor = Mf_toberead - lng;
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msginit();
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msgadd(0xf0);
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while ( Mf_toberead > lookfor ) {
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c = egetc();
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if (midifile_error) return;
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msgadd(c);
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}
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if ( c==0xf7 || Mf_nomerge==0 )
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sysex();
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else
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sysexcontinue = 1; /* merge into next msg */
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break;
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case 0xf7: /* sysex continuation or arbitrary stuff */
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/* watch out - Don't combine the next 2 statements */
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lng = readvarinum();
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if (midifile_error) return;
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lookfor = Mf_toberead - lng;
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if ( ! sysexcontinue )
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msginit();
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while ( Mf_toberead > lookfor ) {
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c = egetc();
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if (midifile_error) return;
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msgadd(c);
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}
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if ( ! sysexcontinue ) {
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Mf_arbitrary(msgleng(), msg());
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}
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else if ( c == 0xf7 ) {
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sysex();
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sysexcontinue = 0;
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}
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break;
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default:
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badbyte(c);
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break;
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}
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}
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Mf_endtrack();
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return;
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}
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void Midifile_reader::badbyte(int c)
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{
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char buff[32];
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#pragma warning(disable: 4996) // safe in this case
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(void) sprintf(buff,"unexpected byte: 0x%02x",c);
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#pragma warning(default: 4996)
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mferror(buff);
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}
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void Midifile_reader::metaevent(int type)
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{
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int leng = msgleng();
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// made this unsigned to avoid sign extend
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unsigned char *m = msg();
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switch ( type ) {
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case 0x00:
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Mf_seqnum(to16bit(m[0],m[1]));
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break;
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case 0x01: /* Text event */
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case 0x02: /* Copyright notice */
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case 0x03: /* Sequence/Track name */
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case 0x04: /* Instrument name */
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case 0x05: /* Lyric */
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case 0x06: /* Marker */
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case 0x07: /* Cue point */
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case 0x08:
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case 0x09:
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case 0x0a:
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case 0x0b:
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case 0x0c:
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case 0x0d:
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case 0x0e:
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case 0x0f:
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/* These are all text events */
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Mf_text(type,leng,m);
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break;
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case 0x20:
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Mf_chanprefix(m[0]);
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break;
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case 0x21:
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Mf_portprefix(m[0]);
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break;
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case 0x2f: /* End of Track */
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Mf_eot();
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break;
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case 0x51: /* Set tempo */
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Mf_tempo(to32bit(0,m[0],m[1],m[2]));
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break;
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case 0x54:
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Mf_smpte(m[0],m[1],m[2],m[3],m[4]);
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break;
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case 0x58:
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Mf_timesig(m[0],m[1],m[2],m[3]);
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break;
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case 0x59:
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Mf_keysig(m[0],m[1]);
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break;
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case 0x7f:
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Mf_sqspecific(leng,m);
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break;
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default:
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Mf_metamisc(type,leng,m);
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}
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}
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void Midifile_reader::sysex()
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{
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Mf_sysex(msgleng(), msg());
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}
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void Midifile_reader::chanmessage(int status, int c1, int c2)
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{
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int chan = status & 0xf;
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switch ( status & 0xf0 ) {
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case NOTEOFF:
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Mf_off(chan,c1,c2);
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break;
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case NOTEON:
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Mf_on(chan,c1,c2);
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break;
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case PRESSURE:
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Mf_pressure(chan,c1,c2);
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break;
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case CONTROLLER:
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Mf_controller(chan,c1,c2);
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break;
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case PITCHBEND:
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Mf_pitchbend(chan,c1,c2);
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break;
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case PROGRAM:
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Mf_program(chan,c1);
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break;
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case CHANPRESSURE:
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Mf_chanpressure(chan,c1);
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break;
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}
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}
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/* readvarinum - read a varying-length number, and return the */
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/* number of characters it took. */
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long Midifile_reader::readvarinum()
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{
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long value;
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int c;
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c = egetc();
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if (midifile_error) return 0;
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value = (long) c;
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if ( c & 0x80 ) {
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value &= 0x7f;
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do {
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c = egetc();
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if (midifile_error) return 0;
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value = (value << 7) + (c & 0x7f);
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} while (c & 0x80);
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}
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return (value);
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}
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long Midifile_reader::to32bit(int c1, int c2, int c3, int c4)
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{
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long value = 0L;
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value = (c1 & 0xff);
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value = (value<<8) + (c2 & 0xff);
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value = (value<<8) + (c3 & 0xff);
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value = (value<<8) + (c4 & 0xff);
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return (value);
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}
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int Midifile_reader::to16bit(int c1, int c2)
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{
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return ((c1 & 0xff ) << 8) + (c2 & 0xff);
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}
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long Midifile_reader::read32bit()
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{
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int c1, c2, c3, c4;
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c1 = egetc(); if (midifile_error) return 0;
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c2 = egetc(); if (midifile_error) return 0;
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c3 = egetc(); if (midifile_error) return 0;
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c4 = egetc(); if (midifile_error) return 0;
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return to32bit(c1,c2,c3,c4);
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}
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int Midifile_reader::read16bit()
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{
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int c1, c2;
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c1 = egetc(); if (midifile_error) return 0;
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c2 = egetc(); if (midifile_error) return 0;
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return to16bit(c1,c2);
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}
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void Midifile_reader::mferror(const char *s)
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{
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Mf_error(s);
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midifile_error = 1;
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}
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/* The code below allows collection of a system exclusive message of */
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/* arbitrary length. The Msgbuff is expanded as necessary. The only */
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/* visible data/routines are msginit(), msgadd(), msg(), msgleng(). */
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#define MSGINCREMENT 128
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Midifile_reader::Midifile_reader()
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{
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Mf_nomerge = 0;
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Mf_currtime = 0L;
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Mf_skipinit = 0;
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Mf_toberead = 0;
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Msgbuff = 0; /* message buffer */
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Msgsize = 0; /* Size of currently allocated Msg */
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Msgindex = 0; /* index of next available location in Msg */
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}
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void Midifile_reader::finalize()
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{
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if (Msgbuff) Mf_free(Msgbuff, Msgsize);
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Msgbuff = NULL;
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}
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void Midifile_reader::msginit()
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{
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Msgindex = 0;
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}
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unsigned char *Midifile_reader::msg()
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{
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return(Msgbuff);
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}
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int Midifile_reader::msgleng()
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{
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return(Msgindex);
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}
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void Midifile_reader::msgadd(int c)
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{
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/* If necessary, allocate larger message buffer. */
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if ( Msgindex >= Msgsize )
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msgenlarge();
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Msgbuff[Msgindex++] = c;
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}
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void Midifile_reader::msgenlarge()
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{
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unsigned char *newmess;
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unsigned char *oldmess = Msgbuff;
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int oldleng = Msgsize;
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Msgsize += MSGINCREMENT;
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newmess = (unsigned char *) Mf_malloc((sizeof(unsigned char) * Msgsize) );
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/* copy old message into larger new one */
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if ( oldmess != 0 ) {
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memcpy(newmess, oldmess, oldleng);
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Mf_free(oldmess, oldleng);
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}
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Msgbuff = newmess;
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}
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