6cb5ec1bfe
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@30426 a1c6a512-1295-4272-9138-f99709370657
347 lines
8.2 KiB
C
347 lines
8.2 KiB
C
/* MikMod sound library
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(c) 1998, 1999, 2000, 2001, 2002 Miodrag Vallat and others - see file
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AUTHORS for complete list.
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This library 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
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published by the Free Software Foundation; either version 2 of
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the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
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02111-1307, USA.
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*/
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/*==============================================================================
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$Id: load_far.c,v 1.3 2005/04/07 19:57:38 realtech Exp $
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Farandole (FAR) module loader
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==============================================================================*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#include <stdio.h>
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#ifdef HAVE_MEMORY_H
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#include <memory.h>
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#endif
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#include <string.h>
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#include "mikmod_internals.h"
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#ifdef SUNOS
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extern int fprintf(FILE *, const char *, ...);
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#endif
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/*========== Module structure */
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typedef struct FARHEADER1 {
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UBYTE id[4]; /* file magic */
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CHAR songname[40]; /* songname */
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CHAR blah[3]; /* 13,10,26 */
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UWORD headerlen; /* remaining length of header in bytes */
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UBYTE version;
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UBYTE onoff[16];
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UBYTE edit1[9];
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UBYTE speed;
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UBYTE panning[16];
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UBYTE edit2[4];
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UWORD stlen;
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} FARHEADER1;
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typedef struct FARHEADER2 {
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UBYTE orders[256];
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UBYTE numpat;
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UBYTE snglen;
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UBYTE loopto;
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UWORD patsiz[256];
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} FARHEADER2;
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typedef struct FARSAMPLE {
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CHAR samplename[32];
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ULONG length;
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UBYTE finetune;
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UBYTE volume;
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ULONG reppos;
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ULONG repend;
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UBYTE type;
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UBYTE loop;
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} FARSAMPLE;
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typedef struct FARNOTE {
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UBYTE note,ins,vol,eff;
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} FARNOTE;
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/*========== Loader variables */
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static CHAR FAR_Version[] = "Farandole";
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static FARHEADER1 *mh1 = NULL;
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static FARHEADER2 *mh2 = NULL;
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static FARNOTE *pat = NULL;
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static unsigned char FARSIG[4+3]={'F','A','R',0xfe,13,10,26};
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/*========== Loader code */
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int FAR_Test(void)
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{
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UBYTE id[47];
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if(!_mm_read_UBYTES(id,47,modreader)) return 0;
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if((memcmp(id,FARSIG,4))||(memcmp(id+44,FARSIG+4,3))) return 0;
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return 1;
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}
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int FAR_Init(void)
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{
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if(!(mh1 = (FARHEADER1*)MikMod_malloc(sizeof(FARHEADER1)))) return 0;
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if(!(mh2 = (FARHEADER2*)MikMod_malloc(sizeof(FARHEADER2)))) return 0;
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if(!(pat = (FARNOTE*)MikMod_malloc(256*16*4*sizeof(FARNOTE)))) return 0;
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return 1;
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}
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void FAR_Cleanup(void)
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{
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MikMod_free(mh1);
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MikMod_free(mh2);
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MikMod_free(pat);
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}
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static UBYTE *FAR_ConvertTrack(FARNOTE* n,int rows)
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{
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int t,vibdepth=1;
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UniReset();
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for(t=0;t<rows;t++) {
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if(n->note) {
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UniInstrument(n->ins);
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UniNote(n->note+3*OCTAVE-1);
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}
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if (n->vol&0xf) UniPTEffect(0xc,(n->vol&0xf)<<2);
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if (n->eff)
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switch(n->eff>>4) {
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case 0x3: /* porta to note */
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UniPTEffect(0x3,(n->eff&0xf)<<4);
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break;
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case 0x4: /* retrigger */
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UniPTEffect(0x0e, 0x90 | (n->eff & 0x0f));
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break;
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case 0x5: /* set vibrato depth */
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vibdepth=n->eff&0xf;
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break;
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case 0x6: /* vibrato */
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UniPTEffect(0x4,((n->eff&0xf)<<4)|vibdepth);
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break;
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case 0x7: /* volume slide up */
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UniPTEffect(0xa,(n->eff&0xf)<<4);
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break;
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case 0x8: /* volume slide down */
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UniPTEffect(0xa,n->eff&0xf);
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break;
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case 0xb: /* panning */
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UniPTEffect(0xe,0x80|(n->eff&0xf));
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break;
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case 0xf: /* set speed */
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UniPTEffect(0xf,n->eff&0xf);
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break;
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/* others not yet implemented */
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default:
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#ifdef MIKMOD_DEBUG
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fprintf(stderr,"\rFAR: unsupported effect %02X\n",n->eff);
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#endif
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break;
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}
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UniNewline();
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n+=16;
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}
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return UniDup();
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}
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int FAR_Load(int curious)
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{
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int t,u,tracks=0;
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SAMPLE *q;
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FARSAMPLE s;
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FARNOTE *crow;
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UBYTE smap[8];
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(void)curious;
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/* try to read module header (first part) */
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_mm_read_UBYTES(mh1->id,4,modreader);
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_mm_read_SBYTES(mh1->songname,40,modreader);
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_mm_read_SBYTES(mh1->blah,3,modreader);
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mh1->headerlen = _mm_read_I_UWORD (modreader);
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mh1->version = _mm_read_UBYTE (modreader);
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_mm_read_UBYTES(mh1->onoff,16,modreader);
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_mm_read_UBYTES(mh1->edit1,9,modreader);
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mh1->speed = _mm_read_UBYTE(modreader);
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_mm_read_UBYTES(mh1->panning,16,modreader);
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_mm_read_UBYTES(mh1->edit2,4,modreader);
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mh1->stlen = _mm_read_I_UWORD (modreader);
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/* init modfile data */
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of.modtype = StrDup(FAR_Version);
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of.songname = DupStr(mh1->songname,40,1);
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of.numchn = 16;
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of.initspeed = mh1->speed;
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of.inittempo = 80;
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of.reppos = 0;
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of.flags |= UF_PANNING;
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for(t=0;t<16;t++) of.panning[t]=mh1->panning[t]<<4;
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/* read songtext into comment field */
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if(mh1->stlen)
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if (!ReadLinedComment(mh1->stlen, 66)) return 0;
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/* try to read module header (second part) */
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_mm_read_UBYTES(mh2->orders,256,modreader);
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mh2->numpat = _mm_read_UBYTE(modreader);
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mh2->snglen = _mm_read_UBYTE(modreader);
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mh2->loopto = _mm_read_UBYTE(modreader);
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_mm_read_I_UWORDS(mh2->patsiz,256,modreader);
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of.numpos = mh2->snglen;
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if(!AllocPositions(of.numpos)) return 0;
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for(t=0;t<of.numpos;t++) {
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if(mh2->orders[t]==0xff) break;
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of.positions[t] = mh2->orders[t];
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}
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/* count number of patterns stored in file */
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of.numpat = 0;
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for(t=0;t<256;t++)
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if(mh2->patsiz[t])
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if((t+1)>of.numpat) of.numpat=t+1;
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of.numtrk = of.numpat*of.numchn;
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/* seek across eventual new data */
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_mm_fseek(modreader,mh1->headerlen-(869+mh1->stlen),SEEK_CUR);
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/* alloc track and pattern structures */
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if(!AllocTracks()) return 0;
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if(!AllocPatterns()) return 0;
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for(t=0;t<of.numpat;t++) {
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UBYTE rows=0/* ,tempo */;
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memset(pat,0,256*16*4*sizeof(FARNOTE));
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if(mh2->patsiz[t]) {
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rows = _mm_read_UBYTE(modreader);
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/* tempo = */ (void)_mm_read_UBYTE(modreader);
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crow = pat;
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/* file often allocates 64 rows even if there are less in pattern */
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if (mh2->patsiz[t]<2+(rows*16*4)) {
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_mm_errno = MMERR_LOADING_PATTERN;
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return 0;
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}
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for(u=(mh2->patsiz[t]-2)/4;u;u--,crow++) {
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crow->note = _mm_read_UBYTE(modreader);
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crow->ins = _mm_read_UBYTE(modreader);
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crow->vol = _mm_read_UBYTE(modreader);
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crow->eff = _mm_read_UBYTE(modreader);
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}
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if(_mm_eof(modreader)) {
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_mm_errno = MMERR_LOADING_PATTERN;
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return 0;
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}
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crow=pat;
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of.pattrows[t] = rows;
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for(u=16;u;u--,crow++)
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if(!(of.tracks[tracks++]=FAR_ConvertTrack(crow,rows))) {
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_mm_errno=MMERR_LOADING_PATTERN;
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return 0;
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}
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} else
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tracks+=16;
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}
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/* read sample map */
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if(!_mm_read_UBYTES(smap,8,modreader)) {
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_mm_errno = MMERR_LOADING_HEADER;
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return 0;
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}
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/* count number of samples used */
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of.numins = 0;
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for(t=0;t<64;t++)
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if(smap[t>>3]&(1<<(t&7))) of.numins=t+1;
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of.numsmp = of.numins;
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/* alloc sample structs */
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if(!AllocSamples()) return 0;
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q = of.samples;
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for(t=0;t<of.numsmp;t++) {
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q->speed = 8363;
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q->flags = SF_SIGNED;
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if(smap[t>>3]&(1<<(t&7))) {
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_mm_read_SBYTES(s.samplename,32,modreader);
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s.length = _mm_read_I_ULONG(modreader);
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s.finetune = _mm_read_UBYTE(modreader);
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s.volume = _mm_read_UBYTE(modreader);
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s.reppos = _mm_read_I_ULONG(modreader);
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s.repend = _mm_read_I_ULONG(modreader);
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s.type = _mm_read_UBYTE(modreader);
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s.loop = _mm_read_UBYTE(modreader);
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q->samplename = DupStr(s.samplename,32,1);
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q->length = s.length;
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q->loopstart = s.reppos;
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q->loopend = s.repend;
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q->volume = s.volume<<2;
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if(s.type&1) q->flags|=SF_16BITS;
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if(s.loop&8) q->flags|=SF_LOOP;
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q->seekpos = _mm_ftell(modreader);
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_mm_fseek(modreader,q->length,SEEK_CUR);
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} else
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q->samplename = DupStr(NULL,0,0);
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q++;
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}
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return 1;
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}
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CHAR *FAR_LoadTitle(void)
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{
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CHAR s[40];
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_mm_fseek(modreader,4,SEEK_SET);
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if(!_mm_read_UBYTES(s,40,modreader)) return NULL;
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return(DupStr(s,40,1));
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}
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/*========== Loader information */
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MIKMODAPI MLOADER load_far={
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NULL,
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"FAR",
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"FAR (Farandole Composer)",
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FAR_Init,
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FAR_Test,
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FAR_Load,
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FAR_Cleanup,
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FAR_LoadTitle
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};
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/* ex:set ts=4: */
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