b4e70422a3
* Get rid of the non-functional GT2 loader * Add the UMX loader * Add HQ mixer routines (and make it configurable) * Allow samplerate to be configured at run/playtime * Support >64KHz mixing/playback * Correctly restore non-boost status (The diff to upstream is much smaller now too!) Change-Id: Iaa4ac901ba9cd4123bb225656976e78271353a72
348 lines
7.7 KiB
C
348 lines
7.7 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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$Id$
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Ultratracker (ULT) 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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/* header */
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typedef struct ULTHEADER {
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CHAR id[16];
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CHAR songtitle[32];
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UBYTE reserved;
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} ULTHEADER;
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/* sample information */
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typedef struct ULTSAMPLE {
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CHAR samplename[32];
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CHAR dosname[12];
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SLONG loopstart;
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SLONG loopend;
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SLONG sizestart;
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SLONG sizeend;
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UBYTE volume;
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UBYTE flags;
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UWORD speed;
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SWORD finetune;
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} ULTSAMPLE;
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typedef struct ULTEVENT {
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UBYTE note,sample,eff,dat1,dat2;
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} ULTEVENT;
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/*========== Loader variables */
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#define ULTS_16BITS 4
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#define ULTS_LOOP 8
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#define ULTS_REVERSE 16
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#define ULT_VERSION_LEN 18
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static CHAR ULT_Version[ULT_VERSION_LEN+1]="Ultra Tracker v1.x";
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static ULTEVENT ev;
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/*========== Loader code */
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static int ULT_Test(void)
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{
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CHAR id[16];
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if(!_mm_read_string(id,15,modreader)) return 0;
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if(strncmp(id,"MAS_UTrack_V00",14)) return 0;
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if((id[14]<'1')||(id[14]>'4')) return 0;
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return 1;
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}
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static int ULT_Init(void)
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{
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return 1;
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}
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static void ULT_Cleanup(void)
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{
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}
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static UBYTE ReadUltEvent(ULTEVENT* event)
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{
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UBYTE flag,rep=1;
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flag = _mm_read_UBYTE(modreader);
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if(flag==0xfc) {
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rep = _mm_read_UBYTE(modreader);
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event->note =_mm_read_UBYTE(modreader);
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} else
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event->note = flag;
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event->sample =_mm_read_UBYTE(modreader);
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event->eff =_mm_read_UBYTE(modreader);
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event->dat1 =_mm_read_UBYTE(modreader);
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event->dat2 =_mm_read_UBYTE(modreader);
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return rep;
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}
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static int ULT_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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ULTSAMPLE s;
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ULTHEADER mh;
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UBYTE nos,noc,RBnop;
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(void)curious;
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/* try to read module header */
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_mm_read_string(mh.id,15,modreader);
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_mm_read_string(mh.songtitle,32,modreader);
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mh.reserved=_mm_read_UBYTE(modreader);
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if(_mm_eof(modreader)) {
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_mm_errno = MMERR_LOADING_HEADER;
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return 0;
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}
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ULT_Version[ULT_VERSION_LEN-1]='3'+(mh.id[14]-'1');
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of.modtype = DupStr(ULT_Version,ULT_VERSION_LEN,1);
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of.initspeed = 6;
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of.inittempo = 125;
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of.reppos = 0;
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/* read songtext */
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if ((mh.id[14]>'1')&&(mh.reserved))
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if(!ReadLinedComment(mh.reserved * 32, 32)) return 0;
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nos=_mm_read_UBYTE(modreader);
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if(_mm_eof(modreader)) {
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_mm_errno = MMERR_LOADING_HEADER;
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return 0;
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}
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of.songname=DupStr(mh.songtitle,32,1);
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of.numins=of.numsmp=nos;
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if(!AllocSamples()) return 0;
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q = of.samples;
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for(t=0;t<nos;t++) {
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/* try to read sample info */
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_mm_read_string(s.samplename,32,modreader);
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_mm_read_string(s.dosname,12,modreader);
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s.loopstart =_mm_read_I_ULONG(modreader);
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s.loopend =_mm_read_I_ULONG(modreader);
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s.sizestart =_mm_read_I_ULONG(modreader);
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s.sizeend =_mm_read_I_ULONG(modreader);
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s.volume =_mm_read_UBYTE(modreader);
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s.flags =_mm_read_UBYTE(modreader);
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s.speed =(mh.id[14]>='4')?_mm_read_I_UWORD(modreader):8363;
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s.finetune =_mm_read_I_SWORD(modreader);
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if(_mm_eof(modreader)) {
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_mm_errno = MMERR_LOADING_SAMPLEINFO;
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return 0;
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}
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q->samplename=DupStr(s.samplename,32,1);
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/* The correct formula for the coefficient would be
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pow(2,(double)s.finetume/OCTAVE/32768), but to avoid floating point
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here, we'll use a first order approximation here.
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1/567290 == Ln(2)/OCTAVE/32768 */
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q->speed=s.speed+s.speed*(((SLONG)s.speed*(SLONG)s.finetune)/567290);
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q->length = s.sizeend-s.sizestart;
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q->volume = s.volume>>2;
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q->loopstart = s.loopstart;
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q->loopend = s.loopend;
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q->flags = SF_SIGNED;
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if(s.flags&ULTS_LOOP) q->flags|=SF_LOOP;
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if(s.flags&ULTS_16BITS) {
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s.sizeend+=(s.sizeend-s.sizestart);
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s.sizestart<<=1;
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q->flags|=SF_16BITS;
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q->loopstart>>=1;
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q->loopend>>=1;
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}
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q++;
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}
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if(!AllocPositions(256)) return 0;
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for(t=0;t<256;t++)
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of.positions[t]=_mm_read_UBYTE(modreader);
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noc=_mm_read_UBYTE(modreader);
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RBnop=_mm_read_UBYTE(modreader);
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of.numchn=++noc;
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of.numpat=++RBnop;
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of.numtrk=of.numchn*of.numpat;
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for(t=0;t<256;t++) {
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if(of.positions[t]==255) {
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of.positions[t]=LAST_PATTERN;
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break;
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}
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if (of.positions[t]>of.numpat) { /* SANITIY CHECK */
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/* fprintf(stderr,"positions[%d]=%d > numpat=%d\n",t,of.positions[t],of.numpat);*/
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_mm_errno = MMERR_LOADING_HEADER;
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return 0;
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}
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}
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of.numpos=t;
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if(!AllocTracks()) return 0;
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if(!AllocPatterns()) return 0;
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for(u=0;u<of.numchn;u++)
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for(t=0;t<of.numpat;t++)
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of.patterns[(t*of.numchn)+u]=tracks++;
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/* Secunia SA37775 / CVE-2009-3996 */
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if (of.numchn>=UF_MAXCHAN)
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of.numchn=UF_MAXCHAN - 1;
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/* read pan position table for v1.5 and higher */
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if(mh.id[14]>='3') {
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for(t=0;t<of.numchn;t++) of.panning[t]=_mm_read_UBYTE(modreader)<<4;
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of.flags |= UF_PANNING;
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}
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for(t=0;t<of.numtrk;t++) {
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int rep,row=0;
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UniReset();
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while(row<64) {
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rep=ReadUltEvent(&ev);
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if(_mm_eof(modreader)) {
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_mm_errno = MMERR_LOADING_TRACK;
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return 0;
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}
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while(rep--) {
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UBYTE eff;
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int offset;
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if(ev.sample) UniInstrument(ev.sample-1);
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if(ev.note) UniNote(ev.note+2*OCTAVE-1);
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/* first effect - various fixes by Alexander Kerkhove and
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Thomas Neumann */
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eff = ev.eff>>4;
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switch(eff) {
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case 0x3: /* tone portamento */
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UniEffect(UNI_ITEFFECTG,ev.dat2);
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break;
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case 0x5:
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break;
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case 0x9: /* sample offset */
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offset=(ev.dat2<<8)|((ev.eff&0xf)==9?ev.dat1:0);
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UniEffect(UNI_ULTEFFECT9,offset);
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break;
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case 0xb: /* panning */
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UniPTEffect(8,ev.dat2*0xf);
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of.flags |= UF_PANNING;
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break;
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case 0xc: /* volume */
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UniPTEffect(eff,ev.dat2>>2);
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break;
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default:
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UniPTEffect(eff,ev.dat2);
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break;
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}
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/* second effect */
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eff=ev.eff&0xf;
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switch(eff) {
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case 0x3: /* tone portamento */
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UniEffect(UNI_ITEFFECTG,ev.dat1);
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break;
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case 0x5:
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break;
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case 0x9: /* sample offset */
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if((ev.eff>>4)!=9)
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UniEffect(UNI_ULTEFFECT9,((UWORD)ev.dat1)<<8);
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break;
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case 0xb: /* panning */
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UniPTEffect(8,ev.dat1*0xf);
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of.flags |= UF_PANNING;
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break;
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case 0xc: /* volume */
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UniPTEffect(eff,ev.dat1>>2);
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break;
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default:
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UniPTEffect(eff,ev.dat1);
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break;
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}
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UniNewline();
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row++;
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}
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}
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if(!(of.tracks[t]=UniDup())) return 0;
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}
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return 1;
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}
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static CHAR * ULT_LoadTitle(void)
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{
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CHAR s[32];
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_mm_fseek(modreader,15,SEEK_SET);
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if(!_mm_read_UBYTES(s,32,modreader)) return NULL;
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return(DupStr(s,32,1));
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}
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/*========== Loader information */
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MIKMODAPI MLOADER load_ult={
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NULL,
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"ULT",
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"ULT (UltraTracker)",
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ULT_Init,
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ULT_Test,
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ULT_Load,
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ULT_Cleanup,
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ULT_LoadTitle
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};
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/* ex:set ts=4: */
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