mirror of
https://github.com/ZDoom/qzdoom.git
synced 2024-11-28 23:12:24 +00:00
383 lines
9.7 KiB
C
383 lines
9.7 KiB
C
/* _______ ____ __ ___ ___
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* \ _ \ \ / \ / \ \ / / ' ' '
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* | | \ \ | | || | \/ | . .
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* | | | | | | || ||\ /| |
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* | | | | | | || || \/ | | ' ' '
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* | | | | | | || || | | . .
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* | |_/ / \ \__// || | |
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* /_______/ynamic \____/niversal /__\ /____\usic /| . . ibliotheque
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* / \
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* / . \
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* readam.c - Code to read a RIFF DSMF module / / \ \
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* from a parsed RIFF structure. | < / \_
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* | \/ /\ /
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* By Chris Moeller. \_ / > /
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* | \ / /
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* | ' /
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* \__/
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "dumb.h"
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#include "internal/it.h"
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#include "internal/riff.h"
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static int it_riff_dsmf_process_sample( IT_SAMPLE * sample, DUMBFILE * f, int len )
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{
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int flags;
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dumbfile_getnc( (char *) sample->filename, 13, f );
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sample->filename[ 14 ] = 0;
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flags = dumbfile_igetw( f );
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sample->default_volume = dumbfile_getc( f );
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sample->length = dumbfile_igetl( f );
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sample->loop_start = dumbfile_igetl( f );
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sample->loop_end = dumbfile_igetl( f );
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dumbfile_skip( f, 32 - 28 );
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sample->C5_speed = dumbfile_igetw( f ) * 2;
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dumbfile_skip( f, 36 - 34 );
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dumbfile_getnc( (char *) sample->name, 28, f );
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sample->name[ 28 ] = 0;
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/*if ( data[ 0x38 ] || data[ 0x39 ] || data[ 0x3A ] || data[ 0x3B ] )
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return -1;*/
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if ( ! sample->length ) {
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sample->flags &= ~IT_SAMPLE_EXISTS;
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return 0;
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}
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/*if ( flags & ~( 2 | 1 ) )
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return -1;*/
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if ( sample->length + 64 > len )
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return -1;
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sample->flags = IT_SAMPLE_EXISTS;
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sample->default_pan = 0;
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sample->global_volume = 64;
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sample->vibrato_speed = 0;
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sample->vibrato_depth = 0;
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sample->vibrato_rate = 0;
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sample->vibrato_waveform = IT_VIBRATO_SINE;
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sample->finetune = 0;
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sample->max_resampling_quality = -1;
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if ( flags & 1 )
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{
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if (((unsigned int)sample->loop_end <= (unsigned int)sample->length) &&
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((unsigned int)sample->loop_start < (unsigned int)sample->loop_end))
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{
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sample->length = sample->loop_end;
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sample->flags |= IT_SAMPLE_LOOP;
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if ( flags & 0x10 ) sample->flags |= IT_SAMPLE_PINGPONG_LOOP;
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}
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}
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sample->data = malloc( sample->length );
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if ( ! sample->data )
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return -1;
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dumbfile_getnc( sample->data, sample->length, f );
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if ( ! ( flags & 2 ) )
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{
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for ( flags = 0; flags < sample->length; ++flags )
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( ( signed char * ) sample->data ) [ flags ] ^= 0x80;
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}
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return 0;
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}
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static int it_riff_dsmf_process_pattern( IT_PATTERN * pattern, DUMBFILE * f, int len )
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{
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int length, row;
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unsigned flags;
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long start, end;
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int p, q, r;
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IT_ENTRY * entry;
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length = dumbfile_igetw( f );
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if ( length > len ) return -1;
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len = length - 2;
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pattern->n_rows = 64;
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pattern->n_entries = 64;
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row = 0;
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start = dumbfile_pos( f );
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end = start + len;
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while ( (row < 64) && !dumbfile_error( f ) && (dumbfile_pos( f ) < end) ) {
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p = dumbfile_getc( f );
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if ( ! p ) {
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++ row;
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continue;
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}
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flags = p & 0xF0;
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if (flags) {
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++ pattern->n_entries;
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if (flags & 0x80) dumbfile_skip( f, 1 );
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if (flags & 0x40) dumbfile_skip( f, 1 );
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if (flags & 0x20) dumbfile_skip( f, 1 );
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if (flags & 0x10) dumbfile_skip( f, 2 );
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}
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}
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if ( pattern->n_entries == 64 ) return 0;
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pattern->entry = malloc( pattern->n_entries * sizeof( * pattern->entry ) );
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if ( ! pattern->entry ) return -1;
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entry = pattern->entry;
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row = 0;
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if ( dumbfile_seek( f, start, DFS_SEEK_SET ) ) return -1;
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while ( ( row < 64 ) && !dumbfile_error( f ) && ( dumbfile_pos( f ) < end ) )
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{
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p = dumbfile_getc( f );
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if ( ! p )
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{
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IT_SET_END_ROW( entry );
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++ entry;
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++ row;
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continue;
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}
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flags = p;
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entry->channel = flags & 0x0F;
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entry->mask = 0;
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if ( flags & 0xF0 )
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{
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if ( flags & 0x80 )
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{
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q = dumbfile_getc( f );
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if ( q )
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{
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entry->mask |= IT_ENTRY_NOTE;
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entry->note = q - 1;
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}
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}
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if ( flags & 0x40 )
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{
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q = dumbfile_getc( f );
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if ( q )
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{
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entry->mask |= IT_ENTRY_INSTRUMENT;
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entry->instrument = q;
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}
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}
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if ( flags & 0x20 )
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{
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entry->mask |= IT_ENTRY_VOLPAN;
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entry->volpan = dumbfile_getc( f );
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}
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if ( flags & 0x10 )
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{
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q = dumbfile_getc( f );
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r = dumbfile_getc( f );
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_dumb_it_xm_convert_effect( q, r, entry, 0 );
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}
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if (entry->mask) entry++;
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}
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}
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while ( row < 64 )
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{
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IT_SET_END_ROW( entry );
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++ entry;
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++ row;
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}
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pattern->n_entries = (int)(entry - pattern->entry);
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if ( ! pattern->n_entries ) return -1;
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return 0;
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}
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static DUMB_IT_SIGDATA *it_riff_dsmf_load_sigdata( DUMBFILE * f, struct riff * stream )
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{
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DUMB_IT_SIGDATA *sigdata;
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int n, o, found;
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if ( ! stream ) goto error;
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if ( stream->type != DUMB_ID( 'D', 'S', 'M', 'F' ) ) goto error;
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sigdata = malloc(sizeof(*sigdata));
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if ( ! sigdata ) goto error;
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sigdata->n_patterns = 0;
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sigdata->n_samples = 0;
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sigdata->name[0] = 0;
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found = 0;
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for ( n = 0; (unsigned)n < stream->chunk_count; ++n )
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{
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struct riff_chunk * c = stream->chunks + n;
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switch( c->type )
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{
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case DUMB_ID( 'S' ,'O' ,'N' ,'G' ):
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/* initialization data */
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if ( ( found ) || ( c->size < 192 ) ) goto error_sd;
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found = 1;
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break;
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case DUMB_ID( 'P', 'A', 'T', 'T' ):
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++ sigdata->n_patterns;
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break;
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case DUMB_ID( 'I', 'N', 'S', 'T' ):
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++ sigdata->n_samples;
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break;
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}
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}
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if ( !found || !sigdata->n_samples || !sigdata->n_patterns ) goto error_sd;
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if ( sigdata->n_samples > 255 || sigdata->n_patterns > 255 ) goto error_sd;
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sigdata->song_message = NULL;
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sigdata->order = NULL;
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sigdata->instrument = NULL;
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sigdata->sample = NULL;
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sigdata->pattern = NULL;
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sigdata->midi = NULL;
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sigdata->checkpoint = NULL;
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sigdata->mixing_volume = 48;
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sigdata->pan_separation = 128;
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sigdata->n_instruments = 0;
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sigdata->n_orders = 0;
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sigdata->restart_position = 0;
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memset(sigdata->channel_volume, 64, DUMB_IT_N_CHANNELS);
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for (n = 0; n < DUMB_IT_N_CHANNELS; n += 4) {
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int sep = 32 * dumb_it_default_panning_separation / 100;
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sigdata->channel_pan[n ] = 32 - sep;
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sigdata->channel_pan[n+1] = 32 + sep;
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sigdata->channel_pan[n+2] = 32 + sep;
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sigdata->channel_pan[n+3] = 32 - sep;
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}
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for ( n = 0; (unsigned)n < stream->chunk_count; ++n )
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{
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struct riff_chunk * c = stream->chunks + n;
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switch ( c->type )
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{
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case DUMB_ID( 'S', 'O', 'N', 'G' ):
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if ( dumbfile_seek( f, c->offset, DFS_SEEK_SET ) ) goto error_usd;
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dumbfile_getnc( (char *) sigdata->name, 28, f );
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sigdata->name[ 28 ] = 0;
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sigdata->flags = IT_STEREO | IT_OLD_EFFECTS | IT_COMPATIBLE_GXX;
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dumbfile_skip( f, 36 - 28 );
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sigdata->n_orders = dumbfile_igetw( f );
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//sigdata->n_samples = ptr[ 38 ] | ( ptr[ 39 ] << 8 ); // whatever
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//sigdata->n_patterns = ptr[ 40 ] | ( ptr[ 41 ] << 8 );
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dumbfile_skip( f, 42 - 38 );
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sigdata->n_pchannels = dumbfile_igetw( f );
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sigdata->global_volume = dumbfile_getc( f );
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sigdata->mixing_volume = dumbfile_getc( f );
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sigdata->speed = dumbfile_getc( f );
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sigdata->tempo = dumbfile_getc( f );
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for ( o = 0; o < 16; ++o )
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{
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sigdata->channel_pan[ o ] = dumbfile_getc( f ) / 2;
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}
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sigdata->order = malloc( 128 );
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if ( ! sigdata->order ) goto error_usd;
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dumbfile_getnc( (char *) sigdata->order, 128, f );
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break;
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}
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}
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sigdata->pattern = malloc( sigdata->n_patterns * sizeof( *sigdata->pattern ) );
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if ( ! sigdata->pattern ) goto error_usd;
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for ( n = 0; n < sigdata->n_patterns; ++n )
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sigdata->pattern[ n ].entry = NULL;
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sigdata->sample = malloc( sigdata->n_samples * sizeof( *sigdata->sample ) );
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if ( ! sigdata->sample ) goto error_usd;
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for ( n = 0; n < sigdata->n_samples; ++n )
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{
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IT_SAMPLE * sample = sigdata->sample + n;
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sample->data = NULL;
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}
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sigdata->n_samples = 0;
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sigdata->n_patterns = 0;
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for ( n = 0; (unsigned)n < stream->chunk_count; ++n )
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{
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struct riff_chunk * c = stream->chunks + n;
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switch ( c->type )
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{
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case DUMB_ID( 'P', 'A', 'T', 'T' ):
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if ( dumbfile_seek( f, c->offset, DFS_SEEK_SET ) ) goto error_usd;
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if ( it_riff_dsmf_process_pattern( sigdata->pattern + sigdata->n_patterns, f, c->size ) ) goto error_usd;
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++ sigdata->n_patterns;
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break;
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case DUMB_ID( 'I', 'N', 'S', 'T' ):
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if ( dumbfile_seek( f, c->offset, DFS_SEEK_SET ) ) goto error_usd;
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if ( it_riff_dsmf_process_sample( sigdata->sample + sigdata->n_samples, f, c->size ) ) goto error_usd;
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++ sigdata->n_samples;
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break;
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}
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}
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_dumb_it_fix_invalid_orders( sigdata );
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return sigdata;
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error_usd:
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_dumb_it_unload_sigdata( sigdata );
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goto error;
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error_sd:
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free( sigdata );
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error:
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return NULL;
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}
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DUH *dumb_read_riff_dsmf( DUMBFILE * f, struct riff * stream )
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{
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sigdata_t *sigdata;
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DUH_SIGTYPE_DESC *descptr = &_dumb_sigtype_it;
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sigdata = it_riff_dsmf_load_sigdata( f, stream );
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if (!sigdata)
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return NULL;
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{
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const char *tag[2][2];
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tag[0][0] = "TITLE";
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tag[0][1] = (const char *)(((DUMB_IT_SIGDATA *)sigdata)->name);
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tag[1][0] = "FORMAT";
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tag[1][1] = "RIFF DSMF";
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return make_duh( -1, 2, ( const char * const (*) [ 2 ] ) tag, 1, & descptr, & sigdata );
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}
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}
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