f40bfc9267
Change-Id: Id7f4717d51ed02d67cb9f9cb3c0ada4a81843f97 Reviewed-on: http://gerrit.rockbox.org/137 Reviewed-by: Nils Wallménius <nils@rockbox.org> Tested-by: Nils Wallménius <nils@rockbox.org>
272 lines
7.5 KiB
C
272 lines
7.5 KiB
C
// Game_Music_Emu 0.5.5. http://www.slack.net/~ant/
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#include "nsf_emu.h"
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#include "blargg_endian.h"
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#include <string.h>
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/* Copyright (C) 2005-2006 Shay Green. This module is free software; you
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can redistribute it and/or modify it under the terms of the GNU Lesser
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General Public License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version. This
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module is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more
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details. You should have received a copy of the GNU Lesser General Public
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License along with this module; if not, write to the Free Software Foundation,
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Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */
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#include "blargg_source.h"
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void Info_init( struct Nsfe_Info* this )
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{
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this->playlist_disabled = false;
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}
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void Info_unload( struct Nsfe_Info* this )
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{
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memset(this->playlist, 0, 256);
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memset(this->track_times, 0, 256 * sizeof(int32_t));
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this->playlist_size = 0;
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this->track_times_size = 0;
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}
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// TODO: if no playlist, treat as if there is a playlist that is just 1,2,3,4,5... ?
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void Info_disable_playlist( struct Nsfe_Info* this, bool b )
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{
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this->playlist_disabled = b;
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this->track_count = this->playlist_size;
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if ( !this->track_count || this->playlist_disabled )
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this->track_count = this->actual_track_count_;
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}
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int Info_remap_track( struct Nsfe_Info* this, int track )
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{
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if ( !this->playlist_disabled && (unsigned) track < (unsigned) this->playlist_size )
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track = this->playlist [track];
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return track;
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}
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const char eof_error [] = "Unexpected end of file";
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// Read n bytes from memory buffer
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static blargg_err_t in_read( void* dst, long bytes, void* data, long* offset, long size )
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{
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if ((*offset + bytes) > size) return eof_error;
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memcpy(dst, (char*) data + *offset, bytes);
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*offset += bytes;
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return 0;
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}
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static blargg_err_t in_skip( long bytes, long *offset, long size )
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{
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if ((*offset + bytes) > size) return eof_error;
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*offset += bytes;
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return 0;
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}
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// Skip n bytes from memory buffer
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// Read multiple strings and separate into individual strings
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static int read_strs( void* data, long bytes, long* offset, long size,
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const char* strs [4] )
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{
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char* chars = (char*) data + *offset;
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chars [bytes - 1] = 0; // in case last string doesn't have terminator
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if ( in_skip( bytes, offset, size) )
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return -1;
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int count = 0, i;
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for ( i = 0; i < bytes; i++ )
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{
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strs [count] = &chars [i];
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while ( i < bytes && chars [i] )
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i++;
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count++;
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if (count >= 4)
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break;
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}
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return count;
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}
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struct nsfe_info_t
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{
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byte load_addr [2];
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byte init_addr [2];
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byte play_addr [2];
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byte speed_flags;
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byte chip_flags;
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byte track_count;
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byte first_track;
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byte unused [6];
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};
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blargg_err_t Info_load( struct Nsfe_Info* this, void* data, long size, struct Nsf_Emu* nsf_emu )
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{
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long offset = 0;
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int const nsfe_info_size = 16;
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assert( offsetof (struct nsfe_info_t,unused [6]) == nsfe_info_size );
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// check header
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byte signature [4];
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blargg_err_t err = in_read( signature, sizeof signature, data, &offset, size );
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if ( err )
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return (err == eof_error ? gme_wrong_file_type : err);
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if ( memcmp( signature, "NSFE", 4 ) ) {
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}
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// free previous info
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/* TODO: clear track_names */
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memset(this->playlist, 0, 256);
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memset(this->track_times, 0, 256 * sizeof(int32_t));
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this->playlist_size = 0;
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this->track_times_size = 0;
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// default nsf header
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static const struct header_t base_header =
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{
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{'N','E','S','M','\x1A'},// tag
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1, // version
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1, 1, // track count, first track
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{0,0},{0,0},{0,0}, // addresses
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"","","", // strings
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{0x1A, 0x41}, // NTSC rate
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{0,0,0,0,0,0,0,0}, // banks
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{0x20, 0x4E}, // PAL rate
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0, 0, // flags
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{0,0,0,0} // unused
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};
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memcpy( &nsf_emu->header, &base_header, sizeof base_header );
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// parse tags
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int phase = 0;
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while ( phase != 3 )
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{
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// read size and tag
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byte block_header [2] [4];
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RETURN_ERR( in_read( block_header, sizeof block_header, data, &offset, size ) );
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int chunk_size = get_le32( block_header [0] );
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int tag = get_le32( block_header [1] );
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switch ( tag )
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{
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case BLARGG_4CHAR('O','F','N','I'): {
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check( phase == 0 );
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if ( chunk_size < 8 )
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return "Corrupt file";
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struct nsfe_info_t finfo;
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finfo.track_count = 1;
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finfo.first_track = 0;
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RETURN_ERR( in_read( &finfo, min( chunk_size, nsfe_info_size ),
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(char*) data, &offset, size ) );
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if ( chunk_size > nsfe_info_size )
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RETURN_ERR( in_skip( chunk_size - nsfe_info_size, &offset, size ) );
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phase = 1;
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nsf_emu->header.speed_flags = finfo.speed_flags;
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nsf_emu->header.chip_flags = finfo.chip_flags;
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nsf_emu->header.track_count = finfo.track_count;
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this->actual_track_count_ = finfo.track_count;
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nsf_emu->header.first_track = finfo.first_track;
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memcpy( nsf_emu->header.load_addr, finfo.load_addr, 2 * 3 );
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break;
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}
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case BLARGG_4CHAR('K','N','A','B'):
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if ( chunk_size > (int) sizeof nsf_emu->header.banks )
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return "Corrupt file";
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RETURN_ERR( in_read( nsf_emu->header.banks, chunk_size, data, &offset, size ) );
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break;
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case BLARGG_4CHAR('h','t','u','a'): {
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const char* strs [4];
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int n = read_strs( data, chunk_size, &offset, size, strs );
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if ( n < 0 )
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return eof_error;
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break;
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}
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case BLARGG_4CHAR('e','m','i','t'):
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this->track_times_size = chunk_size / 4;
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RETURN_ERR( in_read( this->track_times, this->track_times_size * 4, data, &offset, size ) );
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break;
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case BLARGG_4CHAR('l','b','l','t'):
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RETURN_ERR( in_skip( chunk_size, &offset, size ) );
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break;
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case BLARGG_4CHAR('t','s','l','p'):
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this->playlist_size = chunk_size;
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RETURN_ERR( in_read( &this->playlist [0], chunk_size, data, &offset, size ) );
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break;
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case BLARGG_4CHAR('A','T','A','D'): {
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check( phase == 1 );
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phase = 2;
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if ( !nsf_emu )
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{
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RETURN_ERR( in_skip( chunk_size, &offset, size ) );
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}
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else
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{
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// Avoid unexpected end of file
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if ( (offset + chunk_size) > size )
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return eof_error;
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RETURN_ERR( Rom_load( &nsf_emu->rom, (char*) data + offset, chunk_size, 0, 0, 0 ) );
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RETURN_ERR( Nsf_post_load( nsf_emu ) );
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offset += chunk_size;
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}
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break;
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}
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case BLARGG_4CHAR('D','N','E','N'):
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check( phase == 2 );
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phase = 3;
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break;
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default:
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// tags that can be skipped start with a lowercase character
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check( islower( (tag >> 24) & 0xFF ) );
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RETURN_ERR( in_skip( chunk_size, &offset, size ) );
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break;
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}
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}
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return 0;
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}
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int Track_length( struct Nsf_Emu* this, int n )
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{
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int length = 0;
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if ( (this->m3u.size > 0) && (n < this->m3u.size) ) {
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struct entry_t* entry = &this->m3u.entries [n];
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length = entry->length;
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}
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else if ( (this->info.playlist_size > 0) && (n < this->info.playlist_size) ) {
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int remapped = Info_remap_track( &this->info, n );
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if ( (unsigned) remapped < (unsigned) this->info.track_times_size )
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length = (int32_t) get_le32( &this->info.track_times [remapped] );
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}
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else if( (unsigned) n < (unsigned) this->info.track_times_size )
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length = (int32_t) get_le32( &this->info.track_times [n] );
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/* Length will be 2,30 minutes for one track songs,
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and 1,45 minutes for multitrack songs */
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if ( length <= 0 )
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length = (this->track_count > 1 ? 105 : 150) * 1000;
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return length;
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}
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