209 lines
5.5 KiB
C++
209 lines
5.5 KiB
C++
// Game_Music_Emu $vers. http://www.slack.net/~ant/
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#include "Gbs_Core.h"
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#include "blargg_endian.h"
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/* Copyright (C) 2003-2009 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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int const tempo_unit = 16;
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int const idle_addr = 0xF00D;
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int const bank_size = 0x4000;
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Gbs_Core::Gbs_Core() : rom( bank_size )
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{
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tempo = tempo_unit;
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assert( offsetof (header_t,copyright [32]) == header_t::size );
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}
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Gbs_Core::~Gbs_Core() { }
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void Gbs_Core::unload()
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{
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header_.timer_mode = 0; // set_tempo() reads this
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rom.clear();
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Gme_Loader::unload();
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}
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bool Gbs_Core::header_t::valid_tag() const
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{
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return 0 == memcmp( tag, "GBS", 3 );
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}
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blargg_err_t Gbs_Core::load_( Data_Reader& in )
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{
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RETURN_ERR( rom.load( in, header_.size, &header_, 0 ) );
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if ( !header_.valid_tag() )
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return blargg_err_file_type;
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if ( header_.vers != 1 )
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set_warning( "Unknown file version" );
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if ( header_.timer_mode & 0x78 )
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set_warning( "Invalid timer mode" );
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addr_t load_addr = get_le16( header_.load_addr );
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if ( (header_.load_addr [1] | header_.init_addr [1] | header_.play_addr [1]) > 0x7F ||
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load_addr < 0x400 )
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set_warning( "Invalid load/init/play address" );
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cpu.rst_base = load_addr;
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rom.set_addr( load_addr );
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return blargg_ok;
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}
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void Gbs_Core::set_bank( int n )
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{
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addr_t addr = rom.mask_addr( n * bank_size );
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if ( addr == 0 && rom.size() > bank_size )
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addr = bank_size; // MBC1&2 behavior, bank 0 acts like bank 1
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cpu.map_code( bank_size, bank_size, rom.at_addr( addr ) );
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}
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void Gbs_Core::update_timer()
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{
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play_period_ = 70224 / tempo_unit; // 59.73 Hz
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if ( header_.timer_mode & 0x04 )
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{
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// Using custom rate
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static byte const rates [4] = { 6, 0, 2, 4 };
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// TODO: emulate double speed CPU mode rather than halving timer rate
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int double_speed = header_.timer_mode >> 7;
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int shift = rates [ram [hi_page + 7] & 3] - double_speed;
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play_period_ = (256 - ram [hi_page + 6]) << shift;
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}
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play_period_ *= tempo;
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}
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void Gbs_Core::set_tempo( double t )
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{
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tempo = (int) (tempo_unit / t + 0.5);
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apu_.set_tempo( t );
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update_timer();
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}
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// Jumps to routine, given pointer to address in file header. Pushes idle_addr
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// as return address, NOT old PC.
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void Gbs_Core::jsr_then_stop( byte const addr [] )
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{
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check( cpu.r.sp == get_le16( header_.stack_ptr ) );
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cpu.r.pc = get_le16( addr );
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write_mem( --cpu.r.sp, idle_addr >> 8 );
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write_mem( --cpu.r.sp, idle_addr );
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}
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blargg_err_t Gbs_Core::start_track( int track, Gb_Apu::mode_t mode )
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{
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// Reset APU to state expected by most rips
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static byte const sound_data [] = {
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0x80, 0xBF, 0x00, 0x00, 0xB8, // square 1 DAC disabled
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0x00, 0x3F, 0x00, 0x00, 0xB8, // square 2 DAC disabled
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0x7F, 0xFF, 0x9F, 0x00, 0xB8, // wave DAC disabled
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0x00, 0xFF, 0x00, 0x00, 0xB8, // noise DAC disabled
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0x77, 0xFF, 0x80, // max volume, all chans in center, power on
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};
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apu_.reset( mode );
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apu_.write_register( 0, 0xFF26, 0x80 ); // power on
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for ( int i = 0; i < (int) sizeof sound_data; i++ )
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apu_.write_register( 0, i + apu_.io_addr, sound_data [i] );
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apu_.end_frame( 1 ); // necessary to get click out of the way
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// Init memory and I/O registers
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memset( ram, 0, 0x4000 );
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memset( ram + 0x4000, 0xFF, 0x1F80 );
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memset( ram + 0x5F80, 0, sizeof ram - 0x5F80 );
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ram [hi_page] = 0; // joypad reads back as 0
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ram [idle_addr - ram_addr] = 0xED; // illegal instruction
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ram [hi_page + 6] = header_.timer_modulo;
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ram [hi_page + 7] = header_.timer_mode;
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// Map memory
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cpu.reset( rom.unmapped() );
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cpu.map_code( ram_addr, 0x10000 - ram_addr, ram );
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cpu.map_code( 0, bank_size, rom.at_addr( 0 ) );
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set_bank( rom.size() > bank_size );
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// CPU registers, timing
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update_timer();
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next_play = play_period_;
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cpu.r.fa = track;
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cpu.r.sp = get_le16( header_.stack_ptr );
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jsr_then_stop( header_.init_addr );
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return blargg_ok;
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}
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blargg_err_t Gbs_Core::run_until( int end )
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{
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end_time = end;
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cpu.set_time( cpu.time() - end );
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while ( true )
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{
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run_cpu();
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if ( cpu.time() >= 0 )
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break;
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if ( cpu.r.pc == idle_addr )
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{
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if ( next_play > end_time )
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{
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cpu.set_time( 0 );
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break;
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}
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if ( cpu.time() < next_play - end_time )
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cpu.set_time( next_play - end_time );
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next_play += play_period_;
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jsr_then_stop( header_.play_addr );
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}
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else if ( cpu.r.pc > 0xFFFF )
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{
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dprintf( "PC wrapped around\n" );
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cpu.r.pc &= 0xFFFF;
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}
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else
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{
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set_warning( "Emulation error (illegal/unsupported instruction)" );
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dprintf( "Bad opcode $%02X at $%04X\n",
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(int) *cpu.get_code( cpu.r.pc ), (int) cpu.r.pc );
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cpu.r.pc = (cpu.r.pc + 1) & 0xFFFF;
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cpu.set_time( cpu.time() + 6 );
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}
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}
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return blargg_ok;
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}
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blargg_err_t Gbs_Core::end_frame( int end )
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{
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RETURN_ERR( run_until( end ) );
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next_play -= end;
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if ( next_play < 0 ) // happens when play routine takes too long
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{
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#if !GBS_IGNORE_STARVED_PLAY
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check( false );
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#endif
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next_play = 0;
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}
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apu_.end_frame( end );
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return blargg_ok;
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}
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