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cpu.cpp
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cpu.cpp
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/*
* Snes9x - Portable Super Nintendo Entertainment System (TM) emulator.
*
* (c) Copyright 1996 - 2001 Gary Henderson ([email protected]) and
* Jerremy Koot ([email protected])
*
* Super FX C emulator code
* (c) Copyright 1997 - 1999 Ivar ([email protected]) and
* Gary Henderson.
* Super FX assembler emulator code (c) Copyright 1998 zsKnight and _Demo_.
*
* DSP1 emulator code (c) Copyright 1998 Ivar, _Demo_ and Gary Henderson.
* C4 asm and some C emulation code (c) Copyright 2000 zsKnight and _Demo_.
* C4 C code (c) Copyright 2001 Gary Henderson ([email protected]).
*
* DOS port code contains the works of other authors. See headers in
* individual files.
*
* Snes9x homepage: http://www.snes9x.com
*
* Permission to use, copy, modify and distribute Snes9x in both binary and
* source form, for non-commercial purposes, is hereby granted without fee,
* providing that this license information and copyright notice appear with
* all copies and any derived work.
*
* This software is provided 'as-is', without any express or implied
* warranty. In no event shall the authors be held liable for any damages
* arising from the use of this software.
*
* Snes9x is freeware for PERSONAL USE only. Commercial users should
* seek permission of the copyright holders first. Commercial use includes
* charging money for Snes9x or software derived from Snes9x.
*
* The copyright holders request that bug fixes and improvements to the code
* should be forwarded to them so everyone can benefit from the modifications
* in future versions.
*
* Super NES and Super Nintendo Entertainment System are trademarks of
* Nintendo Co., Limited and its subsidiary companies.
*/
#include "snes9x.h"
#include "memmap.h"
#include "ppu.h"
#include "dsp1.h"
#include "cpuexec.h"
#include "debug.h"
#include "apu.h"
#include "dma.h"
#ifdef USE_SA1
#include "sa1.h"
#endif
//#include "cheats.h"
#include "srtc.h"
#include "sdd1.h"
//#include "spc7110.h"
#include "soundux.h"
#ifdef SUPER_FX
#include "fxemu.h"
extern struct FxInit_s SuperFX;
static void S9xResetSuperFX ()
{
SuperFX.vFlags = 0; //FX_FLAG_ROM_BUFFER;// | FX_FLAG_ADDRESS_CHECKING;
FxReset (&SuperFX);
}
#endif
void S9xResetCPU ()
{
Registers.PB = 0;
Registers.PC = S9xGetWord (0xFFFC);
Registers.D.W = 0;
Registers.DB = 0;
Registers.SH = 1;
Registers.SL = 0xFF;
Registers.XH = 0;
Registers.YH = 0;
Registers.P.W = 0;
ICPU.ShiftedPB = 0;
ICPU.ShiftedDB = 0;
SetFlags (MemoryFlag | IndexFlag | IRQ | Emulation);
ClearFlags (Decimal);
CPU.Flags = CPU.Flags & (DEBUG_MODE_FLAG | TRACE_FLAG);
CPU.BranchSkip = FALSE;
CPU.NMIActive = FALSE;
CPU.IRQActive = FALSE;
CPU.WaitingForInterrupt = FALSE;
CPU.InDMA = FALSE;
CPU.WhichEvent = HBLANK_START_EVENT;
CPU.PC = NULL;
CPU.PCBase = NULL;
CPU.PCAtOpcodeStart = NULL;
CPU.WaitAddress = NULL;
CPU.WaitCounter = 0;
CPU.Cycles = 0;
CPU.NextEvent = Settings.HBlankStart;
CPU.V_Counter = 0;
CPU.MemSpeed = SLOW_ONE_CYCLE;
CPU.MemSpeedx2 = SLOW_ONE_CYCLE * 2;
CPU.FastROMSpeed = SLOW_ONE_CYCLE;
CPU.AutoSaveTimer = 0;
CPU.SRAMModified = FALSE;
// CPU.NMITriggerPoint = 4; // Set when ROM image loaded
CPU.BRKTriggered = FALSE;
//CPU.TriedInterleavedMode2 = FALSE; // Reset when ROM image loaded
CPU.NMICycleCount = 0;
CPU.IRQCycleCount = 0;
S9xSetPCBase (Registers.PC);
#if !CONF_BUILD_ASM_CPU
#ifndef VAR_CYCLES
ICPU.Speed = S9xE1M1X1;
#endif
ICPU.S9xOpcodes = S9xOpcodesM1X1;
S9xUnpackStatus();
#endif
ICPU.CPUExecuting = TRUE;
}
void S9xReset (void)
{
#ifdef SUPER_FX
if (Settings.SuperFX)
S9xResetSuperFX ();
#endif
ZeroMemory (Memory.FillRAM, 0x8000);
memset (Memory.VRAM, 0x00, 0x10000);
memset (Memory.RAM, 0x55, 0x20000);
/* if(Settings.SPC7110)
S9xSpc7110Reset();*/
S9xResetCPU ();
S9xResetPPU ();
S9xResetSRTC ();
if (Settings.SDD1)
S9xResetSDD1 ();
S9xResetDMA ();
S9xResetAPU ();
S9xResetDSP1 ();
#ifdef USE_SA1
S9xSA1Init ();
#endif
if (Settings.C4)
S9xInitC4 ();
S9xResetSound(1);
Settings.Paused = FALSE;
//Init CPU Map & co
CPU.Memory_Map=(uint8*)&(Memory.Map);
CPU.Memory_WriteMap=(uint8*)&(Memory.WriteMap);
CPU.Memory_MemorySpeed=(uint8*)&(Memory.MemorySpeed);
CPU.Memory_BlockIsRAM=(uint8*)&(Memory.BlockIsRAM);
CPU.Memory_SRAM=Memory.SRAM;
CPU.Memory_BWRAM=Memory.BWRAM;
// CPU.Memory_SRAMMask=Memory.SRAMMask;
}