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spc700.h
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spc700.h
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/*
* Snes9x - Portable Super Nintendo Entertainment System (TM) emulator.
*
* (c) Copyright 1996 - 2001 Gary Henderson (gary.henderson@ntlworld.com) and
* Jerremy Koot (jkoot@snes9x.com)
*
* Super FX C emulator code
* (c) Copyright 1997 - 1999 Ivar (ivar@snes9x.com) 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 (gary.henderson@ntlworld.com).
*
* 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.
*/
#ifndef _SPC700_H_
#define _SPC700_H_
#ifdef SPCTOOL
#define NO_CHANNEL_STRUCT
//#include "spctool/dsp.h"
//#include "spctool/spc700.h"
//#include "spctool/soundmod.h"
#endif
#define Carry 1
#define Zero 2
#define Interrupt 4
#define HalfCarry 8
#define BreakFlag 16
#define DirectPageFlag 32
#define Overflow 64
#define Negative 128
#define APUClearCarry() (iapu->_Carry = 0)
#define APUSetCarry() (iapu->_Carry = 1)
#define APUSetInterrupt() (areg->P |= Interrupt)
#define APUClearInterrupt() (areg->P &= ~Interrupt)
#define APUSetHalfCarry() (areg->P |= HalfCarry)
#define APUClearHalfCarry() (areg->P &= ~HalfCarry)
#define APUSetBreak() (areg->P |= BreakFlag)
#define APUClearBreak() (areg->P &= ~BreakFlag)
#define APUSetDirectPage() (areg->P |= DirectPageFlag)
#define APUClearDirectPage() (areg->P &= ~DirectPageFlag)
#define APUSetOverflow() (iapu->_Overflow = 1)
#define APUClearOverflow() (iapu->_Overflow = 0)
#define APUCheckZero() (iapu->_Zero == 0)
#define APUCheckCarry() (iapu->_Carry)
#define APUCheckInterrupt() (areg->P & Interrupt)
#define APUCheckHalfCarry() (areg->P & HalfCarry)
#define APUCheckBreak() (areg->P & BreakFlag)
#define APUCheckDirectPage() (APURegisters.P & DirectPageFlag)
#define APUCHECKDIRECTPAGE_OP() (APURegisters.P & DirectPageFlag)
#define APUCheckOverflow() (iapu->_Overflow)
#define APUCheckNegative() (iapu->_Zero & 0x80)
#define APUClearFlags(f) (areg->P &= ~(f))
#define APUSetFlags(f) (areg->P |= (f))
#define APUCheckFlag(f) (areg->P & (f))
typedef union
{
#ifdef LSB_FIRST
struct { uint8 A, Y; } B;
#else
struct { uint8 Y, A; } B;
#endif
uint16 W;
} YAndA;
struct SAPURegisters{
uint16_32 PC;
uint8_32 P;
YAndA YA;
uint8_32 X;
uint8_32 S;
};
/*
struct SAPURegisters{
uint8 P;
YAndA YA;
uint8 X;
uint8 S;
uint16 PC;
};
*/
EXTERN_C struct SAPURegisters APURegisters;
// Needed by ILLUSION OF GAIA
//#define ONE_APU_CYCLE 14
#define ONE_APU_CYCLE 21
// Needed by all games written by the software company called Human
//#define ONE_APU_CYCLE_HUMAN 17
#define ONE_APU_CYCLE_HUMAN 21
// 1.953us := 1.024065.54MHz
#ifdef SPCTOOL
EXTERN_C int32 ESPC (int32);
#define APU_EXECUTE() \
{ \
int32 l = (CPU.Cycles - APU.Cycles) / 14; \
if (l > 0) \
{ \
l -= _EmuSPC(l); \
APU.Cycles += l * 14; \
} \
}
#else
#ifdef DEBUGGER
#define APU_EXECUTE1() \
{ \
if (APU.Flags & TRACE_FLAG) \
S9xTraceAPU ();\
APU.Cycles += S9xAPUCycles [*IAPU.PC]; \
(*S9xApuOpcodes[*IAPU.PC]) (&APURegisters, &IAPU, &APU); \
}
#else
#define APU_EXECUTE1() \
{ \
apu->Cycles += S9xAPUCycles [*iapu->PC]; \
(*S9xApuOpcodes[*iapu->PC]) (&APURegisters, iapu, apu); \
}
#endif
#define APU_EXECUTE() \
if (iapu->APUExecuting) \
{\
while (apu->Cycles <= cpu->Cycles) \
APU_EXECUTE1(); \
}
#endif
#endif