569 lines
15 KiB
C++
569 lines
15 KiB
C++
/***********************************************************************************
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Snes9x - Portable Super Nintendo Entertainment System (TM) emulator.
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(c) Copyright 1996 - 2002 Gary Henderson (gary.henderson@ntlworld.com),
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Jerremy Koot (jkoot@snes9x.com)
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(c) Copyright 2002 - 2004 Matthew Kendora
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(c) Copyright 2002 - 2005 Peter Bortas (peter@bortas.org)
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(c) Copyright 2004 - 2005 Joel Yliluoma (http://iki.fi/bisqwit/)
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(c) Copyright 2001 - 2006 John Weidman (jweidman@slip.net)
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(c) Copyright 2002 - 2006 funkyass (funkyass@spam.shaw.ca),
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Kris Bleakley (codeviolation@hotmail.com)
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(c) Copyright 2002 - 2010 Brad Jorsch (anomie@users.sourceforge.net),
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Nach (n-a-c-h@users.sourceforge.net),
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(c) Copyright 2002 - 2011 zones (kasumitokoduck@yahoo.com)
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(c) Copyright 2006 - 2007 nitsuja
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(c) Copyright 2009 - 2017 BearOso,
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OV2
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(c) Copyright 2017 qwertymodo
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(c) Copyright 2011 - 2017 Hans-Kristian Arntzen,
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Daniel De Matteis
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(Under no circumstances will commercial rights be given)
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BS-X C emulator code
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(c) Copyright 2005 - 2006 Dreamer Nom,
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zones
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C4 x86 assembler and some C emulation code
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(c) Copyright 2000 - 2003 _Demo_ (_demo_@zsnes.com),
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Nach,
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zsKnight (zsknight@zsnes.com)
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C4 C++ code
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(c) Copyright 2003 - 2006 Brad Jorsch,
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Nach
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DSP-1 emulator code
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(c) Copyright 1998 - 2006 _Demo_,
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Andreas Naive (andreasnaive@gmail.com),
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Gary Henderson,
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Ivar (ivar@snes9x.com),
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John Weidman,
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Kris Bleakley,
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Matthew Kendora,
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Nach,
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neviksti (neviksti@hotmail.com)
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DSP-2 emulator code
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(c) Copyright 2003 John Weidman,
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Kris Bleakley,
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Lord Nightmare (lord_nightmare@users.sourceforge.net),
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Matthew Kendora,
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neviksti
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DSP-3 emulator code
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(c) Copyright 2003 - 2006 John Weidman,
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Kris Bleakley,
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Lancer,
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z80 gaiden
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DSP-4 emulator code
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(c) Copyright 2004 - 2006 Dreamer Nom,
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John Weidman,
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Kris Bleakley,
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Nach,
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z80 gaiden
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OBC1 emulator code
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(c) Copyright 2001 - 2004 zsKnight,
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pagefault (pagefault@zsnes.com),
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Kris Bleakley
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Ported from x86 assembler to C by sanmaiwashi
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SPC7110 and RTC C++ emulator code used in 1.39-1.51
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(c) Copyright 2002 Matthew Kendora with research by
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zsKnight,
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John Weidman,
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Dark Force
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SPC7110 and RTC C++ emulator code used in 1.52+
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(c) Copyright 2009 byuu,
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neviksti
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S-DD1 C emulator code
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(c) Copyright 2003 Brad Jorsch with research by
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Andreas Naive,
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John Weidman
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S-RTC C emulator code
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(c) Copyright 2001 - 2006 byuu,
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John Weidman
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ST010 C++ emulator code
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(c) Copyright 2003 Feather,
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John Weidman,
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Kris Bleakley,
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Matthew Kendora
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Super FX x86 assembler emulator code
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(c) Copyright 1998 - 2003 _Demo_,
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pagefault,
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zsKnight
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Super FX C emulator code
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(c) Copyright 1997 - 1999 Ivar,
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Gary Henderson,
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John Weidman
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Sound emulator code used in 1.5-1.51
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(c) Copyright 1998 - 2003 Brad Martin
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(c) Copyright 1998 - 2006 Charles Bilyue'
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Sound emulator code used in 1.52+
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(c) Copyright 2004 - 2007 Shay Green (gblargg@gmail.com)
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S-SMP emulator code used in 1.54+
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(c) Copyright 2016 byuu
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SH assembler code partly based on x86 assembler code
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(c) Copyright 2002 - 2004 Marcus Comstedt (marcus@mc.pp.se)
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2xSaI filter
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(c) Copyright 1999 - 2001 Derek Liauw Kie Fa
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HQ2x, HQ3x, HQ4x filters
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(c) Copyright 2003 Maxim Stepin (maxim@hiend3d.com)
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NTSC filter
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(c) Copyright 2006 - 2007 Shay Green
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GTK+ GUI code
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(c) Copyright 2004 - 2017 BearOso
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Win32 GUI code
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(c) Copyright 2003 - 2006 blip,
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funkyass,
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Matthew Kendora,
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Nach,
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nitsuja
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(c) Copyright 2009 - 2017 OV2
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Mac OS GUI code
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(c) Copyright 1998 - 2001 John Stiles
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(c) Copyright 2001 - 2011 zones
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Libretro port
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(c) Copyright 2011 - 2017 Hans-Kristian Arntzen,
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Daniel De Matteis
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(Under no circumstances will commercial rights be given)
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Specific ports contains the works of other authors. See headers in
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individual files.
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Snes9x homepage: http://www.snes9x.com/
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Permission to use, copy, modify and/or distribute Snes9x in both binary
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and source form, for non-commercial purposes, is hereby granted without
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fee, providing that this license information and copyright notice appear
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with all copies and any derived work.
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This software is provided 'as-is', without any express or implied
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warranty. In no event shall the authors be held liable for any damages
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arising from the use of this software or it's derivatives.
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Snes9x is freeware for PERSONAL USE only. Commercial users should
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seek permission of the copyright holders first. Commercial use includes,
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but is not limited to, charging money for Snes9x or software derived from
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Snes9x, including Snes9x or derivatives in commercial game bundles, and/or
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using Snes9x as a promotion for your commercial product.
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The copyright holders request that bug fixes and improvements to the code
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should be forwarded to them so everyone can benefit from the modifications
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in future versions.
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Super NES and Super Nintendo Entertainment System are trademarks of
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Nintendo Co., Limited and its subsidiary companies.
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***********************************************************************************/
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#include "snes9x.h"
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#include "memmap.h"
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#include "cheats.h"
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static inline uint8 S9xGetByteFree (uint32 Address)
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{
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int block = (Address & 0xffffff) >> MEMMAP_SHIFT;
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uint8 *GetAddress = Memory.Map[block];
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uint8 byte;
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if (GetAddress >= (uint8 *) CMemory::MAP_LAST)
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{
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byte = *(GetAddress + (Address & 0xffff));
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return (byte);
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}
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switch ((pint) GetAddress)
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{
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case CMemory::MAP_CPU:
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byte = S9xGetCPU(Address & 0xffff);
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return (byte);
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case CMemory::MAP_PPU:
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if (CPU.InDMAorHDMA && (Address & 0xff00) == 0x2100)
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return (OpenBus);
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byte = S9xGetPPU(Address & 0xffff);
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return (byte);
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case CMemory::MAP_LOROM_SRAM:
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case CMemory::MAP_SA1RAM:
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// Address & 0x7fff : offset into bank
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// Address & 0xff0000 : bank
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// bank >> 1 | offset : SRAM address, unbound
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// unbound & SRAMMask : SRAM offset
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byte = *(Memory.SRAM + ((((Address & 0xff0000) >> 1) | (Address & 0x7fff)) & Memory.SRAMMask));
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return (byte);
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case CMemory::MAP_LOROM_SRAM_B:
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byte = *(Multi.sramB + ((((Address & 0xff0000) >> 1) | (Address & 0x7fff)) & Multi.sramMaskB));
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return (byte);
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case CMemory::MAP_HIROM_SRAM:
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case CMemory::MAP_RONLY_SRAM:
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byte = *(Memory.SRAM + (((Address & 0x7fff) - 0x6000 + ((Address & 0xf0000) >> 3)) & Memory.SRAMMask));
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return (byte);
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case CMemory::MAP_BWRAM:
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byte = *(Memory.BWRAM + ((Address & 0x7fff) - 0x6000));
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return (byte);
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case CMemory::MAP_DSP:
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byte = S9xGetDSP(Address & 0xffff);
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return (byte);
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case CMemory::MAP_SPC7110_ROM:
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byte = S9xGetSPC7110Byte(Address);
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return (byte);
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case CMemory::MAP_SPC7110_DRAM:
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byte = S9xGetSPC7110(0x4800);
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return (byte);
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case CMemory::MAP_C4:
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byte = S9xGetC4(Address & 0xffff);
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return (byte);
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case CMemory::MAP_OBC_RAM:
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byte = S9xGetOBC1(Address & 0xffff);
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return (byte);
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case CMemory::MAP_SETA_DSP:
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byte = S9xGetSetaDSP(Address);
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return (byte);
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case CMemory::MAP_SETA_RISC:
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byte = S9xGetST018(Address);
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return (byte);
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case CMemory::MAP_BSX:
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byte = S9xGetBSX(Address);
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return (byte);
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case CMemory::MAP_NONE:
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default:
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byte = OpenBus;
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return (byte);
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}
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}
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static inline void S9xSetByteFree (uint8 Byte, uint32 Address)
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{
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int block = (Address & 0xffffff) >> MEMMAP_SHIFT;
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uint8 *SetAddress = Memory.WriteMap[block];
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if (SetAddress >= (uint8 *) CMemory::MAP_LAST)
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{
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*(SetAddress + (Address & 0xffff)) = Byte;
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return;
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}
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switch ((pint) SetAddress)
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{
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case CMemory::MAP_CPU:
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S9xSetCPU(Byte, Address & 0xffff);
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return;
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case CMemory::MAP_PPU:
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if (CPU.InDMAorHDMA && (Address & 0xff00) == 0x2100)
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return;
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S9xSetPPU(Byte, Address & 0xffff);
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return;
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case CMemory::MAP_LOROM_SRAM:
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if (Memory.SRAMMask)
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{
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*(Memory.SRAM + ((((Address & 0xff0000) >> 1) | (Address & 0x7fff)) & Memory.SRAMMask)) = Byte;
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CPU.SRAMModified = TRUE;
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}
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return;
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case CMemory::MAP_LOROM_SRAM_B:
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if (Multi.sramMaskB)
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{
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*(Multi.sramB + ((((Address & 0xff0000) >> 1) | (Address & 0x7fff)) & Multi.sramMaskB)) = Byte;
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CPU.SRAMModified = TRUE;
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}
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return;
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case CMemory::MAP_HIROM_SRAM:
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if (Memory.SRAMMask)
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{
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*(Memory.SRAM + (((Address & 0x7fff) - 0x6000 + ((Address & 0xf0000) >> 3)) & Memory.SRAMMask)) = Byte;
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CPU.SRAMModified = TRUE;
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}
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return;
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case CMemory::MAP_BWRAM:
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*(Memory.BWRAM + ((Address & 0x7fff) - 0x6000)) = Byte;
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CPU.SRAMModified = TRUE;
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return;
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case CMemory::MAP_SA1RAM:
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*(Memory.SRAM + (Address & 0xffff)) = Byte;
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return;
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case CMemory::MAP_DSP:
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S9xSetDSP(Byte, Address & 0xffff);
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return;
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case CMemory::MAP_C4:
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S9xSetC4(Byte, Address & 0xffff);
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return;
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case CMemory::MAP_OBC_RAM:
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S9xSetOBC1(Byte, Address & 0xffff);
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return;
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case CMemory::MAP_SETA_DSP:
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S9xSetSetaDSP(Byte, Address);
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return;
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case CMemory::MAP_SETA_RISC:
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S9xSetST018(Byte, Address);
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return;
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case CMemory::MAP_BSX:
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S9xSetBSX(Byte, Address);
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return;
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case CMemory::MAP_NONE:
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default:
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return;
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}
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}
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void S9xInitWatchedAddress (void)
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{
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for (unsigned int i = 0; i < sizeof(watches) / sizeof(watches[0]); i++)
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watches[i].on = false;
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}
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void S9xInitCheatData (void)
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{
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Cheat.RAM = Memory.RAM;
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Cheat.SRAM = Memory.SRAM;
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Cheat.FillRAM = Memory.FillRAM;
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}
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void S9xAddCheat (bool8 enable, bool8 save_current_value, uint32 address, uint8 byte)
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{
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if (Cheat.num_cheats < sizeof(Cheat.c) / sizeof(Cheat.c[0]))
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{
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Cheat.c[Cheat.num_cheats].address = address;
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Cheat.c[Cheat.num_cheats].byte = byte;
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Cheat.c[Cheat.num_cheats].enabled = enable;
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if (save_current_value)
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{
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Cheat.c[Cheat.num_cheats].saved_byte = S9xGetByteFree(address);
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Cheat.c[Cheat.num_cheats].saved = TRUE;
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}
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Cheat.num_cheats++;
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}
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}
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void S9xDeleteCheat (uint32 which1)
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{
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if (which1 < Cheat.num_cheats)
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{
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if (Cheat.c[which1].enabled)
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S9xRemoveCheat(which1);
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memmove(&Cheat.c[which1], &Cheat.c[which1 + 1], sizeof(Cheat.c[0]) * (Cheat.num_cheats - which1 - 1));
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Cheat.num_cheats--;
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}
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}
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void S9xDeleteCheats (void)
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{
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S9xRemoveCheats();
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Cheat.num_cheats = 0;
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}
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void S9xRemoveCheat (uint32 which1)
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{
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if (Cheat.c[which1].saved)
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{
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uint32 address = Cheat.c[which1].address;
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int block = (address & 0xffffff) >> MEMMAP_SHIFT;
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uint8 *ptr = Memory.Map[block];
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if (ptr >= (uint8 *) CMemory::MAP_LAST)
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*(ptr + (address & 0xffff)) = Cheat.c[which1].saved_byte;
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else
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S9xSetByteFree(Cheat.c[which1].saved_byte, address);
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}
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}
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void S9xRemoveCheats (void)
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{
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for (uint32 i = 0; i < Cheat.num_cheats; i++)
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if (Cheat.c[i].enabled)
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S9xRemoveCheat(i);
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}
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void S9xEnableCheat (uint32 which1)
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{
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if (which1 < Cheat.num_cheats && !Cheat.c[which1].enabled)
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{
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Cheat.c[which1].enabled = TRUE;
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S9xApplyCheat(which1);
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}
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}
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void S9xDisableCheat (uint32 which1)
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{
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if (which1 < Cheat.num_cheats && Cheat.c[which1].enabled)
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{
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S9xRemoveCheat(which1);
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Cheat.c[which1].enabled = FALSE;
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}
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}
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void S9xApplyCheat (uint32 which1)
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{
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uint32 address = Cheat.c[which1].address;
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if (!Cheat.c[which1].saved)
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{
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Cheat.c[which1].saved_byte = S9xGetByteFree(address);
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Cheat.c[which1].saved = TRUE;
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}
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int block = (address & 0xffffff) >> MEMMAP_SHIFT;
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uint8 *ptr = Memory.Map[block];
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if (ptr >= (uint8 *) CMemory::MAP_LAST)
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*(ptr + (address & 0xffff)) = Cheat.c[which1].byte;
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else
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S9xSetByteFree(Cheat.c[which1].byte, address);
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}
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void S9xApplyCheats (void)
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{
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if (Settings.ApplyCheats)
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{
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for (uint32 i = 0; i < Cheat.num_cheats; i++)
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if (Cheat.c[i].enabled)
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S9xApplyCheat(i);
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}
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}
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bool8 S9xLoadCheatFile (const char *filename)
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{
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FILE *fs;
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uint8 data[28];
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Cheat.num_cheats = 0;
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fs = fopen(filename, "rb");
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if (!fs)
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return (FALSE);
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while (fread((void *) data, 1, 28, fs) == 28)
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{
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Cheat.c[Cheat.num_cheats].enabled = (data[0] & 4) == 0;
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Cheat.c[Cheat.num_cheats].byte = data[1];
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Cheat.c[Cheat.num_cheats].address = data[2] | (data[3] << 8) | (data[4] << 16);
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Cheat.c[Cheat.num_cheats].saved_byte = data[5];
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Cheat.c[Cheat.num_cheats].saved = (data[0] & 8) != 0;
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memmove(Cheat.c[Cheat.num_cheats].name, &data[8], 20);
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Cheat.c[Cheat.num_cheats++].name[20] = 0;
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}
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fclose(fs);
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return (TRUE);
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}
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bool8 S9xSaveCheatFile (const char *filename)
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{
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if (Cheat.num_cheats == 0)
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{
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remove(filename);
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return (TRUE);
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}
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FILE *fs;
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uint8 data[28];
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fs = fopen(filename, "wb");
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if (!fs)
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return (FALSE);
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for (uint32 i = 0; i < Cheat.num_cheats; i++)
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{
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memset(data, 0, 28);
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if (i == 0)
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{
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data[6] = 254;
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data[7] = 252;
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}
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if (!Cheat.c[i].enabled)
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data[0] |= 4;
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|
|
if (Cheat.c[i].saved)
|
|
data[0] |= 8;
|
|
|
|
data[1] = Cheat.c[i].byte;
|
|
data[2] = (uint8) (Cheat.c[i].address >> 0);
|
|
data[3] = (uint8) (Cheat.c[i].address >> 8);
|
|
data[4] = (uint8) (Cheat.c[i].address >> 16);
|
|
data[5] = Cheat.c[i].saved_byte;
|
|
|
|
memmove(&data[8], Cheat.c[i].name, 19);
|
|
|
|
if (fwrite(data, 28, 1, fs) != 1)
|
|
{
|
|
fclose(fs);
|
|
return (FALSE);
|
|
}
|
|
}
|
|
|
|
return (fclose(fs) == 0);
|
|
}
|