/***************************************************************************** ** $Source: /cygdrive/d/Private/_SVNROOT/bluemsx/blueMSX/Src/Memory/romMapperSCCplus.c,v $ ** ** $Revision: 1.7 $ ** ** $Date: 2008-03-30 18:38:44 $ ** ** More info: http://www.bluemsx.com ** ** Copyright (C) 2003-2006 Daniel Vik ** ** This program is free software; you can redistribute it and/or modify ** it under the terms of the GNU General Public License as published by ** the Free Software Foundation; either version 2 of the License, or ** (at your option) any later version. ** ** This program is distributed in the hope that it will be useful, ** but WITHOUT ANY WARRANTY; without even the implied warranty of ** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the ** GNU General Public License for more details. ** ** You should have received a copy of the GNU General Public License ** along with this program; if not, write to the Free Software ** Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. ** ****************************************************************************** */ #include "romMapperSCCplus.h" #include "MediaDb.h" #include "SlotManager.h" #include "DeviceManager.h" #include "SCC.h" #include "Board.h" #include "SaveState.h" #include #include #include typedef struct { int deviceHandle; UInt8 romData[0x22000]; int slot; int sslot; int startPage; UInt8 modeRegister; UInt8 mapperMask; int isMapped[4]; int isRamSegment[4]; int romMapper[4]; SccType sccType; SccMode sccMode; SCC* scc; } RomMapperSCCplus; static void saveState(RomMapperSCCplus* rm) { SaveState* state = saveStateOpenForWrite("mapperSCCplus"); char tag[16]; int i; for (i = 0; i < 4; i++) { sprintf(tag, "romMapper%d", i); saveStateSet(state, tag, rm->romMapper[i]); sprintf(tag, "isRamSegment%d", i); saveStateSet(state, tag, rm->isRamSegment[i]); sprintf(tag, "isMapped%d", i); saveStateSet(state, tag, rm->isMapped[i]); } saveStateSet(state, "modeRegister", rm->modeRegister); saveStateSet(state, "sccMode", rm->sccMode); saveStateSetBuffer(state, "romData", rm->romData, sizeof(rm->romData)); saveStateClose(state); sccSaveState(rm->scc); } static void loadState(RomMapperSCCplus* rm) { SaveState* state = saveStateOpenForRead("mapperSCCplus"); char tag[16]; int bank; int i; for (i = 0; i < 4; i++) { sprintf(tag, "romMapper%d", i); rm->romMapper[i] = saveStateGet(state, tag, 0); sprintf(tag, "isRamSegment%d", i); rm->isRamSegment[i] = saveStateGet(state, tag, 0); sprintf(tag, "isMapped%d", i); rm->isMapped[i] = saveStateGet(state, tag, 0); } rm->modeRegister = (UInt8)saveStateGet(state, "modeRegister", 0); rm->sccMode = saveStateGet(state, "sccMode", 0); saveStateGetBuffer(state, "romData", rm->romData, sizeof(rm->romData)); saveStateClose(state); sccLoadState(rm->scc); for (bank = 0; bank < 4; bank++) { if (rm->isMapped[bank]) { slotMapPage(rm->slot, rm->sslot, rm->startPage + bank, rm->romData + 0x2000 * rm->romMapper[bank], 1, 0); } else { slotMapPage(rm->slot, rm->sslot, rm->startPage + bank, rm->romData + 0x20000, 1, 0); } } if (rm->sccMode == SCC_PLUS) { slotMapPage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 0, 0); } else if ((rm->sccMode = SCC_COMPATIBLE)) { slotMapPage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 0, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 1, 0); } else { slotMapPage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 1, 0); } } static void destroy(RomMapperSCCplus* rm) { slotUnregister(rm->slot, rm->sslot, rm->startPage); deviceManagerUnregister(rm->deviceHandle); sccDestroy(rm->scc); free(rm); } static void reset(RomMapperSCCplus* rm) { sccReset(rm->scc); } static UInt8 read(RomMapperSCCplus* rm, UInt16 address) { int bank; address += 0x4000; if (rm->sccMode == SCC_COMPATIBLE && address >= 0x9800 && address < 0xa000) { return sccRead(rm->scc, (UInt8)(address & 0xff)); } if (rm->sccMode == SCC_PLUS && address >= 0xb800 && address < 0xc000) { return sccRead(rm->scc, (UInt8)(address & 0xff)); } bank = (address - 0x4000) >> 13; if (rm->isMapped[bank]) { return rm->romData[0x2000 * (rm->romMapper[bank] & rm->mapperMask) + (address & 0x1fff)]; } return 0xff; } static UInt8 peek(RomMapperSCCplus* rm, UInt16 address) { int bank; address += 0x4000; if (rm->sccMode == SCC_COMPATIBLE && address >= 0x9800 && address < 0xa000) { return sccPeek(rm->scc, (UInt8)(address & 0xff)); } if (rm->sccMode == SCC_PLUS && address >= 0xb800 && address < 0xc000) { return sccPeek(rm->scc, (UInt8)(address & 0xff)); } bank = (address - 0x4000) >> 13; if (rm->isMapped[bank]) { return rm->romData[0x2000 * (rm->romMapper[bank] & rm->mapperMask) + (address & 0x1fff)]; } return 0xff; } static void updateEnable(RomMapperSCCplus* rm) { if ((rm->modeRegister & 0x20) && (rm->romMapper[3] & 0x80)) { slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 1, 0); slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 0, 0); sccSetMode(rm->scc, SCC_PLUS); rm->sccMode = SCC_PLUS; } else if (!(rm->modeRegister & 0x20) && (rm->romMapper[2] & 0x3f) == 0x3f) { slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 0, 0); slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 1, 0); sccSetMode(rm->scc, SCC_COMPATIBLE); rm->sccMode = SCC_COMPATIBLE; } else { slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 2, NULL, 1, 0); slotUpdatePage(rm->slot, rm->sslot, rm->startPage + 3, NULL, 1, 0); rm->sccMode = SCC_NONE; } } static void write(RomMapperSCCplus* rm, UInt16 address, UInt8 value) { int bank; address += 0x4000; if (address < 0x4000 && address >= 0xc000) { return; } if ((address | 1) == 0xbfff) { rm->modeRegister = value; rm->isRamSegment[0] = (value & 0x10) | (value & 0x01); rm->isRamSegment[1] = (value & 0x10) | (value & 0x02); rm->isRamSegment[2] = (value & 0x10) | ((value & 0x24) == 0x24); rm->isRamSegment[3] = (value & 0x10); updateEnable(rm); return; } bank = (address - 0x4000) >> 13; if (rm->isRamSegment[bank]) { if (rm->isMapped[bank]) { rm->romData[0x2000 * (rm->romMapper[bank] & rm->mapperMask) + (address & 0x1fff)] = value; } return; } if ((address & 0x1800) == 0x1000) { rm->romMapper[bank] = value; value &= rm->mapperMask; rm->isMapped[bank] = (value >= 8 && rm->sccType != SCC_SNATCHER) || (value < 8 && rm->sccType != SCC_SDSNATCHER); if (rm->isMapped[bank]) { slotMapPage(rm->slot, rm->sslot, rm->startPage + bank, rm->romData + 0x2000 * value, 1, 0); } else { slotMapPage(rm->slot, rm->sslot, rm->startPage + bank, rm->romData + 0x20000, 1, 0); } updateEnable(rm); return; } if (rm->sccMode == SCC_COMPATIBLE && address >= 0x9800 && address < 0xa000) { sccWrite(rm->scc, address & 0xff, value); } else if (rm->sccMode == SCC_PLUS && address >= 0xb800 && address < 0xc000) { sccWrite(rm->scc, address & 0xff, value); } } int romMapperSCCplusCreate(const char* filename, UInt8* romData, int size, int slot, int sslot, int startPage, SccType sccType) { DeviceCallbacks callbacks = { destroy, reset, saveState, loadState }; RomMapperSCCplus* rm; rm = malloc(sizeof(RomMapperSCCplus)); rm->deviceHandle = deviceManagerRegister(ROM_SCCEXTENDED, &callbacks, rm); slotRegister(slot, sslot, startPage, 4, read, peek, write, destroy, rm); memset(rm->romData, 0xff, 0x22000); if (romData) { if (size > 0x20000) { size = 0x20000; } memcpy(rm->romData, romData, size); } rm->slot = slot; rm->sslot = sslot; rm->startPage = startPage; rm->modeRegister = sccType == SCCP_EXTENDED ? 0x20 : 0; rm->isRamSegment[0] = 0; rm->isRamSegment[1] = 0; rm->isRamSegment[2] = 0; rm->isRamSegment[3] = 0; rm->isMapped[0] = sccType != SCC_SDSNATCHER; rm->isMapped[1] = sccType != SCC_SDSNATCHER; rm->isMapped[2] = sccType != SCC_SDSNATCHER; rm->isMapped[3] = sccType != SCC_SDSNATCHER; rm->mapperMask = sccType == SCC_MIRRORED ? 0x07 : 0x0f; rm->scc = sccCreate(boardGetMixer()); rm->sccType = sccType; rm->sccMode = SCC_NONE; rm->romMapper[0] = 0; rm->romMapper[1] = 1; rm->romMapper[2] = 2; rm->romMapper[3] = 3; if (sccType != SCC_SDSNATCHER) { slotMapPage(rm->slot, rm->sslot, rm->startPage, rm->romData + 0x0000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 1, rm->romData + 0x2000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 2, rm->romData + 0x4000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 3, rm->romData + 0x6000, 1, 0); } else { slotMapPage(rm->slot, rm->sslot, rm->startPage, rm->romData + 0x20000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 1, rm->romData + 0x20000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 2, rm->romData + 0x20000, 1, 0); slotMapPage(rm->slot, rm->sslot, rm->startPage + 3, rm->romData + 0x20000, 1, 0); } return 1; }