mirror of
https://github.com/dborth/vbagx.git
synced 2024-11-22 18:49:18 +01:00
258 lines
6.7 KiB
C++
258 lines
6.7 KiB
C++
#include <stdio.h>
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#include <string.h>
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#include "GBA.h"
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#include "Globals.h"
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#include "Flash.h"
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#include "Sram.h"
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#include "../Util.h"
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#define FLASH_READ_ARRAY 0
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#define FLASH_CMD_1 1
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#define FLASH_CMD_2 2
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#define FLASH_AUTOSELECT 3
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#define FLASH_CMD_3 4
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#define FLASH_CMD_4 5
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#define FLASH_CMD_5 6
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#define FLASH_ERASE_COMPLETE 7
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#define FLASH_PROGRAM 8
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#define FLASH_SETBANK 9
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u8 flashSaveMemory[0x20000];
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int flashState = FLASH_READ_ARRAY;
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int flashReadState = FLASH_READ_ARRAY;
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int flashSize = 0x10000;
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int flashDeviceID = 0x1b;
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int flashManufacturerID = 0x32;
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int flashBank = 0;
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static variable_desc flashSaveData[] = {
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{ &flashState, sizeof(int) },
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{ &flashReadState, sizeof(int) },
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{ &flashSaveMemory[0], 0x10000 },
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{ NULL, 0 }
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};
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static variable_desc flashSaveData2[] = {
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{ &flashState, sizeof(int) },
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{ &flashReadState, sizeof(int) },
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{ &flashSize, sizeof(int) },
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{ &flashSaveMemory[0], 0x20000 },
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{ NULL, 0 }
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};
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static variable_desc flashSaveData3[] = {
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{ &flashState, sizeof(int) },
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{ &flashReadState, sizeof(int) },
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{ &flashSize, sizeof(int) },
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{ &flashBank, sizeof(int) },
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{ &flashSaveMemory[0], 0x20000 },
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{ NULL, 0 }
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};
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void flashInit()
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{
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memset(flashSaveMemory, 0xff, sizeof(flashSaveMemory));
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}
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void flashReset()
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{
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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flashBank = 0;
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}
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void flashSaveGame(gzFile gzFile)
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{
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utilWriteData(gzFile, flashSaveData3);
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}
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void flashReadGame(gzFile gzFile, int version)
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{
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if(version < SAVE_GAME_VERSION_5)
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utilReadData(gzFile, flashSaveData);
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else if(version < SAVE_GAME_VERSION_7) {
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utilReadData(gzFile, flashSaveData2);
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flashBank = 0;
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flashSetSize(flashSize);
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} else {
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utilReadData(gzFile, flashSaveData3);
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}
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}
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void flashReadGameSkip(gzFile gzFile, int version)
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{
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// skip the flash data in a save game
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if(version < SAVE_GAME_VERSION_5)
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utilReadDataSkip(gzFile, flashSaveData);
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else if(version < SAVE_GAME_VERSION_7) {
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utilReadDataSkip(gzFile, flashSaveData2);
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} else {
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utilReadDataSkip(gzFile, flashSaveData3);
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}
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}
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void flashSetSize(int size)
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{
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// log("Setting flash size to %d\n", size);
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if(size == 0x10000) {
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flashDeviceID = 0x1b;
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flashManufacturerID = 0x32;
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} else {
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flashDeviceID = 0x13; //0x09;
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flashManufacturerID = 0x62; //0xc2;
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}
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// Added to make 64k saves compatible with 128k ones
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// (allow wrongfuly set 64k saves to work for Pokemon games)
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if ((size == 0x20000) && (flashSize == 0x10000))
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memcpy((u8 *)(flashSaveMemory+0x10000), (u8 *)(flashSaveMemory), 0x10000);
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flashSize = size;
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}
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u8 flashRead(u32 address)
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{
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// log("Reading %08x from %08x\n", address, reg[15].I);
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// log("Current read state is %d\n", flashReadState);
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address &= 0xFFFF;
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switch(flashReadState) {
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case FLASH_READ_ARRAY:
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return flashSaveMemory[(flashBank << 16) + address];
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case FLASH_AUTOSELECT:
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switch(address & 0xFF) {
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case 0:
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// manufacturer ID
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return flashManufacturerID;
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case 1:
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// device ID
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return flashDeviceID;
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}
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break;
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case FLASH_ERASE_COMPLETE:
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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return 0xFF;
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};
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return 0;
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}
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void flashSaveDecide(u32 address, u8 byte)
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{
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// log("Deciding save type %08x\n", address);
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if(address == 0x0e005555) {
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saveType = 2;
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cpuSaveGameFunc = flashWrite;
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} else {
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saveType = 1;
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cpuSaveGameFunc = sramWrite;
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}
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(*cpuSaveGameFunc)(address, byte);
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}
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void flashDelayedWrite(u32 address, u8 byte)
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{
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saveType = 2;
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cpuSaveGameFunc = flashWrite;
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flashWrite(address, byte);
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}
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void flashWrite(u32 address, u8 byte)
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{
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// log("Writing %02x at %08x\n", byte, address);
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// log("Current state is %d\n", flashState);
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address &= 0xFFFF;
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switch(flashState) {
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case FLASH_READ_ARRAY:
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if(address == 0x5555 && byte == 0xAA)
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flashState = FLASH_CMD_1;
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break;
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case FLASH_CMD_1:
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if(address == 0x2AAA && byte == 0x55)
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flashState = FLASH_CMD_2;
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else
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flashState = FLASH_READ_ARRAY;
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break;
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case FLASH_CMD_2:
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if(address == 0x5555) {
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if(byte == 0x90) {
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flashState = FLASH_AUTOSELECT;
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flashReadState = FLASH_AUTOSELECT;
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} else if(byte == 0x80) {
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flashState = FLASH_CMD_3;
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} else if(byte == 0xF0) {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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} else if(byte == 0xA0) {
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flashState = FLASH_PROGRAM;
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} else if(byte == 0xB0 && flashSize == 0x20000) {
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flashState = FLASH_SETBANK;
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} else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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} else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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break;
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case FLASH_CMD_3:
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if(address == 0x5555 && byte == 0xAA) {
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flashState = FLASH_CMD_4;
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} else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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break;
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case FLASH_CMD_4:
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if(address == 0x2AAA && byte == 0x55) {
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flashState = FLASH_CMD_5;
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} else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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break;
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case FLASH_CMD_5:
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if(byte == 0x30) {
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// SECTOR ERASE
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memset(&flashSaveMemory[(flashBank << 16) + (address & 0xF000)],
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0,
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0x1000);
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systemSaveUpdateCounter = SYSTEM_SAVE_UPDATED;
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flashReadState = FLASH_ERASE_COMPLETE;
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} else if(byte == 0x10) {
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// CHIP ERASE
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memset(flashSaveMemory, 0, flashSize);
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systemSaveUpdateCounter = SYSTEM_SAVE_UPDATED;
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flashReadState = FLASH_ERASE_COMPLETE;
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} else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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break;
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case FLASH_AUTOSELECT:
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if(byte == 0xF0) {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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} else if(address == 0x5555 && byte == 0xAA)
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flashState = FLASH_CMD_1;
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else {
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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}
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break;
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case FLASH_PROGRAM:
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flashSaveMemory[(flashBank<<16)+address] = byte;
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systemSaveUpdateCounter = SYSTEM_SAVE_UPDATED;
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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break;
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case FLASH_SETBANK:
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if(address == 0) {
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flashBank = (byte & 1);
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}
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flashState = FLASH_READ_ARRAY;
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flashReadState = FLASH_READ_ARRAY;
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break;
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}
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}
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