mirror of
https://github.com/sanni/cartreader.git
synced 2024-11-14 08:55:06 +01:00
commit
3ed9b9d730
@ -90,6 +90,7 @@
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PORTC = 0xFF; \
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PORTC = 0xFF; \
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} // [INPUT PULLUP]
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} // [INPUT PULLUP]
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#define ADDR_WRITE DDRC = 0xFF // [OUTPUT]
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#define ADDR_WRITE DDRC = 0xFF // [OUTPUT]
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#define DETECTION_SIZE 64
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boolean multipack = 0; // Multi-Pack Cart
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boolean multipack = 0; // Multi-Pack Cart
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byte bank0;
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byte bank0;
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@ -137,7 +138,6 @@ void setup_PCW() {
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static const char pcwmenuItem1[] PROGMEM = "Read ROM";
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static const char pcwmenuItem1[] PROGMEM = "Read ROM";
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static const char pcwmenuItem2[] PROGMEM = "Read SRAM";
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static const char pcwmenuItem2[] PROGMEM = "Read SRAM";
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static const char pcwmenuItem3[] PROGMEM = "Write SRAM";
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static const char pcwmenuItem3[] PROGMEM = "Write SRAM";
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//static const char pcwmenuItem4[] PROGMEM = "Reset"; (stored in common strings array)
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static const char* const menuOptionsPCW[] PROGMEM = { pcwmenuItem1, pcwmenuItem2, pcwmenuItem3, string_reset2 };
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static const char* const menuOptionsPCW[] PROGMEM = { pcwmenuItem1, pcwmenuItem2, pcwmenuItem3, string_reset2 };
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void pcwMenu() {
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void pcwMenu() {
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@ -457,19 +457,30 @@ void switchBank_PCW(int bank) {
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}
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}
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//******************************************
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//******************************************
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// READ CODE
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// READ ROM FUNCTIONS
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//******************************************
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//******************************************
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void readROM_PCW() {
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void readROM_PCW() {
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// Setup read mode
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read_setup_PCW();
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// Detect rom size
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uint32_t rom_size = detect_rom_size_PCW();
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display_Clear();
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print_Msg(F("READING "));
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print_Msg(rom_size / 1024 / 1024);
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print_Msg("MB SINGLE-PACK");
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println_Msg(F(""));
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display_Update();
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// Create file
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strcpy(fileName, romName);
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strcpy(fileName, romName);
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strcat(fileName, ".pcw");
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strcat(fileName, ".pcw");
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EEPROM_readAnything(0, foldern);
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EEPROM_readAnything(0, foldern);
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sprintf(folder, "PCW/ROM/%d", foldern);
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sprintf(folder, "PCW/ROM/%d", foldern);
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sd.mkdir(folder, true);
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sd.mkdir(folder, true);
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sd.chdir(folder);
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sd.chdir(folder);
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display_Clear();
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print_STR(saving_to_STR, 0);
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print_STR(saving_to_STR, 0);
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print_Msg(folder);
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print_Msg(folder);
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println_Msg(F("/..."));
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println_Msg(F("/..."));
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@ -481,12 +492,18 @@ void readROM_PCW() {
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if (!myFile.open(fileName, O_RDWR | O_CREAT)) {
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if (!myFile.open(fileName, O_RDWR | O_CREAT)) {
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print_FatalError(sd_error_STR);
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print_FatalError(sd_error_STR);
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}
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}
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read_setup_PCW();
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for (unsigned long address = 0; address < 0x400000; address += 512) { // 4MB
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// Init progress bar
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uint32_t progress = 0;
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draw_progressbar(0, rom_size);
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for (unsigned long address = 0; address < rom_size; address += 512) { // 4MB
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for (unsigned int x = 0; x < 512; x++) {
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for (unsigned int x = 0; x < 512; x++) {
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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}
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}
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myFile.write(sdBuffer, 512);
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myFile.write(sdBuffer, 512);
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progress += 512;
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draw_progressbar(progress, rom_size);
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}
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}
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myFile.flush();
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myFile.flush();
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myFile.close();
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myFile.close();
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@ -524,10 +541,16 @@ void readMultiROM_PCW() {
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if (!myFile.open(fileName, O_RDWR | O_CREAT)) {
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if (!myFile.open(fileName, O_RDWR | O_CREAT)) {
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print_FatalError(sd_error_STR);
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print_FatalError(sd_error_STR);
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}
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}
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display_Clear();
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display_Clear();
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println_Msg(F("READING MULTI-PACK"));
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println_Msg(F("READING MULTI-PACK"));
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println_Msg(F(""));
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println_Msg(F(""));
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display_Update();
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display_Update();
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// Init progress bar
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uint32_t progress = 0;
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draw_progressbar(0, 0x400000);
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read_setup_PCW();
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read_setup_PCW();
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// Lower Half
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// Lower Half
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switchBank_PCW(0);
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switchBank_PCW(0);
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@ -536,7 +559,10 @@ void readMultiROM_PCW() {
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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}
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}
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myFile.write(sdBuffer, 512);
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myFile.write(sdBuffer, 512);
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progress += 512;
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draw_progressbar(progress, 0x400000);
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}
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}
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read_setup_PCW();
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read_setup_PCW();
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// Upper Half
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// Upper Half
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switchBank_PCW(1);
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switchBank_PCW(1);
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@ -545,7 +571,10 @@ void readMultiROM_PCW() {
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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sdBuffer[x] = read_rom_byte_PCW(address + x);
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}
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}
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myFile.write(sdBuffer, 512);
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myFile.write(sdBuffer, 512);
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progress += 512;
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draw_progressbar(progress, 0x400000);
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}
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}
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myFile.flush();
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myFile.flush();
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myFile.close();
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myFile.close();
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// Reset Bank
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// Reset Bank
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@ -563,8 +592,51 @@ void readMultiROM_PCW() {
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wait();
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wait();
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}
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}
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uint32_t detect_rom_size_PCW(void) {
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uint32_t rom_size;
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uint8_t read_byte;
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uint8_t current_byte;
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uint8_t detect_1m, detect_2m;
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//Initialize variables
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detect_1m = 0;
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detect_2m = 0;
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//Confirm where mirror address starts from (1MB, 2MB or 4MB)
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for (current_byte = 0; current_byte < DETECTION_SIZE; current_byte++) {
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if ((current_byte != detect_1m) && (current_byte != detect_2m)) {
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//If none matched, size is 4MB
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break;
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}
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read_byte = read_rom_byte_PCW(current_byte);
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if (current_byte == detect_1m) {
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if (read_rom_byte_PCW(0x100000 + current_byte) == read_byte) {
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detect_1m++;
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}
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}
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if (current_byte == detect_2m) {
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if (read_rom_byte_PCW(0x200000 + current_byte) == read_byte) {
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detect_2m++;
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}
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}
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}
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//ROM size detection
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if (detect_1m == DETECTION_SIZE) {
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rom_size = 0x100000;
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} else if (detect_2m == DETECTION_SIZE) {
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rom_size = 0x200000;
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} else {
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rom_size = 0x400000;
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}
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return rom_size;
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}
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//******************************************
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//******************************************
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// SRAM
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// SRAM FUNCTIONS
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//******************************************
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//******************************************
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void readSRAM_PCW() { // readSRAM_1A()
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void readSRAM_PCW() { // readSRAM_1A()
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