mirror of
https://github.com/sanni/cartreader.git
synced 2024-11-30 00:14:15 +01:00
Merge pull request #920 from smesgr9000/master
support for F4SC, F6SC & F8SC
This commit is contained in:
commit
baa7dce0c1
@ -21,6 +21,9 @@
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// Cart Configurations
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// Format = {mapper,romsize}
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static const byte PROGMEM a2600mapsize[] = {
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0x04, 5, // Atari 32K with RAM (F4SC)
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0x06, 4, // Atari 16K with RAM (F6SC)
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0x08, 2, // Atari 8K with RAM (F8SC)
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0x20, 0, // 2K
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0x3F, 2, // Tigervision 8K
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0x40, 1, // 4K [DEFAULT]
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@ -166,14 +169,17 @@ uint8_t readData_2600(uint16_t addr) // Add Input Pullup
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void readSegment_2600(uint16_t startaddr, uint16_t endaddr) {
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for (uint16_t addr = startaddr; addr < endaddr; addr += 512) {
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for (int w = 0; w < 512; w++) {
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uint8_t temp = readData_2600(addr + w);
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sdBuffer[w] = temp;
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}
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myFile.write(sdBuffer, 512);
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readDataArray_2600(addr, 512);
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}
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}
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void readDataArray_2600(uint16_t addr, uint16_t size) {
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for (int w = 0; w < size; w++) {
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sdBuffer[w] = readData_2600(addr + w);
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}
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myFile.write(sdBuffer, size);
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}
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void readSegmentF8_2600(uint16_t startaddr, uint16_t endaddr, uint16_t bankaddr) {
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for (uint16_t addr = startaddr; addr < endaddr; addr += 512) {
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for (int w = 0; w < 512; w++) {
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@ -186,6 +192,11 @@ void readSegmentF8_2600(uint16_t startaddr, uint16_t endaddr, uint16_t bankaddr)
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}
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}
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void outputFF_2600(uint16_t size) {
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memset(sdBuffer, 0xFF, size * sizeof(sdBuffer[0]));
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myFile.write(sdBuffer, size);
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}
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void writeData_2600(uint16_t addr, uint8_t data) {
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PORTF = addr & 0xFF; // A0-A7
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PORTK = (addr >> 8) & 0xFF; // A8-A12
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@ -316,32 +327,17 @@ void readROM_2600() {
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readData_2600(0x1FF8 + x);
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// Split Read of 1st 0x200 bytes
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// 0x0000-0x0080 are DPC Registers (Random on boot)
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for (int y = 0; y < 0x80; y++) {
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sdBuffer[y] = 0xFF; // Output 0xFFs for Registers
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}
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myFile.write(sdBuffer, 128);
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for (int z = 0; z < 0x180; z++) {
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sdBuffer[z] = readData_2600(0x1080 + z);
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}
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myFile.write(sdBuffer, 384);
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outputFF_2600(0x80); // Output 0xFFs for Registers
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readDataArray_2600(0x1080, 0x180);
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// Read Segment
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readSegment_2600(0x1200, 0x1800);
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// 0x1000-0x1080 are DPC Registers (Random on boot)
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for (int y = 0; y < 0x80; y++) {
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sdBuffer[y] = 0xFF; // Output 0xFFs for Registers
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}
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myFile.write(sdBuffer, 128);
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for (int z = 0; z < 0x180; z++) {
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sdBuffer[z] = readData_2600(0x1880 + z);
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}
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myFile.write(sdBuffer, 384);
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outputFF_2600(0x80); // Output 0xFFs for Registers
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readDataArray_2600(0x1880, 0x180);
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// Read Segment
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readSegment_2600(0x1A00, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int y = 0; y < 0x1F8; y++) {
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sdBuffer[y] = readData_2600(0x1E00 + y);
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}
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myFile.write(sdBuffer, 504);
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readDataArray_2600(0x1E00, 0x1F8);
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for (int z = 0; z < 8; z++) {
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// Set Bank to ensure 0x1FFA-0x1FFF is correct
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readData_2600(0x1FF8 + x);
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@ -422,14 +418,19 @@ void readROM_2600() {
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}
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break;
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case 0x04: // F4SC Mapper 32KB \w RAM
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case 0xF4: // F4 Mapper 32KB
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for (int x = 0; x < 8; x++) {
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readData_2600(0x1FF4 + x);
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readSegment_2600(0x1000, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int y = 0; y < 0x1F4; y++) {
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sdBuffer[y] = readData_2600(0x1E00 + y);
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if(a2600mapper == 0xF4) {
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readSegment_2600(0x1000, 0x1200);
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} else {
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outputFF_2600(0x100); // Skip 0x1000-0x10FF RAM
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readDataArray_2600(0x1100, 0x100);
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}
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readSegment_2600(0x1200, 0x1E00);
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// Split Read of Last 0x200 bytes
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readDataArray_2600(0x1E00, 0x1F4);
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myFile.write(sdBuffer, 500);
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for (int z = 0; z < 12; z++) {
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// Set Bank to ensure 0x1FFC-0x1FFF is correct
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@ -440,15 +441,19 @@ void readROM_2600() {
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}
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break;
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case 0x06: // F6SC Mapper 16KB \w RAM
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case 0xF6: // F6 Mapper 16KB
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for (int w = 0; w < 4; w++) {
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readData_2600(0x1FF6 + w);
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readSegment_2600(0x1000, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int x = 0; x < 0x1F6; x++) {
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sdBuffer[x] = readData_2600(0x1E00 + x);
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if(a2600mapper == 0xF6) {
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readSegment_2600(0x1000, 0x1200);
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} else {
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outputFF_2600(0x100); // Skip 0x1000-0x10FF RAM
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readDataArray_2600(0x1100, 0x100);
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}
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myFile.write(sdBuffer, 502);
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readSegment_2600(0x1200, 0x1E00);
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// Split Read of Last 0x200 bytes
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readDataArray_2600(0x1E00, 0x1F6);
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// Bank Registers 0x1FF6-0x1FF9
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for (int y = 0; y < 4; y++){
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readData_2600(0x1FFF); // Reset Bank
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@ -465,15 +470,19 @@ void readROM_2600() {
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readData_2600(0x1FFF); // Reset Bank
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break;
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case 0x08: // F8SC Mapper 8KB \w RAM
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case 0xF8: // F8 Mapper 8KB
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for (int w = 0; w < 2; w++) {
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readData_2600(0x1FF8 + w);
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readSegment_2600(0x1000, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int x = 0; x < 0x1F8; x++) {
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sdBuffer[x] = readData_2600(0x1E00 + x);
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if(a2600mapper == 0xF8) {
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readSegment_2600(0x1000, 0x1200);
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} else {
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outputFF_2600(0x100); // Skip 0x1000-0x10FF RAM
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readDataArray_2600(0x1100, 0x100);
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}
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myFile.write(sdBuffer, 504);
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readSegment_2600(0x1200, 0x1E00);
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// Split Read of Last 0x200 bytes
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readDataArray_2600(0x1E00, 0x1F8);
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// Bank Registers 0x1FF8-0x1FF9
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for (int y = 0; y < 2; y++){
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readData_2600(0x1FFF); // Reset Bank
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@ -498,10 +507,7 @@ void readROM_2600() {
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readData_2600(0x1FF9 + w);
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readSegment_2600(0x1000, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int x = 0; x < 0x1F9; x++) {
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sdBuffer[x] = readData_2600(0x1E00 + x);
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}
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myFile.write(sdBuffer, 505);
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readDataArray_2600(0x1E00, 0x1F9);
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readData_2600(0x1FFF); // Reset Bank
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sdBuffer[0] = readData_2600(0x1FF9);
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// End of Bank 0x1FFA-0x1FFF
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@ -523,10 +529,7 @@ void readROM_2600() {
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writeData_2600(0x1FF8 + x, 0x1); // Set Bank with D0 HIGH
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readSegment_2600(0x1000, 0x1E00);
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// Split Read of Last 0x200 bytes
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for (int y = 0; y < 0x1F8; y++) {
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sdBuffer[y] = readData_2600(0x1E00 + y);
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}
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myFile.write(sdBuffer, 504);
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readDataArray_2600(0x1E00, 0x1F8);
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for (int z = 0; z < 8; z++) {
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// Set Bank to ensure 0x1FFB-0x1FFF is correct
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writeData_2600(0x1FF8 + x, 0x1); // Set Bank with D0 HIGH
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@ -573,6 +576,31 @@ void readROM_2600() {
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// ROM SIZE
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//******************************************
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#if (defined(ENABLE_OLED) || defined(ENABLE_LCD))
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void println_Mapper(byte mapper) {
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if (mapper == 0x04)
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println_Msg(F("F4SC"));
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else if (mapper == 0x06)
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println_Msg(F("F6SC"));
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else if (mapper == 0x08)
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println_Msg(F("F8SC"));
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else if (mapper == 0x20)
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println_Msg(F("2K"));
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else if (mapper == 0x40)
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println_Msg(F("4K"));
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else if (mapper == 0x0A)
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println_Msg(F("UA"));
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else if (mapper == 0xC0)
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println_Msg(F("CV"));
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else if (mapper == 0xD0)
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println_Msg(F("DPC"));
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else if (mapper == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(mapper, HEX);
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}
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#endif
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void checkStatus_2600() {
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EEPROM_readAnything(7, a2600mapper);
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EEPROM_readAnything(8, a2600size);
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@ -587,20 +615,7 @@ void checkStatus_2600() {
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println_Msg(F("CURRENT SETTINGS"));
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println_Msg(FS(FSTRING_EMPTY));
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print_Msg(F("MAPPER: "));
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if (a2600mapper == 0x20)
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println_Msg(F("2K"));
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else if (a2600mapper == 0x40)
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println_Msg(F("4K"));
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else if (a2600mapper == 0x0A)
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println_Msg(F("UA"));
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else if (a2600mapper == 0xC0)
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println_Msg(F("CV"));
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else if (a2600mapper == 0xD0)
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println_Msg(F("DPC"));
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else if (a2600mapper == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(a2600mapper, HEX);
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println_Mapper(a2600mapper);
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print_Msg(F("ROM SIZE: "));
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if (a2600mapper == 0xD0)
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print_Msg(F("10"));
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@ -611,7 +626,13 @@ void checkStatus_2600() {
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wait();
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#else
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Serial.print(F("MAPPER: "));
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if (a2600mapper == 0x20)
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if (mapper == 0x04)
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Serial.println(F("F4SC"));
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else if (mapper == 0x06)
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Serial.println(F("F6SC"));
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else if (mapper == 0x08)
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Serial.println(F("F8SC"));
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else if (a2600mapper == 0x20)
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Serial.println(F("2K"));
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else if (a2600mapper == 0x40)
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Serial.println(F("4K"));
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@ -625,6 +646,7 @@ void checkStatus_2600() {
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Serial.println(F("TP"));
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else
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Serial.println(a2600mapper, HEX);
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Serial.print(F("ROM SIZE: "));
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if (a2600mapper == 0xD0)
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Serial.print(F("10"));
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@ -639,6 +661,25 @@ void checkStatus_2600() {
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// SET MAPPER
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//******************************************
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#if (defined(ENABLE_OLED) || defined(ENABLE_LCD))
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void displayMapperSelect_2600(int index) {
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display_Clear();
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print_Msg(F("Mapper: "));
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a2600index = index * 2;
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a2600mapselect = pgm_read_byte(a2600mapsize + a2600index);
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println_Mapper(a2600mapselect);
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println_Msg(FS(FSTRING_EMPTY));
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#if defined(ENABLE_OLED)
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print_STR(press_to_change_STR, 1);
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print_STR(right_to_select_STR, 1);
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#elif defined(ENABLE_LCD)
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print_STR(rotate_to_change_STR, 1);
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print_STR(press_to_select_STR, 1);
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#endif
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display_Update();
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}
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#endif
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void setMapper_2600() {
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#if (defined(ENABLE_OLED) || defined(ENABLE_LCD))
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uint8_t b = 0;
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@ -669,20 +710,7 @@ void setMapper_2600() {
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print_Msg(F("Mapper: "));
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a2600index = i * 2;
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a2600mapselect = pgm_read_byte(a2600mapsize + a2600index);
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if (a2600mapselect == 0x20)
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println_Msg(F("2K"));
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else if (a2600mapselect == 0x40)
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println_Msg(F("4K"));
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else if (a2600mapselect == 0x0A)
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println_Msg(F("UA"));
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else if (a2600mapselect == 0xC0)
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println_Msg(F("CV"));
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else if (a2600mapselect == 0xD0)
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println_Msg(F("DPC"));
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else if (a2600mapselect == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(a2600mapselect, HEX);
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println_Mapper(a2600mapselect);
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display_Update();
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if (i == (a2600mapcount - 1))
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i = 0;
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@ -692,33 +720,7 @@ void setMapper_2600() {
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}
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}
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display_Clear();
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print_Msg(F("Mapper: "));
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a2600index = i * 2;
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a2600mapselect = pgm_read_byte(a2600mapsize + a2600index);
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if (a2600mapselect == 0x20)
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println_Msg(F("2K"));
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else if (a2600mapselect == 0x40)
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println_Msg(F("4K"));
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else if (a2600mapselect == 0x0A)
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println_Msg(F("UA"));
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else if (a2600mapselect == 0xC0)
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println_Msg(F("CV"));
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else if (a2600mapselect == 0xD0)
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println_Msg(F("DPC"));
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else if (a2600mapselect == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(a2600mapselect, HEX);
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println_Msg(FS(FSTRING_EMPTY));
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#if defined(ENABLE_OLED)
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print_STR(press_to_change_STR, 1);
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print_STR(right_to_select_STR, 1);
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#elif defined(ENABLE_LCD)
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print_STR(rotate_to_change_STR, 1);
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print_STR(press_to_select_STR, 1);
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#endif
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display_Update();
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displayMapperSelect_2600(i);
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while (1) {
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b = checkButton();
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@ -729,33 +731,7 @@ void setMapper_2600() {
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i--;
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// Only update display after input because of slow LCD library
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display_Clear();
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print_Msg(F("Mapper: "));
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a2600index = i * 2;
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a2600mapselect = pgm_read_byte(a2600mapsize + a2600index);
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if (a2600mapselect == 0x20)
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println_Msg(F("2K"));
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else if (a2600mapselect == 0x40)
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println_Msg(F("4K"));
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else if (a2600mapselect == 0x0A)
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println_Msg(F("UA"));
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else if (a2600mapselect == 0xC0)
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println_Msg(F("CV"));
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else if (a2600mapselect == 0xD0)
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println_Msg(F("DPC"));
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else if (a2600mapselect == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(a2600mapselect, HEX);
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println_Msg(FS(FSTRING_EMPTY));
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#if defined(ENABLE_OLED)
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print_STR(press_to_change_STR, 1);
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print_STR(right_to_select_STR, 1);
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#elif defined(ENABLE_LCD)
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print_STR(rotate_to_change_STR, 1);
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print_STR(press_to_select_STR, 1);
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#endif
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display_Update();
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displayMapperSelect_2600(i);
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}
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if (b == 1) { // Next Mapper (press)
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if (i == (a2600mapcount - 1))
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@ -764,33 +740,7 @@ void setMapper_2600() {
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i++;
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// Only update display after input because of slow LCD library
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display_Clear();
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print_Msg(F("Mapper: "));
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a2600index = i * 2;
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a2600mapselect = pgm_read_byte(a2600mapsize + a2600index);
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if (a2600mapselect == 0x20)
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println_Msg(F("2K"));
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else if (a2600mapselect == 0x40)
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println_Msg(F("4K"));
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else if (a2600mapselect == 0x0A)
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println_Msg(F("UA"));
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else if (a2600mapselect == 0xC0)
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println_Msg(F("CV"));
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else if (a2600mapselect == 0xD0)
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println_Msg(F("DPC"));
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else if (a2600mapselect == 0xF9)
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println_Msg(F("TP"));
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else
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println_Msg(a2600mapselect, HEX);
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println_Msg(FS(FSTRING_EMPTY));
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#if defined(ENABLE_OLED)
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print_STR(press_to_change_STR, 1);
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print_STR(right_to_select_STR, 1);
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#elif defined(ENABLE_LCD)
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print_STR(rotate_to_change_STR, 1);
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print_STR(press_to_select_STR, 1);
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#endif
|
||||
display_Update();
|
||||
displayMapperSelect_2600(i);
|
||||
}
|
||||
if (b == 3) { // Long Press - Execute (hold)
|
||||
new2600mapper = a2600mapselect;
|
||||
@ -799,20 +749,7 @@ void setMapper_2600() {
|
||||
}
|
||||
display.setCursor(0, 56);
|
||||
print_Msg(F("MAPPER "));
|
||||
if (new2600mapper == 0x20)
|
||||
println_Msg(F("2K"));
|
||||
else if (new2600mapper == 0x40)
|
||||
println_Msg(F("4K"));
|
||||
if (new2600mapper == 0x0A)
|
||||
print_Msg(F("UA"));
|
||||
else if (new2600mapper == 0xC0)
|
||||
print_Msg(F("CV"));
|
||||
else if (new2600mapper == 0xD0)
|
||||
println_Msg(F("DPC"));
|
||||
else if (new2600mapper == 0xF9)
|
||||
println_Msg(F("TP"));
|
||||
else
|
||||
print_Msg(new2600mapper, HEX);
|
||||
println_Mapper(new2600mapper);
|
||||
println_Msg(F(" SELECTED"));
|
||||
display_Update();
|
||||
delay(1000);
|
||||
@ -820,22 +757,25 @@ void setMapper_2600() {
|
||||
setmapper:
|
||||
String newmap;
|
||||
Serial.println(F("SUPPORTED MAPPERS:"));
|
||||
Serial.println(F("0 = 2K [Standard 2K]"));
|
||||
Serial.println(F("1 = 3F [Tigervision]"));
|
||||
Serial.println(F("2 = 4K [Standard 4K]"));
|
||||
Serial.println(F("3 = CV [Commavid]"));
|
||||
Serial.println(F("4 = DPC [Pitfall II]"));
|
||||
Serial.println(F("5 = E0 [Parker Bros]"));
|
||||
Serial.println(F("6 = E7 [M-Network]"));
|
||||
Serial.println(F("7 = F0 [Megaboy]"));
|
||||
Serial.println(F("8 = F4 [Atari 32K]"));
|
||||
Serial.println(F("9 = F6 [Atari 16K]"));
|
||||
Serial.println(F("10 = F8 [Atari 8K]"));
|
||||
Serial.println(F("11 = FA [CBS RAM Plus]"));
|
||||
Serial.println(F("12 = FE [Activision]"));
|
||||
Serial.println(F("13 = TP [Time Pilot 8K]"));
|
||||
Serial.println(F("14 = UA [UA Ltd]"));
|
||||
Serial.print(F("Enter Mapper [0-14]: "));
|
||||
Serial.println(F("0 = F4SC [Atari 32K \w RAM]"));
|
||||
Serial.println(F("1 = F6SC [Atari 16K \w RAM]"));
|
||||
Serial.println(F("2 = F8SC [Atari 8K \w RAM]"));
|
||||
Serial.println(F("3 = 2K [Standard 2K]"));
|
||||
Serial.println(F("4 = 3F [Tigervision]"));
|
||||
Serial.println(F("5 = 4K [Standard 4K]"));
|
||||
Serial.println(F("6 = CV [Commavid]"));
|
||||
Serial.println(F("7 = DPC [Pitfall II]"));
|
||||
Serial.println(F("8 = E0 [Parker Bros]"));
|
||||
Serial.println(F("9 = E7 [M-Network]"));
|
||||
Serial.println(F("10 = F0 [Megaboy]"));
|
||||
Serial.println(F("11 = F4 [Atari 32K]"));
|
||||
Serial.println(F("12 = F6 [Atari 16K]"));
|
||||
Serial.println(F("13 = F8 [Atari 8K]"));
|
||||
Serial.println(F("14 = FA [CBS RAM Plus]"));
|
||||
Serial.println(F("15 = FE [Activision]"));
|
||||
Serial.println(F("16 = TP [Time Pilot 8K]"));
|
||||
Serial.println(F("16 = UA [UA Ltd]"));
|
||||
Serial.print(F("Enter Mapper [0-17]: "));
|
||||
while (Serial.available() == 0) {}
|
||||
newmap = Serial.readStringUntil('\n');
|
||||
Serial.println(newmap);
|
||||
|
Loading…
Reference in New Issue
Block a user