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https://github.com/sanni/cartreader.git
synced 2024-11-23 21:19:16 +01:00
Use already existing sdBuffer array
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parent
7b92953e0b
commit
5a59ed155b
@ -472,7 +472,7 @@ byte readByte_GB(word myAddress) {
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return tempByte;
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return tempByte;
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}
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}
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void writeByte_GB(int myAddress, uint8_t myData) {
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void writeByte_GB(int myAddress, byte myData) {
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PORTF = myAddress & 0xFF;
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PORTF = myAddress & 0xFF;
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PORTK = (myAddress >> 8) & 0xFF;
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PORTK = (myAddress >> 8) & 0xFF;
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PORTC = myData;
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PORTC = myData;
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@ -520,7 +520,7 @@ byte readByteSRAM_GB(word myAddress) {
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return tempByte;
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return tempByte;
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}
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}
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void writeByteSRAM_GB(int myAddress, uint8_t myData) {
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void writeByteSRAM_GB(int myAddress, byte myData) {
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PORTF = myAddress & 0xFF;
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PORTF = myAddress & 0xFF;
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PORTK = (myAddress >> 8) & 0xFF;
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PORTK = (myAddress >> 8) & 0xFF;
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PORTC = myData;
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PORTC = myData;
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@ -809,14 +809,14 @@ void readSRAM_GB() {
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writeByte_GB(0x0000, 0x0A);
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writeByte_GB(0x0000, 0x0A);
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// Switch SRAM banks
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// Switch SRAM banks
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for (uint8_t bank = 0; bank < sramBanks; bank++) {
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for (byte currBank = 0; currBank < sramBanks; currBank++) {
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dataOut();
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dataOut();
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writeByte_GB(0x4000, bank);
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writeByte_GB(0x4000, currBank);
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// Read SRAM
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// Read SRAM
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dataIn_GB();
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dataIn_GB();
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for (word sramAddress = 0xA000; sramAddress <= lastByte; sramAddress += 64) {
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for (word sramAddress = 0xA000; sramAddress <= lastByte; sramAddress += 64) {
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for (uint8_t i = 0; i < 64; i++) {
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for (byte i = 0; i < 64; i++) {
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sdBuffer[i] = readByteSRAM_GB(sramAddress + i);
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sdBuffer[i] = readByteSRAM_GB(sramAddress + i);
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}
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}
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myFile.write(sdBuffer, 64);
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myFile.write(sdBuffer, 64);
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@ -923,9 +923,9 @@ unsigned long verifySRAM_GB() {
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writeByte_GB(0x0000, 0x0A);
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writeByte_GB(0x0000, 0x0A);
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// Switch SRAM banks
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// Switch SRAM banks
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for (uint8_t bank = 0; bank < sramBanks; bank++) {
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for (byte currBank = 0; currBank < sramBanks; currBank++) {
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dataOut();
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dataOut();
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writeByte_GB(0x4000, bank);
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writeByte_GB(0x4000, currBank);
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// Read SRAM
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// Read SRAM
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dataIn_GB();
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dataIn_GB();
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@ -1095,12 +1095,11 @@ void writeFlash29F_GB(byte MBC) {
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dataIn();
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dataIn();
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for (unsigned int currAddr = 0x4000; currAddr < 0x7FFF; currAddr += 512) {
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for (unsigned int currAddr = 0x4000; currAddr < 0x7FFF; currAddr += 512) {
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uint8_t readData[512];
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for (int currByte = 0; currByte < 512; currByte++) {
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for (int currByte = 0; currByte < 512; currByte++) {
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readData[currByte] = readByte_GB(currAddr + currByte);
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sdBuffer[currByte] = readByte_GB(currAddr + currByte);
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}
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}
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for (int j = 0; j < 512; j++) {
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for (int j = 0; j < 512; j++) {
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if (readData[j] != 0xFF) {
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if (sdBuffer[j] != 0xFF) {
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println_Msg(F("Not empty"));
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println_Msg(F("Not empty"));
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print_Error(F("Erase failed"), true);
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print_Error(F("Erase failed"), true);
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}
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}
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@ -1496,12 +1495,11 @@ bool writeCFI_GB() {
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dataIn();
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dataIn();
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for (unsigned int currAddr = 0x4000; currAddr < 0x7FFF; currAddr += 512) {
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for (unsigned int currAddr = 0x4000; currAddr < 0x7FFF; currAddr += 512) {
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uint8_t readData[512];
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for (int currByte = 0; currByte < 512; currByte++) {
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for (int currByte = 0; currByte < 512; currByte++) {
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readData[currByte] = readByte_GB(currAddr + currByte);
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sdBuffer[currByte] = readByte_GB(currAddr + currByte);
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}
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}
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for (int j = 0; j < 512; j++) {
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for (int j = 0; j < 512; j++) {
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if (readData[j] != 0xFF) {
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if (sdBuffer[j] != 0xFF) {
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println_Msg(F("Not empty"));
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println_Msg(F("Not empty"));
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print_Error(F("Erase failed"), true);
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print_Error(F("Erase failed"), true);
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}
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}
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@ -2,7 +2,7 @@
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// !!! CHOOSE HARDWARE VERSION !!!
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// !!! CHOOSE HARDWARE VERSION !!!
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//******************************************
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//******************************************
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// Remove // in front of the line with your hardware version
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// Remove // in front of the line with your hardware version
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//#define HW4
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#define HW4
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//#define HW3
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//#define HW3
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//#define HW2
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//#define HW2
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//#define HW1
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//#define HW1
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