mirror of
https://github.com/sanni/cartreader.git
synced 2024-12-11 21:54:17 +01:00
500 lines
12 KiB
C++
500 lines
12 KiB
C++
//******************************************
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// ATARI 8-bit (400/800/XL/XE) MODULE
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//******************************************
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#ifdef ENABLE_ATARI8
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// Atari 8-bit (400/800/XL/XE)
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// Left Slot Cartridge Pinout
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// 30P 2.54mm pitch
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//
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// RIGHT
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// +------+
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// PHI2 -| S 15 |- /CCTL
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// R/W -| R 14 |- RD5
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// L A10 -| P 13 |- +5V B
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// A A11 -| N 12 |- /S5 O
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// B D7 -| M 11 |- D6 T
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// E D3 -| L 10 |- D0 T
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// L A12 -| K 9 |- D1 O
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// A9 -| J 8 |- D2 M
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// S A8 -| H 7 |- D5
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// I A7 -| F 6 |- D4 S
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// D A6 -| E 5 |- A0 I
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// E A5 -| D 4 |- A1 D
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// A4 -| C 3 |- A2 E
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// GND -| B 2 |- A3
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// RD4 -| A 1 |- /S4
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// +------+
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// LEFT
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//
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// LABEL SIDE
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//
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// RD4 GND A4 A5 A6 A7 A8 A9 A12 D3 D7 A11 A10 R/W PHI2
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// +-------------------------------------------------------------+
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// | A B C D E F H J K L M N P R S |
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// LEFT | | RIGHT
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// | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 |
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// +-------------------------------------------------------------+
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// /S4 A3 A2 A1 A0 D4 D5 D2 D1 D0 D6 /S5 +5V RD5 /CCTL
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//
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// BOTTOM SIDE
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//
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// CONTROL PINS:
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// RD4(PH0) - SNES RESET
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// PHI2(PH1) - SNES CPUCLK
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// /S5(PH3) - SNES /CS
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// RD5(PH4) - SNES /IRQ
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// R/W(PH5) - SNES /WR
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// /S4(PH6) - SNES /RD
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// /CCTL(PL0) - SNES A16
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//******************************************
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// DEFINES
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//******************************************
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#define DISABLE_S4 PORTH |= (1 << 6) // ROM SELECT $8000-$9FFF
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#define ENABLE_S4 PORTH &= ~(1 << 6)
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#define DISABLE_S5 PORTH |= (1 << 3) // ROM SELECT $A000-$BFFF
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#define ENABLE_S5 PORTH &= ~(1 << 3)
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#define DISABLE_CCTL PORTL |= (1 << 0) // CARTRIDGE CONTROL BLOCK $D500-$D5FF
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#define ENABLE_CCTL PORTL &= ~(1 << 0)
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//******************************************
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// VARIABLES
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//******************************************
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byte ATARI8[] = {8,16,32,40,64,128};
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byte atari8lo = 0; // Lowest Entry
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byte atari8hi = 5; // Highest Entry
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byte atari8size;
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byte newatari8size;
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boolean atari8right = 0; // 0 = LEFT Slot, 1 = RIGHT Slot
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// EEPROM MAPPING
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// 07 MAPPER [ATARI 8-BIT SLOT]
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// 08 ROM SIZE
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//******************************************
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// MENU
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//******************************************
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// Base Menu
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static const char atari8MenuItem3[] PROGMEM = "Read RIGHT ROM";
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static const char* const menuOptionsATARI8[] PROGMEM = { FSTRING_SELECT_CART, FSTRING_READ_ROM, atari8MenuItem3, FSTRING_SET_SIZE, FSTRING_RESET };
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void atari8Menu()
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{
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convertPgm(menuOptionsATARI8, 5);
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uint8_t mainMenu = question_box(F("ATARI 8-BIT MENU"), menuOptions, 5, 0);
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switch (mainMenu)
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{
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// Select Cart
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case 0:
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setCart_ATARI8();
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setup_ATARI8();
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break;
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// Read LEFT Slot Cart
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case 1:
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sd.chdir("/");
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atari8right = 0; // LEFT Slot
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readROM_ATARI8();
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sd.chdir("/");
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break;
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// Read RIGHT Slot Cart
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case 2:
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sd.chdir("/");
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atari8right = 1; // RIGHT Slot
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readROM_ATARI8();
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sd.chdir("/");
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break;
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case 3:
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// Set Size
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setROMSize_ATARI8();
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break;
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case 4:
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// reset
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resetArduino();
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break;
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}
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}
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//******************************************
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// SETUP
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//******************************************
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void setup_ATARI8()
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{
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// Request 5V
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setVoltage(VOLTS_SET_5V);
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// Set Address Pins to Output
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// Atari 8-bit uses A0-A12 [A13-A23 UNUSED]
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//A0-A7
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DDRF = 0xFF;
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//A8-A15
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DDRK = 0xFF;
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//A16-A23
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DDRL = 0xFF; // Use A16 for /CCTL Output
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// Set Control Pins to Output
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// PHI2(PH1) /S5(PH3) R/W(PH5) /S4(PH6)
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DDRH |= (1 << 1) | (1 << 3) | (1 << 5) | (1 << 6);
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// Set RD4 & RD5 to Input
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// RD4(PH0) RD5(PH4)
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DDRH &= ~((1 << 0) | (1 << 4));
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// Set TIME(PJ0) to Output (UNUSED)
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DDRJ |= (1 << 0);
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// Set Pins (D0-D7) to Input
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DDRC = 0x00;
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// Setting Control Pins to HIGH
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// PHI2(PH1) /S5(PH3) R/W(PH5) /S4(PH6)
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//PORTH |= (1 << 1) | (1 << 3) | (1 << 5) | (1 << 6);
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// /S5(PH3) R/W(PH5) /S4(PH6)
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PORTH |= (1 << 3) | (1 << 5) | (1 << 6);
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// Set Unused Data Pins (PA0-PA7) to Output
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DDRA = 0xFF;
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// Set Unused Pins HIGH
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PORTA = 0xFF;
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PORTL = 0xFF; // A16-A23 (A16 used for /CCTL Output)
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PORTJ |= (1 << 0); // TIME(PJ0)
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checkStatus_ATARI8();
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strcpy(romName, "ATARI");
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mode = CORE_ATARI8;
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}
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//******************************************
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// READ FUNCTIONS
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//******************************************
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uint8_t readData_ATARI8(uint16_t addr) // Add Input Pullup
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{
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PORTF = addr & 0xFF; // A0-A7
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PORTK = (addr >> 8) & 0xFF; // A8-A12
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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// DDRC = 0x00; // Set to Input
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PORTC = 0xFF; // Input Pullup
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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// Extended Delay
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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uint8_t ret = PINC;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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return ret;
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}
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void readSegment_ATARI8(uint16_t startaddr, uint16_t endaddr)
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{
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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_ATARI8(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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}
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}
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void readBountyBobBank_ATARI8(uint16_t startaddr)
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{
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for (uint8_t w = 0; w < 4; w++) {
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readData_ATARI8(startaddr + 0x0FF6 + w);
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readSegment_ATARI8(startaddr, startaddr + 0x0E00);
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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_ATARI8(startaddr + 0x0E00 + x);
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}
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myFile.write(sdBuffer, 502);
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// Bank Registers 0xFF6-0xFF9
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for (int y = 0; y < 4; y++){
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readData_ATARI8(startaddr + 0x0FFF); // Reset Bank
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sdBuffer[y] = readData_ATARI8(startaddr + 0x0FF6 + y);
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}
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// End of Bank 0x8FFA-0x8FFF
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readData_ATARI8(startaddr + 0x0FFF); // Reset Bank
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readData_ATARI8(startaddr + 0x0FF6 + w); // Set Bank
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for (int z = 4; z < 10; z++) {
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sdBuffer[z] = readData_ATARI8(startaddr + 0x0FF6 + z); // 0xFFA-0xFFF
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}
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myFile.write(sdBuffer, 10);
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}
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readData_ATARI8(startaddr + 0x0FFF); // Reset Bank
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}
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void bankSwitch_ATARI8(uint8_t bank)
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{
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// write to $D5XX using /CCTL
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// CCTL sets upper 3 bits of 16-bit address to 110
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// CCTL = [110] 1 0101 0000 0000 = $D500
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ENABLE_CCTL;
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// Set Address $D500
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PORTF = 0x00; // A0-A7
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PORTK = 0xD5; // A8-A12
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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// Set Data to Output
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DDRC = 0xFF;
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// Set R/W to WRITE
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PORTH &= ~(1 << 5);
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// Set Bank
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PORTC = bank;
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NOP;
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NOP;
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NOP;
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NOP;
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NOP;
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// Pulse Clock
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// CPU CLOCK 1.7897725MHz(NTSC)/1.7734470MHz(PAL/SECAM)
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// 1.7897725MHz = 1 cycle = 558.73023ns = 279.365115/279.365115
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for (int i = 0; i < 2; i++) {
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PORTH ^= (1 << 1);
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// NOP (62.5ns) x 4 = 250ns = 0.25us
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NOP;
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NOP;
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NOP;
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NOP; // 4 NOPs = 4 x 62.5ns = 250ns x 2 = 500ns = 2 MHz
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}
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// Set R/W to READ
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PORTH |= (1 << 5);
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// Reset Data to Input
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DDRC = 0x00;
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DISABLE_CCTL;
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}
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//******************************************
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// READ ROM
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//******************************************
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void readROM_ATARI8()
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{
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createFolderAndOpenFile("ATARI8", "ROM", romName, "bin");
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// Store Slot Setting to EEPROM
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EEPROM_writeAnything(7, atari8right); // 0 = LEFT, 1 = RIGHT
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// ATARI 8-bit A12-A0 = 1 0000 0000 0000
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// S4 [100]/S5 [101] are the upper 3 bits for 16-bit address
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// S4 = [100] 1 1111 1111 1111 = $8000-$9FFF
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// S5 = [101] 1 1111 1111 1111 = $A000-$BFFF
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if (atari8right) { // RIGHT Slot Cartridge 8K
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// Right slot carts are 8K mapped to $8000-$9FFF
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// Right slot carts use /S4 assigned to Pin 12
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// Pin 12 = RIGHT Slot /S4 = LEFT Slot /S5
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ENABLE_S5;
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readSegment_ATARI8(0x8000,0xA000); // 8K
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DISABLE_S5;
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// Correct Size to 8K
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atari8size = 0; // 8K
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EEPROM_writeAnything(8, atari8size);
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}
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else if (atari8size == 3) { // Bounty Bob Strikes Back 40K
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ENABLE_S4;
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// First 16KB (4KB x 4)
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readBountyBobBank_ATARI8(0x8000);
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// Second 16KB (4KB x 4)
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readBountyBobBank_ATARI8(0x9000);
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DISABLE_S4;
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ENABLE_S5;
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readSegment_ATARI8(0xA000, 0xC000); // +8K = 40K
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DISABLE_S5;
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}
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else if (atari8size > 1) { // XE Carts 32K/64K/128K
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// Bug Hunt and Lode Runner dump as 128K. Trim beginning 64K as both carts start from Bank 8.
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int banks = (ATARI8[atari8size] / 8) - 1;
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for (int x = 0; x < banks; x++) {
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bankSwitch_ATARI8(x);
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ENABLE_S4;
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readSegment_ATARI8(0x8000,0xA000); // 8K
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DISABLE_S4;
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}
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// Last Bank
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ENABLE_S5;
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readSegment_ATARI8(0xA000,0xC000); // +8K
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DISABLE_S5;
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}
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else { // Standard LEFT Cart 8K/16K
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if (atari8size == 1) {
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// Add XE Bankswitch for Necromancer 16K
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bankSwitch_ATARI8(0);
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// Standard 16K
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ENABLE_S4;
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readSegment_ATARI8(0x8000,0xA000); // +8K = 16K
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DISABLE_S4;
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}
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ENABLE_S5;
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readSegment_ATARI8(0xA000,0xC000); // 8K
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DISABLE_S5;
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}
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myFile.close();
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printCRC(fileName, NULL, 0);
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println_Msg(FS(FSTRING_EMPTY));
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print_STR(press_button_STR, 1);
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display_Update();
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wait();
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}
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//******************************************
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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 printRomSize_ATARI8(int index)
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{
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display_Clear();
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print_Msg(FS(FSTRING_ROM_SIZE));
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println_Msg(ATARI8[index]);
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}
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#endif
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void setROMSize_ATARI8()
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{
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byte newatari8size;
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#if (defined(ENABLE_OLED) || defined(ENABLE_LCD))
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display_Clear();
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if (atari8lo == atari8hi)
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newatari8size = atari8lo;
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else {
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newatari8size = navigateMenu(atari8lo, atari8hi, &printRomSize_ATARI8);
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display.setCursor(0, 56); // Display selection at bottom
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}
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print_Msg(FS(FSTRING_ROM_SIZE));
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print_Msg(ATARI8[newatari8size]);
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println_Msg(F("KB"));
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display_Update();
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delay(1000);
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#else
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if (atari8lo == atari8hi)
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newatari8size = atari8lo;
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else {
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setrom:
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String sizeROM;
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for (int i = 0; i < (atari8hi - atari8lo + 1); i++) {
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Serial.print(F("Select ROM Size: "));
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Serial.print(i);
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Serial.print(F(" = "));
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Serial.print(ATARI8[i + atari8lo]);
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Serial.println(F("KB"));
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}
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Serial.print(F("Enter ROM Size: "));
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while (Serial.available() == 0) {}
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sizeROM = Serial.readStringUntil('\n');
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Serial.println(sizeROM);
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newatari8size = sizeROM.toInt() + atari8lo;
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if (newatari8size > atari8hi) {
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Serial.println(F("SIZE NOT SUPPORTED"));
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Serial.println(FS(FSTRING_EMPTY));
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goto setrom;
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}
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}
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Serial.print(F("ROM Size = "));
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Serial.print(ATARI8[newatari8size]);
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Serial.println(F("KB"));
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#endif
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EEPROM_writeAnything(8, newatari8size);
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atari8size = newatari8size;
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}
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void checkStatus_ATARI8()
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{
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EEPROM_readAnything(7, atari8right);
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if (atari8right != 1) {
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atari8right = 0; // default LEFT Slot
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EEPROM_writeAnything(7, atari8right);
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}
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EEPROM_readAnything(8, atari8size);
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if (atari8size > atari8hi) {
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atari8size = 1; // default 16K
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EEPROM_writeAnything(8, atari8size);
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}
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#if (defined(ENABLE_OLED) || defined(ENABLE_LCD))
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display_Clear();
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println_Msg(F("ATARI 8-BIT READER"));
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println_Msg(FS(FSTRING_CURRENT_SETTINGS));
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println_Msg(FS(FSTRING_EMPTY));
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print_Msg(F("SLOT: "));
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if (atari8right)
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println_Msg(F("RIGHT"));
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else
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println_Msg(F("LEFT"));
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print_Msg(FS(FSTRING_ROM_SIZE));
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print_Msg(ATARI8[atari8size]);
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println_Msg(F("KB"));
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display_Update();
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wait();
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#else
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Serial.print(FS(FSTRING_ROM_SIZE));
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Serial.print(ATARI8[atari8size]);
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Serial.println(F("KB"));
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Serial.println(FS(FSTRING_EMPTY));
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#endif
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}
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//******************************************
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// CART SELECT CODE
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//******************************************
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void setCart_ATARI8()
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{
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//go to root
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sd.chdir();
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struct database_entry_mapper_size entry;
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// Select starting letter
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byte myLetter = starting_letter();
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// Open database
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if (myFile.open("atari8cart.txt", O_READ)) {
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seek_first_letter_in_database(myFile, myLetter);
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if(checkCartSelection(myFile, &readDataLineMapperSize, &entry)) {
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EEPROM_writeAnything(7, entry.gameMapper);
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EEPROM_writeAnything(8, entry.gameSize);
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}
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} else {
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print_FatalError(FS(FSTRING_DATABASE_FILE_NOT_FOUND));
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}
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}
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#endif
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