229 lines
4.4 KiB
C
229 lines
4.4 KiB
C
#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <string.h>
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#include "control.h"
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#include "disk.h"
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#include "io.h"
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#include "bsp_driver_sd.h"
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#include "profiling.h"
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// The top 4 address bits determine which device is used. (16 pages, 256 devices)
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// 0xFF means that the device does not exist
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// WATCH OUT THE DEVICE ADDRESS NEED TO BE REVERSED (MSB IS ON THE RIGHT)
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uint8_t memory_map_0[16] = {0b00010000, 0b10001000, 0b01001000, 0b11001000, 0b00101000, 0b10101000, 0b01101000, 0b11101000, 0b00011000, 0b10011000, 0b01011000, 0b11011000, 0b00111000, 0b10111000, 0b01111000, 0b11111000};
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uint8_t memory_map_1[16] = {0b00001000, 0b10001000, 0b01001000, 0b11001000, 0b00101000, 0b10101000, 0b01101000, 0b11101000, 0b00011000, 0b10011000, 0b01011000, 0b11011000, 0b00111000, 0b10111000, 0b01111000, 0b11111000};
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Control control;
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extern UART_HandleTypeDef huart2;
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extern uint8_t ack[1];
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extern uint8_t nack[1];
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uint8_t get_device(uint16_t address) {
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uint8_t page = address >> 12;
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if (control.memory_config == 0) {
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return memory_map_0[page];
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} else if (control.memory_config == 1) {
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return memory_map_1[page];
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}
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return 0xFF;
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}
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void control_program_eeprom(uint8_t* data, uint16_t length) {
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// Take control of the bus
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send_busrq(1);
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while (!has_busak()) {
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control_cycle();
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}
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enable_address_out(1);
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select_device(memory_map_0[0]);
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for (uint16_t i = 0; i < length; ++i) {
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write_address(i);
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write_data(data[i]);
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enable_data_out(1);
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send_memrq(1);
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send_wr(1);
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send_wr(0);
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enable_data_out(0);
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send_rd(1);
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for (;;) {
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uint8_t d = read_data();
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if (d == data[i]) {
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break;
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}
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}
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send_rd(0);
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send_memrq(0);
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uint8_t progress[] = {(i+1) & 0xFF, (i+1) >> 8};
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HAL_UART_Transmit(&huart2, progress, sizeof(progress), HAL_MAX_DELAY);
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}
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enable_address_out(0);
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// Release the bus again
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send_busrq(0);
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// Restart the z80
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control_reset();
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HAL_UART_Transmit(&huart2, ack, sizeof(ack), HAL_MAX_DELAY);
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}
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void handle_memrq() {
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uint16_t address = read_address();
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uint8_t device = get_device(address);
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select_device(device);
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}
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void handle_io_read() {
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uint8_t address = read_address() & 0xFF;
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switch (address) {
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// @todo This should be detected on startup
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// Stand in for graphics hardware
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/* case 0x03: */
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/* write_data(0x01); */
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/* break; */
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/* Stand in for the keyboard hardware */
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/* case 0x1E: */
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/* write_data(char_c); */
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/* char_r = 0; */
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/* break; */
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/* Stand in for the keyboard hardware */
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/* case 0x1F: */
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/* #<{(| write_data(0x01 * char_r); |)}># */
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/* write_data(0x00); */
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/* break; */
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// Read byte from disk
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case 0x08:
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write_data(disk_read_byte());
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break;
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// Check if disk is ready
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case 0x0f:
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write_data(0x08*disk_is_ready());
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break;
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default: {
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/* uint8_t value = read_data(); */
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/* #<{(| if (value == 0) { |)}># */
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/* printf("IO Read: %.2X @ %.2X\n\r", value, address); */
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/* #<{(| } |)}># */
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return;
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}
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}
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enable_data_out(1);
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}
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void handle_io_write() {
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uint8_t address = read_address() & 0xFF;
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uint8_t value = read_data();
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switch (address) {
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case 0x00:
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control.memory_config = 0;
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break;
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case 0x01:
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control.memory_config = 1;
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break;
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case 0x02:
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printf("%c", value);
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break;
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// Write byte to disk
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case 0x08:
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disk_write_byte(value);
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break;
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case 0x0b: {
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disk_set_lba_part(value, 0);
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break;
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}
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case 0x0c: {
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disk_set_lba_part(value, 1);
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break;
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}
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case 0x0d: {
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disk_set_lba_part(value, 2);
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break;
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}
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// Receive disk command
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case 0x0f: {
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disk_receive_command(value);
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break;
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}
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default:
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printf("IO Write: %.2X @ %.2X\n\r", value, address);
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break;
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}
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}
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void handle_ioreq() {
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if (has_wr()) {
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handle_io_write();
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} else if (has_rd()) {
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handle_io_read();
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}
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}
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void control_cycle() {
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set_clock(1);
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// We need this not detect IO multiple times
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static uint8_t had_ioreq = 0;
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if (!has_ioreq()) {
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had_ioreq = 0;
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}
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// @todo We are forgetting to set this somewhere
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enable_data_out(0);
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if (has_memrq()) {
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handle_memrq();
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} else if (has_ioreq() && !has_m1()) {
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had_ioreq++;
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if (had_ioreq == 3) {
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handle_ioreq();
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}
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} else if (has_ioreq() && has_m1()) {
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printf("Interrupt ackknowledged\n\r");
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}
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set_clock(0);
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}
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// @todo Properly reset everything
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void control_reset() {
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Control temp = {0};
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control = temp;
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disk_free();
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disk_init();
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set_reset(1);
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for (int i = 0; i <= 10; ++i) {
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set_clock(i % 2);
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}
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set_reset(0);
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}
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