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c5ff92c0ab
Author | SHA1 | Date | |
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c5ff92c0ab | |||
60fd55abca |
13
src/bus.rs
13
src/bus.rs
@ -59,7 +59,7 @@ pub struct Bus {
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impl Bus {
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impl Bus {
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pub fn new() -> Self {
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pub fn new() -> Self {
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let game_rom = match ROM::load_file("ignore/tetris.gb".to_string()) {
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let game_rom = match ROM::load_file("ignore/m3_scy_change.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs_individual/01-special.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs_individual/01-special.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs_individual/02-interrupts.gb".to_string()) {
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// let game_rom = match ROM::load_file("roms/cpu_instrs_individual/02-interrupts.gb".to_string()) {
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@ -78,7 +78,7 @@ impl Bus {
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};
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};
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let mut data = [0x00; 0x10000];
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let mut data = [0x00; 0x10000];
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// Hardware registers after the bootrom
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// Hardware registers after the bootrom
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data[0xFF00] = 0b11001111;
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data[0xFF00] = 0xCF;
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data[0xFF01] = 0x00;
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data[0xFF01] = 0x00;
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data[0xFF02] = 0x7E;
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data[0xFF02] = 0x7E;
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data[0xFF04] = 0x18;
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data[0xFF04] = 0x18;
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@ -139,9 +139,14 @@ impl Bus {
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} else if address == LCD_CONTROL_ADDRESS && get_bit(data, BitIndex::I7) {
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} else if address == LCD_CONTROL_ADDRESS && get_bit(data, BitIndex::I7) {
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self.data[address as usize] = data;
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self.data[address as usize] = data;
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self.data[LCD_Y_ADDRESS as usize] = 0x00;
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self.data[LCD_Y_ADDRESS as usize] = 0x00;
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} else if address == LCD_Y_ADDRESS {
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// println!("Write to LCD_Y not allowed");
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} else if address == LCD_STATUS_ADDRESS {
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let byte = self.data[address as usize];
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self.data[address as usize] = (data & 0b11111000) | (byte & 0b00000111);
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} else if address == JOYPAD_ADDRESS {
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} else if address == JOYPAD_ADDRESS {
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let byte = self.data[JOYPAD_ADDRESS as usize];
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let byte = self.data[address as usize];
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self.data[JOYPAD_ADDRESS as usize] = (data & 0b11110000) | (byte & 0b00001111);
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self.data[address as usize] = (data & 0b11110000) | (byte & 0b00001111);
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} else {
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} else {
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self.data[address as usize] = data;
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self.data[address as usize] = data;
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}
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}
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@ -96,19 +96,11 @@ impl Emulator {
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self.joypad.release(Button::Select);
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self.joypad.release(Button::Select);
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}
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}
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if change {
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if change {
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self.joypad.update(&mut self.bus);
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self.bus.set_interrupt_flag(Interrupt::Joypad, true);
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self.bus.set_interrupt_flag(Interrupt::Joypad, true);
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}
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}
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}
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}
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pub fn draw(&mut self, frame: &mut [u8]) {
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pub fn run(&mut self, cpu_cycles: Cycles, frame_buffer: &mut [u8]) {
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let ppu_frame = self.ppu.get_rgba_frame();
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for (i, pixel) in frame.chunks_exact_mut(4).enumerate() {
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pixel.copy_from_slice(&ppu_frame[i]);
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}
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}
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pub fn run(&mut self, cpu_cycles: Cycles) {
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self.cpu.reset_cycles();
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self.cpu.reset_cycles();
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while self.cpu.get_cycles().0 <= cpu_cycles.0 {
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while self.cpu.get_cycles().0 <= cpu_cycles.0 {
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self.cpu.run(&mut self.bus);
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self.cpu.run(&mut self.bus);
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@ -116,7 +108,7 @@ impl Emulator {
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self.bus.reset_timer = false;
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self.bus.reset_timer = false;
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self.timer.reset(&mut self.bus);
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self.timer.reset(&mut self.bus);
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}
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}
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self.ppu.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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self.ppu.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles(), frame_buffer);
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self.timer.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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self.timer.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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// 1 CPU cycle = 238.42ns
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// 1 CPU cycle = 238.42ns
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@ -127,13 +119,14 @@ impl Emulator {
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pub fn cpu_loop(&mut self) {
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pub fn cpu_loop(&mut self) {
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let mut exit = false;
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let mut exit = false;
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let mut frame: [u8; 144 * 160] = [0; 144 * 160];
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while !exit {
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while !exit {
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self.cpu.run(&mut self.bus);
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self.cpu.run(&mut self.bus);
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if self.bus.reset_timer {
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if self.bus.reset_timer {
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self.bus.reset_timer = false;
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self.bus.reset_timer = false;
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self.timer.reset(&mut self.bus);
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self.timer.reset(&mut self.bus);
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}
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}
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self.ppu.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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self.ppu.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles(), &mut frame);
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self.timer.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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self.timer.do_cycles(&mut self.bus, self.cpu.get_last_op_cycles());
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// exit = self.cpu.get_exec_calls_count() >= 1258895; // log 1
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// exit = self.cpu.get_exec_calls_count() >= 1258895; // log 1
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@ -68,7 +68,7 @@ impl Joypad {
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};
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};
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}
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}
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pub fn update(&self, bus: &mut Bus) {
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pub fn read(&self, bus: &mut Bus) -> u8 {
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let byte = bus.read(JOYPAD_ADDRESS);
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let byte = bus.read(JOYPAD_ADDRESS);
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let direction = !get_bit(byte, BitIndex::I4);
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let direction = !get_bit(byte, BitIndex::I4);
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let action = !get_bit(byte, BitIndex::I5);
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let action = !get_bit(byte, BitIndex::I5);
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@ -83,7 +83,6 @@ impl Joypad {
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) | (
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) | (
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(!((direction && self.right) || (action && self.a)) as u8)
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(!((direction && self.right) || (action && self.a)) as u8)
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);
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);
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println!("New joypad write: {:08b}", data);
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return data;
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bus.force_write(JOYPAD_ADDRESS, data);
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}
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}
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}
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}
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99
src/ppu.rs
99
src/ppu.rs
@ -91,6 +91,7 @@ pub enum LCDStatus {
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}
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}
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pub struct PPU {
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pub struct PPU {
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prev_state: bool,
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cycles: Cycles,
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cycles: Cycles,
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rgba_frame: [[u8; 4]; FRAME_BUFFER_LENGTH as usize],
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rgba_frame: [[u8; 4]; FRAME_BUFFER_LENGTH as usize],
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}
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}
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@ -103,6 +104,7 @@ enum TileNumber {
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impl PPU {
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impl PPU {
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pub fn new() -> Self {
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pub fn new() -> Self {
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Self {
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Self {
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prev_state: false,
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cycles: Cycles(0),
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cycles: Cycles(0),
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rgba_frame: [[0xFF, 0xFF, 0xFF, 0]; FRAME_BUFFER_LENGTH as usize],
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rgba_frame: [[0xFF, 0xFF, 0xFF, 0]; FRAME_BUFFER_LENGTH as usize],
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}
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}
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@ -116,15 +118,15 @@ impl PPU {
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self.cycles.0 += cycles.0;
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self.cycles.0 += cycles.0;
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}
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}
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pub fn do_cycles(&mut self, bus: &mut Bus, cycles: Cycles) {
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pub fn do_cycles(&mut self, bus: &mut Bus, cycles: Cycles, frame_buffer: &mut [u8]) {
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let mut count = 0;
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let mut count = 0;
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while count < cycles.0 {
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while count < cycles.0 {
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self.cycle(bus);
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self.cycle(bus, frame_buffer);
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count += 1;
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count += 1;
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}
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}
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}
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}
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pub fn cycle(&mut self, bus: &mut Bus) {
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pub fn cycle(&mut self, bus: &mut Bus, frame_buffer: &mut [u8]) {
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if !PPU::get_lcd_control(bus, LCDControl::LCDEnable) {
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if !PPU::get_lcd_control(bus, LCDControl::LCDEnable) {
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self.increment_cycles(Cycles(1));
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self.increment_cycles(Cycles(1));
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return;
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return;
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@ -134,26 +136,21 @@ impl PPU {
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if self.cycles.0 == 0 {
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if self.cycles.0 == 0 {
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// Mode 2 OAM scan
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// Mode 2 OAM scan
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::SearchingOAM), true);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::SearchingOAM), true);
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if PPU::get_lcd_status(bus, LCDStatus::Mode2OAMInterrupt) {
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self.stat_interrupt(bus);
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PPU::request_interrupt(bus, Interrupt::LCDSTAT);
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}
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} else if self.cycles.0 == 80 + 1 {
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} else if self.cycles.0 == 80 + 1 {
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// Mode 3 drawing pixel line. This could also last 289 cycles
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// Mode 3 drawing pixel line. This could also last 289 cycles
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self.draw_line(bus);
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self.draw_line(bus, frame_buffer);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::TransferringToLCD), true);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::TransferringToLCD), true);
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} else if self.cycles.0 == 80 + 172 + 1 {
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} else if self.cycles.0 == 80 + 172 + 1 {
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// Mode 0 Horizontal blank. This could last 87 or 204 cycles depending on the mode 3
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// Mode 0 Horizontal blank. This could last 87 or 204 cycles depending on the mode 3
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::HBlank), true);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::HBlank), true);
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if PPU::get_lcd_status(bus, LCDStatus::Mode0HBlankInterrupt) {
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self.stat_interrupt(bus);
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PPU::request_interrupt(bus, Interrupt::LCDSTAT);
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}
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}
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}
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} else if PPU::get_lcd_y(bus) == 144 && self.cycles.0 == 0 {
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} else if PPU::get_lcd_y(bus) == 144 && self.cycles.0 == 0 {
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// Mode 1 Vertical blank
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// Mode 1 Vertical blank
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bus.set_interrupt_flag(Interrupt::VBlank, true);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::VBlank), true);
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PPU::set_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::VBlank), true);
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if PPU::get_lcd_status(bus, LCDStatus::Mode1VBlankInterrupt) {
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self.stat_interrupt(bus);
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PPU::request_interrupt(bus, Interrupt::VBlank);
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}
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}
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}
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self.increment_cycles(Cycles(1));
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self.increment_cycles(Cycles(1));
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@ -167,21 +164,28 @@ impl PPU {
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if PPU::get_lcd_y(bus) > 153 {
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if PPU::get_lcd_y(bus) > 153 {
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PPU::set_lcd_y(bus, 0);
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PPU::set_lcd_y(bus, 0);
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}
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}
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PPU::check_lyc(bus);
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self.check_lyc(bus);
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}
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}
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}
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}
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fn check_lyc(bus: &mut Bus) {
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fn stat_interrupt(&mut self, bus: &mut Bus) {
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let state = self.prev_state;
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self.prev_state = (
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(PPU::get_lcd_status(bus, LCDStatus::Mode2OAMInterrupt) && PPU::get_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::SearchingOAM))) ||
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(PPU::get_lcd_status(bus, LCDStatus::Mode0HBlankInterrupt) && PPU::get_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::HBlank))) ||
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(PPU::get_lcd_status(bus, LCDStatus::Mode1VBlankInterrupt) && PPU::get_lcd_status(bus, LCDStatus::ModeFlag(LCDStatusModeFlag::VBlank)))
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);
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if self.prev_state && !state {
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bus.set_interrupt_flag(Interrupt::LCDSTAT, true);
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}
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}
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fn check_lyc(&mut self, bus: &mut Bus) {
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let lyc_compare = PPU::get_lcd_y(bus) == bus.read(LCD_Y_COMPARE_ADDRESS);
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let lyc_compare = PPU::get_lcd_y(bus) == bus.read(LCD_Y_COMPARE_ADDRESS);
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if PPU::get_lcd_status(bus, LCDStatus::LYCInterrupt) && lyc_compare {
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PPU::set_lcd_status(bus, LCDStatus::LYCFlag, lyc_compare);
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PPU::set_lcd_status(bus, LCDStatus::LYCFlag, lyc_compare);
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PPU::request_interrupt(bus, Interrupt::LCDSTAT);
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if lyc_compare && PPU::get_lcd_status(bus, LCDStatus::LYCInterrupt) {
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}
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bus.set_interrupt_flag(Interrupt::LCDSTAT, true);
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}
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self.prev_state = true;
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fn request_interrupt(bus: &mut Bus, interrupt: Interrupt) {
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if PPU::get_lcd_control(bus, LCDControl::LCDEnable) {
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bus.set_interrupt_flag(interrupt, true);
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}
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}
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}
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}
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@ -190,7 +194,7 @@ impl PPU {
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}
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}
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fn set_lcd_y(bus: &mut Bus, val: u8) {
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fn set_lcd_y(bus: &mut Bus, val: u8) {
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bus.write(LCD_Y_ADDRESS, val);
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bus.force_write(LCD_Y_ADDRESS, val);
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}
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}
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fn get_scroll_x(bus: &Bus) -> u8 {
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fn get_scroll_x(bus: &Bus) -> u8 {
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@ -216,7 +220,7 @@ impl PPU {
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|
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fn set_lcd_control(bus: &mut Bus, control: LCDControl, val: bool) {
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fn set_lcd_control(bus: &mut Bus, control: LCDControl, val: bool) {
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let mut byte = bus.read(LCD_CONTROL_ADDRESS);
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let mut byte = bus.read(LCD_CONTROL_ADDRESS);
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bus.write(LCD_CONTROL_ADDRESS, control.set(byte, val));
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bus.force_write(LCD_CONTROL_ADDRESS, control.set(byte, val));
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}
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}
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pub fn get_lcd_status(bus: &Bus, status: LCDStatus) -> bool {
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pub fn get_lcd_status(bus: &Bus, status: LCDStatus) -> bool {
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@ -251,7 +255,7 @@ impl PPU {
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LCDStatusModeFlag::TransferringToLCD => (byte & 0b11111100) | 3,
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LCDStatusModeFlag::TransferringToLCD => (byte & 0b11111100) | 3,
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},
|
},
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};
|
};
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bus.write(LCD_STATUS_ADDRESS, byte);
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bus.force_write(LCD_STATUS_ADDRESS, byte);
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}
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}
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|
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fn get_tile_bytes(x: u8, y: u8, tile_number_type: TileNumber, default_method: bool, bus: &Bus) -> (u8, u8) {
|
fn get_tile_bytes(x: u8, y: u8, tile_number_type: TileNumber, default_method: bool, bus: &Bus) -> (u8, u8) {
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@ -277,15 +281,15 @@ impl PPU {
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|||||||
|
|
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fn get_window_pixel(lcd_x: u8, bus: &Bus) -> Option<Pixel> {
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fn get_window_pixel(lcd_x: u8, bus: &Bus) -> Option<Pixel> {
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let lcd_y = PPU::get_lcd_y(bus);
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let lcd_y = PPU::get_lcd_y(bus);
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let window_x = (PPU::get_window_x(bus) as i8 - 7) as u8;
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let window_x = PPU::get_window_x(bus);
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let window_y = PPU::get_window_y(bus);
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let window_y = PPU::get_window_y(bus);
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|
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if !PPU::get_lcd_control(bus, LCDControl::WindowEnable) || window_x != lcd_x || window_y != lcd_y {
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if !PPU::get_lcd_control(bus, LCDControl::WindowEnable) || lcd_x < (window_x.saturating_sub(7)) || window_y != lcd_y {
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return None;
|
return None;
|
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}
|
}
|
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|
|
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let x = lcd_x - window_x;
|
let x = lcd_x.wrapping_sub(window_x.saturating_sub(7));
|
||||||
let y = lcd_y - window_x;
|
let y = lcd_y.wrapping_sub(window_y);
|
||||||
|
|
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let default_mode = PPU::get_lcd_control(bus, LCDControl::TileAddressMode);
|
let default_mode = PPU::get_lcd_control(bus, LCDControl::TileAddressMode);
|
||||||
let tilemap_area = match PPU::get_lcd_control(bus, LCDControl::WindowTileMapAddress) {
|
let tilemap_area = match PPU::get_lcd_control(bus, LCDControl::WindowTileMapAddress) {
|
||||||
@ -300,7 +304,7 @@ impl PPU {
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|||||||
Some(pixels[(x as usize).rem_euclid(8)])
|
Some(pixels[(x as usize).rem_euclid(8)])
|
||||||
}
|
}
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||||||
|
|
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fn draw_line(&mut self, bus: &Bus) {
|
fn draw_line(&mut self, bus: &Bus, frame_buffer: &mut [u8]) {
|
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let palette = bus.read(BACKGROUND_PALETTE_ADDRESS);
|
let palette = bus.read(BACKGROUND_PALETTE_ADDRESS);
|
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let lcd_y = PPU::get_lcd_y(bus);
|
let lcd_y = PPU::get_lcd_y(bus);
|
||||||
if lcd_y as u32 >= LCD_HEIGHT {
|
if lcd_y as u32 >= LCD_HEIGHT {
|
||||||
@ -320,15 +324,36 @@ impl PPU {
|
|||||||
|
|
||||||
let bg_pixels = PPU::get_byte_pixels(tile_byte_1, tile_byte_2, palette);
|
let bg_pixels = PPU::get_byte_pixels(tile_byte_1, tile_byte_2, palette);
|
||||||
|
|
||||||
for pixel in bg_pixels {
|
let idx = (lcd_x as usize + (lcd_y as usize * LCD_WIDTH as usize)) * 4;
|
||||||
let idx = lcd_x as usize + (lcd_y as usize * LCD_WIDTH as usize);
|
let pixel = bg_pixels[x.rem_euclid(8) as usize];
|
||||||
self.rgba_frame[idx] = PPU::get_rgba(pixel);
|
let rgba = PPU::get_rgba(pixel);
|
||||||
|
frame_buffer[idx] = rgba[0];
|
||||||
|
frame_buffer[idx + 1] = rgba[1];
|
||||||
|
frame_buffer[idx + 2] = rgba[2];
|
||||||
if let Some(window_pixel) = PPU::get_window_pixel(lcd_x, bus) {
|
if let Some(window_pixel) = PPU::get_window_pixel(lcd_x, bus) {
|
||||||
self.rgba_frame[idx] = PPU::get_rgba(window_pixel);
|
let rgba = PPU::get_rgba(pixel);
|
||||||
|
frame_buffer[idx] = rgba[0];
|
||||||
|
frame_buffer[idx + 1] = rgba[1];
|
||||||
|
frame_buffer[idx + 2] = rgba[2];
|
||||||
}
|
}
|
||||||
|
|
||||||
lcd_x += 1;
|
lcd_x += 1;
|
||||||
|
|
||||||
|
/* for pixel in bg_pixels {
|
||||||
|
let idx = (lcd_x as usize + (lcd_y as usize * LCD_WIDTH as usize)) * 4;
|
||||||
|
let rgba = PPU::get_rgba(pixel);
|
||||||
|
frame_buffer[idx] = rgba[0];
|
||||||
|
frame_buffer[idx + 1] = rgba[1];
|
||||||
|
frame_buffer[idx + 2] = rgba[2];
|
||||||
|
if let Some(window_pixel) = PPU::get_window_pixel(lcd_x, bus) {
|
||||||
|
let rgba = PPU::get_rgba(pixel);
|
||||||
|
frame_buffer[idx] = rgba[0];
|
||||||
|
frame_buffer[idx + 1] = rgba[1];
|
||||||
|
frame_buffer[idx + 2] = rgba[2];
|
||||||
}
|
}
|
||||||
|
|
||||||
|
lcd_x += 1;
|
||||||
|
} */
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
@ -373,8 +398,4 @@ impl PPU {
|
|||||||
PPU::get_pixel(PPU::get_palette((byte1 & 0b01) | ((byte2 << 1) & 0b10), palette)),
|
PPU::get_pixel(PPU::get_palette((byte1 & 0b01) | ((byte2 << 1) & 0b10), palette)),
|
||||||
]
|
]
|
||||||
}
|
}
|
||||||
|
|
||||||
pub fn get_rgba_frame(&self) -> &[[u8; 4]; FRAME_BUFFER_LENGTH as usize] {
|
|
||||||
&self.rgba_frame
|
|
||||||
}
|
|
||||||
}
|
}
|
||||||
|
@ -64,10 +64,10 @@ pub fn start_eventloop() {
|
|||||||
*control_flow = ControlFlow::Exit
|
*control_flow = ControlFlow::Exit
|
||||||
},
|
},
|
||||||
Event::MainEventsCleared => {
|
Event::MainEventsCleared => {
|
||||||
emulator.run(Cycles(70224));
|
emulator.run(Cycles(70224), pixels.get_frame());
|
||||||
emulator.draw(pixels.get_frame());
|
// emulator.draw(pixels.get_frame());
|
||||||
|
|
||||||
// thread::sleep(time::Duration::from_millis(14));
|
// thread::sleep(time::Duration::from_millis(1000));
|
||||||
window.request_redraw();
|
window.request_redraw();
|
||||||
},
|
},
|
||||||
Event::RedrawRequested(_) => {
|
Event::RedrawRequested(_) => {
|
||||||
|
Loading…
Reference in New Issue
Block a user