feat: implement MBC1
This commit is contained in:
parent
96bfc43312
commit
b5d3a2c675
22
src/bus.rs
22
src/bus.rs
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@ -82,10 +82,11 @@ impl Bus {
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// 8KB Video RAM
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self.ppu.vram[(addr - 0x8000) as usize]
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}
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0xA000..=0xBFFF => {
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0xA000..=0xBFFF => match &self.cartridge {
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// 8KB External RAM
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unimplemented!("Unable to read {:#06X} in Extermal RAM", addr);
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}
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Some(cart) => cart.read_byte(addr),
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None => panic!("Tried to read from the external RAM of a non-existant cartridge"),
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},
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0xC000..=0xCFFF => {
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// 4KB Work RAM Bank 0
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self.wram.read_byte((addr - 0xC000) as usize)
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@ -140,11 +141,17 @@ impl Bus {
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match addr {
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0x0000..=0x3FFF => {
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// 16KB ROM bank 00
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panic!("Tried to write to {:#06X} in ROM Bank 00", addr);
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match self.cartridge.as_mut() {
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Some(cart) => cart.write_byte(addr, byte),
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None => panic!("Tried to write into non-existent Cartridge"),
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}
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}
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0x4000..=0x7FFF => {
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// 16KB ROM Bank 01 -> NN (switchable via MB)
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panic!("Tried to write to {:#06X} in ROM Bank 01 -> NN", addr);
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match self.cartridge.as_mut() {
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Some(cart) => cart.write_byte(addr, byte),
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None => panic!("Tried to write into non-existent Cartridge"),
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}
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}
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0x8000..=0x9FFF => {
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// 8KB Video RAM
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@ -152,7 +159,10 @@ impl Bus {
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}
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0xA000..=0xBFFF => {
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// 8KB External RAM
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unimplemented!("Unable to write to {:#06X} in Extermal RAM", addr);
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match self.cartridge.as_mut() {
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Some(cart) => cart.write_byte(addr, byte),
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None => panic!("Tried to write into non-existent Cartridge"),
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}
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}
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0xC000..=0xCFFF => {
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// 4KB Work RAM Bank 0
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344
src/cartridge.rs
344
src/cartridge.rs
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@ -2,9 +2,10 @@ use std::fs::File;
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use std::io::{self, Read};
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use std::path::Path;
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#[derive(Debug, Clone)]
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#[derive(Debug, Clone, Default)]
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pub struct Cartridge {
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memory: Vec<u8>,
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mbc: Box<dyn MBC>,
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}
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impl Cartridge {
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@ -13,14 +14,349 @@ impl Cartridge {
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let mut rom = File::open(path)?;
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rom.read_to_end(&mut memory)?;
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Ok(Self { memory })
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Ok(Self {
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mbc: Self::detect_mbc(&memory),
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memory,
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})
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}
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fn detect_mbc(memory: &[u8]) -> Box<dyn MBC> {
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let ram_size = Self::find_ram_size(&memory);
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let bank_count = Self::find_bank_count(&memory);
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let mbc_kind = Self::find_mbc(&memory);
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let ram_byte_count = ram_size.to_byte_count();
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let mbc = match mbc_kind {
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MBCKind::None => todo!("Handle no MBC Situation"),
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MBCKind::MBC1 => MBC1 {
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kind: mbc_kind,
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ram_size,
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ram: vec![0; ram_byte_count as usize].into_boxed_slice(),
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bank_count,
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..Default::default()
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},
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MBCKind::MBC5 => todo!("Implement MBC5"),
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};
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Box::new(mbc)
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}
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fn find_ram_size(memory: &[u8]) -> RAMSize {
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let id = memory[0x0149];
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id.into()
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}
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fn find_bank_count(memory: &[u8]) -> BankCount {
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let id = memory[0x0148];
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id.into()
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}
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fn find_mbc(memory: &[u8]) -> MBCKind {
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let id = memory[0x0147];
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// TODO: Refactor this to match the other enums in this module
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match id {
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0x00 => MBCKind::None,
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0x01 => MBCKind::MBC1,
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0x19 => MBCKind::MBC5,
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_ => panic!("Cartridge uses an unknown Memory Bank Controller"),
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}
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}
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}
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impl Cartridge {
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pub fn read_byte(&self, addr: u16) -> u8 {
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self.memory[addr as usize]
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match self.mbc.handle_read(addr) {
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MBCResult::Address(addr) => self.memory[addr as usize],
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MBCResult::RamValue(byte) => byte,
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}
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}
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pub fn write_byte(&mut self, addr: u16, byte: u8) {
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self.mbc.handle_write(addr, byte);
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}
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pub fn read_word(&self, addr: u16) -> u16 {
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(self.memory[(addr + 1) as usize] as u16) << 8 | self.memory[addr as usize] as u16
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(self.read_byte(addr + 1) as u16) << 8 | self.read_byte(addr) as u16
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}
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pub fn write_word(&mut self, addr: u16, word: u16) {
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self.write_byte(addr + 1, (word >> 8) as u8);
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self.write_byte(addr, (word & 0x00FF) as u8);
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}
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}
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#[derive(Debug, Clone, Default)]
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struct MBC1 {
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pub kind: MBCKind,
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current_rom_bank: u8, // 5-bit Number
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current_ram_bank: u8, // 2-bit number
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mode: bool,
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ram_size: RAMSize,
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ram: Box<[u8]>,
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bank_count: BankCount,
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ram_enabled: bool,
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}
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impl MBC1 {
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fn calc_zero_bank_number(&self) -> u8 {
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match self.bank_count {
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BankCount::ThirtyTwo | BankCount::Sixteen | BankCount::Eight | BankCount::Four => 0,
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BankCount::SixtyFour => (self.current_ram_bank & 0x01) << 5,
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BankCount::OneHundredTwentyEight => self.current_ram_bank << 5,
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_ => unreachable!("{#:?} is not a valid ROM Bank Number for MBC1"),
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}
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}
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fn calc_high_bank_number(&self) -> u8 {
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match self.bank_count {
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BankCount::ThirtyTwo | BankCount::Sixteen | BankCount::Eight | BankCount::Four => {
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self.apply_rom_size_bitmask(self.current_rom_bank)
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}
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BankCount::SixtyFour => {
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let mut num = self.apply_rom_size_bitmask(self.current_rom_bank);
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num &= !(0x01 << 5);
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num | ((self.current_ram_bank & 0x01) << 5)
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}
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BankCount::OneHundredTwentyEight => {
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let mut num = self.apply_rom_size_bitmask(self.current_rom_bank);
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num &= !(0x03 << 5);
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num | ((self.current_ram_bank) << 5)
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}
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_ => unreachable!("{#:?} is not a valid ROM Bank Number for MBC1"),
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}
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}
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fn apply_rom_size_bitmask(&self, byte: u8) -> u8 {
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match self.bank_count {
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BankCount::Four => byte & 0b00000011,
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BankCount::Eight => byte & 0b00000111,
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BankCount::Sixteen => byte & 0b00001111,
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BankCount::ThirtyTwo => byte & 0b00011111,
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BankCount::SixtyFour => byte & 0b00011111,
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BankCount::OneHundredTwentyEight => byte & 0b00011111,
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_ => unreachable!("{#:?} is not a valid ROM Bank Number for MBC1"),
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}
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}
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}
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impl MBC for MBC1 {
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fn handle_read(&self, addr: u16) -> MBCResult {
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match addr {
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0x0000..=0x3FFF => {
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if self.mode {
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let zero_bank_number = self.calc_zero_bank_number() as u16;
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MBCResult::Address(0x4000 * zero_bank_number + addr)
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} else {
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MBCResult::Address(addr)
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}
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}
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0x4000..=0x7FFF => {
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let high_bank_number = self.calc_high_bank_number() as u16;
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MBCResult::Address(0x4000 * high_bank_number * (addr - 0x4000))
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}
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0xA000..=0xBFFF => {
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if self.ram_enabled {
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let ram_addr = match self.ram_size {
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RAMSize::_2KB | RAMSize::_8KB => {
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(addr as u32 - 0xA000) % self.ram_size.to_byte_count()
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}
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RAMSize::_32KB => {
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if self.mode {
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0x2000 * self.current_ram_bank as u32 + (addr as u32 - 0xA000)
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} else {
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addr as u32 - 0xA000
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}
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}
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_ => unreachable!(""),
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};
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MBCResult::RamValue(self.ram[ram_addr as usize])
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} else {
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MBCResult::Address(0x00FF)
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}
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}
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_ => unimplemented!(),
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}
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}
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fn handle_write(&mut self, addr: u16, byte: u8) {
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match addr {
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0x0000..=0x1FFF => self.ram_enabled = (byte & 0x0F) == 0x0A,
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0x2000..=0x3FFF => {
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self.current_rom_bank = self.apply_rom_size_bitmask(byte);
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if self.current_rom_bank == 0 {
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self.current_rom_bank = 1;
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}
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}
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0x4000..=0x5FFF => self.current_ram_bank = byte & 0x03,
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0x6000..=0x7FFF => self.mode = byte >> 7 == 0x01,
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0xA000..=0xBFFF => {
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if self.ram_enabled {
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let ram_addr = match self.ram_size {
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RAMSize::_2KB | RAMSize::_8KB => {
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(addr as u32 - 0xA000) % self.ram_size.to_byte_count()
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}
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RAMSize::_32KB => {
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if self.mode {
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0x2000 * (self.current_ram_bank as u32) + (addr as u32 - 0xA000)
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} else {
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addr as u32 - 0xA000
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}
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}
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_ => unreachable!("RAMSize can not be greater than 32KB on MBC1"),
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};
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self.ram[ram_addr as usize] = byte;
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}
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}
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_ => unreachable!("{:#06X} should not be handled by MBC1", addr),
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}
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}
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}
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trait MBC {
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fn handle_read(&self, addr: u16) -> MBCResult;
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fn handle_write(&mut self, addr: u16, byte: u8);
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}
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enum MBCResult {
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Address(u16),
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RamValue(u8),
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}
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#[derive(Debug, Clone, Copy)]
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enum MBCKind {
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None,
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MBC1,
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MBC5,
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}
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impl Default for MBCKind {
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fn default() -> Self {
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Self::None
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}
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}
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#[derive(Debug, Clone, Copy)]
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enum RAMSize {
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None = 0,
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_2KB = 1,
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_8KB = 2,
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_32KB = 3, // Split into 4 RAM banks
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_128KB = 4, // Split into 16 RAM banks
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_64KB = 5, // Split into 8 RAm Banks
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}
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impl RAMSize {
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pub fn to_byte_count(&self) -> u32 {
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match *self {
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RAMSize::None => 0,
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RAMSize::_2KB => 2_048,
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RAMSize::_8KB => 8_192,
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RAMSize::_32KB => 32_768,
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RAMSize::_128KB => 131_072,
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RAMSize::_64KB => 65_536,
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}
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}
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}
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impl Default for RAMSize {
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fn default() -> Self {
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Self::None
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}
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}
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impl From<u8> for RAMSize {
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fn from(byte: u8) -> Self {
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match byte {
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0x00 => Self::None,
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0x01 => Self::_2KB,
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0x02 => Self::_8KB,
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0x03 => Self::_32KB,
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0x04 => Self::_64KB,
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0x05 => Self::_128KB,
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_ => unreachable!("{:#04X} is an invalid value for RAMSize"),
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}
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}
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}
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#[derive(Debug, Clone, Copy)]
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enum BankCount {
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None = 0, // 32KB
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Four = 1, // 64KB
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Eight = 2, // 128KB
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Sixteen = 3, // 256KB
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ThirtyTwo = 4, // 512KB
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SixtyFour = 5, // 1MB
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OneHundredTwentyEight = 6, // 2MB
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TwoHundredFiftySix = 7, // 4MB
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FiveHundredTwelve = 8, // 8MB
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SeventyTwo = 0x52, // 1.1MB
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Eighty = 0x53, // 1.2MB
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NinetySix = 0x54, // 1.5MB
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}
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impl Default for BankCount {
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fn default() -> Self {
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Self::None
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}
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}
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impl BankCount {
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// https://hacktix.github.io/GBEDG/mbcs/#rom-size
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pub fn to_byte_count(&self) -> u32 {
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match *self {
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BankCount::None => 32_768,
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BankCount::Four => 65_536,
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BankCount::Eight => 131_072,
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BankCount::Sixteen => 262_144,
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BankCount::ThirtyTwo => 524_288,
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BankCount::SixtyFour => 1_048_576,
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BankCount::OneHundredTwentyEight => 2_097_152,
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BankCount::TwoHundredFiftySix => 4_194_304,
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BankCount::FiveHundredTwelve => 8_388_608,
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BankCount::SeventyTwo => 1_179_648,
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BankCount::Eighty => 1_310_720,
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BankCount::NinetySix => 1_572_864,
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}
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}
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}
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impl From<u8> for BankCount {
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fn from(byte: u8) -> Self {
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match byte {
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0x00 => Self::None,
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0x01 => Self::Four,
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0x02 => Self::Eight,
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0x03 => Self::Sixteen,
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0x04 => Self::ThirtyTwo,
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0x05 => Self::SixtyFour,
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0x06 => Self::OneHundredTwentyEight,
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0x07 => Self::TwoHundredFiftySix,
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0x08 => Self::FiveHundredTwelve,
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0x52 => Self::SeventyTwo,
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0x53 => Self::Eighty,
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0x54 => Self::NinetySix,
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_ => unreachable!("{:#04X} is an invalid value for BankCount"),
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}
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}
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}
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impl std::fmt::Debug for Box<dyn MBC> {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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todo!()
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}
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}
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impl std::clone::Clone for Box<dyn MBC> {
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fn clone(&self) -> Self {
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todo!()
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}
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}
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impl std::default::Default for Box<dyn MBC> {
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fn default() -> Self {
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todo!()
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}
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}
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21
src/cpu.rs
21
src/cpu.rs
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@ -1,7 +1,10 @@
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use super::bus::Bus;
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use super::instruction::{Cycles, Instruction};
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use super::ppu::PPU;
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use std::fmt::{Display, Formatter, Result as FmtResult};
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use std::{
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fmt::{Display, Formatter, Result as FmtResult},
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io::Write,
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};
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#[derive(Debug, Clone, Default)]
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pub struct Cpu {
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@ -75,13 +78,21 @@ impl Cpu {
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let opcode = self.fetch();
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let instr = self.decode(opcode);
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println!(
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"Addr: {:#06X} | Opcode: {:#04X} | Instr: {:X?}",
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self.reg.pc, opcode, instr
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);
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// println!(
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// "Addr: {:#06X} | Opcode: {:#04X} | Instr: {:X?}",
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// self.reg.pc, opcode, instr
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// );
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let cycles = self.execute(instr);
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if self.bus.read_byte(0xFF02) == 0x81 {
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let c = self.bus.read_byte(0xFF01) as char;
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self.bus.write_byte(0xFF02, 0x00);
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print!("{}", c);
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std::io::stdout().flush().unwrap();
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}
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self.bus.step(cycles);
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cycles
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