st instructions

This commit is contained in:
2023-12-30 09:57:02 -05:00
parent 0e8775ad6f
commit a68ca8d574
4 changed files with 252 additions and 0 deletions
@@ -69,6 +69,9 @@ pub mod sec;
pub mod sed;
pub mod sei;
pub mod sep;
pub mod sta;
pub mod stx;
pub mod sty;
pub mod bit_common;
pub mod dec_common;
pub mod decoder_common;
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use crate::cpu::cycles;
use crate::cpu::{bus::Bus, registers::Registers};
use crate::utils::addressing::AddressingMode;
use super::{CPUInstruction, Decode, write_8bit_to_address, write_16bit_to_address};
use super::decoder_common;
static INSTR_NAME: &'static str = "STA";
pub struct STA8 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STA8 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_8bit_to_address(registers, bus, self.addressing_mode, registers.a as u8);
let (bytes, cycles) = cycles::increment_cycles_sta(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STA8 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(false, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
pub struct STA16 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STA16 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_16bit_to_address(registers, bus, self.addressing_mode, registers.a);
let (bytes, cycles) = cycles::increment_cycles_sta(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STA16 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(true, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
#[cfg(test)]
mod cpu_instructions_tests {
use super::*;
#[test]
fn test_8bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.a = 0x12;
registers.set_16bit_mode(false);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STA8{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
#[test]
fn test_16bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.a = 0x1234;
registers.set_16bit_mode(true);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STA16{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x34);
assert_eq!(bus.read(0x0004), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
}
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use crate::cpu::cycles;
use crate::cpu::{bus::Bus, registers::Registers};
use crate::utils::addressing::AddressingMode;
use super::{CPUInstruction, Decode, write_8bit_to_address, write_16bit_to_address};
use super::decoder_common;
static INSTR_NAME: &'static str = "STX";
pub struct STX8 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STX8 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_8bit_to_address(registers, bus, self.addressing_mode, registers.x as u8);
let (bytes, cycles) = cycles::increment_cycles_st_index(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STX8 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(false, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
pub struct STX16 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STX16 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_16bit_to_address(registers, bus, self.addressing_mode, registers.x);
let (bytes, cycles) = cycles::increment_cycles_st_index(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STX16 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(true, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
#[cfg(test)]
mod cpu_instructions_tests {
use super::*;
#[test]
fn test_8bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.x = 0x12;
registers.set_16bit_mode(false);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STX8{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
#[test]
fn test_16bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.x = 0x1234;
registers.set_16bit_mode(true);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STX16{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x34);
assert_eq!(bus.read(0x0004), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
}
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use crate::cpu::cycles;
use crate::cpu::{bus::Bus, registers::Registers};
use crate::utils::addressing::AddressingMode;
use super::{CPUInstruction, Decode, write_8bit_to_address, write_16bit_to_address};
use super::decoder_common;
static INSTR_NAME: &'static str = "STY";
pub struct STY8 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STY8 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_8bit_to_address(registers, bus, self.addressing_mode, registers.y as u8);
let (bytes, cycles) = cycles::increment_cycles_st_index(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STY8 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(false, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
pub struct STY16 {
addressing_mode: AddressingMode,
}
impl CPUInstruction for STY16 {
fn execute(&self, registers: &mut Registers, bus: &mut Bus) {
write_16bit_to_address(registers, bus, self.addressing_mode, registers.y);
let (bytes, cycles) = cycles::increment_cycles_st_index(registers, self.addressing_mode);
registers.increment_pc(bytes); registers.cycles += cycles;
}
}
impl Decode for STY16 {
fn mnemonic(&self, registers: &Registers, bus: &Bus, opcode: u8) -> String {
decoder_common::mnemonic_arithmetic(true, opcode, INSTR_NAME, self.addressing_mode, registers, bus)
}
}
#[cfg(test)]
mod cpu_instructions_tests {
use super::*;
#[test]
fn test_8bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.y = 0x12;
registers.set_16bit_mode(false);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STY8{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
#[test]
fn test_16bit() {
let mut registers = Registers::new();
let mut bus = Bus::new();
registers.pc = 0x0000;
registers.y = 0x1234;
registers.set_16bit_mode(true);
bus.write(0x0002, 0x00);
bus.write(0x0001, 0x03);
let instruction = STY16{addressing_mode: AddressingMode::Absolute};
instruction.execute(&mut registers, &mut bus);
assert_eq!(bus.read(0x0003), 0x34);
assert_eq!(bus.read(0x0004), 0x12);
assert_eq!(registers.pc, 0x0003);
assert_eq!(registers.cycles, 4);
}
}