cpu uses bitflags
This commit is contained in:
1
Cargo.lock
generated
1
Cargo.lock
generated
@@ -554,6 +554,7 @@ source = "registry+https://github.com/rust-lang/crates.io-index"
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name = "jane"
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version = "0.1.0"
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dependencies = [
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"bitflags 1.2.1 (registry+https://github.com/rust-lang/crates.io-index)",
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"failure 0.1.6 (registry+https://github.com/rust-lang/crates.io-index)",
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"fps_counter 1.0.0 (registry+https://github.com/rust-lang/crates.io-index)",
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"gfx_core 0.9.2 (registry+https://github.com/rust-lang/crates.io-index)",
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@@ -21,4 +21,5 @@ gfx_device_gl = "0.16.*"
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gfx_glyph = "0.16.*"
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image = "0.22.*"
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rand = "0.7.2"
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fps_counter = "1.0.0"
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fps_counter = "1.0.0"
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bitflags = "1.2.1"
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17
src/main.rs
17
src/main.rs
@@ -1,6 +1,7 @@
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#[macro_use] extern crate log;
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#[macro_use] extern crate failure;
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#[macro_use] extern crate lazy_static;
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#[macro_use] extern crate bitflags;
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extern crate image;
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extern crate simple_logger;
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extern crate phf;
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@@ -36,7 +37,7 @@ lazy_static! {
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}
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fn main() -> Result<(), Error> {
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simple_logger::init_with_level(Level::Info).unwrap();
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simple_logger::init_with_level(Level::Debug).unwrap();
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let args: Vec<String> = env::args().collect();
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if args.len() < 2 {
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bail!("No cartridge supplied. Usage: ./jane cartridge.nes");
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@@ -172,7 +173,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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});
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position.0 += 70.0;
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let color = if cpu.get_flag(NEGATIVE) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::NEGATIVE) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "N",
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scale: *FT_SCALE,
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@@ -181,7 +182,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(OVERFLOW) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::OVERFLOW) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "V",
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scale: *FT_SCALE,
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@@ -199,7 +200,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(BREAK) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::BREAK) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "B",
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scale: *FT_SCALE,
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@@ -208,7 +209,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(DECIMAL) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::DECIMAL) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "D",
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scale: *FT_SCALE,
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@@ -217,7 +218,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(IRQ) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::IRQ) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "I",
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scale: *FT_SCALE,
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@@ -226,7 +227,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(ZERO) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::ZERO) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "Z",
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scale: *FT_SCALE,
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@@ -235,7 +236,7 @@ fn render_cpu(glyphs: &mut GlyphBrush<Resources, Factory>, cpu: &CPU, offset: [f
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..Section::default()
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});
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position.0 += 16.0;
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let color = if cpu.get_flag(CARRY) == 1 { FT_COLOR_GREEN } else { FT_COLOR_RED };
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let color = if cpu.is_flag_set(Flags::CARRY) { FT_COLOR_GREEN } else { FT_COLOR_RED };
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glyphs.queue(Section {
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text: "C",
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scale: *FT_SCALE,
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132
src/nes/cpu.rs
132
src/nes/cpu.rs
@@ -13,15 +13,19 @@ pub const STACK_BASE_ADDR: Addr = 0x0100;
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pub const LO: Addr = 0x00FF;
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pub const HI: Addr = 0xFF00;
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// CPU flags
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pub const CARRY: Byte = 1 << 0; // 0000 0001 0x01
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pub const ZERO: Byte = 1 << 1; // 0000 0010 0x02
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pub const IRQ: Byte = 1 << 2; // 0000 0100 0x04
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pub const DECIMAL: Byte = 1 << 3; // 0000 1000 0x08
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pub const BREAK: Byte = 1 << 4; // 0001 0000 0x10
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pub const UNUSED: Byte = 1 << 5; // 0010 0000 0x20
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pub const OVERFLOW: Byte = 1 << 6; // 0100 0000 0x40
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pub const NEGATIVE: Byte = 1 << 7; // 1000 0000 0x80
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// CPU status register flags
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bitflags! {
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pub struct Flags: Byte {
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const CARRY = 1 << 0; // 0000 0001 0x01
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const ZERO = 1 << 1; // 0000 0010 0x02
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const IRQ = 1 << 2; // 0000 0100 0x04
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const DECIMAL = 1 << 3; // 0000 1000 0x08
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const BREAK = 1 << 4; // 0001 0000 0x10
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const UNUSED = 1 << 5; // 0010 0000 0x20
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const OVERFLOW = 1 << 6; // 0100 0000 0x40
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const NEGATIVE = 1 << 7; // 1000 0000 0x80
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}
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}
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// The NES CPU registers
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pub struct Registers {
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@@ -30,7 +34,7 @@ pub struct Registers {
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pub y: Byte,
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pub sp: Byte,
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pub pc: Addr,
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pub flags: Byte
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pub flags: Flags
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}
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impl Registers {
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@@ -41,7 +45,7 @@ impl Registers {
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y: 0,
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sp: 0x00FD,
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pc: 0x0000,
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flags: 0x24,
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flags: Flags::from_bits(0x24).unwrap(),
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}
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}
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}
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@@ -49,7 +53,7 @@ impl Registers {
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impl Debug for Registers {
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fn fmt(&self, f: &mut Formatter) -> Result {
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write!(f, "{{ a: {:#x}, x: {:#x}, y: {:#x}, sp: {:#x}, pc: {:#x}, flags: {:#010b} }}",
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self.a, self.x, self.y, self.sp, self.pc, self.flags)
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self.a, self.x, self.y, self.sp, self.pc, self.flags.bits)
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}
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}
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@@ -111,7 +115,7 @@ impl CPU {
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pub fn reset<T: Memory>(&mut self, mem: &T) {
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// reset registers
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self.regs.sp = self.regs.sp - 3;
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self.set_flag(IRQ, true);
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self.set_flag(Flags::IRQ, true);
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self.find_pc_addr(mem);
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@@ -155,7 +159,7 @@ impl CPU {
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}
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// Set the flag with the corresponding mask
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fn set_flag(&mut self, flag: Byte, val: bool) {
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fn set_flag(&mut self, flag: Flags, val: bool) {
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if val {
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self.regs.flags |= flag;
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} else {
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@@ -164,18 +168,22 @@ impl CPU {
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}
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fn set_flag_nz(&mut self, val: Byte) {
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self.set_flag(ZERO, val == 0);
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self.set_flag(NEGATIVE, (val & NEGATIVE) > 0);
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self.set_flag(Flags::ZERO, val == 0);
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self.set_flag(Flags::NEGATIVE, (val & Flags::NEGATIVE.bits) > 0);
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}
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pub fn get_flag(&self, flag: Byte) -> Byte {
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if self.regs.flags & flag > 0 {
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pub fn get_flag(&self, flag: Flags) -> Byte {
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if self.is_flag_set(flag) {
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1
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} else {
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0
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}
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}
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pub fn is_flag_set(&self, flag: Flags) -> bool {
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self.regs.flags.contains(flag)
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}
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// Jump to address
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fn jump(&mut self, addr: Addr) {
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self.regs.pc = addr;
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@@ -412,9 +420,9 @@ impl CPU {
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// Negative bit is set
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fn op_ADC<T: Memory>(&mut self, mem: &T, addr: Word) -> bool {
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let val = self.readb(mem, addr) as Word;
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let tmp = self.regs.a as Word + val + self.get_flag(CARRY) as Word;
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let tmp = self.regs.a as Word + val + self.get_flag(Flags::CARRY) as Word;
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self.set_flag(CARRY, tmp > 255);
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self.set_flag(Flags::CARRY, tmp > 255);
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self.set_flag_nz(tmp as Byte);
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// There are two cases where the overflow bit should be set. if we look
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@@ -422,7 +430,7 @@ impl CPU {
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// expression selects for both of them
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let is_overflown = (!(self.regs.a as Word ^ val) &
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(self.regs.a as Word ^ tmp)) & 0x0080 != 0;
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self.set_flag(OVERFLOW, is_overflown);
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self.set_flag(Flags::OVERFLOW, is_overflown);
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self.regs.a = tmp as Byte;
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true
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@@ -459,7 +467,7 @@ impl CPU {
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self.readb(mem, addr)
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};
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let shifted = (val << 1) as Byte;
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self.set_flag(CARRY, (val & 0b10000000) > 0);
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self.set_flag(Flags::CARRY, (val & 0b10000000) > 0);
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if *addr_mode == AddrMode::IMP {
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self.regs.a = shifted;
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@@ -476,7 +484,7 @@ impl CPU {
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// If the carry flag is clear then add the relative displacement to
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// the program counter to cause a branch to a new location.
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fn op_BCC(&mut self, addr: Addr) -> bool {
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if self.get_flag(CARRY) == 0 {
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if !self.is_flag_set(Flags::CARRY) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -488,7 +496,7 @@ impl CPU {
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// If the carry flag is set then add the relative displacement to the
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// program counter to cause a branch to a new location.
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fn op_BCS(&mut self, addr: Addr) -> bool {
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if self.get_flag(CARRY) == 1 {
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if self.is_flag_set(Flags::CARRY) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -500,7 +508,7 @@ impl CPU {
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// If the zero flag is set then add the relative displacement to
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// the program counter to cause a branch to a new location.
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fn op_BEQ(&mut self, addr: Addr) -> bool {
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if self.get_flag(ZERO) == 1 {
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if self.is_flag_set(Flags::ZERO) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -514,9 +522,9 @@ impl CPU {
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// the zeroflag is set to the result of operand AND accumulator.
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fn op_BIT<T: Memory>(&mut self, mem: &T, addr: Word) -> bool {
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let val = self.readb(mem, addr);
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self.set_flag(OVERFLOW, (val & OVERFLOW) > 1);
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self.set_flag(NEGATIVE, (val & NEGATIVE) > 1);
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self.set_flag(ZERO, (val & self.regs.a) == 0);
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self.set_flag(Flags::OVERFLOW, (val & Flags::OVERFLOW.bits) > 1);
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self.set_flag(Flags::NEGATIVE, (val & Flags::NEGATIVE.bits) > 1);
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self.set_flag(Flags::ZERO, (val & self.regs.a) == 0);
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false
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}
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@@ -524,7 +532,7 @@ impl CPU {
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// If the negative flag is set then add the relative displacement to the
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// program counter to cause a branch to a new location.
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fn op_BMI(&mut self, addr: Addr) -> bool {
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if self.get_flag(NEGATIVE) == 1 {
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if self.is_flag_set(Flags::NEGATIVE) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -536,7 +544,7 @@ impl CPU {
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// If the zero flag is clear then add the relative displacement to the
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// program counter to cause a branch to a new location.
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fn op_BNE(&mut self, addr: Addr) -> bool {
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if self.get_flag(ZERO) == 0 {
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if !self.is_flag_set(Flags::ZERO) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -548,7 +556,7 @@ impl CPU {
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// If the negative flag is clear then add the relative displacement to
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// the program counter to cause a branch to a new location.
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fn op_BPL(&mut self, addr: Addr) -> bool {
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if self.get_flag(NEGATIVE) == 0 {
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if !self.is_flag_set(Flags::NEGATIVE) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -563,16 +571,16 @@ impl CPU {
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// the break flag in the status set to one.
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fn op_BRK<T: Memory>(&mut self, mem: &mut T) -> bool {
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self.regs.pc += 1;
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self.set_flag(IRQ, true);
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self.set_flag(Flags::IRQ, true);
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// Push pc to stack
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self.pushb_sp(mem, (self.regs.pc >> 8) as Byte);
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self.pushb_sp(mem, self.regs.pc as Byte);
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// Push flags to stack
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self.set_flag(BREAK, true);
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self.pushb_sp(mem, self.regs.flags);
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self.set_flag(BREAK, false);
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self.set_flag(Flags::BREAK, true);
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self.pushb_sp(mem, self.regs.flags.bits);
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self.set_flag(Flags::BREAK, false);
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// set PC to IRQ vector
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self.regs.pc = self.readw(mem, 0xFFFE);
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@@ -583,7 +591,7 @@ impl CPU {
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// If the overflow flag is clear then add the relative displacement to
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// the program counter to cause a branch to a new location.
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fn op_BVC(&mut self, addr: Addr) -> bool {
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if self.get_flag(OVERFLOW) == 0 {
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if !self.is_flag_set(Flags::OVERFLOW) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -595,7 +603,7 @@ impl CPU {
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// If the overflow flag is set then add the relative displacement to the
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// program counter to cause a branch to a new location.
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fn op_BVS(&mut self, addr: Addr) -> bool {
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if self.get_flag(OVERFLOW) == 1 {
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if self.is_flag_set(Flags::OVERFLOW) {
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self.jump(addr);
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self.cycles_ahead += 1;
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return true
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@@ -605,26 +613,26 @@ impl CPU {
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// Clear carry flag
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fn op_CLC(&mut self) -> bool {
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self.set_flag(CARRY, false);
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self.set_flag(Flags::CARRY, false);
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false
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}
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// clear decimal flag
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fn op_CLD(&mut self) -> bool {
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self.set_flag(DECIMAL, false);
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self.set_flag(Flags::DECIMAL, false);
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false
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}
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// clear IRQ
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fn op_CLI(&mut self) -> bool {
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self.set_flag(IRQ, false);
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self.set_flag(Flags::IRQ, false);
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false
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}
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// clear Overflow
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fn op_CLV(&mut self) -> bool {
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self.set_flag(OVERFLOW, false);
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self.set_flag(Flags::OVERFLOW, false);
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false
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}
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@@ -636,7 +644,7 @@ impl CPU {
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let val = self.readb(mem, addr);
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let tmp = (self.regs.a as Word).wrapping_sub(val as Word);
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self.set_flag(CARRY, self.regs.a >= val);
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self.set_flag(Flags::CARRY, self.regs.a >= val);
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self.set_flag_nz(tmp as Byte);
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true
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}
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@@ -646,7 +654,7 @@ impl CPU {
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let val = self.readb(mem, addr);
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let tmp = (self.regs.x as Word).wrapping_sub(val as Word);
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self.set_flag(CARRY, self.regs.x >= val);
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self.set_flag(Flags::CARRY, self.regs.x >= val);
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self.set_flag_nz(tmp as Byte);
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true
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}
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@@ -656,7 +664,7 @@ impl CPU {
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let val = self.readb(mem, addr);
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let tmp = (self.regs.y as Word).wrapping_sub(val as Word);
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self.set_flag(CARRY, self.regs.y >= val);
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self.set_flag(Flags::CARRY, self.regs.y >= val);
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self.set_flag_nz(tmp as Byte);
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true
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}
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@@ -826,7 +834,7 @@ impl CPU {
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self.readb(mem, addr) as Word
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};
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self.set_flag(CARRY, (val & 0b00000001) != 0);
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self.set_flag(Flags::CARRY, (val & 0b00000001) != 0);
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let shifted = (val >> 1) as Byte;
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self.set_flag_nz(shifted);
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@@ -866,9 +874,9 @@ impl CPU {
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// PHP - Push Processor Status
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||||
// Pushes a copy of the status flags on to the stack.
|
||||
fn op_PHP<T: Memory>(&mut self, mem: &mut T) -> bool {
|
||||
let tmp = self.regs.flags | BREAK;
|
||||
self.pushb_sp(mem, tmp);
|
||||
self.set_flag(BREAK, false);
|
||||
let tmp = self.regs.flags | Flags::BREAK;
|
||||
self.pushb_sp(mem, tmp.bits);
|
||||
self.set_flag(Flags::BREAK, false);
|
||||
false
|
||||
}
|
||||
|
||||
@@ -883,11 +891,11 @@ impl CPU {
|
||||
// Pulls an 8 bit value from the stack and into the processor flags. The
|
||||
// flags will take on new states as determined by the value pulled.
|
||||
fn op_PLP<T: Memory>(&mut self, mem: &T) -> bool {
|
||||
self.regs.flags = self.popb_sp(mem);
|
||||
self.regs.flags = Flags::from_bits(self.popb_sp(mem)).unwrap();
|
||||
|
||||
// Im not sure why this is set to false and stack value is not used
|
||||
// but that's how the nestest.log shows it..
|
||||
self.set_flag(BREAK, false);
|
||||
self.set_flag(Flags::BREAK, false);
|
||||
false
|
||||
}
|
||||
|
||||
@@ -902,9 +910,9 @@ impl CPU {
|
||||
} else {
|
||||
self.readb(mem, addr) as Word
|
||||
};
|
||||
let shifted = (val << 1) as Byte | self.get_flag(CARRY);
|
||||
let shifted = (val << 1) as Byte | self.get_flag(Flags::CARRY);
|
||||
|
||||
self.set_flag(CARRY, (val & 0b10000000) > 0);
|
||||
self.set_flag(Flags::CARRY, (val & 0b10000000) > 0);
|
||||
self.set_flag_nz(shifted);
|
||||
|
||||
if *addr_mode == AddrMode::IMP {
|
||||
@@ -942,9 +950,9 @@ impl CPU {
|
||||
self.readb(mem, addr) as Word
|
||||
};
|
||||
|
||||
let shifted = (val >> 1) as Byte | (self.get_flag(CARRY) << 7);
|
||||
let shifted = (val >> 1) as Byte | (self.get_flag(Flags::CARRY) << 7);
|
||||
|
||||
self.set_flag(CARRY, (val & 0b00000001) > 0);
|
||||
self.set_flag(Flags::CARRY, (val & 0b00000001) > 0);
|
||||
self.set_flag_nz(shifted);
|
||||
|
||||
if *addr_mode == AddrMode::IMP {
|
||||
@@ -960,8 +968,8 @@ impl CPU {
|
||||
// routine. It pulls the processor flags from the stack followed by the
|
||||
// program counter.
|
||||
fn op_RTI<T: Memory>(&mut self, mem: &T) -> bool {
|
||||
self.regs.flags = self.popb_sp(mem);
|
||||
self.regs.flags &= !BREAK;
|
||||
self.regs.flags = Flags::from_bits(self.popb_sp(mem)).unwrap();
|
||||
self.regs.flags &= !Flags::BREAK;
|
||||
|
||||
let pc_lo = self.popb_sp(mem) as Word;
|
||||
let pc_hi = self.popb_sp(mem) as Word;
|
||||
@@ -1003,9 +1011,9 @@ impl CPU {
|
||||
let val = val ^ LO;
|
||||
|
||||
// Now it's similar to ADC
|
||||
let tmp = self.regs.a as Word + val + self.get_flag(CARRY) as Word;
|
||||
let tmp = self.regs.a as Word + val + self.get_flag(Flags::CARRY) as Word;
|
||||
|
||||
self.set_flag(CARRY, tmp > 255);
|
||||
self.set_flag(Flags::CARRY, tmp > 255);
|
||||
self.set_flag_nz(tmp as Byte);
|
||||
|
||||
// There are two cases where the overflow bit should be set. if we look
|
||||
@@ -1013,7 +1021,7 @@ impl CPU {
|
||||
// expression selects for both of them
|
||||
let is_overflown = (!(self.regs.a as Word ^ val) &
|
||||
(self.regs.a as Word ^ tmp)) & 0x0080 != 0;
|
||||
self.set_flag(OVERFLOW, is_overflown);
|
||||
self.set_flag(Flags::OVERFLOW, is_overflown);
|
||||
|
||||
self.regs.a = tmp as Byte;
|
||||
true
|
||||
@@ -1021,7 +1029,7 @@ impl CPU {
|
||||
|
||||
// set carry
|
||||
fn op_SEC(&mut self) -> bool {
|
||||
self.set_flag(CARRY, true);
|
||||
self.set_flag(Flags::CARRY, true);
|
||||
false
|
||||
}
|
||||
|
||||
@@ -1029,13 +1037,13 @@ impl CPU {
|
||||
// D = 1
|
||||
// Set the decimal mode flag to one.
|
||||
fn op_SED(&mut self) -> bool {
|
||||
self.set_flag(DECIMAL, true);
|
||||
self.set_flag(Flags::DECIMAL, true);
|
||||
false
|
||||
}
|
||||
|
||||
// set irq flag
|
||||
fn op_SEI(&mut self) -> bool {
|
||||
self.set_flag(IRQ, true);
|
||||
self.set_flag(Flags::IRQ, true);
|
||||
false
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user