basic emu skeleton and loop, CALL instruction & rel16 addr mode
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@@ -4,11 +4,11 @@ version = "0.1.0"
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authors = ["Jared Burce <jaredr@gmail.com>"]
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[dependencies]
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byteorder = "1.4.2"
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env_logger = "0.3"
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itertools = ">=0.4"
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log = "0.3"
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memmap = "~0.2"
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gl = "0.10"
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gfx = "0.17"
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gfx_device_gl = "0.15"
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14
src/bin/run88.rs
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14
src/bin/run88.rs
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@@ -0,0 +1,14 @@
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use std::io::Read;
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extern crate vrtue;
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use vrtue::emu::pc::PC;
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fn main() -> Result<(), std::io::Error> {
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let filename = std::env::args().nth(1).expect("Need filename argument");
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let mut file = Vec::new();
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std::fs::File::open(filename)?.read_to_end(&mut file)?;
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let mut pc = PC::new_with_com_file(&file);
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pc.run();
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println!("{:?}", pc);
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Ok(())
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}
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183
src/emu/i8088.rs
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183
src/emu/i8088.rs
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@@ -0,0 +1,183 @@
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use std::fmt::{Debug, Formatter};
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use super::byteorder::{ByteOrder, LittleEndian};
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use emu::pc::Bus;
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#[allow(non_camel_case_types)]
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#[derive(Clone, Copy, Debug, Default)]
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pub struct i8088 {
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// Data Registers
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pub a: Reg16,
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pub b: Reg16,
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pub c: Reg16,
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pub d: Reg16,
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// Index Registers
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pub si: u16, // Source Index
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pub di: u16, // Dest Index
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pub bp: u16, // Base Pointer
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pub sp: u16, // Stack Pointer
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// Segment Registers
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pub cs: u16, // Code Segment
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pub ds: u16, // Data Segment
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pub es: u16, // Extra Segment
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pub ss: u16, // Stack Segment
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// Pointer Register
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pub ip: u16,
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// Status Register
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pub flags: Flags,
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}
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#[derive(Clone, Copy, Default)]
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pub struct Flags {
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cf: bool, // 0: Carry Flag: 1=CY(Carry), 0=NC(No Carry)
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// 1: Reserved
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pf: bool, // 2: Parity Flag: 1=PE(Even), 0=PO(Odd)
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// 3: Reserved
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af: bool, // 4: Adjust Flag: 1=AC(Aux Carry), 0=NA(No Aux Carry)
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// 5: Reserved
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zf: bool, // 6: Zero Flag: 1=ZR(Zero), 0=NZ(Not Zero)
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sf: bool, // 7: Sign Flag: 1=NG(Negative), 0=PL(Positive)
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tf: bool, // 8: Trap Flag
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ie: bool, // 9: (Real name "IF") Interrupt Enable: 1=EI(Enable Interrupt), 0=DI(Disable Interrupt)
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df: bool, // 10: Direction Flag: 1=DN(Down), 0=UP(Up)
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of: bool, // 11: Overflow Flag: 1=OV(Overflow), 0=NV(Not Overflow)
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// bits 12-15 always 1
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}
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mod ops {
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pub fn call(cpu: &mut super::i8088, mem: &mut [u8], addr: i16) {
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let target = cpu.ip.wrapping_add(addr as u16);
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trace!("CALL 0x{:04X}", target);
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cpu.push16(mem, cpu.ip);
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cpu.ip = target;
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}
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}
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macro_rules! step {
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(@code $cpu:ident, $bus:ident, ($name:ident, $cycles:literal, $arg:tt)) => {
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step!(@$arg $name $cpu, $bus)
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};
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(@rel16 $name:ident $cpu:ident, $bus:ident) => { {
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let mut buf = [0; 2];
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buf[0] = $cpu.next_ip($bus);
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buf[1] = $cpu.next_ip($bus);
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ops::$name($cpu, &mut $bus.ram, LittleEndian::read_i16(&buf));
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} };
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// Entry Point
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(($cpu:ident, $bus:ident) => { $( $code:literal => $impl:tt ),* } ) => {
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{
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let opcode = $cpu.next_ip($bus);
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match(opcode) {
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$( $code => step!(@code $cpu, $bus, $impl) )*,
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_ => unimplemented!("opcode: {:02X}", opcode)
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}
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}
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}
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}
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pub const fn segoff_to_addr(segment: u16, offset: u16) -> usize {
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let segaddr = (segment as usize) << 4;
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segaddr + offset as usize
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}
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impl i8088 {
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pub fn run(&mut self, bus: &mut Bus) {
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loop {
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step!((self, bus) => {
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0xE8 => (call, 23, rel16)
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})
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}
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}
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fn push16(&mut self, mem: &mut [u8], val: u16) {
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// XXX: Not checking for stack faults or anything
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self.sp -= 2;
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LittleEndian::write_u16(&mut mem[segoff_to_addr(self.ss, self.sp)..], val);
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}
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fn next_ip<'a>(&mut self, bus: &Bus) -> u8 {
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let eip = segoff_to_addr(self.cs, self.ip);
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self.ip += 1;
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// We'll assume cpu is always executing in RAM. Also assume the
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// IP doesn't reach the end of the segment (My guess is that it
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// should loop within the segment if it did)
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bus.ram[eip - Bus::RAM_LOCATION]
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}
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}
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impl From<u16> for Flags {
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fn from(flags: u16) -> Self {
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Self {
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cf: flags & 1 != 0,
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pf: flags & 1 << 2 != 0,
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af: flags & 1 << 4 != 0,
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zf: flags & 1 << 6 != 0,
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sf: flags & 1 << 7 != 0,
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tf: flags & 1 << 8 != 0,
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ie: flags & 1 << 9 != 0,
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df: flags & 1 << 10 != 0,
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of: flags & 1 << 11 != 0,
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}
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}
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}
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impl From<Flags> for u16 {
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fn from(flags: Flags) -> Self {
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0b1111_0000_0010_1010 // Not sure what all reserved bits should be, but it shouldn't matter
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| (flags.cf as u16)
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| (flags.pf as u16) << 2
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| (flags.af as u16) << 4
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| (flags.zf as u16) << 6
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| (flags.sf as u16) << 7
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| (flags.tf as u16) << 8
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| (flags.ie as u16) << 9
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| (flags.df as u16) << 10
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| (flags.of as u16) << 11
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}
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}
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impl Debug for Flags {
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fn fmt(&self, fmt: &mut Formatter) -> Result<(), std::fmt::Error> {
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use std::fmt::Write;
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fmt.write_str("[ ")?;
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for flag in [ (self.cf, "CF "),
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(self.pf, "PF "),
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(self.af, "AF "),
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(self.zf, "ZF "),
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(self.sf, "SF "),
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(self.tf, "TF "),
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(self.ie, "IF "),
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(self.df, "DF "),
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(self.of, "OF ") ].iter() {
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if flag.0 { fmt.write_str(flag.1)? };
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}
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fmt.write_char(']')?;
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Ok(())
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}
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}
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#[repr(C)]
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#[derive(Clone, Copy)]
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pub union Reg16 {
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x: u16,
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lh: [u8; 2],
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}
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impl Debug for Reg16 {
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fn fmt(&self, fmt: &mut Formatter) -> Result<(), std::fmt::Error> {
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unsafe { self.x.fmt(fmt) }
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}
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}
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impl Default for Reg16 {
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fn default() -> Self { Self { x: 0u16 } }
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}
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4
src/emu/mod.rs
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4
src/emu/mod.rs
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@@ -0,0 +1,4 @@
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extern crate byteorder;
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pub mod pc;
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pub mod i8088;
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57
src/emu/pc.rs
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57
src/emu/pc.rs
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@@ -0,0 +1,57 @@
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use emu::i8088::{i8088, segoff_to_addr};
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use std::fmt::{Debug, Formatter};
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const RAM_SIZE: usize = 128 * 1024;
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pub struct PC {
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pub cpu: i8088,
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bus: Bus,
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}
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pub struct Bus {
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pub ram: [u8; RAM_SIZE],
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//io:
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}
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impl Bus {
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pub const RAM_LOCATION: usize = 0x0000_0000;
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//const EGA_LOCATION: usize = 0x000A_0000;
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}
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impl PC {
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pub fn new_with_com_file(comfile: &[u8]) -> PC {
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const LOAD_SEGMENT: u16 = 0x0050;
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const LOAD_OFFSET: u16 = 0x0100;
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const LOAD_ADDRESS: usize = segoff_to_addr(LOAD_SEGMENT, LOAD_OFFSET);
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const LOAD_RAM_ADDRESS: usize = LOAD_ADDRESS - Bus::RAM_LOCATION;
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assert!(comfile.len() <= 0xFF00, "COM file larger than spec");
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debug_assert!(LOAD_RAM_ADDRESS + comfile.len() <= RAM_SIZE,
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"No memory for loading COM file");
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let mut pc = PC {
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cpu: { i8088 { cs: LOAD_SEGMENT, // COMs always uses Tiny memory model
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ds: LOAD_SEGMENT, // COMs always uses Tiny memory model
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es: LOAD_SEGMENT, // COMs always uses Tiny memory model
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ss: LOAD_SEGMENT, // COMs always uses Tiny memory model
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sp: 0xFFFE,
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ip: LOAD_OFFSET,
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..i8088::default() } },
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bus: Bus { ram: [0; RAM_SIZE] }
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};
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pc.bus.ram[LOAD_RAM_ADDRESS..LOAD_RAM_ADDRESS + comfile.len()].copy_from_slice(comfile);
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pc
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}
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pub fn run(&mut self) {
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self.cpu.run(&mut self.bus);
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}
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}
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impl Debug for PC {
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fn fmt(&self, fmt: &mut Formatter) -> Result<(), std::fmt::Error> {
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self.cpu.fmt(fmt)
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}
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}
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@@ -5,6 +5,7 @@ extern crate piston;
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pub mod arena;
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pub mod ega;
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pub mod emu;
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pub mod scene;
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pub mod scenes;
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pub mod tile;
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