Added zero register + relative jump

wip/its-not-my-fault
ondra05 2023-06-08 00:52:24 +02:00
parent 36b3ee2bb5
commit 8d6ee04eb8
No known key found for this signature in database
GPG Key ID: 0DA6D2BB2285E881
5 changed files with 33 additions and 26 deletions

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@ -99,9 +99,8 @@ pub fn assembly(code: &str, buf: &mut Vec<u8>) -> Result<(), Error> {
NOP | RET | ECALL => Ok(()),
ADD..=XOR | ADDF..=DIVF => self.rrr(),
NOT | CP => self.rr(),
LI => self.ri(),
LI | JMP => self.ri(),
LB..=SO => self.rri(),
JMP => self.i(),
_ => unreachable!(),
}?;
match self.next() {

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@ -43,7 +43,7 @@ constmod!(pub opcode(u8) {
PAGEUNMAP = 25, // ?; Unmap a page
PAGEMP = 26, // ?; Page modify protection flags
JMP = 27, // I; Unconditional jump
JMP = 27, // RI; Unconditional jump [#0 + imm #1]
JMPCOND = 28, // ?; Conditional jump
RET = 29, // N; Return
ECALL = 30, // N; Issue system call

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@ -1,19 +1,19 @@
use hbbytecode::opcode;
use std::io::{Read, stdin};
use hbvm::{validate::validate, vm::Vm, RuntimeErrors};
fn main() -> Result<(), RuntimeErrors> {
// TODO: Grab program from cmdline
#[rustfmt::skip]
let prog = &[];
fn main() -> Result<(), Box<dyn std::error::Error>> {
let mut prog = vec![];
stdin().read_to_end(&mut prog)?;
if let Err(e) = validate(prog) {
if let Err(e) = validate(&prog) {
eprintln!("Program validation error: {e:?}");
return Ok(());
} else {
unsafe {
let mut vm = Vm::new_unchecked(prog);
let mut vm = Vm::new_unchecked(&prog);
vm.memory.insert_test_page();
vm.run();
println!("{:?}", vm.registers);
}
}
Ok(())

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@ -55,7 +55,7 @@ pub fn validate(mut program: &[u8]) -> Result<(), Error> {
rest
}
// RI
[LI, reg, _, _, _, _, _, _, _, _, rest @ ..] => {
[LI | JMP, reg, _, _, _, _, _, _, _, _, rest @ ..] => {
if *reg > 59 {
bail!(InvalidRegister, start, program, 1);
}

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@ -26,17 +26,19 @@ macro_rules! param {
macro_rules! binary_op {
($self:expr, $ty:ident, $handler:expr) => {{
let ParamRRR(tg, a0, a1) = param!($self, ParamRRR);
*$self.reg_mut(tg) = $handler(Value::$ty($self.reg(a0)), Value::$ty($self.reg(a1))).into();
$self.write_reg(tg, $handler(Value::$ty(&$self.read_reg(a0)), Value::$ty(&$self.read_reg(a1))).into());
}};
}
macro_rules! load {
($self:expr, $size:ty) => {{
let ParamRRI(tg, a0, offset) = param!($self, ParamRRI);
*$self.reg_mut(tg) = $self
.memory
.load::<$size>($self.reg(a0).int() + offset)
.ok_or(Exception::LoadAccess)?;
$self.write_reg(
tg,
$self.memory
.load::<$size>($self.read_reg(a0).int() + offset)
.ok_or(Exception::LoadAccess)?
);
}};
}
@ -45,7 +47,7 @@ macro_rules! store {
let ParamRRI(src, a0, offset) = param!($self, ParamRRI);
$self
.memory
.store::<$size>($self.reg(a0).int() + offset, *$self.reg(src))
.store::<$size>($self.read_reg(a0).int() + offset, $self.read_reg(src))
.map_err(|_| Exception::StoreAccess)?;
}};
}
@ -93,7 +95,7 @@ impl<'a> Vm<'a> {
XOR => binary_op!(self, int, ops::BitXor::bitxor),
NOT => {
let param = param!(self, ParamRR);
*self.reg_mut(param.0) = (!self.reg(param.1).int()).into();
self.write_reg(param.0, (!self.read_reg(param.1).int()).into());
}
ADDF => binary_op!(self, float, ops::Add::add),
SUBF => binary_op!(self, float, ops::Sub::sub),
@ -101,11 +103,11 @@ impl<'a> Vm<'a> {
DIVF => binary_op!(self, float, ops::Div::div),
CP => {
let param = param!(self, ParamRR);
*self.reg_mut(param.0) = *self.reg(param.1);
self.write_reg(param.0, self.read_reg(param.1));
}
LI => {
let param = param!(self, ParamRI);
*self.reg_mut(param.0) = param.1.into();
self.write_reg(param.0, param.1.into());
}
LB => load!(self, ma_size::Byte),
LD => load!(self, ma_size::Doublet),
@ -116,8 +118,8 @@ impl<'a> Vm<'a> {
SQ => store!(self, ma_size::Quadlet),
SO => store!(self, ma_size::Octlet),
JMP => {
self.pc =
self.program.as_ptr().add(self.pc + 1).cast::<u64>().read() as usize;
let ParamRI(reg, offset) = param!(self, ParamRI);
self.pc = (self.read_reg(reg).int() + offset) as usize;
}
_ => core::hint::unreachable_unchecked(),
}
@ -126,13 +128,19 @@ impl<'a> Vm<'a> {
}
#[inline]
unsafe fn reg(&self, n: u8) -> &Value {
self.registers.get_unchecked(n as usize)
unsafe fn read_reg(&self, n: u8) -> Value {
if n == 0 {
0.into()
} else {
*self.registers.get_unchecked(n as usize)
}
}
#[inline]
unsafe fn reg_mut(&mut self, n: u8) -> &mut Value {
self.registers.get_unchecked_mut(n as usize)
unsafe fn write_reg(&mut self, n: u8, value: Value) {
if n != 0 {
*self.registers.get_unchecked_mut(n as usize) = value;
}
}
}