mod encoding; mod heap; mod value; use encoding::{Arg, Op}; use heap::Heap; use std::error::Error; use std::ffi::OsString; use std::io::{stderr, Write}; use value::Value; struct State { i: usize, heap: Heap, } impl State { fn read_arg(&self, a: Arg) -> Value { match a { Arg::Local(l) => self.heap.locals[usize::from(l)], Arg::Const(c) => c, } } fn op(&mut self, op: Op) -> Result<(), Box> { match op { Op::Alloc(op) => { let Some(i) = self.read_arg(op.size).to_int() else { return Err(Box::from("alloc needs an int")); }; self.heap.locals[usize::from(op.out)] = Value::from_pointer(self.heap.alloc(i)?); } Op::Call => { let Some(i) = self.heap.locals[0].to_int() else { return Err(Box::from("call needs an int")); }; self.i = usize::try_from(i)?; } Op::Poke(op) => { let Some(p) = self.heap.locals[usize::from(op.ptr)].to_pointer() else { return Err(Box::from("poke needs a pointer")); }; self.heap.poke(p + op.offset, self.read_arg(op.val))?; } Op::Peek(op) => { let Some(p) = self.read_arg(op.val).to_pointer() else { return Err(Box::from("peek needs a pointer")); }; self.heap.locals[usize::from(op.out)] = self.heap.peek(p + op.offset)?; } Op::Shuf(op) => { self.heap.locals[usize::from(op.out)] = self.read_arg(op.val); } Op::Exit(op) => { let Some(i) = self.read_arg(op.val).to_int() else { std::process::exit(255); }; std::process::exit(i as i32); } Op::Add(op) => { let Some(v1) = self.read_arg(op.val1).to_int() else { return Err(Box::from("add needs an int")); }; let Some(v2) = self.read_arg(op.val2).to_int() else { return Err(Box::from("add needs an int")); }; self.heap.locals[usize::from(op.out)] = Value::from_int(v1.wrapping_add(v2)); } Op::Sub(op) => { let Some(v1) = self.read_arg(op.val1).to_int() else { return Err(Box::from("sub needs an int")); }; let Some(v2) = self.read_arg(op.val2).to_int() else { return Err(Box::from("sub needs an int")); }; self.heap.locals[usize::from(op.out)] = Value::from_int(v1.wrapping_sub(v2)); } Op::Mul(op) => { let Some(v1) = self.read_arg(op.val1).to_int() else { return Err(Box::from("mul needs an int")); }; let Some(v2) = self.read_arg(op.val2).to_int() else { return Err(Box::from("mul needs an int")); }; self.heap.locals[usize::from(op.out)] = Value::from_int(v1.wrapping_mul(v2)); } Op::Div(op) => { let Some(v1) = self.read_arg(op.val1).to_int() else { return Err(Box::from("div needs an int")); }; let Some(v2) = self.read_arg(op.val2).to_int() else { return Err(Box::from("div needs an int")); }; let Some(res) = v1.checked_div(v2) else { return Err(Box::from("division by zero")); }; self.heap.locals[usize::from(op.out)] = Value::from_int(res); } } Ok(()) } } fn run() -> Result<(), Box> { let args: Vec = std::env::args_os().collect(); if args.len() != 2 { return Err(Box::from("usage: bytecode ")); } let prog = std::fs::read(&args[1])?; let mut st = State { i: 0, heap: Heap::new(), }; loop { let (n, op) = Op::parse(&prog[st.i..])?; st.i += n; st.op(op)?; } } fn main() { if let Err(err) = run() { let _ = writeln!(stderr(), "FAIL: {}", err); std::process::exit(255); } }