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- use std::str::Chars;
- use super::{
- ast::{Arg, Constant, Literal, Statement, StatementType, Witness},
- error::ErrorEmitter,
- types::StackType,
- };
- use crate::serial::{serialize, VarInt};
- /// Version of the binary
- pub const BINARY_VERSION: u8 = 2;
- /// Magic bytes prepended to the binary
- pub const MAGIC_BYTES: [u8; 4] = [0x0b, 0x01, 0xb1, 0x35];
- pub struct Compiler {
- constants: Vec<Constant>,
- witnesses: Vec<Witness>,
- statements: Vec<Statement>,
- literals: Vec<Literal>,
- debug_info: bool,
- error: ErrorEmitter,
- }
- impl Compiler {
- pub fn new(
- filename: &str,
- source: Chars,
- constants: Vec<Constant>,
- witnesses: Vec<Witness>,
- statements: Vec<Statement>,
- literals: Vec<Literal>,
- debug_info: bool,
- ) -> Self {
- // For nice error reporting, we'll load everything into a string
- // vector so we have references to lines.
- let lines: Vec<String> = source.as_str().lines().map(|x| x.to_string()).collect();
- let error = ErrorEmitter::new("Compiler", filename, lines);
- Self { constants, witnesses, statements, literals, debug_info, error }
- }
- pub fn compile(&self) -> Vec<u8> {
- let mut bincode = vec![];
- // Write the magic bytes and version
- bincode.extend_from_slice(&MAGIC_BYTES);
- bincode.push(BINARY_VERSION);
- // Temporaty stack vector for lookups
- let mut tmp_stack = vec![];
- // In the .constant section of the binary, we write the constant's type,
- // and the name so the VM can look it up from `src/crypto/constants/`.
- bincode.extend_from_slice(b".constant");
- for i in &self.constants {
- tmp_stack.push(i.name.as_str());
- bincode.push(i.typ as u8);
- bincode.extend_from_slice(&serialize(&i.name));
- }
- // Currently, our literals are only Uint64 types, in the binary we'll
- // add them here in the .literal section. In the VM, they will be on
- // their own stack, used for reference by opcodes.
- bincode.extend_from_slice(b".literal");
- for i in &self.literals {
- bincode.push(i.typ as u8);
- bincode.extend_from_slice(&serialize(&i.name));
- }
- // In the .contract section, we write all our witness types, on the stack
- // they're in order of appearance.
- bincode.extend_from_slice(b".contract");
- for i in &self.witnesses {
- tmp_stack.push(i.name.as_str());
- bincode.push(i.typ as u8);
- }
- bincode.extend_from_slice(b".circuit");
- for i in &self.statements {
- match i.typ {
- StatementType::Assign => tmp_stack.push(&i.lhs.as_ref().unwrap().name),
- // In case of a simple call, we don't append anything to the stack
- StatementType::Call => {}
- // TODO: FIXME: unreachable is reached with missing semicolons in the code
- _ => unreachable!(),
- }
- bincode.push(i.opcode as u8);
- bincode.extend_from_slice(&serialize(&VarInt(i.rhs.len() as u64)));
- for arg in &i.rhs {
- match arg {
- Arg::Var(arg) => {
- if let Some(found) = Compiler::lookup_stack(&tmp_stack, &arg.name) {
- bincode.push(StackType::Var as u8);
- bincode.extend_from_slice(&serialize(&VarInt(found as u64)));
- continue
- }
- self.error.abort(
- &format!("Failed finding a stack reference for `{}`", arg.name),
- arg.line,
- arg.column,
- );
- }
- Arg::Lit(lit) => {
- if let Some(found) = Compiler::lookup_literal(&self.literals, &lit.name) {
- bincode.push(StackType::Lit as u8);
- bincode.extend_from_slice(&serialize(&VarInt(found as u64)));
- continue
- }
- self.error.abort(
- &format!("Failed finding literal `{}`", lit.name),
- lit.line,
- lit.column,
- );
- }
- _ => unreachable!(),
- };
- }
- }
- // If we're not doing debug info, we're done here and can return.
- if !self.debug_info {
- return bincode
- }
- // TODO: Otherwise, we proceed appending debug info.
- bincode
- }
- fn lookup_stack(stack: &[&str], name: &str) -> Option<usize> {
- for (idx, n) in stack.iter().enumerate() {
- if n == &name {
- return Some(idx)
- }
- }
- None
- }
- fn lookup_literal(literals: &[Literal], name: &str) -> Option<usize> {
- for (idx, n) in literals.iter().enumerate() {
- if n.name == name {
- return Some(idx)
- }
- }
- None
- }
- }
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