feat: stack var (WIP)
This commit is contained in:
263
evaluator/nixjit_context/src/resolve.rs
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263
evaluator/nixjit_context/src/resolve.rs
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@@ -0,0 +1,263 @@
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use std::cell::RefCell;
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use std::pin::Pin;
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use bumpalo::boxed::Box;
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use derive_more::Unwrap;
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use hashbrown::HashMap;
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use nixjit_error::Result;
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use nixjit_hir::Hir;
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use nixjit_ir::{Const, ExprId, Param, StackIdx};
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use nixjit_lir::{Lir, LookupResult, Resolve, ResolveContext};
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use replace_with::replace_with_and_return;
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use super::Context;
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#[derive(Clone)]
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enum Scope<'ctx> {
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/// A `let` binding scope, mapping variable names to their expression IDs.
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Let(HashMap<String, ExprId>),
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/// A function argument scope. `Some` holds the name of the argument set if present.
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Arg(Option<String>),
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Builtins(&'ctx HashMap<&'static str, ExprId>),
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Repl(&'ctx HashMap<String, ExprId>)
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}
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/// Represents an expression at different stages of compilation.
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#[derive(Debug, Unwrap)]
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enum Ir {
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/// An expression in the High-Level Intermediate Representation (HIR).
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Hir(Hir),
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/// An expression in the Low-Level Intermediate Representation (LIR).
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Lir(Lir),
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}
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impl Ir {
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unsafe fn unwrap_hir_unchecked(self) -> Hir {
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if let Self::Hir(hir) = self {
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hir
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} else {
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unsafe { core::hint::unreachable_unchecked() }
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}
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}
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}
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pub struct ResolveCtx<'ctx, 'bump> {
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ctx: &'ctx mut Context<'bump>,
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irs: Vec<Pin<Box<'bump, RefCell<Ir>>>>,
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scopes: Vec<Scope<'ctx>>,
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has_with: bool,
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with_used: bool,
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closures: Vec<(ExprId, Option<ExprId>, usize)>,
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current_expr: Option<ExprId>,
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}
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impl<'ctx, 'bump> ResolveCtx<'ctx, 'bump> {
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pub fn new(ctx: &'ctx mut Context<'bump>) -> Self {
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let ctx_mut = unsafe { &mut *(ctx as *mut Context) };
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Self {
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scopes: vec![
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Scope::Builtins(&ctx.global_scope),
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Scope::Repl(&ctx.repl_scope)
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],
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has_with: false,
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with_used: false,
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irs: core::mem::take(&mut ctx.hirs)
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.into_iter()
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.map(|hir| Ir::Hir(hir).into())
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.map(|ir| Box::new_in(ir, ctx.bump))
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.map(Pin::new)
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.collect(),
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ctx: ctx_mut,
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closures: Vec::new(),
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current_expr: None,
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}
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}
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fn get_ir(&self, id: ExprId) -> &RefCell<Ir> {
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let idx = unsafe { id.raw() } - self.ctx.lirs.len();
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if cfg!(debug_assertions) {
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self.irs.get(idx).unwrap()
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} else {
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unsafe { self.irs.get_unchecked(idx) }
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}
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}
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fn get_ir_mut(&mut self, id: ExprId) -> &mut RefCell<Ir> {
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let idx = unsafe { id.raw() } - self.ctx.lirs.len();
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if cfg!(debug_assertions) {
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self.irs.get_mut(idx).unwrap()
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} else {
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unsafe { self.irs.get_unchecked_mut(idx) }
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}
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}
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fn add_dep(&mut self, from: ExprId, to: ExprId, count: &mut usize) -> StackIdx {
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if let Some(&idx) = self.ctx.graph.edge_weight(from, to) {
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idx
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} else {
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*count += 1;
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let idx = unsafe { StackIdx::from_raw(*count - 1) };
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assert_ne!(from, to);
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self.ctx.graph.add_edge(from, to, idx);
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idx
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}
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}
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fn new_lir(&mut self, lir: Lir) -> ExprId {
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self.irs.push(Pin::new(Box::new_in(
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RefCell::new(Ir::Lir(lir)),
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self.ctx.bump,
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)));
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unsafe { ExprId::from_raw(self.ctx.lirs.len() + self.irs.len() - 1) }
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}
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}
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impl ResolveContext for ResolveCtx<'_, '_> {
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fn resolve(&mut self, expr: ExprId) -> Result<()> {
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let prev_expr = self.current_expr.replace(expr);
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let result = unsafe {
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let ctx = &mut *(self as *mut Self);
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let ir = &mut self.get_ir_mut(expr);
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if !matches!(ir.try_borrow().as_deref(), Ok(Ir::Hir(_))) {
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return Ok(());
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}
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replace_with_and_return(
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&mut *ir.borrow_mut(),
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|| {
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Ir::Hir(Hir::Const(Const {
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val: nixjit_value::Const::Null,
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}))
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},
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|ir| match ir.unwrap_hir_unchecked().resolve(ctx) {
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Ok(lir) => (Ok(()), Ir::Lir(lir)),
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Err(err) => (
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Err(err),
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Ir::Hir(Hir::Const(Const {
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val: nixjit_value::Const::Null,
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})),
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),
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},
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)
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};
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self.current_expr = prev_expr;
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result
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}
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fn resolve_root(mut self, expr: ExprId) -> Result<()> {
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self.closures.push((expr, None, 0));
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let ret = self.resolve(expr);
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if ret.is_ok() {
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self.ctx.lirs.extend(
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self.irs
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.into_iter()
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.map(|pin| unsafe { core::mem::transmute::<Pin<_>, Box<_>>(pin) })
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.map(Box::into_inner)
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.map(RefCell::into_inner)
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.map(Ir::unwrap_lir)
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.map(|lir| crate::Pin::new_in(lir, self.ctx.bump))
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);
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}
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ret
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}
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fn lookup(&mut self, name: &str) -> LookupResult {
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let mut closure_depth = 0;
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// Then search from outer to inner scopes for dependencies
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for scope in self.scopes.iter().rev() {
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match scope {
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Scope::Builtins(scope) => {
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if let Some(&expr) = scope.get(&name) {
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return LookupResult::Expr(expr);
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}
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}
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Scope::Let(scope) | &Scope::Repl(scope) => {
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if let Some(&dep) = scope.get(name) {
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let (expr, _, deps) = unsafe { &mut *(self as *mut Self) }
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.closures
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.last_mut()
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.unwrap();
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let idx = self.add_dep(*expr, dep, deps);
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return LookupResult::Stack(idx);
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}
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}
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Scope::Arg(ident) => {
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if ident.as_deref() == Some(name) {
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// This is an outer function's parameter, treat as dependency
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// We need to find the corresponding parameter expression to create dependency
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// For now, we need to handle this case by creating a dependency to the parameter
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let mut iter = unsafe { &mut *(self as *mut Self) }
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.closures
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.iter_mut()
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.rev()
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.take(closure_depth + 1)
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.rev();
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let Some((func, Some(arg), count)) = iter.next() else {
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unreachable!()
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};
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let mut cur = self.add_dep(*func, *arg, count);
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for (func, _, count) in iter {
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let idx = self.new_lir(Lir::StackRef(cur));
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cur = self.add_dep(*func, idx, count);
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}
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return LookupResult::Stack(cur);
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}
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closure_depth += 1;
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}
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}
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}
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if self.has_with {
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self.with_used = true;
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LookupResult::Unknown
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} else {
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LookupResult::NotFound
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}
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}
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fn lookup_arg(&mut self) -> StackIdx {
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let Some((func, Some(arg), count)) = unsafe { &mut *(self as *mut Self) }.closures.last_mut() else {
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unreachable!()
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};
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self.add_dep(*func, *arg, count)
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}
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fn new_func(&mut self, body: ExprId, param: Param) {
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self.ctx.funcs.insert(body, param);
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}
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fn with_let_env<T>(
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&mut self,
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bindings: HashMap<String, ExprId>,
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f: impl FnOnce(&mut Self) -> T,
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) -> T {
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self.scopes.push(Scope::Let(bindings));
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let res = f(self);
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self.scopes.pop();
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res
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}
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fn with_with_env<T>(&mut self, f: impl FnOnce(&mut Self) -> T) -> (bool, T) {
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let has_with = self.has_with;
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let with_used = self.with_used;
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self.has_with = true;
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self.with_used = false;
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let res = f(self);
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self.has_with = has_with;
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(core::mem::replace(&mut self.with_used, with_used), res)
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}
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fn with_param_env<T>(
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&mut self,
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func: ExprId,
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ident: Option<String>,
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f: impl FnOnce(&mut Self) -> T,
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) -> T {
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let arg = self.new_lir(Lir::Arg(nixjit_ir::Arg));
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self.closures.push((func, Some(arg), 0));
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self.scopes.push(Scope::Arg(ident));
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let res = f(self);
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self.scopes.pop();
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self.closures.pop();
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res
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}
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}
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