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Add support for lengths in array repeats, if they are literals
Now we will get the type of `[0u8; 4]`.
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parent
73023c0299
commit
e666589e63
4 changed files with 22 additions and 11 deletions
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@ -1006,16 +1006,17 @@ impl From<ast::BinOp> for BinaryOp {
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impl From<ast::LiteralKind> for Literal {
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fn from(ast_lit_kind: ast::LiteralKind) -> Self {
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match ast_lit_kind {
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// FIXME: these should have actual values filled in, but unsure on perf impact
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LiteralKind::IntNumber(lit) => {
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if let builtin @ Some(_) = lit.suffix().and_then(BuiltinFloat::from_suffix) {
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return Literal::Float(Default::default(), builtin);
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} else if let builtin @ Some(_) =
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lit.suffix().and_then(|it| BuiltinInt::from_suffix(&it))
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{
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Literal::Int(Default::default(), builtin)
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Literal::Int(lit.value().unwrap_or(0) as i128, builtin)
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} else {
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let builtin = lit.suffix().and_then(|it| BuiltinUint::from_suffix(&it));
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Literal::Uint(Default::default(), builtin)
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Literal::Uint(lit.value().unwrap_or(0), builtin)
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}
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}
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LiteralKind::FloatNumber(lit) => {
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@ -43,8 +43,8 @@ pub enum Literal {
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ByteString(Vec<u8>),
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Char(char),
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Bool(bool),
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Int(u64, Option<BuiltinInt>),
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Uint(u64, Option<BuiltinUint>),
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Int(i128, Option<BuiltinInt>),
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Uint(u128, Option<BuiltinUint>),
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Float(u64, Option<BuiltinFloat>), // FIXME: f64 is not Eq
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}
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@ -1,10 +1,14 @@
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//! Type inference for expressions.
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use std::iter::{repeat, repeat_with};
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use std::{
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convert::TryInto,
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iter::{repeat, repeat_with},
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};
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use std::{mem, sync::Arc};
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use chalk_ir::{cast::Cast, fold::Shift, ConstData, Mutability, TyVariableKind};
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use hir_def::{
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builtin_type::BuiltinUint,
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expr::{Array, BinaryOp, Expr, ExprId, Literal, Statement, UnaryOp},
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path::{GenericArg, GenericArgs},
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resolver::resolver_for_expr,
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@ -724,7 +728,7 @@ impl<'a> InferenceContext<'a> {
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for expr in items.iter() {
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self.infer_expr_coerce(*expr, &Expectation::has_type(elem_ty.clone()));
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}
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Some(items.len())
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Some(items.len() as u64)
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}
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Array::Repeat { initializer, repeat } => {
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self.infer_expr_coerce(
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@ -737,9 +741,15 @@ impl<'a> InferenceContext<'a> {
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TyKind::Scalar(Scalar::Uint(UintTy::Usize)).intern(&Interner),
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),
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);
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// FIXME: we don't know the length here because hir Exprs don't actually
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// get the value out of the AST, even though it is there.
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None
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let repeat_expr = &self.body.exprs[*repeat];
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match repeat_expr {
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Expr::Literal(Literal::Uint(v, None))
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| Expr::Literal(Literal::Uint(v, Some(BuiltinUint::Usize))) => {
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(*v).try_into().ok()
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}
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_ => None,
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}
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}
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};
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@ -747,7 +757,7 @@ impl<'a> InferenceContext<'a> {
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ty: TyKind::Scalar(Scalar::Uint(UintTy::Usize)).intern(&Interner),
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value: ConstValue::Concrete(chalk_ir::ConcreteConst {
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interned: len
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.map(|len| ConstScalar::Usize(len as u64))
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.map(|len| ConstScalar::Usize(len))
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.unwrap_or(ConstScalar::Unknown),
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}),
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};
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@ -93,7 +93,7 @@ fn coerce_places() {
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340..345 '[arr]': [&[u8]; 1]
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341..344 'arr': &[u8; 1]
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355..356 'f': [&[u8]; 2]
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370..378 '[arr; 2]': [&[u8]; _]
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370..378 '[arr; 2]': [&[u8]; 2]
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371..374 'arr': &[u8; 1]
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376..377 '2': usize
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388..389 'g': (&[u8], &[u8])
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