Add typeck Type type
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@ -2,13 +2,13 @@
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use std::{error::Error, fmt::Display, fs::File, io::Write, process::exit, str::FromStr};
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use clap::Parser;
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use drimc_rs::{
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ast2ir::ast2ir,
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backends,
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parser::{parser, ParserError, ParserMeta},
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typeck::typeck,
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};
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use clap::Parser;
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/// Optimization levels.
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#[derive(Debug)]
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@ -256,7 +256,7 @@ fn main() {
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let source = std::fs::read_to_string(&args.source_file)?;
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let meta = ParserMeta::default();
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let ast = chumsky::Parser::parse(&parser(&meta), source).map_err(ParserError)?;
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typeck(&ast)?;
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let ast = typeck(ast)?;
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let ir = ast2ir(ast);
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@ -2,6 +2,8 @@
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use num_bigint::BigUint;
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use crate::typeck;
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/// A concrete syntax tree. This represents the full content of a Drim program, including all
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/// whitespace, comments, and tokens: the source code of the original program can be recovered
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/// completely using the syntax tree.
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@ -68,7 +70,7 @@ pub enum ClassMember {
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/// The type of the overall function; this is filled in by the typechecker, and is left
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/// blank by the parser.
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typ: Option<Type>,
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typ: Option<typeck::Type>,
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},
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/// Declaration of a type that is a literal alias for another type.
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@ -98,7 +100,7 @@ pub struct Expr {
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pub kind: ExprKind,
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/// An optional type signature, left as `None` by the parser and added by the type checker.
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pub typ: Option<Type>,
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pub typ: Option<typeck::Type>,
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}
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/// The different kinds of expressions.
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@ -266,7 +268,7 @@ pub enum Pattern {
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}
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/// Namespaced identifiers.
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#[derive(Clone, Debug)]
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#[derive(Clone, Debug, Hash, PartialEq)]
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pub struct Identifier {
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/// The elements of the identifier; there must be at least one of these.
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pub elems: Vec<String>,
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@ -1,8 +1,10 @@
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//! Type checker.
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use std::{error::Error, fmt::Display};
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use std::{collections::BTreeMap, error::Error, fmt::Display};
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use crate::syntax::SyntaxTree;
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use num_bigint::BigInt;
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use crate::syntax::{Identifier, SyntaxTree};
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/// A compile-time type error from the user's source code.
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#[derive(Debug)]
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@ -16,7 +18,39 @@ impl Display for TypeError {
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impl Error for TypeError {}
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/// A type known at compile time. While this resembles the AST `Type` structure, this enum is
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/// optimized for unifying types against one another and representing compiler-generated types
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/// rather than strictly representing named types.
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#[derive(Debug, Clone, PartialEq)]
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pub enum Type {
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/// `Foo`
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Named(Identifier),
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/// `List Int`
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Application {
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/// The function being applied. This must be a generic type.
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function: Box<Type>,
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/// The type given as an argument to the type.
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expression: Box<Type>,
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},
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/// `(a, b)`
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Tuple(Vec<Type>),
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/// `{ a: x, b: y }`
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Record(BTreeMap<String, Type>),
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/// Compiler-internal type representing an arbitrary-precision integer whose value is known at
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/// compile time. This is the default type of integer literals. A `CompInt` can be converted to
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/// an actual integer type via implicit application of the `fromCompInt` generic function.
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CompInt(BigInt),
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/// Compiler-internal type representing a string literal. See `CompInt`.
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CompString(String),
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}
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/// Type-checks the syntax tree.
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pub fn typeck(_: &SyntaxTree) -> Result<(), TypeError> {
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pub fn typeck(_: SyntaxTree) -> Result<SyntaxTree, TypeError> {
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todo!()
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}
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