Even more types
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9056e9b0e1
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@ -43,7 +43,7 @@ mod eval;
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pub struct Schala {
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state: eval::State<'static>,
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symbol_table: Rc<RefCell<symbol_table::SymbolTable>>,
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type_context: typechecking::TypeContext,
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type_context: typechecking::TypeContext<'static>,
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active_parser: Option<parsing::Parser>,
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}
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@ -1,11 +1,12 @@
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use std::rc::Rc;
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use ast::*;
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use util::ScopeStack;
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pub type TypeName = Rc<String>;
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pub struct TypeContext {
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pub struct TypeContext<'a> {
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variable_map: ScopeStack<'a, Rc<String>, MonoType>
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}
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type InferResult<T> = Result<T, TypeError>;
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@ -28,7 +29,19 @@ enum MonoType {
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impl TypeIdentifier {
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fn to_monotype(&self) -> MonoType {
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unimplemented!()
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match self {
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TypeIdentifier::Tuple(items) => unimplemented!(),
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TypeIdentifier::Singleton(TypeSingletonName { name, .. }) => {
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match &name[..] {
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"Nat" => MonoType::Const(TConst::Nat),
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"Int" => MonoType::Const(TConst::Int),
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"Float" => MonoType::Const(TConst::Float),
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"Bool" => MonoType::Const(TConst::Bool),
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"String" => MonoType::Const(TConst::StringT),
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_ => unimplemented!()
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}
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}
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}
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}
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}
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@ -55,9 +68,11 @@ struct PolyType {
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ty: MonoType
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}
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impl TypeContext {
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pub fn new() -> TypeContext {
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TypeContext { }
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impl<'a> TypeContext<'a> {
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pub fn new() -> TypeContext<'a> {
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TypeContext {
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variable_map: ScopeStack::new(None),
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}
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}
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pub fn typecheck(&mut self, ast: &AST) -> Result<String, String> {
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@ -68,7 +83,7 @@ impl TypeContext {
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}
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}
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impl TypeContext {
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impl<'a> TypeContext<'a> {
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fn infer_ast(&mut self, ast: &AST) -> InferResult<MonoType> {
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let mut output = MonoType::Const(TConst::Unit);
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for statement in ast.0.iter() {
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@ -102,6 +117,15 @@ impl TypeContext {
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FloatLiteral(_) => MonoType::Const(TConst::Float),
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StringLiteral(_) => MonoType::Const(TConst::StringT),
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BoolLiteral(_) => MonoType::Const(TConst::Bool),
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Value(name) => {
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//TODO handle the distinction between 0-arg constructors and variables at some point
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// need symbol table for that
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match self.variable_map.lookup(name) {
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Some(ty) => ty.clone(),
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None => return TypeError::new(&format!("Variable {} not found", name))
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}
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},
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IfExpression { discriminator, body } => self.infer_if_expr(discriminator, body)?,
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Call { f, arguments } => {
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let tf: MonoType = self.infer_expr(f)?; //has to be an Arrow MonoType
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let targ = self.infer_expr(&arguments[0])?; // TODO make this work with functions with more than one arg
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@ -117,6 +141,20 @@ impl TypeContext {
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})
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}
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fn infer_if_expr(&mut self, discriminator: &Discriminator, body: &IfExpressionBody) -> InferResult<MonoType> {
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let test = match discriminator {
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Discriminator::Simple(expr) => expr,
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_ => return TypeError::new("Dame desu")
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};
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let (then_clause, maybe_else_clause) = match body {
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IfExpressionBody::SimpleConditional(a, b) => (a, b),
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_ => return TypeError::new("Dont work")
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};
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unimplemented!()
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}
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fn unify(&mut self, t1: &MonoType, t2: &MonoType) -> InferResult<MonoType> {
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unimplemented!()
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}
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