Use UVars in type signatures of functions
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@ -1,5 +1,6 @@
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use std::rc::Rc;
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use std::collections::HashMap;
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use std::char;
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use schala_lang::parsing;
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@ -12,10 +13,27 @@ pub struct TypeContext {
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pub enum Type {
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Const(TConst),
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Func(Box<Type>, Box<Type>),
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TVar(u64),
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UVar(String),
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EVar(u64),
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Void
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}
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#[derive(Default)]
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struct UVarGenerator {
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n: u32,
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}
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impl UVarGenerator {
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fn new() -> UVarGenerator {
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UVarGenerator::default()
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}
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fn next(&mut self) -> Type {
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//TODO handle this in the case where someone wants to make a function with more than 26 variables
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let s = format!("{}", unsafe { char::from_u32_unchecked(self.n + ('a' as u32)) });
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self.n += 1;
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Type::UVar(s)
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}
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}
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#[derive(Debug, PartialEq, Clone)]
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pub enum TConst {
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Unit,
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@ -55,7 +73,7 @@ impl TypeContext {
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pub fn fresh(&mut self) -> Type {
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let ret = self.type_var_count;
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self.type_var_count += 1;
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Type::TVar(ret)
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Type::EVar(ret)
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}
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}
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@ -68,11 +86,10 @@ impl TypeContext {
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if let &self::parsing::Statement::Declaration(ref decl) = statement {
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match decl {
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&FuncSig(ref signature) | &FuncDecl(ref signature, _) => {
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//TODO this needs to be a type variable, not Void
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let mut ty: Type = signature.type_anno.as_ref().map(|name: &TypeName| name.to_type()).unwrap_or(Ok(Void))?;
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for &(_, ref type_name) in signature.params.iter() {
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let arg_type = type_name.as_ref().map(|name| name.to_type()).unwrap_or(Ok(Void))?;
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let mut uvar_gen = UVarGenerator::new();
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let mut ty: Type = signature.type_anno.as_ref().map(|name: &TypeName| name.to_type()).unwrap_or_else(|| {Ok(uvar_gen.next())} )?;
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for &(_, ref type_name) in signature.params.iter().rev() {
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let arg_type = type_name.as_ref().map(|name| name.to_type()).unwrap_or_else(|| {Ok(uvar_gen.next())} )?;
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ty = Func(bx!(arg_type), bx!(ty));
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}
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self.bindings.insert(signature.name.clone(), ty);
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