Some symbol-table refactoring
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@ -4,6 +4,7 @@ use std::fmt;
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use std::fmt::Write;
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use crate::ast;
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use crate::ast::Signature;
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use crate::typechecking::TypeName;
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//cf. p. 150 or so of Language Implementation Patterns
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@ -65,28 +66,7 @@ impl SymbolTable {
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let statement = statement.node();
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if let Statement::Declaration(decl) = statement {
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match decl {
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FuncSig(signature) | FuncDecl(signature, _) => {
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let mut ch: char = 'a';
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let mut types = vec![];
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for param in signature.params.iter() {
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match param {
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(_, Some(_ty)) => {
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//TODO eventually handle this case different
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types.push(Rc::new(format!("{}", ch)));
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ch = ((ch as u8) + 1) as char;
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},
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(_, None) => {
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types.push(Rc::new(format!("{}", ch)));
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ch = ((ch as u8) + 1) as char;
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}
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}
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}
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let spec = SymbolSpec::Func(types);
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self.values.insert(
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signature.name.clone(),
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Symbol { name: signature.name.clone(), spec }
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);
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},
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FuncSig(signature) | FuncDecl(signature, _) => self.add_function_signature(signature),
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//TODO figure out why _params isn't being used here
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TypeDecl { name: TypeSingletonName { name, params: _params}, body: TypeBody(variants), mutable: _mutable, } => {
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for (index, var) in variants.iter().enumerate() {
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@ -129,4 +109,32 @@ impl SymbolTable {
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}
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output
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}
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fn add_function_signature(&mut self, signature: &Signature) {
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let mut local_type_context = LocalTypeContext::new();
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let types = signature.params.iter().map(|param| match param {
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(_, Some(type_identifier)) => Rc::new(format!("{:?}", type_identifier)),
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(_, None) => local_type_context.new_universal_type()
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}).collect();
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let spec = SymbolSpec::Func(types);
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self.values.insert(
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signature.name.clone(),
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Symbol { name: signature.name.clone(), spec }
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);
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}
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}
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struct LocalTypeContext {
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state: u8
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}
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impl LocalTypeContext {
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fn new() -> LocalTypeContext {
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LocalTypeContext { state: 0 }
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}
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fn new_universal_type(&mut self) -> TypeName {
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let n = self.state;
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self.state += 1;
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Rc::new(format!("{}", (('a' as u8) + n) as char))
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}
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}
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