2018-02-21 02:31:28 -08:00
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use std::rc::Rc;
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2018-02-22 03:21:58 -08:00
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use std::collections::HashMap;
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2018-05-15 03:25:40 -07:00
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//use std::char;
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2018-03-01 22:32:38 -08:00
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use std::fmt;
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use std::fmt::Write;
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2018-02-21 02:31:28 -08:00
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2018-03-03 11:52:07 -08:00
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use itertools::Itertools;
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2018-03-23 18:43:43 -07:00
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use parsing;
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2018-02-21 02:31:28 -08:00
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2018-05-10 21:41:28 -07:00
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pub struct TypeContext {
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2018-05-15 03:25:40 -07:00
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//type_var_count: u64,
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2018-02-27 03:01:05 -08:00
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bindings: HashMap<Rc<String>, Type>,
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2018-05-14 09:46:25 -07:00
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pub symbol_table: SymbolTable
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2018-05-10 21:41:28 -07:00
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}
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//cf. p. 150 or so of Language Implementation Patterns
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2018-05-14 15:01:37 -07:00
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pub struct SymbolTable {
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2018-05-13 15:17:25 -07:00
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pub values: HashMap<Rc<String>, Symbol> //TODO this will eventually have real type information
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}
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impl SymbolTable {
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fn new() -> SymbolTable {
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SymbolTable { values: HashMap::new() }
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}
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}
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2018-05-10 21:41:28 -07:00
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2018-05-13 15:42:10 -07:00
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#[derive(Debug)]
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2018-05-14 15:01:37 -07:00
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pub struct Symbol {
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2018-05-13 15:54:15 -07:00
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pub name: Rc<String>,
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2018-05-15 23:48:36 -07:00
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pub spec: SymbolSpec,
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}
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#[derive(Debug)]
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pub enum SymbolSpec {
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Func, Custom(String)
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2018-02-22 03:21:58 -08:00
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}
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2018-02-21 02:31:28 -08:00
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2018-05-15 23:58:06 -07:00
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/* real meat of type stuff here */
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2018-02-21 03:39:40 -08:00
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#[derive(Debug, PartialEq, Clone)]
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2018-02-21 02:31:28 -08:00
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pub enum Type {
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Const(TConst),
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Var(TVar),
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2018-02-23 01:49:37 -08:00
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Func(Box<Type>, Box<Type>),
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2018-05-15 03:25:40 -07:00
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//UVar(String),
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//EVar(u64),
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2018-05-15 21:47:08 -07:00
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Sum(Vec<Type>),
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2018-02-21 04:32:17 -08:00
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Void
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}
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2018-05-15 21:47:08 -07:00
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#[derive(Debug, PartialEq, Clone)]
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pub struct TVar(String);
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#[derive(Debug, PartialEq, Clone)]
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pub enum TConst {
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Unit,
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Nat,
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Int,
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Float,
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StringT,
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Bool,
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Custom(String),
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}
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2018-03-01 22:32:38 -08:00
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impl fmt::Display for Type {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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2018-05-15 21:47:08 -07:00
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write!(f, "{:?}", self)
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2018-03-01 22:32:38 -08:00
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}
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}
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2018-05-15 23:58:06 -07:00
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/* TODO this should just check the name against a map, and that map should be pre-populated with
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* types */
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2018-02-23 02:30:34 -08:00
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impl parsing::TypeName {
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fn to_type(&self) -> TypeResult<Type> {
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use self::parsing::TypeSingletonName;
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use self::parsing::TypeName::*;
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use self::Type::*; use self::TConst::*;
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Ok(match self {
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Tuple(_) => return Err(format!("Tuples not yet implemented")),
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Singleton(name) => match name {
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TypeSingletonName { name, .. } => match &name[..] {
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"Nat" => Const(Nat),
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"Int" => Const(Int),
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"Float" => Const(Float),
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"Bool" => Const(Bool),
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"String" => Const(StringT),
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n => Const(Custom(n.to_string()))
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}
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}
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})
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}
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}
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2018-02-24 17:37:23 -08:00
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pub type TypeResult<T> = Result<T, String>;
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2018-02-21 02:31:28 -08:00
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impl TypeContext {
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pub fn new() -> TypeContext {
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2018-05-15 03:25:40 -07:00
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TypeContext { bindings: HashMap::new(), /*type_var_count: 0*/ symbol_table: SymbolTable::new() }
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2018-02-28 05:45:20 -08:00
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}
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2018-02-26 21:43:53 -08:00
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}
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impl TypeContext {
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2018-05-15 22:08:37 -07:00
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/* note: this adds names for *forward reference* but doesn't actually create any types. solve that problem
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* later */
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2018-02-27 03:01:05 -08:00
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pub fn add_top_level_types(&mut self, ast: &parsing::AST) -> TypeResult<()> {
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use self::parsing::{Statement, TypeName, Variant, TypeSingletonName, TypeBody};
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use self::parsing::Declaration::*;
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use self::Type::*;
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for statement in ast.0.iter() {
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if let Statement::Declaration(decl) = statement {
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2018-02-27 03:01:05 -08:00
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match decl {
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FuncSig(signature) | FuncDecl(signature, _) => {
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self.symbol_table.values.insert(
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signature.name.clone(),
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Symbol { name: signature.name.clone(), spec: SymbolSpec::Func }
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);
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},
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TypeDecl(TypeSingletonName { name, ..}, TypeBody(variants)) => {
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for var in variants {
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match var {
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Variant::UnitStruct(variant_name) => {
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//TODO will have to make this a function to this type eventually
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let spec = SymbolSpec::Custom(format!("{}", name));
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self.symbol_table.values.insert(variant_name.clone(), Symbol { name: variant_name.clone(), spec });
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2018-05-13 15:42:10 -07:00
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},
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e => return Err(format!("{:?} not supported in typing yet", e)),
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}
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}
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2018-02-27 03:01:05 -08:00
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},
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_ => ()
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}
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}
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}
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Ok(())
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2018-02-26 21:43:53 -08:00
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}
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pub fn debug_symbol_table(&self) -> String {
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let mut output = format!("Symbol table\n");
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for (sym, ty) in &self.symbol_table.values {
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write!(output, "{} -> {:?}\n", sym, ty).unwrap();
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2018-03-01 22:32:38 -08:00
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}
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2018-05-15 23:03:50 -07:00
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write!(output, "\nBindings\n").unwrap();
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for (sym, ty) in &self.bindings {
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write!(output, "{} : {:?}\n", sym, ty).unwrap();
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}
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2018-03-01 22:32:38 -08:00
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output
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2018-02-26 21:43:53 -08:00
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}
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2018-05-15 21:53:50 -07:00
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2018-05-16 01:01:30 -07:00
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pub fn type_check_ast(&mut self, ast: &parsing::AST) -> TypeResult<String> {
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2018-05-15 21:53:50 -07:00
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let ref block = ast.0;
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2018-05-16 01:01:30 -07:00
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//Ok(self.infer_block(block)?)
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Ok(format!("Nothin' b/c redoing typechecking"))
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2018-05-15 21:53:50 -07:00
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}
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2018-02-26 21:43:53 -08:00
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}
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2018-05-16 01:01:30 -07:00
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/*
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impl TypeContext {
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fn infer_block(&mut self, statements: &Vec<parsing::Statement>) -> TypeResult<Type> {
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let mut ret_type = Type::Const(TConst::Unit);
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for statement in statements {
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ret_type = self.infer_statement(statement)?;
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}
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Ok(ret_type)
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}
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2018-05-15 21:53:50 -07:00
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2018-05-15 22:08:37 -07:00
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fn infer_statement(&mut self, statement: &parsing::Statement) -> TypeResult<Type> {
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use self::parsing::Statement::*;
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match statement {
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ExpressionStatement(expr) => self.infer(expr),
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Declaration(decl) => self.add_declaration(decl),
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2018-02-21 02:31:28 -08:00
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}
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}
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2018-02-22 03:21:58 -08:00
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fn add_declaration(&mut self, decl: &parsing::Declaration) -> TypeResult<Type> {
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use self::parsing::Declaration::*;
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use self::Type::*;
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2018-02-22 03:21:58 -08:00
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match decl {
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2018-05-15 03:25:40 -07:00
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Binding { name, expr, .. } => {
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2018-02-22 19:59:53 -08:00
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let ty = self.infer(expr)?;
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self.bindings.insert(name.clone(), ty);
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},
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_ => return Err(format!("other formats not done"))
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}
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2018-02-22 03:25:05 -08:00
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Ok(Void)
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2018-02-21 02:31:28 -08:00
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}
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fn infer(&mut self, expr: &parsing::Expression) -> TypeResult<Type> {
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use self::parsing::Expression;
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match expr {
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2018-05-15 14:26:11 -07:00
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Expression(e, Some(anno)) => {
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2018-02-23 02:30:34 -08:00
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let anno_ty = anno.to_type()?;
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2018-02-22 03:21:58 -08:00
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let ty = self.infer_exprtype(&e)?;
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2018-02-21 04:32:17 -08:00
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self.unify(ty, anno_ty)
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},
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Expression(e, None) => self.infer_exprtype(e)
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2018-02-21 14:14:24 -08:00
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}
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}
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2018-02-22 03:21:58 -08:00
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fn infer_exprtype(&mut self, expr: &parsing::ExpressionType) -> TypeResult<Type> {
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2018-02-21 14:14:24 -08:00
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use self::parsing::ExpressionType::*;
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use self::Type::*; use self::TConst::*;
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match expr {
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2018-05-15 14:26:11 -07:00
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NatLiteral(_) => Ok(Const(Nat)),
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FloatLiteral(_) => Ok(Const(Float)),
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StringLiteral(_) => Ok(Const(StringT)),
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BoolLiteral(_) => Ok(Const(Bool)),
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BinExp(op, lhs, rhs) => { /* remember there are both the haskell convention talk and the write you a haskell ways to do this! */
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match op.get_type()? {
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2018-02-23 01:49:37 -08:00
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Func(box t1, box Func(box t2, box t3)) => {
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let lhs_ty = self.infer(lhs)?;
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let rhs_ty = self.infer(rhs)?;
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self.unify(t1, lhs_ty)?;
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self.unify(t2, rhs_ty)?;
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Ok(t3)
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},
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2018-02-26 18:23:10 -08:00
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other => Err(format!("{:?} is not a binary function type", other))
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2018-02-23 01:49:37 -08:00
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}
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2018-02-22 19:59:53 -08:00
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},
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2018-05-15 14:26:11 -07:00
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PrefixExp(op, expr) => match op.get_type()? {
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2018-02-26 02:21:21 -08:00
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Func(box t1, box t2) => {
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let expr_ty = self.infer(expr)?;
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self.unify(t1, expr_ty)?;
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Ok(t2)
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},
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2018-02-26 18:23:10 -08:00
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other => Err(format!("{:?} is not a prefix op function type", other))
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},
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2018-05-15 14:26:11 -07:00
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Value(name) => {
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2018-02-26 18:23:10 -08:00
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match self.bindings.get(name) {
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Some(ty) => Ok(ty.clone()),
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None => Err(format!("No binding found for variable: {}", name)),
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}
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2018-02-26 02:21:21 -08:00
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},
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2018-05-15 14:26:11 -07:00
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Call { f, arguments } => {
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2018-02-26 21:28:11 -08:00
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let mut tf = self.infer(f)?;
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for arg in arguments.iter() {
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match tf {
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Func(box t, box rest) => {
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let t_arg = self.infer(arg)?;
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self.unify(t, t_arg)?;
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tf = rest;
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},
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other => return Err(format!("Function call failed to unify; last type: {:?}", other)),
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}
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}
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Ok(tf)
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2018-02-26 21:00:36 -08:00
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},
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2018-05-15 14:26:11 -07:00
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TupleLiteral(expressions) => {
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2018-03-03 11:55:20 -08:00
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let mut types = vec![];
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for expr in expressions {
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types.push(self.infer(expr)?);
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}
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Ok(Sum(types))
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},
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2018-02-21 14:14:24 -08:00
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_ => Err(format!("Type not yet implemented"))
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2018-02-21 03:39:40 -08:00
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}
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}
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2018-02-21 04:32:17 -08:00
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fn unify(&mut self, t1: Type, t2: Type) -> TypeResult<Type> {
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2018-02-22 03:25:05 -08:00
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use self::Type::*;// use self::TConst::*;
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2018-02-21 04:32:17 -08:00
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match (t1, t2) {
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(Const(ref a), Const(ref b)) if a == b => Ok(Const(a.clone())),
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(a, b) => Err(format!("Types {:?} and {:?} don't unify", a, b))
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}
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}
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2018-02-21 02:31:28 -08:00
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}
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2018-05-16 01:01:30 -07:00
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*/
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2018-02-21 02:31:28 -08:00
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