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@ -1,13 +1,6 @@
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# Hades
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Programming language that compiles to C++!
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```sml
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fun main: int = do
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@write("Hello, World!\n");
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return 0;
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end;
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```
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Note: Everything in this project can be changed at anytime! (I'm still finding out what work best for lots of thing) if you have an idea, feel free to create an issues about it, or even create a PR! (I'd be very happy)
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# Prerequistie
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@ -29,22 +29,19 @@ impl Codegen {
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self.emit(&self.gen_ir(&ir.kind));
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}
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}
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fn gen_ir(&self, ir: &IRKind) -> String {
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match ir {
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IRKind::Define { name, type_hint, value } => {
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format!("{} {} = {};\n", type_hint, name, self.gen_ir(value))
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},
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IRKind::Call { name, args } => {
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format!("{}({});\n", name, args.iter().map(|arg| self.gen_ir(arg)).collect::<Vec<_>>().join(", "))
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},
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IRKind::Intrinsic { name, args } => {
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match name.as_str() {
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"write" => { format!("std::cout << {};\n", self.gen_ir(&args[0])) },
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"read" => { format!("std::cin >> {};\n", self.gen_ir(&args[0])) },
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_ => unreachable!(format!("Unknown intrinsic: {}", name)) // Shoul be handled by lowering
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_ => format!("{}({});\n", name, args.iter().map(|arg| self.gen_ir(arg)).collect::<Vec<_>>().join(", ")),
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}
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}
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},
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IRKind::Fun { name, return_type_hint, args, body } => {
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let args = args.iter().map(|arg| format!("{} {}", arg.1, arg.0)).collect::<Vec<_>>().join(", ");
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format!("{} {}({}) {{\n{}}}\n", return_type_hint, name, args, self.gen_ir(body))
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@ -1,8 +1,6 @@
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use std::ops::Range;
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use parser::Expr;
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const INTRINSICS: [&str; 2] = ["write", "read"];
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#[derive(Debug)]
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pub enum Value { Int(i64), Boolean(bool), String(String), Ident(String) }
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@ -11,7 +9,6 @@ pub enum IRKind {
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Define { name: String, type_hint: String, value: Box<Self> },
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Fun { name: String, return_type_hint: String, args: Vec<(String, String)>, body: Box<Self> },
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Call { name: String, args: Vec<Self> },
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Intrinsic { name: String, args: Vec<Self> },
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Do { body: Vec<Self> },
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If { cond: Box<Self>, body: Box<Self>, else_body: Box<Self> },
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Value { value: Value },
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@ -66,12 +63,7 @@ pub fn expr_to_ir(expr: &Expr) -> (Option<IRKind>, Option<LoweringError>) {
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},
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Expr::Call { name, args } => {
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let name = match &name.0 {
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Expr::Identifier(s) => {
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if INTRINSICS.contains(&s.as_str()) { s.clone() }
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else {
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return (None, Some(LoweringError { span: name.1.clone(), message: format!("Unknown intrinsic: {}", s) }));
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}
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}
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Expr::Identifier(s) => s.clone(),
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// Should never happen because the parser should have caught this
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_ => return (None, Some(LoweringError { span: name.1.clone(), message: "Expected identifier".to_string() }))
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};
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@ -90,20 +82,6 @@ pub fn expr_to_ir(expr: &Expr) -> (Option<IRKind>, Option<LoweringError>) {
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let ir_kind = IRKind::Call { name, args: largs };
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return (Some(ir_kind), None);
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},
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Expr::Intrinsic { name, args } => {
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let name = match &name.0 {
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Expr::Identifier(s) => s.clone(),
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_ => return (None, Some(LoweringError { span: name.1.clone(), message: "Expected identifier".to_string() }))
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};
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let mut largs = Vec::new();
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for arg in &args.0 {
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let arg = expr_to_ir(&arg.0);
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if let Some(err) = arg.1 { return (None, Some(err)); }
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else { largs.push(arg.0.unwrap()); }
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}
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let ir_kind = IRKind::Intrinsic { name, args: largs };
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return (Some(ir_kind), None);
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},
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Expr::Fun { name, type_hint, args, body } => {
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// Iterate each argument and give it a type hint
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let args = args.0.iter().map(|arg| (arg.0.0.clone(), gen_type_hint(&arg.1.0))).collect::<Vec<_>>();
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@ -15,13 +15,12 @@ pub enum Token {
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// Operators
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Plus, Minus, Multiply, Divide,
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Not, Equal, NotEqual, Less, Greater,
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// Symbols & Delimiters
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Assign,
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Dot, Comma,
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Colon, SemiColon,
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OpenParen, CloseParen,
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At,
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}
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impl std::fmt::Display for Token {
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@ -50,7 +49,7 @@ impl std::fmt::Display for Token {
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Token::NotEqual => write!(f, "!="),
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Token::Less => write!(f, "<"),
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Token::Greater => write!(f, ">"),
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Token::Assign => write!(f, "="),
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Token::Dot => write!(f, "."),
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Token::Comma => write!(f, ","),
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@ -58,7 +57,6 @@ impl std::fmt::Display for Token {
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Token::SemiColon => write!(f, ";"),
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Token::OpenParen => write!(f, "("),
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Token::CloseParen => write!(f, ")"),
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Token::At => write!(f, "@"),
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}
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}
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}
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@ -90,7 +88,6 @@ pub fn lexer() -> impl Parser<char, Vec<(Token, Span)>, Error = Simple<char>> {
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just(';').to(Token::SemiColon),
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just('(').to(Token::OpenParen),
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just(')').to(Token::CloseParen),
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just('@').to(Token::At),
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));
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let keyword = text::ident().map(|s: String| match s.as_str() {
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@ -11,7 +11,6 @@ pub enum Expr {
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Unary { op: String, rhs: Box<Spanned<Self>> },
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Binary { lhs: Box<Spanned<Self>>, op: String, rhs: Box<Spanned<Self>> },
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Call { name: Box<Spanned<Self>>, args: Spanned<Vec<Spanned<Self>>> },
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Intrinsic { name: Box<Spanned<Self>>, args: Spanned<Vec<Spanned<Self>>> },
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Let {
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name: String,
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@ -61,7 +60,7 @@ fn expr_parser() -> impl Parser<Token, Vec<Spanned<Expr>>, Error = Simple<Token>
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// .delimited_by(just(Token::OpenParen), just(Token::CloseParen)))
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.labelled("atom");
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let call = atom.clone()
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let call = atom
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.then(
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args.clone()
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.delimited_by(
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@ -80,31 +79,11 @@ fn expr_parser() -> impl Parser<Token, Vec<Spanned<Expr>>, Error = Simple<Token>
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)
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});
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let intrinsic = just(Token::At)
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.ignore_then(atom)
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.then(
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args.clone()
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.delimited_by(
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just(Token::OpenParen),
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just(Token::CloseParen),
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)
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.repeated()
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)
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.foldl(|name, args| {
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(
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Expr::Intrinsic {
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name: Box::new(name.clone()),
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args: (args, name.1.clone()),
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},
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name.1,
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)
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});
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let unary = choice((
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just(Token::Plus),
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just(Token::Minus)))
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.repeated()
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.then(call.or(intrinsic))
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.then(call)
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.foldr(|op, rhs| {
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(
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Expr::Unary {
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@ -1,4 +1,4 @@
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fun main: int = do
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@write("Hello, World!\n");
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write("Hello, World!\n");
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return 0;
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end;
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