rename IntLiteral -> NatLiteral
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3b134d7fb6
commit
6f8dc9bedd
@ -73,7 +73,7 @@ impl Expression {
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use parsing::ExpressionType::*;
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let ref input = self.0;
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match input {
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IntLiteral(n) => Expr::Lit(Lit::Nat(*n)), //TODO I should rename IntLiteral if I want the Nat/Int distinction, which I do
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NatLiteral(n) => Expr::Lit(Lit::Nat(*n)),
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FloatLiteral(f) => Expr::Lit(Lit::Float(*f)),
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StringLiteral(s) => Expr::Lit(Lit::StringLit(s.clone())),
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BoolLiteral(b) => Expr::Lit(Lit::Bool(*b)),
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@ -231,7 +231,7 @@ pub struct TypeSingletonName {
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#[derive(Debug, PartialEq, Clone)]
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pub enum ExpressionType {
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IntLiteral(u64),
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NatLiteral(u64),
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FloatLiteral(f64),
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StringLiteral(Rc<String>),
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BoolLiteral(bool),
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@ -789,12 +789,12 @@ impl Parser {
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BinNumberSigil => {
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let digits = self.digits()?;
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let n = parse_binary(digits)?;
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Ok(Expression(IntLiteral(n), None))
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Ok(Expression(NatLiteral(n), None))
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},
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HexLiteral(text) => {
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let digits: String = text.chars().filter(|c| c.is_digit(16)).collect();
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let n = parse_hex(digits)?;
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Ok(Expression(IntLiteral(n), None))
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Ok(Expression(NatLiteral(n), None))
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},
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_ => return ParseError::new("Expected '0x' or '0b'"),
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}
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@ -814,7 +814,7 @@ impl Parser {
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}
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} else {
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match digits.parse::<u64>() {
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Ok(d) => Ok(Expression(IntLiteral(d), None)),
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Ok(d) => Ok(Expression(NatLiteral(d), None)),
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Err(e) => ParseError::new(&format!("Integer failed to parse with error: {}", e)),
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}
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}
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@ -942,41 +942,41 @@ mod parse_tests {
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parse_test! { ".2", single_expr!(FloatLiteral(0.2)) };
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parse_test! { "8.1", single_expr!(FloatLiteral(8.1)) };
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parse_test! { "0b010", single_expr!(IntLiteral(2)) };
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parse_test! { "0b0_1_0_", single_expr!(IntLiteral(2)) }
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parse_test! { "0b010", single_expr!(NatLiteral(2)) };
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parse_test! { "0b0_1_0_", single_expr!(NatLiteral(2)) }
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parse_test! {"0xff", single_expr!(IntLiteral(255)) };
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parse_test! {"0xf_f_", single_expr!(IntLiteral(255)) };
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parse_test! {"0xff", single_expr!(NatLiteral(255)) };
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parse_test! {"0xf_f_", single_expr!(NatLiteral(255)) };
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parse_test!("0xf_f_+1", AST(vec![exprstatement!(binexp!("+", IntLiteral(255), IntLiteral(1)))]));
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parse_test!("0xf_f_+1", AST(vec![exprstatement!(binexp!("+", NatLiteral(255), NatLiteral(1)))]));
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parse_test! {"3; 4; 4.3", AST(
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vec![exprstatement!(IntLiteral(3)), exprstatement!(IntLiteral(4)),
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vec![exprstatement!(NatLiteral(3)), exprstatement!(NatLiteral(4)),
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exprstatement!(FloatLiteral(4.3))])
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};
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parse_test!("1 + 2 * 3", AST(vec!
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[
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exprstatement!(binexp!("+", IntLiteral(1), binexp!("*", IntLiteral(2), IntLiteral(3))))
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exprstatement!(binexp!("+", NatLiteral(1), binexp!("*", NatLiteral(2), NatLiteral(3))))
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]));
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parse_test!("1 * 2 + 3", AST(vec!
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[
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exprstatement!(binexp!("+", binexp!("*", IntLiteral(1), IntLiteral(2)), IntLiteral(3)))
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exprstatement!(binexp!("+", binexp!("*", NatLiteral(1), NatLiteral(2)), NatLiteral(3)))
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]));
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parse_test!("1 && 2", AST(vec![exprstatement!(binexp!("&&", IntLiteral(1), IntLiteral(2)))]));
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parse_test!("1 && 2", AST(vec![exprstatement!(binexp!("&&", NatLiteral(1), NatLiteral(2)))]));
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parse_test!("1 + 2 * 3 + 4", AST(vec![exprstatement!(
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binexp!("+",
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binexp!("+", IntLiteral(1), binexp!("*", IntLiteral(2), IntLiteral(3))),
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IntLiteral(4)))]));
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binexp!("+", NatLiteral(1), binexp!("*", NatLiteral(2), NatLiteral(3))),
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NatLiteral(4)))]));
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parse_test!("(1 + 2) * 3", AST(vec!
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[exprstatement!(binexp!("*", binexp!("+", IntLiteral(1), IntLiteral(2)), IntLiteral(3)))]));
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[exprstatement!(binexp!("*", binexp!("+", NatLiteral(1), NatLiteral(2)), NatLiteral(3)))]));
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parse_test!(".1 + .2", AST(vec![exprstatement!(binexp!("+", FloatLiteral(0.1), FloatLiteral(0.2)))]));
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parse_test!("1 / 2", AST(vec![exprstatement!(binexp!("/", IntLiteral(1), IntLiteral(2)))]));
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parse_test!("1 / 2", AST(vec![exprstatement!(binexp!("/", NatLiteral(1), NatLiteral(2)))]));
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}
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#[test]
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@ -984,11 +984,11 @@ mod parse_tests {
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parse_test!("()", AST(vec![exprstatement!(TupleLiteral(vec![]))]));
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parse_test!("(\"hella\", 34)", AST(vec![exprstatement!(
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TupleLiteral(
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vec![ex!(StringLiteral(rc!(hella))), ex!(IntLiteral(34))]
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vec![ex!(StringLiteral(rc!(hella))), ex!(NatLiteral(34))]
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)
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)]));
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parse_test!("((1+2), \"slough\")", AST(vec![exprstatement!(TupleLiteral(vec![
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ex!(binexp!("+", IntLiteral(1), IntLiteral(2))),
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ex!(binexp!("+", NatLiteral(1), NatLiteral(2))),
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ex!(StringLiteral(rc!(slough))),
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]))]))
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}
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@ -1018,9 +1018,9 @@ mod parse_tests {
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binexp!(".", val!("a"), val!("b")),
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val!("c")),
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val!("d")))]));
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parse_test!("-3", AST(vec![exprstatement!(prefexp!("-", IntLiteral(3)))]));
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parse_test!("-3", AST(vec![exprstatement!(prefexp!("-", NatLiteral(3)))]));
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parse_test!("-0.2", AST(vec![exprstatement!(prefexp!("-", FloatLiteral(0.2)))]));
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parse_test!("!3", AST(vec![exprstatement!(prefexp!("!", IntLiteral(3)))]));
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parse_test!("!3", AST(vec![exprstatement!(prefexp!("!", NatLiteral(3)))]));
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parse_test!("a <- -b", AST(vec![exprstatement!(binexp!("<-", val!("a"), prefexp!("-", val!("b"))))]));
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parse_test!("a <--b", AST(vec![exprstatement!(binexp!("<--", val!("a"), val!("b")))]));
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}
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@ -1031,7 +1031,7 @@ mod parse_tests {
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parse_test!("oi()", AST(vec![exprstatement!(Call { f: bx!(ex!(val!("oi"))), arguments: vec![] })]));
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parse_test!("oi(a, 2 + 2)", AST(vec![exprstatement!(Call
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{ f: bx!(ex!(val!("oi"))),
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arguments: vec![ex!(val!("a")), ex!(binexp!("+", IntLiteral(2), IntLiteral(2)))]
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arguments: vec![ex!(val!("a")), ex!(binexp!("+", NatLiteral(2), NatLiteral(2)))]
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})]));
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parse_error!("a(b,,c)");
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@ -1105,8 +1105,8 @@ fn a(x) {
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#[test]
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fn parsing_bindings() {
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parse_test!("var a = 10", AST(vec![Declaration(Binding { name: rc!(a), constant: false, expr: ex!(IntLiteral(10)) } )]));
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parse_test!("const a = 2 + 2", AST(vec![Declaration(Binding { name: rc!(a), constant: true, expr: ex!(binexp!("+", IntLiteral(2), IntLiteral(2))) }) ]));
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parse_test!("var a = 10", AST(vec![Declaration(Binding { name: rc!(a), constant: false, expr: ex!(NatLiteral(10)) } )]));
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parse_test!("const a = 2 + 2", AST(vec![Declaration(Binding { name: rc!(a), constant: true, expr: ex!(binexp!("+", NatLiteral(2), NatLiteral(2))) }) ]));
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}
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#[test]
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@ -1124,7 +1124,7 @@ fn a(x) {
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c
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}"#,
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AST(vec![exprstatement!(IfExpression(bx!(ex!(BoolLiteral(true))),
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vec![Declaration(Binding { name: rc!(a), constant: true, expr: ex!(IntLiteral(10)) }),
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vec![Declaration(Binding { name: rc!(a), constant: true, expr: ex!(NatLiteral(10)) }),
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exprstatement!(val!(rc!(b)))],
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Some(vec![exprstatement!(val!(rc!(c)))])))])
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);
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@ -1135,7 +1135,7 @@ fn a(x) {
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Some(vec![exprstatement!(val!("c"))])))]));
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parse_test!("if (A {a: 1}) { b } else { c }", AST(vec![exprstatement!(
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IfExpression(bx!(ex!(NamedStruct { name: rc!(A), fields: vec![(rc!(a), ex!(IntLiteral(1)))]})),
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IfExpression(bx!(ex!(NamedStruct { name: rc!(A), fields: vec![(rc!(a), ex!(NatLiteral(1)))]})),
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vec![exprstatement!(val!("b"))],
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Some(vec![exprstatement!(val!("c"))])))]));
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@ -1213,7 +1213,7 @@ fn a(x) {
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#[test]
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fn parsing_lambdas() {
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parse_test! { "{|x| x + 1}", single_expr!(
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Lambda { params: vec![(rc!(x), None)], body: vec![exst!("+", val!("x"), IntLiteral(1))] }
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Lambda { params: vec![(rc!(x), None)], body: vec![exst!("+", val!("x"), NatLiteral(1))] }
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) }
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parse_test!("{ |x: Int, y| a;b;c;}", AST(vec![
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@ -1226,14 +1226,14 @@ fn a(x) {
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parse_test!("{|x| y}(1)", AST(vec![
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exprstatement!(Call { f: bx!(ex!(
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Lambda { params: vec![(rc!(x), None)], body: vec![exprstatement!(val!("y"))] })),
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arguments: vec![ex!(IntLiteral(1))] })]));
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arguments: vec![ex!(NatLiteral(1))] })]));
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}
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#[test]
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fn list_literals() {
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parse_test! {
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"[1,2]", AST(vec![
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exprstatement!(ListLiteral(vec![ex!(IntLiteral(1)), ex!(IntLiteral(2))]))])
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exprstatement!(ListLiteral(vec![ex!(NatLiteral(1)), ex!(NatLiteral(2))]))])
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};
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}
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}
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@ -71,6 +71,7 @@ impl UVarGenerator {
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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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@ -87,6 +88,7 @@ impl parsing::TypeName {
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&Tuple(_) => return Err(format!("Tuples not yet implemented")),
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&Singleton(ref name) => match name {
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&TypeSingletonName { ref 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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@ -186,7 +188,7 @@ impl TypeContext {
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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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&IntLiteral(_) => Ok(Const(Int)),
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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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