2019-08-16 10:39:21 -07:00
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#![cfg(test)]
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use std::cell::RefCell;
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use std::rc::Rc;
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use crate::symbol_table::SymbolTable;
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2019-09-03 03:20:17 -07:00
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use crate::scope_resolution::ScopeResolver;
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2019-08-16 10:39:21 -07:00
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use crate::eval::State;
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fn evaluate_all_outputs(input: &str) -> Vec<Result<String, String>> {
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let symbol_table = Rc::new(RefCell::new(SymbolTable::new()));
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let mut state = State::new(symbol_table);
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2019-09-03 03:20:17 -07:00
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let mut ast = crate::util::quick_ast(input);
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2019-08-16 10:39:21 -07:00
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state.symbol_table_handle.borrow_mut().add_top_level_symbols(&ast).unwrap();
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2019-09-03 03:20:17 -07:00
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let mut scope_resolver = crate::scope_resolution::ScopeResolver::new();
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let _ = scope_resolver.resolve(&mut ast);
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2019-08-16 10:39:21 -07:00
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let reduced = ast.reduce(&state.symbol_table_handle.borrow());
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let all_output = state.evaluate(reduced, true);
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all_output
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}
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macro_rules! test_in_fresh_env {
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($string:expr, $correct:expr) => {
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{
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let all_output = evaluate_all_outputs($string);
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let ref output = all_output.last().unwrap();
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assert_eq!(**output, Ok($correct.to_string()));
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}
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}
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}
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#[test]
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fn test_basic_eval() {
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test_in_fresh_env!("1 + 2", "3");
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test_in_fresh_env!("let mut a = 1; a = 2", "Unit");
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/*
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test_in_fresh_env!("let mut a = 1; a = 2; a", "2");
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test_in_fresh_env!(r#"("a", 1 + 2)"#, r#"("a", 3)"#);
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*/
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}
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#[test]
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fn op_eval() {
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test_in_fresh_env!("- 13", "-13");
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test_in_fresh_env!("10 - 2", "8");
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}
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#[test]
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fn function_eval() {
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test_in_fresh_env!("fn oi(x) { x + 1 }; oi(4)", "5");
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test_in_fresh_env!("fn oi(x) { x + 1 }; oi(1+2)", "4");
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}
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#[test]
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fn scopes() {
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let scope_ok = r#"
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let a = 20
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fn haha() {
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let a = 10
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a
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}
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haha()
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"#;
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test_in_fresh_env!(scope_ok, "10");
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let scope_ok = r#"
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let a = 20
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fn haha() {
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let a = 10
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a
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}
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a
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"#;
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test_in_fresh_env!(scope_ok, "20");
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}
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#[test]
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fn if_is_patterns() {
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let source = r#"
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type Option<T> = Some(T) | None
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let x = Some(9); if x is Some(q) then { q } else { 0 }"#;
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test_in_fresh_env!(source, "9");
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let source = r#"
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type Option<T> = Some(T) | None
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let x = None; if x is Some(q) then { q } else { 0 }"#;
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test_in_fresh_env!(source, "0");
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}
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#[test]
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fn full_if_matching() {
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let source = r#"
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type Option<T> = Some(T) | None
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let a = None
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if a { is None -> 4, is Some(x) -> x }
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"#;
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test_in_fresh_env!(source, "4");
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let source = r#"
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type Option<T> = Some(T) | None
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let a = Some(99)
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if a { is None -> 4, is Some(x) -> x }
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"#;
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test_in_fresh_env!(source, "99");
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let source = r#"
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let a = 10
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if a { is 10 -> "x", is 4 -> "y" }
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"#;
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test_in_fresh_env!(source, "\"x\"");
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let source = r#"
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let a = 10
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if a { is 15 -> "x", is 10 -> "y" }
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"#;
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test_in_fresh_env!(source, "\"y\"");
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}
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#[test]
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fn string_pattern() {
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let source = r#"
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let a = "foo"
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if a { is "foo" -> "x", is _ -> "y" }
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"#;
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test_in_fresh_env!(source, "\"x\"");
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}
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#[test]
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fn boolean_pattern() {
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let source = r#"
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let a = true
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if a {
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is true -> "x",
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is false -> "y"
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}
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"#;
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test_in_fresh_env!(source, "\"x\"");
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}
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#[test]
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fn boolean_pattern_2() {
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let source = r#"
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let a = false
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if a { is true -> "x", is false -> "y" }
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"#;
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test_in_fresh_env!(source, "\"y\"");
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}
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#[test]
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fn ignore_pattern() {
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let source = r#"
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type Option<T> = Some(T) | None
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if Some(10) {
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is _ -> "hella"
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}
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"#;
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test_in_fresh_env!(source, "\"hella\"");
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}
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#[test]
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fn tuple_pattern() {
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let source = r#"
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if (1, 2) {
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is (1, x) -> x,
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is _ -> 99
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}
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"#;
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test_in_fresh_env!(source, 2);
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}
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#[test]
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fn tuple_pattern_2() {
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let source = r#"
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if (1, 2) {
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is (10, x) -> x,
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is (y, x) -> x + y
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}
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"#;
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test_in_fresh_env!(source, 3);
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}
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#[test]
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fn tuple_pattern_3() {
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let source = r#"
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if (1, 5) {
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is (10, x) -> x,
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is (1, x) -> x
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}
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"#;
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test_in_fresh_env!(source, 5);
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}
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#[test]
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fn tuple_pattern_4() {
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let source = r#"
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if (1, 5) {
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is (10, x) -> x,
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is (1, x) -> x,
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}
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"#;
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test_in_fresh_env!(source, 5);
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}
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#[test]
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fn prim_obj_pattern() {
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let source = r#"
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type Stuff = Mulch(Nat) | Jugs(Nat, String) | Mardok
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let a = Mulch(20)
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let b = Jugs(1, "haha")
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let c = Mardok
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let x = if a {
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is Mulch(20) -> "x",
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is _ -> "ERR"
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}
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let y = if b {
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is Mulch(n) -> "ERR",
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is Jugs(2, _) -> "ERR",
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is Jugs(1, s) -> s,
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is _ -> "ERR",
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}
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let z = if c {
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is Jugs(_, _) -> "ERR",
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is Mardok -> "NIGH",
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is _ -> "ERR",
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}
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(x, y, z)
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"#;
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test_in_fresh_env!(source, r#"("x", "haha", "NIGH")"#);
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}
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#[test]
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fn basic_lambda_syntax() {
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let source = r#"
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let q = \(x, y) { x * y }
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let x = q(5,2)
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let y = \(m, n, o) { m + n + o }(1,2,3)
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(x, y)
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"#;
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test_in_fresh_env!(source, r"(10, 6)");
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}
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#[test]
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fn lambda_syntax_2() {
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let source = r#"
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fn milta() {
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\(x) { x + 33 }
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}
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milta()(10)
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"#;
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test_in_fresh_env!(source, "43");
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}
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