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Location: CSY/reowolf/src/protocol/tests/parser_imports.rs

ed4fe8216eb0 5.7 KiB application/rls-services+xml Show Annotation Show as Raw Download as Raw
MH
Fix binding- and assignment-expression related typing issues.

Simpler solutions are better, so the typechecker is back to normal.
Instead we simply make sure that assignment expression is never
nested under another expression, and binding expressions may only
be nested under LogicalAnd-expressions. If only I knew why I thought
type shenanigans were a good idea in the first place...
/// parser_imports.rs
///
/// Simple import tests

use super::*;

#[test]
fn test_module_import() {
    Tester::new("single domain name")
        .with_source("
        #module external
        struct Foo { s32 field }
        ")
        .with_source("
        import external;
        func caller() -> s32 {
            auto a = external::Foo{ field: 0 };
            return a.field;
        }
        ")
        .compile()
        .expect_ok();

    Tester::new("multi domain name")
        .with_source("
        #module external.domain
        struct Foo { s32 field }
        ")
        .with_source("
        import external.domain;
        func caller() -> s32 {
            auto a = domain::Foo{ field: 0 };
            return a.field;
        }
        ")
        .compile()
        .expect_ok();

    Tester::new("aliased domain name")
        .with_source("
        #module external
        struct Foo { s32 field }
        ")
        .with_source("
        import external as aliased;
        func caller() -> s32 {
            auto a = aliased::Foo{ field: 0 };
            return a.field;
        }
        ")
        .compile()
        .expect_ok();
}

#[test]
fn test_single_symbol_import() {
    Tester::new("specific symbol")
        .with_source("
        #module external
        struct Foo { s32 field }
        ")
        .with_source("
        import external::Foo;
        func caller() -> s32 {
            auto a = Foo{ field: 1 };
            auto b = Foo{ field: 2 };
            return a.field + b.field;
        }")
        .compile()
        .expect_ok();

    Tester::new("specific aliased symbol")
        .with_source("
        #module external
        struct Foo { s32 field }
        ")
        .with_source("
        import external::Foo as Bar;
        func caller() -> s32 {
            return Bar{ field: 0 }.field;
        }
        ")
        .compile()
        .expect_ok();

    Tester::new("import all")
        .with_source("
        #module external
        struct Foo { s32 field }
        ")
        .with_source("
        import external::*;
        func caller() -> s32 { return Foo{field:0}.field; }
        ")
        .compile()
        .expect_ok();
}

#[test]
fn test_multi_symbol_import() {
    Tester::new("specific symbols")
        .with_source("
        #module external
        struct Foo { s8 f }
        struct Bar { s8 b }
        ")
        .with_source("
        import external::{Foo, Bar};
        func caller() -> s8 {
            return Foo{f:0}.f + Bar{b:1}.b;
        }
        ")
        .compile()
        .expect_ok();

    Tester::new("aliased symbols")
        .with_source("
        #module external
        struct Foo { s8 in_foo }
        struct Bar { s8 in_bar }
        ")
        .with_source("
        import external::{Foo as Bar, Bar as Foo};
        func caller() -> s8 {
            return Foo{in_bar:0}.in_bar + Bar{in_foo:0}.in_foo;    
        }")
        .compile()
        .expect_ok();

    Tester::new("import all")
        .with_source("
        #module external
        struct Foo { s8 f }
        struct Bar { s8 b }
        ")
        .with_source("
        import external::*;
        func caller() -> s8 {
            auto f = Foo{f:0};
            auto b = Bar{b:0};
            return f.f + b.b;
        }
        ")
        .compile()
        .expect_ok();
}

#[test]
fn test_illegal_import_use() {
    Tester::new("unexpected polymorphic args")
        .with_source("
        #module external
        struct Foo { s8 f }
        ")
        .with_source("
        import external;
        func caller() -> s8 {
            auto foo = external::Foo<s32>{ f: 0 };
            return foo.f;
        }
        ")
        .compile()
        .expect_err()
        .error(|e| { e
            .assert_msg_has(0, "the type 'external::Foo' is not polymorphic");
        });

    Tester::new("mismatched polymorphic args")
        .with_source("
        #module external
        struct Foo<T>{ T f }
        ")
        .with_source("
        import external;
        func caller() -> s8 {
            auto foo = external::Foo<s8, s32>{ f: 0 };
            return foo.f;
        }")
        .compile()
        .expect_err()
        .error(|e| { e
            .assert_msg_has(0, "expected 1 polymorphic")
            .assert_msg_has(0, "2 were provided");
        });

    Tester::new("module as type")
        .with_source("
        #module external
        ")
        .with_source("
        import external;
        func caller() -> s8 {
            auto foo = external{ f: 0 };
            return 0;
        }
        ")
        .compile()
        .expect_err()
        .error(|e| { e
            .assert_msg_has(0, "expected a type but got a module");
        });

    Tester::new("missing type")
        .with_source("
        #module external
        struct Bar {}
        ")
        .with_source("
        import external::Foo;
        ")
        .compile()
        .expect_err()
        .error(|e| { e
            .assert_msg_has(0, "could not find symbol 'Foo' within module 'external'")
            .assert_occurs_at(0, "Foo");
        });

    Tester::new("import from another import")
        .with_source("
        #module mod1
        struct Foo { s8 f }
        ")
        .with_source("
        #module mod2
        import mod1::Foo;
        struct Bar { Foo f }
        ")
        .with_source("
        import mod2;
        func caller() -> s8 {
            auto bar = mod2::Bar{ f: mod2::Foo{ f: 0 } };
            return var.f.f;
        }")
        .compile()
        .expect_err()
        .error(|e| { e
            .assert_msg_has(0, "unknown type 'Foo' in module 'mod2'")
            .assert_msg_has(0, "module 'mod2' does import 'Foo'")
            .assert_occurs_at(0, "Foo");
        });
}