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Location: CSY/reowolf/src/protocol/tests/lexer.rs - annotation
8dbdf7022aaf
3.3 KiB
application/rls-services+xml
Initial union implementation
Still untested, but: make union declaration implicit (so no longer
inferred from 'enum' use), and initial implementation of type
inference.
Still untested, but: make union declaration implicit (so no longer
inferred from 'enum' use), and initial implementation of type
inference.
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///
/// Simple tests for the lexer. Only tests the lexing of the input source and
/// the resulting AST without relying on the validation/typing pass
use super::*;
#[test]
fn test_disallowed_inference() {
Tester::new_single_source_expect_err(
"argument auto inference",
"int func(auto arg) { return 0; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "auto arg");
});
Tester::new_single_source_expect_err(
"return type auto inference",
"auto func(int arg) { return 0; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "auto func");
});
Tester::new_single_source_expect_err(
"implicit polymorph argument auto inference",
"int func(in port) { return port; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "in port");
});
Tester::new_single_source_expect_err(
"explicit polymorph argument auto inference",
"int func(in<auto> port) { return port; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "auto> port");
});
Tester::new_single_source_expect_err(
"implicit polymorph return type auto inference",
"in func(in<msg> a, in<msg> b) { return a; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "in func");
});
Tester::new_single_source_expect_err(
"explicit polymorph return type auto inference",
"in<auto> func(in<msg> a) { return a; }"
).error(|e| { e
.assert_msg_has(0, "inference is not allowed")
.assert_occurs_at(0, "auto> func");
});
}
#[test]
fn test_simple_struct_definition() {
Tester::new_single_source_expect_ok(
"empty struct",
"struct Foo{}"
).for_struct("Foo", |t| { t.assert_num_fields(0); });
Tester::new_single_source_expect_ok(
"single field, no comma",
"struct Foo{ int field }"
).for_struct("Foo", |t| { t
.assert_num_fields(1)
.for_field("field", |f| {
f.assert_parser_type("int");
});
});
Tester::new_single_source_expect_ok(
"single field, with comma",
"struct Foo{ int field, }"
).for_struct("Foo", |t| { t
.assert_num_fields(1)
.for_field("field", |f| { f
.assert_parser_type("int");
});
});
Tester::new_single_source_expect_ok(
"multiple fields, no comma",
"struct Foo{ byte a, short b, int c }"
).for_struct("Foo", |t| { t
.assert_num_fields(3)
.for_field("a", |f| { f.assert_parser_type("byte"); })
.for_field("b", |f| { f.assert_parser_type("short"); })
.for_field("c", |f| { f.assert_parser_type("int"); });
});
Tester::new_single_source_expect_ok(
"multiple fields, with comma",
"struct Foo{
byte a,
short b,
int c,
}"
).for_struct("Foo", |t| { t
.assert_num_fields(3)
.for_field("a", |f| { f.assert_parser_type("byte"); })
.for_field("b", |f| { f.assert_parser_type("short"); })
.for_field("c", |f| { f.assert_parser_type("int"); });
});
}
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