2021-08-30 15:26:35 -05:00
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use arbitrary::{Arbitrary, Unstructured};
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2020-10-23 05:14:58 -05:00
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use expect_test::{expect, Expect};
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2021-08-09 07:41:19 -05:00
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use mbe::syntax_node_to_token_tree;
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2020-10-23 05:14:58 -05:00
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use syntax::{ast, AstNode};
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use crate::{CfgAtom, CfgExpr, CfgOptions, DnfExpr};
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fn assert_parse_result(input: &str, expected: CfgExpr) {
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let (tt, _) = {
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let source_file = ast::SourceFile::parse(input).ok().unwrap();
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let tt = source_file.syntax().descendants().find_map(ast::TokenTree::cast).unwrap();
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2021-08-09 07:41:19 -05:00
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syntax_node_to_token_tree(tt.syntax())
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2020-10-23 05:14:58 -05:00
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};
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let cfg = CfgExpr::parse(&tt);
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assert_eq!(cfg, expected);
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}
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fn check_dnf(input: &str, expect: Expect) {
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let (tt, _) = {
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let source_file = ast::SourceFile::parse(input).ok().unwrap();
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let tt = source_file.syntax().descendants().find_map(ast::TokenTree::cast).unwrap();
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2021-08-09 07:41:19 -05:00
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syntax_node_to_token_tree(tt.syntax())
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2020-10-23 05:14:58 -05:00
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};
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let cfg = CfgExpr::parse(&tt);
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let actual = format!("#![cfg({})]", DnfExpr::new(cfg));
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expect.assert_eq(&actual);
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}
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fn check_why_inactive(input: &str, opts: &CfgOptions, expect: Expect) {
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let (tt, _) = {
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let source_file = ast::SourceFile::parse(input).ok().unwrap();
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let tt = source_file.syntax().descendants().find_map(ast::TokenTree::cast).unwrap();
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2021-08-09 07:41:19 -05:00
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syntax_node_to_token_tree(tt.syntax())
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2020-10-23 05:14:58 -05:00
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};
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let cfg = CfgExpr::parse(&tt);
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let dnf = DnfExpr::new(cfg);
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let why_inactive = dnf.why_inactive(opts).unwrap().to_string();
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expect.assert_eq(&why_inactive);
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}
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#[track_caller]
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fn check_enable_hints(input: &str, opts: &CfgOptions, expected_hints: &[&str]) {
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let (tt, _) = {
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let source_file = ast::SourceFile::parse(input).ok().unwrap();
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let tt = source_file.syntax().descendants().find_map(ast::TokenTree::cast).unwrap();
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2021-08-09 07:41:19 -05:00
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syntax_node_to_token_tree(tt.syntax())
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2020-10-23 05:14:58 -05:00
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};
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let cfg = CfgExpr::parse(&tt);
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let dnf = DnfExpr::new(cfg);
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let hints = dnf.compute_enable_hints(opts).map(|diff| diff.to_string()).collect::<Vec<_>>();
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assert_eq!(hints, expected_hints);
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}
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#[test]
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fn test_cfg_expr_parser() {
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assert_parse_result("#![cfg(foo)]", CfgAtom::Flag("foo".into()).into());
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assert_parse_result("#![cfg(foo,)]", CfgAtom::Flag("foo".into()).into());
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assert_parse_result(
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"#![cfg(not(foo))]",
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CfgExpr::Not(Box::new(CfgAtom::Flag("foo".into()).into())),
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);
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assert_parse_result("#![cfg(foo(bar))]", CfgExpr::Invalid);
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// Only take the first
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assert_parse_result(r#"#![cfg(foo, bar = "baz")]"#, CfgAtom::Flag("foo".into()).into());
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assert_parse_result(
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r#"#![cfg(all(foo, bar = "baz"))]"#,
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CfgExpr::All(vec![
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CfgAtom::Flag("foo".into()).into(),
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CfgAtom::KeyValue { key: "bar".into(), value: "baz".into() }.into(),
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]),
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);
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assert_parse_result(
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r#"#![cfg(any(not(), all(), , bar = "baz",))]"#,
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CfgExpr::Any(vec![
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CfgExpr::Not(Box::new(CfgExpr::Invalid)),
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CfgExpr::All(vec![]),
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CfgExpr::Invalid,
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CfgAtom::KeyValue { key: "bar".into(), value: "baz".into() }.into(),
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]),
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);
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}
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#[test]
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fn smoke() {
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check_dnf("#![cfg(test)]", expect![[r#"#![cfg(test)]"#]]);
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check_dnf("#![cfg(not(test))]", expect![[r#"#![cfg(not(test))]"#]]);
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check_dnf("#![cfg(not(not(test)))]", expect![[r#"#![cfg(test)]"#]]);
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check_dnf("#![cfg(all(a, b))]", expect![[r#"#![cfg(all(a, b))]"#]]);
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check_dnf("#![cfg(any(a, b))]", expect![[r#"#![cfg(any(a, b))]"#]]);
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check_dnf("#![cfg(not(a))]", expect![[r#"#![cfg(not(a))]"#]]);
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}
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#[test]
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fn distribute() {
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check_dnf("#![cfg(all(any(a, b), c))]", expect![[r#"#![cfg(any(all(a, c), all(b, c)))]"#]]);
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check_dnf("#![cfg(all(c, any(a, b)))]", expect![[r#"#![cfg(any(all(c, a), all(c, b)))]"#]]);
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check_dnf(
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"#![cfg(all(any(a, b), any(c, d)))]",
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expect![[r#"#![cfg(any(all(a, c), all(a, d), all(b, c), all(b, d)))]"#]],
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);
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check_dnf(
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"#![cfg(all(any(a, b, c), any(d, e, f), g))]",
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expect![[
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r#"#![cfg(any(all(a, d, g), all(a, e, g), all(a, f, g), all(b, d, g), all(b, e, g), all(b, f, g), all(c, d, g), all(c, e, g), all(c, f, g)))]"#
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]],
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);
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}
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#[test]
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fn demorgan() {
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check_dnf("#![cfg(not(all(a, b)))]", expect![[r#"#![cfg(any(not(a), not(b)))]"#]]);
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check_dnf("#![cfg(not(any(a, b)))]", expect![[r#"#![cfg(all(not(a), not(b)))]"#]]);
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check_dnf("#![cfg(not(all(not(a), b)))]", expect![[r#"#![cfg(any(a, not(b)))]"#]]);
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check_dnf("#![cfg(not(any(a, not(b))))]", expect![[r#"#![cfg(all(not(a), b))]"#]]);
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}
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#[test]
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fn nested() {
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check_dnf("#![cfg(all(any(a), not(all(any(b)))))]", expect![[r#"#![cfg(all(a, not(b)))]"#]]);
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check_dnf("#![cfg(any(any(a, b)))]", expect![[r#"#![cfg(any(a, b))]"#]]);
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check_dnf("#![cfg(not(any(any(a, b))))]", expect![[r#"#![cfg(all(not(a), not(b)))]"#]]);
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check_dnf("#![cfg(all(all(a, b)))]", expect![[r#"#![cfg(all(a, b))]"#]]);
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check_dnf("#![cfg(not(all(all(a, b))))]", expect![[r#"#![cfg(any(not(a), not(b)))]"#]]);
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}
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2021-08-30 15:26:35 -05:00
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#[test]
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fn regression() {
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check_dnf("#![cfg(all(not(not(any(any(any()))))))]", expect![[r##"#![cfg(any())]"##]]);
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check_dnf("#![cfg(all(any(all(any()))))]", expect![[r##"#![cfg(any())]"##]]);
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check_dnf("#![cfg(all(all(any())))]", expect![[r##"#![cfg(any())]"##]]);
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check_dnf("#![cfg(all(all(any(), x)))]", expect![[r##"#![cfg(any())]"##]]);
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check_dnf("#![cfg(all(all(any()), x))]", expect![[r##"#![cfg(any())]"##]]);
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check_dnf("#![cfg(all(all(any(x))))]", expect![[r##"#![cfg(x)]"##]]);
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check_dnf("#![cfg(all(all(any(x), x)))]", expect![[r##"#![cfg(all(x, x))]"##]]);
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}
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2020-10-23 05:14:58 -05:00
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#[test]
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fn hints() {
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let mut opts = CfgOptions::default();
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check_enable_hints("#![cfg(test)]", &opts, &["enable test"]);
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check_enable_hints("#![cfg(not(test))]", &opts, &[]);
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check_enable_hints("#![cfg(any(a, b))]", &opts, &["enable a", "enable b"]);
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check_enable_hints("#![cfg(any(b, a))]", &opts, &["enable b", "enable a"]);
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check_enable_hints("#![cfg(all(a, b))]", &opts, &["enable a and b"]);
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opts.insert_atom("test".into());
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check_enable_hints("#![cfg(test)]", &opts, &[]);
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check_enable_hints("#![cfg(not(test))]", &opts, &["disable test"]);
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}
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/// Tests that we don't suggest hints for cfgs that express an inconsistent formula.
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#[test]
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fn hints_impossible() {
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let mut opts = CfgOptions::default();
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check_enable_hints("#![cfg(all(test, not(test)))]", &opts, &[]);
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opts.insert_atom("test".into());
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check_enable_hints("#![cfg(all(test, not(test)))]", &opts, &[]);
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}
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#[test]
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fn why_inactive() {
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let mut opts = CfgOptions::default();
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opts.insert_atom("test".into());
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opts.insert_atom("test2".into());
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check_why_inactive("#![cfg(a)]", &opts, expect![["a is disabled"]]);
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check_why_inactive("#![cfg(not(test))]", &opts, expect![["test is enabled"]]);
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check_why_inactive(
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"#![cfg(all(not(test), not(test2)))]",
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&opts,
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expect![["test and test2 are enabled"]],
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);
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check_why_inactive("#![cfg(all(a, b))]", &opts, expect![["a and b are disabled"]]);
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check_why_inactive(
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"#![cfg(all(not(test), a))]",
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&opts,
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expect![["test is enabled and a is disabled"]],
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);
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check_why_inactive(
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"#![cfg(all(not(test), test2, a))]",
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&opts,
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expect![["test is enabled and a is disabled"]],
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);
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check_why_inactive(
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"#![cfg(all(not(test), not(test2), a))]",
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&opts,
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expect![["test and test2 are enabled and a is disabled"]],
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);
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}
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2021-08-30 15:26:35 -05:00
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#[test]
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fn proptest() {
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const REPEATS: usize = 512;
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let mut rng = oorandom::Rand32::new(123456789);
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let mut buf = Vec::new();
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for _ in 0..REPEATS {
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buf.clear();
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while buf.len() < 512 {
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buf.extend(rng.rand_u32().to_ne_bytes());
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}
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let mut u = Unstructured::new(&buf);
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let cfg = CfgExpr::arbitrary(&mut u).unwrap();
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DnfExpr::new(cfg);
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}
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}
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