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https://github.com/rust-lang/rust-analyzer
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Simplify cfg representation
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parent
20d369a826
commit
2bc4c1ff31
3 changed files with 41 additions and 31 deletions
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@ -6,26 +6,42 @@ use std::slice::Iter as SliceIter;
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use tt::SmolStr;
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/// A simple configuration value passed in from the outside.
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub enum CfgAtom {
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/// eg. `#[cfg(test)]`
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Flag(SmolStr),
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/// eg. `#[cfg(target_os = "linux")]`
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///
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/// Note that a key can have multiple values that are all considered "active" at the same time.
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/// For example, `#[cfg(target_feature = "sse")]` and `#[cfg(target_feature = "sse2")]`.
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KeyValue { key: SmolStr, value: SmolStr },
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub enum CfgExpr {
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Invalid,
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Atom(SmolStr),
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KeyValue { key: SmolStr, value: SmolStr },
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Atom(CfgAtom),
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All(Vec<CfgExpr>),
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Any(Vec<CfgExpr>),
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Not(Box<CfgExpr>),
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}
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impl From<CfgAtom> for CfgExpr {
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fn from(atom: CfgAtom) -> Self {
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CfgExpr::Atom(atom)
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}
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}
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impl CfgExpr {
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pub fn parse(tt: &tt::Subtree) -> CfgExpr {
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next_cfg_expr(&mut tt.token_trees.iter()).unwrap_or(CfgExpr::Invalid)
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}
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/// Fold the cfg by querying all basic `Atom` and `KeyValue` predicates.
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pub fn fold(&self, query: &dyn Fn(&SmolStr, Option<&SmolStr>) -> bool) -> Option<bool> {
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pub fn fold(&self, query: &dyn Fn(&CfgAtom) -> bool) -> Option<bool> {
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match self {
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CfgExpr::Invalid => None,
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CfgExpr::Atom(name) => Some(query(name, None)),
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CfgExpr::KeyValue { key, value } => Some(query(key, Some(value))),
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CfgExpr::Atom(atom) => Some(query(atom)),
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CfgExpr::All(preds) => {
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preds.iter().try_fold(true, |s, pred| Some(s && pred.fold(query)?))
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}
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@ -54,7 +70,7 @@ fn next_cfg_expr(it: &mut SliceIter<tt::TokenTree>) -> Option<CfgExpr> {
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// FIXME: escape? raw string?
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let value =
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SmolStr::new(literal.text.trim_start_matches('"').trim_end_matches('"'));
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CfgExpr::KeyValue { key: name, value }
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CfgAtom::KeyValue { key: name, value }.into()
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}
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_ => return Some(CfgExpr::Invalid),
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}
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@ -70,7 +86,7 @@ fn next_cfg_expr(it: &mut SliceIter<tt::TokenTree>) -> Option<CfgExpr> {
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_ => CfgExpr::Invalid,
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}
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}
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_ => CfgExpr::Atom(name),
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_ => CfgAtom::Flag(name).into(),
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};
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// Eat comma separator
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@ -101,22 +117,22 @@ mod tests {
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#[test]
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fn test_cfg_expr_parser() {
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assert_parse_result("#![cfg(foo)]", CfgExpr::Atom("foo".into()));
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assert_parse_result("#![cfg(foo,)]", CfgExpr::Atom("foo".into()));
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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(CfgExpr::Atom("foo".into()))),
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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")]"#, CfgExpr::Atom("foo".into()));
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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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CfgExpr::Atom("foo".into()),
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CfgExpr::KeyValue { key: "bar".into(), value: "baz".into() },
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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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@ -126,7 +142,7 @@ mod tests {
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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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CfgExpr::KeyValue { key: "bar".into(), value: "baz".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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}
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@ -5,7 +5,7 @@ mod cfg_expr;
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use rustc_hash::FxHashSet;
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use tt::SmolStr;
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pub use cfg_expr::CfgExpr;
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pub use cfg_expr::{CfgAtom, CfgExpr};
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/// Configuration options used for conditional compilition on items with `cfg` attributes.
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/// We have two kind of options in different namespaces: atomic options like `unix`, and
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@ -19,33 +19,25 @@ pub use cfg_expr::CfgExpr;
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/// See: https://doc.rust-lang.org/reference/conditional-compilation.html#set-configuration-options
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#[derive(Debug, Clone, PartialEq, Eq, Default)]
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pub struct CfgOptions {
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atoms: FxHashSet<SmolStr>,
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key_values: FxHashSet<(SmolStr, SmolStr)>,
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enabled: FxHashSet<CfgAtom>,
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}
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impl CfgOptions {
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pub fn check(&self, cfg: &CfgExpr) -> Option<bool> {
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cfg.fold(&|key, value| match value {
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None => self.atoms.contains(key),
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Some(value) => self.key_values.contains(&(key.clone(), value.clone())),
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})
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cfg.fold(&|atom| self.enabled.contains(atom))
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}
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pub fn insert_atom(&mut self, key: SmolStr) {
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self.atoms.insert(key);
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self.enabled.insert(CfgAtom::Flag(key));
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}
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pub fn insert_key_value(&mut self, key: SmolStr, value: SmolStr) {
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self.key_values.insert((key, value));
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self.enabled.insert(CfgAtom::KeyValue { key, value });
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}
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pub fn append(&mut self, other: &CfgOptions) {
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for atom in &other.atoms {
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self.atoms.insert(atom.clone());
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}
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for (key, value) in &other.key_values {
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self.key_values.insert((key.clone(), value.clone()));
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for atom in &other.enabled {
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self.enabled.insert(atom.clone());
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}
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}
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}
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@ -1,6 +1,6 @@
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//! See `CargoTargetSpec`
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use cfg::CfgExpr;
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use cfg::{CfgAtom, CfgExpr};
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use ide::{FileId, RunnableKind, TestId};
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use project_model::{self, TargetKind};
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use vfs::AbsPathBuf;
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@ -160,7 +160,9 @@ impl CargoTargetSpec {
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/// Fill minimal features needed
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fn required_features(cfg_expr: &CfgExpr, features: &mut Vec<String>) {
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match cfg_expr {
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CfgExpr::KeyValue { key, value } if key == "feature" => features.push(value.to_string()),
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CfgExpr::Atom(CfgAtom::KeyValue { key, value }) if key == "feature" => {
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features.push(value.to_string())
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}
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CfgExpr::All(preds) => {
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preds.iter().for_each(|cfg| required_features(cfg, features));
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}
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