rust/crates/ra_mbe/src/mbe_expander.rs

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use rustc_hash::FxHashMap;
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use ra_syntax::SmolStr;
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use crate::{self as mbe, tt_cursor::TtCursor};
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pub fn exapnd(rules: &mbe::MacroRules, input: &tt::Subtree) -> Option<tt::Subtree> {
rules.rules.iter().find_map(|it| expand_rule(it, input))
}
fn expand_rule(rule: &mbe::Rule, input: &tt::Subtree) -> Option<tt::Subtree> {
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let mut input = TtCursor::new(input);
let bindings = match_lhs(&rule.lhs, &mut input)?;
expand_subtree(&rule.rhs, &bindings, &mut Vec::new())
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}
#[derive(Debug, Default)]
struct Bindings {
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inner: FxHashMap<SmolStr, Binding>,
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}
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#[derive(Debug)]
enum Binding {
Simple(tt::TokenTree),
Nested(Vec<Binding>),
}
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impl Bindings {
fn get(&self, name: &SmolStr, nesting: &[usize]) -> Option<&tt::TokenTree> {
let mut b = self.inner.get(name)?;
for &idx in nesting.iter() {
b = match b {
Binding::Simple(_) => break,
Binding::Nested(bs) => bs.get(idx)?,
};
}
match b {
Binding::Simple(it) => Some(it),
Binding::Nested(_) => None,
}
}
fn push_nested(&mut self, nested: Bindings) -> Option<()> {
for (key, value) in nested.inner {
if !self.inner.contains_key(&key) {
self.inner.insert(key.clone(), Binding::Nested(Vec::new()));
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}
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match self.inner.get_mut(&key) {
Some(Binding::Nested(it)) => it.push(value),
_ => return None,
}
}
Some(())
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}
}
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fn match_lhs(pattern: &mbe::Subtree, input: &mut TtCursor) -> Option<Bindings> {
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let mut res = Bindings::default();
for pat in pattern.token_trees.iter() {
match pat {
mbe::TokenTree::Leaf(leaf) => match leaf {
mbe::Leaf::Var(mbe::Var { text, kind }) => {
let kind = kind.clone()?;
match kind.as_str() {
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"ident" => {
let ident = input.eat_ident()?.clone();
res.inner.insert(
text.clone(),
Binding::Simple(tt::Leaf::from(ident).into()),
);
}
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_ => return None,
}
}
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mbe::Leaf::Punct(punct) => {
if input.eat_punct()? != punct {
return None;
}
}
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_ => return None,
},
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mbe::TokenTree::Repeat(mbe::Repeat {
subtree,
kind: _,
separator,
}) => {
while let Some(nested) = match_lhs(subtree, input) {
res.push_nested(nested)?;
if separator.is_some() && !input.is_eof() {
input.eat_punct()?;
}
}
}
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_ => {}
}
}
Some(res)
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}
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/*
macro_rules! impl_froms {
($e:ident: $($v:ident),*) => {
$(
impl From<$v> for $e {
fn from(it: $v) -> $e {
$e::$v(it)
}
}
)*
}
}
impl_froms! (Foo: Bar, Baz)
*/
fn expand_subtree(
template: &mbe::Subtree,
bindings: &Bindings,
nesting: &mut Vec<usize>,
) -> Option<tt::Subtree> {
let token_trees = template
.token_trees
.iter()
.map(|it| expand_tt(it, bindings, nesting))
.collect::<Option<Vec<_>>>()?;
Some(tt::Subtree {
token_trees,
delimiter: template.delimiter,
})
}
fn expand_tt(
template: &mbe::TokenTree,
bindings: &Bindings,
nesting: &mut Vec<usize>,
) -> Option<tt::TokenTree> {
let res: tt::TokenTree = match template {
mbe::TokenTree::Subtree(subtree) => expand_subtree(subtree, bindings, nesting)?.into(),
mbe::TokenTree::Repeat(repeat) => {
let mut token_trees = Vec::new();
nesting.push(0);
while let Some(t) = expand_subtree(&repeat.subtree, bindings, nesting) {
let idx = nesting.pop().unwrap();
nesting.push(idx + 1);
token_trees.push(t.into())
}
nesting.pop().unwrap();
tt::Subtree {
token_trees,
delimiter: tt::Delimiter::None,
}
.into()
}
mbe::TokenTree::Leaf(leaf) => match leaf {
mbe::Leaf::Ident(ident) => tt::Leaf::from(tt::Ident {
text: ident.text.clone(),
})
.into(),
mbe::Leaf::Punct(punct) => tt::Leaf::from(punct.clone()).into(),
mbe::Leaf::Var(v) => bindings.get(&v.text, nesting)?.clone(),
mbe::Leaf::Literal(l) => tt::Leaf::from(tt::Literal {
text: l.text.clone(),
})
.into(),
},
};
Some(res)
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}