mirror of
https://github.com/rust-lang/rust-analyzer.git
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295 lines
9.9 KiB
Rust
295 lines
9.9 KiB
Rust
//! Trait solving using Chalk.
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use core::fmt;
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use std::env::var;
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use chalk_ir::{DebruijnIndex, GoalData, fold::TypeFoldable};
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use chalk_recursive::Cache;
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use chalk_solve::{Solver, logging_db::LoggingRustIrDatabase, rust_ir};
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use base_db::Crate;
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use hir_def::{BlockId, TraitId, lang_item::LangItem};
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use hir_expand::name::Name;
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use intern::sym;
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use span::Edition;
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use stdx::{never, panic_context};
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use triomphe::Arc;
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use crate::{
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AliasEq, AliasTy, Canonical, DomainGoal, Goal, Guidance, InEnvironment, Interner, ProjectionTy,
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ProjectionTyExt, Solution, TraitRefExt, Ty, TyKind, TypeFlags, WhereClause, db::HirDatabase,
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infer::unify::InferenceTable, utils::UnevaluatedConstEvaluatorFolder,
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};
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/// This controls how much 'time' we give the Chalk solver before giving up.
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const CHALK_SOLVER_FUEL: i32 = 1000;
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#[derive(Debug, Copy, Clone)]
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pub(crate) struct ChalkContext<'a> {
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pub(crate) db: &'a dyn HirDatabase,
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pub(crate) krate: Crate,
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pub(crate) block: Option<BlockId>,
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}
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fn create_chalk_solver() -> chalk_recursive::RecursiveSolver<Interner> {
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let overflow_depth =
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var("CHALK_OVERFLOW_DEPTH").ok().and_then(|s| s.parse().ok()).unwrap_or(500);
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let max_size = var("CHALK_SOLVER_MAX_SIZE").ok().and_then(|s| s.parse().ok()).unwrap_or(150);
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chalk_recursive::RecursiveSolver::new(overflow_depth, max_size, Some(Cache::new()))
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}
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/// A set of clauses that we assume to be true. E.g. if we are inside this function:
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/// ```rust
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/// fn foo<T: Default>(t: T) {}
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/// ```
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/// we assume that `T: Default`.
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub struct TraitEnvironment {
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pub krate: Crate,
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pub block: Option<BlockId>,
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// FIXME make this a BTreeMap
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traits_from_clauses: Box<[(Ty, TraitId)]>,
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pub env: chalk_ir::Environment<Interner>,
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}
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impl TraitEnvironment {
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pub fn empty(krate: Crate) -> Arc<Self> {
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Arc::new(TraitEnvironment {
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krate,
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block: None,
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traits_from_clauses: Box::default(),
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env: chalk_ir::Environment::new(Interner),
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})
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}
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pub fn new(
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krate: Crate,
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block: Option<BlockId>,
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traits_from_clauses: Box<[(Ty, TraitId)]>,
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env: chalk_ir::Environment<Interner>,
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) -> Arc<Self> {
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Arc::new(TraitEnvironment { krate, block, traits_from_clauses, env })
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}
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// pub fn with_block(self: &mut Arc<Self>, block: BlockId) {
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pub fn with_block(this: &mut Arc<Self>, block: BlockId) {
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Arc::make_mut(this).block = Some(block);
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}
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pub fn traits_in_scope_from_clauses(&self, ty: Ty) -> impl Iterator<Item = TraitId> + '_ {
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self.traits_from_clauses
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.iter()
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.filter_map(move |(self_ty, trait_id)| (*self_ty == ty).then_some(*trait_id))
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}
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}
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pub(crate) fn normalize_projection_query(
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db: &dyn HirDatabase,
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projection: ProjectionTy,
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env: Arc<TraitEnvironment>,
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) -> Ty {
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if projection.substitution.iter(Interner).any(|arg| {
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arg.ty(Interner)
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.is_some_and(|ty| ty.data(Interner).flags.intersects(TypeFlags::HAS_TY_INFER))
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}) {
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never!(
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"Invoking `normalize_projection_query` with a projection type containing inference var"
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);
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return TyKind::Error.intern(Interner);
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}
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let mut table = InferenceTable::new(db, env);
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let ty = table.normalize_projection_ty(projection);
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table.resolve_completely(ty)
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}
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/// Solve a trait goal using Chalk.
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pub(crate) fn trait_solve_query(
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db: &dyn HirDatabase,
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krate: Crate,
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block: Option<BlockId>,
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goal: Canonical<InEnvironment<Goal>>,
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) -> Option<Solution> {
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let _p = tracing::info_span!("trait_solve_query", detail = ?match &goal.value.goal.data(Interner) {
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GoalData::DomainGoal(DomainGoal::Holds(WhereClause::Implemented(it))) => db
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.trait_signature(it.hir_trait_id())
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.name
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.display(db, Edition::LATEST)
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.to_string(),
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GoalData::DomainGoal(DomainGoal::Holds(WhereClause::AliasEq(_))) => "alias_eq".to_owned(),
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_ => "??".to_owned(),
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})
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.entered();
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if let GoalData::DomainGoal(DomainGoal::Holds(WhereClause::AliasEq(AliasEq {
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alias: AliasTy::Projection(projection_ty),
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..
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}))) = &goal.value.goal.data(Interner)
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{
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if let TyKind::BoundVar(_) = projection_ty.self_type_parameter(db).kind(Interner) {
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// Hack: don't ask Chalk to normalize with an unknown self type, it'll say that's impossible
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return Some(Solution::Ambig(Guidance::Unknown));
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}
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}
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// Chalk see `UnevaluatedConst` as a unique concrete value, but we see it as an alias for another const. So
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// we should get rid of it when talking to chalk.
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let goal = goal
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.try_fold_with(&mut UnevaluatedConstEvaluatorFolder { db }, DebruijnIndex::INNERMOST)
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.unwrap();
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// We currently don't deal with universes (I think / hope they're not yet
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// relevant for our use cases?)
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let u_canonical = chalk_ir::UCanonical { canonical: goal, universes: 1 };
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solve(db, krate, block, &u_canonical)
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}
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fn solve(
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db: &dyn HirDatabase,
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krate: Crate,
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block: Option<BlockId>,
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goal: &chalk_ir::UCanonical<chalk_ir::InEnvironment<chalk_ir::Goal<Interner>>>,
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) -> Option<chalk_solve::Solution<Interner>> {
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let _p = tracing::info_span!("solve", ?krate, ?block).entered();
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let context = ChalkContext { db, krate, block };
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tracing::debug!("solve goal: {:?}", goal);
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let mut solver = create_chalk_solver();
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let fuel = std::cell::Cell::new(CHALK_SOLVER_FUEL);
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let should_continue = || {
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db.unwind_if_revision_cancelled();
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let remaining = fuel.get();
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fuel.set(remaining - 1);
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if remaining == 0 {
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tracing::debug!("fuel exhausted");
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}
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remaining > 0
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};
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let mut solve = || {
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let _ctx = if is_chalk_debug() || is_chalk_print() {
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Some(panic_context::enter(format!("solving {goal:?}")))
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} else {
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None
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};
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let solution = if is_chalk_print() {
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let logging_db =
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LoggingRustIrDatabaseLoggingOnDrop(LoggingRustIrDatabase::new(context));
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solver.solve_limited(&logging_db.0, goal, &should_continue)
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} else {
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solver.solve_limited(&context, goal, &should_continue)
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};
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tracing::debug!("solve({:?}) => {:?}", goal, solution);
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solution
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};
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// don't set the TLS for Chalk unless Chalk debugging is active, to make
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// extra sure we only use it for debugging
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if is_chalk_debug() { crate::tls::set_current_program(db, solve) } else { solve() }
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}
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struct LoggingRustIrDatabaseLoggingOnDrop<'a>(LoggingRustIrDatabase<Interner, ChalkContext<'a>>);
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impl Drop for LoggingRustIrDatabaseLoggingOnDrop<'_> {
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fn drop(&mut self) {
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tracing::info!("chalk program:\n{}", self.0);
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}
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}
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fn is_chalk_debug() -> bool {
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std::env::var("CHALK_DEBUG").is_ok()
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}
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fn is_chalk_print() -> bool {
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std::env::var("CHALK_PRINT").is_ok()
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}
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#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash, PartialOrd, Ord)]
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pub enum FnTrait {
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// Warning: Order is important. If something implements `x` it should also implement
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// `y` if `y <= x`.
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FnOnce,
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FnMut,
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Fn,
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AsyncFnOnce,
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AsyncFnMut,
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AsyncFn,
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}
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impl fmt::Display for FnTrait {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self {
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FnTrait::FnOnce => write!(f, "FnOnce"),
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FnTrait::FnMut => write!(f, "FnMut"),
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FnTrait::Fn => write!(f, "Fn"),
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FnTrait::AsyncFnOnce => write!(f, "AsyncFnOnce"),
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FnTrait::AsyncFnMut => write!(f, "AsyncFnMut"),
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FnTrait::AsyncFn => write!(f, "AsyncFn"),
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}
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}
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}
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impl FnTrait {
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pub const fn function_name(&self) -> &'static str {
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match self {
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FnTrait::FnOnce => "call_once",
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FnTrait::FnMut => "call_mut",
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FnTrait::Fn => "call",
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FnTrait::AsyncFnOnce => "async_call_once",
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FnTrait::AsyncFnMut => "async_call_mut",
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FnTrait::AsyncFn => "async_call",
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}
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}
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const fn lang_item(self) -> LangItem {
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match self {
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FnTrait::FnOnce => LangItem::FnOnce,
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FnTrait::FnMut => LangItem::FnMut,
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FnTrait::Fn => LangItem::Fn,
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FnTrait::AsyncFnOnce => LangItem::AsyncFnOnce,
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FnTrait::AsyncFnMut => LangItem::AsyncFnMut,
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FnTrait::AsyncFn => LangItem::AsyncFn,
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}
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}
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pub const fn from_lang_item(lang_item: LangItem) -> Option<Self> {
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match lang_item {
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LangItem::FnOnce => Some(FnTrait::FnOnce),
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LangItem::FnMut => Some(FnTrait::FnMut),
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LangItem::Fn => Some(FnTrait::Fn),
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LangItem::AsyncFnOnce => Some(FnTrait::AsyncFnOnce),
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LangItem::AsyncFnMut => Some(FnTrait::AsyncFnMut),
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LangItem::AsyncFn => Some(FnTrait::AsyncFn),
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_ => None,
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}
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}
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pub const fn to_chalk_ir(self) -> rust_ir::ClosureKind {
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// Chalk doesn't support async fn traits.
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match self {
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FnTrait::AsyncFnOnce | FnTrait::FnOnce => rust_ir::ClosureKind::FnOnce,
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FnTrait::AsyncFnMut | FnTrait::FnMut => rust_ir::ClosureKind::FnMut,
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FnTrait::AsyncFn | FnTrait::Fn => rust_ir::ClosureKind::Fn,
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}
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}
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pub fn method_name(self) -> Name {
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match self {
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FnTrait::FnOnce => Name::new_symbol_root(sym::call_once),
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FnTrait::FnMut => Name::new_symbol_root(sym::call_mut),
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FnTrait::Fn => Name::new_symbol_root(sym::call),
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FnTrait::AsyncFnOnce => Name::new_symbol_root(sym::async_call_once),
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FnTrait::AsyncFnMut => Name::new_symbol_root(sym::async_call_mut),
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FnTrait::AsyncFn => Name::new_symbol_root(sym::async_call),
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}
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}
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pub fn get_id(self, db: &dyn HirDatabase, krate: Crate) -> Option<TraitId> {
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self.lang_item().resolve_trait(db, krate)
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}
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}
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