mirror of
https://github.com/rust-lang/rust-analyzer
synced 2024-12-27 05:23:24 +00:00
Don't reuse the Chalk solver
This slows down analysis-stats a bit (~5% in my measurement), but improves incremental checking a lot because we can reuse trait solve results.
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26ae35c62e
commit
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4 changed files with 29 additions and 95 deletions
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@ -18,8 +18,7 @@ pub use hir_ty::db::{
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FieldTypesQuery, GenericDefaultsQuery, GenericPredicatesForParamQuery, GenericPredicatesQuery,
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HirDatabase, HirDatabaseStorage, ImplDatumQuery, ImplSelfTyQuery, ImplTraitQuery,
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ImplsForTraitQuery, ImplsInCrateQuery, InternAssocTyValueQuery, InternChalkImplQuery,
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InternTypeCtorQuery, StructDatumQuery, TraitDatumQuery, TraitSolveQuery, TraitSolverQuery,
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TyQuery, ValueTyQuery,
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InternTypeCtorQuery, StructDatumQuery, TraitDatumQuery, TraitSolveQuery, TyQuery, ValueTyQuery,
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};
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#[test]
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@ -66,14 +66,6 @@ pub trait HirDatabase: DefDatabase {
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#[salsa::invoke(crate::traits::impls_for_trait_query)]
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fn impls_for_trait(&self, krate: CrateId, trait_: TraitId) -> Arc<[ImplId]>;
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/// This provides the Chalk trait solver instance. Because Chalk always
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/// works from a specific crate, this query is keyed on the crate; and
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/// because Chalk does its own internal caching, the solver is wrapped in a
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/// Mutex and the query does an untracked read internally, to make sure the
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/// cached state is thrown away when input facts change.
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#[salsa::invoke(crate::traits::trait_solver_query)]
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fn trait_solver(&self, krate: CrateId) -> crate::traits::TraitSolver;
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// Interned IDs for Chalk integration
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#[salsa::interned]
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fn intern_type_ctor(&self, type_ctor: TypeCtor) -> crate::TypeCtorId;
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@ -1,12 +1,9 @@
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//! Trait solving using Chalk.
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use std::{
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panic,
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sync::{Arc, Mutex},
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};
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use std::{panic, sync::Arc};
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use chalk_ir::cast::Cast;
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use hir_def::{expr::ExprId, DefWithBodyId, ImplId, TraitId, TypeAliasId};
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use ra_db::{impl_intern_key, salsa, Canceled, CrateId};
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use ra_db::{impl_intern_key, salsa, CrateId};
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use ra_prof::profile;
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use rustc_hash::FxHashSet;
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@ -19,74 +16,6 @@ use self::chalk::{from_chalk, Interner, ToChalk};
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pub(crate) mod chalk;
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mod builtin;
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#[derive(Debug, Clone)]
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pub struct TraitSolver {
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krate: CrateId,
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inner: Arc<Mutex<chalk_solve::Solver<Interner>>>,
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}
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/// We need eq for salsa
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impl PartialEq for TraitSolver {
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fn eq(&self, other: &TraitSolver) -> bool {
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Arc::ptr_eq(&self.inner, &other.inner)
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}
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}
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impl Eq for TraitSolver {}
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impl TraitSolver {
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fn solve(
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&self,
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db: &impl HirDatabase,
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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 context = ChalkContext { db, krate: self.krate };
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log::debug!("solve goal: {:?}", goal);
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let mut solver = match self.inner.lock() {
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Ok(it) => it,
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// Our cancellation works via unwinding, but, as chalk is not
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// panic-safe, we need to make sure to propagate the cancellation.
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// Ideally, we should also make chalk panic-safe.
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Err(_) => ra_db::Canceled::throw(),
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};
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let fuel = std::cell::Cell::new(CHALK_SOLVER_FUEL);
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let solution = panic::catch_unwind({
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let solver = panic::AssertUnwindSafe(&mut solver);
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let context = panic::AssertUnwindSafe(&context);
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move || {
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solver.0.solve_limited(context.0, goal, || {
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context.0.db.check_canceled();
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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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log::debug!("fuel exhausted");
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}
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remaining > 0
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})
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}
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});
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let solution = match solution {
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Ok(it) => it,
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Err(err) => {
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if err.downcast_ref::<Canceled>().is_some() {
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panic::resume_unwind(err)
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} else {
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log::error!("chalk panicked :-(");
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// Reset the solver, as it is not panic-safe.
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*solver = create_chalk_solver();
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None
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}
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}
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};
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log::debug!("solve({:?}) => {:?}", goal, solution);
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solution
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}
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}
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/// This controls the maximum size of types Chalk considers. If we set this too
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/// high, we can run into slow edge cases; if we set it too low, Chalk won't
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/// find some solutions.
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@ -100,16 +29,6 @@ struct ChalkContext<'a, DB> {
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krate: CrateId,
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}
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pub(crate) fn trait_solver_query(
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db: &(impl HirDatabase + salsa::Database),
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krate: CrateId,
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) -> TraitSolver {
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db.salsa_runtime().report_untracked_read();
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// krate parameter is just so we cache a unique solver per crate
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log::debug!("Creating new solver for crate {:?}", krate);
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TraitSolver { krate, inner: Arc::new(Mutex::new(create_chalk_solver())) }
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}
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fn create_chalk_solver() -> chalk_solve::Solver<Interner> {
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let solver_choice =
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chalk_solve::SolverChoice::SLG { max_size: CHALK_SOLVER_MAX_SIZE, expected_answers: None };
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@ -239,10 +158,35 @@ pub(crate) fn trait_solve_query(
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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, universes: 1 };
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let solution = db.trait_solver(krate).solve(db, &u_canonical);
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let solution = solve(db, krate, &u_canonical);
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solution.map(|solution| solution_from_chalk(db, solution))
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}
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fn solve(
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db: &impl HirDatabase,
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krate: CrateId,
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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 context = ChalkContext { db, krate };
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log::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 solution = solver.solve_limited(&context, goal, || {
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context.db.check_canceled();
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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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log::debug!("fuel exhausted");
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}
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remaining > 0
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});
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log::debug!("solve({:?}) => {:?}", goal, solution);
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solution
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}
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fn solution_from_chalk(
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db: &impl HirDatabase,
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solution: chalk_solve::Solution<Interner>,
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@ -362,7 +362,6 @@ impl RootDatabase {
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hir::db::GenericDefaultsQuery
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hir::db::ImplsInCrateQuery
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hir::db::ImplsForTraitQuery
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hir::db::TraitSolverQuery
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hir::db::InternTypeCtorQuery
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hir::db::InternChalkImplQuery
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hir::db::InternAssocTyValueQuery
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