compiler: Inform the solver of concurrency
Parallel compilation of a program can cause unexpected event sequencing. Inform the solver when this is true so it can skip invalid asserts, then assert replaced solutions are equal if Some
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@ -181,6 +181,10 @@ fn with_global_cache<R>(
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}
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}
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fn evaluation_is_concurrent(&self) -> bool {
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self.sess.threads() > 1
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}
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fn expand_abstract_consts<T: TypeFoldable<TyCtxt<'tcx>>>(self, t: T) -> T {
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self.expand_abstract_consts(t)
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}
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@ -137,6 +137,8 @@ fn with_global_cache<R>(
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f: impl FnOnce(&mut search_graph::GlobalCache<Self>) -> R,
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) -> R;
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fn evaluation_is_concurrent(&self) -> bool;
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fn expand_abstract_consts<T: TypeFoldable<Self>>(self, t: T) -> T;
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type GenericsOf: GenericsOf<Self>;
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@ -404,4 +406,7 @@ fn with_global_cache<R>(
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) -> R {
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I::with_global_cache(self, mode, f)
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}
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fn evaluation_is_concurrent(&self) -> bool {
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self.evaluation_is_concurrent()
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}
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}
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@ -44,22 +44,28 @@ pub(super) fn insert(
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cx: X,
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input: X::Input,
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result: X::Result,
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origin_result: X::Result,
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dep_node: X::DepNodeIndex,
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additional_depth: usize,
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encountered_overflow: bool,
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nested_goals: NestedGoals<X>,
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) {
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let result = cx.mk_tracked(result, dep_node);
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let result = cx.mk_tracked(origin_result, dep_node);
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let entry = self.map.entry(input).or_default();
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if encountered_overflow {
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let with_overflow = WithOverflow { nested_goals, result };
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let prev = entry.with_overflow.insert(additional_depth, with_overflow);
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assert!(prev.is_none());
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if let Some(prev) = &prev {
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assert!(cx.evaluation_is_concurrent());
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assert_eq!(cx.get_tracked(&prev.result), origin_result);
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}
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} else {
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let prev = entry.success.replace(Success { additional_depth, nested_goals, result });
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assert!(prev.is_none());
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if let Some(prev) = &prev {
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assert!(cx.evaluation_is_concurrent());
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assert_eq!(cx.get_tracked(&prev.result), origin_result);
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}
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}
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}
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@ -53,6 +53,8 @@ fn with_global_cache<R>(
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mode: SolverMode,
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f: impl FnOnce(&mut GlobalCache<Self>) -> R,
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) -> R;
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fn evaluation_is_concurrent(&self) -> bool;
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}
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pub trait Delegate {
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@ -0,0 +1,27 @@
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//@ compile-flags: -Zthreads=16
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// original issue: https://github.com/rust-lang/rust/issues/129112
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// Previously, the "next" solver asserted that each successful solution is only obtained once.
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// This test exhibits a repro that, with next-solver + -Zthreads, triggered that old assert.
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// In the presence of multithreaded solving, it's possible to concurrently evaluate things twice,
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// which leads to replacing already-solved solutions in the global solution cache!
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// We assume this is fine if we check to make sure they are solved the same way each time.
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// This test only nondeterministically fails but that's okay, as it will be rerun by CI many times,
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// so it should almost always fail before anything is merged. As other thread tests already exist,
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// we already face this difficulty, probably. If we need to fix this by reducing the error margin,
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// we should improve compiletest.
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#[derive(Clone, Eq)] //~ ERROR [E0277]
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pub struct Struct<T>(T);
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impl<T: Clone, U> PartialEq<U> for Struct<T>
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where
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U: Into<Struct<T>> + Clone
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{
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fn eq(&self, _other: &U) -> bool {
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todo!()
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}
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}
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fn main() {}
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@ -0,0 +1,24 @@
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error[E0277]: the trait bound `T: Clone` is not satisfied
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--> $DIR/global-cache-and-parallel-frontend.rs:15:17
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LL | #[derive(Clone, Eq)]
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| ^^ the trait `Clone` is not implemented for `T`, which is required by `Struct<T>: PartialEq`
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note: required for `Struct<T>` to implement `PartialEq`
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--> $DIR/global-cache-and-parallel-frontend.rs:18:19
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LL | impl<T: Clone, U> PartialEq<U> for Struct<T>
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| ----- ^^^^^^^^^^^^ ^^^^^^^^^
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| |
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| unsatisfied trait bound introduced here
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note: required by a bound in `Eq`
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--> $SRC_DIR/core/src/cmp.rs:LL:COL
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= note: this error originates in the derive macro `Eq` (in Nightly builds, run with -Z macro-backtrace for more info)
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help: consider restricting type parameter `T`
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LL | pub struct Struct<T: std::clone::Clone>(T);
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| +++++++++++++++++++
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error: aborting due to 1 previous error
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For more information about this error, try `rustc --explain E0277`.
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