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Another microoptimization. Let's see.

r? lcnr

@rustbot rustbot added S-waiting-on-review Status: Awaiting review from the assignee but also interested parties. T-compiler Relevant to the compiler team, which will review and decide on the PR/issue. WG-trait-system-refactor The Rustc Trait System Refactor Initiative (-Znext-solver) labels Jul 26, 2025
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rustbot commented Jul 26, 2025

Some changes occurred to the core trait solver

cc @rust-lang/initiative-trait-system-refactor

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@bors2 try @rust-timer queue

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rust-bors bot commented Jul 26, 2025

⌛ Trying commit 3213399 with merge 3684df7

To cancel the try build, run the command @bors try cancel.

rust-bors bot added a commit that referenced this pull request Jul 26, 2025
Don't loop if there are no pending obligations
@rustbot rustbot added the S-waiting-on-perf Status: Waiting on a perf run to be completed. label Jul 26, 2025
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rust-bors bot commented Jul 26, 2025

☀️ Try build successful (CI)
Build commit: 3684df7 (3684df799b20a3621a59bcb7911f030364b4188f, parent: 430d6eddfc6a455ca4a0137c0822a982cccd3b2b)

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Finished benchmarking commit (3684df7): comparison URL.

Overall result: ✅ improvements - no action needed

Benchmarking this pull request means it may be perf-sensitive – we'll automatically label it not fit for rolling up. You can override this, but we strongly advise not to, due to possible changes in compiler perf.

@bors rollup=never
@rustbot label: -S-waiting-on-perf -perf-regression

Instruction count

Our most reliable metric. Used to determine the overall result above. However, even this metric can be noisy.

mean range count
Regressions ❌
(primary)
- - 0
Regressions ❌
(secondary)
- - 0
Improvements ✅
(primary)
- - 0
Improvements ✅
(secondary)
-0.3% [-1.1%, -0.1%] 7
All ❌✅ (primary) - - 0

Max RSS (memory usage)

Results (primary 2.8%, secondary -1.5%)

A less reliable metric. May be of interest, but not used to determine the overall result above.

mean range count
Regressions ❌
(primary)
2.8% [2.8%, 2.8%] 1
Regressions ❌
(secondary)
0.8% [0.8%, 0.8%] 1
Improvements ✅
(primary)
- - 0
Improvements ✅
(secondary)
-3.9% [-3.9%, -3.9%] 1
All ❌✅ (primary) 2.8% [2.8%, 2.8%] 1

Cycles

Results (primary 0.1%, secondary -3.0%)

A less reliable metric. May be of interest, but not used to determine the overall result above.

mean range count
Regressions ❌
(primary)
3.6% [3.6%, 3.6%] 1
Regressions ❌
(secondary)
- - 0
Improvements ✅
(primary)
-3.4% [-3.4%, -3.4%] 1
Improvements ✅
(secondary)
-3.0% [-3.0%, -3.0%] 1
All ❌✅ (primary) 0.1% [-3.4%, 3.6%] 2

Binary size

This benchmark run did not return any relevant results for this metric.

Bootstrap: 468.925s -> 466.162s (-0.59%)
Artifact size: 374.68 MiB -> 374.67 MiB (-0.00%)

@rustbot rustbot removed the S-waiting-on-perf Status: Waiting on a perf run to be completed. label Jul 26, 2025
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The fact that this is a perf improvement is wild to me and seems to indicate a larger opportunity.

If we don't bail eagerly, we call drain_pending(|_| true) which is just mem::take(&mut self.pending) and then drops the Default ThinVec again.

How hot are the different parts of this function?

  • entry
  • initial loop
  • encountering 1 or more goals (if so, how many)
  • more than 1 loop

I remember that in the old solver, we do the stalled_on check and then the actual fulfillment happens in an #[inline(never)] function.

I can imagine doing the same here and outlining the stalled_on check. I would generally like to know whether fulfillment ends up being pretty much just as hot as in the old solver 🤔

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