Skip to content

[MSSAUpdater] Handle simplified accesses when updating phis #78272

New issue

Have a question about this project? Sign up for a free GitHub account to open an issue and contact its maintainers and the community.

By clicking “Sign up for GitHub”, you agree to our terms of service and privacy statement. We’ll occasionally send you account related emails.

Already on GitHub? Sign in to your account

Merged
merged 1 commit into from
Jan 24, 2024
Merged
Show file tree
Hide file tree
Changes from all commits
Commits
File filter

Filter by extension

Filter by extension

Conversations
Failed to load comments.
Loading
Jump to
Jump to file
Failed to load files.
Loading
Diff view
Diff view
22 changes: 3 additions & 19 deletions llvm/lib/Analysis/MemorySSAUpdater.cpp
Original file line number Diff line number Diff line change
Expand Up @@ -692,25 +692,9 @@ void MemorySSAUpdater::updateForClonedLoop(const LoopBlocksRPO &LoopBlocks,
continue;

// Determine incoming value and add it as incoming from IncBB.
if (MemoryUseOrDef *IncMUD = dyn_cast<MemoryUseOrDef>(IncomingAccess)) {
if (!MSSA->isLiveOnEntryDef(IncMUD)) {
Instruction *IncI = IncMUD->getMemoryInst();
assert(IncI && "Found MemoryUseOrDef with no Instruction.");
if (Instruction *NewIncI =
cast_or_null<Instruction>(VMap.lookup(IncI))) {
IncMUD = MSSA->getMemoryAccess(NewIncI);
assert(IncMUD &&
"MemoryUseOrDef cannot be null, all preds processed.");
}
}
NewPhi->addIncoming(IncMUD, IncBB);
} else {
MemoryPhi *IncPhi = cast<MemoryPhi>(IncomingAccess);
if (MemoryAccess *NewDefPhi = MPhiMap.lookup(IncPhi))
NewPhi->addIncoming(NewDefPhi, IncBB);
else
NewPhi->addIncoming(IncPhi, IncBB);
}
NewPhi->addIncoming(
getNewDefiningAccessForClone(IncomingAccess, VMap, MPhiMap, MSSA),
IncBB);
}
if (auto *SingleAccess = onlySingleValue(NewPhi)) {
MPhiMap[Phi] = SingleAccess;
Expand Down
104 changes: 104 additions & 0 deletions llvm/test/Transforms/SimpleLoopUnswitch/memssa-readnone-access.ll
Original file line number Diff line number Diff line change
Expand Up @@ -115,3 +115,107 @@ split:
exit:
ret void
}

; Variants of the above test with swapped branch destinations.

define void @test1_swapped(i1 %c) {
; CHECK-LABEL: define void @test1_swapped(
; CHECK-SAME: i1 [[C:%.*]]) {
; CHECK-NEXT: start:
; CHECK-NEXT: [[C_FR:%.*]] = freeze i1 [[C]]
; CHECK-NEXT: br i1 [[C_FR]], label [[START_SPLIT_US:%.*]], label [[START_SPLIT:%.*]]
; CHECK: start.split.us:
; CHECK-NEXT: br label [[LOOP_US:%.*]]
; CHECK: loop.us:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: br label [[LOOP_US]]
; CHECK: start.split:
; CHECK-NEXT: br label [[LOOP:%.*]]
; CHECK: loop:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: br label [[EXIT:%.*]]
; CHECK: exit:
; CHECK-NEXT: ret void
;
start:
br label %loop

loop:
%fn = load ptr, ptr @vtable, align 8
call void %fn()
br i1 %c, label %loop, label %exit

exit:
ret void
}

define void @test2_swapped(i1 %c, ptr %p) {
; CHECK-LABEL: define void @test2_swapped(
; CHECK-SAME: i1 [[C:%.*]], ptr [[P:%.*]]) {
; CHECK-NEXT: [[C_FR:%.*]] = freeze i1 [[C]]
; CHECK-NEXT: br i1 [[C_FR]], label [[DOTSPLIT_US:%.*]], label [[DOTSPLIT:%.*]]
; CHECK: .split.us:
; CHECK-NEXT: br label [[LOOP_US:%.*]]
; CHECK: loop.us:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: call void @bar()
; CHECK-NEXT: br label [[LOOP_US]]
; CHECK: .split:
; CHECK-NEXT: br label [[LOOP:%.*]]
; CHECK: loop:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: call void @bar()
; CHECK-NEXT: br label [[EXIT:%.*]]
; CHECK: exit:
; CHECK-NEXT: ret void
;
br label %loop

loop:
%fn = load ptr, ptr @vtable, align 8
call void %fn()
call void @bar()
br i1 %c, label %loop, label %exit

exit:
ret void
}

define void @test3_swapped(i1 %c, ptr %p) {
; CHECK-LABEL: define void @test3_swapped(
; CHECK-SAME: i1 [[C:%.*]], ptr [[P:%.*]]) {
; CHECK-NEXT: [[C_FR:%.*]] = freeze i1 [[C]]
; CHECK-NEXT: br i1 [[C_FR]], label [[DOTSPLIT_US:%.*]], label [[DOTSPLIT:%.*]]
; CHECK: .split.us:
; CHECK-NEXT: br label [[LOOP_US:%.*]]
; CHECK: loop.us:
; CHECK-NEXT: br label [[SPLIT_US:%.*]]
; CHECK: split.us:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: call void @bar()
; CHECK-NEXT: br label [[LOOP_US]]
; CHECK: .split:
; CHECK-NEXT: br label [[LOOP:%.*]]
; CHECK: loop:
; CHECK-NEXT: br label [[SPLIT:%.*]]
; CHECK: split:
; CHECK-NEXT: call void @foo()
; CHECK-NEXT: call void @bar()
; CHECK-NEXT: br label [[EXIT:%.*]]
; CHECK: exit:
; CHECK-NEXT: ret void
;
br label %loop

loop:
%fn = load ptr, ptr @vtable, align 8
br label %split

split:
call void %fn()
call void @bar()
br i1 %c, label %loop, label %exit

exit:
ret void
}