llvm-project/llvm/test/Transforms/LoopInterchange/pr43797-lcssa-for-multiple-outer-loop-blocks.ll
Sjoerd Meijer 456ec1c2f4
[LoopInterchange] Remove 'S' Scalar Dependencies (#119345)
We are not handling 'S' scalar dependencies correctly and have at least
the following miscompiles related to that:

[LoopInterchange] incorrect handling of scalar dependencies and dependence vectors starting with ">" #54176
[LoopInterchange] Interchange breaks program correctness #46867
[LoopInterchange] Loops should not interchanged due to dependencies #47259
[LoopInterchange] Loops should not interchanged due to control flow #47401

This patch does no longer insert the "S" dependency/direction into the
dependency matrix, so a dependency is never "S". We seem to have
forgotten what the exact meaning is of this dependency type, and don't
see why it should be treated differently.

We prefer correctness over incorrect and more aggressive results. I.e.,
this prevents the miscompiles at the expense of handling less cases,
i.e. making interchange more pessimistic. However, some of the cases
that are now rejected for dependence analysis reasons, were rejected
before too but for other reasons (e.g. profitability). So at least for
the llvm regression tests, the number of regression are very reasonable.
This should be a stopgap. We would like to get interchange enabled by
default and thus prefer correctness over unsafe transforms, and later
see if we can get solve the regressions.
2025-01-20 13:04:58 +00:00

97 lines
3.7 KiB
LLVM

; Remove 'S' Scalar Dependencies #119345
; Scalar dependencies are not handled correctly, so they were removed to avoid
; miscompiles. The loop nest in this test case used to be interchanged, but it's
; no longer triggering. XFAIL'ing this test to indicate that this test should
; interchanged if scalar deps are handled correctly.
;
; XFAIL: *
; RUN: opt -passes=loop-interchange -cache-line-size=64 -verify-loop-lcssa %s -pass-remarks-output=%t -disable-output
; RUN: FileCheck -input-file %t %s
; Tests for PR43797.
@wdtdr = external dso_local global [5 x [5 x double]], align 16
; CHECK: --- !Passed
; CHECK-NEXT: Pass: loop-interchange
; CHECK-NEXT: Name: Interchanged
; CHECK-NEXT: Function: test1
; CHECK-NEXT: Args:
; CHECK-NEXT: - String: Loop interchanged with enclosing loop.
; CHECK-NEXT: ...
define void @test1() {
entry:
br label %outer.header
outer.header: ; preds = %for.inc27, %entry
%outer.idx = phi i64 [ 0, %entry ], [ %outer.idx.inc, %outer.latch ]
%arrayidx8 = getelementptr inbounds [5 x [5 x double]], ptr @wdtdr, i64 0, i64 0, i64 %outer.idx
br label %inner.header
inner.header: ; preds = %for.inc, %for.body
%inner.idx = phi i64 [ 0, %outer.header ], [ %inner.idx.inc, %inner.latch]
%0 = load double, ptr %arrayidx8, align 8
store double undef, ptr %arrayidx8, align 8
br label %inner.latch
inner.latch: ; preds = %for.body6
%inner.idx.inc = add nsw i64 %inner.idx, 1
br i1 false, label %inner.header, label %inner.exit
inner.exit: ; preds = %for.inc
%outer.v = add nsw i64 %outer.idx, 1
br label %outer.latch
outer.latch: ; preds = %for.end
%outer.idx.inc = add nsw i64 %outer.idx, 1
br i1 false, label %outer.header, label %outer.exit
outer.exit: ; preds = %for.inc27
%exit1.lcssa = phi i64 [ %outer.v, %outer.latch ]
%exit2.lcssa = phi i64 [ %outer.idx.inc, %outer.latch ]
ret void
}
; CHECK: --- !Passed
; CHECK-NEXT: Pass: loop-interchange
; CHECK-NEXT: Name: Interchanged
; CHECK-NEXT: Function: test2
; CHECK-NEXT: Args:
; CHECK-NEXT: - String: Loop interchanged with enclosing loop.
; CHECK-NEXT: ...
define void @test2(i1 %cond) {
entry:
br i1 %cond, label %outer.header, label %outer.exit
outer.header: ; preds = %for.inc27, %entry
%outer.idx = phi i64 [ 0, %entry ], [ %outer.idx.inc, %outer.latch ]
%arrayidx8 = getelementptr inbounds [5 x [5 x double]], ptr @wdtdr, i64 0, i64 0, i64 %outer.idx
br label %inner.header
inner.header: ; preds = %for.inc, %for.body
%inner.idx = phi i64 [ 0, %outer.header ], [ %inner.idx.inc, %inner.latch]
%0 = load double, ptr %arrayidx8, align 8
store double undef, ptr %arrayidx8, align 8
br label %inner.latch
inner.latch: ; preds = %for.body6
%inner.idx.inc = add nsw i64 %inner.idx , 1
br i1 false, label %inner.header, label %inner.exit
inner.exit: ; preds = %for.inc
%outer.v = add nsw i64 %outer.idx, 1
br label %outer.latch
outer.latch: ; preds = %for.end
%outer.idx.inc = add nsw i64 %outer.idx, 1
br i1 false, label %outer.header, label %outer.exit
outer.exit: ; preds = %for.inc27
%exit1.lcssa = phi i64 [ 0, %entry ], [ %outer.v, %outer.latch ]
%exit2.lcssa = phi i64 [ 0, %entry ], [ %outer.idx.inc, %outer.latch ]
ret void
}