[PATCH] D149418: [ValueTracking] Add additional cases for `isKnownNonZero(mul X, Y)`
Noah Goldstein via Phabricator via llvm-commits
llvm-commits at lists.llvm.org
Sat Apr 29 09:15:15 PDT 2023
goldstein.w.n updated this revision to Diff 518182.
goldstein.w.n added a comment.
Rebase
Repository:
rG LLVM Github Monorepo
CHANGES SINCE LAST ACTION
https://reviews.llvm.org/D149418/new/
https://reviews.llvm.org/D149418
Files:
llvm/lib/Analysis/ValueTracking.cpp
llvm/test/Analysis/ValueTracking/known-non-zero.ll
Index: llvm/test/Analysis/ValueTracking/known-non-zero.ll
===================================================================
--- llvm/test/Analysis/ValueTracking/known-non-zero.ll
+++ llvm/test/Analysis/ValueTracking/known-non-zero.ll
@@ -752,13 +752,9 @@
define i1 @mul_nonzero_odd(i8 %xx, i8 %y, i8 %ind) {
; CHECK-LABEL: @mul_nonzero_odd(
-; CHECK-NEXT: [[XO:%.*]] = or i8 [[XX:%.*]], 1
; CHECK-NEXT: [[Y_NZ:%.*]] = icmp ne i8 [[Y:%.*]], 0
; CHECK-NEXT: call void @llvm.assume(i1 [[Y_NZ]])
-; CHECK-NEXT: [[X:%.*]] = mul i8 [[XO]], [[Y]]
-; CHECK-NEXT: [[Z:%.*]] = or i8 [[X]], [[IND:%.*]]
-; CHECK-NEXT: [[R:%.*]] = icmp eq i8 [[Z]], 0
-; CHECK-NEXT: ret i1 [[R]]
+; CHECK-NEXT: ret i1 false
;
%xo = or i8 %xx, 1
%y_nz = icmp ne i8 %y, 0
Index: llvm/lib/Analysis/ValueTracking.cpp
===================================================================
--- llvm/lib/Analysis/ValueTracking.cpp
+++ llvm/lib/Analysis/ValueTracking.cpp
@@ -2864,10 +2864,23 @@
// If X and Y are non-zero then so is X * Y as long as the multiplication
// does not overflow.
const OverflowingBinaryOperator *BO = cast<OverflowingBinaryOperator>(V);
- if ((Q.IIQ.hasNoSignedWrap(BO) || Q.IIQ.hasNoUnsignedWrap(BO)) &&
- isKnownNonZero(I->getOperand(0), DemandedElts, Depth, Q) &&
- isKnownNonZero(I->getOperand(1), DemandedElts, Depth, Q))
- return true;
+ if (Q.IIQ.hasNoSignedWrap(BO) || Q.IIQ.hasNoUnsignedWrap(BO))
+ return isKnownNonZero(I->getOperand(0), DemandedElts, Depth, Q) &&
+ isKnownNonZero(I->getOperand(1), DemandedElts, Depth, Q);
+
+ // If either X or Y is odd, then if the other is non-zero the result can't
+ // be zero.
+ KnownBits XKnown =
+ computeKnownBits(I->getOperand(0), DemandedElts, Depth, Q);
+ if (XKnown.One[0])
+ return isKnownNonZero(I->getOperand(1), DemandedElts, Depth, Q);
+
+ KnownBits YKnown =
+ computeKnownBits(I->getOperand(1), DemandedElts, Depth, Q);
+ if (YKnown.One[0])
+ return XKnown.isNonZero() ||
+ isKnownNonZero(I->getOperand(0), DemandedElts, Depth, Q);
+
break;
}
case Instruction::Select:
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