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[ValueTracking] Fix PR23011.
Summary: `ComputeNumSignBits` returns incorrect results for `srem` instructions. This change fixes the issue and adds a test case. Reviewers: nadav, nicholas, atrick Subscribers: llvm-commits Differential Revision: http://reviews.llvm.org/D8600 git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@233225 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -1914,8 +1914,9 @@ unsigned ComputeNumSignBits(Value *V, const DataLayout &DL, unsigned Depth,
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case Instruction::SRem: {
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const APInt *Denominator;
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// srem X, C -> we know that the result is within 0..C-1 when C is a
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// positive constant and the sign bits are at most TypeBits - log2(C).
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// srem X, C -> we know that the result is within [-C+1,C) when C is a
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// positive constant. This let us put a lower bound on the number of sign
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// bits.
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if (match(U->getOperand(1), m_APInt(Denominator))) {
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// Ignore non-positive denominator.
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@ -1928,11 +1929,19 @@ unsigned ComputeNumSignBits(Value *V, const DataLayout &DL, unsigned Depth,
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ComputeNumSignBits(U->getOperand(0), DL, Depth + 1, Q);
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// Calculate the leading sign bit constraints by examining the
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// denominator. The remainder is in the range 0..C-1, which is
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// calculated by the log2(denominator). The sign bits are the bit-width
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// minus this value. The result of this subtraction has to be positive.
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unsigned ResBits = TyBits - Denominator->logBase2();
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// denominator. Given that the denominator is positive, there are two
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// cases:
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//
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// 1. the numerator is positive. The result range is [0,C) and [0,C) u<
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// (1 << ceilLogBase2(C)).
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//
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// 2. the numerator is negative. Then the result range is (-C,0] and
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// integers in (-C,0] are either 0 or >u (-1 << ceilLogBase2(C)).
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//
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// Thus a lower bound on the number of sign bits is `TyBits -
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// ceilLogBase2(C)`.
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unsigned ResBits = TyBits - Denominator->ceilLogBase2();
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return std::max(NumrBits, ResBits);
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}
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break;
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15
test/Analysis/ValueTracking/pr23011.ll
Normal file
15
test/Analysis/ValueTracking/pr23011.ll
Normal file
@ -0,0 +1,15 @@
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; RUN: opt -indvars -S < %s | FileCheck %s
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declare { i8, i1 } @llvm.smul.with.overflow.i8(i8, i8) nounwind readnone
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define i1 @test1(i8 %x) {
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entry:
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; CHECK-LABEL: @test1
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%rem = srem i8 %x, 15
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%t = call { i8, i1 } @llvm.smul.with.overflow.i8(i8 %rem, i8 %rem)
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; CHECK: %t = call { i8, i1 } @llvm.smul.with.overflow.i8(i8 %rem, i8 %rem)
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; CHECK: %obit = extractvalue { i8, i1 } %t, 1
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; CHECK: ret i1 %obit
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%obit = extractvalue { i8, i1 } %t, 1
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ret i1 %obit
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}
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