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authorDuncan Sands <baldrick@free.fr>2011-11-23 16:26:47 +0000
committerDuncan Sands <baldrick@free.fr>2011-11-23 16:26:47 +0000
commita8f5cd3539580b2fe3c20c748c1374f76992f113 (patch)
tree4b6fa623e718b5472a01f35d839f2c2c3d874691 /lib/Analysis/ValueTracking.cpp
parentf238f50aaf8a68f16dcc43a017aa32cbb73e938e (diff)
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Fix a crash in which a multiplication was being reported as being both negative
and positive: positive, because it could be directly computed to be positive; negative, because the nsw flags means it is either negative or undefined (the multiplication always overflowed). git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@145104 91177308-0d34-0410-b5e6-96231b3b80d8
Diffstat (limited to 'lib/Analysis/ValueTracking.cpp')
-rw-r--r--lib/Analysis/ValueTracking.cpp9
1 files changed, 7 insertions, 2 deletions
diff --git a/lib/Analysis/ValueTracking.cpp b/lib/Analysis/ValueTracking.cpp
index 9f7b5b501a..22f1c144ea 100644
--- a/lib/Analysis/ValueTracking.cpp
+++ b/lib/Analysis/ValueTracking.cpp
@@ -248,9 +248,14 @@ void llvm::ComputeMaskedBits(Value *V, const APInt &Mask,
APInt::getHighBitsSet(BitWidth, LeadZ);
KnownZero &= Mask;
- if (isKnownNonNegative)
+ // Only make use of no-wrap flags if we failed to compute the sign bit
+ // directly. This matters if the multiplication always overflows, in
+ // which case we prefer to follow the result of the direct computation,
+ // though as the program is invoking undefined behaviour we can choose
+ // whatever we like here.
+ if (isKnownNonNegative && !KnownOne.isNegative())
KnownZero.setBit(BitWidth - 1);
- else if (isKnownNegative)
+ else if (isKnownNegative && !KnownZero.isNegative())
KnownOne.setBit(BitWidth - 1);
return;