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66 changes: 36 additions & 30 deletions llvm/lib/Analysis/ValueTracking.cpp
Original file line number Diff line number Diff line change
Expand Up @@ -1426,7 +1426,22 @@ static void computeKnownBitsFromOperator(const Operator *I,
computeKnownBits(I->getOperand(0), Known, Depth + 1, Q);
// Accumulate the constant indices in a separate variable
// to minimize the number of calls to computeForAddSub.
APInt AccConstIndices(BitWidth, 0, /*IsSigned*/ true);
unsigned IndexWidth = Q.DL.getIndexTypeSizeInBits(I->getType());
APInt AccConstIndices(IndexWidth, 0);

auto AddIndex = [&](KnownBits IndexBits) {
if (IndexWidth == BitWidth) {
// Note that inbounds does *not* guarantee nsw for the addition, as only
// the offset is signed, while the base address is unsigned.
Known = KnownBits::add(Known, IndexBits);
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Beyond the scope of this PR, but would it be slightly more optimal to start Known as zero so we could include nsw here (and nuw on the final addition) if we have inbounds?

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We cannot preserve nsw here because we changed the order of pointer addition (line 1485).

} else {
// If the index width is smaller than the pointer width, only add the
// value to the low bits.
assert(IndexWidth < BitWidth &&
"Index width can't be larger than pointer width");
Known.insertBits(KnownBits::add(Known.trunc(IndexWidth), IndexBits), 0);
}
};
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nit: Maybe rename to AddIndexToKnown, or return Known (and set Known = AddIndex(...)) were its used below for the sake of clarity.

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Done.


gep_type_iterator GTI = gep_type_begin(I);
for (unsigned i = 1, e = I->getNumOperands(); i != e; ++i, ++GTI) {
Expand Down Expand Up @@ -1464,43 +1479,34 @@ static void computeKnownBitsFromOperator(const Operator *I,
break;
}

unsigned IndexBitWidth = Index->getType()->getScalarSizeInBits();
KnownBits IndexBits(IndexBitWidth);
computeKnownBits(Index, IndexBits, Depth + 1, Q);
TypeSize IndexTypeSize = GTI.getSequentialElementStride(Q.DL);
uint64_t TypeSizeInBytes = IndexTypeSize.getKnownMinValue();
KnownBits ScalingFactor(IndexBitWidth);
TypeSize Stride = GTI.getSequentialElementStride(Q.DL);
uint64_t StrideInBytes = Stride.getKnownMinValue();
if (!Stride.isScalable()) {
// Fast path for constant offset.
if (auto *CI = dyn_cast<ConstantInt>(Index)) {
AccConstIndices +=
CI->getValue().sextOrTrunc(IndexWidth) * StrideInBytes;
continue;
}
}

KnownBits IndexBits =
computeKnownBits(Index, Depth + 1, Q).sextOrTrunc(IndexWidth);
KnownBits ScalingFactor(IndexWidth);
// Multiply by current sizeof type.
// &A[i] == A + i * sizeof(*A[i]).
if (IndexTypeSize.isScalable()) {
if (Stride.isScalable()) {
// For scalable types the only thing we know about sizeof is
// that this is a multiple of the minimum size.
ScalingFactor.Zero.setLowBits(llvm::countr_zero(TypeSizeInBytes));
} else if (IndexBits.isConstant()) {
APInt IndexConst = IndexBits.getConstant();
APInt ScalingFactor(IndexBitWidth, TypeSizeInBytes);
IndexConst *= ScalingFactor;
AccConstIndices += IndexConst.sextOrTrunc(BitWidth);
continue;
ScalingFactor.Zero.setLowBits(llvm::countr_zero(StrideInBytes));
} else {
ScalingFactor =
KnownBits::makeConstant(APInt(IndexBitWidth, TypeSizeInBytes));
KnownBits::makeConstant(APInt(IndexWidth, StrideInBytes));
}
IndexBits = KnownBits::mul(IndexBits, ScalingFactor);

// If the offsets have a different width from the pointer, according
// to the language reference we need to sign-extend or truncate them
// to the width of the pointer.
IndexBits = IndexBits.sextOrTrunc(BitWidth);

// Note that inbounds does *not* guarantee nsw for the addition, as only
// the offset is signed, while the base address is unsigned.
Known = KnownBits::add(Known, IndexBits);
}
if (!Known.isUnknown() && !AccConstIndices.isZero()) {
KnownBits Index = KnownBits::makeConstant(AccConstIndices);
Known = KnownBits::add(Known, Index);
AddIndex(KnownBits::mul(IndexBits, ScalingFactor));
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This can be nsw I think

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Yes, we could preserve nuw/nsw here, but KnownBits::mul() doesn't currently support that. It probably wouldn't be useful in this context anyway.

}
if (!Known.isUnknown() && !AccConstIndices.isZero())
AddIndex(KnownBits::makeConstant(AccConstIndices));
break;
}
case Instruction::PHI: {
Expand Down
12 changes: 6 additions & 6 deletions llvm/unittests/Analysis/ValueTrackingTest.cpp
Original file line number Diff line number Diff line change
Expand Up @@ -2680,7 +2680,7 @@ TEST_F(ComputeKnownBitsTest, ComputeKnownBitsAbsoluteSymbol) {
}

TEST_F(ComputeKnownBitsTest, ComputeKnownBitsGEPExtendBeforeMul) {
// FIXME: The index should be extended before multiplying with the scale.
// The index should be extended before multiplying with the scale.
parseAssembly(R"(
target datalayout = "p:16:16:16"

Expand All @@ -2692,12 +2692,12 @@ TEST_F(ComputeKnownBitsTest, ComputeKnownBitsGEPExtendBeforeMul) {
}
)");
KnownBits Known = computeKnownBits(A, M->getDataLayout());
EXPECT_EQ(~64 & 0x7fff, Known.Zero);
EXPECT_EQ(64, Known.One);
EXPECT_EQ(~320 & 0x7fff, Known.Zero);
EXPECT_EQ(320, Known.One);
}

TEST_F(ComputeKnownBitsTest, ComputeKnownBitsGEPOnlyIndexBits) {
// FIXME: GEP should only affect the index width.
// GEP should only affect the index width.
parseAssembly(R"(
target datalayout = "p:16:16:16:8"

Expand All @@ -2710,8 +2710,8 @@ TEST_F(ComputeKnownBitsTest, ComputeKnownBitsGEPOnlyIndexBits) {
}
)");
KnownBits Known = computeKnownBits(A, M->getDataLayout());
EXPECT_EQ(0x7eff, Known.Zero);
EXPECT_EQ(0x100, Known.One);
EXPECT_EQ(0x7fff, Known.Zero);
EXPECT_EQ(0, Known.One);
}

TEST_F(ValueTrackingTest, HaveNoCommonBitsSet) {
Expand Down