10b57cec5SDimitry Andric //===-- X86ShuffleDecodeConstantPool.cpp - X86 shuffle decode -------------===// 20b57cec5SDimitry Andric // 30b57cec5SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 40b57cec5SDimitry Andric // See https://llvm.org/LICENSE.txt for license information. 50b57cec5SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 60b57cec5SDimitry Andric // 70b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 80b57cec5SDimitry Andric // 90b57cec5SDimitry Andric // Define several functions to decode x86 specific shuffle semantics using 100b57cec5SDimitry Andric // constants from the constant pool. 110b57cec5SDimitry Andric // 120b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 130b57cec5SDimitry Andric 14*5ffd83dbSDimitry Andric #include "X86ShuffleDecodeConstantPool.h" 15*5ffd83dbSDimitry Andric #include "MCTargetDesc/X86ShuffleDecode.h" 160b57cec5SDimitry Andric #include "llvm/ADT/APInt.h" 17*5ffd83dbSDimitry Andric #include "llvm/ADT/SmallVector.h" 180b57cec5SDimitry Andric #include "llvm/IR/Constants.h" 190b57cec5SDimitry Andric 200b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 210b57cec5SDimitry Andric // Vector Mask Decoding 220b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 230b57cec5SDimitry Andric 240b57cec5SDimitry Andric namespace llvm { 250b57cec5SDimitry Andric 260b57cec5SDimitry Andric static bool extractConstantMask(const Constant *C, unsigned MaskEltSizeInBits, 270b57cec5SDimitry Andric APInt &UndefElts, 280b57cec5SDimitry Andric SmallVectorImpl<uint64_t> &RawMask) { 290b57cec5SDimitry Andric // It is not an error for shuffle masks to not be a vector of 300b57cec5SDimitry Andric // MaskEltSizeInBits because the constant pool uniques constants by their 310b57cec5SDimitry Andric // bit representation. 320b57cec5SDimitry Andric // e.g. the following take up the same space in the constant pool: 330b57cec5SDimitry Andric // i128 -170141183420855150465331762880109871104 340b57cec5SDimitry Andric // 350b57cec5SDimitry Andric // <2 x i64> <i64 -9223372034707292160, i64 -9223372034707292160> 360b57cec5SDimitry Andric // 370b57cec5SDimitry Andric // <4 x i32> <i32 -2147483648, i32 -2147483648, 380b57cec5SDimitry Andric // i32 -2147483648, i32 -2147483648> 39*5ffd83dbSDimitry Andric auto *CstTy = dyn_cast<FixedVectorType>(C->getType()); 40*5ffd83dbSDimitry Andric if (!CstTy) 410b57cec5SDimitry Andric return false; 420b57cec5SDimitry Andric 43*5ffd83dbSDimitry Andric Type *CstEltTy = CstTy->getElementType(); 440b57cec5SDimitry Andric if (!CstEltTy->isIntegerTy()) 450b57cec5SDimitry Andric return false; 460b57cec5SDimitry Andric 470b57cec5SDimitry Andric unsigned CstSizeInBits = CstTy->getPrimitiveSizeInBits(); 480b57cec5SDimitry Andric unsigned CstEltSizeInBits = CstTy->getScalarSizeInBits(); 49*5ffd83dbSDimitry Andric unsigned NumCstElts = CstTy->getNumElements(); 500b57cec5SDimitry Andric 510b57cec5SDimitry Andric assert((CstSizeInBits % MaskEltSizeInBits) == 0 && 520b57cec5SDimitry Andric "Unaligned shuffle mask size"); 530b57cec5SDimitry Andric 540b57cec5SDimitry Andric unsigned NumMaskElts = CstSizeInBits / MaskEltSizeInBits; 550b57cec5SDimitry Andric UndefElts = APInt(NumMaskElts, 0); 560b57cec5SDimitry Andric RawMask.resize(NumMaskElts, 0); 570b57cec5SDimitry Andric 580b57cec5SDimitry Andric // Fast path - if the constants match the mask size then copy direct. 590b57cec5SDimitry Andric if (MaskEltSizeInBits == CstEltSizeInBits) { 600b57cec5SDimitry Andric assert(NumCstElts == NumMaskElts && "Unaligned shuffle mask size"); 610b57cec5SDimitry Andric for (unsigned i = 0; i != NumMaskElts; ++i) { 620b57cec5SDimitry Andric Constant *COp = C->getAggregateElement(i); 630b57cec5SDimitry Andric if (!COp || (!isa<UndefValue>(COp) && !isa<ConstantInt>(COp))) 640b57cec5SDimitry Andric return false; 650b57cec5SDimitry Andric 660b57cec5SDimitry Andric if (isa<UndefValue>(COp)) { 670b57cec5SDimitry Andric UndefElts.setBit(i); 680b57cec5SDimitry Andric RawMask[i] = 0; 690b57cec5SDimitry Andric continue; 700b57cec5SDimitry Andric } 710b57cec5SDimitry Andric 720b57cec5SDimitry Andric auto *Elt = cast<ConstantInt>(COp); 730b57cec5SDimitry Andric RawMask[i] = Elt->getValue().getZExtValue(); 740b57cec5SDimitry Andric } 750b57cec5SDimitry Andric return true; 760b57cec5SDimitry Andric } 770b57cec5SDimitry Andric 780b57cec5SDimitry Andric // Extract all the undef/constant element data and pack into single bitsets. 790b57cec5SDimitry Andric APInt UndefBits(CstSizeInBits, 0); 800b57cec5SDimitry Andric APInt MaskBits(CstSizeInBits, 0); 810b57cec5SDimitry Andric for (unsigned i = 0; i != NumCstElts; ++i) { 820b57cec5SDimitry Andric Constant *COp = C->getAggregateElement(i); 830b57cec5SDimitry Andric if (!COp || (!isa<UndefValue>(COp) && !isa<ConstantInt>(COp))) 840b57cec5SDimitry Andric return false; 850b57cec5SDimitry Andric 860b57cec5SDimitry Andric unsigned BitOffset = i * CstEltSizeInBits; 870b57cec5SDimitry Andric 880b57cec5SDimitry Andric if (isa<UndefValue>(COp)) { 890b57cec5SDimitry Andric UndefBits.setBits(BitOffset, BitOffset + CstEltSizeInBits); 900b57cec5SDimitry Andric continue; 910b57cec5SDimitry Andric } 920b57cec5SDimitry Andric 930b57cec5SDimitry Andric MaskBits.insertBits(cast<ConstantInt>(COp)->getValue(), BitOffset); 940b57cec5SDimitry Andric } 950b57cec5SDimitry Andric 960b57cec5SDimitry Andric // Now extract the undef/constant bit data into the raw shuffle masks. 970b57cec5SDimitry Andric for (unsigned i = 0; i != NumMaskElts; ++i) { 980b57cec5SDimitry Andric unsigned BitOffset = i * MaskEltSizeInBits; 990b57cec5SDimitry Andric APInt EltUndef = UndefBits.extractBits(MaskEltSizeInBits, BitOffset); 1000b57cec5SDimitry Andric 1010b57cec5SDimitry Andric // Only treat the element as UNDEF if all bits are UNDEF, otherwise 1020b57cec5SDimitry Andric // treat it as zero. 1030b57cec5SDimitry Andric if (EltUndef.isAllOnesValue()) { 1040b57cec5SDimitry Andric UndefElts.setBit(i); 1050b57cec5SDimitry Andric RawMask[i] = 0; 1060b57cec5SDimitry Andric continue; 1070b57cec5SDimitry Andric } 1080b57cec5SDimitry Andric 1090b57cec5SDimitry Andric APInt EltBits = MaskBits.extractBits(MaskEltSizeInBits, BitOffset); 1100b57cec5SDimitry Andric RawMask[i] = EltBits.getZExtValue(); 1110b57cec5SDimitry Andric } 1120b57cec5SDimitry Andric 1130b57cec5SDimitry Andric return true; 1140b57cec5SDimitry Andric } 1150b57cec5SDimitry Andric 1160b57cec5SDimitry Andric void DecodePSHUFBMask(const Constant *C, unsigned Width, 1170b57cec5SDimitry Andric SmallVectorImpl<int> &ShuffleMask) { 1180b57cec5SDimitry Andric assert((Width == 128 || Width == 256 || Width == 512) && 1190b57cec5SDimitry Andric C->getType()->getPrimitiveSizeInBits() >= Width && 1200b57cec5SDimitry Andric "Unexpected vector size."); 1210b57cec5SDimitry Andric 1220b57cec5SDimitry Andric // The shuffle mask requires a byte vector. 1230b57cec5SDimitry Andric APInt UndefElts; 1240b57cec5SDimitry Andric SmallVector<uint64_t, 64> RawMask; 1250b57cec5SDimitry Andric if (!extractConstantMask(C, 8, UndefElts, RawMask)) 1260b57cec5SDimitry Andric return; 1270b57cec5SDimitry Andric 1280b57cec5SDimitry Andric unsigned NumElts = Width / 8; 1290b57cec5SDimitry Andric assert((NumElts == 16 || NumElts == 32 || NumElts == 64) && 1300b57cec5SDimitry Andric "Unexpected number of vector elements."); 1310b57cec5SDimitry Andric 1320b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 1330b57cec5SDimitry Andric if (UndefElts[i]) { 1340b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 1350b57cec5SDimitry Andric continue; 1360b57cec5SDimitry Andric } 1370b57cec5SDimitry Andric 1380b57cec5SDimitry Andric uint64_t Element = RawMask[i]; 1390b57cec5SDimitry Andric // If the high bit (7) of the byte is set, the element is zeroed. 1400b57cec5SDimitry Andric if (Element & (1 << 7)) 1410b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelZero); 1420b57cec5SDimitry Andric else { 1430b57cec5SDimitry Andric // For AVX vectors with 32 bytes the base of the shuffle is the 16-byte 1440b57cec5SDimitry Andric // lane of the vector we're inside. 1450b57cec5SDimitry Andric unsigned Base = i & ~0xf; 1460b57cec5SDimitry Andric 1470b57cec5SDimitry Andric // Only the least significant 4 bits of the byte are used. 1480b57cec5SDimitry Andric int Index = Base + (Element & 0xf); 1490b57cec5SDimitry Andric ShuffleMask.push_back(Index); 1500b57cec5SDimitry Andric } 1510b57cec5SDimitry Andric } 1520b57cec5SDimitry Andric } 1530b57cec5SDimitry Andric 1540b57cec5SDimitry Andric void DecodeVPERMILPMask(const Constant *C, unsigned ElSize, unsigned Width, 1550b57cec5SDimitry Andric SmallVectorImpl<int> &ShuffleMask) { 1560b57cec5SDimitry Andric assert((Width == 128 || Width == 256 || Width == 512) && 1570b57cec5SDimitry Andric C->getType()->getPrimitiveSizeInBits() >= Width && 1580b57cec5SDimitry Andric "Unexpected vector size."); 1590b57cec5SDimitry Andric assert((ElSize == 32 || ElSize == 64) && "Unexpected vector element size."); 1600b57cec5SDimitry Andric 1610b57cec5SDimitry Andric // The shuffle mask requires elements the same size as the target. 1620b57cec5SDimitry Andric APInt UndefElts; 1630b57cec5SDimitry Andric SmallVector<uint64_t, 16> RawMask; 1640b57cec5SDimitry Andric if (!extractConstantMask(C, ElSize, UndefElts, RawMask)) 1650b57cec5SDimitry Andric return; 1660b57cec5SDimitry Andric 1670b57cec5SDimitry Andric unsigned NumElts = Width / ElSize; 1680b57cec5SDimitry Andric unsigned NumEltsPerLane = 128 / ElSize; 1690b57cec5SDimitry Andric assert((NumElts == 2 || NumElts == 4 || NumElts == 8 || NumElts == 16) && 1700b57cec5SDimitry Andric "Unexpected number of vector elements."); 1710b57cec5SDimitry Andric 1720b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 1730b57cec5SDimitry Andric if (UndefElts[i]) { 1740b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 1750b57cec5SDimitry Andric continue; 1760b57cec5SDimitry Andric } 1770b57cec5SDimitry Andric 1780b57cec5SDimitry Andric int Index = i & ~(NumEltsPerLane - 1); 1790b57cec5SDimitry Andric uint64_t Element = RawMask[i]; 1800b57cec5SDimitry Andric if (ElSize == 64) 1810b57cec5SDimitry Andric Index += (Element >> 1) & 0x1; 1820b57cec5SDimitry Andric else 1830b57cec5SDimitry Andric Index += Element & 0x3; 1840b57cec5SDimitry Andric 1850b57cec5SDimitry Andric ShuffleMask.push_back(Index); 1860b57cec5SDimitry Andric } 1870b57cec5SDimitry Andric } 1880b57cec5SDimitry Andric 1890b57cec5SDimitry Andric void DecodeVPERMIL2PMask(const Constant *C, unsigned M2Z, unsigned ElSize, 190*5ffd83dbSDimitry Andric unsigned Width, SmallVectorImpl<int> &ShuffleMask) { 1910b57cec5SDimitry Andric Type *MaskTy = C->getType(); 1920b57cec5SDimitry Andric unsigned MaskTySize = MaskTy->getPrimitiveSizeInBits(); 1930b57cec5SDimitry Andric (void)MaskTySize; 194*5ffd83dbSDimitry Andric assert((MaskTySize == 128 || MaskTySize == 256) && Width >= MaskTySize && 195*5ffd83dbSDimitry Andric "Unexpected vector size."); 1960b57cec5SDimitry Andric 1970b57cec5SDimitry Andric // The shuffle mask requires elements the same size as the target. 1980b57cec5SDimitry Andric APInt UndefElts; 1990b57cec5SDimitry Andric SmallVector<uint64_t, 8> RawMask; 2000b57cec5SDimitry Andric if (!extractConstantMask(C, ElSize, UndefElts, RawMask)) 2010b57cec5SDimitry Andric return; 2020b57cec5SDimitry Andric 2030b57cec5SDimitry Andric unsigned NumElts = Width / ElSize; 2040b57cec5SDimitry Andric unsigned NumEltsPerLane = 128 / ElSize; 2050b57cec5SDimitry Andric assert((NumElts == 2 || NumElts == 4 || NumElts == 8) && 2060b57cec5SDimitry Andric "Unexpected number of vector elements."); 2070b57cec5SDimitry Andric 2080b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 2090b57cec5SDimitry Andric if (UndefElts[i]) { 2100b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 2110b57cec5SDimitry Andric continue; 2120b57cec5SDimitry Andric } 2130b57cec5SDimitry Andric 2140b57cec5SDimitry Andric // VPERMIL2 Operation. 2150b57cec5SDimitry Andric // Bits[3] - Match Bit. 2160b57cec5SDimitry Andric // Bits[2:1] - (Per Lane) PD Shuffle Mask. 2170b57cec5SDimitry Andric // Bits[2:0] - (Per Lane) PS Shuffle Mask. 2180b57cec5SDimitry Andric uint64_t Selector = RawMask[i]; 2190b57cec5SDimitry Andric unsigned MatchBit = (Selector >> 3) & 0x1; 2200b57cec5SDimitry Andric 2210b57cec5SDimitry Andric // M2Z[0:1] MatchBit 2220b57cec5SDimitry Andric // 0Xb X Source selected by Selector index. 2230b57cec5SDimitry Andric // 10b 0 Source selected by Selector index. 2240b57cec5SDimitry Andric // 10b 1 Zero. 2250b57cec5SDimitry Andric // 11b 0 Zero. 2260b57cec5SDimitry Andric // 11b 1 Source selected by Selector index. 2270b57cec5SDimitry Andric if ((M2Z & 0x2) != 0u && MatchBit != (M2Z & 0x1)) { 2280b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelZero); 2290b57cec5SDimitry Andric continue; 2300b57cec5SDimitry Andric } 2310b57cec5SDimitry Andric 2320b57cec5SDimitry Andric int Index = i & ~(NumEltsPerLane - 1); 2330b57cec5SDimitry Andric if (ElSize == 64) 2340b57cec5SDimitry Andric Index += (Selector >> 1) & 0x1; 2350b57cec5SDimitry Andric else 2360b57cec5SDimitry Andric Index += Selector & 0x3; 2370b57cec5SDimitry Andric 2380b57cec5SDimitry Andric int Src = (Selector >> 2) & 0x1; 2390b57cec5SDimitry Andric Index += Src * NumElts; 2400b57cec5SDimitry Andric ShuffleMask.push_back(Index); 2410b57cec5SDimitry Andric } 2420b57cec5SDimitry Andric } 2430b57cec5SDimitry Andric 2440b57cec5SDimitry Andric void DecodeVPPERMMask(const Constant *C, unsigned Width, 2450b57cec5SDimitry Andric SmallVectorImpl<int> &ShuffleMask) { 2460b57cec5SDimitry Andric Type *MaskTy = C->getType(); 2470b57cec5SDimitry Andric unsigned MaskTySize = MaskTy->getPrimitiveSizeInBits(); 2480b57cec5SDimitry Andric (void)MaskTySize; 2490b57cec5SDimitry Andric assert(Width == 128 && Width >= MaskTySize && "Unexpected vector size."); 2500b57cec5SDimitry Andric 2510b57cec5SDimitry Andric // The shuffle mask requires a byte vector. 2520b57cec5SDimitry Andric APInt UndefElts; 2530b57cec5SDimitry Andric SmallVector<uint64_t, 16> RawMask; 2540b57cec5SDimitry Andric if (!extractConstantMask(C, 8, UndefElts, RawMask)) 2550b57cec5SDimitry Andric return; 2560b57cec5SDimitry Andric 2570b57cec5SDimitry Andric unsigned NumElts = Width / 8; 2580b57cec5SDimitry Andric assert(NumElts == 16 && "Unexpected number of vector elements."); 2590b57cec5SDimitry Andric 2600b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 2610b57cec5SDimitry Andric if (UndefElts[i]) { 2620b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 2630b57cec5SDimitry Andric continue; 2640b57cec5SDimitry Andric } 2650b57cec5SDimitry Andric 2660b57cec5SDimitry Andric // VPPERM Operation 2670b57cec5SDimitry Andric // Bits[4:0] - Byte Index (0 - 31) 2680b57cec5SDimitry Andric // Bits[7:5] - Permute Operation 2690b57cec5SDimitry Andric // 2700b57cec5SDimitry Andric // Permute Operation: 2710b57cec5SDimitry Andric // 0 - Source byte (no logical operation). 2720b57cec5SDimitry Andric // 1 - Invert source byte. 2730b57cec5SDimitry Andric // 2 - Bit reverse of source byte. 2740b57cec5SDimitry Andric // 3 - Bit reverse of inverted source byte. 2750b57cec5SDimitry Andric // 4 - 00h (zero - fill). 2760b57cec5SDimitry Andric // 5 - FFh (ones - fill). 2770b57cec5SDimitry Andric // 6 - Most significant bit of source byte replicated in all bit positions. 2780b57cec5SDimitry Andric // 7 - Invert most significant bit of source byte and replicate in all bit 2790b57cec5SDimitry Andric // positions. 2800b57cec5SDimitry Andric uint64_t Element = RawMask[i]; 2810b57cec5SDimitry Andric uint64_t Index = Element & 0x1F; 2820b57cec5SDimitry Andric uint64_t PermuteOp = (Element >> 5) & 0x7; 2830b57cec5SDimitry Andric 2840b57cec5SDimitry Andric if (PermuteOp == 4) { 2850b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelZero); 2860b57cec5SDimitry Andric continue; 2870b57cec5SDimitry Andric } 2880b57cec5SDimitry Andric if (PermuteOp != 0) { 2890b57cec5SDimitry Andric ShuffleMask.clear(); 2900b57cec5SDimitry Andric return; 2910b57cec5SDimitry Andric } 2920b57cec5SDimitry Andric ShuffleMask.push_back((int)Index); 2930b57cec5SDimitry Andric } 2940b57cec5SDimitry Andric } 2950b57cec5SDimitry Andric 2960b57cec5SDimitry Andric void DecodeVPERMVMask(const Constant *C, unsigned ElSize, unsigned Width, 2970b57cec5SDimitry Andric SmallVectorImpl<int> &ShuffleMask) { 2980b57cec5SDimitry Andric assert((Width == 128 || Width == 256 || Width == 512) && 2990b57cec5SDimitry Andric C->getType()->getPrimitiveSizeInBits() >= Width && 3000b57cec5SDimitry Andric "Unexpected vector size."); 3010b57cec5SDimitry Andric assert((ElSize == 8 || ElSize == 16 || ElSize == 32 || ElSize == 64) && 3020b57cec5SDimitry Andric "Unexpected vector element size."); 3030b57cec5SDimitry Andric 3040b57cec5SDimitry Andric // The shuffle mask requires elements the same size as the target. 3050b57cec5SDimitry Andric APInt UndefElts; 3060b57cec5SDimitry Andric SmallVector<uint64_t, 64> RawMask; 3070b57cec5SDimitry Andric if (!extractConstantMask(C, ElSize, UndefElts, RawMask)) 3080b57cec5SDimitry Andric return; 3090b57cec5SDimitry Andric 3100b57cec5SDimitry Andric unsigned NumElts = Width / ElSize; 3110b57cec5SDimitry Andric 3120b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 3130b57cec5SDimitry Andric if (UndefElts[i]) { 3140b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 3150b57cec5SDimitry Andric continue; 3160b57cec5SDimitry Andric } 3170b57cec5SDimitry Andric int Index = RawMask[i] & (NumElts - 1); 3180b57cec5SDimitry Andric ShuffleMask.push_back(Index); 3190b57cec5SDimitry Andric } 3200b57cec5SDimitry Andric } 3210b57cec5SDimitry Andric 3220b57cec5SDimitry Andric void DecodeVPERMV3Mask(const Constant *C, unsigned ElSize, unsigned Width, 3230b57cec5SDimitry Andric SmallVectorImpl<int> &ShuffleMask) { 3240b57cec5SDimitry Andric assert((Width == 128 || Width == 256 || Width == 512) && 3250b57cec5SDimitry Andric C->getType()->getPrimitiveSizeInBits() >= Width && 3260b57cec5SDimitry Andric "Unexpected vector size."); 3270b57cec5SDimitry Andric assert((ElSize == 8 || ElSize == 16 || ElSize == 32 || ElSize == 64) && 3280b57cec5SDimitry Andric "Unexpected vector element size."); 3290b57cec5SDimitry Andric 3300b57cec5SDimitry Andric // The shuffle mask requires elements the same size as the target. 3310b57cec5SDimitry Andric APInt UndefElts; 3320b57cec5SDimitry Andric SmallVector<uint64_t, 64> RawMask; 3330b57cec5SDimitry Andric if (!extractConstantMask(C, ElSize, UndefElts, RawMask)) 3340b57cec5SDimitry Andric return; 3350b57cec5SDimitry Andric 3360b57cec5SDimitry Andric unsigned NumElts = Width / ElSize; 3370b57cec5SDimitry Andric 3380b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts; ++i) { 3390b57cec5SDimitry Andric if (UndefElts[i]) { 3400b57cec5SDimitry Andric ShuffleMask.push_back(SM_SentinelUndef); 3410b57cec5SDimitry Andric continue; 3420b57cec5SDimitry Andric } 3430b57cec5SDimitry Andric int Index = RawMask[i] & (NumElts*2 - 1); 3440b57cec5SDimitry Andric ShuffleMask.push_back(Index); 3450b57cec5SDimitry Andric } 3460b57cec5SDimitry Andric } 3470b57cec5SDimitry Andric } // llvm namespace 348