NAKAMURA Takumi | 8496503 | 2015-09-22 11:14:12 +0000 | [diff] [blame] | 1 | //===---- DemandedBits.cpp - Determine demanded bits ----------------------===// |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 2 | // |
| 3 | // The LLVM Compiler Infrastructure |
| 4 | // |
| 5 | // This file is distributed under the University of Illinois Open Source |
| 6 | // License. See LICENSE.TXT for details. |
| 7 | // |
| 8 | //===----------------------------------------------------------------------===// |
| 9 | // |
| 10 | // This pass implements a demanded bits analysis. A demanded bit is one that |
| 11 | // contributes to a result; bits that are not demanded can be either zero or |
| 12 | // one without affecting control or data flow. For example in this sequence: |
| 13 | // |
| 14 | // %1 = add i32 %x, %y |
| 15 | // %2 = trunc i32 %1 to i16 |
| 16 | // |
| 17 | // Only the lowest 16 bits of %1 are demanded; the rest are removed by the |
| 18 | // trunc. |
| 19 | // |
| 20 | //===----------------------------------------------------------------------===// |
| 21 | |
| 22 | #include "llvm/Analysis/DemandedBits.h" |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 23 | #include "llvm/ADT/DepthFirstIterator.h" |
| 24 | #include "llvm/ADT/SmallPtrSet.h" |
| 25 | #include "llvm/ADT/SmallVector.h" |
James Molloy | bcd7f0a | 2015-10-08 12:39:59 +0000 | [diff] [blame] | 26 | #include "llvm/ADT/StringExtras.h" |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 27 | #include "llvm/Analysis/AssumptionCache.h" |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 28 | #include "llvm/Analysis/ValueTracking.h" |
| 29 | #include "llvm/IR/BasicBlock.h" |
| 30 | #include "llvm/IR/CFG.h" |
| 31 | #include "llvm/IR/DataLayout.h" |
| 32 | #include "llvm/IR/Dominators.h" |
| 33 | #include "llvm/IR/InstIterator.h" |
| 34 | #include "llvm/IR/Instructions.h" |
| 35 | #include "llvm/IR/IntrinsicInst.h" |
| 36 | #include "llvm/IR/Module.h" |
| 37 | #include "llvm/IR/Operator.h" |
| 38 | #include "llvm/Pass.h" |
| 39 | #include "llvm/Support/Debug.h" |
| 40 | #include "llvm/Support/raw_ostream.h" |
| 41 | using namespace llvm; |
| 42 | |
| 43 | #define DEBUG_TYPE "demanded-bits" |
| 44 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 45 | char DemandedBitsWrapperPass::ID = 0; |
| 46 | INITIALIZE_PASS_BEGIN(DemandedBitsWrapperPass, "demanded-bits", |
| 47 | "Demanded bits analysis", false, false) |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 48 | INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker) |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 49 | INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass) |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 50 | INITIALIZE_PASS_END(DemandedBitsWrapperPass, "demanded-bits", |
| 51 | "Demanded bits analysis", false, false) |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 52 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 53 | DemandedBitsWrapperPass::DemandedBitsWrapperPass() : FunctionPass(ID) { |
| 54 | initializeDemandedBitsWrapperPassPass(*PassRegistry::getPassRegistry()); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 55 | } |
| 56 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 57 | void DemandedBitsWrapperPass::getAnalysisUsage(AnalysisUsage &AU) const { |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 58 | AU.setPreservesCFG(); |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 59 | AU.addRequired<AssumptionCacheTracker>(); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 60 | AU.addRequired<DominatorTreeWrapperPass>(); |
| 61 | AU.setPreservesAll(); |
| 62 | } |
| 63 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 64 | void DemandedBitsWrapperPass::print(raw_ostream &OS, const Module *M) const { |
| 65 | DB->print(OS); |
| 66 | } |
| 67 | |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 68 | static bool isAlwaysLive(Instruction *I) { |
| 69 | return isa<TerminatorInst>(I) || isa<DbgInfoIntrinsic>(I) || |
| 70 | I->isEHPad() || I->mayHaveSideEffects(); |
| 71 | } |
| 72 | |
NAKAMURA Takumi | 0a7d0ad | 2015-09-22 11:15:07 +0000 | [diff] [blame] | 73 | void DemandedBits::determineLiveOperandBits( |
| 74 | const Instruction *UserI, const Instruction *I, unsigned OperandNo, |
| 75 | const APInt &AOut, APInt &AB, APInt &KnownZero, APInt &KnownOne, |
| 76 | APInt &KnownZero2, APInt &KnownOne2) { |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 77 | unsigned BitWidth = AB.getBitWidth(); |
| 78 | |
| 79 | // We're called once per operand, but for some instructions, we need to |
| 80 | // compute known bits of both operands in order to determine the live bits of |
| 81 | // either (when both operands are instructions themselves). We don't, |
| 82 | // however, want to do this twice, so we cache the result in APInts that live |
| 83 | // in the caller. For the two-relevant-operands case, both operand values are |
| 84 | // provided here. |
| 85 | auto ComputeKnownBits = |
| 86 | [&](unsigned BitWidth, const Value *V1, const Value *V2) { |
| 87 | const DataLayout &DL = I->getModule()->getDataLayout(); |
| 88 | KnownZero = APInt(BitWidth, 0); |
| 89 | KnownOne = APInt(BitWidth, 0); |
| 90 | computeKnownBits(const_cast<Value *>(V1), KnownZero, KnownOne, DL, 0, |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 91 | &AC, UserI, &DT); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 92 | |
| 93 | if (V2) { |
| 94 | KnownZero2 = APInt(BitWidth, 0); |
| 95 | KnownOne2 = APInt(BitWidth, 0); |
| 96 | computeKnownBits(const_cast<Value *>(V2), KnownZero2, KnownOne2, DL, |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 97 | 0, &AC, UserI, &DT); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 98 | } |
| 99 | }; |
| 100 | |
| 101 | switch (UserI->getOpcode()) { |
| 102 | default: break; |
| 103 | case Instruction::Call: |
| 104 | case Instruction::Invoke: |
| 105 | if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(UserI)) |
| 106 | switch (II->getIntrinsicID()) { |
| 107 | default: break; |
| 108 | case Intrinsic::bswap: |
| 109 | // The alive bits of the input are the swapped alive bits of |
| 110 | // the output. |
| 111 | AB = AOut.byteSwap(); |
| 112 | break; |
| 113 | case Intrinsic::ctlz: |
| 114 | if (OperandNo == 0) { |
| 115 | // We need some output bits, so we need all bits of the |
| 116 | // input to the left of, and including, the leftmost bit |
| 117 | // known to be one. |
| 118 | ComputeKnownBits(BitWidth, I, nullptr); |
| 119 | AB = APInt::getHighBitsSet(BitWidth, |
| 120 | std::min(BitWidth, KnownOne.countLeadingZeros()+1)); |
| 121 | } |
| 122 | break; |
| 123 | case Intrinsic::cttz: |
| 124 | if (OperandNo == 0) { |
| 125 | // We need some output bits, so we need all bits of the |
| 126 | // input to the right of, and including, the rightmost bit |
| 127 | // known to be one. |
| 128 | ComputeKnownBits(BitWidth, I, nullptr); |
| 129 | AB = APInt::getLowBitsSet(BitWidth, |
| 130 | std::min(BitWidth, KnownOne.countTrailingZeros()+1)); |
| 131 | } |
| 132 | break; |
| 133 | } |
| 134 | break; |
| 135 | case Instruction::Add: |
| 136 | case Instruction::Sub: |
James Molloy | bcd7f0a | 2015-10-08 12:39:59 +0000 | [diff] [blame] | 137 | case Instruction::Mul: |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 138 | // Find the highest live output bit. We don't need any more input |
| 139 | // bits than that (adds, and thus subtracts, ripple only to the |
| 140 | // left). |
| 141 | AB = APInt::getLowBitsSet(BitWidth, AOut.getActiveBits()); |
| 142 | break; |
| 143 | case Instruction::Shl: |
| 144 | if (OperandNo == 0) |
| 145 | if (ConstantInt *CI = |
| 146 | dyn_cast<ConstantInt>(UserI->getOperand(1))) { |
| 147 | uint64_t ShiftAmt = CI->getLimitedValue(BitWidth-1); |
| 148 | AB = AOut.lshr(ShiftAmt); |
| 149 | |
| 150 | // If the shift is nuw/nsw, then the high bits are not dead |
| 151 | // (because we've promised that they *must* be zero). |
| 152 | const ShlOperator *S = cast<ShlOperator>(UserI); |
| 153 | if (S->hasNoSignedWrap()) |
| 154 | AB |= APInt::getHighBitsSet(BitWidth, ShiftAmt+1); |
| 155 | else if (S->hasNoUnsignedWrap()) |
| 156 | AB |= APInt::getHighBitsSet(BitWidth, ShiftAmt); |
| 157 | } |
| 158 | break; |
| 159 | case Instruction::LShr: |
| 160 | if (OperandNo == 0) |
| 161 | if (ConstantInt *CI = |
| 162 | dyn_cast<ConstantInt>(UserI->getOperand(1))) { |
| 163 | uint64_t ShiftAmt = CI->getLimitedValue(BitWidth-1); |
| 164 | AB = AOut.shl(ShiftAmt); |
| 165 | |
| 166 | // If the shift is exact, then the low bits are not dead |
| 167 | // (they must be zero). |
| 168 | if (cast<LShrOperator>(UserI)->isExact()) |
| 169 | AB |= APInt::getLowBitsSet(BitWidth, ShiftAmt); |
| 170 | } |
| 171 | break; |
| 172 | case Instruction::AShr: |
| 173 | if (OperandNo == 0) |
| 174 | if (ConstantInt *CI = |
| 175 | dyn_cast<ConstantInt>(UserI->getOperand(1))) { |
| 176 | uint64_t ShiftAmt = CI->getLimitedValue(BitWidth-1); |
| 177 | AB = AOut.shl(ShiftAmt); |
| 178 | // Because the high input bit is replicated into the |
| 179 | // high-order bits of the result, if we need any of those |
| 180 | // bits, then we must keep the highest input bit. |
| 181 | if ((AOut & APInt::getHighBitsSet(BitWidth, ShiftAmt)) |
| 182 | .getBoolValue()) |
| 183 | AB.setBit(BitWidth-1); |
| 184 | |
| 185 | // If the shift is exact, then the low bits are not dead |
| 186 | // (they must be zero). |
| 187 | if (cast<AShrOperator>(UserI)->isExact()) |
| 188 | AB |= APInt::getLowBitsSet(BitWidth, ShiftAmt); |
| 189 | } |
| 190 | break; |
| 191 | case Instruction::And: |
| 192 | AB = AOut; |
| 193 | |
| 194 | // For bits that are known zero, the corresponding bits in the |
| 195 | // other operand are dead (unless they're both zero, in which |
| 196 | // case they can't both be dead, so just mark the LHS bits as |
| 197 | // dead). |
| 198 | if (OperandNo == 0) { |
| 199 | ComputeKnownBits(BitWidth, I, UserI->getOperand(1)); |
| 200 | AB &= ~KnownZero2; |
| 201 | } else { |
| 202 | if (!isa<Instruction>(UserI->getOperand(0))) |
| 203 | ComputeKnownBits(BitWidth, UserI->getOperand(0), I); |
| 204 | AB &= ~(KnownZero & ~KnownZero2); |
| 205 | } |
| 206 | break; |
| 207 | case Instruction::Or: |
| 208 | AB = AOut; |
| 209 | |
| 210 | // For bits that are known one, the corresponding bits in the |
| 211 | // other operand are dead (unless they're both one, in which |
| 212 | // case they can't both be dead, so just mark the LHS bits as |
| 213 | // dead). |
| 214 | if (OperandNo == 0) { |
| 215 | ComputeKnownBits(BitWidth, I, UserI->getOperand(1)); |
| 216 | AB &= ~KnownOne2; |
| 217 | } else { |
| 218 | if (!isa<Instruction>(UserI->getOperand(0))) |
| 219 | ComputeKnownBits(BitWidth, UserI->getOperand(0), I); |
| 220 | AB &= ~(KnownOne & ~KnownOne2); |
| 221 | } |
| 222 | break; |
| 223 | case Instruction::Xor: |
| 224 | case Instruction::PHI: |
| 225 | AB = AOut; |
| 226 | break; |
| 227 | case Instruction::Trunc: |
| 228 | AB = AOut.zext(BitWidth); |
| 229 | break; |
| 230 | case Instruction::ZExt: |
| 231 | AB = AOut.trunc(BitWidth); |
| 232 | break; |
| 233 | case Instruction::SExt: |
| 234 | AB = AOut.trunc(BitWidth); |
| 235 | // Because the high input bit is replicated into the |
| 236 | // high-order bits of the result, if we need any of those |
| 237 | // bits, then we must keep the highest input bit. |
| 238 | if ((AOut & APInt::getHighBitsSet(AOut.getBitWidth(), |
| 239 | AOut.getBitWidth() - BitWidth)) |
| 240 | .getBoolValue()) |
| 241 | AB.setBit(BitWidth-1); |
| 242 | break; |
| 243 | case Instruction::Select: |
| 244 | if (OperandNo != 0) |
| 245 | AB = AOut; |
| 246 | break; |
| 247 | } |
| 248 | } |
| 249 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 250 | bool DemandedBitsWrapperPass::runOnFunction(Function &F) { |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 251 | auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F); |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 252 | auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree(); |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 253 | DB.emplace(F, AC, DT); |
James Molloy | ab9fdb9 | 2015-10-08 12:39:50 +0000 | [diff] [blame] | 254 | return false; |
| 255 | } |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 256 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 257 | void DemandedBitsWrapperPass::releaseMemory() { |
| 258 | DB.reset(); |
| 259 | } |
| 260 | |
James Molloy | ab9fdb9 | 2015-10-08 12:39:50 +0000 | [diff] [blame] | 261 | void DemandedBits::performAnalysis() { |
| 262 | if (Analyzed) |
| 263 | // Analysis already completed for this function. |
| 264 | return; |
| 265 | Analyzed = true; |
James Molloy | ab9fdb9 | 2015-10-08 12:39:50 +0000 | [diff] [blame] | 266 | |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 267 | Visited.clear(); |
| 268 | AliveBits.clear(); |
| 269 | |
| 270 | SmallVector<Instruction*, 128> Worklist; |
| 271 | |
| 272 | // Collect the set of "root" instructions that are known live. |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 273 | for (Instruction &I : instructions(F)) { |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 274 | if (!isAlwaysLive(&I)) |
| 275 | continue; |
| 276 | |
| 277 | DEBUG(dbgs() << "DemandedBits: Root: " << I << "\n"); |
| 278 | // For integer-valued instructions, set up an initial empty set of alive |
| 279 | // bits and add the instruction to the work list. For other instructions |
| 280 | // add their operands to the work list (for integer values operands, mark |
| 281 | // all bits as live). |
| 282 | if (IntegerType *IT = dyn_cast<IntegerType>(I.getType())) { |
Benjamin Kramer | a9e477b | 2016-07-21 13:37:55 +0000 | [diff] [blame] | 283 | if (AliveBits.try_emplace(&I, IT->getBitWidth(), 0).second) |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 284 | Worklist.push_back(&I); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 285 | |
| 286 | continue; |
| 287 | } |
| 288 | |
| 289 | // Non-integer-typed instructions... |
| 290 | for (Use &OI : I.operands()) { |
| 291 | if (Instruction *J = dyn_cast<Instruction>(OI)) { |
| 292 | if (IntegerType *IT = dyn_cast<IntegerType>(J->getType())) |
| 293 | AliveBits[J] = APInt::getAllOnesValue(IT->getBitWidth()); |
| 294 | Worklist.push_back(J); |
| 295 | } |
| 296 | } |
| 297 | // To save memory, we don't add I to the Visited set here. Instead, we |
| 298 | // check isAlwaysLive on every instruction when searching for dead |
| 299 | // instructions later (we need to check isAlwaysLive for the |
| 300 | // integer-typed instructions anyway). |
| 301 | } |
| 302 | |
| 303 | // Propagate liveness backwards to operands. |
| 304 | while (!Worklist.empty()) { |
| 305 | Instruction *UserI = Worklist.pop_back_val(); |
| 306 | |
| 307 | DEBUG(dbgs() << "DemandedBits: Visiting: " << *UserI); |
| 308 | APInt AOut; |
| 309 | if (UserI->getType()->isIntegerTy()) { |
| 310 | AOut = AliveBits[UserI]; |
| 311 | DEBUG(dbgs() << " Alive Out: " << AOut); |
| 312 | } |
| 313 | DEBUG(dbgs() << "\n"); |
| 314 | |
| 315 | if (!UserI->getType()->isIntegerTy()) |
| 316 | Visited.insert(UserI); |
| 317 | |
| 318 | APInt KnownZero, KnownOne, KnownZero2, KnownOne2; |
| 319 | // Compute the set of alive bits for each operand. These are anded into the |
| 320 | // existing set, if any, and if that changes the set of alive bits, the |
| 321 | // operand is added to the work-list. |
| 322 | for (Use &OI : UserI->operands()) { |
| 323 | if (Instruction *I = dyn_cast<Instruction>(OI)) { |
| 324 | if (IntegerType *IT = dyn_cast<IntegerType>(I->getType())) { |
| 325 | unsigned BitWidth = IT->getBitWidth(); |
| 326 | APInt AB = APInt::getAllOnesValue(BitWidth); |
| 327 | if (UserI->getType()->isIntegerTy() && !AOut && |
| 328 | !isAlwaysLive(UserI)) { |
| 329 | AB = APInt(BitWidth, 0); |
| 330 | } else { |
NAKAMURA Takumi | 8496503 | 2015-09-22 11:14:12 +0000 | [diff] [blame] | 331 | // If all bits of the output are dead, then all bits of the input |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 332 | // Bits of each operand that are used to compute alive bits of the |
| 333 | // output are alive, all others are dead. |
| 334 | determineLiveOperandBits(UserI, I, OI.getOperandNo(), AOut, AB, |
| 335 | KnownZero, KnownOne, |
| 336 | KnownZero2, KnownOne2); |
| 337 | } |
| 338 | |
| 339 | // If we've added to the set of alive bits (or the operand has not |
| 340 | // been previously visited), then re-queue the operand to be visited |
| 341 | // again. |
| 342 | APInt ABPrev(BitWidth, 0); |
| 343 | auto ABI = AliveBits.find(I); |
| 344 | if (ABI != AliveBits.end()) |
| 345 | ABPrev = ABI->second; |
| 346 | |
| 347 | APInt ABNew = AB | ABPrev; |
| 348 | if (ABNew != ABPrev || ABI == AliveBits.end()) { |
| 349 | AliveBits[I] = std::move(ABNew); |
| 350 | Worklist.push_back(I); |
| 351 | } |
| 352 | } else if (!Visited.count(I)) { |
| 353 | Worklist.push_back(I); |
| 354 | } |
| 355 | } |
| 356 | } |
| 357 | } |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 358 | } |
| 359 | |
| 360 | APInt DemandedBits::getDemandedBits(Instruction *I) { |
James Molloy | ab9fdb9 | 2015-10-08 12:39:50 +0000 | [diff] [blame] | 361 | performAnalysis(); |
| 362 | |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 363 | const DataLayout &DL = I->getParent()->getModule()->getDataLayout(); |
Benjamin Kramer | a9e477b | 2016-07-21 13:37:55 +0000 | [diff] [blame] | 364 | auto Found = AliveBits.find(I); |
| 365 | if (Found != AliveBits.end()) |
| 366 | return Found->second; |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 367 | return APInt::getAllOnesValue(DL.getTypeSizeInBits(I->getType())); |
| 368 | } |
| 369 | |
| 370 | bool DemandedBits::isInstructionDead(Instruction *I) { |
James Molloy | ab9fdb9 | 2015-10-08 12:39:50 +0000 | [diff] [blame] | 371 | performAnalysis(); |
| 372 | |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 373 | return !Visited.count(I) && AliveBits.find(I) == AliveBits.end() && |
| 374 | !isAlwaysLive(I); |
| 375 | } |
| 376 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 377 | void DemandedBits::print(raw_ostream &OS) { |
| 378 | performAnalysis(); |
James Molloy | bcd7f0a | 2015-10-08 12:39:59 +0000 | [diff] [blame] | 379 | for (auto &KV : AliveBits) { |
| 380 | OS << "DemandedBits: 0x" << utohexstr(KV.second.getLimitedValue()) << " for " |
| 381 | << *KV.first << "\n"; |
| 382 | } |
| 383 | } |
| 384 | |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 385 | FunctionPass *llvm::createDemandedBitsWrapperPass() { |
| 386 | return new DemandedBitsWrapperPass(); |
| 387 | } |
| 388 | |
Chandler Carruth | dab4eae | 2016-11-23 17:53:26 +0000 | [diff] [blame] | 389 | AnalysisKey DemandedBitsAnalysis::Key; |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 390 | |
| 391 | DemandedBits DemandedBitsAnalysis::run(Function &F, |
Sean Silva | 36e0d01 | 2016-08-09 00:28:15 +0000 | [diff] [blame] | 392 | FunctionAnalysisManager &AM) { |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 393 | auto &AC = AM.getResult<AssumptionAnalysis>(F); |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 394 | auto &DT = AM.getResult<DominatorTreeAnalysis>(F); |
Daniel Jasper | aec2fa3 | 2016-12-19 08:22:17 +0000 | [diff] [blame^] | 395 | return DemandedBits(F, AC, DT); |
Michael Kuperstein | de16b44 | 2016-04-18 23:55:01 +0000 | [diff] [blame] | 396 | } |
| 397 | |
| 398 | PreservedAnalyses DemandedBitsPrinterPass::run(Function &F, |
| 399 | FunctionAnalysisManager &AM) { |
| 400 | AM.getResult<DemandedBitsAnalysis>(F).print(OS); |
| 401 | return PreservedAnalyses::all(); |
James Molloy | 87405c7 | 2015-08-14 11:09:09 +0000 | [diff] [blame] | 402 | } |