1 //===- unittest/ProfileData/InstrProfTest.cpp -------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "llvm/IR/Function.h" 10 #include "llvm/IR/IRBuilder.h" 11 #include "llvm/IR/LLVMContext.h" 12 #include "llvm/IR/Module.h" 13 #include "llvm/ProfileData/InstrProfReader.h" 14 #include "llvm/ProfileData/InstrProfWriter.h" 15 #include "llvm/ProfileData/MemProf.h" 16 #include "llvm/ProfileData/MemProfData.inc" 17 #include "llvm/Support/Compression.h" 18 #include "llvm/Support/raw_ostream.h" 19 #include "llvm/Testing/Support/Error.h" 20 #include "llvm/Testing/Support/SupportHelpers.h" 21 #include "gtest/gtest.h" 22 #include <cstdarg> 23 24 using namespace llvm; 25 26 LLVM_NODISCARD static ::testing::AssertionResult 27 ErrorEquals(instrprof_error Expected, Error E) { 28 instrprof_error Found; 29 std::string FoundMsg; 30 handleAllErrors(std::move(E), [&](const InstrProfError &IPE) { 31 Found = IPE.get(); 32 FoundMsg = IPE.message(); 33 }); 34 if (Expected == Found) 35 return ::testing::AssertionSuccess(); 36 return ::testing::AssertionFailure() << "error: " << FoundMsg << "\n"; 37 } 38 39 namespace { 40 41 struct InstrProfTest : ::testing::Test { 42 InstrProfWriter Writer; 43 std::unique_ptr<IndexedInstrProfReader> Reader; 44 45 void SetUp() override { Writer.setOutputSparse(false); } 46 47 void readProfile(std::unique_ptr<MemoryBuffer> Profile, 48 std::unique_ptr<MemoryBuffer> Remapping = nullptr) { 49 auto ReaderOrErr = IndexedInstrProfReader::create(std::move(Profile), 50 std::move(Remapping)); 51 EXPECT_THAT_ERROR(ReaderOrErr.takeError(), Succeeded()); 52 Reader = std::move(ReaderOrErr.get()); 53 } 54 }; 55 56 struct SparseInstrProfTest : public InstrProfTest { 57 void SetUp() override { Writer.setOutputSparse(true); } 58 }; 59 60 struct MaybeSparseInstrProfTest : public InstrProfTest, 61 public ::testing::WithParamInterface<bool> { 62 void SetUp() override { Writer.setOutputSparse(GetParam()); } 63 }; 64 65 TEST_P(MaybeSparseInstrProfTest, write_and_read_empty_profile) { 66 auto Profile = Writer.writeBuffer(); 67 readProfile(std::move(Profile)); 68 ASSERT_TRUE(Reader->begin() == Reader->end()); 69 } 70 71 static const auto Err = [](Error E) { 72 consumeError(std::move(E)); 73 FAIL(); 74 }; 75 76 TEST_P(MaybeSparseInstrProfTest, write_and_read_one_function) { 77 Writer.addRecord({"foo", 0x1234, {1, 2, 3, 4}}, Err); 78 auto Profile = Writer.writeBuffer(); 79 readProfile(std::move(Profile)); 80 81 auto I = Reader->begin(), E = Reader->end(); 82 ASSERT_TRUE(I != E); 83 ASSERT_EQ(StringRef("foo"), I->Name); 84 ASSERT_EQ(0x1234U, I->Hash); 85 ASSERT_EQ(4U, I->Counts.size()); 86 ASSERT_EQ(1U, I->Counts[0]); 87 ASSERT_EQ(2U, I->Counts[1]); 88 ASSERT_EQ(3U, I->Counts[2]); 89 ASSERT_EQ(4U, I->Counts[3]); 90 ASSERT_TRUE(++I == E); 91 } 92 93 TEST_P(MaybeSparseInstrProfTest, get_instr_prof_record) { 94 Writer.addRecord({"foo", 0x1234, {1, 2}}, Err); 95 Writer.addRecord({"foo", 0x1235, {3, 4}}, Err); 96 auto Profile = Writer.writeBuffer(); 97 readProfile(std::move(Profile)); 98 99 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("foo", 0x1234); 100 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 101 ASSERT_EQ(2U, R->Counts.size()); 102 ASSERT_EQ(1U, R->Counts[0]); 103 ASSERT_EQ(2U, R->Counts[1]); 104 105 R = Reader->getInstrProfRecord("foo", 0x1235); 106 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 107 ASSERT_EQ(2U, R->Counts.size()); 108 ASSERT_EQ(3U, R->Counts[0]); 109 ASSERT_EQ(4U, R->Counts[1]); 110 111 R = Reader->getInstrProfRecord("foo", 0x5678); 112 ASSERT_TRUE(ErrorEquals(instrprof_error::hash_mismatch, R.takeError())); 113 114 R = Reader->getInstrProfRecord("bar", 0x1234); 115 ASSERT_TRUE(ErrorEquals(instrprof_error::unknown_function, R.takeError())); 116 } 117 118 TEST_P(MaybeSparseInstrProfTest, get_function_counts) { 119 Writer.addRecord({"foo", 0x1234, {1, 2}}, Err); 120 Writer.addRecord({"foo", 0x1235, {3, 4}}, Err); 121 auto Profile = Writer.writeBuffer(); 122 readProfile(std::move(Profile)); 123 124 std::vector<uint64_t> Counts; 125 EXPECT_THAT_ERROR(Reader->getFunctionCounts("foo", 0x1234, Counts), 126 Succeeded()); 127 ASSERT_EQ(2U, Counts.size()); 128 ASSERT_EQ(1U, Counts[0]); 129 ASSERT_EQ(2U, Counts[1]); 130 131 EXPECT_THAT_ERROR(Reader->getFunctionCounts("foo", 0x1235, Counts), 132 Succeeded()); 133 ASSERT_EQ(2U, Counts.size()); 134 ASSERT_EQ(3U, Counts[0]); 135 ASSERT_EQ(4U, Counts[1]); 136 137 Error E1 = Reader->getFunctionCounts("foo", 0x5678, Counts); 138 ASSERT_TRUE(ErrorEquals(instrprof_error::hash_mismatch, std::move(E1))); 139 140 Error E2 = Reader->getFunctionCounts("bar", 0x1234, Counts); 141 ASSERT_TRUE(ErrorEquals(instrprof_error::unknown_function, std::move(E2))); 142 } 143 144 // Profile data is copied from general.proftext 145 TEST_F(InstrProfTest, get_profile_summary) { 146 Writer.addRecord({"func1", 0x1234, {97531}}, Err); 147 Writer.addRecord({"func2", 0x1234, {0, 0}}, Err); 148 Writer.addRecord( 149 {"func3", 150 0x1234, 151 {2305843009213693952, 1152921504606846976, 576460752303423488, 152 288230376151711744, 144115188075855872, 72057594037927936}}, 153 Err); 154 Writer.addRecord({"func4", 0x1234, {0}}, Err); 155 auto Profile = Writer.writeBuffer(); 156 readProfile(std::move(Profile)); 157 158 auto VerifySummary = [](ProfileSummary &IPS) mutable { 159 ASSERT_EQ(ProfileSummary::PSK_Instr, IPS.getKind()); 160 ASSERT_EQ(2305843009213693952U, IPS.getMaxFunctionCount()); 161 ASSERT_EQ(2305843009213693952U, IPS.getMaxCount()); 162 ASSERT_EQ(10U, IPS.getNumCounts()); 163 ASSERT_EQ(4539628424389557499U, IPS.getTotalCount()); 164 const std::vector<ProfileSummaryEntry> &Details = IPS.getDetailedSummary(); 165 uint32_t Cutoff = 800000; 166 auto Predicate = [&Cutoff](const ProfileSummaryEntry &PE) { 167 return PE.Cutoff == Cutoff; 168 }; 169 auto EightyPerc = find_if(Details, Predicate); 170 Cutoff = 900000; 171 auto NinetyPerc = find_if(Details, Predicate); 172 Cutoff = 950000; 173 auto NinetyFivePerc = find_if(Details, Predicate); 174 Cutoff = 990000; 175 auto NinetyNinePerc = find_if(Details, Predicate); 176 ASSERT_EQ(576460752303423488U, EightyPerc->MinCount); 177 ASSERT_EQ(288230376151711744U, NinetyPerc->MinCount); 178 ASSERT_EQ(288230376151711744U, NinetyFivePerc->MinCount); 179 ASSERT_EQ(72057594037927936U, NinetyNinePerc->MinCount); 180 }; 181 ProfileSummary &PS = Reader->getSummary(/* IsCS */ false); 182 VerifySummary(PS); 183 184 // Test that conversion of summary to and from Metadata works. 185 LLVMContext Context; 186 Metadata *MD = PS.getMD(Context); 187 ASSERT_TRUE(MD); 188 ProfileSummary *PSFromMD = ProfileSummary::getFromMD(MD); 189 ASSERT_TRUE(PSFromMD); 190 VerifySummary(*PSFromMD); 191 delete PSFromMD; 192 193 // Test that summary can be attached to and read back from module. 194 Module M("my_module", Context); 195 M.setProfileSummary(MD, ProfileSummary::PSK_Instr); 196 MD = M.getProfileSummary(/* IsCS */ false); 197 ASSERT_TRUE(MD); 198 PSFromMD = ProfileSummary::getFromMD(MD); 199 ASSERT_TRUE(PSFromMD); 200 VerifySummary(*PSFromMD); 201 delete PSFromMD; 202 } 203 204 TEST_F(InstrProfTest, test_writer_merge) { 205 Writer.addRecord({"func1", 0x1234, {42}}, Err); 206 207 InstrProfWriter Writer2; 208 Writer2.addRecord({"func2", 0x1234, {0, 0}}, Err); 209 210 Writer.mergeRecordsFromWriter(std::move(Writer2), Err); 211 212 auto Profile = Writer.writeBuffer(); 213 readProfile(std::move(Profile)); 214 215 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("func1", 0x1234); 216 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 217 ASSERT_EQ(1U, R->Counts.size()); 218 ASSERT_EQ(42U, R->Counts[0]); 219 220 R = Reader->getInstrProfRecord("func2", 0x1234); 221 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 222 ASSERT_EQ(2U, R->Counts.size()); 223 ASSERT_EQ(0U, R->Counts[0]); 224 ASSERT_EQ(0U, R->Counts[1]); 225 } 226 227 using ::llvm::memprof::IndexedMemProfRecord; 228 using ::llvm::memprof::MemInfoBlock; 229 using FrameIdMapTy = 230 llvm::DenseMap<::llvm::memprof::FrameId, ::llvm::memprof::Frame>; 231 232 static FrameIdMapTy getFrameMapping() { 233 FrameIdMapTy Mapping; 234 Mapping.insert({0, {0x123, 1, 2, false}}); 235 Mapping.insert({1, {0x345, 3, 4, true}}); 236 Mapping.insert({2, {0x125, 5, 6, false}}); 237 Mapping.insert({3, {0x567, 7, 8, true}}); 238 Mapping.insert({4, {0x124, 5, 6, false}}); 239 Mapping.insert({5, {0x789, 8, 9, true}}); 240 return Mapping; 241 } 242 243 IndexedMemProfRecord makeRecord( 244 std::initializer_list<std::initializer_list<::llvm::memprof::FrameId>> 245 AllocFrames, 246 std::initializer_list<std::initializer_list<::llvm::memprof::FrameId>> 247 CallSiteFrames, 248 const MemInfoBlock &Block = MemInfoBlock()) { 249 llvm::memprof::IndexedMemProfRecord MR; 250 for (const auto &Frames : AllocFrames) 251 MR.AllocSites.emplace_back(Frames, Block); 252 for (const auto &Frames : CallSiteFrames) 253 MR.CallSites.push_back(Frames); 254 return MR; 255 } 256 257 MATCHER_P(EqualsRecord, Want, "") { 258 const memprof::MemProfRecord &Got = arg; 259 260 auto PrintAndFail = [&]() { 261 std::string Buffer; 262 llvm::raw_string_ostream OS(Buffer); 263 OS << "Want:\n"; 264 Want.print(OS); 265 OS << "Got:\n"; 266 Got.print(OS); 267 OS.flush(); 268 *result_listener << "MemProf Record differs!\n" << Buffer; 269 return false; 270 }; 271 272 if (Want.AllocSites.size() != Got.AllocSites.size()) 273 return PrintAndFail(); 274 if (Want.CallSites.size() != Got.CallSites.size()) 275 return PrintAndFail(); 276 277 for (size_t I = 0; I < Got.AllocSites.size(); I++) { 278 if (Want.AllocSites[I].Info != Got.AllocSites[I].Info) 279 return PrintAndFail(); 280 if (Want.AllocSites[I].CallStack != Got.AllocSites[I].CallStack) 281 return PrintAndFail(); 282 } 283 284 for (size_t I = 0; I < Got.CallSites.size(); I++) { 285 if (Want.CallSites[I] != Got.CallSites[I]) 286 return PrintAndFail(); 287 } 288 return true; 289 } 290 291 TEST_F(InstrProfTest, test_memprof) { 292 ASSERT_THAT_ERROR(Writer.mergeProfileKind(InstrProfKind::MemProf), 293 Succeeded()); 294 295 const IndexedMemProfRecord IndexedMR = makeRecord( 296 /*AllocFrames=*/ 297 { 298 {0, 1}, 299 {2, 3}, 300 }, 301 /*CallSiteFrames=*/{ 302 {4, 5}, 303 }); 304 const FrameIdMapTy IdToFrameMap = getFrameMapping(); 305 for (const auto &I : IdToFrameMap) { 306 Writer.addMemProfFrame(I.first, I.getSecond(), Err); 307 } 308 Writer.addMemProfRecord(/*Id=*/0x9999, IndexedMR); 309 310 auto Profile = Writer.writeBuffer(); 311 readProfile(std::move(Profile)); 312 313 auto RecordOr = Reader->getMemProfRecord(0x9999); 314 ASSERT_THAT_ERROR(RecordOr.takeError(), Succeeded()); 315 const memprof::MemProfRecord &Record = RecordOr.get(); 316 317 memprof::FrameId LastUnmappedFrameId = 0; 318 bool HasFrameMappingError = false; 319 auto IdToFrameCallback = [&](const memprof::FrameId Id) { 320 auto Iter = IdToFrameMap.find(Id); 321 if (Iter == IdToFrameMap.end()) { 322 LastUnmappedFrameId = Id; 323 HasFrameMappingError = true; 324 return memprof::Frame(0, 0, 0, false); 325 } 326 return Iter->second; 327 }; 328 329 const memprof::MemProfRecord WantRecord(IndexedMR, IdToFrameCallback); 330 ASSERT_FALSE(HasFrameMappingError) 331 << "could not map frame id: " << LastUnmappedFrameId; 332 EXPECT_THAT(WantRecord, EqualsRecord(Record)); 333 } 334 335 TEST_F(InstrProfTest, test_memprof_getrecord_error) { 336 ASSERT_THAT_ERROR(Writer.mergeProfileKind(InstrProfKind::MemProf), 337 Succeeded()); 338 339 const IndexedMemProfRecord IndexedMR = makeRecord( 340 /*AllocFrames=*/ 341 { 342 {0, 1}, 343 {2, 3}, 344 }, 345 /*CallSiteFrames=*/{ 346 {4, 5}, 347 }); 348 // We skip adding the frame mappings here unlike the test_memprof unit test 349 // above to exercise the failure path when getMemProfRecord is invoked. 350 Writer.addMemProfRecord(/*Id=*/0x9999, IndexedMR); 351 352 auto Profile = Writer.writeBuffer(); 353 readProfile(std::move(Profile)); 354 355 // Missing frames give a hash_mismatch error. 356 auto RecordOr = Reader->getMemProfRecord(0x9999); 357 ASSERT_TRUE( 358 ErrorEquals(instrprof_error::hash_mismatch, RecordOr.takeError())); 359 360 // Missing functions give a unknown_function error. 361 RecordOr = Reader->getMemProfRecord(0x1111); 362 ASSERT_TRUE( 363 ErrorEquals(instrprof_error::unknown_function, RecordOr.takeError())); 364 } 365 366 TEST_F(InstrProfTest, test_memprof_merge) { 367 Writer.addRecord({"func1", 0x1234, {42}}, Err); 368 369 InstrProfWriter Writer2; 370 ASSERT_THAT_ERROR(Writer2.mergeProfileKind(InstrProfKind::MemProf), 371 Succeeded()); 372 373 const IndexedMemProfRecord IndexedMR = makeRecord( 374 /*AllocFrames=*/ 375 { 376 {0, 1}, 377 {2, 3}, 378 }, 379 /*CallSiteFrames=*/{ 380 {4, 5}, 381 }); 382 383 const FrameIdMapTy IdToFrameMap = getFrameMapping(); 384 for (const auto &I : IdToFrameMap) { 385 Writer.addMemProfFrame(I.first, I.getSecond(), Err); 386 } 387 Writer2.addMemProfRecord(/*Id=*/0x9999, IndexedMR); 388 389 ASSERT_THAT_ERROR(Writer.mergeProfileKind(Writer2.getProfileKind()), 390 Succeeded()); 391 Writer.mergeRecordsFromWriter(std::move(Writer2), Err); 392 393 auto Profile = Writer.writeBuffer(); 394 readProfile(std::move(Profile)); 395 396 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("func1", 0x1234); 397 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 398 ASSERT_EQ(1U, R->Counts.size()); 399 ASSERT_EQ(42U, R->Counts[0]); 400 401 auto RecordOr = Reader->getMemProfRecord(0x9999); 402 ASSERT_THAT_ERROR(RecordOr.takeError(), Succeeded()); 403 const memprof::MemProfRecord &Record = RecordOr.get(); 404 405 memprof::FrameId LastUnmappedFrameId = 0; 406 bool HasFrameMappingError = false; 407 408 auto IdToFrameCallback = [&](const memprof::FrameId Id) { 409 auto Iter = IdToFrameMap.find(Id); 410 if (Iter == IdToFrameMap.end()) { 411 LastUnmappedFrameId = Id; 412 HasFrameMappingError = true; 413 return memprof::Frame(0, 0, 0, false); 414 } 415 return Iter->second; 416 }; 417 418 const memprof::MemProfRecord WantRecord(IndexedMR, IdToFrameCallback); 419 ASSERT_FALSE(HasFrameMappingError) 420 << "could not map frame id: " << LastUnmappedFrameId; 421 EXPECT_THAT(WantRecord, EqualsRecord(Record)); 422 } 423 424 static const char callee1[] = "callee1"; 425 static const char callee2[] = "callee2"; 426 static const char callee3[] = "callee3"; 427 static const char callee4[] = "callee4"; 428 static const char callee5[] = "callee5"; 429 static const char callee6[] = "callee6"; 430 431 TEST_P(MaybeSparseInstrProfTest, get_icall_data_read_write) { 432 NamedInstrProfRecord Record1("caller", 0x1234, {1, 2}); 433 434 // 4 value sites. 435 Record1.reserveSites(IPVK_IndirectCallTarget, 4); 436 InstrProfValueData VD0[] = { 437 {(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}, {(uint64_t)callee3, 3}}; 438 Record1.addValueData(IPVK_IndirectCallTarget, 0, VD0, 3, nullptr); 439 // No value profile data at the second site. 440 Record1.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 441 InstrProfValueData VD2[] = {{(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}}; 442 Record1.addValueData(IPVK_IndirectCallTarget, 2, VD2, 2, nullptr); 443 InstrProfValueData VD3[] = {{(uint64_t)callee1, 1}}; 444 Record1.addValueData(IPVK_IndirectCallTarget, 3, VD3, 1, nullptr); 445 446 Writer.addRecord(std::move(Record1), Err); 447 Writer.addRecord({"callee1", 0x1235, {3, 4}}, Err); 448 Writer.addRecord({"callee2", 0x1235, {3, 4}}, Err); 449 Writer.addRecord({"callee3", 0x1235, {3, 4}}, Err); 450 auto Profile = Writer.writeBuffer(); 451 readProfile(std::move(Profile)); 452 453 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 454 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 455 ASSERT_EQ(4U, R->getNumValueSites(IPVK_IndirectCallTarget)); 456 ASSERT_EQ(3U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 457 ASSERT_EQ(0U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 1)); 458 ASSERT_EQ(2U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 2)); 459 ASSERT_EQ(1U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 3)); 460 461 uint64_t TotalC; 462 std::unique_ptr<InstrProfValueData[]> VD = 463 R->getValueForSite(IPVK_IndirectCallTarget, 0, &TotalC); 464 465 ASSERT_EQ(3U, VD[0].Count); 466 ASSERT_EQ(2U, VD[1].Count); 467 ASSERT_EQ(1U, VD[2].Count); 468 ASSERT_EQ(6U, TotalC); 469 470 ASSERT_EQ(StringRef((const char *)VD[0].Value, 7), StringRef("callee3")); 471 ASSERT_EQ(StringRef((const char *)VD[1].Value, 7), StringRef("callee2")); 472 ASSERT_EQ(StringRef((const char *)VD[2].Value, 7), StringRef("callee1")); 473 } 474 475 TEST_P(MaybeSparseInstrProfTest, annotate_vp_data) { 476 NamedInstrProfRecord Record("caller", 0x1234, {1, 2}); 477 Record.reserveSites(IPVK_IndirectCallTarget, 1); 478 InstrProfValueData VD0[] = {{1000, 1}, {2000, 2}, {3000, 3}, {5000, 5}, 479 {4000, 4}, {6000, 6}}; 480 Record.addValueData(IPVK_IndirectCallTarget, 0, VD0, 6, nullptr); 481 Writer.addRecord(std::move(Record), Err); 482 auto Profile = Writer.writeBuffer(); 483 readProfile(std::move(Profile)); 484 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 485 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 486 487 LLVMContext Ctx; 488 std::unique_ptr<Module> M(new Module("MyModule", Ctx)); 489 FunctionType *FTy = FunctionType::get(Type::getVoidTy(Ctx), 490 /*isVarArg=*/false); 491 Function *F = 492 Function::Create(FTy, Function::ExternalLinkage, "caller", M.get()); 493 BasicBlock *BB = BasicBlock::Create(Ctx, "", F); 494 495 IRBuilder<> Builder(BB); 496 BasicBlock *TBB = BasicBlock::Create(Ctx, "", F); 497 BasicBlock *FBB = BasicBlock::Create(Ctx, "", F); 498 499 // Use branch instruction to annotate with value profile data for simplicity 500 Instruction *Inst = Builder.CreateCondBr(Builder.getTrue(), TBB, FBB); 501 Instruction *Inst2 = Builder.CreateCondBr(Builder.getTrue(), TBB, FBB); 502 annotateValueSite(*M, *Inst, R.get(), IPVK_IndirectCallTarget, 0); 503 504 InstrProfValueData ValueData[5]; 505 uint32_t N; 506 uint64_t T; 507 bool Res = getValueProfDataFromInst(*Inst, IPVK_IndirectCallTarget, 5, 508 ValueData, N, T); 509 ASSERT_TRUE(Res); 510 ASSERT_EQ(3U, N); 511 ASSERT_EQ(21U, T); 512 // The result should be sorted already: 513 ASSERT_EQ(6000U, ValueData[0].Value); 514 ASSERT_EQ(6U, ValueData[0].Count); 515 ASSERT_EQ(5000U, ValueData[1].Value); 516 ASSERT_EQ(5U, ValueData[1].Count); 517 ASSERT_EQ(4000U, ValueData[2].Value); 518 ASSERT_EQ(4U, ValueData[2].Count); 519 Res = getValueProfDataFromInst(*Inst, IPVK_IndirectCallTarget, 1, ValueData, 520 N, T); 521 ASSERT_TRUE(Res); 522 ASSERT_EQ(1U, N); 523 ASSERT_EQ(21U, T); 524 525 Res = getValueProfDataFromInst(*Inst2, IPVK_IndirectCallTarget, 5, ValueData, 526 N, T); 527 ASSERT_FALSE(Res); 528 529 // Remove the MD_prof metadata 530 Inst->setMetadata(LLVMContext::MD_prof, 0); 531 // Annotate 5 records this time. 532 annotateValueSite(*M, *Inst, R.get(), IPVK_IndirectCallTarget, 0, 5); 533 Res = getValueProfDataFromInst(*Inst, IPVK_IndirectCallTarget, 5, 534 ValueData, N, T); 535 ASSERT_TRUE(Res); 536 ASSERT_EQ(5U, N); 537 ASSERT_EQ(21U, T); 538 ASSERT_EQ(6000U, ValueData[0].Value); 539 ASSERT_EQ(6U, ValueData[0].Count); 540 ASSERT_EQ(5000U, ValueData[1].Value); 541 ASSERT_EQ(5U, ValueData[1].Count); 542 ASSERT_EQ(4000U, ValueData[2].Value); 543 ASSERT_EQ(4U, ValueData[2].Count); 544 ASSERT_EQ(3000U, ValueData[3].Value); 545 ASSERT_EQ(3U, ValueData[3].Count); 546 ASSERT_EQ(2000U, ValueData[4].Value); 547 ASSERT_EQ(2U, ValueData[4].Count); 548 549 // Remove the MD_prof metadata 550 Inst->setMetadata(LLVMContext::MD_prof, 0); 551 // Annotate with 4 records. 552 InstrProfValueData VD0Sorted[] = {{1000, 6}, {2000, 5}, {3000, 4}, {4000, 3}, 553 {5000, 2}, {6000, 1}}; 554 annotateValueSite(*M, *Inst, makeArrayRef(VD0Sorted).slice(2), 10, 555 IPVK_IndirectCallTarget, 5); 556 Res = getValueProfDataFromInst(*Inst, IPVK_IndirectCallTarget, 5, 557 ValueData, N, T); 558 ASSERT_TRUE(Res); 559 ASSERT_EQ(4U, N); 560 ASSERT_EQ(10U, T); 561 ASSERT_EQ(3000U, ValueData[0].Value); 562 ASSERT_EQ(4U, ValueData[0].Count); 563 ASSERT_EQ(4000U, ValueData[1].Value); 564 ASSERT_EQ(3U, ValueData[1].Count); 565 ASSERT_EQ(5000U, ValueData[2].Value); 566 ASSERT_EQ(2U, ValueData[2].Count); 567 ASSERT_EQ(6000U, ValueData[3].Value); 568 ASSERT_EQ(1U, ValueData[3].Count); 569 } 570 571 TEST_P(MaybeSparseInstrProfTest, get_icall_data_read_write_with_weight) { 572 NamedInstrProfRecord Record1("caller", 0x1234, {1, 2}); 573 574 // 4 value sites. 575 Record1.reserveSites(IPVK_IndirectCallTarget, 4); 576 InstrProfValueData VD0[] = { 577 {(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}, {(uint64_t)callee3, 3}}; 578 Record1.addValueData(IPVK_IndirectCallTarget, 0, VD0, 3, nullptr); 579 // No value profile data at the second site. 580 Record1.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 581 InstrProfValueData VD2[] = {{(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}}; 582 Record1.addValueData(IPVK_IndirectCallTarget, 2, VD2, 2, nullptr); 583 InstrProfValueData VD3[] = {{(uint64_t)callee1, 1}}; 584 Record1.addValueData(IPVK_IndirectCallTarget, 3, VD3, 1, nullptr); 585 586 Writer.addRecord(std::move(Record1), 10, Err); 587 Writer.addRecord({"callee1", 0x1235, {3, 4}}, Err); 588 Writer.addRecord({"callee2", 0x1235, {3, 4}}, Err); 589 Writer.addRecord({"callee3", 0x1235, {3, 4}}, Err); 590 auto Profile = Writer.writeBuffer(); 591 readProfile(std::move(Profile)); 592 593 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 594 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 595 ASSERT_EQ(4U, R->getNumValueSites(IPVK_IndirectCallTarget)); 596 ASSERT_EQ(3U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 597 ASSERT_EQ(0U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 1)); 598 ASSERT_EQ(2U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 2)); 599 ASSERT_EQ(1U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 3)); 600 601 uint64_t TotalC; 602 std::unique_ptr<InstrProfValueData[]> VD = 603 R->getValueForSite(IPVK_IndirectCallTarget, 0, &TotalC); 604 ASSERT_EQ(30U, VD[0].Count); 605 ASSERT_EQ(20U, VD[1].Count); 606 ASSERT_EQ(10U, VD[2].Count); 607 ASSERT_EQ(60U, TotalC); 608 609 ASSERT_EQ(StringRef((const char *)VD[0].Value, 7), StringRef("callee3")); 610 ASSERT_EQ(StringRef((const char *)VD[1].Value, 7), StringRef("callee2")); 611 ASSERT_EQ(StringRef((const char *)VD[2].Value, 7), StringRef("callee1")); 612 } 613 614 TEST_P(MaybeSparseInstrProfTest, get_icall_data_read_write_big_endian) { 615 NamedInstrProfRecord Record1("caller", 0x1234, {1, 2}); 616 617 // 4 value sites. 618 Record1.reserveSites(IPVK_IndirectCallTarget, 4); 619 InstrProfValueData VD0[] = { 620 {(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}, {(uint64_t)callee3, 3}}; 621 Record1.addValueData(IPVK_IndirectCallTarget, 0, VD0, 3, nullptr); 622 // No value profile data at the second site. 623 Record1.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 624 InstrProfValueData VD2[] = {{(uint64_t)callee1, 1}, {(uint64_t)callee2, 2}}; 625 Record1.addValueData(IPVK_IndirectCallTarget, 2, VD2, 2, nullptr); 626 InstrProfValueData VD3[] = {{(uint64_t)callee1, 1}}; 627 Record1.addValueData(IPVK_IndirectCallTarget, 3, VD3, 1, nullptr); 628 629 Writer.addRecord(std::move(Record1), Err); 630 Writer.addRecord({"callee1", 0x1235, {3, 4}}, Err); 631 Writer.addRecord({"callee2", 0x1235, {3, 4}}, Err); 632 Writer.addRecord({"callee3", 0x1235, {3, 4}}, Err); 633 634 // Set big endian output. 635 Writer.setValueProfDataEndianness(support::big); 636 637 auto Profile = Writer.writeBuffer(); 638 readProfile(std::move(Profile)); 639 640 // Set big endian input. 641 Reader->setValueProfDataEndianness(support::big); 642 643 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 644 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 645 ASSERT_EQ(4U, R->getNumValueSites(IPVK_IndirectCallTarget)); 646 ASSERT_EQ(3U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 647 ASSERT_EQ(0U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 1)); 648 ASSERT_EQ(2U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 2)); 649 ASSERT_EQ(1U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 3)); 650 651 std::unique_ptr<InstrProfValueData[]> VD = 652 R->getValueForSite(IPVK_IndirectCallTarget, 0); 653 ASSERT_EQ(StringRef((const char *)VD[0].Value, 7), StringRef("callee3")); 654 ASSERT_EQ(StringRef((const char *)VD[1].Value, 7), StringRef("callee2")); 655 ASSERT_EQ(StringRef((const char *)VD[2].Value, 7), StringRef("callee1")); 656 657 // Restore little endian default: 658 Writer.setValueProfDataEndianness(support::little); 659 } 660 661 TEST_P(MaybeSparseInstrProfTest, get_icall_data_merge1) { 662 static const char caller[] = "caller"; 663 NamedInstrProfRecord Record11(caller, 0x1234, {1, 2}); 664 NamedInstrProfRecord Record12(caller, 0x1234, {1, 2}); 665 666 // 5 value sites. 667 Record11.reserveSites(IPVK_IndirectCallTarget, 5); 668 InstrProfValueData VD0[] = {{uint64_t(callee1), 1}, 669 {uint64_t(callee2), 2}, 670 {uint64_t(callee3), 3}, 671 {uint64_t(callee4), 4}}; 672 Record11.addValueData(IPVK_IndirectCallTarget, 0, VD0, 4, nullptr); 673 674 // No value profile data at the second site. 675 Record11.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 676 677 InstrProfValueData VD2[] = { 678 {uint64_t(callee1), 1}, {uint64_t(callee2), 2}, {uint64_t(callee3), 3}}; 679 Record11.addValueData(IPVK_IndirectCallTarget, 2, VD2, 3, nullptr); 680 681 InstrProfValueData VD3[] = {{uint64_t(callee1), 1}}; 682 Record11.addValueData(IPVK_IndirectCallTarget, 3, VD3, 1, nullptr); 683 684 InstrProfValueData VD4[] = {{uint64_t(callee1), 1}, 685 {uint64_t(callee2), 2}, 686 {uint64_t(callee3), 3}}; 687 Record11.addValueData(IPVK_IndirectCallTarget, 4, VD4, 3, nullptr); 688 689 // A different record for the same caller. 690 Record12.reserveSites(IPVK_IndirectCallTarget, 5); 691 InstrProfValueData VD02[] = {{uint64_t(callee2), 5}, {uint64_t(callee3), 3}}; 692 Record12.addValueData(IPVK_IndirectCallTarget, 0, VD02, 2, nullptr); 693 694 // No value profile data at the second site. 695 Record12.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 696 697 InstrProfValueData VD22[] = { 698 {uint64_t(callee2), 1}, {uint64_t(callee3), 3}, {uint64_t(callee4), 4}}; 699 Record12.addValueData(IPVK_IndirectCallTarget, 2, VD22, 3, nullptr); 700 701 Record12.addValueData(IPVK_IndirectCallTarget, 3, nullptr, 0, nullptr); 702 703 InstrProfValueData VD42[] = {{uint64_t(callee1), 1}, 704 {uint64_t(callee2), 2}, 705 {uint64_t(callee3), 3}}; 706 Record12.addValueData(IPVK_IndirectCallTarget, 4, VD42, 3, nullptr); 707 708 Writer.addRecord(std::move(Record11), Err); 709 // Merge profile data. 710 Writer.addRecord(std::move(Record12), Err); 711 712 Writer.addRecord({callee1, 0x1235, {3, 4}}, Err); 713 Writer.addRecord({callee2, 0x1235, {3, 4}}, Err); 714 Writer.addRecord({callee3, 0x1235, {3, 4}}, Err); 715 Writer.addRecord({callee3, 0x1235, {3, 4}}, Err); 716 Writer.addRecord({callee4, 0x1235, {3, 5}}, Err); 717 auto Profile = Writer.writeBuffer(); 718 readProfile(std::move(Profile)); 719 720 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 721 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 722 ASSERT_EQ(5U, R->getNumValueSites(IPVK_IndirectCallTarget)); 723 ASSERT_EQ(4U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 724 ASSERT_EQ(0U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 1)); 725 ASSERT_EQ(4U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 2)); 726 ASSERT_EQ(1U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 3)); 727 ASSERT_EQ(3U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 4)); 728 729 std::unique_ptr<InstrProfValueData[]> VD = 730 R->getValueForSite(IPVK_IndirectCallTarget, 0); 731 ASSERT_EQ(StringRef((const char *)VD[0].Value, 7), StringRef("callee2")); 732 ASSERT_EQ(7U, VD[0].Count); 733 ASSERT_EQ(StringRef((const char *)VD[1].Value, 7), StringRef("callee3")); 734 ASSERT_EQ(6U, VD[1].Count); 735 ASSERT_EQ(StringRef((const char *)VD[2].Value, 7), StringRef("callee4")); 736 ASSERT_EQ(4U, VD[2].Count); 737 ASSERT_EQ(StringRef((const char *)VD[3].Value, 7), StringRef("callee1")); 738 ASSERT_EQ(1U, VD[3].Count); 739 740 std::unique_ptr<InstrProfValueData[]> VD_2( 741 R->getValueForSite(IPVK_IndirectCallTarget, 2)); 742 ASSERT_EQ(StringRef((const char *)VD_2[0].Value, 7), StringRef("callee3")); 743 ASSERT_EQ(6U, VD_2[0].Count); 744 ASSERT_EQ(StringRef((const char *)VD_2[1].Value, 7), StringRef("callee4")); 745 ASSERT_EQ(4U, VD_2[1].Count); 746 ASSERT_EQ(StringRef((const char *)VD_2[2].Value, 7), StringRef("callee2")); 747 ASSERT_EQ(3U, VD_2[2].Count); 748 ASSERT_EQ(StringRef((const char *)VD_2[3].Value, 7), StringRef("callee1")); 749 ASSERT_EQ(1U, VD_2[3].Count); 750 751 std::unique_ptr<InstrProfValueData[]> VD_3( 752 R->getValueForSite(IPVK_IndirectCallTarget, 3)); 753 ASSERT_EQ(StringRef((const char *)VD_3[0].Value, 7), StringRef("callee1")); 754 ASSERT_EQ(1U, VD_3[0].Count); 755 756 std::unique_ptr<InstrProfValueData[]> VD_4( 757 R->getValueForSite(IPVK_IndirectCallTarget, 4)); 758 ASSERT_EQ(StringRef((const char *)VD_4[0].Value, 7), StringRef("callee3")); 759 ASSERT_EQ(6U, VD_4[0].Count); 760 ASSERT_EQ(StringRef((const char *)VD_4[1].Value, 7), StringRef("callee2")); 761 ASSERT_EQ(4U, VD_4[1].Count); 762 ASSERT_EQ(StringRef((const char *)VD_4[2].Value, 7), StringRef("callee1")); 763 ASSERT_EQ(2U, VD_4[2].Count); 764 } 765 766 TEST_P(MaybeSparseInstrProfTest, get_icall_data_merge1_saturation) { 767 static const char bar[] = "bar"; 768 769 const uint64_t Max = std::numeric_limits<uint64_t>::max(); 770 771 instrprof_error Result; 772 auto Err = [&](Error E) { Result = InstrProfError::take(std::move(E)); }; 773 Result = instrprof_error::success; 774 Writer.addRecord({"foo", 0x1234, {1}}, Err); 775 ASSERT_EQ(Result, instrprof_error::success); 776 777 // Verify counter overflow. 778 Result = instrprof_error::success; 779 Writer.addRecord({"foo", 0x1234, {Max}}, Err); 780 ASSERT_EQ(Result, instrprof_error::counter_overflow); 781 782 Result = instrprof_error::success; 783 Writer.addRecord({bar, 0x9012, {8}}, Err); 784 ASSERT_EQ(Result, instrprof_error::success); 785 786 NamedInstrProfRecord Record4("baz", 0x5678, {3, 4}); 787 Record4.reserveSites(IPVK_IndirectCallTarget, 1); 788 InstrProfValueData VD4[] = {{uint64_t(bar), 1}}; 789 Record4.addValueData(IPVK_IndirectCallTarget, 0, VD4, 1, nullptr); 790 Result = instrprof_error::success; 791 Writer.addRecord(std::move(Record4), Err); 792 ASSERT_EQ(Result, instrprof_error::success); 793 794 // Verify value data counter overflow. 795 NamedInstrProfRecord Record5("baz", 0x5678, {5, 6}); 796 Record5.reserveSites(IPVK_IndirectCallTarget, 1); 797 InstrProfValueData VD5[] = {{uint64_t(bar), Max}}; 798 Record5.addValueData(IPVK_IndirectCallTarget, 0, VD5, 1, nullptr); 799 Result = instrprof_error::success; 800 Writer.addRecord(std::move(Record5), Err); 801 ASSERT_EQ(Result, instrprof_error::counter_overflow); 802 803 auto Profile = Writer.writeBuffer(); 804 readProfile(std::move(Profile)); 805 806 // Verify saturation of counts. 807 Expected<InstrProfRecord> ReadRecord1 = 808 Reader->getInstrProfRecord("foo", 0x1234); 809 EXPECT_THAT_ERROR(ReadRecord1.takeError(), Succeeded()); 810 ASSERT_EQ(Max, ReadRecord1->Counts[0]); 811 812 Expected<InstrProfRecord> ReadRecord2 = 813 Reader->getInstrProfRecord("baz", 0x5678); 814 ASSERT_TRUE(bool(ReadRecord2)); 815 ASSERT_EQ(1U, ReadRecord2->getNumValueSites(IPVK_IndirectCallTarget)); 816 std::unique_ptr<InstrProfValueData[]> VD = 817 ReadRecord2->getValueForSite(IPVK_IndirectCallTarget, 0); 818 ASSERT_EQ(StringRef("bar"), StringRef((const char *)VD[0].Value, 3)); 819 ASSERT_EQ(Max, VD[0].Count); 820 } 821 822 // This test tests that when there are too many values 823 // for a given site, the merged results are properly 824 // truncated. 825 TEST_P(MaybeSparseInstrProfTest, get_icall_data_merge_site_trunc) { 826 static const char caller[] = "caller"; 827 828 NamedInstrProfRecord Record11(caller, 0x1234, {1, 2}); 829 NamedInstrProfRecord Record12(caller, 0x1234, {1, 2}); 830 831 // 2 value sites. 832 Record11.reserveSites(IPVK_IndirectCallTarget, 2); 833 InstrProfValueData VD0[255]; 834 for (int I = 0; I < 255; I++) { 835 VD0[I].Value = 2 * I; 836 VD0[I].Count = 2 * I + 1000; 837 } 838 839 Record11.addValueData(IPVK_IndirectCallTarget, 0, VD0, 255, nullptr); 840 Record11.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 841 842 Record12.reserveSites(IPVK_IndirectCallTarget, 2); 843 InstrProfValueData VD1[255]; 844 for (int I = 0; I < 255; I++) { 845 VD1[I].Value = 2 * I + 1; 846 VD1[I].Count = 2 * I + 1001; 847 } 848 849 Record12.addValueData(IPVK_IndirectCallTarget, 0, VD1, 255, nullptr); 850 Record12.addValueData(IPVK_IndirectCallTarget, 1, nullptr, 0, nullptr); 851 852 Writer.addRecord(std::move(Record11), Err); 853 // Merge profile data. 854 Writer.addRecord(std::move(Record12), Err); 855 856 auto Profile = Writer.writeBuffer(); 857 readProfile(std::move(Profile)); 858 859 Expected<InstrProfRecord> R = Reader->getInstrProfRecord("caller", 0x1234); 860 EXPECT_THAT_ERROR(R.takeError(), Succeeded()); 861 std::unique_ptr<InstrProfValueData[]> VD( 862 R->getValueForSite(IPVK_IndirectCallTarget, 0)); 863 ASSERT_EQ(2U, R->getNumValueSites(IPVK_IndirectCallTarget)); 864 ASSERT_EQ(255U, R->getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 865 for (unsigned I = 0; I < 255; I++) { 866 ASSERT_EQ(VD[I].Value, 509 - I); 867 ASSERT_EQ(VD[I].Count, 1509 - I); 868 } 869 } 870 871 static void addValueProfData(InstrProfRecord &Record) { 872 Record.reserveSites(IPVK_IndirectCallTarget, 5); 873 InstrProfValueData VD0[] = {{uint64_t(callee1), 400}, 874 {uint64_t(callee2), 1000}, 875 {uint64_t(callee3), 500}, 876 {uint64_t(callee4), 300}, 877 {uint64_t(callee5), 100}}; 878 Record.addValueData(IPVK_IndirectCallTarget, 0, VD0, 5, nullptr); 879 InstrProfValueData VD1[] = {{uint64_t(callee5), 800}, 880 {uint64_t(callee3), 1000}, 881 {uint64_t(callee2), 2500}, 882 {uint64_t(callee1), 1300}}; 883 Record.addValueData(IPVK_IndirectCallTarget, 1, VD1, 4, nullptr); 884 InstrProfValueData VD2[] = {{uint64_t(callee6), 800}, 885 {uint64_t(callee3), 1000}, 886 {uint64_t(callee4), 5500}}; 887 Record.addValueData(IPVK_IndirectCallTarget, 2, VD2, 3, nullptr); 888 InstrProfValueData VD3[] = {{uint64_t(callee2), 1800}, 889 {uint64_t(callee3), 2000}}; 890 Record.addValueData(IPVK_IndirectCallTarget, 3, VD3, 2, nullptr); 891 Record.addValueData(IPVK_IndirectCallTarget, 4, nullptr, 0, nullptr); 892 } 893 894 TEST_P(MaybeSparseInstrProfTest, value_prof_data_read_write) { 895 InstrProfRecord SrcRecord({1ULL << 31, 2}); 896 addValueProfData(SrcRecord); 897 std::unique_ptr<ValueProfData> VPData = 898 ValueProfData::serializeFrom(SrcRecord); 899 900 InstrProfRecord Record({1ULL << 31, 2}); 901 VPData->deserializeTo(Record, nullptr); 902 903 // Now read data from Record and sanity check the data 904 ASSERT_EQ(5U, Record.getNumValueSites(IPVK_IndirectCallTarget)); 905 ASSERT_EQ(5U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 906 ASSERT_EQ(4U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 1)); 907 ASSERT_EQ(3U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 2)); 908 ASSERT_EQ(2U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 3)); 909 ASSERT_EQ(0U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 4)); 910 911 auto Cmp = [](const InstrProfValueData &VD1, const InstrProfValueData &VD2) { 912 return VD1.Count > VD2.Count; 913 }; 914 std::unique_ptr<InstrProfValueData[]> VD_0( 915 Record.getValueForSite(IPVK_IndirectCallTarget, 0)); 916 llvm::sort(&VD_0[0], &VD_0[5], Cmp); 917 ASSERT_EQ(StringRef((const char *)VD_0[0].Value, 7), StringRef("callee2")); 918 ASSERT_EQ(1000U, VD_0[0].Count); 919 ASSERT_EQ(StringRef((const char *)VD_0[1].Value, 7), StringRef("callee3")); 920 ASSERT_EQ(500U, VD_0[1].Count); 921 ASSERT_EQ(StringRef((const char *)VD_0[2].Value, 7), StringRef("callee1")); 922 ASSERT_EQ(400U, VD_0[2].Count); 923 ASSERT_EQ(StringRef((const char *)VD_0[3].Value, 7), StringRef("callee4")); 924 ASSERT_EQ(300U, VD_0[3].Count); 925 ASSERT_EQ(StringRef((const char *)VD_0[4].Value, 7), StringRef("callee5")); 926 ASSERT_EQ(100U, VD_0[4].Count); 927 928 std::unique_ptr<InstrProfValueData[]> VD_1( 929 Record.getValueForSite(IPVK_IndirectCallTarget, 1)); 930 llvm::sort(&VD_1[0], &VD_1[4], Cmp); 931 ASSERT_EQ(StringRef((const char *)VD_1[0].Value, 7), StringRef("callee2")); 932 ASSERT_EQ(2500U, VD_1[0].Count); 933 ASSERT_EQ(StringRef((const char *)VD_1[1].Value, 7), StringRef("callee1")); 934 ASSERT_EQ(1300U, VD_1[1].Count); 935 ASSERT_EQ(StringRef((const char *)VD_1[2].Value, 7), StringRef("callee3")); 936 ASSERT_EQ(1000U, VD_1[2].Count); 937 ASSERT_EQ(StringRef((const char *)VD_1[3].Value, 7), StringRef("callee5")); 938 ASSERT_EQ(800U, VD_1[3].Count); 939 940 std::unique_ptr<InstrProfValueData[]> VD_2( 941 Record.getValueForSite(IPVK_IndirectCallTarget, 2)); 942 llvm::sort(&VD_2[0], &VD_2[3], Cmp); 943 ASSERT_EQ(StringRef((const char *)VD_2[0].Value, 7), StringRef("callee4")); 944 ASSERT_EQ(5500U, VD_2[0].Count); 945 ASSERT_EQ(StringRef((const char *)VD_2[1].Value, 7), StringRef("callee3")); 946 ASSERT_EQ(1000U, VD_2[1].Count); 947 ASSERT_EQ(StringRef((const char *)VD_2[2].Value, 7), StringRef("callee6")); 948 ASSERT_EQ(800U, VD_2[2].Count); 949 950 std::unique_ptr<InstrProfValueData[]> VD_3( 951 Record.getValueForSite(IPVK_IndirectCallTarget, 3)); 952 llvm::sort(&VD_3[0], &VD_3[2], Cmp); 953 ASSERT_EQ(StringRef((const char *)VD_3[0].Value, 7), StringRef("callee3")); 954 ASSERT_EQ(2000U, VD_3[0].Count); 955 ASSERT_EQ(StringRef((const char *)VD_3[1].Value, 7), StringRef("callee2")); 956 ASSERT_EQ(1800U, VD_3[1].Count); 957 } 958 959 TEST_P(MaybeSparseInstrProfTest, value_prof_data_read_write_mapping) { 960 961 NamedInstrProfRecord SrcRecord("caller", 0x1234, {1ULL << 31, 2}); 962 addValueProfData(SrcRecord); 963 std::unique_ptr<ValueProfData> VPData = 964 ValueProfData::serializeFrom(SrcRecord); 965 966 NamedInstrProfRecord Record("caller", 0x1234, {1ULL << 31, 2}); 967 InstrProfSymtab Symtab; 968 Symtab.mapAddress(uint64_t(callee1), 0x1000ULL); 969 Symtab.mapAddress(uint64_t(callee2), 0x2000ULL); 970 Symtab.mapAddress(uint64_t(callee3), 0x3000ULL); 971 Symtab.mapAddress(uint64_t(callee4), 0x4000ULL); 972 // Missing mapping for callee5 973 974 VPData->deserializeTo(Record, &Symtab); 975 976 // Now read data from Record and sanity check the data 977 ASSERT_EQ(5U, Record.getNumValueSites(IPVK_IndirectCallTarget)); 978 ASSERT_EQ(5U, Record.getNumValueDataForSite(IPVK_IndirectCallTarget, 0)); 979 980 auto Cmp = [](const InstrProfValueData &VD1, const InstrProfValueData &VD2) { 981 return VD1.Count > VD2.Count; 982 }; 983 std::unique_ptr<InstrProfValueData[]> VD_0( 984 Record.getValueForSite(IPVK_IndirectCallTarget, 0)); 985 llvm::sort(&VD_0[0], &VD_0[5], Cmp); 986 ASSERT_EQ(VD_0[0].Value, 0x2000ULL); 987 ASSERT_EQ(1000U, VD_0[0].Count); 988 ASSERT_EQ(VD_0[1].Value, 0x3000ULL); 989 ASSERT_EQ(500U, VD_0[1].Count); 990 ASSERT_EQ(VD_0[2].Value, 0x1000ULL); 991 ASSERT_EQ(400U, VD_0[2].Count); 992 993 // callee5 does not have a mapped value -- default to 0. 994 ASSERT_EQ(VD_0[4].Value, 0ULL); 995 } 996 997 TEST_P(MaybeSparseInstrProfTest, get_max_function_count) { 998 Writer.addRecord({"foo", 0x1234, {1ULL << 31, 2}}, Err); 999 Writer.addRecord({"bar", 0, {1ULL << 63}}, Err); 1000 Writer.addRecord({"baz", 0x5678, {0, 0, 0, 0}}, Err); 1001 auto Profile = Writer.writeBuffer(); 1002 readProfile(std::move(Profile)); 1003 1004 ASSERT_EQ(1ULL << 63, Reader->getMaximumFunctionCount(/* IsCS */ false)); 1005 } 1006 1007 TEST_P(MaybeSparseInstrProfTest, get_weighted_function_counts) { 1008 Writer.addRecord({"foo", 0x1234, {1, 2}}, 3, Err); 1009 Writer.addRecord({"foo", 0x1235, {3, 4}}, 5, Err); 1010 auto Profile = Writer.writeBuffer(); 1011 readProfile(std::move(Profile)); 1012 1013 std::vector<uint64_t> Counts; 1014 EXPECT_THAT_ERROR(Reader->getFunctionCounts("foo", 0x1234, Counts), 1015 Succeeded()); 1016 ASSERT_EQ(2U, Counts.size()); 1017 ASSERT_EQ(3U, Counts[0]); 1018 ASSERT_EQ(6U, Counts[1]); 1019 1020 EXPECT_THAT_ERROR(Reader->getFunctionCounts("foo", 0x1235, Counts), 1021 Succeeded()); 1022 ASSERT_EQ(2U, Counts.size()); 1023 ASSERT_EQ(15U, Counts[0]); 1024 ASSERT_EQ(20U, Counts[1]); 1025 } 1026 1027 // Testing symtab creator interface used by indexed profile reader. 1028 TEST_P(MaybeSparseInstrProfTest, instr_prof_symtab_test) { 1029 std::vector<StringRef> FuncNames; 1030 FuncNames.push_back("func1"); 1031 FuncNames.push_back("func2"); 1032 FuncNames.push_back("func3"); 1033 FuncNames.push_back("bar1"); 1034 FuncNames.push_back("bar2"); 1035 FuncNames.push_back("bar3"); 1036 InstrProfSymtab Symtab; 1037 EXPECT_THAT_ERROR(Symtab.create(FuncNames), Succeeded()); 1038 StringRef R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func1")); 1039 ASSERT_EQ(StringRef("func1"), R); 1040 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func2")); 1041 ASSERT_EQ(StringRef("func2"), R); 1042 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func3")); 1043 ASSERT_EQ(StringRef("func3"), R); 1044 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar1")); 1045 ASSERT_EQ(StringRef("bar1"), R); 1046 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar2")); 1047 ASSERT_EQ(StringRef("bar2"), R); 1048 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar3")); 1049 ASSERT_EQ(StringRef("bar3"), R); 1050 1051 // negative tests 1052 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar4")); 1053 ASSERT_EQ(StringRef(), R); 1054 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("foo4")); 1055 ASSERT_EQ(StringRef(), R); 1056 1057 // Now incrementally update the symtab 1058 EXPECT_THAT_ERROR(Symtab.addFuncName("blah_1"), Succeeded()); 1059 EXPECT_THAT_ERROR(Symtab.addFuncName("blah_2"), Succeeded()); 1060 EXPECT_THAT_ERROR(Symtab.addFuncName("blah_3"), Succeeded()); 1061 1062 // Check again 1063 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("blah_1")); 1064 ASSERT_EQ(StringRef("blah_1"), R); 1065 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("blah_2")); 1066 ASSERT_EQ(StringRef("blah_2"), R); 1067 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("blah_3")); 1068 ASSERT_EQ(StringRef("blah_3"), R); 1069 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func1")); 1070 ASSERT_EQ(StringRef("func1"), R); 1071 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func2")); 1072 ASSERT_EQ(StringRef("func2"), R); 1073 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("func3")); 1074 ASSERT_EQ(StringRef("func3"), R); 1075 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar1")); 1076 ASSERT_EQ(StringRef("bar1"), R); 1077 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar2")); 1078 ASSERT_EQ(StringRef("bar2"), R); 1079 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash("bar3")); 1080 ASSERT_EQ(StringRef("bar3"), R); 1081 } 1082 1083 // Test that we get an error when creating a bogus symtab. 1084 TEST_P(MaybeSparseInstrProfTest, instr_prof_bogus_symtab_empty_func_name) { 1085 InstrProfSymtab Symtab; 1086 EXPECT_TRUE(ErrorEquals(instrprof_error::malformed, Symtab.addFuncName(""))); 1087 } 1088 1089 // Testing symtab creator interface used by value profile transformer. 1090 TEST_P(MaybeSparseInstrProfTest, instr_prof_symtab_module_test) { 1091 LLVMContext Ctx; 1092 std::unique_ptr<Module> M = std::make_unique<Module>("MyModule.cpp", Ctx); 1093 FunctionType *FTy = FunctionType::get(Type::getVoidTy(Ctx), 1094 /*isVarArg=*/false); 1095 Function::Create(FTy, Function::ExternalLinkage, "Gfoo", M.get()); 1096 Function::Create(FTy, Function::ExternalLinkage, "Gblah", M.get()); 1097 Function::Create(FTy, Function::ExternalLinkage, "Gbar", M.get()); 1098 Function::Create(FTy, Function::InternalLinkage, "Ifoo", M.get()); 1099 Function::Create(FTy, Function::InternalLinkage, "Iblah", M.get()); 1100 Function::Create(FTy, Function::InternalLinkage, "Ibar", M.get()); 1101 Function::Create(FTy, Function::PrivateLinkage, "Pfoo", M.get()); 1102 Function::Create(FTy, Function::PrivateLinkage, "Pblah", M.get()); 1103 Function::Create(FTy, Function::PrivateLinkage, "Pbar", M.get()); 1104 Function::Create(FTy, Function::WeakODRLinkage, "Wfoo", M.get()); 1105 Function::Create(FTy, Function::WeakODRLinkage, "Wblah", M.get()); 1106 Function::Create(FTy, Function::WeakODRLinkage, "Wbar", M.get()); 1107 1108 InstrProfSymtab ProfSymtab; 1109 EXPECT_THAT_ERROR(ProfSymtab.create(*M), Succeeded()); 1110 1111 StringRef Funcs[] = {"Gfoo", "Gblah", "Gbar", "Ifoo", "Iblah", "Ibar", 1112 "Pfoo", "Pblah", "Pbar", "Wfoo", "Wblah", "Wbar"}; 1113 1114 for (unsigned I = 0; I < sizeof(Funcs) / sizeof(*Funcs); I++) { 1115 Function *F = M->getFunction(Funcs[I]); 1116 ASSERT_TRUE(F != nullptr); 1117 std::string PGOName = getPGOFuncName(*F); 1118 uint64_t Key = IndexedInstrProf::ComputeHash(PGOName); 1119 ASSERT_EQ(StringRef(PGOName), 1120 ProfSymtab.getFuncName(Key)); 1121 ASSERT_EQ(StringRef(Funcs[I]), ProfSymtab.getOrigFuncName(Key)); 1122 } 1123 } 1124 1125 // Testing symtab serialization and creator/deserialization interface 1126 // used by coverage map reader, and raw profile reader. 1127 TEST_P(MaybeSparseInstrProfTest, instr_prof_symtab_compression_test) { 1128 std::vector<std::string> FuncNames1; 1129 std::vector<std::string> FuncNames2; 1130 for (int I = 0; I < 3; I++) { 1131 std::string str; 1132 raw_string_ostream OS(str); 1133 OS << "func_" << I; 1134 FuncNames1.push_back(OS.str()); 1135 str.clear(); 1136 OS << "f oooooooooooooo_" << I; 1137 FuncNames1.push_back(OS.str()); 1138 str.clear(); 1139 OS << "BAR_" << I; 1140 FuncNames2.push_back(OS.str()); 1141 str.clear(); 1142 OS << "BlahblahBlahblahBar_" << I; 1143 FuncNames2.push_back(OS.str()); 1144 } 1145 1146 for (bool DoCompression : {false, true}) { 1147 // Compressing: 1148 std::string FuncNameStrings1; 1149 EXPECT_THAT_ERROR(collectPGOFuncNameStrings( 1150 FuncNames1, (DoCompression && zlib::isAvailable()), 1151 FuncNameStrings1), 1152 Succeeded()); 1153 1154 // Compressing: 1155 std::string FuncNameStrings2; 1156 EXPECT_THAT_ERROR(collectPGOFuncNameStrings( 1157 FuncNames2, (DoCompression && zlib::isAvailable()), 1158 FuncNameStrings2), 1159 Succeeded()); 1160 1161 for (int Padding = 0; Padding < 2; Padding++) { 1162 // Join with paddings : 1163 std::string FuncNameStrings = FuncNameStrings1; 1164 for (int P = 0; P < Padding; P++) { 1165 FuncNameStrings.push_back('\0'); 1166 } 1167 FuncNameStrings += FuncNameStrings2; 1168 1169 // Now decompress: 1170 InstrProfSymtab Symtab; 1171 EXPECT_THAT_ERROR(Symtab.create(StringRef(FuncNameStrings)), Succeeded()); 1172 1173 // Now do the checks: 1174 // First sampling some data points: 1175 StringRef R = Symtab.getFuncName(IndexedInstrProf::ComputeHash(FuncNames1[0])); 1176 ASSERT_EQ(StringRef("func_0"), R); 1177 R = Symtab.getFuncName(IndexedInstrProf::ComputeHash(FuncNames1[1])); 1178 ASSERT_EQ(StringRef("f oooooooooooooo_0"), R); 1179 for (int I = 0; I < 3; I++) { 1180 std::string N[4]; 1181 N[0] = FuncNames1[2 * I]; 1182 N[1] = FuncNames1[2 * I + 1]; 1183 N[2] = FuncNames2[2 * I]; 1184 N[3] = FuncNames2[2 * I + 1]; 1185 for (int J = 0; J < 4; J++) { 1186 StringRef R = Symtab.getFuncName(IndexedInstrProf::ComputeHash(N[J])); 1187 ASSERT_EQ(StringRef(N[J]), R); 1188 } 1189 } 1190 } 1191 } 1192 } 1193 1194 TEST_P(MaybeSparseInstrProfTest, remapping_test) { 1195 Writer.addRecord({"_Z3fooi", 0x1234, {1, 2, 3, 4}}, Err); 1196 Writer.addRecord({"file:_Z3barf", 0x567, {5, 6, 7}}, Err); 1197 auto Profile = Writer.writeBuffer(); 1198 readProfile(std::move(Profile), llvm::MemoryBuffer::getMemBuffer(R"( 1199 type i l 1200 name 3bar 4quux 1201 )")); 1202 1203 std::vector<uint64_t> Counts; 1204 for (StringRef FooName : {"_Z3fooi", "_Z3fool"}) { 1205 EXPECT_THAT_ERROR(Reader->getFunctionCounts(FooName, 0x1234, Counts), 1206 Succeeded()); 1207 ASSERT_EQ(4u, Counts.size()); 1208 EXPECT_EQ(1u, Counts[0]); 1209 EXPECT_EQ(2u, Counts[1]); 1210 EXPECT_EQ(3u, Counts[2]); 1211 EXPECT_EQ(4u, Counts[3]); 1212 } 1213 1214 for (StringRef BarName : {"file:_Z3barf", "file:_Z4quuxf"}) { 1215 EXPECT_THAT_ERROR(Reader->getFunctionCounts(BarName, 0x567, Counts), 1216 Succeeded()); 1217 ASSERT_EQ(3u, Counts.size()); 1218 EXPECT_EQ(5u, Counts[0]); 1219 EXPECT_EQ(6u, Counts[1]); 1220 EXPECT_EQ(7u, Counts[2]); 1221 } 1222 1223 for (StringRef BadName : {"_Z3foof", "_Z4quuxi", "_Z3barl", "", "_ZZZ", 1224 "_Z3barf", "otherfile:_Z4quuxf"}) { 1225 EXPECT_THAT_ERROR(Reader->getFunctionCounts(BadName, 0x1234, Counts), 1226 Failed()); 1227 EXPECT_THAT_ERROR(Reader->getFunctionCounts(BadName, 0x567, Counts), 1228 Failed()); 1229 } 1230 } 1231 1232 TEST_F(SparseInstrProfTest, preserve_no_records) { 1233 Writer.addRecord({"foo", 0x1234, {0}}, Err); 1234 Writer.addRecord({"bar", 0x4321, {0, 0}}, Err); 1235 Writer.addRecord({"baz", 0x4321, {0, 0, 0}}, Err); 1236 1237 auto Profile = Writer.writeBuffer(); 1238 readProfile(std::move(Profile)); 1239 1240 auto I = Reader->begin(), E = Reader->end(); 1241 ASSERT_TRUE(I == E); 1242 } 1243 1244 INSTANTIATE_TEST_SUITE_P(MaybeSparse, MaybeSparseInstrProfTest, 1245 ::testing::Bool()); 1246 1247 #if defined(_LP64) && defined(EXPENSIVE_CHECKS) 1248 TEST(ProfileReaderTest, ReadsLargeFiles) { 1249 const size_t LargeSize = 1ULL << 32; // 4GB 1250 1251 auto RawProfile = WritableMemoryBuffer::getNewUninitMemBuffer(LargeSize); 1252 if (!RawProfile) 1253 return; 1254 auto RawProfileReaderOrErr = InstrProfReader::create(std::move(RawProfile)); 1255 ASSERT_TRUE(InstrProfError::take(RawProfileReaderOrErr.takeError()) == 1256 instrprof_error::unrecognized_format); 1257 1258 auto IndexedProfile = WritableMemoryBuffer::getNewUninitMemBuffer(LargeSize); 1259 if (!IndexedProfile) 1260 return; 1261 auto IndexedReaderOrErr = 1262 IndexedInstrProfReader::create(std::move(IndexedProfile), nullptr); 1263 ASSERT_TRUE(InstrProfError::take(IndexedReaderOrErr.takeError()) == 1264 instrprof_error::bad_magic); 1265 } 1266 #endif 1267 1268 } // end anonymous namespace 1269