64#include "llvm/Config/config.h"
119#include "llvm/Support/VCSRevision.h"
138#define DEBUG_TYPE "asm-printer"
156 "Function Entry Count"),
158 "Basic Block Frequency"),
162 "Enable extended information within the SHT_LLVM_BB_ADDR_MAP that is "
163 "extracted from PGO related analysis."));
166 "basic-block-address-map-skip-bb-entries",
167 cl::desc(
"Skip emitting basic block entries in the SHT_LLVM_BB_ADDR_MAP "
168 "section. It's used to save binary size when BB entries are "
169 "unnecessary for some PGOAnalysisMap features."),
173 "emit-jump-table-sizes-section",
174 cl::desc(
"Emit a section containing jump table addresses and sizes"),
184STATISTIC(EmittedInsts,
"Number of machine instrs printed");
186char AsmPrinter::ID = 0;
189class AddrLabelMapCallbackPtr final :
CallbackVH {
193 AddrLabelMapCallbackPtr() =
default;
196 void setPtr(BasicBlock *BB) {
200 void setMap(AddrLabelMap *map) { Map = map; }
202 void deleted()
override;
203 void allUsesReplacedWith(
Value *V2)
override;
209 struct AddrLabelSymEntry {
221 std::vector<AddrLabelMapCallbackPtr> BBCallbacks;
227 DeletedAddrLabelsNeedingEmission;
233 assert(DeletedAddrLabelsNeedingEmission.empty() &&
234 "Some labels for deleted blocks never got emitted");
240 std::vector<MCSymbol *> &Result);
248 "Shouldn't get label for block without address taken");
249 AddrLabelSymEntry &Entry = AddrLabelSymbols[BB];
252 if (!Entry.Symbols.empty()) {
254 return Entry.Symbols;
259 BBCallbacks.emplace_back(BB);
260 BBCallbacks.back().setMap(
this);
261 Entry.Index = BBCallbacks.size() - 1;
264 : Context.createTempSymbol();
265 Entry.Symbols.push_back(Sym);
266 return Entry.Symbols;
271 Function *
F, std::vector<MCSymbol *> &Result) {
273 DeletedAddrLabelsNeedingEmission.find(
F);
276 if (
I == DeletedAddrLabelsNeedingEmission.end())
281 DeletedAddrLabelsNeedingEmission.erase(
I);
289 if (!AddrLabelSymbols)
290 AddrLabelSymbols = std::make_unique<AddrLabelMap>(
OutContext);
291 return AddrLabelSymbols->getAddrLabelSymbolToEmit(
296 const Function *
F, std::vector<MCSymbol *> &Result) {
298 if (!AddrLabelSymbols)
300 return AddrLabelSymbols->takeDeletedSymbolsForFunction(
308 AddrLabelSymEntry Entry = std::move(AddrLabelSymbols[BB]);
309 AddrLabelSymbols.erase(BB);
310 assert(!Entry.Symbols.empty() &&
"Didn't have a symbol, why a callback?");
311 BBCallbacks[Entry.Index] =
nullptr;
313#if !LLVM_MEMORY_SANITIZER_BUILD
316 "Block/parent mismatch");
319 for (
MCSymbol *Sym : Entry.Symbols) {
327 DeletedAddrLabelsNeedingEmission[Entry.Fn].push_back(Sym);
333 AddrLabelSymEntry OldEntry = std::move(AddrLabelSymbols[Old]);
334 AddrLabelSymbols.erase(Old);
335 assert(!OldEntry.Symbols.empty() &&
"Didn't have a symbol, why a callback?");
337 AddrLabelSymEntry &NewEntry = AddrLabelSymbols[New];
340 if (NewEntry.Symbols.empty()) {
341 BBCallbacks[OldEntry.Index].setPtr(New);
342 NewEntry = std::move(OldEntry);
346 BBCallbacks[OldEntry.Index] =
nullptr;
352void AddrLabelMapCallbackPtr::deleted() {
356void AddrLabelMapCallbackPtr::allUsesReplacedWith(
Value *V2) {
366 Alignment =
DL.getPreferredAlign(GVar);
369 if (InAlign > Alignment)
375 GVAlign = GVar->getAlign();
377 GVAlign =
F->getAlign();
381 assert(GVAlign &&
"GVAlign must be set");
386 Alignment = *GVAlign;
396 DwarfUsesRelocationsAcrossSections =
397 MAI->doesDwarfUseRelocationsAcrossSections();
402 "Debug/EH info didn't get finalized");
406 return TM.isPositionIndependent();
411 return MF->getFunctionNumber();
415 return *
TM.getObjFileLowering();
419 assert(
MMI &&
"MMI could not be nullptr!");
420 return MMI->getModule()->getDataLayout();
426 return TM.getPointerSize(0);
430 assert(
MF &&
"getSubtargetInfo requires a valid MachineFunction!");
441 "Expected assembly output mode.");
447 (void)DD->emitInitialLocDirective(
MF, 0);
467 MMI = MMIWP ? &MMIWP->getMMI() :
nullptr;
468 HasSplitStack =
false;
469 HasNoSplitStack =
false;
470 DbgInfoAvailable = !M.debug_compile_units().empty();
472 AddrLabelSymbols =
nullptr;
479 .getModuleMetadata(M);
485 if (!
TM.getTargetTriple().isOSBinFormatXCOFF())
497 if (
Target.isOSBinFormatMachO() &&
Target.isOSDarwin()) {
498 Triple TVT(M.getDarwinTargetVariantTriple());
500 Target, M.getSDKVersion(),
501 M.getDarwinTargetVariantTriple().empty() ?
nullptr : &TVT,
502 M.getDarwinTargetVariantSDKVersion());
510 if (
MAI->hasSingleParameterDotFile()) {
513 const char VerStr[] =
517 PACKAGE_NAME
" version " PACKAGE_VERSION
519 " (" LLVM_REVISION
")"
523 OutStreamer->emitFileDirective(M.getSourceFileName(), VerStr,
"",
"");
532 if (
TM.getTargetTriple().isOSBinFormatXCOFF()) {
533 emitModuleCommandLines(M);
536 OutContext.getObjectFileInfo()->getTextSection());
542 OutStreamer->getContext().getObjectFileInfo()->getTextSection();
550 assert(
MI &&
"AsmPrinter didn't require GCModuleInfo?");
551 for (
const auto &
I : *
MI)
553 MP->beginAssembly(M, *
MI, *
this);
556 if (!M.getModuleInlineAsm().empty()) {
557 OutStreamer->AddComment(
"Start of file scope inline assembly");
560 M.getModuleInlineAsm() +
"\n", *
TM.getMCSubtargetInfo(),
561 TM.Options.MCOptions,
nullptr,
563 OutStreamer->AddComment(
"End of file scope inline assembly");
567 if (
MAI->doesSupportDebugInformation()) {
568 bool EmitCodeView = M.getCodeViewFlag();
571 if ((
TM.getTargetTriple().isOSWindows() &&
572 M.getNamedMetadata(
"llvm.dbg.cu")) ||
573 (
TM.getTargetTriple().isUEFI() && EmitCodeView))
574 Handlers.push_back(std::make_unique<CodeViewDebug>(
this));
575 if (!EmitCodeView || M.getDwarfVersion()) {
578 Handlers.push_back(std::unique_ptr<DwarfDebug>(DD));
584 PP = std::make_unique<PseudoProbeHandler>(
this);
586 switch (
MAI->getExceptionHandlingType()) {
593 for (
auto &
F : M.getFunctionList()) {
609 switch (
MAI->getExceptionHandlingType()) {
623 switch (
MAI->getWinEHEncodingType()) {
641 Handlers.push_back(std::unique_ptr<EHStreamer>(ES));
645 EHHandlers.push_back(std::make_unique<WinCFGuard>(
this));
648 Handler->beginModule(&M);
650 Handler->beginModule(&M);
670 if (
MAI->isMachO()) {
679 }
else if (
MAI->avoidWeakIfComdat() && GV->
hasComdat()) {
708 return TM.getSymbol(GV);
725 return TM.getSymbol(&GV);
732 "No emulated TLS variables in the common section");
771 "tagged symbols (-fsanitize=memtag-globals) are "
772 "only supported on AArch64 Android");
782 "' is already defined");
784 if (
MAI->hasDotTypeDotSizeDirective())
798 Handler->setSymbolSize(GVSym,
Size);
890 unsigned PtrSize =
DL.getPointerTypeSize(GV->
getType());
909 if (LocalAlias != EmittedInitSym)
914 if (
MAI->hasDotTypeDotSizeDirective())
930void AsmPrinter::emitFunctionHeaderComment() {}
935 for (
auto &
C : Prefix)
945 for (
auto &
C : Prefix) {
955void AsmPrinter::emitFunctionHeader() {
960 <<
"-- Begin function "
969 if (
MF->front().isBeginSection())
981 if (
MAI->hasFunctionAlignment())
984 if (
MAI->hasDotTypeDotSizeDirective())
987 if (
F.hasFnAttribute(Attribute::Cold))
991 if (
F.hasPrefixData())
992 emitFunctionPrefix({
F.getPrefixData()});
999 unsigned PatchableFunctionPrefix = 0;
1000 unsigned PatchableFunctionEntry = 0;
1001 (void)
F.getFnAttribute(
"patchable-function-prefix")
1003 .getAsInteger(10, PatchableFunctionPrefix);
1004 (void)
F.getFnAttribute(
"patchable-function-entry")
1006 .getAsInteger(10, PatchableFunctionEntry);
1007 if (PatchableFunctionPrefix) {
1012 }
else if (PatchableFunctionEntry) {
1019 if (
const MDNode *MD =
F.getMetadata(LLVMContext::MD_func_sanitize)) {
1020 assert(MD->getNumOperands() == 2);
1024 emitFunctionPrefix({PrologueSig, TypeHash});
1029 false,
F.getParent());
1030 emitFunctionHeaderComment();
1048 std::vector<MCSymbol*> DeadBlockSyms;
1050 for (MCSymbol *DeadBlockSym : DeadBlockSyms) {
1051 OutStreamer->AddComment(
"Address taken block that was later removed");
1056 if (
MAI->useAssignmentForEHBegin()) {
1068 Handler->beginFunction(
MF);
1069 Handler->beginBasicBlockSection(
MF->front());
1072 Handler->beginFunction(
MF);
1073 Handler->beginBasicBlockSection(
MF->front());
1077 if (
F.hasPrologueData())
1087 if (
TM.getTargetTriple().isOSBinFormatELF()) {
1107 std::optional<LocationSize>
Size;
1109 CommentOS <<
Size->getValue() <<
"-byte Reload\n";
1110 }
else if ((
Size =
MI.getFoldedRestoreSize(
TII))) {
1111 if (!
Size->hasValue())
1112 CommentOS <<
"Unknown-size Folded Reload\n";
1113 else if (
Size->getValue())
1114 CommentOS <<
Size->getValue() <<
"-byte Folded Reload\n";
1115 }
else if ((
Size =
MI.getSpillSize(
TII))) {
1116 CommentOS <<
Size->getValue() <<
"-byte Spill\n";
1117 }
else if ((
Size =
MI.getFoldedSpillSize(
TII))) {
1118 if (!
Size->hasValue())
1119 CommentOS <<
"Unknown-size Folded Spill\n";
1120 else if (
Size->getValue())
1121 CommentOS <<
Size->getValue() <<
"-byte Folded Spill\n";
1126 CommentOS <<
" Reload Reuse\n";
1136 CommentOS <<
" Latency: " <<
Latency <<
"\n";
1147 OS <<
"implicit-def: "
1148 <<
printReg(RegNo,
MF->getSubtarget().getRegisterInfo());
1159 assert(
Op.isReg() &&
"KILL instruction must have only register operands");
1160 OS <<
' ' << (
Op.isDef() ?
"def " :
"killed ")
1187 if (
MI->isNonListDebugValue() &&
MI->getNumOperands() != 4)
1192 OS <<
"DEBUG_VALUE: ";
1207 Expr = *NonVariadicExpr;
1214 for (
unsigned I = 0;
I <
Op.getNumArgs(); ++
I)
1215 OS <<
' ' <<
Op.getArg(
I);
1222 if (&
Op !=
MI->debug_operands().begin())
1224 switch (
Op.getType()) {
1227 Type *ImmTy =
Op.getFPImm()->getType();
1246 Op.getCImm()->getValue().print(OS,
false );
1250 OS <<
"!target-index(" <<
Op.getIndex() <<
"," <<
Op.getOffset() <<
")";
1256 std::optional<StackOffset>
Offset;
1270 if (
MI->isIndirectDebugValue())
1276 OS <<
'+' <<
Offset->getFixed() <<
']';
1293 if (
MI->getNumOperands() != 1)
1298 OS <<
"DEBUG_LABEL: ";
1302 V->getScope()->getNonLexicalBlockFileScope())) {
1317 if (
F.isDeclarationForLinker())
1321 F.needsUnwindTableEntry())
1324 if (
MAI->usesCFIWithoutEH() &&
F.hasUWTable())
1339 return MAI->usesWindowsCFI() &&
MF->getFunction().needsUnwindTableEntry();
1358 auto *
MBB =
MI.getParent();
1359 auto I = std::next(
MI.getIterator());
1360 while (
I !=
MBB->end() &&
I->isTransient())
1362 if (
I ==
MBB->instr_end() &&
1363 MBB->getReverseIterator() ==
MBB->getParent()->rbegin())
1366 const std::vector<MCCFIInstruction> &Instrs =
MF->getFrameInstructions();
1367 unsigned CFIIndex =
MI.getOperand(0).getCFIIndex();
1374 MCSymbol *FrameAllocSym =
MI.getOperand(0).getMCSymbol();
1375 int FrameOffset =
MI.getOperand(1).getImm();
1388 MBB.isReturnBlock(), !
MBB.empty() &&
TII->isTailCall(
MBB.back()),
1390 !
MBB.empty() &&
MBB.rbegin()->isIndirectBranch()}
1403 "-pgo-anaylsis-map can accept only all or none with no additional "
1409 bool FuncEntryCountEnabled =
1412 bool BBFreqEnabled =
1415 bool BrProbEnabled =
1421 "BB entries info is required for BBFreq and BrProb "
1424 return {FuncEntryCountEnabled,
1435 assert(BBAddrMapSection &&
".llvm_bb_addr_map section is not initialized.");
1449 if (Features.MultiBBRange) {
1450 OutStreamer->AddComment(
"number of basic block ranges");
1455 const MCSymbol *PrevMBBEndSymbol =
nullptr;
1456 if (!Features.MultiBBRange) {
1459 OutStreamer->AddComment(
"number of basic blocks");
1461 PrevMBBEndSymbol = FunctionSymbol;
1463 unsigned BBCount = 0;
1466 if (
MBB.isEndSection()) {
1468 MBBSectionNumBlocks[
MBB.getSectionID()] = BBCount;
1477 MBB.isEntryBlock() ? FunctionSymbol :
MBB.getSymbol();
1478 bool IsBeginSection =
1479 Features.MultiBBRange && (
MBB.isBeginSection() ||
MBB.isEntryBlock());
1480 if (IsBeginSection) {
1483 OutStreamer->AddComment(
"number of basic blocks");
1484 OutStreamer->emitULEB128IntValue(MBBSectionNumBlocks[
MBB.getSectionID()]);
1485 PrevMBBEndSymbol = MBBSymbol;
1488 if (!Features.OmitBBEntries) {
1499 const MCSymbol *CurrentLabel = MBBSymbol;
1503 OutStreamer->emitULEB128IntValue(CallsiteEndSymbols.size());
1504 for (
const MCSymbol *CallsiteEndSymbol : CallsiteEndSymbols) {
1507 CurrentLabel = CallsiteEndSymbol;
1516 PrevMBBEndSymbol =
MBB.getEndSymbol();
1519 if (Features.hasPGOAnalysis()) {
1520 assert(BBAddrMapVersion >= 2 &&
1521 "PGOAnalysisMap only supports version 2 or later");
1523 if (Features.FuncEntryCount) {
1525 auto MaybeEntryCount =
MF.getFunction().getEntryCount();
1527 MaybeEntryCount ? MaybeEntryCount->getCount() : 0);
1538 if (Features.BBFreq || Features.BrProb) {
1540 if (Features.BBFreq) {
1545 if (Features.BrProb) {
1546 unsigned SuccCount =
MBB.succ_size();
1547 OutStreamer->AddComment(
"basic block successor count");
1551 OutStreamer->emitULEB128IntValue(SuccMBB->getBBID()->BaseID);
1552 OutStreamer->AddComment(
"successor branch probability");
1583 if (
const MDNode *MD =
F.getMetadata(LLVMContext::MD_kcfi_type))
1590 auto GUID =
MI.getOperand(0).getImm();
1591 auto Index =
MI.getOperand(1).getImm();
1592 auto Type =
MI.getOperand(2).getImm();
1593 auto Attr =
MI.getOperand(3).getImm();
1595 PP->emitPseudoProbe(GUID, Index,
Type, Attr,
DebugLoc);
1600 if (!
MF.getTarget().Options.EmitStackSizeSection)
1605 if (!StackSizeSection)
1619 OutStreamer->emitSymbolValue(FunctionSymbol,
TM.getProgramPointerSize());
1626 const std::string &
OutputFilename =
MF.getTarget().Options.StackUsageOutput;
1636 if (StackUsageStream ==
nullptr) {
1641 errs() <<
"Could not open file: " << EC.message();
1647 *StackUsageStream << DSP->getFilename() <<
':' << DSP->getLine();
1649 *StackUsageStream <<
MF.getFunction().getParent()->getName();
1651 *StackUsageStream <<
':' <<
MF.getName() <<
'\t' << StackSize <<
'\t';
1653 *StackUsageStream <<
"dynamic\n";
1655 *StackUsageStream <<
"static\n";
1662 F.getMetadata(LLVMContext::MD_type, Types);
1663 for (
const auto &
Type : Types) {
1664 if (
Type->hasGeneralizedMDString()) {
1668 return ConstantInt::get(Int64Ty, TypeIdVal);
1676 FunctionInfo &FuncInfo) {
1677 if (!
MF.getTarget().Options.EmitCallGraphSection)
1683 assert(FuncCGSection &&
"null callgraph section");
1688 OutStreamer->emitInt64(CallGraphSectionFormatVersion::V_0);
1699 OutStreamer->emitSymbolValue(FunctionSymbol,
TM.getProgramPointerSize());
1704 bool IsIndirectTarget =
1705 !
F.hasLocalLinkage() ||
F.hasAddressTaken(
nullptr,
1713 if (!IsIndirectTarget) {
1715 static_cast<uint64_t>(FunctionInfo::FunctionKind::NOT_INDIRECT_TARGET));
1719 FunctionInfo::FunctionKind::INDIRECT_TARGET_KNOWN_TID));
1723 FunctionInfo::FunctionKind::INDIRECT_TARGET_UNKNOWN_TID));
1729 const auto &CallSiteLabels = FuncInfo.CallSiteLabels;
1731 for (
const auto &[TypeId, Label] : CallSiteLabels) {
1733 OutStreamer->emitSymbolValue(Label,
TM.getProgramPointerSize());
1735 FuncInfo.CallSiteLabels.clear();
1742 MCSymbol *S =
MF.getContext().createTempSymbol(
"pcsection");
1744 PCSectionsSymbols[&MD].emplace_back(S);
1749 if (PCSectionsSymbols.empty() && !
F.hasMetadata(LLVMContext::MD_pcsections))
1753 const unsigned RelativeRelocSize =
1763 assert(S &&
"PC section is not initialized");
1774 bool ConstULEB128 =
false;
1780 const StringRef SecWithOpt = S->getString();
1781 const size_t OptStart = SecWithOpt.
find(
'!');
1787 assert((O ==
'!' || O ==
'C') &&
"Invalid !pcsections options");
1790 const MCSymbol *Prev = Syms.front();
1792 if (Sym == Prev || !Deltas) {
1794 MCSymbol *
Base =
MF.getContext().createTempSymbol(
"pcsection_base");
1813 for (
const MDOperand &AuxMDO : AuxMDs->operands()) {
1820 CI && ConstULEB128 &&
Size > 1 &&
Size <= 8) {
1832 if (
const MDNode *MD =
F.getMetadata(LLVMContext::MD_pcsections))
1835 for (
const auto &MS : PCSectionsSymbols)
1836 EmitForMD(*MS.first, MS.second,
false);
1838 PCSectionsSymbols.clear();
1860 MI.getParent()->getParent()->getSubtarget().getInstrInfo();
1866 assert(!Name.empty() &&
"Missing mnemonic and name for opcode");
1871 FunctionInfo &FuncInfo,
1875 const auto &CallSiteInfo = CallSitesInfoMap.
find(&
MI);
1876 if (CallSiteInfo == CallSitesInfoMap.
end())
1879 for (
ConstantInt *CalleeTypeId : CallSiteInfo->second.CalleeTypeIds) {
1880 MCSymbol *S =
MF->getContext().createTempSymbol();
1883 FuncInfo.CallSiteLabels.emplace_back(CalleeTypeIdVal, S);
1890 emitFunctionHeader();
1898 MDT = MDTWrapper ? &MDTWrapper->getDomTree() :
nullptr;
1900 OwnedMDT = std::make_unique<MachineDominatorTree>();
1901 OwnedMDT->recalculate(*
MF);
1902 MDT = OwnedMDT.get();
1907 MLI = MLIWrapper ? &MLIWrapper->getLI() :
nullptr;
1909 OwnedMLI = std::make_unique<MachineLoopInfo>();
1910 OwnedMLI->analyze(*
MDT);
1911 MLI = OwnedMLI.get();
1916 bool HasAnyRealCode =
false;
1917 int NumInstsInFunction = 0;
1918 bool IsEHa =
MMI->getModule()->getModuleFlag(
"eh-asynch");
1924 STI =
TM.getMCSubtargetInfo();
1926 bool CanDoExtraAnalysis =
ORE->allowExtraAnalysis(
DEBUG_TYPE);
1933 FunctionInfo FuncInfo;
1934 const auto &CallSitesInfoMap =
MF->getCallSitesInfo();
1935 for (
auto &
MBB : *
MF) {
1939 for (
auto &
MI :
MBB) {
1941 if (!
MI.isPosition() && !
MI.isImplicitDef() && !
MI.isKill() &&
1942 !
MI.isDebugInstr()) {
1943 HasAnyRealCode =
true;
1950 if (
MDNode *MD =
MI.getPCSections())
1954 Handler->beginInstruction(&
MI);
1959 switch (
MI.getOpcode()) {
1960 case TargetOpcode::CFI_INSTRUCTION:
1963 case TargetOpcode::LOCAL_ESCAPE:
1966 case TargetOpcode::ANNOTATION_LABEL:
1967 case TargetOpcode::GC_LABEL:
1970 case TargetOpcode::EH_LABEL:
1981 auto MI2 = std::next(
MI.getIterator());
1982 if (IsEHa && MI2 !=
MBB.end() &&
1983 (MI2->mayLoadOrStore() || MI2->mayRaiseFPException()))
1987 case TargetOpcode::INLINEASM:
1988 case TargetOpcode::INLINEASM_BR:
1991 case TargetOpcode::DBG_VALUE:
1992 case TargetOpcode::DBG_VALUE_LIST:
1998 case TargetOpcode::DBG_INSTR_REF:
2003 case TargetOpcode::DBG_PHI:
2007 case TargetOpcode::DBG_LABEL:
2013 case TargetOpcode::IMPLICIT_DEF:
2016 case TargetOpcode::KILL:
2019 case TargetOpcode::FAKE_USE:
2023 case TargetOpcode::PSEUDO_PROBE:
2026 case TargetOpcode::ARITH_FENCE:
2030 case TargetOpcode::MEMBARRIER:
2033 case TargetOpcode::JUMP_TABLE_DEBUG_INFO:
2037 case TargetOpcode::INIT_UNDEF:
2046 if (
MI.isMetaInstruction())
2048 ++NumInstsInFunction;
2049 if (CanDoExtraAnalysis) {
2051 ++MnemonicCounts[Name];
2054 if (!
MI.isBundle()) {
2055 CountInstruction(
MI);
2059 for (
auto It = std::next(
MI.getIterator());
2060 It !=
MBB.end() && It->isInsideBundle(); ++It) {
2061 CountInstruction(*It);
2066 if (
MI.isCall() &&
MF->getTarget().Options.BBAddrMap)
2069 if (
TM.Options.EmitCallGraphSection &&
MI.isCall())
2077 Handler->endInstruction();
2083 if (
MF->getTarget().Options.BBAddrMap ||
2084 (
MAI->hasDotTypeDotSizeDirective() &&
MBB.isEndSection()))
2087 if (
MBB.isEndSection()) {
2090 if (!
MBB.sameSection(&
MF->front())) {
2091 if (
MAI->hasDotTypeDotSizeDirective()) {
2097 OutStreamer->emitELFSize(CurrentSectionBeginSym, SizeExp);
2100 "Overwrite section range");
2107 if (CanDoExtraAnalysis) {
2113 MBB.begin()->getDebugLoc(), &
MBB);
2118 for (
auto &KV : MnemonicCounts)
2121 sort(MnemonicVec, [](
const std::pair<StringRef, unsigned> &
A,
2122 const std::pair<StringRef, unsigned> &
B) {
2123 if (
A.second >
B.second)
2125 if (
A.second ==
B.second)
2129 R <<
"BasicBlock: " <<
ore::NV(
"BasicBlock",
MBB.getName()) <<
"\n";
2130 for (
auto &KV : MnemonicVec) {
2131 auto Name = (
Twine(
"INST_") +
getToken(KV.first.trim()).first).str();
2132 R << KV.first <<
": " <<
ore::NV(Name, KV.second) <<
"\n";
2138 EmittedInsts += NumInstsInFunction;
2140 MF->getFunction().getSubprogram(),
2142 R <<
ore::NV(
"NumInstructions", NumInstsInFunction)
2143 <<
" instructions in function";
2154 const Triple &TT =
TM.getTargetTriple();
2155 if (!HasAnyRealCode && (
MAI->hasSubsectionsViaSymbols() ||
2156 (TT.isOSWindows() && TT.isOSBinFormatCOFF()))) {
2157 MCInst Noop =
MF->getSubtarget().getInstrInfo()->getNop();
2162 OutStreamer->AddComment(
"avoids zero-length function");
2171 for (
const auto &BB :
F) {
2172 if (!BB.hasAddressTaken())
2177 OutStreamer->AddComment(
"Address of block that was removed by CodeGen");
2186 bool EmitFunctionSize =
MAI->hasDotTypeDotSizeDirective() && !TT.isWasm();
2199 if (EmitFunctionSize) {
2212 if (!
MF->back().isEndSection()) {
2214 Handler->endBasicBlockSection(
MF->back());
2216 Handler->endBasicBlockSection(
MF->back());
2219 Handler->markFunctionEnd();
2221 Handler->markFunctionEnd();
2230 Handler->endFunction(
MF);
2232 Handler->endFunction(
MF);
2236 if (HasAnyRealCode) {
2237 if (
MF->getTarget().Options.BBAddrMap)
2240 MF->getContext().reportWarning(
2241 SMLoc(),
"pgo-analysis-map is enabled for function " +
MF->getName() +
2242 " but it does not have labels");
2260 OutStreamer->getCommentOS() <<
"-- End function\n";
2267 bool &HasNonGlobalUsers) {
2269 HasNonGlobalUsers =
true;
2276 unsigned NumUses = 0;
2277 for (
const auto *
CU :
C->users())
2290 unsigned &NumGOTEquivUsers,
2291 bool &HasNonGlobalUsers) {
2302 for (
const auto *U : GV->
users())
2306 return NumGOTEquivUsers > 0;
2320 for (
const auto &
G : M.globals()) {
2321 unsigned NumGOTEquivUsers = 0;
2322 bool HasNonGlobalUsers =
false;
2327 if (HasNonGlobalUsers)
2328 NumGOTEquivUsers += 1;
2344 unsigned Cnt =
I.second.second;
2350 for (
const auto *GV : FailedCandidates)
2366 if (
TM.getTargetTriple().isOSBinFormatXCOFF()) {
2391 if (
TM.getTargetTriple().isOSBinFormatCOFF()) {
2412 if (LocalAlias != Name)
2431 "IFunc is not supported on AIX.");
2433 auto EmitLinkage = [&](
MCSymbol *Sym) {
2452 if (LocalAlias != Name)
2483 const DataLayout &
DL =
M.getDataLayout();
2491 const TargetSubtargetInfo *STI =
2516 OutContext.getObjectFileInfo()->getRemarksSection();
2517 if (!RemarksSection) {
2518 OutContext.reportWarning(
SMLoc(),
"Current object file format does not "
2519 "support remarks sections. Use the yaml "
2520 "remark format instead.");
2526 assert(!Filename.empty() &&
"The filename can't be empty.");
2532 std::unique_ptr<remarks::MetaSerializer> MetaSerializer =
2534 MetaSerializer->emit();
2542 const Constant *Initializer =
G.getInitializer();
2543 return G.getParent()->getDataLayout().getTypeAllocSize(
2555 if (
G.getName().starts_with(
"llvm.") ||
G.isThreadLocal() ||
G.isConstant())
2586 if (SizeInBytes != NewSize) {
2590 Constant *Initializer =
G->getInitializer();
2593 M, Initializer->
getType(),
G->isConstant(),
G->getLinkage(),
2594 Initializer,
"",
G,
G->getThreadLocalMode(),
G->getAddressSpace());
2595 NewGV->copyAttributesFrom(
G);
2596 NewGV->setComdat(
G->getComdat());
2597 NewGV->copyMetadata(
G, 0);
2600 G->replaceAllUsesWith(NewGV);
2601 G->eraseFromParent();
2605 if (
G->getAlign().valueOrOne() < 16)
2606 G->setAlignment(
Align(16));
2614 auto Meta =
G.getSanitizerMetadata();
2615 Meta.Memtag =
false;
2616 G.setSanitizerMetadata(Meta);
2625 std::vector<GlobalVariable *> GlobalsToTag;
2627 if (
G.isDeclaration() || !
G.isTagged())
2630 assert(
G.hasSanitizerMetadata());
2635 GlobalsToTag.push_back(&
G);
2647 for (
const auto &
G : M.globals())
2657 if (!
F.isDeclarationForLinker())
2663 if (!
TM.getTargetTriple().isOSBinFormatXCOFF()) {
2672 if (
F.isIntrinsic())
2684 if (
F.hasAddressTaken())
2696 if (
TM.getTargetTriple().isOSBinFormatELF()) {
2701 if (!Stubs.empty()) {
2706 for (
const auto &Stub : Stubs) {
2708 OutStreamer->emitSymbolValue(Stub.second.getPointer(),
2709 DL.getPointerSize());
2714 if (
TM.getTargetTriple().isOSBinFormatCOFF()) {
2720 if (!Stubs.empty()) {
2723 for (
const auto &Stub : Stubs) {
2734 OutStreamer->emitSymbolValue(Stub.second.getPointer(),
2735 DL.getPointerSize());
2743 TS->emitConstantPools();
2757 for (
const auto &Alias : M.aliases()) {
2758 if (Alias.hasAvailableExternallyLinkage())
2762 if (!AliasVisited.
insert(Cur).second)
2774 for (
const auto &IFunc : M.ifuncs())
2775 emitGlobalIFunc(M, IFunc);
2779 Handler->endModule();
2781 Handler->endModule();
2791 if (
MAI->getWeakRefDirective()) {
2798 for (
const auto &GO : M.global_objects()) {
2799 if (!GO.hasExternalWeakLinkage())
2804 auto SymbolName =
"swift_async_extendedFramePointerFlags";
2805 auto Global = M.getGlobalVariable(SymbolName);
2817 assert(
MI &&
"AsmPrinter didn't require GCModuleInfo?");
2820 MP->finishAssembly(M, *
MI, *
this);
2823 emitModuleIdents(M);
2827 if (!
TM.getTargetTriple().isOSBinFormatXCOFF())
2828 emitModuleCommandLines(M);
2832 if (
TM.getTargetTriple().isOSBinFormatELF() && HasSplitStack) {
2835 if (HasNoSplitStack)
2843 if (!InitTrampolineIntrinsic || InitTrampolineIntrinsic->
use_empty())
2847 if (
TM.Options.EmitAddrsig) {
2851 if (!GV.use_empty() && !GV.isThreadLocal() &&
2852 !GV.hasDLLImportStorageClass() &&
2853 !GV.getName().starts_with(
"llvm.") &&
2854 !GV.hasAtLeastLocalUnnamedAddr())
2860 if (
TM.getTargetTriple().isOSBinFormatELF()) {
2863 if (!GV.hasPartition() || GV.isDeclarationForLinker() ||
2874 MAI->getCodePointerSize());
2883 AddrLabelSymbols =
nullptr;
2894 auto Res = MBBSectionExceptionSyms.try_emplace(
MBB.getSectionID());
2897 return Res.first->second;
2902 MCSymbol *Sym = Ctx.createTempSymbol(
"BB" +
Twine(
MF->getFunctionNumber()) +
2903 "_" +
Twine(
MBB.getNumber()) +
"_CS");
2914 if (
MF.shouldSplitStack()) {
2915 HasSplitStack =
true;
2917 if (!
MF.getFrameInfo().needsSplitStackProlog())
2918 HasNoSplitStack =
true;
2920 HasNoSplitStack =
true;
2923 if (!
MAI->isAIX()) {
2926 assert(
TM.getTargetTriple().isOSAIX() &&
2927 "Only AIX uses the function descriptor hooks.");
2932 " initalized first.");
2941 CurrentSectionBeginSym =
nullptr;
2944 MBBSectionExceptionSyms.clear();
2945 bool NeedsLocalForSize =
MAI->needsLocalForSize();
2946 if (
F.hasFnAttribute(
"patchable-function-entry") ||
2947 F.hasFnAttribute(
"function-instrument") ||
2948 F.hasFnAttribute(
"xray-instruction-threshold") ||
2950 MF.getTarget().Options.EmitStackSizeSection ||
2951 MF.getTarget().Options.EmitCallGraphSection ||
2952 MF.getTarget().Options.BBAddrMap) {
2954 if (NeedsLocalForSize)
2975 if (
TM.Options.EnableStaticDataPartitioning &&
C &&
SDPI &&
PSI)
2976 return SDPI->getConstantSectionPrefix(
C,
PSI);
2987 const std::vector<MachineConstantPoolEntry> &CP = MCP->
getConstants();
2988 if (CP.empty())
return;
2993 for (
unsigned i = 0, e = CP.size(); i != e; ++i) {
3009 unsigned SecIdx = CPSections.
size();
3010 while (SecIdx != 0) {
3011 if (CPSections[--SecIdx].S == S) {
3017 SecIdx = CPSections.
size();
3018 CPSections.
push_back(SectionCPs(S, Alignment));
3021 if (Alignment > CPSections[SecIdx].Alignment)
3022 CPSections[SecIdx].Alignment = Alignment;
3029 for (
const SectionCPs &CPSection : CPSections) {
3030 for (
unsigned CPI : CPSection.CPEs) {
3035 if (CurSection != CPSection.S) {
3038 CurSection = CPSection.S;
3065 const std::vector<MachineJumpTableEntry> &JT = MJTI->
getJumpTables();
3066 if (JT.empty())
return;
3068 if (!
TM.Options.EnableStaticDataPartitioning) {
3077 for (
unsigned JTI = 0, JTSize = JT.size(); JTI < JTSize; ++JTI) {
3085 emitJumpTableImpl(*MJTI, HotJumpTableIndices);
3086 emitJumpTableImpl(*MJTI, ColdJumpTableIndices);
3092 JumpTableIndices.
empty())
3097 const std::vector<MachineJumpTableEntry> &JT = MJTI.
getJumpTables();
3100 const bool UseLabelDifference =
3105 const bool JTInDiffSection =
3107 if (JTInDiffSection) {
3117 const DataLayout &
DL =
MF->getDataLayout();
3122 if (!JTInDiffSection)
3125 for (
const unsigned JumpTableIndex : JumpTableIndices) {
3135 MAI->doesSetDirectiveSuppressReloc()) {
3136 SmallPtrSet<const MachineBasicBlock *, 16> EmittedSets;
3137 const TargetLowering *TLI =
MF->getSubtarget().getTargetLowering();
3138 const MCExpr *
Base =
3140 for (
const MachineBasicBlock *
MBB : JTBBs) {
3157 if (JTInDiffSection &&
DL.hasLinkerPrivateGlobalPrefix())
3168 for (
const MachineBasicBlock *
MBB : JTBBs)
3173 emitJumpTableSizesSection(MJTI,
MF->getFunction());
3175 if (!JTInDiffSection)
3186 StringRef GroupName =
F.hasComdat() ?
F.getComdat()->getName() :
"";
3187 MCSection *JumpTableSizesSection =
nullptr;
3188 StringRef sectionName =
".llvm_jump_table_sizes";
3190 bool isElf =
TM.getTargetTriple().isOSBinFormatELF();
3191 bool isCoff =
TM.getTargetTriple().isOSBinFormatCOFF();
3193 if (!isCoff && !isElf)
3197 auto *LinkedToSym =
static_cast<MCSymbolELF *
>(
CurrentFnSym);
3200 JumpTableSizesSection =
OutContext.getELFSection(
3203 }
else if (isCoff) {
3204 if (
F.hasComdat()) {
3205 JumpTableSizesSection =
OutContext.getCOFFSection(
3211 JumpTableSizesSection =
OutContext.getCOFFSection(
3218 OutStreamer->switchSection(JumpTableSizesSection);
3220 for (
unsigned JTI = 0,
E =
JT.size(); JTI !=
E; ++JTI) {
3221 const std::vector<MachineBasicBlock *> &JTBBs =
JT[JTI].MBBs;
3223 OutStreamer->emitIntValue(JTBBs.size(),
TM.getProgramPointerSize());
3231 unsigned UID)
const {
3232 assert(
MBB &&
MBB->getNumber() >= 0 &&
"Invalid basic block");
3241 Value =
MF->getSubtarget().getTargetLowering()->LowerCustomJumpTableEntry(
3260 MAI->doesSetDirectiveSuppressReloc()) {
3283 if (GV->
getName() ==
"llvm.used") {
3284 if (
MAI->hasNoDeadStrip())
3294 if (GV->
getName() ==
"llvm.arm64ec.symbolmap") {
3301 for (
auto &U : Arr->operands()) {
3307 if (Src->hasDLLImportStorageClass()) {
3311 OutContext.getOrCreateSymbol(
"__imp_" + Src->getName()));
3331 if (GV->
getName() ==
"llvm.global_ctors") {
3338 if (GV->
getName() ==
"llvm.global_dtors") {
3346 "unknown special variable with appending linkage: " +
3353void AsmPrinter::emitLLVMUsedList(
const ConstantArray *InitList) {
3355 for (
unsigned i = 0, e = InitList->
getNumOperands(); i != e; ++i) {
3374 if (CS->getOperand(1)->isNullValue())
3383 if (!CS->getOperand(2)->isNullValue()) {
3384 if (
TM.getTargetTriple().isOSAIX()) {
3385 CS->getContext().emitError(
3386 "associated data of XXStructor list is not yet supported on AIX");
3396 return L.Priority < R.Priority;
3406 if (Structors.
empty())
3411 if (!
TM.Options.UseInitArray)
3412 std::reverse(Structors.
begin(), Structors.
end());
3440void AsmPrinter::emitModuleIdents(
Module &M) {
3444 if (
const NamedMDNode *NMD = M.getNamedMetadata(
"llvm.ident")) {
3445 for (
const MDNode *
N : NMD->operands()) {
3446 assert(
N->getNumOperands() == 1 &&
3447 "llvm.ident metadata entry can have only one operand");
3454void AsmPrinter::emitModuleCommandLines(
Module &M) {
3459 const NamedMDNode *NMD =
M.getNamedMetadata(
"llvm.commandline");
3466 for (
const MDNode *
N : NMD->
operands()) {
3467 assert(
N->getNumOperands() == 1 &&
3468 "llvm.commandline metadata entry can have only one operand");
3499 unsigned PadTo)
const {
3515 unsigned Size)
const {
3530 bool IsSectionRelative)
const {
3531 if (
MAI->needsDwarfSectionOffsetDirective() && IsSectionRelative) {
3554 unsigned MaxBytesToEmit)
const {
3558 if (Alignment ==
Align(1))
3566 STI =
TM.getMCSubtargetInfo();
3567 OutStreamer->emitCodeAlignment(Alignment, STI, MaxBytesToEmit);
3569 OutStreamer->emitValueToAlignment(Alignment, 0, 1, MaxBytesToEmit);
3598 getSymbol(Equiv->getGlobalValue()),
nullptr, 0, std::nullopt,
TM);
3611 switch (CE->getOpcode()) {
3614 case Instruction::AddrSpaceCast: {
3616 unsigned DstAS = CE->getType()->getPointerAddressSpace();
3617 unsigned SrcAS =
Op->getType()->getPointerAddressSpace();
3618 if (
TM.isNoopAddrSpaceCast(SrcAS, DstAS))
3623 case Instruction::GetElementPtr: {
3637 case Instruction::Trunc:
3643 case Instruction::BitCast:
3646 case Instruction::IntToPtr: {
3660 case Instruction::PtrToAddr:
3661 case Instruction::PtrToInt: {
3667 Type *Ty = CE->getType();
3676 if (
DL.getTypeAllocSize(Ty).getFixedValue() <=
3677 DL.getTypeAllocSize(
Op->getType()).getFixedValue())
3683 case Instruction::Sub: {
3685 APInt LHSOffset, RHSOffset;
3693 int64_t Addend = (LHSOffset - RHSOffset).getSExtValue();
3694 std::optional<int64_t> PCRelativeOffset;
3696 PCRelativeOffset =
Offset;
3700 LHSGV, RHSGV, Addend, PCRelativeOffset,
TM);
3708 if (DSOEquiv &&
TM.getTargetTriple().isOSBinFormatELF())
3710 LHSSym, RHSSym, Addend, PCRelativeOffset,
TM);
3730 case Instruction::Add: {
3747 OS <<
"unsupported expression in static initializer: ";
3748 CE->printAsOperand(OS,
false,
3749 !
MF ?
nullptr :
MF->getFunction().getParent());
3750 CE->getContext().emitError(S);
3768 assert(!
Data.empty() &&
"Empty aggregates should be CAZ node");
3770 for (
unsigned i = 1, e =
Data.size(); i != e; ++i)
3771 if (
Data[i] !=
C)
return -1;
3785 if (!
Value.isSplat(8))
3788 return Value.zextOrTrunc(8).getZExtValue();
3793 assert(CA->getNumOperands() != 0 &&
"Should be a CAZ");
3800 for (
unsigned i = 1, e = CA->getNumOperands(); i != e; ++i)
3801 if (CA->getOperand(i) != Op0)
3815 auto AliasIt = AliasList->find(
Offset);
3816 if (AliasIt != AliasList->end()) {
3819 AliasList->erase(
Offset);
3860 unsigned EmittedSize =
3862 assert(EmittedSize <=
Size &&
"Size cannot be less than EmittedSize!");
3863 if (
unsigned Padding =
Size - EmittedSize)
3893 Type *ElementType = VTy->getElementType();
3894 uint64_t ElementSizeInBits =
DL.getTypeSizeInBits(ElementType);
3895 uint64_t ElementAllocSizeInBits =
DL.getTypeAllocSizeInBits(ElementType);
3897 if (ElementSizeInBits != ElementAllocSizeInBits) {
3909 "Cannot lower vector global with unusual element type");
3913 EmittedSize =
DL.getTypeStoreSize(CV->
getType());
3915 for (
unsigned I = 0,
E = VTy->getNumElements();
I !=
E; ++
I) {
3919 EmittedSize =
DL.getTypeAllocSize(ElementType) * VTy->getNumElements();
3923 if (
unsigned Padding =
Size - EmittedSize)
3947 SizeSoFar += FieldSize + PadSize;
3955 "Layout of constant struct may be incorrect!");
3959 assert(ET &&
"Unknown float type");
3968 AP.
OutStreamer->getCommentOS() <<
' ' << StrVal <<
'\n';
3975 unsigned TrailingBytes = NumBytes %
sizeof(
uint64_t);
3984 AP.
OutStreamer->emitIntValueInHexWithPadding(p[Chunk--], TrailingBytes);
3986 for (; Chunk >= 0; --Chunk)
3990 for (Chunk = 0; Chunk < NumBytes /
sizeof(
uint64_t); ++Chunk)
3994 AP.
OutStreamer->emitIntValueInHexWithPadding(p[Chunk], TrailingBytes);
3999 AP.
OutStreamer->emitZeros(
DL.getTypeAllocSize(ET) -
DL.getTypeStoreSize(ET));
4014 unsigned ExtraBitsSize =
BitWidth & 63;
4016 if (ExtraBitsSize) {
4024 if (
DL.isBigEndian()) {
4033 ExtraBitsSize =
alignTo(ExtraBitsSize, 8);
4035 (((
uint64_t)-1) >> (64 - ExtraBitsSize));
4046 for (
unsigned i = 0, e =
BitWidth / 64; i != e; ++i) {
4047 uint64_t Val =
DL.isBigEndian() ? RawData[e - i - 1] : RawData[i];
4051 if (ExtraBitsSize) {
4058 (ExtraBits & (((
uint64_t)-1) >> (64 - ExtraBitsSize)))
4059 == ExtraBits &&
"Directive too small for extra bits.");
4091 if (!(*ME)->evaluateAsRelocatable(MV,
nullptr) || MV.
isAbsolute())
4109 if (!SymB || BaseSym != SymB)
4137 int NumUses = (int)Result.second;
4154 "AliasList only expected for XCOFF");
4168 if (numElements != 0) {
4172 for (
unsigned int i = 0; i < numElements - 1; ++i) {
4175 SizeSoFar += GapToNext;
4193 if (StoreSize <= 8) {
4196 <<
format(
"0x%" PRIx64
"\n", CI->getZExtValue());
4197 AP.
OutStreamer->emitIntValue(CI->getZExtValue(), StoreSize);
4203 if (
Size != StoreSize)
4233 if (CE->getOpcode() == Instruction::BitCast)
4268 else if (
MAI->hasSubsectionsViaSymbols()) {
4277 for (
auto &AliasPair : *AliasList) {
4296 MCInst Nop =
MF->getSubtarget().getInstrInfo()->getNop();
4306 return OutContext.createTempSymbol(Name,
true);
4327 MF->getConstantPool()->getConstants()[CPID];
4335 if (S &&
TM.getTargetTriple().isOSBinFormatCOFF()) {
4338 if (Sym->isUndefined())
4354 return MF->getJTISymbol(JTID,
OutContext, isLinkerPrivate);
4375 return OutContext.getOrCreateSymbol(NameStr);
4380 unsigned FunctionNumber) {
4384 <<
"Parent Loop BB" << FunctionNumber <<
"_"
4392 unsigned FunctionNumber) {
4395 OS.
indent(CL->getLoopDepth()*2)
4396 <<
"Child Loop BB" << FunctionNumber <<
"_"
4397 << CL->getHeader()->getNumber() <<
" Depth " << CL->getLoopDepth()
4412 assert(Header &&
"No header for loop");
4416 if (Header != &
MBB) {
4417 AP.
OutStreamer->AddComment(
" in Loop: Header=BB" +
4446 if (
MBB.isEHFuncletEntry()) {
4448 Handler->endFunclet();
4449 Handler->beginFunclet(
MBB);
4452 Handler->endFunclet();
4453 Handler->beginFunclet(
MBB);
4460 if (
MBB.isBeginSection() && !
MBB.isEntryBlock()) {
4464 CurrentSectionBeginSym =
MBB.getSymbol();
4468 Handler->beginCodeAlignment(
MBB);
4471 const Align Alignment =
MBB.getAlignment();
4472 if (Alignment !=
Align(1))
4479 if (
MBB.isIRBlockAddressTaken()) {
4487 }
else if (
isVerbose() &&
MBB.isMachineBlockAddressTaken()) {
4489 }
else if (
isVerbose() &&
MBB.isInlineAsmBrIndirectTarget()) {
4490 OutStreamer->AddComment(
"Inline asm indirect target");
4496 if (BB->hasName()) {
4498 false, BB->getModule());
4503 assert(
MLI !=
nullptr &&
"MachineLoopInfo should has been computed");
4508 if (shouldEmitLabelForBasicBlock(
MBB)) {
4510 OutStreamer->AddComment(
"Label of block must be emitted");
4520 if (
MBB.isEHContTarget() &&
4528 if (
MBB.isBeginSection() && !
MBB.isEntryBlock()) {
4530 Handler->beginBasicBlockSection(
MBB);
4532 Handler->beginBasicBlockSection(
MBB);
4539 if (
MBB.isEndSection()) {
4541 Handler->endBasicBlockSection(
MBB);
4543 Handler->endBasicBlockSection(
MBB);
4548 bool IsDefinition)
const {
4551 switch (Visibility) {
4555 Attr =
MAI->getHiddenVisibilityAttr();
4557 Attr =
MAI->getHiddenDeclarationVisibilityAttr();
4560 Attr =
MAI->getProtectedVisibilityAttr();
4568bool AsmPrinter::shouldEmitLabelForBasicBlock(
4574 !
MBB.isEntryBlock())
4579 return !
MBB.pred_empty() &&
4581 MBB.hasLabelMustBeEmitted());
4591 if (
MBB->isEHPad() ||
MBB->pred_empty())
4595 if (
MBB->pred_size() > 1)
4600 if (!Pred->isLayoutSuccessor(
MBB))
4608 for (
const auto &
MI : Pred->terminators()) {
4610 if (!
MI.isBranch() ||
MI.isIndirectBranch())
4619 if (
OP->isMBB() &&
OP->getMBB() ==
MBB)
4631 auto [GCPI, Inserted] = GCMetadataPrinters.try_emplace(&S);
4633 return GCPI->second.get();
4639 if (Name == GCMetaPrinter.getName()) {
4640 std::unique_ptr<GCMetadataPrinter> GMP = GCMetaPrinter.instantiate();
4642 GCPI->second = std::move(GMP);
4643 return GCPI->second.get();
4651 assert(
MI &&
"AsmPrinter didn't require GCModuleInfo?");
4652 bool NeedsDefault =
false;
4653 if (
MI->begin() ==
MI->end())
4655 NeedsDefault =
true;
4657 for (
const auto &
I : *
MI) {
4659 if (MP->emitStackMaps(
SM, *
this))
4663 NeedsDefault =
true;
4667 SM.serializeToStackMapSection();
4671 std::unique_ptr<AsmPrinterHandler> Handler) {
4690 auto Padding = (4 * Bytes) - ((2 * Bytes) + 3);
4691 assert(Padding >= 0 &&
"Instrumentation map entry > 4 * Word Size");
4699 auto PrevSection =
OutStreamer->getCurrentSectionOnly();
4703 const Triple &TT =
TM.getTargetTriple();
4705 if (TT.isOSBinFormatELF()) {
4709 if (
F.hasComdat()) {
4711 GroupName =
F.getComdat()->getName();
4714 Flags, 0, GroupName,
F.hasComdat(),
4717 if (
TM.Options.XRayFunctionIndex)
4721 }
else if (
MF->getSubtarget().getTargetTriple().isOSBinFormatMachO()) {
4722 InstMap =
OutContext.getMachOSection(
"__DATA",
"xray_instr_map",
4725 if (
TM.Options.XRayFunctionIndex)
4726 FnSledIndex =
OutContext.getMachOSection(
"__DATA",
"xray_fn_idx",
4733 auto WordSizeBytes =
MAI->getCodePointerSize();
4740 OutContext.createLinkerPrivateSymbol(
"xray_sleds_start");
4743 for (
const auto &Sled :
Sleds) {
4744 MCSymbol *Dot = Ctx.createTempSymbol();
4772 MCSymbol *Dot = Ctx.createLinkerPrivateSymbol(
"xray_fn_idx");
4788 auto Attr =
F.getFnAttribute(
"function-instrument");
4789 bool LogArgs =
F.hasFnAttribute(
"xray-log-args");
4790 bool AlwaysInstrument =
4791 Attr.isStringAttribute() && Attr.getValueAsString() ==
"xray-always";
4800 unsigned PatchableFunctionPrefix = 0, PatchableFunctionEntry = 0;
4801 (void)
F.getFnAttribute(
"patchable-function-prefix")
4803 .getAsInteger(10, PatchableFunctionPrefix);
4804 (void)
F.getFnAttribute(
"patchable-function-entry")
4806 .getAsInteger(10, PatchableFunctionEntry);
4807 if (!PatchableFunctionPrefix && !PatchableFunctionEntry)
4810 if (
TM.getTargetTriple().isOSBinFormatELF()) {
4815 if (
F.hasFnAttribute(
"patchable-function-entry-section"))
4816 SectionName =
F.getFnAttribute(
"patchable-function-entry-section")
4817 .getValueAsString();
4823 if (
MAI->useIntegratedAssembler() ||
MAI->binutilsIsAtLeast(2, 36)) {
4825 if (
F.hasComdat()) {
4827 GroupName =
F.getComdat()->getName();
4840 return OutStreamer->getContext().getDwarfVersion();
4870 const MCSymbol *BranchLabel)
const {
4871 const auto TLI =
MF->getSubtarget().getTargetLowering();
4872 const auto BaseExpr =
4878 return std::make_tuple(
Base, 0, BranchLabel,
4883 const Triple &TT =
TM.getTargetTriple();
4884 assert(TT.isOSBinFormatCOFF());
4886 bool IsTargetArm64EC = TT.isWindowsArm64EC();
4889 bool SwitchedToDirectiveSection =
false;
4890 for (
const Function &
F : M.functions()) {
4891 if (
F.hasFnAttribute(
"loader-replaceable")) {
4892 if (!SwitchedToDirectiveSection) {
4894 OutContext.getObjectFileInfo()->getDrectveSection());
4895 SwitchedToDirectiveSection =
true;
4907 MMI->getContext().getOrCreateSymbol(Name +
"_$fo$");
4908 OutStreamer->beginCOFFSymbolDef(FuncOverrideSymbol);
4913 MCSymbol *FuncOverrideDefaultSymbol =
4914 MMI->getContext().getOrCreateSymbol(Name +
"_$fo_default$");
4915 OutStreamer->beginCOFFSymbolDef(FuncOverrideDefaultSymbol);
4919 FuncOverrideDefaultSymbols.
push_back(FuncOverrideDefaultSymbol);
4922 FuncOverrideSymbol->
getName() +
"=" +
4923 FuncOverrideDefaultSymbol->
getName())
4929 if (SwitchedToDirectiveSection)
4932 if (FuncOverrideDefaultSymbols.
empty())
4940 for (
MCSymbol *Symbol : FuncOverrideDefaultSymbols) {
4948 const Triple &TT =
TM.getTargetTriple();
4949 assert(TT.isOSBinFormatCOFF());
4957 int64_t Feat00Value = 0;
4968 if (M.getModuleFlag(
"cfguard")) {
4973 if (M.getModuleFlag(
"ehcontguard")) {
4978 if (M.getModuleFlag(
"ms-kernel")) {
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file declares a class to represent arbitrary precision floating point values and provide a varie...
This file implements a class to represent arbitrary precision integral constant values and operations...
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
static bool emitDebugValueComment(const MachineInstr *MI, AsmPrinter &AP)
emitDebugValueComment - This method handles the target-independent form of DBG_VALUE,...
static uint32_t getBBAddrMapMetadata(const MachineBasicBlock &MBB)
Returns the BB metadata to be emitted in the SHT_LLVM_BB_ADDR_MAP section for a given basic block.
static cl::opt< bool > BBAddrMapSkipEmitBBEntries("basic-block-address-map-skip-bb-entries", cl::desc("Skip emitting basic block entries in the SHT_LLVM_BB_ADDR_MAP " "section. It's used to save binary size when BB entries are " "unnecessary for some PGOAnalysisMap features."), cl::Hidden, cl::init(false))
static void emitGlobalConstantFP(const ConstantFP *CFP, AsmPrinter &AP)
static void emitFakeUse(const MachineInstr *MI, AsmPrinter &AP)
static bool isGOTEquivalentCandidate(const GlobalVariable *GV, unsigned &NumGOTEquivUsers, bool &HasNonGlobalUsers)
Only consider global GOT equivalents if at least one user is a cstexpr inside an initializer of anoth...
static void tagGlobalDefinition(Module &M, GlobalVariable *G)
static void emitBasicBlockLoopComments(const MachineBasicBlock &MBB, const MachineLoopInfo *LI, const AsmPrinter &AP)
emitBasicBlockLoopComments - Pretty-print comments for basic blocks.
static void handleIndirectSymViaGOTPCRel(AsmPrinter &AP, const MCExpr **ME, const Constant *BaseCst, uint64_t Offset)
Transform a not absolute MCExpr containing a reference to a GOT equivalent global,...
static int isRepeatedByteSequence(const ConstantDataSequential *V)
isRepeatedByteSequence - Determine whether the given value is composed of a repeated sequence of iden...
static void emitGlobalAliasInline(AsmPrinter &AP, uint64_t Offset, AsmPrinter::AliasMapTy *AliasList)
static bool needFuncLabels(const MachineFunction &MF, const AsmPrinter &Asm)
Returns true if function begin and end labels should be emitted.
static unsigned getNumGlobalVariableUses(const Constant *C, bool &HasNonGlobalUsers)
Compute the number of Global Variables that uses a Constant.
static cl::bits< PGOMapFeaturesEnum > PgoAnalysisMapFeatures("pgo-analysis-map", cl::Hidden, cl::CommaSeparated, cl::values(clEnumValN(PGOMapFeaturesEnum::None, "none", "Disable all options"), clEnumValN(PGOMapFeaturesEnum::FuncEntryCount, "func-entry-count", "Function Entry Count"), clEnumValN(PGOMapFeaturesEnum::BBFreq, "bb-freq", "Basic Block Frequency"), clEnumValN(PGOMapFeaturesEnum::BrProb, "br-prob", "Branch Probability"), clEnumValN(PGOMapFeaturesEnum::All, "all", "Enable all options")), cl::desc("Enable extended information within the SHT_LLVM_BB_ADDR_MAP that is " "extracted from PGO related analysis."))
static void removeMemtagFromGlobal(GlobalVariable &G)
static uint64_t globalSize(const llvm::GlobalVariable &G)
static void PrintChildLoopComment(raw_ostream &OS, const MachineLoop *Loop, unsigned FunctionNumber)
PrintChildLoopComment - Print comments about child loops within the loop for this basic block,...
static StringRef getMIMnemonic(const MachineInstr &MI, MCStreamer &Streamer)
static void emitComments(const MachineInstr &MI, const MCSubtargetInfo *STI, raw_ostream &CommentOS)
emitComments - Pretty-print comments for instructions.
static void PrintParentLoopComment(raw_ostream &OS, const MachineLoop *Loop, unsigned FunctionNumber)
PrintParentLoopComment - Print comments about parent loops of this one.
static void emitGlobalConstantStruct(const DataLayout &DL, const ConstantStruct *CS, AsmPrinter &AP, const Constant *BaseCV, uint64_t Offset, AsmPrinter::AliasMapTy *AliasList)
static void emitGlobalConstantDataSequential(const DataLayout &DL, const ConstantDataSequential *CDS, AsmPrinter &AP, AsmPrinter::AliasMapTy *AliasList)
static void emitKill(const MachineInstr *MI, AsmPrinter &AP)
static bool shouldTagGlobal(const llvm::GlobalVariable &G)
static void emitGlobalConstantImpl(const DataLayout &DL, const Constant *C, AsmPrinter &AP, const Constant *BaseCV=nullptr, uint64_t Offset=0, AsmPrinter::AliasMapTy *AliasList=nullptr)
static ConstantInt * extractNumericCGTypeId(const Function &F)
Extracts a generalized numeric type identifier of a Function's type from type metadata.
static llvm::object::BBAddrMap::Features getBBAddrMapFeature(const MachineFunction &MF, int NumMBBSectionRanges, bool HasCalls)
static cl::opt< bool > PrintLatency("asm-print-latency", cl::desc("Print instruction latencies as verbose asm comments"), cl::Hidden, cl::init(false))
static bool emitDebugLabelComment(const MachineInstr *MI, AsmPrinter &AP)
This method handles the target-independent form of DBG_LABEL, returning true if it was able to do so.
static bool canBeHidden(const GlobalValue *GV, const MCAsmInfo &MAI)
static void emitGlobalConstantVector(const DataLayout &DL, const Constant *CV, AsmPrinter &AP, AsmPrinter::AliasMapTy *AliasList)
static cl::opt< bool > EmitJumpTableSizesSection("emit-jump-table-sizes-section", cl::desc("Emit a section containing jump table addresses and sizes"), cl::Hidden, cl::init(false))
static void emitGlobalConstantArray(const DataLayout &DL, const ConstantArray *CA, AsmPrinter &AP, const Constant *BaseCV, uint64_t Offset, AsmPrinter::AliasMapTy *AliasList)
static void emitGlobalConstantLargeInt(const ConstantInt *CI, AsmPrinter &AP)
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
#define clEnumValN(ENUMVAL, FLAGNAME, DESC)
This file contains the declarations for the subclasses of Constant, which represent the different fla...
This file defines the DenseMap class.
This file contains constants used for implementing Dwarf debug support.
This file contains the declaration of the GlobalIFunc class, which represents a single indirect funct...
const HexagonInstrInfo * TII
Module.h This file contains the declarations for the Module class.
===- LazyMachineBlockFrequencyInfo.h - Lazy Block Frequency -*- C++ -*–===//
const FeatureInfo AllFeatures[]
This file declares the MachineConstantPool class which is an abstract constant pool to keep track of ...
static cl::opt< std::string > OutputFilename("o", cl::desc("Output filename"), cl::value_desc("filename"), cl::init("-"))
This file provides utility analysis objects describing memory locations.
OptimizedStructLayoutField Field
This file defines the SmallPtrSet class.
This file defines the SmallString class.
This file defines the SmallVector class.
This file defines the 'Statistic' class, which is designed to be an easy way to expose various metric...
#define STATISTIC(VARNAME, DESC)
This file describes how to lower LLVM code to machine code.
LLVM_ABI opStatus convert(const fltSemantics &ToSemantics, roundingMode RM, bool *losesInfo)
LLVM_ABI double convertToDouble() const
Converts this APFloat to host double value.
void toString(SmallVectorImpl< char > &Str, unsigned FormatPrecision=0, unsigned FormatMaxPadding=3, bool TruncateZero=true) const
APInt bitcastToAPInt() const
Class for arbitrary precision integers.
unsigned getBitWidth() const
Return the number of bits in the APInt.
unsigned getNumWords() const
Get the number of words.
const uint64_t * getRawData() const
This function returns a pointer to the internal storage of the APInt.
int64_t getSExtValue() const
Get sign extended value.
void lshrInPlace(unsigned ShiftAmt)
Logical right-shift this APInt by ShiftAmt in place.
AddrLabelMap(MCContext &context)
void UpdateForRAUWBlock(BasicBlock *Old, BasicBlock *New)
void takeDeletedSymbolsForFunction(Function *F, std::vector< MCSymbol * > &Result)
If we have any deleted symbols for F, return them.
void UpdateForDeletedBlock(BasicBlock *BB)
ArrayRef< MCSymbol * > getAddrLabelSymbolToEmit(BasicBlock *BB)
Represent the analysis usage information of a pass.
AnalysisUsage & addRequired()
void setPreservesAll()
Set by analyses that do not transform their input at all.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
const T & front() const
front - Get the first element.
bool empty() const
empty - Check if the array is empty.
virtual ~AsmPrinterHandler()
Pin vtables to this file.
virtual void markFunctionEnd()
This class is intended to be used as a driving class for all asm writers.
virtual void emitInstruction(const MachineInstr *)
Targets should implement this to emit instructions.
const TargetLoweringObjectFile & getObjFileLowering() const
Return information about object file lowering.
MCSymbol * getSymbolWithGlobalValueBase(const GlobalValue *GV, StringRef Suffix) const
Return the MCSymbol for a private symbol with global value name as its base, with the specified suffi...
MCSymbol * getSymbol(const GlobalValue *GV) const
void emitULEB128(uint64_t Value, const char *Desc=nullptr, unsigned PadTo=0) const
Emit the specified unsigned leb128 value.
SmallVector< XRayFunctionEntry, 4 > Sleds
MapVector< MBBSectionID, MBBSectionRange > MBBSectionRanges
void emitNops(unsigned N)
Emit N NOP instructions.
MCSymbol * CurrentFnBegin
MachineLoopInfo * MLI
This is a pointer to the current MachineLoopInfo.
virtual void emitDebugValue(const MCExpr *Value, unsigned Size) const
Emit the directive and value for debug thread local expression.
void EmitToStreamer(MCStreamer &S, const MCInst &Inst)
virtual void emitConstantPool()
Print to the current output stream assembly representations of the constants in the constant pool MCP...
virtual void emitGlobalVariable(const GlobalVariable *GV)
Emit the specified global variable to the .s file.
virtual const MCExpr * lowerConstantPtrAuth(const ConstantPtrAuth &CPA)
unsigned int getUnitLengthFieldByteSize() const
Returns 4 for DWARF32 and 12 for DWARF64.
void emitLabelPlusOffset(const MCSymbol *Label, uint64_t Offset, unsigned Size, bool IsSectionRelative=false) const
Emit something like ".long Label+Offset" where the size in bytes of the directive is specified by Siz...
TargetMachine & TM
Target machine description.
void emitXRayTable()
Emit a table with all XRay instrumentation points.
virtual void emitGlobalAlias(const Module &M, const GlobalAlias &GA)
DenseMap< const MachineBasicBlock *, SmallVector< MCSymbol *, 1 > > CurrentFnCallsiteEndSymbols
Vector of symbols marking the end of the callsites in the current function, keyed by their containing...
virtual void emitBasicBlockEnd(const MachineBasicBlock &MBB)
Targets can override this to emit stuff at the end of a basic block.
virtual void emitJumpTableEntry(const MachineJumpTableInfo &MJTI, const MachineBasicBlock *MBB, unsigned uid) const
EmitJumpTableEntry - Emit a jump table entry for the specified MBB to the current stream.
void emitIndirectCalleeLabels(FunctionInfo &FuncInfo, const MachineFunction::CallSiteInfoMap &CallSitesInfoMap, const MachineInstr &MI)
Generate and emit labels for callees of the indirect callsites which will be used to populate the ....
MCSymbol * CurrentFnDescSym
The symbol for the current function descriptor on AIX.
MCSymbol * CurrentFnBeginLocal
For dso_local functions, the current $local alias for the function.
MapVector< const MCSymbol *, GOTEquivUsePair > GlobalGOTEquivs
virtual MCSymbol * GetCPISymbol(unsigned CPID) const
Return the symbol for the specified constant pool entry.
void emitGlobalGOTEquivs()
Constant expressions using GOT equivalent globals may not be eligible for PC relative GOT entry conve...
MCSymbol * getFunctionBegin() const
void emitLabelDifference(const MCSymbol *Hi, const MCSymbol *Lo, unsigned Size) const
Emit something like ".long Hi-Lo" where the size in bytes of the directive is specified by Size and H...
void emitKCFITrapEntry(const MachineFunction &MF, const MCSymbol *Symbol)
virtual void emitMachOIFuncStubHelperBody(Module &M, const GlobalIFunc &GI, MCSymbol *LazyPointer)
MCSymbol * getMBBExceptionSym(const MachineBasicBlock &MBB)
MCSymbol * getAddrLabelSymbol(const BasicBlock *BB)
Return the symbol to be used for the specified basic block when its address is taken.
const MCAsmInfo * MAI
Target Asm Printer information.
SmallVector< std::unique_ptr< AsmPrinterHandler >, 2 > Handlers
bool emitSpecialLLVMGlobal(const GlobalVariable *GV)
Check to see if the specified global is a special global used by LLVM.
MachineFunction * MF
The current machine function.
virtual void emitJumpTableInfo()
Print assembly representations of the jump tables used by the current function to the current output ...
void computeGlobalGOTEquivs(Module &M)
Unnamed constant global variables solely contaning a pointer to another globals variable act like a g...
static Align getGVAlignment(const GlobalObject *GV, const DataLayout &DL, Align InAlign=Align(1))
Return the alignment for the specified GV.
MCSymbol * createCallsiteEndSymbol(const MachineBasicBlock &MBB)
Creates a new symbol to be used for the end of a callsite at the specified basic block.
virtual const MCExpr * lowerConstant(const Constant *CV, const Constant *BaseCV=nullptr, uint64_t Offset=0)
Lower the specified LLVM Constant to an MCExpr.
void emitCallGraphSection(const MachineFunction &MF, FunctionInfo &FuncInfo)
Emits .callgraph section.
void emitInt8(int Value) const
Emit a byte directive and value.
CFISection getFunctionCFISectionType(const Function &F) const
Get the CFISection type for a function.
virtual void SetupMachineFunction(MachineFunction &MF)
This should be called when a new MachineFunction is being processed from runOnMachineFunction.
void emitFunctionBody()
This method emits the body and trailer for a function.
virtual bool isBlockOnlyReachableByFallthrough(const MachineBasicBlock *MBB) const
Return true if the basic block has exactly one predecessor and the control transfer mechanism between...
void emitBBAddrMapSection(const MachineFunction &MF)
void emitPCSections(const MachineFunction &MF)
Emits the PC sections collected from instructions.
MachineDominatorTree * MDT
This is a pointer to the current MachineDominatorTree.
virtual void emitStartOfAsmFile(Module &)
This virtual method can be overridden by targets that want to emit something at the start of their fi...
MCSymbol * GetJTISymbol(unsigned JTID, bool isLinkerPrivate=false) const
Return the symbol for the specified jump table entry.
virtual void emitMachineConstantPoolValue(MachineConstantPoolValue *MCPV)
void emitStackMaps()
Emit the stack maps.
bool hasDebugInfo() const
Returns true if valid debug info is present.
virtual void emitFunctionBodyStart()
Targets can override this to emit stuff before the first basic block in the function.
std::pair< const GlobalVariable *, unsigned > GOTEquivUsePair
Map global GOT equivalent MCSymbols to GlobalVariables and keep track of its number of uses by other ...
void emitPatchableFunctionEntries()
void recordSled(MCSymbol *Sled, const MachineInstr &MI, SledKind Kind, uint8_t Version=0)
virtual void emitEndOfAsmFile(Module &)
This virtual method can be overridden by targets that want to emit something at the end of their file...
bool doInitialization(Module &M) override
Set up the AsmPrinter when we are working on a new module.
MCSymbol * GetJTSetSymbol(unsigned UID, unsigned MBBID) const
Return the symbol for the specified jump table .set FIXME: privatize to AsmPrinter.
virtual void emitMachOIFuncStubBody(Module &M, const GlobalIFunc &GI, MCSymbol *LazyPointer)
virtual void emitImplicitDef(const MachineInstr *MI) const
Targets can override this to customize the output of IMPLICIT_DEF instructions in verbose mode.
virtual void emitLinkage(const GlobalValue *GV, MCSymbol *GVSym) const
This emits linkage information about GVSym based on GV, if this is supported by the target.
void getAnalysisUsage(AnalysisUsage &AU) const override
Record analysis usage.
unsigned getFunctionNumber() const
Return a unique ID for the current function.
MachineOptimizationRemarkEmitter * ORE
Optimization remark emitter.
DenseMap< uint64_t, SmallVector< const GlobalAlias *, 1 > > AliasMapTy
Print a general LLVM constant to the .s file.
virtual bool shouldEmitWeakSwiftAsyncExtendedFramePointerFlags() const
AsmPrinter(TargetMachine &TM, std::unique_ptr< MCStreamer > Streamer, char &ID=AsmPrinter::ID)
void printOffset(int64_t Offset, raw_ostream &OS) const
This is just convenient handler for printing offsets.
void emitGlobalConstant(const DataLayout &DL, const Constant *CV, AliasMapTy *AliasList=nullptr)
EmitGlobalConstant - Print a general LLVM constant to the .s file.
void emitFrameAlloc(const MachineInstr &MI)
void emitStackSizeSection(const MachineFunction &MF)
MCSymbol * getSymbolPreferLocal(const GlobalValue &GV) const
Similar to getSymbol() but preferred for references.
MCSymbol * CurrentFnSym
The symbol for the current function.
MachineModuleInfo * MMI
This is a pointer to the current MachineModuleInfo.
void emitSLEB128(int64_t Value, const char *Desc=nullptr) const
Emit the specified signed leb128 value.
void emitAlignment(Align Alignment, const GlobalObject *GV=nullptr, unsigned MaxBytesToEmit=0) const
Emit an alignment directive to the specified power of two boundary.
MCContext & OutContext
This is the context for the output file that we are streaming.
const StaticDataProfileInfo * SDPI
Provides the profile information for constants.
void emitCFIInstruction(const MachineInstr &MI)
MCSymbol * createTempSymbol(const Twine &Name) const
bool doFinalization(Module &M) override
Shut down the asmprinter.
virtual const MCSubtargetInfo * getIFuncMCSubtargetInfo() const
getSubtargetInfo() cannot be used where this is needed because we don't have a MachineFunction when w...
void emitStackUsage(const MachineFunction &MF)
virtual void emitKCFITypeId(const MachineFunction &MF)
bool isPositionIndependent() const
virtual void emitXXStructorList(const DataLayout &DL, const Constant *List, bool IsCtor)
This method emits llvm.global_ctors or llvm.global_dtors list.
void emitPCSectionsLabel(const MachineFunction &MF, const MDNode &MD)
Emits a label as reference for PC sections.
MCSymbol * CurrentPatchableFunctionEntrySym
The symbol for the entry in __patchable_function_entires.
virtual void emitBasicBlockStart(const MachineBasicBlock &MBB)
Targets can override this to emit stuff at the start of a basic block.
void takeDeletedSymbolsForFunction(const Function *F, std::vector< MCSymbol * > &Result)
If the specified function has had any references to address-taken blocks generated,...
void emitVisibility(MCSymbol *Sym, unsigned Visibility, bool IsDefinition=true) const
This emits visibility information about symbol, if this is supported by the target.
void emitInt32(int Value) const
Emit a long directive and value.
std::unique_ptr< MCStreamer > OutStreamer
This is the MCStreamer object for the file we are generating.
const ProfileSummaryInfo * PSI
The profile summary information.
virtual void emitFunctionDescriptor()
const MCSection * getCurrentSection() const
Return the current section we are emitting to.
unsigned int getDwarfOffsetByteSize() const
Returns 4 for DWARF32 and 8 for DWARF64.
MCSymbol * CurrentFnSymForSize
The symbol used to represent the start of the current function for the purpose of calculating its siz...
bool isVerbose() const
Return true if assembly output should contain comments.
MCSymbol * getFunctionEnd() const
virtual void emitXXStructor(const DataLayout &DL, const Constant *CV)
Targets can override this to change how global constants that are part of a C++ static/global constru...
void preprocessXXStructorList(const DataLayout &DL, const Constant *List, SmallVector< Structor, 8 > &Structors)
This method gathers an array of Structors and then sorts them out by Priority.
void emitInt16(int Value) const
Emit a short directive and value.
void setDwarfVersion(uint16_t Version)
void getNameWithPrefix(SmallVectorImpl< char > &Name, const GlobalValue *GV) const
StringRef getConstantSectionSuffix(const Constant *C) const
Returns a section suffix (hot or unlikely) for the constant if profiles are available.
SmallVector< std::unique_ptr< AsmPrinterHandler >, 1 > EHHandlers
A handle to the EH info emitter (if present).
void emitPseudoProbe(const MachineInstr &MI)
unsigned getPointerSize() const
Return the pointer size from the TargetMachine.
void emitRemarksSection(remarks::RemarkStreamer &RS)
MCSymbol * GetBlockAddressSymbol(const BlockAddress *BA) const
Return the MCSymbol used to satisfy BlockAddress uses of the specified basic block.
ArrayRef< MCSymbol * > getAddrLabelSymbolToEmit(const BasicBlock *BB)
Return the symbol to be used for the specified basic block when its address is taken.
virtual void emitFunctionBodyEnd()
Targets can override this to emit stuff after the last basic block in the function.
const DataLayout & getDataLayout() const
Return information about data layout.
void emitCOFFFeatureSymbol(Module &M)
Emits the @feat.00 symbol indicating the features enabled in this module.
virtual void emitFunctionEntryLabel()
EmitFunctionEntryLabel - Emit the label that is the entrypoint for the function.
void emitInitialRawDwarfLocDirective(const MachineFunction &MF)
Emits inital debug location directive.
MCSymbol * GetExternalSymbolSymbol(const Twine &Sym) const
Return the MCSymbol for the specified ExternalSymbol.
void emitInt64(uint64_t Value) const
Emit a long long directive and value.
uint16_t getDwarfVersion() const
dwarf::FormParams getDwarfFormParams() const
Returns information about the byte size of DW_FORM values.
const MCSubtargetInfo & getSubtargetInfo() const
Return information about subtarget.
void emitCOFFReplaceableFunctionData(Module &M)
Emits symbols and data to allow functions marked with the loader-replaceable attribute to be replacea...
bool usesCFIWithoutEH() const
Since emitting CFI unwind information is entangled with supporting the exceptions,...
bool doesDwarfUseRelocationsAcrossSections() const
@ None
Do not emit either .eh_frame or .debug_frame.
@ Debug
Emit .debug_frame.
void addAsmPrinterHandler(std::unique_ptr< AsmPrinterHandler > Handler)
virtual std::tuple< const MCSymbol *, uint64_t, const MCSymbol *, codeview::JumpTableEntrySize > getCodeViewJumpTableInfo(int JTI, const MachineInstr *BranchInstr, const MCSymbol *BranchLabel) const
Gets information required to create a CodeView debug symbol for a jump table.
void emitLabelDifferenceAsULEB128(const MCSymbol *Hi, const MCSymbol *Lo) const
Emit something like ".uleb128 Hi-Lo".
virtual const MCExpr * lowerBlockAddressConstant(const BlockAddress &BA)
Lower the specified BlockAddress to an MCExpr.
LLVM Basic Block Representation.
unsigned getNumber() const
const Function * getParent() const
Return the enclosing method, or null if none.
bool hasAddressTaken() const
Returns true if there are any uses of this basic block other than direct branches,...
The address of a basic block.
BasicBlock * getBasicBlock() const
uint64_t getFrequency() const
Returns the frequency as a fixpoint number scaled by the entry frequency.
uint32_t getNumerator() const
Value handle with callbacks on RAUW and destruction.
ConstMIBundleOperands - Iterate over all operands in a const bundle of machine instructions.
ConstantArray - Constant Array Declarations.
ArrayType * getType() const
Specialize the getType() method to always return an ArrayType, which reduces the amount of casting ne...
static Constant * get(LLVMContext &Context, ArrayRef< ElementTy > Elts)
get() constructor - Return a constant with array type with an element count and element type matching...
ConstantDataSequential - A vector or array constant whose element type is a simple 1/2/4/8-byte integ...
LLVM_ABI APFloat getElementAsAPFloat(uint64_t i) const
If this is a sequential container of floating point type, return the specified element as an APFloat.
LLVM_ABI uint64_t getElementAsInteger(uint64_t i) const
If this is a sequential container of integers (of any size), return the specified element in the low ...
StringRef getAsString() const
If this array is isString(), then this method returns the array as a StringRef.
LLVM_ABI uint64_t getElementByteSize() const
Return the size (in bytes) of each element in the array/vector.
LLVM_ABI bool isString(unsigned CharSize=8) const
This method returns true if this is an array of CharSize integers.
LLVM_ABI uint64_t getNumElements() const
Return the number of elements in the array or vector.
LLVM_ABI Type * getElementType() const
Return the element type of the array/vector.
A constant value that is initialized with an expression using other constant values.
static LLVM_ABI Constant * getBitCast(Constant *C, Type *Ty, bool OnlyIfReduced=false)
ConstantFP - Floating Point Values [float, double].
const APFloat & getValueAPF() const
This is the shared class of boolean and integer constants.
uint64_t getLimitedValue(uint64_t Limit=~0ULL) const
getLimitedValue - If the value is smaller than the specified limit, return it, otherwise return the l...
unsigned getBitWidth() const
getBitWidth - Return the scalar bitwidth of this constant.
uint64_t getZExtValue() const
Return the constant as a 64-bit unsigned integer value after it has been zero extended as appropriate...
const APInt & getValue() const
Return the constant as an APInt value reference.
A signed pointer, in the ptrauth sense.
StructType * getType() const
Specialization - reduce amount of casting.
static Constant * getAnon(ArrayRef< Constant * > V, bool Packed=false)
Return an anonymous struct that has the specified elements.
This is an important base class in LLVM.
const Constant * stripPointerCasts() const
LLVM_ABI Constant * getAggregateElement(unsigned Elt) const
For aggregates (struct/array/vector) return the constant that corresponds to the specified element if...
LLVM_ABI bool isNullValue() const
Return true if this is the value that would be returned by getNullValue.
iterator_range< expr_op_iterator > expr_ops() const
unsigned getNumElements() const
static LLVM_ABI std::optional< const DIExpression * > convertToNonVariadicExpression(const DIExpression *Expr)
If Expr is a valid single-location expression, i.e.
Subprogram description. Uses SubclassData1.
Wrapper for a function that represents a value that functionally represents the original function.
A parsed version of the target data layout string in and methods for querying it.
TypeSize getTypeStoreSize(Type *Ty) const
Returns the maximum number of bytes that may be overwritten by storing the specified type.
iterator find(const_arg_type_t< KeyT > Val)
Collects and handles dwarf debug information.
Emits exception handling directives.
bool hasPersonalityFn() const
Check whether this function has a personality function.
Constant * getPersonalityFn() const
Get the personality function associated with this function.
const Function & getFunction() const
LLVMContext & getContext() const
getContext - Return a reference to the LLVMContext associated with this function.
An analysis pass which caches information about the entire Module.
SmallVector< std::unique_ptr< GCStrategy >, 1 >::const_iterator iterator
GCStrategy describes a garbage collector algorithm's code generation requirements,...
bool usesMetadata() const
If set, appropriate metadata tables must be emitted by the back-end (assembler, JIT,...
const std::string & getName() const
Return the name of the GC strategy.
LLVM_ABI const GlobalObject * getAliaseeObject() const
const Constant * getAliasee() const
LLVM_ABI const Function * getResolverFunction() const
const Constant * getResolver() const
StringRef getSection() const
Get the custom section of this global if it has one.
bool hasMetadata() const
Return true if this value has any metadata attached to it.
bool hasSection() const
Check if this global has a custom object file section.
bool hasLinkOnceLinkage() const
bool hasExternalLinkage() const
bool isThreadLocal() const
If the value is "Thread Local", its value isn't shared by the threads.
VisibilityTypes getVisibility() const
LLVM_ABI bool isDeclaration() const
Return true if the primary definition of this global value is outside of the current translation unit...
LinkageTypes getLinkage() const
bool hasLocalLinkage() const
static StringRef dropLLVMManglingEscape(StringRef Name)
If the given string begins with the GlobalValue name mangling escape character '\1',...
bool hasPrivateLinkage() const
bool isDeclarationForLinker() const
Module * getParent()
Get the module that this global value is contained inside of...
PointerType * getType() const
Global values are always pointers.
VisibilityTypes
An enumeration for the kinds of visibility of global values.
@ DefaultVisibility
The GV is visible.
@ HiddenVisibility
The GV is hidden.
@ ProtectedVisibility
The GV is protected.
LLVM_ABI const DataLayout & getDataLayout() const
Get the data layout of the module this global belongs to.
LLVM_ABI bool canBenefitFromLocalAlias() const
bool hasWeakLinkage() const
bool hasCommonLinkage() const
bool hasGlobalUnnamedAddr() const
bool hasAppendingLinkage() const
static bool isDiscardableIfUnused(LinkageTypes Linkage)
Whether the definition of this global may be discarded if it is not used in its compilation unit.
LLVM_ABI bool canBeOmittedFromSymbolTable() const
True if GV can be left out of the object symbol table.
bool hasAvailableExternallyLinkage() const
LinkageTypes
An enumeration for the kinds of linkage for global values.
@ PrivateLinkage
Like Internal, but omit from symbol table.
@ CommonLinkage
Tentative definitions.
@ InternalLinkage
Rename collisions when linking (static functions).
@ LinkOnceAnyLinkage
Keep one copy of function when linking (inline)
@ WeakODRLinkage
Same, but only replaced by something equivalent.
@ ExternalLinkage
Externally visible function.
@ WeakAnyLinkage
Keep one copy of named function when linking (weak)
@ AppendingLinkage
Special purpose, only applies to global arrays.
@ AvailableExternallyLinkage
Available for inspection, not emission.
@ ExternalWeakLinkage
ExternalWeak linkage description.
@ LinkOnceODRLinkage
Same, but only replaced by something equivalent.
Type * getValueType() const
const Constant * getInitializer() const
getInitializer - Return the initializer for this global variable.
bool hasInitializer() const
Definitions have initializers, declarations don't.
bool isConstant() const
If the value is a global constant, its value is immutable throughout the runtime execution of the pro...
Itinerary data supplied by a subtarget to be used by a target.
Class to represent integer types.
static LLVM_ABI IntegerType * get(LLVMContext &C, unsigned NumBits)
This static method is the primary way of constructing an IntegerType.
LLVM_ABI void emitError(const Instruction *I, const Twine &ErrorStr)
emitError - Emit an error message to the currently installed error handler with optional location inf...
This is an alternative analysis pass to MachineBlockFrequencyInfo.
A helper class to return the specified delimiter string after the first invocation of operator String...
bool isInnermost() const
Return true if the loop does not contain any (natural) loops.
BlockT * getHeader() const
unsigned getLoopDepth() const
Return the nesting level of this loop.
LoopT * getParentLoop() const
Return the parent loop if it exists or nullptr for top level loops.
LoopT * getLoopFor(const BlockT *BB) const
Return the inner most loop that BB lives in.
Represents a single loop in the control flow graph.
This class is intended to be used as a base class for asm properties and features specific to the tar...
bool hasWeakDefCanBeHiddenDirective() const
bool hasSubsectionsViaSymbols() const
const char * getWeakRefDirective() const
bool hasIdentDirective() const
static const MCBinaryExpr * createAdd(const MCExpr *LHS, const MCExpr *RHS, MCContext &Ctx, SMLoc Loc=SMLoc())
static const MCBinaryExpr * createSub(const MCExpr *LHS, const MCExpr *RHS, MCContext &Ctx)
static LLVM_ABI const MCConstantExpr * create(int64_t Value, MCContext &Ctx, bool PrintInHex=false, unsigned SizeInBytes=0)
Context object for machine code objects.
Base class for the full range of assembler expressions which are needed for parsing.
Instances of this class represent a single low-level machine instruction.
unsigned getOpcode() const
void setOpcode(unsigned Op)
Interface to description of machine instruction set.
MCSection * getTLSBSSSection() const
MCSection * getStackSizesSection(const MCSection &TextSec) const
MCSection * getBBAddrMapSection(const MCSection &TextSec) const
MCSection * getTLSExtraDataSection() const
MCSection * getKCFITrapSection(const MCSection &TextSec) const
MCSection * getPCSection(StringRef Name, const MCSection *TextSec) const
MCSection * getCallGraphSection(const MCSection &TextSec) const
MCSection * getDataSection() const
This represents a section on Windows.
Instances of this class represent a uniqued identifier for a section in the current translation unit.
bool isBssSection() const
Check whether this section is "virtual", that is has no actual object file contents.
static constexpr unsigned NonUniqueID
Streaming machine code generation interface.
virtual void emitBinaryData(StringRef Data)
Functionally identical to EmitBytes.
virtual void emitInstruction(const MCInst &Inst, const MCSubtargetInfo &STI)
Emit the given Instruction into the current section.
virtual StringRef getMnemonic(const MCInst &MI) const
Returns the mnemonic for MI, if the streamer has access to a instruction printer and returns an empty...
void emitZeros(uint64_t NumBytes)
Emit NumBytes worth of zeros.
Generic base class for all target subtargets.
const MCSchedModel & getSchedModel() const
Get the machine model for this subtarget's CPU.
static const MCSymbolRefExpr * create(const MCSymbol *Symbol, MCContext &Ctx, SMLoc Loc=SMLoc())
StringRef getSymbolTableName() const
MCSymbol - Instances of this class represent a symbol name in the MC file, and MCSymbols are created ...
bool isDefined() const
isDefined - Check if this symbol is defined (i.e., it has an address).
bool isUndefined() const
isUndefined - Check if this symbol undefined (i.e., implicitly defined).
StringRef getName() const
getName - Get the symbol name.
bool isVariable() const
isVariable - Check if this is a variable symbol.
void redefineIfPossible()
Prepare this symbol to be redefined.
const MCSymbol * getAddSym() const
int64_t getConstant() const
const MCSymbol * getSubSym() const
bool isAbsolute() const
Is this an absolute (as opposed to relocatable) value.
const MDOperand & getOperand(unsigned I) const
ArrayRef< MDOperand > operands() const
Tracking metadata reference owned by Metadata.
LLVM_ABI StringRef getString() const
LLVM_ABI MCSymbol * getSymbol() const
Return the MCSymbol for this basic block.
int getNumber() const
MachineBasicBlocks are uniquely numbered at the function level, unless they're not in a MachineFuncti...
MachineBlockFrequencyInfo pass uses BlockFrequencyInfoImpl implementation to estimate machine basic b...
LLVM_ABI BlockFrequency getBlockFreq(const MachineBasicBlock *MBB) const
getblockFreq - Return block frequency.
BranchProbability getEdgeProbability(const MachineBasicBlock *Src, const MachineBasicBlock *Dst) const
This class is a data container for one entry in a MachineConstantPool.
union llvm::MachineConstantPoolEntry::@004270020304201266316354007027341142157160323045 Val
The constant itself.
bool isMachineConstantPoolEntry() const
isMachineConstantPoolEntry - Return true if the MachineConstantPoolEntry is indeed a target specific ...
MachineConstantPoolValue * MachineCPVal
Align Alignment
The required alignment for this entry.
unsigned getSizeInBytes(const DataLayout &DL) const
SectionKind getSectionKind(const DataLayout *DL) const
const Constant * ConstVal
Abstract base class for all machine specific constantpool value subclasses.
The MachineConstantPool class keeps track of constants referenced by a function which must be spilled...
const std::vector< MachineConstantPoolEntry > & getConstants() const
The MachineFrameInfo class represents an abstract stack frame until prolog/epilog code is inserted.
bool hasVarSizedObjects() const
This method may be called any time after instruction selection is complete to determine if the stack ...
uint64_t getStackSize() const
Return the number of bytes that must be allocated to hold all of the fixed size frame objects.
uint64_t getUnsafeStackSize() const
MachineFunctionPass(char &ID)
void getAnalysisUsage(AnalysisUsage &AU) const override
getAnalysisUsage - Subclasses that override getAnalysisUsage must call this.
const TargetSubtargetInfo & getSubtarget() const
getSubtarget - Return the subtarget for which this machine code is being compiled.
DenseMap< const MachineInstr *, CallSiteInfo > CallSiteInfoMap
bool hasBBSections() const
Returns true if this function has basic block sections enabled.
Function & getFunction()
Return the LLVM function that this machine code represents.
const std::vector< LandingPadInfo > & getLandingPads() const
Return a reference to the landing pad info for the current function.
bool hasEHFunclets() const
const TargetMachine & getTarget() const
getTarget - Return the target machine this machine code is compiled with
Representation of each machine instruction.
LLVM_ABI unsigned getEntrySize(const DataLayout &TD) const
getEntrySize - Return the size of each entry in the jump table.
@ EK_GPRel32BlockAddress
EK_GPRel32BlockAddress - Each entry is an address of block, encoded with a relocation as gp-relative,...
@ EK_Inline
EK_Inline - Jump table entries are emitted inline at their point of use.
@ EK_LabelDifference32
EK_LabelDifference32 - Each entry is the address of the block minus the address of the jump table.
@ EK_Custom32
EK_Custom32 - Each entry is a 32-bit value that is custom lowered by the TargetLowering::LowerCustomJ...
@ EK_LabelDifference64
EK_LabelDifference64 - Each entry is the address of the block minus the address of the jump table.
@ EK_BlockAddress
EK_BlockAddress - Each entry is a plain address of block, e.g.: .word LBB123.
@ EK_GPRel64BlockAddress
EK_GPRel64BlockAddress - Each entry is an address of block, encoded with a relocation as gp-relative,...
LLVM_ABI unsigned getEntryAlignment(const DataLayout &TD) const
getEntryAlignment - Return the alignment of each entry in the jump table.
JTEntryKind getEntryKind() const
const std::vector< MachineJumpTableEntry > & getJumpTables() const
MachineModuleInfoCOFF - This is a MachineModuleInfoImpl implementation for COFF targets.
SymbolListTy GetGVStubList()
Accessor methods to return the set of stubs in sorted order.
MachineModuleInfoELF - This is a MachineModuleInfoImpl implementation for ELF targets.
SymbolListTy GetGVStubList()
Accessor methods to return the set of stubs in sorted order.
std::vector< std::pair< MCSymbol *, StubValueTy > > SymbolListTy
MachineOperand class - Representation of each machine instruction operand.
@ MO_Immediate
Immediate operand.
@ MO_CImmediate
Immediate >64bit operand.
@ MO_FrameIndex
Abstract Stack Frame Index.
@ MO_Register
Register operand.
@ MO_TargetIndex
Target-dependent index+offset operand.
@ MO_FPImmediate
Floating-point immediate operand.
LLVM_ABI void getNameWithPrefix(raw_ostream &OS, const GlobalValue *GV, bool CannotUsePrivateLabel) const
Print the appropriate prefix and the specified global variable's name.
This class implements a map that also provides access to all stored values in a deterministic order.
A Module instance is used to store all the information related to an LLVM module.
LLVM_ABI unsigned getNumOperands() const
iterator_range< op_iterator > operands()
Wrapper for a value that won't be replaced with a CFI jump table pointer in LowerTypeTestsModule.
AnalysisType & getAnalysis() const
getAnalysis<AnalysisType>() - This function is used by subclasses to get to the analysis information ...
AnalysisType * getAnalysisIfAvailable() const
getAnalysisIfAvailable<AnalysisType>() - Subclasses use this function to get analysis information tha...
static PointerType * getUnqual(Type *ElementType)
This constructs a pointer to an object of the specified type in the default address space (address sp...
Wrapper class representing virtual and physical registers.
static iterator_range< iterator > entries()
SimpleRegistryEntry< GCMetadataPrinter > entry
Represents a location in source code.
SectionKind - This is a simple POD value that classifies the properties of a section.
static SectionKind getReadOnlyWithRel()
bool isThreadLocal() const
bool isThreadData() const
static SectionKind getReadOnly()
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
reference emplace_back(ArgTypes &&... Args)
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
int64_t getFixed() const
Returns the fixed component of the stack.
StringRef - Represent a constant reference to a string, i.e.
constexpr StringRef substr(size_t Start, size_t N=npos) const
Return a reference to the substring from [Start, Start + N).
bool contains(StringRef Other) const
Return true if the given string is a substring of *this, and false otherwise.
size_t find(char C, size_t From=0) const
Search for the first character C in the string.
Used to lazily calculate structure layout information for a target machine, based on the DataLayout s...
TypeSize getSizeInBytes() const
TypeSize getElementOffset(unsigned Idx) const
Class to represent struct types.
unsigned getNumElements() const
Random access to the elements.
Information about stack frame layout on the target.
virtual StackOffset getFrameIndexReference(const MachineFunction &MF, int FI, Register &FrameReg) const
getFrameIndexReference - This method should return the base register and offset used to reference a f...
TargetInstrInfo - Interface to description of machine instruction set.
Align getMinFunctionAlignment() const
Return the minimum function alignment.
virtual const MCExpr * lowerDSOLocalEquivalent(const MCSymbol *LHS, const MCSymbol *RHS, int64_t Addend, std::optional< int64_t > PCRelativeOffset, const TargetMachine &TM) const
virtual MCSection * getSectionForCommandLines() const
If supported, return the section to use for the llvm.commandline metadata.
static SectionKind getKindForGlobal(const GlobalObject *GO, const TargetMachine &TM)
Classify the specified global variable into a set of target independent categories embodied in Sectio...
virtual MCSection * getSectionForJumpTable(const Function &F, const TargetMachine &TM) const
virtual MCSection * getStaticDtorSection(unsigned Priority, const MCSymbol *KeySym) const
virtual bool shouldPutJumpTableInFunctionSection(bool UsesLabelDifference, const Function &F) const
virtual const MCExpr * getIndirectSymViaGOTPCRel(const GlobalValue *GV, const MCSymbol *Sym, const MCValue &MV, int64_t Offset, MachineModuleInfo *MMI, MCStreamer &Streamer) const
Get the target specific PC relative GOT entry relocation.
virtual void emitModuleMetadata(MCStreamer &Streamer, Module &M) const
Emit the module-level metadata that the platform cares about.
virtual MCSection * getSectionForConstant(const DataLayout &DL, SectionKind Kind, const Constant *C, Align &Alignment) const
Given a constant with the SectionKind, return a section that it should be placed in.
virtual const MCExpr * lowerRelativeReference(const GlobalValue *LHS, const GlobalValue *RHS, int64_t Addend, std::optional< int64_t > PCRelativeOffset, const TargetMachine &TM) const
MCSymbol * getSymbolWithGlobalValueBase(const GlobalValue *GV, StringRef Suffix, const TargetMachine &TM) const
Return the MCSymbol for a private symbol with global value name as its base, with the specified suffi...
virtual MCSection * getStaticCtorSection(unsigned Priority, const MCSymbol *KeySym) const
bool supportGOTPCRelWithOffset() const
Target GOT "PC"-relative relocation supports encoding an additional binary expression with an offset?
bool supportIndirectSymViaGOTPCRel() const
Target supports replacing a data "PC"-relative access to a symbol through another symbol,...
virtual MCSymbol * getFunctionEntryPointSymbol(const GlobalValue *Func, const TargetMachine &TM) const
If supported, return the function entry point symbol.
MCSection * SectionForGlobal(const GlobalObject *GO, SectionKind Kind, const TargetMachine &TM) const
This method computes the appropriate section to emit the specified global variable or function defini...
This class defines information used to lower LLVM code to legal SelectionDAG operators that the targe...
virtual const MCExpr * getPICJumpTableRelocBaseExpr(const MachineFunction *MF, unsigned JTI, MCContext &Ctx) const
This returns the relocation base for the given PIC jumptable, the same as getPICJumpTableRelocBase,...
Primary interface to the complete machine description for the target machine.
const Triple & getTargetTriple() const
unsigned EnableStaticDataPartitioning
Enables the StaticDataSplitter pass.
virtual const TargetFrameLowering * getFrameLowering() const
virtual const TargetInstrInfo * getInstrInfo() const
virtual const TargetRegisterInfo * getRegisterInfo() const =0
Return the target's register information.
virtual const TargetLowering * getTargetLowering() const
Target - Wrapper for Target specific information.
TinyPtrVector - This class is specialized for cases where there are normally 0 or 1 element in a vect...
Triple - Helper class for working with autoconf configuration names.
bool isOSBinFormatXCOFF() const
Tests whether the OS uses the XCOFF binary format.
bool isOSBinFormatELF() const
Tests whether the OS uses the ELF binary format.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
The instances of the Type class are immutable: once they are created, they are never changed.
static LLVM_ABI IntegerType * getInt64Ty(LLVMContext &C)
bool isFloatTy() const
Return true if this is 'float', a 32-bit IEEE fp type.
bool isBFloatTy() const
Return true if this is 'bfloat', a 16-bit bfloat type.
bool isPPC_FP128Ty() const
Return true if this is powerpc long double.
bool isSized(SmallPtrSetImpl< Type * > *Visited=nullptr) const
Return true if it makes sense to take the size of this type.
bool isHalfTy() const
Return true if this is 'half', a 16-bit IEEE fp type.
LLVM_ABI void print(raw_ostream &O, bool IsForDebug=false, bool NoDetails=false) const
Print the current type.
bool isDoubleTy() const
Return true if this is 'double', a 64-bit IEEE fp type.
bool isFunctionTy() const
True if this is an instance of FunctionType.
Value * getOperand(unsigned i) const
unsigned getNumOperands() const
Value * operator=(Value *RHS)
LLVM Value Representation.
Type * getType() const
All values are typed, get the type of this value.
LLVM_ABI std::string getNameOrAsOperand() const
bool hasOneUse() const
Return true if there is exactly one use of this value.
iterator_range< user_iterator > users()
LLVM_ABI void printAsOperand(raw_ostream &O, bool PrintType=true, const Module *M=nullptr) const
Print the name of this Value out to the specified raw_ostream.
LLVM_ABI const Value * stripPointerCasts() const
Strip off pointer casts, all-zero GEPs and address space casts.
LLVM_ABI LLVMContext & getContext() const
All values hold a context through their type.
LLVM_ABI StringRef getName() const
Return a constant reference to the value's name.
This class implements an extremely fast bulk output stream that can only output to a stream.
raw_ostream & indent(unsigned NumSpaces)
indent - Insert 'NumSpaces' spaces.
A raw_ostream that writes to an std::string.
std::string & str()
Returns the string's reference.
A raw_ostream that writes to an SmallVector or SmallString.
StringRef str() const
Return a StringRef for the vector contents.
LLVM_ABI StringRef OperationEncodingString(unsigned Encoding)
This file contains the declaration of the Comdat class, which represents a single COMDAT in LLVM.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
constexpr char Align[]
Key for Kernel::Arg::Metadata::mAlign.
@ IMAGE_SCN_MEM_DISCARDABLE
@ IMAGE_SCN_CNT_INITIALIZED_DATA
@ IMAGE_SYM_CLASS_EXTERNAL
External symbol.
@ IMAGE_SYM_CLASS_STATIC
Static.
@ IMAGE_COMDAT_SELECT_ASSOCIATIVE
@ IMAGE_COMDAT_SELECT_ANY
@ IMAGE_SYM_DTYPE_NULL
No complex type; simple scalar variable.
@ IMAGE_SYM_DTYPE_FUNCTION
A function that returns a base type.
@ SCT_COMPLEX_TYPE_SHIFT
Type is formed as (base + (derived << SCT_COMPLEX_TYPE_SHIFT))
@ C
The default llvm calling convention, compatible with C.
@ S_ATTR_LIVE_SUPPORT
S_ATTR_LIVE_SUPPORT - Blocks are live if they reference live blocks.
@ Itanium
Windows CE ARM, PowerPC, SH3, SH4.
@ X86
Windows x64, Windows Itanium (IA-64)
ValuesClass values(OptsTy... Options)
Helper to build a ValuesClass by forwarding a variable number of arguments as an initializer list to ...
initializer< Ty > init(const Ty &Val)
uint8_t getUnitLengthFieldByteSize(DwarfFormat Format)
Get the byte size of the unit length field depending on the DWARF format.
uint8_t getDwarfOffsetByteSize(DwarfFormat Format)
The size of a reference determined by the DWARF 32/64-bit format.
std::enable_if_t< detail::IsValidPointer< X, Y >::value, X * > extract_or_null(Y &&MD)
Extract a Value from Metadata, allowing null.
std::enable_if_t< detail::IsValidPointer< X, Y >::value, X * > extract(Y &&MD)
Extract a Value from Metadata.
DiagnosticInfoOptimizationBase::Argument NV
uint64_t MD5Hash(const FunctionId &Obj)
LLVM_ABI void make_absolute(const Twine ¤t_directory, SmallVectorImpl< char > &path)
Make path an absolute path.
@ OF_Text
The file should be opened in text mode on platforms like z/OS that make this distinction.
LLVM_ABI StringRef filename(StringRef path LLVM_LIFETIME_BOUND, Style style=Style::native)
Get filename.
This is an optimization pass for GlobalISel generic memory operations.
FunctionAddr VTableAddr Value
void stable_sort(R &&Range)
LLVM_ABI std::pair< StringRef, StringRef > getToken(StringRef Source, StringRef Delimiters=" \t\n\v\f\r")
getToken - This function extracts one token from source, ignoring any leading characters that appear ...
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
@ SjLj
setjmp/longjmp based exceptions
@ ZOS
z/OS MVS Exception Handling.
@ None
No exception support.
@ AIX
AIX Exception Handling.
@ DwarfCFI
DWARF-like instruction based exceptions.
@ WinEH
Windows Exception Handling.
@ Wasm
WebAssembly Exception Handling.
LLVM_ABI bool IsConstantOffsetFromGlobal(Constant *C, GlobalValue *&GV, APInt &Offset, const DataLayout &DL, DSOLocalEquivalent **DSOEquiv=nullptr)
If this constant is a constant offset from a global, return the global and the constant.
void append_range(Container &C, Range &&R)
Wrapper function to append range R to container C.
@ MCDR_DataRegionEnd
.end_data_region
@ MCDR_DataRegionJT32
.data_region jt32
bool isNoOpWithoutInvoke(EHPersonality Pers)
Return true if this personality may be safely removed if there are no invoke instructions remaining i...
LLVM_ABI Constant * ConstantFoldConstant(const Constant *C, const DataLayout &DL, const TargetLibraryInfo *TLI=nullptr)
ConstantFoldConstant - Fold the constant using the specified DataLayout.
auto dyn_cast_or_null(const Y &Val)
FunctionAddr VTableAddr uintptr_t uintptr_t Version
auto reverse(ContainerTy &&C)
void sort(IteratorTy Start, IteratorTy End)
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
SmallVector< ValueTypeFromRangeType< R >, Size > to_vector(R &&Range)
Given a range of type R, iterate the entire range and return a SmallVector with elements of the vecto...
LLVM_ABI EHPersonality classifyEHPersonality(const Value *Pers)
See if the given exception handling personality function is one that we understand.
bool isa(const From &Val)
isa<X> - Return true if the parameter to the template is an instance of one of the template type argu...
format_object< Ts... > format(const char *Fmt, const Ts &... Vals)
These are helper functions used to produce formatted output.
constexpr std::string_view HybridPatchableTargetSuffix
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
@ Global
Append to llvm.global_dtors.
FunctionAddr VTableAddr uintptr_t uintptr_t Data
uint64_t alignTo(uint64_t Size, Align A)
Returns a multiple of A needed to store Size bytes.
DWARFExpression::Operation Op
ArrayRef(const T &OneElt) -> ArrayRef< T >
constexpr unsigned BitWidth
OutputIt move(R &&Range, OutputIt Out)
Provide wrappers to std::move which take ranges instead of having to pass begin/end explicitly.
decltype(auto) cast(const From &Val)
cast<X> - Return the argument parameter cast to the specified type.
auto seq(T Begin, T End)
Iterate over an integral type from Begin up to - but not including - End.
LLVM_ABI Constant * ConstantFoldIntegerCast(Constant *C, Type *DestTy, bool IsSigned, const DataLayout &DL)
Constant fold a zext, sext or trunc, depending on IsSigned and whether the DestTy is wider or narrowe...
LLVM_ABI Printable printReg(Register Reg, const TargetRegisterInfo *TRI=nullptr, unsigned SubIdx=0, const MachineRegisterInfo *MRI=nullptr)
Prints virtual and physical registers with or without a TRI instance.
@ MCSA_WeakDefAutoPrivate
.weak_def_can_be_hidden (MachO)
@ MCSA_Memtag
.memtag (ELF)
@ MCSA_WeakReference
.weak_reference (MachO)
@ MCSA_AltEntry
.alt_entry (MachO)
@ MCSA_ELF_TypeIndFunction
.type _foo, STT_GNU_IFUNC
@ MCSA_WeakDefinition
.weak_definition (MachO)
@ MCSA_Global
.type _foo, @gnu_unique_object
@ MCSA_ELF_TypeObject
.type _foo, STT_OBJECT # aka @object
@ MCSA_ELF_TypeFunction
.type _foo, STT_FUNC # aka @function
@ MCSA_Invalid
Not a valid directive.
@ MCSA_NoDeadStrip
.no_dead_strip (MachO)
int popcount(T Value) noexcept
Count the number of set bits in a value.
constexpr const char * PseudoProbeDescMetadataName
LLVM_ABI void reportFatalUsageError(Error Err)
Report a fatal error that does not indicate a bug in LLVM.
Implement std::hash so that hash_code can be used in STL containers.
void swap(llvm::BitVector &LHS, llvm::BitVector &RHS)
Implement std::swap in terms of BitVector swap.
static constexpr roundingMode rmNearestTiesToEven
static LLVM_ABI const fltSemantics & IEEEdouble() LLVM_READNONE
This struct is a compact representation of a valid (non-zero power of two) alignment.
Map a basic block section ID to the begin and end symbols of that section which determine the section...
llvm.global_ctors and llvm.global_dtors are arrays of Structor structs.
LLVM_ABI void emit(int, MCStreamer *) const
Machine model for scheduling, bundling, and heuristics.
static LLVM_ABI int computeInstrLatency(const MCSubtargetInfo &STI, const MCSchedClassDesc &SCDesc)
Returns the latency value for the scheduling class.
This struct is a compact representation of a valid (power of two) or undefined (0) alignment.