1 //===- lib/MC/MCContext.cpp - Machine Code Context ------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8
9 #include "llvm/MC/MCContext.h"
10 #include "llvm/ADT/DenseMapInfo.h"
11 #include "llvm/ADT/Optional.h"
12 #include "llvm/ADT/SmallString.h"
13 #include "llvm/ADT/SmallVector.h"
14 #include "llvm/ADT/StringMap.h"
15 #include "llvm/ADT/StringRef.h"
16 #include "llvm/ADT/Twine.h"
17 #include "llvm/BinaryFormat/COFF.h"
18 #include "llvm/BinaryFormat/ELF.h"
19 #include "llvm/BinaryFormat/Wasm.h"
20 #include "llvm/BinaryFormat/XCOFF.h"
21 #include "llvm/MC/MCAsmInfo.h"
22 #include "llvm/MC/MCCodeView.h"
23 #include "llvm/MC/MCDwarf.h"
24 #include "llvm/MC/MCExpr.h"
25 #include "llvm/MC/MCFragment.h"
26 #include "llvm/MC/MCInst.h"
27 #include "llvm/MC/MCLabel.h"
28 #include "llvm/MC/MCSectionCOFF.h"
29 #include "llvm/MC/MCSectionDXContainer.h"
30 #include "llvm/MC/MCSectionELF.h"
31 #include "llvm/MC/MCSectionGOFF.h"
32 #include "llvm/MC/MCSectionMachO.h"
33 #include "llvm/MC/MCSectionSPIRV.h"
34 #include "llvm/MC/MCSectionWasm.h"
35 #include "llvm/MC/MCSectionXCOFF.h"
36 #include "llvm/MC/MCStreamer.h"
37 #include "llvm/MC/MCSubtargetInfo.h"
38 #include "llvm/MC/MCSymbol.h"
39 #include "llvm/MC/MCSymbolCOFF.h"
40 #include "llvm/MC/MCSymbolELF.h"
41 #include "llvm/MC/MCSymbolGOFF.h"
42 #include "llvm/MC/MCSymbolMachO.h"
43 #include "llvm/MC/MCSymbolWasm.h"
44 #include "llvm/MC/MCSymbolXCOFF.h"
45 #include "llvm/MC/MCTargetOptions.h"
46 #include "llvm/MC/SectionKind.h"
47 #include "llvm/Support/Casting.h"
48 #include "llvm/Support/CommandLine.h"
49 #include "llvm/Support/ErrorHandling.h"
50 #include "llvm/Support/MemoryBuffer.h"
51 #include "llvm/Support/Path.h"
52 #include "llvm/Support/SMLoc.h"
53 #include "llvm/Support/SourceMgr.h"
54 #include "llvm/Support/raw_ostream.h"
55 #include <cassert>
56 #include <cstdlib>
57 #include <tuple>
58 #include <utility>
59
60 using namespace llvm;
61
62 static cl::opt<char*>
63 AsSecureLogFileName("as-secure-log-file-name",
64 cl::desc("As secure log file name (initialized from "
65 "AS_SECURE_LOG_FILE env variable)"),
66 cl::init(getenv("AS_SECURE_LOG_FILE")), cl::Hidden);
67
defaultDiagHandler(const SMDiagnostic & SMD,bool,const SourceMgr &,std::vector<const MDNode * > &)68 static void defaultDiagHandler(const SMDiagnostic &SMD, bool, const SourceMgr &,
69 std::vector<const MDNode *> &) {
70 SMD.print(nullptr, errs());
71 }
72
MCContext(const Triple & TheTriple,const MCAsmInfo * mai,const MCRegisterInfo * mri,const MCSubtargetInfo * msti,const SourceMgr * mgr,MCTargetOptions const * TargetOpts,bool DoAutoReset,StringRef Swift5ReflSegmentName)73 MCContext::MCContext(const Triple &TheTriple, const MCAsmInfo *mai,
74 const MCRegisterInfo *mri, const MCSubtargetInfo *msti,
75 const SourceMgr *mgr, MCTargetOptions const *TargetOpts,
76 bool DoAutoReset, StringRef Swift5ReflSegmentName)
77 : Swift5ReflectionSegmentName(Swift5ReflSegmentName), TT(TheTriple),
78 SrcMgr(mgr), InlineSrcMgr(nullptr), DiagHandler(defaultDiagHandler),
79 MAI(mai), MRI(mri), MSTI(msti), Symbols(Allocator), UsedNames(Allocator),
80 InlineAsmUsedLabelNames(Allocator),
81 CurrentDwarfLoc(0, 0, 0, DWARF2_FLAG_IS_STMT, 0, 0),
82 AutoReset(DoAutoReset), TargetOptions(TargetOpts) {
83 SecureLogFile = AsSecureLogFileName;
84
85 if (SrcMgr && SrcMgr->getNumBuffers())
86 MainFileName = std::string(SrcMgr->getMemoryBuffer(SrcMgr->getMainFileID())
87 ->getBufferIdentifier());
88
89 switch (TheTriple.getObjectFormat()) {
90 case Triple::MachO:
91 Env = IsMachO;
92 break;
93 case Triple::COFF:
94 if (!TheTriple.isOSWindows())
95 report_fatal_error(
96 "Cannot initialize MC for non-Windows COFF object files.");
97
98 Env = IsCOFF;
99 break;
100 case Triple::ELF:
101 Env = IsELF;
102 break;
103 case Triple::Wasm:
104 Env = IsWasm;
105 break;
106 case Triple::XCOFF:
107 Env = IsXCOFF;
108 break;
109 case Triple::GOFF:
110 Env = IsGOFF;
111 break;
112 case Triple::DXContainer:
113 Env = IsDXContainer;
114 break;
115 case Triple::SPIRV:
116 Env = IsSPIRV;
117 break;
118 case Triple::UnknownObjectFormat:
119 report_fatal_error("Cannot initialize MC for unknown object file format.");
120 break;
121 }
122 }
123
~MCContext()124 MCContext::~MCContext() {
125 if (AutoReset)
126 reset();
127
128 // NOTE: The symbols are all allocated out of a bump pointer allocator,
129 // we don't need to free them here.
130 }
131
initInlineSourceManager()132 void MCContext::initInlineSourceManager() {
133 if (!InlineSrcMgr)
134 InlineSrcMgr.reset(new SourceMgr());
135 }
136
137 //===----------------------------------------------------------------------===//
138 // Module Lifetime Management
139 //===----------------------------------------------------------------------===//
140
reset()141 void MCContext::reset() {
142 SrcMgr = nullptr;
143 InlineSrcMgr.reset();
144 LocInfos.clear();
145 DiagHandler = defaultDiagHandler;
146
147 // Call the destructors so the fragments are freed
148 COFFAllocator.DestroyAll();
149 DXCAllocator.DestroyAll();
150 ELFAllocator.DestroyAll();
151 GOFFAllocator.DestroyAll();
152 MachOAllocator.DestroyAll();
153 WasmAllocator.DestroyAll();
154 XCOFFAllocator.DestroyAll();
155 MCInstAllocator.DestroyAll();
156 SPIRVAllocator.DestroyAll();
157
158 MCSubtargetAllocator.DestroyAll();
159 InlineAsmUsedLabelNames.clear();
160 UsedNames.clear();
161 Symbols.clear();
162 Allocator.Reset();
163 Instances.clear();
164 CompilationDir.clear();
165 MainFileName.clear();
166 MCDwarfLineTablesCUMap.clear();
167 SectionsForRanges.clear();
168 MCGenDwarfLabelEntries.clear();
169 DwarfDebugFlags = StringRef();
170 DwarfCompileUnitID = 0;
171 CurrentDwarfLoc = MCDwarfLoc(0, 0, 0, DWARF2_FLAG_IS_STMT, 0, 0);
172
173 CVContext.reset();
174
175 MachOUniquingMap.clear();
176 ELFUniquingMap.clear();
177 GOFFUniquingMap.clear();
178 COFFUniquingMap.clear();
179 WasmUniquingMap.clear();
180 XCOFFUniquingMap.clear();
181 DXCUniquingMap.clear();
182
183 ELFEntrySizeMap.clear();
184 ELFSeenGenericMergeableSections.clear();
185
186 NextID.clear();
187 AllowTemporaryLabels = true;
188 DwarfLocSeen = false;
189 GenDwarfForAssembly = false;
190 GenDwarfFileNumber = 0;
191
192 HadError = false;
193 }
194
195 //===----------------------------------------------------------------------===//
196 // MCInst Management
197 //===----------------------------------------------------------------------===//
198
createMCInst()199 MCInst *MCContext::createMCInst() {
200 return new (MCInstAllocator.Allocate()) MCInst;
201 }
202
203 //===----------------------------------------------------------------------===//
204 // Symbol Manipulation
205 //===----------------------------------------------------------------------===//
206
getOrCreateSymbol(const Twine & Name)207 MCSymbol *MCContext::getOrCreateSymbol(const Twine &Name) {
208 SmallString<128> NameSV;
209 StringRef NameRef = Name.toStringRef(NameSV);
210
211 assert(!NameRef.empty() && "Normal symbols cannot be unnamed!");
212
213 MCSymbol *&Sym = Symbols[NameRef];
214 if (!Sym)
215 Sym = createSymbol(NameRef, false, false);
216
217 return Sym;
218 }
219
getOrCreateFrameAllocSymbol(StringRef FuncName,unsigned Idx)220 MCSymbol *MCContext::getOrCreateFrameAllocSymbol(StringRef FuncName,
221 unsigned Idx) {
222 return getOrCreateSymbol(Twine(MAI->getPrivateGlobalPrefix()) + FuncName +
223 "$frame_escape_" + Twine(Idx));
224 }
225
getOrCreateParentFrameOffsetSymbol(StringRef FuncName)226 MCSymbol *MCContext::getOrCreateParentFrameOffsetSymbol(StringRef FuncName) {
227 return getOrCreateSymbol(Twine(MAI->getPrivateGlobalPrefix()) + FuncName +
228 "$parent_frame_offset");
229 }
230
getOrCreateLSDASymbol(StringRef FuncName)231 MCSymbol *MCContext::getOrCreateLSDASymbol(StringRef FuncName) {
232 return getOrCreateSymbol(Twine(MAI->getPrivateGlobalPrefix()) + "__ehtable$" +
233 FuncName);
234 }
235
createSymbolImpl(const StringMapEntry<bool> * Name,bool IsTemporary)236 MCSymbol *MCContext::createSymbolImpl(const StringMapEntry<bool> *Name,
237 bool IsTemporary) {
238 static_assert(std::is_trivially_destructible<MCSymbolCOFF>(),
239 "MCSymbol classes must be trivially destructible");
240 static_assert(std::is_trivially_destructible<MCSymbolELF>(),
241 "MCSymbol classes must be trivially destructible");
242 static_assert(std::is_trivially_destructible<MCSymbolMachO>(),
243 "MCSymbol classes must be trivially destructible");
244 static_assert(std::is_trivially_destructible<MCSymbolWasm>(),
245 "MCSymbol classes must be trivially destructible");
246 static_assert(std::is_trivially_destructible<MCSymbolXCOFF>(),
247 "MCSymbol classes must be trivially destructible");
248
249 switch (getObjectFileType()) {
250 case MCContext::IsCOFF:
251 return new (Name, *this) MCSymbolCOFF(Name, IsTemporary);
252 case MCContext::IsELF:
253 return new (Name, *this) MCSymbolELF(Name, IsTemporary);
254 case MCContext::IsGOFF:
255 return new (Name, *this) MCSymbolGOFF(Name, IsTemporary);
256 case MCContext::IsMachO:
257 return new (Name, *this) MCSymbolMachO(Name, IsTemporary);
258 case MCContext::IsWasm:
259 return new (Name, *this) MCSymbolWasm(Name, IsTemporary);
260 case MCContext::IsXCOFF:
261 return createXCOFFSymbolImpl(Name, IsTemporary);
262 case MCContext::IsDXContainer:
263 break;
264 case MCContext::IsSPIRV:
265 return new (Name, *this)
266 MCSymbol(MCSymbol::SymbolKindUnset, Name, IsTemporary);
267 }
268 return new (Name, *this) MCSymbol(MCSymbol::SymbolKindUnset, Name,
269 IsTemporary);
270 }
271
createSymbol(StringRef Name,bool AlwaysAddSuffix,bool CanBeUnnamed)272 MCSymbol *MCContext::createSymbol(StringRef Name, bool AlwaysAddSuffix,
273 bool CanBeUnnamed) {
274 if (CanBeUnnamed && !UseNamesOnTempLabels)
275 return createSymbolImpl(nullptr, true);
276
277 // Determine whether this is a user written assembler temporary or normal
278 // label, if used.
279 bool IsTemporary = CanBeUnnamed;
280 if (AllowTemporaryLabels && !IsTemporary)
281 IsTemporary = Name.startswith(MAI->getPrivateGlobalPrefix());
282
283 SmallString<128> NewName = Name;
284 bool AddSuffix = AlwaysAddSuffix;
285 unsigned &NextUniqueID = NextID[Name];
286 while (true) {
287 if (AddSuffix) {
288 NewName.resize(Name.size());
289 raw_svector_ostream(NewName) << NextUniqueID++;
290 }
291 auto NameEntry = UsedNames.insert(std::make_pair(NewName.str(), true));
292 if (NameEntry.second || !NameEntry.first->second) {
293 // Ok, we found a name.
294 // Mark it as used for a non-section symbol.
295 NameEntry.first->second = true;
296 // Have the MCSymbol object itself refer to the copy of the string that is
297 // embedded in the UsedNames entry.
298 return createSymbolImpl(&*NameEntry.first, IsTemporary);
299 }
300 assert(IsTemporary && "Cannot rename non-temporary symbols");
301 AddSuffix = true;
302 }
303 llvm_unreachable("Infinite loop");
304 }
305
createTempSymbol(const Twine & Name,bool AlwaysAddSuffix)306 MCSymbol *MCContext::createTempSymbol(const Twine &Name, bool AlwaysAddSuffix) {
307 SmallString<128> NameSV;
308 raw_svector_ostream(NameSV) << MAI->getPrivateGlobalPrefix() << Name;
309 return createSymbol(NameSV, AlwaysAddSuffix, true);
310 }
311
createNamedTempSymbol(const Twine & Name)312 MCSymbol *MCContext::createNamedTempSymbol(const Twine &Name) {
313 SmallString<128> NameSV;
314 raw_svector_ostream(NameSV) << MAI->getPrivateGlobalPrefix() << Name;
315 return createSymbol(NameSV, true, false);
316 }
317
createLinkerPrivateTempSymbol()318 MCSymbol *MCContext::createLinkerPrivateTempSymbol() {
319 SmallString<128> NameSV;
320 raw_svector_ostream(NameSV) << MAI->getLinkerPrivateGlobalPrefix() << "tmp";
321 return createSymbol(NameSV, true, false);
322 }
323
createTempSymbol()324 MCSymbol *MCContext::createTempSymbol() { return createTempSymbol("tmp"); }
325
createNamedTempSymbol()326 MCSymbol *MCContext::createNamedTempSymbol() {
327 return createNamedTempSymbol("tmp");
328 }
329
NextInstance(unsigned LocalLabelVal)330 unsigned MCContext::NextInstance(unsigned LocalLabelVal) {
331 MCLabel *&Label = Instances[LocalLabelVal];
332 if (!Label)
333 Label = new (*this) MCLabel(0);
334 return Label->incInstance();
335 }
336
GetInstance(unsigned LocalLabelVal)337 unsigned MCContext::GetInstance(unsigned LocalLabelVal) {
338 MCLabel *&Label = Instances[LocalLabelVal];
339 if (!Label)
340 Label = new (*this) MCLabel(0);
341 return Label->getInstance();
342 }
343
getOrCreateDirectionalLocalSymbol(unsigned LocalLabelVal,unsigned Instance)344 MCSymbol *MCContext::getOrCreateDirectionalLocalSymbol(unsigned LocalLabelVal,
345 unsigned Instance) {
346 MCSymbol *&Sym = LocalSymbols[std::make_pair(LocalLabelVal, Instance)];
347 if (!Sym)
348 Sym = createNamedTempSymbol();
349 return Sym;
350 }
351
createDirectionalLocalSymbol(unsigned LocalLabelVal)352 MCSymbol *MCContext::createDirectionalLocalSymbol(unsigned LocalLabelVal) {
353 unsigned Instance = NextInstance(LocalLabelVal);
354 return getOrCreateDirectionalLocalSymbol(LocalLabelVal, Instance);
355 }
356
getDirectionalLocalSymbol(unsigned LocalLabelVal,bool Before)357 MCSymbol *MCContext::getDirectionalLocalSymbol(unsigned LocalLabelVal,
358 bool Before) {
359 unsigned Instance = GetInstance(LocalLabelVal);
360 if (!Before)
361 ++Instance;
362 return getOrCreateDirectionalLocalSymbol(LocalLabelVal, Instance);
363 }
364
lookupSymbol(const Twine & Name) const365 MCSymbol *MCContext::lookupSymbol(const Twine &Name) const {
366 SmallString<128> NameSV;
367 StringRef NameRef = Name.toStringRef(NameSV);
368 return Symbols.lookup(NameRef);
369 }
370
setSymbolValue(MCStreamer & Streamer,StringRef Sym,uint64_t Val)371 void MCContext::setSymbolValue(MCStreamer &Streamer,
372 StringRef Sym,
373 uint64_t Val) {
374 auto Symbol = getOrCreateSymbol(Sym);
375 Streamer.emitAssignment(Symbol, MCConstantExpr::create(Val, *this));
376 }
377
registerInlineAsmLabel(MCSymbol * Sym)378 void MCContext::registerInlineAsmLabel(MCSymbol *Sym) {
379 InlineAsmUsedLabelNames[Sym->getName()] = Sym;
380 }
381
382 MCSymbolXCOFF *
createXCOFFSymbolImpl(const StringMapEntry<bool> * Name,bool IsTemporary)383 MCContext::createXCOFFSymbolImpl(const StringMapEntry<bool> *Name,
384 bool IsTemporary) {
385 if (!Name)
386 return new (nullptr, *this) MCSymbolXCOFF(nullptr, IsTemporary);
387
388 StringRef OriginalName = Name->first();
389 if (OriginalName.startswith("._Renamed..") ||
390 OriginalName.startswith("_Renamed.."))
391 reportError(SMLoc(), "invalid symbol name from source");
392
393 if (MAI->isValidUnquotedName(OriginalName))
394 return new (Name, *this) MCSymbolXCOFF(Name, IsTemporary);
395
396 // Now we have a name that contains invalid character(s) for XCOFF symbol.
397 // Let's replace with something valid, but save the original name so that
398 // we could still use the original name in the symbol table.
399 SmallString<128> InvalidName(OriginalName);
400
401 // If it's an entry point symbol, we will keep the '.'
402 // in front for the convention purpose. Otherwise, add "_Renamed.."
403 // as prefix to signal this is an renamed symbol.
404 const bool IsEntryPoint = !InvalidName.empty() && InvalidName[0] == '.';
405 SmallString<128> ValidName =
406 StringRef(IsEntryPoint ? "._Renamed.." : "_Renamed..");
407
408 // Append the hex values of '_' and invalid characters with "_Renamed..";
409 // at the same time replace invalid characters with '_'.
410 for (size_t I = 0; I < InvalidName.size(); ++I) {
411 if (!MAI->isAcceptableChar(InvalidName[I]) || InvalidName[I] == '_') {
412 raw_svector_ostream(ValidName).write_hex(InvalidName[I]);
413 InvalidName[I] = '_';
414 }
415 }
416
417 // Skip entry point symbol's '.' as we already have a '.' in front of
418 // "_Renamed".
419 if (IsEntryPoint)
420 ValidName.append(InvalidName.substr(1, InvalidName.size() - 1));
421 else
422 ValidName.append(InvalidName);
423
424 auto NameEntry = UsedNames.insert(std::make_pair(ValidName.str(), true));
425 assert((NameEntry.second || !NameEntry.first->second) &&
426 "This name is used somewhere else.");
427 // Mark the name as used for a non-section symbol.
428 NameEntry.first->second = true;
429 // Have the MCSymbol object itself refer to the copy of the string
430 // that is embedded in the UsedNames entry.
431 MCSymbolXCOFF *XSym = new (&*NameEntry.first, *this)
432 MCSymbolXCOFF(&*NameEntry.first, IsTemporary);
433 XSym->setSymbolTableName(MCSymbolXCOFF::getUnqualifiedName(OriginalName));
434 return XSym;
435 }
436
437 //===----------------------------------------------------------------------===//
438 // Section Management
439 //===----------------------------------------------------------------------===//
440
getMachOSection(StringRef Segment,StringRef Section,unsigned TypeAndAttributes,unsigned Reserved2,SectionKind Kind,const char * BeginSymName)441 MCSectionMachO *MCContext::getMachOSection(StringRef Segment, StringRef Section,
442 unsigned TypeAndAttributes,
443 unsigned Reserved2, SectionKind Kind,
444 const char *BeginSymName) {
445 // We unique sections by their segment/section pair. The returned section
446 // may not have the same flags as the requested section, if so this should be
447 // diagnosed by the client as an error.
448
449 // Form the name to look up.
450 assert(Section.size() <= 16 && "section name is too long");
451 assert(!memchr(Section.data(), '\0', Section.size()) &&
452 "section name cannot contain NUL");
453
454 // Do the lookup, if we have a hit, return it.
455 auto R = MachOUniquingMap.try_emplace((Segment + Twine(',') + Section).str());
456 if (!R.second)
457 return R.first->second;
458
459 MCSymbol *Begin = nullptr;
460 if (BeginSymName)
461 Begin = createTempSymbol(BeginSymName, false);
462
463 // Otherwise, return a new section.
464 StringRef Name = R.first->first();
465 R.first->second = new (MachOAllocator.Allocate())
466 MCSectionMachO(Segment, Name.substr(Name.size() - Section.size()),
467 TypeAndAttributes, Reserved2, Kind, Begin);
468 return R.first->second;
469 }
470
createELFSectionImpl(StringRef Section,unsigned Type,unsigned Flags,SectionKind K,unsigned EntrySize,const MCSymbolELF * Group,bool Comdat,unsigned UniqueID,const MCSymbolELF * LinkedToSym)471 MCSectionELF *MCContext::createELFSectionImpl(StringRef Section, unsigned Type,
472 unsigned Flags, SectionKind K,
473 unsigned EntrySize,
474 const MCSymbolELF *Group,
475 bool Comdat, unsigned UniqueID,
476 const MCSymbolELF *LinkedToSym) {
477 MCSymbolELF *R;
478 MCSymbol *&Sym = Symbols[Section];
479 // A section symbol can not redefine regular symbols. There may be multiple
480 // sections with the same name, in which case the first such section wins.
481 if (Sym && Sym->isDefined() &&
482 (!Sym->isInSection() || Sym->getSection().getBeginSymbol() != Sym))
483 reportError(SMLoc(), "invalid symbol redefinition");
484 if (Sym && Sym->isUndefined()) {
485 R = cast<MCSymbolELF>(Sym);
486 } else {
487 auto NameIter = UsedNames.insert(std::make_pair(Section, false)).first;
488 R = new (&*NameIter, *this) MCSymbolELF(&*NameIter, /*isTemporary*/ false);
489 if (!Sym)
490 Sym = R;
491 }
492 R->setBinding(ELF::STB_LOCAL);
493 R->setType(ELF::STT_SECTION);
494
495 auto *Ret = new (ELFAllocator.Allocate())
496 MCSectionELF(Section, Type, Flags, K, EntrySize, Group, Comdat, UniqueID,
497 R, LinkedToSym);
498
499 auto *F = new MCDataFragment();
500 Ret->getFragmentList().insert(Ret->begin(), F);
501 F->setParent(Ret);
502 R->setFragment(F);
503
504 return Ret;
505 }
506
createELFRelSection(const Twine & Name,unsigned Type,unsigned Flags,unsigned EntrySize,const MCSymbolELF * Group,const MCSectionELF * RelInfoSection)507 MCSectionELF *MCContext::createELFRelSection(const Twine &Name, unsigned Type,
508 unsigned Flags, unsigned EntrySize,
509 const MCSymbolELF *Group,
510 const MCSectionELF *RelInfoSection) {
511 StringMap<bool>::iterator I;
512 bool Inserted;
513 std::tie(I, Inserted) =
514 RelSecNames.insert(std::make_pair(Name.str(), true));
515
516 return createELFSectionImpl(
517 I->getKey(), Type, Flags, SectionKind::getReadOnly(), EntrySize, Group,
518 true, true, cast<MCSymbolELF>(RelInfoSection->getBeginSymbol()));
519 }
520
getELFNamedSection(const Twine & Prefix,const Twine & Suffix,unsigned Type,unsigned Flags,unsigned EntrySize)521 MCSectionELF *MCContext::getELFNamedSection(const Twine &Prefix,
522 const Twine &Suffix, unsigned Type,
523 unsigned Flags,
524 unsigned EntrySize) {
525 return getELFSection(Prefix + "." + Suffix, Type, Flags, EntrySize, Suffix,
526 /*IsComdat=*/true);
527 }
528
getELFSection(const Twine & Section,unsigned Type,unsigned Flags,unsigned EntrySize,const Twine & Group,bool IsComdat,unsigned UniqueID,const MCSymbolELF * LinkedToSym)529 MCSectionELF *MCContext::getELFSection(const Twine &Section, unsigned Type,
530 unsigned Flags, unsigned EntrySize,
531 const Twine &Group, bool IsComdat,
532 unsigned UniqueID,
533 const MCSymbolELF *LinkedToSym) {
534 MCSymbolELF *GroupSym = nullptr;
535 if (!Group.isTriviallyEmpty() && !Group.str().empty())
536 GroupSym = cast<MCSymbolELF>(getOrCreateSymbol(Group));
537
538 return getELFSection(Section, Type, Flags, EntrySize, GroupSym, IsComdat,
539 UniqueID, LinkedToSym);
540 }
541
getELFSection(const Twine & Section,unsigned Type,unsigned Flags,unsigned EntrySize,const MCSymbolELF * GroupSym,bool IsComdat,unsigned UniqueID,const MCSymbolELF * LinkedToSym)542 MCSectionELF *MCContext::getELFSection(const Twine &Section, unsigned Type,
543 unsigned Flags, unsigned EntrySize,
544 const MCSymbolELF *GroupSym,
545 bool IsComdat, unsigned UniqueID,
546 const MCSymbolELF *LinkedToSym) {
547 StringRef Group = "";
548 if (GroupSym)
549 Group = GroupSym->getName();
550 assert(!(LinkedToSym && LinkedToSym->getName().empty()));
551 // Do the lookup, if we have a hit, return it.
552 auto IterBool = ELFUniquingMap.insert(std::make_pair(
553 ELFSectionKey{Section.str(), Group,
554 LinkedToSym ? LinkedToSym->getName() : "", UniqueID},
555 nullptr));
556 auto &Entry = *IterBool.first;
557 if (!IterBool.second)
558 return Entry.second;
559
560 StringRef CachedName = Entry.first.SectionName;
561
562 SectionKind Kind;
563 if (Flags & ELF::SHF_ARM_PURECODE)
564 Kind = SectionKind::getExecuteOnly();
565 else if (Flags & ELF::SHF_EXECINSTR)
566 Kind = SectionKind::getText();
567 else
568 Kind = SectionKind::getReadOnly();
569
570 MCSectionELF *Result =
571 createELFSectionImpl(CachedName, Type, Flags, Kind, EntrySize, GroupSym,
572 IsComdat, UniqueID, LinkedToSym);
573 Entry.second = Result;
574
575 recordELFMergeableSectionInfo(Result->getName(), Result->getFlags(),
576 Result->getUniqueID(), Result->getEntrySize());
577
578 return Result;
579 }
580
createELFGroupSection(const MCSymbolELF * Group,bool IsComdat)581 MCSectionELF *MCContext::createELFGroupSection(const MCSymbolELF *Group,
582 bool IsComdat) {
583 return createELFSectionImpl(".group", ELF::SHT_GROUP, 0,
584 SectionKind::getReadOnly(), 4, Group, IsComdat,
585 MCSection::NonUniqueID, nullptr);
586 }
587
recordELFMergeableSectionInfo(StringRef SectionName,unsigned Flags,unsigned UniqueID,unsigned EntrySize)588 void MCContext::recordELFMergeableSectionInfo(StringRef SectionName,
589 unsigned Flags, unsigned UniqueID,
590 unsigned EntrySize) {
591 bool IsMergeable = Flags & ELF::SHF_MERGE;
592 if (UniqueID == GenericSectionID)
593 ELFSeenGenericMergeableSections.insert(SectionName);
594
595 // For mergeable sections or non-mergeable sections with a generic mergeable
596 // section name we enter their Unique ID into the ELFEntrySizeMap so that
597 // compatible globals can be assigned to the same section.
598 if (IsMergeable || isELFGenericMergeableSection(SectionName)) {
599 ELFEntrySizeMap.insert(std::make_pair(
600 ELFEntrySizeKey{SectionName, Flags, EntrySize}, UniqueID));
601 }
602 }
603
isELFImplicitMergeableSectionNamePrefix(StringRef SectionName)604 bool MCContext::isELFImplicitMergeableSectionNamePrefix(StringRef SectionName) {
605 return SectionName.startswith(".rodata.str") ||
606 SectionName.startswith(".rodata.cst");
607 }
608
isELFGenericMergeableSection(StringRef SectionName)609 bool MCContext::isELFGenericMergeableSection(StringRef SectionName) {
610 return isELFImplicitMergeableSectionNamePrefix(SectionName) ||
611 ELFSeenGenericMergeableSections.count(SectionName);
612 }
613
getELFUniqueIDForEntsize(StringRef SectionName,unsigned Flags,unsigned EntrySize)614 Optional<unsigned> MCContext::getELFUniqueIDForEntsize(StringRef SectionName,
615 unsigned Flags,
616 unsigned EntrySize) {
617 auto I = ELFEntrySizeMap.find(
618 MCContext::ELFEntrySizeKey{SectionName, Flags, EntrySize});
619 return (I != ELFEntrySizeMap.end()) ? Optional<unsigned>(I->second) : None;
620 }
621
getGOFFSection(StringRef Section,SectionKind Kind,MCSection * Parent,const MCExpr * SubsectionId)622 MCSectionGOFF *MCContext::getGOFFSection(StringRef Section, SectionKind Kind,
623 MCSection *Parent,
624 const MCExpr *SubsectionId) {
625 // Do the lookup. If we don't have a hit, return a new section.
626 auto &GOFFSection = GOFFUniquingMap[Section.str()];
627 if (!GOFFSection)
628 GOFFSection = new (GOFFAllocator.Allocate())
629 MCSectionGOFF(Section, Kind, Parent, SubsectionId);
630
631 return GOFFSection;
632 }
633
getCOFFSection(StringRef Section,unsigned Characteristics,SectionKind Kind,StringRef COMDATSymName,int Selection,unsigned UniqueID,const char * BeginSymName)634 MCSectionCOFF *MCContext::getCOFFSection(StringRef Section,
635 unsigned Characteristics,
636 SectionKind Kind,
637 StringRef COMDATSymName, int Selection,
638 unsigned UniqueID,
639 const char *BeginSymName) {
640 MCSymbol *COMDATSymbol = nullptr;
641 if (!COMDATSymName.empty()) {
642 COMDATSymbol = getOrCreateSymbol(COMDATSymName);
643 COMDATSymName = COMDATSymbol->getName();
644 }
645
646
647 // Do the lookup, if we have a hit, return it.
648 COFFSectionKey T{Section, COMDATSymName, Selection, UniqueID};
649 auto IterBool = COFFUniquingMap.insert(std::make_pair(T, nullptr));
650 auto Iter = IterBool.first;
651 if (!IterBool.second)
652 return Iter->second;
653
654 MCSymbol *Begin = nullptr;
655 if (BeginSymName)
656 Begin = createTempSymbol(BeginSymName, false);
657
658 StringRef CachedName = Iter->first.SectionName;
659 MCSectionCOFF *Result = new (COFFAllocator.Allocate()) MCSectionCOFF(
660 CachedName, Characteristics, COMDATSymbol, Selection, Kind, Begin);
661
662 Iter->second = Result;
663 return Result;
664 }
665
getCOFFSection(StringRef Section,unsigned Characteristics,SectionKind Kind,const char * BeginSymName)666 MCSectionCOFF *MCContext::getCOFFSection(StringRef Section,
667 unsigned Characteristics,
668 SectionKind Kind,
669 const char *BeginSymName) {
670 return getCOFFSection(Section, Characteristics, Kind, "", 0, GenericSectionID,
671 BeginSymName);
672 }
673
getAssociativeCOFFSection(MCSectionCOFF * Sec,const MCSymbol * KeySym,unsigned UniqueID)674 MCSectionCOFF *MCContext::getAssociativeCOFFSection(MCSectionCOFF *Sec,
675 const MCSymbol *KeySym,
676 unsigned UniqueID) {
677 // Return the normal section if we don't have to be associative or unique.
678 if (!KeySym && UniqueID == GenericSectionID)
679 return Sec;
680
681 // If we have a key symbol, make an associative section with the same name and
682 // kind as the normal section.
683 unsigned Characteristics = Sec->getCharacteristics();
684 if (KeySym) {
685 Characteristics |= COFF::IMAGE_SCN_LNK_COMDAT;
686 return getCOFFSection(Sec->getName(), Characteristics, Sec->getKind(),
687 KeySym->getName(),
688 COFF::IMAGE_COMDAT_SELECT_ASSOCIATIVE, UniqueID);
689 }
690
691 return getCOFFSection(Sec->getName(), Characteristics, Sec->getKind(), "", 0,
692 UniqueID);
693 }
694
getWasmSection(const Twine & Section,SectionKind K,unsigned Flags,const Twine & Group,unsigned UniqueID,const char * BeginSymName)695 MCSectionWasm *MCContext::getWasmSection(const Twine &Section, SectionKind K,
696 unsigned Flags, const Twine &Group,
697 unsigned UniqueID,
698 const char *BeginSymName) {
699 MCSymbolWasm *GroupSym = nullptr;
700 if (!Group.isTriviallyEmpty() && !Group.str().empty()) {
701 GroupSym = cast<MCSymbolWasm>(getOrCreateSymbol(Group));
702 GroupSym->setComdat(true);
703 }
704
705 return getWasmSection(Section, K, Flags, GroupSym, UniqueID, BeginSymName);
706 }
707
getWasmSection(const Twine & Section,SectionKind Kind,unsigned Flags,const MCSymbolWasm * GroupSym,unsigned UniqueID,const char * BeginSymName)708 MCSectionWasm *MCContext::getWasmSection(const Twine &Section, SectionKind Kind,
709 unsigned Flags,
710 const MCSymbolWasm *GroupSym,
711 unsigned UniqueID,
712 const char *BeginSymName) {
713 StringRef Group = "";
714 if (GroupSym)
715 Group = GroupSym->getName();
716 // Do the lookup, if we have a hit, return it.
717 auto IterBool = WasmUniquingMap.insert(
718 std::make_pair(WasmSectionKey{Section.str(), Group, UniqueID}, nullptr));
719 auto &Entry = *IterBool.first;
720 if (!IterBool.second)
721 return Entry.second;
722
723 StringRef CachedName = Entry.first.SectionName;
724
725 MCSymbol *Begin = createSymbol(CachedName, true, false);
726 Symbols[Begin->getName()] = Begin;
727 cast<MCSymbolWasm>(Begin)->setType(wasm::WASM_SYMBOL_TYPE_SECTION);
728
729 MCSectionWasm *Result = new (WasmAllocator.Allocate())
730 MCSectionWasm(CachedName, Kind, Flags, GroupSym, UniqueID, Begin);
731 Entry.second = Result;
732
733 auto *F = new MCDataFragment();
734 Result->getFragmentList().insert(Result->begin(), F);
735 F->setParent(Result);
736 Begin->setFragment(F);
737
738 return Result;
739 }
740
hasXCOFFSection(StringRef Section,XCOFF::CsectProperties CsectProp) const741 bool MCContext::hasXCOFFSection(StringRef Section,
742 XCOFF::CsectProperties CsectProp) const {
743 return XCOFFUniquingMap.count(
744 XCOFFSectionKey(Section.str(), CsectProp.MappingClass)) != 0;
745 }
746
getXCOFFSection(StringRef Section,SectionKind Kind,Optional<XCOFF::CsectProperties> CsectProp,bool MultiSymbolsAllowed,const char * BeginSymName,Optional<XCOFF::DwarfSectionSubtypeFlags> DwarfSectionSubtypeFlags)747 MCSectionXCOFF *MCContext::getXCOFFSection(
748 StringRef Section, SectionKind Kind,
749 Optional<XCOFF::CsectProperties> CsectProp, bool MultiSymbolsAllowed,
750 const char *BeginSymName,
751 Optional<XCOFF::DwarfSectionSubtypeFlags> DwarfSectionSubtypeFlags) {
752 bool IsDwarfSec = DwarfSectionSubtypeFlags.has_value();
753 assert((IsDwarfSec != CsectProp.has_value()) && "Invalid XCOFF section!");
754
755 // Do the lookup. If we have a hit, return it.
756 auto IterBool = XCOFFUniquingMap.insert(std::make_pair(
757 IsDwarfSec
758 ? XCOFFSectionKey(Section.str(), DwarfSectionSubtypeFlags.value())
759 : XCOFFSectionKey(Section.str(), CsectProp->MappingClass),
760 nullptr));
761 auto &Entry = *IterBool.first;
762 if (!IterBool.second) {
763 MCSectionXCOFF *ExistedEntry = Entry.second;
764 if (ExistedEntry->isMultiSymbolsAllowed() != MultiSymbolsAllowed)
765 report_fatal_error("section's multiply symbols policy does not match");
766
767 return ExistedEntry;
768 }
769
770 // Otherwise, return a new section.
771 StringRef CachedName = Entry.first.SectionName;
772 MCSymbolXCOFF *QualName = nullptr;
773 // Debug section don't have storage class attribute.
774 if (IsDwarfSec)
775 QualName = cast<MCSymbolXCOFF>(getOrCreateSymbol(CachedName));
776 else
777 QualName = cast<MCSymbolXCOFF>(getOrCreateSymbol(
778 CachedName + "[" +
779 XCOFF::getMappingClassString(CsectProp->MappingClass) + "]"));
780
781 MCSymbol *Begin = nullptr;
782 if (BeginSymName)
783 Begin = createTempSymbol(BeginSymName, false);
784
785 // QualName->getUnqualifiedName() and CachedName are the same except when
786 // CachedName contains invalid character(s) such as '$' for an XCOFF symbol.
787 MCSectionXCOFF *Result = nullptr;
788 if (IsDwarfSec)
789 Result = new (XCOFFAllocator.Allocate())
790 MCSectionXCOFF(QualName->getUnqualifiedName(), Kind, QualName,
791 DwarfSectionSubtypeFlags.value(), Begin, CachedName,
792 MultiSymbolsAllowed);
793 else
794 Result = new (XCOFFAllocator.Allocate())
795 MCSectionXCOFF(QualName->getUnqualifiedName(), CsectProp->MappingClass,
796 CsectProp->Type, Kind, QualName, Begin, CachedName,
797 MultiSymbolsAllowed);
798
799 Entry.second = Result;
800
801 auto *F = new MCDataFragment();
802 Result->getFragmentList().insert(Result->begin(), F);
803 F->setParent(Result);
804
805 if (Begin)
806 Begin->setFragment(F);
807
808 return Result;
809 }
810
getSPIRVSection()811 MCSectionSPIRV *MCContext::getSPIRVSection() {
812 MCSymbol *Begin = nullptr;
813 MCSectionSPIRV *Result = new (SPIRVAllocator.Allocate())
814 MCSectionSPIRV(SectionKind::getText(), Begin);
815
816 auto *F = new MCDataFragment();
817 Result->getFragmentList().insert(Result->begin(), F);
818 F->setParent(Result);
819
820 if (Begin)
821 Begin->setFragment(F);
822
823 return Result;
824 }
825
getDXContainerSection(StringRef Section,SectionKind K)826 MCSectionDXContainer *MCContext::getDXContainerSection(StringRef Section,
827 SectionKind K) {
828 // Do the lookup, if we have a hit, return it.
829 auto ItInsertedPair = DXCUniquingMap.try_emplace(Section);
830 if (!ItInsertedPair.second)
831 return ItInsertedPair.first->second;
832
833 auto MapIt = ItInsertedPair.first;
834 // Grab the name from the StringMap. Since the Section is going to keep a
835 // copy of this StringRef we need to make sure the underlying string stays
836 // alive as long as we need it.
837 StringRef Name = MapIt->first();
838 MapIt->second =
839 new (DXCAllocator.Allocate()) MCSectionDXContainer(Name, K, nullptr);
840
841 // The first fragment will store the header
842 auto *F = new MCDataFragment();
843 MapIt->second->getFragmentList().insert(MapIt->second->begin(), F);
844 F->setParent(MapIt->second);
845
846 return MapIt->second;
847 }
848
getSubtargetCopy(const MCSubtargetInfo & STI)849 MCSubtargetInfo &MCContext::getSubtargetCopy(const MCSubtargetInfo &STI) {
850 return *new (MCSubtargetAllocator.Allocate()) MCSubtargetInfo(STI);
851 }
852
addDebugPrefixMapEntry(const std::string & From,const std::string & To)853 void MCContext::addDebugPrefixMapEntry(const std::string &From,
854 const std::string &To) {
855 DebugPrefixMap.insert(std::make_pair(From, To));
856 }
857
remapDebugPath(SmallVectorImpl<char> & Path)858 void MCContext::remapDebugPath(SmallVectorImpl<char> &Path) {
859 for (const auto &V : DebugPrefixMap)
860 if (llvm::sys::path::replace_path_prefix(Path, V.first, V.second))
861 break;
862 }
863
RemapDebugPaths()864 void MCContext::RemapDebugPaths() {
865 const auto &DebugPrefixMap = this->DebugPrefixMap;
866 if (DebugPrefixMap.empty())
867 return;
868
869 // Remap compilation directory.
870 remapDebugPath(CompilationDir);
871
872 // Remap MCDwarfDirs and RootFile.Name in all compilation units.
873 SmallString<256> P;
874 for (auto &CUIDTablePair : MCDwarfLineTablesCUMap) {
875 for (auto &Dir : CUIDTablePair.second.getMCDwarfDirs()) {
876 P = Dir;
877 remapDebugPath(P);
878 Dir = std::string(P);
879 }
880
881 // Used by DW_TAG_compile_unit's DT_AT_name and DW_TAG_label's
882 // DW_AT_decl_file for DWARF v5 generated for assembly source.
883 P = CUIDTablePair.second.getRootFile().Name;
884 remapDebugPath(P);
885 CUIDTablePair.second.getRootFile().Name = std::string(P);
886 }
887 }
888
889 //===----------------------------------------------------------------------===//
890 // Dwarf Management
891 //===----------------------------------------------------------------------===//
892
emitDwarfUnwindInfo() const893 EmitDwarfUnwindType MCContext::emitDwarfUnwindInfo() const {
894 if (!TargetOptions)
895 return EmitDwarfUnwindType::Default;
896 return TargetOptions->EmitDwarfUnwind;
897 }
898
setGenDwarfRootFile(StringRef InputFileName,StringRef Buffer)899 void MCContext::setGenDwarfRootFile(StringRef InputFileName, StringRef Buffer) {
900 // MCDwarf needs the root file as well as the compilation directory.
901 // If we find a '.file 0' directive that will supersede these values.
902 Optional<MD5::MD5Result> Cksum;
903 if (getDwarfVersion() >= 5) {
904 MD5 Hash;
905 MD5::MD5Result Sum;
906 Hash.update(Buffer);
907 Hash.final(Sum);
908 Cksum = Sum;
909 }
910 // Canonicalize the root filename. It cannot be empty, and should not
911 // repeat the compilation dir.
912 // The MCContext ctor initializes MainFileName to the name associated with
913 // the SrcMgr's main file ID, which might be the same as InputFileName (and
914 // possibly include directory components).
915 // Or, MainFileName might have been overridden by a -main-file-name option,
916 // which is supposed to be just a base filename with no directory component.
917 // So, if the InputFileName and MainFileName are not equal, assume
918 // MainFileName is a substitute basename and replace the last component.
919 SmallString<1024> FileNameBuf = InputFileName;
920 if (FileNameBuf.empty() || FileNameBuf == "-")
921 FileNameBuf = "<stdin>";
922 if (!getMainFileName().empty() && FileNameBuf != getMainFileName()) {
923 llvm::sys::path::remove_filename(FileNameBuf);
924 llvm::sys::path::append(FileNameBuf, getMainFileName());
925 }
926 StringRef FileName = FileNameBuf;
927 if (FileName.consume_front(getCompilationDir()))
928 if (llvm::sys::path::is_separator(FileName.front()))
929 FileName = FileName.drop_front();
930 assert(!FileName.empty());
931 setMCLineTableRootFile(
932 /*CUID=*/0, getCompilationDir(), FileName, Cksum, None);
933 }
934
935 /// getDwarfFile - takes a file name and number to place in the dwarf file and
936 /// directory tables. If the file number has already been allocated it is an
937 /// error and zero is returned and the client reports the error, else the
938 /// allocated file number is returned. The file numbers may be in any order.
getDwarfFile(StringRef Directory,StringRef FileName,unsigned FileNumber,Optional<MD5::MD5Result> Checksum,Optional<StringRef> Source,unsigned CUID)939 Expected<unsigned> MCContext::getDwarfFile(StringRef Directory,
940 StringRef FileName,
941 unsigned FileNumber,
942 Optional<MD5::MD5Result> Checksum,
943 Optional<StringRef> Source,
944 unsigned CUID) {
945 MCDwarfLineTable &Table = MCDwarfLineTablesCUMap[CUID];
946 return Table.tryGetFile(Directory, FileName, Checksum, Source, DwarfVersion,
947 FileNumber);
948 }
949
950 /// isValidDwarfFileNumber - takes a dwarf file number and returns true if it
951 /// currently is assigned and false otherwise.
isValidDwarfFileNumber(unsigned FileNumber,unsigned CUID)952 bool MCContext::isValidDwarfFileNumber(unsigned FileNumber, unsigned CUID) {
953 const MCDwarfLineTable &LineTable = getMCDwarfLineTable(CUID);
954 if (FileNumber == 0)
955 return getDwarfVersion() >= 5;
956 if (FileNumber >= LineTable.getMCDwarfFiles().size())
957 return false;
958
959 return !LineTable.getMCDwarfFiles()[FileNumber].Name.empty();
960 }
961
962 /// Remove empty sections from SectionsForRanges, to avoid generating
963 /// useless debug info for them.
finalizeDwarfSections(MCStreamer & MCOS)964 void MCContext::finalizeDwarfSections(MCStreamer &MCOS) {
965 SectionsForRanges.remove_if(
966 [&](MCSection *Sec) { return !MCOS.mayHaveInstructions(*Sec); });
967 }
968
getCVContext()969 CodeViewContext &MCContext::getCVContext() {
970 if (!CVContext)
971 CVContext.reset(new CodeViewContext);
972 return *CVContext;
973 }
974
975 //===----------------------------------------------------------------------===//
976 // Error Reporting
977 //===----------------------------------------------------------------------===//
978
diagnose(const SMDiagnostic & SMD)979 void MCContext::diagnose(const SMDiagnostic &SMD) {
980 assert(DiagHandler && "MCContext::DiagHandler is not set");
981 bool UseInlineSrcMgr = false;
982 const SourceMgr *SMP = nullptr;
983 if (SrcMgr) {
984 SMP = SrcMgr;
985 } else if (InlineSrcMgr) {
986 SMP = InlineSrcMgr.get();
987 UseInlineSrcMgr = true;
988 } else
989 llvm_unreachable("Either SourceMgr should be available");
990 DiagHandler(SMD, UseInlineSrcMgr, *SMP, LocInfos);
991 }
992
reportCommon(SMLoc Loc,std::function<void (SMDiagnostic &,const SourceMgr *)> GetMessage)993 void MCContext::reportCommon(
994 SMLoc Loc,
995 std::function<void(SMDiagnostic &, const SourceMgr *)> GetMessage) {
996 // * MCContext::SrcMgr is null when the MC layer emits machine code for input
997 // other than assembly file, say, for .c/.cpp/.ll/.bc.
998 // * MCContext::InlineSrcMgr is null when the inline asm is not used.
999 // * A default SourceMgr is needed for diagnosing when both MCContext::SrcMgr
1000 // and MCContext::InlineSrcMgr are null.
1001 SourceMgr SM;
1002 const SourceMgr *SMP = &SM;
1003 bool UseInlineSrcMgr = false;
1004
1005 // FIXME: Simplify these by combining InlineSrcMgr & SrcMgr.
1006 // For MC-only execution, only SrcMgr is used;
1007 // For non MC-only execution, InlineSrcMgr is only ctor'd if there is
1008 // inline asm in the IR.
1009 if (Loc.isValid()) {
1010 if (SrcMgr) {
1011 SMP = SrcMgr;
1012 } else if (InlineSrcMgr) {
1013 SMP = InlineSrcMgr.get();
1014 UseInlineSrcMgr = true;
1015 } else
1016 llvm_unreachable("Either SourceMgr should be available");
1017 }
1018
1019 SMDiagnostic D;
1020 GetMessage(D, SMP);
1021 DiagHandler(D, UseInlineSrcMgr, *SMP, LocInfos);
1022 }
1023
reportError(SMLoc Loc,const Twine & Msg)1024 void MCContext::reportError(SMLoc Loc, const Twine &Msg) {
1025 HadError = true;
1026 reportCommon(Loc, [&](SMDiagnostic &D, const SourceMgr *SMP) {
1027 D = SMP->GetMessage(Loc, SourceMgr::DK_Error, Msg);
1028 });
1029 }
1030
reportWarning(SMLoc Loc,const Twine & Msg)1031 void MCContext::reportWarning(SMLoc Loc, const Twine &Msg) {
1032 if (TargetOptions && TargetOptions->MCNoWarn)
1033 return;
1034 if (TargetOptions && TargetOptions->MCFatalWarnings) {
1035 reportError(Loc, Msg);
1036 } else {
1037 reportCommon(Loc, [&](SMDiagnostic &D, const SourceMgr *SMP) {
1038 D = SMP->GetMessage(Loc, SourceMgr::DK_Warning, Msg);
1039 });
1040 }
1041 }
1042