LLVM 22.0.0git
MCCodeView.cpp
Go to the documentation of this file.
1//===- MCCodeView.h - Machine Code CodeView support -------------*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// Holds state from .cv_file and .cv_loc directives for later emission.
10//
11//===----------------------------------------------------------------------===//
12
13#include "llvm/MC/MCCodeView.h"
14#include "llvm/ADT/STLExtras.h"
19#include "llvm/MC/MCAssembler.h"
20#include "llvm/MC/MCContext.h"
22#include "llvm/MC/MCValue.h"
24
25using namespace llvm;
26using namespace llvm::codeview;
27
29 if (!StrTabFragment)
30 return;
31 assert(StrTabFragment->getKind() == MCFragment::FT_Data);
32 StrTabFragment->setVarContents(StrTab);
33}
34
35/// This is a valid number for use with .cv_loc if we've already seen a .cv_file
36/// for it.
37bool CodeViewContext::isValidFileNumber(unsigned FileNumber) const {
38 unsigned Idx = FileNumber - 1;
39 if (Idx < Files.size())
40 return Files[Idx].Assigned;
41 return false;
42}
43
44bool CodeViewContext::addFile(MCStreamer &OS, unsigned FileNumber,
45 StringRef Filename,
46 ArrayRef<uint8_t> ChecksumBytes,
47 uint8_t ChecksumKind) {
48 assert(FileNumber > 0);
49 auto FilenameOffset = addToStringTable(Filename);
50 Filename = FilenameOffset.first;
51 unsigned Idx = FileNumber - 1;
52 if (Idx >= Files.size())
53 Files.resize(Idx + 1);
54
55 if (Filename.empty())
56 Filename = "<stdin>";
57
58 if (Files[Idx].Assigned)
59 return false;
60
61 FilenameOffset = addToStringTable(Filename);
62 Filename = FilenameOffset.first;
63 unsigned Offset = FilenameOffset.second;
64
65 auto ChecksumOffsetSymbol =
66 OS.getContext().createTempSymbol("checksum_offset", false);
67 Files[Idx].StringTableOffset = Offset;
68 Files[Idx].ChecksumTableOffset = ChecksumOffsetSymbol;
69 Files[Idx].Assigned = true;
70 Files[Idx].Checksum = ChecksumBytes;
71 Files[Idx].ChecksumKind = ChecksumKind;
72
73 return true;
74}
75
77 if (FuncId >= Functions.size())
78 return nullptr;
79 if (Functions[FuncId].isUnallocatedFunctionInfo())
80 return nullptr;
81 return &Functions[FuncId];
82}
83
85 if (FuncId >= Functions.size())
86 Functions.resize(FuncId + 1);
87
88 // Return false if this function info was already allocated.
89 if (!Functions[FuncId].isUnallocatedFunctionInfo())
90 return false;
91
92 // Mark this as an allocated normal function, and leave the rest alone.
93 Functions[FuncId].ParentFuncIdPlusOne = MCCVFunctionInfo::FunctionSentinel;
94 return true;
95}
96
97bool CodeViewContext::recordInlinedCallSiteId(unsigned FuncId, unsigned IAFunc,
98 unsigned IAFile, unsigned IALine,
99 unsigned IACol) {
100 if (FuncId >= Functions.size())
101 Functions.resize(FuncId + 1);
102
103 // Return false if this function info was already allocated.
104 if (!Functions[FuncId].isUnallocatedFunctionInfo())
105 return false;
106
108 InlinedAt.File = IAFile;
109 InlinedAt.Line = IALine;
110 InlinedAt.Col = IACol;
111
112 // Mark this as an inlined call site and record call site line info.
113 MCCVFunctionInfo *Info = &Functions[FuncId];
114 Info->ParentFuncIdPlusOne = IAFunc + 1;
115 Info->InlinedAt = InlinedAt;
116
117 // Walk up the call chain adding this function id to the InlinedAtMap of all
118 // transitive callers until we hit a real function.
119 while (Info->isInlinedCallSite()) {
120 InlinedAt = Info->InlinedAt;
121 Info = getCVFunctionInfo(Info->getParentFuncId());
122 Info->InlinedAtMap[FuncId] = InlinedAt;
123 }
124
125 return true;
126}
127
129 unsigned FunctionId, unsigned FileNo,
130 unsigned Line, unsigned Column,
131 bool PrologueEnd, bool IsStmt) {
133 Label, FunctionId, FileNo, Line, Column, PrologueEnd, IsStmt});
134}
135
136std::pair<StringRef, unsigned> CodeViewContext::addToStringTable(StringRef S) {
137 auto Insertion =
138 StringTable.insert(std::make_pair(S, unsigned(StrTab.size())));
139 // Return the string from the table, since it is stable.
140 std::pair<StringRef, unsigned> Ret =
141 std::make_pair(Insertion.first->first(), Insertion.first->second);
142 if (Insertion.second) {
143 // The string map key is always null terminated.
144 StrTab.append(Ret.first.begin(), Ret.first.end() + 1);
145 }
146 return Ret;
147}
148
149unsigned CodeViewContext::getStringTableOffset(StringRef S) {
150 // A string table offset of zero is always the empty string.
151 if (S.empty())
152 return 0;
153 auto I = StringTable.find(S);
154 assert(I != StringTable.end());
155 return I->second;
156}
157
159 MCContext &Ctx = OS.getContext();
160 MCSymbol *StringBegin = Ctx.createTempSymbol("strtab_begin", false),
161 *StringEnd = Ctx.createTempSymbol("strtab_end", false);
162
163 OS.emitInt32(uint32_t(DebugSubsectionKind::StringTable));
164 OS.emitAbsoluteSymbolDiff(StringEnd, StringBegin, 4);
165 OS.emitLabel(StringBegin);
166
167 // Put the string table data fragment here, if we haven't already put it
168 // somewhere else. If somebody wants two string tables in their .s file, one
169 // will just be empty.
170 if (!StrTabFragment) {
171 OS.newFragment();
172 StrTabFragment = OS.getCurrentFragment();
173 OS.newFragment();
174 }
175
176 OS.emitValueToAlignment(Align(4), 0);
177
178 OS.emitLabel(StringEnd);
179}
180
182 // Do nothing if there are no file checksums. Microsoft's linker rejects empty
183 // CodeView substreams.
184 if (Files.empty())
185 return;
186
187 MCContext &Ctx = OS.getContext();
188 MCSymbol *FileBegin = Ctx.createTempSymbol("filechecksums_begin", false),
189 *FileEnd = Ctx.createTempSymbol("filechecksums_end", false);
190
191 OS.emitInt32(uint32_t(DebugSubsectionKind::FileChecksums));
192 OS.emitAbsoluteSymbolDiff(FileEnd, FileBegin, 4);
193 OS.emitLabel(FileBegin);
194
195 unsigned CurrentOffset = 0;
196
197 // Emit an array of FileChecksum entries. We index into this table using the
198 // user-provided file number. Each entry may be a variable number of bytes
199 // determined by the checksum kind and size.
200 for (auto File : Files) {
201 OS.emitAssignment(File.ChecksumTableOffset,
202 MCConstantExpr::create(CurrentOffset, Ctx));
203 CurrentOffset += 4; // String table offset.
204 if (!File.ChecksumKind) {
205 CurrentOffset +=
206 4; // One byte each for checksum size and kind, then align to 4 bytes.
207 } else {
208 CurrentOffset += 2; // One byte each for checksum size and kind.
209 CurrentOffset += File.Checksum.size();
210 CurrentOffset = alignTo(CurrentOffset, 4);
211 }
212
213 OS.emitInt32(File.StringTableOffset);
214
215 if (!File.ChecksumKind) {
216 // There is no checksum. Therefore zero the next two fields and align
217 // back to 4 bytes.
218 OS.emitInt32(0);
219 continue;
220 }
221 OS.emitInt8(static_cast<uint8_t>(File.Checksum.size()));
222 OS.emitInt8(File.ChecksumKind);
223 OS.emitBytes(toStringRef(File.Checksum));
224 OS.emitValueToAlignment(Align(4));
225 }
226
227 OS.emitLabel(FileEnd);
228
229 ChecksumOffsetsAssigned = true;
230}
231
232// Output checksum table offset of the given file number. It is possible that
233// not all files have been registered yet, and so the offset cannot be
234// calculated. In this case a symbol representing the offset is emitted, and
235// the value of this symbol will be fixed up at a later time.
237 unsigned FileNo) {
238 unsigned Idx = FileNo - 1;
239
240 if (Idx >= Files.size())
241 Files.resize(Idx + 1);
242
243 if (ChecksumOffsetsAssigned) {
244 OS.emitSymbolValue(Files[Idx].ChecksumTableOffset, 4);
245 return;
246 }
247
248 const MCSymbolRefExpr *SRE =
249 MCSymbolRefExpr::create(Files[Idx].ChecksumTableOffset, OS.getContext());
250
251 OS.emitValueImpl(SRE, 4);
252}
253
255 size_t Offset = MCCVLines.size();
256 auto I = MCCVLineStartStop.insert(
257 {LineEntry.getFunctionId(), {Offset, Offset + 1}});
258 if (!I.second)
259 I.first->second.second = Offset + 1;
260 MCCVLines.push_back(LineEntry);
261}
262
263std::vector<MCCVLoc>
265 std::vector<MCCVLoc> FilteredLines;
266 size_t LocBegin;
267 size_t LocEnd;
268 std::tie(LocBegin, LocEnd) = getLineExtentIncludingInlinees(FuncId);
269 if (LocBegin >= LocEnd) {
270 return FilteredLines;
271 }
272
274 for (size_t Idx = LocBegin; Idx != LocEnd; ++Idx) {
275 unsigned LocationFuncId = MCCVLines[Idx].getFunctionId();
276 if (LocationFuncId == FuncId) {
277 // This was a .cv_loc directly for FuncId, so record it.
278 FilteredLines.push_back(MCCVLines[Idx]);
279 } else {
280 // Check if the current location is inlined in this function. If it is,
281 // synthesize a statement .cv_loc at the original inlined call site.
282 auto I = SiteInfo->InlinedAtMap.find(LocationFuncId);
283 if (I != SiteInfo->InlinedAtMap.end()) {
284 MCCVFunctionInfo::LineInfo &IA = I->second;
285 // Only add the location if it differs from the previous location.
286 // Large inlined calls will have many .cv_loc entries and we only need
287 // one line table entry in the parent function.
288 if (FilteredLines.empty() ||
289 FilteredLines.back().getFileNum() != IA.File ||
290 FilteredLines.back().getLine() != IA.Line ||
291 FilteredLines.back().getColumn() != IA.Col) {
292 FilteredLines.push_back(MCCVLoc(MCCVLines[Idx].getLabel(), FuncId,
293 IA.File, IA.Line, IA.Col, false,
294 false));
295 }
296 }
297 }
298 }
299 return FilteredLines;
300}
301
302std::pair<size_t, size_t> CodeViewContext::getLineExtent(unsigned FuncId) {
303 auto I = MCCVLineStartStop.find(FuncId);
304 // Return an empty extent if there are no cv_locs for this function id.
305 if (I == MCCVLineStartStop.end())
306 return {~0ULL, 0};
307 return I->second;
308}
309
310std::pair<size_t, size_t>
312 size_t LocBegin;
313 size_t LocEnd;
314 std::tie(LocBegin, LocEnd) = getLineExtent(FuncId);
315
316 // Include all child inline call sites in our extent.
318 if (SiteInfo) {
319 for (auto &KV : SiteInfo->InlinedAtMap) {
320 unsigned ChildId = KV.first;
321 auto Extent = getLineExtent(ChildId);
322 LocBegin = std::min(LocBegin, Extent.first);
323 LocEnd = std::max(LocEnd, Extent.second);
324 }
325 }
326
327 return {LocBegin, LocEnd};
328}
329
331 if (R <= L)
332 return {};
333 if (L >= MCCVLines.size())
334 return {};
335 return ArrayRef(&MCCVLines[L], R - L);
336}
337
339 unsigned FuncId,
340 const MCSymbol *FuncBegin,
341 const MCSymbol *FuncEnd) {
342 MCContext &Ctx = OS.getContext();
343 MCSymbol *LineBegin = Ctx.createTempSymbol("linetable_begin", false),
344 *LineEnd = Ctx.createTempSymbol("linetable_end", false);
345
346 OS.emitInt32(uint32_t(DebugSubsectionKind::Lines));
347 OS.emitAbsoluteSymbolDiff(LineEnd, LineBegin, 4);
348 OS.emitLabel(LineBegin);
349 OS.emitCOFFSecRel32(FuncBegin, /*Offset=*/0);
350 OS.emitCOFFSectionIndex(FuncBegin);
351
352 // Actual line info.
353 std::vector<MCCVLoc> Locs = getFunctionLineEntries(FuncId);
354 bool HaveColumns = any_of(Locs, [](const MCCVLoc &LineEntry) {
355 return LineEntry.getColumn() != 0;
356 });
357 OS.emitInt16(HaveColumns ? int(LF_HaveColumns) : 0);
358 OS.emitAbsoluteSymbolDiff(FuncEnd, FuncBegin, 4);
359
360 for (auto I = Locs.begin(), E = Locs.end(); I != E;) {
361 // Emit a file segment for the run of locations that share a file id.
362 unsigned CurFileNum = I->getFileNum();
363 auto FileSegEnd =
364 std::find_if(I, E, [CurFileNum](const MCCVLoc &Loc) {
365 return Loc.getFileNum() != CurFileNum;
366 });
367 unsigned EntryCount = FileSegEnd - I;
368 OS.AddComment("Segment for file '" +
369 Twine(StrTab[Files[CurFileNum - 1].StringTableOffset]) +
370 "' begins");
371 OS.emitCVFileChecksumOffsetDirective(CurFileNum);
372 OS.emitInt32(EntryCount);
373 uint32_t SegmentSize = 12;
374 SegmentSize += 8 * EntryCount;
375 if (HaveColumns)
376 SegmentSize += 4 * EntryCount;
377 OS.emitInt32(SegmentSize);
378
379 for (auto J = I; J != FileSegEnd; ++J) {
380 OS.emitAbsoluteSymbolDiff(J->getLabel(), FuncBegin, 4);
381 unsigned LineData = J->getLine();
382 if (J->isStmt())
383 LineData |= LineInfo::StatementFlag;
384 OS.emitInt32(LineData);
385 }
386 if (HaveColumns) {
387 for (auto J = I; J != FileSegEnd; ++J) {
388 OS.emitInt16(J->getColumn());
389 OS.emitInt16(0);
390 }
391 }
392 I = FileSegEnd;
393 }
394 OS.emitLabel(LineEnd);
395}
396
398 if (isUInt<7>(Data)) {
399 Buffer.push_back(Data);
400 return true;
401 }
402
403 if (isUInt<14>(Data)) {
404 Buffer.push_back((Data >> 8) | 0x80);
405 Buffer.push_back(Data & 0xff);
406 return true;
407 }
408
409 if (isUInt<29>(Data)) {
410 Buffer.push_back((Data >> 24) | 0xC0);
411 Buffer.push_back((Data >> 16) & 0xff);
412 Buffer.push_back((Data >> 8) & 0xff);
413 Buffer.push_back(Data & 0xff);
414 return true;
415 }
416
417 return false;
418}
419
421 SmallVectorImpl<char> &Buffer) {
422 return compressAnnotation(static_cast<uint32_t>(Annotation), Buffer);
423}
424
426 if (Data >> 31)
427 return ((-Data) << 1) | 1;
428 return Data << 1;
429}
430
432 unsigned PrimaryFunctionId,
433 unsigned SourceFileId,
434 unsigned SourceLineNum,
435 const MCSymbol *FnStartSym,
436 const MCSymbol *FnEndSym) {
437 // Create and insert a fragment into the current section that will be encoded
438 // later.
439 OS.newSpecialFragment<MCCVInlineLineTableFragment>(
440 PrimaryFunctionId, SourceFileId, SourceLineNum, FnStartSym, FnEndSym);
441}
442
445 ArrayRef<std::pair<const MCSymbol *, const MCSymbol *>> Ranges,
446 StringRef FixedSizePortion) {
447 // Store `Ranges` and `FixedSizePortion` in the context, returning references,
448 // as MCCVDefRangeFragment does not own these objects.
449 FixedSizePortion = MCCtx->allocateString(FixedSizePortion);
450 auto &Saved = DefRangeStorage.emplace_back(Ranges.begin(), Ranges.end());
451 // Create and insert a fragment into the current section that will be encoded
452 // later.
453 OS.newSpecialFragment<MCCVDefRangeFragment>(Saved, FixedSizePortion);
454}
455
456static unsigned computeLabelDiff(const MCAssembler &Asm, const MCSymbol *Begin,
457 const MCSymbol *End) {
458 MCContext &Ctx = Asm.getContext();
459 const MCExpr *BeginRef = MCSymbolRefExpr::create(Begin, Ctx),
460 *EndRef = MCSymbolRefExpr::create(End, Ctx);
461 const MCExpr *AddrDelta =
462 MCBinaryExpr::create(MCBinaryExpr::Sub, EndRef, BeginRef, Ctx);
463 int64_t Result;
464 bool Success = AddrDelta->evaluateKnownAbsolute(Result, Asm);
465 assert(Success && "failed to evaluate label difference as absolute");
466 (void)Success;
467 assert(Result >= 0 && "negative label difference requested");
468 assert(Result < UINT_MAX && "label difference greater than 2GB");
469 return unsigned(Result);
470}
471
474 size_t LocBegin;
475 size_t LocEnd;
476 std::tie(LocBegin, LocEnd) = getLineExtentIncludingInlinees(Frag.SiteFuncId);
477
478 if (LocBegin >= LocEnd)
479 return;
480 ArrayRef<MCCVLoc> Locs = getLinesForExtent(LocBegin, LocEnd);
481 if (Locs.empty())
482 return;
483
484 // Check that the locations are all in the same section.
485#ifndef NDEBUG
486 const MCSection *FirstSec = &Locs.front().getLabel()->getSection();
487 for (const MCCVLoc &Loc : Locs) {
488 if (&Loc.getLabel()->getSection() != FirstSec) {
489 errs() << ".cv_loc " << Loc.getFunctionId() << ' ' << Loc.getFileNum()
490 << ' ' << Loc.getLine() << ' ' << Loc.getColumn()
491 << " is in the wrong section\n";
492 llvm_unreachable(".cv_loc crosses sections");
493 }
494 }
495#endif
496
497 // Make an artificial start location using the function start and the inlinee
498 // lines start location information. All deltas start relative to this
499 // location.
500 MCCVLoc StartLoc = Locs.front();
501 StartLoc.setLabel(Frag.getFnStartSym());
502 StartLoc.setFileNum(Frag.StartFileId);
503 StartLoc.setLine(Frag.StartLineNum);
504 bool HaveOpenRange = false;
505
506 const MCSymbol *LastLabel = Frag.getFnStartSym();
507 MCCVFunctionInfo::LineInfo LastSourceLoc, CurSourceLoc;
508 LastSourceLoc.File = Frag.StartFileId;
509 LastSourceLoc.Line = Frag.StartLineNum;
510
511 MCCVFunctionInfo *SiteInfo = getCVFunctionInfo(Frag.SiteFuncId);
512
514 for (const MCCVLoc &Loc : Locs) {
515 // Exit early if our line table would produce an oversized InlineSiteSym
516 // record. Account for the ChangeCodeLength annotation emitted after the
517 // loop ends.
518 constexpr uint32_t InlineSiteSize = 12;
519 constexpr uint32_t AnnotationSize = 8;
520 size_t MaxBufferSize = MaxRecordLength - InlineSiteSize - AnnotationSize;
521 if (Buffer.size() >= MaxBufferSize)
522 break;
523
524 if (Loc.getFunctionId() == Frag.SiteFuncId) {
525 CurSourceLoc.File = Loc.getFileNum();
526 CurSourceLoc.Line = Loc.getLine();
527 } else {
528 auto I = SiteInfo->InlinedAtMap.find(Loc.getFunctionId());
529 if (I != SiteInfo->InlinedAtMap.end()) {
530 // This .cv_loc is from a child inline call site. Use the source
531 // location of the inlined call site instead of the .cv_loc directive
532 // source location.
533 CurSourceLoc = I->second;
534 } else {
535 // We've hit a cv_loc not attributed to this inline call site. Use this
536 // label to end the PC range.
537 if (HaveOpenRange) {
538 unsigned Length = computeLabelDiff(Asm, LastLabel, Loc.getLabel());
539 compressAnnotation(BinaryAnnotationsOpCode::ChangeCodeLength, Buffer);
540 compressAnnotation(Length, Buffer);
541 LastLabel = Loc.getLabel();
542 }
543 HaveOpenRange = false;
544 continue;
545 }
546 }
547
548 // Skip this .cv_loc if we have an open range and this isn't a meaningful
549 // source location update. The current table format does not support column
550 // info, so we can skip updates for those.
551 if (HaveOpenRange && CurSourceLoc.File == LastSourceLoc.File &&
552 CurSourceLoc.Line == LastSourceLoc.Line)
553 continue;
554
555 HaveOpenRange = true;
556
557 if (CurSourceLoc.File != LastSourceLoc.File) {
558 unsigned FileOffset = static_cast<const MCConstantExpr *>(
559 Files[CurSourceLoc.File - 1]
560 .ChecksumTableOffset->getVariableValue())
561 ->getValue();
562 compressAnnotation(BinaryAnnotationsOpCode::ChangeFile, Buffer);
563 compressAnnotation(FileOffset, Buffer);
564 }
565
566 int LineDelta = CurSourceLoc.Line - LastSourceLoc.Line;
567 unsigned EncodedLineDelta = encodeSignedNumber(LineDelta);
568 unsigned CodeDelta = computeLabelDiff(Asm, LastLabel, Loc.getLabel());
569 if (EncodedLineDelta < 0x8 && CodeDelta <= 0xf) {
570 // The ChangeCodeOffsetAndLineOffset combination opcode is used when the
571 // encoded line delta uses 3 or fewer set bits and the code offset fits
572 // in one nibble.
573 unsigned Operand = (EncodedLineDelta << 4) | CodeDelta;
574 compressAnnotation(BinaryAnnotationsOpCode::ChangeCodeOffsetAndLineOffset,
575 Buffer);
576 compressAnnotation(Operand, Buffer);
577 } else {
578 // Otherwise use the separate line and code deltas.
579 if (LineDelta != 0) {
580 compressAnnotation(BinaryAnnotationsOpCode::ChangeLineOffset, Buffer);
581 compressAnnotation(EncodedLineDelta, Buffer);
582 }
583 compressAnnotation(BinaryAnnotationsOpCode::ChangeCodeOffset, Buffer);
584 compressAnnotation(CodeDelta, Buffer);
585 }
586
587 LastLabel = Loc.getLabel();
588 LastSourceLoc = CurSourceLoc;
589 }
590
591 assert(HaveOpenRange);
592
593 unsigned EndSymLength =
594 computeLabelDiff(Asm, LastLabel, Frag.getFnEndSym());
595 unsigned LocAfterLength = ~0U;
596 ArrayRef<MCCVLoc> LocAfter = getLinesForExtent(LocEnd, LocEnd + 1);
597 if (!LocAfter.empty()) {
598 // Only try to compute this difference if we're in the same section.
599 const MCCVLoc &Loc = LocAfter[0];
600 if (&Loc.getLabel()->getSection() == &LastLabel->getSection())
601 LocAfterLength = computeLabelDiff(Asm, LastLabel, Loc.getLabel());
602 }
603
604 compressAnnotation(BinaryAnnotationsOpCode::ChangeCodeLength, Buffer);
605 compressAnnotation(std::min(EndSymLength, LocAfterLength), Buffer);
606 Frag.setVarContents(Buffer);
607}
608
610 MCCVDefRangeFragment &Frag) {
611 MCContext &Ctx = Asm.getContext();
612 SmallVector<char, 0> Contents;
614 raw_svector_ostream OS(Contents);
615
616 // Compute all the sizes up front.
618 const MCSymbol *LastLabel = nullptr;
619 for (std::pair<const MCSymbol *, const MCSymbol *> Range : Frag.getRanges()) {
620 unsigned GapSize =
621 LastLabel ? computeLabelDiff(Asm, LastLabel, Range.first) : 0;
622 unsigned RangeSize = computeLabelDiff(Asm, Range.first, Range.second);
623 GapAndRangeSizes.push_back({GapSize, RangeSize});
624 LastLabel = Range.second;
625 }
626
627 // Write down each range where the variable is defined.
628 for (size_t I = 0, E = Frag.getRanges().size(); I != E;) {
629 // If the range size of multiple consecutive ranges is under the max,
630 // combine the ranges and emit some gaps.
631 const MCSymbol *RangeBegin = Frag.getRanges()[I].first;
632 unsigned RangeSize = GapAndRangeSizes[I].second;
633 size_t J = I + 1;
634 for (; J != E; ++J) {
635 unsigned GapAndRangeSize = GapAndRangeSizes[J].first + GapAndRangeSizes[J].second;
636 if (RangeSize + GapAndRangeSize > MaxDefRange)
637 break;
638 RangeSize += GapAndRangeSize;
639 }
640 unsigned NumGaps = J - I - 1;
641
643
644 unsigned Bias = 0;
645 // We must split the range into chunks of MaxDefRange, this is a fundamental
646 // limitation of the file format.
647 do {
648 uint16_t Chunk = std::min((uint32_t)MaxDefRange, RangeSize);
649
650 const MCSymbolRefExpr *SRE = MCSymbolRefExpr::create(RangeBegin, Ctx);
651 const MCBinaryExpr *BE =
653
654 // Each record begins with a 2-byte number indicating how large the record
655 // is.
656 StringRef FixedSizePortion = Frag.getFixedSizePortion();
657 // Our record is a fixed sized prefix and a LocalVariableAddrRange that we
658 // are artificially constructing.
659 size_t RecordSize = FixedSizePortion.size() +
660 sizeof(LocalVariableAddrRange) + 4 * NumGaps;
661 // Write out the record size.
662 LEWriter.write<uint16_t>(RecordSize);
663 // Write out the fixed size prefix.
664 OS << FixedSizePortion;
665 // Make space for a fixup that will eventually have a section relative
666 // relocation pointing at the offset where the variable becomes live.
667 Fixups.push_back(MCFixup::create(Contents.size(), BE, FK_SecRel_4));
668 LEWriter.write<uint32_t>(0); // Fixup for code start.
669 // Make space for a fixup that will record the section index for the code.
670 Fixups.push_back(MCFixup::create(Contents.size(), BE, FK_SecRel_2));
671 LEWriter.write<uint16_t>(0); // Fixup for section index.
672 // Write down the range's extent.
673 LEWriter.write<uint16_t>(Chunk);
674
675 // Move on to the next range.
676 Bias += Chunk;
677 RangeSize -= Chunk;
678 } while (RangeSize > 0);
679
680 // Emit the gaps afterwards.
681 assert((NumGaps == 0 || Bias <= MaxDefRange) &&
682 "large ranges should not have gaps");
683 unsigned GapStartOffset = GapAndRangeSizes[I].second;
684 for (++I; I != J; ++I) {
685 unsigned GapSize, RangeSize;
686 assert(I < GapAndRangeSizes.size());
687 std::tie(GapSize, RangeSize) = GapAndRangeSizes[I];
688 LEWriter.write<uint16_t>(GapStartOffset);
689 LEWriter.write<uint16_t>(GapSize);
690 GapStartOffset += GapSize + RangeSize;
691 }
692 }
693
694 Frag.setVarContents(Contents);
695 assert(Fixups.size() < 256 && "Store fixups outside of MCFragment's VarFixup "
696 "storage if the number ever exceeds 256");
697 Frag.setVarFixups(Fixups);
698}
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
Analysis containing CSE Info
Definition: CSEInfo.cpp:27
Returns the sub type a function will return at a given Idx Should correspond to the result type of an ExtractValue instruction executed with just that one unsigned Idx
bool End
Definition: ELF_riscv.cpp:480
Fixup Statepoint Caller Saved
static unsigned computeLabelDiff(const MCAssembler &Asm, const MCSymbol *Begin, const MCSymbol *End)
Definition: MCCodeView.cpp:456
static uint32_t encodeSignedNumber(uint32_t Data)
Definition: MCCodeView.cpp:425
static bool compressAnnotation(uint32_t Data, SmallVectorImpl< char > &Buffer)
Definition: MCCodeView.cpp:397
#define I(x, y, z)
Definition: MD5.cpp:58
ConstantRange Range(APInt(BitWidth, Low), APInt(BitWidth, High))
Profile::FuncID FuncId
Definition: Profile.cpp:320
This file contains some templates that are useful if you are working with the STL at all.
raw_pwrite_stream & OS
This file contains some functions that are useful when dealing with strings.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition: ArrayRef.h:41
const T & front() const
front - Get the first element.
Definition: ArrayRef.h:150
bool empty() const
empty - Check if the array is empty.
Definition: ArrayRef.h:142
ArrayRef< MCCVLoc > getLinesForExtent(size_t L, size_t R)
Definition: MCCodeView.cpp:330
std::pair< size_t, size_t > getLineExtent(unsigned FuncId)
Definition: MCCodeView.cpp:302
void encodeInlineLineTable(const MCAssembler &Asm, MCCVInlineLineTableFragment &F)
Encodes the binary annotations once we have a layout.
Definition: MCCodeView.cpp:472
void emitLineTableForFunction(MCObjectStreamer &OS, unsigned FuncId, const MCSymbol *FuncBegin, const MCSymbol *FuncEnd)
Emits a line table substream.
Definition: MCCodeView.cpp:338
void emitFileChecksums(MCObjectStreamer &OS)
Emits the file checksum substream.
Definition: MCCodeView.cpp:181
void recordCVLoc(MCContext &Ctx, const MCSymbol *Label, unsigned FunctionId, unsigned FileNo, unsigned Line, unsigned Column, bool PrologueEnd, bool IsStmt)
Saves the information from the currently parsed .cv_loc directive and sets CVLocSeen.
Definition: MCCodeView.cpp:128
void emitDefRange(MCObjectStreamer &OS, ArrayRef< std::pair< const MCSymbol *, const MCSymbol * > > Ranges, StringRef FixedSizePortion)
Definition: MCCodeView.cpp:443
bool addFile(MCStreamer &OS, unsigned FileNumber, StringRef Filename, ArrayRef< uint8_t > ChecksumBytes, uint8_t ChecksumKind)
Definition: MCCodeView.cpp:44
MCCVFunctionInfo * getCVFunctionInfo(unsigned FuncId)
Retreive the function info if this is a valid function id, or nullptr.
Definition: MCCodeView.cpp:76
bool recordFunctionId(unsigned FuncId)
Records the function id of a normal function.
Definition: MCCodeView.cpp:84
void emitFileChecksumOffset(MCObjectStreamer &OS, unsigned FileNo)
Emits the offset into the checksum table of the given file number.
Definition: MCCodeView.cpp:236
std::vector< MCCVLoc > getFunctionLineEntries(unsigned FuncId)
Definition: MCCodeView.cpp:264
void addLineEntry(const MCCVLoc &LineEntry)
Add a line entry.
Definition: MCCodeView.cpp:254
bool recordInlinedCallSiteId(unsigned FuncId, unsigned IAFunc, unsigned IAFile, unsigned IALine, unsigned IACol)
Records the function id of an inlined call site.
Definition: MCCodeView.cpp:97
std::pair< size_t, size_t > getLineExtentIncludingInlinees(unsigned FuncId)
Definition: MCCodeView.cpp:311
void emitInlineLineTableForFunction(MCObjectStreamer &OS, unsigned PrimaryFunctionId, unsigned SourceFileId, unsigned SourceLineNum, const MCSymbol *FnStartSym, const MCSymbol *FnEndSym)
Definition: MCCodeView.cpp:431
void emitStringTable(MCObjectStreamer &OS)
Emits the string table substream.
Definition: MCCodeView.cpp:158
bool isValidFileNumber(unsigned FileNumber) const
This is a valid number for use with .cv_loc if we've already seen a .cv_file for it.
Definition: MCCodeView.cpp:37
void encodeDefRange(const MCAssembler &Asm, MCCVDefRangeFragment &F)
Definition: MCCodeView.cpp:609
std::pair< StringRef, unsigned > addToStringTable(StringRef S)
Add something to the string table.
Definition: MCCodeView.cpp:136
Binary assembler expressions.
Definition: MCExpr.h:299
static const MCBinaryExpr * createAdd(const MCExpr *LHS, const MCExpr *RHS, MCContext &Ctx, SMLoc Loc=SMLoc())
Definition: MCExpr.h:343
static LLVM_ABI const MCBinaryExpr * create(Opcode Op, const MCExpr *LHS, const MCExpr *RHS, MCContext &Ctx, SMLoc Loc=SMLoc())
Definition: MCExpr.cpp:201
@ Sub
Subtraction.
Definition: MCExpr.h:324
Fragment representing the .cv_def_range directive.
Definition: MCSection.h:430
ArrayRef< std::pair< const MCSymbol *, const MCSymbol * > > getRanges() const
Definition: MCSection.h:445
StringRef getFixedSizePortion() const
Definition: MCSection.h:449
Fragment representing the binary annotations produced by the .cv_inline_linetable directive.
Definition: MCSection.h:402
const MCSymbol * getFnStartSym() const
Definition: MCSection.h:421
const MCSymbol * getFnEndSym() const
Definition: MCSection.h:422
Instances of this class represent the information from a .cv_loc directive.
Definition: MCCodeView.h:38
void setFileNum(unsigned fileNum)
Set the FileNum of this MCCVLoc.
Definition: MCCodeView.h:79
unsigned getFileNum() const
Get the FileNum of this MCCVLoc.
Definition: MCCodeView.h:63
const MCSymbol * getLabel() const
Definition: MCCodeView.h:58
void setLabel(const MCSymbol *L)
Definition: MCCodeView.h:74
unsigned getColumn() const
Get the Column of this MCCVLoc.
Definition: MCCodeView.h:69
unsigned getFunctionId() const
Definition: MCCodeView.h:60
void setLine(unsigned line)
Set the Line of this MCCVLoc.
Definition: MCCodeView.h:82
static LLVM_ABI const MCConstantExpr * create(int64_t Value, MCContext &Ctx, bool PrintInHex=false, unsigned SizeInBytes=0)
Definition: MCExpr.cpp:212
Context object for machine code objects.
Definition: MCContext.h:83
LLVM_ABI MCSymbol * createTempSymbol()
Create a temporary symbol with a unique name.
Definition: MCContext.cpp:386
StringRef allocateString(StringRef s)
Allocates a copy of the given string on the allocator managed by this context and returns the result.
Definition: MCContext.h:835
Base class for the full range of assembler expressions which are needed for parsing.
Definition: MCExpr.h:34
LLVM_ABI bool evaluateKnownAbsolute(int64_t &Res, const MCAssembler &Asm) const
Aggressive variant of evaluateAsRelocatable when relocations are unavailable (e.g.
Definition: MCExpr.cpp:250
static MCFixup create(uint32_t Offset, const MCExpr *Value, MCFixupKind Kind, bool PCRel=false)
Consider bit fields if we need more flags.
Definition: MCFixup.h:86
FragmentType getKind() const
Definition: MCSection.h:156
LLVM_ABI void setVarFixups(ArrayRef< MCFixup > Fixups)
Definition: MCSection.cpp:87
LLVM_ABI void setVarContents(ArrayRef< char > Contents)
Definition: MCSection.cpp:61
Streaming object file generation interface.
Instances of this class represent a uniqued identifier for a section in the current translation unit.
Definition: MCSection.h:496
Streaming machine code generation interface.
Definition: MCStreamer.h:220
Represent a reference to a symbol from inside an expression.
Definition: MCExpr.h:190
static const MCSymbolRefExpr * create(const MCSymbol *Symbol, MCContext &Ctx, SMLoc Loc=SMLoc())
Definition: MCExpr.h:214
MCSymbol - Instances of this class represent a symbol name in the MC file, and MCSymbols are created ...
Definition: MCSymbol.h:42
MCSection & getSection() const
Get the section associated with a defined, non-absolute symbol.
Definition: MCSymbol.h:251
bool empty() const
Definition: SmallVector.h:82
size_t size() const
Definition: SmallVector.h:79
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
Definition: SmallVector.h:574
void append(ItTy in_start, ItTy in_end)
Add the specified range to the end of the SmallVector.
Definition: SmallVector.h:684
void resize(size_type N)
Definition: SmallVector.h:639
void push_back(const T &Elt)
Definition: SmallVector.h:414
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
Definition: SmallVector.h:1197
StringRef - Represent a constant reference to a string, i.e.
Definition: StringRef.h:55
constexpr bool empty() const
empty - Check if the string is empty.
Definition: StringRef.h:151
constexpr size_t size() const
size - Get the string size.
Definition: StringRef.h:154
A table of densely packed, null-terminated strings indexed by offset.
Definition: StringTable.h:33
constexpr Iterator end() const
Definition: StringTable.h:147
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
Definition: Twine.h:82
A raw_ostream that writes to an SmallVector or SmallString.
Definition: raw_ostream.h:692
This class represents a function that is read from a sample profile.
Definition: FunctionId.h:36
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
This is an optimization pass for GlobalISel generic memory operations.
Definition: AddressRanges.h:18
@ Offset
Definition: DWP.cpp:477
@ Length
Definition: DWP.cpp:477
@ FK_SecRel_2
A two-byte section relative fixup.
Definition: MCFixup.h:40
@ FK_SecRel_4
A four-byte section relative fixup.
Definition: MCFixup.h:41
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
Definition: STLExtras.h:1751
@ Success
The lock was released successfully.
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
uint64_t alignTo(uint64_t Size, Align A)
Returns a multiple of A needed to store Size bytes.
Definition: Alignment.h:155
This struct is a compact representation of a valid (non-zero power of two) alignment.
Definition: Alignment.h:39
Information describing a function or inlined call site introduced by .cv_func_id or ....
Definition: MCCodeView.h:98
DenseMap< unsigned, LineInfo > InlinedAtMap
Map from inlined call site id to the inlined at location to use for that call site.
Definition: MCCodeView.h:124
Adapter to write values to a stream in a particular byte order.
Definition: EndianStream.h:67
void write(ArrayRef< value_type > Val)
Definition: EndianStream.h:71