xref: /freebsd/contrib/llvm-project/llvm/lib/Transforms/Utils/Debugify.cpp (revision a2fda816eb054d5873be223ef2461741dfcc253c)
1  //===- Debugify.cpp - Check debug info preservation in optimizations ------===//
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  /// \file In the `synthetic` mode, the `-debugify` attaches synthetic debug info
10  /// to everything. It can be used to create targeted tests for debug info
11  /// preservation. In addition, when using the `original` mode, it can check
12  /// original debug info preservation. The `synthetic` mode is default one.
13  ///
14  //===----------------------------------------------------------------------===//
15  
16  #include "llvm/Transforms/Utils/Debugify.h"
17  #include "llvm/ADT/BitVector.h"
18  #include "llvm/ADT/StringExtras.h"
19  #include "llvm/IR/DIBuilder.h"
20  #include "llvm/IR/DebugInfo.h"
21  #include "llvm/IR/InstIterator.h"
22  #include "llvm/IR/Instructions.h"
23  #include "llvm/IR/IntrinsicInst.h"
24  #include "llvm/IR/Module.h"
25  #include "llvm/IR/PassInstrumentation.h"
26  #include "llvm/Pass.h"
27  #include "llvm/Support/CommandLine.h"
28  #include "llvm/Support/FileSystem.h"
29  #include "llvm/Support/JSON.h"
30  #include <optional>
31  
32  #define DEBUG_TYPE "debugify"
33  
34  using namespace llvm;
35  
36  namespace {
37  
38  cl::opt<bool> Quiet("debugify-quiet",
39                      cl::desc("Suppress verbose debugify output"));
40  
41  cl::opt<uint64_t> DebugifyFunctionsLimit(
42      "debugify-func-limit",
43      cl::desc("Set max number of processed functions per pass."),
44      cl::init(UINT_MAX));
45  
46  enum class Level {
47    Locations,
48    LocationsAndVariables
49  };
50  
51  cl::opt<Level> DebugifyLevel(
52      "debugify-level", cl::desc("Kind of debug info to add"),
53      cl::values(clEnumValN(Level::Locations, "locations", "Locations only"),
54                 clEnumValN(Level::LocationsAndVariables, "location+variables",
55                            "Locations and Variables")),
56      cl::init(Level::LocationsAndVariables));
57  
58  raw_ostream &dbg() { return Quiet ? nulls() : errs(); }
59  
60  uint64_t getAllocSizeInBits(Module &M, Type *Ty) {
61    return Ty->isSized() ? M.getDataLayout().getTypeAllocSizeInBits(Ty) : 0;
62  }
63  
64  bool isFunctionSkipped(Function &F) {
65    return F.isDeclaration() || !F.hasExactDefinition();
66  }
67  
68  /// Find the basic block's terminating instruction.
69  ///
70  /// Special care is needed to handle musttail and deopt calls, as these behave
71  /// like (but are in fact not) terminators.
72  Instruction *findTerminatingInstruction(BasicBlock &BB) {
73    if (auto *I = BB.getTerminatingMustTailCall())
74      return I;
75    if (auto *I = BB.getTerminatingDeoptimizeCall())
76      return I;
77    return BB.getTerminator();
78  }
79  } // end anonymous namespace
80  
81  bool llvm::applyDebugifyMetadata(
82      Module &M, iterator_range<Module::iterator> Functions, StringRef Banner,
83      std::function<bool(DIBuilder &DIB, Function &F)> ApplyToMF) {
84    // Skip modules with debug info.
85    if (M.getNamedMetadata("llvm.dbg.cu")) {
86      dbg() << Banner << "Skipping module with debug info\n";
87      return false;
88    }
89  
90    DIBuilder DIB(M);
91    LLVMContext &Ctx = M.getContext();
92    auto *Int32Ty = Type::getInt32Ty(Ctx);
93  
94    // Get a DIType which corresponds to Ty.
95    DenseMap<uint64_t, DIType *> TypeCache;
96    auto getCachedDIType = [&](Type *Ty) -> DIType * {
97      uint64_t Size = getAllocSizeInBits(M, Ty);
98      DIType *&DTy = TypeCache[Size];
99      if (!DTy) {
100        std::string Name = "ty" + utostr(Size);
101        DTy = DIB.createBasicType(Name, Size, dwarf::DW_ATE_unsigned);
102      }
103      return DTy;
104    };
105  
106    unsigned NextLine = 1;
107    unsigned NextVar = 1;
108    auto File = DIB.createFile(M.getName(), "/");
109    auto CU = DIB.createCompileUnit(dwarf::DW_LANG_C, File, "debugify",
110                                    /*isOptimized=*/true, "", 0);
111  
112    // Visit each instruction.
113    for (Function &F : Functions) {
114      if (isFunctionSkipped(F))
115        continue;
116  
117      bool InsertedDbgVal = false;
118      auto SPType =
119          DIB.createSubroutineType(DIB.getOrCreateTypeArray(std::nullopt));
120      DISubprogram::DISPFlags SPFlags =
121          DISubprogram::SPFlagDefinition | DISubprogram::SPFlagOptimized;
122      if (F.hasPrivateLinkage() || F.hasInternalLinkage())
123        SPFlags |= DISubprogram::SPFlagLocalToUnit;
124      auto SP = DIB.createFunction(CU, F.getName(), F.getName(), File, NextLine,
125                                   SPType, NextLine, DINode::FlagZero, SPFlags);
126      F.setSubprogram(SP);
127  
128      // Helper that inserts a dbg.value before \p InsertBefore, copying the
129      // location (and possibly the type, if it's non-void) from \p TemplateInst.
130      auto insertDbgVal = [&](Instruction &TemplateInst,
131                              Instruction *InsertBefore) {
132        std::string Name = utostr(NextVar++);
133        Value *V = &TemplateInst;
134        if (TemplateInst.getType()->isVoidTy())
135          V = ConstantInt::get(Int32Ty, 0);
136        const DILocation *Loc = TemplateInst.getDebugLoc().get();
137        auto LocalVar = DIB.createAutoVariable(SP, Name, File, Loc->getLine(),
138                                               getCachedDIType(V->getType()),
139                                               /*AlwaysPreserve=*/true);
140        DIB.insertDbgValueIntrinsic(V, LocalVar, DIB.createExpression(), Loc,
141                                    InsertBefore);
142      };
143  
144      for (BasicBlock &BB : F) {
145        // Attach debug locations.
146        for (Instruction &I : BB)
147          I.setDebugLoc(DILocation::get(Ctx, NextLine++, 1, SP));
148  
149        if (DebugifyLevel < Level::LocationsAndVariables)
150          continue;
151  
152        // Inserting debug values into EH pads can break IR invariants.
153        if (BB.isEHPad())
154          continue;
155  
156        // Find the terminating instruction, after which no debug values are
157        // attached.
158        Instruction *LastInst = findTerminatingInstruction(BB);
159        assert(LastInst && "Expected basic block with a terminator");
160  
161        // Maintain an insertion point which can't be invalidated when updates
162        // are made.
163        BasicBlock::iterator InsertPt = BB.getFirstInsertionPt();
164        assert(InsertPt != BB.end() && "Expected to find an insertion point");
165        Instruction *InsertBefore = &*InsertPt;
166  
167        // Attach debug values.
168        for (Instruction *I = &*BB.begin(); I != LastInst; I = I->getNextNode()) {
169          // Skip void-valued instructions.
170          if (I->getType()->isVoidTy())
171            continue;
172  
173          // Phis and EH pads must be grouped at the beginning of the block.
174          // Only advance the insertion point when we finish visiting these.
175          if (!isa<PHINode>(I) && !I->isEHPad())
176            InsertBefore = I->getNextNode();
177  
178          insertDbgVal(*I, InsertBefore);
179          InsertedDbgVal = true;
180        }
181      }
182      // Make sure we emit at least one dbg.value, otherwise MachineDebugify may
183      // not have anything to work with as it goes about inserting DBG_VALUEs.
184      // (It's common for MIR tests to be written containing skeletal IR with
185      // empty functions -- we're still interested in debugifying the MIR within
186      // those tests, and this helps with that.)
187      if (DebugifyLevel == Level::LocationsAndVariables && !InsertedDbgVal) {
188        auto *Term = findTerminatingInstruction(F.getEntryBlock());
189        insertDbgVal(*Term, Term);
190      }
191      if (ApplyToMF)
192        ApplyToMF(DIB, F);
193      DIB.finalizeSubprogram(SP);
194    }
195    DIB.finalize();
196  
197    // Track the number of distinct lines and variables.
198    NamedMDNode *NMD = M.getOrInsertNamedMetadata("llvm.debugify");
199    auto addDebugifyOperand = [&](unsigned N) {
200      NMD->addOperand(MDNode::get(
201          Ctx, ValueAsMetadata::getConstant(ConstantInt::get(Int32Ty, N))));
202    };
203    addDebugifyOperand(NextLine - 1); // Original number of lines.
204    addDebugifyOperand(NextVar - 1);  // Original number of variables.
205    assert(NMD->getNumOperands() == 2 &&
206           "llvm.debugify should have exactly 2 operands!");
207  
208    // Claim that this synthetic debug info is valid.
209    StringRef DIVersionKey = "Debug Info Version";
210    if (!M.getModuleFlag(DIVersionKey))
211      M.addModuleFlag(Module::Warning, DIVersionKey, DEBUG_METADATA_VERSION);
212  
213    return true;
214  }
215  
216  static bool
217  applyDebugify(Function &F,
218                enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
219                DebugInfoPerPass *DebugInfoBeforePass = nullptr,
220                StringRef NameOfWrappedPass = "") {
221    Module &M = *F.getParent();
222    auto FuncIt = F.getIterator();
223    if (Mode == DebugifyMode::SyntheticDebugInfo)
224      return applyDebugifyMetadata(M, make_range(FuncIt, std::next(FuncIt)),
225                                   "FunctionDebugify: ", /*ApplyToMF*/ nullptr);
226    assert(DebugInfoBeforePass);
227    return collectDebugInfoMetadata(M, M.functions(), *DebugInfoBeforePass,
228                                    "FunctionDebugify (original debuginfo)",
229                                    NameOfWrappedPass);
230  }
231  
232  static bool
233  applyDebugify(Module &M,
234                enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
235                DebugInfoPerPass *DebugInfoBeforePass = nullptr,
236                StringRef NameOfWrappedPass = "") {
237    if (Mode == DebugifyMode::SyntheticDebugInfo)
238      return applyDebugifyMetadata(M, M.functions(),
239                                   "ModuleDebugify: ", /*ApplyToMF*/ nullptr);
240    return collectDebugInfoMetadata(M, M.functions(), *DebugInfoBeforePass,
241                                    "ModuleDebugify (original debuginfo)",
242                                    NameOfWrappedPass);
243  }
244  
245  bool llvm::stripDebugifyMetadata(Module &M) {
246    bool Changed = false;
247  
248    // Remove the llvm.debugify and llvm.mir.debugify module-level named metadata.
249    NamedMDNode *DebugifyMD = M.getNamedMetadata("llvm.debugify");
250    if (DebugifyMD) {
251      M.eraseNamedMetadata(DebugifyMD);
252      Changed = true;
253    }
254  
255    if (auto *MIRDebugifyMD = M.getNamedMetadata("llvm.mir.debugify")) {
256      M.eraseNamedMetadata(MIRDebugifyMD);
257      Changed = true;
258    }
259  
260    // Strip out all debug intrinsics and supporting metadata (subprograms, types,
261    // variables, etc).
262    Changed |= StripDebugInfo(M);
263  
264    // Strip out the dead dbg.value prototype.
265    Function *DbgValF = M.getFunction("llvm.dbg.value");
266    if (DbgValF) {
267      assert(DbgValF->isDeclaration() && DbgValF->use_empty() &&
268             "Not all debug info stripped?");
269      DbgValF->eraseFromParent();
270      Changed = true;
271    }
272  
273    // Strip out the module-level Debug Info Version metadata.
274    // FIXME: There must be an easier way to remove an operand from a NamedMDNode.
275    NamedMDNode *NMD = M.getModuleFlagsMetadata();
276    if (!NMD)
277      return Changed;
278    SmallVector<MDNode *, 4> Flags(NMD->operands());
279    NMD->clearOperands();
280    for (MDNode *Flag : Flags) {
281      auto *Key = cast<MDString>(Flag->getOperand(1));
282      if (Key->getString() == "Debug Info Version") {
283        Changed = true;
284        continue;
285      }
286      NMD->addOperand(Flag);
287    }
288    // If we left it empty we might as well remove it.
289    if (NMD->getNumOperands() == 0)
290      NMD->eraseFromParent();
291  
292    return Changed;
293  }
294  
295  bool llvm::collectDebugInfoMetadata(Module &M,
296                                      iterator_range<Module::iterator> Functions,
297                                      DebugInfoPerPass &DebugInfoBeforePass,
298                                      StringRef Banner,
299                                      StringRef NameOfWrappedPass) {
300    LLVM_DEBUG(dbgs() << Banner << ": (before) " << NameOfWrappedPass << '\n');
301  
302    if (!M.getNamedMetadata("llvm.dbg.cu")) {
303      dbg() << Banner << ": Skipping module without debug info\n";
304      return false;
305    }
306  
307    uint64_t FunctionsCnt = DebugInfoBeforePass.DIFunctions.size();
308    // Visit each instruction.
309    for (Function &F : Functions) {
310      // Use DI collected after previous Pass (when -debugify-each is used).
311      if (DebugInfoBeforePass.DIFunctions.count(&F))
312        continue;
313  
314      if (isFunctionSkipped(F))
315        continue;
316  
317      // Stop collecting DI if the Functions number reached the limit.
318      if (++FunctionsCnt >= DebugifyFunctionsLimit)
319        break;
320      // Collect the DISubprogram.
321      auto *SP = F.getSubprogram();
322      DebugInfoBeforePass.DIFunctions.insert({&F, SP});
323      if (SP) {
324        LLVM_DEBUG(dbgs() << "  Collecting subprogram: " << *SP << '\n');
325        for (const DINode *DN : SP->getRetainedNodes()) {
326          if (const auto *DV = dyn_cast<DILocalVariable>(DN)) {
327            DebugInfoBeforePass.DIVariables[DV] = 0;
328          }
329        }
330      }
331  
332      for (BasicBlock &BB : F) {
333        // Collect debug locations (!dbg) and debug variable intrinsics.
334        for (Instruction &I : BB) {
335          // Skip PHIs.
336          if (isa<PHINode>(I))
337            continue;
338  
339          // Cllect dbg.values and dbg.declare.
340          if (DebugifyLevel > Level::Locations) {
341            if (auto *DVI = dyn_cast<DbgVariableIntrinsic>(&I)) {
342              if (!SP)
343                continue;
344              // Skip inlined variables.
345              if (I.getDebugLoc().getInlinedAt())
346                continue;
347              // Skip undef values.
348              if (DVI->isKillLocation())
349                continue;
350  
351              auto *Var = DVI->getVariable();
352              DebugInfoBeforePass.DIVariables[Var]++;
353              continue;
354            }
355          }
356  
357          // Skip debug instructions other than dbg.value and dbg.declare.
358          if (isa<DbgInfoIntrinsic>(&I))
359            continue;
360  
361          LLVM_DEBUG(dbgs() << "  Collecting info for inst: " << I << '\n');
362          DebugInfoBeforePass.InstToDelete.insert({&I, &I});
363  
364          const DILocation *Loc = I.getDebugLoc().get();
365          bool HasLoc = Loc != nullptr;
366          DebugInfoBeforePass.DILocations.insert({&I, HasLoc});
367        }
368      }
369    }
370  
371    return true;
372  }
373  
374  // This checks the preservation of original debug info attached to functions.
375  static bool checkFunctions(const DebugFnMap &DIFunctionsBefore,
376                             const DebugFnMap &DIFunctionsAfter,
377                             StringRef NameOfWrappedPass,
378                             StringRef FileNameFromCU, bool ShouldWriteIntoJSON,
379                             llvm::json::Array &Bugs) {
380    bool Preserved = true;
381    for (const auto &F : DIFunctionsAfter) {
382      if (F.second)
383        continue;
384      auto SPIt = DIFunctionsBefore.find(F.first);
385      if (SPIt == DIFunctionsBefore.end()) {
386        if (ShouldWriteIntoJSON)
387          Bugs.push_back(llvm::json::Object({{"metadata", "DISubprogram"},
388                                             {"name", F.first->getName()},
389                                             {"action", "not-generate"}}));
390        else
391          dbg() << "ERROR: " << NameOfWrappedPass
392                << " did not generate DISubprogram for " << F.first->getName()
393                << " from " << FileNameFromCU << '\n';
394        Preserved = false;
395      } else {
396        auto SP = SPIt->second;
397        if (!SP)
398          continue;
399        // If the function had the SP attached before the pass, consider it as
400        // a debug info bug.
401        if (ShouldWriteIntoJSON)
402          Bugs.push_back(llvm::json::Object({{"metadata", "DISubprogram"},
403                                             {"name", F.first->getName()},
404                                             {"action", "drop"}}));
405        else
406          dbg() << "ERROR: " << NameOfWrappedPass << " dropped DISubprogram of "
407                << F.first->getName() << " from " << FileNameFromCU << '\n';
408        Preserved = false;
409      }
410    }
411  
412    return Preserved;
413  }
414  
415  // This checks the preservation of the original debug info attached to
416  // instructions.
417  static bool checkInstructions(const DebugInstMap &DILocsBefore,
418                                const DebugInstMap &DILocsAfter,
419                                const WeakInstValueMap &InstToDelete,
420                                StringRef NameOfWrappedPass,
421                                StringRef FileNameFromCU,
422                                bool ShouldWriteIntoJSON,
423                                llvm::json::Array &Bugs) {
424    bool Preserved = true;
425    for (const auto &L : DILocsAfter) {
426      if (L.second)
427        continue;
428      auto Instr = L.first;
429  
430      // In order to avoid pointer reuse/recycling, skip the values that might
431      // have been deleted during a pass.
432      auto WeakInstrPtr = InstToDelete.find(Instr);
433      if (WeakInstrPtr != InstToDelete.end() && !WeakInstrPtr->second)
434        continue;
435  
436      auto FnName = Instr->getFunction()->getName();
437      auto BB = Instr->getParent();
438      auto BBName = BB->hasName() ? BB->getName() : "no-name";
439      auto InstName = Instruction::getOpcodeName(Instr->getOpcode());
440  
441      auto InstrIt = DILocsBefore.find(Instr);
442      if (InstrIt == DILocsBefore.end()) {
443        if (ShouldWriteIntoJSON)
444          Bugs.push_back(llvm::json::Object({{"metadata", "DILocation"},
445                                             {"fn-name", FnName.str()},
446                                             {"bb-name", BBName.str()},
447                                             {"instr", InstName},
448                                             {"action", "not-generate"}}));
449        else
450          dbg() << "WARNING: " << NameOfWrappedPass
451                << " did not generate DILocation for " << *Instr
452                << " (BB: " << BBName << ", Fn: " << FnName
453                << ", File: " << FileNameFromCU << ")\n";
454        Preserved = false;
455      } else {
456        if (!InstrIt->second)
457          continue;
458        // If the instr had the !dbg attached before the pass, consider it as
459        // a debug info issue.
460        if (ShouldWriteIntoJSON)
461          Bugs.push_back(llvm::json::Object({{"metadata", "DILocation"},
462                                             {"fn-name", FnName.str()},
463                                             {"bb-name", BBName.str()},
464                                             {"instr", InstName},
465                                             {"action", "drop"}}));
466        else
467          dbg() << "WARNING: " << NameOfWrappedPass << " dropped DILocation of "
468                << *Instr << " (BB: " << BBName << ", Fn: " << FnName
469                << ", File: " << FileNameFromCU << ")\n";
470        Preserved = false;
471      }
472    }
473  
474    return Preserved;
475  }
476  
477  // This checks the preservation of original debug variable intrinsics.
478  static bool checkVars(const DebugVarMap &DIVarsBefore,
479                        const DebugVarMap &DIVarsAfter,
480                        StringRef NameOfWrappedPass, StringRef FileNameFromCU,
481                        bool ShouldWriteIntoJSON, llvm::json::Array &Bugs) {
482    bool Preserved = true;
483    for (const auto &V : DIVarsBefore) {
484      auto VarIt = DIVarsAfter.find(V.first);
485      if (VarIt == DIVarsAfter.end())
486        continue;
487  
488      unsigned NumOfDbgValsAfter = VarIt->second;
489  
490      if (V.second > NumOfDbgValsAfter) {
491        if (ShouldWriteIntoJSON)
492          Bugs.push_back(llvm::json::Object(
493              {{"metadata", "dbg-var-intrinsic"},
494               {"name", V.first->getName()},
495               {"fn-name", V.first->getScope()->getSubprogram()->getName()},
496               {"action", "drop"}}));
497        else
498          dbg() << "WARNING: " << NameOfWrappedPass
499                << " drops dbg.value()/dbg.declare() for " << V.first->getName()
500                << " from "
501                << "function " << V.first->getScope()->getSubprogram()->getName()
502                << " (file " << FileNameFromCU << ")\n";
503        Preserved = false;
504      }
505    }
506  
507    return Preserved;
508  }
509  
510  // Write the json data into the specifed file.
511  static void writeJSON(StringRef OrigDIVerifyBugsReportFilePath,
512                        StringRef FileNameFromCU, StringRef NameOfWrappedPass,
513                        llvm::json::Array &Bugs) {
514    std::error_code EC;
515    raw_fd_ostream OS_FILE{OrigDIVerifyBugsReportFilePath, EC,
516                           sys::fs::OF_Append | sys::fs::OF_TextWithCRLF};
517    if (EC) {
518      errs() << "Could not open file: " << EC.message() << ", "
519             << OrigDIVerifyBugsReportFilePath << '\n';
520      return;
521    }
522  
523    if (auto L = OS_FILE.lock()) {
524      OS_FILE << "{\"file\":\"" << FileNameFromCU << "\", ";
525  
526      StringRef PassName =
527          NameOfWrappedPass != "" ? NameOfWrappedPass : "no-name";
528      OS_FILE << "\"pass\":\"" << PassName << "\", ";
529  
530      llvm::json::Value BugsToPrint{std::move(Bugs)};
531      OS_FILE << "\"bugs\": " << BugsToPrint;
532  
533      OS_FILE << "}\n";
534    }
535    OS_FILE.close();
536  }
537  
538  bool llvm::checkDebugInfoMetadata(Module &M,
539                                    iterator_range<Module::iterator> Functions,
540                                    DebugInfoPerPass &DebugInfoBeforePass,
541                                    StringRef Banner, StringRef NameOfWrappedPass,
542                                    StringRef OrigDIVerifyBugsReportFilePath) {
543    LLVM_DEBUG(dbgs() << Banner << ": (after) " << NameOfWrappedPass << '\n');
544  
545    if (!M.getNamedMetadata("llvm.dbg.cu")) {
546      dbg() << Banner << ": Skipping module without debug info\n";
547      return false;
548    }
549  
550    // Map the debug info holding DIs after a pass.
551    DebugInfoPerPass DebugInfoAfterPass;
552  
553    // Visit each instruction.
554    for (Function &F : Functions) {
555      if (isFunctionSkipped(F))
556        continue;
557  
558      // Don't process functions without DI collected before the Pass.
559      if (!DebugInfoBeforePass.DIFunctions.count(&F))
560        continue;
561      // TODO: Collect metadata other than DISubprograms.
562      // Collect the DISubprogram.
563      auto *SP = F.getSubprogram();
564      DebugInfoAfterPass.DIFunctions.insert({&F, SP});
565  
566      if (SP) {
567        LLVM_DEBUG(dbgs() << "  Collecting subprogram: " << *SP << '\n');
568        for (const DINode *DN : SP->getRetainedNodes()) {
569          if (const auto *DV = dyn_cast<DILocalVariable>(DN)) {
570            DebugInfoAfterPass.DIVariables[DV] = 0;
571          }
572        }
573      }
574  
575      for (BasicBlock &BB : F) {
576        // Collect debug locations (!dbg) and debug variable intrinsics.
577        for (Instruction &I : BB) {
578          // Skip PHIs.
579          if (isa<PHINode>(I))
580            continue;
581  
582          // Collect dbg.values and dbg.declares.
583          if (DebugifyLevel > Level::Locations) {
584            if (auto *DVI = dyn_cast<DbgVariableIntrinsic>(&I)) {
585              if (!SP)
586                continue;
587              // Skip inlined variables.
588              if (I.getDebugLoc().getInlinedAt())
589                continue;
590              // Skip undef values.
591              if (DVI->isKillLocation())
592                continue;
593  
594              auto *Var = DVI->getVariable();
595              DebugInfoAfterPass.DIVariables[Var]++;
596              continue;
597            }
598          }
599  
600          // Skip debug instructions other than dbg.value and dbg.declare.
601          if (isa<DbgInfoIntrinsic>(&I))
602            continue;
603  
604          LLVM_DEBUG(dbgs() << "  Collecting info for inst: " << I << '\n');
605  
606          const DILocation *Loc = I.getDebugLoc().get();
607          bool HasLoc = Loc != nullptr;
608  
609          DebugInfoAfterPass.DILocations.insert({&I, HasLoc});
610        }
611      }
612    }
613  
614    // TODO: The name of the module could be read better?
615    StringRef FileNameFromCU =
616        (cast<DICompileUnit>(M.getNamedMetadata("llvm.dbg.cu")->getOperand(0)))
617            ->getFilename();
618  
619    auto DIFunctionsBefore = DebugInfoBeforePass.DIFunctions;
620    auto DIFunctionsAfter = DebugInfoAfterPass.DIFunctions;
621  
622    auto DILocsBefore = DebugInfoBeforePass.DILocations;
623    auto DILocsAfter = DebugInfoAfterPass.DILocations;
624  
625    auto InstToDelete = DebugInfoBeforePass.InstToDelete;
626  
627    auto DIVarsBefore = DebugInfoBeforePass.DIVariables;
628    auto DIVarsAfter = DebugInfoAfterPass.DIVariables;
629  
630    bool ShouldWriteIntoJSON = !OrigDIVerifyBugsReportFilePath.empty();
631    llvm::json::Array Bugs;
632  
633    bool ResultForFunc =
634        checkFunctions(DIFunctionsBefore, DIFunctionsAfter, NameOfWrappedPass,
635                       FileNameFromCU, ShouldWriteIntoJSON, Bugs);
636    bool ResultForInsts = checkInstructions(
637        DILocsBefore, DILocsAfter, InstToDelete, NameOfWrappedPass,
638        FileNameFromCU, ShouldWriteIntoJSON, Bugs);
639  
640    bool ResultForVars = checkVars(DIVarsBefore, DIVarsAfter, NameOfWrappedPass,
641                                   FileNameFromCU, ShouldWriteIntoJSON, Bugs);
642  
643    bool Result = ResultForFunc && ResultForInsts && ResultForVars;
644  
645    StringRef ResultBanner = NameOfWrappedPass != "" ? NameOfWrappedPass : Banner;
646    if (ShouldWriteIntoJSON && !Bugs.empty())
647      writeJSON(OrigDIVerifyBugsReportFilePath, FileNameFromCU, NameOfWrappedPass,
648                Bugs);
649  
650    if (Result)
651      dbg() << ResultBanner << ": PASS\n";
652    else
653      dbg() << ResultBanner << ": FAIL\n";
654  
655    // In the case of the `debugify-each`, no need to go over all the instructions
656    // again in the collectDebugInfoMetadata(), since as an input we can use
657    // the debugging information from the previous pass.
658    DebugInfoBeforePass = DebugInfoAfterPass;
659  
660    LLVM_DEBUG(dbgs() << "\n\n");
661    return Result;
662  }
663  
664  namespace {
665  /// Return true if a mis-sized diagnostic is issued for \p DVI.
666  bool diagnoseMisSizedDbgValue(Module &M, DbgValueInst *DVI) {
667    // The size of a dbg.value's value operand should match the size of the
668    // variable it corresponds to.
669    //
670    // TODO: This, along with a check for non-null value operands, should be
671    // promoted to verifier failures.
672  
673    // For now, don't try to interpret anything more complicated than an empty
674    // DIExpression. Eventually we should try to handle OP_deref and fragments.
675    if (DVI->getExpression()->getNumElements())
676      return false;
677  
678    Value *V = DVI->getVariableLocationOp(0);
679    if (!V)
680      return false;
681  
682    Type *Ty = V->getType();
683    uint64_t ValueOperandSize = getAllocSizeInBits(M, Ty);
684    std::optional<uint64_t> DbgVarSize = DVI->getFragmentSizeInBits();
685    if (!ValueOperandSize || !DbgVarSize)
686      return false;
687  
688    bool HasBadSize = false;
689    if (Ty->isIntegerTy()) {
690      auto Signedness = DVI->getVariable()->getSignedness();
691      if (Signedness && *Signedness == DIBasicType::Signedness::Signed)
692        HasBadSize = ValueOperandSize < *DbgVarSize;
693    } else {
694      HasBadSize = ValueOperandSize != *DbgVarSize;
695    }
696  
697    if (HasBadSize) {
698      dbg() << "ERROR: dbg.value operand has size " << ValueOperandSize
699            << ", but its variable has size " << *DbgVarSize << ": ";
700      DVI->print(dbg());
701      dbg() << "\n";
702    }
703    return HasBadSize;
704  }
705  
706  bool checkDebugifyMetadata(Module &M,
707                             iterator_range<Module::iterator> Functions,
708                             StringRef NameOfWrappedPass, StringRef Banner,
709                             bool Strip, DebugifyStatsMap *StatsMap) {
710    // Skip modules without debugify metadata.
711    NamedMDNode *NMD = M.getNamedMetadata("llvm.debugify");
712    if (!NMD) {
713      dbg() << Banner << ": Skipping module without debugify metadata\n";
714      return false;
715    }
716  
717    auto getDebugifyOperand = [&](unsigned Idx) -> unsigned {
718      return mdconst::extract<ConstantInt>(NMD->getOperand(Idx)->getOperand(0))
719          ->getZExtValue();
720    };
721    assert(NMD->getNumOperands() == 2 &&
722           "llvm.debugify should have exactly 2 operands!");
723    unsigned OriginalNumLines = getDebugifyOperand(0);
724    unsigned OriginalNumVars = getDebugifyOperand(1);
725    bool HasErrors = false;
726  
727    // Track debug info loss statistics if able.
728    DebugifyStatistics *Stats = nullptr;
729    if (StatsMap && !NameOfWrappedPass.empty())
730      Stats = &StatsMap->operator[](NameOfWrappedPass);
731  
732    BitVector MissingLines{OriginalNumLines, true};
733    BitVector MissingVars{OriginalNumVars, true};
734    for (Function &F : Functions) {
735      if (isFunctionSkipped(F))
736        continue;
737  
738      // Find missing lines.
739      for (Instruction &I : instructions(F)) {
740        if (isa<DbgValueInst>(&I))
741          continue;
742  
743        auto DL = I.getDebugLoc();
744        if (DL && DL.getLine() != 0) {
745          MissingLines.reset(DL.getLine() - 1);
746          continue;
747        }
748  
749        if (!isa<PHINode>(&I) && !DL) {
750          dbg() << "WARNING: Instruction with empty DebugLoc in function ";
751          dbg() << F.getName() << " --";
752          I.print(dbg());
753          dbg() << "\n";
754        }
755      }
756  
757      // Find missing variables and mis-sized debug values.
758      for (Instruction &I : instructions(F)) {
759        auto *DVI = dyn_cast<DbgValueInst>(&I);
760        if (!DVI)
761          continue;
762  
763        unsigned Var = ~0U;
764        (void)to_integer(DVI->getVariable()->getName(), Var, 10);
765        assert(Var <= OriginalNumVars && "Unexpected name for DILocalVariable");
766        bool HasBadSize = diagnoseMisSizedDbgValue(M, DVI);
767        if (!HasBadSize)
768          MissingVars.reset(Var - 1);
769        HasErrors |= HasBadSize;
770      }
771    }
772  
773    // Print the results.
774    for (unsigned Idx : MissingLines.set_bits())
775      dbg() << "WARNING: Missing line " << Idx + 1 << "\n";
776  
777    for (unsigned Idx : MissingVars.set_bits())
778      dbg() << "WARNING: Missing variable " << Idx + 1 << "\n";
779  
780    // Update DI loss statistics.
781    if (Stats) {
782      Stats->NumDbgLocsExpected += OriginalNumLines;
783      Stats->NumDbgLocsMissing += MissingLines.count();
784      Stats->NumDbgValuesExpected += OriginalNumVars;
785      Stats->NumDbgValuesMissing += MissingVars.count();
786    }
787  
788    dbg() << Banner;
789    if (!NameOfWrappedPass.empty())
790      dbg() << " [" << NameOfWrappedPass << "]";
791    dbg() << ": " << (HasErrors ? "FAIL" : "PASS") << '\n';
792  
793    // Strip debugify metadata if required.
794    if (Strip)
795      return stripDebugifyMetadata(M);
796  
797    return false;
798  }
799  
800  /// ModulePass for attaching synthetic debug info to everything, used with the
801  /// legacy module pass manager.
802  struct DebugifyModulePass : public ModulePass {
803    bool runOnModule(Module &M) override {
804      bool NewDebugMode = M.IsNewDbgInfoFormat;
805      if (NewDebugMode)
806        M.convertFromNewDbgValues();
807  
808      bool Result = applyDebugify(M, Mode, DebugInfoBeforePass, NameOfWrappedPass);
809  
810      if (NewDebugMode)
811        M.convertToNewDbgValues();
812      return Result;
813    }
814  
815    DebugifyModulePass(enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
816                       StringRef NameOfWrappedPass = "",
817                       DebugInfoPerPass *DebugInfoBeforePass = nullptr)
818        : ModulePass(ID), NameOfWrappedPass(NameOfWrappedPass),
819          DebugInfoBeforePass(DebugInfoBeforePass), Mode(Mode) {}
820  
821    void getAnalysisUsage(AnalysisUsage &AU) const override {
822      AU.setPreservesAll();
823    }
824  
825    static char ID; // Pass identification.
826  
827  private:
828    StringRef NameOfWrappedPass;
829    DebugInfoPerPass *DebugInfoBeforePass;
830    enum DebugifyMode Mode;
831  };
832  
833  /// FunctionPass for attaching synthetic debug info to instructions within a
834  /// single function, used with the legacy module pass manager.
835  struct DebugifyFunctionPass : public FunctionPass {
836    bool runOnFunction(Function &F) override {
837      bool NewDebugMode = F.IsNewDbgInfoFormat;
838      if (NewDebugMode)
839        F.convertFromNewDbgValues();
840  
841      bool Result = applyDebugify(F, Mode, DebugInfoBeforePass, NameOfWrappedPass);
842  
843      if (NewDebugMode)
844        F.convertToNewDbgValues();
845      return Result;
846    }
847  
848    DebugifyFunctionPass(
849        enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
850        StringRef NameOfWrappedPass = "",
851        DebugInfoPerPass *DebugInfoBeforePass = nullptr)
852        : FunctionPass(ID), NameOfWrappedPass(NameOfWrappedPass),
853          DebugInfoBeforePass(DebugInfoBeforePass), Mode(Mode) {}
854  
855    void getAnalysisUsage(AnalysisUsage &AU) const override {
856      AU.setPreservesAll();
857    }
858  
859    static char ID; // Pass identification.
860  
861  private:
862    StringRef NameOfWrappedPass;
863    DebugInfoPerPass *DebugInfoBeforePass;
864    enum DebugifyMode Mode;
865  };
866  
867  /// ModulePass for checking debug info inserted by -debugify, used with the
868  /// legacy module pass manager.
869  struct CheckDebugifyModulePass : public ModulePass {
870    bool runOnModule(Module &M) override {
871      bool NewDebugMode = M.IsNewDbgInfoFormat;
872      if (NewDebugMode)
873        M.convertFromNewDbgValues();
874  
875      bool Result;
876      if (Mode == DebugifyMode::SyntheticDebugInfo)
877        Result = checkDebugifyMetadata(M, M.functions(), NameOfWrappedPass,
878                                     "CheckModuleDebugify", Strip, StatsMap);
879      else
880        Result = checkDebugInfoMetadata(
881          M, M.functions(), *DebugInfoBeforePass,
882          "CheckModuleDebugify (original debuginfo)", NameOfWrappedPass,
883          OrigDIVerifyBugsReportFilePath);
884  
885      if (NewDebugMode)
886        M.convertToNewDbgValues();
887  
888      return Result;
889    }
890  
891    CheckDebugifyModulePass(
892        bool Strip = false, StringRef NameOfWrappedPass = "",
893        DebugifyStatsMap *StatsMap = nullptr,
894        enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
895        DebugInfoPerPass *DebugInfoBeforePass = nullptr,
896        StringRef OrigDIVerifyBugsReportFilePath = "")
897        : ModulePass(ID), NameOfWrappedPass(NameOfWrappedPass),
898          OrigDIVerifyBugsReportFilePath(OrigDIVerifyBugsReportFilePath),
899          StatsMap(StatsMap), DebugInfoBeforePass(DebugInfoBeforePass), Mode(Mode),
900          Strip(Strip) {}
901  
902    void getAnalysisUsage(AnalysisUsage &AU) const override {
903      AU.setPreservesAll();
904    }
905  
906    static char ID; // Pass identification.
907  
908  private:
909    StringRef NameOfWrappedPass;
910    StringRef OrigDIVerifyBugsReportFilePath;
911    DebugifyStatsMap *StatsMap;
912    DebugInfoPerPass *DebugInfoBeforePass;
913    enum DebugifyMode Mode;
914    bool Strip;
915  };
916  
917  /// FunctionPass for checking debug info inserted by -debugify-function, used
918  /// with the legacy module pass manager.
919  struct CheckDebugifyFunctionPass : public FunctionPass {
920    bool runOnFunction(Function &F) override {
921      bool NewDebugMode = F.IsNewDbgInfoFormat;
922      if (NewDebugMode)
923        F.convertFromNewDbgValues();
924  
925      Module &M = *F.getParent();
926      auto FuncIt = F.getIterator();
927      bool Result;
928      if (Mode == DebugifyMode::SyntheticDebugInfo)
929        Result = checkDebugifyMetadata(M, make_range(FuncIt, std::next(FuncIt)),
930                                     NameOfWrappedPass, "CheckFunctionDebugify",
931                                     Strip, StatsMap);
932      else
933        Result = checkDebugInfoMetadata(
934          M, make_range(FuncIt, std::next(FuncIt)), *DebugInfoBeforePass,
935          "CheckFunctionDebugify (original debuginfo)", NameOfWrappedPass,
936          OrigDIVerifyBugsReportFilePath);
937  
938      if (NewDebugMode)
939        F.convertToNewDbgValues();
940      return Result;
941    }
942  
943    CheckDebugifyFunctionPass(
944        bool Strip = false, StringRef NameOfWrappedPass = "",
945        DebugifyStatsMap *StatsMap = nullptr,
946        enum DebugifyMode Mode = DebugifyMode::SyntheticDebugInfo,
947        DebugInfoPerPass *DebugInfoBeforePass = nullptr,
948        StringRef OrigDIVerifyBugsReportFilePath = "")
949        : FunctionPass(ID), NameOfWrappedPass(NameOfWrappedPass),
950          OrigDIVerifyBugsReportFilePath(OrigDIVerifyBugsReportFilePath),
951          StatsMap(StatsMap), DebugInfoBeforePass(DebugInfoBeforePass), Mode(Mode),
952          Strip(Strip) {}
953  
954    void getAnalysisUsage(AnalysisUsage &AU) const override {
955      AU.setPreservesAll();
956    }
957  
958    static char ID; // Pass identification.
959  
960  private:
961    StringRef NameOfWrappedPass;
962    StringRef OrigDIVerifyBugsReportFilePath;
963    DebugifyStatsMap *StatsMap;
964    DebugInfoPerPass *DebugInfoBeforePass;
965    enum DebugifyMode Mode;
966    bool Strip;
967  };
968  
969  } // end anonymous namespace
970  
971  void llvm::exportDebugifyStats(StringRef Path, const DebugifyStatsMap &Map) {
972    std::error_code EC;
973    raw_fd_ostream OS{Path, EC};
974    if (EC) {
975      errs() << "Could not open file: " << EC.message() << ", " << Path << '\n';
976      return;
977    }
978  
979    OS << "Pass Name" << ',' << "# of missing debug values" << ','
980       << "# of missing locations" << ',' << "Missing/Expected value ratio" << ','
981       << "Missing/Expected location ratio" << '\n';
982    for (const auto &Entry : Map) {
983      StringRef Pass = Entry.first;
984      DebugifyStatistics Stats = Entry.second;
985  
986      OS << Pass << ',' << Stats.NumDbgValuesMissing << ','
987         << Stats.NumDbgLocsMissing << ',' << Stats.getMissingValueRatio() << ','
988         << Stats.getEmptyLocationRatio() << '\n';
989    }
990  }
991  
992  ModulePass *createDebugifyModulePass(enum DebugifyMode Mode,
993                                       llvm::StringRef NameOfWrappedPass,
994                                       DebugInfoPerPass *DebugInfoBeforePass) {
995    if (Mode == DebugifyMode::SyntheticDebugInfo)
996      return new DebugifyModulePass();
997    assert(Mode == DebugifyMode::OriginalDebugInfo && "Must be original mode");
998    return new DebugifyModulePass(Mode, NameOfWrappedPass, DebugInfoBeforePass);
999  }
1000  
1001  FunctionPass *
1002  createDebugifyFunctionPass(enum DebugifyMode Mode,
1003                             llvm::StringRef NameOfWrappedPass,
1004                             DebugInfoPerPass *DebugInfoBeforePass) {
1005    if (Mode == DebugifyMode::SyntheticDebugInfo)
1006      return new DebugifyFunctionPass();
1007    assert(Mode == DebugifyMode::OriginalDebugInfo && "Must be original mode");
1008    return new DebugifyFunctionPass(Mode, NameOfWrappedPass, DebugInfoBeforePass);
1009  }
1010  
1011  PreservedAnalyses NewPMDebugifyPass::run(Module &M, ModuleAnalysisManager &) {
1012    bool NewDebugMode = M.IsNewDbgInfoFormat;
1013    if (NewDebugMode)
1014      M.convertFromNewDbgValues();
1015  
1016    if (Mode == DebugifyMode::SyntheticDebugInfo)
1017      applyDebugifyMetadata(M, M.functions(),
1018                            "ModuleDebugify: ", /*ApplyToMF*/ nullptr);
1019    else
1020      collectDebugInfoMetadata(M, M.functions(), *DebugInfoBeforePass,
1021                               "ModuleDebugify (original debuginfo)",
1022                                NameOfWrappedPass);
1023  
1024    if (NewDebugMode)
1025        M.convertToNewDbgValues();
1026  
1027    PreservedAnalyses PA;
1028    PA.preserveSet<CFGAnalyses>();
1029    return PA;
1030  }
1031  
1032  ModulePass *createCheckDebugifyModulePass(
1033      bool Strip, StringRef NameOfWrappedPass, DebugifyStatsMap *StatsMap,
1034      enum DebugifyMode Mode, DebugInfoPerPass *DebugInfoBeforePass,
1035      StringRef OrigDIVerifyBugsReportFilePath) {
1036    if (Mode == DebugifyMode::SyntheticDebugInfo)
1037      return new CheckDebugifyModulePass(Strip, NameOfWrappedPass, StatsMap);
1038    assert(Mode == DebugifyMode::OriginalDebugInfo && "Must be original mode");
1039    return new CheckDebugifyModulePass(false, NameOfWrappedPass, nullptr, Mode,
1040                                       DebugInfoBeforePass,
1041                                       OrigDIVerifyBugsReportFilePath);
1042  }
1043  
1044  FunctionPass *createCheckDebugifyFunctionPass(
1045      bool Strip, StringRef NameOfWrappedPass, DebugifyStatsMap *StatsMap,
1046      enum DebugifyMode Mode, DebugInfoPerPass *DebugInfoBeforePass,
1047      StringRef OrigDIVerifyBugsReportFilePath) {
1048    if (Mode == DebugifyMode::SyntheticDebugInfo)
1049      return new CheckDebugifyFunctionPass(Strip, NameOfWrappedPass, StatsMap);
1050    assert(Mode == DebugifyMode::OriginalDebugInfo && "Must be original mode");
1051    return new CheckDebugifyFunctionPass(false, NameOfWrappedPass, nullptr, Mode,
1052                                         DebugInfoBeforePass,
1053                                         OrigDIVerifyBugsReportFilePath);
1054  }
1055  
1056  PreservedAnalyses NewPMCheckDebugifyPass::run(Module &M,
1057                                                ModuleAnalysisManager &) {
1058    bool NewDebugMode = M.IsNewDbgInfoFormat;
1059    if (NewDebugMode)
1060      M.convertFromNewDbgValues();
1061  
1062    if (Mode == DebugifyMode::SyntheticDebugInfo)
1063      checkDebugifyMetadata(M, M.functions(), NameOfWrappedPass,
1064                                     "CheckModuleDebugify", Strip, StatsMap);
1065    else
1066      checkDebugInfoMetadata(
1067        M, M.functions(), *DebugInfoBeforePass,
1068        "CheckModuleDebugify (original debuginfo)", NameOfWrappedPass,
1069        OrigDIVerifyBugsReportFilePath);
1070  
1071    if (NewDebugMode)
1072      M.convertToNewDbgValues();
1073  
1074    return PreservedAnalyses::all();
1075  }
1076  
1077  static bool isIgnoredPass(StringRef PassID) {
1078    return isSpecialPass(PassID, {"PassManager", "PassAdaptor",
1079                                  "AnalysisManagerProxy", "PrintFunctionPass",
1080                                  "PrintModulePass", "BitcodeWriterPass",
1081                                  "ThinLTOBitcodeWriterPass", "VerifierPass"});
1082  }
1083  
1084  void DebugifyEachInstrumentation::registerCallbacks(
1085      PassInstrumentationCallbacks &PIC, ModuleAnalysisManager &MAM) {
1086    PIC.registerBeforeNonSkippedPassCallback([this, &MAM](StringRef P, Any IR) {
1087      if (isIgnoredPass(P))
1088        return;
1089      PreservedAnalyses PA;
1090      PA.preserveSet<CFGAnalyses>();
1091      if (const auto **CF = llvm::any_cast<const Function *>(&IR)) {
1092        Function &F = *const_cast<Function *>(*CF);
1093        applyDebugify(F, Mode, DebugInfoBeforePass, P);
1094        MAM.getResult<FunctionAnalysisManagerModuleProxy>(*F.getParent())
1095            .getManager()
1096            .invalidate(F, PA);
1097      } else if (const auto **CM = llvm::any_cast<const Module *>(&IR)) {
1098        Module &M = *const_cast<Module *>(*CM);
1099        applyDebugify(M, Mode, DebugInfoBeforePass, P);
1100        MAM.invalidate(M, PA);
1101      }
1102    });
1103    PIC.registerAfterPassCallback(
1104        [this, &MAM](StringRef P, Any IR, const PreservedAnalyses &PassPA) {
1105          if (isIgnoredPass(P))
1106            return;
1107          PreservedAnalyses PA;
1108          PA.preserveSet<CFGAnalyses>();
1109          if (const auto **CF = llvm::any_cast<const Function *>(&IR)) {
1110            auto &F = *const_cast<Function *>(*CF);
1111            Module &M = *F.getParent();
1112            auto It = F.getIterator();
1113            if (Mode == DebugifyMode::SyntheticDebugInfo)
1114              checkDebugifyMetadata(M, make_range(It, std::next(It)), P,
1115                                    "CheckFunctionDebugify", /*Strip=*/true,
1116                                    DIStatsMap);
1117            else
1118              checkDebugInfoMetadata(M, make_range(It, std::next(It)),
1119                                     *DebugInfoBeforePass,
1120                                     "CheckModuleDebugify (original debuginfo)",
1121                                     P, OrigDIVerifyBugsReportFilePath);
1122            MAM.getResult<FunctionAnalysisManagerModuleProxy>(*F.getParent())
1123                .getManager()
1124                .invalidate(F, PA);
1125          } else if (const auto **CM = llvm::any_cast<const Module *>(&IR)) {
1126            Module &M = *const_cast<Module *>(*CM);
1127            if (Mode == DebugifyMode::SyntheticDebugInfo)
1128              checkDebugifyMetadata(M, M.functions(), P, "CheckModuleDebugify",
1129                                    /*Strip=*/true, DIStatsMap);
1130            else
1131              checkDebugInfoMetadata(M, M.functions(), *DebugInfoBeforePass,
1132                                     "CheckModuleDebugify (original debuginfo)",
1133                                     P, OrigDIVerifyBugsReportFilePath);
1134            MAM.invalidate(M, PA);
1135          }
1136        });
1137  }
1138  
1139  char DebugifyModulePass::ID = 0;
1140  static RegisterPass<DebugifyModulePass> DM("debugify",
1141                                             "Attach debug info to everything");
1142  
1143  char CheckDebugifyModulePass::ID = 0;
1144  static RegisterPass<CheckDebugifyModulePass>
1145      CDM("check-debugify", "Check debug info from -debugify");
1146  
1147  char DebugifyFunctionPass::ID = 0;
1148  static RegisterPass<DebugifyFunctionPass> DF("debugify-function",
1149                                               "Attach debug info to a function");
1150  
1151  char CheckDebugifyFunctionPass::ID = 0;
1152  static RegisterPass<CheckDebugifyFunctionPass>
1153      CDF("check-debugify-function", "Check debug info from -debugify-function");
1154