xref: /llvm-project/llvm/tools/dsymutil/MachODebugMapParser.cpp (revision 9ccfddc39d4d27f9b16fcc72ab30d483151d6d08)
1 //===- tools/dsymutil/MachODebugMapParser.cpp - Parse STABS debug maps ----===//
2 //
3 //                             The LLVM Linker
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "BinaryHolder.h"
11 #include "DebugMap.h"
12 #include "dsymutil.h"
13 #include "llvm/Object/MachO.h"
14 #include "llvm/Support/Path.h"
15 #include "llvm/Support/raw_ostream.h"
16 
17 namespace {
18 using namespace llvm;
19 using namespace llvm::dsymutil;
20 using namespace llvm::object;
21 
22 class MachODebugMapParser {
23 public:
24   MachODebugMapParser(StringRef BinaryPath, StringRef PathPrefix = "",
25                       bool Verbose = false)
26       : BinaryPath(BinaryPath), PathPrefix(PathPrefix),
27         MainBinaryHolder(Verbose), CurrentObjectHolder(Verbose),
28         CurrentDebugMapObject(nullptr) {}
29 
30   /// \brief Parses and returns the DebugMap of the input binary.
31   /// \returns an error in case the provided BinaryPath doesn't exist
32   /// or isn't of a supported type.
33   ErrorOr<std::unique_ptr<DebugMap>> parse();
34 
35 private:
36   std::string BinaryPath;
37   std::string PathPrefix;
38 
39   /// Owns the MemoryBuffer for the main binary.
40   BinaryHolder MainBinaryHolder;
41   /// Map of the binary symbol addresses.
42   StringMap<uint64_t> MainBinarySymbolAddresses;
43   StringRef MainBinaryStrings;
44   /// The constructed DebugMap.
45   std::unique_ptr<DebugMap> Result;
46 
47   /// Owns the MemoryBuffer for the currently handled object file.
48   BinaryHolder CurrentObjectHolder;
49   /// Map of the currently processed object file symbol addresses.
50   StringMap<uint64_t> CurrentObjectAddresses;
51   /// Element of the debug map corresponfing to the current object file.
52   DebugMapObject *CurrentDebugMapObject;
53 
54   /// Holds function info while function scope processing.
55   const char *CurrentFunctionName;
56   uint64_t CurrentFunctionAddress;
57 
58   void switchToNewDebugMapObject(StringRef Filename, sys::TimeValue Timestamp);
59   void resetParserState();
60   uint64_t getMainBinarySymbolAddress(StringRef Name);
61   void loadMainBinarySymbols();
62   void loadCurrentObjectFileSymbols();
63   void handleStabSymbolTableEntry(uint32_t StringIndex, uint8_t Type,
64                                   uint8_t SectionIndex, uint16_t Flags,
65                                   uint64_t Value);
66 
67   template <typename STEType> void handleStabDebugMapEntry(const STEType &STE) {
68     handleStabSymbolTableEntry(STE.n_strx, STE.n_type, STE.n_sect, STE.n_desc,
69                                STE.n_value);
70   }
71 };
72 
73 static void Warning(const Twine &Msg) { errs() << "warning: " + Msg + "\n"; }
74 }
75 
76 /// Reset the parser state coresponding to the current object
77 /// file. This is to be called after an object file is finished
78 /// processing.
79 void MachODebugMapParser::resetParserState() {
80   CurrentObjectAddresses.clear();
81   CurrentDebugMapObject = nullptr;
82 }
83 
84 /// Create a new DebugMapObject. This function resets the state of the
85 /// parser that was referring to the last object file and sets
86 /// everything up to add symbols to the new one.
87 void MachODebugMapParser::switchToNewDebugMapObject(StringRef Filename,
88                                                     sys::TimeValue Timestamp) {
89   resetParserState();
90 
91   SmallString<80> Path(PathPrefix);
92   sys::path::append(Path, Filename);
93 
94   auto MachOOrError =
95       CurrentObjectHolder.GetFileAs<MachOObjectFile>(Path, Timestamp);
96   if (auto Error = MachOOrError.getError()) {
97     Warning(Twine("cannot open debug object \"") + Path.str() + "\": " +
98             Error.message() + "\n");
99     return;
100   }
101 
102   loadCurrentObjectFileSymbols();
103   CurrentDebugMapObject = &Result->addDebugMapObject(Path, Timestamp);
104 }
105 
106 static Triple getTriple(const object::MachOObjectFile &Obj) {
107   Triple TheTriple("unknown-unknown-unknown");
108   TheTriple.setArch(Triple::ArchType(Obj.getArch()));
109   TheTriple.setObjectFormat(Triple::MachO);
110   return TheTriple;
111 }
112 
113 /// This main parsing routine tries to open the main binary and if
114 /// successful iterates over the STAB entries. The real parsing is
115 /// done in handleStabSymbolTableEntry.
116 ErrorOr<std::unique_ptr<DebugMap>> MachODebugMapParser::parse() {
117   auto MainBinOrError = MainBinaryHolder.GetFileAs<MachOObjectFile>(BinaryPath);
118   if (auto Error = MainBinOrError.getError())
119     return Error;
120 
121   const MachOObjectFile &MainBinary = *MainBinOrError;
122   loadMainBinarySymbols();
123   Result = make_unique<DebugMap>(getTriple(MainBinary));
124   MainBinaryStrings = MainBinary.getStringTableData();
125   for (const SymbolRef &Symbol : MainBinary.symbols()) {
126     const DataRefImpl &DRI = Symbol.getRawDataRefImpl();
127     if (MainBinary.is64Bit())
128       handleStabDebugMapEntry(MainBinary.getSymbol64TableEntry(DRI));
129     else
130       handleStabDebugMapEntry(MainBinary.getSymbolTableEntry(DRI));
131   }
132 
133   resetParserState();
134   return std::move(Result);
135 }
136 
137 /// Interpret the STAB entries to fill the DebugMap.
138 void MachODebugMapParser::handleStabSymbolTableEntry(uint32_t StringIndex,
139                                                      uint8_t Type,
140                                                      uint8_t SectionIndex,
141                                                      uint16_t Flags,
142                                                      uint64_t Value) {
143   if (!(Type & MachO::N_STAB))
144     return;
145 
146   const char *Name = &MainBinaryStrings.data()[StringIndex];
147 
148   // An N_OSO entry represents the start of a new object file description.
149   if (Type == MachO::N_OSO) {
150     sys::TimeValue Timestamp;
151     Timestamp.fromEpochTime(Value);
152     return switchToNewDebugMapObject(Name, Timestamp);
153   }
154 
155   // If the last N_OSO object file wasn't found,
156   // CurrentDebugMapObject will be null. Do not update anything
157   // until we find the next valid N_OSO entry.
158   if (!CurrentDebugMapObject)
159     return;
160 
161   uint32_t Size = 0;
162   switch (Type) {
163   case MachO::N_GSYM:
164     // This is a global variable. We need to query the main binary
165     // symbol table to find its address as it might not be in the
166     // debug map (for common symbols).
167     Value = getMainBinarySymbolAddress(Name);
168     break;
169   case MachO::N_FUN:
170     // Functions are scopes in STABS. They have an end marker that
171     // contains the function size.
172     if (Name[0] == '\0') {
173       Size = Value;
174       Value = CurrentFunctionAddress;
175       Name = CurrentFunctionName;
176       break;
177     } else {
178       CurrentFunctionName = Name;
179       CurrentFunctionAddress = Value;
180       return;
181     }
182   case MachO::N_STSYM:
183     break;
184   default:
185     return;
186   }
187 
188   auto ObjectSymIt = CurrentObjectAddresses.find(Name);
189   if (ObjectSymIt == CurrentObjectAddresses.end())
190     return Warning("could not find object file symbol for symbol " +
191                    Twine(Name));
192   if (!CurrentDebugMapObject->addSymbol(Name, ObjectSymIt->getValue(), Value,
193                                         Size))
194     return Warning(Twine("failed to insert symbol '") + Name +
195                    "' in the debug map.");
196 }
197 
198 /// Load the current object file symbols into CurrentObjectAddresses.
199 void MachODebugMapParser::loadCurrentObjectFileSymbols() {
200   CurrentObjectAddresses.clear();
201 
202   for (auto Sym : CurrentObjectHolder.Get().symbols()) {
203     uint64_t Addr = Sym.getValue();
204     ErrorOr<StringRef> Name = Sym.getName();
205     if (!Name)
206       continue;
207     CurrentObjectAddresses[*Name] = Addr;
208   }
209 }
210 
211 /// Lookup a symbol address in the main binary symbol table. The
212 /// parser only needs to query common symbols, thus not every symbol's
213 /// address is available through this function.
214 uint64_t MachODebugMapParser::getMainBinarySymbolAddress(StringRef Name) {
215   auto Sym = MainBinarySymbolAddresses.find(Name);
216   if (Sym == MainBinarySymbolAddresses.end())
217     return 0;
218   return Sym->second;
219 }
220 
221 /// Load the interesting main binary symbols' addresses into
222 /// MainBinarySymbolAddresses.
223 void MachODebugMapParser::loadMainBinarySymbols() {
224   const MachOObjectFile &MainBinary = MainBinaryHolder.GetAs<MachOObjectFile>();
225   section_iterator Section = MainBinary.section_end();
226   for (const auto &Sym : MainBinary.symbols()) {
227     SymbolRef::Type Type = Sym.getType();
228     // Skip undefined and STAB entries.
229     if ((Type & SymbolRef::ST_Debug) || (Type & SymbolRef::ST_Unknown))
230       continue;
231     // The only symbols of interest are the global variables. These
232     // are the only ones that need to be queried because the address
233     // of common data won't be described in the debug map. All other
234     // addresses should be fetched for the debug map.
235     if (!(Sym.getFlags() & SymbolRef::SF_Global) || Sym.getSection(Section) ||
236         Section == MainBinary.section_end() || Section->isText())
237       continue;
238     uint64_t Addr = Sym.getValue();
239     ErrorOr<StringRef> NameOrErr = Sym.getName();
240     if (!NameOrErr)
241       continue;
242     StringRef Name = *NameOrErr;
243     if (Name.size() == 0 || Name[0] == '\0')
244       continue;
245     MainBinarySymbolAddresses[Name] = Addr;
246   }
247 }
248 
249 namespace llvm {
250 namespace dsymutil {
251 llvm::ErrorOr<std::unique_ptr<DebugMap>> parseDebugMap(StringRef InputFile,
252                                                        StringRef PrependPath,
253                                                        bool Verbose,
254                                                        bool InputIsYAML) {
255   if (!InputIsYAML) {
256     MachODebugMapParser Parser(InputFile, PrependPath, Verbose);
257     return Parser.parse();
258   } else {
259     return DebugMap::parseYAMLDebugMap(InputFile, PrependPath, Verbose);
260   }
261 }
262 }
263 }
264