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:
MachODebugMapParser(StringRef BinaryPath,StringRef PathPrefix="",bool Verbose=false)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);
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
handleStabDebugMapEntry(const STEType & STE)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
Warning(const Twine & Msg)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.
resetParserState()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.
switchToNewDebugMapObject(StringRef Filename)87 void MachODebugMapParser::switchToNewDebugMapObject(StringRef Filename) {
88 resetParserState();
89
90 SmallString<80> Path(PathPrefix);
91 sys::path::append(Path, Filename);
92
93 auto MachOOrError = CurrentObjectHolder.GetFileAs<MachOObjectFile>(Path);
94 if (auto Error = MachOOrError.getError()) {
95 Warning(Twine("cannot open debug object \"") + Path.str() + "\": " +
96 Error.message() + "\n");
97 return;
98 }
99
100 loadCurrentObjectFileSymbols();
101 CurrentDebugMapObject = &Result->addDebugMapObject(Path);
102 }
103
getTriple(const object::MachOObjectFile & Obj)104 static Triple getTriple(const object::MachOObjectFile &Obj) {
105 Triple TheTriple("unknown-unknown-unknown");
106 TheTriple.setArch(Triple::ArchType(Obj.getArch()));
107 TheTriple.setObjectFormat(Triple::MachO);
108 return TheTriple;
109 }
110
111 /// This main parsing routine tries to open the main binary and if
112 /// successful iterates over the STAB entries. The real parsing is
113 /// done in handleStabSymbolTableEntry.
parse()114 ErrorOr<std::unique_ptr<DebugMap>> MachODebugMapParser::parse() {
115 auto MainBinOrError = MainBinaryHolder.GetFileAs<MachOObjectFile>(BinaryPath);
116 if (auto Error = MainBinOrError.getError())
117 return Error;
118
119 const MachOObjectFile &MainBinary = *MainBinOrError;
120 loadMainBinarySymbols();
121 Result = make_unique<DebugMap>(getTriple(MainBinary));
122 MainBinaryStrings = MainBinary.getStringTableData();
123 for (const SymbolRef &Symbol : MainBinary.symbols()) {
124 const DataRefImpl &DRI = Symbol.getRawDataRefImpl();
125 if (MainBinary.is64Bit())
126 handleStabDebugMapEntry(MainBinary.getSymbol64TableEntry(DRI));
127 else
128 handleStabDebugMapEntry(MainBinary.getSymbolTableEntry(DRI));
129 }
130
131 resetParserState();
132 return std::move(Result);
133 }
134
135 /// Interpret the STAB entries to fill the DebugMap.
handleStabSymbolTableEntry(uint32_t StringIndex,uint8_t Type,uint8_t SectionIndex,uint16_t Flags,uint64_t Value)136 void MachODebugMapParser::handleStabSymbolTableEntry(uint32_t StringIndex,
137 uint8_t Type,
138 uint8_t SectionIndex,
139 uint16_t Flags,
140 uint64_t Value) {
141 if (!(Type & MachO::N_STAB))
142 return;
143
144 const char *Name = &MainBinaryStrings.data()[StringIndex];
145
146 // An N_OSO entry represents the start of a new object file description.
147 if (Type == MachO::N_OSO)
148 return switchToNewDebugMapObject(Name);
149
150 // If the last N_OSO object file wasn't found,
151 // CurrentDebugMapObject will be null. Do not update anything
152 // until we find the next valid N_OSO entry.
153 if (!CurrentDebugMapObject)
154 return;
155
156 uint32_t Size = 0;
157 switch (Type) {
158 case MachO::N_GSYM:
159 // This is a global variable. We need to query the main binary
160 // symbol table to find its address as it might not be in the
161 // debug map (for common symbols).
162 Value = getMainBinarySymbolAddress(Name);
163 if (Value == UnknownAddressOrSize)
164 return;
165 break;
166 case MachO::N_FUN:
167 // Functions are scopes in STABS. They have an end marker that
168 // contains the function size.
169 if (Name[0] == '\0') {
170 Size = Value;
171 Value = CurrentFunctionAddress;
172 Name = CurrentFunctionName;
173 break;
174 } else {
175 CurrentFunctionName = Name;
176 CurrentFunctionAddress = Value;
177 return;
178 }
179 case MachO::N_STSYM:
180 break;
181 default:
182 return;
183 }
184
185 auto ObjectSymIt = CurrentObjectAddresses.find(Name);
186 if (ObjectSymIt == CurrentObjectAddresses.end())
187 return Warning("could not find object file symbol for symbol " +
188 Twine(Name));
189 if (!CurrentDebugMapObject->addSymbol(Name, ObjectSymIt->getValue(), Value,
190 Size))
191 return Warning(Twine("failed to insert symbol '") + Name +
192 "' in the debug map.");
193 }
194
195 /// Load the current object file symbols into CurrentObjectAddresses.
loadCurrentObjectFileSymbols()196 void MachODebugMapParser::loadCurrentObjectFileSymbols() {
197 CurrentObjectAddresses.clear();
198
199 for (auto Sym : CurrentObjectHolder.Get().symbols()) {
200 StringRef Name;
201 uint64_t Addr;
202 if (Sym.getAddress(Addr) || Addr == UnknownAddressOrSize ||
203 Sym.getName(Name))
204 continue;
205 CurrentObjectAddresses[Name] = Addr;
206 }
207 }
208
209 /// Lookup a symbol address in the main binary symbol table. The
210 /// parser only needs to query common symbols, thus not every symbol's
211 /// address is available through this function.
getMainBinarySymbolAddress(StringRef Name)212 uint64_t MachODebugMapParser::getMainBinarySymbolAddress(StringRef Name) {
213 auto Sym = MainBinarySymbolAddresses.find(Name);
214 if (Sym == MainBinarySymbolAddresses.end())
215 return UnknownAddressOrSize;
216 return Sym->second;
217 }
218
219 /// Load the interesting main binary symbols' addresses into
220 /// MainBinarySymbolAddresses.
loadMainBinarySymbols()221 void MachODebugMapParser::loadMainBinarySymbols() {
222 const MachOObjectFile &MainBinary = MainBinaryHolder.GetAs<MachOObjectFile>();
223 section_iterator Section = MainBinary.section_end();
224 for (const auto &Sym : MainBinary.symbols()) {
225 SymbolRef::Type Type;
226 // Skip undefined and STAB entries.
227 if (Sym.getType(Type) || (Type & SymbolRef::ST_Debug) ||
228 (Type & SymbolRef::ST_Unknown))
229 continue;
230 StringRef Name;
231 uint64_t Addr;
232 // The only symbols of interest are the global variables. These
233 // are the only ones that need to be queried because the address
234 // of common data won't be described in the debug map. All other
235 // addresses should be fetched for the debug map.
236 if (Sym.getAddress(Addr) || Addr == UnknownAddressOrSize ||
237 !(Sym.getFlags() & SymbolRef::SF_Global) || Sym.getSection(Section) ||
238 Section->isText() || Sym.getName(Name) || Name.size() == 0 ||
239 Name[0] == '\0')
240 continue;
241 MainBinarySymbolAddresses[Name] = Addr;
242 }
243 }
244
245 namespace llvm {
246 namespace dsymutil {
247 llvm::ErrorOr<std::unique_ptr<DebugMap>>
parseDebugMap(StringRef InputFile,StringRef PrependPath,bool Verbose)248 parseDebugMap(StringRef InputFile, StringRef PrependPath, bool Verbose) {
249 MachODebugMapParser Parser(InputFile, PrependPath, Verbose);
250 return Parser.parse();
251 }
252 }
253 }
254