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Eugene Zelenko1df42fa2017-04-24 23:21:38 +00001//===- IRSymtab.cpp - implementation of IR symbol tables ------------------===//
Peter Collingbourne7b30f162017-03-31 04:47:07 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Chandler Carruth6bda14b2017-06-06 11:49:48 +000010#include "llvm/Object/IRSymtab.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000011#include "llvm/ADT/ArrayRef.h"
12#include "llvm/ADT/DenseMap.h"
13#include "llvm/ADT/SmallPtrSet.h"
14#include "llvm/ADT/SmallString.h"
15#include "llvm/ADT/SmallVector.h"
16#include "llvm/ADT/StringRef.h"
17#include "llvm/ADT/Triple.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000018#include "llvm/Analysis/ObjectUtils.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000019#include "llvm/IR/Comdat.h"
20#include "llvm/IR/DataLayout.h"
21#include "llvm/IR/GlobalAlias.h"
22#include "llvm/IR/GlobalObject.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000023#include "llvm/IR/Mangler.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000024#include "llvm/IR/Metadata.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000025#include "llvm/IR/Module.h"
Peter Collingbournec00c2b22017-06-08 01:26:14 +000026#include "llvm/Bitcode/BitcodeReader.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000027#include "llvm/MC/StringTableBuilder.h"
Peter Collingbournec00c2b22017-06-08 01:26:14 +000028#include "llvm/Object/IRObjectFile.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000029#include "llvm/Object/ModuleSymbolTable.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000030#include "llvm/Object/SymbolicFile.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000031#include "llvm/Support/Allocator.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000032#include "llvm/Support/Casting.h"
33#include "llvm/Support/Error.h"
Peter Collingbourne7b30f162017-03-31 04:47:07 +000034#include "llvm/Support/StringSaver.h"
Peter Collingbourne53ed8672017-06-27 23:49:58 +000035#include "llvm/Support/VCSRevision.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000036#include "llvm/Support/raw_ostream.h"
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000037#include <cassert>
38#include <string>
39#include <utility>
40#include <vector>
Peter Collingbourne7b30f162017-03-31 04:47:07 +000041
42using namespace llvm;
43using namespace irsymtab;
44
45namespace {
46
Peter Collingbourne53ed8672017-06-27 23:49:58 +000047const char *getExpectedProducerName() {
48 static char DefaultName[] = LLVM_VERSION_STRING
49#ifdef LLVM_REVISION
50 " " LLVM_REVISION
51#endif
52 ;
53 // Allows for testing of the irsymtab writer and upgrade mechanism. This
54 // environment variable should not be set by users.
55 if (char *OverrideName = getenv("LLVM_OVERRIDE_PRODUCER"))
56 return OverrideName;
57 return DefaultName;
58}
59
60const char *kExpectedProducerName = getExpectedProducerName();
61
Peter Collingbourne7b30f162017-03-31 04:47:07 +000062/// Stores the temporary state that is required to build an IR symbol table.
63struct Builder {
64 SmallVector<char, 0> &Symtab;
Peter Collingbourneafaeed52017-06-21 18:23:19 +000065 StringTableBuilder &StrtabBuilder;
66 StringSaver Saver;
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000067
Peter Collingbourneafaeed52017-06-21 18:23:19 +000068 // This ctor initializes a StringSaver using the passed in BumpPtrAllocator.
69 // The StringTableBuilder does not create a copy of any strings added to it,
70 // so this provides somewhere to store any strings that we create.
71 Builder(SmallVector<char, 0> &Symtab, StringTableBuilder &StrtabBuilder,
72 BumpPtrAllocator &Alloc)
73 : Symtab(Symtab), StrtabBuilder(StrtabBuilder), Saver(Alloc) {}
Peter Collingbourne7b30f162017-03-31 04:47:07 +000074
Peter Collingbourne6c484622017-11-21 22:06:20 +000075 DenseMap<const Comdat *, int> ComdatMap;
Peter Collingbourne7b30f162017-03-31 04:47:07 +000076 Mangler Mang;
77 Triple TT;
78
79 std::vector<storage::Comdat> Comdats;
80 std::vector<storage::Module> Mods;
81 std::vector<storage::Symbol> Syms;
82 std::vector<storage::Uncommon> Uncommons;
83
84 std::string COFFLinkerOpts;
85 raw_string_ostream COFFLinkerOptsOS{COFFLinkerOpts};
86
87 void setStr(storage::Str &S, StringRef Value) {
88 S.Offset = StrtabBuilder.add(Value);
Peter Collingbournec74cf062017-04-17 17:55:24 +000089 S.Size = Value.size();
Peter Collingbourne7b30f162017-03-31 04:47:07 +000090 }
Eugene Zelenko1df42fa2017-04-24 23:21:38 +000091
Peter Collingbourne7b30f162017-03-31 04:47:07 +000092 template <typename T>
93 void writeRange(storage::Range<T> &R, const std::vector<T> &Objs) {
94 R.Offset = Symtab.size();
95 R.Size = Objs.size();
96 Symtab.insert(Symtab.end(), reinterpret_cast<const char *>(Objs.data()),
97 reinterpret_cast<const char *>(Objs.data() + Objs.size()));
98 }
99
Peter Collingbourne6c484622017-11-21 22:06:20 +0000100 Expected<int> getComdatIndex(const Comdat *C, const Module *M);
101
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000102 Error addModule(Module *M);
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000103 Error addSymbol(const ModuleSymbolTable &Msymtab,
104 const SmallPtrSet<GlobalValue *, 8> &Used,
105 ModuleSymbolTable::Symbol Sym);
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000106
107 Error build(ArrayRef<Module *> Mods);
108};
109
110Error Builder::addModule(Module *M) {
Peter Collingbournedc8c0182017-06-08 22:04:24 +0000111 if (M->getDataLayoutStr().empty())
112 return make_error<StringError>("input module has no datalayout",
113 inconvertibleErrorCode());
114
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000115 SmallPtrSet<GlobalValue *, 8> Used;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000116 collectUsedGlobalVariables(*M, Used, /*CompilerUsed*/ false);
117
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000118 ModuleSymbolTable Msymtab;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000119 Msymtab.addModule(M);
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000120
121 storage::Module Mod;
122 Mod.Begin = Syms.size();
123 Mod.End = Syms.size() + Msymtab.symbols().size();
124 Mod.UncBegin = Uncommons.size();
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000125 Mods.push_back(Mod);
126
127 if (TT.isOSBinFormatCOFF()) {
128 if (auto E = M->materializeMetadata())
129 return E;
Peter Collingbourne89061b22017-06-12 20:10:48 +0000130 if (NamedMDNode *LinkerOptions =
131 M->getNamedMetadata("llvm.linker.options")) {
132 for (MDNode *MDOptions : LinkerOptions->operands())
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000133 for (const MDOperand &MDOption : cast<MDNode>(MDOptions)->operands())
134 COFFLinkerOptsOS << " " << cast<MDString>(MDOption)->getString();
135 }
136 }
137
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000138 for (ModuleSymbolTable::Symbol Msym : Msymtab.symbols())
139 if (Error Err = addSymbol(Msymtab, Used, Msym))
140 return Err;
141
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000142 return Error::success();
143}
144
Peter Collingbourne6c484622017-11-21 22:06:20 +0000145Expected<int> Builder::getComdatIndex(const Comdat *C, const Module *M) {
146 auto P = ComdatMap.insert(std::make_pair(C, Comdats.size()));
147 if (P.second) {
148 std::string Name;
149 if (TT.isOSBinFormatCOFF()) {
150 const GlobalValue *GV = M->getNamedValue(C->getName());
151 if (!GV)
152 return make_error<StringError>("Could not find leader",
153 inconvertibleErrorCode());
154 // Internal leaders do not affect symbol resolution, therefore they do not
155 // appear in the symbol table.
156 if (GV->hasLocalLinkage()) {
157 P.first->second = -1;
158 return -1;
159 }
160 llvm::raw_string_ostream OS(Name);
161 Mang.getNameWithPrefix(OS, GV, false);
162 } else {
163 Name = C->getName();
164 }
165
166 storage::Comdat Comdat;
167 setStr(Comdat.Name, Saver.save(Name));
168 Comdats.push_back(Comdat);
169 }
170
171 return P.first->second;
172}
173
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000174Error Builder::addSymbol(const ModuleSymbolTable &Msymtab,
175 const SmallPtrSet<GlobalValue *, 8> &Used,
176 ModuleSymbolTable::Symbol Msym) {
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000177 Syms.emplace_back();
178 storage::Symbol &Sym = Syms.back();
179 Sym = {};
180
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000181 storage::Uncommon *Unc = nullptr;
182 auto Uncommon = [&]() -> storage::Uncommon & {
183 if (Unc)
184 return *Unc;
Peter Collingbourne76423dc2017-04-17 23:43:49 +0000185 Sym.Flags |= 1 << storage::Symbol::FB_has_uncommon;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000186 Uncommons.emplace_back();
187 Unc = &Uncommons.back();
188 *Unc = {};
189 setStr(Unc->COFFWeakExternFallbackName, "");
Teresa Johnsona83c3f72017-07-25 19:42:32 +0000190 setStr(Unc->SectionName, "");
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000191 return *Unc;
192 };
193
194 SmallString<64> Name;
195 {
196 raw_svector_ostream OS(Name);
197 Msymtab.printSymbolName(OS, Msym);
198 }
199 setStr(Sym.Name, Saver.save(StringRef(Name)));
200
201 auto Flags = Msymtab.getSymbolFlags(Msym);
202 if (Flags & object::BasicSymbolRef::SF_Undefined)
203 Sym.Flags |= 1 << storage::Symbol::FB_undefined;
204 if (Flags & object::BasicSymbolRef::SF_Weak)
205 Sym.Flags |= 1 << storage::Symbol::FB_weak;
206 if (Flags & object::BasicSymbolRef::SF_Common)
207 Sym.Flags |= 1 << storage::Symbol::FB_common;
208 if (Flags & object::BasicSymbolRef::SF_Indirect)
209 Sym.Flags |= 1 << storage::Symbol::FB_indirect;
210 if (Flags & object::BasicSymbolRef::SF_Global)
211 Sym.Flags |= 1 << storage::Symbol::FB_global;
212 if (Flags & object::BasicSymbolRef::SF_FormatSpecific)
213 Sym.Flags |= 1 << storage::Symbol::FB_format_specific;
Tobias Edler von Koch90df1f482017-04-13 16:24:14 +0000214 if (Flags & object::BasicSymbolRef::SF_Executable)
215 Sym.Flags |= 1 << storage::Symbol::FB_executable;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000216
217 Sym.ComdatIndex = -1;
218 auto *GV = Msym.dyn_cast<GlobalValue *>();
219 if (!GV) {
Peter Collingbournefa58f752017-04-26 17:53:39 +0000220 // Undefined module asm symbols act as GC roots and are implicitly used.
221 if (Flags & object::BasicSymbolRef::SF_Undefined)
222 Sym.Flags |= 1 << storage::Symbol::FB_used;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000223 setStr(Sym.IRName, "");
224 return Error::success();
225 }
226
227 setStr(Sym.IRName, GV->getName());
228
229 if (Used.count(GV))
230 Sym.Flags |= 1 << storage::Symbol::FB_used;
231 if (GV->isThreadLocal())
232 Sym.Flags |= 1 << storage::Symbol::FB_tls;
233 if (GV->hasGlobalUnnamedAddr())
234 Sym.Flags |= 1 << storage::Symbol::FB_unnamed_addr;
235 if (canBeOmittedFromSymbolTable(GV))
236 Sym.Flags |= 1 << storage::Symbol::FB_may_omit;
237 Sym.Flags |= unsigned(GV->getVisibility()) << storage::Symbol::FB_visibility;
238
239 if (Flags & object::BasicSymbolRef::SF_Common) {
240 Uncommon().CommonSize = GV->getParent()->getDataLayout().getTypeAllocSize(
241 GV->getType()->getElementType());
242 Uncommon().CommonAlign = GV->getAlignment();
243 }
244
245 const GlobalObject *Base = GV->getBaseObject();
246 if (!Base)
247 return make_error<StringError>("Unable to determine comdat of alias!",
248 inconvertibleErrorCode());
249 if (const Comdat *C = Base->getComdat()) {
Peter Collingbourne6c484622017-11-21 22:06:20 +0000250 Expected<int> ComdatIndexOrErr = getComdatIndex(C, GV->getParent());
251 if (!ComdatIndexOrErr)
252 return ComdatIndexOrErr.takeError();
253 Sym.ComdatIndex = *ComdatIndexOrErr;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000254 }
255
256 if (TT.isOSBinFormatCOFF()) {
257 emitLinkerFlagsForGlobalCOFF(COFFLinkerOptsOS, GV, TT, Mang);
258
259 if ((Flags & object::BasicSymbolRef::SF_Weak) &&
260 (Flags & object::BasicSymbolRef::SF_Indirect)) {
Peter Collingbourne4899a922017-09-07 01:33:52 +0000261 auto *Fallback = dyn_cast<GlobalValue>(
262 cast<GlobalAlias>(GV)->getAliasee()->stripPointerCasts());
263 if (!Fallback)
264 return make_error<StringError>("Invalid weak external",
265 inconvertibleErrorCode());
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000266 std::string FallbackName;
267 raw_string_ostream OS(FallbackName);
Peter Collingbourne4899a922017-09-07 01:33:52 +0000268 Msymtab.printSymbolName(OS, Fallback);
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000269 OS.flush();
270 setStr(Uncommon().COFFWeakExternFallbackName, Saver.save(FallbackName));
271 }
272 }
273
Teresa Johnsona83c3f72017-07-25 19:42:32 +0000274 if (!Base->getSection().empty())
275 setStr(Uncommon().SectionName, Saver.save(Base->getSection()));
276
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000277 return Error::success();
278}
279
280Error Builder::build(ArrayRef<Module *> IRMods) {
281 storage::Header Hdr;
282
283 assert(!IRMods.empty());
Peter Collingbourne53ed8672017-06-27 23:49:58 +0000284 Hdr.Version = storage::Header::kCurrentVersion;
285 setStr(Hdr.Producer, kExpectedProducerName);
Peter Collingbourne8446f1f2017-04-14 02:55:06 +0000286 setStr(Hdr.TargetTriple, IRMods[0]->getTargetTriple());
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000287 setStr(Hdr.SourceFileName, IRMods[0]->getSourceFileName());
288 TT = Triple(IRMods[0]->getTargetTriple());
289
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000290 for (auto *M : IRMods)
291 if (Error Err = addModule(M))
292 return Err;
293
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000294 COFFLinkerOptsOS.flush();
Peter Collingbourneafaeed52017-06-21 18:23:19 +0000295 setStr(Hdr.COFFLinkerOpts, Saver.save(COFFLinkerOpts));
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000296
297 // We are about to fill in the header's range fields, so reserve space for it
298 // and copy it in afterwards.
299 Symtab.resize(sizeof(storage::Header));
300 writeRange(Hdr.Modules, Mods);
301 writeRange(Hdr.Comdats, Comdats);
302 writeRange(Hdr.Symbols, Syms);
303 writeRange(Hdr.Uncommons, Uncommons);
304
305 *reinterpret_cast<storage::Header *>(Symtab.data()) = Hdr;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000306 return Error::success();
307}
308
Eugene Zelenko1df42fa2017-04-24 23:21:38 +0000309} // end anonymous namespace
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000310
311Error irsymtab::build(ArrayRef<Module *> Mods, SmallVector<char, 0> &Symtab,
Peter Collingbourneafaeed52017-06-21 18:23:19 +0000312 StringTableBuilder &StrtabBuilder,
313 BumpPtrAllocator &Alloc) {
314 return Builder(Symtab, StrtabBuilder, Alloc).build(Mods);
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000315}
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000316
Peter Collingbourne8dde4cb2017-06-08 22:00:24 +0000317// Upgrade a vector of bitcode modules created by an old version of LLVM by
318// creating an irsymtab for them in the current format.
319static Expected<FileContents> upgrade(ArrayRef<BitcodeModule> BMs) {
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000320 FileContents FC;
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000321
322 LLVMContext Ctx;
323 std::vector<Module *> Mods;
324 std::vector<std::unique_ptr<Module>> OwnedMods;
325 for (auto BM : BMs) {
326 Expected<std::unique_ptr<Module>> MOrErr =
327 BM.getLazyModule(Ctx, /*ShouldLazyLoadMetadata*/ true,
328 /*IsImporting*/ false);
329 if (!MOrErr)
330 return MOrErr.takeError();
331
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000332 Mods.push_back(MOrErr->get());
333 OwnedMods.push_back(std::move(*MOrErr));
334 }
335
Peter Collingbourneafaeed52017-06-21 18:23:19 +0000336 StringTableBuilder StrtabBuilder(StringTableBuilder::RAW);
337 BumpPtrAllocator Alloc;
338 if (Error E = build(Mods, FC.Symtab, StrtabBuilder, Alloc))
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000339 return std::move(E);
340
Peter Collingbourneafaeed52017-06-21 18:23:19 +0000341 StrtabBuilder.finalizeInOrder();
342 FC.Strtab.resize(StrtabBuilder.getSize());
343 StrtabBuilder.write((uint8_t *)FC.Strtab.data());
344
Peter Collingbournec00c2b22017-06-08 01:26:14 +0000345 FC.TheReader = {{FC.Symtab.data(), FC.Symtab.size()},
346 {FC.Strtab.data(), FC.Strtab.size()}};
347 return std::move(FC);
348}
Peter Collingbourne8dde4cb2017-06-08 22:00:24 +0000349
350Expected<FileContents> irsymtab::readBitcode(const BitcodeFileContents &BFC) {
351 if (BFC.Mods.empty())
352 return make_error<StringError>("Bitcode file does not contain any modules",
353 inconvertibleErrorCode());
354
Peter Collingbourne99b98c22017-06-27 23:50:24 +0000355 if (BFC.StrtabForSymtab.empty() ||
356 BFC.Symtab.size() < sizeof(storage::Header))
357 return upgrade(BFC.Mods);
358
359 // We cannot use the regular reader to read the version and producer, because
360 // it will expect the header to be in the current format. The only thing we
361 // can rely on is that the version and producer will be present as the first
362 // struct elements.
363 auto *Hdr = reinterpret_cast<const storage::Header *>(BFC.Symtab.data());
364 unsigned Version = Hdr->Version;
365 StringRef Producer = Hdr->Producer.get(BFC.StrtabForSymtab);
366 if (Version != storage::Header::kCurrentVersion ||
367 Producer != kExpectedProducerName)
368 return upgrade(BFC.Mods);
369
370 FileContents FC;
371 FC.TheReader = {{BFC.Symtab.data(), BFC.Symtab.size()},
372 {BFC.StrtabForSymtab.data(), BFC.StrtabForSymtab.size()}};
373
374 // Finally, make sure that the number of modules in the symbol table matches
375 // the number of modules in the bitcode file. If they differ, it may mean that
376 // the bitcode file was created by binary concatenation, so we need to create
377 // a new symbol table from scratch.
378 if (FC.TheReader.getNumModules() != BFC.Mods.size())
379 return upgrade(std::move(BFC.Mods));
380
381 return std::move(FC);
Peter Collingbourne8dde4cb2017-06-08 22:00:24 +0000382}