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Peter Collingbourne7b30f162017-03-31 04:47:07 +00001//===- IRSymtab.cpp - implementation of IR symbol tables --------*- C++ -*-===//
2//
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
10#include "llvm/Object/IRSymtab.h"
11#include "llvm/Analysis/ObjectUtils.h"
12#include "llvm/IR/Mangler.h"
13#include "llvm/IR/Module.h"
14#include "llvm/MC/StringTableBuilder.h"
15#include "llvm/Object/ModuleSymbolTable.h"
16#include "llvm/Support/Allocator.h"
17#include "llvm/Support/StringSaver.h"
18
19using namespace llvm;
20using namespace irsymtab;
21
22namespace {
23
24/// Stores the temporary state that is required to build an IR symbol table.
25struct Builder {
26 SmallVector<char, 0> &Symtab;
27 SmallVector<char, 0> &Strtab;
28 Builder(SmallVector<char, 0> &Symtab, SmallVector<char, 0> &Strtab)
29 : Symtab(Symtab), Strtab(Strtab) {}
30
Peter Collingbournec74cf062017-04-17 17:55:24 +000031 StringTableBuilder StrtabBuilder{StringTableBuilder::RAW};
Peter Collingbourne7b30f162017-03-31 04:47:07 +000032
33 BumpPtrAllocator Alloc;
34 StringSaver Saver{Alloc};
35
36 DenseMap<const Comdat *, unsigned> ComdatMap;
37 ModuleSymbolTable Msymtab;
38 SmallPtrSet<GlobalValue *, 8> Used;
39 Mangler Mang;
40 Triple TT;
41
42 std::vector<storage::Comdat> Comdats;
43 std::vector<storage::Module> Mods;
44 std::vector<storage::Symbol> Syms;
45 std::vector<storage::Uncommon> Uncommons;
46
47 std::string COFFLinkerOpts;
48 raw_string_ostream COFFLinkerOptsOS{COFFLinkerOpts};
49
50 void setStr(storage::Str &S, StringRef Value) {
51 S.Offset = StrtabBuilder.add(Value);
Peter Collingbournec74cf062017-04-17 17:55:24 +000052 S.Size = Value.size();
Peter Collingbourne7b30f162017-03-31 04:47:07 +000053 }
54 template <typename T>
55 void writeRange(storage::Range<T> &R, const std::vector<T> &Objs) {
56 R.Offset = Symtab.size();
57 R.Size = Objs.size();
58 Symtab.insert(Symtab.end(), reinterpret_cast<const char *>(Objs.data()),
59 reinterpret_cast<const char *>(Objs.data() + Objs.size()));
60 }
61
62 Error addModule(Module *M);
63 Error addSymbol(ModuleSymbolTable::Symbol Sym);
64
65 Error build(ArrayRef<Module *> Mods);
66};
67
68Error Builder::addModule(Module *M) {
69 collectUsedGlobalVariables(*M, Used, /*CompilerUsed*/ false);
70
71 storage::Module Mod;
72 Mod.Begin = Msymtab.symbols().size();
73 Msymtab.addModule(M);
74 Mod.End = Msymtab.symbols().size();
75 Mods.push_back(Mod);
76
77 if (TT.isOSBinFormatCOFF()) {
78 if (auto E = M->materializeMetadata())
79 return E;
80 if (Metadata *Val = M->getModuleFlag("Linker Options")) {
81 MDNode *LinkerOptions = cast<MDNode>(Val);
82 for (const MDOperand &MDOptions : LinkerOptions->operands())
83 for (const MDOperand &MDOption : cast<MDNode>(MDOptions)->operands())
84 COFFLinkerOptsOS << " " << cast<MDString>(MDOption)->getString();
85 }
86 }
87
88 return Error::success();
89}
90
91Error Builder::addSymbol(ModuleSymbolTable::Symbol Msym) {
92 Syms.emplace_back();
93 storage::Symbol &Sym = Syms.back();
94 Sym = {};
95
96 Sym.UncommonIndex = -1;
97 storage::Uncommon *Unc = nullptr;
98 auto Uncommon = [&]() -> storage::Uncommon & {
99 if (Unc)
100 return *Unc;
101 Sym.UncommonIndex = Uncommons.size();
102 Uncommons.emplace_back();
103 Unc = &Uncommons.back();
104 *Unc = {};
105 setStr(Unc->COFFWeakExternFallbackName, "");
106 return *Unc;
107 };
108
109 SmallString<64> Name;
110 {
111 raw_svector_ostream OS(Name);
112 Msymtab.printSymbolName(OS, Msym);
113 }
114 setStr(Sym.Name, Saver.save(StringRef(Name)));
115
116 auto Flags = Msymtab.getSymbolFlags(Msym);
117 if (Flags & object::BasicSymbolRef::SF_Undefined)
118 Sym.Flags |= 1 << storage::Symbol::FB_undefined;
119 if (Flags & object::BasicSymbolRef::SF_Weak)
120 Sym.Flags |= 1 << storage::Symbol::FB_weak;
121 if (Flags & object::BasicSymbolRef::SF_Common)
122 Sym.Flags |= 1 << storage::Symbol::FB_common;
123 if (Flags & object::BasicSymbolRef::SF_Indirect)
124 Sym.Flags |= 1 << storage::Symbol::FB_indirect;
125 if (Flags & object::BasicSymbolRef::SF_Global)
126 Sym.Flags |= 1 << storage::Symbol::FB_global;
127 if (Flags & object::BasicSymbolRef::SF_FormatSpecific)
128 Sym.Flags |= 1 << storage::Symbol::FB_format_specific;
Tobias Edler von Koch90df1f482017-04-13 16:24:14 +0000129 if (Flags & object::BasicSymbolRef::SF_Executable)
130 Sym.Flags |= 1 << storage::Symbol::FB_executable;
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000131
132 Sym.ComdatIndex = -1;
133 auto *GV = Msym.dyn_cast<GlobalValue *>();
134 if (!GV) {
135 setStr(Sym.IRName, "");
136 return Error::success();
137 }
138
139 setStr(Sym.IRName, GV->getName());
140
141 if (Used.count(GV))
142 Sym.Flags |= 1 << storage::Symbol::FB_used;
143 if (GV->isThreadLocal())
144 Sym.Flags |= 1 << storage::Symbol::FB_tls;
145 if (GV->hasGlobalUnnamedAddr())
146 Sym.Flags |= 1 << storage::Symbol::FB_unnamed_addr;
147 if (canBeOmittedFromSymbolTable(GV))
148 Sym.Flags |= 1 << storage::Symbol::FB_may_omit;
149 Sym.Flags |= unsigned(GV->getVisibility()) << storage::Symbol::FB_visibility;
150
151 if (Flags & object::BasicSymbolRef::SF_Common) {
152 Uncommon().CommonSize = GV->getParent()->getDataLayout().getTypeAllocSize(
153 GV->getType()->getElementType());
154 Uncommon().CommonAlign = GV->getAlignment();
155 }
156
157 const GlobalObject *Base = GV->getBaseObject();
158 if (!Base)
159 return make_error<StringError>("Unable to determine comdat of alias!",
160 inconvertibleErrorCode());
161 if (const Comdat *C = Base->getComdat()) {
162 auto P = ComdatMap.insert(std::make_pair(C, Comdats.size()));
163 Sym.ComdatIndex = P.first->second;
164
165 if (P.second) {
166 storage::Comdat Comdat;
167 setStr(Comdat.Name, C->getName());
168 Comdats.push_back(Comdat);
169 }
170 }
171
172 if (TT.isOSBinFormatCOFF()) {
173 emitLinkerFlagsForGlobalCOFF(COFFLinkerOptsOS, GV, TT, Mang);
174
175 if ((Flags & object::BasicSymbolRef::SF_Weak) &&
176 (Flags & object::BasicSymbolRef::SF_Indirect)) {
177 std::string FallbackName;
178 raw_string_ostream OS(FallbackName);
179 Msymtab.printSymbolName(
180 OS, cast<GlobalValue>(
181 cast<GlobalAlias>(GV)->getAliasee()->stripPointerCasts()));
182 OS.flush();
183 setStr(Uncommon().COFFWeakExternFallbackName, Saver.save(FallbackName));
184 }
185 }
186
187 return Error::success();
188}
189
190Error Builder::build(ArrayRef<Module *> IRMods) {
191 storage::Header Hdr;
192
193 assert(!IRMods.empty());
Peter Collingbourne8446f1f2017-04-14 02:55:06 +0000194 setStr(Hdr.TargetTriple, IRMods[0]->getTargetTriple());
Peter Collingbourne7b30f162017-03-31 04:47:07 +0000195 setStr(Hdr.SourceFileName, IRMods[0]->getSourceFileName());
196 TT = Triple(IRMods[0]->getTargetTriple());
197
198 // This adds the symbols for each module to Msymtab.
199 for (auto *M : IRMods)
200 if (Error Err = addModule(M))
201 return Err;
202
203 for (ModuleSymbolTable::Symbol Msym : Msymtab.symbols())
204 if (Error Err = addSymbol(Msym))
205 return Err;
206
207 COFFLinkerOptsOS.flush();
208 setStr(Hdr.COFFLinkerOpts, COFFLinkerOpts);
209
210 // We are about to fill in the header's range fields, so reserve space for it
211 // and copy it in afterwards.
212 Symtab.resize(sizeof(storage::Header));
213 writeRange(Hdr.Modules, Mods);
214 writeRange(Hdr.Comdats, Comdats);
215 writeRange(Hdr.Symbols, Syms);
216 writeRange(Hdr.Uncommons, Uncommons);
217
218 *reinterpret_cast<storage::Header *>(Symtab.data()) = Hdr;
219
220 raw_svector_ostream OS(Strtab);
221 StrtabBuilder.finalizeInOrder();
222 StrtabBuilder.write(OS);
223
224 return Error::success();
225}
226
227} // anonymous namespace
228
229Error irsymtab::build(ArrayRef<Module *> Mods, SmallVector<char, 0> &Symtab,
230 SmallVector<char, 0> &Strtab) {
231 return Builder(Symtab, Strtab).build(Mods);
232}