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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===-- ELFWriter.cpp - Target-independent ELF Writer code ----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the target-independent ELF writer. This file writes out
11// the ELF file in the following order:
12//
13// #1. ELF Header
14// #2. '.text' section
15// #3. '.data' section
16// #4. '.bss' section (conceptual position in file)
17// ...
18// #X. '.shstrtab' section
19// #Y. Section Table
20//
21// The entries in the section table are laid out as:
22// #0. Null entry [required]
23// #1. ".text" entry - the program code
24// #2. ".data" entry - global variables with initializers. [ if needed ]
25// #3. ".bss" entry - global variables without initializers. [ if needed ]
26// ...
27// #N. ".shstrtab" entry - String table for the section names.
28//
29// NOTE: This code should eventually be extended to support 64-bit ELF (this
30// won't be hard), but we haven't done so yet!
31//
32//===----------------------------------------------------------------------===//
33
34#include "ELFWriter.h"
Bruno Cardoso Lopes14582c82009-06-03 17:47:27 +000035#include "ELFCodeEmitter.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000036#include "llvm/Module.h"
37#include "llvm/PassManager.h"
Chris Lattnerb1528b22009-01-04 20:19:20 +000038#include "llvm/DerivedTypes.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000039#include "llvm/CodeGen/FileWriters.h"
40#include "llvm/CodeGen/MachineCodeEmitter.h"
41#include "llvm/CodeGen/MachineConstantPool.h"
42#include "llvm/CodeGen/MachineFunctionPass.h"
43#include "llvm/Target/TargetData.h"
44#include "llvm/Target/TargetELFWriterInfo.h"
45#include "llvm/Target/TargetMachine.h"
46#include "llvm/Support/Mangler.h"
47#include "llvm/Support/OutputBuffer.h"
48#include "llvm/Support/Streams.h"
Owen Anderson847b99b2008-08-21 00:14:44 +000049#include "llvm/Support/raw_ostream.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000050#include <list>
51using namespace llvm;
52
53char ELFWriter::ID = 0;
54/// AddELFWriter - Concrete function to add the ELF writer to the function pass
55/// manager.
Dan Gohmane34aa772008-03-11 22:29:46 +000056MachineCodeEmitter *llvm::AddELFWriter(PassManagerBase &PM,
Owen Anderson847b99b2008-08-21 00:14:44 +000057 raw_ostream &O,
Dan Gohmanf17a25c2007-07-18 16:29:46 +000058 TargetMachine &TM) {
59 ELFWriter *EW = new ELFWriter(O, TM);
Dan Gohmane34aa772008-03-11 22:29:46 +000060 PM.add(EW);
Dan Gohmanf17a25c2007-07-18 16:29:46 +000061 return &EW->getMachineCodeEmitter();
62}
63
64//===----------------------------------------------------------------------===//
Dan Gohmanf17a25c2007-07-18 16:29:46 +000065// ELFWriter Implementation
66//===----------------------------------------------------------------------===//
67
Bruno Cardoso Lopes14582c82009-06-03 17:47:27 +000068ELFWriter::ELFWriter(raw_ostream &o, TargetMachine &tm)
Dan Gohman26f8c272008-09-04 17:05:41 +000069 : MachineFunctionPass(&ID), O(o), TM(tm) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +000070 e_flags = 0; // e_flags defaults to 0, no flags.
71
72 is64Bit = TM.getTargetData()->getPointerSizeInBits() == 64;
73 isLittleEndian = TM.getTargetData()->isLittleEndian();
74
75 // Create the machine code emitter object for this target.
76 MCE = new ELFCodeEmitter(*this);
77 NumSections = 0;
78}
79
80ELFWriter::~ELFWriter() {
81 delete MCE;
82}
83
84// doInitialization - Emit the file header and all of the global variables for
85// the module to the ELF file.
86bool ELFWriter::doInitialization(Module &M) {
87 Mang = new Mangler(M);
88
89 // Local alias to shortenify coming code.
90 std::vector<unsigned char> &FH = FileHeader;
91 OutputBuffer FHOut(FH, is64Bit, isLittleEndian);
92
93 FHOut.outbyte(0x7F); // EI_MAG0
94 FHOut.outbyte('E'); // EI_MAG1
95 FHOut.outbyte('L'); // EI_MAG2
96 FHOut.outbyte('F'); // EI_MAG3
97 FHOut.outbyte(is64Bit ? 2 : 1); // EI_CLASS
98 FHOut.outbyte(isLittleEndian ? 1 : 2); // EI_DATA
99 FHOut.outbyte(1); // EI_VERSION
100 FH.resize(16); // EI_PAD up to 16 bytes.
101
102 // This should change for shared objects.
103 FHOut.outhalf(1); // e_type = ET_REL
Dan Gohman8926a642008-05-05 16:48:32 +0000104 FHOut.outhalf(TM.getELFWriterInfo()->getEMachine()); // target-defined
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000105 FHOut.outword(1); // e_version = 1
106 FHOut.outaddr(0); // e_entry = 0 -> no entry point in .o file
107 FHOut.outaddr(0); // e_phoff = 0 -> no program header for .o
108
109 ELFHeader_e_shoff_Offset = FH.size();
110 FHOut.outaddr(0); // e_shoff
111 FHOut.outword(e_flags); // e_flags = whatever the target wants
112
113 FHOut.outhalf(is64Bit ? 64 : 52); // e_ehsize = ELF header size
114 FHOut.outhalf(0); // e_phentsize = prog header entry size
115 FHOut.outhalf(0); // e_phnum = # prog header entries = 0
116 FHOut.outhalf(is64Bit ? 64 : 40); // e_shentsize = sect hdr entry size
117
118
119 ELFHeader_e_shnum_Offset = FH.size();
120 FHOut.outhalf(0); // e_shnum = # of section header ents
121 ELFHeader_e_shstrndx_Offset = FH.size();
122 FHOut.outhalf(0); // e_shstrndx = Section # of '.shstrtab'
123
124 // Add the null section, which is required to be first in the file.
125 getSection("", 0, 0);
126
127 // Start up the symbol table. The first entry in the symtab is the null
128 // entry.
129 SymbolTable.push_back(ELFSym(0));
130
131 return false;
132}
133
134void ELFWriter::EmitGlobal(GlobalVariable *GV) {
135 // If this is an external global, emit it now. TODO: Note that it would be
136 // better to ignore the symbol here and only add it to the symbol table if
137 // referenced.
138 if (!GV->hasInitializer()) {
139 ELFSym ExternalSym(GV);
140 ExternalSym.SetBind(ELFSym::STB_GLOBAL);
141 ExternalSym.SetType(ELFSym::STT_NOTYPE);
142 ExternalSym.SectionIdx = ELFSection::SHN_UNDEF;
143 SymbolTable.push_back(ExternalSym);
144 return;
145 }
146
Duncan Sands935686e2008-01-29 06:23:44 +0000147 unsigned Align = TM.getTargetData()->getPreferredAlignment(GV);
Chris Lattnerb1528b22009-01-04 20:19:20 +0000148 unsigned Size =
Duncan Sandsec4f97d2009-05-09 07:06:46 +0000149 TM.getTargetData()->getTypeAllocSize(GV->getType()->getElementType());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000150
151 // If this global has a zero initializer, it is part of the .bss or common
152 // section.
153 if (GV->getInitializer()->isNullValue()) {
154 // If this global is part of the common block, add it now. Variables are
155 // part of the common block if they are zero initialized and allowed to be
156 // merged with other symbols.
Dale Johannesen49c44122008-05-14 20:12:51 +0000157 if (GV->hasLinkOnceLinkage() || GV->hasWeakLinkage() ||
158 GV->hasCommonLinkage()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000159 ELFSym CommonSym(GV);
160 // Value for common symbols is the alignment required.
161 CommonSym.Value = Align;
162 CommonSym.Size = Size;
163 CommonSym.SetBind(ELFSym::STB_GLOBAL);
164 CommonSym.SetType(ELFSym::STT_OBJECT);
165 // TODO SOMEDAY: add ELF visibility.
166 CommonSym.SectionIdx = ELFSection::SHN_COMMON;
167 SymbolTable.push_back(CommonSym);
168 return;
169 }
170
171 // Otherwise, this symbol is part of the .bss section. Emit it now.
172
173 // Handle alignment. Ensure section is aligned at least as much as required
174 // by this symbol.
175 ELFSection &BSSSection = getBSSSection();
176 BSSSection.Align = std::max(BSSSection.Align, Align);
177
178 // Within the section, emit enough virtual padding to get us to an alignment
179 // boundary.
180 if (Align)
181 BSSSection.Size = (BSSSection.Size + Align - 1) & ~(Align-1);
182
183 ELFSym BSSSym(GV);
184 BSSSym.Value = BSSSection.Size;
185 BSSSym.Size = Size;
186 BSSSym.SetType(ELFSym::STT_OBJECT);
187
188 switch (GV->getLinkage()) {
Dale Johannesen49c44122008-05-14 20:12:51 +0000189 default: // weak/linkonce/common handled above
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000190 assert(0 && "Unexpected linkage type!");
191 case GlobalValue::AppendingLinkage: // FIXME: This should be improved!
192 case GlobalValue::ExternalLinkage:
193 BSSSym.SetBind(ELFSym::STB_GLOBAL);
194 break;
195 case GlobalValue::InternalLinkage:
196 BSSSym.SetBind(ELFSym::STB_LOCAL);
197 break;
198 }
199
200 // Set the idx of the .bss section
201 BSSSym.SectionIdx = BSSSection.SectionIdx;
Rafael Espindolaa168fc92009-01-15 20:18:42 +0000202 if (!GV->hasPrivateLinkage())
203 SymbolTable.push_back(BSSSym);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000204
205 // Reserve space in the .bss section for this symbol.
206 BSSSection.Size += Size;
207 return;
208 }
209
210 // FIXME: handle .rodata
211 //assert(!GV->isConstant() && "unimp");
212
213 // FIXME: handle .data
214 //assert(0 && "unimp");
215}
216
217
218bool ELFWriter::runOnMachineFunction(MachineFunction &MF) {
219 // Nothing to do here, this is all done through the MCE object above.
220 return false;
221}
222
223/// doFinalization - Now that the module has been completely processed, emit
224/// the ELF file to 'O'.
225bool ELFWriter::doFinalization(Module &M) {
226 // Okay, the ELF header and .text sections have been completed, build the
227 // .data, .bss, and "common" sections next.
228 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
229 I != E; ++I)
230 EmitGlobal(I);
231
232 // Emit the symbol table now, if non-empty.
233 EmitSymbolTable();
234
235 // FIXME: Emit the relocations now.
236
237 // Emit the string table for the sections in the ELF file we have.
238 EmitSectionTableStringTable();
239
240 // Emit the sections to the .o file, and emit the section table for the file.
241 OutputSectionsAndSectionTable();
242
243 // We are done with the abstract symbols.
244 SectionList.clear();
245 NumSections = 0;
246
247 // Release the name mangler object.
248 delete Mang; Mang = 0;
249 return false;
250}
251
252/// EmitSymbolTable - If the current symbol table is non-empty, emit the string
253/// table for it and then the symbol table itself.
254void ELFWriter::EmitSymbolTable() {
255 if (SymbolTable.size() == 1) return; // Only the null entry.
256
257 // FIXME: compact all local symbols to the start of the symtab.
258 unsigned FirstNonLocalSymbol = 1;
259
260 ELFSection &StrTab = getSection(".strtab", ELFSection::SHT_STRTAB, 0);
261 StrTab.Align = 1;
262
263 DataBuffer &StrTabBuf = StrTab.SectionData;
264 OutputBuffer StrTabOut(StrTabBuf, is64Bit, isLittleEndian);
265
266 // Set the zero'th symbol to a null byte, as required.
267 StrTabOut.outbyte(0);
268 SymbolTable[0].NameIdx = 0;
269 unsigned Index = 1;
270 for (unsigned i = 1, e = SymbolTable.size(); i != e; ++i) {
271 // Use the name mangler to uniquify the LLVM symbol.
272 std::string Name = Mang->getValueName(SymbolTable[i].GV);
273
274 if (Name.empty()) {
275 SymbolTable[i].NameIdx = 0;
276 } else {
277 SymbolTable[i].NameIdx = Index;
278
279 // Add the name to the output buffer, including the null terminator.
280 StrTabBuf.insert(StrTabBuf.end(), Name.begin(), Name.end());
281
282 // Add a null terminator.
283 StrTabBuf.push_back(0);
284
285 // Keep track of the number of bytes emitted to this section.
286 Index += Name.size()+1;
287 }
288 }
289 assert(Index == StrTabBuf.size());
290 StrTab.Size = Index;
291
292 // Now that we have emitted the string table and know the offset into the
293 // string table of each symbol, emit the symbol table itself.
294 ELFSection &SymTab = getSection(".symtab", ELFSection::SHT_SYMTAB, 0);
295 SymTab.Align = is64Bit ? 8 : 4;
296 SymTab.Link = SymTab.SectionIdx; // Section Index of .strtab.
297 SymTab.Info = FirstNonLocalSymbol; // First non-STB_LOCAL symbol.
298 SymTab.EntSize = 16; // Size of each symtab entry. FIXME: wrong for ELF64
299 DataBuffer &SymTabBuf = SymTab.SectionData;
300 OutputBuffer SymTabOut(SymTabBuf, is64Bit, isLittleEndian);
301
302 if (!is64Bit) { // 32-bit and 64-bit formats are shuffled a bit.
303 for (unsigned i = 0, e = SymbolTable.size(); i != e; ++i) {
304 ELFSym &Sym = SymbolTable[i];
305 SymTabOut.outword(Sym.NameIdx);
306 SymTabOut.outaddr32(Sym.Value);
307 SymTabOut.outword(Sym.Size);
308 SymTabOut.outbyte(Sym.Info);
309 SymTabOut.outbyte(Sym.Other);
310 SymTabOut.outhalf(Sym.SectionIdx);
311 }
312 } else {
313 for (unsigned i = 0, e = SymbolTable.size(); i != e; ++i) {
314 ELFSym &Sym = SymbolTable[i];
315 SymTabOut.outword(Sym.NameIdx);
316 SymTabOut.outbyte(Sym.Info);
317 SymTabOut.outbyte(Sym.Other);
318 SymTabOut.outhalf(Sym.SectionIdx);
319 SymTabOut.outaddr64(Sym.Value);
320 SymTabOut.outxword(Sym.Size);
321 }
322 }
323
324 SymTab.Size = SymTabBuf.size();
325}
326
327/// EmitSectionTableStringTable - This method adds and emits a section for the
328/// ELF Section Table string table: the string table that holds all of the
329/// section names.
330void ELFWriter::EmitSectionTableStringTable() {
331 // First step: add the section for the string table to the list of sections:
332 ELFSection &SHStrTab = getSection(".shstrtab", ELFSection::SHT_STRTAB, 0);
333
334 // Now that we know which section number is the .shstrtab section, update the
335 // e_shstrndx entry in the ELF header.
336 OutputBuffer FHOut(FileHeader, is64Bit, isLittleEndian);
337 FHOut.fixhalf(SHStrTab.SectionIdx, ELFHeader_e_shstrndx_Offset);
338
339 // Set the NameIdx of each section in the string table and emit the bytes for
340 // the string table.
341 unsigned Index = 0;
342 DataBuffer &Buf = SHStrTab.SectionData;
343
344 for (std::list<ELFSection>::iterator I = SectionList.begin(),
345 E = SectionList.end(); I != E; ++I) {
346 // Set the index into the table. Note if we have lots of entries with
347 // common suffixes, we could memoize them here if we cared.
348 I->NameIdx = Index;
349
350 // Add the name to the output buffer, including the null terminator.
351 Buf.insert(Buf.end(), I->Name.begin(), I->Name.end());
352
353 // Add a null terminator.
354 Buf.push_back(0);
355
356 // Keep track of the number of bytes emitted to this section.
357 Index += I->Name.size()+1;
358 }
359
360 // Set the size of .shstrtab now that we know what it is.
361 assert(Index == Buf.size());
362 SHStrTab.Size = Index;
363}
364
365/// OutputSectionsAndSectionTable - Now that we have constructed the file header
366/// and all of the sections, emit these to the ostream destination and emit the
367/// SectionTable.
368void ELFWriter::OutputSectionsAndSectionTable() {
369 // Pass #1: Compute the file offset for each section.
370 size_t FileOff = FileHeader.size(); // File header first.
371
372 // Emit all of the section data in order.
373 for (std::list<ELFSection>::iterator I = SectionList.begin(),
374 E = SectionList.end(); I != E; ++I) {
375 // Align FileOff to whatever the alignment restrictions of the section are.
376 if (I->Align)
377 FileOff = (FileOff+I->Align-1) & ~(I->Align-1);
378 I->Offset = FileOff;
379 FileOff += I->SectionData.size();
380 }
381
382 // Align Section Header.
383 unsigned TableAlign = is64Bit ? 8 : 4;
384 FileOff = (FileOff+TableAlign-1) & ~(TableAlign-1);
385
386 // Now that we know where all of the sections will be emitted, set the e_shnum
387 // entry in the ELF header.
388 OutputBuffer FHOut(FileHeader, is64Bit, isLittleEndian);
389 FHOut.fixhalf(NumSections, ELFHeader_e_shnum_Offset);
390
391 // Now that we know the offset in the file of the section table, update the
392 // e_shoff address in the ELF header.
393 FHOut.fixaddr(FileOff, ELFHeader_e_shoff_Offset);
394
395 // Now that we know all of the data in the file header, emit it and all of the
396 // sections!
397 O.write((char*)&FileHeader[0], FileHeader.size());
398 FileOff = FileHeader.size();
399 DataBuffer().swap(FileHeader);
400
401 DataBuffer Table;
402 OutputBuffer TableOut(Table, is64Bit, isLittleEndian);
403
404 // Emit all of the section data and build the section table itself.
405 while (!SectionList.empty()) {
406 const ELFSection &S = *SectionList.begin();
407
408 // Align FileOff to whatever the alignment restrictions of the section are.
409 if (S.Align)
410 for (size_t NewFileOff = (FileOff+S.Align-1) & ~(S.Align-1);
411 FileOff != NewFileOff; ++FileOff)
Owen Anderson847b99b2008-08-21 00:14:44 +0000412 O << (char)0xAB;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000413 O.write((char*)&S.SectionData[0], S.SectionData.size());
414 FileOff += S.SectionData.size();
415
416 TableOut.outword(S.NameIdx); // sh_name - Symbol table name idx
417 TableOut.outword(S.Type); // sh_type - Section contents & semantics
418 TableOut.outword(S.Flags); // sh_flags - Section flags.
419 TableOut.outaddr(S.Addr); // sh_addr - The mem addr this section is in.
420 TableOut.outaddr(S.Offset); // sh_offset - Offset from the file start.
421 TableOut.outword(S.Size); // sh_size - The section size.
422 TableOut.outword(S.Link); // sh_link - Section header table index link.
423 TableOut.outword(S.Info); // sh_info - Auxillary information.
424 TableOut.outword(S.Align); // sh_addralign - Alignment of section.
425 TableOut.outword(S.EntSize); // sh_entsize - Size of entries in the section
426
427 SectionList.pop_front();
428 }
429
430 // Align output for the section table.
431 for (size_t NewFileOff = (FileOff+TableAlign-1) & ~(TableAlign-1);
432 FileOff != NewFileOff; ++FileOff)
Owen Anderson847b99b2008-08-21 00:14:44 +0000433 O << (char)0xAB;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000434
435 // Emit the section table itself.
436 O.write((char*)&Table[0], Table.size());
437}