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Chris Lattnerb1622902010-07-11 22:07:02 +00001//===-- llvm/MC/WinCOFFObjectWriter.cpp -------------------------*- 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// This file contains an implementation of a Win32 COFF object file writer.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "WinCOFFObjectWriter"
Michael J. Spencer801a3592010-07-26 02:17:32 +000015
Chris Lattnerb1622902010-07-11 22:07:02 +000016#include "llvm/MC/MCObjectWriter.h"
Michael J. Spencer801a3592010-07-26 02:17:32 +000017#include "llvm/MC/MCSection.h"
18#include "llvm/MC/MCContext.h"
19#include "llvm/MC/MCSymbol.h"
20#include "llvm/MC/MCExpr.h"
Chris Lattnerb1622902010-07-11 22:07:02 +000021#include "llvm/MC/MCValue.h"
22#include "llvm/MC/MCAssembler.h"
23#include "llvm/MC/MCAsmLayout.h"
Michael J. Spencer801a3592010-07-26 02:17:32 +000024#include "llvm/MC/MCSectionCOFF.h"
25
26#include "llvm/ADT/DenseMap.h"
27#include "llvm/ADT/StringMap.h"
28#include "llvm/ADT/StringRef.h"
29
30#include "llvm/Support/COFF.h"
31#include "llvm/Support/Debug.h"
32#include "llvm/Support/ErrorHandling.h"
33
Michael J. Spencerab3de492010-08-03 04:43:33 +000034#include "llvm/System/TimeValue.h"
35
Michael J. Spencer801a3592010-07-26 02:17:32 +000036#include <cstdio>
37
Chris Lattnerb1622902010-07-11 22:07:02 +000038using namespace llvm;
39
40namespace {
Michael J. Spencer801a3592010-07-26 02:17:32 +000041typedef llvm::SmallString<COFF::NameSize> name;
Chris Lattnerb1622902010-07-11 22:07:02 +000042
Michael J. Spencer801a3592010-07-26 02:17:32 +000043enum AuxiliaryType {
44 ATFunctionDefinition,
45 ATbfAndefSymbol,
46 ATWeakExternal,
47 ATFile,
48 ATSectionDefinition
49};
Chris Lattnerb1622902010-07-11 22:07:02 +000050
Michael J. Spencer801a3592010-07-26 02:17:32 +000051struct AuxSymbol {
52 AuxiliaryType AuxType;
53 COFF::Auxiliary Aux;
54};
Chris Lattnerb1622902010-07-11 22:07:02 +000055
Michael J. Spencer801a3592010-07-26 02:17:32 +000056class COFFSymbol {
57public:
58 COFF::symbol Data;
Chris Lattnerb1622902010-07-11 22:07:02 +000059
Michael J. Spencer801a3592010-07-26 02:17:32 +000060 typedef llvm::SmallVector<AuxSymbol, 1> AuxiliarySymbols;
Chris Lattnerb1622902010-07-11 22:07:02 +000061
Michael J. Spencer801a3592010-07-26 02:17:32 +000062 name Name;
63 size_t Index;
64 AuxiliarySymbols Aux;
65 COFFSymbol *Other;
66
67 MCSymbolData const *MCData;
68
69 COFFSymbol(llvm::StringRef name, size_t index);
70 size_t size() const;
71 void set_name_offset(uint32_t Offset);
72};
73
74// This class contains staging data for a COFF relocation entry.
75struct COFFRelocation {
76 COFF::relocation Data;
77 COFFSymbol *Symb;
78
79 COFFRelocation() : Symb(NULL) {}
80 static size_t size() { return COFF::RelocationSize; }
81};
82
83typedef std::vector<COFFRelocation> relocations;
84
85class COFFSection {
86public:
87 COFF::section Header;
88
89 std::string Name;
90 size_t Number;
91 MCSectionData const *MCData;
92 COFFSymbol *Symb;
93 relocations Relocations;
94
95 COFFSection(llvm::StringRef name, size_t Index);
96 static size_t size();
97};
98
99// This class holds the COFF string table.
100class StringTable {
101 typedef llvm::StringMap<size_t> map;
102 map Map;
103
104 void update_length();
105public:
106 std::vector<char> Data;
107
108 StringTable();
109 size_t size() const;
110 size_t insert(llvm::StringRef String);
111};
112
113class WinCOFFObjectWriter : public MCObjectWriter {
114public:
115
116 typedef std::vector<COFFSymbol*> symbols;
117 typedef std::vector<COFFSection*> sections;
118
119 typedef StringMap<COFFSymbol *> name_symbol_map;
120 typedef StringMap<COFFSection *> name_section_map;
121
122 typedef DenseMap<MCSymbolData const *, COFFSymbol *> symbol_map;
123 typedef DenseMap<MCSectionData const *, COFFSection *> section_map;
124
125 // Root level file contents.
126 COFF::header Header;
127 sections Sections;
128 symbols Symbols;
129 StringTable Strings;
130
131 // Maps used during object file creation.
132 section_map SectionMap;
133 symbol_map SymbolMap;
134
135 WinCOFFObjectWriter(raw_ostream &OS);
Benjamin Kramer808ecfc2010-07-29 11:57:59 +0000136 ~WinCOFFObjectWriter();
Michael J. Spencer801a3592010-07-26 02:17:32 +0000137
138 COFFSymbol *createSymbol(llvm::StringRef Name);
139 COFFSection *createSection(llvm::StringRef Name);
140
141 void InitCOFFEntity(COFFSymbol &Symbol);
142 void InitCOFFEntity(COFFSection &Section);
143
144 template <typename object_t, typename list_t>
145 object_t *createCOFFEntity(llvm::StringRef Name, list_t &List);
146
147 void DefineSection(MCSectionData const &SectionData);
148 void DefineSymbol(MCSymbolData const &SymbolData, MCAssembler &Assembler);
149
150 bool ExportSection(COFFSection *S);
151 bool ExportSymbol(MCSymbolData const &SymbolData, MCAssembler &Asm);
152
153 // Entity writing methods.
154
155 void WriteFileHeader(const COFF::header &Header);
156 void WriteSymbol(const COFFSymbol *S);
157 void WriteAuxiliarySymbols(const COFFSymbol::AuxiliarySymbols &S);
158 void WriteSectionHeader(const COFF::section &S);
159 void WriteRelocation(const COFF::relocation &R);
160
161 // MCObjectWriter interface implementation.
162
163 void ExecutePostLayoutBinding(MCAssembler &Asm);
164
165 void RecordRelocation(const MCAssembler &Asm,
166 const MCAsmLayout &Layout,
167 const MCFragment *Fragment,
168 const MCFixup &Fixup,
169 MCValue Target,
170 uint64_t &FixedValue);
171
172 void WriteObject(const MCAssembler &Asm, const MCAsmLayout &Layout);
173};
Chris Lattnerb1622902010-07-11 22:07:02 +0000174}
175
Michael J. Spencer801a3592010-07-26 02:17:32 +0000176static inline void write_uint32_le(void *Data, uint32_t const &Value) {
177 uint8_t *Ptr = reinterpret_cast<uint8_t *>(Data);
178 Ptr[0] = (Value & 0x000000FF) >> 0;
179 Ptr[1] = (Value & 0x0000FF00) >> 8;
180 Ptr[2] = (Value & 0x00FF0000) >> 16;
181 Ptr[3] = (Value & 0xFF000000) >> 24;
182}
183
184static inline void write_uint16_le(void *Data, uint16_t const &Value) {
185 uint8_t *Ptr = reinterpret_cast<uint8_t *>(Data);
186 Ptr[0] = (Value & 0x00FF) >> 0;
187 Ptr[1] = (Value & 0xFF00) >> 8;
188}
189
190static inline void write_uint8_le(void *Data, uint8_t const &Value) {
191 uint8_t *Ptr = reinterpret_cast<uint8_t *>(Data);
192 Ptr[0] = (Value & 0xFF) >> 0;
193}
194
195//------------------------------------------------------------------------------
196// Symbol class implementation
197
198COFFSymbol::COFFSymbol(llvm::StringRef name, size_t index)
199 : Name(name.begin(), name.end()), Index(-1)
200 , Other(NULL), MCData(NULL) {
201 memset(&Data, 0, sizeof(Data));
202}
203
204size_t COFFSymbol::size() const {
205 return COFF::SymbolSize + (Data.NumberOfAuxSymbols * COFF::SymbolSize);
206}
207
208// In the case that the name does not fit within 8 bytes, the offset
209// into the string table is stored in the last 4 bytes instead, leaving
210// the first 4 bytes as 0.
211void COFFSymbol::set_name_offset(uint32_t Offset) {
212 write_uint32_le(Data.Name + 0, 0);
213 write_uint32_le(Data.Name + 4, Offset);
214}
215
216//------------------------------------------------------------------------------
217// Section class implementation
218
219COFFSection::COFFSection(llvm::StringRef name, size_t Index)
220 : Name(name), Number(Index + 1)
221 , MCData(NULL), Symb(NULL) {
222 memset(&Header, 0, sizeof(Header));
223}
224
225size_t COFFSection::size() {
226 return COFF::SectionSize;
227}
228
229//------------------------------------------------------------------------------
230// StringTable class implementation
231
232/// Write the length of the string table into Data.
233/// The length of the string table includes uint32 length header.
234void StringTable::update_length() {
235 write_uint32_le(&Data.front(), Data.size());
236}
237
238StringTable::StringTable() {
239 // The string table data begins with the length of the entire string table
240 // including the length header. Allocate space for this header.
241 Data.resize(4);
242}
243
244size_t StringTable::size() const {
245 return Data.size();
246}
247
248/// Add String to the table iff it is not already there.
249/// @returns the index into the string table where the string is now located.
250size_t StringTable::insert(llvm::StringRef String) {
251 map::iterator i = Map.find(String);
252
253 if (i != Map.end())
254 return i->second;
255
256 size_t Offset = Data.size();
257
258 // Insert string data into string table.
259 Data.insert(Data.end(), String.begin(), String.end());
260 Data.push_back('\0');
261
262 // Put a reference to it in the map.
263 Map[String] = Offset;
264
265 // Update the internal length field.
266 update_length();
267
268 return Offset;
269}
270
271//------------------------------------------------------------------------------
272// WinCOFFObjectWriter class implementation
273
Chris Lattnerb1622902010-07-11 22:07:02 +0000274WinCOFFObjectWriter::WinCOFFObjectWriter(raw_ostream &OS)
275 : MCObjectWriter(OS, true) {
Michael J. Spencer801a3592010-07-26 02:17:32 +0000276 memset(&Header, 0, sizeof(Header));
277 // TODO: Move magic constant out to COFF.h
278 Header.Machine = 0x14C; // x86
279}
280
Benjamin Kramer808ecfc2010-07-29 11:57:59 +0000281WinCOFFObjectWriter::~WinCOFFObjectWriter() {
282 for (symbols::iterator I = Symbols.begin(), E = Symbols.end(); I != E; ++I)
283 delete *I;
284 for (sections::iterator I = Sections.begin(), E = Sections.end(); I != E; ++I)
285 delete *I;
286}
287
Michael J. Spencer801a3592010-07-26 02:17:32 +0000288COFFSymbol *WinCOFFObjectWriter::createSymbol(llvm::StringRef Name) {
289 return createCOFFEntity<COFFSymbol>(Name, Symbols);
290}
291
292COFFSection *WinCOFFObjectWriter::createSection(llvm::StringRef Name) {
293 return createCOFFEntity<COFFSection>(Name, Sections);
294}
295
296/// This function initializes a symbol by entering its name into the string
297/// table if it is too long to fit in the symbol table header.
298void WinCOFFObjectWriter::InitCOFFEntity(COFFSymbol &S) {
299 if (S.Name.size() > COFF::NameSize) {
300 size_t StringTableEntry = Strings.insert(S.Name.c_str());
301
302 S.set_name_offset(StringTableEntry);
303 } else
304 memcpy(S.Data.Name, S.Name.c_str(), S.Name.size());
305}
306
307/// This function initializes a section by entering its name into the string
308/// table if it is too long to fit in the section table header.
309void WinCOFFObjectWriter::InitCOFFEntity(COFFSection &S) {
310 if (S.Name.size() > COFF::NameSize) {
311 size_t StringTableEntry = Strings.insert(S.Name.c_str());
312
313 // FIXME: Why is this number 999999? This number is never mentioned in the
314 // spec. I'm assuming this is due to the printed value needing to fit into
315 // the S.Header.Name field. In which case why not 9999999 (7 9's instead of
316 // 6)? The spec does not state if this entry should be null terminated in
317 // this case, and thus this seems to be the best way to do it. I think I
318 // just solved my own FIXME...
319 if (StringTableEntry > 999999)
320 report_fatal_error("COFF string table is greater than 999999 bytes.");
321
Douglas Gregorfd2878c2010-07-26 03:55:44 +0000322 sprintf(S.Header.Name, "/%d", (unsigned)StringTableEntry);
Michael J. Spencer801a3592010-07-26 02:17:32 +0000323 } else
324 memcpy(S.Header.Name, S.Name.c_str(), S.Name.size());
325}
326
327/// A template used to lookup or create a symbol/section, and initialize it if
328/// needed.
329template <typename object_t, typename list_t>
330object_t *WinCOFFObjectWriter::createCOFFEntity(llvm::StringRef Name,
331 list_t &List) {
332 object_t *Object = new object_t(Name, List.size());
333
334 InitCOFFEntity(*Object);
335
336 List.push_back(Object);
337
338 return Object;
339}
340
341/// This function takes a section data object from the assembler
342/// and creates the associated COFF section staging object.
343void WinCOFFObjectWriter::DefineSection(MCSectionData const &SectionData) {
344 // FIXME: Not sure how to verify this (at least in a debug build).
345 MCSectionCOFF const &Sec =
346 static_cast<MCSectionCOFF const &>(SectionData.getSection());
347
348 COFFSection *coff_section = createSection(Sec.getSectionName());
349 COFFSymbol *coff_symbol = createSymbol(Sec.getSectionName());
350
351 coff_section->Symb = coff_symbol;
352 coff_symbol->Data.StorageClass = COFF::IMAGE_SYM_CLASS_STATIC;
353 coff_symbol->Data.SectionNumber = coff_section->Number;
354
355 // In this case the auxiliary symbol is a Section Definition.
356 coff_symbol->Aux.resize(1);
357 memset(&coff_symbol->Aux[0], 0, sizeof(coff_symbol->Aux[0]));
358 coff_symbol->Aux[0].AuxType = ATSectionDefinition;
359 coff_symbol->Aux[0].Aux.SectionDefinition.Number = coff_section->Number;
360 coff_symbol->Aux[0].Aux.SectionDefinition.Selection = Sec.getSelection();
361
362 coff_section->Header.Characteristics = Sec.getCharacteristics();
363
364 uint32_t &Characteristics = coff_section->Header.Characteristics;
365 switch (SectionData.getAlignment()) {
366 case 1: Characteristics |= COFF::IMAGE_SCN_ALIGN_1BYTES; break;
367 case 2: Characteristics |= COFF::IMAGE_SCN_ALIGN_2BYTES; break;
368 case 4: Characteristics |= COFF::IMAGE_SCN_ALIGN_4BYTES; break;
369 case 8: Characteristics |= COFF::IMAGE_SCN_ALIGN_8BYTES; break;
370 case 16: Characteristics |= COFF::IMAGE_SCN_ALIGN_16BYTES; break;
371 case 32: Characteristics |= COFF::IMAGE_SCN_ALIGN_32BYTES; break;
372 case 64: Characteristics |= COFF::IMAGE_SCN_ALIGN_64BYTES; break;
373 case 128: Characteristics |= COFF::IMAGE_SCN_ALIGN_128BYTES; break;
374 case 256: Characteristics |= COFF::IMAGE_SCN_ALIGN_256BYTES; break;
375 case 512: Characteristics |= COFF::IMAGE_SCN_ALIGN_512BYTES; break;
376 case 1024: Characteristics |= COFF::IMAGE_SCN_ALIGN_1024BYTES; break;
377 case 2048: Characteristics |= COFF::IMAGE_SCN_ALIGN_2048BYTES; break;
378 case 4096: Characteristics |= COFF::IMAGE_SCN_ALIGN_4096BYTES; break;
379 case 8192: Characteristics |= COFF::IMAGE_SCN_ALIGN_8192BYTES; break;
380 default:
381 llvm_unreachable("unsupported section alignment");
382 }
383
384 // Bind internal COFF section to MC section.
385 coff_section->MCData = &SectionData;
386 SectionMap[&SectionData] = coff_section;
387}
388
389/// This function takes a section data object from the assembler
390/// and creates the associated COFF symbol staging object.
391void WinCOFFObjectWriter::DefineSymbol(MCSymbolData const &SymbolData,
392 MCAssembler &Assembler) {
393 COFFSymbol *coff_symbol = createSymbol(SymbolData.getSymbol().getName());
394
395 coff_symbol->Data.Type = (SymbolData.getFlags() & 0x0000FFFF) >> 0;
396 coff_symbol->Data.StorageClass = (SymbolData.getFlags() & 0x00FF0000) >> 16;
397
398 // If no storage class was specified in the streamer, define it here.
399 if (coff_symbol->Data.StorageClass == 0) {
400 bool external = SymbolData.isExternal() || (SymbolData.Fragment == NULL);
401
402 coff_symbol->Data.StorageClass =
403 external ? COFF::IMAGE_SYM_CLASS_EXTERNAL : COFF::IMAGE_SYM_CLASS_STATIC;
404 }
405
406 if (SymbolData.getFlags() & COFF::SF_WeakReference) {
407 coff_symbol->Data.StorageClass = COFF::IMAGE_SYM_CLASS_WEAK_EXTERNAL;
408
409 const MCExpr *Value = SymbolData.getSymbol().getVariableValue();
410
411 // FIXME: This assert message isn't very good.
412 assert(Value->getKind() == MCExpr::SymbolRef &&
413 "Value must be a SymbolRef!");
414
415 const MCSymbolRefExpr *SymbolRef =
416 static_cast<const MCSymbolRefExpr *>(Value);
417
418 const MCSymbolData &OtherSymbolData =
419 Assembler.getSymbolData(SymbolRef->getSymbol());
420
421 // FIXME: This assert message isn't very good.
422 assert(SymbolMap.find(&OtherSymbolData) != SymbolMap.end() &&
423 "OtherSymbolData must be in the symbol map!");
424
425 coff_symbol->Other = SymbolMap[&OtherSymbolData];
426
427 // Setup the Weak External auxiliary symbol.
428 coff_symbol->Aux.resize(1);
429 memset(&coff_symbol->Aux[0], 0, sizeof(coff_symbol->Aux[0]));
430 coff_symbol->Aux[0].AuxType = ATWeakExternal;
431 coff_symbol->Aux[0].Aux.WeakExternal.TagIndex = 0;
432 coff_symbol->Aux[0].Aux.WeakExternal.Characteristics =
433 COFF::IMAGE_WEAK_EXTERN_SEARCH_LIBRARY;
434 }
435
436 // Bind internal COFF symbol to MC symbol.
437 coff_symbol->MCData = &SymbolData;
438 SymbolMap[&SymbolData] = coff_symbol;
439}
440
441bool WinCOFFObjectWriter::ExportSection(COFFSection *S) {
442 return (S->Header.Characteristics
443 & COFF::IMAGE_SCN_CNT_UNINITIALIZED_DATA) == 0;
444}
445
446bool WinCOFFObjectWriter::ExportSymbol(MCSymbolData const &SymbolData,
447 MCAssembler &Asm) {
448 // This doesn't seem to be right. Strings referred to from the .data section
449 // need symbols so they can be linked to code in the .text section right?
450
451 // return Asm.isSymbolLinkerVisible (&SymbolData);
452
453 // For now, all symbols are exported, the linker will sort it out for us.
454 return true;
455}
456
457//------------------------------------------------------------------------------
458// entity writing methods
459
460void WinCOFFObjectWriter::WriteFileHeader(const COFF::header &Header) {
461 WriteLE16(Header.Machine);
462 WriteLE16(Header.NumberOfSections);
463 WriteLE32(Header.TimeDateStamp);
464 WriteLE32(Header.PointerToSymbolTable);
465 WriteLE32(Header.NumberOfSymbols);
466 WriteLE16(Header.SizeOfOptionalHeader);
467 WriteLE16(Header.Characteristics);
468}
469
470void WinCOFFObjectWriter::WriteSymbol(const COFFSymbol *S) {
471 WriteBytes(StringRef(S->Data.Name, COFF::NameSize));
472 WriteLE32(S->Data.Value);
473 WriteLE16(S->Data.SectionNumber);
474 WriteLE16(S->Data.Type);
475 Write8(S->Data.StorageClass);
476 Write8(S->Data.NumberOfAuxSymbols);
477 WriteAuxiliarySymbols(S->Aux);
478}
479
480void WinCOFFObjectWriter::WriteAuxiliarySymbols(
481 const COFFSymbol::AuxiliarySymbols &S) {
482 for(COFFSymbol::AuxiliarySymbols::const_iterator i = S.begin(), e = S.end();
483 i != e; ++i) {
484 switch(i->AuxType) {
485 case ATFunctionDefinition:
486 WriteLE32(i->Aux.FunctionDefinition.TagIndex);
487 WriteLE32(i->Aux.FunctionDefinition.TotalSize);
488 WriteLE32(i->Aux.FunctionDefinition.PointerToLinenumber);
489 WriteLE32(i->Aux.FunctionDefinition.PointerToNextFunction);
490 WriteZeros(sizeof(i->Aux.FunctionDefinition.unused));
491 break;
492 case ATbfAndefSymbol:
493 WriteZeros(sizeof(i->Aux.bfAndefSymbol.unused1));
494 WriteLE16(i->Aux.bfAndefSymbol.Linenumber);
495 WriteZeros(sizeof(i->Aux.bfAndefSymbol.unused2));
496 WriteLE32(i->Aux.bfAndefSymbol.PointerToNextFunction);
497 WriteZeros(sizeof(i->Aux.bfAndefSymbol.unused3));
498 break;
499 case ATWeakExternal:
500 WriteLE32(i->Aux.WeakExternal.TagIndex);
501 WriteLE32(i->Aux.WeakExternal.Characteristics);
502 WriteZeros(sizeof(i->Aux.WeakExternal.unused));
503 break;
504 case ATFile:
505 WriteBytes(StringRef(reinterpret_cast<const char *>(i->Aux.File.FileName),
506 sizeof(i->Aux.File.FileName)));
507 break;
508 case ATSectionDefinition:
509 WriteLE32(i->Aux.SectionDefinition.Length);
510 WriteLE16(i->Aux.SectionDefinition.NumberOfRelocations);
511 WriteLE16(i->Aux.SectionDefinition.NumberOfLinenumbers);
512 WriteLE32(i->Aux.SectionDefinition.CheckSum);
513 WriteLE16(i->Aux.SectionDefinition.Number);
514 Write8(i->Aux.SectionDefinition.Selection);
515 WriteZeros(sizeof(i->Aux.SectionDefinition.unused));
516 break;
517 }
518 }
519}
520
521void WinCOFFObjectWriter::WriteSectionHeader(const COFF::section &S) {
522 WriteBytes(StringRef(S.Name, COFF::NameSize));
523
524 WriteLE32(S.VirtualSize);
525 WriteLE32(S.VirtualAddress);
526 WriteLE32(S.SizeOfRawData);
527 WriteLE32(S.PointerToRawData);
528 WriteLE32(S.PointerToRelocations);
529 WriteLE32(S.PointerToLineNumbers);
530 WriteLE16(S.NumberOfRelocations);
531 WriteLE16(S.NumberOfLineNumbers);
532 WriteLE32(S.Characteristics);
533}
534
535void WinCOFFObjectWriter::WriteRelocation(const COFF::relocation &R) {
536 WriteLE32(R.VirtualAddress);
537 WriteLE32(R.SymbolTableIndex);
538 WriteLE16(R.Type);
Chris Lattnerb1622902010-07-11 22:07:02 +0000539}
540
541////////////////////////////////////////////////////////////////////////////////
542// MCObjectWriter interface implementations
543
544void WinCOFFObjectWriter::ExecutePostLayoutBinding(MCAssembler &Asm) {
Michael J. Spencer801a3592010-07-26 02:17:32 +0000545 // "Define" each section & symbol. This creates section & symbol
546 // entries in the staging area and gives them their final indexes.
547
548 for (MCAssembler::const_iterator i = Asm.begin(), e = Asm.end(); i != e; i++)
549 DefineSection(*i);
550
551 for (MCAssembler::const_symbol_iterator i = Asm.symbol_begin(),
552 e = Asm.symbol_end(); i != e; i++) {
553 if (ExportSymbol(*i, Asm))
554 DefineSymbol(*i, Asm);
555 }
Chris Lattnerb1622902010-07-11 22:07:02 +0000556}
557
558void WinCOFFObjectWriter::RecordRelocation(const MCAssembler &Asm,
559 const MCAsmLayout &Layout,
560 const MCFragment *Fragment,
561 const MCFixup &Fixup,
562 MCValue Target,
563 uint64_t &FixedValue) {
Michael J. Spencer801a3592010-07-26 02:17:32 +0000564 assert(Target.getSymA() != NULL && "Relocation must reference a symbol!");
565 assert(Target.getSymB() == NULL &&
566 "Relocation must reference only one symbol!");
567
568 MCSectionData const *SectionData = Fragment->getParent();
569 MCSymbolData const *SymbolData =
570 &Asm.getSymbolData(Target.getSymA()->getSymbol());
571
572 assert(SectionMap.find(SectionData) != SectionMap.end() &&
573 "Section must already have been defined in ExecutePostLayoutBinding!");
574 assert(SymbolMap.find(SymbolData) != SymbolMap.end() &&
575 "Symbol must already have been defined in ExecutePostLayoutBinding!");
576
577 COFFSection *coff_section = SectionMap[SectionData];
578 COFFSymbol *coff_symbol = SymbolMap[SymbolData];
579
580 FixedValue = Target.getConstant();
581
582 COFFRelocation Reloc;
583
Daniel Dunbar425f6342010-07-31 21:08:54 +0000584 Reloc.Data.SymbolTableIndex = 0;
Michael J. Spencer801a3592010-07-26 02:17:32 +0000585 Reloc.Data.VirtualAddress = Layout.getFragmentOffset(Fragment);
586 Reloc.Symb = coff_symbol;
587
588 Reloc.Data.VirtualAddress += Fixup.getOffset();
589
590 switch (Fixup.getKind()) {
591 case FirstTargetFixupKind: // reloc_pcrel_4byte
592 Reloc.Data.Type = COFF::IMAGE_REL_I386_REL32;
593 FixedValue += 4;
594 break;
595 case FK_Data_4:
596 Reloc.Data.Type = COFF::IMAGE_REL_I386_DIR32;
597 break;
598 default:
599 llvm_unreachable("unsupported relocation type");
600 }
601
602 coff_section->Relocations.push_back(Reloc);
Chris Lattnerb1622902010-07-11 22:07:02 +0000603}
604
605void WinCOFFObjectWriter::WriteObject(const MCAssembler &Asm,
606 const MCAsmLayout &Layout) {
Michael J. Spencer801a3592010-07-26 02:17:32 +0000607 // Assign symbol and section indexes and offsets.
608
609 Header.NumberOfSymbols = 0;
610
611 for (symbols::iterator i = Symbols.begin(), e = Symbols.end(); i != e; i++) {
612 COFFSymbol *coff_symbol = *i;
613 MCSymbolData const *SymbolData = coff_symbol->MCData;
614
615 coff_symbol->Index = Header.NumberOfSymbols++;
616
617 // Update section number & offset for symbols that have them.
618 if ((SymbolData != NULL) && (SymbolData->Fragment != NULL)) {
619 COFFSection *coff_section = SectionMap[SymbolData->Fragment->getParent()];
620
621 coff_symbol->Data.SectionNumber = coff_section->Number;
Michael J. Spencera69494e2010-08-03 04:53:28 +0000622 coff_symbol->Data.Value = Layout.getFragmentOffset(SymbolData->Fragment);
Michael J. Spencer801a3592010-07-26 02:17:32 +0000623 }
624
625 // Update auxiliary symbol info.
626 coff_symbol->Data.NumberOfAuxSymbols = coff_symbol->Aux.size();
627 Header.NumberOfSymbols += coff_symbol->Data.NumberOfAuxSymbols;
628 }
629
630 // Fixup weak external references.
631 for (symbols::iterator i = Symbols.begin(), e = Symbols.end(); i != e; i++) {
632 COFFSymbol *symb = *i;
633
634 if (symb->Other != NULL) {
635 assert(symb->Aux.size() == 1 &&
636 "Symbol must contain one aux symbol!");
637 assert(symb->Aux[0].AuxType == ATWeakExternal &&
638 "Symbol's aux symbol must be a Weak External!");
639 symb->Aux[0].Aux.WeakExternal.TagIndex = symb->Other->Index;
640 }
641 }
642
643 // Assign file offsets to COFF object file structures.
644
645 unsigned offset = 0;
646
647 offset += COFF::HeaderSize;
648 offset += COFF::SectionSize * Asm.size();
649
650 Header.NumberOfSections = Sections.size();
651
652 for (MCAssembler::const_iterator i = Asm.begin(),
653 e = Asm.end();
654 i != e; i++) {
655 COFFSection *Sec = SectionMap[i];
656
657 Sec->Header.SizeOfRawData = Layout.getSectionFileSize(i);
658
659 if (ExportSection(Sec)) {
660 Sec->Header.PointerToRawData = offset;
661
662 offset += Sec->Header.SizeOfRawData;
663 }
664
665 if (Sec->Relocations.size() > 0) {
666 Sec->Header.NumberOfRelocations = Sec->Relocations.size();
667 Sec->Header.PointerToRelocations = offset;
668
669 offset += COFF::RelocationSize * Sec->Relocations.size();
670
671 for (relocations::iterator cr = Sec->Relocations.begin(),
672 er = Sec->Relocations.end();
673 cr != er; cr++) {
674 (*cr).Data.SymbolTableIndex = (*cr).Symb->Index;
675 }
676 }
677
678 assert(Sec->Symb->Aux.size() == 1 && "Section's symbol must have one aux!");
679 AuxSymbol &Aux = Sec->Symb->Aux[0];
680 assert(Aux.AuxType == ATSectionDefinition &&
681 "Section's symbol's aux symbol must be a Section Definition!");
682 Aux.Aux.SectionDefinition.Length = Sec->Header.SizeOfRawData;
683 Aux.Aux.SectionDefinition.NumberOfRelocations =
684 Sec->Header.NumberOfRelocations;
685 Aux.Aux.SectionDefinition.NumberOfLinenumbers =
686 Sec->Header.NumberOfLineNumbers;
687 }
688
689 Header.PointerToSymbolTable = offset;
690
Michael J. Spencerab3de492010-08-03 04:43:33 +0000691 Header.TimeDateStamp = sys::TimeValue::now().toEpochTime();
692
Michael J. Spencer801a3592010-07-26 02:17:32 +0000693 // Write it all to disk...
694 WriteFileHeader(Header);
695
696 {
697 sections::iterator i, ie;
698 MCAssembler::const_iterator j, je;
699
700 for (i = Sections.begin(), ie = Sections.end(); i != ie; i++)
701 WriteSectionHeader((*i)->Header);
702
703 for (i = Sections.begin(), ie = Sections.end(),
704 j = Asm.begin(), je = Asm.end();
705 (i != ie) && (j != je); i++, j++) {
706 if ((*i)->Header.PointerToRawData != 0) {
707 assert(OS.tell() == (*i)->Header.PointerToRawData &&
708 "Section::PointerToRawData is insane!");
709
710 Asm.WriteSectionData(j, Layout, this);
711 }
712
713 if ((*i)->Relocations.size() > 0) {
714 assert(OS.tell() == (*i)->Header.PointerToRelocations &&
715 "Section::PointerToRelocations is insane!");
716
717 for (relocations::const_iterator k = (*i)->Relocations.begin(),
718 ke = (*i)->Relocations.end();
719 k != ke; k++) {
720 WriteRelocation(k->Data);
721 }
722 } else
723 assert((*i)->Header.PointerToRelocations == 0 &&
724 "Section::PointerToRelocations is insane!");
725 }
726 }
727
728 assert(OS.tell() == Header.PointerToSymbolTable &&
729 "Header::PointerToSymbolTable is insane!");
730
731 for (symbols::iterator i = Symbols.begin(), e = Symbols.end(); i != e; i++)
732 WriteSymbol(*i);
733
734 OS.write((char const *)&Strings.Data.front(), Strings.Data.size());
Chris Lattnerb1622902010-07-11 22:07:02 +0000735}
736
737//------------------------------------------------------------------------------
738// WinCOFFObjectWriter factory function
739
740namespace llvm {
741 MCObjectWriter *createWinCOFFObjectWriter(raw_ostream &OS) {
742 return new WinCOFFObjectWriter(OS);
743 }
Michael J. Spencer933304e2010-07-26 03:01:28 +0000744}