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Daniel Dunbarfb4a6b32009-08-21 09:11:24 +00001//===- lib/MC/MCAssembler.cpp - Assembler Backend Implementation ----------===//
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
Daniel Dunbar0adcd352009-08-25 21:10:45 +000010#define DEBUG_TYPE "assembler"
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000011#include "llvm/MC/MCAssembler.h"
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +000012#include "llvm/MC/MCAsmLayout.h"
Daniel Dunbar1253a6f2009-10-16 01:58:03 +000013#include "llvm/MC/MCExpr.h"
Chris Lattnerbea2c952009-08-22 19:19:12 +000014#include "llvm/MC/MCSectionMachO.h"
Daniel Dunbar1253a6f2009-10-16 01:58:03 +000015#include "llvm/MC/MCSymbol.h"
16#include "llvm/MC/MCValue.h"
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +000017#include "llvm/ADT/DenseMap.h"
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +000018#include "llvm/ADT/SmallString.h"
Daniel Dunbar0adcd352009-08-25 21:10:45 +000019#include "llvm/ADT/Statistic.h"
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +000020#include "llvm/ADT/StringExtras.h"
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +000021#include "llvm/ADT/StringMap.h"
Daniel Dunbard6f761e2009-08-21 23:07:38 +000022#include "llvm/ADT/Twine.h"
Daniel Dunbar0705fbf2009-08-21 18:29:01 +000023#include "llvm/Support/ErrorHandling.h"
Chris Lattner45f8c092010-02-02 19:38:14 +000024#include "llvm/Support/MachO.h"
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000025#include "llvm/Support/raw_ostream.h"
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +000026#include "llvm/Support/Debug.h"
Daniel Dunbaree0d8922010-03-13 22:10:17 +000027#include "llvm/Target/TargetRegistry.h"
Daniel Dunbardf3c8f22010-03-12 21:00:49 +000028#include "llvm/Target/TargetAsmBackend.h"
Daniel Dunbarf6346762010-02-13 09:29:02 +000029
30// FIXME: Gross.
31#include "../Target/X86/X86FixupKinds.h"
32
Chris Lattner23132b12009-08-24 03:52:50 +000033#include <vector>
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000034using namespace llvm;
35
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +000036class MachObjectWriter;
37
Daniel Dunbar0adcd352009-08-25 21:10:45 +000038STATISTIC(EmittedFragments, "Number of emitted assembler fragments");
39
Daniel Dunbar8f4d1462009-08-28 07:08:35 +000040// FIXME FIXME FIXME: There are number of places in this file where we convert
41// what is a 64-bit assembler value used for computation into a value in the
42// object file, which may truncate it. We should detect that truncation where
43// invalid and report errors back.
44
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +000045static void WriteFileData(raw_ostream &OS, const MCSectionData &SD,
46 MachObjectWriter &MOW);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000047
Kevin Enderby6e720482010-02-23 18:26:34 +000048static uint64_t WriteNopData(uint64_t Count, MachObjectWriter &MOW);
49
Daniel Dunbard5a8e982009-08-28 05:49:21 +000050/// isVirtualSection - Check if this is a section which does not actually exist
51/// in the object file.
52static bool isVirtualSection(const MCSection &Section) {
53 // FIXME: Lame.
54 const MCSectionMachO &SMO = static_cast<const MCSectionMachO&>(Section);
Daniel Dunbar99d22ad2010-03-15 21:56:38 +000055 return (SMO.getType() == MCSectionMachO::S_ZEROFILL);
Daniel Dunbard5a8e982009-08-28 05:49:21 +000056}
57
Duncan Sands9a7795c2010-02-17 14:52:22 +000058static unsigned getFixupKindLog2Size(unsigned Kind) {
Daniel Dunbar2be2fd02010-02-13 09:28:54 +000059 switch (Kind) {
60 default: llvm_unreachable("invalid fixup kind!");
Daniel Dunbarf6346762010-02-13 09:29:02 +000061 case X86::reloc_pcrel_1byte:
Daniel Dunbar2be2fd02010-02-13 09:28:54 +000062 case FK_Data_1: return 0;
63 case FK_Data_2: return 1;
Daniel Dunbarf6346762010-02-13 09:29:02 +000064 case X86::reloc_pcrel_4byte:
65 case X86::reloc_riprel_4byte:
Daniel Dunbar2be2fd02010-02-13 09:28:54 +000066 case FK_Data_4: return 2;
67 case FK_Data_8: return 3;
68 }
69}
70
Duncan Sands9a7795c2010-02-17 14:52:22 +000071static bool isFixupKindPCRel(unsigned Kind) {
Daniel Dunbar591047f2010-02-13 09:45:59 +000072 switch (Kind) {
73 default:
74 return false;
75 case X86::reloc_pcrel_1byte:
76 case X86::reloc_pcrel_4byte:
77 case X86::reloc_riprel_4byte:
78 return true;
79 }
80}
81
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000082class MachObjectWriter {
83 // See <mach-o/loader.h>.
84 enum {
85 Header_Magic32 = 0xFEEDFACE,
86 Header_Magic64 = 0xFEEDFACF
87 };
Daniel Dunbar7eb85192009-10-16 01:58:15 +000088
Daniel Dunbaree0d8922010-03-13 22:10:17 +000089 enum {
90 Header32Size = 28,
91 Header64Size = 32,
92 SegmentLoadCommand32Size = 56,
93 SegmentLoadCommand64Size = 72,
94 Section32Size = 68,
95 Section64Size = 80,
96 SymtabLoadCommandSize = 24,
97 DysymtabLoadCommandSize = 80,
98 Nlist32Size = 12,
99 Nlist64Size = 16,
100 RelocationInfoSize = 8
101 };
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000102
103 enum HeaderFileType {
104 HFT_Object = 0x1
105 };
106
Daniel Dunbar6009db42009-08-26 21:22:22 +0000107 enum HeaderFlags {
108 HF_SubsectionsViaSymbols = 0x2000
109 };
110
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000111 enum LoadCommandType {
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000112 LCT_Segment = 0x1,
113 LCT_Symtab = 0x2,
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000114 LCT_Dysymtab = 0xb,
115 LCT_Segment64 = 0x19
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000116 };
117
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000118 // See <mach-o/nlist.h>.
119 enum SymbolTypeType {
120 STT_Undefined = 0x00,
121 STT_Absolute = 0x02,
122 STT_Section = 0x0e
123 };
124
125 enum SymbolTypeFlags {
126 // If any of these bits are set, then the entry is a stab entry number (see
127 // <mach-o/stab.h>. Otherwise the other masks apply.
128 STF_StabsEntryMask = 0xe0,
129
130 STF_TypeMask = 0x0e,
131 STF_External = 0x01,
132 STF_PrivateExtern = 0x10
133 };
134
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000135 /// IndirectSymbolFlags - Flags for encoding special values in the indirect
136 /// symbol entry.
137 enum IndirectSymbolFlags {
138 ISF_Local = 0x80000000,
139 ISF_Absolute = 0x40000000
140 };
141
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000142 /// RelocationFlags - Special flags for addresses.
143 enum RelocationFlags {
144 RF_Scattered = 0x80000000
145 };
146
147 enum RelocationInfoType {
148 RIT_Vanilla = 0,
149 RIT_Pair = 1,
150 RIT_Difference = 2,
151 RIT_PreboundLazyPointer = 3,
152 RIT_LocalDifference = 4
153 };
154
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000155 /// MachSymbolData - Helper struct for containing some precomputed information
156 /// on symbols.
157 struct MachSymbolData {
158 MCSymbolData *SymbolData;
159 uint64_t StringIndex;
160 uint8_t SectionIndex;
161
162 // Support lexicographic sorting.
163 bool operator<(const MachSymbolData &RHS) const {
164 const std::string &Name = SymbolData->getSymbol().getName();
165 return Name < RHS.SymbolData->getSymbol().getName();
166 }
167 };
168
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000169 raw_ostream &OS;
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000170 unsigned Is64Bit : 1;
171 unsigned IsLSB : 1;
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000172
Daniel Dunbar17a06502010-03-19 07:09:18 +0000173 /// @name Relocation Data
174 /// @{
175
176 struct MachRelocationEntry {
177 uint32_t Word0;
178 uint32_t Word1;
179 };
180
181 llvm::DenseMap<const MCSectionData*,
182 std::vector<MachRelocationEntry> > Relocations;
183
184 /// @}
185 /// @name Symbol Table Data
186
187 SmallString<256> StringTable;
188 std::vector<MachSymbolData> LocalSymbolData;
189 std::vector<MachSymbolData> ExternalSymbolData;
190 std::vector<MachSymbolData> UndefinedSymbolData;
191
192 /// @}
193
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000194public:
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000195 MachObjectWriter(raw_ostream &_OS, bool _Is64Bit, bool _IsLSB = true)
196 : OS(_OS), Is64Bit(_Is64Bit), IsLSB(_IsLSB) {
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000197 }
198
199 /// @name Helper Methods
200 /// @{
201
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000202 void Write8(uint8_t Value) {
203 OS << char(Value);
204 }
205
206 void Write16(uint16_t Value) {
207 if (IsLSB) {
208 Write8(uint8_t(Value >> 0));
209 Write8(uint8_t(Value >> 8));
210 } else {
211 Write8(uint8_t(Value >> 8));
212 Write8(uint8_t(Value >> 0));
213 }
214 }
215
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000216 void Write32(uint32_t Value) {
217 if (IsLSB) {
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000218 Write16(uint16_t(Value >> 0));
219 Write16(uint16_t(Value >> 16));
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000220 } else {
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000221 Write16(uint16_t(Value >> 16));
222 Write16(uint16_t(Value >> 0));
223 }
224 }
225
226 void Write64(uint64_t Value) {
227 if (IsLSB) {
228 Write32(uint32_t(Value >> 0));
229 Write32(uint32_t(Value >> 32));
230 } else {
231 Write32(uint32_t(Value >> 32));
232 Write32(uint32_t(Value >> 0));
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000233 }
234 }
235
236 void WriteZeros(unsigned N) {
237 const char Zeros[16] = { 0 };
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000238
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000239 for (unsigned i = 0, e = N / 16; i != e; ++i)
240 OS << StringRef(Zeros, 16);
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000241
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000242 OS << StringRef(Zeros, N % 16);
243 }
244
Daniel Dunbar2928c832009-11-06 10:58:06 +0000245 void WriteString(StringRef Str, unsigned ZeroFillSize = 0) {
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000246 OS << Str;
247 if (ZeroFillSize)
248 WriteZeros(ZeroFillSize - Str.size());
249 }
250
251 /// @}
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000252
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000253 void WriteHeader(unsigned NumLoadCommands, unsigned LoadCommandsSize,
254 bool SubsectionsViaSymbols) {
Daniel Dunbar6009db42009-08-26 21:22:22 +0000255 uint32_t Flags = 0;
256
257 if (SubsectionsViaSymbols)
258 Flags |= HF_SubsectionsViaSymbols;
259
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000260 // struct mach_header (28 bytes) or
261 // struct mach_header_64 (32 bytes)
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000262
263 uint64_t Start = OS.tell();
264 (void) Start;
265
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000266 Write32(Is64Bit ? Header_Magic64 : Header_Magic32);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000267
268 // FIXME: Support cputype.
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000269 Write32(Is64Bit ? MachO::CPUTypeX86_64 : MachO::CPUTypeI386);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000270 // FIXME: Support cpusubtype.
Chris Lattner45f8c092010-02-02 19:38:14 +0000271 Write32(MachO::CPUSubType_I386_ALL);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000272 Write32(HFT_Object);
Daniel Dunbar6009db42009-08-26 21:22:22 +0000273 Write32(NumLoadCommands); // Object files have a single load command, the
274 // segment.
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000275 Write32(LoadCommandsSize);
Daniel Dunbar6009db42009-08-26 21:22:22 +0000276 Write32(Flags);
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000277 if (Is64Bit)
278 Write32(0); // reserved
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000279
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000280 assert(OS.tell() - Start == Is64Bit ? Header64Size : Header32Size);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000281 }
282
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000283 /// WriteSegmentLoadCommand - Write a segment load command.
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000284 ///
285 /// \arg NumSections - The number of sections in this segment.
286 /// \arg SectionDataSize - The total size of the sections.
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000287 void WriteSegmentLoadCommand(unsigned NumSections,
288 uint64_t VMSize,
289 uint64_t SectionDataStartOffset,
290 uint64_t SectionDataSize) {
291 // struct segment_command (56 bytes) or
292 // struct segment_command_64 (72 bytes)
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000293
294 uint64_t Start = OS.tell();
295 (void) Start;
296
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000297 unsigned SegmentLoadCommandSize = Is64Bit ? SegmentLoadCommand64Size :
298 SegmentLoadCommand32Size;
299 Write32(Is64Bit ? LCT_Segment64 : LCT_Segment);
300 Write32(SegmentLoadCommandSize +
301 NumSections * (Is64Bit ? Section64Size : Section32Size));
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000302
303 WriteString("", 16);
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000304 if (Is64Bit) {
305 Write64(0); // vmaddr
306 Write64(VMSize); // vmsize
307 Write64(SectionDataStartOffset); // file offset
308 Write64(SectionDataSize); // file size
309 } else {
310 Write32(0); // vmaddr
311 Write32(VMSize); // vmsize
312 Write32(SectionDataStartOffset); // file offset
313 Write32(SectionDataSize); // file size
314 }
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000315 Write32(0x7); // maxprot
316 Write32(0x7); // initprot
317 Write32(NumSections);
318 Write32(0); // flags
319
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000320 assert(OS.tell() - Start == SegmentLoadCommandSize);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000321 }
322
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000323 void WriteSection(const MCSectionData &SD, uint64_t FileOffset,
324 uint64_t RelocationsStart, unsigned NumRelocations) {
Daniel Dunbard5a8e982009-08-28 05:49:21 +0000325 // The offset is unused for virtual sections.
326 if (isVirtualSection(SD.getSection())) {
327 assert(SD.getFileSize() == 0 && "Invalid file size!");
328 FileOffset = 0;
329 }
330
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000331 // struct section (68 bytes) or
332 // struct section_64 (80 bytes)
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000333
334 uint64_t Start = OS.tell();
335 (void) Start;
336
337 // FIXME: cast<> support!
338 const MCSectionMachO &Section =
339 static_cast<const MCSectionMachO&>(SD.getSection());
340 WriteString(Section.getSectionName(), 16);
341 WriteString(Section.getSegmentName(), 16);
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000342 if (Is64Bit) {
343 Write64(SD.getAddress()); // address
344 Write64(SD.getSize()); // size
345 } else {
346 Write32(SD.getAddress()); // address
347 Write32(SD.getSize()); // size
348 }
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000349 Write32(FileOffset);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000350
Daniel Dunbare1ec6172010-02-02 21:44:01 +0000351 unsigned Flags = Section.getTypeAndAttributes();
352 if (SD.hasInstructions())
353 Flags |= MCSectionMachO::S_ATTR_SOME_INSTRUCTIONS;
354
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000355 assert(isPowerOf2_32(SD.getAlignment()) && "Invalid alignment!");
356 Write32(Log2_32(SD.getAlignment()));
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000357 Write32(NumRelocations ? RelocationsStart : 0);
358 Write32(NumRelocations);
Daniel Dunbare1ec6172010-02-02 21:44:01 +0000359 Write32(Flags);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000360 Write32(0); // reserved1
361 Write32(Section.getStubSize()); // reserved2
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000362 if (Is64Bit)
363 Write32(0); // reserved3
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000364
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000365 assert(OS.tell() - Start == Is64Bit ? Section64Size : Section32Size);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000366 }
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000367
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000368 void WriteSymtabLoadCommand(uint32_t SymbolOffset, uint32_t NumSymbols,
369 uint32_t StringTableOffset,
370 uint32_t StringTableSize) {
371 // struct symtab_command (24 bytes)
372
373 uint64_t Start = OS.tell();
374 (void) Start;
375
376 Write32(LCT_Symtab);
377 Write32(SymtabLoadCommandSize);
378 Write32(SymbolOffset);
379 Write32(NumSymbols);
380 Write32(StringTableOffset);
381 Write32(StringTableSize);
382
383 assert(OS.tell() - Start == SymtabLoadCommandSize);
384 }
385
386 void WriteDysymtabLoadCommand(uint32_t FirstLocalSymbol,
387 uint32_t NumLocalSymbols,
388 uint32_t FirstExternalSymbol,
389 uint32_t NumExternalSymbols,
390 uint32_t FirstUndefinedSymbol,
391 uint32_t NumUndefinedSymbols,
392 uint32_t IndirectSymbolOffset,
393 uint32_t NumIndirectSymbols) {
394 // struct dysymtab_command (80 bytes)
395
396 uint64_t Start = OS.tell();
397 (void) Start;
398
399 Write32(LCT_Dysymtab);
400 Write32(DysymtabLoadCommandSize);
401 Write32(FirstLocalSymbol);
402 Write32(NumLocalSymbols);
403 Write32(FirstExternalSymbol);
404 Write32(NumExternalSymbols);
405 Write32(FirstUndefinedSymbol);
406 Write32(NumUndefinedSymbols);
407 Write32(0); // tocoff
408 Write32(0); // ntoc
409 Write32(0); // modtaboff
410 Write32(0); // nmodtab
411 Write32(0); // extrefsymoff
412 Write32(0); // nextrefsyms
413 Write32(IndirectSymbolOffset);
414 Write32(NumIndirectSymbols);
415 Write32(0); // extreloff
416 Write32(0); // nextrel
417 Write32(0); // locreloff
418 Write32(0); // nlocrel
419
420 assert(OS.tell() - Start == DysymtabLoadCommandSize);
421 }
422
Daniel Dunbar5691e742010-03-13 22:49:35 +0000423 void WriteNlist(MachSymbolData &MSD) {
Daniel Dunbar5e835962009-08-26 02:48:04 +0000424 MCSymbolData &Data = *MSD.SymbolData;
Daniel Dunbarcb579b32009-08-31 08:08:06 +0000425 const MCSymbol &Symbol = Data.getSymbol();
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000426 uint8_t Type = 0;
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000427 uint16_t Flags = Data.getFlags();
428 uint32_t Address = 0;
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000429
430 // Set the N_TYPE bits. See <mach-o/nlist.h>.
431 //
432 // FIXME: Are the prebound or indirect fields possible here?
433 if (Symbol.isUndefined())
434 Type = STT_Undefined;
435 else if (Symbol.isAbsolute())
436 Type = STT_Absolute;
437 else
438 Type = STT_Section;
439
440 // FIXME: Set STAB bits.
441
Daniel Dunbar5e835962009-08-26 02:48:04 +0000442 if (Data.isPrivateExtern())
Daniel Dunbar6aff2fb2009-08-24 08:40:12 +0000443 Type |= STF_PrivateExtern;
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000444
445 // Set external bit.
Daniel Dunbar5e835962009-08-26 02:48:04 +0000446 if (Data.isExternal() || Symbol.isUndefined())
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000447 Type |= STF_External;
448
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000449 // Compute the symbol address.
450 if (Symbol.isDefined()) {
451 if (Symbol.isAbsolute()) {
452 llvm_unreachable("FIXME: Not yet implemented!");
453 } else {
Daniel Dunbar8f0448c2010-03-11 18:22:51 +0000454 Address = Data.getAddress();
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000455 }
456 } else if (Data.isCommon()) {
457 // Common symbols are encoded with the size in the address
458 // field, and their alignment in the flags.
459 Address = Data.getCommonSize();
460
461 // Common alignment is packed into the 'desc' bits.
462 if (unsigned Align = Data.getCommonAlignment()) {
463 unsigned Log2Size = Log2_32(Align);
464 assert((1U << Log2Size) == Align && "Invalid 'common' alignment!");
465 if (Log2Size > 15)
466 llvm_report_error("invalid 'common' alignment '" +
467 Twine(Align) + "'");
468 // FIXME: Keep this mask with the SymbolFlags enumeration.
469 Flags = (Flags & 0xF0FF) | (Log2Size << 8);
470 }
471 }
472
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000473 // struct nlist (12 bytes)
474
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000475 Write32(MSD.StringIndex);
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000476 Write8(Type);
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000477 Write8(MSD.SectionIndex);
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000478
Daniel Dunbar6aff2fb2009-08-24 08:40:12 +0000479 // The Mach-O streamer uses the lowest 16-bits of the flags for the 'desc'
480 // value.
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000481 Write16(Flags);
Daniel Dunbar5691e742010-03-13 22:49:35 +0000482 if (Is64Bit)
483 Write64(Address);
484 else
485 Write32(Address);
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000486 }
487
Daniel Dunbar17a06502010-03-19 07:09:18 +0000488 void RecordScatteredRelocation(MCAssembler &Asm, MCFragment &Fragment,
489 const MCAsmFixup &Fixup, MCValue Target,
490 uint64_t &FixedValue) {
Daniel Dunbarcb7d7432010-02-11 21:29:46 +0000491 uint32_t Address = Fragment.getOffset() + Fixup.Offset;
Daniel Dunbare180fa92010-03-09 21:27:30 +0000492 unsigned IsPCRel = isFixupKindPCRel(Fixup.Kind);
Daniel Dunbareb3804e2010-02-17 23:45:16 +0000493 unsigned Log2Size = getFixupKindLog2Size(Fixup.Kind);
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000494 unsigned Type = RIT_Vanilla;
495
496 // See <reloc.h>.
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000497 const MCSymbol *A = &Target.getSymA()->getSymbol();
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000498 MCSymbolData *A_SD = &Asm.getSymbolData(*A);
Daniel Dunbar0ce6bd52010-03-08 21:10:39 +0000499
Daniel Dunbara015c1c2010-03-10 00:58:25 +0000500 if (!A_SD->getFragment())
Daniel Dunbar0ce6bd52010-03-08 21:10:39 +0000501 llvm_report_error("symbol '" + A->getName() +
502 "' can not be undefined in a subtraction expression");
503
Daniel Dunbar8f0448c2010-03-11 18:22:51 +0000504 uint32_t Value = A_SD->getAddress();
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000505 uint32_t Value2 = 0;
506
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000507 if (const MCSymbolRefExpr *B = Target.getSymB()) {
508 MCSymbolData *B_SD = &Asm.getSymbolData(B->getSymbol());
Daniel Dunbar0ce6bd52010-03-08 21:10:39 +0000509
Daniel Dunbara015c1c2010-03-10 00:58:25 +0000510 if (!B_SD->getFragment())
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000511 llvm_report_error("symbol '" + B->getSymbol().getName() +
Daniel Dunbar0ce6bd52010-03-08 21:10:39 +0000512 "' can not be undefined in a subtraction expression");
513
Daniel Dunbar07a96412010-03-10 02:10:29 +0000514 // Select the appropriate difference relocation type.
515 //
516 // Note that there is no longer any semantic difference between these two
517 // relocation types from the linkers point of view, this is done solely
518 // for pedantic compatibility with 'as'.
Daniel Dunbara015c1c2010-03-10 00:58:25 +0000519 Type = A_SD->isExternal() ? RIT_Difference : RIT_LocalDifference;
Daniel Dunbar8f0448c2010-03-11 18:22:51 +0000520 Value2 = B_SD->getAddress();
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000521 }
522
Daniel Dunbar17a06502010-03-19 07:09:18 +0000523 // Relocations are written out in reverse order, so the PAIR comes first.
Daniel Dunbara015c1c2010-03-10 00:58:25 +0000524 if (Type == RIT_Difference || Type == RIT_LocalDifference) {
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000525 MachRelocationEntry MRE;
526 MRE.Word0 = ((0 << 0) |
Daniel Dunbaraef9d7a2010-03-09 21:27:47 +0000527 (RIT_Pair << 24) |
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000528 (Log2Size << 28) |
Daniel Dunbaraef9d7a2010-03-09 21:27:47 +0000529 (IsPCRel << 30) |
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000530 RF_Scattered);
531 MRE.Word1 = Value2;
Daniel Dunbar17a06502010-03-19 07:09:18 +0000532 Relocations[Fragment.getParent()].push_back(MRE);
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000533 }
Daniel Dunbar17a06502010-03-19 07:09:18 +0000534
535 MachRelocationEntry MRE;
536 MRE.Word0 = ((Address << 0) |
537 (Type << 24) |
538 (Log2Size << 28) |
539 (IsPCRel << 30) |
540 RF_Scattered);
541 MRE.Word1 = Value;
542 Relocations[Fragment.getParent()].push_back(MRE);
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000543 }
544
Daniel Dunbar17a06502010-03-19 07:09:18 +0000545 void RecordRelocation(MCAssembler &Asm, MCDataFragment &Fragment,
546 const MCAsmFixup &Fixup, MCValue Target,
547 uint64_t &FixedValue) {
Daniel Dunbarf3a066f2010-03-09 21:27:58 +0000548 unsigned IsPCRel = isFixupKindPCRel(Fixup.Kind);
549 unsigned Log2Size = getFixupKindLog2Size(Fixup.Kind);
550
Daniel Dunbarf3a066f2010-03-09 21:27:58 +0000551 // If this is a difference or a defined symbol plus an offset, then we need
552 // a scattered relocation entry.
553 uint32_t Offset = Target.getConstant();
554 if (IsPCRel)
555 Offset += 1 << Log2Size;
Daniel Dunbar1253a6f2009-10-16 01:58:03 +0000556 if (Target.getSymB() ||
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000557 (Target.getSymA() && !Target.getSymA()->getSymbol().isUndefined() &&
Daniel Dunbar17a06502010-03-19 07:09:18 +0000558 Offset)) {
559 RecordScatteredRelocation(Asm, Fragment, Fixup, Target, FixedValue);
560 return;
561 }
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000562
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000563 // See <reloc.h>.
Daniel Dunbarcb7d7432010-02-11 21:29:46 +0000564 uint32_t Address = Fragment.getOffset() + Fixup.Offset;
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000565 uint32_t Value = 0;
566 unsigned Index = 0;
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000567 unsigned IsExtern = 0;
568 unsigned Type = 0;
569
Daniel Dunbar1253a6f2009-10-16 01:58:03 +0000570 if (Target.isAbsolute()) { // constant
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000571 // SymbolNum of 0 indicates the absolute section.
Daniel Dunbar3a30b822010-02-13 09:28:15 +0000572 //
Daniel Dunbar979ba5b2010-03-11 05:53:37 +0000573 // FIXME: Currently, these are never generated (see code below). I cannot
574 // find a case where they are actually emitted.
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000575 Type = RIT_Vanilla;
576 Value = 0;
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000577 } else {
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000578 const MCSymbol *Symbol = &Target.getSymA()->getSymbol();
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000579 MCSymbolData *SD = &Asm.getSymbolData(*Symbol);
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000580
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000581 if (Symbol->isUndefined()) {
582 IsExtern = 1;
583 Index = SD->getIndex();
584 Value = 0;
585 } else {
586 // The index is the section ordinal.
587 //
588 // FIXME: O(N)
589 Index = 1;
Daniel Dunbar591047f2010-02-13 09:45:59 +0000590 MCAssembler::iterator it = Asm.begin(), ie = Asm.end();
591 for (; it != ie; ++it, ++Index)
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000592 if (&*it == SD->getFragment()->getParent())
593 break;
Daniel Dunbar591047f2010-02-13 09:45:59 +0000594 assert(it != ie && "Unable to find section index!");
Daniel Dunbar8f0448c2010-03-11 18:22:51 +0000595 Value = SD->getAddress();
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000596 }
597
598 Type = RIT_Vanilla;
599 }
600
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000601 // struct relocation_info (8 bytes)
602 MachRelocationEntry MRE;
603 MRE.Word0 = Address;
604 MRE.Word1 = ((Index << 0) |
605 (IsPCRel << 24) |
606 (Log2Size << 25) |
607 (IsExtern << 27) |
608 (Type << 28));
Daniel Dunbar17a06502010-03-19 07:09:18 +0000609 Relocations[Fragment.getParent()].push_back(MRE);
610 }
611
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000612 void BindIndirectSymbols(MCAssembler &Asm) {
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000613 // This is the point where 'as' creates actual symbols for indirect symbols
614 // (in the following two passes). It would be easier for us to do this
615 // sooner when we see the attribute, but that makes getting the order in the
616 // symbol table much more complicated than it is worth.
617 //
618 // FIXME: Revisit this when the dust settles.
619
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000620 // Bind non lazy symbol pointers first.
621 for (MCAssembler::indirect_symbol_iterator it = Asm.indirect_symbol_begin(),
622 ie = Asm.indirect_symbol_end(); it != ie; ++it) {
623 // FIXME: cast<> support!
624 const MCSectionMachO &Section =
625 static_cast<const MCSectionMachO&>(it->SectionData->getSection());
626
Daniel Dunbar99d22ad2010-03-15 21:56:38 +0000627 if (Section.getType() != MCSectionMachO::S_NON_LAZY_SYMBOL_POINTERS)
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000628 continue;
629
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000630 Asm.getOrCreateSymbolData(*it->Symbol);
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000631 }
632
633 // Then lazy symbol pointers and symbol stubs.
634 for (MCAssembler::indirect_symbol_iterator it = Asm.indirect_symbol_begin(),
635 ie = Asm.indirect_symbol_end(); it != ie; ++it) {
636 // FIXME: cast<> support!
637 const MCSectionMachO &Section =
638 static_cast<const MCSectionMachO&>(it->SectionData->getSection());
639
Daniel Dunbar99d22ad2010-03-15 21:56:38 +0000640 if (Section.getType() != MCSectionMachO::S_LAZY_SYMBOL_POINTERS &&
641 Section.getType() != MCSectionMachO::S_SYMBOL_STUBS)
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000642 continue;
643
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000644 // Set the symbol type to undefined lazy, but only on construction.
645 //
646 // FIXME: Do not hardcode.
647 bool Created;
648 MCSymbolData &Entry = Asm.getOrCreateSymbolData(*it->Symbol, &Created);
649 if (Created)
650 Entry.setFlags(Entry.getFlags() | 0x0001);
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000651 }
652 }
653
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000654 /// ComputeSymbolTable - Compute the symbol table data
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000655 ///
656 /// \param StringTable [out] - The string table data.
657 /// \param StringIndexMap [out] - Map from symbol names to offsets in the
658 /// string table.
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000659 void ComputeSymbolTable(MCAssembler &Asm, SmallString<256> &StringTable,
660 std::vector<MachSymbolData> &LocalSymbolData,
661 std::vector<MachSymbolData> &ExternalSymbolData,
662 std::vector<MachSymbolData> &UndefinedSymbolData) {
663 // Build section lookup table.
664 DenseMap<const MCSection*, uint8_t> SectionIndexMap;
665 unsigned Index = 1;
666 for (MCAssembler::iterator it = Asm.begin(),
667 ie = Asm.end(); it != ie; ++it, ++Index)
668 SectionIndexMap[&it->getSection()] = Index;
669 assert(Index <= 256 && "Too many sections!");
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000670
671 // Index 0 is always the empty string.
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000672 StringMap<uint64_t> StringIndexMap;
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000673 StringTable += '\x00';
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000674
675 // Build the symbol arrays and the string table, but only for non-local
676 // symbols.
677 //
678 // The particular order that we collect the symbols and create the string
679 // table, then sort the symbols is chosen to match 'as'. Even though it
680 // doesn't matter for correctness, this is important for letting us diff .o
681 // files.
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000682 for (MCAssembler::symbol_iterator it = Asm.symbol_begin(),
683 ie = Asm.symbol_end(); it != ie; ++it) {
Daniel Dunbarcb579b32009-08-31 08:08:06 +0000684 const MCSymbol &Symbol = it->getSymbol();
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000685
Daniel Dunbar23869852010-03-19 03:18:09 +0000686 // Ignore non-linker visible symbols.
687 if (!Asm.isSymbolLinkerVisible(it))
Daniel Dunbar959fd882009-08-26 22:13:22 +0000688 continue;
689
Daniel Dunbar50e48b32009-08-24 08:39:57 +0000690 if (!it->isExternal() && !Symbol.isUndefined())
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000691 continue;
692
693 uint64_t &Entry = StringIndexMap[Symbol.getName()];
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000694 if (!Entry) {
695 Entry = StringTable.size();
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000696 StringTable += Symbol.getName();
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000697 StringTable += '\x00';
698 }
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000699
700 MachSymbolData MSD;
701 MSD.SymbolData = it;
702 MSD.StringIndex = Entry;
703
704 if (Symbol.isUndefined()) {
705 MSD.SectionIndex = 0;
706 UndefinedSymbolData.push_back(MSD);
707 } else if (Symbol.isAbsolute()) {
708 MSD.SectionIndex = 0;
709 ExternalSymbolData.push_back(MSD);
710 } else {
711 MSD.SectionIndex = SectionIndexMap.lookup(&Symbol.getSection());
712 assert(MSD.SectionIndex && "Invalid section index!");
713 ExternalSymbolData.push_back(MSD);
714 }
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000715 }
716
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000717 // Now add the data for local symbols.
718 for (MCAssembler::symbol_iterator it = Asm.symbol_begin(),
719 ie = Asm.symbol_end(); it != ie; ++it) {
Daniel Dunbarcb579b32009-08-31 08:08:06 +0000720 const MCSymbol &Symbol = it->getSymbol();
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000721
Daniel Dunbar23869852010-03-19 03:18:09 +0000722 // Ignore non-linker visible symbols.
723 if (!Asm.isSymbolLinkerVisible(it))
Daniel Dunbar959fd882009-08-26 22:13:22 +0000724 continue;
725
Daniel Dunbar50e48b32009-08-24 08:39:57 +0000726 if (it->isExternal() || Symbol.isUndefined())
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000727 continue;
728
729 uint64_t &Entry = StringIndexMap[Symbol.getName()];
730 if (!Entry) {
731 Entry = StringTable.size();
732 StringTable += Symbol.getName();
733 StringTable += '\x00';
734 }
735
736 MachSymbolData MSD;
737 MSD.SymbolData = it;
738 MSD.StringIndex = Entry;
739
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000740 if (Symbol.isAbsolute()) {
741 MSD.SectionIndex = 0;
742 LocalSymbolData.push_back(MSD);
743 } else {
744 MSD.SectionIndex = SectionIndexMap.lookup(&Symbol.getSection());
745 assert(MSD.SectionIndex && "Invalid section index!");
746 LocalSymbolData.push_back(MSD);
747 }
748 }
749
750 // External and undefined symbols are required to be in lexicographic order.
751 std::sort(ExternalSymbolData.begin(), ExternalSymbolData.end());
752 std::sort(UndefinedSymbolData.begin(), UndefinedSymbolData.end());
753
Daniel Dunbarbe963552009-08-26 13:57:54 +0000754 // Set the symbol indices.
755 Index = 0;
756 for (unsigned i = 0, e = LocalSymbolData.size(); i != e; ++i)
757 LocalSymbolData[i].SymbolData->setIndex(Index++);
758 for (unsigned i = 0, e = ExternalSymbolData.size(); i != e; ++i)
759 ExternalSymbolData[i].SymbolData->setIndex(Index++);
760 for (unsigned i = 0, e = UndefinedSymbolData.size(); i != e; ++i)
761 UndefinedSymbolData[i].SymbolData->setIndex(Index++);
762
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000763 // The string table is padded to a multiple of 4.
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000764 while (StringTable.size() % 4)
765 StringTable += '\x00';
766 }
767
Daniel Dunbarbacba992010-03-19 07:09:33 +0000768 void ExecutePostLayoutBinding(MCAssembler &Asm) {
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000769 // Create symbol data for any indirect symbols.
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000770 BindIndirectSymbols(Asm);
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000771
Daniel Dunbarbacba992010-03-19 07:09:33 +0000772 // Compute symbol table information and bind symbol indices.
773 ComputeSymbolTable(Asm, StringTable, LocalSymbolData, ExternalSymbolData,
774 UndefinedSymbolData);
Daniel Dunbarbacba992010-03-19 07:09:33 +0000775 }
776
777 void WriteObject(const MCAssembler &Asm) {
778 unsigned NumSections = Asm.size();
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000779
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000780 // The section data starts after the header, the segment load command (and
781 // section headers) and the symbol table.
782 unsigned NumLoadCommands = 1;
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000783 uint64_t LoadCommandsSize = Is64Bit ?
784 SegmentLoadCommand64Size + NumSections * Section64Size :
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000785 SegmentLoadCommand32Size + NumSections * Section32Size;
786
787 // Add the symbol table load command sizes, if used.
Daniel Dunbarbacba992010-03-19 07:09:33 +0000788 unsigned NumSymbols = LocalSymbolData.size() + ExternalSymbolData.size() +
789 UndefinedSymbolData.size();
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000790 if (NumSymbols) {
791 NumLoadCommands += 2;
792 LoadCommandsSize += SymtabLoadCommandSize + DysymtabLoadCommandSize;
793 }
794
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000795 // Compute the total size of the section data, as well as its file size and
796 // vm size.
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000797 uint64_t SectionDataStart = (Is64Bit ? Header64Size : Header32Size)
798 + LoadCommandsSize;
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000799 uint64_t SectionDataSize = 0;
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000800 uint64_t SectionDataFileSize = 0;
801 uint64_t VMSize = 0;
Daniel Dunbarbacba992010-03-19 07:09:33 +0000802 for (MCAssembler::const_iterator it = Asm.begin(),
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000803 ie = Asm.end(); it != ie; ++it) {
Daniel Dunbarbacba992010-03-19 07:09:33 +0000804 const MCSectionData &SD = *it;
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000805
806 VMSize = std::max(VMSize, SD.getAddress() + SD.getSize());
807
Daniel Dunbard5a8e982009-08-28 05:49:21 +0000808 if (isVirtualSection(SD.getSection()))
809 continue;
810
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000811 SectionDataSize = std::max(SectionDataSize,
812 SD.getAddress() + SD.getSize());
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000813 SectionDataFileSize = std::max(SectionDataFileSize,
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000814 SD.getAddress() + SD.getFileSize());
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000815 }
816
Daniel Dunbar6b716532010-02-09 23:00:14 +0000817 // The section data is padded to 4 bytes.
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000818 //
819 // FIXME: Is this machine dependent?
820 unsigned SectionDataPadding = OffsetToAlignment(SectionDataFileSize, 4);
821 SectionDataFileSize += SectionDataPadding;
822
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000823 // Write the prolog, starting with the header and load command...
Daniel Dunbaree0d8922010-03-13 22:10:17 +0000824 WriteHeader(NumLoadCommands, LoadCommandsSize,
825 Asm.getSubsectionsViaSymbols());
826 WriteSegmentLoadCommand(NumSections, VMSize,
827 SectionDataStart, SectionDataSize);
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000828
Daniel Dunbar17a06502010-03-19 07:09:18 +0000829 // ... and then the section headers.
830 uint64_t RelocTableEnd = SectionDataStart + SectionDataFileSize;
Daniel Dunbarbacba992010-03-19 07:09:33 +0000831 for (MCAssembler::const_iterator it = Asm.begin(),
Daniel Dunbar17a06502010-03-19 07:09:18 +0000832 ie = Asm.end(); it != ie; ++it) {
833 std::vector<MachRelocationEntry> &Relocs = Relocations[it];
834 unsigned NumRelocs = Relocs.size();
835 uint64_t SectionStart = SectionDataStart + it->getAddress();
836 WriteSection(*it, SectionStart, RelocTableEnd, NumRelocs);
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000837 RelocTableEnd += NumRelocs * RelocationInfoSize;
838 }
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000839
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000840 // Write the symbol table load command, if used.
841 if (NumSymbols) {
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000842 unsigned FirstLocalSymbol = 0;
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000843 unsigned NumLocalSymbols = LocalSymbolData.size();
844 unsigned FirstExternalSymbol = FirstLocalSymbol + NumLocalSymbols;
845 unsigned NumExternalSymbols = ExternalSymbolData.size();
846 unsigned FirstUndefinedSymbol = FirstExternalSymbol + NumExternalSymbols;
847 unsigned NumUndefinedSymbols = UndefinedSymbolData.size();
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000848 unsigned NumIndirectSymbols = Asm.indirect_symbol_size();
849 unsigned NumSymTabSymbols =
850 NumLocalSymbols + NumExternalSymbols + NumUndefinedSymbols;
851 uint64_t IndirectSymbolSize = NumIndirectSymbols * 4;
852 uint64_t IndirectSymbolOffset = 0;
853
854 // If used, the indirect symbols are written after the section data.
855 if (NumIndirectSymbols)
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000856 IndirectSymbolOffset = RelocTableEnd;
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000857
858 // The symbol table is written after the indirect symbol data.
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000859 uint64_t SymbolTableOffset = RelocTableEnd + IndirectSymbolSize;
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000860
861 // The string table is written after symbol table.
862 uint64_t StringTableOffset =
Daniel Dunbar5691e742010-03-13 22:49:35 +0000863 SymbolTableOffset + NumSymTabSymbols * (Is64Bit ? Nlist64Size :
864 Nlist32Size);
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000865 WriteSymtabLoadCommand(SymbolTableOffset, NumSymTabSymbols,
866 StringTableOffset, StringTable.size());
867
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000868 WriteDysymtabLoadCommand(FirstLocalSymbol, NumLocalSymbols,
869 FirstExternalSymbol, NumExternalSymbols,
870 FirstUndefinedSymbol, NumUndefinedSymbols,
871 IndirectSymbolOffset, NumIndirectSymbols);
872 }
873
874 // Write the actual section data.
Daniel Dunbarbacba992010-03-19 07:09:33 +0000875 for (MCAssembler::const_iterator it = Asm.begin(),
876 ie = Asm.end(); it != ie; ++it)
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000877 WriteFileData(OS, *it, *this);
878
Daniel Dunbaredc670f2009-08-28 05:49:04 +0000879 // Write the extra padding.
880 WriteZeros(SectionDataPadding);
881
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000882 // Write the relocation entries.
Daniel Dunbarbacba992010-03-19 07:09:33 +0000883 for (MCAssembler::const_iterator it = Asm.begin(),
Daniel Dunbar17a06502010-03-19 07:09:18 +0000884 ie = Asm.end(); it != ie; ++it) {
885 // Write the section relocation entries, in reverse order to match 'as'
886 // (approximately, the exact algorithm is more complicated than this).
887 std::vector<MachRelocationEntry> &Relocs = Relocations[it];
888 for (unsigned i = 0, e = Relocs.size(); i != e; ++i) {
889 Write32(Relocs[e - i - 1].Word0);
890 Write32(Relocs[e - i - 1].Word1);
891 }
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000892 }
893
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000894 // Write the symbol table data, if used.
895 if (NumSymbols) {
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000896 // Write the indirect symbol entries.
Daniel Dunbarbacba992010-03-19 07:09:33 +0000897 for (MCAssembler::const_indirect_symbol_iterator
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000898 it = Asm.indirect_symbol_begin(),
899 ie = Asm.indirect_symbol_end(); it != ie; ++it) {
900 // Indirect symbols in the non lazy symbol pointer section have some
901 // special handling.
902 const MCSectionMachO &Section =
903 static_cast<const MCSectionMachO&>(it->SectionData->getSection());
Daniel Dunbar99d22ad2010-03-15 21:56:38 +0000904 if (Section.getType() == MCSectionMachO::S_NON_LAZY_SYMBOL_POINTERS) {
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000905 // If this symbol is defined and internal, mark it as such.
906 if (it->Symbol->isDefined() &&
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000907 !Asm.getSymbolData(*it->Symbol).isExternal()) {
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000908 uint32_t Flags = ISF_Local;
909 if (it->Symbol->isAbsolute())
910 Flags |= ISF_Absolute;
911 Write32(Flags);
912 continue;
913 }
914 }
915
Daniel Dunbar2101d9c2010-03-10 20:58:31 +0000916 Write32(Asm.getSymbolData(*it->Symbol).getIndex());
Daniel Dunbarad7c3d52009-08-26 00:18:21 +0000917 }
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000918
Daniel Dunbar0c7761b2009-08-24 11:56:58 +0000919 // FIXME: Check that offsets match computed ones.
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000920
921 // Write the symbol table entries.
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000922 for (unsigned i = 0, e = LocalSymbolData.size(); i != e; ++i)
Daniel Dunbar5691e742010-03-13 22:49:35 +0000923 WriteNlist(LocalSymbolData[i]);
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000924 for (unsigned i = 0, e = ExternalSymbolData.size(); i != e; ++i)
Daniel Dunbar5691e742010-03-13 22:49:35 +0000925 WriteNlist(ExternalSymbolData[i]);
Daniel Dunbar3edd9bb2009-08-22 11:41:10 +0000926 for (unsigned i = 0, e = UndefinedSymbolData.size(); i != e; ++i)
Daniel Dunbar5691e742010-03-13 22:49:35 +0000927 WriteNlist(UndefinedSymbolData[i]);
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000928
929 // Write the string table.
930 OS << StringTable.str();
931 }
Daniel Dunbar2ae58f22009-08-22 08:28:27 +0000932 }
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000933};
934
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000935/* *** */
936
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000937MCFragment::MCFragment() : Kind(FragmentType(~0)) {
938}
939
Daniel Dunbar5e835962009-08-26 02:48:04 +0000940MCFragment::MCFragment(FragmentType _Kind, MCSectionData *_Parent)
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000941 : Kind(_Kind),
Daniel Dunbar5e835962009-08-26 02:48:04 +0000942 Parent(_Parent),
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000943 FileSize(~UINT64_C(0))
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000944{
Daniel Dunbar5e835962009-08-26 02:48:04 +0000945 if (Parent)
946 Parent->getFragmentList().push_back(this);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000947}
948
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000949MCFragment::~MCFragment() {
950}
951
Daniel Dunbar5e835962009-08-26 02:48:04 +0000952uint64_t MCFragment::getAddress() const {
953 assert(getParent() && "Missing Section!");
954 return getParent()->getAddress() + Offset;
955}
956
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000957/* *** */
958
Daniel Dunbar81e40002009-08-27 00:38:04 +0000959MCSectionData::MCSectionData() : Section(0) {}
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000960
961MCSectionData::MCSectionData(const MCSection &_Section, MCAssembler *A)
Daniel Dunbar81e40002009-08-27 00:38:04 +0000962 : Section(&_Section),
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000963 Alignment(1),
Daniel Dunbar5e835962009-08-26 02:48:04 +0000964 Address(~UINT64_C(0)),
Daniel Dunbar6742e342009-08-26 04:13:32 +0000965 Size(~UINT64_C(0)),
Daniel Dunbar3f6a9602009-08-26 13:58:10 +0000966 FileSize(~UINT64_C(0)),
Daniel Dunbare1ec6172010-02-02 21:44:01 +0000967 HasInstructions(false)
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000968{
969 if (A)
970 A->getSectionList().push_back(this);
971}
972
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000973/* *** */
974
Daniel Dunbarefbb5332009-09-01 04:09:03 +0000975MCSymbolData::MCSymbolData() : Symbol(0) {}
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000976
Daniel Dunbarcb579b32009-08-31 08:08:06 +0000977MCSymbolData::MCSymbolData(const MCSymbol &_Symbol, MCFragment *_Fragment,
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000978 uint64_t _Offset, MCAssembler *A)
Daniel Dunbarefbb5332009-09-01 04:09:03 +0000979 : Symbol(&_Symbol), Fragment(_Fragment), Offset(_Offset),
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000980 IsExternal(false), IsPrivateExtern(false),
981 CommonSize(0), CommonAlign(0), Flags(0), Index(0)
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000982{
983 if (A)
984 A->getSymbolList().push_back(this);
985}
986
987/* *** */
988
Daniel Dunbar1f3e4452010-03-11 01:34:27 +0000989MCAssembler::MCAssembler(MCContext &_Context, TargetAsmBackend &_Backend,
990 raw_ostream &_OS)
991 : Context(_Context), Backend(_Backend), OS(_OS), SubsectionsViaSymbols(false)
Daniel Dunbar6009db42009-08-26 21:22:22 +0000992{
993}
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000994
995MCAssembler::~MCAssembler() {
996}
997
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000998static bool isScatteredFixupFullyResolvedSimple(const MCAssembler &Asm,
999 const MCAsmFixup &Fixup,
1000 const MCDataFragment *DF,
1001 const MCValue Target,
1002 const MCSection *BaseSection) {
1003 // The effective fixup address is
1004 // addr(atom(A)) + offset(A)
1005 // - addr(atom(B)) - offset(B)
1006 // - addr(<base symbol>) + <fixup offset from base symbol>
1007 // and the offsets are not relocatable, so the fixup is fully resolved when
1008 // addr(atom(A)) - addr(atom(B)) - addr(<base symbol>)) == 0.
1009 //
1010 // The simple (Darwin, except on x86_64) way of dealing with this was to
1011 // assume that any reference to a temporary symbol *must* be a temporary
1012 // symbol in the same atom, unless the sections differ. Therefore, any PCrel
1013 // relocation to a temporary symbol (in the same section) is fully
1014 // resolved. This also works in conjunction with absolutized .set, which
1015 // requires the compiler to use .set to absolutize the differences between
1016 // symbols which the compiler knows to be assembly time constants, so we don't
1017 // need to worry about consider symbol differences fully resolved.
1018
1019 // Non-relative fixups are only resolved if constant.
1020 if (!BaseSection)
1021 return Target.isAbsolute();
1022
1023 // Otherwise, relative fixups are only resolved if not a difference and the
1024 // target is a temporary in the same section.
1025 if (Target.isAbsolute() || Target.getSymB())
1026 return false;
1027
1028 const MCSymbol *A = &Target.getSymA()->getSymbol();
1029 if (!A->isTemporary() || !A->isInSection() ||
1030 &A->getSection() != BaseSection)
1031 return false;
1032
1033 return true;
1034}
1035
Daniel Dunbar034843a2010-03-19 03:18:18 +00001036static bool isScatteredFixupFullyResolved(const MCAssembler &Asm,
1037 const MCAsmFixup &Fixup,
1038 const MCDataFragment *DF,
1039 const MCValue Target,
1040 const MCSymbolData *BaseSymbol) {
1041 // The effective fixup address is
1042 // addr(atom(A)) + offset(A)
1043 // - addr(atom(B)) - offset(B)
1044 // - addr(BaseSymbol) + <fixup offset from base symbol>
1045 // and the offsets are not relocatable, so the fixup is fully resolved when
1046 // addr(atom(A)) - addr(atom(B)) - addr(BaseSymbol) == 0.
1047 //
1048 // Note that "false" is almost always conservatively correct (it means we emit
1049 // a relocation which is unnecessary), except when it would force us to emit a
1050 // relocation which the target cannot encode.
1051
1052 const MCSymbolData *A_Base = 0, *B_Base = 0;
1053 if (const MCSymbolRefExpr *A = Target.getSymA()) {
1054 // Modified symbol references cannot be resolved.
1055 if (A->getKind() != MCSymbolRefExpr::VK_None)
1056 return false;
1057
1058 A_Base = Asm.getAtom(&Asm.getSymbolData(A->getSymbol()));
1059 if (!A_Base)
1060 return false;
1061 }
1062
1063 if (const MCSymbolRefExpr *B = Target.getSymB()) {
1064 // Modified symbol references cannot be resolved.
1065 if (B->getKind() != MCSymbolRefExpr::VK_None)
1066 return false;
1067
1068 B_Base = Asm.getAtom(&Asm.getSymbolData(B->getSymbol()));
1069 if (!B_Base)
1070 return false;
1071 }
1072
1073 // If there is no base, A and B have to be the same atom for this fixup to be
1074 // fully resolved.
1075 if (!BaseSymbol)
1076 return A_Base == B_Base;
1077
1078 // Otherwise, B must be missing and A must be the base.
1079 return !B_Base && BaseSymbol == A_Base;
1080}
1081
Daniel Dunbar23869852010-03-19 03:18:09 +00001082bool MCAssembler::isSymbolLinkerVisible(const MCSymbolData *SD) const {
1083 // Non-temporary labels should always be visible to the linker.
1084 if (!SD->getSymbol().isTemporary())
1085 return true;
1086
1087 // Absolute temporary labels are never visible.
1088 if (!SD->getFragment())
1089 return false;
1090
1091 // Otherwise, check if the section requires symbols even for temporary labels.
1092 return getBackend().doesSectionRequireSymbols(
1093 SD->getFragment()->getParent()->getSection());
1094}
1095
Daniel Dunbar8ad0dcc2010-03-19 03:18:15 +00001096const MCSymbolData *MCAssembler::getAtomForAddress(const MCSectionData *Section,
1097 uint64_t Address) const {
1098 const MCSymbolData *Best = 0;
1099 for (MCAssembler::const_symbol_iterator it = symbol_begin(),
1100 ie = symbol_end(); it != ie; ++it) {
1101 // Ignore non-linker visible symbols.
1102 if (!isSymbolLinkerVisible(it))
1103 continue;
1104
1105 // Ignore symbols not in the same section.
1106 if (!it->getFragment() || it->getFragment()->getParent() != Section)
1107 continue;
1108
1109 // Otherwise, find the closest symbol preceding this address (ties are
1110 // resolved in favor of the last defined symbol).
1111 if (it->getAddress() <= Address &&
1112 (!Best || it->getAddress() >= Best->getAddress()))
1113 Best = it;
1114 }
1115
1116 return Best;
1117}
1118
1119const MCSymbolData *MCAssembler::getAtom(const MCSymbolData *SD) const {
1120 // Linker visible symbols define atoms.
1121 if (isSymbolLinkerVisible(SD))
1122 return SD;
1123
1124 // Absolute and undefined symbols have no defining atom.
1125 if (!SD->getFragment())
1126 return 0;
1127
1128 // Otherwise, search by address.
1129 return getAtomForAddress(SD->getFragment()->getParent(), SD->getAddress());
1130}
1131
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001132bool MCAssembler::EvaluateFixup(const MCAsmLayout &Layout, MCAsmFixup &Fixup,
1133 MCDataFragment *DF,
1134 MCValue &Target, uint64_t &Value) const {
1135 if (!Fixup.Value->EvaluateAsRelocatable(Target, &Layout))
1136 llvm_report_error("expected relocatable expression");
1137
1138 // FIXME: How do non-scattered symbols work in ELF? I presume the linker
1139 // doesn't support small relocations, but then under what criteria does the
1140 // assembler allow symbol differences?
1141
1142 Value = Target.getConstant();
1143
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001144 bool IsResolved = true, IsPCRel = isFixupKindPCRel(Fixup.Kind);
Daniel Dunbar9a1d2002010-03-18 00:59:10 +00001145 if (const MCSymbolRefExpr *A = Target.getSymA()) {
1146 if (A->getSymbol().isDefined())
1147 Value += getSymbolData(A->getSymbol()).getAddress();
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001148 else
1149 IsResolved = false;
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001150 }
Daniel Dunbar9a1d2002010-03-18 00:59:10 +00001151 if (const MCSymbolRefExpr *B = Target.getSymB()) {
1152 if (B->getSymbol().isDefined())
1153 Value -= getSymbolData(B->getSymbol()).getAddress();
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001154 else
1155 IsResolved = false;
Daniel Dunbar939f8d72010-03-19 03:18:12 +00001156 }
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001157
Daniel Dunbar939f8d72010-03-19 03:18:12 +00001158 // If we are using scattered symbols, determine whether this value is actually
1159 // resolved; scattering may cause atoms to move.
1160 if (IsResolved && getBackend().hasScatteredSymbols()) {
1161 if (getBackend().hasReliableSymbolDifference()) {
Daniel Dunbar034843a2010-03-19 03:18:18 +00001162 // If this is a PCrel relocation, find the base atom (identified by its
1163 // symbol) that the fixup value is relative to.
1164 const MCSymbolData *BaseSymbol = 0;
1165 if (IsPCRel) {
1166 BaseSymbol = getAtomForAddress(
1167 DF->getParent(), DF->getAddress() + Fixup.Offset);
1168 if (!BaseSymbol)
1169 IsResolved = false;
1170 }
1171
1172 if (IsResolved)
1173 IsResolved = isScatteredFixupFullyResolved(*this, Fixup, DF, Target,
1174 BaseSymbol);
Daniel Dunbar939f8d72010-03-19 03:18:12 +00001175 } else {
1176 const MCSection *BaseSection = 0;
1177 if (IsPCRel)
1178 BaseSection = &DF->getParent()->getSection();
1179
1180 IsResolved = isScatteredFixupFullyResolvedSimple(*this, Fixup, DF, Target,
1181 BaseSection);
1182 }
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001183 }
1184
1185 if (IsPCRel)
Daniel Dunbarda3e9f72010-03-13 02:38:00 +00001186 Value -= DF->getAddress() + Fixup.Offset;
Daniel Dunbardf3c8f22010-03-12 21:00:49 +00001187
1188 return IsResolved;
1189}
1190
Daniel Dunbaredc670f2009-08-28 05:49:04 +00001191void MCAssembler::LayoutSection(MCSectionData &SD) {
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +00001192 MCAsmLayout Layout(*this);
Daniel Dunbar6742e342009-08-26 04:13:32 +00001193 uint64_t Address = SD.getAddress();
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001194
1195 for (MCSectionData::iterator it = SD.begin(), ie = SD.end(); it != ie; ++it) {
1196 MCFragment &F = *it;
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001197
Daniel Dunbar6742e342009-08-26 04:13:32 +00001198 F.setOffset(Address - SD.getAddress());
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001199
1200 // Evaluate fragment size.
1201 switch (F.getKind()) {
1202 case MCFragment::FT_Align: {
1203 MCAlignFragment &AF = cast<MCAlignFragment>(F);
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001204
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001205 uint64_t Size = OffsetToAlignment(Address, AF.getAlignment());
Daniel Dunbar6742e342009-08-26 04:13:32 +00001206 if (Size > AF.getMaxBytesToEmit())
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001207 AF.setFileSize(0);
1208 else
Daniel Dunbar6742e342009-08-26 04:13:32 +00001209 AF.setFileSize(Size);
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001210 break;
1211 }
1212
1213 case MCFragment::FT_Data:
Daniel Dunbara4766d72010-02-13 09:28:32 +00001214 case MCFragment::FT_Fill:
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001215 F.setFileSize(F.getMaxFileSize());
1216 break;
1217
1218 case MCFragment::FT_Org: {
1219 MCOrgFragment &OF = cast<MCOrgFragment>(F);
1220
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +00001221 int64_t TargetLocation;
1222 if (!OF.getOffset().EvaluateAsAbsolute(TargetLocation, &Layout))
1223 llvm_report_error("expected assembly-time absolute expression");
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001224
1225 // FIXME: We need a way to communicate this error.
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +00001226 int64_t Offset = TargetLocation - F.getOffset();
1227 if (Offset < 0)
1228 llvm_report_error("invalid .org offset '" + Twine(TargetLocation) +
1229 "' (at offset '" + Twine(F.getOffset()) + "'");
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001230
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +00001231 F.setFileSize(Offset);
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001232 break;
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001233 }
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001234
1235 case MCFragment::FT_ZeroFill: {
1236 MCZeroFillFragment &ZFF = cast<MCZeroFillFragment>(F);
1237
1238 // Align the fragment offset; it is safe to adjust the offset freely since
1239 // this is only in virtual sections.
Daniel Dunbar37fad5c2010-03-08 21:10:42 +00001240 Address = RoundUpToAlignment(Address, ZFF.getAlignment());
1241 F.setOffset(Address - SD.getAddress());
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001242
1243 // FIXME: This is misnamed.
1244 F.setFileSize(ZFF.getSize());
1245 break;
1246 }
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001247 }
1248
Daniel Dunbar6742e342009-08-26 04:13:32 +00001249 Address += F.getFileSize();
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001250 }
1251
Daniel Dunbar6742e342009-08-26 04:13:32 +00001252 // Set the section sizes.
1253 SD.setSize(Address - SD.getAddress());
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001254 if (isVirtualSection(SD.getSection()))
1255 SD.setFileSize(0);
1256 else
1257 SD.setFileSize(Address - SD.getAddress());
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001258}
1259
Kevin Enderby6e720482010-02-23 18:26:34 +00001260/// WriteNopData - Write optimal nops to the output file for the \arg Count
1261/// bytes. This returns the number of bytes written. It may return 0 if
1262/// the \arg Count is more than the maximum optimal nops.
1263///
1264/// FIXME this is X86 32-bit specific and should move to a better place.
1265static uint64_t WriteNopData(uint64_t Count, MachObjectWriter &MOW) {
Kevin Enderby76687082010-02-23 21:41:24 +00001266 static const uint8_t Nops[16][16] = {
1267 // nop
1268 {0x90},
1269 // xchg %ax,%ax
1270 {0x66, 0x90},
1271 // nopl (%[re]ax)
1272 {0x0f, 0x1f, 0x00},
1273 // nopl 0(%[re]ax)
1274 {0x0f, 0x1f, 0x40, 0x00},
1275 // nopl 0(%[re]ax,%[re]ax,1)
1276 {0x0f, 0x1f, 0x44, 0x00, 0x00},
1277 // nopw 0(%[re]ax,%[re]ax,1)
1278 {0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00},
1279 // nopl 0L(%[re]ax)
1280 {0x0f, 0x1f, 0x80, 0x00, 0x00, 0x00, 0x00},
1281 // nopl 0L(%[re]ax,%[re]ax,1)
1282 {0x0f, 0x1f, 0x84, 0x00, 0x00, 0x00, 0x00, 0x00},
1283 // nopw 0L(%[re]ax,%[re]ax,1)
1284 {0x66, 0x0f, 0x1f, 0x84, 0x00, 0x00, 0x00, 0x00, 0x00},
1285 // nopw %cs:0L(%[re]ax,%[re]ax,1)
1286 {0x66, 0x2e, 0x0f, 0x1f, 0x84, 0x00, 0x00, 0x00, 0x00, 0x00},
1287 // nopl 0(%[re]ax,%[re]ax,1)
1288 // nopw 0(%[re]ax,%[re]ax,1)
1289 {0x0f, 0x1f, 0x44, 0x00, 0x00,
1290 0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00},
1291 // nopw 0(%[re]ax,%[re]ax,1)
1292 // nopw 0(%[re]ax,%[re]ax,1)
1293 {0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00,
1294 0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00},
1295 // nopw 0(%[re]ax,%[re]ax,1)
1296 // nopl 0L(%[re]ax) */
1297 {0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00,
1298 0x0f, 0x1f, 0x80, 0x00, 0x00, 0x00, 0x00},
1299 // nopl 0L(%[re]ax)
1300 // nopl 0L(%[re]ax)
1301 {0x0f, 0x1f, 0x80, 0x00, 0x00, 0x00, 0x00,
1302 0x0f, 0x1f, 0x80, 0x00, 0x00, 0x00, 0x00},
1303 // nopl 0L(%[re]ax)
1304 // nopl 0L(%[re]ax,%[re]ax,1)
1305 {0x0f, 0x1f, 0x80, 0x00, 0x00, 0x00, 0x00,
1306 0x0f, 0x1f, 0x84, 0x00, 0x00, 0x00, 0x00, 0x00}
1307 };
1308
1309 if (Count > 15)
1310 return 0;
1311
Kevin Enderby6e720482010-02-23 18:26:34 +00001312 for (uint64_t i = 0; i < Count; i++)
Kevin Enderby76687082010-02-23 21:41:24 +00001313 MOW.Write8 (uint8_t(Nops[Count - 1][i]));
Kevin Enderby6e720482010-02-23 18:26:34 +00001314
1315 return Count;
1316}
1317
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001318/// WriteFileData - Write the \arg F data to the output file.
1319static void WriteFileData(raw_ostream &OS, const MCFragment &F,
1320 MachObjectWriter &MOW) {
1321 uint64_t Start = OS.tell();
1322 (void) Start;
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001323
Daniel Dunbar0adcd352009-08-25 21:10:45 +00001324 ++EmittedFragments;
1325
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001326 // FIXME: Embed in fragments instead?
1327 switch (F.getKind()) {
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001328 case MCFragment::FT_Align: {
1329 MCAlignFragment &AF = cast<MCAlignFragment>(F);
1330 uint64_t Count = AF.getFileSize() / AF.getValueSize();
1331
1332 // FIXME: This error shouldn't actually occur (the front end should emit
1333 // multiple .align directives to enforce the semantics it wants), but is
1334 // severe enough that we want to report it. How to handle this?
1335 if (Count * AF.getValueSize() != AF.getFileSize())
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001336 llvm_report_error("undefined .align directive, value size '" +
1337 Twine(AF.getValueSize()) +
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001338 "' is not a divisor of padding size '" +
1339 Twine(AF.getFileSize()) + "'");
1340
Kevin Enderby6e720482010-02-23 18:26:34 +00001341 // See if we are aligning with nops, and if so do that first to try to fill
1342 // the Count bytes. Then if that did not fill any bytes or there are any
1343 // bytes left to fill use the the Value and ValueSize to fill the rest.
1344 if (AF.getEmitNops()) {
1345 uint64_t NopByteCount = WriteNopData(Count, MOW);
1346 Count -= NopByteCount;
1347 }
1348
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001349 for (uint64_t i = 0; i != Count; ++i) {
1350 switch (AF.getValueSize()) {
1351 default:
1352 assert(0 && "Invalid size!");
1353 case 1: MOW.Write8 (uint8_t (AF.getValue())); break;
1354 case 2: MOW.Write16(uint16_t(AF.getValue())); break;
1355 case 4: MOW.Write32(uint32_t(AF.getValue())); break;
1356 case 8: MOW.Write64(uint64_t(AF.getValue())); break;
1357 }
1358 }
1359 break;
1360 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001361
Daniel Dunbar3a30b822010-02-13 09:28:15 +00001362 case MCFragment::FT_Data: {
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001363 OS << cast<MCDataFragment>(F).getContents().str();
1364 break;
Daniel Dunbar3a30b822010-02-13 09:28:15 +00001365 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001366
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001367 case MCFragment::FT_Fill: {
1368 MCFillFragment &FF = cast<MCFillFragment>(F);
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001369 for (uint64_t i = 0, e = FF.getCount(); i != e; ++i) {
1370 switch (FF.getValueSize()) {
1371 default:
1372 assert(0 && "Invalid size!");
Daniel Dunbara4766d72010-02-13 09:28:32 +00001373 case 1: MOW.Write8 (uint8_t (FF.getValue())); break;
1374 case 2: MOW.Write16(uint16_t(FF.getValue())); break;
1375 case 4: MOW.Write32(uint32_t(FF.getValue())); break;
1376 case 8: MOW.Write64(uint64_t(FF.getValue())); break;
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001377 }
1378 }
1379 break;
1380 }
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001381
Daniel Dunbard6f761e2009-08-21 23:07:38 +00001382 case MCFragment::FT_Org: {
1383 MCOrgFragment &OF = cast<MCOrgFragment>(F);
1384
1385 for (uint64_t i = 0, e = OF.getFileSize(); i != e; ++i)
1386 MOW.Write8(uint8_t(OF.getValue()));
1387
1388 break;
1389 }
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001390
1391 case MCFragment::FT_ZeroFill: {
1392 assert(0 && "Invalid zero fill fragment in concrete section!");
1393 break;
1394 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001395 }
1396
1397 assert(OS.tell() - Start == F.getFileSize());
1398}
1399
1400/// WriteFileData - Write the \arg SD data to the output file.
1401static void WriteFileData(raw_ostream &OS, const MCSectionData &SD,
1402 MachObjectWriter &MOW) {
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001403 // Ignore virtual sections.
1404 if (isVirtualSection(SD.getSection())) {
1405 assert(SD.getFileSize() == 0);
1406 return;
1407 }
1408
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001409 uint64_t Start = OS.tell();
1410 (void) Start;
Daniel Dunbar7eb85192009-10-16 01:58:15 +00001411
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001412 for (MCSectionData::const_iterator it = SD.begin(),
1413 ie = SD.end(); it != ie; ++it)
1414 WriteFileData(OS, *it, MOW);
1415
Daniel Dunbar6742e342009-08-26 04:13:32 +00001416 // Add section padding.
1417 assert(SD.getFileSize() >= SD.getSize() && "Invalid section sizes!");
1418 MOW.WriteZeros(SD.getFileSize() - SD.getSize());
1419
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001420 assert(OS.tell() - Start == SD.getFileSize());
1421}
1422
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +00001423void MCAssembler::Finish() {
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001424 DEBUG_WITH_TYPE("mc-dump", {
1425 llvm::errs() << "assembler backend - pre-layout\n--\n";
1426 dump(); });
1427
Daniel Dunbarf08fde42010-03-12 22:07:14 +00001428 // Layout until everything fits.
1429 while (LayoutOnce())
1430 continue;
1431
1432 DEBUG_WITH_TYPE("mc-dump", {
1433 llvm::errs() << "assembler backend - post-layout\n--\n";
1434 dump(); });
1435
Daniel Dunbaree0d8922010-03-13 22:10:17 +00001436 // FIXME: Factor out MCObjectWriter.
1437 bool Is64Bit = StringRef(getBackend().getTarget().getName()) == "x86-64";
1438 MachObjectWriter MOW(OS, Is64Bit);
Daniel Dunbarbacba992010-03-19 07:09:33 +00001439
1440 // Allow the object writer a chance to perform post-layout binding (for
1441 // example, to set the index fields in the symbol data).
1442 MOW.ExecutePostLayoutBinding(*this);
1443
Daniel Dunbarb1e98942010-03-19 07:09:47 +00001444 // Evaluate and apply the fixups, generating relocation entries as necessary.
1445 MCAsmLayout Layout(*this);
1446 for (MCAssembler::iterator it = begin(), ie = end(); it != ie; ++it) {
1447 for (MCSectionData::iterator it2 = it->begin(),
1448 ie2 = it->end(); it2 != ie2; ++it2) {
1449 MCDataFragment *DF = dyn_cast<MCDataFragment>(it2);
1450 if (!DF)
1451 continue;
1452
1453 for (MCDataFragment::fixup_iterator it3 = DF->fixup_begin(),
1454 ie3 = DF->fixup_end(); it3 != ie3; ++it3) {
1455 MCAsmFixup &Fixup = *it3;
1456
1457 // Evaluate the fixup.
1458 MCValue Target;
1459 uint64_t FixedValue;
1460 if (!EvaluateFixup(Layout, Fixup, DF, Target, FixedValue)) {
1461 // The fixup was unresolved, we need a relocation. Inform the object
1462 // writer of the relocation, and give it an opportunity to adjust the
1463 // fixup value if need be.
1464 MOW.RecordRelocation(*this, *DF, Fixup, Target, FixedValue);
1465 }
1466
Daniel Dunbar87190c42010-03-19 09:28:12 +00001467 getBackend().ApplyFixup(Fixup, *DF, FixedValue);
Daniel Dunbarb1e98942010-03-19 07:09:47 +00001468 }
1469 }
1470 }
1471
Daniel Dunbarbacba992010-03-19 07:09:33 +00001472 // Write the object file.
Daniel Dunbarf08fde42010-03-12 22:07:14 +00001473 MOW.WriteObject(*this);
1474
1475 OS.flush();
1476}
1477
1478bool MCAssembler::FixupNeedsRelaxation(MCAsmFixup &Fixup, MCDataFragment *DF) {
1479 // FIXME: Share layout object.
1480 MCAsmLayout Layout(*this);
1481
1482 // Currently we only need to relax X86::reloc_pcrel_1byte.
1483 if (unsigned(Fixup.Kind) != X86::reloc_pcrel_1byte)
1484 return false;
1485
1486 // If we cannot resolve the fixup value, it requires relaxation.
1487 MCValue Target;
1488 uint64_t Value;
1489 if (!EvaluateFixup(Layout, Fixup, DF, Target, Value))
1490 return true;
1491
1492 // Otherwise, relax if the value is too big for a (signed) i8.
1493 return int64_t(Value) != int64_t(int8_t(Value));
1494}
1495
1496bool MCAssembler::LayoutOnce() {
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001497 // Layout the concrete sections and fragments.
Daniel Dunbar5e835962009-08-26 02:48:04 +00001498 uint64_t Address = 0;
Daniel Dunbaredc670f2009-08-28 05:49:04 +00001499 MCSectionData *Prev = 0;
1500 for (iterator it = begin(), ie = end(); it != ie; ++it) {
Daniel Dunbar6742e342009-08-26 04:13:32 +00001501 MCSectionData &SD = *it;
1502
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001503 // Skip virtual sections.
1504 if (isVirtualSection(SD.getSection()))
1505 continue;
1506
Daniel Dunbaredc670f2009-08-28 05:49:04 +00001507 // Align this section if necessary by adding padding bytes to the previous
1508 // section.
1509 if (uint64_t Pad = OffsetToAlignment(Address, it->getAlignment())) {
1510 assert(Prev && "Missing prev section!");
1511 Prev->setFileSize(Prev->getFileSize() + Pad);
1512 Address += Pad;
1513 }
Daniel Dunbar6742e342009-08-26 04:13:32 +00001514
1515 // Layout the section fragments and its size.
1516 SD.setAddress(Address);
Daniel Dunbaredc670f2009-08-28 05:49:04 +00001517 LayoutSection(SD);
Daniel Dunbar6742e342009-08-26 04:13:32 +00001518 Address += SD.getFileSize();
Daniel Dunbaredc670f2009-08-28 05:49:04 +00001519
1520 Prev = &SD;
Daniel Dunbar5e835962009-08-26 02:48:04 +00001521 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001522
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001523 // Layout the virtual sections.
1524 for (iterator it = begin(), ie = end(); it != ie; ++it) {
1525 MCSectionData &SD = *it;
1526
1527 if (!isVirtualSection(SD.getSection()))
1528 continue;
1529
Daniel Dunbarb2b4acd2010-03-08 22:03:42 +00001530 // Align this section if necessary by adding padding bytes to the previous
1531 // section.
Daniel Dunbarf8b8ad72010-03-09 01:12:20 +00001532 if (uint64_t Pad = OffsetToAlignment(Address, it->getAlignment()))
Daniel Dunbarb2b4acd2010-03-08 22:03:42 +00001533 Address += Pad;
Daniel Dunbarb2b4acd2010-03-08 22:03:42 +00001534
Daniel Dunbard5a8e982009-08-28 05:49:21 +00001535 SD.setAddress(Address);
1536 LayoutSection(SD);
1537 Address += SD.getSize();
1538 }
1539
Daniel Dunbarf08fde42010-03-12 22:07:14 +00001540 // Scan the fixups in order and relax any that don't fit.
1541 for (iterator it = begin(), ie = end(); it != ie; ++it) {
1542 MCSectionData &SD = *it;
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001543
Daniel Dunbarf08fde42010-03-12 22:07:14 +00001544 for (MCSectionData::iterator it2 = SD.begin(),
1545 ie2 = SD.end(); it2 != ie2; ++it2) {
1546 MCDataFragment *DF = dyn_cast<MCDataFragment>(it2);
1547 if (!DF)
1548 continue;
Daniel Dunbar0705fbf2009-08-21 18:29:01 +00001549
Daniel Dunbarf08fde42010-03-12 22:07:14 +00001550 for (MCDataFragment::fixup_iterator it3 = DF->fixup_begin(),
1551 ie3 = DF->fixup_end(); it3 != ie3; ++it3) {
1552 MCAsmFixup &Fixup = *it3;
1553
1554 // Check whether we need to relax this fixup.
1555 if (!FixupNeedsRelaxation(Fixup, DF))
1556 continue;
1557
1558 // Relax the instruction.
1559 //
1560 // FIXME: This is a huge temporary hack which just looks for x86
1561 // branches; the only thing we need to relax on x86 is
1562 // 'X86::reloc_pcrel_1byte'. Once we have MCInst fragments, this will be
1563 // replaced by a TargetAsmBackend hook (most likely tblgen'd) to relax
1564 // an individual MCInst.
1565 SmallVectorImpl<char> &C = DF->getContents();
1566 uint64_t PrevOffset = Fixup.Offset;
1567 unsigned Amt = 0;
1568
1569 // jcc instructions
1570 if (unsigned(C[Fixup.Offset-1]) >= 0x70 &&
1571 unsigned(C[Fixup.Offset-1]) <= 0x7f) {
1572 C[Fixup.Offset] = C[Fixup.Offset-1] + 0x10;
1573 C[Fixup.Offset-1] = char(0x0f);
1574 ++Fixup.Offset;
1575 Amt = 4;
1576
1577 // jmp rel8
1578 } else if (C[Fixup.Offset-1] == char(0xeb)) {
1579 C[Fixup.Offset-1] = char(0xe9);
1580 Amt = 3;
1581
1582 } else
1583 llvm_unreachable("unknown 1 byte pcrel instruction!");
1584
1585 Fixup.Value = MCBinaryExpr::Create(
1586 MCBinaryExpr::Sub, Fixup.Value,
1587 MCConstantExpr::Create(3, getContext()),
1588 getContext());
1589 C.insert(C.begin() + Fixup.Offset, Amt, char(0));
1590 Fixup.Kind = MCFixupKind(X86::reloc_pcrel_4byte);
1591
1592 // Update the remaining fixups, which have slid.
1593 //
1594 // FIXME: This is bad for performance, but will be eliminated by the
1595 // move to MCInst specific fragments.
1596 ++it3;
1597 for (; it3 != ie3; ++it3)
1598 it3->Offset += Amt;
1599
1600 // Update all the symbols for this fragment, which may have slid.
1601 //
1602 // FIXME: This is really really bad for performance, but will be
1603 // eliminated by the move to MCInst specific fragments.
1604 for (MCAssembler::symbol_iterator it = symbol_begin(),
1605 ie = symbol_end(); it != ie; ++it) {
1606 MCSymbolData &SD = *it;
1607
1608 if (it->getFragment() != DF)
1609 continue;
1610
1611 if (SD.getOffset() > PrevOffset)
1612 SD.setOffset(SD.getOffset() + Amt);
1613 }
1614
1615 // Restart layout.
1616 //
1617 // FIXME: This is O(N^2), but will be eliminated once we have a smart
1618 // MCAsmLayout object.
1619 return true;
1620 }
1621 }
1622 }
1623
1624 return false;
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +00001625}
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001626
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001627// Debugging methods
1628
1629namespace llvm {
1630
1631raw_ostream &operator<<(raw_ostream &OS, const MCAsmFixup &AF) {
Daniel Dunbar2be2fd02010-02-13 09:28:54 +00001632 OS << "<MCAsmFixup" << " Offset:" << AF.Offset << " Value:" << *AF.Value
1633 << " Kind:" << AF.Kind << ">";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001634 return OS;
1635}
1636
1637}
1638
1639void MCFragment::dump() {
1640 raw_ostream &OS = llvm::errs();
1641
1642 OS << "<MCFragment " << (void*) this << " Offset:" << Offset
1643 << " FileSize:" << FileSize;
1644
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001645 OS << ">";
1646}
1647
1648void MCAlignFragment::dump() {
1649 raw_ostream &OS = llvm::errs();
1650
1651 OS << "<MCAlignFragment ";
1652 this->MCFragment::dump();
1653 OS << "\n ";
1654 OS << " Alignment:" << getAlignment()
1655 << " Value:" << getValue() << " ValueSize:" << getValueSize()
1656 << " MaxBytesToEmit:" << getMaxBytesToEmit() << ">";
1657}
1658
1659void MCDataFragment::dump() {
1660 raw_ostream &OS = llvm::errs();
1661
1662 OS << "<MCDataFragment ";
1663 this->MCFragment::dump();
1664 OS << "\n ";
1665 OS << " Contents:[";
1666 for (unsigned i = 0, e = getContents().size(); i != e; ++i) {
1667 if (i) OS << ",";
1668 OS << hexdigit((Contents[i] >> 4) & 0xF) << hexdigit(Contents[i] & 0xF);
1669 }
Daniel Dunbar2be2fd02010-02-13 09:28:54 +00001670 OS << "] (" << getContents().size() << " bytes)";
Daniel Dunbar0bcf0742010-02-13 09:28:43 +00001671
1672 if (!getFixups().empty()) {
1673 OS << ",\n ";
1674 OS << " Fixups:[";
1675 for (fixup_iterator it = fixup_begin(), ie = fixup_end(); it != ie; ++it) {
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001676 if (it != fixup_begin()) OS << ",\n ";
Daniel Dunbar0bcf0742010-02-13 09:28:43 +00001677 OS << *it;
1678 }
1679 OS << "]";
1680 }
1681
1682 OS << ">";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001683}
1684
1685void MCFillFragment::dump() {
1686 raw_ostream &OS = llvm::errs();
1687
1688 OS << "<MCFillFragment ";
1689 this->MCFragment::dump();
1690 OS << "\n ";
1691 OS << " Value:" << getValue() << " ValueSize:" << getValueSize()
1692 << " Count:" << getCount() << ">";
1693}
1694
1695void MCOrgFragment::dump() {
1696 raw_ostream &OS = llvm::errs();
1697
1698 OS << "<MCOrgFragment ";
1699 this->MCFragment::dump();
1700 OS << "\n ";
1701 OS << " Offset:" << getOffset() << " Value:" << getValue() << ">";
1702}
1703
1704void MCZeroFillFragment::dump() {
1705 raw_ostream &OS = llvm::errs();
1706
1707 OS << "<MCZeroFillFragment ";
1708 this->MCFragment::dump();
1709 OS << "\n ";
1710 OS << " Size:" << getSize() << " Alignment:" << getAlignment() << ">";
1711}
1712
1713void MCSectionData::dump() {
1714 raw_ostream &OS = llvm::errs();
1715
1716 OS << "<MCSectionData";
1717 OS << " Alignment:" << getAlignment() << " Address:" << Address
1718 << " Size:" << Size << " FileSize:" << FileSize
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001719 << " Fragments:[\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001720 for (iterator it = begin(), ie = end(); it != ie; ++it) {
1721 if (it != begin()) OS << ",\n ";
1722 it->dump();
1723 }
1724 OS << "]>";
1725}
1726
1727void MCSymbolData::dump() {
1728 raw_ostream &OS = llvm::errs();
1729
1730 OS << "<MCSymbolData Symbol:" << getSymbol()
1731 << " Fragment:" << getFragment() << " Offset:" << getOffset()
1732 << " Flags:" << getFlags() << " Index:" << getIndex();
1733 if (isCommon())
1734 OS << " (common, size:" << getCommonSize()
1735 << " align: " << getCommonAlignment() << ")";
1736 if (isExternal())
1737 OS << " (external)";
1738 if (isPrivateExtern())
1739 OS << " (private extern)";
1740 OS << ">";
1741}
1742
1743void MCAssembler::dump() {
1744 raw_ostream &OS = llvm::errs();
1745
1746 OS << "<MCAssembler\n";
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001747 OS << " Sections:[\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001748 for (iterator it = begin(), ie = end(); it != ie; ++it) {
1749 if (it != begin()) OS << ",\n ";
1750 it->dump();
1751 }
1752 OS << "],\n";
1753 OS << " Symbols:[";
1754
1755 for (symbol_iterator it = symbol_begin(), ie = symbol_end(); it != ie; ++it) {
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001756 if (it != symbol_begin()) OS << ",\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001757 it->dump();
1758 }
1759 OS << "]>\n";
1760}