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Nate Begemaneb883af2006-08-23 21:08:52 +00001//===-- MachOWriter.cpp - Target-independent Mach-O Writer code -----------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Nate Begemaneb883af2006-08-23 21:08:52 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the target-independent Mach-O writer. This file writes
11// out the Mach-O file in the following order:
12//
13// #1 FatHeader (universal-only)
14// #2 FatArch (universal-only, 1 per universal arch)
15// Per arch:
16// #3 Header
17// #4 Load Commands
18// #5 Sections
19// #6 Relocations
20// #7 Symbols
21// #8 Strings
22//
23//===----------------------------------------------------------------------===//
24
Bill Wendling8f84f1f2007-02-08 01:35:27 +000025#include "MachOWriter.h"
Nate Begemanbfaaaa62006-12-11 02:20:45 +000026#include "llvm/Constants.h"
27#include "llvm/DerivedTypes.h"
Nate Begemaneb883af2006-08-23 21:08:52 +000028#include "llvm/Module.h"
Bill Wendling8f84f1f2007-02-08 01:35:27 +000029#include "llvm/PassManager.h"
30#include "llvm/CodeGen/FileWriters.h"
Nate Begemaneb883af2006-08-23 21:08:52 +000031#include "llvm/CodeGen/MachineCodeEmitter.h"
32#include "llvm/CodeGen/MachineConstantPool.h"
Nate Begeman019f8512006-09-10 23:03:44 +000033#include "llvm/CodeGen/MachineJumpTableInfo.h"
Nate Begemanbfaaaa62006-12-11 02:20:45 +000034#include "llvm/Target/TargetAsmInfo.h"
Nate Begemaneb883af2006-08-23 21:08:52 +000035#include "llvm/Target/TargetJITInfo.h"
Nate Begemaneb883af2006-08-23 21:08:52 +000036#include "llvm/Support/Mangler.h"
Nate Begemanf8f2c5a2006-08-25 06:36:58 +000037#include "llvm/Support/MathExtras.h"
Bill Wendling203d3e42007-01-17 22:22:31 +000038#include "llvm/Support/OutputBuffer.h"
Nate Begemanbfaaaa62006-12-11 02:20:45 +000039#include "llvm/Support/Streams.h"
Nate Begemand2030e62006-08-26 15:46:34 +000040#include <algorithm>
Anton Korobeynikovae9f3a32008-02-20 11:08:44 +000041#include <cstring>
Nate Begemaneb883af2006-08-23 21:08:52 +000042using namespace llvm;
43
Bill Wendling8f84f1f2007-02-08 01:35:27 +000044/// AddMachOWriter - Concrete function to add the Mach-O writer to the function
45/// pass manager.
Dan Gohmanbfae8312008-03-11 22:29:46 +000046MachineCodeEmitter *llvm::AddMachOWriter(PassManagerBase &PM,
Bill Wendling8f84f1f2007-02-08 01:35:27 +000047 std::ostream &O,
48 TargetMachine &TM) {
49 MachOWriter *MOW = new MachOWriter(O, TM);
Dan Gohmanbfae8312008-03-11 22:29:46 +000050 PM.add(MOW);
Bill Wendling8f84f1f2007-02-08 01:35:27 +000051 return &MOW->getMachineCodeEmitter();
52}
53
Nate Begemaneb883af2006-08-23 21:08:52 +000054//===----------------------------------------------------------------------===//
55// MachOCodeEmitter Implementation
56//===----------------------------------------------------------------------===//
57
58namespace llvm {
59 /// MachOCodeEmitter - This class is used by the MachOWriter to emit the code
60 /// for functions to the Mach-O file.
61 class MachOCodeEmitter : public MachineCodeEmitter {
62 MachOWriter &MOW;
Nate Begemaneb883af2006-08-23 21:08:52 +000063
Bill Wendling203d3e42007-01-17 22:22:31 +000064 /// Target machine description.
65 TargetMachine &TM;
66
Bill Wendlingc904a5b2007-01-18 01:23:11 +000067 /// is64Bit/isLittleEndian - This information is inferred from the target
68 /// machine directly, indicating what header values and flags to set.
69 bool is64Bit, isLittleEndian;
70
Nate Begemaneb883af2006-08-23 21:08:52 +000071 /// Relocations - These are the relocations that the function needs, as
72 /// emitted.
73 std::vector<MachineRelocation> Relocations;
Nate Begeman019f8512006-09-10 23:03:44 +000074
75 /// CPLocations - This is a map of constant pool indices to offsets from the
76 /// start of the section for that constant pool index.
77 std::vector<intptr_t> CPLocations;
78
Nate Begemanbfaaaa62006-12-11 02:20:45 +000079 /// CPSections - This is a map of constant pool indices to the MachOSection
80 /// containing the constant pool entry for that index.
81 std::vector<unsigned> CPSections;
82
Nate Begeman019f8512006-09-10 23:03:44 +000083 /// JTLocations - This is a map of jump table indices to offsets from the
84 /// start of the section for that jump table index.
85 std::vector<intptr_t> JTLocations;
Nate Begemaneb883af2006-08-23 21:08:52 +000086
87 /// MBBLocations - This vector is a mapping from MBB ID's to their address.
88 /// It is filled in by the StartMachineBasicBlock callback and queried by
89 /// the getMachineBasicBlockAddress callback.
90 std::vector<intptr_t> MBBLocations;
91
92 public:
Bill Wendlingc904a5b2007-01-18 01:23:11 +000093 MachOCodeEmitter(MachOWriter &mow) : MOW(mow), TM(MOW.TM) {
94 is64Bit = TM.getTargetData()->getPointerSizeInBits() == 64;
95 isLittleEndian = TM.getTargetData()->isLittleEndian();
96 }
Nate Begemaneb883af2006-08-23 21:08:52 +000097
Nate Begemanc2b2d6a2007-02-07 05:47:16 +000098 virtual void startFunction(MachineFunction &MF);
99 virtual bool finishFunction(MachineFunction &MF);
Nate Begemaneb883af2006-08-23 21:08:52 +0000100
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000101 virtual void addRelocation(const MachineRelocation &MR) {
Nate Begemaneb883af2006-08-23 21:08:52 +0000102 Relocations.push_back(MR);
103 }
104
Nate Begeman019f8512006-09-10 23:03:44 +0000105 void emitConstantPool(MachineConstantPool *MCP);
106 void emitJumpTables(MachineJumpTableInfo *MJTI);
107
Nate Begemaneb883af2006-08-23 21:08:52 +0000108 virtual intptr_t getConstantPoolEntryAddress(unsigned Index) const {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000109 assert(CPLocations.size() > Index && "CP not emitted!");
Nate Begemana0a62782007-02-28 09:16:38 +0000110 return CPLocations[Index];
Nate Begemaneb883af2006-08-23 21:08:52 +0000111 }
112 virtual intptr_t getJumpTableEntryAddress(unsigned Index) const {
Nate Begeman019f8512006-09-10 23:03:44 +0000113 assert(JTLocations.size() > Index && "JT not emitted!");
114 return JTLocations[Index];
115 }
116
117 virtual void StartMachineBasicBlock(MachineBasicBlock *MBB) {
118 if (MBBLocations.size() <= (unsigned)MBB->getNumber())
119 MBBLocations.resize((MBB->getNumber()+1)*2);
120 MBBLocations[MBB->getNumber()] = getCurrentPCOffset();
Nate Begemaneb883af2006-08-23 21:08:52 +0000121 }
122
123 virtual intptr_t getMachineBasicBlockAddress(MachineBasicBlock *MBB) const {
124 assert(MBBLocations.size() > (unsigned)MBB->getNumber() &&
125 MBBLocations[MBB->getNumber()] && "MBB not emitted!");
126 return MBBLocations[MBB->getNumber()];
127 }
128
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +0000129 virtual intptr_t getLabelAddress(uint64_t Label) const {
130 assert(0 && "get Label not implemented");
131 abort();
132 return 0;
133 }
134
135 virtual void emitLabel(uint64_t LabelID) {
136 assert(0 && "emit Label not implemented");
137 abort();
138 }
139
140
141 virtual void setModuleInfo(llvm::MachineModuleInfo* MMI) { }
142
Nate Begemaneb883af2006-08-23 21:08:52 +0000143 /// JIT SPECIFIC FUNCTIONS - DO NOT IMPLEMENT THESE HERE!
Nicolas Geoffray51cc3c12008-04-16 20:46:05 +0000144 virtual void startFunctionStub(const GlobalValue* F, unsigned StubSize,
145 unsigned Alignment = 1) {
Nate Begemaneb883af2006-08-23 21:08:52 +0000146 assert(0 && "JIT specific function called!");
147 abort();
148 }
Nicolas Geoffray51cc3c12008-04-16 20:46:05 +0000149 virtual void *finishFunctionStub(const GlobalValue* F) {
Nate Begemaneb883af2006-08-23 21:08:52 +0000150 assert(0 && "JIT specific function called!");
151 abort();
152 return 0;
153 }
154 };
155}
156
157/// startFunction - This callback is invoked when a new machine function is
158/// about to be emitted.
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000159void MachOCodeEmitter::startFunction(MachineFunction &MF) {
160 const TargetData *TD = TM.getTargetData();
161 const Function *F = MF.getFunction();
162
Nate Begemaneb883af2006-08-23 21:08:52 +0000163 // Align the output buffer to the appropriate alignment, power of 2.
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000164 unsigned FnAlign = F->getAlignment();
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000165 unsigned TDAlign = TD->getPrefTypeAlignment(F->getType());
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000166 unsigned Align = Log2_32(std::max(FnAlign, TDAlign));
167 assert(!(Align & (Align-1)) && "Alignment is not a power of two!");
Nate Begemaneb883af2006-08-23 21:08:52 +0000168
169 // Get the Mach-O Section that this function belongs in.
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000170 MachOWriter::MachOSection *MOS = MOW.getTextSection();
Nate Begemaneb883af2006-08-23 21:08:52 +0000171
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000172 // FIXME: better memory management
Nate Begemaneb883af2006-08-23 21:08:52 +0000173 MOS->SectionData.reserve(4096);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000174 BufferBegin = &MOS->SectionData[0];
Nate Begemaneb883af2006-08-23 21:08:52 +0000175 BufferEnd = BufferBegin + MOS->SectionData.capacity();
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000176
Nate Begeman6635f352007-01-26 22:39:48 +0000177 // Upgrade the section alignment if required.
178 if (MOS->align < Align) MOS->align = Align;
179
180 // Round the size up to the correct alignment for starting the new function.
181 if ((MOS->size & ((1 << Align) - 1)) != 0) {
182 MOS->size += (1 << Align);
183 MOS->size &= ~((1 << Align) - 1);
184 }
185
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000186 // FIXME: Using MOS->size directly here instead of calculating it from the
187 // output buffer size (impossible because the code emitter deals only in raw
188 // bytes) forces us to manually synchronize size and write padding zero bytes
189 // to the output buffer for all non-text sections. For text sections, we do
190 // not synchonize the output buffer, and we just blow up if anyone tries to
191 // write non-code to it. An assert should probably be added to
192 // AddSymbolToSection to prevent calling it on the text section.
Nate Begemaneb883af2006-08-23 21:08:52 +0000193 CurBufferPtr = BufferBegin + MOS->size;
194
Nate Begeman019f8512006-09-10 23:03:44 +0000195 // Clear per-function data structures.
196 CPLocations.clear();
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000197 CPSections.clear();
Nate Begeman019f8512006-09-10 23:03:44 +0000198 JTLocations.clear();
Nate Begemaneb883af2006-08-23 21:08:52 +0000199 MBBLocations.clear();
200}
201
202/// finishFunction - This callback is invoked after the function is completely
203/// finished.
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000204bool MachOCodeEmitter::finishFunction(MachineFunction &MF) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000205 // Get the Mach-O Section that this function belongs in.
206 MachOWriter::MachOSection *MOS = MOW.getTextSection();
207
Nate Begemaneb883af2006-08-23 21:08:52 +0000208 // Get a symbol for the function to add to the symbol table
Nate Begeman6635f352007-01-26 22:39:48 +0000209 // FIXME: it seems like we should call something like AddSymbolToSection
210 // in startFunction rather than changing the section size and symbol n_value
211 // here.
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000212 const GlobalValue *FuncV = MF.getFunction();
Bill Wendling203d3e42007-01-17 22:22:31 +0000213 MachOSym FnSym(FuncV, MOW.Mang->getValueName(FuncV), MOS->Index, TM);
Nate Begeman6635f352007-01-26 22:39:48 +0000214 FnSym.n_value = MOS->size;
215 MOS->size = CurBufferPtr - BufferBegin;
216
Nate Begeman019f8512006-09-10 23:03:44 +0000217 // Emit constant pool to appropriate section(s)
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000218 emitConstantPool(MF.getConstantPool());
Nate Begeman019f8512006-09-10 23:03:44 +0000219
220 // Emit jump tables to appropriate section
Nate Begemanc2b2d6a2007-02-07 05:47:16 +0000221 emitJumpTables(MF.getJumpTableInfo());
Nate Begemaneb883af2006-08-23 21:08:52 +0000222
Nate Begeman019f8512006-09-10 23:03:44 +0000223 // If we have emitted any relocations to function-specific objects such as
224 // basic blocks, constant pools entries, or jump tables, record their
225 // addresses now so that we can rewrite them with the correct addresses
226 // later.
Nate Begemaneb883af2006-08-23 21:08:52 +0000227 for (unsigned i = 0, e = Relocations.size(); i != e; ++i) {
228 MachineRelocation &MR = Relocations[i];
Nate Begeman019f8512006-09-10 23:03:44 +0000229 intptr_t Addr;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000230
Nate Begemaneb883af2006-08-23 21:08:52 +0000231 if (MR.isBasicBlock()) {
Nate Begeman019f8512006-09-10 23:03:44 +0000232 Addr = getMachineBasicBlockAddress(MR.getBasicBlock());
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000233 MR.setConstantVal(MOS->Index);
234 MR.setResultPointer((void*)Addr);
235 } else if (MR.isJumpTableIndex()) {
236 Addr = getJumpTableEntryAddress(MR.getJumpTableIndex());
237 MR.setConstantVal(MOW.getJumpTableSection()->Index);
238 MR.setResultPointer((void*)Addr);
Nate Begeman019f8512006-09-10 23:03:44 +0000239 } else if (MR.isConstantPoolIndex()) {
240 Addr = getConstantPoolEntryAddress(MR.getConstantPoolIndex());
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000241 MR.setConstantVal(CPSections[MR.getConstantPoolIndex()]);
242 MR.setResultPointer((void*)Addr);
Nate Begemanfec910c2007-02-28 07:40:50 +0000243 } else if (MR.isGlobalValue()) {
244 // FIXME: This should be a set or something that uniques
245 MOW.PendingGlobals.push_back(MR.getGlobalValue());
246 } else {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000247 assert(0 && "Unhandled relocation type");
Nate Begemaneb883af2006-08-23 21:08:52 +0000248 }
Nate Begeman019f8512006-09-10 23:03:44 +0000249 MOS->Relocations.push_back(MR);
Nate Begemaneb883af2006-08-23 21:08:52 +0000250 }
251 Relocations.clear();
252
253 // Finally, add it to the symtab.
254 MOW.SymbolTable.push_back(FnSym);
255 return false;
256}
257
Nate Begeman019f8512006-09-10 23:03:44 +0000258/// emitConstantPool - For each constant pool entry, figure out which section
259/// the constant should live in, allocate space for it, and emit it to the
260/// Section data buffer.
261void MachOCodeEmitter::emitConstantPool(MachineConstantPool *MCP) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000262 const std::vector<MachineConstantPoolEntry> &CP = MCP->getConstants();
263 if (CP.empty()) return;
264
265 // FIXME: handle PIC codegen
Bill Wendling203d3e42007-01-17 22:22:31 +0000266 bool isPIC = TM.getRelocationModel() == Reloc::PIC_;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000267 assert(!isPIC && "PIC codegen not yet handled for mach-o jump tables!");
268
269 // Although there is no strict necessity that I am aware of, we will do what
270 // gcc for OS X does and put each constant pool entry in a section of constant
271 // objects of a certain size. That means that float constants go in the
272 // literal4 section, and double objects go in literal8, etc.
273 //
274 // FIXME: revisit this decision if we ever do the "stick everything into one
275 // "giant object for PIC" optimization.
276 for (unsigned i = 0, e = CP.size(); i != e; ++i) {
277 const Type *Ty = CP[i].getType();
Duncan Sandsca0ed742007-11-05 00:04:43 +0000278 unsigned Size = TM.getTargetData()->getABITypeSize(Ty);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000279
Nate Begeman1257c852007-01-29 21:20:42 +0000280 MachOWriter::MachOSection *Sec = MOW.getConstSection(CP[i].Val.ConstVal);
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000281 OutputBuffer SecDataOut(Sec->SectionData, is64Bit, isLittleEndian);
Bill Wendling203d3e42007-01-17 22:22:31 +0000282
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000283 CPLocations.push_back(Sec->SectionData.size());
284 CPSections.push_back(Sec->Index);
285
286 // FIXME: remove when we have unified size + output buffer
287 Sec->size += Size;
288
289 // Allocate space in the section for the global.
290 // FIXME: need alignment?
291 // FIXME: share between here and AddSymbolToSection?
292 for (unsigned j = 0; j < Size; ++j)
Bill Wendling203d3e42007-01-17 22:22:31 +0000293 SecDataOut.outbyte(0);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000294
295 MOW.InitMem(CP[i].Val.ConstVal, &Sec->SectionData[0], CPLocations[i],
Bill Wendling203d3e42007-01-17 22:22:31 +0000296 TM.getTargetData(), Sec->Relocations);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000297 }
Nate Begeman019f8512006-09-10 23:03:44 +0000298}
299
300/// emitJumpTables - Emit all the jump tables for a given jump table info
301/// record to the appropriate section.
302void MachOCodeEmitter::emitJumpTables(MachineJumpTableInfo *MJTI) {
303 const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
304 if (JT.empty()) return;
305
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000306 // FIXME: handle PIC codegen
Bill Wendling203d3e42007-01-17 22:22:31 +0000307 bool isPIC = TM.getRelocationModel() == Reloc::PIC_;
Nate Begeman019f8512006-09-10 23:03:44 +0000308 assert(!isPIC && "PIC codegen not yet handled for mach-o jump tables!");
309
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000310 MachOWriter::MachOSection *Sec = MOW.getJumpTableSection();
311 unsigned TextSecIndex = MOW.getTextSection()->Index;
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000312 OutputBuffer SecDataOut(Sec->SectionData, is64Bit, isLittleEndian);
Nate Begeman019f8512006-09-10 23:03:44 +0000313
314 for (unsigned i = 0, e = JT.size(); i != e; ++i) {
315 // For each jump table, record its offset from the start of the section,
316 // reserve space for the relocations to the MBBs, and add the relocations.
317 const std::vector<MachineBasicBlock*> &MBBs = JT[i].MBBs;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000318 JTLocations.push_back(Sec->SectionData.size());
Nate Begeman019f8512006-09-10 23:03:44 +0000319 for (unsigned mi = 0, me = MBBs.size(); mi != me; ++mi) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000320 MachineRelocation MR(MOW.GetJTRelocation(Sec->SectionData.size(),
Nate Begeman019f8512006-09-10 23:03:44 +0000321 MBBs[mi]));
322 MR.setResultPointer((void *)JTLocations[i]);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000323 MR.setConstantVal(TextSecIndex);
324 Sec->Relocations.push_back(MR);
Bill Wendling203d3e42007-01-17 22:22:31 +0000325 SecDataOut.outaddr(0);
Nate Begeman019f8512006-09-10 23:03:44 +0000326 }
327 }
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000328 // FIXME: remove when we have unified size + output buffer
329 Sec->size = Sec->SectionData.size();
Nate Begeman019f8512006-09-10 23:03:44 +0000330}
331
Nate Begemaneb883af2006-08-23 21:08:52 +0000332//===----------------------------------------------------------------------===//
333// MachOWriter Implementation
334//===----------------------------------------------------------------------===//
335
Devang Patel19974732007-05-03 01:11:54 +0000336char MachOWriter::ID = 0;
Devang Patel794fd752007-05-01 21:15:47 +0000337MachOWriter::MachOWriter(std::ostream &o, TargetMachine &tm)
338 : MachineFunctionPass((intptr_t)&ID), O(o), TM(tm) {
Nate Begemaneb883af2006-08-23 21:08:52 +0000339 is64Bit = TM.getTargetData()->getPointerSizeInBits() == 64;
340 isLittleEndian = TM.getTargetData()->isLittleEndian();
341
342 // Create the machine code emitter object for this target.
Bill Wendlinge9116152007-01-17 09:06:13 +0000343 MCE = new MachOCodeEmitter(*this);
Nate Begemaneb883af2006-08-23 21:08:52 +0000344}
345
346MachOWriter::~MachOWriter() {
347 delete MCE;
348}
349
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000350void MachOWriter::AddSymbolToSection(MachOSection *Sec, GlobalVariable *GV) {
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000351 const Type *Ty = GV->getType()->getElementType();
Duncan Sandsca0ed742007-11-05 00:04:43 +0000352 unsigned Size = TM.getTargetData()->getABITypeSize(Ty);
Duncan Sandsd1025932008-01-29 06:23:44 +0000353 unsigned Align = TM.getTargetData()->getPreferredAlignment(GV);
354
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000355 // Reserve space in the .bss section for this symbol while maintaining the
356 // desired section alignment, which must be at least as much as required by
357 // this symbol.
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000358 OutputBuffer SecDataOut(Sec->SectionData, is64Bit, isLittleEndian);
Bill Wendling203d3e42007-01-17 22:22:31 +0000359
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000360 if (Align) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000361 uint64_t OrigSize = Sec->size;
362 Align = Log2_32(Align);
363 Sec->align = std::max(unsigned(Sec->align), Align);
364 Sec->size = (Sec->size + Align - 1) & ~(Align-1);
365
366 // Add alignment padding to buffer as well.
367 // FIXME: remove when we have unified size + output buffer
368 unsigned AlignedSize = Sec->size - OrigSize;
369 for (unsigned i = 0; i < AlignedSize; ++i)
Bill Wendling203d3e42007-01-17 22:22:31 +0000370 SecDataOut.outbyte(0);
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000371 }
Nate Begemanfec910c2007-02-28 07:40:50 +0000372 // Globals without external linkage apparently do not go in the symbol table.
373 if (GV->getLinkage() != GlobalValue::InternalLinkage) {
374 MachOSym Sym(GV, Mang->getValueName(GV), Sec->Index, TM);
375 Sym.n_value = Sec->size;
376 SymbolTable.push_back(Sym);
377 }
378
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000379 // Record the offset of the symbol, and then allocate space for it.
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000380 // FIXME: remove when we have unified size + output buffer
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000381 Sec->size += Size;
Nate Begemanfec910c2007-02-28 07:40:50 +0000382
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000383 // Now that we know what section the GlovalVariable is going to be emitted
384 // into, update our mappings.
385 // FIXME: We may also need to update this when outputting non-GlobalVariable
386 // GlobalValues such as functions.
387 GVSection[GV] = Sec;
388 GVOffset[GV] = Sec->SectionData.size();
389
390 // Allocate space in the section for the global.
391 for (unsigned i = 0; i < Size; ++i)
Bill Wendling203d3e42007-01-17 22:22:31 +0000392 SecDataOut.outbyte(0);
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000393}
394
Nate Begemaneb883af2006-08-23 21:08:52 +0000395void MachOWriter::EmitGlobal(GlobalVariable *GV) {
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000396 const Type *Ty = GV->getType()->getElementType();
Duncan Sandsca0ed742007-11-05 00:04:43 +0000397 unsigned Size = TM.getTargetData()->getABITypeSize(Ty);
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000398 bool NoInit = !GV->hasInitializer();
Nate Begemand2030e62006-08-26 15:46:34 +0000399
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000400 // If this global has a zero initializer, it is part of the .bss or common
401 // section.
402 if (NoInit || GV->getInitializer()->isNullValue()) {
403 // If this global is part of the common block, add it now. Variables are
404 // part of the common block if they are zero initialized and allowed to be
405 // merged with other symbols.
Dale Johannesenaafce772008-05-14 20:12:51 +0000406 if (NoInit || GV->hasLinkOnceLinkage() || GV->hasWeakLinkage() ||
407 GV->hasCommonLinkage()) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000408 MachOSym ExtOrCommonSym(GV, Mang->getValueName(GV), MachOSym::NO_SECT,TM);
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000409 // For undefined (N_UNDF) external (N_EXT) types, n_value is the size in
410 // bytes of the symbol.
411 ExtOrCommonSym.n_value = Size;
Nate Begemanfec910c2007-02-28 07:40:50 +0000412 SymbolTable.push_back(ExtOrCommonSym);
413 // Remember that we've seen this symbol
414 GVOffset[GV] = Size;
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000415 return;
416 }
417 // Otherwise, this symbol is part of the .bss section.
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000418 MachOSection *BSS = getBSSSection();
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000419 AddSymbolToSection(BSS, GV);
420 return;
421 }
422
423 // Scalar read-only data goes in a literal section if the scalar is 4, 8, or
424 // 16 bytes, or a cstring. Other read only data goes into a regular const
425 // section. Read-write data goes in the data section.
Nate Begeman1257c852007-01-29 21:20:42 +0000426 MachOSection *Sec = GV->isConstant() ? getConstSection(GV->getInitializer()) :
427 getDataSection();
Nate Begemanf8f2c5a2006-08-25 06:36:58 +0000428 AddSymbolToSection(Sec, GV);
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000429 InitMem(GV->getInitializer(), &Sec->SectionData[0], GVOffset[GV],
430 TM.getTargetData(), Sec->Relocations);
Nate Begemaneb883af2006-08-23 21:08:52 +0000431}
432
433
434bool MachOWriter::runOnMachineFunction(MachineFunction &MF) {
435 // Nothing to do here, this is all done through the MCE object.
436 return false;
437}
438
439bool MachOWriter::doInitialization(Module &M) {
440 // Set the magic value, now that we know the pointer size and endianness
441 Header.setMagic(isLittleEndian, is64Bit);
442
443 // Set the file type
444 // FIXME: this only works for object files, we do not support the creation
445 // of dynamic libraries or executables at this time.
446 Header.filetype = MachOHeader::MH_OBJECT;
447
448 Mang = new Mangler(M);
449 return false;
450}
451
452/// doFinalization - Now that the module has been completely processed, emit
453/// the Mach-O file to 'O'.
454bool MachOWriter::doFinalization(Module &M) {
Nate Begemand2030e62006-08-26 15:46:34 +0000455 // FIXME: we don't handle debug info yet, we should probably do that.
456
Nate Begemaneb883af2006-08-23 21:08:52 +0000457 // Okay, the.text section has been completed, build the .data, .bss, and
458 // "common" sections next.
459 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
460 I != E; ++I)
461 EmitGlobal(I);
462
463 // Emit the header and load commands.
464 EmitHeaderAndLoadCommands();
465
Nate Begeman019f8512006-09-10 23:03:44 +0000466 // Emit the various sections and their relocation info.
Nate Begemaneb883af2006-08-23 21:08:52 +0000467 EmitSections();
468
Nate Begemand2030e62006-08-26 15:46:34 +0000469 // Write the symbol table and the string table to the end of the file.
470 O.write((char*)&SymT[0], SymT.size());
471 O.write((char*)&StrT[0], StrT.size());
Nate Begemaneb883af2006-08-23 21:08:52 +0000472
473 // We are done with the abstract symbols.
474 SectionList.clear();
475 SymbolTable.clear();
476 DynamicSymbolTable.clear();
477
478 // Release the name mangler object.
479 delete Mang; Mang = 0;
480 return false;
481}
482
483void MachOWriter::EmitHeaderAndLoadCommands() {
484 // Step #0: Fill in the segment load command size, since we need it to figure
485 // out the rest of the header fields
486 MachOSegment SEG("", is64Bit);
487 SEG.nsects = SectionList.size();
488 SEG.cmdsize = SEG.cmdSize(is64Bit) +
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000489 SEG.nsects * SectionList[0]->cmdSize(is64Bit);
Nate Begemaneb883af2006-08-23 21:08:52 +0000490
491 // Step #1: calculate the number of load commands. We always have at least
492 // one, for the LC_SEGMENT load command, plus two for the normal
493 // and dynamic symbol tables, if there are any symbols.
494 Header.ncmds = SymbolTable.empty() ? 1 : 3;
495
496 // Step #2: calculate the size of the load commands
497 Header.sizeofcmds = SEG.cmdsize;
498 if (!SymbolTable.empty())
499 Header.sizeofcmds += SymTab.cmdsize + DySymTab.cmdsize;
500
501 // Step #3: write the header to the file
502 // Local alias to shortenify coming code.
503 DataBuffer &FH = Header.HeaderData;
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000504 OutputBuffer FHOut(FH, is64Bit, isLittleEndian);
Bill Wendling203d3e42007-01-17 22:22:31 +0000505
506 FHOut.outword(Header.magic);
Bill Wendling2b721822007-01-24 07:13:56 +0000507 FHOut.outword(TM.getMachOWriterInfo()->getCPUType());
508 FHOut.outword(TM.getMachOWriterInfo()->getCPUSubType());
Bill Wendling203d3e42007-01-17 22:22:31 +0000509 FHOut.outword(Header.filetype);
510 FHOut.outword(Header.ncmds);
511 FHOut.outword(Header.sizeofcmds);
512 FHOut.outword(Header.flags);
Nate Begemaneb883af2006-08-23 21:08:52 +0000513 if (is64Bit)
Bill Wendling203d3e42007-01-17 22:22:31 +0000514 FHOut.outword(Header.reserved);
Nate Begemaneb883af2006-08-23 21:08:52 +0000515
516 // Step #4: Finish filling in the segment load command and write it out
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000517 for (std::vector<MachOSection*>::iterator I = SectionList.begin(),
Nate Begemaneb883af2006-08-23 21:08:52 +0000518 E = SectionList.end(); I != E; ++I)
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000519 SEG.filesize += (*I)->size;
520
Nate Begemaneb883af2006-08-23 21:08:52 +0000521 SEG.vmsize = SEG.filesize;
522 SEG.fileoff = Header.cmdSize(is64Bit) + Header.sizeofcmds;
523
Bill Wendling203d3e42007-01-17 22:22:31 +0000524 FHOut.outword(SEG.cmd);
525 FHOut.outword(SEG.cmdsize);
526 FHOut.outstring(SEG.segname, 16);
527 FHOut.outaddr(SEG.vmaddr);
528 FHOut.outaddr(SEG.vmsize);
529 FHOut.outaddr(SEG.fileoff);
530 FHOut.outaddr(SEG.filesize);
531 FHOut.outword(SEG.maxprot);
532 FHOut.outword(SEG.initprot);
533 FHOut.outword(SEG.nsects);
534 FHOut.outword(SEG.flags);
Nate Begemaneb883af2006-08-23 21:08:52 +0000535
Nate Begeman94be2482006-09-08 22:42:09 +0000536 // Step #5: Finish filling in the fields of the MachOSections
537 uint64_t currentAddr = 0;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000538 for (std::vector<MachOSection*>::iterator I = SectionList.begin(),
Nate Begemaneb883af2006-08-23 21:08:52 +0000539 E = SectionList.end(); I != E; ++I) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000540 MachOSection *MOS = *I;
541 MOS->addr = currentAddr;
542 MOS->offset = currentAddr + SEG.fileoff;
Nate Begeman019f8512006-09-10 23:03:44 +0000543
Nate Begeman94be2482006-09-08 22:42:09 +0000544 // FIXME: do we need to do something with alignment here?
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000545 currentAddr += MOS->size;
Nate Begeman94be2482006-09-08 22:42:09 +0000546 }
547
Nate Begemanfec910c2007-02-28 07:40:50 +0000548 // Step #6: Emit the symbol table to temporary buffers, so that we know the
549 // size of the string table when we write the next load command. This also
550 // sorts and assigns indices to each of the symbols, which is necessary for
551 // emitting relocations to externally-defined objects.
552 BufferSymbolAndStringTable();
553
554 // Step #7: Calculate the number of relocations for each section and write out
Nate Begeman94be2482006-09-08 22:42:09 +0000555 // the section commands for each section
556 currentAddr += SEG.fileoff;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000557 for (std::vector<MachOSection*>::iterator I = SectionList.begin(),
Nate Begeman94be2482006-09-08 22:42:09 +0000558 E = SectionList.end(); I != E; ++I) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000559 MachOSection *MOS = *I;
560 // Convert the relocations to target-specific relocations, and fill in the
561 // relocation offset for this section.
562 CalculateRelocations(*MOS);
563 MOS->reloff = MOS->nreloc ? currentAddr : 0;
564 currentAddr += MOS->nreloc * 8;
Nate Begeman94be2482006-09-08 22:42:09 +0000565
566 // write the finalized section command to the output buffer
Bill Wendling203d3e42007-01-17 22:22:31 +0000567 FHOut.outstring(MOS->sectname, 16);
568 FHOut.outstring(MOS->segname, 16);
569 FHOut.outaddr(MOS->addr);
570 FHOut.outaddr(MOS->size);
571 FHOut.outword(MOS->offset);
572 FHOut.outword(MOS->align);
573 FHOut.outword(MOS->reloff);
574 FHOut.outword(MOS->nreloc);
575 FHOut.outword(MOS->flags);
576 FHOut.outword(MOS->reserved1);
577 FHOut.outword(MOS->reserved2);
Nate Begemaneb883af2006-08-23 21:08:52 +0000578 if (is64Bit)
Bill Wendling203d3e42007-01-17 22:22:31 +0000579 FHOut.outword(MOS->reserved3);
Nate Begemaneb883af2006-08-23 21:08:52 +0000580 }
581
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000582 // Step #8: Emit LC_SYMTAB/LC_DYSYMTAB load commands
Nate Begeman94be2482006-09-08 22:42:09 +0000583 SymTab.symoff = currentAddr;
Nate Begemaneb883af2006-08-23 21:08:52 +0000584 SymTab.nsyms = SymbolTable.size();
Nate Begemand2030e62006-08-26 15:46:34 +0000585 SymTab.stroff = SymTab.symoff + SymT.size();
586 SymTab.strsize = StrT.size();
Bill Wendling203d3e42007-01-17 22:22:31 +0000587 FHOut.outword(SymTab.cmd);
588 FHOut.outword(SymTab.cmdsize);
589 FHOut.outword(SymTab.symoff);
590 FHOut.outword(SymTab.nsyms);
591 FHOut.outword(SymTab.stroff);
592 FHOut.outword(SymTab.strsize);
Nate Begemaneb883af2006-08-23 21:08:52 +0000593
594 // FIXME: set DySymTab fields appropriately
Nate Begemand2030e62006-08-26 15:46:34 +0000595 // We should probably just update these in BufferSymbolAndStringTable since
596 // thats where we're partitioning up the different kinds of symbols.
Bill Wendling203d3e42007-01-17 22:22:31 +0000597 FHOut.outword(DySymTab.cmd);
598 FHOut.outword(DySymTab.cmdsize);
599 FHOut.outword(DySymTab.ilocalsym);
600 FHOut.outword(DySymTab.nlocalsym);
601 FHOut.outword(DySymTab.iextdefsym);
602 FHOut.outword(DySymTab.nextdefsym);
603 FHOut.outword(DySymTab.iundefsym);
604 FHOut.outword(DySymTab.nundefsym);
605 FHOut.outword(DySymTab.tocoff);
606 FHOut.outword(DySymTab.ntoc);
607 FHOut.outword(DySymTab.modtaboff);
608 FHOut.outword(DySymTab.nmodtab);
609 FHOut.outword(DySymTab.extrefsymoff);
610 FHOut.outword(DySymTab.nextrefsyms);
611 FHOut.outword(DySymTab.indirectsymoff);
612 FHOut.outword(DySymTab.nindirectsyms);
613 FHOut.outword(DySymTab.extreloff);
614 FHOut.outword(DySymTab.nextrel);
615 FHOut.outword(DySymTab.locreloff);
616 FHOut.outword(DySymTab.nlocrel);
Nate Begemaneb883af2006-08-23 21:08:52 +0000617
618 O.write((char*)&FH[0], FH.size());
619}
620
621/// EmitSections - Now that we have constructed the file header and load
622/// commands, emit the data for each section to the file.
623void MachOWriter::EmitSections() {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000624 for (std::vector<MachOSection*>::iterator I = SectionList.begin(),
Nate Begeman019f8512006-09-10 23:03:44 +0000625 E = SectionList.end(); I != E; ++I)
626 // Emit the contents of each section
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000627 O.write((char*)&(*I)->SectionData[0], (*I)->size);
628 for (std::vector<MachOSection*>::iterator I = SectionList.begin(),
Nate Begeman019f8512006-09-10 23:03:44 +0000629 E = SectionList.end(); I != E; ++I)
630 // Emit the relocation entry data for each section.
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000631 O.write((char*)&(*I)->RelocBuffer[0], (*I)->RelocBuffer.size());
Nate Begemaneb883af2006-08-23 21:08:52 +0000632}
633
Nate Begemand2030e62006-08-26 15:46:34 +0000634/// PartitionByLocal - Simple boolean predicate that returns true if Sym is
635/// a local symbol rather than an external symbol.
636bool MachOWriter::PartitionByLocal(const MachOSym &Sym) {
Nate Begemand2030e62006-08-26 15:46:34 +0000637 return (Sym.n_type & (MachOSym::N_EXT | MachOSym::N_PEXT)) == 0;
Nate Begemaneb883af2006-08-23 21:08:52 +0000638}
639
Nate Begemand2030e62006-08-26 15:46:34 +0000640/// PartitionByDefined - Simple boolean predicate that returns true if Sym is
641/// defined in this module.
642bool MachOWriter::PartitionByDefined(const MachOSym &Sym) {
643 // FIXME: Do N_ABS or N_INDR count as defined?
644 return (Sym.n_type & MachOSym::N_SECT) == MachOSym::N_SECT;
645}
Nate Begemaneb883af2006-08-23 21:08:52 +0000646
Nate Begemand2030e62006-08-26 15:46:34 +0000647/// BufferSymbolAndStringTable - Sort the symbols we encountered and assign them
648/// each a string table index so that they appear in the correct order in the
649/// output file.
650void MachOWriter::BufferSymbolAndStringTable() {
651 // The order of the symbol table is:
652 // 1. local symbols
653 // 2. defined external symbols (sorted by name)
654 // 3. undefined external symbols (sorted by name)
655
Nate Begemanfec910c2007-02-28 07:40:50 +0000656 // Before sorting the symbols, check the PendingGlobals for any undefined
657 // globals that need to be put in the symbol table.
658 for (std::vector<GlobalValue*>::iterator I = PendingGlobals.begin(),
659 E = PendingGlobals.end(); I != E; ++I) {
660 if (GVOffset[*I] == 0 && GVSection[*I] == 0) {
661 MachOSym UndfSym(*I, Mang->getValueName(*I), MachOSym::NO_SECT, TM);
662 SymbolTable.push_back(UndfSym);
663 GVOffset[*I] = -1;
664 }
665 }
666
Nate Begemand2030e62006-08-26 15:46:34 +0000667 // Sort the symbols by name, so that when we partition the symbols by scope
668 // of definition, we won't have to sort by name within each partition.
669 std::sort(SymbolTable.begin(), SymbolTable.end(), MachOSymCmp());
670
671 // Parition the symbol table entries so that all local symbols come before
672 // all symbols with external linkage. { 1 | 2 3 }
673 std::partition(SymbolTable.begin(), SymbolTable.end(), PartitionByLocal);
674
675 // Advance iterator to beginning of external symbols and partition so that
676 // all external symbols defined in this module come before all external
677 // symbols defined elsewhere. { 1 | 2 | 3 }
678 for (std::vector<MachOSym>::iterator I = SymbolTable.begin(),
679 E = SymbolTable.end(); I != E; ++I) {
680 if (!PartitionByLocal(*I)) {
681 std::partition(I, E, PartitionByDefined);
682 break;
683 }
684 }
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000685
686 // Calculate the starting index for each of the local, extern defined, and
687 // undefined symbols, as well as the number of each to put in the LC_DYSYMTAB
688 // load command.
689 for (std::vector<MachOSym>::iterator I = SymbolTable.begin(),
690 E = SymbolTable.end(); I != E; ++I) {
691 if (PartitionByLocal(*I)) {
692 ++DySymTab.nlocalsym;
693 ++DySymTab.iextdefsym;
Nate Begeman6635f352007-01-26 22:39:48 +0000694 ++DySymTab.iundefsym;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000695 } else if (PartitionByDefined(*I)) {
696 ++DySymTab.nextdefsym;
697 ++DySymTab.iundefsym;
698 } else {
699 ++DySymTab.nundefsym;
700 }
701 }
Nate Begemand2030e62006-08-26 15:46:34 +0000702
Nate Begemaneb883af2006-08-23 21:08:52 +0000703 // Write out a leading zero byte when emitting string table, for n_strx == 0
704 // which means an empty string.
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000705 OutputBuffer StrTOut(StrT, is64Bit, isLittleEndian);
Bill Wendling203d3e42007-01-17 22:22:31 +0000706 StrTOut.outbyte(0);
Nate Begemaneb883af2006-08-23 21:08:52 +0000707
Nate Begemand2030e62006-08-26 15:46:34 +0000708 // The order of the string table is:
709 // 1. strings for external symbols
710 // 2. strings for local symbols
711 // Since this is the opposite order from the symbol table, which we have just
712 // sorted, we can walk the symbol table backwards to output the string table.
713 for (std::vector<MachOSym>::reverse_iterator I = SymbolTable.rbegin(),
714 E = SymbolTable.rend(); I != E; ++I) {
715 if (I->GVName == "") {
716 I->n_strx = 0;
717 } else {
718 I->n_strx = StrT.size();
Bill Wendling203d3e42007-01-17 22:22:31 +0000719 StrTOut.outstring(I->GVName, I->GVName.length()+1);
Nate Begemand2030e62006-08-26 15:46:34 +0000720 }
Nate Begemaneb883af2006-08-23 21:08:52 +0000721 }
Nate Begemand2030e62006-08-26 15:46:34 +0000722
Bill Wendlingc904a5b2007-01-18 01:23:11 +0000723 OutputBuffer SymTOut(SymT, is64Bit, isLittleEndian);
Bill Wendling203d3e42007-01-17 22:22:31 +0000724
Nate Begemanfec910c2007-02-28 07:40:50 +0000725 unsigned index = 0;
Nate Begemand2030e62006-08-26 15:46:34 +0000726 for (std::vector<MachOSym>::iterator I = SymbolTable.begin(),
Nate Begemanfec910c2007-02-28 07:40:50 +0000727 E = SymbolTable.end(); I != E; ++I, ++index) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000728 // Add the section base address to the section offset in the n_value field
729 // to calculate the full address.
730 // FIXME: handle symbols where the n_value field is not the address
731 GlobalValue *GV = const_cast<GlobalValue*>(I->GV);
732 if (GV && GVSection[GV])
733 I->n_value += GVSection[GV]->addr;
Nate Begemanfec910c2007-02-28 07:40:50 +0000734 if (GV && (GVOffset[GV] == -1))
735 GVOffset[GV] = index;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000736
Nate Begemand2030e62006-08-26 15:46:34 +0000737 // Emit nlist to buffer
Bill Wendling203d3e42007-01-17 22:22:31 +0000738 SymTOut.outword(I->n_strx);
739 SymTOut.outbyte(I->n_type);
740 SymTOut.outbyte(I->n_sect);
741 SymTOut.outhalf(I->n_desc);
742 SymTOut.outaddr(I->n_value);
Nate Begemand2030e62006-08-26 15:46:34 +0000743 }
Nate Begemaneb883af2006-08-23 21:08:52 +0000744}
Nate Begeman94be2482006-09-08 22:42:09 +0000745
Nate Begeman019f8512006-09-10 23:03:44 +0000746/// CalculateRelocations - For each MachineRelocation in the current section,
747/// calculate the index of the section containing the object to be relocated,
748/// and the offset into that section. From this information, create the
749/// appropriate target-specific MachORelocation type and add buffer it to be
750/// written out after we are finished writing out sections.
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000751void MachOWriter::CalculateRelocations(MachOSection &MOS) {
Nate Begeman019f8512006-09-10 23:03:44 +0000752 for (unsigned i = 0, e = MOS.Relocations.size(); i != e; ++i) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000753 MachineRelocation &MR = MOS.Relocations[i];
754 unsigned TargetSection = MR.getConstantVal();
Nate Begemanaf806382007-03-03 06:18:18 +0000755 unsigned TargetAddr = 0;
756 unsigned TargetIndex = 0;
Nate Begeman6635f352007-01-26 22:39:48 +0000757
758 // This is a scattered relocation entry if it points to a global value with
759 // a non-zero offset.
760 bool Scattered = false;
Nate Begemanfec910c2007-02-28 07:40:50 +0000761 bool Extern = false;
Nate Begemanaf806382007-03-03 06:18:18 +0000762
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000763 // Since we may not have seen the GlobalValue we were interested in yet at
764 // the time we emitted the relocation for it, fix it up now so that it
765 // points to the offset into the correct section.
766 if (MR.isGlobalValue()) {
767 GlobalValue *GV = MR.getGlobalValue();
768 MachOSection *MOSPtr = GVSection[GV];
Nate Begeman6635f352007-01-26 22:39:48 +0000769 intptr_t Offset = GVOffset[GV];
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000770
Nate Begemanfec910c2007-02-28 07:40:50 +0000771 // If we have never seen the global before, it must be to a symbol
772 // defined in another module (N_UNDF).
Nate Begeman1257c852007-01-29 21:20:42 +0000773 if (!MOSPtr) {
Nate Begemanfec910c2007-02-28 07:40:50 +0000774 // FIXME: need to append stub suffix
775 Extern = true;
776 TargetAddr = 0;
777 TargetIndex = GVOffset[GV];
778 } else {
779 Scattered = TargetSection != 0;
780 TargetSection = MOSPtr->Index;
Nate Begemanaf806382007-03-03 06:18:18 +0000781 }
782 MR.setResultPointer((void*)Offset);
783 }
784
785 // If the symbol is locally defined, pass in the address of the section and
786 // the section index to the code which will generate the target relocation.
787 if (!Extern) {
Nate Begemanfec910c2007-02-28 07:40:50 +0000788 MachOSection &To = *SectionList[TargetSection - 1];
789 TargetAddr = To.addr;
790 TargetIndex = To.Index;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000791 }
Bill Wendling886b4122007-02-03 02:39:40 +0000792
793 OutputBuffer RelocOut(MOS.RelocBuffer, is64Bit, isLittleEndian);
794 OutputBuffer SecOut(MOS.SectionData, is64Bit, isLittleEndian);
Nate Begemanfec910c2007-02-28 07:40:50 +0000795
796 MOS.nreloc += GetTargetRelocation(MR, MOS.Index, TargetAddr, TargetIndex,
797 RelocOut, SecOut, Scattered, Extern);
Nate Begeman019f8512006-09-10 23:03:44 +0000798 }
Nate Begeman019f8512006-09-10 23:03:44 +0000799}
800
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000801// InitMem - Write the value of a Constant to the specified memory location,
802// converting it into bytes and relocations.
803void MachOWriter::InitMem(const Constant *C, void *Addr, intptr_t Offset,
804 const TargetData *TD,
805 std::vector<MachineRelocation> &MRs) {
806 typedef std::pair<const Constant*, intptr_t> CPair;
807 std::vector<CPair> WorkList;
808
809 WorkList.push_back(CPair(C,(intptr_t)Addr + Offset));
810
Nate Begeman6635f352007-01-26 22:39:48 +0000811 intptr_t ScatteredOffset = 0;
812
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000813 while (!WorkList.empty()) {
814 const Constant *PC = WorkList.back().first;
815 intptr_t PA = WorkList.back().second;
816 WorkList.pop_back();
817
818 if (isa<UndefValue>(PC)) {
819 continue;
Reid Spencer9d6565a2007-02-15 02:26:10 +0000820 } else if (const ConstantVector *CP = dyn_cast<ConstantVector>(PC)) {
Duncan Sandsca0ed742007-11-05 00:04:43 +0000821 unsigned ElementSize =
822 TD->getABITypeSize(CP->getType()->getElementType());
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000823 for (unsigned i = 0, e = CP->getNumOperands(); i != e; ++i)
824 WorkList.push_back(CPair(CP->getOperand(i), PA+i*ElementSize));
825 } else if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(PC)) {
826 //
827 // FIXME: Handle ConstantExpression. See EE::getConstantValue()
828 //
829 switch (CE->getOpcode()) {
Nate Begeman6635f352007-01-26 22:39:48 +0000830 case Instruction::GetElementPtr: {
Chris Lattner7f6b9d22007-02-10 20:31:59 +0000831 SmallVector<Value*, 8> Indices(CE->op_begin()+1, CE->op_end());
Nate Begeman6635f352007-01-26 22:39:48 +0000832 ScatteredOffset = TD->getIndexedOffset(CE->getOperand(0)->getType(),
Chris Lattner7f6b9d22007-02-10 20:31:59 +0000833 &Indices[0], Indices.size());
Nate Begeman6635f352007-01-26 22:39:48 +0000834 WorkList.push_back(CPair(CE->getOperand(0), PA));
835 break;
836 }
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000837 case Instruction::Add:
838 default:
839 cerr << "ConstantExpr not handled as global var init: " << *CE << "\n";
840 abort();
841 break;
842 }
Dan Gohman399101a2008-05-23 00:17:26 +0000843 } else if (PC->getType()->isSingleValueType()) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000844 unsigned char *ptr = (unsigned char *)PA;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000845 switch (PC->getType()->getTypeID()) {
Reid Spencera54b7cb2007-01-12 07:05:14 +0000846 case Type::IntegerTyID: {
847 unsigned NumBits = cast<IntegerType>(PC->getType())->getBitWidth();
848 uint64_t val = cast<ConstantInt>(PC)->getZExtValue();
849 if (NumBits <= 8)
850 ptr[0] = val;
851 else if (NumBits <= 16) {
852 if (TD->isBigEndian())
853 val = ByteSwap_16(val);
854 ptr[0] = val;
855 ptr[1] = val >> 8;
856 } else if (NumBits <= 32) {
857 if (TD->isBigEndian())
858 val = ByteSwap_32(val);
859 ptr[0] = val;
860 ptr[1] = val >> 8;
861 ptr[2] = val >> 16;
862 ptr[3] = val >> 24;
863 } else if (NumBits <= 64) {
864 if (TD->isBigEndian())
865 val = ByteSwap_64(val);
866 ptr[0] = val;
867 ptr[1] = val >> 8;
868 ptr[2] = val >> 16;
869 ptr[3] = val >> 24;
870 ptr[4] = val >> 32;
871 ptr[5] = val >> 40;
872 ptr[6] = val >> 48;
873 ptr[7] = val >> 56;
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000874 } else {
Reid Spencera54b7cb2007-01-12 07:05:14 +0000875 assert(0 && "Not implemented: bit widths > 64");
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000876 }
Reid Spencera54b7cb2007-01-12 07:05:14 +0000877 break;
878 }
879 case Type::FloatTyID: {
Dale Johannesen9d5f4562007-09-12 03:30:33 +0000880 uint32_t val = cast<ConstantFP>(PC)->getValueAPF().convertToAPInt().
881 getZExtValue();
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000882 if (TD->isBigEndian())
883 val = ByteSwap_32(val);
884 ptr[0] = val;
885 ptr[1] = val >> 8;
886 ptr[2] = val >> 16;
887 ptr[3] = val >> 24;
888 break;
Reid Spencera54b7cb2007-01-12 07:05:14 +0000889 }
890 case Type::DoubleTyID: {
Dale Johannesen9d5f4562007-09-12 03:30:33 +0000891 uint64_t val = cast<ConstantFP>(PC)->getValueAPF().convertToAPInt().
892 getZExtValue();
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000893 if (TD->isBigEndian())
894 val = ByteSwap_64(val);
895 ptr[0] = val;
896 ptr[1] = val >> 8;
897 ptr[2] = val >> 16;
898 ptr[3] = val >> 24;
899 ptr[4] = val >> 32;
900 ptr[5] = val >> 40;
901 ptr[6] = val >> 48;
902 ptr[7] = val >> 56;
903 break;
Reid Spencera54b7cb2007-01-12 07:05:14 +0000904 }
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000905 case Type::PointerTyID:
Nate Begeman6635f352007-01-26 22:39:48 +0000906 if (isa<ConstantPointerNull>(PC))
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000907 memset(ptr, 0, TD->getPointerSize());
Nate Begeman6635f352007-01-26 22:39:48 +0000908 else if (const GlobalValue* GV = dyn_cast<GlobalValue>(PC)) {
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000909 // FIXME: what about function stubs?
910 MRs.push_back(MachineRelocation::getGV(PA-(intptr_t)Addr,
911 MachineRelocation::VANILLA,
Nate Begeman6635f352007-01-26 22:39:48 +0000912 const_cast<GlobalValue*>(GV),
913 ScatteredOffset));
914 ScatteredOffset = 0;
915 } else
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000916 assert(0 && "Unknown constant pointer type!");
917 break;
918 default:
919 cerr << "ERROR: Constant unimp for type: " << *PC->getType() << "\n";
920 abort();
921 }
922 } else if (isa<ConstantAggregateZero>(PC)) {
Duncan Sandsca0ed742007-11-05 00:04:43 +0000923 memset((void*)PA, 0, (size_t)TD->getABITypeSize(PC->getType()));
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000924 } else if (const ConstantArray *CPA = dyn_cast<ConstantArray>(PC)) {
Duncan Sandsca0ed742007-11-05 00:04:43 +0000925 unsigned ElementSize =
926 TD->getABITypeSize(CPA->getType()->getElementType());
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000927 for (unsigned i = 0, e = CPA->getNumOperands(); i != e; ++i)
928 WorkList.push_back(CPair(CPA->getOperand(i), PA+i*ElementSize));
929 } else if (const ConstantStruct *CPS = dyn_cast<ConstantStruct>(PC)) {
930 const StructLayout *SL =
931 TD->getStructLayout(cast<StructType>(CPS->getType()));
932 for (unsigned i = 0, e = CPS->getNumOperands(); i != e; ++i)
Chris Lattnerb1919e22007-02-10 19:55:17 +0000933 WorkList.push_back(CPair(CPS->getOperand(i),
934 PA+SL->getElementOffset(i)));
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000935 } else {
936 cerr << "Bad Type: " << *PC->getType() << "\n";
937 assert(0 && "Unknown constant type to initialize memory with!");
938 }
939 }
940}
941
942MachOSym::MachOSym(const GlobalValue *gv, std::string name, uint8_t sect,
943 TargetMachine &TM) :
944 GV(gv), n_strx(0), n_type(sect == NO_SECT ? N_UNDF : N_SECT), n_sect(sect),
945 n_desc(0), n_value(0) {
946
947 const TargetAsmInfo *TAI = TM.getTargetAsmInfo();
948
Nate Begeman94be2482006-09-08 22:42:09 +0000949 switch (GV->getLinkage()) {
950 default:
951 assert(0 && "Unexpected linkage type!");
952 break;
953 case GlobalValue::WeakLinkage:
954 case GlobalValue::LinkOnceLinkage:
Dale Johannesenaafce772008-05-14 20:12:51 +0000955 case GlobalValue::CommonLinkage:
Nate Begeman94be2482006-09-08 22:42:09 +0000956 assert(!isa<Function>(gv) && "Unexpected linkage type for Function!");
957 case GlobalValue::ExternalLinkage:
Nate Begemanbfaaaa62006-12-11 02:20:45 +0000958 GVName = TAI->getGlobalPrefix() + name;
Nate Begeman6635f352007-01-26 22:39:48 +0000959 n_type |= GV->hasHiddenVisibility() ? N_PEXT : N_EXT;
Nate Begeman94be2482006-09-08 22:42:09 +0000960 break;
961 case GlobalValue::InternalLinkage:
Nate Begeman6635f352007-01-26 22:39:48 +0000962 GVName = TAI->getGlobalPrefix() + name;
Nate Begeman94be2482006-09-08 22:42:09 +0000963 break;
964 }
965}