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Nick Kledzik77595fc2008-02-26 20:26:43 +00001//===-LTOCodeGenerator.cpp - LLVM Link Time Optimizer ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the Link Time Optimization library. This library is
11// intended to be used by linker to optimize code at link time.
12//
13//===----------------------------------------------------------------------===//
14
Nick Kledzikef194ed2008-02-27 22:25:36 +000015#include "LTOModule.h"
16#include "LTOCodeGenerator.h"
17
18
Nick Kledzik77595fc2008-02-26 20:26:43 +000019#include "llvm/Module.h"
20#include "llvm/PassManager.h"
21#include "llvm/Linker.h"
22#include "llvm/Constants.h"
23#include "llvm/DerivedTypes.h"
24#include "llvm/ModuleProvider.h"
25#include "llvm/Bitcode/ReaderWriter.h"
Nick Kledzik77595fc2008-02-26 20:26:43 +000026#include "llvm/Support/SystemUtils.h"
27#include "llvm/Support/Mangler.h"
28#include "llvm/Support/MemoryBuffer.h"
Nick Kledzik77595fc2008-02-26 20:26:43 +000029#include "llvm/System/Signals.h"
30#include "llvm/Analysis/Passes.h"
31#include "llvm/Analysis/LoopPass.h"
32#include "llvm/Analysis/Verifier.h"
Nick Kledzikef194ed2008-02-27 22:25:36 +000033#include "llvm/Analysis/LoadValueNumbering.h"
Nick Kledzik77595fc2008-02-26 20:26:43 +000034#include "llvm/CodeGen/FileWriters.h"
Nick Kledzik77595fc2008-02-26 20:26:43 +000035#include "llvm/Target/TargetOptions.h"
36#include "llvm/Target/TargetData.h"
37#include "llvm/Target/TargetMachine.h"
38#include "llvm/Target/TargetMachineRegistry.h"
39#include "llvm/Target/TargetAsmInfo.h"
40#include "llvm/Transforms/IPO.h"
41#include "llvm/Transforms/Scalar.h"
Nick Kledzik77595fc2008-02-26 20:26:43 +000042#include "llvm/Config/config.h"
43
Nick Kledzik77595fc2008-02-26 20:26:43 +000044
45#include <fstream>
46#include <unistd.h>
47#include <stdlib.h>
48#include <fcntl.h>
49
50
51using namespace llvm;
52
53
54
55const char* LTOCodeGenerator::getVersionString()
56{
57#ifdef LLVM_VERSION_INFO
58 return PACKAGE_NAME " version " PACKAGE_VERSION ", " LLVM_VERSION_INFO;
59#else
60 return PACKAGE_NAME " version " PACKAGE_VERSION;
61#endif
62}
63
64
65LTOCodeGenerator::LTOCodeGenerator()
66 : _linker("LinkTimeOptimizer", "ld-temp.o"), _target(NULL),
67 _emitDwarfDebugInfo(false), _scopeRestrictionsDone(false),
Nick Kledzikef194ed2008-02-27 22:25:36 +000068 _codeModel(LTO_CODEGEN_PIC_MODEL_DYNAMIC),
69 _nativeObjectFile(NULL)
Nick Kledzik77595fc2008-02-26 20:26:43 +000070{
71
72}
73
74LTOCodeGenerator::~LTOCodeGenerator()
75{
Nick Kledzikef194ed2008-02-27 22:25:36 +000076 delete _target;
77 delete _nativeObjectFile;
Nick Kledzik77595fc2008-02-26 20:26:43 +000078}
79
80
81
82bool LTOCodeGenerator::addModule(LTOModule* mod, std::string& errMsg)
83{
84 return _linker.LinkInModule(mod->getLLVVMModule(), &errMsg);
85}
86
87
88bool LTOCodeGenerator::setDebugInfo(lto_debug_model debug, std::string& errMsg)
89{
90 switch (debug) {
91 case LTO_DEBUG_MODEL_NONE:
92 _emitDwarfDebugInfo = false;
93 return false;
94
95 case LTO_DEBUG_MODEL_DWARF:
96 _emitDwarfDebugInfo = true;
97 return false;
98 }
99 errMsg = "unknown debug format";
100 return true;
101}
102
103
104bool LTOCodeGenerator::setCodePICModel(lto_codegen_model model,
105 std::string& errMsg)
106{
107 switch (model) {
108 case LTO_CODEGEN_PIC_MODEL_STATIC:
109 case LTO_CODEGEN_PIC_MODEL_DYNAMIC:
110 case LTO_CODEGEN_PIC_MODEL_DYNAMIC_NO_PIC:
111 _codeModel = model;
112 return false;
113 }
114 errMsg = "unknown pic model";
115 return true;
116}
117
118
119void LTOCodeGenerator::addMustPreserveSymbol(const char* sym)
120{
121 _mustPreserveSymbols[sym] = 1;
122}
123
124
125bool LTOCodeGenerator::writeMergedModules(const char* path, std::string& errMsg)
126{
127 if ( this->determineTarget(errMsg) )
128 return true;
129
130 // mark which symbols can not be internalized
131 this->applyScopeRestrictions();
132
133 // create output file
134 std::ofstream out(path, std::ios_base::out|std::ios::trunc|std::ios::binary);
135 if ( out.fail() ) {
136 errMsg = "could not open bitcode file for writing: ";
137 errMsg += path;
138 return true;
139 }
140
141 // write bitcode to it
142 WriteBitcodeToFile(_linker.getModule(), out);
143 if ( out.fail() ) {
144 errMsg = "could not write bitcode file: ";
145 errMsg += path;
146 return true;
147 }
148
149 return false;
150}
151
152
Nick Kledzikef194ed2008-02-27 22:25:36 +0000153const void* LTOCodeGenerator::compile(size_t* length, std::string& errMsg)
Nick Kledzik77595fc2008-02-26 20:26:43 +0000154{
Nick Kledzikef194ed2008-02-27 22:25:36 +0000155 // make unique temp .s file to put generated assembly code
Nick Kledzik77595fc2008-02-26 20:26:43 +0000156 sys::Path uniqueAsmPath("lto-llvm.s");
157 if ( uniqueAsmPath.createTemporaryFileOnDisk(true, &errMsg) )
158 return NULL;
159 sys::RemoveFileOnSignal(uniqueAsmPath);
160
161 // generate assembly code
162 std::ofstream asmFile(uniqueAsmPath.c_str());
163 bool genResult = this->generateAssemblyCode(asmFile, errMsg);
164 asmFile.close();
165 if ( genResult ) {
166 if ( uniqueAsmPath.exists() )
167 uniqueAsmPath.eraseFromDisk();
168 return NULL;
169 }
170
Nick Kledzikef194ed2008-02-27 22:25:36 +0000171 // make unique temp .o file to put generated object file
Nick Kledzik77595fc2008-02-26 20:26:43 +0000172 sys::PathWithStatus uniqueObjPath("lto-llvm.o");
173 if ( uniqueObjPath.createTemporaryFileOnDisk(true, &errMsg) ) {
174 if ( uniqueAsmPath.exists() )
175 uniqueAsmPath.eraseFromDisk();
176 return NULL;
177 }
178 sys::RemoveFileOnSignal(uniqueObjPath);
179
180 // assemble the assembly code
Nick Kledzikef194ed2008-02-27 22:25:36 +0000181 const std::string& uniqueObjStr = uniqueObjPath.toString();
Nick Kledzik77595fc2008-02-26 20:26:43 +0000182 bool asmResult = this->assemble(uniqueAsmPath.toString(),
Nick Kledzikef194ed2008-02-27 22:25:36 +0000183 uniqueObjStr, errMsg);
Nick Kledzik77595fc2008-02-26 20:26:43 +0000184 if ( !asmResult ) {
Nick Kledzikef194ed2008-02-27 22:25:36 +0000185 // remove old buffer if compile() called twice
186 delete _nativeObjectFile;
187
Nick Kledzik77595fc2008-02-26 20:26:43 +0000188 // read .o file into memory buffer
Chris Lattner038112a2008-04-01 18:04:03 +0000189 _nativeObjectFile = MemoryBuffer::getFile(uniqueObjStr.c_str(),&errMsg);
Nick Kledzik77595fc2008-02-26 20:26:43 +0000190 }
Nick Kledzikef194ed2008-02-27 22:25:36 +0000191
192 // remove temp files
Nick Kledzik77595fc2008-02-26 20:26:43 +0000193 uniqueAsmPath.eraseFromDisk();
194 uniqueObjPath.eraseFromDisk();
Nick Kledzikef194ed2008-02-27 22:25:36 +0000195
196 // return buffer, unless error
197 if ( _nativeObjectFile == NULL )
198 return NULL;
199 *length = _nativeObjectFile->getBufferSize();
200 return _nativeObjectFile->getBufferStart();
Nick Kledzik77595fc2008-02-26 20:26:43 +0000201}
202
203
204bool LTOCodeGenerator::assemble(const std::string& asmPath,
205 const std::string& objPath, std::string& errMsg)
206{
207 // find compiler driver
208 const sys::Path gcc = sys::Program::FindProgramByName("gcc");
209 if ( gcc.isEmpty() ) {
210 errMsg = "can't locate gcc";
211 return true;
212 }
213
214 // build argument list
215 std::vector<const char*> args;
216 std::string targetTriple = _linker.getModule()->getTargetTriple();
217 args.push_back(gcc.c_str());
218 if ( targetTriple.find("darwin") != targetTriple.size() ) {
219 if (strncmp(targetTriple.c_str(), "i686-apple-", 11) == 0) {
220 args.push_back("-arch");
221 args.push_back("i386");
222 }
223 else if (strncmp(targetTriple.c_str(), "x86_64-apple-", 13) == 0) {
224 args.push_back("-arch");
225 args.push_back("x86_64");
226 }
227 else if (strncmp(targetTriple.c_str(), "powerpc-apple-", 14) == 0) {
228 args.push_back("-arch");
229 args.push_back("ppc");
230 }
231 else if (strncmp(targetTriple.c_str(), "powerpc64-apple-", 16) == 0) {
232 args.push_back("-arch");
233 args.push_back("ppc64");
234 }
235 }
236 args.push_back("-c");
237 args.push_back("-x");
238 args.push_back("assembler");
239 args.push_back("-o");
240 args.push_back(objPath.c_str());
241 args.push_back(asmPath.c_str());
242 args.push_back(0);
243
244 // invoke assembler
245 if ( sys::Program::ExecuteAndWait(gcc, &args[0], 0, 0, 0, 0, &errMsg) ) {
246 errMsg = "error in assembly";
247 return true;
248 }
249 return false; // success
250}
251
252
253
254bool LTOCodeGenerator::determineTarget(std::string& errMsg)
255{
256 if ( _target == NULL ) {
257 // create target machine from info for merged modules
258 Module* mergedModule = _linker.getModule();
259 const TargetMachineRegistry::entry* march =
260 TargetMachineRegistry::getClosestStaticTargetForModule(
261 *mergedModule, errMsg);
262 if ( march == NULL )
263 return true;
264 std::string features;
265 _target = march->CtorFn(*mergedModule, features);
266 }
267 return false;
268}
269
270void LTOCodeGenerator::applyScopeRestrictions()
271{
272 if ( !_scopeRestrictionsDone ) {
273 Module* mergedModule = _linker.getModule();
274
275 // Start off with a verification pass.
276 PassManager passes;
277 passes.add(createVerifierPass());
278
279 // mark which symbols can not be internalized
280 if ( !_mustPreserveSymbols.empty() ) {
281 Mangler mangler(*mergedModule,
282 _target->getTargetAsmInfo()->getGlobalPrefix());
283 std::vector<const char*> mustPreserveList;
284 for (Module::iterator f = mergedModule->begin(),
285 e = mergedModule->end(); f != e; ++f) {
286 if ( !f->isDeclaration()
287 && _mustPreserveSymbols.count(mangler.getValueName(f)) )
288 mustPreserveList.push_back(::strdup(f->getName().c_str()));
289 }
290 for (Module::global_iterator v = mergedModule->global_begin(),
291 e = mergedModule->global_end(); v != e; ++v) {
292 if ( !v->isDeclaration()
293 && _mustPreserveSymbols.count(mangler.getValueName(v)) )
294 mustPreserveList.push_back(::strdup(v->getName().c_str()));
295 }
296 passes.add(createInternalizePass(mustPreserveList));
297 }
298 // apply scope restrictions
299 passes.run(*mergedModule);
300
301 _scopeRestrictionsDone = true;
302 }
303}
304
305
306/// Optimize merged modules using various IPO passes
307bool LTOCodeGenerator::generateAssemblyCode(std::ostream& out, std::string& errMsg)
308{
309 if ( this->determineTarget(errMsg) )
310 return true;
311
312 // mark which symbols can not be internalized
313 this->applyScopeRestrictions();
314
315 Module* mergedModule = _linker.getModule();
316
317 // If target supports exception handling then enable it now.
318 if ( _target->getTargetAsmInfo()->doesSupportExceptionHandling() )
319 llvm::ExceptionHandling = true;
320
321 // set codegen model
322 switch( _codeModel ) {
323 case LTO_CODEGEN_PIC_MODEL_STATIC:
324 _target->setRelocationModel(Reloc::Static);
325 break;
326 case LTO_CODEGEN_PIC_MODEL_DYNAMIC:
327 _target->setRelocationModel(Reloc::PIC_);
328 break;
329 case LTO_CODEGEN_PIC_MODEL_DYNAMIC_NO_PIC:
330 _target->setRelocationModel(Reloc::DynamicNoPIC);
331 break;
332 }
333
334 // Instantiate the pass manager to organize the passes.
335 PassManager passes;
336
337 // Start off with a verification pass.
338 passes.add(createVerifierPass());
339
340 // Add an appropriate TargetData instance for this module...
341 passes.add(new TargetData(*_target->getTargetData()));
342
343 // Now that we internalized some globals, see if we can hack on them!
344 passes.add(createGlobalOptimizerPass());
345
346 // Linking modules together can lead to duplicated global constants, only
347 // keep one copy of each constant...
348 passes.add(createConstantMergePass());
349
350 // If the -s command line option was specified, strip the symbols out of the
351 // resulting program to make it smaller. -s is a GLD option that we are
352 // supporting.
Devang Patele2784702008-04-03 21:30:06 +0000353 passes.add(createStripSymbolsPass());
Nick Kledzik77595fc2008-02-26 20:26:43 +0000354
355 // Propagate constants at call sites into the functions they call.
356 passes.add(createIPConstantPropagationPass());
357
358 // Remove unused arguments from functions...
359 passes.add(createDeadArgEliminationPass());
360
361 passes.add(createFunctionInliningPass()); // Inline small functions
362
363 passes.add(createPruneEHPass()); // Remove dead EH info
364
365 passes.add(createGlobalDCEPass()); // Remove dead functions
366
367 // If we didn't decide to inline a function, check to see if we can
368 // transform it to pass arguments by value instead of by reference.
369 passes.add(createArgumentPromotionPass());
370
371 // The IPO passes may leave cruft around. Clean up after them.
372 passes.add(createInstructionCombiningPass());
Chris Lattner1d402812008-04-21 04:31:40 +0000373 passes.add(createJumpThreadingPass()); // Thread jumps.
Nick Kledzik77595fc2008-02-26 20:26:43 +0000374 passes.add(createScalarReplAggregatesPass()); // Break up allocas
375
376 // Run a few AA driven optimizations here and now, to cleanup the code.
377 passes.add(createGlobalsModRefPass()); // IP alias analysis
378
379 passes.add(createLICMPass()); // Hoist loop invariants
380 passes.add(createLoadValueNumberingPass()); // GVN for load instrs
381 passes.add(createGCSEPass()); // Remove common subexprs
382 passes.add(createDeadStoreEliminationPass()); // Nuke dead stores
383
384 // Cleanup and simplify the code after the scalar optimizations.
385 passes.add(createInstructionCombiningPass());
386
Chris Lattner1d402812008-04-21 04:31:40 +0000387 passes.add(createJumpThreadingPass()); // Thread jumps.
388
Nick Kledzik77595fc2008-02-26 20:26:43 +0000389 // Delete basic blocks, which optimization passes may have killed...
390 passes.add(createCFGSimplificationPass());
391
392 // Now that we have optimized the program, discard unreachable functions...
393 passes.add(createGlobalDCEPass());
394
395 // Make sure everything is still good.
396 passes.add(createVerifierPass());
397
398 FunctionPassManager* codeGenPasses =
399 new FunctionPassManager(new ExistingModuleProvider(mergedModule));
400
401 codeGenPasses->add(new TargetData(*_target->getTargetData()));
402
403 MachineCodeEmitter* mce = NULL;
404
405 switch (_target->addPassesToEmitFile(*codeGenPasses, out,
406 TargetMachine::AssemblyFile, true)) {
407 case FileModel::MachOFile:
408 mce = AddMachOWriter(*codeGenPasses, out, *_target);
409 break;
410 case FileModel::ElfFile:
411 mce = AddELFWriter(*codeGenPasses, out, *_target);
412 break;
413 case FileModel::AsmFile:
414 break;
415 case FileModel::Error:
416 case FileModel::None:
417 errMsg = "target file type not supported";
418 return true;
419 }
420
421 if (_target->addPassesToEmitFileFinish(*codeGenPasses, mce, true)) {
422 errMsg = "target does not support generation of this file type";
423 return true;
424 }
425
426 // Run our queue of passes all at once now, efficiently.
427 passes.run(*mergedModule);
428
429 // Run the code generator, and write assembly file
430 codeGenPasses->doInitialization();
431 for (Module::iterator it = mergedModule->begin(),
432 e = mergedModule->end(); it != e; ++it) {
433 if (!it->isDeclaration())
434 codeGenPasses->run(*it);
435 }
436 codeGenPasses->doFinalization();
437
438 return false; // success
439}
440
441
442