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Daniel Dunbar85e44e22008-10-21 23:49:24 +00001//===--- Backend.cpp - Interface to LLVM backend technologies -------------===//
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#include "ASTConsumers.h"
11
12#include "clang/AST/ASTContext.h"
13#include "clang/AST/ASTConsumer.h"
14#include "clang/AST/TranslationUnit.h"
15#include "clang/Basic/TargetInfo.h"
16#include "clang/CodeGen/ModuleBuilder.h"
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000017#include "clang/Driver/CompileOptions.h"
Daniel Dunbar85e44e22008-10-21 23:49:24 +000018#include "llvm/Module.h"
19#include "llvm/ModuleProvider.h"
20#include "llvm/PassManager.h"
21#include "llvm/ADT/OwningPtr.h"
22#include "llvm/Assembly/PrintModulePass.h"
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000023#include "llvm/Analysis/CallGraph.h"
24#include "llvm/Analysis/Verifier.h"
Daniel Dunbar85e44e22008-10-21 23:49:24 +000025#include "llvm/Bitcode/ReaderWriter.h"
26#include "llvm/CodeGen/RegAllocRegistry.h"
27#include "llvm/CodeGen/SchedulerRegistry.h"
28#include "llvm/CodeGen/ScheduleDAG.h"
29#include "llvm/Support/raw_ostream.h"
Daniel Dunbar85e44e22008-10-21 23:49:24 +000030#include "llvm/Support/Compiler.h"
31#include "llvm/System/Path.h"
32#include "llvm/System/Program.h"
33#include "llvm/Target/TargetData.h"
34#include "llvm/Target/TargetMachine.h"
35#include "llvm/Target/TargetMachineRegistry.h"
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000036#include "llvm/Transforms/Scalar.h"
37#include "llvm/Transforms/IPO.h"
Daniel Dunbar85e44e22008-10-21 23:49:24 +000038#include <fstream> // FIXME: Remove
39
40using namespace clang;
41using namespace llvm;
42
43namespace {
44 class VISIBILITY_HIDDEN BackendConsumer : public ASTConsumer {
45 BackendAction Action;
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000046 CompileOptions CompileOpts;
Daniel Dunbar85e44e22008-10-21 23:49:24 +000047 const std::string &InputFile;
48 std::string OutputFile;
49 llvm::OwningPtr<CodeGenerator> Gen;
50
51 llvm::Module *TheModule;
52 llvm::TargetData *TheTargetData;
53 llvm::raw_ostream *AsmOutStream;
54
Nuno Lopes74d92782008-10-24 22:51:00 +000055 mutable llvm::ModuleProvider *ModuleProvider;
Daniel Dunbar85e44e22008-10-21 23:49:24 +000056 mutable FunctionPassManager *CodeGenPasses;
57 mutable PassManager *PerModulePasses;
58 mutable FunctionPassManager *PerFunctionPasses;
59
60 FunctionPassManager *getCodeGenPasses() const;
61 PassManager *getPerModulePasses() const;
62 FunctionPassManager *getPerFunctionPasses() const;
63
64 void CreatePasses();
65
66 /// AddEmitPasses - Add passes necessary to emit assembly or LLVM
67 /// IR.
68 ///
Daniel Dunbar85e44e22008-10-21 23:49:24 +000069 /// \return True on success. On failure \arg Error will be set to
70 /// a user readable error message.
Daniel Dunbar655d5092008-10-23 05:59:43 +000071 bool AddEmitPasses(std::string &Error);
Daniel Dunbar85e44e22008-10-21 23:49:24 +000072
73 void EmitAssembly();
74
75 public:
76 BackendConsumer(BackendAction action, Diagnostic &Diags,
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000077 const LangOptions &Features, const CompileOptions &compopts,
Daniel Dunbar85e44e22008-10-21 23:49:24 +000078 const std::string& infile, const std::string& outfile,
79 bool GenerateDebugInfo) :
80 Action(action),
Daniel Dunbaraa7a0662008-10-23 05:50:47 +000081 CompileOpts(compopts),
Daniel Dunbar85e44e22008-10-21 23:49:24 +000082 InputFile(infile),
83 OutputFile(outfile),
84 Gen(CreateLLVMCodeGen(Diags, Features, InputFile, GenerateDebugInfo)),
Nuno Lopes74d92782008-10-24 22:51:00 +000085 TheModule(0), TheTargetData(0), AsmOutStream(0), ModuleProvider(0),
Daniel Dunbar85e44e22008-10-21 23:49:24 +000086 CodeGenPasses(0), PerModulePasses(0), PerFunctionPasses(0) {}
87
88 ~BackendConsumer() {
89 // FIXME: Move out of destructor.
90 EmitAssembly();
91
92 delete AsmOutStream;
93 delete TheTargetData;
94 delete TheModule;
Nuno Lopes74d92782008-10-24 22:51:00 +000095 delete ModuleProvider;
Daniel Dunbar85e44e22008-10-21 23:49:24 +000096 delete CodeGenPasses;
97 delete PerModulePasses;
98 delete PerFunctionPasses;
99 }
100
101 virtual void InitializeTU(TranslationUnit& TU) {
102 Gen->InitializeTU(TU);
103
104 TheModule = Gen->GetModule();
105 TheTargetData =
106 new llvm::TargetData(TU.getContext().Target.getTargetDescription());
107 }
108
109 virtual void HandleTopLevelDecl(Decl *D) {
110 Gen->HandleTopLevelDecl(D);
111 }
112
113 virtual void HandleTranslationUnit(TranslationUnit& TU) {
114 Gen->HandleTranslationUnit(TU);
115 }
116
117 virtual void HandleTagDeclDefinition(TagDecl *D) {
118 Gen->HandleTagDeclDefinition(D);
119 }
120 };
121}
122
123FunctionPassManager *BackendConsumer::getCodeGenPasses() const {
124 if (!CodeGenPasses) {
Nuno Lopes74d92782008-10-24 22:51:00 +0000125 ModuleProvider = new ExistingModuleProvider(TheModule);
126 CodeGenPasses = new FunctionPassManager(ModuleProvider);
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000127 CodeGenPasses->add(new TargetData(*TheTargetData));
128 }
129
130 return CodeGenPasses;
131}
132
133PassManager *BackendConsumer::getPerModulePasses() const {
134 if (!PerModulePasses) {
135 PerModulePasses = new PassManager();
136 PerModulePasses->add(new TargetData(*TheTargetData));
137 }
138
139 return PerModulePasses;
140}
141
142FunctionPassManager *BackendConsumer::getPerFunctionPasses() const {
143 if (!PerFunctionPasses) {
144 PerFunctionPasses =
145 new FunctionPassManager(new ExistingModuleProvider(TheModule));
146 PerFunctionPasses->add(new TargetData(*TheTargetData));
147 }
148
149 return PerFunctionPasses;
150}
151
Daniel Dunbar655d5092008-10-23 05:59:43 +0000152bool BackendConsumer::AddEmitPasses(std::string &Error) {
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000153 if (OutputFile == "-" || (InputFile == "-" && OutputFile.empty())) {
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000154 AsmOutStream = new raw_stdout_ostream();
155 sys::Program::ChangeStdoutToBinary();
156 } else {
157 if (OutputFile.empty()) {
158 llvm::sys::Path Path(InputFile);
159 Path.eraseSuffix();
160 if (Action == Backend_EmitBC) {
161 Path.appendSuffix("bc");
162 } else if (Action == Backend_EmitLL) {
163 Path.appendSuffix("ll");
164 } else {
165 Path.appendSuffix("s");
166 }
167 OutputFile = Path.toString();
168 }
169
Daniel Dunbare5dbb072008-10-22 17:40:45 +0000170 // FIXME: Should be binary.
171 AsmOutStream = new raw_fd_ostream(OutputFile.c_str(), Error);
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000172 if (!Error.empty())
173 return false;
174 }
175
176 if (Action == Backend_EmitBC) {
Daniel Dunbare5dbb072008-10-22 17:40:45 +0000177 getPerModulePasses()->add(createBitcodeWriterPass(*AsmOutStream));
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000178 } else if (Action == Backend_EmitLL) {
Daniel Dunbar092a7442008-10-22 03:28:13 +0000179 getPerModulePasses()->add(createPrintModulePass(AsmOutStream));
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000180 } else {
Daniel Dunbar655d5092008-10-23 05:59:43 +0000181 bool Fast = CompileOpts.OptimizationLevel == 0;
182
Daniel Dunbaraed93f22008-10-22 18:29:51 +0000183 // Create the TargetMachine for generating code.
184 const TargetMachineRegistry::entry *TME =
185 TargetMachineRegistry::getClosestStaticTargetForModule(*TheModule, Error);
186 if (!TME) {
187 Error = std::string("Unable to get target machine: ") + Error;
188 return false;
189 }
190
191 // FIXME: Support features?
192 std::string FeatureStr;
193 TargetMachine *TM = TME->CtorFn(*TheModule, FeatureStr);
194
195 // Set register scheduler & allocation policy.
196 RegisterScheduler::setDefault(createDefaultScheduler);
197 RegisterRegAlloc::setDefault(Fast ? createLocalRegisterAllocator :
198 createLinearScanRegisterAllocator);
199
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000200 // From llvm-gcc:
201 // If there are passes we have to run on the entire module, we do codegen
202 // as a separate "pass" after that happens.
203 // FIXME: This is disabled right now until bugs can be worked out. Reenable
204 // this for fast -O0 compiles!
205 FunctionPassManager *PM = getCodeGenPasses();
206
207 // Normal mode, emit a .s file by running the code generator.
208 // Note, this also adds codegenerator level optimization passes.
209 switch (TM->addPassesToEmitFile(*PM, *AsmOutStream,
210 TargetMachine::AssemblyFile, Fast)) {
211 default:
212 case FileModel::Error:
213 Error = "Unable to interface with target machine!\n";
214 return false;
215 case FileModel::AsmFile:
216 break;
217 }
218
219 if (TM->addPassesToEmitFileFinish(*CodeGenPasses, 0, Fast)) {
220 Error = "Unable to interface with target machine!\n";
221 return false;
222 }
223 }
224
225 return true;
226}
227
228void BackendConsumer::CreatePasses() {
Daniel Dunbaraa7a0662008-10-23 05:50:47 +0000229 // In -O0 if checking is disabled, we don't even have per-function passes.
230 if (CompileOpts.VerifyModule)
231 getPerFunctionPasses()->add(createVerifierPass());
232
233 if (CompileOpts.OptimizationLevel > 0) {
234 FunctionPassManager *PM = getPerFunctionPasses();
235 PM->add(createCFGSimplificationPass());
236 if (CompileOpts.OptimizationLevel == 1)
237 PM->add(createPromoteMemoryToRegisterPass());
238 else
239 PM->add(createScalarReplAggregatesPass());
240 PM->add(createInstructionCombiningPass());
241 }
242
243 // For now we always create per module passes.
244 PassManager *PM = getPerModulePasses();
245 if (CompileOpts.OptimizationLevel > 0) {
246 if (CompileOpts.UnitAtATime)
247 PM->add(createRaiseAllocationsPass()); // call %malloc -> malloc inst
248 PM->add(createCFGSimplificationPass()); // Clean up disgusting code
249 PM->add(createPromoteMemoryToRegisterPass()); // Kill useless allocas
250 if (CompileOpts.UnitAtATime) {
251 PM->add(createGlobalOptimizerPass()); // Optimize out global vars
252 PM->add(createGlobalDCEPass()); // Remove unused fns and globs
253 PM->add(createIPConstantPropagationPass()); // IP Constant Propagation
254 PM->add(createDeadArgEliminationPass()); // Dead argument elimination
255 }
256 PM->add(createInstructionCombiningPass()); // Clean up after IPCP & DAE
257 PM->add(createCFGSimplificationPass()); // Clean up after IPCP & DAE
258 if (CompileOpts.UnitAtATime) {
259 PM->add(createPruneEHPass()); // Remove dead EH info
260 PM->add(createAddReadAttrsPass()); // Set readonly/readnone attrs
261 }
262 if (CompileOpts.InlineFunctions)
263 PM->add(createFunctionInliningPass()); // Inline small functions
264 else
265 PM->add(createAlwaysInlinerPass()); // Respect always_inline
266 if (CompileOpts.OptimizationLevel > 2)
267 PM->add(createArgumentPromotionPass()); // Scalarize uninlined fn args
268 if (CompileOpts.SimplifyLibCalls)
269 PM->add(createSimplifyLibCallsPass()); // Library Call Optimizations
270 PM->add(createInstructionCombiningPass()); // Cleanup for scalarrepl.
271 PM->add(createJumpThreadingPass()); // Thread jumps.
272 PM->add(createCFGSimplificationPass()); // Merge & remove BBs
273 PM->add(createScalarReplAggregatesPass()); // Break up aggregate allocas
274 PM->add(createInstructionCombiningPass()); // Combine silly seq's
275 PM->add(createCondPropagationPass()); // Propagate conditionals
276 PM->add(createTailCallEliminationPass()); // Eliminate tail calls
277 PM->add(createCFGSimplificationPass()); // Merge & remove BBs
278 PM->add(createReassociatePass()); // Reassociate expressions
279 PM->add(createLoopRotatePass()); // Rotate Loop
280 PM->add(createLICMPass()); // Hoist loop invariants
281 PM->add(createLoopUnswitchPass(CompileOpts.OptimizeSize ? true : false));
282 PM->add(createLoopIndexSplitPass()); // Split loop index
283 PM->add(createInstructionCombiningPass());
284 PM->add(createIndVarSimplifyPass()); // Canonicalize indvars
285 PM->add(createLoopDeletionPass()); // Delete dead loops
286 if (CompileOpts.UnrollLoops)
287 PM->add(createLoopUnrollPass()); // Unroll small loops
288 PM->add(createInstructionCombiningPass()); // Clean up after the unroller
289 PM->add(createGVNPass()); // Remove redundancies
290 PM->add(createMemCpyOptPass()); // Remove memcpy / form memset
291 PM->add(createSCCPPass()); // Constant prop with SCCP
292
293 // Run instcombine after redundancy elimination to exploit opportunities
294 // opened up by them.
295 PM->add(createInstructionCombiningPass());
296 PM->add(createCondPropagationPass()); // Propagate conditionals
297 PM->add(createDeadStoreEliminationPass()); // Delete dead stores
298 PM->add(createAggressiveDCEPass()); // Delete dead instructions
299 PM->add(createCFGSimplificationPass()); // Merge & remove BBs
300
301 if (CompileOpts.UnitAtATime) {
302 PM->add(createStripDeadPrototypesPass()); // Get rid of dead prototypes
303 PM->add(createDeadTypeEliminationPass()); // Eliminate dead types
304 }
305
306 if (CompileOpts.OptimizationLevel > 1 && CompileOpts.UnitAtATime)
307 PM->add(createConstantMergePass()); // Merge dup global constants
308 } else {
309 PerModulePasses->add(createAlwaysInlinerPass());
310 }
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000311}
312
313/// EmitAssembly - Handle interaction with LLVM backend to generate
314/// actual machine code.
315void BackendConsumer::EmitAssembly() {
316 // Silently ignore if we weren't initialized for some reason.
317 if (!TheModule || !TheTargetData)
318 return;
319
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000320 // Make sure IR generation is happy with the module.
321 // FIXME: Release this.
322 Module *M = Gen->ReleaseModule();
323 if (!M) {
324 TheModule = 0;
325 return;
326 }
327
328 assert(TheModule == M && "Unexpected module change during IR generation");
329
330 CreatePasses();
331
332 std::string Error;
Daniel Dunbar655d5092008-10-23 05:59:43 +0000333 if (!AddEmitPasses(Error)) {
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000334 // FIXME: Don't fail this way.
335 llvm::cerr << "ERROR: " << Error << "\n";
336 ::exit(1);
337 }
338
339 // Run passes. For now we do all passes at once, but eventually we
340 // would like to have the option of streaming code generation.
341
342 if (PerFunctionPasses) {
343 PerFunctionPasses->doInitialization();
344 for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
345 if (!I->isDeclaration())
346 PerFunctionPasses->run(*I);
347 PerFunctionPasses->doFinalization();
348 }
349
350 if (PerModulePasses)
351 PerModulePasses->run(*M);
352
353 if (CodeGenPasses) {
354 CodeGenPasses->doInitialization();
355 for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
356 if (!I->isDeclaration())
357 CodeGenPasses->run(*I);
358 CodeGenPasses->doFinalization();
359 }
360}
361
362ASTConsumer *clang::CreateBackendConsumer(BackendAction Action,
363 Diagnostic &Diags,
364 const LangOptions &Features,
Daniel Dunbaraa7a0662008-10-23 05:50:47 +0000365 const CompileOptions &CompileOpts,
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000366 const std::string& InFile,
367 const std::string& OutFile,
368 bool GenerateDebugInfo) {
Daniel Dunbaraa7a0662008-10-23 05:50:47 +0000369 return new BackendConsumer(Action, Diags, Features, CompileOpts,
370 InFile, OutFile, GenerateDebugInfo);
Daniel Dunbar85e44e22008-10-21 23:49:24 +0000371}