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Daniel Dunbar897c6762010-06-07 23:20:08 +00001//===--- BackendUtil.cpp - LLVM Backend Utilities -------------------------===//
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 Dunbar9b414d32010-06-15 17:48:49 +000010#include "clang/CodeGen/BackendUtil.h"
Daniel Dunbar897c6762010-06-07 23:20:08 +000011#include "clang/Basic/Diagnostic.h"
12#include "clang/Basic/TargetOptions.h"
Chandler Carruth06057ce2010-06-15 23:19:56 +000013#include "clang/Frontend/CodeGenOptions.h"
Daniel Dunbar897c6762010-06-07 23:20:08 +000014#include "clang/Frontend/FrontendDiagnostic.h"
15#include "llvm/Module.h"
16#include "llvm/PassManager.h"
17#include "llvm/Assembly/PrintModulePass.h"
18#include "llvm/Bitcode/ReaderWriter.h"
19#include "llvm/CodeGen/RegAllocRegistry.h"
20#include "llvm/CodeGen/SchedulerRegistry.h"
21#include "llvm/Support/CommandLine.h"
22#include "llvm/Support/FormattedStream.h"
23#include "llvm/Support/PrettyStackTrace.h"
24#include "llvm/Support/StandardPasses.h"
25#include "llvm/Support/Timer.h"
26#include "llvm/Support/raw_ostream.h"
27#include "llvm/Target/SubtargetFeature.h"
28#include "llvm/Target/TargetData.h"
Chris Lattnerdf619762011-02-18 22:20:38 +000029#include "llvm/Target/TargetLibraryInfo.h"
Daniel Dunbar897c6762010-06-07 23:20:08 +000030#include "llvm/Target/TargetMachine.h"
31#include "llvm/Target/TargetOptions.h"
32#include "llvm/Target/TargetRegistry.h"
33using namespace clang;
34using namespace llvm;
35
36namespace {
37
38class EmitAssemblyHelper {
39 Diagnostic &Diags;
40 const CodeGenOptions &CodeGenOpts;
41 const TargetOptions &TargetOpts;
42 Module *TheModule;
Daniel Dunbar897c6762010-06-07 23:20:08 +000043
44 Timer CodeGenerationTime;
45
Daniel Dunbardb2f2372010-09-17 07:35:16 +000046 mutable PassManager *CodeGenPasses;
Daniel Dunbar897c6762010-06-07 23:20:08 +000047 mutable PassManager *PerModulePasses;
48 mutable FunctionPassManager *PerFunctionPasses;
49
50private:
Daniel Dunbardb2f2372010-09-17 07:35:16 +000051 PassManager *getCodeGenPasses() const {
Daniel Dunbar897c6762010-06-07 23:20:08 +000052 if (!CodeGenPasses) {
Daniel Dunbardb2f2372010-09-17 07:35:16 +000053 CodeGenPasses = new PassManager();
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +000054 CodeGenPasses->add(new TargetData(TheModule));
Daniel Dunbar897c6762010-06-07 23:20:08 +000055 }
56 return CodeGenPasses;
57 }
58
59 PassManager *getPerModulePasses() const {
60 if (!PerModulePasses) {
61 PerModulePasses = new PassManager();
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +000062 PerModulePasses->add(new TargetData(TheModule));
Daniel Dunbar897c6762010-06-07 23:20:08 +000063 }
64 return PerModulePasses;
65 }
66
67 FunctionPassManager *getPerFunctionPasses() const {
68 if (!PerFunctionPasses) {
69 PerFunctionPasses = new FunctionPassManager(TheModule);
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +000070 PerFunctionPasses->add(new TargetData(TheModule));
Daniel Dunbar897c6762010-06-07 23:20:08 +000071 }
72 return PerFunctionPasses;
73 }
74
75 void CreatePasses();
76
77 /// AddEmitPasses - Add passes necessary to emit assembly or LLVM IR.
78 ///
79 /// \return True on success.
80 bool AddEmitPasses(BackendAction Action, formatted_raw_ostream &OS);
81
82public:
83 EmitAssemblyHelper(Diagnostic &_Diags,
84 const CodeGenOptions &CGOpts, const TargetOptions &TOpts,
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +000085 Module *M)
Daniel Dunbar897c6762010-06-07 23:20:08 +000086 : Diags(_Diags), CodeGenOpts(CGOpts), TargetOpts(TOpts),
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +000087 TheModule(M), CodeGenerationTime("Code Generation Time"),
Daniel Dunbar897c6762010-06-07 23:20:08 +000088 CodeGenPasses(0), PerModulePasses(0), PerFunctionPasses(0) {}
89
90 ~EmitAssemblyHelper() {
91 delete CodeGenPasses;
92 delete PerModulePasses;
93 delete PerFunctionPasses;
94 }
95
96 void EmitAssembly(BackendAction Action, raw_ostream *OS);
97};
98
99}
100
101void EmitAssemblyHelper::CreatePasses() {
102 unsigned OptLevel = CodeGenOpts.OptimizationLevel;
103 CodeGenOptions::InliningMethod Inlining = CodeGenOpts.Inlining;
104
105 // Handle disabling of LLVM optimization, where we want to preserve the
106 // internal module before any optimization.
107 if (CodeGenOpts.DisableLLVMOpts) {
108 OptLevel = 0;
109 Inlining = CodeGenOpts.NoInlining;
110 }
Chris Lattnerdf619762011-02-18 22:20:38 +0000111
112 FunctionPassManager *FPM = getPerFunctionPasses();
113
114 FPM->add(new TargetLibraryInfo(Triple(TheModule->getTargetTriple())));
Daniel Dunbar897c6762010-06-07 23:20:08 +0000115
116 // In -O0 if checking is disabled, we don't even have per-function passes.
117 if (CodeGenOpts.VerifyModule)
Chris Lattnerdf619762011-02-18 22:20:38 +0000118 FPM->add(createVerifierPass());
Daniel Dunbar897c6762010-06-07 23:20:08 +0000119
120 // Assume that standard function passes aren't run for -O0.
121 if (OptLevel > 0)
Chris Lattnerdf619762011-02-18 22:20:38 +0000122 llvm::createStandardFunctionPasses(FPM, OptLevel);
Daniel Dunbar897c6762010-06-07 23:20:08 +0000123
124 llvm::Pass *InliningPass = 0;
125 switch (Inlining) {
126 case CodeGenOptions::NoInlining: break;
127 case CodeGenOptions::NormalInlining: {
128 // Set the inline threshold following llvm-gcc.
129 //
130 // FIXME: Derive these constants in a principled fashion.
131 unsigned Threshold = 225;
132 if (CodeGenOpts.OptimizeSize)
133 Threshold = 75;
134 else if (OptLevel > 2)
135 Threshold = 275;
136 InliningPass = createFunctionInliningPass(Threshold);
137 break;
138 }
139 case CodeGenOptions::OnlyAlwaysInlining:
140 InliningPass = createAlwaysInlinerPass(); // Respect always_inline
141 break;
142 }
143
Chris Lattnerdf619762011-02-18 22:20:38 +0000144 PassManager *MPM = getPerModulePasses();
145
146 MPM->add(new TargetLibraryInfo(Triple(TheModule->getTargetTriple())));
147
Daniel Dunbar897c6762010-06-07 23:20:08 +0000148 // For now we always create per module passes.
Chris Lattnerdf619762011-02-18 22:20:38 +0000149 llvm::createStandardModulePasses(MPM, OptLevel,
Daniel Dunbar897c6762010-06-07 23:20:08 +0000150 CodeGenOpts.OptimizeSize,
151 CodeGenOpts.UnitAtATime,
152 CodeGenOpts.UnrollLoops,
153 CodeGenOpts.SimplifyLibCalls,
154 /*HaveExceptions=*/true,
155 InliningPass);
156}
157
158bool EmitAssemblyHelper::AddEmitPasses(BackendAction Action,
159 formatted_raw_ostream &OS) {
160 // Create the TargetMachine for generating code.
161 std::string Error;
162 std::string Triple = TheModule->getTargetTriple();
163 const llvm::Target *TheTarget = TargetRegistry::lookupTarget(Triple, Error);
164 if (!TheTarget) {
165 Diags.Report(diag::err_fe_unable_to_create_target) << Error;
166 return false;
167 }
168
169 // FIXME: Expose these capabilities via actual APIs!!!! Aside from just
170 // being gross, this is also totally broken if we ever care about
171 // concurrency.
Daniel Dunbar1ad66482010-07-01 01:31:45 +0000172
173 // Set frame pointer elimination mode.
174 if (!CodeGenOpts.DisableFPElim) {
175 llvm::NoFramePointerElim = false;
176 llvm::NoFramePointerElimNonLeaf = false;
177 } else if (CodeGenOpts.OmitLeafFramePointer) {
178 llvm::NoFramePointerElim = false;
179 llvm::NoFramePointerElimNonLeaf = true;
180 } else {
181 llvm::NoFramePointerElim = true;
182 llvm::NoFramePointerElimNonLeaf = true;
183 }
184
185 // Set float ABI type.
Daniel Dunbar897c6762010-06-07 23:20:08 +0000186 if (CodeGenOpts.FloatABI == "soft")
187 llvm::FloatABIType = llvm::FloatABI::Soft;
188 else if (CodeGenOpts.FloatABI == "hard")
189 llvm::FloatABIType = llvm::FloatABI::Hard;
190 else {
191 assert(CodeGenOpts.FloatABI.empty() && "Invalid float abi!");
192 llvm::FloatABIType = llvm::FloatABI::Default;
193 }
Daniel Dunbar1ad66482010-07-01 01:31:45 +0000194
Peter Collingbourne4400cb82010-12-04 01:51:33 +0000195 llvm::LessPreciseFPMADOption = CodeGenOpts.LessPreciseFPMAD;
Peter Collingbourne5d729a32010-12-04 01:51:05 +0000196 llvm::NoInfsFPMath = CodeGenOpts.NoInfsFPMath;
197 llvm::NoNaNsFPMath = CodeGenOpts.NoNaNsFPMath;
Daniel Dunbar897c6762010-06-07 23:20:08 +0000198 NoZerosInBSS = CodeGenOpts.NoZeroInitializedInBSS;
Peter Collingbourne5f67e132010-12-04 01:51:14 +0000199 llvm::UnsafeFPMath = CodeGenOpts.UnsafeFPMath;
Daniel Dunbar897c6762010-06-07 23:20:08 +0000200 llvm::UseSoftFloat = CodeGenOpts.SoftFloat;
201 UnwindTablesMandatory = CodeGenOpts.UnwindTables;
202
203 TargetMachine::setAsmVerbosityDefault(CodeGenOpts.AsmVerbose);
204
205 TargetMachine::setFunctionSections(CodeGenOpts.FunctionSections);
206 TargetMachine::setDataSections (CodeGenOpts.DataSections);
207
208 // FIXME: Parse this earlier.
209 if (CodeGenOpts.RelocationModel == "static") {
210 TargetMachine::setRelocationModel(llvm::Reloc::Static);
211 } else if (CodeGenOpts.RelocationModel == "pic") {
212 TargetMachine::setRelocationModel(llvm::Reloc::PIC_);
213 } else {
214 assert(CodeGenOpts.RelocationModel == "dynamic-no-pic" &&
215 "Invalid PIC model!");
216 TargetMachine::setRelocationModel(llvm::Reloc::DynamicNoPIC);
217 }
218 // FIXME: Parse this earlier.
219 if (CodeGenOpts.CodeModel == "small") {
220 TargetMachine::setCodeModel(llvm::CodeModel::Small);
221 } else if (CodeGenOpts.CodeModel == "kernel") {
222 TargetMachine::setCodeModel(llvm::CodeModel::Kernel);
223 } else if (CodeGenOpts.CodeModel == "medium") {
224 TargetMachine::setCodeModel(llvm::CodeModel::Medium);
225 } else if (CodeGenOpts.CodeModel == "large") {
226 TargetMachine::setCodeModel(llvm::CodeModel::Large);
227 } else {
228 assert(CodeGenOpts.CodeModel.empty() && "Invalid code model!");
229 TargetMachine::setCodeModel(llvm::CodeModel::Default);
230 }
231
232 std::vector<const char *> BackendArgs;
233 BackendArgs.push_back("clang"); // Fake program name.
234 if (!CodeGenOpts.DebugPass.empty()) {
235 BackendArgs.push_back("-debug-pass");
236 BackendArgs.push_back(CodeGenOpts.DebugPass.c_str());
237 }
238 if (!CodeGenOpts.LimitFloatPrecision.empty()) {
239 BackendArgs.push_back("-limit-float-precision");
240 BackendArgs.push_back(CodeGenOpts.LimitFloatPrecision.c_str());
241 }
242 if (llvm::TimePassesIsEnabled)
243 BackendArgs.push_back("-time-passes");
244 BackendArgs.push_back(0);
245 llvm::cl::ParseCommandLineOptions(BackendArgs.size() - 1,
246 const_cast<char **>(&BackendArgs[0]));
247
248 std::string FeaturesStr;
249 if (TargetOpts.CPU.size() || TargetOpts.Features.size()) {
250 SubtargetFeatures Features;
251 Features.setCPU(TargetOpts.CPU);
252 for (std::vector<std::string>::const_iterator
253 it = TargetOpts.Features.begin(),
254 ie = TargetOpts.Features.end(); it != ie; ++it)
255 Features.AddFeature(*it);
256 FeaturesStr = Features.getString();
257 }
258 TargetMachine *TM = TheTarget->createTargetMachine(Triple, FeaturesStr);
259
260 if (CodeGenOpts.RelaxAll)
261 TM->setMCRelaxAll(true);
262
263 // Create the code generator passes.
Daniel Dunbardb2f2372010-09-17 07:35:16 +0000264 PassManager *PM = getCodeGenPasses();
Daniel Dunbar897c6762010-06-07 23:20:08 +0000265 CodeGenOpt::Level OptLevel = CodeGenOpt::Default;
266
267 switch (CodeGenOpts.OptimizationLevel) {
268 default: break;
269 case 0: OptLevel = CodeGenOpt::None; break;
270 case 3: OptLevel = CodeGenOpt::Aggressive; break;
271 }
272
273 // Normal mode, emit a .s or .o file by running the code generator. Note,
274 // this also adds codegenerator level optimization passes.
275 TargetMachine::CodeGenFileType CGFT = TargetMachine::CGFT_AssemblyFile;
276 if (Action == Backend_EmitObj)
277 CGFT = TargetMachine::CGFT_ObjectFile;
278 else if (Action == Backend_EmitMCNull)
279 CGFT = TargetMachine::CGFT_Null;
280 else
281 assert(Action == Backend_EmitAssembly && "Invalid action!");
282 if (TM->addPassesToEmitFile(*PM, OS, CGFT, OptLevel,
283 /*DisableVerify=*/!CodeGenOpts.VerifyModule)) {
284 Diags.Report(diag::err_fe_unable_to_interface_with_target);
285 return false;
286 }
287
288 return true;
289}
290
291void EmitAssemblyHelper::EmitAssembly(BackendAction Action, raw_ostream *OS) {
292 TimeRegion Region(llvm::TimePassesIsEnabled ? &CodeGenerationTime : 0);
293 llvm::formatted_raw_ostream FormattedOS;
294
295 CreatePasses();
296 switch (Action) {
297 case Backend_EmitNothing:
298 break;
299
300 case Backend_EmitBC:
301 getPerModulePasses()->add(createBitcodeWriterPass(*OS));
302 break;
303
304 case Backend_EmitLL:
305 FormattedOS.setStream(*OS, formatted_raw_ostream::PRESERVE_STREAM);
306 getPerModulePasses()->add(createPrintModulePass(&FormattedOS));
307 break;
308
309 default:
310 FormattedOS.setStream(*OS, formatted_raw_ostream::PRESERVE_STREAM);
311 if (!AddEmitPasses(Action, FormattedOS))
312 return;
313 }
314
315 // Run passes. For now we do all passes at once, but eventually we
316 // would like to have the option of streaming code generation.
317
318 if (PerFunctionPasses) {
319 PrettyStackTraceString CrashInfo("Per-function optimization");
320
321 PerFunctionPasses->doInitialization();
322 for (Module::iterator I = TheModule->begin(),
323 E = TheModule->end(); I != E; ++I)
324 if (!I->isDeclaration())
325 PerFunctionPasses->run(*I);
326 PerFunctionPasses->doFinalization();
327 }
328
329 if (PerModulePasses) {
330 PrettyStackTraceString CrashInfo("Per-module optimization passes");
331 PerModulePasses->run(*TheModule);
332 }
333
334 if (CodeGenPasses) {
335 PrettyStackTraceString CrashInfo("Code generation");
Daniel Dunbardb2f2372010-09-17 07:35:16 +0000336 CodeGenPasses->run(*TheModule);
Daniel Dunbar897c6762010-06-07 23:20:08 +0000337 }
338}
339
340void clang::EmitBackendOutput(Diagnostic &Diags, const CodeGenOptions &CGOpts,
341 const TargetOptions &TOpts, Module *M,
Daniel Dunbar05a7f3d2010-06-07 23:21:04 +0000342 BackendAction Action, raw_ostream *OS) {
343 EmitAssemblyHelper AsmHelper(Diags, CGOpts, TOpts, M);
Daniel Dunbar897c6762010-06-07 23:20:08 +0000344
345 AsmHelper.EmitAssembly(Action, OS);
346}