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Logan1f028c02010-11-27 01:02:48 +08001/*
2 * Copyright 2010, The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Loganc4395232010-11-27 18:54:17 +080017#include "Compiler.h"
Logan1f028c02010-11-27 01:02:48 +080018
Logan35849002011-01-15 07:30:43 +080019#include "Config.h"
20
Logan Chiend2a5f302011-07-19 20:32:25 +080021#if USE_OLD_JIT
22#include "OldJIT/ContextManager.h"
23#endif
24
Logan Chien4885cf82011-07-20 10:18:05 +080025#if USE_DISASSEMBLER
26#include "Disassembler/Disassembler.h"
27#endif
28
Logan4dcd6792011-02-28 05:12:00 +080029#include "DebugHelper.h"
Shih-wei Liao6c0c7b02011-05-21 21:47:14 -070030#include "FileHandle.h"
Logan Chienda5e0c32011-06-13 03:47:21 +080031#include "Runtime.h"
Logan2a6dc822011-01-06 04:05:20 +080032#include "ScriptCompiled.h"
Logan75cc8a52011-01-07 06:06:52 +080033#include "Sha1Helper.h"
Loganeb3d12b2010-12-16 06:20:18 +080034
Shih-wei Liao320b5492011-06-20 22:53:33 -070035#if USE_MCJIT
Logan Chienda5e0c32011-06-13 03:47:21 +080036#include "librsloader.h"
Shih-wei Liao320b5492011-06-20 22:53:33 -070037#endif
Logan Chienda5e0c32011-06-13 03:47:21 +080038
Logandf23afa2010-11-27 11:04:54 +080039#include "llvm/ADT/StringRef.h"
Logan1f028c02010-11-27 01:02:48 +080040
Logandf23afa2010-11-27 11:04:54 +080041#include "llvm/Analysis/Passes.h"
Logan1f028c02010-11-27 01:02:48 +080042
Logan1f028c02010-11-27 01:02:48 +080043#include "llvm/Bitcode/ReaderWriter.h"
44
Logan1f028c02010-11-27 01:02:48 +080045#include "llvm/CodeGen/Passes.h"
Logan1f028c02010-11-27 01:02:48 +080046#include "llvm/CodeGen/RegAllocRegistry.h"
47#include "llvm/CodeGen/SchedulerRegistry.h"
Logan1f028c02010-11-27 01:02:48 +080048
Logan Chien9347e0b2011-07-07 19:51:47 +080049#include "llvm/MC/SubtargetFeature.h"
50
Logandf23afa2010-11-27 11:04:54 +080051#include "llvm/Transforms/IPO.h"
52#include "llvm/Transforms/Scalar.h"
53
Logandf23afa2010-11-27 11:04:54 +080054#include "llvm/Target/TargetData.h"
55#include "llvm/Target/TargetMachine.h"
56#include "llvm/Target/TargetOptions.h"
57#include "llvm/Target/TargetRegistry.h"
58#include "llvm/Target/TargetSelect.h"
59
60#include "llvm/Support/ErrorHandling.h"
Shih-wei Liao898c5a92011-05-18 07:02:39 -070061#include "llvm/Support/FormattedStream.h"
Logandf23afa2010-11-27 11:04:54 +080062#include "llvm/Support/MemoryBuffer.h"
63
Shih-wei Liao90cd3d12011-06-20 15:43:34 -070064#include "llvm/Type.h"
Logandf23afa2010-11-27 11:04:54 +080065#include "llvm/GlobalValue.h"
66#include "llvm/Linker.h"
67#include "llvm/LLVMContext.h"
68#include "llvm/Metadata.h"
69#include "llvm/Module.h"
70#include "llvm/PassManager.h"
71#include "llvm/Value.h"
72
73#include <errno.h>
74#include <sys/file.h>
Logandf23afa2010-11-27 11:04:54 +080075#include <sys/stat.h>
76#include <sys/types.h>
77#include <unistd.h>
78
Logan75cc8a52011-01-07 06:06:52 +080079#include <string.h>
Logan8b77a772010-12-21 09:11:01 +080080
Logan Chien7890d432011-08-03 14:55:17 +080081#include <algorithm>
82#include <iterator>
Logandf23afa2010-11-27 11:04:54 +080083#include <string>
84#include <vector>
Logan1f028c02010-11-27 01:02:48 +080085
Logan1f028c02010-11-27 01:02:48 +080086namespace bcc {
87
88//////////////////////////////////////////////////////////////////////////////
89// BCC Compiler Static Variables
90//////////////////////////////////////////////////////////////////////////////
91
92bool Compiler::GlobalInitialized = false;
93
Logan1f028c02010-11-27 01:02:48 +080094// Code generation optimization level for the compiler
95llvm::CodeGenOpt::Level Compiler::CodeGenOptLevel;
96
97std::string Compiler::Triple;
98
99std::string Compiler::CPU;
100
101std::vector<std::string> Compiler::Features;
102
Stephen Hines071288a2011-01-27 14:38:26 -0800103// Name of metadata node where pragma info resides (should be synced with
Logan1f028c02010-11-27 01:02:48 +0800104// slang.cpp)
105const llvm::StringRef Compiler::PragmaMetadataName = "#pragma";
106
Stephen Hines071288a2011-01-27 14:38:26 -0800107// Name of metadata node where exported variable names reside (should be
Logan1f028c02010-11-27 01:02:48 +0800108// synced with slang_rs_metadata.h)
109const llvm::StringRef Compiler::ExportVarMetadataName = "#rs_export_var";
110
Stephen Hines071288a2011-01-27 14:38:26 -0800111// Name of metadata node where exported function names reside (should be
Logan1f028c02010-11-27 01:02:48 +0800112// synced with slang_rs_metadata.h)
113const llvm::StringRef Compiler::ExportFuncMetadataName = "#rs_export_func";
114
Stephen Hines071288a2011-01-27 14:38:26 -0800115// Name of metadata node where RS object slot info resides (should be
116// synced with slang_rs_metadata.h)
117const llvm::StringRef Compiler::ObjectSlotMetadataName = "#rs_object_slots";
Logan1f028c02010-11-27 01:02:48 +0800118
119//////////////////////////////////////////////////////////////////////////////
120// Compiler
121//////////////////////////////////////////////////////////////////////////////
122
123void Compiler::GlobalInitialization() {
124 if (GlobalInitialized)
125 return;
Logan1f028c02010-11-27 01:02:48 +0800126 // if (!llvm::llvm_is_multithreaded())
127 // llvm::llvm_start_multithreaded();
128
129 // Set Triple, CPU and Features here
130 Triple = TARGET_TRIPLE_STRING;
131
Logan Chien3bb77072011-09-17 16:53:53 +0800132#if defined(DEFAULT_ARM_CODEGEN)
133
Stephen Hinesa12d2f32011-09-07 15:30:06 -0700134#if defined(ARCH_ARM_HAVE_VFP)
135 Features.push_back("+vfp3");
136#if !defined(ARCH_ARM_HAVE_VFP_D32)
137 Features.push_back("+d16");
138#endif
139#endif
140
Logan Chien3bb77072011-09-17 16:53:53 +0800141 // NOTE: Currently, we have to turn off the support for NEON explicitly.
142 // Since the ARMCodeEmitter.cpp is not ready for JITing NEON
143 // instructions.
144
145 // FIXME: Re-enable NEON when ARMCodeEmitter supports NEON.
146#define USE_ARM_NEON 0
147#if USE_ARM_NEON
Joseph Wen51001b82011-06-23 18:56:45 -0700148 Features.push_back("+neon");
149 Features.push_back("+neonfp");
150#else
Joseph Wen51001b82011-06-23 18:56:45 -0700151 Features.push_back("-neon");
Logan4fe966f2011-02-27 08:26:40 +0800152 Features.push_back("-neonfp");
Logan Chien3bb77072011-09-17 16:53:53 +0800153#endif // USE_ARM_NEON
154#endif // DEFAULT_ARM_CODEGEN
Joseph Wen51001b82011-06-23 18:56:45 -0700155
Logan Chien3bb77072011-09-17 16:53:53 +0800156#if defined(PROVIDE_ARM_CODEGEN)
Shih-wei Liaoc2e23c32011-07-19 05:20:58 -0700157 LLVMInitializeARMMCAsmInfo();
Logan Chien2558ae42011-08-04 13:21:41 +0800158 LLVMInitializeARMMCCodeGenInfo();
159 LLVMInitializeARMMCSubtargetInfo();
Logan Chienb9ef9ab2011-07-20 11:11:06 +0800160 LLVMInitializeARMAsmPrinter();
Logan1f028c02010-11-27 01:02:48 +0800161 LLVMInitializeARMTargetInfo();
162 LLVMInitializeARMTarget();
Logan1f028c02010-11-27 01:02:48 +0800163#endif
164
Logan Chien3bb77072011-09-17 16:53:53 +0800165#if defined(PROVIDE_X86_CODEGEN)
Shih-wei Liaoc2e23c32011-07-19 05:20:58 -0700166 LLVMInitializeX86MCAsmInfo();
Logan Chien2558ae42011-08-04 13:21:41 +0800167 LLVMInitializeX86MCCodeGenInfo();
168 LLVMInitializeX86MCSubtargetInfo();
Logan Chienb9ef9ab2011-07-20 11:11:06 +0800169 LLVMInitializeX86AsmPrinter();
Logan1f028c02010-11-27 01:02:48 +0800170 LLVMInitializeX86TargetInfo();
171 LLVMInitializeX86Target();
Logan1f028c02010-11-27 01:02:48 +0800172#endif
Logan Chien9347e0b2011-07-07 19:51:47 +0800173
174#if USE_DISASSEMBLER
175 InitializeDisassembler();
Logan1f028c02010-11-27 01:02:48 +0800176#endif
177
178 // -O0: llvm::CodeGenOpt::None
179 // -O1: llvm::CodeGenOpt::Less
180 // -O2: llvm::CodeGenOpt::Default
181 // -O3: llvm::CodeGenOpt::Aggressive
Shih-wei Liao72f67a62010-12-14 13:36:15 -0800182 CodeGenOptLevel = llvm::CodeGenOpt::Aggressive;
Logan1f028c02010-11-27 01:02:48 +0800183
184 // Below are the global settings to LLVM
185
186 // Disable frame pointer elimination optimization
187 llvm::NoFramePointerElim = false;
188
189 // Use hardfloat ABI
190 //
191 // TODO(all): Need to detect the CPU capability and decide whether to use
192 // softfp. To use softfp, change following 2 lines to
193 //
194 // llvm::FloatABIType = llvm::FloatABI::Soft;
195 // llvm::UseSoftFloat = true;
196 //
Shih-wei Liaoe728cb82010-12-15 15:20:47 -0800197 llvm::FloatABIType = llvm::FloatABI::Soft;
Logan1f028c02010-11-27 01:02:48 +0800198 llvm::UseSoftFloat = false;
199
Logan Chien3bb77072011-09-17 16:53:53 +0800200#if defined(DEFAULT_X86_64_CODEGEN)
Logan1f028c02010-11-27 01:02:48 +0800201 // Data address in X86_64 architecture may reside in a far-away place
202 llvm::TargetMachine::setCodeModel(llvm::CodeModel::Medium);
203#else
204 // This is set for the linker (specify how large of the virtual addresses
205 // we can access for all unknown symbols.)
206 llvm::TargetMachine::setCodeModel(llvm::CodeModel::Small);
207#endif
208
209 // Register the scheduler
210 llvm::RegisterScheduler::setDefault(llvm::createDefaultScheduler);
211
212 // Register allocation policy:
213 // createFastRegisterAllocator: fast but bad quality
214 // createLinearScanRegisterAllocator: not so fast but good quality
215 llvm::RegisterRegAlloc::setDefault
216 ((CodeGenOptLevel == llvm::CodeGenOpt::None) ?
217 llvm::createFastRegisterAllocator :
218 llvm::createLinearScanRegisterAllocator);
219
Logan35849002011-01-15 07:30:43 +0800220#if USE_CACHE
Ying Wang26fea102011-07-05 15:12:25 -0700221 // Read in SHA1 checksum of libbcc and libRS.
222 readSHA1(sha1LibBCC_SHA1, sizeof(sha1LibBCC_SHA1), pathLibBCC_SHA1);
Joseph Wen76919072011-07-07 23:06:15 -0700223
224 calcFileSHA1(sha1LibRS, pathLibRS);
Logan35849002011-01-15 07:30:43 +0800225#endif
Logan75cc8a52011-01-07 06:06:52 +0800226
Logan1f028c02010-11-27 01:02:48 +0800227 GlobalInitialized = true;
228}
229
230
231void Compiler::LLVMErrorHandler(void *UserData, const std::string &Message) {
232 std::string *Error = static_cast<std::string*>(UserData);
233 Error->assign(Message);
234 LOGE("%s", Message.c_str());
235 exit(1);
236}
237
238
Logan Chienda5e0c32011-06-13 03:47:21 +0800239#if USE_OLD_JIT
Logan1f028c02010-11-27 01:02:48 +0800240CodeMemoryManager *Compiler::createCodeMemoryManager() {
241 mCodeMemMgr.reset(new CodeMemoryManager());
242 return mCodeMemMgr.get();
243}
Logan Chienda5e0c32011-06-13 03:47:21 +0800244#endif
Logan1f028c02010-11-27 01:02:48 +0800245
246
Logan Chienda5e0c32011-06-13 03:47:21 +0800247#if USE_OLD_JIT
Logan1f028c02010-11-27 01:02:48 +0800248CodeEmitter *Compiler::createCodeEmitter() {
Logan7dcaac92011-01-06 04:26:23 +0800249 mCodeEmitter.reset(new CodeEmitter(mpResult, mCodeMemMgr.get()));
Logan1f028c02010-11-27 01:02:48 +0800250 return mCodeEmitter.get();
251}
Logan Chienda5e0c32011-06-13 03:47:21 +0800252#endif
Logan1f028c02010-11-27 01:02:48 +0800253
254
Logan2a6dc822011-01-06 04:05:20 +0800255Compiler::Compiler(ScriptCompiled *result)
256 : mpResult(result),
Logan Chienda5e0c32011-06-13 03:47:21 +0800257#if USE_MCJIT
258 mRSExecutable(NULL),
259#endif
Logan1f028c02010-11-27 01:02:48 +0800260 mpSymbolLookupFn(NULL),
261 mpSymbolLookupContext(NULL),
262 mContext(NULL),
263 mModule(NULL),
264 mHasLinked(false) /* Turn off linker */ {
265 llvm::remove_fatal_error_handler();
266 llvm::install_fatal_error_handler(LLVMErrorHandler, &mError);
267 mContext = new llvm::LLVMContext();
268 return;
269}
270
Logan1f028c02010-11-27 01:02:48 +0800271
Logan474cbd22011-01-31 01:47:44 +0800272llvm::Module *Compiler::parseBitcodeFile(llvm::MemoryBuffer *MEM) {
273 llvm::Module *result = llvm::ParseBitcodeFile(MEM, *mContext, &mError);
Logan1f028c02010-11-27 01:02:48 +0800274
Logan474cbd22011-01-31 01:47:44 +0800275 if (!result) {
276 LOGE("Unable to ParseBitcodeFile: %s\n", mError.c_str());
277 return NULL;
Logan1f028c02010-11-27 01:02:48 +0800278 }
279
Logan474cbd22011-01-31 01:47:44 +0800280 return result;
Logan1f028c02010-11-27 01:02:48 +0800281}
282
283
Logan474cbd22011-01-31 01:47:44 +0800284int Compiler::linkModule(llvm::Module *moduleWith) {
285 if (llvm::Linker::LinkModules(mModule, moduleWith, &mError) != 0) {
Logan1f028c02010-11-27 01:02:48 +0800286 return hasError();
287 }
288
Logan1f028c02010-11-27 01:02:48 +0800289 // Everything for linking should be settled down here with no error occurs
290 mHasLinked = true;
291 return hasError();
292}
293
294
Joseph Wen34c600a2011-07-25 17:59:17 -0700295int Compiler::compile(bool compileOnly) {
Logan Chienda5e0c32011-06-13 03:47:21 +0800296 llvm::Target const *Target = NULL;
Logan1f028c02010-11-27 01:02:48 +0800297 llvm::TargetData *TD = NULL;
Logan1f028c02010-11-27 01:02:48 +0800298 llvm::TargetMachine *TM = NULL;
Logan Chienda5e0c32011-06-13 03:47:21 +0800299
Logan1f028c02010-11-27 01:02:48 +0800300 std::string FeaturesStr;
301
Logan Chienda5e0c32011-06-13 03:47:21 +0800302 llvm::NamedMDNode const *PragmaMetadata;
303 llvm::NamedMDNode const *ExportVarMetadata;
304 llvm::NamedMDNode const *ExportFuncMetadata;
305 llvm::NamedMDNode const *ObjectSlotMetadata;
Logan1f028c02010-11-27 01:02:48 +0800306
Logan1f028c02010-11-27 01:02:48 +0800307 if (mModule == NULL) // No module was loaded
308 return 0;
309
310 // Create TargetMachine
311 Target = llvm::TargetRegistry::lookupTarget(Triple, mError);
312 if (hasError())
313 goto on_bcc_compile_error;
314
315 if (!CPU.empty() || !Features.empty()) {
316 llvm::SubtargetFeatures F;
Logana4994f52010-11-27 14:06:02 +0800317
318 for (std::vector<std::string>::const_iterator
319 I = Features.begin(), E = Features.end(); I != E; I++) {
Logan1f028c02010-11-27 01:02:48 +0800320 F.AddFeature(*I);
Logana4994f52010-11-27 14:06:02 +0800321 }
322
Logan1f028c02010-11-27 01:02:48 +0800323 FeaturesStr = F.getString();
324 }
325
Logan Chiend3fe15c2011-07-20 22:08:39 +0800326 TM = Target->createTargetMachine(Triple, CPU, FeaturesStr,
327 llvm::Reloc::Static);
Logan1f028c02010-11-27 01:02:48 +0800328 if (TM == NULL) {
329 setError("Failed to create target machine implementation for the"
330 " specified triple '" + Triple + "'");
331 goto on_bcc_compile_error;
332 }
333
Logan Chienda5e0c32011-06-13 03:47:21 +0800334 // Get target data from Module
335 TD = new llvm::TargetData(mModule);
336
337 // Load named metadata
338 ExportVarMetadata = mModule->getNamedMetadata(ExportVarMetadataName);
339 ExportFuncMetadata = mModule->getNamedMetadata(ExportFuncMetadataName);
340 PragmaMetadata = mModule->getNamedMetadata(PragmaMetadataName);
341 ObjectSlotMetadata = mModule->getNamedMetadata(ObjectSlotMetadataName);
342
343 // Perform link-time optimization if we have multiple modules
344 if (mHasLinked) {
345 runLTO(new llvm::TargetData(*TD), ExportVarMetadata, ExportFuncMetadata);
346 }
347
348 // Perform code generation
349#if USE_OLD_JIT
350 if (runCodeGen(new llvm::TargetData(*TD), TM,
351 ExportVarMetadata, ExportFuncMetadata) != 0) {
352 goto on_bcc_compile_error;
353 }
354#endif
355
356#if USE_MCJIT
Joseph Wen34c600a2011-07-25 17:59:17 -0700357 if (runMCCodeGen(new llvm::TargetData(*TD), TM) != 0) {
Logan Chienda5e0c32011-06-13 03:47:21 +0800358 goto on_bcc_compile_error;
359 }
Logan Chien9347e0b2011-07-07 19:51:47 +0800360
Joseph Wen34c600a2011-07-25 17:59:17 -0700361 if (compileOnly)
362 return 0;
363
364 // Load the ELF Object
365 mRSExecutable =
366 rsloaderCreateExec((unsigned char *)&*mEmittedELFExecutable.begin(),
367 mEmittedELFExecutable.size(),
368 &resolveSymbolAdapter, this);
369
370 if (!mRSExecutable) {
371 setError("Fail to load emitted ELF relocatable file");
372 goto on_bcc_compile_error;
373 }
374
375 if (ExportVarMetadata) {
376 ScriptCompiled::ExportVarList &varList = mpResult->mExportVars;
377 std::vector<std::string> &varNameList = mpResult->mExportVarsName;
378
379 for (int i = 0, e = ExportVarMetadata->getNumOperands(); i != e; i++) {
380 llvm::MDNode *ExportVar = ExportVarMetadata->getOperand(i);
381 if (ExportVar != NULL && ExportVar->getNumOperands() > 1) {
382 llvm::Value *ExportVarNameMDS = ExportVar->getOperand(0);
383 if (ExportVarNameMDS->getValueID() == llvm::Value::MDStringVal) {
384 llvm::StringRef ExportVarName =
385 static_cast<llvm::MDString*>(ExportVarNameMDS)->getString();
386
387 varList.push_back(
388 rsloaderGetSymbolAddress(mRSExecutable,
389 ExportVarName.str().c_str()));
390 varNameList.push_back(ExportVarName.str());
391#if DEBUG_MCJIT_REFLECT
392 LOGD("runMCCodeGen(): Exported Var: %s @ %p\n", ExportVarName.str().c_str(),
393 varList.back());
394#endif
395 continue;
396 }
397 }
398
399 varList.push_back(NULL);
400 }
401 }
402
403 if (ExportFuncMetadata) {
404 ScriptCompiled::ExportFuncList &funcList = mpResult->mExportFuncs;
405 std::vector<std::string> &funcNameList = mpResult->mExportFuncsName;
406
407 for (int i = 0, e = ExportFuncMetadata->getNumOperands(); i != e; i++) {
408 llvm::MDNode *ExportFunc = ExportFuncMetadata->getOperand(i);
409 if (ExportFunc != NULL && ExportFunc->getNumOperands() > 0) {
410 llvm::Value *ExportFuncNameMDS = ExportFunc->getOperand(0);
411 if (ExportFuncNameMDS->getValueID() == llvm::Value::MDStringVal) {
412 llvm::StringRef ExportFuncName =
413 static_cast<llvm::MDString*>(ExportFuncNameMDS)->getString();
414
415 funcList.push_back(
416 rsloaderGetSymbolAddress(mRSExecutable,
417 ExportFuncName.str().c_str()));
418 funcNameList.push_back(ExportFuncName.str());
419#if DEBUG_MCJIT_RELECT
420 LOGD("runMCCodeGen(): Exported Func: %s @ %p\n", ExportFuncName.str().c_str(),
421 funcList.back());
422#endif
423 }
424 }
425 }
426 }
427
Logan Chien4885cf82011-07-20 10:18:05 +0800428#if DEBUG_MCJIT_DISASSEMBLER
Shih-wei Liao90cd3d12011-06-20 15:43:34 -0700429 {
Shih-wei Liaod3c551f2011-07-01 04:28:27 -0700430 // Get MC codegen emitted function name list
431 size_t func_list_size = rsloaderGetFuncCount(mRSExecutable);
432 std::vector<char const *> func_list(func_list_size, NULL);
433 rsloaderGetFuncNameList(mRSExecutable, func_list_size, &*func_list.begin());
Shih-wei Liao320b5492011-06-20 22:53:33 -0700434
Shih-wei Liaod3c551f2011-07-01 04:28:27 -0700435 // Disassemble each function
Shih-wei Liao90cd3d12011-06-20 15:43:34 -0700436 for (size_t i = 0; i < func_list_size; ++i) {
437 void *func = rsloaderGetSymbolAddress(mRSExecutable, func_list[i]);
438 if (func) {
439 size_t size = rsloaderGetSymbolSize(mRSExecutable, func_list[i]);
Logan Chien9347e0b2011-07-07 19:51:47 +0800440 Disassemble(DEBUG_MCJIT_DISASSEMBLER_FILE,
441 Target, TM, func_list[i], (unsigned char const *)func, size);
Shih-wei Liao90cd3d12011-06-20 15:43:34 -0700442 }
443 }
444 }
445#endif
Logan Chienda5e0c32011-06-13 03:47:21 +0800446#endif
447
448 // Read pragma information from the metadata node of the module.
449 if (PragmaMetadata) {
450 ScriptCompiled::PragmaList &pragmaList = mpResult->mPragmas;
451
452 for (int i = 0, e = PragmaMetadata->getNumOperands(); i != e; i++) {
453 llvm::MDNode *Pragma = PragmaMetadata->getOperand(i);
454 if (Pragma != NULL &&
455 Pragma->getNumOperands() == 2 /* should have exactly 2 operands */) {
456 llvm::Value *PragmaNameMDS = Pragma->getOperand(0);
457 llvm::Value *PragmaValueMDS = Pragma->getOperand(1);
458
459 if ((PragmaNameMDS->getValueID() == llvm::Value::MDStringVal) &&
460 (PragmaValueMDS->getValueID() == llvm::Value::MDStringVal)) {
461 llvm::StringRef PragmaName =
462 static_cast<llvm::MDString*>(PragmaNameMDS)->getString();
463 llvm::StringRef PragmaValue =
464 static_cast<llvm::MDString*>(PragmaValueMDS)->getString();
465
466 pragmaList.push_back(
467 std::make_pair(std::string(PragmaName.data(),
468 PragmaName.size()),
469 std::string(PragmaValue.data(),
470 PragmaValue.size())));
Shih-wei Liao9f73de02011-07-01 04:40:24 -0700471#if DEBUG_BCC_REFLECT
472 LOGD("compile(): Pragma: %s -> %s\n",
473 pragmaList.back().first.c_str(),
474 pragmaList.back().second.c_str());
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700475#endif
Logan Chienda5e0c32011-06-13 03:47:21 +0800476 }
477 }
478 }
Logan Chienda5e0c32011-06-13 03:47:21 +0800479 }
480
481 if (ObjectSlotMetadata) {
482 ScriptCompiled::ObjectSlotList &objectSlotList = mpResult->mObjectSlots;
483
484 for (int i = 0, e = ObjectSlotMetadata->getNumOperands(); i != e; i++) {
485 llvm::MDNode *ObjectSlot = ObjectSlotMetadata->getOperand(i);
486 if (ObjectSlot != NULL &&
487 ObjectSlot->getNumOperands() == 1) {
488 llvm::Value *SlotMDS = ObjectSlot->getOperand(0);
489 if (SlotMDS->getValueID() == llvm::Value::MDStringVal) {
490 llvm::StringRef Slot =
491 static_cast<llvm::MDString*>(SlotMDS)->getString();
492 uint32_t USlot = 0;
493 if (Slot.getAsInteger(10, USlot)) {
494 setError("Non-integer object slot value '" + Slot.str() + "'");
495 goto on_bcc_compile_error;
496 }
497 objectSlotList.push_back(USlot);
Shih-wei Liao9f73de02011-07-01 04:40:24 -0700498#if DEBUG_BCC_REFLECT
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700499 LOGD("compile(): RefCount Slot: %s @ %u\n", Slot.str().c_str(), USlot);
500#endif
Logan Chienda5e0c32011-06-13 03:47:21 +0800501 }
502 }
503 }
Logan Chienda5e0c32011-06-13 03:47:21 +0800504 }
505
506on_bcc_compile_error:
507 // LOGE("on_bcc_compiler_error");
508 if (TD) {
509 delete TD;
510 }
511
512 if (TM) {
513 delete TM;
514 }
515
516 if (mError.empty()) {
517 return 0;
518 }
519
520 // LOGE(getErrorMessage());
521 return 1;
522}
523
524
525#if USE_OLD_JIT
526int Compiler::runCodeGen(llvm::TargetData *TD, llvm::TargetMachine *TM,
527 llvm::NamedMDNode const *ExportVarMetadata,
528 llvm::NamedMDNode const *ExportFuncMetadata) {
Logan1f028c02010-11-27 01:02:48 +0800529 // Create memory manager for creation of code emitter later.
530 if (!mCodeMemMgr.get() && !createCodeMemoryManager()) {
531 setError("Failed to startup memory management for further compilation");
Logan Chienda5e0c32011-06-13 03:47:21 +0800532 return 1;
Logan1f028c02010-11-27 01:02:48 +0800533 }
Logan02286cb2011-01-07 00:30:47 +0800534
535 mpResult->mContext = (char *) (mCodeMemMgr.get()->getCodeMemBase());
Logan1f028c02010-11-27 01:02:48 +0800536
537 // Create code emitter
538 if (!mCodeEmitter.get()) {
539 if (!createCodeEmitter()) {
Logan Chienda5e0c32011-06-13 03:47:21 +0800540 setError("Failed to create machine code emitter for compilation");
541 return 1;
Logan1f028c02010-11-27 01:02:48 +0800542 }
543 } else {
544 // Reuse the code emitter
545 mCodeEmitter->reset();
546 }
547
548 mCodeEmitter->setTargetMachine(*TM);
549 mCodeEmitter->registerSymbolCallback(mpSymbolLookupFn,
550 mpSymbolLookupContext);
551
Logan1f028c02010-11-27 01:02:48 +0800552 // Create code-gen pass to run the code emitter
Logan Chienda5e0c32011-06-13 03:47:21 +0800553 llvm::OwningPtr<llvm::FunctionPassManager> CodeGenPasses(
554 new llvm::FunctionPassManager(mModule));
Logan1f028c02010-11-27 01:02:48 +0800555
Logan Chienda5e0c32011-06-13 03:47:21 +0800556 // Add TargetData to code generation pass manager
557 CodeGenPasses->add(TD);
558
559 // Add code emit passes
Logan1f028c02010-11-27 01:02:48 +0800560 if (TM->addPassesToEmitMachineCode(*CodeGenPasses,
561 *mCodeEmitter,
562 CodeGenOptLevel)) {
Logan Chienda5e0c32011-06-13 03:47:21 +0800563 setError("The machine code emission is not supported on '" + Triple + "'");
564 return 1;
Logan1f028c02010-11-27 01:02:48 +0800565 }
566
Logan Chienda5e0c32011-06-13 03:47:21 +0800567 // Run the code emitter on every non-declaration function in the module
Logan1f028c02010-11-27 01:02:48 +0800568 CodeGenPasses->doInitialization();
Logan Chienda5e0c32011-06-13 03:47:21 +0800569 for (llvm::Module::iterator
570 I = mModule->begin(), E = mModule->end(); I != E; I++) {
Logan1f028c02010-11-27 01:02:48 +0800571 if (!I->isDeclaration()) {
572 CodeGenPasses->run(*I);
573 }
574 }
575
576 CodeGenPasses->doFinalization();
Logan Chienb0ceca22011-06-12 13:34:49 +0800577
Logan1f028c02010-11-27 01:02:48 +0800578 // Copy the global address mapping from code emitter and remapping
579 if (ExportVarMetadata) {
Logan2a6dc822011-01-06 04:05:20 +0800580 ScriptCompiled::ExportVarList &varList = mpResult->mExportVars;
581
Logan1f028c02010-11-27 01:02:48 +0800582 for (int i = 0, e = ExportVarMetadata->getNumOperands(); i != e; i++) {
583 llvm::MDNode *ExportVar = ExportVarMetadata->getOperand(i);
584 if (ExportVar != NULL && ExportVar->getNumOperands() > 1) {
585 llvm::Value *ExportVarNameMDS = ExportVar->getOperand(0);
586 if (ExportVarNameMDS->getValueID() == llvm::Value::MDStringVal) {
587 llvm::StringRef ExportVarName =
588 static_cast<llvm::MDString*>(ExportVarNameMDS)->getString();
589
590 CodeEmitter::global_addresses_const_iterator I, E;
591 for (I = mCodeEmitter->global_address_begin(),
592 E = mCodeEmitter->global_address_end();
593 I != E; I++) {
594 if (I->first->getValueID() != llvm::Value::GlobalVariableVal)
595 continue;
596 if (ExportVarName == I->first->getName()) {
Logan2a6dc822011-01-06 04:05:20 +0800597 varList.push_back(I->second);
Shih-wei Liao9f73de02011-07-01 04:40:24 -0700598#if DEBUG_BCC_REFLECT
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700599 LOGD("runCodeGen(): Exported VAR: %s @ %p\n", ExportVarName.str().c_str(), I->second);
600#endif
Logan1f028c02010-11-27 01:02:48 +0800601 break;
602 }
603 }
604 if (I != mCodeEmitter->global_address_end())
605 continue; // found
Logan Chien7d1bf582011-06-13 23:22:40 +0800606
Shih-wei Liao9f73de02011-07-01 04:40:24 -0700607#if DEBUG_BCC_REFLECT
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700608 LOGD("runCodeGen(): Exported VAR: %s @ %p\n",
Logan Chien7d1bf582011-06-13 23:22:40 +0800609 ExportVarName.str().c_str(), (void *)0);
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700610#endif
Logan1f028c02010-11-27 01:02:48 +0800611 }
612 }
613 // if reaching here, we know the global variable record in metadata is
614 // not found. So we make an empty slot
Logan2a6dc822011-01-06 04:05:20 +0800615 varList.push_back(NULL);
Logan1f028c02010-11-27 01:02:48 +0800616 }
Logan2a6dc822011-01-06 04:05:20 +0800617
Stephen Hinesbbcef8a2011-05-04 19:40:10 -0700618 bccAssert((varList.size() == ExportVarMetadata->getNumOperands()) &&
619 "Number of slots doesn't match the number of export variables!");
Logan1f028c02010-11-27 01:02:48 +0800620 }
621
622 if (ExportFuncMetadata) {
Logan2a6dc822011-01-06 04:05:20 +0800623 ScriptCompiled::ExportFuncList &funcList = mpResult->mExportFuncs;
624
Logan1f028c02010-11-27 01:02:48 +0800625 for (int i = 0, e = ExportFuncMetadata->getNumOperands(); i != e; i++) {
626 llvm::MDNode *ExportFunc = ExportFuncMetadata->getOperand(i);
627 if (ExportFunc != NULL && ExportFunc->getNumOperands() > 0) {
628 llvm::Value *ExportFuncNameMDS = ExportFunc->getOperand(0);
629 if (ExportFuncNameMDS->getValueID() == llvm::Value::MDStringVal) {
630 llvm::StringRef ExportFuncName =
631 static_cast<llvm::MDString*>(ExportFuncNameMDS)->getString();
Logan7dcaac92011-01-06 04:26:23 +0800632 funcList.push_back(mpResult->lookup(ExportFuncName.str().c_str()));
Shih-wei Liao9f73de02011-07-01 04:40:24 -0700633#if DEBUG_BCC_REFLECT
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700634 LOGD("runCodeGen(): Exported Func: %s @ %p\n", ExportFuncName.str().c_str(),
Logan Chien7d1bf582011-06-13 23:22:40 +0800635 funcList.back());
Shih-wei Liao749a51c2011-06-17 16:02:18 -0700636#endif
Logan1f028c02010-11-27 01:02:48 +0800637 }
638 }
639 }
640 }
641
642 // Tell code emitter now can release the memory using during the JIT since
643 // we have done the code emission
644 mCodeEmitter->releaseUnnecessary();
645
Logan Chienda5e0c32011-06-13 03:47:21 +0800646 return 0;
Logan1f028c02010-11-27 01:02:48 +0800647}
Logan Chienda5e0c32011-06-13 03:47:21 +0800648#endif // USE_OLD_JIT
Logan1f028c02010-11-27 01:02:48 +0800649
650
Logan Chienda5e0c32011-06-13 03:47:21 +0800651#if USE_MCJIT
Joseph Wen34c600a2011-07-25 17:59:17 -0700652int Compiler::runMCCodeGen(llvm::TargetData *TD, llvm::TargetMachine *TM) {
Logan Chienda5e0c32011-06-13 03:47:21 +0800653 // Decorate mEmittedELFExecutable with formatted ostream
654 llvm::raw_svector_ostream OutSVOS(mEmittedELFExecutable);
655
656 // Relax all machine instructions
657 TM->setMCRelaxAll(/* RelaxAll= */ true);
658
659 // Create MC code generation pass manager
660 llvm::PassManager MCCodeGenPasses;
661
662 // Add TargetData to MC code generation pass manager
663 MCCodeGenPasses.add(TD);
664
665 // Add MC code generation passes to pass manager
666 llvm::MCContext *Ctx;
667 if (TM->addPassesToEmitMC(MCCodeGenPasses, Ctx, OutSVOS,
668 CodeGenOptLevel, false)) {
669 setError("Fail to add passes to emit file");
670 return 1;
671 }
672
673 MCCodeGenPasses.run(*mModule);
674 OutSVOS.flush();
Logan Chienda5e0c32011-06-13 03:47:21 +0800675 return 0;
676}
677#endif // USE_MCJIT
678
679
680int Compiler::runLTO(llvm::TargetData *TD,
681 llvm::NamedMDNode const *ExportVarMetadata,
682 llvm::NamedMDNode const *ExportFuncMetadata) {
Logan Chien4cc00332011-06-12 14:00:46 +0800683 llvm::PassManager LTOPasses;
684
685 // Add TargetData to LTO passes
686 LTOPasses.add(TD);
687
688 // Collect All Exported Symbols
689 std::vector<const char*> ExportSymbols;
690
691 // Note: This is a workaround for getting export variable and function name.
692 // We should refine it soon.
693 if (ExportVarMetadata) {
694 for (int i = 0, e = ExportVarMetadata->getNumOperands(); i != e; i++) {
695 llvm::MDNode *ExportVar = ExportVarMetadata->getOperand(i);
696 if (ExportVar != NULL && ExportVar->getNumOperands() > 1) {
697 llvm::Value *ExportVarNameMDS = ExportVar->getOperand(0);
698 if (ExportVarNameMDS->getValueID() == llvm::Value::MDStringVal) {
699 llvm::StringRef ExportVarName =
700 static_cast<llvm::MDString*>(ExportVarNameMDS)->getString();
701 ExportSymbols.push_back(ExportVarName.data());
702 }
703 }
704 }
705 }
706
707 if (ExportFuncMetadata) {
708 for (int i = 0, e = ExportFuncMetadata->getNumOperands(); i != e; i++) {
709 llvm::MDNode *ExportFunc = ExportFuncMetadata->getOperand(i);
710 if (ExportFunc != NULL && ExportFunc->getNumOperands() > 0) {
711 llvm::Value *ExportFuncNameMDS = ExportFunc->getOperand(0);
712 if (ExportFuncNameMDS->getValueID() == llvm::Value::MDStringVal) {
713 llvm::StringRef ExportFuncName =
714 static_cast<llvm::MDString*>(ExportFuncNameMDS)->getString();
715 ExportSymbols.push_back(ExportFuncName.data());
716 }
717 }
718 }
719 }
720
Logan Chien7890d432011-08-03 14:55:17 +0800721 // TODO(logan): Remove this after we have finished the
722 // bccMarkExternalSymbol API.
723
Stephen Hines64160102011-09-01 17:30:26 -0700724 // root(), init(), and .rs.dtor() are born to be exported
Logan Chien4cc00332011-06-12 14:00:46 +0800725 ExportSymbols.push_back("root");
726 ExportSymbols.push_back("init");
Stephen Hines64160102011-09-01 17:30:26 -0700727 ExportSymbols.push_back(".rs.dtor");
Logan Chien4cc00332011-06-12 14:00:46 +0800728
Logan Chien7890d432011-08-03 14:55:17 +0800729 // User-defined exporting symbols
730 std::vector<char const *> const &UserDefinedExternalSymbols =
731 mpResult->getUserDefinedExternalSymbols();
732
733 std::copy(UserDefinedExternalSymbols.begin(),
734 UserDefinedExternalSymbols.end(),
735 std::back_inserter(ExportSymbols));
736
Logan Chien4cc00332011-06-12 14:00:46 +0800737 // We now create passes list performing LTO. These are copied from
738 // (including comments) llvm::createStandardLTOPasses().
739
740 // Internalize all other symbols not listed in ExportSymbols
741 LTOPasses.add(llvm::createInternalizePass(ExportSymbols));
742
743 // Propagate constants at call sites into the functions they call. This
744 // opens opportunities for globalopt (and inlining) by substituting
745 // function pointers passed as arguments to direct uses of functions.
746 LTOPasses.add(llvm::createIPSCCPPass());
747
748 // Now that we internalized some globals, see if we can hack on them!
749 LTOPasses.add(llvm::createGlobalOptimizerPass());
750
751 // Linking modules together can lead to duplicated global constants, only
752 // keep one copy of each constant...
753 LTOPasses.add(llvm::createConstantMergePass());
754
755 // Remove unused arguments from functions...
756 LTOPasses.add(llvm::createDeadArgEliminationPass());
757
758 // Reduce the code after globalopt and ipsccp. Both can open up
759 // significant simplification opportunities, and both can propagate
760 // functions through function pointers. When this happens, we often have
761 // to resolve varargs calls, etc, so let instcombine do this.
762 LTOPasses.add(llvm::createInstructionCombiningPass());
763
764 // Inline small functions
765 LTOPasses.add(llvm::createFunctionInliningPass());
766
767 // Remove dead EH info.
768 LTOPasses.add(llvm::createPruneEHPass());
769
770 // Internalize the globals again after inlining
771 LTOPasses.add(llvm::createGlobalOptimizerPass());
772
773 // Remove dead functions.
774 LTOPasses.add(llvm::createGlobalDCEPass());
775
776 // If we didn't decide to inline a function, check to see if we can
777 // transform it to pass arguments by value instead of by reference.
778 LTOPasses.add(llvm::createArgumentPromotionPass());
779
780 // The IPO passes may leave cruft around. Clean up after them.
781 LTOPasses.add(llvm::createInstructionCombiningPass());
782 LTOPasses.add(llvm::createJumpThreadingPass());
783
784 // Break up allocas
785 LTOPasses.add(llvm::createScalarReplAggregatesPass());
786
787 // Run a few AA driven optimizations here and now, to cleanup the code.
788 LTOPasses.add(llvm::createFunctionAttrsPass()); // Add nocapture.
789 LTOPasses.add(llvm::createGlobalsModRefPass()); // IP alias analysis.
790
791 // Hoist loop invariants.
792 LTOPasses.add(llvm::createLICMPass());
793
794 // Remove redundancies.
795 LTOPasses.add(llvm::createGVNPass());
796
797 // Remove dead memcpys.
798 LTOPasses.add(llvm::createMemCpyOptPass());
799
800 // Nuke dead stores.
801 LTOPasses.add(llvm::createDeadStoreEliminationPass());
802
803 // Cleanup and simplify the code after the scalar optimizations.
804 LTOPasses.add(llvm::createInstructionCombiningPass());
805
806 LTOPasses.add(llvm::createJumpThreadingPass());
807
808 // Delete basic blocks, which optimization passes may have killed.
809 LTOPasses.add(llvm::createCFGSimplificationPass());
810
811 // Now that we have optimized the program, discard unreachable functions.
812 LTOPasses.add(llvm::createGlobalDCEPass());
813
814 LTOPasses.run(*mModule);
Logan Chienda5e0c32011-06-13 03:47:21 +0800815
816 return 0;
Logan Chien4cc00332011-06-12 14:00:46 +0800817}
818
819
Logan Chienda5e0c32011-06-13 03:47:21 +0800820#if USE_MCJIT
Logan Chienda5e0c32011-06-13 03:47:21 +0800821void *Compiler::getSymbolAddress(char const *name) {
822 return rsloaderGetSymbolAddress(mRSExecutable, name);
823}
824#endif
825
826
827#if USE_MCJIT
828void *Compiler::resolveSymbolAdapter(void *context, char const *name) {
829 Compiler *self = reinterpret_cast<Compiler *>(context);
830
831 if (void *Addr = FindRuntimeFunction(name)) {
832 return Addr;
833 }
834
835 if (self->mpSymbolLookupFn) {
836 if (void *Addr = self->mpSymbolLookupFn(self->mpSymbolLookupContext, name)) {
837 return Addr;
838 }
839 }
840
841 LOGE("Unable to resolve symbol: %s\n", name);
842 return NULL;
843}
844#endif
845
846
Logan1f028c02010-11-27 01:02:48 +0800847Compiler::~Compiler() {
Logan1f028c02010-11-27 01:02:48 +0800848 delete mModule;
Logan1f028c02010-11-27 01:02:48 +0800849 delete mContext;
Logana4994f52010-11-27 14:06:02 +0800850
Logan Chienda5e0c32011-06-13 03:47:21 +0800851#if USE_MCJIT
852 rsloaderDisposeExec(mRSExecutable);
853#endif
854
Logana4994f52010-11-27 14:06:02 +0800855 // llvm::llvm_shutdown();
Logan1f028c02010-11-27 01:02:48 +0800856}
857
Shih-wei Liao90cd3d12011-06-20 15:43:34 -0700858
Logan1f028c02010-11-27 01:02:48 +0800859} // namespace bcc