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1 /*
2  * Copyright (C) 2014 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 
17 #ifndef ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_
18 #define ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_
19 
20 #include <memory>
21 #include <ostream>
22 #include <string>
23 #include <vector>
24 
25 #include "base/compiler_filter.h"
26 #include "base/globals.h"
27 #include "base/hash_set.h"
28 #include "base/macros.h"
29 #include "base/stl_util.h"
30 #include "base/utils.h"
31 #include "optimizing/register_allocator.h"
32 
33 namespace art {
34 
35 namespace jit {
36 class JitCompiler;
37 }  // namespace jit
38 
39 namespace verifier {
40 class VerifierDepsTest;
41 }  // namespace verifier
42 
43 namespace linker {
44 class Arm64RelativePatcherTest;
45 }  // namespace linker
46 
47 class DexFile;
48 enum class InstructionSet;
49 class InstructionSetFeatures;
50 class ProfileCompilationInfo;
51 class VerificationResults;
52 
53 // Enum for CheckProfileMethodsCompiled. Outside CompilerOptions so it can be forward-declared.
54 enum class ProfileMethodsCheck : uint8_t {
55   kNone,
56   kLog,
57   kAbort,
58 };
59 
60 class CompilerOptions final {
61  public:
62   // Guide heuristics to determine whether to compile method if profile data not available.
63   static const size_t kDefaultHugeMethodThreshold = 10000;
64   static const size_t kDefaultLargeMethodThreshold = 600;
65   static const size_t kDefaultNumDexMethodsThreshold = 900;
66   static constexpr double kDefaultTopKProfileThreshold = 90.0;
67   static const bool kDefaultGenerateDebugInfo = false;
68   static const bool kDefaultGenerateMiniDebugInfo = true;
69   static const size_t kDefaultInlineMaxCodeUnits = 32;
70   static constexpr size_t kUnsetInlineMaxCodeUnits = -1;
71 
72   enum class CompilerType : uint8_t {
73     kAotCompiler,             // AOT compiler.
74     kJitCompiler,             // Normal JIT compiler.
75     kSharedCodeJitCompiler,   // Zygote JIT producing code in the shared region area, putting
76                               // restrictions on, for example, how literals are being generated.
77   };
78 
79   enum class ImageType : uint8_t {
80     kNone,                    // JIT or AOT app compilation producing only an oat file but no image.
81     kBootImage,               // Creating boot image.
82     kBootImageExtension,      // Creating boot image extension.
83     kAppImage,                // Creating app image.
84   };
85 
86   CompilerOptions();
87   ~CompilerOptions();
88 
GetCompilerFilter()89   CompilerFilter::Filter GetCompilerFilter() const {
90     return compiler_filter_;
91   }
92 
SetCompilerFilter(CompilerFilter::Filter compiler_filter)93   void SetCompilerFilter(CompilerFilter::Filter compiler_filter) {
94     compiler_filter_ = compiler_filter;
95   }
96 
IsAotCompilationEnabled()97   bool IsAotCompilationEnabled() const {
98     return CompilerFilter::IsAotCompilationEnabled(compiler_filter_);
99   }
100 
IsJniCompilationEnabled()101   bool IsJniCompilationEnabled() const {
102     return CompilerFilter::IsJniCompilationEnabled(compiler_filter_);
103   }
104 
IsVerificationEnabled()105   bool IsVerificationEnabled() const {
106     return CompilerFilter::IsVerificationEnabled(compiler_filter_);
107   }
108 
AssumeDexFilesAreVerified()109   bool AssumeDexFilesAreVerified() const {
110     return compiler_filter_ == CompilerFilter::kAssumeVerified;
111   }
112 
AssumeClassesAreVerified()113   bool AssumeClassesAreVerified() const {
114     return compiler_filter_ == CompilerFilter::kAssumeVerified;
115   }
116 
VerifyAtRuntime()117   bool VerifyAtRuntime() const {
118     return compiler_filter_ == CompilerFilter::kExtract;
119   }
120 
IsAnyCompilationEnabled()121   bool IsAnyCompilationEnabled() const {
122     return CompilerFilter::IsAnyCompilationEnabled(compiler_filter_);
123   }
124 
GetHugeMethodThreshold()125   size_t GetHugeMethodThreshold() const {
126     return huge_method_threshold_;
127   }
128 
GetLargeMethodThreshold()129   size_t GetLargeMethodThreshold() const {
130     return large_method_threshold_;
131   }
132 
IsHugeMethod(size_t num_dalvik_instructions)133   bool IsHugeMethod(size_t num_dalvik_instructions) const {
134     return num_dalvik_instructions > huge_method_threshold_;
135   }
136 
IsLargeMethod(size_t num_dalvik_instructions)137   bool IsLargeMethod(size_t num_dalvik_instructions) const {
138     return num_dalvik_instructions > large_method_threshold_;
139   }
140 
GetNumDexMethodsThreshold()141   size_t GetNumDexMethodsThreshold() const {
142     return num_dex_methods_threshold_;
143   }
144 
GetInlineMaxCodeUnits()145   size_t GetInlineMaxCodeUnits() const {
146     return inline_max_code_units_;
147   }
SetInlineMaxCodeUnits(size_t units)148   void SetInlineMaxCodeUnits(size_t units) {
149     inline_max_code_units_ = units;
150   }
151 
GetTopKProfileThreshold()152   double GetTopKProfileThreshold() const {
153     return top_k_profile_threshold_;
154   }
155 
GetDebuggable()156   bool GetDebuggable() const {
157     return debuggable_;
158   }
159 
SetDebuggable(bool value)160   void SetDebuggable(bool value) {
161     debuggable_ = value;
162   }
163 
GetNativeDebuggable()164   bool GetNativeDebuggable() const {
165     return GetDebuggable() && GetGenerateDebugInfo();
166   }
167 
168   // This flag controls whether the compiler collects debugging information.
169   // The other flags control how the information is written to disk.
GenerateAnyDebugInfo()170   bool GenerateAnyDebugInfo() const {
171     return GetGenerateDebugInfo() || GetGenerateMiniDebugInfo();
172   }
173 
GetGenerateDebugInfo()174   bool GetGenerateDebugInfo() const {
175     return generate_debug_info_;
176   }
177 
GetGenerateMiniDebugInfo()178   bool GetGenerateMiniDebugInfo() const {
179     return generate_mini_debug_info_;
180   }
181 
182   // Should run-time checks be emitted in debug mode?
183   bool EmitRunTimeChecksInDebugMode() const;
184 
GetGenerateBuildId()185   bool GetGenerateBuildId() const {
186     return generate_build_id_;
187   }
188 
GetImplicitNullChecks()189   bool GetImplicitNullChecks() const {
190     return implicit_null_checks_;
191   }
192 
GetImplicitStackOverflowChecks()193   bool GetImplicitStackOverflowChecks() const {
194     return implicit_so_checks_;
195   }
196 
IsAotCompiler()197   bool IsAotCompiler() const {
198     return compiler_type_ == CompilerType::kAotCompiler;
199   }
200 
IsJitCompiler()201   bool IsJitCompiler() const {
202     return compiler_type_ == CompilerType::kJitCompiler ||
203            compiler_type_ == CompilerType::kSharedCodeJitCompiler;
204   }
205 
IsJitCompilerForSharedCode()206   bool IsJitCompilerForSharedCode() const {
207     return compiler_type_ == CompilerType::kSharedCodeJitCompiler;
208   }
209 
GetImplicitSuspendChecks()210   bool GetImplicitSuspendChecks() const {
211     return implicit_suspend_checks_;
212   }
213 
IsGeneratingImage()214   bool IsGeneratingImage() const {
215     return IsBootImage() || IsBootImageExtension() || IsAppImage();
216   }
217 
218   // Are we compiling a boot image?
IsBootImage()219   bool IsBootImage() const {
220     return image_type_ == ImageType::kBootImage;
221   }
222 
223   // Are we compiling a boot image extension?
IsBootImageExtension()224   bool IsBootImageExtension() const {
225     return image_type_ == ImageType::kBootImageExtension;
226   }
227 
IsBaseline()228   bool IsBaseline() const {
229     return baseline_;
230   }
231 
232   // Are we compiling an app image?
IsAppImage()233   bool IsAppImage() const {
234     return image_type_ == ImageType::kAppImage;
235   }
236 
IsMultiImage()237   bool IsMultiImage() const {
238     return multi_image_;
239   }
240 
241   // Returns whether we are running ART tests.
242   // The compiler will use that information for checking invariants.
CompileArtTest()243   bool CompileArtTest() const {
244     return compile_art_test_;
245   }
246 
247   // Should the code be compiled as position independent?
GetCompilePic()248   bool GetCompilePic() const {
249     return compile_pic_;
250   }
251 
GetProfileCompilationInfo()252   const ProfileCompilationInfo* GetProfileCompilationInfo() const {
253     return profile_compilation_info_;
254   }
255 
HasVerboseMethods()256   bool HasVerboseMethods() const {
257     return !verbose_methods_.empty();
258   }
259 
IsVerboseMethod(const std::string & pretty_method)260   bool IsVerboseMethod(const std::string& pretty_method) const {
261     for (const std::string& cur_method : verbose_methods_) {
262       if (pretty_method.find(cur_method) != std::string::npos) {
263         return true;
264       }
265     }
266     return false;
267   }
268 
GetInitFailureOutput()269   std::ostream* GetInitFailureOutput() const {
270     return init_failure_output_.get();
271   }
272 
AbortOnHardVerifierFailure()273   bool AbortOnHardVerifierFailure() const {
274     return abort_on_hard_verifier_failure_;
275   }
AbortOnSoftVerifierFailure()276   bool AbortOnSoftVerifierFailure() const {
277     return abort_on_soft_verifier_failure_;
278   }
279 
GetInstructionSet()280   InstructionSet GetInstructionSet() const {
281     return instruction_set_;
282   }
283 
GetInstructionSetFeatures()284   const InstructionSetFeatures* GetInstructionSetFeatures() const {
285     return instruction_set_features_.get();
286   }
287 
288 
GetNoInlineFromDexFile()289   const std::vector<const DexFile*>& GetNoInlineFromDexFile() const {
290     return no_inline_from_;
291   }
292 
GetDexFilesForOatFile()293   const std::vector<const DexFile*>& GetDexFilesForOatFile() const {
294     return dex_files_for_oat_file_;
295   }
296 
GetImageClasses()297   const HashSet<std::string>& GetImageClasses() const {
298     return image_classes_;
299   }
300 
301   bool IsImageClass(const char* descriptor) const;
302 
303   const VerificationResults* GetVerificationResults() const;
304 
305   bool ParseCompilerOptions(const std::vector<std::string>& options,
306                             bool ignore_unrecognized,
307                             std::string* error_msg);
308 
SetNonPic()309   void SetNonPic() {
310     compile_pic_ = false;
311   }
312 
GetDumpCfgFileName()313   const std::string& GetDumpCfgFileName() const {
314     return dump_cfg_file_name_;
315   }
316 
GetDumpCfgAppend()317   bool GetDumpCfgAppend() const {
318     return dump_cfg_append_;
319   }
320 
IsForceDeterminism()321   bool IsForceDeterminism() const {
322     return force_determinism_;
323   }
324 
IsCheckLinkageConditions()325   bool IsCheckLinkageConditions() const {
326     return check_linkage_conditions_;
327   }
328 
IsCrashOnLinkageViolation()329   bool IsCrashOnLinkageViolation() const {
330     return crash_on_linkage_violation_;
331   }
332 
DeduplicateCode()333   bool DeduplicateCode() const {
334     return deduplicate_code_;
335   }
336 
GetRegisterAllocationStrategy()337   RegisterAllocator::Strategy GetRegisterAllocationStrategy() const {
338     return register_allocation_strategy_;
339   }
340 
GetPassesToRun()341   const std::vector<std::string>* GetPassesToRun() const {
342     return passes_to_run_;
343   }
344 
GetDumpTimings()345   bool GetDumpTimings() const {
346     return dump_timings_;
347   }
348 
GetDumpPassTimings()349   bool GetDumpPassTimings() const {
350     return dump_pass_timings_;
351   }
352 
GetDumpStats()353   bool GetDumpStats() const {
354     return dump_stats_;
355   }
356 
CountHotnessInCompiledCode()357   bool CountHotnessInCompiledCode() const {
358     return count_hotness_in_compiled_code_;
359   }
360 
ResolveStartupConstStrings()361   bool ResolveStartupConstStrings() const {
362     return resolve_startup_const_strings_;
363   }
364 
CheckProfiledMethodsCompiled()365   ProfileMethodsCheck CheckProfiledMethodsCompiled() const {
366     return check_profiled_methods_;
367   }
368 
MaxImageBlockSize()369   uint32_t MaxImageBlockSize() const {
370     return max_image_block_size_;
371   }
372 
SetMaxImageBlockSize(uint32_t size)373   void SetMaxImageBlockSize(uint32_t size) {
374     max_image_block_size_ = size;
375   }
376 
InitializeAppImageClasses()377   bool InitializeAppImageClasses() const {
378     return initialize_app_image_classes_;
379   }
380 
381   // Returns true if `dex_file` is within an oat file we're producing right now.
WithinOatFile(const DexFile * dex_file)382   bool WithinOatFile(const DexFile* dex_file) const {
383     return ContainsElement(GetDexFilesForOatFile(), dex_file);
384   }
385 
386  private:
387   bool ParseDumpInitFailures(const std::string& option, std::string* error_msg);
388   bool ParseRegisterAllocationStrategy(const std::string& option, std::string* error_msg);
389 
390   CompilerFilter::Filter compiler_filter_;
391   size_t huge_method_threshold_;
392   size_t large_method_threshold_;
393   size_t num_dex_methods_threshold_;
394   size_t inline_max_code_units_;
395 
396   InstructionSet instruction_set_;
397   std::unique_ptr<const InstructionSetFeatures> instruction_set_features_;
398 
399   // Dex files from which we should not inline code. Does not own the dex files.
400   // This is usually a very short list (i.e. a single dex file), so we
401   // prefer vector<> over a lookup-oriented container, such as set<>.
402   std::vector<const DexFile*> no_inline_from_;
403 
404   // List of dex files associated with the oat file, empty for JIT.
405   std::vector<const DexFile*> dex_files_for_oat_file_;
406 
407   // Image classes, specifies the classes that will be included in the image if creating an image.
408   // Must not be empty for real boot image, only for tests pretending to compile boot image.
409   HashSet<std::string> image_classes_;
410 
411   // Results of AOT verification.
412   const VerificationResults* verification_results_;
413 
414   CompilerType compiler_type_;
415   ImageType image_type_;
416   bool multi_image_;
417   bool compile_art_test_;
418   bool baseline_;
419   bool debuggable_;
420   bool generate_debug_info_;
421   bool generate_mini_debug_info_;
422   bool generate_build_id_;
423   bool implicit_null_checks_;
424   bool implicit_so_checks_;
425   bool implicit_suspend_checks_;
426   bool compile_pic_;
427   bool dump_timings_;
428   bool dump_pass_timings_;
429   bool dump_stats_;
430 
431   // When using a profile file only the top K% of the profiled samples will be compiled.
432   double top_k_profile_threshold_;
433 
434   // Info for profile guided compilation.
435   const ProfileCompilationInfo* profile_compilation_info_;
436 
437   // Vector of methods to have verbose output enabled for.
438   std::vector<std::string> verbose_methods_;
439 
440   // Abort compilation with an error if we find a class that fails verification with a hard
441   // failure.
442   bool abort_on_hard_verifier_failure_;
443   // Same for soft failures.
444   bool abort_on_soft_verifier_failure_;
445 
446   // Log initialization of initialization failures to this stream if not null.
447   std::unique_ptr<std::ostream> init_failure_output_;
448 
449   std::string dump_cfg_file_name_;
450   bool dump_cfg_append_;
451 
452   // Whether the compiler should trade performance for determinism to guarantee exactly reproducible
453   // outcomes.
454   bool force_determinism_;
455 
456   // Whether the compiler should check for violation of the conditions required to perform AOT
457   // "linkage".
458   bool check_linkage_conditions_;
459   // Whether the compiler should crash when encountering a violation of one of
460   // the conditions required to perform AOT "linkage".
461   bool crash_on_linkage_violation_;
462 
463   // Whether code should be deduplicated.
464   bool deduplicate_code_;
465 
466   // Whether compiled code should increment the hotness count of ArtMethod. Note that the increments
467   // won't be atomic for performance reasons, so we accept races, just like in interpreter.
468   bool count_hotness_in_compiled_code_;
469 
470   // Whether we eagerly resolve all of the const strings that are loaded from startup methods in the
471   // profile.
472   bool resolve_startup_const_strings_;
473 
474   // Whether we attempt to run class initializers for app image classes.
475   bool initialize_app_image_classes_;
476 
477   // When running profile-guided compilation, check that methods intended to be compiled end
478   // up compiled and are not punted.
479   ProfileMethodsCheck check_profiled_methods_;
480 
481   // Maximum solid block size in the generated image.
482   uint32_t max_image_block_size_;
483 
484   RegisterAllocator::Strategy register_allocation_strategy_;
485 
486   // If not null, specifies optimization passes which will be run instead of defaults.
487   // Note that passes_to_run_ is not checked for correctness and providing an incorrect
488   // list of passes can lead to unexpected compiler behaviour. This is caused by dependencies
489   // between passes. Failing to satisfy them can for example lead to compiler crashes.
490   // Passing pass names which are not recognized by the compiler will result in
491   // compiler-dependant behavior.
492   const std::vector<std::string>* passes_to_run_;
493 
494   friend class Dex2Oat;
495   friend class CommonCompilerDriverTest;
496   friend class CommonCompilerTestImpl;
497   friend class jit::JitCompiler;
498   friend class verifier::VerifierDepsTest;
499   friend class linker::Arm64RelativePatcherTest;
500 
501   template <class Base>
502   friend bool ReadCompilerOptions(Base& map, CompilerOptions* options, std::string* error_msg);
503 
504   DISALLOW_COPY_AND_ASSIGN(CompilerOptions);
505 };
506 
507 }  // namespace art
508 
509 #endif  // ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_
510