xref: /aosp_15_r20/art/compiler/optimizing/sharpening.cc (revision 795d594fd825385562da6b089ea9b2033f3abf5a)
1 /*
2  * Copyright (C) 2015 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 #include "sharpening.h"
18 
19 #include "art_method-inl.h"
20 #include "base/casts.h"
21 #include "base/logging.h"
22 #include "base/pointer_size.h"
23 #include "class_linker.h"
24 #include "code_generator.h"
25 #include "driver/compiler_options.h"
26 #include "driver/dex_compilation_unit.h"
27 #include "gc/heap.h"
28 #include "gc/space/image_space.h"
29 #include "handle_scope-inl.h"
30 #include "jit/jit.h"
31 #include "mirror/dex_cache.h"
32 #include "mirror/string.h"
33 #include "nodes.h"
34 #include "runtime.h"
35 #include "scoped_thread_state_change-inl.h"
36 
37 namespace art HIDDEN {
38 
IsInBootImage(ArtMethod * method)39 static bool IsInBootImage(ArtMethod* method) {
40   gc::Heap* heap = Runtime::Current()->GetHeap();
41   DCHECK_EQ(heap->IsBootImageAddress(method),
42             std::any_of(heap->GetBootImageSpaces().begin(),
43                         heap->GetBootImageSpaces().end(),
44                         [=](gc::space::ImageSpace* space) REQUIRES_SHARED(Locks::mutator_lock_) {
45                           return space->GetImageHeader().GetMethodsSection().Contains(
46                               reinterpret_cast<uint8_t*>(method) - space->Begin());
47                         }));
48   return heap->IsBootImageAddress(method);
49 }
50 
ImageAOTCanEmbedMethod(ArtMethod * method,const CompilerOptions & compiler_options)51 static bool ImageAOTCanEmbedMethod(ArtMethod* method, const CompilerOptions& compiler_options) {
52   DCHECK(compiler_options.IsBootImage() ||
53          compiler_options.IsBootImageExtension() ||
54          compiler_options.IsAppImage());
55   ScopedObjectAccess soa(Thread::Current());
56   ObjPtr<mirror::Class> klass = method->GetDeclaringClass();
57   DCHECK(klass != nullptr);
58   const DexFile& dex_file = klass->GetDexFile();
59   return compiler_options.IsImageClass(dex_file.GetTypeDescriptor(klass->GetDexTypeIndex()));
60 }
61 
SharpenLoadMethod(ArtMethod * callee,bool has_method_id,bool for_interface_call,CodeGenerator * codegen)62 HInvokeStaticOrDirect::DispatchInfo HSharpening::SharpenLoadMethod(
63     ArtMethod* callee,
64     bool has_method_id,
65     bool for_interface_call,
66     CodeGenerator* codegen) {
67   if (kIsDebugBuild) {
68     ScopedObjectAccess soa(Thread::Current());  // Required for `IsStringConstructor()` below.
69     DCHECK(callee != nullptr);
70     DCHECK(!callee->IsStringConstructor());
71   }
72 
73   MethodLoadKind method_load_kind;
74   CodePtrLocation code_ptr_location;
75   uint64_t method_load_data = 0u;
76 
77   // Note: we never call an ArtMethod through a known code pointer, as
78   // we do not want to keep on invoking it if it gets deoptimized. This
79   // applies to both AOT and JIT.
80   // This also avoids having to find out if the code pointer of an ArtMethod
81   // is the resolution trampoline (for ensuring the class is initialized), or
82   // the interpreter entrypoint. Such code pointers we do not want to call
83   // directly.
84   // Only in the case of a recursive call can we call directly, as we know the
85   // class is initialized already or being initialized, and the call will not
86   // be invoked once the method is deoptimized.
87 
88   // We don't optimize for debuggable as it would prevent us from obsoleting the method in some
89   // situations.
90   const CompilerOptions& compiler_options = codegen->GetCompilerOptions();
91   if (callee == codegen->GetGraph()->GetArtMethod() &&
92       !codegen->GetGraph()->IsDebuggable() &&
93       // The runtime expects the canonical interface method being passed as
94       // hidden argument when doing an invokeinterface. Because default methods
95       // can be called through invokevirtual, we may get a copied method if we
96       // load 'recursively'.
97       (!for_interface_call || !callee->IsDefault())) {
98     // Recursive load.
99     method_load_kind = MethodLoadKind::kRecursive;
100     code_ptr_location = CodePtrLocation::kCallSelf;
101   } else if (compiler_options.IsBootImage() || compiler_options.IsBootImageExtension()) {
102     if (!compiler_options.GetCompilePic()) {
103       // Test configuration, do not sharpen.
104       method_load_kind = MethodLoadKind::kRuntimeCall;
105     } else if (IsInBootImage(callee)) {
106       DCHECK(compiler_options.IsBootImageExtension());
107       method_load_kind = MethodLoadKind::kBootImageRelRo;
108     } else if (ImageAOTCanEmbedMethod(callee, compiler_options)) {
109       method_load_kind = MethodLoadKind::kBootImageLinkTimePcRelative;
110     } else if (!has_method_id) {
111       method_load_kind = MethodLoadKind::kRuntimeCall;
112     } else {
113       DCHECK(!callee->IsCopied());
114       // Use PC-relative access to the .bss methods array.
115       method_load_kind = MethodLoadKind::kBssEntry;
116     }
117     code_ptr_location = CodePtrLocation::kCallArtMethod;
118   } else if (compiler_options.IsJitCompiler()) {
119     ScopedObjectAccess soa(Thread::Current());
120     if (Runtime::Current()->GetJit()->CanEncodeMethod(
121             callee,
122             compiler_options.IsJitCompilerForSharedCode())) {
123       method_load_kind = MethodLoadKind::kJitDirectAddress;
124       method_load_data = reinterpret_cast<uintptr_t>(callee);
125       code_ptr_location = CodePtrLocation::kCallArtMethod;
126     } else {
127       // Do not sharpen.
128       method_load_kind = MethodLoadKind::kRuntimeCall;
129       code_ptr_location = CodePtrLocation::kCallArtMethod;
130     }
131   } else if (IsInBootImage(callee)) {
132     // Use PC-relative access to the .data.img.rel.ro boot image methods array.
133     method_load_kind = MethodLoadKind::kBootImageRelRo;
134     code_ptr_location = CodePtrLocation::kCallArtMethod;
135   } else if (!has_method_id) {
136     method_load_kind = MethodLoadKind::kRuntimeCall;
137     code_ptr_location = CodePtrLocation::kCallArtMethod;
138   } else {
139     DCHECK(!callee->IsCopied());
140     if (compiler_options.IsAppImage() && ImageAOTCanEmbedMethod(callee, compiler_options)) {
141       // Use PC-relative access to the .data.img.rel.ro app image methods array.
142       method_load_kind = MethodLoadKind::kAppImageRelRo;
143     } else {
144       // Use PC-relative access to the .bss methods array.
145       method_load_kind = MethodLoadKind::kBssEntry;
146     }
147     code_ptr_location = CodePtrLocation::kCallArtMethod;
148   }
149 
150   if (method_load_kind != MethodLoadKind::kRuntimeCall && callee->IsCriticalNative()) {
151     DCHECK_NE(method_load_kind, MethodLoadKind::kRecursive);
152     DCHECK(callee->IsStatic());
153     code_ptr_location = CodePtrLocation::kCallCriticalNative;
154   }
155 
156   if (codegen->GetGraph()->IsDebuggable()) {
157     // For debuggable apps always use the code pointer from ArtMethod
158     // so that we don't circumvent instrumentation stubs if installed.
159     code_ptr_location = CodePtrLocation::kCallArtMethod;
160   }
161 
162   HInvokeStaticOrDirect::DispatchInfo desired_dispatch_info = {
163       method_load_kind, code_ptr_location, method_load_data
164   };
165   return codegen->GetSupportedInvokeStaticOrDirectDispatch(desired_dispatch_info, callee);
166 }
167 
ComputeLoadClassKind(HLoadClass * load_class,CodeGenerator * codegen,const DexCompilationUnit & dex_compilation_unit)168 HLoadClass::LoadKind HSharpening::ComputeLoadClassKind(
169     HLoadClass* load_class,
170     CodeGenerator* codegen,
171     const DexCompilationUnit& dex_compilation_unit) {
172   Handle<mirror::Class> klass = load_class->GetClass();
173   DCHECK(load_class->GetLoadKind() == HLoadClass::LoadKind::kRuntimeCall ||
174          load_class->GetLoadKind() == HLoadClass::LoadKind::kReferrersClass)
175       << load_class->GetLoadKind();
176   DCHECK(!load_class->IsInImage()) << "HLoadClass should not be optimized before sharpening.";
177   const DexFile& dex_file = load_class->GetDexFile();
178   dex::TypeIndex type_index = load_class->GetTypeIndex();
179   const CompilerOptions& compiler_options = codegen->GetCompilerOptions();
180 
181   auto is_class_in_current_image = [&]() {
182     return compiler_options.IsGeneratingImage() &&
183            compiler_options.IsImageClass(dex_file.GetTypeDescriptor(type_index));
184   };
185 
186   bool is_in_image = false;
187   HLoadClass::LoadKind desired_load_kind = HLoadClass::LoadKind::kInvalid;
188 
189   if (load_class->GetLoadKind() == HLoadClass::LoadKind::kReferrersClass) {
190     DCHECK(!load_class->NeedsAccessCheck());
191     // Loading from the ArtMethod* is the most efficient retrieval in code size.
192     // TODO: This may not actually be true for all architectures and
193     // locations of target classes. The additional register pressure
194     // for using the ArtMethod* should be considered.
195     desired_load_kind = HLoadClass::LoadKind::kReferrersClass;
196     // Determine whether the referrer's class is in the boot image.
197     is_in_image = is_class_in_current_image();
198   } else if (load_class->NeedsAccessCheck()) {
199     DCHECK_EQ(load_class->GetLoadKind(), HLoadClass::LoadKind::kRuntimeCall);
200     if (klass != nullptr) {
201       // Resolved class that needs access check must be really inaccessible
202       // and the access check is bound to fail. Just emit the runtime call.
203       desired_load_kind = HLoadClass::LoadKind::kRuntimeCall;
204       // Determine whether the class is in the boot image.
205       is_in_image = Runtime::Current()->GetHeap()->ObjectIsInBootImageSpace(klass.Get()) ||
206                     is_class_in_current_image();
207     } else if (compiler_options.IsJitCompiler()) {
208       // Unresolved class while JITting means that either we never hit this
209       // instruction or it failed. Either way, just emit the runtime call.
210       // (Though we could consider emitting Deoptimize instead and
211       // recompile if the instruction succeeds in interpreter.)
212       desired_load_kind = HLoadClass::LoadKind::kRuntimeCall;
213     } else {
214       // For AOT, check if the class is in the same literal package as the
215       // compiling class and pick an appropriate .bss entry.
216       auto package_length = [](const char* descriptor) {
217         const char* slash_pos = strrchr(descriptor, '/');
218         return (slash_pos != nullptr) ? static_cast<size_t>(slash_pos - descriptor) : 0u;
219       };
220       const char* klass_descriptor = dex_file.GetTypeDescriptor(type_index);
221       const uint32_t klass_package_length = package_length(klass_descriptor);
222       const DexFile* referrer_dex_file = dex_compilation_unit.GetDexFile();
223       const dex::TypeIndex referrer_type_index =
224           referrer_dex_file->GetClassDef(dex_compilation_unit.GetClassDefIndex()).class_idx_;
225       const char* referrer_descriptor = referrer_dex_file->GetTypeDescriptor(referrer_type_index);
226       const uint32_t referrer_package_length = package_length(referrer_descriptor);
227       bool same_package =
228           (referrer_package_length == klass_package_length) &&
229           memcmp(referrer_descriptor, klass_descriptor, referrer_package_length) == 0;
230       desired_load_kind = same_package
231           ? HLoadClass::LoadKind::kBssEntryPackage
232           : HLoadClass::LoadKind::kBssEntryPublic;
233     }
234   } else {
235     Runtime* runtime = Runtime::Current();
236     if (compiler_options.IsBootImage() || compiler_options.IsBootImageExtension()) {
237       // Compiling boot image or boot image extension. Check if the class is a boot image class.
238       DCHECK(!compiler_options.IsJitCompiler());
239       if (!compiler_options.GetCompilePic()) {
240         // Test configuration, do not sharpen.
241         desired_load_kind = HLoadClass::LoadKind::kRuntimeCall;
242         // Determine whether the class is in the boot image.
243         is_in_image = Runtime::Current()->GetHeap()->ObjectIsInBootImageSpace(klass.Get()) ||
244                       is_class_in_current_image();
245       } else if (klass != nullptr && runtime->GetHeap()->ObjectIsInBootImageSpace(klass.Get())) {
246         DCHECK(compiler_options.IsBootImageExtension());
247         is_in_image = true;
248         desired_load_kind = HLoadClass::LoadKind::kBootImageRelRo;
249       } else if ((klass != nullptr) &&
250                  compiler_options.IsImageClass(dex_file.GetTypeDescriptor(type_index))) {
251         is_in_image = true;
252         desired_load_kind = HLoadClass::LoadKind::kBootImageLinkTimePcRelative;
253       } else {
254         // Not a boot image class.
255         desired_load_kind = HLoadClass::LoadKind::kBssEntry;
256       }
257     } else {
258       is_in_image = (klass != nullptr) && runtime->GetHeap()->ObjectIsInBootImageSpace(klass.Get());
259       if (compiler_options.IsJitCompiler()) {
260         DCHECK(!compiler_options.GetCompilePic());
261         if (is_in_image) {
262           desired_load_kind = HLoadClass::LoadKind::kJitBootImageAddress;
263         } else if (klass != nullptr) {
264           if (runtime->GetJit()->CanEncodeClass(
265                   klass.Get(),
266                   compiler_options.IsJitCompilerForSharedCode())) {
267             desired_load_kind = HLoadClass::LoadKind::kJitTableAddress;
268           } else {
269             // Shared JIT code cannot encode a literal that the GC can move.
270             VLOG(jit) << "Unable to encode in shared region class literal: "
271                       << klass->PrettyClass();
272             desired_load_kind = HLoadClass::LoadKind::kRuntimeCall;
273           }
274         } else {
275           // Class not loaded yet. This happens when the dex code requesting
276           // this `HLoadClass` hasn't been executed in the interpreter.
277           // Fallback to the dex cache.
278           // TODO(ngeoffray): Generate HDeoptimize instead.
279           desired_load_kind = HLoadClass::LoadKind::kRuntimeCall;
280         }
281       } else if (is_in_image) {
282         // AOT app compilation, boot image class.
283         desired_load_kind = HLoadClass::LoadKind::kBootImageRelRo;
284       } else if (compiler_options.IsAppImage() && is_class_in_current_image()) {
285         // AOT app compilation, app image class.
286         is_in_image = true;
287         desired_load_kind = HLoadClass::LoadKind::kAppImageRelRo;
288       } else {
289         // Not JIT and the klass is not in boot image or app image.
290         desired_load_kind = HLoadClass::LoadKind::kBssEntry;
291       }
292     }
293   }
294   DCHECK_NE(desired_load_kind, HLoadClass::LoadKind::kInvalid);
295 
296   if (is_in_image) {
297     load_class->MarkInImage();
298   }
299   HLoadClass::LoadKind load_kind = codegen->GetSupportedLoadClassKind(desired_load_kind);
300 
301   if (!IsSameDexFile(load_class->GetDexFile(), *dex_compilation_unit.GetDexFile())) {
302     if (load_kind == HLoadClass::LoadKind::kRuntimeCall ||
303         load_kind == HLoadClass::LoadKind::kBssEntry ||
304         load_kind == HLoadClass::LoadKind::kBssEntryPublic ||
305         load_kind == HLoadClass::LoadKind::kBssEntryPackage) {
306       // We actually cannot reference this class, we're forced to bail.
307       // We cannot reference this class with Bss, as the entrypoint will lookup the class
308       // in the caller's dex file, but that dex file does not reference the class.
309       // TODO(solanes): We could theoretically enable this optimization for kBssEntry* but this
310       // requires some changes to the entrypoints, particularly artResolveTypeFromCode and
311       // artResolveTypeAndVerifyAccessFromCode. Currently, they assume that the `load_class`'s
312       // Dexfile and the `dex_compilation_unit` DexFile is the same and will try to use the type
313       // index in the incorrect DexFile by using the `caller`'s DexFile. A possibility is to add
314       // another parameter to it pointing to the correct DexFile to use.
315       return HLoadClass::LoadKind::kInvalid;
316     }
317   }
318   return load_kind;
319 }
320 
CanUseTypeCheckBitstring(ObjPtr<mirror::Class> klass,CodeGenerator * codegen)321 static inline bool CanUseTypeCheckBitstring(ObjPtr<mirror::Class> klass, CodeGenerator* codegen)
322     REQUIRES_SHARED(Locks::mutator_lock_) {
323   DCHECK(!klass->IsProxyClass());
324   DCHECK(!klass->IsArrayClass());
325 
326   const CompilerOptions& compiler_options = codegen->GetCompilerOptions();
327   if (compiler_options.IsJitCompiler()) {
328     // If we're JITting, try to assign a type check bitstring (fall through).
329   } else if (codegen->GetCompilerOptions().IsBootImage()) {
330     const char* descriptor = klass->GetDexFile().GetTypeDescriptor(klass->GetDexTypeIndex());
331     if (!codegen->GetCompilerOptions().IsImageClass(descriptor)) {
332       return false;
333     }
334     // If the target is a boot image class, try to assign a type check bitstring (fall through).
335     // (If --force-determinism, this was already done; repeating is OK and yields the same result.)
336   } else {
337     // TODO: Use the bitstring also for AOT app compilation if the target class has a bitstring
338     // already assigned in the boot image.
339     return false;
340   }
341 
342   // Try to assign a type check bitstring.
343   MutexLock subtype_check_lock(Thread::Current(), *Locks::subtype_check_lock_);
344   if ((false) &&  // FIXME: Inliner does not respect CompilerDriver::ShouldCompileMethod()
345                   // and we're hitting an unassigned bitstring in dex2oat_image_test. b/26687569
346       kIsDebugBuild &&
347       compiler_options.IsBootImage() &&
348       compiler_options.IsForceDeterminism()) {
349     SubtypeCheckInfo::State old_state = SubtypeCheck<ObjPtr<mirror::Class>>::GetState(klass);
350     CHECK(old_state == SubtypeCheckInfo::kAssigned || old_state == SubtypeCheckInfo::kOverflowed)
351         << klass->PrettyDescriptor() << "/" << old_state
352         << " in " << codegen->GetGraph()->PrettyMethod();
353   }
354   SubtypeCheckInfo::State state = SubtypeCheck<ObjPtr<mirror::Class>>::EnsureAssigned(klass);
355   return state == SubtypeCheckInfo::kAssigned;
356 }
357 
ComputeTypeCheckKind(ObjPtr<mirror::Class> klass,CodeGenerator * codegen,bool needs_access_check)358 TypeCheckKind HSharpening::ComputeTypeCheckKind(ObjPtr<mirror::Class> klass,
359                                                 CodeGenerator* codegen,
360                                                 bool needs_access_check) {
361   if (klass == nullptr) {
362     return TypeCheckKind::kUnresolvedCheck;
363   } else if (klass->IsInterface()) {
364     return TypeCheckKind::kInterfaceCheck;
365   } else if (klass->IsArrayClass()) {
366     if (klass->GetComponentType()->IsObjectClass()) {
367       return TypeCheckKind::kArrayObjectCheck;
368     } else if (klass->CannotBeAssignedFromOtherTypes()) {
369       return TypeCheckKind::kExactCheck;
370     } else {
371       return TypeCheckKind::kArrayCheck;
372     }
373   } else if (klass->IsFinal()) {  // TODO: Consider using bitstring for final classes.
374     return TypeCheckKind::kExactCheck;
375   } else if (kBitstringSubtypeCheckEnabled &&
376              !needs_access_check &&
377              CanUseTypeCheckBitstring(klass, codegen)) {
378     // TODO: We should not need the `!needs_access_check` check but getting rid of that
379     // requires rewriting some optimizations in instruction simplifier.
380     return TypeCheckKind::kBitstringCheck;
381   } else if (klass->IsAbstract()) {
382     return TypeCheckKind::kAbstractClassCheck;
383   } else {
384     return TypeCheckKind::kClassHierarchyCheck;
385   }
386 }
387 
ProcessLoadString(HLoadString * load_string,CodeGenerator * codegen,const DexCompilationUnit & dex_compilation_unit,VariableSizedHandleScope * handles)388 void HSharpening::ProcessLoadString(
389     HLoadString* load_string,
390     CodeGenerator* codegen,
391     const DexCompilationUnit& dex_compilation_unit,
392     VariableSizedHandleScope* handles) {
393   DCHECK_EQ(load_string->GetLoadKind(), HLoadString::LoadKind::kRuntimeCall);
394 
395   const DexFile& dex_file = load_string->GetDexFile();
396   dex::StringIndex string_index = load_string->GetStringIndex();
397 
398   HLoadString::LoadKind desired_load_kind = static_cast<HLoadString::LoadKind>(-1);
399   {
400     Runtime* runtime = Runtime::Current();
401     ClassLinker* class_linker = runtime->GetClassLinker();
402     ScopedObjectAccess soa(Thread::Current());
403     StackHandleScope<1> hs(soa.Self());
404     Handle<mirror::DexCache> dex_cache = IsSameDexFile(dex_file, *dex_compilation_unit.GetDexFile())
405         ? dex_compilation_unit.GetDexCache()
406         : hs.NewHandle(class_linker->FindDexCache(soa.Self(), dex_file));
407     ObjPtr<mirror::String> string = nullptr;
408 
409     const CompilerOptions& compiler_options = codegen->GetCompilerOptions();
410     if (compiler_options.IsBootImage() || compiler_options.IsBootImageExtension()) {
411       // Compiling boot image or boot image extension. Resolve the string and allocate it
412       // if needed, to ensure the string will be added to the boot image.
413       DCHECK(!compiler_options.IsJitCompiler());
414       if (compiler_options.GetCompilePic()) {
415         if (compiler_options.IsForceDeterminism()) {
416           // Strings for methods we're compiling should be pre-resolved but Strings in inlined
417           // methods may not be if these inlined methods are not in the boot image profile.
418           // Multiple threads allocating new Strings can cause non-deterministic boot image
419           // because of the image relying on the order of GC roots we walk. (We could fix that
420           // by ordering the roots we walk in ImageWriter.) Therefore we avoid allocating these
421           // strings even if that results in omitting them from the boot image and using the
422           // sub-optimal load kind kBssEntry.
423           string = class_linker->LookupString(string_index, dex_cache.Get());
424         } else {
425           string = class_linker->ResolveString(string_index, dex_cache);
426           CHECK(string != nullptr);
427         }
428         if (string != nullptr) {
429           if (runtime->GetHeap()->ObjectIsInBootImageSpace(string)) {
430             DCHECK(compiler_options.IsBootImageExtension());
431             desired_load_kind = HLoadString::LoadKind::kBootImageRelRo;
432           } else {
433             desired_load_kind = HLoadString::LoadKind::kBootImageLinkTimePcRelative;
434           }
435         } else {
436           desired_load_kind = HLoadString::LoadKind::kBssEntry;
437         }
438       } else {
439         // Test configuration, do not sharpen.
440         desired_load_kind = HLoadString::LoadKind::kRuntimeCall;
441       }
442     } else if (compiler_options.IsJitCompiler()) {
443       DCHECK(!codegen->GetCompilerOptions().GetCompilePic());
444       string = class_linker->LookupString(string_index, dex_cache.Get());
445       if (string != nullptr) {
446         gc::Heap* heap = runtime->GetHeap();
447         if (heap->ObjectIsInBootImageSpace(string)) {
448           desired_load_kind = HLoadString::LoadKind::kJitBootImageAddress;
449         } else if (runtime->GetJit()->CanEncodeString(
450                   string,
451                   compiler_options.IsJitCompilerForSharedCode())) {
452           desired_load_kind = HLoadString::LoadKind::kJitTableAddress;
453         } else {
454           // Shared JIT code cannot encode a literal that the GC can move.
455           VLOG(jit) << "Unable to encode in shared region string literal: "
456                     << string->ToModifiedUtf8();
457           desired_load_kind = HLoadString::LoadKind::kRuntimeCall;
458         }
459       } else {
460         desired_load_kind = HLoadString::LoadKind::kRuntimeCall;
461       }
462     } else {
463       // AOT app compilation. Try to lookup the string without allocating if not found.
464       string = class_linker->LookupString(string_index, dex_cache.Get());
465       if (string != nullptr && runtime->GetHeap()->ObjectIsInBootImageSpace(string)) {
466         desired_load_kind = HLoadString::LoadKind::kBootImageRelRo;
467       } else {
468         desired_load_kind = HLoadString::LoadKind::kBssEntry;
469       }
470     }
471     if (string != nullptr) {
472       load_string->SetString(handles->NewHandle(string));
473     }
474   }
475   DCHECK_NE(desired_load_kind, static_cast<HLoadString::LoadKind>(-1));
476 
477   HLoadString::LoadKind load_kind = codegen->GetSupportedLoadStringKind(desired_load_kind);
478   load_string->SetLoadKind(load_kind);
479 }
480 
ProcessLoadMethodType(HLoadMethodType * load_method_type,CodeGenerator * codegen,const DexCompilationUnit & dex_compilation_unit,VariableSizedHandleScope * handles)481 void HSharpening::ProcessLoadMethodType(
482     HLoadMethodType* load_method_type,
483     CodeGenerator* codegen,
484     const DexCompilationUnit& dex_compilation_unit,
485     VariableSizedHandleScope* handles) {
486   const CompilerOptions& compiler_options = codegen->GetCompilerOptions();
487 
488   HLoadMethodType::LoadKind desired_load_kind = static_cast<HLoadMethodType::LoadKind>(-1);
489 
490   if (compiler_options.IsJitCompiler()) {
491     DCHECK(!compiler_options.GetCompilePic());
492     Runtime* runtime = Runtime::Current();
493     ClassLinker* class_linker = runtime->GetClassLinker();
494     ScopedObjectAccess soa(Thread::Current());
495     ObjPtr<mirror::MethodType> method_type =
496         class_linker->ResolveMethodType(Thread::Current(),
497                                         load_method_type->GetProtoIndex(),
498                                         dex_compilation_unit.GetDexCache(),
499                                         dex_compilation_unit.GetClassLoader());
500 
501     if (method_type != nullptr) {
502       load_method_type->SetMethodType(handles->NewHandle(method_type));
503       desired_load_kind = HLoadMethodType::LoadKind::kJitTableAddress;
504     } else {
505       DCHECK_EQ(load_method_type->GetLoadKind(), HLoadMethodType::LoadKind::kRuntimeCall);
506       desired_load_kind = HLoadMethodType::LoadKind::kRuntimeCall;
507       Thread::Current()->ClearException();
508     }
509   } else {
510     if (compiler_options.GetCompilePic()) {
511       desired_load_kind = HLoadMethodType::LoadKind::kBssEntry;
512     } else {
513       // Test configuration, do not sharpen.
514       desired_load_kind = HLoadMethodType::LoadKind::kRuntimeCall;
515     }
516   }
517 
518   DCHECK_NE(desired_load_kind, static_cast<HLoadMethodType::LoadKind>(-1));
519   load_method_type->SetLoadKind(desired_load_kind);
520 }
521 
522 }  // namespace art
523