1 /* Copyright (C) 2016 The Android Open Source Project
2 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
3 *
4 * This file implements interfaces from the file jvmti.h. This implementation
5 * is licensed under the same terms as the file jvmti.h. The
6 * copyright and license information for the file jvmti.h follows.
7 *
8 * Copyright (c) 2003, 2011, Oracle and/or its affiliates. All rights reserved.
9 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
10 *
11 * This code is free software; you can redistribute it and/or modify it
12 * under the terms of the GNU General Public License version 2 only, as
13 * published by the Free Software Foundation. Oracle designates this
14 * particular file as subject to the "Classpath" exception as provided
15 * by Oracle in the LICENSE file that accompanied this code.
16 *
17 * This code is distributed in the hope that it will be useful, but WITHOUT
18 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
19 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
20 * version 2 for more details (a copy is included in the LICENSE file that
21 * accompanied this code).
22 *
23 * You should have received a copy of the GNU General Public License version
24 * 2 along with this work; if not, write to the Free Software Foundation,
25 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
26 *
27 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
28 * or visit www.oracle.com if you need additional information or have any
29 * questions.
30 */
31
32 #include "ti_class.h"
33
34 #include "android-base/stringprintf.h"
35
36 #include <mutex>
37 #include <string_view>
38 #include <unordered_set>
39
40 #include "art_jvmti.h"
41 #include "base/array_ref.h"
42 #include "base/logging.h"
43 #include "base/macros.h"
44 #include "base/utils.h"
45 #include "class_linker.h"
46 #include "class_loader_utils.h"
47 #include "class_table-inl.h"
48 #include "common_throws.h"
49 #include "dex/art_dex_file_loader.h"
50 #include "dex/dex_file_annotations.h"
51 #include "dex/dex_file_loader.h"
52 #include "dex/primitive.h"
53 #include "events-inl.h"
54 #include "gc/heap-visit-objects-inl.h"
55 #include "gc/heap.h"
56 #include "gc_root.h"
57 #include "handle.h"
58 #include "hidden_api.h"
59 #include "jni/jni_env_ext-inl.h"
60 #include "jni/jni_internal.h"
61 #include "mirror/array-alloc-inl.h"
62 #include "mirror/array-inl.h"
63 #include "mirror/class-inl.h"
64 #include "mirror/class_ext.h"
65 #include "mirror/object-inl.h"
66 #include "mirror/object-refvisitor-inl.h"
67 #include "mirror/object_array-inl.h"
68 #include "mirror/object_reference.h"
69 #include "mirror/reference-inl.h"
70 #include "nativehelper/scoped_local_ref.h"
71 #include "reflection.h"
72 #include "runtime.h"
73 #include "runtime_callbacks.h"
74 #include "scoped_thread_state_change-inl.h"
75 #include "thread-current-inl.h"
76 #include "thread_list.h"
77 #include "ti_class_definition.h"
78 #include "ti_class_loader-inl.h"
79 #include "ti_logging.h"
80 #include "ti_phase.h"
81 #include "ti_redefine.h"
82 #include "transform.h"
83 #include "well_known_classes-inl.h"
84
85 namespace openjdkjvmti {
86
87 using android::base::StringPrintf;
88
MakeSingleDexFile(art::Thread * self,const char * descriptor,const std::string & orig_location,jint final_len,const unsigned char * final_dex_data)89 static std::unique_ptr<const art::DexFile> MakeSingleDexFile(art::Thread* self,
90 const char* descriptor,
91 const std::string& orig_location,
92 jint final_len,
93 const unsigned char* final_dex_data)
94 REQUIRES_SHARED(art::Locks::mutator_lock_) {
95 // Make the mmap
96 std::string error_msg;
97 art::ArrayRef<const unsigned char> final_data(final_dex_data, final_len);
98 art::MemMap map = Redefiner::MoveDataToMemMap(orig_location, final_data, &error_msg);
99 if (!map.IsValid()) {
100 LOG(WARNING) << "Unable to allocate mmap for redefined dex file! Error was: " << error_msg;
101 self->ThrowOutOfMemoryError(StringPrintf(
102 "Unable to allocate dex file for transformation of %s", descriptor).c_str());
103 return nullptr;
104 }
105
106 // Make a dex-file
107 if (map.Size() < sizeof(art::DexFile::Header)) {
108 LOG(WARNING) << "Could not read dex file header because dex_data was too short";
109 art::ThrowClassFormatError(nullptr,
110 "Unable to read transformed dex file of %s",
111 descriptor);
112 return nullptr;
113 }
114 uint32_t checksum = reinterpret_cast<const art::DexFile::Header*>(map.Begin())->checksum_;
115 std::string map_name = map.GetName();
116 art::ArtDexFileLoader dex_file_loader(std::move(map), map_name);
117 std::unique_ptr<const art::DexFile> dex_file(dex_file_loader.Open(checksum,
118 /*verify=*/true,
119 /*verify_checksum=*/true,
120 &error_msg));
121 if (dex_file.get() == nullptr) {
122 LOG(WARNING) << "Unable to load modified dex file for " << descriptor << ": " << error_msg;
123 art::ThrowClassFormatError(nullptr,
124 "Unable to read transformed dex file of %s because %s",
125 descriptor,
126 error_msg.c_str());
127 return nullptr;
128 }
129 if (dex_file->NumClassDefs() != 1) {
130 LOG(WARNING) << "Dex file contains more than 1 class_def. Ignoring.";
131 // TODO Throw some other sort of error here maybe?
132 art::ThrowClassFormatError(
133 nullptr,
134 "Unable to use transformed dex file of %s because it contained too many classes",
135 descriptor);
136 return nullptr;
137 }
138 return dex_file;
139 }
140
141 // A deleter that acts like the jvmtiEnv->Deallocate so that asan does not get tripped up.
142 // TODO We should everything use the actual jvmtiEnv->Allocate/Deallocate functions once we can
143 // figure out which env to use.
144 template <typename T>
145 class FakeJvmtiDeleter {
146 public:
FakeJvmtiDeleter()147 FakeJvmtiDeleter() {}
148
149 FakeJvmtiDeleter(FakeJvmtiDeleter&) = default;
150 FakeJvmtiDeleter(FakeJvmtiDeleter&&) noexcept = default;
151 FakeJvmtiDeleter& operator=(const FakeJvmtiDeleter&) = default;
152
operator ()(const U * ptr) const153 template <typename U> void operator()(const U* ptr) const {
154 if (ptr != nullptr) {
155 free(const_cast<U*>(ptr));
156 }
157 }
158 };
159
160 struct ClassCallback : public art::ClassLoadCallback {
ClassPreDefineopenjdkjvmti::ClassCallback161 void ClassPreDefine(const char* descriptor,
162 art::Handle<art::mirror::Class> klass,
163 art::Handle<art::mirror::ClassLoader> class_loader,
164 const art::DexFile& initial_dex_file,
165 [[maybe_unused]] const art::dex::ClassDef& initial_class_def,
166 /*out*/ art::DexFile const** final_dex_file,
167 /*out*/ art::dex::ClassDef const** final_class_def) override
168 REQUIRES_SHARED(art::Locks::mutator_lock_) {
169 bool is_enabled =
170 event_handler->IsEventEnabledAnywhere(ArtJvmtiEvent::kClassFileLoadHookRetransformable) ||
171 event_handler->IsEventEnabledAnywhere(ArtJvmtiEvent::kClassFileLoadHookNonRetransformable);
172 if (!is_enabled) {
173 return;
174 }
175 if (descriptor[0] != 'L') {
176 // It is a primitive or array. Just return
177 return;
178 }
179 jvmtiPhase phase = PhaseUtil::GetPhaseUnchecked();
180 if (UNLIKELY(phase != JVMTI_PHASE_START && phase != JVMTI_PHASE_LIVE)) {
181 // We want to wait until we are at least in the START phase so that all WellKnownClasses and
182 // mirror classes have been initialized and loaded. The runtime relies on these classes having
183 // specific fields and methods present. Since PreDefine hooks don't need to abide by this
184 // restriction we will simply not send the event for these classes.
185 LOG(WARNING) << "Ignoring load of class <" << descriptor << "> as it is being loaded during "
186 << "runtime initialization.";
187 return;
188 }
189
190 art::Thread* self = art::Thread::Current();
191 ArtClassDefinition def;
192 def.InitFirstLoad(descriptor, class_loader, initial_dex_file);
193
194 // Call all non-retransformable agents.
195 Transformer::CallClassFileLoadHooksSingleClass<
196 ArtJvmtiEvent::kClassFileLoadHookNonRetransformable>(event_handler, self, &def);
197
198 std::vector<unsigned char> post_non_retransform;
199 if (def.IsModified()) {
200 // Copy the dex data after the non-retransformable events.
201 post_non_retransform.resize(def.GetDexData().size());
202 memcpy(post_non_retransform.data(), def.GetDexData().data(), post_non_retransform.size());
203 }
204
205 // Call all structural transformation agents.
206 Transformer::CallClassFileLoadHooksSingleClass<ArtJvmtiEvent::kStructuralDexFileLoadHook>(
207 event_handler, self, &def);
208 // Call all retransformable agents.
209 Transformer::CallClassFileLoadHooksSingleClass<
210 ArtJvmtiEvent::kClassFileLoadHookRetransformable>(event_handler, self, &def);
211
212 if (def.IsModified()) {
213 VLOG(class_linker) << "Changing class " << descriptor;
214 art::StackHandleScope<2> hs(self);
215 // Save the results of all the non-retransformable agents.
216 // First allocate the ClassExt
217 art::Handle<art::mirror::ClassExt> ext =
218 hs.NewHandle(art::mirror::Class::EnsureExtDataPresent(klass, self));
219 // Make sure we have a ClassExt. This is fine even though we are a temporary since it will
220 // get copied.
221 if (ext.IsNull()) {
222 // We will just return failure if we fail to allocate
223 LOG(WARNING) << "Could not allocate ext-data for class '" << descriptor << "'. "
224 << "Aborting transformation since we will be unable to store it.";
225 self->AssertPendingOOMException();
226 return;
227 }
228
229 // Allocate the byte array to store the dex file bytes in.
230 art::MutableHandle<art::mirror::Object> arr(hs.NewHandle<art::mirror::Object>(nullptr));
231 if (post_non_retransform.empty() && strcmp(descriptor, "Ljava/lang/Long;") != 0) {
232 // we didn't have any non-retransformable agents. We can just cache a pointer to the
233 // initial_dex_file. It will be kept live by the class_loader.
234 jlong dex_ptr = reinterpret_cast<uintptr_t>(&initial_dex_file);
235 art::JValue val;
236 val.SetJ(dex_ptr);
237 arr.Assign(art::BoxPrimitive(art::Primitive::kPrimLong, val));
238 } else {
239 arr.Assign(art::mirror::ByteArray::AllocateAndFill(
240 self,
241 reinterpret_cast<const signed char*>(post_non_retransform.data()),
242 post_non_retransform.size()));
243 }
244 if (arr.IsNull()) {
245 LOG(WARNING) << "Unable to allocate memory for initial dex-file. Aborting transformation";
246 self->AssertPendingOOMException();
247 return;
248 }
249
250 std::unique_ptr<const art::DexFile> dex_file(MakeSingleDexFile(self,
251 descriptor,
252 initial_dex_file.GetLocation(),
253 def.GetDexData().size(),
254 def.GetDexData().data()));
255 if (dex_file.get() == nullptr) {
256 return;
257 }
258
259 // TODO Check Redefined dex file for all invariants.
260 LOG(WARNING) << "Dex file created by class-definition time transformation of "
261 << descriptor << " is not checked for all retransformation invariants.";
262
263 if (!ClassLoaderHelper::AddToClassLoader(self, class_loader, dex_file.get())) {
264 LOG(ERROR) << "Unable to add " << descriptor << " to class loader!";
265 return;
266 }
267
268 // Actually set the ClassExt's original bytes once we have actually succeeded.
269 ext->SetOriginalDexFile(arr.Get());
270 // Set the return values
271 *final_class_def = &dex_file->GetClassDef(0);
272 *final_dex_file = dex_file.release();
273 }
274 }
275
ClassLoadopenjdkjvmti::ClassCallback276 void ClassLoad(art::Handle<art::mirror::Class> klass) override
277 REQUIRES_SHARED(art::Locks::mutator_lock_) {
278 if (event_handler->IsEventEnabledAnywhere(ArtJvmtiEvent::kClassLoad)) {
279 art::Thread* thread = art::Thread::Current();
280 ScopedLocalRef<jclass> jklass(thread->GetJniEnv(),
281 thread->GetJniEnv()->AddLocalReference<jclass>(klass.Get()));
282 art::ObjPtr<art::mirror::Object> peer(thread->GetPeer());
283 ScopedLocalRef<jthread> thread_jni(
284 thread->GetJniEnv(),
285 peer.IsNull() ? nullptr : thread->GetJniEnv()->AddLocalReference<jthread>(peer));
286 event_handler->DispatchEvent<ArtJvmtiEvent::kClassLoad>(
287 thread,
288 static_cast<JNIEnv*>(thread->GetJniEnv()),
289 thread_jni.get(),
290 jklass.get());
291 if (klass->IsTemp()) {
292 AddTempClass(thread, jklass.get());
293 }
294 }
295 }
296
ClassPrepareopenjdkjvmti::ClassCallback297 void ClassPrepare(art::Handle<art::mirror::Class> temp_klass,
298 art::Handle<art::mirror::Class> klass)
299 override REQUIRES_SHARED(art::Locks::mutator_lock_) {
300 if (event_handler->IsEventEnabledAnywhere(ArtJvmtiEvent::kClassPrepare)) {
301 art::Thread* thread = art::Thread::Current();
302 if (temp_klass.Get() != klass.Get()) {
303 DCHECK(temp_klass->IsTemp());
304 DCHECK(temp_klass->IsRetired());
305 HandleTempClass(thread, temp_klass, klass);
306 }
307 ScopedLocalRef<jclass> jklass(thread->GetJniEnv(),
308 thread->GetJniEnv()->AddLocalReference<jclass>(klass.Get()));
309 art::ObjPtr<art::mirror::Object> peer(thread->GetPeer());
310 ScopedLocalRef<jthread> thread_jni(
311 thread->GetJniEnv(),
312 peer.IsNull() ? nullptr : thread->GetJniEnv()->AddLocalReference<jthread>(peer));
313 event_handler->DispatchEvent<ArtJvmtiEvent::kClassPrepare>(
314 thread,
315 static_cast<JNIEnv*>(thread->GetJniEnv()),
316 thread_jni.get(),
317 jklass.get());
318 }
319 }
320
321 // To support parallel class-loading, we need to perform some locking dances here. Namely,
322 // the fixup stage must not be holding the temp_classes lock when it fixes up the system
323 // (as that requires suspending all mutators).
324
AddTempClassopenjdkjvmti::ClassCallback325 void AddTempClass(art::Thread* self, jclass klass) {
326 std::unique_lock<std::mutex> mu(temp_classes_lock);
327 jclass global_klass = reinterpret_cast<jclass>(self->GetJniEnv()->NewGlobalRef(klass));
328 temp_classes.push_back(global_klass);
329 }
330
HandleTempClassopenjdkjvmti::ClassCallback331 void HandleTempClass(art::Thread* self,
332 art::Handle<art::mirror::Class> temp_klass,
333 art::Handle<art::mirror::Class> klass)
334 REQUIRES_SHARED(art::Locks::mutator_lock_) {
335 bool requires_fixup = false;
336 {
337 std::unique_lock<std::mutex> mu(temp_classes_lock);
338 if (temp_classes.empty()) {
339 return;
340 }
341
342 for (auto it = temp_classes.begin(); it != temp_classes.end(); ++it) {
343 if (temp_klass.Get() == art::ObjPtr<art::mirror::Class>::DownCast(self->DecodeJObject(*it))) {
344 self->GetJniEnv()->DeleteGlobalRef(*it);
345 temp_classes.erase(it);
346 requires_fixup = true;
347 break;
348 }
349 }
350 }
351 if (requires_fixup) {
352 FixupTempClass(self, temp_klass, klass);
353 }
354 }
355
FixupTempClassopenjdkjvmti::ClassCallback356 void FixupTempClass(art::Thread* self,
357 art::Handle<art::mirror::Class> temp_klass,
358 art::Handle<art::mirror::Class> klass)
359 REQUIRES_SHARED(art::Locks::mutator_lock_) {
360 // Suspend everything.
361 art::gc::Heap* heap = art::Runtime::Current()->GetHeap();
362 if (heap->IsGcConcurrentAndMoving()) {
363 // Need to take a heap dump while GC isn't running. See the
364 // comment in Heap::VisitObjects().
365 heap->IncrementDisableMovingGC(self);
366 }
367 {
368 art::ScopedThreadSuspension sts(self, art::ThreadState::kWaitingForVisitObjects);
369 art::ScopedSuspendAll ssa("FixupTempClass");
370
371 art::mirror::Class* input = temp_klass.Get();
372 art::mirror::Class* output = klass.Get();
373
374 FixupGlobalReferenceTables(input, output);
375 FixupLocalReferenceTables(self, input, output);
376 FixupHeap(input, output);
377 }
378 if (heap->IsGcConcurrentAndMoving()) {
379 heap->DecrementDisableMovingGC(self);
380 }
381 }
382
383 class RootUpdater : public art::RootVisitor {
384 public:
RootUpdater(const art::mirror::Class * input,art::mirror::Class * output)385 RootUpdater(const art::mirror::Class* input, art::mirror::Class* output)
386 : input_(input), output_(output) {}
387
VisitRoots(art::mirror::Object *** roots,size_t count,const art::RootInfo & info)388 void VisitRoots(art::mirror::Object*** roots,
389 size_t count,
390 [[maybe_unused]] const art::RootInfo& info) override {
391 for (size_t i = 0; i != count; ++i) {
392 if (*roots[i] == input_) {
393 *roots[i] = output_;
394 }
395 }
396 }
397
VisitRoots(art::mirror::CompressedReference<art::mirror::Object> ** roots,size_t count,const art::RootInfo & info)398 void VisitRoots(art::mirror::CompressedReference<art::mirror::Object>** roots,
399 size_t count,
400 [[maybe_unused]] const art::RootInfo& info) override
401 REQUIRES_SHARED(art::Locks::mutator_lock_) {
402 for (size_t i = 0; i != count; ++i) {
403 if (roots[i]->AsMirrorPtr() == input_) {
404 roots[i]->Assign(output_);
405 }
406 }
407 }
408
409 private:
410 const art::mirror::Class* input_;
411 art::mirror::Class* output_;
412 };
413
FixupGlobalReferenceTablesopenjdkjvmti::ClassCallback414 void FixupGlobalReferenceTables(art::mirror::Class* input, art::mirror::Class* output)
415 REQUIRES(art::Locks::mutator_lock_) {
416 art::JavaVMExt* java_vm = art::Runtime::Current()->GetJavaVM();
417
418 // Fix up the global table with a root visitor.
419 RootUpdater global_update(input, output);
420 java_vm->VisitRoots(&global_update);
421
422 class WeakGlobalUpdate : public art::IsMarkedVisitor {
423 public:
424 WeakGlobalUpdate(art::mirror::Class* root_input, art::mirror::Class* root_output)
425 : input_(root_input), output_(root_output) {}
426
427 art::mirror::Object* IsMarked(art::mirror::Object* obj) override {
428 if (obj == input_) {
429 return output_;
430 }
431 return obj;
432 }
433
434 private:
435 const art::mirror::Class* input_;
436 art::mirror::Class* output_;
437 };
438 WeakGlobalUpdate weak_global_update(input, output);
439 java_vm->SweepJniWeakGlobals(&weak_global_update);
440 }
441
FixupLocalReferenceTablesopenjdkjvmti::ClassCallback442 void FixupLocalReferenceTables(art::Thread* self,
443 art::mirror::Class* input,
444 art::mirror::Class* output)
445 REQUIRES(art::Locks::mutator_lock_) {
446 class LocalUpdate {
447 public:
448 LocalUpdate(const art::mirror::Class* root_input, art::mirror::Class* root_output)
449 : input_(root_input), output_(root_output) {}
450
451 static void Callback(art::Thread* t, void* arg) REQUIRES(art::Locks::mutator_lock_) {
452 LocalUpdate* local = reinterpret_cast<LocalUpdate*>(arg);
453
454 // Fix up the local table with a root visitor.
455 RootUpdater local_update(local->input_, local->output_);
456 t->GetJniEnv()->VisitJniLocalRoots(
457 &local_update, art::RootInfo(art::kRootJNILocal, t->GetThreadId()));
458 }
459
460 private:
461 const art::mirror::Class* input_;
462 art::mirror::Class* output_;
463 };
464 LocalUpdate local_upd(input, output);
465 art::MutexLock mu(self, *art::Locks::thread_list_lock_);
466 art::Runtime::Current()->GetThreadList()->ForEach(LocalUpdate::Callback, &local_upd);
467 }
468
FixupHeapopenjdkjvmti::ClassCallback469 void FixupHeap(art::mirror::Class* input, art::mirror::Class* output)
470 REQUIRES(art::Locks::mutator_lock_) {
471 class HeapFixupVisitor {
472 public:
473 HeapFixupVisitor(const art::mirror::Class* root_input, art::mirror::Class* root_output)
474 : input_(root_input), output_(root_output) {}
475
476 void operator()(art::mirror::Object* src,
477 art::MemberOffset field_offset,
478 [[maybe_unused]] bool is_static) const
479 REQUIRES_SHARED(art::Locks::mutator_lock_) {
480 art::mirror::HeapReference<art::mirror::Object>* trg =
481 src->GetFieldObjectReferenceAddr(field_offset);
482 if (trg->AsMirrorPtr() == input_) {
483 DCHECK_NE(field_offset.Uint32Value(), 0u); // This shouldn't be the class field of
484 // an object.
485 trg->Assign(output_);
486 }
487 }
488
489 void operator()([[maybe_unused]] art::ObjPtr<art::mirror::Class> klass,
490 art::ObjPtr<art::mirror::Reference> reference) const
491 REQUIRES_SHARED(art::Locks::mutator_lock_) {
492 art::mirror::Object* val = reference->GetReferent();
493 if (val == input_) {
494 reference->SetReferent<false>(output_);
495 }
496 }
497
498 void VisitRoot(
499 [[maybe_unused]] art::mirror::CompressedReference<art::mirror::Object>* root) const {
500 LOG(FATAL) << "Unreachable";
501 }
502
503 void VisitRootIfNonNull(
504 [[maybe_unused]] art::mirror::CompressedReference<art::mirror::Object>* root) const {
505 LOG(FATAL) << "Unreachable";
506 }
507
508 private:
509 const art::mirror::Class* input_;
510 art::mirror::Class* output_;
511 };
512 HeapFixupVisitor hfv(input, output);
513 auto object_visitor = [&](art::mirror::Object* obj) {
514 obj->VisitReferences<false>(hfv, hfv); // Visit references, not native roots.
515 };
516 art::Runtime::Current()->GetHeap()->VisitObjectsPaused(object_visitor);
517 }
518
519 // A set of all the temp classes we have handed out. We have to fix up references to these.
520 // For simplicity, we store the temp classes as JNI global references in a vector. Normally a
521 // Prepare event will closely follow, so the vector should be small.
522 std::mutex temp_classes_lock;
523 std::vector<jclass> temp_classes;
524
525 EventHandler* event_handler = nullptr;
526 };
527
528 ClassCallback gClassCallback;
529
Register(EventHandler * handler)530 void ClassUtil::Register(EventHandler* handler) {
531 gClassCallback.event_handler = handler;
532 art::ScopedThreadStateChange stsc(art::Thread::Current(),
533 art::ThreadState::kWaitingForDebuggerToAttach);
534 art::ScopedSuspendAll ssa("Add load callback");
535 art::Runtime::Current()->GetRuntimeCallbacks()->AddClassLoadCallback(&gClassCallback);
536 }
537
Unregister()538 void ClassUtil::Unregister() {
539 art::ScopedThreadStateChange stsc(art::Thread::Current(),
540 art::ThreadState::kWaitingForDebuggerToAttach);
541 art::ScopedSuspendAll ssa("Remove thread callback");
542 art::Runtime* runtime = art::Runtime::Current();
543 runtime->GetRuntimeCallbacks()->RemoveClassLoadCallback(&gClassCallback);
544 }
545
GetClassFields(jvmtiEnv * env,jclass jklass,jint * field_count_ptr,jfieldID ** fields_ptr)546 jvmtiError ClassUtil::GetClassFields(jvmtiEnv* env,
547 jclass jklass,
548 jint* field_count_ptr,
549 jfieldID** fields_ptr) {
550 art::ScopedObjectAccess soa(art::Thread::Current());
551 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
552 if (klass == nullptr) {
553 return ERR(INVALID_CLASS);
554 }
555
556 // Check if this class is a temporary class object used for loading. Since we are seeing it the
557 // class must not have been prepared yet since otherwise the fixup would have gotten the jobject
558 // to point to the final class object.
559 if (klass->IsTemp() || klass->IsRetired()) {
560 return ERR(CLASS_NOT_PREPARED);
561 }
562
563 if (field_count_ptr == nullptr || fields_ptr == nullptr) {
564 return ERR(NULL_POINTER);
565 }
566
567 art::IterationRange<art::StrideIterator<art::ArtField>> fields = klass->GetFields();
568 size_t array_size = klass->NumFields();
569
570 unsigned char* out_ptr;
571 jvmtiError allocError = env->Allocate(array_size * sizeof(jfieldID), &out_ptr);
572 if (allocError != ERR(NONE)) {
573 return allocError;
574 }
575 jfieldID* field_array = reinterpret_cast<jfieldID*>(out_ptr);
576
577 size_t array_idx = 0;
578 for (art::ArtField& field : fields) {
579 field_array[array_idx] = art::jni::EncodeArtField(&field);
580 ++array_idx;
581 }
582
583 *field_count_ptr = static_cast<jint>(array_size);
584 *fields_ptr = field_array;
585
586 return ERR(NONE);
587 }
588
GetClassMethods(jvmtiEnv * env,jclass jklass,jint * method_count_ptr,jmethodID ** methods_ptr)589 jvmtiError ClassUtil::GetClassMethods(jvmtiEnv* env,
590 jclass jklass,
591 jint* method_count_ptr,
592 jmethodID** methods_ptr) {
593 art::ScopedObjectAccess soa(art::Thread::Current());
594 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
595 if (klass == nullptr) {
596 return ERR(INVALID_CLASS);
597 }
598
599 // Check if this class is a temporary class object used for loading. Since we are seeing it the
600 // class must not have been prepared yet since otherwise the fixup would have gotten the jobject
601 // to point to the final class object.
602 if (klass->IsTemp() || klass->IsRetired()) {
603 return ERR(CLASS_NOT_PREPARED);
604 }
605
606 if (method_count_ptr == nullptr || methods_ptr == nullptr) {
607 return ERR(NULL_POINTER);
608 }
609
610 size_t array_size = klass->NumDeclaredVirtualMethods() + klass->NumDirectMethods();
611 unsigned char* out_ptr;
612 jvmtiError allocError = env->Allocate(array_size * sizeof(jmethodID), &out_ptr);
613 if (allocError != ERR(NONE)) {
614 return allocError;
615 }
616 jmethodID* method_array = reinterpret_cast<jmethodID*>(out_ptr);
617
618 if (art::kIsDebugBuild) {
619 size_t count = 0;
620 for ([[maybe_unused]] auto& m : klass->GetDeclaredMethods(art::kRuntimePointerSize)) {
621 count++;
622 }
623 CHECK_EQ(count, klass->NumDirectMethods() + klass->NumDeclaredVirtualMethods());
624 }
625
626 size_t array_idx = 0;
627 for (auto& m : klass->GetDeclaredMethods(art::kRuntimePointerSize)) {
628 method_array[array_idx] = art::jni::EncodeArtMethod(&m);
629 ++array_idx;
630 }
631
632 *method_count_ptr = static_cast<jint>(array_size);
633 *methods_ptr = method_array;
634
635 return ERR(NONE);
636 }
637
GetImplementedInterfaces(jvmtiEnv * env,jclass jklass,jint * interface_count_ptr,jclass ** interfaces_ptr)638 jvmtiError ClassUtil::GetImplementedInterfaces(jvmtiEnv* env,
639 jclass jklass,
640 jint* interface_count_ptr,
641 jclass** interfaces_ptr) {
642 art::ScopedObjectAccess soa(art::Thread::Current());
643 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
644 if (klass == nullptr) {
645 return ERR(INVALID_CLASS);
646 }
647
648 if (interface_count_ptr == nullptr || interfaces_ptr == nullptr) {
649 return ERR(NULL_POINTER);
650 }
651
652 // Need to handle array specifically. Arrays implement Serializable and Cloneable, but the
653 // spec says these should not be reported.
654 if (klass->IsArrayClass()) {
655 *interface_count_ptr = 0;
656 *interfaces_ptr = nullptr; // TODO: Should we allocate a placeholder here?
657 return ERR(NONE);
658 }
659
660 size_t array_size = klass->NumDirectInterfaces();
661 unsigned char* out_ptr;
662 jvmtiError allocError = env->Allocate(array_size * sizeof(jclass), &out_ptr);
663 if (allocError != ERR(NONE)) {
664 return allocError;
665 }
666 jclass* interface_array = reinterpret_cast<jclass*>(out_ptr);
667
668 art::StackHandleScope<1> hs(soa.Self());
669 art::Handle<art::mirror::Class> h_klass(hs.NewHandle(klass));
670
671 for (uint32_t idx = 0; idx != array_size; ++idx) {
672 art::ObjPtr<art::mirror::Class> inf_klass =
673 art::mirror::Class::ResolveDirectInterface(soa.Self(), h_klass, idx);
674 if (inf_klass == nullptr) {
675 soa.Self()->ClearException();
676 env->Deallocate(out_ptr);
677 // TODO: What is the right error code here?
678 return ERR(INTERNAL);
679 }
680 interface_array[idx] = soa.AddLocalReference<jclass>(inf_klass);
681 }
682
683 *interface_count_ptr = static_cast<jint>(array_size);
684 *interfaces_ptr = interface_array;
685
686 return ERR(NONE);
687 }
688
GetClassSignature(jvmtiEnv * env,jclass jklass,char ** signature_ptr,char ** generic_ptr)689 jvmtiError ClassUtil::GetClassSignature(jvmtiEnv* env,
690 jclass jklass,
691 char** signature_ptr,
692 char** generic_ptr) {
693 art::ScopedObjectAccess soa(art::Thread::Current());
694 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
695 if (klass == nullptr) {
696 return ERR(INVALID_CLASS);
697 }
698
699 JvmtiUniquePtr<char[]> sig_copy;
700 if (signature_ptr != nullptr) {
701 std::string storage;
702 const char* descriptor = klass->GetDescriptor(&storage);
703
704 jvmtiError ret;
705 sig_copy = CopyString(env, descriptor, &ret);
706 if (sig_copy == nullptr) {
707 return ret;
708 }
709 *signature_ptr = sig_copy.get();
710 }
711
712 if (generic_ptr != nullptr) {
713 *generic_ptr = nullptr;
714 if (!klass->IsProxyClass() && klass->GetDexCache() != nullptr) {
715 art::StackHandleScope<1> hs(soa.Self());
716 art::Handle<art::mirror::Class> h_klass = hs.NewHandle(klass);
717 art::ObjPtr<art::mirror::ObjectArray<art::mirror::String>> str_array =
718 art::annotations::GetSignatureAnnotationForClass(h_klass);
719 if (str_array != nullptr) {
720 std::ostringstream oss;
721 for (auto str : str_array->Iterate()) {
722 oss << str->ToModifiedUtf8();
723 }
724 std::string output_string = oss.str();
725 jvmtiError ret;
726 JvmtiUniquePtr<char[]> copy = CopyString(env, output_string.c_str(), &ret);
727 if (copy == nullptr) {
728 return ret;
729 }
730 *generic_ptr = copy.release();
731 } else if (soa.Self()->IsExceptionPending()) {
732 // TODO: Should we report an error here?
733 soa.Self()->ClearException();
734 }
735 }
736 }
737
738 // Everything is fine, release the buffers.
739 sig_copy.release();
740
741 return ERR(NONE);
742 }
743
GetClassStatus(jvmtiEnv * env,jclass jklass,jint * status_ptr)744 jvmtiError ClassUtil::GetClassStatus([[maybe_unused]] jvmtiEnv* env,
745 jclass jklass,
746 jint* status_ptr) {
747 art::ScopedObjectAccess soa(art::Thread::Current());
748 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
749 if (klass == nullptr) {
750 return ERR(INVALID_CLASS);
751 }
752
753 if (status_ptr == nullptr) {
754 return ERR(NULL_POINTER);
755 }
756
757 if (klass->IsArrayClass()) {
758 *status_ptr = JVMTI_CLASS_STATUS_ARRAY;
759 } else if (klass->IsPrimitive()) {
760 *status_ptr = JVMTI_CLASS_STATUS_PRIMITIVE;
761 } else {
762 *status_ptr = JVMTI_CLASS_STATUS_VERIFIED; // All loaded classes are structurally verified.
763 // This is finicky. If there's an error, we'll say it wasn't prepared.
764 if (klass->IsResolved()) {
765 *status_ptr |= JVMTI_CLASS_STATUS_PREPARED;
766 }
767 if (klass->IsInitialized()) {
768 *status_ptr |= JVMTI_CLASS_STATUS_INITIALIZED;
769 }
770 // Technically the class may be erroneous for other reasons, but we do not have enough info.
771 if (klass->IsErroneous()) {
772 *status_ptr |= JVMTI_CLASS_STATUS_ERROR;
773 }
774 }
775
776 return ERR(NONE);
777 }
778
779 template <typename T>
ClassIsT(jclass jklass,T test,jboolean * is_t_ptr)780 static jvmtiError ClassIsT(jclass jklass, T test, jboolean* is_t_ptr) {
781 art::ScopedObjectAccess soa(art::Thread::Current());
782 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
783 if (klass == nullptr) {
784 return ERR(INVALID_CLASS);
785 }
786
787 if (is_t_ptr == nullptr) {
788 return ERR(NULL_POINTER);
789 }
790
791 *is_t_ptr = test(klass) ? JNI_TRUE : JNI_FALSE;
792 return ERR(NONE);
793 }
794
IsInterface(jvmtiEnv * env,jclass jklass,jboolean * is_interface_ptr)795 jvmtiError ClassUtil::IsInterface([[maybe_unused]] jvmtiEnv* env,
796 jclass jklass,
797 jboolean* is_interface_ptr) {
798 auto test = [](art::ObjPtr<art::mirror::Class> klass) REQUIRES_SHARED(art::Locks::mutator_lock_) {
799 return klass->IsInterface();
800 };
801 return ClassIsT(jklass, test, is_interface_ptr);
802 }
803
IsArrayClass(jvmtiEnv * env,jclass jklass,jboolean * is_array_class_ptr)804 jvmtiError ClassUtil::IsArrayClass([[maybe_unused]] jvmtiEnv* env,
805 jclass jklass,
806 jboolean* is_array_class_ptr) {
807 auto test = [](art::ObjPtr<art::mirror::Class> klass) REQUIRES_SHARED(art::Locks::mutator_lock_) {
808 return klass->IsArrayClass();
809 };
810 return ClassIsT(jklass, test, is_array_class_ptr);
811 }
812
813 // Keep this in sync with Class.getModifiers().
ClassGetModifiers(art::Thread * self,art::ObjPtr<art::mirror::Class> klass)814 static uint32_t ClassGetModifiers(art::Thread* self, art::ObjPtr<art::mirror::Class> klass)
815 REQUIRES_SHARED(art::Locks::mutator_lock_) {
816 if (klass->IsArrayClass()) {
817 uint32_t component_modifiers = ClassGetModifiers(self, klass->GetComponentType());
818 if ((component_modifiers & art::kAccInterface) != 0) {
819 component_modifiers &= ~(art::kAccInterface | art::kAccStatic);
820 }
821 return art::kAccAbstract | art::kAccFinal | component_modifiers;
822 }
823
824 uint32_t modifiers = klass->GetAccessFlags() & art::kAccJavaFlagsMask;
825
826 art::StackHandleScope<1> hs(self);
827 art::Handle<art::mirror::Class> h_klass(hs.NewHandle(klass));
828 return art::mirror::Class::GetInnerClassFlags(h_klass, modifiers);
829 }
830
GetClassModifiers(jvmtiEnv * env,jclass jklass,jint * modifiers_ptr)831 jvmtiError ClassUtil::GetClassModifiers([[maybe_unused]] jvmtiEnv* env,
832 jclass jklass,
833 jint* modifiers_ptr) {
834 art::ScopedObjectAccess soa(art::Thread::Current());
835 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
836 if (klass == nullptr) {
837 return ERR(INVALID_CLASS);
838 }
839
840 if (modifiers_ptr == nullptr) {
841 return ERR(NULL_POINTER);
842 }
843
844 *modifiers_ptr = ClassGetModifiers(soa.Self(), klass);
845
846 return ERR(NONE);
847 }
848
GetClassLoader(jvmtiEnv * env,jclass jklass,jobject * classloader_ptr)849 jvmtiError ClassUtil::GetClassLoader([[maybe_unused]] jvmtiEnv* env,
850 jclass jklass,
851 jobject* classloader_ptr) {
852 art::ScopedObjectAccess soa(art::Thread::Current());
853 art::ObjPtr<art::mirror::Class> klass = soa.Decode<art::mirror::Class>(jklass);
854 if (klass == nullptr) {
855 return ERR(INVALID_CLASS);
856 }
857
858 if (classloader_ptr == nullptr) {
859 return ERR(NULL_POINTER);
860 }
861
862 *classloader_ptr = soa.AddLocalReference<jobject>(klass->GetClassLoader());
863
864 return ERR(NONE);
865 }
866
867 // Copies unique class descriptors into the classes list from dex_files.
CopyClassDescriptors(jvmtiEnv * env,const std::vector<const art::DexFile * > & dex_files,jint * count_ptr,char *** classes)868 static jvmtiError CopyClassDescriptors(jvmtiEnv* env,
869 const std::vector<const art::DexFile*>& dex_files,
870 /*out*/jint* count_ptr,
871 /*out*/char*** classes) {
872 jvmtiError res = OK;
873 std::set<std::string_view> unique_descriptors;
874 std::vector<const char*> descriptors;
875 auto add_descriptor = [&](const char* desc) {
876 // Don't add duplicates.
877 if (res == OK && unique_descriptors.find(desc) == unique_descriptors.end()) {
878 // The desc will remain valid since we hold a ref to the class_loader.
879 unique_descriptors.insert(desc);
880 descriptors.push_back(CopyString(env, desc, &res).release());
881 }
882 };
883 for (const art::DexFile* dex_file : dex_files) {
884 uint32_t num_defs = dex_file->NumClassDefs();
885 for (uint32_t i = 0; i < num_defs; i++) {
886 add_descriptor(dex_file->GetClassDescriptor(dex_file->GetClassDef(i)));
887 }
888 }
889 char** out_data = nullptr;
890 if (res == OK) {
891 res = env->Allocate(sizeof(char*) * descriptors.size(),
892 reinterpret_cast<unsigned char**>(&out_data));
893 }
894 if (res != OK) {
895 env->Deallocate(reinterpret_cast<unsigned char*>(out_data));
896 // Failed to allocate. Cleanup everything.
897 for (const char* data : descriptors) {
898 env->Deallocate(reinterpret_cast<unsigned char*>(const_cast<char*>(data)));
899 }
900 descriptors.clear();
901 return res;
902 }
903 // Everything is good.
904 memcpy(out_data, descriptors.data(), sizeof(char*) * descriptors.size());
905 *count_ptr = static_cast<jint>(descriptors.size());
906 *classes = out_data;
907 return OK;
908 }
909
GetClassLoaderClassDescriptors(jvmtiEnv * env,jobject loader,jint * count_ptr,char *** classes)910 jvmtiError ClassUtil::GetClassLoaderClassDescriptors(jvmtiEnv* env,
911 jobject loader,
912 /*out*/jint* count_ptr,
913 /*out*/char*** classes) {
914 art::Thread* self = art::Thread::Current();
915 if (env == nullptr) {
916 return ERR(INVALID_ENVIRONMENT);
917 } else if (self == nullptr) {
918 return ERR(UNATTACHED_THREAD);
919 } else if (count_ptr == nullptr || classes == nullptr) {
920 return ERR(NULL_POINTER);
921 }
922 std::vector<const art::DexFile*> dex_files_storage;
923 const std::vector<const art::DexFile*>* dex_files = nullptr;
924 if (loader == nullptr) {
925 // We can just get the dex files directly for the boot class path.
926 dex_files = &art::Runtime::Current()->GetClassLinker()->GetBootClassPath();
927 } else {
928 art::ScopedObjectAccess soa(self);
929 art::StackHandleScope<1> hs(self);
930 art::Handle<art::mirror::ClassLoader> class_loader(
931 hs.NewHandle(soa.Decode<art::mirror::ClassLoader>(loader)));
932 if (class_loader->InstanceOf(art::WellKnownClasses::java_lang_BootClassLoader.Get())) {
933 // We can just get the dex files directly for the boot class path.
934 dex_files = &art::Runtime::Current()->GetClassLinker()->GetBootClassPath();
935 } else if (!class_loader->InstanceOf(art::WellKnownClasses::java_lang_ClassLoader.Get())) {
936 return ERR(ILLEGAL_ARGUMENT);
937 } else if (!class_loader->InstanceOf(
938 art::WellKnownClasses::dalvik_system_BaseDexClassLoader.Get())) {
939 JVMTI_LOG(ERROR, env) << "GetClassLoaderClassDescriptors is only implemented for "
940 << "BootClassPath and dalvik.system.BaseDexClassLoader class loaders";
941 // TODO Possibly return OK With no classes would be better since these ones cannot have any
942 // real classes associated with them.
943 return ERR(NOT_IMPLEMENTED);
944 } else {
945 art::VisitClassLoaderDexFiles(
946 self,
947 class_loader,
948 [&](const art::DexFile* dex_file) {
949 dex_files_storage.push_back(dex_file);
950 return true; // Continue with other dex files.
951 });
952 dex_files = &dex_files_storage;
953 }
954 }
955 // We hold the loader so the dex files won't go away until after this call at worst.
956 DCHECK(dex_files != nullptr);
957 return CopyClassDescriptors(env, *dex_files, count_ptr, classes);
958 }
959
GetClassLoaderClasses(jvmtiEnv * env,jobject initiating_loader,jint * class_count_ptr,jclass ** classes_ptr)960 jvmtiError ClassUtil::GetClassLoaderClasses(jvmtiEnv* env,
961 jobject initiating_loader,
962 jint* class_count_ptr,
963 jclass** classes_ptr) {
964 UNUSED(env, initiating_loader, class_count_ptr, classes_ptr);
965
966 if (class_count_ptr == nullptr || classes_ptr == nullptr) {
967 return ERR(NULL_POINTER);
968 }
969 art::Thread* self = art::Thread::Current();
970 art::ScopedObjectAccess soa(self);
971 art::ObjPtr<art::mirror::ClassLoader> class_loader =
972 soa.Decode<art::mirror::ClassLoader>(initiating_loader);
973 if (class_loader == nullptr) {
974 // Keep null, meaning the boot class loader.
975 } else if (!class_loader->InstanceOf(art::WellKnownClasses::java_lang_ClassLoader.Get())) {
976 return ERR(ILLEGAL_ARGUMENT);
977 } else if (class_loader->InstanceOf(art::WellKnownClasses::java_lang_BootClassLoader.Get())) {
978 // Need to use null for the BootClassLoader.
979 class_loader = nullptr;
980 }
981
982 art::ClassLinker* class_linker = art::Runtime::Current()->GetClassLinker();
983
984 art::ReaderMutexLock mu(self, *art::Locks::classlinker_classes_lock_);
985
986 art::ClassTable* class_table = class_linker->ClassTableForClassLoader(class_loader);
987 if (class_table == nullptr) {
988 // Nothing loaded.
989 *class_count_ptr = 0;
990 *classes_ptr = nullptr;
991 return ERR(NONE);
992 }
993
994 struct ClassTableCount {
995 bool operator()(art::ObjPtr<art::mirror::Class> klass) {
996 DCHECK(klass != nullptr);
997 ++count;
998 return true;
999 }
1000
1001 size_t count = 0;
1002 };
1003 ClassTableCount ctc;
1004 class_table->Visit(ctc);
1005
1006 if (ctc.count == 0) {
1007 // Nothing loaded.
1008 *class_count_ptr = 0;
1009 *classes_ptr = nullptr;
1010 return ERR(NONE);
1011 }
1012
1013 unsigned char* data;
1014 jvmtiError data_result = env->Allocate(ctc.count * sizeof(jclass), &data);
1015 if (data_result != ERR(NONE)) {
1016 return data_result;
1017 }
1018 jclass* class_array = reinterpret_cast<jclass*>(data);
1019
1020 struct ClassTableFill {
1021 bool operator()(art::ObjPtr<art::mirror::Class> klass)
1022 REQUIRES_SHARED(art::Locks::mutator_lock_) {
1023 DCHECK(klass != nullptr);
1024 DCHECK_LT(count, ctc_ref.count);
1025 local_class_array[count++] = soa_ptr->AddLocalReference<jclass>(klass);
1026 return true;
1027 }
1028
1029 jclass* local_class_array;
1030 const ClassTableCount& ctc_ref;
1031 art::ScopedObjectAccess* soa_ptr;
1032 size_t count;
1033 };
1034 ClassTableFill ctf = { class_array, ctc, &soa, 0 };
1035 class_table->Visit(ctf);
1036 DCHECK_EQ(ctc.count, ctf.count);
1037
1038 *class_count_ptr = ctc.count;
1039 *classes_ptr = class_array;
1040
1041 return ERR(NONE);
1042 }
1043
GetClassVersionNumbers(jvmtiEnv * env,jclass jklass,jint * minor_version_ptr,jint * major_version_ptr)1044 jvmtiError ClassUtil::GetClassVersionNumbers([[maybe_unused]] jvmtiEnv* env,
1045 jclass jklass,
1046 jint* minor_version_ptr,
1047 jint* major_version_ptr) {
1048 art::ScopedObjectAccess soa(art::Thread::Current());
1049 if (jklass == nullptr) {
1050 return ERR(INVALID_CLASS);
1051 }
1052 art::ObjPtr<art::mirror::Object> jklass_obj = soa.Decode<art::mirror::Object>(jklass);
1053 if (!jklass_obj->IsClass()) {
1054 return ERR(INVALID_CLASS);
1055 }
1056 art::ObjPtr<art::mirror::Class> klass = jklass_obj->AsClass();
1057 if (klass->IsPrimitive() || klass->IsArrayClass()) {
1058 return ERR(INVALID_CLASS);
1059 }
1060
1061 if (minor_version_ptr == nullptr || major_version_ptr == nullptr) {
1062 return ERR(NULL_POINTER);
1063 }
1064
1065 // Note: proxies will show the dex file version of java.lang.reflect.Proxy, as that is
1066 // what their dex cache copies from.
1067 uint32_t version = klass->GetDexFile().GetHeader().GetVersion();
1068
1069 *major_version_ptr = static_cast<jint>(version);
1070 *minor_version_ptr = 0;
1071
1072 return ERR(NONE);
1073 }
1074
GetSourceFileName(jvmtiEnv * env,jclass jklass,char ** source_name_ptr)1075 jvmtiError ClassUtil::GetSourceFileName(jvmtiEnv* env, jclass jklass, char** source_name_ptr) {
1076 art::ScopedObjectAccess soa(art::Thread::Current());
1077 if (jklass == nullptr) {
1078 return ERR(INVALID_CLASS);
1079 }
1080 art::ObjPtr<art::mirror::Object> jklass_obj = soa.Decode<art::mirror::Object>(jklass);
1081 if (!jklass_obj->IsClass()) {
1082 return ERR(INVALID_CLASS);
1083 }
1084 art::ObjPtr<art::mirror::Class> klass = jklass_obj->AsClass();
1085 if (klass->IsPrimitive() || klass->IsArrayClass()) {
1086 return ERR(ABSENT_INFORMATION);
1087 }
1088 JvmtiUniquePtr<char[]> source_copy;
1089 const char* file_name = klass->GetSourceFile();
1090 if (file_name == nullptr) {
1091 return ERR(ABSENT_INFORMATION);
1092 }
1093 jvmtiError ret;
1094 source_copy = CopyString(env, file_name, &ret);
1095 if (source_copy == nullptr) {
1096 return ret;
1097 }
1098 *source_name_ptr = source_copy.release();
1099 return OK;
1100 }
1101
GetSourceDebugExtension(jvmtiEnv * env,jclass jklass,char ** source_debug_extension_ptr)1102 jvmtiError ClassUtil::GetSourceDebugExtension(jvmtiEnv* env,
1103 jclass jklass,
1104 char** source_debug_extension_ptr) {
1105 art::ScopedObjectAccess soa(art::Thread::Current());
1106 if (jklass == nullptr) {
1107 return ERR(INVALID_CLASS);
1108 }
1109 art::ObjPtr<art::mirror::Object> jklass_obj = soa.Decode<art::mirror::Object>(jklass);
1110 if (!jklass_obj->IsClass()) {
1111 return ERR(INVALID_CLASS);
1112 }
1113 art::StackHandleScope<1> hs(art::Thread::Current());
1114 art::Handle<art::mirror::Class> klass(hs.NewHandle(jklass_obj->AsClass()));
1115 if (klass->IsPrimitive() || klass->IsArrayClass()) {
1116 return ERR(ABSENT_INFORMATION);
1117 }
1118 JvmtiUniquePtr<char[]> ext_copy;
1119 const char* data = art::annotations::GetSourceDebugExtension(klass);
1120 if (data == nullptr) {
1121 return ERR(ABSENT_INFORMATION);
1122 }
1123 jvmtiError ret;
1124 ext_copy = CopyString(env, data, &ret);
1125 if (ext_copy == nullptr) {
1126 return ret;
1127 }
1128 *source_debug_extension_ptr = ext_copy.release();
1129 return OK;
1130 }
1131
DisableHiddenApiEnforcementPolicy(jvmtiEnv * env)1132 jvmtiError ClassUtil::DisableHiddenApiEnforcementPolicy(jvmtiEnv* env) {
1133 return SetHiddenApiEnforcementPolicy(
1134 env, static_cast<jint>(art::hiddenapi::EnforcementPolicy::kDisabled));
1135 }
1136
GetHiddenApiEnforcementPolicy(jvmtiEnv * env,jint * policy)1137 jvmtiError ClassUtil::GetHiddenApiEnforcementPolicy(jvmtiEnv* env, jint* policy) {
1138 if (env == nullptr) {
1139 return ERR(INVALID_ENVIRONMENT);
1140 } else if (art::Thread::Current() == nullptr) {
1141 return ERR(UNATTACHED_THREAD);
1142 } else if (policy == nullptr) {
1143 return ERR(NULL_POINTER);
1144 }
1145 *policy = static_cast<jint>(art::Runtime::Current()->GetHiddenApiEnforcementPolicy());
1146 return OK;
1147 }
1148
SetHiddenApiEnforcementPolicy(jvmtiEnv * env,jint policy)1149 jvmtiError ClassUtil::SetHiddenApiEnforcementPolicy(jvmtiEnv* env, jint policy) {
1150 if (env == nullptr) {
1151 return ERR(INVALID_ENVIRONMENT);
1152 } else if (art::Thread::Current() == nullptr) {
1153 return ERR(UNATTACHED_THREAD);
1154 } else if (policy < static_cast<jint>(art::hiddenapi::EnforcementPolicy::kDisabled) ||
1155 policy > static_cast<jint>(art::hiddenapi::EnforcementPolicy::kMax)) {
1156 JVMTI_LOG(INFO, env) << "Bad policy: " << policy << ", must be between "
1157 << static_cast<jint>(art::hiddenapi::EnforcementPolicy::kDisabled)
1158 << " and " << static_cast<jint>(art::hiddenapi::EnforcementPolicy::kMax);
1159 return ERR(ILLEGAL_ARGUMENT);
1160 }
1161 art::Runtime::Current()->SetHiddenApiEnforcementPolicy(
1162 static_cast<art::hiddenapi::EnforcementPolicy>(policy));
1163 return OK;
1164 }
1165
1166 } // namespace openjdkjvmti
1167