1 /*
2  * Copyright (C) 2019 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 "jni_id_manager.h"
18 
19 #include <algorithm>
20 #include <cstdint>
21 #include <type_traits>
22 
23 #include "android-base/macros.h"
24 #include "art_field-inl.h"
25 #include "art_method-inl.h"
26 #include "base/enums.h"
27 #include "base/globals.h"
28 #include "base/locks.h"
29 #include "base/mutex.h"
30 #include "gc/allocation_listener.h"
31 #include "gc/heap.h"
32 #include "jni/jni_internal.h"
33 #include "jni_id_type.h"
34 #include "mirror/array-inl.h"
35 #include "mirror/array.h"
36 #include "mirror/class-alloc-inl.h"
37 #include "mirror/class-inl.h"
38 #include "mirror/class.h"
39 #include "mirror/class_ext-inl.h"
40 #include "mirror/object-inl.h"
41 #include "obj_ptr-inl.h"
42 #include "reflective_handle_scope-inl.h"
43 #include "reflective_handle_scope.h"
44 #include "reflective_value_visitor.h"
45 #include "thread-inl.h"
46 #include "thread.h"
47 
48 namespace art {
49 namespace jni {
50 
51 constexpr bool kTraceIds = false;
52 
53 // TODO This whole thing could be done lock & wait free (since we never remove anything from the
54 // ids list). It's not clear this would be worthwile though.
55 
56 namespace {
57 
IdToIndex(uintptr_t id)58 static constexpr size_t IdToIndex(uintptr_t id) {
59   return id >> 1;
60 }
61 
IndexToId(size_t index)62 static constexpr uintptr_t IndexToId(size_t index) {
63   return (index << 1) + 1;
64 }
65 
66 template <typename ArtType>
GetIds(ObjPtr<mirror::Class> k,ArtType * t)67 ObjPtr<mirror::PointerArray> GetIds(ObjPtr<mirror::Class> k, ArtType* t)
68     REQUIRES_SHARED(Locks::mutator_lock_) {
69   ObjPtr<mirror::Object> ret;
70   if constexpr (std::is_same_v<ArtType, ArtField>) {
71     ret = t->IsStatic() ? k->GetStaticFieldIds() : k->GetInstanceFieldIds();
72   } else {
73     ret = t->IsObsolete() ? nullptr : k->GetMethodIds();
74   }
75   DCHECK(ret.IsNull() || ret->IsArrayInstance()) << "Should have bailed out early!";
76   if (kIsDebugBuild && !ret.IsNull()) {
77     if (kRuntimePointerSize == PointerSize::k32) {
78       CHECK(ret->IsIntArray());
79     } else {
80       CHECK(ret->IsLongArray());
81     }
82   }
83   return down_cast<mirror::PointerArray*>(ret.Ptr());
84 }
85 
86 template <typename ArtType>
87 bool ShouldReturnPointer(ObjPtr<mirror::Class> klass, ArtType* t)
88     REQUIRES_SHARED(Locks::mutator_lock_);
89 
90 template <>
ShouldReturnPointer(ObjPtr<mirror::Class> klass,ArtMethod * t ATTRIBUTE_UNUSED)91 bool ShouldReturnPointer(ObjPtr<mirror::Class> klass, ArtMethod* t ATTRIBUTE_UNUSED) {
92   ObjPtr<mirror::ClassExt> ext(klass->GetExtData());
93   if (ext.IsNull()) {
94     return true;
95   }
96   ObjPtr<mirror::Object> arr = ext->GetJMethodIDs();
97   return arr.IsNull() || !arr->IsArrayInstance();
98 }
99 
100 template<>
ShouldReturnPointer(ObjPtr<mirror::Class> klass,ArtField * t)101 bool ShouldReturnPointer(ObjPtr<mirror::Class> klass, ArtField* t) {
102   ObjPtr<mirror::ClassExt> ext(klass->GetExtData());
103   if (ext.IsNull()) {
104     return true;
105   }
106   ObjPtr<mirror::Object> arr = t->IsStatic() ? ext->GetStaticJFieldIDs()
107                                              : ext->GetInstanceJFieldIDs();
108   return arr.IsNull() || !arr->IsArrayInstance();
109 }
110 
111 
112 // Forces the appropriate id array to be present if possible. Returns true if allocation was
113 // attempted but failed.
114 template <typename ArtType>
115 bool EnsureIdsArray(Thread* self, ObjPtr<mirror::Class> k, ArtType* t)
116     REQUIRES_SHARED(Locks::mutator_lock_);
117 
118 template <>
EnsureIdsArray(Thread * self,ObjPtr<mirror::Class> k,ArtField * field)119 bool EnsureIdsArray(Thread* self, ObjPtr<mirror::Class> k, ArtField* field) {
120   ScopedExceptionStorage ses(self);
121   StackHandleScope<1> hs(self);
122   Handle<mirror::Class> h_k(hs.NewHandle(k));
123   if (Locks::mutator_lock_->IsExclusiveHeld(self)) {
124     return false;
125   } else {
126     // NB This modifies the class to allocate the ClassExt and the ids array.
127     field->IsStatic() ? mirror::Class::EnsureStaticFieldIds(h_k)
128                       : mirror::Class::EnsureInstanceFieldIds(h_k);
129   }
130   if (self->IsExceptionPending()) {
131     self->AssertPendingOOMException();
132     ses.SuppressOldException("Failed to allocate maps for jmethodIDs. ");
133     return true;
134   }
135   return false;
136 }
137 
138 template <>
EnsureIdsArray(Thread * self,ObjPtr<mirror::Class> k,ArtMethod * method)139 bool EnsureIdsArray(Thread* self, ObjPtr<mirror::Class> k, ArtMethod* method) {
140   if (method->IsObsolete()) {
141     if (kTraceIds) {
142       LOG(INFO) << "jmethodID for Obsolete method " << method->PrettyMethod() << " requested!";
143     }
144     // No ids array for obsolete methods. Just do a linear scan.
145     return false;
146   }
147   StackHandleScope<1> hs(self);
148   Handle<mirror::Class> h_k(hs.NewHandle(k));
149   if (Locks::mutator_lock_->IsExclusiveHeld(self) || !Locks::mutator_lock_->IsSharedHeld(self)) {
150     return false;
151   } else {
152     // NB This modifies the class to allocate the ClassExt and the ids array.
153     mirror::Class::EnsureMethodIds(h_k);
154   }
155   if (self->IsExceptionPending()) {
156     self->AssertPendingOOMException();
157     return true;
158   }
159   return false;
160 }
161 
162 template <typename ArtType>
163 size_t GetIdOffset(ObjPtr<mirror::Class> k, ArtType* t, PointerSize pointer_size)
164     REQUIRES_SHARED(Locks::mutator_lock_);
165 template <>
GetIdOffset(ObjPtr<mirror::Class> k,ArtField * f,PointerSize ptr_size ATTRIBUTE_UNUSED)166 size_t GetIdOffset(ObjPtr<mirror::Class> k, ArtField* f, PointerSize ptr_size ATTRIBUTE_UNUSED) {
167   return f->IsStatic() ? k->GetStaticFieldIdOffset(f) : k->GetInstanceFieldIdOffset(f);
168 }
169 template <>
GetIdOffset(ObjPtr<mirror::Class> k,ArtMethod * method,PointerSize pointer_size)170 size_t GetIdOffset(ObjPtr<mirror::Class> k, ArtMethod* method, PointerSize pointer_size) {
171   return method->IsObsolete() ? -1 : k->GetMethodIdOffset(method, pointer_size);
172 }
173 
174 // Calls the relevant PrettyMethod/PrettyField on the input.
175 template <typename ArtType>
176 std::string PrettyGeneric(ArtType t) REQUIRES_SHARED(Locks::mutator_lock_);
177 template <>
PrettyGeneric(ArtMethod * f)178 std::string PrettyGeneric(ArtMethod* f) {
179   return f->PrettyMethod();
180 }
181 template <>
PrettyGeneric(ReflectiveHandle<ArtMethod> f)182 std::string PrettyGeneric(ReflectiveHandle<ArtMethod> f) {
183   return f->PrettyMethod();
184 }
185 template <>
PrettyGeneric(ArtField * f)186 std::string PrettyGeneric(ArtField* f) {
187   return f->PrettyField();
188 }
189 template <>
PrettyGeneric(ReflectiveHandle<ArtField> f)190 std::string PrettyGeneric(ReflectiveHandle<ArtField> f) {
191   return f->PrettyField();
192 }
193 
194 // Checks if the field or method is obsolete.
195 template <typename ArtType>
196 bool IsObsolete(ReflectiveHandle<ArtType> t) REQUIRES_SHARED(Locks::mutator_lock_);
197 template <>
IsObsolete(ReflectiveHandle<ArtField> t ATTRIBUTE_UNUSED)198 bool IsObsolete(ReflectiveHandle<ArtField> t ATTRIBUTE_UNUSED) {
199   return false;
200 }
201 template <>
IsObsolete(ReflectiveHandle<ArtMethod> t)202 bool IsObsolete(ReflectiveHandle<ArtMethod> t) {
203   return t->IsObsolete();
204 }
205 
206 // Get the canonical (non-copied) version of the field or method. Only relevant for methods.
207 template <typename ArtType>
208 ArtType* Canonicalize(ReflectiveHandle<ArtType> t) REQUIRES_SHARED(Locks::mutator_lock_);
209 template <>
Canonicalize(ReflectiveHandle<ArtField> t)210 ArtField* Canonicalize(ReflectiveHandle<ArtField> t) {
211   return t.Get();
212 }
213 template <>
Canonicalize(ReflectiveHandle<ArtMethod> t)214 ArtMethod* Canonicalize(ReflectiveHandle<ArtMethod> t) {
215   if (UNLIKELY(t->IsCopied())) {
216     return t->GetCanonicalMethod();
217   }
218   return t.Get();
219 }
220 
221 };  // namespace
222 
223 // We increment the id by 2 each time to allow us to use the LSB as a flag that the ID is an index
224 // and not a pointer. This gives us 2**31 unique methods that can be addressed on 32-bit art, which
225 // should be more than enough.
226 template <>
GetNextId(JniIdType type)227 uintptr_t JniIdManager::GetNextId<ArtField>(JniIdType type) {
228   DCHECK_EQ(type, JniIdType::kIndices);
229   uintptr_t res = next_field_id_;
230   next_field_id_ += 2;
231   CHECK_GT(next_field_id_, res) << "jfieldID Overflow";
232   return res;
233 }
234 
235 template <>
GetNextId(JniIdType type)236 uintptr_t JniIdManager::GetNextId<ArtMethod>(JniIdType type) {
237   DCHECK_EQ(type, JniIdType::kIndices);
238   uintptr_t res = next_method_id_;
239   next_method_id_ += 2;
240   CHECK_GT(next_method_id_, res) << "jmethodID Overflow";
241   return res;
242 }
243 template <>
GetGenericMap()244 std::vector<ArtField*>& JniIdManager::GetGenericMap<ArtField>() {
245   return field_id_map_;
246 }
247 
248 template <>
GetGenericMap()249 std::vector<ArtMethod*>& JniIdManager::GetGenericMap<ArtMethod>() {
250   return method_id_map_;
251 }
252 template <>
GetLinearSearchStartId(ReflectiveHandle<ArtField> t ATTRIBUTE_UNUSED)253 size_t JniIdManager::GetLinearSearchStartId<ArtField>(
254     ReflectiveHandle<ArtField> t ATTRIBUTE_UNUSED) {
255   return deferred_allocation_field_id_start_;
256 }
257 
258 template <>
GetLinearSearchStartId(ReflectiveHandle<ArtMethod> m)259 size_t JniIdManager::GetLinearSearchStartId<ArtMethod>(ReflectiveHandle<ArtMethod> m) {
260   if (m->IsObsolete()) {
261     return 1;
262   } else {
263     return deferred_allocation_method_id_start_;
264   }
265 }
266 
267 // TODO need to fix races in here with visitors
268 template <typename ArtType>
EncodeGenericId(ReflectiveHandle<ArtType> t)269 uintptr_t JniIdManager::EncodeGenericId(ReflectiveHandle<ArtType> t) {
270   static_assert(std::is_same_v<ArtType, ArtField> || std::is_same_v<ArtType, ArtMethod>,
271                 "Expected ArtField or ArtMethod");
272   Runtime* runtime = Runtime::Current();
273   JniIdType id_type = runtime->GetJniIdType();
274   if (id_type == JniIdType::kPointer || t == nullptr) {
275     return reinterpret_cast<uintptr_t>(t.Get());
276   }
277   Thread* self = Thread::Current();
278   ScopedExceptionStorage ses(self);
279   DCHECK(!t->GetDeclaringClass().IsNull()) << "Null declaring class " << PrettyGeneric(t);
280   size_t off = GetIdOffset(t->GetDeclaringClass(), Canonicalize(t), kRuntimePointerSize);
281   // Here is the earliest point we can suspend.
282   bool allocation_failure = EnsureIdsArray(self, t->GetDeclaringClass(), t.Get());
283   if (allocation_failure) {
284     self->AssertPendingOOMException();
285     ses.SuppressOldException("OOM exception while trying to allocate JNI ids.");
286     return 0u;
287   } else if (ShouldReturnPointer(t->GetDeclaringClass(), t.Get())) {
288     return reinterpret_cast<uintptr_t>(t.Get());
289   }
290   ObjPtr<mirror::Class> klass = t->GetDeclaringClass();
291   ObjPtr<mirror::PointerArray> ids(GetIds(klass, t.Get()));
292   uintptr_t cur_id = 0;
293   if (!ids.IsNull()) {
294     DCHECK_GT(ids->GetLength(), static_cast<int32_t>(off)) << " is " << PrettyGeneric(t);
295     DCHECK_LE(0, static_cast<int32_t>(off)) << " is " << PrettyGeneric(t);
296     cur_id = ids->GetElementPtrSize<uintptr_t>(off, kRuntimePointerSize);
297   }
298   if (cur_id != 0) {
299     return cur_id;
300   }
301   WriterMutexLock mu(self, *Locks::jni_id_lock_);
302   ScopedAssertNoThreadSuspension sants("EncodeJniId critical section.");
303   // Check the ids array for a racing id.
304   constexpr std::pair<size_t, size_t> counts {
305     std::is_same_v<ArtType, ArtField> ? 1 : 0,
306     std::is_same_v<ArtType, ArtField> ? 0 : 1,
307   };
308   StackReflectiveHandleScope<counts.first, counts.second> hs(self);
309   t = hs.NewHandle(Canonicalize(t));
310   if (!ids.IsNull()) {
311     // It's possible we got suspended and structurally redefined during the EnsureIdsArray. We need
312     // to get the information again.
313     ids = GetIds(klass, t.Get());
314     off = GetIdOffset(klass, Canonicalize(t), kRuntimePointerSize);
315     CHECK(!ids.IsNull());
316     cur_id = ids->GetElementPtrSize<uintptr_t>(off, kRuntimePointerSize);
317     if (cur_id != 0) {
318       // We were racing some other thread and lost.
319       return cur_id;
320     }
321   } else {
322     // We cannot allocate anything here or don't have an ids array (we might be an obsolete method).
323     DCHECK(IsObsolete(t) || deferred_allocation_refcount_ > 0u)
324         << "deferred_allocation_refcount_: " << deferred_allocation_refcount_
325         << " t: " << PrettyGeneric(t);
326     // Check to see if we raced and lost to another thread.
327     const std::vector<ArtType*>& vec = GetGenericMap<ArtType>();
328     bool found = false;
329     // simple count-while.
330     size_t search_start_index = IdToIndex(GetLinearSearchStartId(t));
331     size_t index = std::count_if(vec.cbegin() + search_start_index,
332                                  vec.cend(),
333                                  [&found, &self, t](const ArtType* candidate) {
334                                    Locks::mutator_lock_->AssertSharedHeld(self);
335                                    found = found || candidate == t.Get();
336                                    return !found;
337                                  }) +
338                    search_start_index;
339     if (found) {
340       // We were either racing some other thread and lost or this thread was asked to encode the
341       // same method multiple times while holding the mutator lock.
342       DCHECK_EQ(vec[index], t.Get())
343           << "Expected: " << PrettyGeneric(vec[index]) << " got " << PrettyGeneric(t)
344           << " at index " << index << " (id: " << IndexToId(index) << ").";
345       return IndexToId(index);
346     }
347   }
348   cur_id = GetNextId<ArtType>(id_type);
349   DCHECK_EQ(cur_id % 2, 1u);
350   size_t cur_index = IdToIndex(cur_id);
351   std::vector<ArtType*>& vec = GetGenericMap<ArtType>();
352   vec.reserve(cur_index + 1);
353   vec.resize(std::max(vec.size(), cur_index + 1), nullptr);
354   vec[cur_index] = t.Get();
355   if (ids.IsNull()) {
356     if (kIsDebugBuild && !IsObsolete(t)) {
357       CHECK_NE(deferred_allocation_refcount_, 0u)
358           << "Failed to allocate ids array despite not being forbidden from doing so!";
359       Locks::mutator_lock_->AssertExclusiveHeld(self);
360     }
361   } else {
362     ids->SetElementPtrSize(off, reinterpret_cast<void*>(cur_id), kRuntimePointerSize);
363   }
364   return cur_id;
365 }
366 
EncodeFieldId(ArtField * field)367 jfieldID JniIdManager::EncodeFieldId(ArtField* field) {
368   StackArtFieldHandleScope<1> rhs(Thread::Current());
369   return EncodeFieldId(rhs.NewHandle(field));
370 }
371 
EncodeFieldId(ReflectiveHandle<ArtField> field)372 jfieldID JniIdManager::EncodeFieldId(ReflectiveHandle<ArtField> field) {
373   auto* res = reinterpret_cast<jfieldID>(EncodeGenericId(field));
374   if (kTraceIds && field != nullptr) {
375     LOG(INFO) << "Returning " << res << " for field " << field->PrettyField();
376   }
377   return res;
378 }
379 
EncodeMethodId(ArtMethod * method)380 jmethodID JniIdManager::EncodeMethodId(ArtMethod* method) {
381   StackArtMethodHandleScope<1> rhs(Thread::Current());
382   return EncodeMethodId(rhs.NewHandle(method));
383 }
384 
EncodeMethodId(ReflectiveHandle<ArtMethod> method)385 jmethodID JniIdManager::EncodeMethodId(ReflectiveHandle<ArtMethod> method) {
386   auto* res = reinterpret_cast<jmethodID>(EncodeGenericId(method));
387   if (kTraceIds && method != nullptr) {
388     LOG(INFO) << "Returning " << res << " for method " << method->PrettyMethod();
389   }
390   return res;
391 }
392 
VisitRoots(RootVisitor * visitor)393 void JniIdManager::VisitRoots(RootVisitor *visitor) {
394   pointer_marker_.VisitRootIfNonNull(visitor, RootInfo(kRootVMInternal));
395 }
396 
Init(Thread * self)397 void JniIdManager::Init(Thread* self) {
398   // When compiling we don't want to have anything to do with any of this, which is fine since JNI
399   // ids won't be created during AOT compilation. This also means we don't need to do any
400   // complicated stuff with the image-writer.
401   if (!Runtime::Current()->IsAotCompiler()) {
402     // Allocate the marker
403     StackHandleScope<3> hs(self);
404     Handle<mirror::Object> marker_obj(
405         hs.NewHandle(GetClassRoot<mirror::Object>()->AllocObject(self)));
406     CHECK(!marker_obj.IsNull());
407     pointer_marker_ = GcRoot<mirror::Object>(marker_obj.Get());
408     // Manually mark class-ext as having all pointer-ids to avoid any annoying loops.
409     Handle<mirror::Class> class_ext_class(hs.NewHandle(GetClassRoot<mirror::ClassExt>()));
410     mirror::Class::EnsureExtDataPresent(class_ext_class, self);
411     Handle<mirror::ClassExt> class_ext_ext(hs.NewHandle(class_ext_class->GetExtData()));
412     class_ext_ext->SetIdsArraysForClassExtExtData(marker_obj.Get());
413   }
414 }
415 
VisitReflectiveTargets(ReflectiveValueVisitor * rvv)416 void JniIdManager::VisitReflectiveTargets(ReflectiveValueVisitor* rvv) {
417   art::WriterMutexLock mu(Thread::Current(), *Locks::jni_id_lock_);
418   for (auto it = field_id_map_.begin(); it != field_id_map_.end(); ++it) {
419     ArtField* old_field = *it;
420     uintptr_t id = IndexToId(std::distance(field_id_map_.begin(), it));
421     ArtField* new_field =
422         rvv->VisitField(old_field, JniIdReflectiveSourceInfo(reinterpret_cast<jfieldID>(id)));
423     if (old_field != new_field) {
424       *it = new_field;
425       ObjPtr<mirror::Class> old_class(old_field->GetDeclaringClass());
426       ObjPtr<mirror::Class> new_class(new_field->GetDeclaringClass());
427       ObjPtr<mirror::ClassExt> old_ext_data(old_class->GetExtData());
428       ObjPtr<mirror::ClassExt> new_ext_data(new_class->GetExtData());
429       if (!old_ext_data.IsNull()) {
430         CHECK(!old_ext_data->HasInstanceFieldPointerIdMarker() &&
431               !old_ext_data->HasStaticFieldPointerIdMarker())
432             << old_class->PrettyClass();
433         // Clear the old field mapping.
434         if (old_field->IsStatic()) {
435           size_t old_off = ArraySlice<ArtField>(old_class->GetSFieldsPtr()).OffsetOf(old_field);
436           ObjPtr<mirror::PointerArray> old_statics(old_ext_data->GetStaticJFieldIDsPointerArray());
437           if (!old_statics.IsNull()) {
438             old_statics->SetElementPtrSize(old_off, 0, kRuntimePointerSize);
439           }
440         } else {
441           size_t old_off = ArraySlice<ArtField>(old_class->GetIFieldsPtr()).OffsetOf(old_field);
442           ObjPtr<mirror::PointerArray> old_instances(
443               old_ext_data->GetInstanceJFieldIDsPointerArray());
444           if (!old_instances.IsNull()) {
445             old_instances->SetElementPtrSize(old_off, 0, kRuntimePointerSize);
446           }
447         }
448       }
449       if (!new_ext_data.IsNull()) {
450         CHECK(!new_ext_data->HasInstanceFieldPointerIdMarker() &&
451               !new_ext_data->HasStaticFieldPointerIdMarker())
452             << new_class->PrettyClass();
453         // Set the new field mapping.
454         if (new_field->IsStatic()) {
455           size_t new_off = ArraySlice<ArtField>(new_class->GetSFieldsPtr()).OffsetOf(new_field);
456           ObjPtr<mirror::PointerArray> new_statics(new_ext_data->GetStaticJFieldIDsPointerArray());
457           if (!new_statics.IsNull()) {
458             new_statics->SetElementPtrSize(new_off, id, kRuntimePointerSize);
459           }
460         } else {
461           size_t new_off = ArraySlice<ArtField>(new_class->GetIFieldsPtr()).OffsetOf(new_field);
462           ObjPtr<mirror::PointerArray> new_instances(
463               new_ext_data->GetInstanceJFieldIDsPointerArray());
464           if (!new_instances.IsNull()) {
465             new_instances->SetElementPtrSize(new_off, id, kRuntimePointerSize);
466           }
467         }
468       }
469     }
470   }
471   for (auto it = method_id_map_.begin(); it != method_id_map_.end(); ++it) {
472     ArtMethod* old_method = *it;
473     uintptr_t id = IndexToId(std::distance(method_id_map_.begin(), it));
474     ArtMethod* new_method =
475         rvv->VisitMethod(old_method, JniIdReflectiveSourceInfo(reinterpret_cast<jmethodID>(id)));
476     if (old_method != new_method) {
477       *it = new_method;
478       ObjPtr<mirror::Class> old_class(old_method->GetDeclaringClass());
479       ObjPtr<mirror::Class> new_class(new_method->GetDeclaringClass());
480       ObjPtr<mirror::ClassExt> old_ext_data(old_class->GetExtData());
481       ObjPtr<mirror::ClassExt> new_ext_data(new_class->GetExtData());
482       if (!old_ext_data.IsNull()) {
483         CHECK(!old_ext_data->HasMethodPointerIdMarker()) << old_class->PrettyClass();
484         // Clear the old method mapping.
485         size_t old_off = ArraySlice<ArtMethod>(old_class->GetMethodsPtr()).OffsetOf(old_method);
486         ObjPtr<mirror::PointerArray> old_methods(old_ext_data->GetJMethodIDsPointerArray());
487         if (!old_methods.IsNull()) {
488           old_methods->SetElementPtrSize(old_off, 0, kRuntimePointerSize);
489         }
490       }
491       if (!new_ext_data.IsNull()) {
492         CHECK(!new_ext_data->HasMethodPointerIdMarker()) << new_class->PrettyClass();
493         // Set the new method mapping.
494         size_t new_off = ArraySlice<ArtMethod>(new_class->GetMethodsPtr()).OffsetOf(new_method);
495         ObjPtr<mirror::PointerArray> new_methods(new_ext_data->GetJMethodIDsPointerArray());
496         if (!new_methods.IsNull()) {
497           new_methods->SetElementPtrSize(new_off, id, kRuntimePointerSize);
498         }
499       }
500     }
501   }
502 }
503 
DecodeGenericId(uintptr_t t)504 template <typename ArtType> ArtType* JniIdManager::DecodeGenericId(uintptr_t t) {
505   if (Runtime::Current()->GetJniIdType() == JniIdType::kIndices && (t % 2) == 1) {
506     ReaderMutexLock mu(Thread::Current(), *Locks::jni_id_lock_);
507     size_t index = IdToIndex(t);
508     DCHECK_GT(GetGenericMap<ArtType>().size(), index);
509     return GetGenericMap<ArtType>().at(index);
510   } else {
511     DCHECK_EQ((t % 2), 0u) << "id: " << t;
512     return reinterpret_cast<ArtType*>(t);
513   }
514 }
515 
DecodeMethodId(jmethodID method)516 ArtMethod* JniIdManager::DecodeMethodId(jmethodID method) {
517   return DecodeGenericId<ArtMethod>(reinterpret_cast<uintptr_t>(method));
518 }
519 
DecodeFieldId(jfieldID field)520 ArtField* JniIdManager::DecodeFieldId(jfieldID field) {
521   return DecodeGenericId<ArtField>(reinterpret_cast<uintptr_t>(field));
522 }
523 
GetPointerMarker()524 ObjPtr<mirror::Object> JniIdManager::GetPointerMarker() {
525   return pointer_marker_.Read();
526 }
527 
528 // This whole defer system is an annoying requirement to allow us to generate IDs during heap-walks
529 // such as those required for instrumentation tooling.
530 //
531 // The defer system works with the normal id-assignment routine to ensure that all the class-ext
532 // data structures are eventually created and filled in. Basically how it works is the id-assignment
533 // function will check to see if it has a strong mutator-lock. If it does not then it will try to
534 // allocate the class-ext data structures normally and fail if it is unable to do so. In the case
535 // where mutator-lock is being held exclusive no attempt to allocate will be made and the thread
536 // will CHECK that allocations are being deferred (or that the method is obsolete, in which case
537 // there is no class-ext to store the method->id map in).
538 //
539 // Once the thread is done holding the exclusive mutator-lock it will go back and fill-in the
540 // class-ext data of all the methods that were added. We do this without the exclusive mutator-lock
541 // on a copy of the maps before we decrement the deferred refcount. This ensures that any other
542 // threads running at the same time know they need to perform a linear scan of the id-map. Since we
543 // don't have the mutator-lock anymore other threads can allocate the class-ext data, meaning our
544 // copy is fine. The only way additional methods could end up on the id-maps after our copy without
545 // having class-ext data is if another thread picked up the exclusive mutator-lock and added another
546 // defer, in which case that thread would fix-up the remaining ids. In this way we maintain eventual
547 // consistency between the class-ext method/field->id maps and the JniIdManager id->method/field
548 // maps.
549 //
550 // TODO It is possible that another thread to gain the mutator-lock and allocate new ids without
551 // calling StartDefer. This is basically a race that we should try to catch but doing so is
552 // rather difficult and since this defer system is only used in very rare circumstances unlikely to
553 // be worth the trouble.
StartDefer()554 void JniIdManager::StartDefer() {
555   Thread* self = Thread::Current();
556   WriterMutexLock mu(self, *Locks::jni_id_lock_);
557   if (deferred_allocation_refcount_++ == 0) {
558     deferred_allocation_field_id_start_ = next_field_id_;
559     deferred_allocation_method_id_start_ = next_method_id_;
560   }
561 }
562 
563 class JniIdDeferStackReflectiveScope : public BaseReflectiveHandleScope {
564  public:
REQUIRES_SHARED(art::Locks::mutator_lock_)565   JniIdDeferStackReflectiveScope() REQUIRES_SHARED(art::Locks::mutator_lock_)
566       : BaseReflectiveHandleScope(), methods_(), fields_() {
567     PushScope(Thread::Current());
568   }
569 
Initialize(const std::vector<ArtMethod * > & methods,const std::vector<ArtField * > & fields)570   void Initialize(const std::vector<ArtMethod*>& methods, const std::vector<ArtField*>& fields)
571       REQUIRES_SHARED(Locks::mutator_lock_) REQUIRES(Roles::uninterruptible_) {
572     methods_ = methods;
573     fields_ = fields;
574   }
575 
REQUIRES_SHARED(Locks::mutator_lock_)576   ~JniIdDeferStackReflectiveScope() REQUIRES_SHARED(Locks::mutator_lock_) {
577     PopScope();
578   }
579 
VisitTargets(ReflectiveValueVisitor * visitor)580   void VisitTargets(ReflectiveValueVisitor* visitor) override
581       REQUIRES_SHARED(Locks::mutator_lock_) {
582     for (auto it = methods_.begin(); it != methods_.end(); ++it) {
583       if (*it == nullptr) {
584         continue;
585       }
586       *it = visitor->VisitMethod(*it, ReflectiveHandleScopeSourceInfo(this));
587     }
588     for (auto it = fields_.begin(); it != fields_.end(); ++it) {
589       if (*it == nullptr) {
590         continue;
591       }
592       *it = visitor->VisitField(*it, ReflectiveHandleScopeSourceInfo(this));
593     }
594   }
595 
GetFieldPtr(size_t idx)596   ArtField** GetFieldPtr(size_t idx) REQUIRES_SHARED(Locks::mutator_lock_) {
597     return &fields_[idx];
598   }
599 
GetMethodPtr(size_t idx)600   ArtMethod** GetMethodPtr(size_t idx) REQUIRES_SHARED(Locks::mutator_lock_) {
601     return &methods_[idx];
602   }
603 
NumFields() const604   size_t NumFields() const {
605     return fields_.size();
606   }
NumMethods() const607   size_t NumMethods() const {
608     return methods_.size();
609   }
610 
611  private:
612   std::vector<ArtMethod*> methods_;
613   std::vector<ArtField*> fields_;
614 };
615 
EndDefer()616 void JniIdManager::EndDefer() {
617   // Fixup the method->id map.
618   Thread* self = Thread::Current();
619   auto set_id = [&](auto** t, uintptr_t id) REQUIRES_SHARED(Locks::mutator_lock_) {
620     if (t == nullptr) {
621       return;
622     }
623     bool alloc_failure = EnsureIdsArray(self, (*t)->GetDeclaringClass(), *t);
624     ObjPtr<mirror::Class> klass((*t)->GetDeclaringClass());
625     size_t off = GetIdOffset(klass, (*t), kRuntimePointerSize);
626     ObjPtr<mirror::PointerArray> ids = GetIds(klass, (*t));
627     CHECK(!alloc_failure) << "Could not allocate jni ids array!";
628     if (ids.IsNull()) {
629       return;
630     }
631     if (kIsDebugBuild) {
632       uintptr_t old_id = ids->GetElementPtrSize<uintptr_t, kRuntimePointerSize>(off);
633       if (old_id != 0) {
634         DCHECK_EQ(old_id, id);
635       }
636     }
637     ids->SetElementPtrSize(off, reinterpret_cast<void*>(id), kRuntimePointerSize);
638   };
639   // To ensure eventual consistency this depends on the fact that the method_id_map_ and
640   // field_id_map_ are the ultimate source of truth and no id is ever reused to be valid. It also
641   // relies on all threads always getting calling StartDefer if they are going to be allocating jni
642   // ids while suspended. If a thread tries to do so while it doesn't have a scope we could miss
643   // ids.
644   // TODO We should use roles or something to verify that this requirement is not broken.
645   //
646   // If another thread comes along and adds more methods to the list after
647   // copying either (1) the id-maps are already present for the method and everything is fine, (2)
648   // the thread is not suspended and so can create the ext-data and id lists or, (3) the thread also
649   // suspended everything and incremented the deferred_allocation_refcount_ so it will fix up new
650   // ids when it finishes.
651   Locks::mutator_lock_->AssertNotExclusiveHeld(self);
652   Locks::mutator_lock_->AssertSharedHeld(self);
653   JniIdDeferStackReflectiveScope jidsrs;
654   uintptr_t method_start_id;
655   uintptr_t field_start_id;
656   {
657     ReaderMutexLock mu(self, *Locks::jni_id_lock_);
658     ScopedAssertNoThreadSuspension sants(__FUNCTION__);
659     jidsrs.Initialize(method_id_map_, field_id_map_);
660     method_start_id = deferred_allocation_method_id_start_;
661     field_start_id = deferred_allocation_field_id_start_;
662   }
663 
664   for (size_t index = kIsDebugBuild ? 0 : IdToIndex(method_start_id); index < jidsrs.NumMethods();
665        ++index) {
666     set_id(jidsrs.GetMethodPtr(index), IndexToId(index));
667   }
668   for (size_t index = kIsDebugBuild ? 0 : IdToIndex(field_start_id); index < jidsrs.NumFields();
669        ++index) {
670     set_id(jidsrs.GetFieldPtr(index), IndexToId(index));
671   }
672   WriterMutexLock mu(self, *Locks::jni_id_lock_);
673   DCHECK_GE(deferred_allocation_refcount_, 1u);
674   if (--deferred_allocation_refcount_ == 0) {
675     deferred_allocation_field_id_start_ = 0;
676     deferred_allocation_method_id_start_ = 0;
677   }
678 }
679 
ScopedEnableSuspendAllJniIdQueries()680 ScopedEnableSuspendAllJniIdQueries::ScopedEnableSuspendAllJniIdQueries()
681     : manager_(Runtime::Current()->GetJniIdManager()) {
682   manager_->StartDefer();
683 }
684 
~ScopedEnableSuspendAllJniIdQueries()685 ScopedEnableSuspendAllJniIdQueries::~ScopedEnableSuspendAllJniIdQueries() {
686   manager_->EndDefer();
687 }
688 
689 };  // namespace jni
690 };  // namespace art
691