1 /*
2 * Copyright (C) 2018 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 "hidden_api.h"
18
19 #include <nativehelper/scoped_local_ref.h>
20 #include <atomic>
21
22 #include "art_field-inl.h"
23 #include "art_method-inl.h"
24 #include "class_root-inl.h"
25 #include "compat_framework.h"
26 #include "base/dumpable.h"
27 #include "base/file_utils.h"
28 #include "dex/class_accessor-inl.h"
29 #include "dex/dex_file_loader.h"
30 #include "mirror/class_ext.h"
31 #include "mirror/proxy.h"
32 #include "oat_file.h"
33 #include "scoped_thread_state_change.h"
34 #include "stack.h"
35 #include "thread-inl.h"
36 #include "well_known_classes.h"
37
38 namespace art {
39 namespace hiddenapi {
40
41 // Should be the same as dalvik.system.VMRuntime.HIDE_MAXTARGETSDK_P_HIDDEN_APIS,
42 // dalvik.system.VMRuntime.HIDE_MAXTARGETSDK_Q_HIDDEN_APIS, and
43 // dalvik.system.VMRuntime.ALLOW_TEST_API_ACCESS.
44 // Corresponds to bug ids.
45 static constexpr uint64_t kHideMaxtargetsdkPHiddenApis = 149997251;
46 static constexpr uint64_t kHideMaxtargetsdkQHiddenApis = 149994052;
47 static constexpr uint64_t kAllowTestApiAccess = 166236554;
48
49 static constexpr uint64_t kMaxLogWarnings = 100;
50
51 // Should be the same as dalvik.system.VMRuntime.PREVENT_META_REFLECTION_BLOCKLIST_ACCESS.
52 // Corresponds to a bug id.
53 static constexpr uint64_t kPreventMetaReflectionBlocklistAccess = 142365358;
54
55 // Set to true if we should always print a warning in logcat for all hidden API accesses, not just
56 // conditionally and unconditionally blocked. This can be set to true for developer preview / beta
57 // builds, but should be false for public release builds.
58 // Note that when flipping this flag, you must also update the expectations of test 674-hiddenapi
59 // as it affects whether or not we warn for unsupported APIs that have been added to the exemptions
60 // list.
61 static constexpr bool kLogAllAccesses = false;
62
63 // Exemptions for logcat warning. Following signatures do not produce a warning as app developers
64 // should not be alerted on the usage of these unsupported APIs. See b/154851649.
65 static const std::vector<std::string> kWarningExemptions = {
66 "Ljava/nio/Buffer;",
67 "Llibcore/io/Memory;",
68 "Lsun/misc/Unsafe;",
69 };
70
operator <<(std::ostream & os,AccessMethod value)71 static inline std::ostream& operator<<(std::ostream& os, AccessMethod value) {
72 switch (value) {
73 case AccessMethod::kNone:
74 LOG(FATAL) << "Internal access to hidden API should not be logged";
75 UNREACHABLE();
76 case AccessMethod::kReflection:
77 os << "reflection";
78 break;
79 case AccessMethod::kJNI:
80 os << "JNI";
81 break;
82 case AccessMethod::kLinking:
83 os << "linking";
84 break;
85 }
86 return os;
87 }
88
operator <<(std::ostream & os,const AccessContext & value)89 static inline std::ostream& operator<<(std::ostream& os, const AccessContext& value)
90 REQUIRES_SHARED(Locks::mutator_lock_) {
91 if (!value.GetClass().IsNull()) {
92 std::string tmp;
93 os << value.GetClass()->GetDescriptor(&tmp);
94 } else if (value.GetDexFile() != nullptr) {
95 os << value.GetDexFile()->GetLocation();
96 } else {
97 os << "<unknown_caller>";
98 }
99 return os;
100 }
101
DetermineDomainFromLocation(const std::string & dex_location,ObjPtr<mirror::ClassLoader> class_loader)102 static Domain DetermineDomainFromLocation(const std::string& dex_location,
103 ObjPtr<mirror::ClassLoader> class_loader) {
104 // If running with APEX, check `path` against known APEX locations.
105 // These checks will be skipped on target buildbots where ANDROID_ART_ROOT
106 // is set to "/system".
107 if (ArtModuleRootDistinctFromAndroidRoot()) {
108 if (LocationIsOnArtModule(dex_location.c_str()) ||
109 LocationIsOnConscryptModule(dex_location.c_str()) ||
110 LocationIsOnI18nModule(dex_location.c_str())) {
111 return Domain::kCorePlatform;
112 }
113
114 if (LocationIsOnApex(dex_location.c_str())) {
115 return Domain::kPlatform;
116 }
117 }
118
119 if (LocationIsOnSystemFramework(dex_location.c_str())) {
120 return Domain::kPlatform;
121 }
122
123 if (LocationIsOnSystemExtFramework(dex_location.c_str())) {
124 return Domain::kPlatform;
125 }
126
127 if (class_loader.IsNull()) {
128 if (kIsTargetBuild && !kIsTargetLinux) {
129 // This is unexpected only when running on Android.
130 LOG(WARNING) << "DexFile " << dex_location
131 << " is in boot class path but is not in a known location";
132 }
133 return Domain::kPlatform;
134 }
135
136 return Domain::kApplication;
137 }
138
InitializeDexFileDomain(const DexFile & dex_file,ObjPtr<mirror::ClassLoader> class_loader)139 void InitializeDexFileDomain(const DexFile& dex_file, ObjPtr<mirror::ClassLoader> class_loader) {
140 Domain dex_domain = DetermineDomainFromLocation(dex_file.GetLocation(), class_loader);
141
142 // Assign the domain unless a more permissive domain has already been assigned.
143 // This may happen when DexFile is initialized as trusted.
144 if (IsDomainMoreTrustedThan(dex_domain, dex_file.GetHiddenapiDomain())) {
145 dex_file.SetHiddenapiDomain(dex_domain);
146 }
147 }
148
InitializeCorePlatformApiPrivateFields()149 void InitializeCorePlatformApiPrivateFields() {
150 // The following fields in WellKnownClasses correspond to private fields in the Core Platform
151 // API that cannot be otherwise expressed and propagated through tooling (b/144502743).
152 jfieldID private_core_platform_api_fields[] = {
153 WellKnownClasses::java_io_FileDescriptor_descriptor,
154 WellKnownClasses::java_nio_Buffer_address,
155 WellKnownClasses::java_nio_Buffer_elementSizeShift,
156 WellKnownClasses::java_nio_Buffer_limit,
157 WellKnownClasses::java_nio_Buffer_position,
158 };
159
160 ScopedObjectAccess soa(Thread::Current());
161 for (const auto private_core_platform_api_field : private_core_platform_api_fields) {
162 ArtField* field = jni::DecodeArtField(private_core_platform_api_field);
163 const uint32_t access_flags = field->GetAccessFlags();
164 uint32_t new_access_flags = access_flags | kAccCorePlatformApi;
165 DCHECK(new_access_flags != access_flags);
166 field->SetAccessFlags(new_access_flags);
167 }
168 }
169
GetReflectionCallerAccessContext(Thread * self)170 hiddenapi::AccessContext GetReflectionCallerAccessContext(Thread* self)
171 REQUIRES_SHARED(Locks::mutator_lock_) {
172 // Walk the stack and find the first frame not from java.lang.Class,
173 // java.lang.invoke or java.lang.reflect. This is very expensive.
174 // Save this till the last.
175 struct FirstExternalCallerVisitor : public StackVisitor {
176 explicit FirstExternalCallerVisitor(Thread* thread)
177 : StackVisitor(thread, nullptr, StackVisitor::StackWalkKind::kIncludeInlinedFrames),
178 caller(nullptr) {
179 }
180
181 bool VisitFrame() override REQUIRES_SHARED(Locks::mutator_lock_) {
182 ArtMethod *m = GetMethod();
183 if (m == nullptr) {
184 // Attached native thread. Assume this is *not* boot class path.
185 caller = nullptr;
186 return false;
187 } else if (m->IsRuntimeMethod()) {
188 // Internal runtime method, continue walking the stack.
189 return true;
190 }
191
192 ObjPtr<mirror::Class> declaring_class = m->GetDeclaringClass();
193 if (declaring_class->IsBootStrapClassLoaded()) {
194 if (declaring_class->IsClassClass()) {
195 return true;
196 }
197 // Check classes in the java.lang.invoke package. At the time of writing, the
198 // classes of interest are MethodHandles and MethodHandles.Lookup, but this
199 // is subject to change so conservatively cover the entire package.
200 // NB Static initializers within java.lang.invoke are permitted and do not
201 // need further stack inspection.
202 ObjPtr<mirror::Class> lookup_class = GetClassRoot<mirror::MethodHandlesLookup>();
203 if ((declaring_class == lookup_class || declaring_class->IsInSamePackage(lookup_class))
204 && !m->IsClassInitializer()) {
205 return true;
206 }
207 // Check for classes in the java.lang.reflect package, except for java.lang.reflect.Proxy.
208 // java.lang.reflect.Proxy does its own hidden api checks (https://r.android.com/915496),
209 // and walking over this frame would cause a null pointer dereference
210 // (e.g. in 691-hiddenapi-proxy).
211 ObjPtr<mirror::Class> proxy_class = GetClassRoot<mirror::Proxy>();
212 CompatFramework& compat_framework = Runtime::Current()->GetCompatFramework();
213 if (declaring_class->IsInSamePackage(proxy_class) && declaring_class != proxy_class) {
214 if (compat_framework.IsChangeEnabled(kPreventMetaReflectionBlocklistAccess)) {
215 return true;
216 }
217 }
218 }
219
220 caller = m;
221 return false;
222 }
223
224 ArtMethod* caller;
225 };
226
227 FirstExternalCallerVisitor visitor(self);
228 visitor.WalkStack();
229
230 // Construct AccessContext from the calling class found on the stack.
231 // If the calling class cannot be determined, e.g. unattached threads,
232 // we conservatively assume the caller is trusted.
233 ObjPtr<mirror::Class> caller = (visitor.caller == nullptr)
234 ? nullptr : visitor.caller->GetDeclaringClass();
235 return caller.IsNull() ? AccessContext(/* is_trusted= */ true)
236 : AccessContext(caller);
237 }
238
239 namespace detail {
240
241 // Do not change the values of items in this enum, as they are written to the
242 // event log for offline analysis. Any changes will interfere with that analysis.
243 enum AccessContextFlags {
244 // Accessed member is a field if this bit is set, else a method
245 kMemberIsField = 1 << 0,
246 // Indicates if access was denied to the member, instead of just printing a warning.
247 kAccessDenied = 1 << 1,
248 };
249
MemberSignature(ArtField * field)250 MemberSignature::MemberSignature(ArtField* field) {
251 class_name_ = field->GetDeclaringClass()->GetDescriptor(&tmp_);
252 member_name_ = field->GetName();
253 type_signature_ = field->GetTypeDescriptor();
254 type_ = kField;
255 }
256
MemberSignature(ArtMethod * method)257 MemberSignature::MemberSignature(ArtMethod* method) {
258 DCHECK(method == method->GetInterfaceMethodIfProxy(kRuntimePointerSize))
259 << "Caller should have replaced proxy method with interface method";
260 class_name_ = method->GetDeclaringClass()->GetDescriptor(&tmp_);
261 member_name_ = method->GetName();
262 type_signature_ = method->GetSignature().ToString();
263 type_ = kMethod;
264 }
265
MemberSignature(const ClassAccessor::Field & field)266 MemberSignature::MemberSignature(const ClassAccessor::Field& field) {
267 const DexFile& dex_file = field.GetDexFile();
268 const dex::FieldId& field_id = dex_file.GetFieldId(field.GetIndex());
269 class_name_ = dex_file.GetFieldDeclaringClassDescriptor(field_id);
270 member_name_ = dex_file.GetFieldName(field_id);
271 type_signature_ = dex_file.GetFieldTypeDescriptor(field_id);
272 type_ = kField;
273 }
274
MemberSignature(const ClassAccessor::Method & method)275 MemberSignature::MemberSignature(const ClassAccessor::Method& method) {
276 const DexFile& dex_file = method.GetDexFile();
277 const dex::MethodId& method_id = dex_file.GetMethodId(method.GetIndex());
278 class_name_ = dex_file.GetMethodDeclaringClassDescriptor(method_id);
279 member_name_ = dex_file.GetMethodName(method_id);
280 type_signature_ = dex_file.GetMethodSignature(method_id).ToString();
281 type_ = kMethod;
282 }
283
GetSignatureParts() const284 inline std::vector<const char*> MemberSignature::GetSignatureParts() const {
285 if (type_ == kField) {
286 return { class_name_.c_str(), "->", member_name_.c_str(), ":", type_signature_.c_str() };
287 } else {
288 DCHECK_EQ(type_, kMethod);
289 return { class_name_.c_str(), "->", member_name_.c_str(), type_signature_.c_str() };
290 }
291 }
292
DoesPrefixMatch(const std::string & prefix) const293 bool MemberSignature::DoesPrefixMatch(const std::string& prefix) const {
294 size_t pos = 0;
295 for (const char* part : GetSignatureParts()) {
296 size_t count = std::min(prefix.length() - pos, strlen(part));
297 if (prefix.compare(pos, count, part, 0, count) == 0) {
298 pos += count;
299 } else {
300 return false;
301 }
302 }
303 // We have a complete match if all parts match (we exit the loop without
304 // returning) AND we've matched the whole prefix.
305 return pos == prefix.length();
306 }
307
DoesPrefixMatchAny(const std::vector<std::string> & exemptions)308 bool MemberSignature::DoesPrefixMatchAny(const std::vector<std::string>& exemptions) {
309 for (const std::string& exemption : exemptions) {
310 if (DoesPrefixMatch(exemption)) {
311 return true;
312 }
313 }
314 return false;
315 }
316
Dump(std::ostream & os) const317 void MemberSignature::Dump(std::ostream& os) const {
318 for (const char* part : GetSignatureParts()) {
319 os << part;
320 }
321 }
322
WarnAboutAccess(AccessMethod access_method,hiddenapi::ApiList list,bool access_denied)323 void MemberSignature::WarnAboutAccess(AccessMethod access_method,
324 hiddenapi::ApiList list,
325 bool access_denied) {
326 static std::atomic<uint64_t> log_warning_count_ = 0;
327 if (log_warning_count_ > kMaxLogWarnings) {
328 return;
329 }
330 LOG(WARNING) << "Accessing hidden " << (type_ == kField ? "field " : "method ")
331 << Dumpable<MemberSignature>(*this) << " (" << list << ", " << access_method
332 << (access_denied ? ", denied)" : ", allowed)");
333 if (access_denied && list.IsTestApi()) {
334 // see b/177047045 for more details about test api access getting denied
335 LOG(WARNING) << "If this is a platform test consider enabling "
336 << "VMRuntime.ALLOW_TEST_API_ACCESS change id for this package.";
337 }
338 if (log_warning_count_ >= kMaxLogWarnings) {
339 LOG(WARNING) << "Reached maximum number of hidden api access warnings.";
340 }
341 ++log_warning_count_;
342 }
343
Equals(const MemberSignature & other)344 bool MemberSignature::Equals(const MemberSignature& other) {
345 return type_ == other.type_ &&
346 class_name_ == other.class_name_ &&
347 member_name_ == other.member_name_ &&
348 type_signature_ == other.type_signature_;
349 }
350
MemberNameAndTypeMatch(const MemberSignature & other)351 bool MemberSignature::MemberNameAndTypeMatch(const MemberSignature& other) {
352 return member_name_ == other.member_name_ && type_signature_ == other.type_signature_;
353 }
354
LogAccessToEventLog(uint32_t sampled_value,AccessMethod access_method,bool access_denied)355 void MemberSignature::LogAccessToEventLog(uint32_t sampled_value,
356 AccessMethod access_method,
357 bool access_denied) {
358 #ifdef ART_TARGET_ANDROID
359 if (access_method == AccessMethod::kLinking || access_method == AccessMethod::kNone) {
360 // Linking warnings come from static analysis/compilation of the bytecode
361 // and can contain false positives (i.e. code that is never run). We choose
362 // not to log these in the event log.
363 // None does not correspond to actual access, so should also be ignored.
364 return;
365 }
366 Runtime* runtime = Runtime::Current();
367 if (runtime->IsAotCompiler()) {
368 return;
369 }
370 JNIEnvExt* env = Thread::Current()->GetJniEnv();
371 const std::string& package_name = Runtime::Current()->GetProcessPackageName();
372 ScopedLocalRef<jstring> package_str(env, env->NewStringUTF(package_name.c_str()));
373 if (env->ExceptionCheck()) {
374 env->ExceptionClear();
375 LOG(ERROR) << "Unable to allocate string for package name which called hidden api";
376 }
377 std::ostringstream signature_str;
378 Dump(signature_str);
379 ScopedLocalRef<jstring> signature_jstr(env,
380 env->NewStringUTF(signature_str.str().c_str()));
381 if (env->ExceptionCheck()) {
382 env->ExceptionClear();
383 LOG(ERROR) << "Unable to allocate string for hidden api method signature";
384 }
385 env->CallStaticVoidMethod(WellKnownClasses::dalvik_system_VMRuntime,
386 WellKnownClasses::dalvik_system_VMRuntime_hiddenApiUsed,
387 sampled_value,
388 package_str.get(),
389 signature_jstr.get(),
390 static_cast<jint>(access_method),
391 access_denied);
392 if (env->ExceptionCheck()) {
393 env->ExceptionClear();
394 LOG(ERROR) << "Unable to report hidden api usage";
395 }
396 #else
397 UNUSED(sampled_value);
398 UNUSED(access_method);
399 UNUSED(access_denied);
400 #endif
401 }
402
NotifyHiddenApiListener(AccessMethod access_method)403 void MemberSignature::NotifyHiddenApiListener(AccessMethod access_method) {
404 if (access_method != AccessMethod::kReflection && access_method != AccessMethod::kJNI) {
405 // We can only up-call into Java during reflection and JNI down-calls.
406 return;
407 }
408
409 Runtime* runtime = Runtime::Current();
410 if (!runtime->IsAotCompiler()) {
411 ScopedObjectAccessUnchecked soa(Thread::Current());
412
413 ScopedLocalRef<jobject> consumer_object(soa.Env(),
414 soa.Env()->GetStaticObjectField(
415 WellKnownClasses::dalvik_system_VMRuntime,
416 WellKnownClasses::dalvik_system_VMRuntime_nonSdkApiUsageConsumer));
417 // If the consumer is non-null, we call back to it to let it know that we
418 // have encountered an API that's in one of our lists.
419 if (consumer_object != nullptr) {
420 std::ostringstream member_signature_str;
421 Dump(member_signature_str);
422
423 ScopedLocalRef<jobject> signature_str(
424 soa.Env(),
425 soa.Env()->NewStringUTF(member_signature_str.str().c_str()));
426
427 // Call through to Consumer.accept(String memberSignature);
428 soa.Env()->CallVoidMethod(consumer_object.get(),
429 WellKnownClasses::java_util_function_Consumer_accept,
430 signature_str.get());
431 }
432 }
433 }
434
CanUpdateRuntimeFlags(ArtField *)435 static ALWAYS_INLINE bool CanUpdateRuntimeFlags(ArtField*) {
436 return true;
437 }
438
CanUpdateRuntimeFlags(ArtMethod * method)439 static ALWAYS_INLINE bool CanUpdateRuntimeFlags(ArtMethod* method) {
440 return !method->IsIntrinsic();
441 }
442
443 template<typename T>
MaybeUpdateAccessFlags(Runtime * runtime,T * member,uint32_t flag)444 static ALWAYS_INLINE void MaybeUpdateAccessFlags(Runtime* runtime, T* member, uint32_t flag)
445 REQUIRES_SHARED(Locks::mutator_lock_) {
446 // Update the access flags unless:
447 // (a) `member` is an intrinsic
448 // (b) this is AOT compiler, as we do not want the updated access flags in the boot/app image
449 // (c) deduping warnings has been explicitly switched off.
450 if (CanUpdateRuntimeFlags(member) &&
451 !runtime->IsAotCompiler() &&
452 runtime->ShouldDedupeHiddenApiWarnings()) {
453 member->SetAccessFlags(member->GetAccessFlags() | flag);
454 }
455 }
456
GetMemberDexIndex(ArtField * field)457 static ALWAYS_INLINE uint32_t GetMemberDexIndex(ArtField* field) {
458 return field->GetDexFieldIndex();
459 }
460
GetMemberDexIndex(ArtMethod * method)461 static ALWAYS_INLINE uint32_t GetMemberDexIndex(ArtMethod* method)
462 REQUIRES_SHARED(Locks::mutator_lock_) {
463 // Use the non-obsolete method to avoid DexFile mismatch between
464 // the method index and the declaring class.
465 return method->GetNonObsoleteMethod()->GetDexMethodIndex();
466 }
467
VisitMembers(const DexFile & dex_file,const dex::ClassDef & class_def,const std::function<void (const ClassAccessor::Field &)> & fn_visit)468 static void VisitMembers(const DexFile& dex_file,
469 const dex::ClassDef& class_def,
470 const std::function<void(const ClassAccessor::Field&)>& fn_visit) {
471 ClassAccessor accessor(dex_file, class_def, /* parse_hiddenapi_class_data= */ true);
472 accessor.VisitFields(fn_visit, fn_visit);
473 }
474
VisitMembers(const DexFile & dex_file,const dex::ClassDef & class_def,const std::function<void (const ClassAccessor::Method &)> & fn_visit)475 static void VisitMembers(const DexFile& dex_file,
476 const dex::ClassDef& class_def,
477 const std::function<void(const ClassAccessor::Method&)>& fn_visit) {
478 ClassAccessor accessor(dex_file, class_def, /* parse_hiddenapi_class_data= */ true);
479 accessor.VisitMethods(fn_visit, fn_visit);
480 }
481
482 template<typename T>
GetDexFlags(T * member)483 uint32_t GetDexFlags(T* member) REQUIRES_SHARED(Locks::mutator_lock_) {
484 static_assert(std::is_same<T, ArtField>::value || std::is_same<T, ArtMethod>::value);
485 constexpr bool kMemberIsField = std::is_same<T, ArtField>::value;
486 using AccessorType = typename std::conditional<std::is_same<T, ArtField>::value,
487 ClassAccessor::Field, ClassAccessor::Method>::type;
488
489 ObjPtr<mirror::Class> declaring_class = member->GetDeclaringClass();
490 DCHECK(!declaring_class.IsNull()) << "Attempting to access a runtime method";
491
492 ApiList flags;
493 DCHECK(!flags.IsValid());
494
495 // Check if the declaring class has ClassExt allocated. If it does, check if
496 // the pre-JVMTI redefine dex file has been set to determine if the declaring
497 // class has been JVMTI-redefined.
498 ObjPtr<mirror::ClassExt> ext(declaring_class->GetExtData());
499 const DexFile* original_dex = ext.IsNull() ? nullptr : ext->GetPreRedefineDexFile();
500 if (LIKELY(original_dex == nullptr)) {
501 // Class is not redefined. Find the class def, iterate over its members and
502 // find the entry corresponding to this `member`.
503 const dex::ClassDef* class_def = declaring_class->GetClassDef();
504 if (class_def == nullptr) {
505 // ClassDef is not set for proxy classes. Only their fields can ever be inspected.
506 DCHECK(declaring_class->IsProxyClass())
507 << "Only proxy classes are expected not to have a class def";
508 DCHECK(kMemberIsField)
509 << "Interface methods should be inspected instead of proxy class methods";
510 flags = ApiList::Unsupported();
511 } else {
512 uint32_t member_index = GetMemberDexIndex(member);
513 auto fn_visit = [&](const AccessorType& dex_member) {
514 if (dex_member.GetIndex() == member_index) {
515 flags = ApiList(dex_member.GetHiddenapiFlags());
516 }
517 };
518 VisitMembers(declaring_class->GetDexFile(), *class_def, fn_visit);
519 }
520 } else {
521 // Class was redefined using JVMTI. We have a pointer to the original dex file
522 // and the class def index of this class in that dex file, but the field/method
523 // indices are lost. Iterate over all members of the class def and find the one
524 // corresponding to this `member` by name and type string comparison.
525 // This is obviously very slow, but it is only used when non-exempt code tries
526 // to access a hidden member of a JVMTI-redefined class.
527 uint16_t class_def_idx = ext->GetPreRedefineClassDefIndex();
528 DCHECK_NE(class_def_idx, DexFile::kDexNoIndex16);
529 const dex::ClassDef& original_class_def = original_dex->GetClassDef(class_def_idx);
530 MemberSignature member_signature(member);
531 auto fn_visit = [&](const AccessorType& dex_member) {
532 MemberSignature cur_signature(dex_member);
533 if (member_signature.MemberNameAndTypeMatch(cur_signature)) {
534 DCHECK(member_signature.Equals(cur_signature));
535 flags = ApiList(dex_member.GetHiddenapiFlags());
536 }
537 };
538 VisitMembers(*original_dex, original_class_def, fn_visit);
539 }
540
541 CHECK(flags.IsValid()) << "Could not find hiddenapi flags for "
542 << Dumpable<MemberSignature>(MemberSignature(member));
543 return flags.GetDexFlags();
544 }
545
546 template<typename T>
HandleCorePlatformApiViolation(T * member,const AccessContext & caller_context,AccessMethod access_method,EnforcementPolicy policy)547 bool HandleCorePlatformApiViolation(T* member,
548 const AccessContext& caller_context,
549 AccessMethod access_method,
550 EnforcementPolicy policy) {
551 DCHECK(policy != EnforcementPolicy::kDisabled)
552 << "Should never enter this function when access checks are completely disabled";
553
554 if (access_method != AccessMethod::kNone) {
555 LOG(WARNING) << "Core platform API violation: "
556 << Dumpable<MemberSignature>(MemberSignature(member))
557 << " from " << caller_context << " using " << access_method;
558
559 // If policy is set to just warn, add kAccCorePlatformApi to access flags of
560 // `member` to avoid reporting the violation again next time.
561 if (policy == EnforcementPolicy::kJustWarn) {
562 MaybeUpdateAccessFlags(Runtime::Current(), member, kAccCorePlatformApi);
563 }
564 }
565
566 // Deny access if enforcement is enabled.
567 return policy == EnforcementPolicy::kEnabled;
568 }
569
570 template<typename T>
ShouldDenyAccessToMemberImpl(T * member,ApiList api_list,AccessMethod access_method)571 bool ShouldDenyAccessToMemberImpl(T* member, ApiList api_list, AccessMethod access_method) {
572 DCHECK(member != nullptr);
573 Runtime* runtime = Runtime::Current();
574 CompatFramework& compatFramework = runtime->GetCompatFramework();
575
576 EnforcementPolicy hiddenApiPolicy = runtime->GetHiddenApiEnforcementPolicy();
577 DCHECK(hiddenApiPolicy != EnforcementPolicy::kDisabled)
578 << "Should never enter this function when access checks are completely disabled";
579
580 MemberSignature member_signature(member);
581
582 // Check for an exemption first. Exempted APIs are treated as SDK.
583 if (member_signature.DoesPrefixMatchAny(runtime->GetHiddenApiExemptions())) {
584 // Avoid re-examining the exemption list next time.
585 // Note this results in no warning for the member, which seems like what one would expect.
586 // Exemptions effectively adds new members to the public API list.
587 MaybeUpdateAccessFlags(runtime, member, kAccPublicApi);
588 return false;
589 }
590
591 EnforcementPolicy testApiPolicy = runtime->GetTestApiEnforcementPolicy();
592
593 bool deny_access = false;
594 if (hiddenApiPolicy == EnforcementPolicy::kEnabled) {
595 if (api_list.IsTestApi() &&
596 (testApiPolicy == EnforcementPolicy::kDisabled ||
597 compatFramework.IsChangeEnabled(kAllowTestApiAccess))) {
598 deny_access = false;
599 } else {
600 switch (api_list.GetMaxAllowedSdkVersion()) {
601 case SdkVersion::kP:
602 deny_access = compatFramework.IsChangeEnabled(kHideMaxtargetsdkPHiddenApis);
603 break;
604 case SdkVersion::kQ:
605 deny_access = compatFramework.IsChangeEnabled(kHideMaxtargetsdkQHiddenApis);
606 break;
607 default:
608 deny_access = IsSdkVersionSetAndMoreThan(runtime->GetTargetSdkVersion(),
609 api_list.GetMaxAllowedSdkVersion());
610 }
611 }
612 }
613
614 if (access_method != AccessMethod::kNone) {
615 // Warn if blocked signature is being accessed or it is not exempted.
616 if (deny_access || !member_signature.DoesPrefixMatchAny(kWarningExemptions)) {
617 // Print a log message with information about this class member access.
618 // We do this if we're about to deny access, or the app is debuggable.
619 if (kLogAllAccesses || deny_access || runtime->IsJavaDebuggable()) {
620 member_signature.WarnAboutAccess(access_method, api_list, deny_access);
621 }
622
623 // If there is a StrictMode listener, notify it about this violation.
624 member_signature.NotifyHiddenApiListener(access_method);
625 }
626
627 // If event log sampling is enabled, report this violation.
628 if (kIsTargetBuild && !kIsTargetLinux) {
629 uint32_t eventLogSampleRate = runtime->GetHiddenApiEventLogSampleRate();
630 // Assert that RAND_MAX is big enough, to ensure sampling below works as expected.
631 static_assert(RAND_MAX >= 0xffff, "RAND_MAX too small");
632 if (eventLogSampleRate != 0) {
633 const uint32_t sampled_value = static_cast<uint32_t>(std::rand()) & 0xffff;
634 if (sampled_value < eventLogSampleRate) {
635 member_signature.LogAccessToEventLog(sampled_value, access_method, deny_access);
636 }
637 }
638 }
639
640 // If this access was not denied, flag member as SDK and skip
641 // the warning the next time the member is accessed. Don't update for
642 // non-debuggable apps as this has a memory cost.
643 if (!deny_access && runtime->IsJavaDebuggable()) {
644 MaybeUpdateAccessFlags(runtime, member, kAccPublicApi);
645 }
646 }
647
648 return deny_access;
649 }
650
651 // Need to instantiate these.
652 template uint32_t GetDexFlags<ArtField>(ArtField* member);
653 template uint32_t GetDexFlags<ArtMethod>(ArtMethod* member);
654 template bool HandleCorePlatformApiViolation(ArtField* member,
655 const AccessContext& caller_context,
656 AccessMethod access_method,
657 EnforcementPolicy policy);
658 template bool HandleCorePlatformApiViolation(ArtMethod* member,
659 const AccessContext& caller_context,
660 AccessMethod access_method,
661 EnforcementPolicy policy);
662 template bool ShouldDenyAccessToMemberImpl<ArtField>(ArtField* member,
663 ApiList api_list,
664 AccessMethod access_method);
665 template bool ShouldDenyAccessToMemberImpl<ArtMethod>(ArtMethod* member,
666 ApiList api_list,
667 AccessMethod access_method);
668 } // namespace detail
669
670 template<typename T>
ShouldDenyAccessToMember(T * member,const std::function<AccessContext ()> & fn_get_access_context,AccessMethod access_method)671 bool ShouldDenyAccessToMember(T* member,
672 const std::function<AccessContext()>& fn_get_access_context,
673 AccessMethod access_method) {
674 DCHECK(member != nullptr);
675
676 // First check if we have an explicit sdk checker installed that should be used to
677 // verify access. If so, make the decision based on it.
678 //
679 // This is used during off-device AOT compilation which may want to generate verification
680 // metadata only for a specific list of public SDKs. Note that the check here is made
681 // based on descriptor equality and it's aim to further restrict a symbol that would
682 // otherwise be resolved.
683 //
684 // The check only applies to boot classpaths dex files.
685 Runtime* runtime = Runtime::Current();
686 if (UNLIKELY(runtime->IsAotCompiler())) {
687 if (member->GetDeclaringClass()->IsBootStrapClassLoaded() &&
688 runtime->GetClassLinker()->DenyAccessBasedOnPublicSdk(member)) {
689 return true;
690 }
691 }
692
693 // Get the runtime flags encoded in member's access flags.
694 // Note: this works for proxy methods because they inherit access flags from their
695 // respective interface methods.
696 const uint32_t runtime_flags = GetRuntimeFlags(member);
697
698 // Exit early if member is public API. This flag is also set for non-boot class
699 // path fields/methods.
700 if ((runtime_flags & kAccPublicApi) != 0) {
701 return false;
702 }
703
704 // Determine which domain the caller and callee belong to.
705 // This can be *very* expensive. This is why ShouldDenyAccessToMember
706 // should not be called on every individual access.
707 const AccessContext caller_context = fn_get_access_context();
708 const AccessContext callee_context(member->GetDeclaringClass());
709
710 // Non-boot classpath callers should have exited early.
711 DCHECK(!callee_context.IsApplicationDomain());
712
713 // Check if the caller is always allowed to access members in the callee context.
714 if (caller_context.CanAlwaysAccess(callee_context)) {
715 return false;
716 }
717
718 // Check if this is platform accessing core platform. We may warn if `member` is
719 // not part of core platform API.
720 switch (caller_context.GetDomain()) {
721 case Domain::kApplication: {
722 DCHECK(!callee_context.IsApplicationDomain());
723
724 // Exit early if access checks are completely disabled.
725 EnforcementPolicy policy = runtime->GetHiddenApiEnforcementPolicy();
726 if (policy == EnforcementPolicy::kDisabled) {
727 return false;
728 }
729
730 // If this is a proxy method, look at the interface method instead.
731 member = detail::GetInterfaceMemberIfProxy(member);
732
733 // Decode hidden API access flags from the dex file.
734 // This is an O(N) operation scaling with the number of fields/methods
735 // in the class. Only do this on slow path and only do it once.
736 ApiList api_list(detail::GetDexFlags(member));
737 DCHECK(api_list.IsValid());
738
739 // Member is hidden and caller is not exempted. Enter slow path.
740 return detail::ShouldDenyAccessToMemberImpl(member, api_list, access_method);
741 }
742
743 case Domain::kPlatform: {
744 DCHECK(callee_context.GetDomain() == Domain::kCorePlatform);
745
746 // Member is part of core platform API. Accessing it is allowed.
747 if ((runtime_flags & kAccCorePlatformApi) != 0) {
748 return false;
749 }
750
751 // Allow access if access checks are disabled.
752 EnforcementPolicy policy = Runtime::Current()->GetCorePlatformApiEnforcementPolicy();
753 if (policy == EnforcementPolicy::kDisabled) {
754 return false;
755 }
756
757 // If this is a proxy method, look at the interface method instead.
758 member = detail::GetInterfaceMemberIfProxy(member);
759
760 // Access checks are not disabled, report the violation.
761 // This may also add kAccCorePlatformApi to the access flags of `member`
762 // so as to not warn again on next access.
763 return detail::HandleCorePlatformApiViolation(member,
764 caller_context,
765 access_method,
766 policy);
767 }
768
769 case Domain::kCorePlatform: {
770 LOG(FATAL) << "CorePlatform domain should be allowed to access all domains";
771 UNREACHABLE();
772 }
773 }
774 }
775
776 // Need to instantiate these.
777 template bool ShouldDenyAccessToMember<ArtField>(
778 ArtField* member,
779 const std::function<AccessContext()>& fn_get_access_context,
780 AccessMethod access_method);
781 template bool ShouldDenyAccessToMember<ArtMethod>(
782 ArtMethod* member,
783 const std::function<AccessContext()>& fn_get_access_context,
784 AccessMethod access_method);
785
786 } // namespace hiddenapi
787 } // namespace art
788