entrypoint_utils.cc revision bd136a29f08486525d6abc7d0a0006ce5b4011c1
1/*
2 * Copyright (C) 2012 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 "entrypoints/entrypoint_utils.h"
18
19#include "class_linker-inl.h"
20#include "dex_file-inl.h"
21#include "gc/accounting/card_table-inl.h"
22#include "mirror/art_field-inl.h"
23#include "mirror/art_method-inl.h"
24#include "mirror/class-inl.h"
25#include "mirror/object-inl.h"
26#include "object_utils.h"
27#include "mirror/object_array-inl.h"
28#include "mirror/proxy.h"
29#include "reflection.h"
30#include "scoped_thread_state_change.h"
31#include "ScopedLocalRef.h"
32#include "well_known_classes.h"
33
34namespace art {
35
36// Helper function to allocate array for FILLED_NEW_ARRAY.
37mirror::Array* CheckAndAllocArrayFromCode(uint32_t type_idx, mirror::ArtMethod* referrer,
38                                          int32_t component_count, Thread* self,
39                                          bool access_check) {
40  if (UNLIKELY(component_count < 0)) {
41    ThrowNegativeArraySizeException(component_count);
42    return NULL;  // Failure
43  }
44  mirror::Class* klass = referrer->GetDexCacheResolvedTypes()->Get(type_idx);
45  if (UNLIKELY(klass == NULL)) {  // Not in dex cache so try to resolve
46    klass = Runtime::Current()->GetClassLinker()->ResolveType(type_idx, referrer);
47    if (klass == NULL) {  // Error
48      DCHECK(self->IsExceptionPending());
49      return NULL;  // Failure
50    }
51  }
52  if (UNLIKELY(klass->IsPrimitive() && !klass->IsPrimitiveInt())) {
53    if (klass->IsPrimitiveLong() || klass->IsPrimitiveDouble()) {
54      ThrowRuntimeException("Bad filled array request for type %s",
55                            PrettyDescriptor(klass).c_str());
56    } else {
57      ThrowLocation throw_location = self->GetCurrentLocationForThrow();
58      DCHECK(throw_location.GetMethod() == referrer);
59      self->ThrowNewExceptionF(throw_location, "Ljava/lang/InternalError;",
60                               "Found type %s; filled-new-array not implemented for anything but \'int\'",
61                               PrettyDescriptor(klass).c_str());
62    }
63    return NULL;  // Failure
64  } else {
65    if (access_check) {
66      mirror::Class* referrer_klass = referrer->GetDeclaringClass();
67      if (UNLIKELY(!referrer_klass->CanAccess(klass))) {
68        ThrowIllegalAccessErrorClass(referrer_klass, klass);
69        return NULL;  // Failure
70      }
71    }
72    DCHECK(klass->IsArrayClass()) << PrettyClass(klass);
73    return mirror::Array::Alloc(self, klass, component_count);
74  }
75}
76
77mirror::ArtField* FindFieldFromCode(uint32_t field_idx, const mirror::ArtMethod* referrer,
78                                 Thread* self, FindFieldType type, size_t expected_size,
79                                 bool access_check) {
80  bool is_primitive;
81  bool is_set;
82  bool is_static;
83  switch (type) {
84    case InstanceObjectRead:     is_primitive = false; is_set = false; is_static = false; break;
85    case InstanceObjectWrite:    is_primitive = false; is_set = true;  is_static = false; break;
86    case InstancePrimitiveRead:  is_primitive = true;  is_set = false; is_static = false; break;
87    case InstancePrimitiveWrite: is_primitive = true;  is_set = true;  is_static = false; break;
88    case StaticObjectRead:       is_primitive = false; is_set = false; is_static = true;  break;
89    case StaticObjectWrite:      is_primitive = false; is_set = true;  is_static = true;  break;
90    case StaticPrimitiveRead:    is_primitive = true;  is_set = false; is_static = true;  break;
91    case StaticPrimitiveWrite:   // Keep GCC happy by having a default handler, fall-through.
92    default:                     is_primitive = true;  is_set = true;  is_static = true;  break;
93  }
94  ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
95  mirror::ArtField* resolved_field = class_linker->ResolveField(field_idx, referrer, is_static);
96  if (UNLIKELY(resolved_field == NULL)) {
97    DCHECK(self->IsExceptionPending());  // Throw exception and unwind.
98    return NULL;  // Failure.
99  }
100  mirror::Class* fields_class = resolved_field->GetDeclaringClass();
101  if (access_check) {
102    if (UNLIKELY(resolved_field->IsStatic() != is_static)) {
103      ThrowIncompatibleClassChangeErrorField(resolved_field, is_static, referrer);
104      return NULL;
105    }
106    mirror::Class* referring_class = referrer->GetDeclaringClass();
107    if (UNLIKELY(!referring_class->CanAccess(fields_class) ||
108                 !referring_class->CanAccessMember(fields_class,
109                                                   resolved_field->GetAccessFlags()))) {
110      // The referring class can't access the resolved field, this may occur as a result of a
111      // protected field being made public by a sub-class. Resort to the dex file to determine
112      // the correct class for the access check.
113      const DexFile& dex_file = *referring_class->GetDexCache()->GetDexFile();
114      fields_class = class_linker->ResolveType(dex_file,
115                                               dex_file.GetFieldId(field_idx).class_idx_,
116                                               referring_class);
117      if (UNLIKELY(!referring_class->CanAccess(fields_class))) {
118        ThrowIllegalAccessErrorClass(referring_class, fields_class);
119        return NULL;  // failure
120      } else if (UNLIKELY(!referring_class->CanAccessMember(fields_class,
121                                                            resolved_field->GetAccessFlags()))) {
122        ThrowIllegalAccessErrorField(referring_class, resolved_field);
123        return NULL;  // failure
124      }
125    }
126    if (UNLIKELY(is_set && resolved_field->IsFinal() && (fields_class != referring_class))) {
127      ThrowIllegalAccessErrorFinalField(referrer, resolved_field);
128      return NULL;  // failure
129    } else {
130      FieldHelper fh(resolved_field);
131      if (UNLIKELY(fh.IsPrimitiveType() != is_primitive ||
132                   fh.FieldSize() != expected_size)) {
133        ThrowLocation throw_location = self->GetCurrentLocationForThrow();
134        DCHECK(throw_location.GetMethod() == referrer);
135        self->ThrowNewExceptionF(throw_location, "Ljava/lang/NoSuchFieldError;",
136                                 "Attempted read of %zd-bit %s on field '%s'",
137                                 expected_size * (32 / sizeof(int32_t)),
138                                 is_primitive ? "primitive" : "non-primitive",
139                                 PrettyField(resolved_field, true).c_str());
140        return NULL;  // failure
141      }
142    }
143  }
144  if (!is_static) {
145    // instance fields must be being accessed on an initialized class
146    return resolved_field;
147  } else {
148    // If the class is initialized we're done.
149    if (fields_class->IsInitialized()) {
150      return resolved_field;
151    } else if (Runtime::Current()->GetClassLinker()->EnsureInitialized(fields_class, true, true)) {
152      // Otherwise let's ensure the class is initialized before resolving the field.
153      return resolved_field;
154    } else {
155      DCHECK(self->IsExceptionPending());  // Throw exception and unwind
156      return NULL;  // failure
157    }
158  }
159}
160
161// Slow path method resolution
162mirror::ArtMethod* FindMethodFromCode(uint32_t method_idx, mirror::Object* this_object,
163                                           mirror::ArtMethod* referrer,
164                                           Thread* self, bool access_check, InvokeType type) {
165  ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
166  bool is_direct = type == kStatic || type == kDirect;
167  mirror::ArtMethod* resolved_method = class_linker->ResolveMethod(method_idx, referrer, type);
168  if (UNLIKELY(resolved_method == NULL)) {
169    DCHECK(self->IsExceptionPending());  // Throw exception and unwind.
170    return NULL;  // Failure.
171  } else if (UNLIKELY(this_object == NULL && type != kStatic)) {
172    // Maintain interpreter-like semantics where NullPointerException is thrown
173    // after potential NoSuchMethodError from class linker.
174    ThrowLocation throw_location = self->GetCurrentLocationForThrow();
175    DCHECK(referrer == throw_location.GetMethod());
176    ThrowNullPointerExceptionForMethodAccess(throw_location, method_idx, type);
177    return NULL;  // Failure.
178  } else {
179    if (!access_check) {
180      if (is_direct) {
181        return resolved_method;
182      } else if (type == kInterface) {
183        mirror::ArtMethod* interface_method =
184            this_object->GetClass()->FindVirtualMethodForInterface(resolved_method);
185        if (UNLIKELY(interface_method == NULL)) {
186          ThrowIncompatibleClassChangeErrorClassForInterfaceDispatch(resolved_method, this_object,
187                                                                     referrer);
188          return NULL;  // Failure.
189        } else {
190          return interface_method;
191        }
192      } else {
193        mirror::ObjectArray<mirror::ArtMethod>* vtable;
194        uint16_t vtable_index = resolved_method->GetMethodIndex();
195        if (type == kSuper) {
196          vtable = referrer->GetDeclaringClass()->GetSuperClass()->GetVTable();
197        } else {
198          vtable = this_object->GetClass()->GetVTable();
199        }
200        // TODO: eliminate bounds check?
201        return vtable->Get(vtable_index);
202      }
203    } else {
204      // Incompatible class change should have been handled in resolve method.
205      if (UNLIKELY(resolved_method->CheckIncompatibleClassChange(type))) {
206        ThrowIncompatibleClassChangeError(type, resolved_method->GetInvokeType(), resolved_method,
207                                          referrer);
208        return NULL;  // Failure.
209      }
210      mirror::Class* methods_class = resolved_method->GetDeclaringClass();
211      mirror::Class* referring_class = referrer->GetDeclaringClass();
212      if (UNLIKELY(!referring_class->CanAccess(methods_class) ||
213                   !referring_class->CanAccessMember(methods_class,
214                                                     resolved_method->GetAccessFlags()))) {
215        // The referring class can't access the resolved method, this may occur as a result of a
216        // protected method being made public by implementing an interface that re-declares the
217        // method public. Resort to the dex file to determine the correct class for the access check
218        const DexFile& dex_file = *referring_class->GetDexCache()->GetDexFile();
219        methods_class = class_linker->ResolveType(dex_file,
220                                                  dex_file.GetMethodId(method_idx).class_idx_,
221                                                  referring_class);
222        if (UNLIKELY(!referring_class->CanAccess(methods_class))) {
223          ThrowIllegalAccessErrorClassForMethodDispatch(referring_class, methods_class,
224                                                        referrer, resolved_method, type);
225          return NULL;  // Failure.
226        } else if (UNLIKELY(!referring_class->CanAccessMember(methods_class,
227                                                              resolved_method->GetAccessFlags()))) {
228          ThrowIllegalAccessErrorMethod(referring_class, resolved_method);
229          return NULL;  // Failure.
230        }
231      }
232      if (is_direct) {
233        return resolved_method;
234      } else if (type == kInterface) {
235        mirror::ArtMethod* interface_method =
236            this_object->GetClass()->FindVirtualMethodForInterface(resolved_method);
237        if (UNLIKELY(interface_method == NULL)) {
238          ThrowIncompatibleClassChangeErrorClassForInterfaceDispatch(resolved_method, this_object,
239                                                                     referrer);
240          return NULL;  // Failure.
241        } else {
242          return interface_method;
243        }
244      } else {
245        mirror::ObjectArray<mirror::ArtMethod>* vtable;
246        uint16_t vtable_index = resolved_method->GetMethodIndex();
247        if (type == kSuper) {
248          mirror::Class* super_class = referring_class->GetSuperClass();
249          if (LIKELY(super_class != NULL)) {
250            vtable = referring_class->GetSuperClass()->GetVTable();
251          } else {
252            vtable = NULL;
253          }
254        } else {
255          vtable = this_object->GetClass()->GetVTable();
256        }
257        if (LIKELY(vtable != NULL &&
258                   vtable_index < static_cast<uint32_t>(vtable->GetLength()))) {
259          return vtable->GetWithoutChecks(vtable_index);
260        } else {
261          // Behavior to agree with that of the verifier.
262          MethodHelper mh(resolved_method);
263          ThrowNoSuchMethodError(type, resolved_method->GetDeclaringClass(), mh.GetName(),
264                                 mh.GetSignature());
265          return NULL;  // Failure.
266        }
267      }
268    }
269  }
270}
271
272void ThrowStackOverflowError(Thread* self) {
273  if (self->IsHandlingStackOverflow()) {
274      LOG(ERROR) << "Recursive stack overflow.";
275      // We don't fail here because SetStackEndForStackOverflow will print better diagnostics.
276  }
277
278  if (Runtime::Current()->GetInstrumentation()->AreExitStubsInstalled()) {
279    // Remove extra entry pushed onto second stack during method tracing.
280    Runtime::Current()->GetInstrumentation()->PopMethodForUnwind(self, false);
281  }
282
283  self->SetStackEndForStackOverflow();  // Allow space on the stack for constructor to execute.
284  JNIEnvExt* env = self->GetJniEnv();
285  std::string msg("stack size ");
286  msg += PrettySize(self->GetStackSize());
287  // Use low-level JNI routine and pre-baked error class to avoid class linking operations that
288  // would consume more stack.
289  int rc = ::art::ThrowNewException(env, WellKnownClasses::java_lang_StackOverflowError,
290                                    msg.c_str(), NULL);
291  if (rc != JNI_OK) {
292    // TODO: ThrowNewException failed presumably because of an OOME, we continue to throw the OOME
293    //       or die in the CHECK below. We may want to throw a pre-baked StackOverflowError
294    //       instead.
295    LOG(ERROR) << "Couldn't throw new StackOverflowError because JNI ThrowNew failed.";
296    CHECK(self->IsExceptionPending());
297  }
298  self->ResetDefaultStackEnd();  // Return to default stack size.
299}
300
301JValue InvokeProxyInvocationHandler(ScopedObjectAccessUnchecked& soa, const char* shorty,
302                                    jobject rcvr_jobj, jobject interface_method_jobj,
303                                    std::vector<jvalue>& args) {
304  DCHECK(soa.Env()->IsInstanceOf(rcvr_jobj, WellKnownClasses::java_lang_reflect_Proxy));
305
306  // Build argument array possibly triggering GC.
307  soa.Self()->AssertThreadSuspensionIsAllowable();
308  jobjectArray args_jobj = NULL;
309  const JValue zero;
310  if (args.size() > 0) {
311    args_jobj = soa.Env()->NewObjectArray(args.size(), WellKnownClasses::java_lang_Object, NULL);
312    if (args_jobj == NULL) {
313      CHECK(soa.Self()->IsExceptionPending());
314      return zero;
315    }
316    for (size_t i = 0; i < args.size(); ++i) {
317      if (shorty[i + 1] == 'L') {
318        jobject val = args.at(i).l;
319        soa.Env()->SetObjectArrayElement(args_jobj, i, val);
320      } else {
321        JValue jv;
322        jv.SetJ(args.at(i).j);
323        mirror::Object* val = BoxPrimitive(Primitive::GetType(shorty[i + 1]), jv);
324        if (val == NULL) {
325          CHECK(soa.Self()->IsExceptionPending());
326          return zero;
327        }
328        soa.Decode<mirror::ObjectArray<mirror::Object>* >(args_jobj)->Set(i, val);
329      }
330    }
331  }
332
333  // Call Proxy.invoke(Proxy proxy, ArtMethod method, Object[] args).
334  jvalue invocation_args[3];
335  invocation_args[0].l = rcvr_jobj;
336  invocation_args[1].l = interface_method_jobj;
337  invocation_args[2].l = args_jobj;
338  jobject result =
339      soa.Env()->CallStaticObjectMethodA(WellKnownClasses::java_lang_reflect_Proxy,
340                                         WellKnownClasses::java_lang_reflect_Proxy_invoke,
341                                         invocation_args);
342
343  // Unbox result and handle error conditions.
344  if (LIKELY(!soa.Self()->IsExceptionPending())) {
345    if (shorty[0] == 'V' || (shorty[0] == 'L' && result == NULL)) {
346      // Do nothing.
347      return zero;
348    } else {
349      mirror::Object* result_ref = soa.Decode<mirror::Object*>(result);
350      mirror::Object* rcvr = soa.Decode<mirror::Object*>(rcvr_jobj);
351      mirror::ArtMethod* interface_method =
352          soa.Decode<mirror::ArtMethod*>(interface_method_jobj);
353      mirror::Class* result_type = MethodHelper(interface_method).GetReturnType();
354      mirror::ArtMethod* proxy_method;
355      if (interface_method->GetDeclaringClass()->IsInterface()) {
356        proxy_method = rcvr->GetClass()->FindVirtualMethodForInterface(interface_method);
357      } else {
358        // Proxy dispatch to a method defined in Object.
359        DCHECK(interface_method->GetDeclaringClass()->IsObjectClass());
360        proxy_method = interface_method;
361      }
362      ThrowLocation throw_location(rcvr, proxy_method, -1);
363      JValue result_unboxed;
364      if (!UnboxPrimitiveForResult(throw_location, result_ref, result_type, result_unboxed)) {
365        DCHECK(soa.Self()->IsExceptionPending());
366        return zero;
367      }
368      return result_unboxed;
369    }
370  } else {
371    // In the case of checked exceptions that aren't declared, the exception must be wrapped by
372    // a UndeclaredThrowableException.
373    mirror::Throwable* exception = soa.Self()->GetException(NULL);
374    if (exception->IsCheckedException()) {
375      mirror::Object* rcvr = soa.Decode<mirror::Object*>(rcvr_jobj);
376      mirror::SynthesizedProxyClass* proxy_class =
377          down_cast<mirror::SynthesizedProxyClass*>(rcvr->GetClass());
378      mirror::ArtMethod* interface_method =
379          soa.Decode<mirror::ArtMethod*>(interface_method_jobj);
380      mirror::ArtMethod* proxy_method =
381          rcvr->GetClass()->FindVirtualMethodForInterface(interface_method);
382      int throws_index = -1;
383      size_t num_virt_methods = proxy_class->NumVirtualMethods();
384      for (size_t i = 0; i < num_virt_methods; i++) {
385        if (proxy_class->GetVirtualMethod(i) == proxy_method) {
386          throws_index = i;
387          break;
388        }
389      }
390      CHECK_NE(throws_index, -1);
391      mirror::ObjectArray<mirror::Class>* declared_exceptions = proxy_class->GetThrows()->Get(throws_index);
392      mirror::Class* exception_class = exception->GetClass();
393      bool declares_exception = false;
394      for (int i = 0; i < declared_exceptions->GetLength() && !declares_exception; i++) {
395        mirror::Class* declared_exception = declared_exceptions->Get(i);
396        declares_exception = declared_exception->IsAssignableFrom(exception_class);
397      }
398      if (!declares_exception) {
399        ThrowLocation throw_location(rcvr, proxy_method, -1);
400        soa.Self()->ThrowNewWrappedException(throw_location,
401                                             "Ljava/lang/reflect/UndeclaredThrowableException;",
402                                             NULL);
403      }
404    }
405    return zero;
406  }
407}
408
409}  // namespace art
410