dalvik_system_DexFile.cc revision 95abd04d211470ea4b9b9191b96dd0f32e7ce3a4
1/*
2 * Copyright (C) 2008 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 "dalvik_system_DexFile.h"
18
19#include "base/logging.h"
20#include "base/stl_util.h"
21#include "base/stringprintf.h"
22#include "class_linker.h"
23#include "common_throws.h"
24#include "dex_file-inl.h"
25#include "jni_internal.h"
26#include "mirror/class_loader.h"
27#include "mirror/object-inl.h"
28#include "mirror/string.h"
29#include "oat_file_assistant.h"
30#include "os.h"
31#include "profiler.h"
32#include "runtime.h"
33#include "scoped_thread_state_change.h"
34#include "ScopedLocalRef.h"
35#include "ScopedUtfChars.h"
36#include "utils.h"
37#include "well_known_classes.h"
38#include "zip_archive.h"
39
40namespace art {
41
42static std::unique_ptr<std::vector<const DexFile*>>
43ConvertJavaArrayToNative(JNIEnv* env, jobject arrayObject) {
44  jarray array = reinterpret_cast<jarray>(arrayObject);
45
46  jsize array_size = env->GetArrayLength(array);
47  if (env->ExceptionCheck() == JNI_TRUE) {
48    return std::unique_ptr<std::vector<const DexFile*>>();
49  }
50
51  // TODO: Optimize. On 32bit we can use an int array.
52  jboolean is_long_data_copied;
53  jlong* long_data = env->GetLongArrayElements(reinterpret_cast<jlongArray>(array),
54                                               &is_long_data_copied);
55  if (env->ExceptionCheck() == JNI_TRUE) {
56    return std::unique_ptr<std::vector<const DexFile*>>();
57  }
58
59  std::unique_ptr<std::vector<const DexFile*>> ret(new std::vector<const DexFile*>());
60  ret->reserve(array_size);
61  for (jsize i = 0; i < array_size; ++i) {
62    ret->push_back(reinterpret_cast<const DexFile*>(static_cast<uintptr_t>(*(long_data + i))));
63  }
64
65  env->ReleaseLongArrayElements(reinterpret_cast<jlongArray>(array), long_data, JNI_ABORT);
66  if (env->ExceptionCheck() == JNI_TRUE) {
67    return std::unique_ptr<std::vector<const DexFile*>>();
68  }
69
70  return ret;
71}
72
73static jlongArray ConvertNativeToJavaArray(JNIEnv* env,
74                                           std::vector<std::unique_ptr<const DexFile>>& vec) {
75  size_t vec_size = vec.size();
76  jlongArray long_array = env->NewLongArray(static_cast<jsize>(vec_size));
77  if (env->ExceptionCheck() == JNI_TRUE) {
78    return nullptr;
79  }
80
81  jboolean is_long_data_copied;
82  jlong* long_data = env->GetLongArrayElements(long_array, &is_long_data_copied);
83  if (env->ExceptionCheck() == JNI_TRUE) {
84    return nullptr;
85  }
86
87  jlong* tmp = long_data;
88  for (auto& dex_file : vec) {
89    *tmp = reinterpret_cast<uintptr_t>(dex_file.get());
90    tmp++;
91  }
92
93  env->ReleaseLongArrayElements(long_array, long_data, 0);
94  if (env->ExceptionCheck() == JNI_TRUE) {
95    return nullptr;
96  }
97
98  // Now release all the unique_ptrs.
99  for (auto& dex_file : vec) {
100    dex_file.release();
101  }
102
103  return long_array;
104}
105
106// A smart pointer that provides read-only access to a Java string's UTF chars.
107// Unlike libcore's NullableScopedUtfChars, this will *not* throw NullPointerException if
108// passed a null jstring. The correct idiom is:
109//
110//   NullableScopedUtfChars name(env, javaName);
111//   if (env->ExceptionCheck()) {
112//       return NULL;
113//   }
114//   // ... use name.c_str()
115//
116// TODO: rewrite to get rid of this, or change ScopedUtfChars to offer this option.
117class NullableScopedUtfChars {
118 public:
119  NullableScopedUtfChars(JNIEnv* env, jstring s) : mEnv(env), mString(s) {
120    mUtfChars = (s != NULL) ? env->GetStringUTFChars(s, NULL) : NULL;
121  }
122
123  ~NullableScopedUtfChars() {
124    if (mUtfChars) {
125      mEnv->ReleaseStringUTFChars(mString, mUtfChars);
126    }
127  }
128
129  const char* c_str() const {
130    return mUtfChars;
131  }
132
133  size_t size() const {
134    return strlen(mUtfChars);
135  }
136
137  // Element access.
138  const char& operator[](size_t n) const {
139    return mUtfChars[n];
140  }
141
142 private:
143  JNIEnv* mEnv;
144  jstring mString;
145  const char* mUtfChars;
146
147  // Disallow copy and assignment.
148  NullableScopedUtfChars(const NullableScopedUtfChars&);
149  void operator=(const NullableScopedUtfChars&);
150};
151
152static jobject DexFile_openDexFileNative(JNIEnv* env, jclass, jstring javaSourceName, jstring javaOutputName, jint) {
153  ScopedUtfChars sourceName(env, javaSourceName);
154  if (sourceName.c_str() == NULL) {
155    return 0;
156  }
157  NullableScopedUtfChars outputName(env, javaOutputName);
158  if (env->ExceptionCheck()) {
159    return 0;
160  }
161
162  ClassLinker* linker = Runtime::Current()->GetClassLinker();
163  std::vector<std::unique_ptr<const DexFile>> dex_files;
164  std::vector<std::string> error_msgs;
165
166  dex_files = linker->OpenDexFilesFromOat(sourceName.c_str(), outputName.c_str(), &error_msgs);
167
168  if (!dex_files.empty()) {
169    jlongArray array = ConvertNativeToJavaArray(env, dex_files);
170    if (array == nullptr) {
171      ScopedObjectAccess soa(env);
172      for (auto& dex_file : dex_files) {
173        if (Runtime::Current()->GetClassLinker()->IsDexFileRegistered(*dex_file)) {
174          dex_file.release();
175        }
176      }
177    }
178    return array;
179  } else {
180    ScopedObjectAccess soa(env);
181    CHECK(!error_msgs.empty());
182    // The most important message is at the end. So set up nesting by going forward, which will
183    // wrap the existing exception as a cause for the following one.
184    auto it = error_msgs.begin();
185    auto itEnd = error_msgs.end();
186    for ( ; it != itEnd; ++it) {
187      ThrowWrappedIOException("%s", it->c_str());
188    }
189
190    return nullptr;
191  }
192}
193
194static void DexFile_closeDexFile(JNIEnv* env, jclass, jobject cookie) {
195  std::unique_ptr<std::vector<const DexFile*>> dex_files = ConvertJavaArrayToNative(env, cookie);
196  if (dex_files.get() == nullptr) {
197    DCHECK(env->ExceptionCheck());
198    return;
199  }
200
201  ScopedObjectAccess soa(env);
202
203  // The Runtime currently never unloads classes, which means any registered
204  // dex files must be kept around forever in case they are used. We
205  // accomplish this here by explicitly leaking those dex files that are
206  // registered.
207  //
208  // TODO: The Runtime should support unloading of classes and freeing of the
209  // dex files for those unloaded classes rather than leaking dex files here.
210  for (auto& dex_file : *dex_files) {
211    if (!Runtime::Current()->GetClassLinker()->IsDexFileRegistered(*dex_file)) {
212      delete dex_file;
213    }
214  }
215}
216
217static jclass DexFile_defineClassNative(JNIEnv* env, jclass, jstring javaName, jobject javaLoader,
218                                        jobject cookie) {
219  std::unique_ptr<std::vector<const DexFile*>> dex_files = ConvertJavaArrayToNative(env, cookie);
220  if (dex_files.get() == nullptr) {
221    VLOG(class_linker) << "Failed to find dex_file";
222    DCHECK(env->ExceptionCheck());
223    return nullptr;
224  }
225
226  ScopedUtfChars class_name(env, javaName);
227  if (class_name.c_str() == NULL) {
228    VLOG(class_linker) << "Failed to find class_name";
229    return NULL;
230  }
231  const std::string descriptor(DotToDescriptor(class_name.c_str()));
232  const size_t hash(ComputeModifiedUtf8Hash(descriptor.c_str()));
233  for (auto& dex_file : *dex_files) {
234    const DexFile::ClassDef* dex_class_def = dex_file->FindClassDef(descriptor.c_str(), hash);
235    if (dex_class_def != nullptr) {
236      ScopedObjectAccess soa(env);
237      ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
238      class_linker->RegisterDexFile(*dex_file);
239      StackHandleScope<1> hs(soa.Self());
240      Handle<mirror::ClassLoader> class_loader(
241          hs.NewHandle(soa.Decode<mirror::ClassLoader*>(javaLoader)));
242      mirror::Class* result = class_linker->DefineClass(soa.Self(), descriptor.c_str(), hash,
243                                                        class_loader, *dex_file, *dex_class_def);
244      if (result != nullptr) {
245        VLOG(class_linker) << "DexFile_defineClassNative returning " << result
246                           << " for " << class_name.c_str();
247        return soa.AddLocalReference<jclass>(result);
248      }
249    }
250  }
251  VLOG(class_linker) << "Failed to find dex_class_def " << class_name.c_str();
252  return nullptr;
253}
254
255// Needed as a compare functor for sets of const char
256struct CharPointerComparator {
257  bool operator()(const char *str1, const char *str2) const {
258    return strcmp(str1, str2) < 0;
259  }
260};
261
262// Note: this can be an expensive call, as we sort out duplicates in MultiDex files.
263static jobjectArray DexFile_getClassNameList(JNIEnv* env, jclass, jobject cookie) {
264  std::unique_ptr<std::vector<const DexFile*>> dex_files = ConvertJavaArrayToNative(env, cookie);
265  if (dex_files.get() == nullptr) {
266    DCHECK(env->ExceptionCheck());
267    return nullptr;
268  }
269
270  // Push all class descriptors into a set. Use set instead of unordered_set as we want to
271  // retrieve all in the end.
272  std::set<const char*, CharPointerComparator> descriptors;
273  for (auto& dex_file : *dex_files) {
274    for (size_t i = 0; i < dex_file->NumClassDefs(); ++i) {
275      const DexFile::ClassDef& class_def = dex_file->GetClassDef(i);
276      const char* descriptor = dex_file->GetClassDescriptor(class_def);
277      descriptors.insert(descriptor);
278    }
279  }
280
281  // Now create output array and copy the set into it.
282  jobjectArray result = env->NewObjectArray(descriptors.size(), WellKnownClasses::java_lang_String,
283                                            nullptr);
284  if (result != nullptr) {
285    auto it = descriptors.begin();
286    auto it_end = descriptors.end();
287    jsize i = 0;
288    for (; it != it_end; it++, ++i) {
289      std::string descriptor(DescriptorToDot(*it));
290      ScopedLocalRef<jstring> jdescriptor(env, env->NewStringUTF(descriptor.c_str()));
291      if (jdescriptor.get() == nullptr) {
292        return nullptr;
293      }
294      env->SetObjectArrayElement(result, i, jdescriptor.get());
295    }
296  }
297  return result;
298}
299
300static jint GetDexOptNeeded(JNIEnv* env, const char* filename,
301    const char* pkgname, const char* instruction_set, const jboolean defer) {
302
303  if ((filename == nullptr) || !OS::FileExists(filename)) {
304    LOG(ERROR) << "DexFile_getDexOptNeeded file '" << filename << "' does not exist";
305    ScopedLocalRef<jclass> fnfe(env, env->FindClass("java/io/FileNotFoundException"));
306    const char* message = (filename == nullptr) ? "<empty file name>" : filename;
307    env->ThrowNew(fnfe.get(), message);
308    return OatFileAssistant::kNoDexOptNeeded;
309  }
310
311  const InstructionSet target_instruction_set = GetInstructionSetFromString(instruction_set);
312  if (target_instruction_set == kNone) {
313    ScopedLocalRef<jclass> iae(env, env->FindClass("java/lang/IllegalArgumentException"));
314    std::string message(StringPrintf("Instruction set %s is invalid.", instruction_set));
315    env->ThrowNew(iae.get(), message.c_str());
316    return 0;
317  }
318
319  // TODO: Verify the dex location is well formed, and throw an IOException if
320  // not?
321
322  OatFileAssistant oat_file_assistant(filename, target_instruction_set, false, pkgname);
323
324  // Always treat elements of the bootclasspath as up-to-date.
325  if (oat_file_assistant.IsInBootClassPath()) {
326    return OatFileAssistant::kNoDexOptNeeded;
327  }
328
329  // TODO: Checking the profile should probably be done in the GetStatus()
330  // function. We have it here because GetStatus() should not be copying
331  // profile files. But who should be copying profile files?
332  if (oat_file_assistant.OdexFileIsOutOfDate()) {
333    // Needs recompile if profile has changed significantly.
334    if (Runtime::Current()->GetProfilerOptions().IsEnabled()) {
335      if (oat_file_assistant.IsProfileChangeSignificant()) {
336        if (!defer) {
337          oat_file_assistant.CopyProfileFile();
338        }
339        return OatFileAssistant::kDex2OatNeeded;
340      } else if (oat_file_assistant.ProfileExists()
341          && !oat_file_assistant.OldProfileExists()) {
342        if (!defer) {
343          oat_file_assistant.CopyProfileFile();
344        }
345      }
346    }
347  }
348
349  return oat_file_assistant.GetDexOptNeeded();
350}
351
352static jint DexFile_getDexOptNeeded(JNIEnv* env, jclass, jstring javaFilename,
353    jstring javaPkgname, jstring javaInstructionSet, jboolean defer) {
354  ScopedUtfChars filename(env, javaFilename);
355  if (env->ExceptionCheck()) {
356    return 0;
357  }
358
359  NullableScopedUtfChars pkgname(env, javaPkgname);
360
361  ScopedUtfChars instruction_set(env, javaInstructionSet);
362  if (env->ExceptionCheck()) {
363    return 0;
364  }
365
366  return GetDexOptNeeded(env, filename.c_str(), pkgname.c_str(),
367                         instruction_set.c_str(), defer);
368}
369
370// public API, NULL pkgname
371static jboolean DexFile_isDexOptNeeded(JNIEnv* env, jclass, jstring javaFilename) {
372  const char* instruction_set = GetInstructionSetString(kRuntimeISA);
373  ScopedUtfChars filename(env, javaFilename);
374  jint status = GetDexOptNeeded(env, filename.c_str(), nullptr /* pkgname */,
375                                instruction_set, false /* defer */);
376  return (status != OatFileAssistant::kNoDexOptNeeded) ? JNI_TRUE : JNI_FALSE;
377}
378
379static JNINativeMethod gMethods[] = {
380  NATIVE_METHOD(DexFile, closeDexFile, "(Ljava/lang/Object;)V"),
381  NATIVE_METHOD(DexFile, defineClassNative, "(Ljava/lang/String;Ljava/lang/ClassLoader;Ljava/lang/Object;)Ljava/lang/Class;"),
382  NATIVE_METHOD(DexFile, getClassNameList, "(Ljava/lang/Object;)[Ljava/lang/String;"),
383  NATIVE_METHOD(DexFile, isDexOptNeeded, "(Ljava/lang/String;)Z"),
384  NATIVE_METHOD(DexFile, getDexOptNeeded, "(Ljava/lang/String;Ljava/lang/String;Ljava/lang/String;Z)I"),
385  NATIVE_METHOD(DexFile, openDexFileNative, "(Ljava/lang/String;Ljava/lang/String;I)Ljava/lang/Object;"),
386};
387
388void register_dalvik_system_DexFile(JNIEnv* env) {
389  REGISTER_NATIVE_METHODS("dalvik/system/DexFile");
390}
391
392}  // namespace art
393