315 lines
10 KiB
C++
315 lines
10 KiB
C++
// Copyright 2012 The Chromium Authors
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/android/jni_android.h"
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#include <stddef.h>
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#include <sys/prctl.h>
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#include "base/android/java_exception_reporter.h"
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#include "base/android/jni_string.h"
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#include "base/android/jni_utils.h"
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#include "base/base_jni_headers/PiiElider_jni.h"
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#include "base/debug/debugging_buildflags.h"
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#include "base/logging.h"
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#include "build/build_config.h"
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#include "third_party/abseil-cpp/absl/base/attributes.h"
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namespace base {
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namespace android {
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namespace {
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JavaVM* g_jvm = nullptr;
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jobject g_class_loader = nullptr;
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jmethodID g_class_loader_load_class_method_id = 0;
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#if BUILDFLAG(CAN_UNWIND_WITH_FRAME_POINTERS)
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ABSL_CONST_INIT thread_local void* stack_frame_pointer = nullptr;
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#endif
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bool g_fatal_exception_occurred = false;
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ScopedJavaLocalRef<jclass> GetClassInternal(JNIEnv* env,
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const char* class_name,
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jobject class_loader) {
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jclass clazz;
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if (class_loader != nullptr) {
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// ClassLoader.loadClass expects a classname with components separated by
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// dots instead of the slashes that JNIEnv::FindClass expects. The JNI
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// generator generates names with slashes, so we have to replace them here.
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// TODO(torne): move to an approach where we always use ClassLoader except
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// for the special case of base::android::GetClassLoader(), and change the
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// JNI generator to generate dot-separated names. http://crbug.com/461773
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size_t bufsize = strlen(class_name) + 1;
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char dotted_name[bufsize];
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memmove(dotted_name, class_name, bufsize);
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for (size_t i = 0; i < bufsize; ++i) {
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if (dotted_name[i] == '/') {
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dotted_name[i] = '.';
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}
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}
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clazz = static_cast<jclass>(
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env->CallObjectMethod(class_loader, g_class_loader_load_class_method_id,
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ConvertUTF8ToJavaString(env, dotted_name).obj()));
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} else {
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clazz = env->FindClass(class_name);
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}
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if (ClearException(env) || !clazz) {
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LOG(FATAL) << "Failed to find class " << class_name;
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}
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return ScopedJavaLocalRef<jclass>(env, clazz);
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}
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} // namespace
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JNIEnv* AttachCurrentThread() {
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DCHECK(g_jvm);
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JNIEnv* env = nullptr;
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jint ret = g_jvm->GetEnv(reinterpret_cast<void**>(&env), JNI_VERSION_1_2);
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if (ret == JNI_EDETACHED || !env) {
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JavaVMAttachArgs args;
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args.version = JNI_VERSION_1_2;
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args.group = nullptr;
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// 16 is the maximum size for thread names on Android.
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char thread_name[16];
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int err = prctl(PR_GET_NAME, thread_name);
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if (err < 0) {
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DPLOG(ERROR) << "prctl(PR_GET_NAME)";
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args.name = nullptr;
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} else {
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args.name = thread_name;
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}
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#if BUILDFLAG(IS_ANDROID)
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ret = g_jvm->AttachCurrentThread(&env, &args);
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#else
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ret = g_jvm->AttachCurrentThread(reinterpret_cast<void**>(&env), &args);
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#endif
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CHECK_EQ(JNI_OK, ret);
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}
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return env;
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}
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JNIEnv* AttachCurrentThreadWithName(const std::string& thread_name) {
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DCHECK(g_jvm);
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JavaVMAttachArgs args;
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args.version = JNI_VERSION_1_2;
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args.name = const_cast<char*>(thread_name.c_str());
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args.group = nullptr;
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JNIEnv* env = nullptr;
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#if BUILDFLAG(IS_ANDROID)
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jint ret = g_jvm->AttachCurrentThread(&env, &args);
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#else
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jint ret = g_jvm->AttachCurrentThread(reinterpret_cast<void**>(&env), &args);
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#endif
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CHECK_EQ(JNI_OK, ret);
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return env;
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}
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void DetachFromVM() {
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// Ignore the return value, if the thread is not attached, DetachCurrentThread
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// will fail. But it is ok as the native thread may never be attached.
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if (g_jvm)
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g_jvm->DetachCurrentThread();
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}
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void InitVM(JavaVM* vm) {
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DCHECK(!g_jvm || g_jvm == vm);
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g_jvm = vm;
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}
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bool IsVMInitialized() {
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return g_jvm != nullptr;
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}
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JavaVM* GetVM() {
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return g_jvm;
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}
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void InitGlobalClassLoader(JNIEnv* env) {
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DCHECK(g_class_loader == nullptr);
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ScopedJavaLocalRef<jclass> class_loader_clazz =
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GetClass(env, "java/lang/ClassLoader");
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CHECK(!ClearException(env));
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g_class_loader_load_class_method_id =
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env->GetMethodID(class_loader_clazz.obj(),
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"loadClass",
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"(Ljava/lang/String;)Ljava/lang/Class;");
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CHECK(!ClearException(env));
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// GetClassLoader() caches the reference, so we do not need to wrap it in a
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// smart pointer as well.
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g_class_loader = GetClassLoader(env);
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}
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ScopedJavaLocalRef<jclass> GetClass(JNIEnv* env,
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const char* class_name,
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const char* split_name) {
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return GetClassInternal(env, class_name,
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GetSplitClassLoader(env, split_name));
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}
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ScopedJavaLocalRef<jclass> GetClass(JNIEnv* env, const char* class_name) {
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return GetClassInternal(env, class_name, g_class_loader);
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}
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// This is duplicated with LazyGetClass below because these are performance
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// sensitive.
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jclass LazyGetClass(JNIEnv* env,
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const char* class_name,
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const char* split_name,
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std::atomic<jclass>* atomic_class_id) {
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const jclass value = atomic_class_id->load(std::memory_order_acquire);
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if (value)
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return value;
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ScopedJavaGlobalRef<jclass> clazz;
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clazz.Reset(GetClass(env, class_name, split_name));
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jclass cas_result = nullptr;
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if (atomic_class_id->compare_exchange_strong(cas_result, clazz.obj(),
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std::memory_order_acq_rel)) {
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// We intentionally leak the global ref since we now storing it as a raw
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// pointer in |atomic_class_id|.
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return clazz.Release();
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} else {
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return cas_result;
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}
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}
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// This is duplicated with LazyGetClass above because these are performance
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// sensitive.
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jclass LazyGetClass(JNIEnv* env,
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const char* class_name,
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std::atomic<jclass>* atomic_class_id) {
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const jclass value = atomic_class_id->load(std::memory_order_acquire);
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if (value)
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return value;
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ScopedJavaGlobalRef<jclass> clazz;
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clazz.Reset(GetClass(env, class_name));
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jclass cas_result = nullptr;
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if (atomic_class_id->compare_exchange_strong(cas_result, clazz.obj(),
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std::memory_order_acq_rel)) {
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// We intentionally leak the global ref since we now storing it as a raw
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// pointer in |atomic_class_id|.
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return clazz.Release();
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} else {
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return cas_result;
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}
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}
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template<MethodID::Type type>
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jmethodID MethodID::Get(JNIEnv* env,
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jclass clazz,
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const char* method_name,
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const char* jni_signature) {
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auto get_method_ptr = type == MethodID::TYPE_STATIC ?
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&JNIEnv::GetStaticMethodID :
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&JNIEnv::GetMethodID;
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jmethodID id = (env->*get_method_ptr)(clazz, method_name, jni_signature);
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if (base::android::ClearException(env) || !id) {
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LOG(FATAL) << "Failed to find " <<
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(type == TYPE_STATIC ? "static " : "") <<
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"method " << method_name << " " << jni_signature;
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}
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return id;
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}
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// If |atomic_method_id| set, it'll return immediately. Otherwise, it'll call
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// into ::Get() above. If there's a race, it's ok since the values are the same
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// (and the duplicated effort will happen only once).
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template <MethodID::Type type>
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jmethodID MethodID::LazyGet(JNIEnv* env,
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jclass clazz,
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const char* method_name,
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const char* jni_signature,
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std::atomic<jmethodID>* atomic_method_id) {
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const jmethodID value = atomic_method_id->load(std::memory_order_acquire);
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if (value)
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return value;
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jmethodID id = MethodID::Get<type>(env, clazz, method_name, jni_signature);
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atomic_method_id->store(id, std::memory_order_release);
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return id;
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}
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// Various template instantiations.
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template jmethodID MethodID::Get<MethodID::TYPE_STATIC>(
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JNIEnv* env, jclass clazz, const char* method_name,
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const char* jni_signature);
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template jmethodID MethodID::Get<MethodID::TYPE_INSTANCE>(
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JNIEnv* env, jclass clazz, const char* method_name,
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const char* jni_signature);
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template jmethodID MethodID::LazyGet<MethodID::TYPE_STATIC>(
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JNIEnv* env, jclass clazz, const char* method_name,
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const char* jni_signature, std::atomic<jmethodID>* atomic_method_id);
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template jmethodID MethodID::LazyGet<MethodID::TYPE_INSTANCE>(
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JNIEnv* env, jclass clazz, const char* method_name,
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const char* jni_signature, std::atomic<jmethodID>* atomic_method_id);
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bool HasException(JNIEnv* env) {
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return env->ExceptionCheck() != JNI_FALSE;
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}
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bool ClearException(JNIEnv* env) {
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if (!HasException(env))
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return false;
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env->ExceptionDescribe();
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env->ExceptionClear();
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return true;
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}
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void CheckException(JNIEnv* env) {
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if (!HasException(env))
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return;
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jthrowable java_throwable = env->ExceptionOccurred();
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if (java_throwable) {
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// Clear the pending exception, since a local reference is now held.
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env->ExceptionDescribe();
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env->ExceptionClear();
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if (g_fatal_exception_occurred) {
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// Another exception (probably OOM) occurred during GetJavaExceptionInfo.
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base::android::SetJavaException(
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"Java OOM'ed in exception handling, check logcat");
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} else {
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g_fatal_exception_occurred = true;
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// RVO should avoid any extra copies of the exception string.
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base::android::SetJavaException(
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GetJavaExceptionInfo(env, java_throwable).c_str());
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}
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}
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// Now, feel good about it and die.
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LOG(FATAL) << "Please include Java exception stack in crash report";
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}
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std::string GetJavaExceptionInfo(JNIEnv* env, jthrowable java_throwable) {
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ScopedJavaLocalRef<jstring> sanitized_exception_string =
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Java_PiiElider_getSanitizedStacktrace(
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env, ScopedJavaLocalRef(env, java_throwable));
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return ConvertJavaStringToUTF8(sanitized_exception_string);
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}
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#if BUILDFLAG(CAN_UNWIND_WITH_FRAME_POINTERS)
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JNIStackFrameSaver::JNIStackFrameSaver(void* current_fp)
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: resetter_(&stack_frame_pointer, current_fp) {}
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JNIStackFrameSaver::~JNIStackFrameSaver() = default;
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void* JNIStackFrameSaver::SavedFrame() {
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return stack_frame_pointer;
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}
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#endif // BUILDFLAG(CAN_UNWIND_WITH_FRAME_POINTERS)
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} // namespace android
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} // namespace base
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