643 lines
21 KiB
C++
643 lines
21 KiB
C++
/*
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* Copyright (C) 2012 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "common_runtime_test.h"
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#include <cstdio>
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#include <dirent.h>
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#include <dlfcn.h>
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#include <fcntl.h>
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#include <ScopedLocalRef.h>
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#include <stdlib.h>
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#include "../../external/icu/icu4c/source/common/unicode/uvernum.h"
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#include "art_field-inl.h"
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#include "base/macros.h"
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#include "base/logging.h"
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#include "base/stl_util.h"
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#include "base/stringprintf.h"
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#include "base/unix_file/fd_file.h"
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#include "class_linker.h"
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#include "compiler_callbacks.h"
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#include "dex_file-inl.h"
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#include "gc_root-inl.h"
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#include "gc/heap.h"
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#include "gtest/gtest.h"
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#include "handle_scope-inl.h"
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#include "interpreter/unstarted_runtime.h"
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#include "jni_internal.h"
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#include "mirror/class-inl.h"
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#include "mirror/class_loader.h"
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#include "mem_map.h"
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#include "native/dalvik_system_DexFile.h"
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#include "noop_compiler_callbacks.h"
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#include "os.h"
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#include "primitive.h"
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#include "runtime-inl.h"
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#include "scoped_thread_state_change.h"
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#include "thread.h"
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#include "well_known_classes.h"
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int main(int argc, char **argv) {
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// Gtests can be very noisy. For example, an executable with multiple tests will trigger native
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// bridge warnings. The following line reduces the minimum log severity to ERROR and suppresses
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// everything else. In case you want to see all messages, comment out the line.
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setenv("ANDROID_LOG_TAGS", "*:e", 1);
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art::InitLogging(argv);
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LOG(::art::INFO) << "Running main() from common_runtime_test.cc...";
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testing::InitGoogleTest(&argc, argv);
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return RUN_ALL_TESTS();
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}
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namespace art {
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ScratchFile::ScratchFile() {
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// ANDROID_DATA needs to be set
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CHECK_NE(static_cast<char*>(nullptr), getenv("ANDROID_DATA")) <<
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"Are you subclassing RuntimeTest?";
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filename_ = getenv("ANDROID_DATA");
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filename_ += "/TmpFile-XXXXXX";
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int fd = mkstemp(&filename_[0]);
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CHECK_NE(-1, fd) << strerror(errno) << " for " << filename_;
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file_.reset(new File(fd, GetFilename(), true));
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}
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ScratchFile::ScratchFile(const ScratchFile& other, const char* suffix)
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: ScratchFile(other.GetFilename() + suffix) {}
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ScratchFile::ScratchFile(const std::string& filename) : filename_(filename) {
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int fd = open(filename_.c_str(), O_RDWR | O_CREAT, 0666);
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CHECK_NE(-1, fd);
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file_.reset(new File(fd, GetFilename(), true));
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}
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ScratchFile::ScratchFile(File* file) {
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CHECK(file != nullptr);
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filename_ = file->GetPath();
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file_.reset(file);
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}
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ScratchFile::ScratchFile(ScratchFile&& other) {
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*this = std::move(other);
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}
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ScratchFile& ScratchFile::operator=(ScratchFile&& other) {
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if (GetFile() != other.GetFile()) {
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std::swap(filename_, other.filename_);
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std::swap(file_, other.file_);
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}
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return *this;
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}
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ScratchFile::~ScratchFile() {
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Unlink();
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}
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int ScratchFile::GetFd() const {
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return file_->Fd();
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}
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void ScratchFile::Close() {
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if (file_.get() != nullptr) {
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if (file_->FlushCloseOrErase() != 0) {
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PLOG(WARNING) << "Error closing scratch file.";
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}
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}
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}
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void ScratchFile::Unlink() {
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if (!OS::FileExists(filename_.c_str())) {
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return;
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}
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Close();
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int unlink_result = unlink(filename_.c_str());
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CHECK_EQ(0, unlink_result);
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}
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static bool unstarted_initialized_ = false;
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CommonRuntimeTestImpl::CommonRuntimeTestImpl() {}
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CommonRuntimeTestImpl::~CommonRuntimeTestImpl() {
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// Ensure the dex files are cleaned up before the runtime.
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loaded_dex_files_.clear();
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runtime_.reset();
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}
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void CommonRuntimeTestImpl::SetUpAndroidRoot() {
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if (IsHost()) {
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// $ANDROID_ROOT is set on the device, but not necessarily on the host.
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// But it needs to be set so that icu4c can find its locale data.
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const char* android_root_from_env = getenv("ANDROID_ROOT");
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if (android_root_from_env == nullptr) {
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// Use ANDROID_HOST_OUT for ANDROID_ROOT if it is set.
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const char* android_host_out = getenv("ANDROID_HOST_OUT");
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if (android_host_out != nullptr) {
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setenv("ANDROID_ROOT", android_host_out, 1);
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} else {
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// Build it from ANDROID_BUILD_TOP or cwd
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std::string root;
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const char* android_build_top = getenv("ANDROID_BUILD_TOP");
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if (android_build_top != nullptr) {
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root += android_build_top;
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} else {
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// Not set by build server, so default to current directory
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char* cwd = getcwd(nullptr, 0);
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setenv("ANDROID_BUILD_TOP", cwd, 1);
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root += cwd;
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free(cwd);
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}
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#if defined(__linux__)
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root += "/out/host/linux-x86";
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#elif defined(__APPLE__)
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root += "/out/host/darwin-x86";
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#else
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#error unsupported OS
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#endif
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setenv("ANDROID_ROOT", root.c_str(), 1);
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}
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}
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setenv("LD_LIBRARY_PATH", ":", 0); // Required by java.lang.System.<clinit>.
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// Not set by build server, so default
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if (getenv("ANDROID_HOST_OUT") == nullptr) {
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setenv("ANDROID_HOST_OUT", getenv("ANDROID_ROOT"), 1);
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}
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}
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}
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void CommonRuntimeTestImpl::SetUpAndroidData(std::string& android_data) {
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// On target, Cannot use /mnt/sdcard because it is mounted noexec, so use subdir of dalvik-cache
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if (IsHost()) {
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const char* tmpdir = getenv("TMPDIR");
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if (tmpdir != nullptr && tmpdir[0] != 0) {
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android_data = tmpdir;
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} else {
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android_data = "/tmp";
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}
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} else {
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android_data = "/data/dalvik-cache";
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}
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android_data += "/art-data-XXXXXX";
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if (mkdtemp(&android_data[0]) == nullptr) {
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PLOG(FATAL) << "mkdtemp(\"" << &android_data[0] << "\") failed";
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}
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setenv("ANDROID_DATA", android_data.c_str(), 1);
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}
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void CommonRuntimeTestImpl::TearDownAndroidData(const std::string& android_data,
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bool fail_on_error) {
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if (fail_on_error) {
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ASSERT_EQ(rmdir(android_data.c_str()), 0);
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} else {
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rmdir(android_data.c_str());
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}
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}
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// Helper - find directory with the following format:
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// ${ANDROID_BUILD_TOP}/${subdir1}/${subdir2}-${version}/${subdir3}/bin/
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static std::string GetAndroidToolsDir(const std::string& subdir1,
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const std::string& subdir2,
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const std::string& subdir3) {
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std::string root;
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const char* android_build_top = getenv("ANDROID_BUILD_TOP");
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if (android_build_top != nullptr) {
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root = android_build_top;
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} else {
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// Not set by build server, so default to current directory
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char* cwd = getcwd(nullptr, 0);
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setenv("ANDROID_BUILD_TOP", cwd, 1);
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root = cwd;
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free(cwd);
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}
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std::string toolsdir = root + "/" + subdir1;
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std::string founddir;
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DIR* dir;
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if ((dir = opendir(toolsdir.c_str())) != nullptr) {
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float maxversion = 0;
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struct dirent* entry;
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while ((entry = readdir(dir)) != nullptr) {
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std::string format = subdir2 + "-%f";
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float version;
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if (std::sscanf(entry->d_name, format.c_str(), &version) == 1) {
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if (version > maxversion) {
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maxversion = version;
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founddir = toolsdir + "/" + entry->d_name + "/" + subdir3 + "/bin/";
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}
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}
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}
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closedir(dir);
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}
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if (founddir.empty()) {
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ADD_FAILURE() << "Cannot find Android tools directory.";
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}
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return founddir;
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}
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std::string CommonRuntimeTestImpl::GetAndroidHostToolsDir() {
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return GetAndroidToolsDir("prebuilts/gcc/linux-x86/host",
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"x86_64-linux-glibc2.15",
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"x86_64-linux");
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}
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std::string CommonRuntimeTestImpl::GetAndroidTargetToolsDir(InstructionSet isa) {
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switch (isa) {
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case kArm:
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case kThumb2:
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return GetAndroidToolsDir("prebuilts/gcc/linux-x86/arm",
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"arm-linux-androideabi",
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"arm-linux-androideabi");
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case kArm64:
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return GetAndroidToolsDir("prebuilts/gcc/linux-x86/aarch64",
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"aarch64-linux-android",
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"aarch64-linux-android");
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case kX86:
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case kX86_64:
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return GetAndroidToolsDir("prebuilts/gcc/linux-x86/x86",
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"x86_64-linux-android",
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"x86_64-linux-android");
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case kMips:
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case kMips64:
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return GetAndroidToolsDir("prebuilts/gcc/linux-x86/mips",
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"mips64el-linux-android",
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"mips64el-linux-android");
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case kNone:
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break;
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}
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ADD_FAILURE() << "Invalid isa " << isa;
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return "";
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}
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std::string CommonRuntimeTestImpl::GetCoreArtLocation() {
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return GetCoreFileLocation("art");
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}
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std::string CommonRuntimeTestImpl::GetCoreOatLocation() {
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return GetCoreFileLocation("oat");
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}
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std::unique_ptr<const DexFile> CommonRuntimeTestImpl::LoadExpectSingleDexFile(
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const char* location) {
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std::vector<std::unique_ptr<const DexFile>> dex_files;
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std::string error_msg;
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MemMap::Init();
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if (!DexFile::Open(location, location, &error_msg, &dex_files)) {
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LOG(FATAL) << "Could not open .dex file '" << location << "': " << error_msg << "\n";
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UNREACHABLE();
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} else {
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CHECK_EQ(1U, dex_files.size()) << "Expected only one dex file in " << location;
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return std::move(dex_files[0]);
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}
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}
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void CommonRuntimeTestImpl::SetUp() {
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SetUpAndroidRoot();
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SetUpAndroidData(android_data_);
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dalvik_cache_.append(android_data_.c_str());
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dalvik_cache_.append("/dalvik-cache");
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int mkdir_result = mkdir(dalvik_cache_.c_str(), 0700);
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ASSERT_EQ(mkdir_result, 0);
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std::string min_heap_string(StringPrintf("-Xms%zdm", gc::Heap::kDefaultInitialSize / MB));
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std::string max_heap_string(StringPrintf("-Xmx%zdm", gc::Heap::kDefaultMaximumSize / MB));
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RuntimeOptions options;
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std::string boot_class_path_string = "-Xbootclasspath";
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for (const std::string &core_dex_file_name : GetLibCoreDexFileNames()) {
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boot_class_path_string += ":";
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boot_class_path_string += core_dex_file_name;
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}
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options.push_back(std::make_pair(boot_class_path_string, nullptr));
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options.push_back(std::make_pair("-Xcheck:jni", nullptr));
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options.push_back(std::make_pair(min_heap_string, nullptr));
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options.push_back(std::make_pair(max_heap_string, nullptr));
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callbacks_.reset(new NoopCompilerCallbacks());
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SetUpRuntimeOptions(&options);
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// Install compiler-callbacks if SetupRuntimeOptions hasn't deleted them.
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if (callbacks_.get() != nullptr) {
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options.push_back(std::make_pair("compilercallbacks", callbacks_.get()));
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}
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PreRuntimeCreate();
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if (!Runtime::Create(options, false)) {
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LOG(FATAL) << "Failed to create runtime";
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return;
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}
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PostRuntimeCreate();
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runtime_.reset(Runtime::Current());
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class_linker_ = runtime_->GetClassLinker();
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class_linker_->FixupDexCaches(runtime_->GetResolutionMethod());
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// Runtime::Create acquired the mutator_lock_ that is normally given away when we
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// Runtime::Start, give it away now and then switch to a more managable ScopedObjectAccess.
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Thread::Current()->TransitionFromRunnableToSuspended(kNative);
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// Get the boot class path from the runtime so it can be used in tests.
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boot_class_path_ = class_linker_->GetBootClassPath();
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ASSERT_FALSE(boot_class_path_.empty());
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java_lang_dex_file_ = boot_class_path_[0];
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FinalizeSetup();
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}
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void CommonRuntimeTestImpl::FinalizeSetup() {
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// Initialize maps for unstarted runtime. This needs to be here, as running clinits needs this
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// set up.
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if (!unstarted_initialized_) {
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interpreter::UnstartedRuntime::Initialize();
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unstarted_initialized_ = true;
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}
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{
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ScopedObjectAccess soa(Thread::Current());
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class_linker_->RunRootClinits();
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}
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// We're back in native, take the opportunity to initialize well known classes.
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WellKnownClasses::Init(Thread::Current()->GetJniEnv());
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// Create the heap thread pool so that the GC runs in parallel for tests. Normally, the thread
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// pool is created by the runtime.
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runtime_->GetHeap()->CreateThreadPool();
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runtime_->GetHeap()->VerifyHeap(); // Check for heap corruption before the test
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// Reduce timinig-dependent flakiness in OOME behavior (eg StubTest.AllocObject).
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runtime_->GetHeap()->SetMinIntervalHomogeneousSpaceCompactionByOom(0U);
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}
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void CommonRuntimeTestImpl::ClearDirectory(const char* dirpath) {
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ASSERT_TRUE(dirpath != nullptr);
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DIR* dir = opendir(dirpath);
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ASSERT_TRUE(dir != nullptr);
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dirent* e;
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struct stat s;
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while ((e = readdir(dir)) != nullptr) {
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if ((strcmp(e->d_name, ".") == 0) || (strcmp(e->d_name, "..") == 0)) {
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continue;
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}
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std::string filename(dirpath);
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filename.push_back('/');
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filename.append(e->d_name);
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int stat_result = lstat(filename.c_str(), &s);
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ASSERT_EQ(0, stat_result) << "unable to stat " << filename;
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if (S_ISDIR(s.st_mode)) {
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ClearDirectory(filename.c_str());
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int rmdir_result = rmdir(filename.c_str());
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ASSERT_EQ(0, rmdir_result) << filename;
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} else {
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int unlink_result = unlink(filename.c_str());
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ASSERT_EQ(0, unlink_result) << filename;
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}
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}
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closedir(dir);
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}
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void CommonRuntimeTestImpl::TearDown() {
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const char* android_data = getenv("ANDROID_DATA");
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ASSERT_TRUE(android_data != nullptr);
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ClearDirectory(dalvik_cache_.c_str());
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int rmdir_cache_result = rmdir(dalvik_cache_.c_str());
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ASSERT_EQ(0, rmdir_cache_result);
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TearDownAndroidData(android_data_, true);
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dalvik_cache_.clear();
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// icu4c has a fixed 10-element array "gCommonICUDataArray".
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// If we run > 10 tests, we fill that array and u_setCommonData fails.
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// There's a function to clear the array, but it's not public...
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typedef void (*IcuCleanupFn)();
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void* sym = dlsym(RTLD_DEFAULT, "u_cleanup_" U_ICU_VERSION_SHORT);
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CHECK(sym != nullptr) << dlerror();
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IcuCleanupFn icu_cleanup_fn = reinterpret_cast<IcuCleanupFn>(sym);
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(*icu_cleanup_fn)();
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Runtime::Current()->GetHeap()->VerifyHeap(); // Check for heap corruption after the test
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}
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static std::string GetDexFileName(const std::string& jar_prefix, bool host) {
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std::string path;
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if (host) {
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const char* host_dir = getenv("ANDROID_HOST_OUT");
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CHECK(host_dir != nullptr);
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path = host_dir;
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} else {
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path = GetAndroidRoot();
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}
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std::string suffix = host
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? "-hostdex" // The host version.
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: "-testdex"; // The unstripped target version.
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return StringPrintf("%s/framework/%s%s.jar", path.c_str(), jar_prefix.c_str(), suffix.c_str());
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}
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std::vector<std::string> CommonRuntimeTestImpl::GetLibCoreDexFileNames() {
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return std::vector<std::string>({GetDexFileName("core-oj", IsHost()),
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GetDexFileName("core-libart", IsHost())});
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}
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std::string CommonRuntimeTestImpl::GetTestAndroidRoot() {
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if (IsHost()) {
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const char* host_dir = getenv("ANDROID_HOST_OUT");
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CHECK(host_dir != nullptr);
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return host_dir;
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}
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return GetAndroidRoot();
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}
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// Check that for target builds we have ART_TARGET_NATIVETEST_DIR set.
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#ifdef ART_TARGET
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#ifndef ART_TARGET_NATIVETEST_DIR
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#error "ART_TARGET_NATIVETEST_DIR not set."
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#endif
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// Wrap it as a string literal.
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#define ART_TARGET_NATIVETEST_DIR_STRING STRINGIFY(ART_TARGET_NATIVETEST_DIR) "/"
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#else
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#define ART_TARGET_NATIVETEST_DIR_STRING ""
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#endif
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std::string CommonRuntimeTestImpl::GetTestDexFileName(const char* name) const {
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CHECK(name != nullptr);
|
|
std::string filename;
|
|
if (IsHost()) {
|
|
filename += getenv("ANDROID_HOST_OUT");
|
|
filename += "/framework/";
|
|
} else {
|
|
filename += ART_TARGET_NATIVETEST_DIR_STRING;
|
|
}
|
|
filename += "art-gtest-";
|
|
filename += name;
|
|
filename += ".jar";
|
|
return filename;
|
|
}
|
|
|
|
std::vector<std::unique_ptr<const DexFile>> CommonRuntimeTestImpl::OpenTestDexFiles(
|
|
const char* name) {
|
|
std::string filename = GetTestDexFileName(name);
|
|
std::string error_msg;
|
|
std::vector<std::unique_ptr<const DexFile>> dex_files;
|
|
bool success = DexFile::Open(filename.c_str(), filename.c_str(), &error_msg, &dex_files);
|
|
CHECK(success) << "Failed to open '" << filename << "': " << error_msg;
|
|
for (auto& dex_file : dex_files) {
|
|
CHECK_EQ(PROT_READ, dex_file->GetPermissions());
|
|
CHECK(dex_file->IsReadOnly());
|
|
}
|
|
return dex_files;
|
|
}
|
|
|
|
std::unique_ptr<const DexFile> CommonRuntimeTestImpl::OpenTestDexFile(const char* name) {
|
|
std::vector<std::unique_ptr<const DexFile>> vector = OpenTestDexFiles(name);
|
|
EXPECT_EQ(1U, vector.size());
|
|
return std::move(vector[0]);
|
|
}
|
|
|
|
std::vector<const DexFile*> CommonRuntimeTestImpl::GetDexFiles(jobject jclass_loader) {
|
|
std::vector<const DexFile*> ret;
|
|
|
|
ScopedObjectAccess soa(Thread::Current());
|
|
|
|
StackHandleScope<2> hs(soa.Self());
|
|
Handle<mirror::ClassLoader> class_loader = hs.NewHandle(
|
|
soa.Decode<mirror::ClassLoader*>(jclass_loader));
|
|
|
|
DCHECK_EQ(class_loader->GetClass(),
|
|
soa.Decode<mirror::Class*>(WellKnownClasses::dalvik_system_PathClassLoader));
|
|
DCHECK_EQ(class_loader->GetParent()->GetClass(),
|
|
soa.Decode<mirror::Class*>(WellKnownClasses::java_lang_BootClassLoader));
|
|
|
|
// The class loader is a PathClassLoader which inherits from BaseDexClassLoader.
|
|
// We need to get the DexPathList and loop through it.
|
|
ArtField* cookie_field = soa.DecodeField(WellKnownClasses::dalvik_system_DexFile_cookie);
|
|
ArtField* dex_file_field =
|
|
soa.DecodeField(WellKnownClasses::dalvik_system_DexPathList__Element_dexFile);
|
|
mirror::Object* dex_path_list =
|
|
soa.DecodeField(WellKnownClasses::dalvik_system_PathClassLoader_pathList)->
|
|
GetObject(class_loader.Get());
|
|
if (dex_path_list != nullptr && dex_file_field!= nullptr && cookie_field != nullptr) {
|
|
// DexPathList has an array dexElements of Elements[] which each contain a dex file.
|
|
mirror::Object* dex_elements_obj =
|
|
soa.DecodeField(WellKnownClasses::dalvik_system_DexPathList_dexElements)->
|
|
GetObject(dex_path_list);
|
|
// Loop through each dalvik.system.DexPathList$Element's dalvik.system.DexFile and look
|
|
// at the mCookie which is a DexFile vector.
|
|
if (dex_elements_obj != nullptr) {
|
|
Handle<mirror::ObjectArray<mirror::Object>> dex_elements =
|
|
hs.NewHandle(dex_elements_obj->AsObjectArray<mirror::Object>());
|
|
for (int32_t i = 0; i < dex_elements->GetLength(); ++i) {
|
|
mirror::Object* element = dex_elements->GetWithoutChecks(i);
|
|
if (element == nullptr) {
|
|
// Should never happen, fall back to java code to throw a NPE.
|
|
break;
|
|
}
|
|
mirror::Object* dex_file = dex_file_field->GetObject(element);
|
|
if (dex_file != nullptr) {
|
|
mirror::LongArray* long_array = cookie_field->GetObject(dex_file)->AsLongArray();
|
|
DCHECK(long_array != nullptr);
|
|
int32_t long_array_size = long_array->GetLength();
|
|
for (int32_t j = kDexFileIndexStart; j < long_array_size; ++j) {
|
|
const DexFile* cp_dex_file = reinterpret_cast<const DexFile*>(static_cast<uintptr_t>(
|
|
long_array->GetWithoutChecks(j)));
|
|
if (cp_dex_file == nullptr) {
|
|
LOG(WARNING) << "Null DexFile";
|
|
continue;
|
|
}
|
|
ret.push_back(cp_dex_file);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
const DexFile* CommonRuntimeTestImpl::GetFirstDexFile(jobject jclass_loader) {
|
|
std::vector<const DexFile*> tmp(GetDexFiles(jclass_loader));
|
|
DCHECK(!tmp.empty());
|
|
const DexFile* ret = tmp[0];
|
|
DCHECK(ret != nullptr);
|
|
return ret;
|
|
}
|
|
|
|
jobject CommonRuntimeTestImpl::LoadDex(const char* dex_name) {
|
|
std::vector<std::unique_ptr<const DexFile>> dex_files = OpenTestDexFiles(dex_name);
|
|
std::vector<const DexFile*> class_path;
|
|
CHECK_NE(0U, dex_files.size());
|
|
for (auto& dex_file : dex_files) {
|
|
class_path.push_back(dex_file.get());
|
|
loaded_dex_files_.push_back(std::move(dex_file));
|
|
}
|
|
|
|
Thread* self = Thread::Current();
|
|
jobject class_loader = Runtime::Current()->GetClassLinker()->CreatePathClassLoader(self,
|
|
class_path);
|
|
self->SetClassLoaderOverride(class_loader);
|
|
return class_loader;
|
|
}
|
|
|
|
std::string CommonRuntimeTestImpl::GetCoreFileLocation(const char* suffix) {
|
|
CHECK(suffix != nullptr);
|
|
|
|
std::string location;
|
|
if (IsHost()) {
|
|
const char* host_dir = getenv("ANDROID_HOST_OUT");
|
|
CHECK(host_dir != nullptr);
|
|
location = StringPrintf("%s/framework/core.%s", host_dir, suffix);
|
|
} else {
|
|
location = StringPrintf("/data/art-test/core.%s", suffix);
|
|
}
|
|
|
|
return location;
|
|
}
|
|
|
|
CheckJniAbortCatcher::CheckJniAbortCatcher() : vm_(Runtime::Current()->GetJavaVM()) {
|
|
vm_->SetCheckJniAbortHook(Hook, &actual_);
|
|
}
|
|
|
|
CheckJniAbortCatcher::~CheckJniAbortCatcher() {
|
|
vm_->SetCheckJniAbortHook(nullptr, nullptr);
|
|
EXPECT_TRUE(actual_.empty()) << actual_;
|
|
}
|
|
|
|
void CheckJniAbortCatcher::Check(const char* expected_text) {
|
|
EXPECT_TRUE(actual_.find(expected_text) != std::string::npos) << "\n"
|
|
<< "Expected to find: " << expected_text << "\n"
|
|
<< "In the output : " << actual_;
|
|
actual_.clear();
|
|
}
|
|
|
|
void CheckJniAbortCatcher::Hook(void* data, const std::string& reason) {
|
|
// We use += because when we're hooking the aborts like this, multiple problems can be found.
|
|
*reinterpret_cast<std::string*>(data) += reason;
|
|
}
|
|
|
|
} // namespace art
|
|
|
|
namespace std {
|
|
|
|
template <typename T>
|
|
std::ostream& operator<<(std::ostream& os, const std::vector<T>& rhs) {
|
|
os << ::art::ToString(rhs);
|
|
return os;
|
|
}
|
|
|
|
} // namespace std
|