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363 lines
12 KiB
363 lines
12 KiB
/* |
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* Copyright (C) 2015 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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#ifndef ART_OATDUMP_OATDUMP_TEST_H_ |
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#define ART_OATDUMP_OATDUMP_TEST_H_ |
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#include <sstream> |
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#include <string> |
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#include <vector> |
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#include "android-base/strings.h" |
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#include "arch/instruction_set.h" |
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#include "base/file_utils.h" |
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#include "base/os.h" |
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#include "base/unix_file/fd_file.h" |
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#include "base/utils.h" |
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#include "common_runtime_test.h" |
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#include "exec_utils.h" |
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#include "gc/heap.h" |
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#include "gc/space/image_space.h" |
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#include <sys/types.h> |
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#include <unistd.h> |
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namespace art { |
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class OatDumpTest : public CommonRuntimeTest { |
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protected: |
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virtual void SetUp() { |
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CommonRuntimeTest::SetUp(); |
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core_art_location_ = GetCoreArtLocation(); |
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core_oat_location_ = GetSystemImageFilename(GetCoreOatLocation().c_str(), kRuntimeISA); |
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tmp_dir_ = GetScratchDir(); |
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} |
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virtual void TearDown() { |
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ClearDirectory(tmp_dir_.c_str(), /*recursive*/ false); |
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ASSERT_EQ(rmdir(tmp_dir_.c_str()), 0); |
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CommonRuntimeTest::TearDown(); |
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} |
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std::string GetScratchDir() { |
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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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std::string dir = getenv("ANDROID_DATA"); |
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dir += "/oatdump-tmp-dir-XXXXXX"; |
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if (mkdtemp(&dir[0]) == nullptr) { |
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PLOG(FATAL) << "mkdtemp(\"" << &dir[0] << "\") failed"; |
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} |
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return dir; |
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} |
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// Linking flavor. |
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enum Flavor { |
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kDynamic, // oatdump(d), dex2oat(d) |
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kStatic, // oatdump(d)s, dex2oat(d)s |
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}; |
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// Returns path to the oatdump/dex2oat/dexdump binary. |
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std::string GetExecutableFilePath(const char* name, bool is_debug, bool is_static) { |
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std::string root = GetTestAndroidRoot(); |
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root += "/bin/"; |
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root += name; |
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if (is_debug) { |
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root += "d"; |
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} |
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if (is_static) { |
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root += "s"; |
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} |
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return root; |
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} |
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std::string GetExecutableFilePath(Flavor flavor, const char* name) { |
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return GetExecutableFilePath(name, kIsDebugBuild, flavor == kStatic); |
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} |
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enum Mode { |
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kModeOat, |
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kModeCoreOat, |
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kModeOatWithBootImage, |
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kModeAppImage, |
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kModeArt, |
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kModeSymbolize, |
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}; |
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// Display style. |
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enum Display { |
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kListOnly, |
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kListAndCode |
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}; |
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std::string GetAppBaseName() { |
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// Use ProfileTestMultiDex as it contains references to boot image strings |
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// that shall use different code for PIC and non-PIC. |
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return "ProfileTestMultiDex"; |
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} |
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std::string GetAppImageName() { |
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return tmp_dir_ + "/" + GetAppBaseName() + ".art"; |
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} |
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std::string GetAppOdexName() { |
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return tmp_dir_ + "/" + GetAppBaseName() + ".odex"; |
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} |
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::testing::AssertionResult GenerateAppOdexFile(Flavor flavor, |
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const std::vector<std::string>& args) { |
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std::string dex2oat_path = GetExecutableFilePath(flavor, "dex2oat"); |
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std::vector<std::string> exec_argv = { |
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dex2oat_path, |
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"--runtime-arg", |
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"-Xms64m", |
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"--runtime-arg", |
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"-Xmx512m", |
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"--runtime-arg", |
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"-Xnorelocate", |
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"--runtime-arg", |
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GetClassPathOption("-Xbootclasspath:", GetLibCoreDexFileNames()), |
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"--runtime-arg", |
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GetClassPathOption("-Xbootclasspath-locations:", GetLibCoreDexLocations()), |
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"--boot-image=" + GetCoreArtLocation(), |
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"--instruction-set=" + std::string(GetInstructionSetString(kRuntimeISA)), |
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"--dex-file=" + GetTestDexFileName(GetAppBaseName().c_str()), |
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"--oat-file=" + GetAppOdexName(), |
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"--compiler-filter=speed" |
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}; |
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exec_argv.insert(exec_argv.end(), args.begin(), args.end()); |
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auto post_fork_fn = []() { |
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setpgid(0, 0); // Change process groups, so we don't get reaped by ProcessManager. |
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// Ignore setpgid errors. |
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return setenv("ANDROID_LOG_TAGS", "*:e", 1) == 0; // We're only interested in errors and |
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// fatal logs. |
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}; |
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std::string error_msg; |
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ForkAndExecResult res = ForkAndExec(exec_argv, post_fork_fn, &error_msg); |
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if (res.stage != ForkAndExecResult::kFinished) { |
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return ::testing::AssertionFailure() << strerror(errno); |
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} |
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return res.StandardSuccess() ? ::testing::AssertionSuccess() |
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: (::testing::AssertionFailure() << error_msg); |
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} |
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// Run the test with custom arguments. |
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::testing::AssertionResult Exec(Flavor flavor, |
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Mode mode, |
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const std::vector<std::string>& args, |
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Display display) { |
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std::string file_path = GetExecutableFilePath(flavor, "oatdump"); |
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if (!OS::FileExists(file_path.c_str())) { |
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return ::testing::AssertionFailure() << file_path << " should be a valid file path"; |
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} |
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// ScratchFile scratch; |
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std::vector<std::string> exec_argv = { file_path }; |
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std::vector<std::string> expected_prefixes; |
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if (mode == kModeSymbolize) { |
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exec_argv.push_back("--symbolize=" + core_oat_location_); |
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exec_argv.push_back("--output=" + core_oat_location_ + ".symbolize"); |
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} else { |
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expected_prefixes.push_back("LOCATION:"); |
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expected_prefixes.push_back("MAGIC:"); |
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expected_prefixes.push_back("DEX FILE COUNT:"); |
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if (display == kListAndCode) { |
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// Code and dex code do not show up if list only. |
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expected_prefixes.push_back("DEX CODE:"); |
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expected_prefixes.push_back("CODE:"); |
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expected_prefixes.push_back("InlineInfo"); |
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} |
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if (mode == kModeArt) { |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back(GetClassPathOption("-Xbootclasspath:", GetLibCoreDexFileNames())); |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back( |
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GetClassPathOption("-Xbootclasspath-locations:", GetLibCoreDexLocations())); |
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exec_argv.push_back("--image=" + core_art_location_); |
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exec_argv.push_back("--instruction-set=" + std::string( |
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GetInstructionSetString(kRuntimeISA))); |
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expected_prefixes.push_back("IMAGE LOCATION:"); |
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expected_prefixes.push_back("IMAGE BEGIN:"); |
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expected_prefixes.push_back("kDexCaches:"); |
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} else if (mode == kModeOatWithBootImage) { |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back(GetClassPathOption("-Xbootclasspath:", GetLibCoreDexFileNames())); |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back( |
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GetClassPathOption("-Xbootclasspath-locations:", GetLibCoreDexLocations())); |
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exec_argv.push_back("--boot-image=" + GetCoreArtLocation()); |
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exec_argv.push_back("--instruction-set=" + std::string( |
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GetInstructionSetString(kRuntimeISA))); |
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exec_argv.push_back("--oat-file=" + GetAppOdexName()); |
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} else if (mode == kModeAppImage) { |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back(GetClassPathOption("-Xbootclasspath:", GetLibCoreDexFileNames())); |
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exec_argv.push_back("--runtime-arg"); |
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exec_argv.push_back( |
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GetClassPathOption("-Xbootclasspath-locations:", GetLibCoreDexLocations())); |
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exec_argv.push_back("--image=" + GetCoreArtLocation()); |
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exec_argv.push_back("--instruction-set=" + std::string( |
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GetInstructionSetString(kRuntimeISA))); |
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exec_argv.push_back("--app-oat=" + GetAppOdexName()); |
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exec_argv.push_back("--app-image=" + GetAppImageName()); |
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} else if (mode == kModeCoreOat) { |
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exec_argv.push_back("--oat-file=" + core_oat_location_); |
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} else { |
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CHECK_EQ(static_cast<size_t>(mode), static_cast<size_t>(kModeOat)); |
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exec_argv.push_back("--oat-file=" + GetAppOdexName()); |
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} |
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} |
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exec_argv.insert(exec_argv.end(), args.begin(), args.end()); |
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std::vector<bool> found(expected_prefixes.size(), false); |
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auto line_handle_fn = [&found, &expected_prefixes](const char* line, size_t line_len) { |
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if (line_len == 0) { |
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return; |
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} |
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// Check contents. |
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for (size_t i = 0; i < expected_prefixes.size(); ++i) { |
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const std::string& expected = expected_prefixes[i]; |
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if (!found[i] && |
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line_len >= expected.length() && |
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memcmp(line, expected.c_str(), expected.length()) == 0) { |
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found[i] = true; |
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} |
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} |
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}; |
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static constexpr size_t kLineMax = 256; |
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char line[kLineMax] = {}; |
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size_t line_len = 0; |
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size_t total = 0; |
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bool ignore_next_line = false; |
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std::vector<char> error_buf; // Buffer for debug output on error. Limited to 1M. |
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auto line_buf_fn = [&](char* buf, size_t len) { |
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total += len; |
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if (len == 0 && line_len > 0 && !ignore_next_line) { |
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// Everything done, handle leftovers. |
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line_handle_fn(line, line_len); |
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} |
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if (len > 0) { |
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size_t pos = error_buf.size(); |
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if (pos < MB) { |
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error_buf.insert(error_buf.end(), buf, buf + len); |
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} |
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} |
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while (len > 0) { |
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// Copy buf into the free tail of the line buffer, and move input buffer along. |
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size_t copy = std::min(kLineMax - line_len, len); |
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memcpy(&line[line_len], buf, copy); |
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buf += copy; |
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len -= copy; |
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// Skip spaces up to len, return count of removed spaces. Declare a lambda for reuse. |
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auto trim_space = [&line](size_t len) { |
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size_t spaces = 0; |
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for (; spaces < len && isspace(line[spaces]); ++spaces) {} |
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if (spaces > 0) { |
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memmove(&line[0], &line[spaces], len - spaces); |
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} |
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return spaces; |
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}; |
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// There can only be spaces if we freshly started a line. |
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if (line_len == 0) { |
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copy -= trim_space(copy); |
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} |
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// Scan for newline characters. |
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size_t index = line_len; |
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line_len += copy; |
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while (index < line_len) { |
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if (line[index] == '\n') { |
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// Handle line. |
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if (!ignore_next_line) { |
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line_handle_fn(line, index); |
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} |
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// Move the rest to the front, but trim leading spaces. |
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line_len -= index + 1; |
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memmove(&line[0], &line[index + 1], line_len); |
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line_len -= trim_space(line_len); |
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index = 0; |
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ignore_next_line = false; |
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} else { |
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index++; |
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} |
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} |
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// Handle a full line without newline characters. Ignore the "next" line, as it is the |
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// tail end of this. |
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if (line_len == kLineMax) { |
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if (!ignore_next_line) { |
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line_handle_fn(line, kLineMax); |
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} |
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line_len = 0; |
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ignore_next_line = true; |
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} |
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} |
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}; |
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auto post_fork_fn = []() { |
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setpgid(0, 0); // Change process groups, so we don't get reaped by ProcessManager. |
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return true; // Ignore setpgid failures. |
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}; |
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ForkAndExecResult res = ForkAndExec(exec_argv, post_fork_fn, line_buf_fn); |
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if (res.stage != ForkAndExecResult::kFinished) { |
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return ::testing::AssertionFailure() << strerror(errno); |
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} |
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if (!res.StandardSuccess()) { |
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return ::testing::AssertionFailure() << "Did not terminate successfully: " << res.status_code; |
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} |
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if (mode == kModeSymbolize) { |
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EXPECT_EQ(total, 0u); |
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} else { |
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EXPECT_GT(total, 0u); |
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} |
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bool result = true; |
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std::ostringstream oss; |
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for (size_t i = 0; i < expected_prefixes.size(); ++i) { |
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if (!found[i]) { |
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oss << "Did not find prefix " << expected_prefixes[i] << std::endl; |
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result = false; |
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} |
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} |
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if (!result) { |
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oss << "Processed bytes " << total << ":" << std::endl; |
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error_buf.push_back(0); // Make data a C string. |
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} |
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return result ? ::testing::AssertionSuccess() |
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: (::testing::AssertionFailure() << oss.str() << error_buf.data()); |
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} |
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std::string tmp_dir_; |
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private: |
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std::string core_art_location_; |
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std::string core_oat_location_; |
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}; |
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} // namespace art |
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#endif // ART_OATDUMP_OATDUMP_TEST_H_
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