661 lines
23 KiB
C++
661 lines
23 KiB
C++
/*
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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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#include "offline_profiling_info.h"
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#include "errno.h"
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#include <limits.h>
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#include <vector>
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#include <sys/file.h>
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#include <sys/stat.h>
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#include <sys/uio.h>
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#include "art_method-inl.h"
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#include "base/mutex.h"
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#include "base/scoped_flock.h"
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#include "base/stl_util.h"
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#include "base/systrace.h"
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#include "base/unix_file/fd_file.h"
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#include "jit/profiling_info.h"
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#include "os.h"
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#include "safe_map.h"
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namespace art {
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const uint8_t ProfileCompilationInfo::kProfileMagic[] = { 'p', 'r', 'o', '\0' };
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const uint8_t ProfileCompilationInfo::kProfileVersion[] = { '0', '0', '1', '\0' };
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static constexpr uint16_t kMaxDexFileKeyLength = PATH_MAX;
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// Transform the actual dex location into relative paths.
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// Note: this is OK because we don't store profiles of different apps into the same file.
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// Apps with split apks don't cause trouble because each split has a different name and will not
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// collide with other entries.
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std::string ProfileCompilationInfo::GetProfileDexFileKey(const std::string& dex_location) {
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DCHECK(!dex_location.empty());
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size_t last_sep_index = dex_location.find_last_of('/');
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if (last_sep_index == std::string::npos) {
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return dex_location;
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} else {
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DCHECK(last_sep_index < dex_location.size());
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return dex_location.substr(last_sep_index + 1);
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}
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}
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bool ProfileCompilationInfo::AddMethodsAndClasses(
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const std::vector<MethodReference>& methods,
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const std::set<DexCacheResolvedClasses>& resolved_classes) {
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for (const MethodReference& method : methods) {
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if (!AddMethodIndex(GetProfileDexFileKey(method.dex_file->GetLocation()),
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method.dex_file->GetLocationChecksum(),
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method.dex_method_index)) {
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return false;
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}
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}
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for (const DexCacheResolvedClasses& dex_cache : resolved_classes) {
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if (!AddResolvedClasses(dex_cache)) {
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return false;
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}
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}
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return true;
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}
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bool ProfileCompilationInfo::MergeAndSave(const std::string& filename,
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uint64_t* bytes_written,
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bool force) {
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ScopedTrace trace(__PRETTY_FUNCTION__);
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ScopedFlock flock;
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std::string error;
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if (!flock.Init(filename.c_str(), O_RDWR | O_NOFOLLOW | O_CLOEXEC, /* block */ false, &error)) {
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LOG(WARNING) << "Couldn't lock the profile file " << filename << ": " << error;
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return false;
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}
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int fd = flock.GetFile()->Fd();
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// Load the file but keep a copy around to be able to infer if the content has changed.
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ProfileCompilationInfo fileInfo;
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ProfileLoadSatus status = fileInfo.LoadInternal(fd, &error);
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if (status == kProfileLoadSuccess) {
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// Merge the content of file into the current object.
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if (MergeWith(fileInfo)) {
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// If after the merge we have the same data as what is the file there's no point
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// in actually doing the write. The file will be exactly the same as before.
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if (Equals(fileInfo)) {
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if (bytes_written != nullptr) {
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*bytes_written = 0;
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}
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return true;
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}
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} else {
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LOG(WARNING) << "Could not merge previous profile data from file " << filename;
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if (!force) {
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return false;
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}
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}
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} else if (force &&
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((status == kProfileLoadVersionMismatch) || (status == kProfileLoadBadData))) {
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// Log a warning but don't return false. We will clear the profile anyway.
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LOG(WARNING) << "Clearing bad or obsolete profile data from file "
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<< filename << ": " << error;
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} else {
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LOG(WARNING) << "Could not load profile data from file " << filename << ": " << error;
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return false;
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}
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// We need to clear the data because we don't support appending to the profiles yet.
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if (!flock.GetFile()->ClearContent()) {
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PLOG(WARNING) << "Could not clear profile file: " << filename;
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return false;
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}
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// This doesn't need locking because we are trying to lock the file for exclusive
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// access and fail immediately if we can't.
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bool result = Save(fd);
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if (result) {
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VLOG(profiler) << "Successfully saved profile info to " << filename
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<< " Size: " << GetFileSizeBytes(filename);
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if (bytes_written != nullptr) {
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*bytes_written = GetFileSizeBytes(filename);
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}
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} else {
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VLOG(profiler) << "Failed to save profile info to " << filename;
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}
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return result;
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}
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// Returns true if all the bytes were successfully written to the file descriptor.
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static bool WriteBuffer(int fd, const uint8_t* buffer, size_t byte_count) {
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while (byte_count > 0) {
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int bytes_written = TEMP_FAILURE_RETRY(write(fd, buffer, byte_count));
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if (bytes_written == -1) {
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return false;
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}
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byte_count -= bytes_written; // Reduce the number of remaining bytes.
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buffer += bytes_written; // Move the buffer forward.
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}
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return true;
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}
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// Add the string bytes to the buffer.
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static void AddStringToBuffer(std::vector<uint8_t>* buffer, const std::string& value) {
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buffer->insert(buffer->end(), value.begin(), value.end());
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}
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// Insert each byte, from low to high into the buffer.
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template <typename T>
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static void AddUintToBuffer(std::vector<uint8_t>* buffer, T value) {
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for (size_t i = 0; i < sizeof(T); i++) {
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buffer->push_back((value >> (i * kBitsPerByte)) & 0xff);
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}
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}
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static constexpr size_t kLineHeaderSize =
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3 * sizeof(uint16_t) + // method_set.size + class_set.size + dex_location.size
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sizeof(uint32_t); // checksum
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/**
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* Serialization format:
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* magic,version,number_of_lines
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* dex_location1,number_of_methods1,number_of_classes1,dex_location_checksum1, \
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* method_id11,method_id12...,class_id1,class_id2...
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* dex_location2,number_of_methods2,number_of_classes2,dex_location_checksum2, \
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* method_id21,method_id22...,,class_id1,class_id2...
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* .....
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**/
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bool ProfileCompilationInfo::Save(int fd) {
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ScopedTrace trace(__PRETTY_FUNCTION__);
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DCHECK_GE(fd, 0);
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// Cache at most 5KB before writing.
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static constexpr size_t kMaxSizeToKeepBeforeWriting = 5 * KB;
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// Use a vector wrapper to avoid keeping track of offsets when we add elements.
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std::vector<uint8_t> buffer;
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WriteBuffer(fd, kProfileMagic, sizeof(kProfileMagic));
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WriteBuffer(fd, kProfileVersion, sizeof(kProfileVersion));
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AddUintToBuffer(&buffer, static_cast<uint16_t>(info_.size()));
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for (const auto& it : info_) {
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if (buffer.size() > kMaxSizeToKeepBeforeWriting) {
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if (!WriteBuffer(fd, buffer.data(), buffer.size())) {
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return false;
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}
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buffer.clear();
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}
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const std::string& dex_location = it.first;
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const DexFileData& dex_data = it.second;
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if (dex_data.method_set.empty() && dex_data.class_set.empty()) {
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continue;
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}
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if (dex_location.size() >= kMaxDexFileKeyLength) {
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LOG(WARNING) << "DexFileKey exceeds allocated limit";
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return false;
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}
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// Make sure that the buffer has enough capacity to avoid repeated resizings
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// while we add data.
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size_t required_capacity = buffer.size() +
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kLineHeaderSize +
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dex_location.size() +
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sizeof(uint16_t) * (dex_data.class_set.size() + dex_data.method_set.size());
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buffer.reserve(required_capacity);
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DCHECK_LE(dex_location.size(), std::numeric_limits<uint16_t>::max());
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DCHECK_LE(dex_data.method_set.size(), std::numeric_limits<uint16_t>::max());
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DCHECK_LE(dex_data.class_set.size(), std::numeric_limits<uint16_t>::max());
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AddUintToBuffer(&buffer, static_cast<uint16_t>(dex_location.size()));
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AddUintToBuffer(&buffer, static_cast<uint16_t>(dex_data.method_set.size()));
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AddUintToBuffer(&buffer, static_cast<uint16_t>(dex_data.class_set.size()));
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AddUintToBuffer(&buffer, dex_data.checksum); // uint32_t
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AddStringToBuffer(&buffer, dex_location);
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for (auto method_it : dex_data.method_set) {
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AddUintToBuffer(&buffer, method_it);
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}
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for (auto class_id : dex_data.class_set) {
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AddUintToBuffer(&buffer, class_id);
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}
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DCHECK_EQ(required_capacity, buffer.size())
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<< "Failed to add the expected number of bytes in the buffer";
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}
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return WriteBuffer(fd, buffer.data(), buffer.size());
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}
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ProfileCompilationInfo::DexFileData* ProfileCompilationInfo::GetOrAddDexFileData(
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const std::string& dex_location,
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uint32_t checksum) {
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auto info_it = info_.find(dex_location);
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if (info_it == info_.end()) {
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info_it = info_.Put(dex_location, DexFileData(checksum));
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}
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if (info_it->second.checksum != checksum) {
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LOG(WARNING) << "Checksum mismatch for dex " << dex_location;
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return nullptr;
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}
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return &info_it->second;
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}
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bool ProfileCompilationInfo::AddResolvedClasses(const DexCacheResolvedClasses& classes) {
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const std::string dex_location = GetProfileDexFileKey(classes.GetDexLocation());
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const uint32_t checksum = classes.GetLocationChecksum();
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DexFileData* const data = GetOrAddDexFileData(dex_location, checksum);
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if (data == nullptr) {
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return false;
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}
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data->class_set.insert(classes.GetClasses().begin(), classes.GetClasses().end());
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return true;
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}
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bool ProfileCompilationInfo::AddMethodIndex(const std::string& dex_location,
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uint32_t checksum,
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uint16_t method_idx) {
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DexFileData* const data = GetOrAddDexFileData(dex_location, checksum);
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if (data == nullptr) {
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return false;
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}
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data->method_set.insert(method_idx);
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return true;
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}
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bool ProfileCompilationInfo::AddClassIndex(const std::string& dex_location,
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uint32_t checksum,
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uint16_t class_idx) {
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DexFileData* const data = GetOrAddDexFileData(dex_location, checksum);
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if (data == nullptr) {
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return false;
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}
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data->class_set.insert(class_idx);
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return true;
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}
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bool ProfileCompilationInfo::ProcessLine(SafeBuffer& line_buffer,
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uint16_t method_set_size,
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uint16_t class_set_size,
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uint32_t checksum,
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const std::string& dex_location) {
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for (uint16_t i = 0; i < method_set_size; i++) {
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uint16_t method_idx = line_buffer.ReadUintAndAdvance<uint16_t>();
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if (!AddMethodIndex(dex_location, checksum, method_idx)) {
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return false;
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}
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}
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for (uint16_t i = 0; i < class_set_size; i++) {
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uint16_t class_def_idx = line_buffer.ReadUintAndAdvance<uint16_t>();
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if (!AddClassIndex(dex_location, checksum, class_def_idx)) {
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return false;
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}
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}
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return true;
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}
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// Tests for EOF by trying to read 1 byte from the descriptor.
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// Returns:
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// 0 if the descriptor is at the EOF,
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// -1 if there was an IO error
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// 1 if the descriptor has more content to read
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static int testEOF(int fd) {
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uint8_t buffer[1];
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return TEMP_FAILURE_RETRY(read(fd, buffer, 1));
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}
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// Reads an uint value previously written with AddUintToBuffer.
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template <typename T>
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T ProfileCompilationInfo::SafeBuffer::ReadUintAndAdvance() {
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static_assert(std::is_unsigned<T>::value, "Type is not unsigned");
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CHECK_LE(ptr_current_ + sizeof(T), ptr_end_);
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T value = 0;
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for (size_t i = 0; i < sizeof(T); i++) {
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value += ptr_current_[i] << (i * kBitsPerByte);
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}
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ptr_current_ += sizeof(T);
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return value;
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}
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bool ProfileCompilationInfo::SafeBuffer::CompareAndAdvance(const uint8_t* data, size_t data_size) {
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if (ptr_current_ + data_size > ptr_end_) {
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return false;
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}
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if (memcmp(ptr_current_, data, data_size) == 0) {
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ptr_current_ += data_size;
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return true;
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}
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return false;
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}
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ProfileCompilationInfo::ProfileLoadSatus ProfileCompilationInfo::SafeBuffer::FillFromFd(
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int fd,
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const std::string& source,
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/*out*/std::string* error) {
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size_t byte_count = ptr_end_ - ptr_current_;
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uint8_t* buffer = ptr_current_;
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while (byte_count > 0) {
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int bytes_read = TEMP_FAILURE_RETRY(read(fd, buffer, byte_count));
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if (bytes_read == 0) {
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*error += "Profile EOF reached prematurely for " + source;
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return kProfileLoadBadData;
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} else if (bytes_read < 0) {
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*error += "Profile IO error for " + source + strerror(errno);
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return kProfileLoadIOError;
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}
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byte_count -= bytes_read;
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buffer += bytes_read;
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}
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return kProfileLoadSuccess;
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}
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ProfileCompilationInfo::ProfileLoadSatus ProfileCompilationInfo::ReadProfileHeader(
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int fd,
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/*out*/uint16_t* number_of_lines,
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/*out*/std::string* error) {
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// Read magic and version
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const size_t kMagicVersionSize =
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sizeof(kProfileMagic) +
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sizeof(kProfileVersion) +
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sizeof(uint16_t); // number of lines
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SafeBuffer safe_buffer(kMagicVersionSize);
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ProfileLoadSatus status = safe_buffer.FillFromFd(fd, "ReadProfileHeader", error);
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if (status != kProfileLoadSuccess) {
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return status;
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}
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if (!safe_buffer.CompareAndAdvance(kProfileMagic, sizeof(kProfileMagic))) {
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*error = "Profile missing magic";
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return kProfileLoadVersionMismatch;
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}
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if (!safe_buffer.CompareAndAdvance(kProfileVersion, sizeof(kProfileVersion))) {
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*error = "Profile version mismatch";
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return kProfileLoadVersionMismatch;
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}
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*number_of_lines = safe_buffer.ReadUintAndAdvance<uint16_t>();
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return kProfileLoadSuccess;
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}
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ProfileCompilationInfo::ProfileLoadSatus ProfileCompilationInfo::ReadProfileLineHeader(
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int fd,
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/*out*/ProfileLineHeader* line_header,
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/*out*/std::string* error) {
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SafeBuffer header_buffer(kLineHeaderSize);
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ProfileLoadSatus status = header_buffer.FillFromFd(fd, "ReadProfileHeader", error);
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if (status != kProfileLoadSuccess) {
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return status;
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}
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uint16_t dex_location_size = header_buffer.ReadUintAndAdvance<uint16_t>();
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line_header->method_set_size = header_buffer.ReadUintAndAdvance<uint16_t>();
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line_header->class_set_size = header_buffer.ReadUintAndAdvance<uint16_t>();
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line_header->checksum = header_buffer.ReadUintAndAdvance<uint32_t>();
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if (dex_location_size == 0 || dex_location_size > kMaxDexFileKeyLength) {
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*error = "DexFileKey has an invalid size: " + std::to_string(dex_location_size);
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return kProfileLoadBadData;
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}
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SafeBuffer location_buffer(dex_location_size);
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status = location_buffer.FillFromFd(fd, "ReadProfileHeaderDexLocation", error);
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if (status != kProfileLoadSuccess) {
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return status;
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}
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line_header->dex_location.assign(
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reinterpret_cast<char*>(location_buffer.Get()), dex_location_size);
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return kProfileLoadSuccess;
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}
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ProfileCompilationInfo::ProfileLoadSatus ProfileCompilationInfo::ReadProfileLine(
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int fd,
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const ProfileLineHeader& line_header,
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/*out*/std::string* error) {
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// Make sure that we don't try to read everything in memory (in case the profile if full).
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// Split readings in chunks of at most 10kb.
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static constexpr uint16_t kMaxNumberOfEntriesToRead = 5120;
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uint16_t methods_left_to_read = line_header.method_set_size;
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uint16_t classes_left_to_read = line_header.class_set_size;
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while ((methods_left_to_read > 0) || (classes_left_to_read > 0)) {
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uint16_t methods_to_read = std::min(kMaxNumberOfEntriesToRead, methods_left_to_read);
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uint16_t max_classes_to_read = kMaxNumberOfEntriesToRead - methods_to_read;
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uint16_t classes_to_read = std::min(max_classes_to_read, classes_left_to_read);
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size_t line_size = sizeof(uint16_t) * (methods_to_read + classes_to_read);
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SafeBuffer line_buffer(line_size);
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ProfileLoadSatus status = line_buffer.FillFromFd(fd, "ReadProfileLine", error);
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if (status != kProfileLoadSuccess) {
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return status;
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}
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if (!ProcessLine(line_buffer,
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methods_to_read,
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classes_to_read,
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line_header.checksum,
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line_header.dex_location)) {
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*error = "Error when reading profile file line";
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return kProfileLoadBadData;
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}
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methods_left_to_read -= methods_to_read;
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classes_left_to_read -= classes_to_read;
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}
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return kProfileLoadSuccess;
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}
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bool ProfileCompilationInfo::Load(int fd) {
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std::string error;
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ProfileLoadSatus status = LoadInternal(fd, &error);
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if (status == kProfileLoadSuccess) {
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return true;
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} else {
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PLOG(WARNING) << "Error when reading profile " << error;
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return false;
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}
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}
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ProfileCompilationInfo::ProfileLoadSatus ProfileCompilationInfo::LoadInternal(
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int fd, std::string* error) {
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|
ScopedTrace trace(__PRETTY_FUNCTION__);
|
|
DCHECK_GE(fd, 0);
|
|
|
|
struct stat stat_buffer;
|
|
if (fstat(fd, &stat_buffer) != 0) {
|
|
return kProfileLoadIOError;
|
|
}
|
|
// We allow empty profile files.
|
|
// Profiles may be created by ActivityManager or installd before we manage to
|
|
// process them in the runtime or profman.
|
|
if (stat_buffer.st_size == 0) {
|
|
return kProfileLoadSuccess;
|
|
}
|
|
// Read profile header: magic + version + number_of_lines.
|
|
uint16_t number_of_lines;
|
|
ProfileLoadSatus status = ReadProfileHeader(fd, &number_of_lines, error);
|
|
if (status != kProfileLoadSuccess) {
|
|
return status;
|
|
}
|
|
|
|
while (number_of_lines > 0) {
|
|
ProfileLineHeader line_header;
|
|
// First, read the line header to get the amount of data we need to read.
|
|
status = ReadProfileLineHeader(fd, &line_header, error);
|
|
if (status != kProfileLoadSuccess) {
|
|
return status;
|
|
}
|
|
|
|
// Now read the actual profile line.
|
|
status = ReadProfileLine(fd, line_header, error);
|
|
if (status != kProfileLoadSuccess) {
|
|
return status;
|
|
}
|
|
number_of_lines--;
|
|
}
|
|
|
|
// Check that we read everything and that profiles don't contain junk data.
|
|
int result = testEOF(fd);
|
|
if (result == 0) {
|
|
return kProfileLoadSuccess;
|
|
} else if (result < 0) {
|
|
return kProfileLoadIOError;
|
|
} else {
|
|
*error = "Unexpected content in the profile file";
|
|
return kProfileLoadBadData;
|
|
}
|
|
}
|
|
|
|
bool ProfileCompilationInfo::MergeWith(const ProfileCompilationInfo& other) {
|
|
// First verify that all checksums match. This will avoid adding garbage to
|
|
// the current profile info.
|
|
// Note that the number of elements should be very small, so this should not
|
|
// be a performance issue.
|
|
for (const auto& other_it : other.info_) {
|
|
auto info_it = info_.find(other_it.first);
|
|
if ((info_it != info_.end()) && (info_it->second.checksum != other_it.second.checksum)) {
|
|
LOG(WARNING) << "Checksum mismatch for dex " << other_it.first;
|
|
return false;
|
|
}
|
|
}
|
|
// All checksums match. Import the data.
|
|
for (const auto& other_it : other.info_) {
|
|
const std::string& other_dex_location = other_it.first;
|
|
const DexFileData& other_dex_data = other_it.second;
|
|
auto info_it = info_.find(other_dex_location);
|
|
if (info_it == info_.end()) {
|
|
info_it = info_.Put(other_dex_location, DexFileData(other_dex_data.checksum));
|
|
}
|
|
info_it->second.method_set.insert(other_dex_data.method_set.begin(),
|
|
other_dex_data.method_set.end());
|
|
info_it->second.class_set.insert(other_dex_data.class_set.begin(),
|
|
other_dex_data.class_set.end());
|
|
}
|
|
return true;
|
|
}
|
|
|
|
bool ProfileCompilationInfo::ContainsMethod(const MethodReference& method_ref) const {
|
|
auto info_it = info_.find(GetProfileDexFileKey(method_ref.dex_file->GetLocation()));
|
|
if (info_it != info_.end()) {
|
|
if (method_ref.dex_file->GetLocationChecksum() != info_it->second.checksum) {
|
|
return false;
|
|
}
|
|
const std::set<uint16_t>& methods = info_it->second.method_set;
|
|
return methods.find(method_ref.dex_method_index) != methods.end();
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool ProfileCompilationInfo::ContainsClass(const DexFile& dex_file, uint16_t class_def_idx) const {
|
|
auto info_it = info_.find(GetProfileDexFileKey(dex_file.GetLocation()));
|
|
if (info_it != info_.end()) {
|
|
if (dex_file.GetLocationChecksum() != info_it->second.checksum) {
|
|
return false;
|
|
}
|
|
const std::set<uint16_t>& classes = info_it->second.class_set;
|
|
return classes.find(class_def_idx) != classes.end();
|
|
}
|
|
return false;
|
|
}
|
|
|
|
uint32_t ProfileCompilationInfo::GetNumberOfMethods() const {
|
|
uint32_t total = 0;
|
|
for (const auto& it : info_) {
|
|
total += it.second.method_set.size();
|
|
}
|
|
return total;
|
|
}
|
|
|
|
uint32_t ProfileCompilationInfo::GetNumberOfResolvedClasses() const {
|
|
uint32_t total = 0;
|
|
for (const auto& it : info_) {
|
|
total += it.second.class_set.size();
|
|
}
|
|
return total;
|
|
}
|
|
|
|
std::string ProfileCompilationInfo::DumpInfo(const std::vector<const DexFile*>* dex_files,
|
|
bool print_full_dex_location) const {
|
|
std::ostringstream os;
|
|
if (info_.empty()) {
|
|
return "ProfileInfo: empty";
|
|
}
|
|
|
|
os << "ProfileInfo:";
|
|
|
|
const std::string kFirstDexFileKeySubstitute = ":classes.dex";
|
|
for (const auto& it : info_) {
|
|
os << "\n";
|
|
const std::string& location = it.first;
|
|
const DexFileData& dex_data = it.second;
|
|
if (print_full_dex_location) {
|
|
os << location;
|
|
} else {
|
|
// Replace the (empty) multidex suffix of the first key with a substitute for easier reading.
|
|
std::string multidex_suffix = DexFile::GetMultiDexSuffix(location);
|
|
os << (multidex_suffix.empty() ? kFirstDexFileKeySubstitute : multidex_suffix);
|
|
}
|
|
const DexFile* dex_file = nullptr;
|
|
if (dex_files != nullptr) {
|
|
for (size_t i = 0; i < dex_files->size(); i++) {
|
|
if (location == (*dex_files)[i]->GetLocation()) {
|
|
dex_file = (*dex_files)[i];
|
|
}
|
|
}
|
|
}
|
|
os << "\n\tmethods: ";
|
|
for (const auto method_it : dex_data.method_set) {
|
|
if (dex_file != nullptr) {
|
|
os << "\n\t\t" << PrettyMethod(method_it, *dex_file, true);
|
|
} else {
|
|
os << method_it << ",";
|
|
}
|
|
}
|
|
os << "\n\tclasses: ";
|
|
for (const auto class_it : dex_data.class_set) {
|
|
if (dex_file != nullptr) {
|
|
os << "\n\t\t" << dex_file->GetClassDescriptor(dex_file->GetClassDef(class_it));
|
|
} else {
|
|
os << class_it << ",";
|
|
}
|
|
}
|
|
}
|
|
return os.str();
|
|
}
|
|
|
|
bool ProfileCompilationInfo::Equals(const ProfileCompilationInfo& other) {
|
|
return info_.Equals(other.info_);
|
|
}
|
|
|
|
std::set<DexCacheResolvedClasses> ProfileCompilationInfo::GetResolvedClasses() const {
|
|
std::set<DexCacheResolvedClasses> ret;
|
|
for (auto&& pair : info_) {
|
|
const std::string& profile_key = pair.first;
|
|
const DexFileData& data = pair.second;
|
|
// TODO: Is it OK to use the same location for both base and dex location here?
|
|
DexCacheResolvedClasses classes(profile_key, profile_key, data.checksum);
|
|
classes.AddClasses(data.class_set.begin(), data.class_set.end());
|
|
ret.insert(classes);
|
|
}
|
|
return ret;
|
|
}
|
|
|
|
void ProfileCompilationInfo::ClearResolvedClasses() {
|
|
for (auto& pair : info_) {
|
|
pair.second.class_set.clear();
|
|
}
|
|
}
|
|
|
|
} // namespace art
|