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Previously: 0:000> !peb PEB at 7f374000 InheritedAddressSpace: No ReadImageFileExecOptions: No BeingDebugged: No ImageBaseAddress: 01380000 Ldr 77ec8b40 *** unable to read Ldr table at 77ec8b40 SubSystemData: 00000000 ProcessHeap: 00740000 ProcessParameters: 007414e0 CurrentDirectory: '< Name not readable >' WindowTitle: '< Name not readable >' ImageFile: '< Name not readable >' CommandLine: '< Name not readable >' DllPath: '< Name not readable >' Environment: 00000000 Unable to read Environment string. Now: 0:000> !peb PEB at 7f494000 InheritedAddressSpace: No ReadImageFileExecOptions: No BeingDebugged: No ImageBaseAddress: 00ef0000 Ldr 77ec8b40 Ldr.Initialized: Yes Ldr.InInitializationOrderModuleList: 01042b68 . 01043c68 Ldr.InLoadOrderModuleList: 01042c38 . 01043c58 Ldr.InMemoryOrderModuleList: 01042c40 . 01043c60 Base TimeStamp Module ef0000 5609bd17 Sep 28 15:20:07 2015 d:\src\crashpad\crashpad\out\debug\crashy_program.exe 77dc0000 55c599e1 Aug 07 22:55:45 2015 C:\Windows\SYSTEM32\ntdll.dll 758e0000 559f3b21 Jul 09 20:25:21 2015 C:\Windows\SYSTEM32\KERNEL32.DLL 76850000 559f3b2a Jul 09 20:25:30 2015 C:\Windows\SYSTEM32\KERNELBASE.dll SubSystemData: 00000000 ProcessHeap: 01040000 ProcessParameters: 01041520 CurrentDirectory: 'd:\src\crashpad\crashpad\' WindowTitle: 'out\debug\crashy_program.exe \\.\pipe\stuff' ImageFile: 'd:\src\crashpad\crashpad\out\debug\crashy_program.exe' CommandLine: 'out\debug\crashy_program.exe \\.\pipe\stuff' DllPath: '< Name not readable >' Environment: 010405c8 =D:=d:\src\crashpad\crashpad =ExitCode=C0000005 ALLUSERSPROFILE=C:\ProgramData APPDATA=C:\Users\scott\AppData\Roaming CommonProgramFiles=C:\Program Files (x86)\Common Files CommonProgramFiles(x86)=C:\Program Files (x86)\Common Files ... R=mark@chromium.org BUG=crashpad:46 Review URL: https://codereview.chromium.org/1360863006 .
388 lines
13 KiB
C++
388 lines
13 KiB
C++
// Copyright 2015 The Crashpad Authors. All rights reserved.
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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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#include "snapshot/win/process_snapshot_win.h"
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#include <algorithm>
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#include "base/logging.h"
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#include "base/strings/stringprintf.h"
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#include "snapshot/win/module_snapshot_win.h"
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#include "util/win/registration_protocol_win.h"
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#include "util/win/time.h"
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namespace crashpad {
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ProcessSnapshotWin::ProcessSnapshotWin()
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: ProcessSnapshot(),
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system_(),
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threads_(),
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modules_(),
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exception_(),
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process_reader_(),
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report_id_(),
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client_id_(),
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annotations_simple_map_(),
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snapshot_time_(),
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initialized_() {
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}
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ProcessSnapshotWin::~ProcessSnapshotWin() {
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}
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bool ProcessSnapshotWin::Initialize(HANDLE process,
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ProcessSuspensionState suspension_state) {
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INITIALIZATION_STATE_SET_INITIALIZING(initialized_);
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GetTimeOfDay(&snapshot_time_);
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if (!process_reader_.Initialize(process, suspension_state))
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return false;
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system_.Initialize(&process_reader_);
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if (process_reader_.Is64Bit())
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InitializePebData<process_types::internal::Traits64>();
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else
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InitializePebData<process_types::internal::Traits32>();
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InitializeThreads();
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InitializeModules();
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INITIALIZATION_STATE_SET_VALID(initialized_);
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return true;
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}
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bool ProcessSnapshotWin::InitializeException(
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WinVMAddress exception_information_address) {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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DCHECK(!exception_);
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ExceptionInformation exception_information;
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if (!process_reader_.ReadMemory(exception_information_address,
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sizeof(exception_information),
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&exception_information)) {
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LOG(WARNING) << "ReadMemory ExceptionInformation failed";
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return false;
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}
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exception_.reset(new internal::ExceptionSnapshotWin());
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if (!exception_->Initialize(&process_reader_,
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exception_information.thread_id,
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exception_information.exception_pointers)) {
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exception_.reset();
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return false;
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}
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return true;
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}
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void ProcessSnapshotWin::GetCrashpadOptions(
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CrashpadInfoClientOptions* options) {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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CrashpadInfoClientOptions local_options;
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for (internal::ModuleSnapshotWin* module : modules_) {
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CrashpadInfoClientOptions module_options;
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module->GetCrashpadOptions(&module_options);
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if (local_options.crashpad_handler_behavior == TriState::kUnset) {
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local_options.crashpad_handler_behavior =
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module_options.crashpad_handler_behavior;
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}
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if (local_options.system_crash_reporter_forwarding == TriState::kUnset) {
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local_options.system_crash_reporter_forwarding =
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module_options.system_crash_reporter_forwarding;
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}
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// If non-default values have been found for all options, the loop can end
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// early.
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if (local_options.crashpad_handler_behavior != TriState::kUnset &&
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local_options.system_crash_reporter_forwarding != TriState::kUnset) {
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break;
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}
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}
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*options = local_options;
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}
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pid_t ProcessSnapshotWin::ProcessID() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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return process_reader_.GetProcessInfo().ProcessID();
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}
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pid_t ProcessSnapshotWin::ParentProcessID() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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return process_reader_.GetProcessInfo().ParentProcessID();
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}
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void ProcessSnapshotWin::SnapshotTime(timeval* snapshot_time) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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*snapshot_time = snapshot_time_;
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}
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void ProcessSnapshotWin::ProcessStartTime(timeval* start_time) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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process_reader_.StartTime(start_time);
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}
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void ProcessSnapshotWin::ProcessCPUTimes(timeval* user_time,
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timeval* system_time) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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process_reader_.CPUTimes(user_time, system_time);
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}
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void ProcessSnapshotWin::ReportID(UUID* report_id) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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*report_id = report_id_;
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}
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void ProcessSnapshotWin::ClientID(UUID* client_id) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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*client_id = client_id_;
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}
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const std::map<std::string, std::string>&
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ProcessSnapshotWin::AnnotationsSimpleMap() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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return annotations_simple_map_;
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}
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const SystemSnapshot* ProcessSnapshotWin::System() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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return &system_;
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}
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std::vector<const ThreadSnapshot*> ProcessSnapshotWin::Threads() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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std::vector<const ThreadSnapshot*> threads;
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for (internal::ThreadSnapshotWin* thread : threads_) {
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threads.push_back(thread);
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}
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return threads;
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}
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std::vector<const ModuleSnapshot*> ProcessSnapshotWin::Modules() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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std::vector<const ModuleSnapshot*> modules;
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for (internal::ModuleSnapshotWin* module : modules_) {
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modules.push_back(module);
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}
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return modules;
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}
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const ExceptionSnapshot* ProcessSnapshotWin::Exception() const {
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return exception_.get();
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}
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std::vector<const MemorySnapshot*> ProcessSnapshotWin::ExtraMemory() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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std::vector<const MemorySnapshot*> extra_memory;
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for (const auto& peb_memory : peb_memory_)
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extra_memory.push_back(peb_memory);
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return extra_memory;
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}
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void ProcessSnapshotWin::InitializeThreads() {
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const std::vector<ProcessReaderWin::Thread>& process_reader_threads =
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process_reader_.Threads();
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for (const ProcessReaderWin::Thread& process_reader_thread :
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process_reader_threads) {
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auto thread = make_scoped_ptr(new internal::ThreadSnapshotWin());
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if (thread->Initialize(&process_reader_, process_reader_thread)) {
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threads_.push_back(thread.release());
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}
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}
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}
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void ProcessSnapshotWin::InitializeModules() {
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const std::vector<ProcessInfo::Module>& process_reader_modules =
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process_reader_.Modules();
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for (const ProcessInfo::Module& process_reader_module :
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process_reader_modules) {
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auto module = make_scoped_ptr(new internal::ModuleSnapshotWin());
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if (module->Initialize(&process_reader_, process_reader_module)) {
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modules_.push_back(module.release());
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}
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}
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}
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template <class Traits>
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void ProcessSnapshotWin::InitializePebData() {
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WinVMAddress peb_address;
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WinVMSize peb_size;
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process_reader_.GetProcessInfo().Peb(&peb_address, &peb_size);
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AddMemorySnapshot(peb_address, peb_size, &peb_memory_);
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process_types::PEB<Traits> peb_data;
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if (!process_reader_.ReadMemory(peb_address, peb_size, &peb_data)) {
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LOG(ERROR) << "ReadMemory PEB";
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return;
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}
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process_types::PEB_LDR_DATA<Traits> peb_ldr_data;
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AddMemorySnapshot(peb_data.Ldr, sizeof(peb_ldr_data), &peb_memory_);
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if (!process_reader_.ReadMemory(
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peb_data.Ldr, sizeof(peb_ldr_data), &peb_ldr_data)) {
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LOG(ERROR) << "ReadMemory PEB_LDR_DATA";
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} else {
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// Walk the LDR structure to retrieve its pointed-to data.
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AddMemorySnapshotForLdrLIST_ENTRY(
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peb_ldr_data.InLoadOrderModuleList,
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offsetof(process_types::LDR_DATA_TABLE_ENTRY<Traits>, InLoadOrderLinks),
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&peb_memory_);
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AddMemorySnapshotForLdrLIST_ENTRY(
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peb_ldr_data.InMemoryOrderModuleList,
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offsetof(process_types::LDR_DATA_TABLE_ENTRY<Traits>,
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InMemoryOrderLinks),
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&peb_memory_);
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AddMemorySnapshotForLdrLIST_ENTRY(
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peb_ldr_data.InInitializationOrderModuleList,
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offsetof(process_types::LDR_DATA_TABLE_ENTRY<Traits>,
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InInitializationOrderLinks),
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&peb_memory_);
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}
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process_types::RTL_USER_PROCESS_PARAMETERS<Traits> process_parameters;
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if (!process_reader_.ReadMemory(peb_data.ProcessParameters,
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sizeof(process_parameters),
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&process_parameters)) {
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LOG(ERROR) << "ReadMemory RTL_USER_PROCESS_PARAMETERS";
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return;
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}
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AddMemorySnapshot(
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peb_data.ProcessParameters, sizeof(process_parameters), &peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(
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process_parameters.CurrentDirectory.DosPath, &peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.DllPath, &peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.ImagePathName,
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&peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.CommandLine,
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&peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.WindowTitle,
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&peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.DesktopInfo,
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&peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.ShellInfo,
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&peb_memory_);
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AddMemorySnapshotForUNICODE_STRING(process_parameters.RuntimeData,
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&peb_memory_);
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AddMemorySnapshot(
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process_parameters.Environment,
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DetermineSizeOfEnvironmentBlock(process_parameters.Environment),
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&peb_memory_);
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}
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void ProcessSnapshotWin::AddMemorySnapshot(
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WinVMAddress address,
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WinVMSize size,
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PointerVector<internal::MemorySnapshotWin>* into) {
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if (size == 0)
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return;
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// Ensure that the entire range is readable. TODO(scottmg): Consider
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// generalizing this as part of
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// https://code.google.com/p/crashpad/issues/detail?id=59.
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auto ranges = process_reader_.GetProcessInfo().GetReadableRanges(
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CheckedRange<WinVMAddress, WinVMSize>(address, size));
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if (ranges.size() != 1) {
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LOG(ERROR) << base::StringPrintf(
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"range at 0x%llx, size 0x%llx fully unreadable", address, size);
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return;
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}
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if (ranges[0].base() != address || ranges[0].size() != size) {
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LOG(ERROR) << base::StringPrintf(
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"some of range at 0x%llx, size 0x%llx unreadable", address, size);
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return;
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}
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// If we have already added this exact range, don't add it again. This is
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// useful for the LDR module lists which are a set of doubly-linked lists, all
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// pointing to the same module name strings.
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// TODO(scottmg): A more general version of this, handling overlapping,
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// contained, etc. https://code.google.com/p/crashpad/issues/detail?id=61.
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for (const auto& memory_snapshot : *into) {
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if (memory_snapshot->Address() == address &&
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memory_snapshot->Size() == size) {
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return;
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}
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}
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internal::MemorySnapshotWin* memory_snapshot =
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new internal::MemorySnapshotWin();
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memory_snapshot->Initialize(&process_reader_, address, size);
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into->push_back(memory_snapshot);
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}
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template <class Traits>
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void ProcessSnapshotWin::AddMemorySnapshotForUNICODE_STRING(
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const process_types::UNICODE_STRING<Traits>& us,
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PointerVector<internal::MemorySnapshotWin>* into) {
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AddMemorySnapshot(us.Buffer, us.Length, into);
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}
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template <class Traits>
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void ProcessSnapshotWin::AddMemorySnapshotForLdrLIST_ENTRY(
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const process_types::LIST_ENTRY<Traits>& le, size_t offset_of_member,
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PointerVector<internal::MemorySnapshotWin>* into) {
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// Walk the doubly-linked list of entries, adding the list memory itself, as
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// well as pointed-to strings.
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Traits::Pointer last = le.Blink;
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process_types::LDR_DATA_TABLE_ENTRY<Traits> entry;
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Traits::Pointer cur = le.Flink;
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for (;;) {
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// |cur| is the pointer to LIST_ENTRY embedded in the LDR_DATA_TABLE_ENTRY.
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// So we need to offset back to the beginning of the structure.
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if (!process_reader_.ReadMemory(
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cur - offset_of_member, sizeof(entry), &entry)) {
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return;
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}
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AddMemorySnapshot(cur - offset_of_member, sizeof(entry), into);
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AddMemorySnapshotForUNICODE_STRING(entry.FullDllName, into);
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AddMemorySnapshotForUNICODE_STRING(entry.BaseDllName, into);
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process_types::LIST_ENTRY<Traits>* links =
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reinterpret_cast<process_types::LIST_ENTRY<Traits>*>(
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reinterpret_cast<unsigned char*>(&entry) + offset_of_member);
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cur = links->Flink;
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if (cur == last)
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break;
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}
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}
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WinVMSize ProcessSnapshotWin::DetermineSizeOfEnvironmentBlock(
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WinVMAddress start_of_environment_block) {
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// http://blogs.msdn.com/b/oldnewthing/archive/2010/02/03/9957320.aspx On
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// newer OSs there's no stated limit, but in practice grabbing 32k characters
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// should be more than enough.
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std::wstring env_block;
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env_block.resize(32768);
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WinVMSize bytes_read = process_reader_.ReadAvailableMemory(
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start_of_environment_block,
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env_block.size() * sizeof(env_block[0]),
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&env_block[0]);
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env_block.resize(
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static_cast<unsigned int>(bytes_read / sizeof(env_block[0])));
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const wchar_t terminator[] = { 0, 0 };
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size_t at = env_block.find(std::wstring(terminator, arraysize(terminator)));
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if (at != std::wstring::npos)
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env_block.resize(at + arraysize(terminator));
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return env_block.size() * sizeof(env_block[0]);
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}
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} // namespace crashpad
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