490 lines
16 KiB
C++
490 lines
16 KiB
C++
// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "common/crash_reporter/win/crash_service.h"
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#include <windows.h>
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#include <sddl.h>
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#include <fstream> // NOLINT
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#include <map>
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#include "base/command_line.h"
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#include "base/file_util.h"
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#include "base/logging.h"
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#include "base/win/windows_version.h"
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#include "vendor/breakpad/src/client/windows/crash_generation/client_info.h"
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#include "vendor/breakpad/src/client/windows/crash_generation/crash_generation_server.h"
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#include "vendor/breakpad/src/client/windows/sender/crash_report_sender.h"
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namespace breakpad {
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namespace {
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const wchar_t kTestPipeName[] = L"\\\\.\\pipe\\ChromeCrashServices";
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const wchar_t kGoogleReportURL[] = L"https://clients2.google.com/cr/report";
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const wchar_t kCheckPointFile[] = L"crash_checkpoint.txt";
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typedef std::map<std::wstring, std::wstring> CrashMap;
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bool CustomInfoToMap(const google_breakpad::ClientInfo* client_info,
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const std::wstring& reporter_tag, CrashMap* map) {
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google_breakpad::CustomClientInfo info = client_info->GetCustomInfo();
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for (uintptr_t i = 0; i < info.count; ++i) {
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(*map)[info.entries[i].name] = info.entries[i].value;
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}
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(*map)[L"rept"] = reporter_tag;
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return !map->empty();
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}
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bool WriteCustomInfoToFile(const std::wstring& dump_path, const CrashMap& map) {
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std::wstring file_path(dump_path);
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size_t last_dot = file_path.rfind(L'.');
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if (last_dot == std::wstring::npos)
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return false;
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file_path.resize(last_dot);
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file_path += L".txt";
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std::wofstream file(file_path.c_str(),
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std::ios_base::out | std::ios_base::app | std::ios::binary);
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if (!file.is_open())
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return false;
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CrashMap::const_iterator pos;
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for (pos = map.begin(); pos != map.end(); ++pos) {
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std::wstring line = pos->first;
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line += L':';
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line += pos->second;
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line += L'\n';
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file.write(line.c_str(), static_cast<std::streamsize>(line.length()));
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}
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return true;
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}
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// The window procedure task is to handle when a) the user logs off.
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// b) the system shuts down or c) when the user closes the window.
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LRESULT __stdcall CrashSvcWndProc(HWND hwnd, UINT message,
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WPARAM wparam, LPARAM lparam) {
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switch (message) {
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case WM_CLOSE:
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case WM_ENDSESSION:
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case WM_DESTROY:
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PostQuitMessage(0);
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break;
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default:
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return DefWindowProc(hwnd, message, wparam, lparam);
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}
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return 0;
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}
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// This is the main and only application window.
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HWND g_top_window = NULL;
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bool CreateTopWindow(HINSTANCE instance, bool visible) {
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WNDCLASSEXW wcx = {0};
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wcx.cbSize = sizeof(wcx);
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wcx.style = CS_HREDRAW | CS_VREDRAW;
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wcx.lpfnWndProc = CrashSvcWndProc;
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wcx.hInstance = instance;
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wcx.lpszClassName = L"crash_svc_class";
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ATOM atom = ::RegisterClassExW(&wcx);
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DWORD style = visible ? WS_POPUPWINDOW | WS_VISIBLE : WS_OVERLAPPED;
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// The window size is zero but being a popup window still shows in the
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// task bar and can be closed using the system menu or using task manager.
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HWND window = CreateWindowExW(0, wcx.lpszClassName, L"crash service", style,
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CW_USEDEFAULT, CW_USEDEFAULT, 0, 0,
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NULL, NULL, instance, NULL);
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if (!window)
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return false;
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::UpdateWindow(window);
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VLOG(1) << "window handle is " << window;
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g_top_window = window;
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return true;
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}
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// Simple helper class to keep the process alive until the current request
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// finishes.
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class ProcessingLock {
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public:
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ProcessingLock() {
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::InterlockedIncrement(&op_count_);
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}
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~ProcessingLock() {
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::InterlockedDecrement(&op_count_);
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}
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static bool IsWorking() {
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return (op_count_ != 0);
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}
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private:
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static volatile LONG op_count_;
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};
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volatile LONG ProcessingLock::op_count_ = 0;
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// This structure contains the information that the worker thread needs to
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// send a crash dump to the server.
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struct DumpJobInfo {
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DWORD pid;
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CrashService* self;
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CrashMap map;
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std::wstring dump_path;
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DumpJobInfo(DWORD process_id, CrashService* service,
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const CrashMap& crash_map, const std::wstring& path)
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: pid(process_id), self(service), map(crash_map), dump_path(path) {
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}
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};
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} // namespace
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// Command line switches:
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const char CrashService::kMaxReports[] = "max-reports";
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const char CrashService::kNoWindow[] = "no-window";
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const char CrashService::kReporterTag[] = "reporter";
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const char CrashService::kDumpsDir[] = "dumps-dir";
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const char CrashService::kPipeName[] = "pipe-name";
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const char CrashService::kReporterURL[] = "reporter-url";
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CrashService::CrashService()
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: sender_(NULL),
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dumper_(NULL),
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requests_handled_(0),
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requests_sent_(0),
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clients_connected_(0),
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clients_terminated_(0) {
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}
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CrashService::~CrashService() {
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base::AutoLock lock(sending_);
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delete dumper_;
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delete sender_;
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}
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bool CrashService::Initialize(const base::FilePath& operating_dir,
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const base::FilePath& dumps_path) {
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using google_breakpad::CrashReportSender;
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using google_breakpad::CrashGenerationServer;
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std::wstring pipe_name = kTestPipeName;
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int max_reports = -1;
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// The checkpoint file allows CrashReportSender to enforce the the maximum
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// reports per day quota. Does not seem to serve any other purpose.
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base::FilePath checkpoint_path = operating_dir.Append(kCheckPointFile);
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CommandLine& cmd_line = *CommandLine::ForCurrentProcess();
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base::FilePath dumps_path_to_use = dumps_path;
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if (cmd_line.HasSwitch(kDumpsDir)) {
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dumps_path_to_use =
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base::FilePath(cmd_line.GetSwitchValueNative(kDumpsDir));
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}
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// We can override the send reports quota with a command line switch.
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if (cmd_line.HasSwitch(kMaxReports))
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max_reports = _wtoi(cmd_line.GetSwitchValueNative(kMaxReports).c_str());
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// Allow the global pipe name to be overridden for better testability.
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if (cmd_line.HasSwitch(kPipeName))
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pipe_name = cmd_line.GetSwitchValueNative(kPipeName);
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if (max_reports > 0) {
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// Create the http sender object.
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sender_ = new CrashReportSender(checkpoint_path.value());
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sender_->set_max_reports_per_day(max_reports);
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}
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SECURITY_ATTRIBUTES security_attributes = {0};
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SECURITY_ATTRIBUTES* security_attributes_actual = NULL;
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if (base::win::GetVersion() >= base::win::VERSION_VISTA) {
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SECURITY_DESCRIPTOR* security_descriptor =
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reinterpret_cast<SECURITY_DESCRIPTOR*>(
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GetSecurityDescriptorForLowIntegrity());
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DCHECK(security_descriptor != NULL);
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security_attributes.nLength = sizeof(security_attributes);
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security_attributes.lpSecurityDescriptor = security_descriptor;
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security_attributes.bInheritHandle = FALSE;
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security_attributes_actual = &security_attributes;
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}
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// Create the OOP crash generator object.
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dumper_ = new CrashGenerationServer(pipe_name, security_attributes_actual,
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&CrashService::OnClientConnected, this,
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&CrashService::OnClientDumpRequest, this,
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&CrashService::OnClientExited, this,
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NULL, NULL,
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true, &dumps_path_to_use.value());
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if (!dumper_) {
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LOG(ERROR) << "could not create dumper";
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if (security_attributes.lpSecurityDescriptor)
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LocalFree(security_attributes.lpSecurityDescriptor);
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return false;
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}
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if (!CreateTopWindow(::GetModuleHandleW(NULL),
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!cmd_line.HasSwitch(kNoWindow))) {
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LOG(ERROR) << "could not create window";
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if (security_attributes.lpSecurityDescriptor)
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LocalFree(security_attributes.lpSecurityDescriptor);
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return false;
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}
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reporter_tag_ = L"crash svc";
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if (cmd_line.HasSwitch(kReporterTag))
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reporter_tag_ = cmd_line.GetSwitchValueNative(kReporterTag);
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reporter_url_ = kGoogleReportURL;
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if (cmd_line.HasSwitch(kReporterURL))
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reporter_url_ = cmd_line.GetSwitchValueNative(kReporterURL);
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// Log basic information.
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VLOG(1) << "pipe name is " << pipe_name
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<< "\ndumps at " << dumps_path_to_use.value();
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if (sender_) {
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VLOG(1) << "checkpoint is " << checkpoint_path.value()
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<< "\nserver is " << reporter_url_
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<< "\nmaximum " << sender_->max_reports_per_day() << " reports/day"
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<< "\nreporter is " << reporter_tag_;
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}
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// Start servicing clients.
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if (!dumper_->Start()) {
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LOG(ERROR) << "could not start dumper";
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if (security_attributes.lpSecurityDescriptor)
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LocalFree(security_attributes.lpSecurityDescriptor);
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return false;
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}
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if (security_attributes.lpSecurityDescriptor)
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LocalFree(security_attributes.lpSecurityDescriptor);
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// Create or open an event to signal the browser process that the crash
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// service is initialized.
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HANDLE running_event =
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::CreateEventW(NULL, TRUE, TRUE, L"g_atom_shell_crash_service");
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// If the browser already had the event open, the CreateEvent call did not
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// signal it. We need to do it manually.
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::SetEvent(running_event);
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return true;
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}
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void CrashService::OnClientConnected(void* context,
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const google_breakpad::ClientInfo* client_info) {
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ProcessingLock lock;
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VLOG(1) << "client start. pid = " << client_info->pid();
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CrashService* self = static_cast<CrashService*>(context);
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::InterlockedIncrement(&self->clients_connected_);
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}
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void CrashService::OnClientExited(void* context,
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const google_breakpad::ClientInfo* client_info) {
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ProcessingLock lock;
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VLOG(1) << "client end. pid = " << client_info->pid();
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CrashService* self = static_cast<CrashService*>(context);
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::InterlockedIncrement(&self->clients_terminated_);
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if (!self->sender_)
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return;
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// When we are instructed to send reports we need to exit if there are
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// no more clients to service. The next client that runs will start us.
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// Only chrome.exe starts crash_service with a non-zero max_reports.
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if (self->clients_connected_ > self->clients_terminated_)
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return;
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if (self->sender_->max_reports_per_day() > 0) {
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// Wait for the other thread to send crashes, if applicable. The sender
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// thread takes the sending_ lock, so the sleep is just to give it a
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// chance to start.
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::Sleep(1000);
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base::AutoLock lock(self->sending_);
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// Some people can restart chrome very fast, check again if we have
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// a new client before exiting for real.
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if (self->clients_connected_ == self->clients_terminated_) {
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VLOG(1) << "zero clients. exiting";
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::PostMessage(g_top_window, WM_CLOSE, 0, 0);
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}
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}
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}
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void CrashService::OnClientDumpRequest(void* context,
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const google_breakpad::ClientInfo* client_info,
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const std::wstring* file_path) {
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ProcessingLock lock;
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if (!file_path) {
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LOG(ERROR) << "dump with no file path";
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return;
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}
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if (!client_info) {
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LOG(ERROR) << "dump with no client info";
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return;
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}
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CrashService* self = static_cast<CrashService*>(context);
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if (!self) {
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LOG(ERROR) << "dump with no context";
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return;
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}
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CrashMap map;
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CustomInfoToMap(client_info, self->reporter_tag_, &map);
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// Move dump file to the directory under client breakpad dump location.
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base::FilePath dump_location = base::FilePath(*file_path);
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CrashMap::const_iterator it = map.find(L"breakpad-dump-location");
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if (it != map.end()) {
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base::FilePath alternate_dump_location = base::FilePath(it->second);
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file_util::CreateDirectoryW(alternate_dump_location);
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alternate_dump_location = alternate_dump_location.Append(
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dump_location.BaseName());
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file_util::Move(dump_location, alternate_dump_location);
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dump_location = alternate_dump_location;
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}
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DWORD pid = client_info->pid();
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VLOG(1) << "dump for pid = " << pid << " is " << dump_location.value();
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if (!WriteCustomInfoToFile(dump_location.value(), map)) {
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LOG(ERROR) << "could not write custom info file";
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}
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if (!self->sender_)
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return;
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// Send the crash dump using a worker thread. This operation has retry
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// logic in case there is no internet connection at the time.
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DumpJobInfo* dump_job = new DumpJobInfo(pid, self, map,
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dump_location.value());
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if (!::QueueUserWorkItem(&CrashService::AsyncSendDump,
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dump_job, WT_EXECUTELONGFUNCTION)) {
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LOG(ERROR) << "could not queue job";
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}
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}
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// We are going to try sending the report several times. If we can't send,
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// we sleep from one minute to several hours depending on the retry round.
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DWORD CrashService::AsyncSendDump(void* context) {
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if (!context)
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return 0;
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DumpJobInfo* info = static_cast<DumpJobInfo*>(context);
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std::wstring report_id = L"<unsent>";
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const DWORD kOneMinute = 60*1000;
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const DWORD kOneHour = 60*kOneMinute;
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const DWORD kSleepSchedule[] = {
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24*kOneHour,
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8*kOneHour,
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4*kOneHour,
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kOneHour,
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15*kOneMinute,
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0};
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int retry_round = arraysize(kSleepSchedule) - 1;
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do {
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::Sleep(kSleepSchedule[retry_round]);
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{
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// Take the server lock while sending. This also prevent early
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// termination of the service object.
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base::AutoLock lock(info->self->sending_);
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VLOG(1) << "trying to send report for pid = " << info->pid;
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google_breakpad::ReportResult send_result
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= info->self->sender_->SendCrashReport(info->self->reporter_url_,
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info->map,
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info->dump_path,
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&report_id);
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switch (send_result) {
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case google_breakpad::RESULT_FAILED:
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report_id = L"<network issue>";
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break;
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case google_breakpad::RESULT_REJECTED:
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report_id = L"<rejected>";
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++info->self->requests_handled_;
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retry_round = 0;
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break;
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case google_breakpad::RESULT_SUCCEEDED:
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++info->self->requests_sent_;
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++info->self->requests_handled_;
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retry_round = 0;
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break;
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case google_breakpad::RESULT_THROTTLED:
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report_id = L"<throttled>";
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break;
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default:
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report_id = L"<unknown>";
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break;
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};
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}
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VLOG(1) << "dump for pid =" << info->pid << " crash2 id =" << report_id;
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--retry_round;
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} while (retry_round >= 0);
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if (!::DeleteFileW(info->dump_path.c_str()))
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LOG(WARNING) << "could not delete " << info->dump_path;
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delete info;
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return 0;
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}
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int CrashService::ProcessingLoop() {
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MSG msg;
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while (GetMessage(&msg, NULL, 0, 0)) {
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TranslateMessage(&msg);
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DispatchMessage(&msg);
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}
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VLOG(1) << "session ending..";
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while (ProcessingLock::IsWorking()) {
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::Sleep(50);
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}
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VLOG(1) << "clients connected :" << clients_connected_
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<< "\nclients terminated :" << clients_terminated_
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<< "\ndumps serviced :" << requests_handled_
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<< "\ndumps reported :" << requests_sent_;
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return static_cast<int>(msg.wParam);
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}
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PSECURITY_DESCRIPTOR CrashService::GetSecurityDescriptorForLowIntegrity() {
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// Build the SDDL string for the label.
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std::wstring sddl = L"S:(ML;;NW;;;S-1-16-4096)";
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DWORD error = ERROR_SUCCESS;
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PSECURITY_DESCRIPTOR sec_desc = NULL;
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PACL sacl = NULL;
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BOOL sacl_present = FALSE;
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BOOL sacl_defaulted = FALSE;
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if (::ConvertStringSecurityDescriptorToSecurityDescriptorW(sddl.c_str(),
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SDDL_REVISION,
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&sec_desc, NULL)) {
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if (::GetSecurityDescriptorSacl(sec_desc, &sacl_present, &sacl,
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&sacl_defaulted)) {
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return sec_desc;
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}
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}
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return NULL;
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}
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} // namespace breakpad
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