Separate implementations of RelauncherMain and RelauncherSynchronizeWithParent

This commit is contained in:
Cheng Zhao 2016-06-02 09:09:32 +09:00
parent fc30a2a084
commit 060829da64
5 changed files with 224 additions and 221 deletions

View file

@ -153,7 +153,7 @@ int AtomMainDelegate::RunProcess(
const std::string& process_type, const std::string& process_type,
const content::MainFunctionParams& main_function_params) { const content::MainFunctionParams& main_function_params) {
if (process_type == kRelauncherProcess) if (process_type == kRelauncherProcess)
return relauncher::RelauncherMain(main_function_params); return relauncher::internal::RelauncherMain(main_function_params);
else else
return -1; return -1;
} }

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@ -1,69 +1,31 @@
// Copyright 2012 The Chromium Authors. All rights reserved. // Copyright (c) 2016 GitHub, Inc.
// Use of this source code is governed by a BSD-style license that can be // Use of this source code is governed by the MIT license that can be
// found in the LICENSE file. // found in the LICENSE file.
#include "atom/browser/relauncher.h" #include "atom/browser/relauncher.h"
#include <ApplicationServices/ApplicationServices.h>
#include <sys/event.h>
#include <sys/time.h>
#include <sys/types.h>
#include <unistd.h>
#include <string> #include <string>
#include <vector> #include <vector>
#include "atom/common/atom_command_line.h"
#include "base/files/file_util.h" #include "base/files/file_util.h"
#include "base/logging.h" #include "base/logging.h"
#include "base/mac/mac_logging.h"
#include "base/mac/mac_util.h"
#include "base/mac/scoped_cftyperef.h"
#include "base/path_service.h" #include "base/path_service.h"
#include "base/posix/eintr_wrapper.h" #include "base/posix/eintr_wrapper.h"
#include "base/process/launch.h" #include "base/process/launch.h"
#include "base/strings/stringprintf.h" #include "base/strings/stringprintf.h"
#include "base/strings/sys_string_conversions.h"
#include "content/public/common/content_paths.h" #include "content/public/common/content_paths.h"
#include "content/public/common/content_switches.h" #include "content/public/common/content_switches.h"
#include "content/public/common/main_function_params.h" #include "content/public/common/main_function_params.h"
namespace relauncher { namespace relauncher {
namespace { namespace internal {
// The "magic" file descriptor that the relauncher process' write side of the
// pipe shows up on. Chosen to avoid conflicting with stdin, stdout, and
// stderr.
const int kRelauncherSyncFD = STDERR_FILENO + 1; const int kRelauncherSyncFD = STDERR_FILENO + 1;
const char* kRelauncherTypeArg = "--type=relauncher";
const char* kRelauncherArgSeparator = "---";
// The argument separating arguments intended for the relauncher process from } // namespace internal
// those intended for the relaunched process. "---" is chosen instead of "--"
// because CommandLine interprets "--" as meaning "end of switches", but
// for many purposes, the relauncher process' CommandLine ought to interpret
// arguments intended for the relaunched process, to get the correct settings
// for such things as logging and the user-data-dir in case it affects crash
// reporting.
const char kRelauncherArgSeparator[] = "---";
// When this argument is supplied to the relauncher process, it will launch
// the relaunched process without bringing it to the foreground.
const char kRelauncherBackgroundArg[] = "--background";
// The beginning of the "process serial number" argument that Launch Services
// sometimes inserts into command lines. A process serial number is only valid
// for a single process, so any PSN arguments will be stripped from command
// lines during relaunch to avoid confusion.
const char kPSNArg[] = "-psn_";
// Returns the "type" argument identifying a relauncher process
// ("--type=relauncher").
std::string RelauncherTypeArg() {
return base::StringPrintf("--%s=%s", switches::kProcessType, "relauncher");
}
} // namespace
bool RelaunchApp(const std::vector<std::string>& args) { bool RelaunchApp(const std::vector<std::string>& args) {
// Use the currently-running application's helper process. The automatic // Use the currently-running application's helper process. The automatic
@ -87,29 +49,14 @@ bool RelaunchAppWithHelper(const std::string& helper,
const std::vector<std::string>& args) { const std::vector<std::string>& args) {
std::vector<std::string> relaunch_args; std::vector<std::string> relaunch_args;
relaunch_args.push_back(helper); relaunch_args.push_back(helper);
relaunch_args.push_back(RelauncherTypeArg()); relaunch_args.push_back(internal::kRelauncherTypeArg);
// If this application isn't in the foreground, the relaunched one shouldn't
// be either.
if (!base::mac::AmIForeground()) {
relaunch_args.push_back(kRelauncherBackgroundArg);
}
relaunch_args.insert(relaunch_args.end(), relaunch_args.insert(relaunch_args.end(),
relauncher_args.begin(), relauncher_args.end()); relauncher_args.begin(), relauncher_args.end());
relaunch_args.push_back(kRelauncherArgSeparator); relaunch_args.push_back(internal::kRelauncherArgSeparator);
// When using the CommandLine interface, -psn_ may have been rewritten as relaunch_args.insert(relaunch_args.end(), args.begin(), args.end());
// --psn_. Look for both.
const char alt_psn_arg[] = "--psn_";
for (size_t index = 0; index < args.size(); ++index) {
// Strip any -psn_ arguments, as they apply to a specific process.
if (args[index].compare(0, strlen(kPSNArg), kPSNArg) != 0 &&
args[index].compare(0, strlen(alt_psn_arg), alt_psn_arg) != 0) {
relaunch_args.push_back(args[index]);
}
}
int pipe_fds[2]; int pipe_fds[2];
if (HANDLE_EINTR(pipe(pipe_fds)) != 0) { if (HANDLE_EINTR(pipe(pipe_fds)) != 0) {
@ -129,13 +76,14 @@ bool RelaunchAppWithHelper(const std::string& helper,
// Make sure kRelauncherSyncFD is a safe value. base::LaunchProcess will // Make sure kRelauncherSyncFD is a safe value. base::LaunchProcess will
// preserve these three FDs in forked processes, so kRelauncherSyncFD should // preserve these three FDs in forked processes, so kRelauncherSyncFD should
// not conflict with them. // not conflict with them.
static_assert(kRelauncherSyncFD != STDIN_FILENO && static_assert(internal::kRelauncherSyncFD != STDIN_FILENO &&
kRelauncherSyncFD != STDOUT_FILENO && internal::kRelauncherSyncFD != STDOUT_FILENO &&
kRelauncherSyncFD != STDERR_FILENO, internal::kRelauncherSyncFD != STDERR_FILENO,
"kRelauncherSyncFD must not conflict with stdio fds"); "kRelauncherSyncFD must not conflict with stdio fds");
base::FileHandleMappingVector fd_map; base::FileHandleMappingVector fd_map;
fd_map.push_back(std::make_pair(pipe_write_fd.get(), kRelauncherSyncFD)); fd_map.push_back(
std::make_pair(pipe_write_fd.get(), internal::kRelauncherSyncFD));
base::LaunchOptions options; base::LaunchOptions options;
options.fds_to_remap = &fd_map; options.fds_to_remap = &fd_map;
@ -167,158 +115,4 @@ bool RelaunchAppWithHelper(const std::string& helper,
return true; return true;
} }
void RelauncherSynchronizeWithParent() {
base::ScopedFD relauncher_sync_fd(kRelauncherSyncFD);
int parent_pid = getppid();
// PID 1 identifies init. launchd, that is. launchd never starts the
// relauncher process directly, having this parent_pid means that the parent
// already exited and launchd "inherited" the relauncher as its child.
// There's no reason to synchronize with launchd.
if (parent_pid == 1) {
LOG(ERROR) << "unexpected parent_pid";
return;
}
// Set up a kqueue to monitor the parent process for exit.
base::ScopedFD kq(kqueue());
if (!kq.is_valid()) {
PLOG(ERROR) << "kqueue";
return;
}
struct kevent change = { 0 };
EV_SET(&change, parent_pid, EVFILT_PROC, EV_ADD, NOTE_EXIT, 0, NULL);
if (kevent(kq.get(), &change, 1, NULL, 0, NULL) == -1) {
PLOG(ERROR) << "kevent (add)";
return;
}
// Write a '\0' character to the pipe.
if (HANDLE_EINTR(write(relauncher_sync_fd.get(), "", 1)) != 1) {
PLOG(ERROR) << "write";
return;
}
// Up until now, the parent process was blocked in a read waiting for the
// write above to complete. The parent process is now free to exit. Wait for
// that to happen.
struct kevent event;
int events = kevent(kq.get(), NULL, 0, &event, 1, NULL);
if (events != 1) {
if (events < 0) {
PLOG(ERROR) << "kevent (monitor)";
} else {
LOG(ERROR) << "kevent (monitor): unexpected result " << events;
}
return;
}
if (event.filter != EVFILT_PROC ||
event.fflags != NOTE_EXIT ||
event.ident != static_cast<uintptr_t>(parent_pid)) {
LOG(ERROR) << "kevent (monitor): unexpected event, filter " << event.filter
<< ", fflags " << event.fflags << ", ident " << event.ident;
return;
}
}
int RelauncherMain(const content::MainFunctionParams& main_parameters) {
const std::vector<std::string>& argv = atom::AtomCommandLine::argv();
if (argv.size() < 4 || RelauncherTypeArg() != argv[1]) {
LOG(ERROR) << "relauncher process invoked with unexpected arguments";
return 1;
}
RelauncherSynchronizeWithParent();
// The capacity for relaunch_args is 4 less than argc, because it
// won't contain the argv[0] of the relauncher process, the
// RelauncherTypeArg() at argv[1], kRelauncherArgSeparator, or the
// executable path of the process to be launched.
base::ScopedCFTypeRef<CFMutableArrayRef> relaunch_args(
CFArrayCreateMutable(NULL, argv.size() - 4, &kCFTypeArrayCallBacks));
if (!relaunch_args) {
LOG(ERROR) << "CFArrayCreateMutable";
return 1;
}
// Figure out what to execute, what arguments to pass it, and whether to
// start it in the background.
bool background = false;
bool in_relaunch_args = false;
bool seen_relaunch_executable = false;
std::string relaunch_executable;
const std::string relauncher_arg_separator(kRelauncherArgSeparator);
for (size_t argv_index = 2; argv_index < argv.size(); ++argv_index) {
const std::string& arg(argv[argv_index]);
// Strip any -psn_ arguments, as they apply to a specific process.
if (arg.compare(0, strlen(kPSNArg), kPSNArg) == 0) {
continue;
}
if (!in_relaunch_args) {
if (arg == relauncher_arg_separator) {
in_relaunch_args = true;
} else if (arg == kRelauncherBackgroundArg) {
background = true;
}
} else {
if (!seen_relaunch_executable) {
// The first argument after kRelauncherBackgroundArg is the path to
// the executable file or .app bundle directory. The Launch Services
// interface wants this separate from the rest of the arguments. In
// the relaunched process, this path will still be visible at argv[0].
relaunch_executable.assign(arg);
seen_relaunch_executable = true;
} else {
base::ScopedCFTypeRef<CFStringRef> arg_cf(
base::SysUTF8ToCFStringRef(arg));
if (!arg_cf) {
LOG(ERROR) << "base::SysUTF8ToCFStringRef failed for " << arg;
return 1;
}
CFArrayAppendValue(relaunch_args, arg_cf);
}
}
}
if (!seen_relaunch_executable) {
LOG(ERROR) << "nothing to relaunch";
return 1;
}
FSRef app_fsref;
if (!base::mac::FSRefFromPath(relaunch_executable, &app_fsref)) {
LOG(ERROR) << "base::mac::FSRefFromPath failed for " << relaunch_executable;
return 1;
}
LSApplicationParameters ls_parameters = {
0, // version
kLSLaunchDefaults | kLSLaunchAndDisplayErrors | kLSLaunchNewInstance |
(background ? kLSLaunchDontSwitch : 0),
&app_fsref,
NULL, // asyncLaunchRefCon
NULL, // environment
relaunch_args,
NULL // initialEvent
};
OSStatus status = LSOpenApplication(&ls_parameters, NULL);
if (status != noErr) {
OSSTATUS_LOG(ERROR, status) << "LSOpenApplication";
return 1;
}
// The application should have relaunched (or is in the process of
// relaunching). From this point on, only clean-up tasks should occur, and
// failures are tolerable.
return 0;
}
} // namespace relauncher } // namespace relauncher

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@ -64,6 +64,25 @@ bool RelaunchAppWithHelper(const std::string& helper,
const std::vector<std::string>& relauncher_args, const std::vector<std::string>& relauncher_args,
const std::vector<std::string>& args); const std::vector<std::string>& args);
namespace internal {
// The "magic" file descriptor that the relauncher process' write side of the
// pipe shows up on. Chosen to avoid conflicting with stdin, stdout, and
// stderr.
extern const int kRelauncherSyncFD;
// The "type" argument identifying a relauncher process ("--type=relauncher").
extern const char* kRelauncherTypeArg;
// The argument separating arguments intended for the relauncher process from
// those intended for the relaunched process. "---" is chosen instead of "--"
// because CommandLine interprets "--" as meaning "end of switches", but
// for many purposes, the relauncher process' CommandLine ought to interpret
// arguments intended for the relaunched process, to get the correct settings
// for such things as logging and the user-data-dir in case it affects crash
// reporting.
extern const char* kRelauncherArgSeparator;
// In the relauncher process, performs the necessary synchronization steps // In the relauncher process, performs the necessary synchronization steps
// with the parent by setting up a kqueue to watch for it to exit, writing a // with the parent by setting up a kqueue to watch for it to exit, writing a
// byte to the pipe, and then waiting for the exit notification on the kqueue. // byte to the pipe, and then waiting for the exit notification on the kqueue.
@ -75,6 +94,8 @@ void RelauncherSynchronizeWithParent();
// The entry point from ChromeMain into the relauncher process. // The entry point from ChromeMain into the relauncher process.
int RelauncherMain(const content::MainFunctionParams& main_parameters); int RelauncherMain(const content::MainFunctionParams& main_parameters);
} // namespace internal
} // namespace relauncher } // namespace relauncher
#endif // ATOM_BROWSER_RELAUNCHER_H_ #endif // ATOM_BROWSER_RELAUNCHER_H_

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@ -0,0 +1,187 @@
// Copyright (c) 2016 GitHub, Inc.
// Use of this source code is governed by the MIT license that can be
// found in the LICENSE file.
#include "atom/browser/relauncher.h"
#include <ApplicationServices/ApplicationServices.h>
#include <sys/event.h>
#include <sys/time.h>
#include <sys/types.h>
#include <unistd.h>
#include "atom/common/atom_command_line.h"
#include "base/files/file_util.h"
#include "base/logging.h"
#include "base/mac/mac_logging.h"
#include "base/mac/mac_util.h"
#include "base/mac/scoped_cftyperef.h"
#include "base/posix/eintr_wrapper.h"
#include "base/strings/sys_string_conversions.h"
namespace relauncher {
namespace internal {
namespace {
// The beginning of the "process serial number" argument that Launch Services
// sometimes inserts into command lines. A process serial number is only valid
// for a single process, so any PSN arguments will be stripped from command
// lines during relaunch to avoid confusion.
const char kPSNArg[] = "-psn_";
} // namespace
void RelauncherSynchronizeWithParent() {
base::ScopedFD relauncher_sync_fd(kRelauncherSyncFD);
int parent_pid = getppid();
// PID 1 identifies init. launchd, that is. launchd never starts the
// relauncher process directly, having this parent_pid means that the parent
// already exited and launchd "inherited" the relauncher as its child.
// There's no reason to synchronize with launchd.
if (parent_pid == 1) {
LOG(ERROR) << "unexpected parent_pid";
return;
}
// Set up a kqueue to monitor the parent process for exit.
base::ScopedFD kq(kqueue());
if (!kq.is_valid()) {
PLOG(ERROR) << "kqueue";
return;
}
struct kevent change = { 0 };
EV_SET(&change, parent_pid, EVFILT_PROC, EV_ADD, NOTE_EXIT, 0, NULL);
if (kevent(kq.get(), &change, 1, NULL, 0, NULL) == -1) {
PLOG(ERROR) << "kevent (add)";
return;
}
// Write a '\0' character to the pipe.
if (HANDLE_EINTR(write(relauncher_sync_fd.get(), "", 1)) != 1) {
PLOG(ERROR) << "write";
return;
}
// Up until now, the parent process was blocked in a read waiting for the
// write above to complete. The parent process is now free to exit. Wait for
// that to happen.
struct kevent event;
int events = kevent(kq.get(), NULL, 0, &event, 1, NULL);
if (events != 1) {
if (events < 0) {
PLOG(ERROR) << "kevent (monitor)";
} else {
LOG(ERROR) << "kevent (monitor): unexpected result " << events;
}
return;
}
if (event.filter != EVFILT_PROC ||
event.fflags != NOTE_EXIT ||
event.ident != static_cast<uintptr_t>(parent_pid)) {
LOG(ERROR) << "kevent (monitor): unexpected event, filter " << event.filter
<< ", fflags " << event.fflags << ", ident " << event.ident;
return;
}
}
int RelauncherMain(const content::MainFunctionParams& main_parameters) {
const std::vector<std::string>& argv = atom::AtomCommandLine::argv();
if (argv.size() < 4 || kRelauncherTypeArg != argv[1]) {
LOG(ERROR) << "relauncher process invoked with unexpected arguments";
return 1;
}
internal::RelauncherSynchronizeWithParent();
// The capacity for relaunch_args is 4 less than argc, because it
// won't contain the argv[0] of the relauncher process, the
// RelauncherTypeArg() at argv[1], kRelauncherArgSeparator, or the
// executable path of the process to be launched.
base::ScopedCFTypeRef<CFMutableArrayRef> relaunch_args(
CFArrayCreateMutable(NULL, argv.size() - 4, &kCFTypeArrayCallBacks));
if (!relaunch_args) {
LOG(ERROR) << "CFArrayCreateMutable";
return 1;
}
// Figure out what to execute, what arguments to pass it, and whether to
// start it in the background.
bool in_relaunch_args = false;
bool seen_relaunch_executable = false;
std::string relaunch_executable;
const std::string relauncher_arg_separator(kRelauncherArgSeparator);
for (size_t argv_index = 2; argv_index < argv.size(); ++argv_index) {
const std::string& arg(argv[argv_index]);
// Strip any -psn_ arguments, as they apply to a specific process.
if (arg.compare(0, strlen(kPSNArg), kPSNArg) == 0) {
continue;
}
if (!in_relaunch_args && arg == relauncher_arg_separator) {
in_relaunch_args = true;
} else {
if (!seen_relaunch_executable) {
// The first argument after kRelauncherBackgroundArg is the path to
// the executable file or .app bundle directory. The Launch Services
// interface wants this separate from the rest of the arguments. In
// the relaunched process, this path will still be visible at argv[0].
relaunch_executable.assign(arg);
seen_relaunch_executable = true;
} else {
base::ScopedCFTypeRef<CFStringRef> arg_cf(
base::SysUTF8ToCFStringRef(arg));
if (!arg_cf) {
LOG(ERROR) << "base::SysUTF8ToCFStringRef failed for " << arg;
return 1;
}
CFArrayAppendValue(relaunch_args, arg_cf);
}
}
}
if (!seen_relaunch_executable) {
LOG(ERROR) << "nothing to relaunch";
return 1;
}
FSRef app_fsref;
if (!base::mac::FSRefFromPath(relaunch_executable, &app_fsref)) {
LOG(ERROR) << "base::mac::FSRefFromPath failed for " << relaunch_executable;
return 1;
}
LSApplicationParameters ls_parameters = {
0, // version
kLSLaunchDefaults | kLSLaunchAndDisplayErrors | kLSLaunchNewInstance,
&app_fsref,
NULL, // asyncLaunchRefCon
NULL, // environment
relaunch_args,
NULL // initialEvent
};
OSStatus status = LSOpenApplication(&ls_parameters, NULL);
if (status != noErr) {
OSSTATUS_LOG(ERROR, status) << "LSOpenApplication";
return 1;
}
// The application should have relaunched (or is in the process of
// relaunching). From this point on, only clean-up tasks should occur, and
// failures are tolerable.
return 0;
}
} // namespace internal
} // namespace relauncher

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@ -225,6 +225,7 @@
'atom/browser/net/url_request_fetch_job.h', 'atom/browser/net/url_request_fetch_job.h',
'atom/browser/node_debugger.cc', 'atom/browser/node_debugger.cc',
'atom/browser/node_debugger.h', 'atom/browser/node_debugger.h',
'atom/browser/relauncher_mac.cc',
'atom/browser/relauncher.cc', 'atom/browser/relauncher.cc',
'atom/browser/relauncher.h', 'atom/browser/relauncher.h',
'atom/browser/render_process_preferences.cc', 'atom/browser/render_process_preferences.cc',