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Side by Side Diff: content/browser/zygote_host/zygote_host_impl_linux.cc

Issue 1532423003: Have each SandboxedProcessLauncherDelegate maintain a zygote. (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@master
Patch Set: Created 4 years, 11 months ago
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1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "content/browser/zygote_host/zygote_host_impl_linux.h" 5 #include "content/browser/zygote_host/zygote_host_impl_linux.h"
6 6
7 #include <errno.h>
8 #include <string.h>
9 #include <sys/socket.h>
10 #include <sys/stat.h>
11 #include <sys/types.h>
12 #include <unistd.h>
13
14 #include "base/base_switches.h"
15 #include "base/command_line.h"
16 #include "base/environment.h"
17 #include "base/files/file_enumerator.h" 7 #include "base/files/file_enumerator.h"
18 #include "base/files/file_util.h" 8 #include "base/process/kill.h"
19 #include "base/files/scoped_file.h"
20 #include "base/linux_util.h"
21 #include "base/logging.h"
22 #include "base/macros.h"
23 #include "base/memory/linked_ptr.h"
24 #include "base/memory/scoped_ptr.h"
25 #include "base/metrics/histogram.h"
26 #include "base/metrics/sparse_histogram.h"
27 #include "base/path_service.h"
28 #include "base/posix/eintr_wrapper.h"
29 #include "base/posix/unix_domain_socket_linux.h"
30 #include "base/process/launch.h"
31 #include "base/process/memory.h" 9 #include "base/process/memory.h"
32 #include "base/process/process_handle.h"
33 #include "base/strings/string_number_conversions.h" 10 #include "base/strings/string_number_conversions.h"
34 #include "base/strings/string_util.h"
35 #include "base/strings/utf_string_conversions.h"
36 #include "base/time/time.h"
37 #include "build/build_config.h"
38 #include "content/browser/renderer_host/render_sandbox_host_linux.h"
39 #include "content/common/child_process_sandbox_support_impl_linux.h"
40 #include "content/common/zygote_commands_linux.h"
41 #include "content/public/browser/content_browser_client.h" 11 #include "content/public/browser/content_browser_client.h"
42 #include "content/public/common/content_switches.h"
43 #include "content/public/common/result_codes.h"
44 #include "sandbox/linux/services/credentials.h"
45 #include "sandbox/linux/services/namespace_sandbox.h"
46 #include "sandbox/linux/services/namespace_utils.h"
47 #include "sandbox/linux/suid/client/setuid_sandbox_host.h"
48 #include "sandbox/linux/suid/common/sandbox.h" 12 #include "sandbox/linux/suid/common/sandbox.h"
49 #include "ui/base/ui_base_switches.h"
50 #include "ui/gfx/switches.h"
51 13
52 #if defined(USE_TCMALLOC) 14 #if defined(USE_TCMALLOC)
53 #include "third_party/tcmalloc/chromium/src/gperftools/heap-profiler.h" 15 #include "third_party/tcmalloc/chromium/src/gperftools/heap-profiler.h"
54 #endif 16 #endif
55 17
56 namespace content { 18 namespace content {
57 19
58 namespace {
59
60 // Receive a fixed message on fd and return the sender's PID.
61 // Returns true if the message received matches the expected message.
62 bool ReceiveFixedMessage(int fd,
63 const char* expect_msg,
64 size_t expect_len,
65 base::ProcessId* sender_pid) {
66 char buf[expect_len + 1];
67 std::vector<base::ScopedFD> fds_vec;
68
69 const ssize_t len = base::UnixDomainSocket::RecvMsgWithPid(
70 fd, buf, sizeof(buf), &fds_vec, sender_pid);
71 if (static_cast<size_t>(len) != expect_len)
72 return false;
73 if (memcmp(buf, expect_msg, expect_len) != 0)
74 return false;
75 if (!fds_vec.empty())
76 return false;
77 return true;
78 }
79
80 } // namespace
81
82 // static 20 // static
83 ZygoteHost* ZygoteHost::GetInstance() { 21 ZygoteHost* ZygoteHost::GetInstance() {
84 return ZygoteHostImpl::GetInstance(); 22 return ZygoteHostImpl::GetInstance();
85 } 23 }
86 24
87 ZygoteHostImpl::ZygoteHostImpl() 25 ZygoteHostImpl::ZygoteHostImpl()
88 : control_fd_(-1), 26 : use_suid_sandbox_for_adj_oom_score_(false),
89 control_lock_(),
90 pid_(-1),
91 init_(false),
92 use_suid_sandbox_for_adj_oom_score_(false),
93 sandbox_binary_(), 27 sandbox_binary_(),
94 have_read_sandbox_status_word_(false), 28 zygote_pids_lock_(),
95 sandbox_status_(0), 29 zygote_pids_() {}
96 child_tracking_lock_(),
97 list_of_running_zygote_children_(),
98 should_teardown_after_last_child_exits_(false) {}
99 30
100 ZygoteHostImpl::~ZygoteHostImpl() { TearDown(); } 31 ZygoteHostImpl::~ZygoteHostImpl() {}
101 32
102 // static 33 // static
103 ZygoteHostImpl* ZygoteHostImpl::GetInstance() { 34 ZygoteHostImpl* ZygoteHostImpl::GetInstance() {
104 return base::Singleton<ZygoteHostImpl>::get(); 35 return base::Singleton<ZygoteHostImpl>::get();
105 } 36 }
106 37
107 void ZygoteHostImpl::Init(const std::string& sandbox_cmd) { 38 void ZygoteHostImpl::Init(const std::string& sandbox_cmd) {
108 DCHECK(!init_); 39 sandbox_binary_ = sandbox_cmd;
109 init_ = true;
110
111 base::FilePath chrome_path;
112 CHECK(PathService::Get(base::FILE_EXE, &chrome_path));
113 base::CommandLine cmd_line(chrome_path);
114
115 cmd_line.AppendSwitchASCII(switches::kProcessType, switches::kZygoteProcess);
116
117 int fds[2];
118 CHECK(socketpair(AF_UNIX, SOCK_SEQPACKET, 0, fds) == 0);
119 CHECK(base::UnixDomainSocket::EnableReceiveProcessId(fds[0]));
120 base::FileHandleMappingVector fds_to_map;
121 fds_to_map.push_back(std::make_pair(fds[1], kZygoteSocketPairFd));
122
123 base::LaunchOptions options;
124 const base::CommandLine& browser_command_line =
125 *base::CommandLine::ForCurrentProcess();
126 if (browser_command_line.HasSwitch(switches::kZygoteCmdPrefix)) {
127 cmd_line.PrependWrapper(
128 browser_command_line.GetSwitchValueNative(switches::kZygoteCmdPrefix));
129 }
130 // Append any switches from the browser process that need to be forwarded on
131 // to the zygote/renderers.
132 // Should this list be obtained from browser_render_process_host.cc?
133 static const char* kForwardSwitches[] = {
134 switches::kAllowSandboxDebugging,
135 switches::kDisableSeccompFilterSandbox,
136 switches::kEnableHeapProfiling,
137 switches::kEnableLogging, // Support, e.g., --enable-logging=stderr.
138 // Zygote process needs to know what resources to have loaded when it
139 // becomes a renderer process.
140 switches::kForceDeviceScaleFactor,
141 switches::kLoggingLevel,
142 switches::kNoSandbox,
143 switches::kPpapiInProcess,
144 switches::kRegisterPepperPlugins,
145 switches::kV,
146 switches::kVModule,
147 };
148 cmd_line.CopySwitchesFrom(browser_command_line, kForwardSwitches,
149 arraysize(kForwardSwitches));
150
151 GetContentClient()->browser()->AppendExtraCommandLineSwitches(&cmd_line, -1);
152
153 sandbox_binary_ = sandbox_cmd.c_str();
154
155 const bool using_namespace_sandbox = ShouldUseNamespaceSandbox();
156 // A non empty sandbox_cmd means we want a SUID sandbox.
157 const bool using_suid_sandbox =
158 !sandbox_cmd.empty() && !using_namespace_sandbox;
159
160 // Use the SUID sandbox for adjusting OOM scores when we are using the setuid
161 // or namespace sandbox. This is needed beacuse the processes are
162 // non-dumpable, so /proc/pid/oom_score_adj can only be written by root.
163 use_suid_sandbox_for_adj_oom_score_ =
164 !sandbox_binary_.empty() && using_suid_sandbox;
165
166 // Start up the sandbox host process and get the file descriptor for the
167 // renderers to talk to it.
168 const int sfd = RenderSandboxHostLinux::GetInstance()->GetRendererSocket();
169 fds_to_map.push_back(std::make_pair(sfd, GetSandboxFD()));
170
171 base::ScopedFD dummy_fd;
172 if (using_suid_sandbox) {
173 scoped_ptr<sandbox::SetuidSandboxHost> sandbox_host(
174 sandbox::SetuidSandboxHost::Create());
175 sandbox_host->PrependWrapper(&cmd_line);
176 sandbox_host->SetupLaunchOptions(&options, &fds_to_map, &dummy_fd);
177 sandbox_host->SetupLaunchEnvironment();
178 }
179
180 options.fds_to_remap = &fds_to_map;
181 base::Process process =
182 using_namespace_sandbox
183 ? sandbox::NamespaceSandbox::LaunchProcess(cmd_line, options)
184 : base::LaunchProcess(cmd_line, options);
185 CHECK(process.IsValid()) << "Failed to launch zygote process";
186
187 dummy_fd.reset();
188
189 if (using_suid_sandbox || using_namespace_sandbox) {
190 // The SUID sandbox will execute the zygote in a new PID namespace, and
191 // the main zygote process will then fork from there. Watch now our
192 // elaborate dance to find and validate the zygote's PID.
193
194 // First we receive a message from the zygote boot process.
195 base::ProcessId boot_pid;
196 CHECK(ReceiveFixedMessage(
197 fds[0], kZygoteBootMessage, sizeof(kZygoteBootMessage), &boot_pid));
198
199 // Within the PID namespace, the zygote boot process thinks it's PID 1,
200 // but its real PID can never be 1. This gives us a reliable test that
201 // the kernel is translating the sender's PID to our namespace.
202 CHECK_GT(boot_pid, 1)
203 << "Received invalid process ID for zygote; kernel might be too old? "
204 "See crbug.com/357670 or try using --"
205 << switches::kDisableSetuidSandbox << " to workaround.";
206
207 // Now receive the message that the zygote's ready to go, along with the
208 // main zygote process's ID.
209 CHECK(ReceiveFixedMessage(
210 fds[0], kZygoteHelloMessage, sizeof(kZygoteHelloMessage), &pid_));
211 CHECK_GT(pid_, 1);
212
213 if (process.Pid() != pid_) {
214 // Reap the sandbox.
215 base::EnsureProcessGetsReaped(process.Pid());
216 }
217 } else {
218 // Not using the SUID sandbox.
219 // Note that ~base::Process() will reset the internal value, but there's no
220 // real "handle" on POSIX so that is safe.
221 pid_ = process.Pid();
222 }
223
224 close(fds[1]);
225 control_fd_ = fds[0];
226
227 base::Pickle pickle;
228 pickle.WriteInt(kZygoteCommandGetSandboxStatus);
229 if (!SendMessage(pickle, NULL))
230 LOG(FATAL) << "Cannot communicate with zygote";
231 // We don't wait for the reply. We'll read it in ReadReply.
232 } 40 }
233 41
234 void ZygoteHostImpl::TearDownAfterLastChild() { 42 void ZygoteHostImpl::AddZygotePid(pid_t pid) {
235 bool do_teardown = false; 43 base::AutoLock lock(zygote_pids_lock_);
236 { 44 zygote_pids_.insert(pid);
237 base::AutoLock lock(child_tracking_lock_);
238 should_teardown_after_last_child_exits_ = true;
239 do_teardown = list_of_running_zygote_children_.empty();
240 }
241 if (do_teardown) {
242 TearDown();
243 }
244 } 45 }
245 46
246 // Note: this is also called from the destructor. 47 bool ZygoteHostImpl::IsZygotePid(pid_t pid) {
247 void ZygoteHostImpl::TearDown() { 48 base::AutoLock lock(zygote_pids_lock_);
248 base::AutoLock lock(control_lock_); 49 return zygote_pids_.find(pid) != zygote_pids_.end();
249 if (control_fd_ > -1) {
250 // Closing the IPC channel will act as a notification to exit
251 // to the Zygote.
252 if (IGNORE_EINTR(close(control_fd_))) {
253 PLOG(ERROR) << "Could not close Zygote control channel.";
254 NOTREACHED();
255 }
256 control_fd_ = -1;
257 }
258 } 50 }
259 51
260 void ZygoteHostImpl::ZygoteChildBorn(pid_t process) { 52 const std::string& ZygoteHostImpl::SandboxCommand() const {
261 base::AutoLock lock(child_tracking_lock_); 53 return sandbox_binary_;
262 bool new_element_inserted =
263 list_of_running_zygote_children_.insert(process).second;
264 DCHECK(new_element_inserted);
265 } 54 }
266 55
267 void ZygoteHostImpl::ZygoteChildDied(pid_t process) { 56 void ZygoteHostImpl::SetRendererSandboxStatus(int status) {
268 bool do_teardown = false; 57 renderer_sandbox_status_ = status;
269 {
270 base::AutoLock lock(child_tracking_lock_);
271 size_t num_erased = list_of_running_zygote_children_.erase(process);
272 DCHECK_EQ(1U, num_erased);
273 do_teardown = should_teardown_after_last_child_exits_ &&
274 list_of_running_zygote_children_.empty();
275 }
276 if (do_teardown) {
277 TearDown();
278 }
279 } 58 }
280 59
281 bool ZygoteHostImpl::SendMessage(const base::Pickle& data, 60 int ZygoteHostImpl::GetRendererSandboxStatus() const {
282 const std::vector<int>* fds) { 61 return renderer_sandbox_status_;
283 DCHECK_NE(-1, control_fd_);
284 CHECK(data.size() <= kZygoteMaxMessageLength)
285 << "Trying to send too-large message to zygote (sending " << data.size()
286 << " bytes, max is " << kZygoteMaxMessageLength << ")";
287 CHECK(!fds || fds->size() <= base::UnixDomainSocket::kMaxFileDescriptors)
288 << "Trying to send message with too many file descriptors to zygote "
289 << "(sending " << fds->size() << ", max is "
290 << base::UnixDomainSocket::kMaxFileDescriptors << ")";
291
292 return base::UnixDomainSocket::SendMsg(control_fd_,
293 data.data(), data.size(),
294 fds ? *fds : std::vector<int>());
295 }
296
297 ssize_t ZygoteHostImpl::ReadReply(void* buf, size_t buf_len) {
298 DCHECK_NE(-1, control_fd_);
299 // At startup we send a kZygoteCommandGetSandboxStatus request to the zygote,
300 // but don't wait for the reply. Thus, the first time that we read from the
301 // zygote, we get the reply to that request.
302 if (!have_read_sandbox_status_word_) {
303 if (HANDLE_EINTR(read(control_fd_, &sandbox_status_,
304 sizeof(sandbox_status_))) !=
305 sizeof(sandbox_status_)) {
306 return -1;
307 }
308
309 have_read_sandbox_status_word_ = true;
310 UMA_HISTOGRAM_SPARSE_SLOWLY("Linux.SandboxStatus", sandbox_status_);
311 }
312
313 return HANDLE_EINTR(read(control_fd_, buf, buf_len));
314 }
315
316 pid_t ZygoteHostImpl::ForkRequest(const std::vector<std::string>& argv,
317 scoped_ptr<FileDescriptorInfo> mapping,
318 const std::string& process_type) {
319 DCHECK(init_);
320 base::Pickle pickle;
321
322 int raw_socks[2];
323 PCHECK(0 == socketpair(AF_UNIX, SOCK_SEQPACKET, 0, raw_socks));
324 base::ScopedFD my_sock(raw_socks[0]);
325 base::ScopedFD peer_sock(raw_socks[1]);
326 CHECK(base::UnixDomainSocket::EnableReceiveProcessId(my_sock.get()));
327
328 pickle.WriteInt(kZygoteCommandFork);
329 pickle.WriteString(process_type);
330 pickle.WriteInt(argv.size());
331 for (std::vector<std::string>::const_iterator
332 i = argv.begin(); i != argv.end(); ++i)
333 pickle.WriteString(*i);
334
335 // Fork requests contain one file descriptor for the PID oracle, and one
336 // more for each file descriptor mapping for the child process.
337 const size_t num_fds_to_send = 1 + mapping->GetMappingSize();
338 pickle.WriteInt(num_fds_to_send);
339
340 std::vector<int> fds;
341
342 // First FD to send is peer_sock.
343 // TODO(morrita): Ideally, this should be part of the mapping so that
344 // FileDescriptorInfo can manages its lifetime.
345 fds.push_back(peer_sock.get());
346
347 // The rest come from mapping.
348 for (size_t i = 0; i < mapping->GetMappingSize(); ++i) {
349 pickle.WriteUInt32(mapping->GetIDAt(i));
350 fds.push_back(mapping->GetFDAt(i));
351 }
352
353 // Sanity check that we've populated |fds| correctly.
354 DCHECK_EQ(num_fds_to_send, fds.size());
355
356 pid_t pid;
357 {
358 base::AutoLock lock(control_lock_);
359 if (!SendMessage(pickle, &fds))
360 return base::kNullProcessHandle;
361 mapping.reset();
362 peer_sock.reset();
363
364 {
365 char buf[sizeof(kZygoteChildPingMessage) + 1];
366 std::vector<base::ScopedFD> recv_fds;
367 base::ProcessId real_pid;
368
369 ssize_t n = base::UnixDomainSocket::RecvMsgWithPid(
370 my_sock.get(), buf, sizeof(buf), &recv_fds, &real_pid);
371 if (n != sizeof(kZygoteChildPingMessage) ||
372 0 != memcmp(buf,
373 kZygoteChildPingMessage,
374 sizeof(kZygoteChildPingMessage))) {
375 // Zygote children should still be trustworthy when they're supposed to
376 // ping us, so something's broken if we don't receive a valid ping.
377 LOG(ERROR) << "Did not receive ping from zygote child";
378 NOTREACHED();
379 real_pid = -1;
380 }
381 my_sock.reset();
382
383 // Always send PID back to zygote.
384 base::Pickle pid_pickle;
385 pid_pickle.WriteInt(kZygoteCommandForkRealPID);
386 pid_pickle.WriteInt(real_pid);
387 if (!SendMessage(pid_pickle, NULL))
388 return base::kNullProcessHandle;
389 }
390
391 // Read the reply, which pickles the PID and an optional UMA enumeration.
392 static const unsigned kMaxReplyLength = 2048;
393 char buf[kMaxReplyLength];
394 const ssize_t len = ReadReply(buf, sizeof(buf));
395
396 base::Pickle reply_pickle(buf, len);
397 base::PickleIterator iter(reply_pickle);
398 if (len <= 0 || !iter.ReadInt(&pid))
399 return base::kNullProcessHandle;
400
401 // If there is a nonempty UMA name string, then there is a UMA
402 // enumeration to record.
403 std::string uma_name;
404 int uma_sample;
405 int uma_boundary_value;
406 if (iter.ReadString(&uma_name) &&
407 !uma_name.empty() &&
408 iter.ReadInt(&uma_sample) &&
409 iter.ReadInt(&uma_boundary_value)) {
410 // We cannot use the UMA_HISTOGRAM_ENUMERATION macro here,
411 // because that's only for when the name is the same every time.
412 // Here we're using whatever name we got from the other side.
413 // But since it's likely that the same one will be used repeatedly
414 // (even though it's not guaranteed), we cache it here.
415 static base::HistogramBase* uma_histogram;
416 if (!uma_histogram || uma_histogram->histogram_name() != uma_name) {
417 uma_histogram = base::LinearHistogram::FactoryGet(
418 uma_name, 1,
419 uma_boundary_value,
420 uma_boundary_value + 1,
421 base::HistogramBase::kUmaTargetedHistogramFlag);
422 }
423 uma_histogram->Add(uma_sample);
424 }
425
426 if (pid <= 0)
427 return base::kNullProcessHandle;
428 }
429
430 #if !defined(OS_OPENBSD)
431 // This is just a starting score for a renderer or extension (the
432 // only types of processes that will be started this way). It will
433 // get adjusted as time goes on. (This is the same value as
434 // chrome::kLowestRendererOomScore in chrome/chrome_constants.h, but
435 // that's not something we can include here.)
436 const int kLowestRendererOomScore = 300;
437 AdjustRendererOOMScore(pid, kLowestRendererOomScore);
438 #endif
439
440 ZygoteChildBorn(pid);
441 return pid;
442 } 62 }
443 63
444 #if !defined(OS_OPENBSD) 64 #if !defined(OS_OPENBSD)
445 void ZygoteHostImpl::AdjustRendererOOMScore(base::ProcessHandle pid, 65 void ZygoteHostImpl::AdjustRendererOOMScore(base::ProcessHandle pid,
446 int score) { 66 int score) {
447 // 1) You can't change the oom_score_adj of a non-dumpable process 67 // 1) You can't change the oom_score_adj of a non-dumpable process
448 // (EPERM) unless you're root. Because of this, we can't set the 68 // (EPERM) unless you're root. Because of this, we can't set the
449 // oom_adj from the browser process. 69 // oom_adj from the browser process.
450 // 70 //
451 // 2) We can't set the oom_score_adj before entering the sandbox 71 // 2) We can't set the oom_score_adj before entering the sandbox
(...skipping 55 matching lines...) Expand 10 before | Expand all | Expand 10 after
507 base::LaunchProcess(adj_oom_score_cmdline, options); 127 base::LaunchProcess(adj_oom_score_cmdline, options);
508 if (sandbox_helper_process.IsValid()) 128 if (sandbox_helper_process.IsValid())
509 base::EnsureProcessGetsReaped(sandbox_helper_process.Pid()); 129 base::EnsureProcessGetsReaped(sandbox_helper_process.Pid());
510 } else if (!use_suid_sandbox_for_adj_oom_score_) { 130 } else if (!use_suid_sandbox_for_adj_oom_score_) {
511 if (!base::AdjustOOMScore(pid, score)) 131 if (!base::AdjustOOMScore(pid, score))
512 PLOG(ERROR) << "Failed to adjust OOM score of renderer with pid " << pid; 132 PLOG(ERROR) << "Failed to adjust OOM score of renderer with pid " << pid;
513 } 133 }
514 } 134 }
515 #endif 135 #endif
516 136
517 void ZygoteHostImpl::EnsureProcessTerminated(pid_t process) {
518 DCHECK(init_);
519 base::Pickle pickle;
520
521 pickle.WriteInt(kZygoteCommandReap);
522 pickle.WriteInt(process);
523 if (!SendMessage(pickle, NULL))
524 LOG(ERROR) << "Failed to send Reap message to zygote";
525 ZygoteChildDied(process);
526 }
527
528 base::TerminationStatus ZygoteHostImpl::GetTerminationStatus(
529 base::ProcessHandle handle,
530 bool known_dead,
531 int* exit_code) {
532 DCHECK(init_);
533 base::Pickle pickle;
534 pickle.WriteInt(kZygoteCommandGetTerminationStatus);
535 pickle.WriteBool(known_dead);
536 pickle.WriteInt(handle);
537
538 static const unsigned kMaxMessageLength = 128;
539 char buf[kMaxMessageLength];
540 ssize_t len;
541 {
542 base::AutoLock lock(control_lock_);
543 if (!SendMessage(pickle, NULL))
544 LOG(ERROR) << "Failed to send GetTerminationStatus message to zygote";
545 len = ReadReply(buf, sizeof(buf));
546 }
547
548 // Set this now to handle the error cases.
549 if (exit_code)
550 *exit_code = RESULT_CODE_NORMAL_EXIT;
551 int status = base::TERMINATION_STATUS_NORMAL_TERMINATION;
552
553 if (len == -1) {
554 LOG(WARNING) << "Error reading message from zygote: " << errno;
555 } else if (len == 0) {
556 LOG(WARNING) << "Socket closed prematurely.";
557 } else {
558 base::Pickle read_pickle(buf, len);
559 int tmp_status, tmp_exit_code;
560 base::PickleIterator iter(read_pickle);
561 if (!iter.ReadInt(&tmp_status) || !iter.ReadInt(&tmp_exit_code)) {
562 LOG(WARNING)
563 << "Error parsing GetTerminationStatus response from zygote.";
564 } else {
565 if (exit_code)
566 *exit_code = tmp_exit_code;
567 status = tmp_status;
568 }
569 }
570
571 if (status != base::TERMINATION_STATUS_STILL_RUNNING) {
572 ZygoteChildDied(handle);
573 }
574 return static_cast<base::TerminationStatus>(status);
575 }
576
577 pid_t ZygoteHostImpl::GetPid() const {
578 return pid_;
579 }
580
581 int ZygoteHostImpl::GetSandboxStatus() const {
582 if (have_read_sandbox_status_word_)
583 return sandbox_status_;
584 return 0;
585 }
586
587 bool ZygoteHostImpl::ShouldUseNamespaceSandbox() {
588 const base::CommandLine& command_line =
589 *base::CommandLine::ForCurrentProcess();
590 if (command_line.HasSwitch(switches::kNoSandbox)) {
591 return false;
592 }
593
594 if (command_line.HasSwitch(switches::kDisableNamespaceSandbox)) {
595 return false;
596 }
597
598 if (!sandbox::Credentials::CanCreateProcessInNewUserNS()) {
599 return false;
600 }
601
602 return true;
603 }
604
605 } // namespace content 137 } // namespace content
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