505 lines
19 KiB
C++
505 lines
19 KiB
C++
// Copyright 2013 The Chromium Authors
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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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// A mini-zygote specifically for Native Client.
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#include "components/nacl/loader/nacl_helper_linux.h"
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#include <errno.h>
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#include <fcntl.h>
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#include <link.h>
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#include <signal.h>
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#include <stddef.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <memory>
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#include <string>
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#include <utility>
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#include <vector>
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#include "base/at_exit.h"
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#include "base/base_switches.h"
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#include "base/command_line.h"
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#include "base/environment.h"
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#include "base/files/scoped_file.h"
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#include "base/json/json_reader.h"
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#include "base/logging.h"
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#include "base/message_loop/message_pump_type.h"
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#include "base/metrics/field_trial.h"
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#include "base/posix/eintr_wrapper.h"
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#include "base/posix/global_descriptors.h"
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#include "base/posix/unix_domain_socket.h"
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#include "base/process/kill.h"
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#include "base/process/process_handle.h"
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#include "base/rand_util.h"
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#include "base/task/single_thread_task_executor.h"
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#include "build/build_config.h"
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#include "components/nacl/common/nacl_switches.h"
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#include "components/nacl/loader/nacl_listener.h"
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#include "components/nacl/loader/sandbox_linux/nacl_sandbox_linux.h"
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#include "content/public/common/content_descriptors.h"
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#include "content/public/common/zygote/send_zygote_child_ping_linux.h"
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#include "content/public/common/zygote/zygote_fork_delegate_linux.h"
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#include "mojo/core/embedder/embedder.h"
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#include "sandbox/linux/services/credentials.h"
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#include "sandbox/linux/services/namespace_sandbox.h"
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#include "third_party/cros_system_api/switches/chrome_switches.h"
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namespace {
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struct NaClLoaderSystemInfo {
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size_t prereserved_sandbox_size;
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long number_of_cores;
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};
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#if BUILDFLAG(IS_CHROMEOS)
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std::string GetCommandLineFeatureFlagChoice(
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const base::CommandLine* command_line,
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std::string feature_flag) {
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std::string encoded =
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command_line->GetSwitchValueNative(chromeos::switches::kFeatureFlags);
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if (encoded.empty()) {
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return "";
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}
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auto flags_list = base::JSONReader::Read(encoded);
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if (!flags_list) {
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LOG(WARNING) << "Failed to parse feature flags configuration";
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return "";
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}
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for (const auto& flag : flags_list.value().GetList()) {
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if (!flag.is_string())
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continue;
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std::string flag_string = flag.GetString();
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if (flag_string.rfind(feature_flag) != std::string::npos)
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// For option x, this has the form "feature-flag-name@x". Return "x".
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return flag_string.substr(feature_flag.size() + 1);
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}
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return "";
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}
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void AddVerboseLoggingInNaclSwitch(base::CommandLine* command_line) {
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if (command_line->HasSwitch(switches::kVerboseLoggingInNacl))
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// Flag is already present, nothing to do here.
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return;
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std::string option = GetCommandLineFeatureFlagChoice(
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command_line, switches::kVerboseLoggingInNacl);
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// This needs to be kept in sync with the order of choices for
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// kVerboseLoggingInNacl in chrome/browser/about_flags.cc
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if (option == "")
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return;
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if (option == "1")
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return command_line->AppendSwitchASCII(
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switches::kVerboseLoggingInNacl,
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switches::kVerboseLoggingInNaclChoiceLow);
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if (option == "2")
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return command_line->AppendSwitchASCII(
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switches::kVerboseLoggingInNacl,
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switches::kVerboseLoggingInNaclChoiceMedium);
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if (option == "3")
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return command_line->AppendSwitchASCII(
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switches::kVerboseLoggingInNacl,
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switches::kVerboseLoggingInNaclChoiceHigh);
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if (option == "4")
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return command_line->AppendSwitchASCII(
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switches::kVerboseLoggingInNacl,
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switches::kVerboseLoggingInNaclChoiceHighest);
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if (option == "5")
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return command_line->AppendSwitchASCII(
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switches::kVerboseLoggingInNacl,
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switches::kVerboseLoggingInNaclChoiceDisabled);
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}
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#endif // BUILDFLAG(IS_CHROMEOS)
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// The child must mimic the behavior of zygote_main_linux.cc on the child
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// side of the fork. See zygote_main_linux.cc:HandleForkRequest from
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// if (!child) {
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void BecomeNaClLoader(base::ScopedFD browser_fd,
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const NaClLoaderSystemInfo& system_info,
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nacl::NaClSandbox* nacl_sandbox,
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const std::vector<std::string>& args) {
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DCHECK(nacl_sandbox);
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VLOG(1) << "NaCl loader: setting up IPC descriptor";
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// Close or shutdown IPC channels that we don't need anymore.
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PCHECK(0 == IGNORE_EINTR(close(kNaClZygoteDescriptor)));
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// Append any passed switches to the forked loader's command line. This is
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// necessary to get e.g. any field trial handle and feature overrides from
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// whomever initiated the this fork request.
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base::CommandLine& command_line = *base::CommandLine::ForCurrentProcess();
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base::CommandLine passed_command_line(base::CommandLine::NO_PROGRAM);
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passed_command_line.InitFromArgv(args);
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command_line.AppendArguments(passed_command_line, /*include_program=*/false);
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if (command_line.HasSwitch(switches::kVerboseLoggingInNacl)) {
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base::Environment::Create()->SetVar(
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"NACLVERBOSITY",
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command_line.GetSwitchValueASCII(switches::kVerboseLoggingInNacl));
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}
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// Always ignore SIGPIPE, for consistency with other Chrome processes and
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// because some IPC code, such as sync_socket_posix.cc, requires this.
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// We do this before seccomp-bpf is initialized.
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PCHECK(signal(SIGPIPE, SIG_IGN) != SIG_ERR);
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base::FieldTrialList field_trial_list;
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base::FieldTrialList::CreateTrialsFromCommandLine(command_line,
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kFieldTrialDescriptor);
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auto feature_list = std::make_unique<base::FeatureList>();
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base::FieldTrialList::CreateFeaturesFromCommandLine(command_line,
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feature_list.get());
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base::FeatureList::SetInstance(std::move(feature_list));
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// Finish layer-1 sandbox initialization and initialize the layer-2 sandbox.
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CHECK(!nacl_sandbox->HasOpenDirectory());
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nacl_sandbox->InitializeLayerTwoSandbox();
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nacl_sandbox->SealLayerOneSandbox();
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nacl_sandbox->CheckSandboxingStateWithPolicy();
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base::GlobalDescriptors::GetInstance()->Set(kMojoIPCChannel,
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browser_fd.release());
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// The Mojo EDK must be initialized before using IPC.
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mojo::core::InitFeatures();
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mojo::core::Init();
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base::SingleThreadTaskExecutor io_task_executor(base::MessagePumpType::IO);
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NaClListener listener;
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listener.set_prereserved_sandbox_size(system_info.prereserved_sandbox_size);
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listener.set_number_of_cores(system_info.number_of_cores);
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listener.Listen();
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_exit(0);
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}
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// Start the NaCl loader in a child created by the NaCl loader Zygote.
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void ChildNaClLoaderInit(std::vector<base::ScopedFD> child_fds,
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const NaClLoaderSystemInfo& system_info,
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nacl::NaClSandbox* nacl_sandbox,
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const std::string& channel_id,
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const std::vector<std::string>& args) {
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DCHECK(child_fds.size() >
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std::max(content::ZygoteForkDelegate::kPIDOracleFDIndex,
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content::ZygoteForkDelegate::kBrowserFDIndex));
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// Ping the PID oracle socket.
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CHECK(content::SendZygoteChildPing(
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child_fds[content::ZygoteForkDelegate::kPIDOracleFDIndex].get()));
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// Stash the field trial descriptor in GlobalDescriptors so FieldTrialList
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// can be initialized later. See BecomeNaClLoader().
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base::GlobalDescriptors::GetInstance()->Set(
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kFieldTrialDescriptor,
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child_fds[content::ZygoteForkDelegate::kFieldTrialFDIndex].release());
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// Save the browser socket and close the rest.
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base::ScopedFD browser_fd(
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std::move(child_fds[content::ZygoteForkDelegate::kBrowserFDIndex]));
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child_fds.clear();
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BecomeNaClLoader(std::move(browser_fd), system_info, nacl_sandbox, args);
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_exit(1);
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}
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// Handle a fork request from the Zygote.
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// Some of this code was lifted from
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// content/browser/zygote_main_linux.cc:ForkWithRealPid()
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bool HandleForkRequest(std::vector<base::ScopedFD> child_fds,
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const NaClLoaderSystemInfo& system_info,
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nacl::NaClSandbox* nacl_sandbox,
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base::PickleIterator* input_iter,
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base::Pickle* output_pickle) {
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std::string channel_id;
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if (!input_iter->ReadString(&channel_id)) {
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LOG(ERROR) << "Could not read channel_id string";
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return false;
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}
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// Read the args passed by the launcher and prepare to forward them to our own
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// forked child.
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int argc;
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if (!input_iter->ReadInt(&argc) || argc < 0) {
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LOG(ERROR) << "nacl_helper: Invalid argument list";
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return false;
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}
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std::vector<std::string> args(static_cast<size_t>(argc));
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for (std::string& arg : args) {
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if (!input_iter->ReadString(&arg)) {
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LOG(ERROR) << "nacl_helper: Invalid argument list";
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return false;
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}
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}
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if (content::ZygoteForkDelegate::kNumPassedFDs != child_fds.size()) {
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LOG(ERROR) << "nacl_helper: unexpected number of fds, got "
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<< child_fds.size();
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return false;
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}
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VLOG(1) << "nacl_helper: forking";
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pid_t child_pid;
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if (sandbox::NamespaceSandbox::InNewUserNamespace()) {
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child_pid = sandbox::NamespaceSandbox::ForkInNewPidNamespace(
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/*drop_capabilities_in_child=*/true);
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} else {
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child_pid = sandbox::Credentials::ForkAndDropCapabilitiesInChild();
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}
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if (child_pid < 0) {
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PLOG(ERROR) << "*** fork() failed.";
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}
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if (child_pid == 0) {
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ChildNaClLoaderInit(std::move(child_fds), system_info, nacl_sandbox,
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channel_id, args);
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NOTREACHED();
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}
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// I am the parent.
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// First, close the dummy_fd so the sandbox won't find me when
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// looking for the child's pid in /proc. Also close other fds.
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child_fds.clear();
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VLOG(1) << "nacl_helper: child_pid is " << child_pid;
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// Now send child_pid (eventually -1 if fork failed) to the Chrome Zygote.
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output_pickle->WriteInt(child_pid);
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return true;
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}
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bool HandleGetTerminationStatusRequest(base::PickleIterator* input_iter,
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base::Pickle* output_pickle) {
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pid_t child_to_wait;
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if (!input_iter->ReadInt(&child_to_wait)) {
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LOG(ERROR) << "Could not read pid to wait for";
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return false;
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}
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bool known_dead;
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if (!input_iter->ReadBool(&known_dead)) {
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LOG(ERROR) << "Could not read known_dead status";
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return false;
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}
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// TODO(jln): With NaCl, known_dead seems to never be set to true (unless
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// called from the Zygote's kZygoteCommandReap command). This means that we
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// will sometimes detect the process as still running when it's not. Fix
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// this!
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int exit_code;
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base::TerminationStatus status;
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if (known_dead)
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status = base::GetKnownDeadTerminationStatus(child_to_wait, &exit_code);
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else
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status = base::GetTerminationStatus(child_to_wait, &exit_code);
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output_pickle->WriteInt(static_cast<int>(status));
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output_pickle->WriteInt(exit_code);
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return true;
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}
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// Honor a command |command_type|. Eventual command parameters are
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// available in |input_iter| and eventual file descriptors attached to
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// the command are in |attached_fds|.
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// Reply to the command on |reply_fds|.
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bool HonorRequestAndReply(int reply_fd,
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int command_type,
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std::vector<base::ScopedFD> attached_fds,
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const NaClLoaderSystemInfo& system_info,
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nacl::NaClSandbox* nacl_sandbox,
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base::PickleIterator* input_iter) {
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base::Pickle write_pickle;
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bool have_to_reply = false;
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// Commands must write anything to send back to |write_pickle|.
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switch (command_type) {
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case nacl::kNaClForkRequest:
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have_to_reply =
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HandleForkRequest(std::move(attached_fds), system_info, nacl_sandbox,
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input_iter, &write_pickle);
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break;
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case nacl::kNaClGetTerminationStatusRequest:
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have_to_reply =
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HandleGetTerminationStatusRequest(input_iter, &write_pickle);
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break;
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default:
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LOG(ERROR) << "Unsupported command from Zygote";
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return false;
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}
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if (!have_to_reply)
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return false;
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const std::vector<int> empty; // We never send file descriptors back.
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if (!base::UnixDomainSocket::SendMsg(reply_fd, write_pickle.data(),
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write_pickle.size(), empty)) {
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LOG(ERROR) << "*** send() to zygote failed";
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return false;
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}
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return true;
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}
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// Read a request from the Zygote from |zygote_ipc_fd| and handle it.
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// Die on EOF from |zygote_ipc_fd|.
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bool HandleZygoteRequest(int zygote_ipc_fd,
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const NaClLoaderSystemInfo& system_info,
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nacl::NaClSandbox* nacl_sandbox) {
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std::vector<base::ScopedFD> fds;
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char buf[kNaClMaxIPCMessageLength];
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const ssize_t msglen = base::UnixDomainSocket::RecvMsg(zygote_ipc_fd,
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&buf, sizeof(buf), &fds);
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// If the Zygote has started handling requests, we should be sandboxed via
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// the setuid sandbox.
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if (!nacl_sandbox->layer_one_enabled()) {
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LOG(ERROR) << "NaCl helper process running without a sandbox!\n"
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<< "Most likely you need to configure your SUID sandbox "
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<< "correctly";
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}
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if (msglen == 0 || (msglen == -1 && errno == ECONNRESET)) {
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// EOF from the browser. Goodbye!
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_exit(0);
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}
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if (msglen < 0) {
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PLOG(ERROR) << "nacl_helper: receive from zygote failed";
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return false;
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}
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base::Pickle read_pickle(buf, msglen);
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base::PickleIterator read_iter(read_pickle);
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int command_type;
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if (!read_iter.ReadInt(&command_type)) {
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LOG(ERROR) << "Unable to read command from Zygote";
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return false;
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}
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return HonorRequestAndReply(zygote_ipc_fd, command_type, std::move(fds),
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system_info, nacl_sandbox, &read_iter);
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}
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static const char kNaClHelperReservedAtZero[] = "reserved_at_zero";
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static const char kNaClHelperRDebug[] = "r_debug";
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// Since we were started by nacl_helper_bootstrap rather than in the
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// usual way, the debugger cannot figure out where our executable
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// or the dynamic linker or the shared libraries are in memory,
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// so it won't find any symbols. But we can fake it out to find us.
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//
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// The zygote passes --r_debug=0xXXXXXXXXXXXXXXXX.
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// nacl_helper_bootstrap replaces the Xs with the address of its _r_debug
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// structure. The debugger will look for that symbol by name to
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// discover the addresses of key dynamic linker data structures.
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// Since all it knows about is the original main executable, which
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// is the bootstrap program, it finds the symbol defined there. The
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// dynamic linker's structure is somewhere else, but it is filled in
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// after initialization. The parts that really matter to the
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// debugger never change. So we just copy the contents of the
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// dynamic linker's structure into the address provided by the option.
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// Hereafter, if someone attaches a debugger (or examines a core dump),
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// the debugger will find all the symbols in the normal way.
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static void CheckRDebug(char* argv0) {
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std::string r_debug_switch_value =
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base::CommandLine::ForCurrentProcess()->GetSwitchValueASCII(
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kNaClHelperRDebug);
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if (!r_debug_switch_value.empty()) {
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char* endp;
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uintptr_t r_debug_addr = strtoul(r_debug_switch_value.c_str(), &endp, 0);
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if (r_debug_addr != 0 && *endp == '\0') {
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r_debug* bootstrap_r_debug = reinterpret_cast<r_debug*>(r_debug_addr);
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*bootstrap_r_debug = _r_debug;
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// Since the main executable (the bootstrap program) does not
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// have a dynamic section, the debugger will not skip the
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// first element of the link_map list as it usually would for
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// an executable or PIE that was loaded normally. But the
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// dynamic linker has set l_name for the PIE to "" as is
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// normal for the main executable. So the debugger doesn't
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// know which file it is. Fill in the actual file name, which
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// came in as our argv[0].
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link_map* l = _r_debug.r_map;
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if (l->l_name[0] == '\0')
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l->l_name = argv0;
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}
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}
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}
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// The zygote passes --reserved_at_zero=0xXXXXXXXXXXXXXXXX.
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// nacl_helper_bootstrap replaces the Xs with the amount of prereserved
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// sandbox memory.
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//
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// CheckReservedAtZero parses the value of the argument reserved_at_zero
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// and returns the amount of prereserved sandbox memory.
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static size_t CheckReservedAtZero() {
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size_t prereserved_sandbox_size = 0;
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std::string reserved_at_zero_switch_value =
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base::CommandLine::ForCurrentProcess()->GetSwitchValueASCII(
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kNaClHelperReservedAtZero);
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if (!reserved_at_zero_switch_value.empty()) {
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char* endp;
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prereserved_sandbox_size =
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strtoul(reserved_at_zero_switch_value.c_str(), &endp, 0);
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if (*endp != '\0')
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LOG(ERROR) << "Could not parse reserved_at_zero argument value of "
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<< reserved_at_zero_switch_value;
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}
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return prereserved_sandbox_size;
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}
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} // namespace
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#if defined(ADDRESS_SANITIZER)
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// Do not install the SIGSEGV handler in ASan. This should make the NaCl
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// platform qualification test pass.
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// detect_odr_violation=0: http://crbug.com/376306
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extern const char* kAsanDefaultOptionsNaCl;
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const char* kAsanDefaultOptionsNaCl = "handle_segv=0:detect_odr_violation=0";
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#endif
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int main(int argc, char* argv[]) {
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base::CommandLine::Init(argc, argv);
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base::AtExitManager exit_manager;
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base::RandUint64(); // acquire /dev/urandom fd before sandbox is raised
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const NaClLoaderSystemInfo system_info = {CheckReservedAtZero(),
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sysconf(_SC_NPROCESSORS_ONLN)};
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CheckRDebug(argv[0]);
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#if BUILDFLAG(IS_CHROMEOS)
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base::CommandLine* command_line = base::CommandLine::ForCurrentProcess();
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AddVerboseLoggingInNaclSwitch(command_line);
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if (command_line->HasSwitch(switches::kVerboseLoggingInNacl)) {
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if (!freopen("/tmp/nacl.log", "a", stderr))
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LOG(WARNING) << "Could not open /tmp/nacl.log";
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}
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#endif
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std::unique_ptr<nacl::NaClSandbox> nacl_sandbox(new nacl::NaClSandbox);
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// Make sure that the early initialization did not start any spurious
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// threads.
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#if !defined(THREAD_SANITIZER)
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CHECK(nacl_sandbox->IsSingleThreaded());
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#endif
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const bool is_init_process = 1 == getpid();
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nacl_sandbox->InitializeLayerOneSandbox();
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CHECK_EQ(is_init_process, nacl_sandbox->layer_one_enabled());
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const std::vector<int> empty;
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// Send the zygote a message to let it know we are ready to help
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if (!base::UnixDomainSocket::SendMsg(kNaClZygoteDescriptor,
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kNaClHelperStartupAck,
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sizeof(kNaClHelperStartupAck), empty)) {
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LOG(ERROR) << "*** send() to zygote failed";
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}
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// Now handle requests from the Zygote.
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while (true) {
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bool request_handled = HandleZygoteRequest(
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kNaClZygoteDescriptor, system_info, nacl_sandbox.get());
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// Do not turn this into a CHECK() without thinking about robustness
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// against malicious IPC requests.
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DCHECK(request_handled);
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}
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NOTREACHED();
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}
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