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// Copyright (c) 2012 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "chrome/browser/chromeos/policy/device_cloud_policy_manager_chromeos.h"
#include "base/bind.h"
#include "base/bind_helpers.h"
#include "base/command_line.h"
#include "base/port.h"
#include "base/prefs/pref_registry_simple.h"
#include "base/prefs/pref_service.h"
#include "base/strings/string_number_conversions.h"
#include "base/time/time.h"
#include "chrome/browser/chromeos/attestation/attestation_policy_observer.h"
#include "chrome/browser/chromeos/login/enrollment/auto_enrollment_controller.h"
#include "chrome/browser/chromeos/login/startup_utils.h"
#include "chrome/browser/chromeos/policy/device_cloud_policy_store_chromeos.h"
#include "chrome/browser/chromeos/policy/device_status_collector.h"
#include "chrome/browser/chromeos/policy/enterprise_install_attributes.h"
#include "chrome/browser/chromeos/policy/server_backed_state_keys_broker.h"
#include "chrome/common/pref_names.h"
#include "chromeos/chromeos_constants.h"
#include "chromeos/chromeos_switches.h"
#include "chromeos/system/statistics_provider.h"
#include "components/policy/core/common/cloud/cloud_policy_store.h"
#include "content/public/browser/browser_thread.h"
#include "crypto/sha2.h"
#include "policy/proto/device_management_backend.pb.h"
#include "url/gurl.h"
using content::BrowserThread;
namespace em = enterprise_management;
namespace policy {
namespace {
const char kNoRequisition[] = "none";
const char kRemoraRequisition[] = "remora";
const char kSharkRequisition[] = "shark";
// These are the machine serial number keys that we check in order until we
// find a non-empty serial number. The VPD spec says the serial number should be
// in the "serial_number" key for v2+ VPDs. However, legacy devices used a
// different key to report their serial number, which we fall back to if
// "serial_number" is not present.
//
// Product_S/N is still special-cased due to inconsistencies with serial
// numbers on Lumpy devices: On these devices, serial_number is identical to
// Product_S/N with an appended checksum. Unfortunately, the sticker on the
// packaging doesn't include that checksum either (the sticker on the device
// does though!). The former sticker is the source of the serial number used by
// device management service, so we prefer Product_S/N over serial number to
// match the server.
//
// TODO(mnissler): Move serial_number back to the top once the server side uses
// the correct serial number.
const char* const kMachineInfoSerialNumberKeys[] = {
"Product_S/N", // Lumpy/Alex devices
"serial_number", // VPD v2+ devices
"Product_SN", // Mario
"sn", // old ZGB devices (more recent ones use serial_number)
};
// Fetches a machine statistic value from StatisticsProvider, returns an empty
// string on failure.
std::string GetMachineStatistic(const std::string& key) {
std::string value;
chromeos::system::StatisticsProvider* provider =
chromeos::system::StatisticsProvider::GetInstance();
if (!provider->GetMachineStatistic(key, &value))
return std::string();
return value;
}
// Gets a machine flag from StatisticsProvider, returns the given
// |default_value| if not present.
bool GetMachineFlag(const std::string& key, bool default_value) {
bool value = default_value;
chromeos::system::StatisticsProvider* provider =
chromeos::system::StatisticsProvider::GetInstance();
if (!provider->GetMachineFlag(key, &value))
return default_value;
return value;
}
// Checks whether forced re-enrollment is enabled.
bool ForcedReEnrollmentEnabled() {
return chromeos::AutoEnrollmentController::GetMode() ==
chromeos::AutoEnrollmentController::MODE_FORCED_RE_ENROLLMENT;
}
} // namespace
DeviceCloudPolicyManagerChromeOS::DeviceCloudPolicyManagerChromeOS(
scoped_ptr<DeviceCloudPolicyStoreChromeOS> store,
const scoped_refptr<base::SequencedTaskRunner>& task_runner,
ServerBackedStateKeysBroker* state_keys_broker)
: CloudPolicyManager(
dm_protocol::kChromeDevicePolicyType,
std::string(),
store.get(),
task_runner,
BrowserThread::GetMessageLoopProxyForThread(BrowserThread::FILE),
BrowserThread::GetMessageLoopProxyForThread(BrowserThread::IO)),
device_store_(store.Pass()),
state_keys_broker_(state_keys_broker),
local_state_(nullptr) {
}
DeviceCloudPolicyManagerChromeOS::~DeviceCloudPolicyManagerChromeOS() {}
void DeviceCloudPolicyManagerChromeOS::Initialize(PrefService* local_state) {
CHECK(local_state);
local_state_ = local_state;
state_keys_update_subscription_ = state_keys_broker_->RegisterUpdateCallback(
base::Bind(&DeviceCloudPolicyManagerChromeOS::OnStateKeysUpdated,
base::Unretained(this)));
InitializeRequisition();
}
void DeviceCloudPolicyManagerChromeOS::AddDeviceCloudPolicyManagerObserver(
Observer* observer) {
observers_.AddObserver(observer);
}
void DeviceCloudPolicyManagerChromeOS::RemoveDeviceCloudPolicyManagerObserver(
Observer* observer) {
observers_.RemoveObserver(observer);
}
std::string DeviceCloudPolicyManagerChromeOS::GetDeviceRequisition() const {
std::string requisition;
const PrefService::Preference* pref = local_state_->FindPreference(
prefs::kDeviceEnrollmentRequisition);
if (!pref->IsDefaultValue())
pref->GetValue()->GetAsString(&requisition);
if (requisition == kNoRequisition)
requisition.clear();
return requisition;
}
void DeviceCloudPolicyManagerChromeOS::SetDeviceRequisition(
const std::string& requisition) {
VLOG(1) << "SetDeviceRequisition " << requisition;
if (local_state_) {
if (requisition.empty()) {
local_state_->ClearPref(prefs::kDeviceEnrollmentRequisition);
local_state_->ClearPref(prefs::kDeviceEnrollmentAutoStart);
local_state_->ClearPref(prefs::kDeviceEnrollmentCanExit);
} else {
local_state_->SetString(prefs::kDeviceEnrollmentRequisition, requisition);
if (requisition == kNoRequisition) {
local_state_->ClearPref(prefs::kDeviceEnrollmentAutoStart);
local_state_->ClearPref(prefs::kDeviceEnrollmentCanExit);
} else {
local_state_->SetBoolean(prefs::kDeviceEnrollmentAutoStart, true);
local_state_->SetBoolean(prefs::kDeviceEnrollmentCanExit, false);
}
}
}
}
bool DeviceCloudPolicyManagerChromeOS::IsRemoraRequisition() const {
return GetDeviceRequisition() == kRemoraRequisition;
}
bool DeviceCloudPolicyManagerChromeOS::IsSharkRequisition() const {
return GetDeviceRequisition() == kSharkRequisition;
}
void DeviceCloudPolicyManagerChromeOS::Shutdown() {
state_keys_update_subscription_.reset();
CloudPolicyManager::Shutdown();
}
// static
void DeviceCloudPolicyManagerChromeOS::RegisterPrefs(
PrefRegistrySimple* registry) {
registry->RegisterStringPref(prefs::kDeviceEnrollmentRequisition,
std::string());
registry->RegisterBooleanPref(prefs::kDeviceEnrollmentAutoStart, false);
registry->RegisterBooleanPref(prefs::kDeviceEnrollmentCanExit, true);
registry->RegisterDictionaryPref(prefs::kServerBackedDeviceState);
}
// static
std::string DeviceCloudPolicyManagerChromeOS::GetMachineID() {
std::string machine_id;
chromeos::system::StatisticsProvider* provider =
chromeos::system::StatisticsProvider::GetInstance();
for (size_t i = 0; i < arraysize(kMachineInfoSerialNumberKeys); i++) {
if (provider->GetMachineStatistic(kMachineInfoSerialNumberKeys[i],
&machine_id) &&
!machine_id.empty()) {
break;
}
}
if (machine_id.empty())
LOG(WARNING) << "Failed to get machine id.";
return machine_id;
}
// static
std::string DeviceCloudPolicyManagerChromeOS::GetMachineModel() {
return GetMachineStatistic(chromeos::system::kHardwareClassKey);
}
void DeviceCloudPolicyManagerChromeOS::StartConnection(
scoped_ptr<CloudPolicyClient> client_to_connect,
EnterpriseInstallAttributes* install_attributes) {
CHECK(!service());
// Enable device reporting for enterprise enrolled devices. We want to do this
// even if management is currently inactive, in case management is turned
// back on in a future policy fetch.
if (install_attributes->IsEnterpriseDevice()) {
client_to_connect->SetStatusProvider(
scoped_ptr<CloudPolicyClient::StatusProvider>(
new DeviceStatusCollector(
local_state_,
chromeos::system::StatisticsProvider::GetInstance(),
NULL)));
}
// Set state keys here so the first policy fetch submits them to the server.
if (ForcedReEnrollmentEnabled())
client_to_connect->SetStateKeysToUpload(state_keys_broker_->state_keys());
core()->Connect(client_to_connect.Pass());
core()->StartRefreshScheduler();
core()->TrackRefreshDelayPref(local_state_,
prefs::kDevicePolicyRefreshRate);
attestation_policy_observer_.reset(
new chromeos::attestation::AttestationPolicyObserver(client()));
NotifyConnected();
}
void DeviceCloudPolicyManagerChromeOS::OnStateKeysUpdated() {
if (client() && ForcedReEnrollmentEnabled())
client()->SetStateKeysToUpload(state_keys_broker_->state_keys());
}
void DeviceCloudPolicyManagerChromeOS::InitializeRequisition() {
// OEM statistics are only loaded when OOBE is not completed.
if (chromeos::StartupUtils::IsOobeCompleted())
return;
const PrefService::Preference* pref = local_state_->FindPreference(
prefs::kDeviceEnrollmentRequisition);
if (pref->IsDefaultValue()) {
std::string requisition =
GetMachineStatistic(chromeos::system::kOemDeviceRequisitionKey);
if (!requisition.empty()) {
local_state_->SetString(prefs::kDeviceEnrollmentRequisition,
requisition);
if (requisition == kRemoraRequisition ||
requisition == kSharkRequisition) {
local_state_->SetBoolean(prefs::kDeviceEnrollmentAutoStart, true);
local_state_->SetBoolean(prefs::kDeviceEnrollmentCanExit, false);
} else {
local_state_->SetBoolean(
prefs::kDeviceEnrollmentAutoStart,
GetMachineFlag(chromeos::system::kOemIsEnterpriseManagedKey,
false));
local_state_->SetBoolean(
prefs::kDeviceEnrollmentCanExit,
GetMachineFlag(chromeos::system::kOemCanExitEnterpriseEnrollmentKey,
false));
}
}
}
}
void DeviceCloudPolicyManagerChromeOS::NotifyConnected() {
FOR_EACH_OBSERVER(
Observer, observers_, OnDeviceCloudPolicyManagerConnected());
}
} // namespace policy
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