418 lines
14 KiB
C++
418 lines
14 KiB
C++
//
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// Copyright (C) 2012 The Android Open Source Project
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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#include "shill/cellular/cellular_capability_cdma.h"
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#include <string>
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#include <vector>
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#include <base/bind.h>
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#include <base/strings/stringprintf.h>
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#include <base/strings/string_util.h>
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#if defined(__ANDROID__)
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#include <dbus/service_constants.h>
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#else
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#include <chromeos/dbus/service_constants.h>
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#endif // __ANDROID__
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#include <mm/mm-modem.h>
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#include "shill/cellular/cellular.h"
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#include "shill/cellular/cellular_service.h"
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#include "shill/control_interface.h"
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#include "shill/logging.h"
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using base::Bind;
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using std::string;
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using std::vector;
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namespace shill {
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namespace Logging {
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static auto kModuleLogScope = ScopeLogger::kCellular;
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static string ObjectID(CellularCapabilityCDMA* c) {
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return c->cellular()->GetRpcIdentifier();
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}
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}
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// static
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const char CellularCapabilityCDMA::kPhoneNumber[] = "#777";
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CellularCapabilityCDMA::CellularCapabilityCDMA(
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Cellular* cellular,
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ControlInterface* control_interface,
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ModemInfo* modem_info)
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: CellularCapabilityClassic(cellular, control_interface, modem_info),
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weak_ptr_factory_(this),
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activation_starting_(false),
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activation_state_(MM_MODEM_CDMA_ACTIVATION_STATE_NOT_ACTIVATED),
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registration_state_evdo_(MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN),
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registration_state_1x_(MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN) {
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SLOG(this, 2) << "Cellular capability constructed: CDMA";
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}
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CellularCapabilityCDMA::~CellularCapabilityCDMA() {}
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void CellularCapabilityCDMA::InitProxies() {
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CellularCapabilityClassic::InitProxies();
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proxy_.reset(control_interface()->CreateModemCDMAProxy(
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cellular()->dbus_path(), cellular()->dbus_service()));
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proxy_->set_signal_quality_callback(
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Bind(&CellularCapabilityCDMA::OnSignalQualitySignal,
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weak_ptr_factory_.GetWeakPtr()));
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proxy_->set_activation_state_callback(
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Bind(&CellularCapabilityCDMA::OnActivationStateChangedSignal,
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weak_ptr_factory_.GetWeakPtr()));
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proxy_->set_registration_state_callback(
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Bind(&CellularCapabilityCDMA::OnRegistrationStateChangedSignal,
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weak_ptr_factory_.GetWeakPtr()));
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}
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string CellularCapabilityCDMA::GetTypeString() const {
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return kTechnologyFamilyCdma;
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}
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void CellularCapabilityCDMA::StartModem(Error* error,
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const ResultCallback& callback) {
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SLOG(this, 2) << __func__;
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InitProxies();
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CellularTaskList* tasks = new CellularTaskList();
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ResultCallback cb =
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Bind(&CellularCapabilityCDMA::StepCompletedCallback,
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weak_ptr_factory_.GetWeakPtr(), callback, false, tasks);
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if (!cellular()->IsUnderlyingDeviceEnabled())
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tasks->push_back(Bind(&CellularCapabilityCDMA::EnableModem,
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weak_ptr_factory_.GetWeakPtr(), cb));
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tasks->push_back(Bind(&CellularCapabilityCDMA::GetModemStatus,
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weak_ptr_factory_.GetWeakPtr(), cb));
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tasks->push_back(Bind(&CellularCapabilityCDMA::GetMEID,
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weak_ptr_factory_.GetWeakPtr(), cb));
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tasks->push_back(Bind(&CellularCapabilityCDMA::GetModemInfo,
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weak_ptr_factory_.GetWeakPtr(), cb));
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tasks->push_back(Bind(&CellularCapabilityCDMA::FinishEnable,
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weak_ptr_factory_.GetWeakPtr(), cb));
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RunNextStep(tasks);
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}
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void CellularCapabilityCDMA::ReleaseProxies() {
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CellularCapabilityClassic::ReleaseProxies();
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proxy_.reset();
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}
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bool CellularCapabilityCDMA::AreProxiesInitialized() const {
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return (CellularCapabilityClassic::AreProxiesInitialized() && proxy_.get());
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}
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bool CellularCapabilityCDMA::AllowRoaming() {
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return allow_roaming_property();
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}
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void CellularCapabilityCDMA::OnServiceCreated() {
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SLOG(this, 2) << __func__;
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cellular()->service()->SetUsageURL(usage_url_);
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cellular()->service()->SetActivationType(
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CellularService::kActivationTypeOTASP);
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HandleNewActivationState(MM_MODEM_CDMA_ACTIVATION_ERROR_NO_ERROR);
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}
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void CellularCapabilityCDMA::UpdateStatus(const KeyValueStore& properties) {
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string carrier;
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if (properties.ContainsUint("activation_state")) {
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activation_state_ = properties.GetUint("activation_state");
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}
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// TODO(petkov): For now, get the payment and usage URLs from ModemManager to
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// match flimflam. In the future, get these from an alternative source (e.g.,
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// database, carrier-specific properties, etc.).
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UpdateOnlinePortal(properties);
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if (properties.ContainsUint("prl_version"))
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cellular()->set_prl_version(properties.GetUint("prl_version"));
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}
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void CellularCapabilityCDMA::UpdateServiceOLP() {
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SLOG(this, 3) << __func__;
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// All OLP changes are routed up to the Home Provider.
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if (!cellular()->home_provider_info()->IsMobileNetworkOperatorKnown()) {
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return;
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}
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const vector<MobileOperatorInfo::OnlinePortal>& olp_list =
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cellular()->home_provider_info()->olp_list();
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if (olp_list.empty()) {
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return;
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}
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if (olp_list.size() > 1) {
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SLOG(this, 1) << "Found multiple online portals. Choosing the first.";
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}
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cellular()->service()->SetOLP(olp_list[0].url,
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olp_list[0].method,
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olp_list[0].post_data);
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}
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void CellularCapabilityCDMA::SetupConnectProperties(
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KeyValueStore* properties) {
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properties->SetString(kConnectPropertyPhoneNumber, kPhoneNumber);
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}
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void CellularCapabilityCDMA::Activate(const string& carrier,
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Error* error,
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const ResultCallback& callback) {
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SLOG(this, 2) << __func__ << "(" << carrier << ")";
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// We're going to trigger something which leads to an activation.
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activation_starting_ = true;
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if (cellular()->state() == Cellular::kStateEnabled ||
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cellular()->state() == Cellular::kStateRegistered) {
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ActivationResultCallback activation_callback =
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Bind(&CellularCapabilityCDMA::OnActivateReply,
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weak_ptr_factory_.GetWeakPtr(),
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callback);
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proxy_->Activate(carrier, error, activation_callback, kTimeoutActivate);
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} else if (cellular()->state() == Cellular::kStateConnected ||
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cellular()->state() == Cellular::kStateLinked) {
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pending_activation_callback_ = callback;
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pending_activation_carrier_ = carrier;
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cellular()->Disconnect(error, __func__);
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} else {
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Error::PopulateAndLog(FROM_HERE, error, Error::kInvalidArguments,
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"Unable to activate in " +
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Cellular::GetStateString(cellular()->state()));
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activation_starting_ = false;
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}
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}
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void CellularCapabilityCDMA::HandleNewActivationState(uint32_t error) {
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SLOG(this, 2) << __func__ << "(" << error << ")";
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if (!cellular()->service().get()) {
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LOG(ERROR) << "In " << __func__ << "(): service is null.";
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return;
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}
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cellular()->service()->SetActivationState(
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GetActivationStateString(activation_state_));
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cellular()->service()->set_error(GetActivationErrorString(error));
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}
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void CellularCapabilityCDMA::DisconnectCleanup() {
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CellularCapabilityClassic::DisconnectCleanup();
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if (pending_activation_callback_.is_null()) {
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return;
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}
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if (cellular()->state() == Cellular::kStateEnabled ||
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cellular()->state() == Cellular::kStateRegistered) {
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Error ignored_error;
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Activate(pending_activation_carrier_,
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&ignored_error,
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pending_activation_callback_);
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} else {
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Error error;
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Error::PopulateAndLog(
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FROM_HERE,
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&error,
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Error::kOperationFailed,
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"Tried to disconnect before activating cellular service and failed");
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HandleNewActivationState(MM_MODEM_CDMA_ACTIVATION_ERROR_UNKNOWN);
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activation_starting_ = false;
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pending_activation_callback_.Run(error);
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}
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pending_activation_callback_.Reset();
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pending_activation_carrier_.clear();
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}
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// static
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string CellularCapabilityCDMA::GetActivationStateString(uint32_t state) {
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switch (state) {
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case MM_MODEM_CDMA_ACTIVATION_STATE_ACTIVATED:
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return kActivationStateActivated;
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case MM_MODEM_CDMA_ACTIVATION_STATE_ACTIVATING:
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return kActivationStateActivating;
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case MM_MODEM_CDMA_ACTIVATION_STATE_NOT_ACTIVATED:
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return kActivationStateNotActivated;
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case MM_MODEM_CDMA_ACTIVATION_STATE_PARTIALLY_ACTIVATED:
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return kActivationStatePartiallyActivated;
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default:
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return kActivationStateUnknown;
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}
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}
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// static
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string CellularCapabilityCDMA::GetActivationErrorString(uint32_t error) {
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switch (error) {
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case MM_MODEM_CDMA_ACTIVATION_ERROR_WRONG_RADIO_INTERFACE:
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return kErrorNeedEvdo;
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case MM_MODEM_CDMA_ACTIVATION_ERROR_ROAMING:
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return kErrorNeedHomeNetwork;
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case MM_MODEM_CDMA_ACTIVATION_ERROR_COULD_NOT_CONNECT:
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case MM_MODEM_CDMA_ACTIVATION_ERROR_SECURITY_AUTHENTICATION_FAILED:
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case MM_MODEM_CDMA_ACTIVATION_ERROR_PROVISIONING_FAILED:
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return kErrorOtaspFailed;
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case MM_MODEM_CDMA_ACTIVATION_ERROR_NO_ERROR:
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return "";
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case MM_MODEM_CDMA_ACTIVATION_ERROR_NO_SIGNAL:
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default:
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return kErrorActivationFailed;
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}
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}
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void CellularCapabilityCDMA::GetMEID(const ResultCallback& callback) {
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SLOG(this, 2) << __func__;
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if (cellular()->meid().empty()) {
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// TODO(petkov): Switch to asynchronous calls (crbug.com/200687).
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cellular()->set_meid(proxy_->MEID());
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SLOG(this, 2) << "MEID: " << cellular()->meid();
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}
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callback.Run(Error());
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}
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void CellularCapabilityCDMA::GetProperties(const ResultCallback& callback) {
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SLOG(this, 2) << __func__;
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// No properties.
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callback.Run(Error());
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}
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bool CellularCapabilityCDMA::IsActivating() const {
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return activation_starting_ ||
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activation_state_ == MM_MODEM_CDMA_ACTIVATION_STATE_ACTIVATING;
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}
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bool CellularCapabilityCDMA::IsRegistered() const {
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return registration_state_evdo_ != MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN ||
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registration_state_1x_ != MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN;
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}
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void CellularCapabilityCDMA::SetUnregistered(bool searching) {
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registration_state_evdo_ = MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN;
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registration_state_1x_ = MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN;
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}
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string CellularCapabilityCDMA::GetNetworkTechnologyString() const {
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if (registration_state_evdo_ != MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN) {
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return kNetworkTechnologyEvdo;
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}
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if (registration_state_1x_ != MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN) {
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return kNetworkTechnology1Xrtt;
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}
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return "";
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}
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string CellularCapabilityCDMA::GetRoamingStateString() const {
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uint32_t state = registration_state_evdo_;
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if (state == MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN) {
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state = registration_state_1x_;
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}
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switch (state) {
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case MM_MODEM_CDMA_REGISTRATION_STATE_UNKNOWN:
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case MM_MODEM_CDMA_REGISTRATION_STATE_REGISTERED:
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break;
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case MM_MODEM_CDMA_REGISTRATION_STATE_HOME:
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return kRoamingStateHome;
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case MM_MODEM_CDMA_REGISTRATION_STATE_ROAMING:
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return kRoamingStateRoaming;
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default:
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NOTREACHED();
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}
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return kRoamingStateUnknown;
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}
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void CellularCapabilityCDMA::GetSignalQuality() {
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SLOG(this, 2) << __func__;
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SignalQualityCallback callback =
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Bind(&CellularCapabilityCDMA::OnGetSignalQualityReply,
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weak_ptr_factory_.GetWeakPtr());
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proxy_->GetSignalQuality(nullptr, callback, kTimeoutDefault);
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}
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void CellularCapabilityCDMA::GetRegistrationState() {
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SLOG(this, 2) << __func__;
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RegistrationStateCallback callback =
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Bind(&CellularCapabilityCDMA::OnGetRegistrationStateReply,
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weak_ptr_factory_.GetWeakPtr());
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proxy_->GetRegistrationState(nullptr, callback, kTimeoutDefault);
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}
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void CellularCapabilityCDMA::OnActivateReply(
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const ResultCallback& callback, uint32_t status, const Error& error) {
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activation_starting_ = false;
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if (error.IsSuccess()) {
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if (status == MM_MODEM_CDMA_ACTIVATION_ERROR_NO_ERROR) {
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activation_state_ = MM_MODEM_CDMA_ACTIVATION_STATE_ACTIVATING;
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} else {
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LOG(WARNING) << "Modem activation failed with status: "
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<< GetActivationErrorString(status) << " (" << status << ")";
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}
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HandleNewActivationState(status);
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} else {
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LOG(ERROR) << "Activate() failed with error: " << error;
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}
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callback.Run(error);
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}
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void CellularCapabilityCDMA::OnGetRegistrationStateReply(
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uint32_t state_1x, uint32_t state_evdo, const Error& error) {
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SLOG(this, 2) << __func__;
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if (error.IsSuccess())
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OnRegistrationStateChangedSignal(state_1x, state_evdo);
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}
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void CellularCapabilityCDMA::OnGetSignalQualityReply(uint32_t quality,
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const Error& error) {
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if (error.IsSuccess())
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OnSignalQualitySignal(quality);
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}
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void CellularCapabilityCDMA::OnActivationStateChangedSignal(
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uint32_t activation_state,
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uint32_t activation_error,
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const KeyValueStore& status_changes) {
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SLOG(this, 2) << __func__;
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if (status_changes.ContainsString("mdn"))
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cellular()->set_mdn(status_changes.GetString("mdn"));
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if (status_changes.ContainsString("min"))
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cellular()->set_min(status_changes.GetString("min"));
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UpdateOnlinePortal(status_changes);
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activation_state_ = activation_state;
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HandleNewActivationState(activation_error);
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}
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void CellularCapabilityCDMA::OnRegistrationStateChangedSignal(
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uint32_t state_1x, uint32_t state_evdo) {
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SLOG(this, 2) << __func__;
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registration_state_1x_ = state_1x;
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registration_state_evdo_ = state_evdo;
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cellular()->HandleNewRegistrationState();
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}
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void CellularCapabilityCDMA::OnSignalQualitySignal(uint32_t strength) {
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cellular()->HandleNewSignalQuality(strength);
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}
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void CellularCapabilityCDMA::UpdateOnlinePortal(
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const KeyValueStore& properties) {
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// Treat the three updates atomically: Only update the serving operator when
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// all three are known:
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if (properties.ContainsString("payment_url") &&
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properties.ContainsString("payment_url_method") &&
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properties.ContainsString("payment_url_postdata")) {
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cellular()->home_provider_info()->UpdateOnlinePortal(
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properties.GetString("payment_url"),
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properties.GetString("payment_url_method"),
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properties.GetString("payment_url_postdata"));
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}
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}
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} // namespace shill
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