blob: cec2d983a0cd51a8c50a89b36671e077c600b7ca [file] [log] [blame]
// Copyright (c) 2011 The Chromium OS 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 <time.h>
#include <stdio.h>
#include <string.h>
#include <map>
#include <string>
#include <vector>
#include <base/logging.h>
#include <base/string_number_conversions.h>
#include "shill/control_interface.h"
#include "shill/device.h"
#include "shill/shill_event.h"
#include "shill/wifi_endpoint.h"
#include "shill/wifi_service.h"
#include "shill/wifi.h"
using std::string;
namespace shill {
const char WiFi::kSupplicantPath[] = "/fi/w1/wpa_supplicant1";
const char WiFi::kSupplicantDBusAddr[] = "fi.w1.wpa_supplicant1";
const char WiFi::kSupplicantWiFiDriver[] = "nl80211";
const char WiFi::kSupplicantErrorInterfaceExists[] =
"fi.w1.wpa_supplicant1.InterfaceExists";
const char WiFi::kSupplicantKeyModeNone[] = "NONE";
unsigned int WiFi::service_id_serial_ = 0;
WiFi::SupplicantProcessProxy::SupplicantProcessProxy(DBus::Connection *bus)
: DBus::ObjectProxy(*bus, kSupplicantPath, kSupplicantDBusAddr) {}
void WiFi::SupplicantProcessProxy::InterfaceAdded(
const ::DBus::Path& path,
const std::map<string, ::DBus::Variant> &properties) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantProcessProxy::InterfaceRemoved(const ::DBus::Path& path) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantProcessProxy::PropertiesChanged(
const std::map<string, ::DBus::Variant>& properties) {
LOG(INFO) << __func__;
// XXX
}
WiFi::SupplicantInterfaceProxy::SupplicantInterfaceProxy(
WiFi *wifi,
DBus::Connection *bus,
const ::DBus::Path &object_path)
: wifi_(*wifi),
DBus::ObjectProxy(*bus, object_path, kSupplicantDBusAddr) {}
void WiFi::SupplicantInterfaceProxy::ScanDone(const bool& success) {
LOG(INFO) << __func__ << " " << success;
if (success) {
wifi_.ScanDone();
}
}
void WiFi::SupplicantInterfaceProxy::BSSAdded(
const ::DBus::Path &BSS,
const std::map<string, ::DBus::Variant> &properties) {
LOG(INFO) << __func__;
wifi_.BSSAdded(BSS, properties);
}
void WiFi::SupplicantInterfaceProxy::BSSRemoved(const ::DBus::Path &BSS) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::BlobAdded(const string &blobname) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::BlobRemoved(const string &blobname) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::NetworkAdded(
const ::DBus::Path &network,
const std::map<string, ::DBus::Variant> &properties) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::NetworkRemoved(
const ::DBus::Path &network) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::NetworkSelected(
const ::DBus::Path &network) {
LOG(INFO) << __func__;
// XXX
}
void WiFi::SupplicantInterfaceProxy::PropertiesChanged(
const std::map<string, ::DBus::Variant> &properties) {
LOG(INFO) << __func__;
// XXX
}
// NB: we assume supplicant is already running. [quiche.20110518]
WiFi::WiFi(ControlInterface *control_interface,
EventDispatcher *dispatcher,
Manager *manager,
const string& link_name,
int interface_index)
: Device(control_interface,
dispatcher,
manager,
link_name,
interface_index),
task_factory_(this),
control_interface_(control_interface),
dispatcher_(dispatcher),
dbus_(DBus::Connection::SystemBus()),
scan_pending_(false) {
VLOG(2) << "WiFi device " << link_name_ << " initialized.";
}
WiFi::~WiFi() {
}
void WiFi::Start() {
::DBus::Path interface_path;
supplicant_process_proxy_.reset(new SupplicantProcessProxy(&dbus_));
try {
std::map<string, DBus::Variant> create_interface_args;
create_interface_args["Ifname"].writer().
append_string(link_name_.c_str());
create_interface_args["Driver"].writer().
append_string(kSupplicantWiFiDriver);
// TODO(quiche) create_interface_args["ConfigFile"].writer().append_string
// (file with pkcs config info)
interface_path =
supplicant_process_proxy_->CreateInterface(create_interface_args);
} catch (const DBus::Error e) { // NOLINT
if (!strcmp(e.name(), kSupplicantErrorInterfaceExists)) {
interface_path =
supplicant_process_proxy_->GetInterface(link_name_);
// XXX crash here, if device missing?
} else {
// XXX
}
}
supplicant_interface_proxy_.reset(
new SupplicantInterfaceProxy(this, &dbus_, interface_path));
// TODO(quiche) set ApScan=1 and BSSExpireAge=190, like flimflam does?
// clear out any networks that might previously have been configured
// for this interface.
supplicant_interface_proxy_->RemoveAllNetworks();
// flush interface's BSS cache, so that we get BSSAdded signals for
// all BSSes (not just new ones since the last scan).
supplicant_interface_proxy_->FlushBSS(0);
LOG(INFO) << "initiating Scan.";
std::map<string, DBus::Variant> scan_args;
scan_args["Type"].writer().append_string("active");
// TODO(quiche) indicate scanning in UI
supplicant_interface_proxy_->Scan(scan_args);
scan_pending_ = true;
Device::Start();
}
void WiFi::Stop() {
LOG(INFO) << __func__;
// XXX
Device::Stop();
}
bool WiFi::TechnologyIs(const Device::Technology type) {
return type == Device::kWifi;
}
void WiFi::BSSAdded(
const ::DBus::Path &BSS,
const std::map<string, ::DBus::Variant> &properties) {
// TODO(quiche): write test to verify correct behavior in the case
// where we get multiple BSSAdded events for a single endpoint.
// (old Endpoint's refcount should fall to zero, and old Endpoint
// should be destroyed)
//
// note: we assume that BSSIDs are unique across endpoints. this
// means that if an AP reuses the same BSSID for multiple SSIDs, we
// lose.
WiFiEndpointRefPtr endpoint(new WiFiEndpoint(properties));
endpoint_by_bssid_[endpoint->bssid_hex()] = endpoint;
}
void WiFi::ScanDone() {
LOG(INFO) << __func__;
// defer handling of scan result processing, because that processing
// may require the the registration of new D-Bus objects. and such
// registration can't be done in the context of a D-Bus signal
// handler.
dispatcher_->PostTask(
task_factory_.NewRunnableMethod(&WiFi::RealScanDone));
}
::DBus::Path WiFi::AddNetwork(
const std::map<string, ::DBus::Variant> &args) {
return supplicant_interface_proxy_->AddNetwork(args);
}
void WiFi::SelectNetwork(const ::DBus::Path &network) {
supplicant_interface_proxy_->SelectNetwork(network);
}
void WiFi::RealScanDone() {
LOG(INFO) << __func__;
scan_pending_ = false;
// TODO(quiche): group endpoints into services, instead of creating
// a service for every endpoint.
for (EndpointMap::iterator i(endpoint_by_bssid_.begin());
i != endpoint_by_bssid_.end(); ++i) {
const WiFiEndpoint &endpoint(*(i->second));
string service_id_private;
service_id_private =
endpoint.ssid_hex() + "_" + endpoint.bssid_hex();
if (service_by_private_id_.find(service_id_private) ==
service_by_private_id_.end()) {
unsigned int new_service_id_serial = service_id_serial_++;
string service_name(base::UintToString(new_service_id_serial));
LOG(INFO) << "found new endpoint. "
<< "ssid: " << endpoint.ssid_string() << ", "
<< "bssid: " << endpoint.bssid_string() << ", "
<< "signal: " << endpoint.signal_strength() << ", "
<< "service name: " << "/service/" << service_name;
// XXX key mode should reflect endpoint params (not always use
// kSupplicantKeyModeNone)
ServiceRefPtr service(
new WiFiService(control_interface_, dispatcher_, this,
endpoint.ssid(), endpoint.network_mode(),
kSupplicantKeyModeNone, service_name));
services_.push_back(service);
service_by_private_id_[service_id_private] = service;
}
}
// TODO(quiche): register new services with manager
// TODO(quiche): unregister removed services from manager
}
} // namespace shill