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nearby/internal/platform/implementation/g3/wifi_hotspot.cc
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Janusz Sobczak 2c55c0cdbd Refactor Pipe implementation
* Remove Pipe classes
* Rename BasePipe to Pipe
* Hide Pipe class in anonymous namespace in pipe.cc
* Add CreatePipe static method
* Replace Payload(std::function<InputStream&()>) with Payload(std::unique_ptr<InputStream>)
* Find&Replace Pipe usages

PiperOrigin-RevId: 557276980
2023-08-15 15:53:58 -07:00

287 lines
9.5 KiB
C++

// Copyright 2022 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "internal/platform/implementation/g3/wifi_hotspot.h"
#include <iostream>
#include <memory>
#include <string>
#include <utility>
#include "absl/log/check.h"
#include "absl/strings/str_cat.h"
#include "absl/strings/str_format.h"
#include "absl/strings/string_view.h"
#include "absl/synchronization/mutex.h"
#include "internal/platform/cancellation_flag.h"
#include "internal/platform/cancellation_flag_listener.h"
#include "internal/platform/exception.h"
#include "internal/platform/implementation/wifi_hotspot.h"
#include "internal/platform/logging.h"
#include "internal/platform/medium_environment.h"
#include "internal/platform/prng.h"
#include "internal/platform/wifi_credential.h"
namespace nearby {
namespace g3 {
// Code for WifiHotspotServerSocket
std::string WifiHotspotServerSocket::GetName(absl::string_view ip_address,
int port) {
return absl::StrCat(ip_address, ":", port);
}
std::unique_ptr<api::WifiHotspotSocket> WifiHotspotServerSocket::Accept() {
absl::MutexLock lock(&mutex_);
while (!closed_ && pending_sockets_.empty()) {
cond_.Wait(&mutex_);
}
// whether or not we were running in the wait loop, return early if closed.
if (closed_) return {};
auto* remote_socket =
pending_sockets_.extract(pending_sockets_.begin()).value();
CHECK(remote_socket);
auto local_socket = std::make_unique<WifiHotspotSocket>();
local_socket->Connect(*remote_socket);
remote_socket->Connect(*local_socket);
cond_.SignalAll();
return local_socket;
}
bool WifiHotspotServerSocket::Connect(WifiHotspotSocket& socket) {
absl::MutexLock lock(&mutex_);
if (closed_) return false;
if (socket.IsConnected()) {
NEARBY_LOGS(ERROR)
<< "Failed to connect to WifiHotspot server socket: already connected";
return true; // already connected.
}
// add client socket to the pending list
pending_sockets_.insert(&socket);
cond_.SignalAll();
while (!socket.IsConnected()) {
cond_.Wait(&mutex_);
if (closed_) return false;
}
return true;
}
void WifiHotspotServerSocket::SetCloseNotifier(
absl::AnyInvocable<void()> notifier) {
absl::MutexLock lock(&mutex_);
close_notifier_ = std::move(notifier);
}
WifiHotspotServerSocket::~WifiHotspotServerSocket() {
absl::MutexLock lock(&mutex_);
DoClose();
}
Exception WifiHotspotServerSocket::Close() {
absl::MutexLock lock(&mutex_);
return DoClose();
}
Exception WifiHotspotServerSocket::DoClose() {
bool should_notify = !closed_;
closed_ = true;
if (should_notify) {
cond_.SignalAll();
if (close_notifier_) {
auto notifier = std::move(close_notifier_);
mutex_.Unlock();
// Notifier may contain calls to public API, and may cause deadlock, if
// mutex_ is held during the call.
notifier();
mutex_.Lock();
}
}
return {Exception::kSuccess};
}
// Code for WifiHotspotMedium
WifiHotspotMedium::WifiHotspotMedium() {
auto& env = MediumEnvironment::Instance();
env.RegisterWifiHotspotMedium(*this);
}
WifiHotspotMedium::~WifiHotspotMedium() {
auto& env = MediumEnvironment::Instance();
env.UnregisterWifiHotspotMedium(*this);
}
bool WifiHotspotMedium::StartWifiHotspot(
HotspotCredentials* hotspot_credentials) {
absl::MutexLock lock(&mutex_);
if (!IsInterfaceValid()) return false;
std::string ssid = absl::StrCat("DIRECT-", Prng().NextUint32());
hotspot_credentials->SetSSID(ssid);
std::string password = absl::StrFormat("%08x", Prng().NextUint32());
hotspot_credentials->SetPassword(password);
NEARBY_LOGS(INFO) << "G3 StartWifiHotspot: ssid=" << ssid
<< ", password:" << password;
auto& env = MediumEnvironment::Instance();
env.UpdateWifiHotspotMediumForStartOrConnect(*this, hotspot_credentials,
/*is_ap=*/true,
/*enabled=*/true);
return true;
}
bool WifiHotspotMedium::StopWifiHotspot() {
absl::MutexLock lock(&mutex_);
NEARBY_LOGS(INFO) << "G3 StopWifiHotspot";
if (!IsInterfaceValid()) return false;
auto& env = MediumEnvironment::Instance();
env.UpdateWifiHotspotMediumForStartOrConnect(*this, /*credentials*/ nullptr,
/*is_ap=*/true,
/*enabled=*/false);
return true;
}
bool WifiHotspotMedium::ConnectWifiHotspot(
HotspotCredentials* hotspot_credentials) {
absl::MutexLock lock(&mutex_);
NEARBY_LOGS(INFO) << "G3 ConnectWifiHotspot: ssid="
<< hotspot_credentials->GetSSID()
<< ", password:" << hotspot_credentials->GetPassword();
auto& env = MediumEnvironment::Instance();
auto* remote_medium = static_cast<WifiHotspotMedium*>(
env.GetWifiHotspotMedium(hotspot_credentials->GetSSID(), {}));
if (!remote_medium) {
env.UpdateWifiHotspotMediumForStartOrConnect(*this, hotspot_credentials,
/*is_ap=*/false,
/*enabled=*/false);
return false;
}
env.UpdateWifiHotspotMediumForStartOrConnect(*this, hotspot_credentials,
/*is_ap=*/false,
/*enabled=*/true);
return true;
}
bool WifiHotspotMedium::DisconnectWifiHotspot() {
absl::MutexLock lock(&mutex_);
NEARBY_LOGS(INFO) << "G3 DisconnectWifiHotspot";
auto& env = MediumEnvironment::Instance();
env.UpdateWifiHotspotMediumForStartOrConnect(*this, /*credentials*/ nullptr,
/*is_ap=*/false,
/*enabled=*/false);
return true;
}
std::unique_ptr<api::WifiHotspotSocket> WifiHotspotMedium::ConnectToService(
absl::string_view ip_address, int port,
CancellationFlag* cancellation_flag) {
std::string socket_name = WifiHotspotServerSocket::GetName(ip_address, port);
NEARBY_LOGS(INFO) << "G3 WifiHotspot ConnectToService [self]: medium=" << this
<< ", ip address + port=" << socket_name;
// First, find an instance of remote medium, that exposed this service.
auto& env = MediumEnvironment::Instance();
auto* remote_medium =
static_cast<WifiHotspotMedium*>(env.GetWifiHotspotMedium({}, ip_address));
if (remote_medium == nullptr) {
return {};
}
WifiHotspotServerSocket* server_socket = nullptr;
NEARBY_LOGS(INFO) << "G3 WifiHotspot ConnectToService [peer]: medium="
<< remote_medium
<< ", remote ip address + port=" << socket_name;
// Then, find our server socket context in this medium.
{
absl::MutexLock medium_lock(&remote_medium->mutex_);
auto item = remote_medium->server_sockets_.find(socket_name);
server_socket =
item != remote_medium->server_sockets_.end() ? item->second : nullptr;
if (server_socket == nullptr) {
NEARBY_LOGS(ERROR) << "G3 WifiHotspot Failed to find WifiHotspot Server "
"socket: socket_name="
<< socket_name;
return {};
}
}
if (cancellation_flag->Cancelled()) {
NEARBY_LOGS(ERROR)
<< "G3 WifiHotspot Connect: Has been cancelled: socket_name="
<< socket_name;
return {};
}
CancellationFlagListener listener(cancellation_flag, [&server_socket]() {
NEARBY_LOGS(INFO) << "G3 WifiHotspot Cancel Connect.";
if (server_socket != nullptr) {
server_socket->Close();
}
});
auto socket = std::make_unique<WifiHotspotSocket>();
// Finally, Request to connect to this socket.
if (!server_socket->Connect(*socket)) {
NEARBY_LOGS(ERROR)
<< "G3 WifiHotspot Failed to connect to existing WifiHotspot "
"Server socket: name="
<< socket_name;
return {};
}
NEARBY_LOGS(INFO) << "G3 WifiHotspot ConnectToService: connected: socket="
<< socket.get();
return socket;
}
std::unique_ptr<api::WifiHotspotServerSocket>
WifiHotspotMedium::ListenForService(int port) {
auto& env = MediumEnvironment::Instance();
auto server_socket = std::make_unique<WifiHotspotServerSocket>();
std::string dot_decimal_ip;
std::string ip_address = env.GetFakeIPAddress();
if (ip_address.empty()) return nullptr;
for (auto byte : ip_address) {
absl::StrAppend(&dot_decimal_ip, absl::StrFormat("%d", byte), ".");
}
dot_decimal_ip.pop_back();
server_socket->SetIPAddress(dot_decimal_ip);
server_socket->SetPort(port == 0 ? env.GetFakePort() : port);
std::string socket_name = WifiHotspotServerSocket::GetName(
server_socket->GetIPAddress(), server_socket->GetPort());
server_socket->SetCloseNotifier([this, socket_name]() {
absl::MutexLock lock(&mutex_);
server_sockets_.erase(socket_name);
});
NEARBY_LOGS(INFO) << "G3 WifiHotspot Adding server socket: medium=" << this
<< ", socket_name=" << socket_name;
absl::MutexLock lock(&mutex_);
server_sockets_.insert({socket_name, server_socket.get()});
return server_socket;
}
} // namespace g3
} // namespace nearby