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nearby/internal/platform/wifi_lan.h
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2022-06-13 10:55:57 -07:00

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// Copyright 2020 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.
#ifndef PLATFORM_PUBLIC_WIFI_LAN_H_
#define PLATFORM_PUBLIC_WIFI_LAN_H_
#include "absl/container/flat_hash_map.h"
#include "internal/platform/implementation/platform.h"
#include "internal/platform/implementation/wifi_lan.h"
#include "internal/platform/byte_array.h"
#include "internal/platform/cancellation_flag.h"
#include "internal/platform/input_stream.h"
#include "internal/platform/nsd_service_info.h"
#include "internal/platform/output_stream.h"
#include "internal/platform/logging.h"
#include "internal/platform/mutex.h"
namespace location {
namespace nearby {
class WifiLanSocket final {
public:
WifiLanSocket() = default;
WifiLanSocket(const WifiLanSocket&) = default;
WifiLanSocket& operator=(const WifiLanSocket&) = default;
~WifiLanSocket() = default;
explicit WifiLanSocket(std::unique_ptr<api::WifiLanSocket> socket)
: impl_(std::move(socket)) {}
// Returns the InputStream of the WifiLanSocket.
// On error, returned stream will report Exception::kIo on any operation.
//
// The returned object is not owned by the caller, and can be invalidated once
// the WifiLanSocket object is destroyed.
InputStream& GetInputStream() { return impl_->GetInputStream(); }
// Returns the OutputStream of the WifiLanSocket.
// On error, returned stream will report Exception::kIo on any operation.
//
// The returned object is not owned by the caller, and can be invalidated once
// the WifiLanSocket object is destroyed.
OutputStream& GetOutputStream() { return impl_->GetOutputStream(); }
// Returns Exception::kIo on error, Exception::kSuccess otherwise.
Exception Close() { return impl_->Close(); }
// Returns true if a socket is usable. If this method returns false,
// it is not safe to call any other method.
// NOTE(socket validity):
// Socket created by a default public constructor is not valid, because
// it is missing platform implementation.
// The only way to obtain a valid socket is through connection, such as
// an object returned by WifiLanMedium::Connect
// These methods may also return an invalid socket if connection failed for
// any reason.
bool IsValid() const { return impl_ != nullptr; }
// Returns reference to platform implementation.
// This is used to communicate with platform code, and for debugging purposes.
// Returned reference will remain valid for while WifiLanSocket object is
// itself valid. Typically WifiLanSocket lifetime matches duration of the
// connection, and is controlled by end user, since they hold the instance.
api::WifiLanSocket& GetImpl() { return *impl_; }
private:
std::shared_ptr<api::WifiLanSocket> impl_;
};
class WifiLanServerSocket final {
public:
WifiLanServerSocket() = default;
WifiLanServerSocket(const WifiLanServerSocket&) = default;
WifiLanServerSocket& operator=(const WifiLanServerSocket&) = default;
~WifiLanServerSocket() = default;
explicit WifiLanServerSocket(std::unique_ptr<api::WifiLanServerSocket> socket)
: impl_(std::move(socket)) {}
// Returns ip address.
std::string GetIPAddress() { return impl_->GetIPAddress(); }
// Returns port.
int GetPort() { return impl_->GetPort(); }
// Blocks until either:
// - at least one incoming connection request is available, or
// - ServerSocket is closed.
// On success, returns connected socket, ready to exchange data.
// Returns nullptr on error.
// Once error is reported, it is permanent, and ServerSocket has to be closed.
WifiLanSocket Accept() {
std::unique_ptr<api::WifiLanSocket> socket = impl_->Accept();
if (!socket) {
NEARBY_LOGS(INFO)
<< "WifiLanServerSocket Accept() failed on server socket: " << this;
}
return WifiLanSocket(std::move(socket));
}
// Returns Exception::kIo on error, Exception::kSuccess otherwise.
Exception Close() {
NEARBY_LOGS(INFO) << "WifiLanServerSocket Closing:: " << this;
return impl_->Close();
}
bool IsValid() const { return impl_ != nullptr; }
api::WifiLanServerSocket& GetImpl() { return *impl_; }
private:
std::shared_ptr<api::WifiLanServerSocket> impl_;
};
// Container of operations that can be performed over the WifiLan medium.
class WifiLanMedium {
public:
using Platform = api::ImplementationPlatform;
struct DiscoveredServiceCallback {
std::function<void(NsdServiceInfo service_info,
const std::string& service_type)>
service_discovered_cb =
DefaultCallback<NsdServiceInfo, const std::string&>();
std::function<void(NsdServiceInfo service_info,
const std::string& service_type)>
service_lost_cb = DefaultCallback<NsdServiceInfo, const std::string&>();
};
struct DiscoveryCallbackInfo {
std::string service_id;
DiscoveredServiceCallback medium_callback;
};
WifiLanMedium() : impl_(Platform::CreateWifiLanMedium()) {}
~WifiLanMedium() = default;
// Starts WifiLan advertising.
//
// nsd_service_info - NsdServiceInfo data that's advertised through mDNS
// service.
// On success if the service is now advertising.
// On error if the service cannot start to advertise or the nsd_type in
// NsdServiceInfo has been passed previously which StopAdvertising is not
// been called.
bool StartAdvertising(const NsdServiceInfo& nsd_service_info);
// Stops WifiLan advertising.
//
// nsd_service_info - NsdServiceInfo data that's advertised through mDNS
// service.
// On success if the service stops advertising.
// On error if the service cannot stop advertising or the nsd_type in
// NsdServiceInfo cannot be found.
bool StopAdvertising(const NsdServiceInfo& nsd_service_info);
// Returns true once the WifiLan discovery has been initiated.
bool StartDiscovery(const std::string& service_id,
const std::string& service_type,
DiscoveredServiceCallback callback);
// Returns true once service_type is associated to existing callback. If the
// callback is the last found then WifiLan discovery will be stopped.
bool StopDiscovery(const std::string& service_type);
// Returns a new WifiLanSocket.
// On Success, WifiLanSocket::IsValid() returns true.
WifiLanSocket ConnectToService(const NsdServiceInfo& remote_service_info,
CancellationFlag* cancellation_flag);
// Returns a new WifiLanSocket by ip address and port.
// On Success, WifiLanSocket::IsValid()returns true.
WifiLanSocket ConnectToService(const std::string& ip_address, int port,
CancellationFlag* cancellation_flag);
// Returns a new WifiLanServerSocket.
// On Success, WifiLanServerSocket::IsValid() returns true.
WifiLanServerSocket ListenForService(int port = 0) {
return WifiLanServerSocket(impl_->ListenForService(port));
}
// Returns the port range as a pair of min and max port.
absl::optional<std::pair<std::int32_t, std::int32_t>> GetDynamicPortRange() {
return impl_->GetDynamicPortRange();
}
// Both SW and HW support WifiLan Medium
bool IsValid() const {
// When impl_ is not nullptr, it means platform layer SW is implemented for
// this Medium
if (impl_ == nullptr) return false;
// A network connection to a primary router exist, also implied that HW is
// existed and enabled.
return impl_->IsNetworkConnected();
}
api::WifiLanMedium& GetImpl() { return *impl_; }
private:
Mutex mutex_;
std::unique_ptr<api::WifiLanMedium> impl_;
absl::flat_hash_map<std::string, std::unique_ptr<DiscoveryCallbackInfo>>
discovery_callbacks_ ABSL_GUARDED_BY(mutex_);
absl::flat_hash_set<std::string> discovery_services_ ABSL_GUARDED_BY(mutex_);
};
} // namespace nearby
} // namespace location
#endif // PLATFORM_PUBLIC_WIFI_LAN_H_