Files
nearby/cpp/core/internal/offline_frames.cc
T
Alexey Polyudov 204f76077d nearby: snapshot as of cl/296436629
Signed-off-by: Alexey Polyudov <apolyudov@google.com>
Change-Id: I2cf5bf225b76f4c1541954651f3a7544a14e0cec
2020-04-04 12:52:31 -07:00

269 lines
10 KiB
C++

#include "core/internal/offline_frames.h"
#include "platform/port/down_cast.h"
namespace location {
namespace nearby {
namespace connections {
namespace {
template <typename T>
T *downcastToRaw(Ptr<proto_ns::MessageLite> message) {
return DOWN_CAST<T *>(message.operator->());
}
// This method takes ownership of the passed-in 'message'.
//
// This can be implemented more efficiently by taking in a reference to an
// OfflineFrame object created on the caller's stack, but we instead create it
// on the heap and return a Ptr to it for the sake of consistency.
ConstPtr<OfflineFrame> newOfflineFrame(V1Frame::FrameType frame_type,
Ptr<proto_ns::MessageLite> message) {
V1Frame *v1_frame = new V1Frame();
v1_frame->set_type(frame_type);
switch (frame_type) {
case V1Frame::CONNECTION_REQUEST:
v1_frame->set_allocated_connection_request(
downcastToRaw<ConnectionRequestFrame>(message));
break;
case V1Frame::CONNECTION_RESPONSE:
v1_frame->set_allocated_connection_response(
downcastToRaw<ConnectionResponseFrame>(message));
break;
case V1Frame::PAYLOAD_TRANSFER:
v1_frame->set_allocated_payload_transfer(
downcastToRaw<PayloadTransferFrame>(message));
break;
case V1Frame::BANDWIDTH_UPGRADE_NEGOTIATION:
v1_frame->set_allocated_bandwidth_upgrade_negotiation(
downcastToRaw<BandwidthUpgradeNegotiationFrame>(message));
break;
case V1Frame::KEEP_ALIVE:
v1_frame->set_allocated_keep_alive(
downcastToRaw<KeepAliveFrame>(message));
break;
default:
break;
}
Ptr<OfflineFrame> offline_frame(new OfflineFrame());
offline_frame->set_version(OfflineFrame::V1);
offline_frame->set_allocated_v1(v1_frame);
return ConstifyPtr(offline_frame);
}
// This method takes ownership of the passed-in 'offline_frame' and destroys it
// before returning.
ConstPtr<ByteArray> toBytes(ConstPtr<OfflineFrame> offline_frame) {
ScopedPtr<ConstPtr<OfflineFrame> > scoped_offline_frame(offline_frame);
size_t serialized_size = offline_frame->ByteSizeLong();
Ptr<ByteArray> bytes{new ByteArray{serialized_size}};
offline_frame->SerializeToArray(bytes->getData(), serialized_size);
return ConstifyPtr(bytes);
}
} // namespace
ExceptionOr<ConstPtr<OfflineFrame> > OfflineFrames::fromBytes(
ConstPtr<ByteArray> offline_frame_bytes) {
ScopedPtr<Ptr<OfflineFrame> > offline_frame(new OfflineFrame());
if (!offline_frame->ParseFromArray(offline_frame_bytes->getData(),
offline_frame_bytes->size())) {
return ExceptionOr<ConstPtr<OfflineFrame> >(
Exception::INVALID_PROTOCOL_BUFFER);
}
return ExceptionOr<ConstPtr<OfflineFrame> >(
ConstifyPtr(offline_frame.release()));
}
V1Frame::FrameType OfflineFrames::getFrameType(
ConstPtr<OfflineFrame> offline_frame) {
if ((offline_frame->version() == OfflineFrame::V1) &&
offline_frame->has_v1()) {
return offline_frame->v1().type();
}
return V1Frame::UNKNOWN_FRAME_TYPE;
}
ConstPtr<ByteArray> OfflineFrames::forConnectionRequest(
const std::string &endpoint_id, const std::string &endpoint_name,
std::int32_t nonce,
const std::vector<proto::connections::Medium> &mediums) {
Ptr<ConnectionRequestFrame> connection_request(new ConnectionRequestFrame());
connection_request->set_endpoint_id(endpoint_id);
connection_request->set_endpoint_name(endpoint_name);
connection_request->set_nonce(nonce);
for (std::vector<proto::connections::Medium>::const_iterator it =
mediums.begin();
it != mediums.end(); it++) {
connection_request->add_mediums(mediumToConnectionRequestMedium(*it));
}
return toBytes(
newOfflineFrame(V1Frame::CONNECTION_REQUEST, connection_request));
}
ConstPtr<ByteArray> OfflineFrames::forConnectionResponse(std::int32_t status) {
Ptr<ConnectionResponseFrame> connection_response(
new ConnectionResponseFrame());
connection_response->set_status(status);
return toBytes(
newOfflineFrame(V1Frame::CONNECTION_RESPONSE, connection_response));
}
ConstPtr<ByteArray> OfflineFrames::forDataPayloadTransferFrame(
const PayloadTransferFrame::PayloadHeader &header,
const PayloadTransferFrame::PayloadChunk &chunk) {
Ptr<PayloadTransferFrame> payload_transfer(new PayloadTransferFrame());
payload_transfer->set_packet_type(PayloadTransferFrame::DATA);
*payload_transfer->mutable_payload_header() = header;
*payload_transfer->mutable_payload_chunk() = chunk;
return toBytes(newOfflineFrame(V1Frame::PAYLOAD_TRANSFER, payload_transfer));
}
ConstPtr<ByteArray> OfflineFrames::forControlPayloadTransferFrame(
const PayloadTransferFrame::PayloadHeader &header,
const PayloadTransferFrame::ControlMessage &control) {
Ptr<PayloadTransferFrame> payload_transfer(new PayloadTransferFrame());
payload_transfer->set_packet_type(PayloadTransferFrame::CONTROL);
*payload_transfer->mutable_payload_header() = header;
*payload_transfer->mutable_control_message() = control;
return toBytes(newOfflineFrame(V1Frame::PAYLOAD_TRANSFER, payload_transfer));
}
ConstPtr<ByteArray> OfflineFrames::
forWifiHotspotUpgradePathAvailableBandwidthUpgradeNegotiationEvent(
const std::string &ssid, const std::string &password,
std::int32_t port) {
BandwidthUpgradeNegotiationFrame::UpgradePathInfo::WifiHotspotCredentials
*wifi_hotspot_credentials = new BandwidthUpgradeNegotiationFrame::
UpgradePathInfo::WifiHotspotCredentials();
wifi_hotspot_credentials->set_ssid(ssid);
wifi_hotspot_credentials->set_password(password);
wifi_hotspot_credentials->set_port(port);
BandwidthUpgradeNegotiationFrame::UpgradePathInfo *upgrade_path_info =
new BandwidthUpgradeNegotiationFrame::UpgradePathInfo();
upgrade_path_info->set_medium(
BandwidthUpgradeNegotiationFrame::UpgradePathInfo::WIFI_HOTSPOT);
upgrade_path_info->set_allocated_wifi_hotspot_credentials(
wifi_hotspot_credentials);
Ptr<BandwidthUpgradeNegotiationFrame> bandwidth_upgrade_negotiation(
new BandwidthUpgradeNegotiationFrame());
bandwidth_upgrade_negotiation->set_event_type(
BandwidthUpgradeNegotiationFrame::UPGRADE_PATH_AVAILABLE);
bandwidth_upgrade_negotiation->set_allocated_upgrade_path_info(
upgrade_path_info);
return toBytes(newOfflineFrame(V1Frame::BANDWIDTH_UPGRADE_NEGOTIATION,
bandwidth_upgrade_negotiation));
}
ConstPtr<ByteArray>
OfflineFrames::forLastWriteToPriorChannelBandwidthUpgradeNegotiationEvent() {
Ptr<BandwidthUpgradeNegotiationFrame> bandwidth_upgrade_negotiation(
new BandwidthUpgradeNegotiationFrame());
bandwidth_upgrade_negotiation->set_event_type(
BandwidthUpgradeNegotiationFrame::LAST_WRITE_TO_PRIOR_CHANNEL);
return toBytes(newOfflineFrame(V1Frame::BANDWIDTH_UPGRADE_NEGOTIATION,
bandwidth_upgrade_negotiation));
}
ConstPtr<ByteArray>
OfflineFrames::forSafeToClosePriorChannelBandwidthUpgradeNegotiationEvent() {
Ptr<BandwidthUpgradeNegotiationFrame> bandwidth_upgrade_negotiation(
new BandwidthUpgradeNegotiationFrame());
bandwidth_upgrade_negotiation->set_event_type(
BandwidthUpgradeNegotiationFrame::SAFE_TO_CLOSE_PRIOR_CHANNEL);
return toBytes(newOfflineFrame(V1Frame::BANDWIDTH_UPGRADE_NEGOTIATION,
bandwidth_upgrade_negotiation));
}
ConstPtr<ByteArray>
OfflineFrames::forClientIntroductionBandwidthUpgradeNegotiationEvent(
const std::string &endpoint_id) {
BandwidthUpgradeNegotiationFrame::ClientIntroduction *client_introduction =
new BandwidthUpgradeNegotiationFrame::ClientIntroduction();
client_introduction->set_endpoint_id(endpoint_id);
Ptr<BandwidthUpgradeNegotiationFrame> bandwidth_upgrade_negotiation(
new BandwidthUpgradeNegotiationFrame());
bandwidth_upgrade_negotiation->set_event_type(
BandwidthUpgradeNegotiationFrame::CLIENT_INTRODUCTION);
bandwidth_upgrade_negotiation->set_allocated_client_introduction(
client_introduction);
return toBytes(newOfflineFrame(V1Frame::BANDWIDTH_UPGRADE_NEGOTIATION,
bandwidth_upgrade_negotiation));
}
ConstPtr<ByteArray> OfflineFrames::forKeepAlive() {
Ptr<KeepAliveFrame> keep_alive_frame(new KeepAliveFrame());
return toBytes(newOfflineFrame(V1Frame::KEEP_ALIVE, keep_alive_frame));
}
ConnectionRequestFrame::Medium OfflineFrames::mediumToConnectionRequestMedium(
proto::connections::Medium medium) {
switch (medium) {
case proto::connections::MDNS:
return ConnectionRequestFrame::MDNS;
case proto::connections::BLUETOOTH:
return ConnectionRequestFrame::BLUETOOTH;
case proto::connections::WIFI_HOTSPOT:
return ConnectionRequestFrame::WIFI_HOTSPOT;
case proto::connections::BLE:
return ConnectionRequestFrame::BLE;
case proto::connections::WIFI_LAN:
return ConnectionRequestFrame::WIFI_LAN;
default:
return ConnectionRequestFrame::UNKNOWN_MEDIUM;
}
}
proto::connections::Medium OfflineFrames::connectionRequestMediumToMedium(
ConnectionRequestFrame::Medium medium) {
switch (medium) {
case ConnectionRequestFrame::MDNS:
return proto::connections::Medium::MDNS;
case ConnectionRequestFrame::BLUETOOTH:
return proto::connections::Medium::BLUETOOTH;
case ConnectionRequestFrame::WIFI_HOTSPOT:
return proto::connections::Medium::WIFI_HOTSPOT;
case ConnectionRequestFrame::BLE:
return proto::connections::Medium::BLE;
case ConnectionRequestFrame::WIFI_LAN:
return proto::connections::Medium::WIFI_LAN;
default:
return proto::connections::Medium::UNKNOWN_MEDIUM;
}
}
std::vector<proto::connections::Medium>
OfflineFrames::connectionRequestMediumsToMediums(
const ConnectionRequestFrame &connection_request_frame) {
std::vector<proto::connections::Medium> result;
for (size_t i = 0; i < connection_request_frame.mediums_size(); i++) {
result.push_back(
connectionRequestMediumToMedium(connection_request_frame.mediums(i)));
}
return result;
}
} // namespace connections
} // namespace nearby
} // namespace location