service/nwm_uds: Add NetworkStatusChangeReason (#5377)
fixes https://github.com/citra-emu/citra/issues/3975
This commit is contained in:
parent
06a9f69d88
commit
9d5ae8e1c2
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@ -124,7 +124,7 @@ void NWM_UDS::BroadcastNodeMap() {
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void NWM_UDS::HandleNodeMapPacket(const Network::WifiPacket& packet) {
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void NWM_UDS::HandleNodeMapPacket(const Network::WifiPacket& packet) {
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status == static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status == NetworkStatus::ConnectedAsHost) {
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LOG_DEBUG(Service_NWM, "Ignored NodeMapPacket since connection_status is host");
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LOG_DEBUG(Service_NWM, "Ignored NodeMapPacket since connection_status is host");
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return;
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return;
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}
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}
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@ -170,10 +170,10 @@ void NWM_UDS::HandleAssociationResponseFrame(const Network::WifiPacket& packet)
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"Could not join network");
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"Could not join network");
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{
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{
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u32>(NetworkStatus::Connecting)) {
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if (connection_status.status != NetworkStatus::Connecting) {
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LOG_DEBUG(Service_NWM,
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LOG_DEBUG(Service_NWM,
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"Ignored AssociationResponseFrame because connection status is {}",
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"Ignored AssociationResponseFrame because connection status is {}",
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connection_status.status);
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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}
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}
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@ -196,9 +196,9 @@ void NWM_UDS::HandleEAPoLPacket(const Network::WifiPacket& packet) {
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std::lock(hle_lock, lock);
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std::lock(hle_lock, lock);
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if (GetEAPoLFrameType(packet.data) == EAPoLStartMagic) {
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if (GetEAPoLFrameType(packet.data) == EAPoLStartMagic) {
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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LOG_DEBUG(Service_NWM, "Connection sequence aborted, because connection status is {}",
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LOG_DEBUG(Service_NWM, "Connection sequence aborted, because connection status is {}",
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connection_status.status);
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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@ -255,7 +255,7 @@ void NWM_UDS::HandleEAPoLPacket(const Network::WifiPacket& packet) {
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SendPacket(eapol_logoff);
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SendPacket(eapol_logoff);
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connection_status_event->Signal();
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connection_status_event->Signal();
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} else if (connection_status.status == static_cast<u32>(NetworkStatus::Connecting)) {
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} else if (connection_status.status == NetworkStatus::Connecting) {
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auto logoff = ParseEAPoLLogoffFrame(packet.data);
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auto logoff = ParseEAPoLLogoffFrame(packet.data);
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network_info.host_mac_address = packet.transmitter_address;
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network_info.host_mac_address = packet.transmitter_address;
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@ -282,14 +282,14 @@ void NWM_UDS::HandleEAPoLPacket(const Network::WifiPacket& packet) {
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}
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}
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// We're now connected, signal the application
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// We're now connected, signal the application
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connection_status.status = static_cast<u32>(NetworkStatus::ConnectedAsClient);
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connection_status.status = NetworkStatus::ConnectedAsClient;
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connection_status.disconnect_reason = static_cast<u32>(DisconnectStatus::Connected);
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connection_status.status_change_reason = NetworkStatusChangeReason::ConnectionEstablished;
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// Some games require ConnectToNetwork to block, for now it doesn't
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// Some games require ConnectToNetwork to block, for now it doesn't
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// If blocking is implemented this lock needs to be changed,
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// If blocking is implemented this lock needs to be changed,
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// otherwise it might cause deadlocks
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// otherwise it might cause deadlocks
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connection_status_event->Signal();
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connection_status_event->Signal();
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connection_event->Signal();
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connection_event->Signal();
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} else if (connection_status.status == static_cast<u32>(NetworkStatus::ConnectedAsClient)) {
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} else if (connection_status.status == NetworkStatus::ConnectedAsClient) {
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// TODO(B3N30): Remove that section and send/receive a proper connection_status packet
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// TODO(B3N30): Remove that section and send/receive a proper connection_status packet
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// On a 3ds this packet wouldn't be addressed to already connected clients
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// On a 3ds this packet wouldn't be addressed to already connected clients
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// We use this information because in the current implementation the host
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// We use this information because in the current implementation the host
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@ -328,11 +328,11 @@ void NWM_UDS::HandleSecureDataPacket(const Network::WifiPacket& packet) {
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std::unique_lock lock(connection_status_mutex, std::defer_lock);
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std::unique_lock lock(connection_status_mutex, std::defer_lock);
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std::lock(hle_lock, lock);
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std::lock(hle_lock, lock);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost) &&
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if (connection_status.status != NetworkStatus::ConnectedAsHost &&
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connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsClient)) {
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connection_status.status != NetworkStatus::ConnectedAsClient) {
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// TODO(B3N30): Handle spectators
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// TODO(B3N30): Handle spectators
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LOG_DEBUG(Service_NWM, "Ignored SecureDataPacket, because connection status is {}",
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LOG_DEBUG(Service_NWM, "Ignored SecureDataPacket, because connection status is {}",
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connection_status.status);
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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@ -347,12 +347,12 @@ void NWM_UDS::HandleSecureDataPacket(const Network::WifiPacket& packet) {
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// However, we might have received this packet due to a broadcast from the host, in that
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// However, we might have received this packet due to a broadcast from the host, in that
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// case just ignore it.
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// case just ignore it.
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if (packet.destination_address != Network::BroadcastMac &&
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if (packet.destination_address != Network::BroadcastMac &&
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connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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connection_status.status != NetworkStatus::ConnectedAsHost) {
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LOG_ERROR(Service_NWM, "Received packet addressed to others but we're not a host");
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LOG_ERROR(Service_NWM, "Received packet addressed to others but we're not a host");
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return;
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return;
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}
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}
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if (connection_status.status == static_cast<u32>(NetworkStatus::ConnectedAsHost) &&
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if (connection_status.status == NetworkStatus::ConnectedAsHost &&
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secure_data.dest_node_id != BroadcastNetworkNodeId) {
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secure_data.dest_node_id != BroadcastNetworkNodeId) {
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// Broadcast the packet so the right receiver can get it.
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// Broadcast the packet so the right receiver can get it.
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// TODO(B3N30): Is there a flag that makes this kind of routing be unicast instead of
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// TODO(B3N30): Is there a flag that makes this kind of routing be unicast instead of
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@ -390,7 +390,7 @@ void NWM_UDS::StartConnectionSequence(const MacAddress& server) {
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WifiPacket auth_request;
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WifiPacket auth_request;
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{
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{
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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connection_status.status = static_cast<u32>(NetworkStatus::Connecting);
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connection_status.status = NetworkStatus::Connecting;
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// TODO(Subv): Handle timeout.
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// TODO(Subv): Handle timeout.
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@ -410,9 +410,9 @@ void NWM_UDS::SendAssociationResponseFrame(const MacAddress& address) {
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{
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{
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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LOG_ERROR(Service_NWM, "Connection sequence aborted, because connection status is {}",
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LOG_ERROR(Service_NWM, "Connection sequence aborted, because connection status is {}",
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connection_status.status);
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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@ -436,10 +436,10 @@ void NWM_UDS::HandleAuthenticationFrame(const Network::WifiPacket& packet) {
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WifiPacket auth_request;
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WifiPacket auth_request;
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{
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{
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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LOG_ERROR(Service_NWM,
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LOG_ERROR(Service_NWM,
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"Connection sequence aborted, because connection status is {}",
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"Connection sequence aborted, because connection status is {}",
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connection_status.status);
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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if (node_map.find(packet.transmitter_address) != node_map.end()) {
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if (node_map.find(packet.transmitter_address) != node_map.end()) {
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@ -472,7 +472,7 @@ void NWM_UDS::HandleDeauthenticationFrame(const Network::WifiPacket& packet) {
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std::unique_lock hle_lock(HLE::g_hle_lock, std::defer_lock);
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std::unique_lock hle_lock(HLE::g_hle_lock, std::defer_lock);
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std::unique_lock lock(connection_status_mutex, std::defer_lock);
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std::unique_lock lock(connection_status_mutex, std::defer_lock);
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std::lock(hle_lock, lock);
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std::lock(hle_lock, lock);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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LOG_ERROR(Service_NWM, "Got deauthentication frame but we are not the host");
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LOG_ERROR(Service_NWM, "Got deauthentication frame but we are not the host");
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return;
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return;
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}
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}
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@ -667,8 +667,7 @@ ResultVal<std::shared_ptr<Kernel::Event>> NWM_UDS::Initialize(
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// Reset the connection status, it contains all zeros after initialization,
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// Reset the connection status, it contains all zeros after initialization,
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// except for the actual status value.
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// except for the actual status value.
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connection_status = {};
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connection_status = {};
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connection_status.disconnect_reason = static_cast<u32>(DisconnectStatus::NotConnected);
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connection_status.status = NetworkStatus::NotConnected;
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connection_status.status = static_cast<u32>(NetworkStatus::NotConnected);
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node_info.clear();
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node_info.clear();
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node_info.push_back(current_node);
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node_info.push_back(current_node);
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channel_data.clear();
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channel_data.clear();
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@ -856,8 +855,8 @@ ResultCode NWM_UDS::BeginHostingNetwork(const u8* network_info_buffer,
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// The real UDS module throws a fatal error if this assert fails.
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// The real UDS module throws a fatal error if this assert fails.
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ASSERT_MSG(network_info.max_nodes > 1, "Trying to host a network of only one member.");
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ASSERT_MSG(network_info.max_nodes > 1, "Trying to host a network of only one member.");
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connection_status.status = static_cast<u32>(NetworkStatus::ConnectedAsHost);
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connection_status.status = NetworkStatus::ConnectedAsHost;
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connection_status.disconnect_reason = static_cast<u32>(DisconnectStatus::Connected);
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connection_status.status_change_reason = NetworkStatusChangeReason::ConnectionEstablished;
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// Ensure the application data size is less than the maximum value.
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// Ensure the application data size is less than the maximum value.
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ASSERT_MSG(network_info.application_data_size <= ApplicationDataSize,
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ASSERT_MSG(network_info.application_data_size <= ApplicationDataSize,
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@ -965,7 +964,7 @@ void NWM_UDS::EjectClient(Kernel::HLERequestContext& ctx) {
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}
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}
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u8>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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// Only the host can kick people.
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// Only the host can kick people.
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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ErrorSummary::InvalidState, ErrorLevel::Usage));
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ErrorSummary::InvalidState, ErrorLevel::Usage));
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@ -1016,11 +1015,12 @@ void NWM_UDS::DestroyNetwork(Kernel::HLERequestContext& ctx) {
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// Only a host can destroy
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// Only a host can destroy
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u8>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status != NetworkStatus::ConnectedAsHost) {
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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rb.Push(ResultCode(ErrCodes::WrongStatus, ErrorModule::UDS, ErrorSummary::InvalidState,
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rb.Push(ResultCode(ErrCodes::WrongStatus, ErrorModule::UDS, ErrorSummary::InvalidState,
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ErrorLevel::Status));
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ErrorLevel::Status));
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LOG_WARNING(Service_NWM, "called with status {}", connection_status.status);
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LOG_WARNING(Service_NWM, "called with status {}",
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static_cast<u32>(connection_status.status));
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return;
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return;
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}
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}
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@ -1028,7 +1028,7 @@ void NWM_UDS::DestroyNetwork(Kernel::HLERequestContext& ctx) {
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u16_le tmp_node_id = connection_status.network_node_id;
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u16_le tmp_node_id = connection_status.network_node_id;
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connection_status = {};
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connection_status = {};
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connection_status.status = static_cast<u32>(NetworkStatus::NotConnected);
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connection_status.status = NetworkStatus::NotConnected;
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connection_status.network_node_id = tmp_node_id;
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connection_status.network_node_id = tmp_node_id;
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node_map.clear();
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node_map.clear();
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connection_status_event->Signal();
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connection_status_event->Signal();
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@ -1053,11 +1053,11 @@ void NWM_UDS::DisconnectNetwork(Kernel::HLERequestContext& ctx) {
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WifiPacket deauth;
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WifiPacket deauth;
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{
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{
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status == static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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if (connection_status.status == NetworkStatus::ConnectedAsHost) {
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// A real 3ds makes strange things here. We do the same
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// A real 3ds makes strange things here. We do the same
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u16_le tmp_node_id = connection_status.network_node_id;
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u16_le tmp_node_id = connection_status.network_node_id;
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connection_status = {};
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connection_status = {};
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connection_status.status = static_cast<u32>(NetworkStatus::ConnectedAsHost);
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connection_status.status = NetworkStatus::ConnectedAsHost;
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connection_status.network_node_id = tmp_node_id;
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connection_status.network_node_id = tmp_node_id;
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node_map.clear();
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node_map.clear();
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LOG_DEBUG(Service_NWM, "called as a host");
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LOG_DEBUG(Service_NWM, "called as a host");
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@ -1067,7 +1067,7 @@ void NWM_UDS::DisconnectNetwork(Kernel::HLERequestContext& ctx) {
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}
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}
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u16_le tmp_node_id = connection_status.network_node_id;
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u16_le tmp_node_id = connection_status.network_node_id;
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connection_status = {};
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connection_status = {};
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connection_status.status = static_cast<u32>(NetworkStatus::NotConnected);
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connection_status.status = NetworkStatus::NotConnected;
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connection_status.network_node_id = tmp_node_id;
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connection_status.network_node_id = tmp_node_id;
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node_map.clear();
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node_map.clear();
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connection_status_event->Signal();
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connection_status_event->Signal();
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@ -1107,8 +1107,8 @@ void NWM_UDS::SendTo(Kernel::HLERequestContext& ctx) {
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsClient) &&
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if (connection_status.status != NetworkStatus::ConnectedAsClient &&
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connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost)) {
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connection_status.status != NetworkStatus::ConnectedAsHost) {
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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ErrorSummary::InvalidState, ErrorLevel::Status));
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ErrorSummary::InvalidState, ErrorLevel::Status));
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return;
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return;
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@ -1179,9 +1179,9 @@ void NWM_UDS::PullPacket(Kernel::HLERequestContext& ctx) {
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u32 buff_size = std::min<u32>(max_out_buff_size_aligned, 0x172) << 2;
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u32 buff_size = std::min<u32>(max_out_buff_size_aligned, 0x172) << 2;
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost) &&
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if (connection_status.status != NetworkStatus::ConnectedAsHost &&
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connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsClient) &&
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connection_status.status != NetworkStatus::ConnectedAsClient &&
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connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsSpectator)) {
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connection_status.status != NetworkStatus::ConnectedAsSpectator) {
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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IPC::RequestBuilder rb = rp.MakeBuilder(1, 0);
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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rb.Push(ResultCode(ErrorDescription::NotAuthorized, ErrorModule::UDS,
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ErrorSummary::InvalidState, ErrorLevel::Status));
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ErrorSummary::InvalidState, ErrorLevel::Status));
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@ -1242,7 +1242,7 @@ void NWM_UDS::GetChannel(Kernel::HLERequestContext& ctx) {
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IPC::RequestBuilder rb = rp.MakeBuilder(2, 0);
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IPC::RequestBuilder rb = rp.MakeBuilder(2, 0);
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std::lock_guard lock(connection_status_mutex);
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std::lock_guard lock(connection_status_mutex);
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bool is_connected = connection_status.status != static_cast<u32>(NetworkStatus::NotConnected);
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bool is_connected = connection_status.status != NetworkStatus::NotConnected;
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u8 channel = is_connected ? network_channel : 0;
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u8 channel = is_connected ? network_channel : 0;
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@ -1445,7 +1445,7 @@ void NWM_UDS::DecryptBeaconData(Kernel::HLERequestContext& ctx) {
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// Sends a 802.11 beacon frame with information about the current network.
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// Sends a 802.11 beacon frame with information about the current network.
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void NWM_UDS::BeaconBroadcastCallback(std::uintptr_t user_data, s64 cycles_late) {
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void NWM_UDS::BeaconBroadcastCallback(std::uintptr_t user_data, s64 cycles_late) {
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// Don't do anything if we're not actually hosting a network
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// Don't do anything if we're not actually hosting a network
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if (connection_status.status != static_cast<u32>(NetworkStatus::ConnectedAsHost))
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if (connection_status.status != NetworkStatus::ConnectedAsHost)
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return;
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return;
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std::vector<u8> frame = GenerateBeaconFrame(network_info, node_info);
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std::vector<u8> frame = GenerateBeaconFrame(network_info, node_info);
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@ -65,7 +65,7 @@ static_assert(sizeof(NodeInfo) == 40, "NodeInfo has incorrect size.");
|
||||||
|
|
||||||
using NodeList = std::vector<NodeInfo>;
|
using NodeList = std::vector<NodeInfo>;
|
||||||
|
|
||||||
enum class NetworkStatus {
|
enum class NetworkStatus : u32 {
|
||||||
NotConnected = 3,
|
NotConnected = 3,
|
||||||
ConnectedAsHost = 6,
|
ConnectedAsHost = 6,
|
||||||
Connecting = 7,
|
Connecting = 7,
|
||||||
|
@ -73,15 +73,15 @@ enum class NetworkStatus {
|
||||||
ConnectedAsSpectator = 10,
|
ConnectedAsSpectator = 10,
|
||||||
};
|
};
|
||||||
|
|
||||||
enum class DisconnectStatus {
|
enum class NetworkStatusChangeReason : u32 {
|
||||||
Connected = 1,
|
None = 0,
|
||||||
NotConnected = 2,
|
ConnectionEstablished = 1,
|
||||||
// TODO(B3N30): Figure out the other values
|
ConnectionLost = 4,
|
||||||
};
|
};
|
||||||
|
|
||||||
struct ConnectionStatus {
|
struct ConnectionStatus {
|
||||||
u32_le status;
|
enum_le<NetworkStatus> status;
|
||||||
u32_le disconnect_reason;
|
enum_le<NetworkStatusChangeReason> status_change_reason;
|
||||||
u16_le network_node_id;
|
u16_le network_node_id;
|
||||||
u16_le changed_nodes;
|
u16_le changed_nodes;
|
||||||
u16_le nodes[UDSMaxNodes];
|
u16_le nodes[UDSMaxNodes];
|
||||||
|
|
Reference in New Issue