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Cleanup NWM_UDS::SendTo
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commit
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1 changed files with 33 additions and 25 deletions
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@ -9,6 +9,7 @@
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#include <list>
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#include <map>
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#include <mutex>
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#include <optional>
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#include <unordered_map>
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#include <vector>
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#include <cryptopp/osrng.h>
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@ -103,13 +104,16 @@ static std::mutex beacon_mutex;
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// Number of beacons to store before we start dropping the old ones.
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// TODO(Subv): Find a more accurate value for this limit.
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constexpr std::size_t MaxBeaconFrames = 15;
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static constexpr std::size_t MaxBeaconFrames = 15;
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// List of the last <MaxBeaconFrames> beacons received from the network.
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static std::list<Network::WifiPacket> received_beacons;
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// Network node id used when a SecureData packet is addressed to every connected node.
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constexpr u16 BroadcastNetworkNodeId = 0xFFFF;
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static constexpr u16 BroadcastNetworkNodeId = 0xFFFF;
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// The Host has always dest_node_id 1
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static constexpr u16 HostDestNodeId = 1;
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/**
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* Returns a list of received 802.11 beacon frames from the specified sender since the last call.
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@ -600,6 +604,26 @@ void OnWifiPacketReceived(const Network::WifiPacket& packet) {
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}
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}
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static std::optional<Network::MacAddress> GetNodeMacAddress(u16 dest_node_id, u8 flags) {
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constexpr u8 BroadcastFlag = 0x2;
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if ((flags & BroadcastFlag) || dest_node_id == BroadcastNetworkNodeId) {
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// Broadcast
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return Network::BroadcastMac;
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} else if (dest_node_id == HostDestNodeId) {
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// Destination is host
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return network_info.host_mac_address;
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}
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// Destination is a specific client
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auto destination =
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std::find_if(node_map.begin(), node_map.end(), [dest_node_id](const auto& node) {
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return node.second.node_id == dest_node_id && node.second.connected;
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});
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if (destination == node_map.end()) {
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return {};
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}
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return destination->first;
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}
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void NWM_UDS::Shutdown(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp(ctx, 0x03, 0, 0);
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@ -1060,31 +1084,15 @@ void NWM_UDS::SendTo(Kernel::HLERequestContext& ctx) {
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return;
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}
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Network::MacAddress dest_address;
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if (flags >> 2) {
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LOG_ERROR(Service_NWM, "Unexpected flags 0x{:02X}", flags);
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}
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if ((flags & (0x1 << 1)) || dest_node_id == 0xFFFF) {
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// Broadcast
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dest_address = Network::BroadcastMac;
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} else if (dest_node_id != 1) {
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// Send to specific client
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auto destination =
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std::find_if(node_map.begin(), node_map.end(), [dest_node_id](const auto& node) {
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return node.second.node_id == dest_node_id && node.second.connected;
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});
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if (destination == node_map.end()) {
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LOG_ERROR(Service_NWM, "tried to send packet to unknown dest id {}", dest_node_id);
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rb.Push(ResultCode(ErrorDescription::NotFound, ErrorModule::UDS,
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ErrorSummary::WrongArgument, ErrorLevel::Status));
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return;
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}
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dest_address = destination->first;
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} else {
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// Send message to host
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dest_address = network_info.host_mac_address;
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auto dest_address = GetNodeMacAddress(dest_node_id, flags);
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if (!dest_address) {
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rb.Push(ResultCode(ErrorDescription::NotFound, ErrorModule::UDS,
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ErrorSummary::WrongArgument, ErrorLevel::Status));
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return;
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}
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constexpr std::size_t MaxSize = 0x5C6;
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@ -1100,12 +1108,12 @@ void NWM_UDS::SendTo(Kernel::HLERequestContext& ctx) {
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GenerateDataPayload(input_buffer, data_channel, dest_node_id,
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connection_status.network_node_id, sequence_number);
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// TODO(B3N30): Retrieve the MAC address of the dest_node_id and our own to encrypt
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// TODO(B3N30): Use the MAC address of the dest_node_id and our own to encrypt
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// and encapsulate the payload.
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Network::WifiPacket packet;
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packet.destination_address = dest_address;
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packet.destination_address = *dest_address;
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packet.channel = network_channel;
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packet.data = std::move(data_payload);
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packet.type = Network::WifiPacket::PacketType::Data;
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