mirror of https://github.com/infosecn1nja/C3.git
Add QualityOfService PacketSplitter
parent
69282372d6
commit
8fee6a5fe2
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@ -92,22 +92,14 @@ namespace FSecure::C3::Linter
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void MockDeviceBridge::Send(ByteView blob)
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{
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auto oryginalSize = static_cast<uint32_t>(blob.size());
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auto messageId = m_QoS.GetOutgouingPacketId();
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auto chunkId = uint32_t{ 0 };
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auto packetSplitter = m_QoS.GetPacketSplitter(blob);
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for (auto noProgressCounter = 0; noProgressCounter < 10; ++noProgressCounter)
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{
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auto data = ByteVector{}.Write(messageId, chunkId, oryginalSize).Concat(blob);
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auto sent = GetDevice()->OnSendToChannelInternal(data);
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if (sent >= QualityOfService::s_MinFrameSize || sent == data.size())
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{
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chunkId++;
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auto sent = GetDevice()->OnSendToChannelInternal(packetSplitter.NextChunk());
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if (packetSplitter.Update(sent))
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noProgressCounter = 0;
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blob.remove_prefix(sent - QualityOfService::s_HeaderSize);
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}
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if (blob.empty())
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if (!packetSplitter.HasMore())
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return;
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}
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@ -70,21 +70,9 @@ void FSecure::C3::Core::DeviceBridge::OnPassNetworkPacket(ByteView packet)
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return;
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}
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auto oryginalSize = static_cast<uint32_t>(packet.size());
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auto messageId = m_QoS.GetOutgouingPacketId();
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uint32_t chunkId = 0u;
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while (!packet.empty())
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{
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auto data = ByteVector{}.Write(messageId, chunkId, oryginalSize).Concat(packet);
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auto sent = GetDevice()->OnSendToChannelInternal(data);
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if (sent >= QualityOfService::s_MinFrameSize || sent == data.size()) // if this condition were not channel must resend data.
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{
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chunkId++;
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packet.remove_prefix(sent - QualityOfService::s_HeaderSize);
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}
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}
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auto packetSplitter = m_QoS.GetPacketSplitter(packet);
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while (packetSplitter.HasMore())
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packetSplitter.Update(GetDevice()->OnSendToChannelInternal(packetSplitter.NextChunk()));
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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@ -24,7 +24,7 @@ FSecure::ByteVector FSecure::C3::QualityOfService::GetNextPacket()
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////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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void FSecure::C3::QualityOfService::PushReceivedChunk(ByteView chunkWithHeader)
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{
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if (chunkWithHeader.size() < QualityOfService::s_HeaderSize) // Data is to short to even be chunk of packet.
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if (chunkWithHeader.size() <= QualityOfService::s_HeaderSize) // Data is to short to even be chunk of packet.
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return; // skip this chunk. there is nothing that can be done with it. If sender knows it pushed chunk to short it will retransmit it.
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auto [mId, cId, expectedSize] = chunkWithHeader.Read<uint32_t, uint32_t, uint32_t>();
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@ -41,6 +41,11 @@ void FSecure::C3::QualityOfService::PushReceivedChunk(uint32_t packetId, uint32_
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it->second.PushNextChunk(chunkId, expectedSize, ByteVector{ chunk });
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}
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FSecure::C3::PacketSplitter FSecure::C3::QualityOfService::GetPacketSplitter(ByteView data)
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{
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return { data, GetOutgouingPacketId() };
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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FSecure::C3::QualityOfService::Packet::Packet(uint32_t chunkId, uint32_t expectedSize, ByteVector chunk)
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: m_ExpectedSize(expectedSize)
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@ -96,3 +101,30 @@ bool FSecure::C3::QualityOfService::Packet::IsReady()
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return m_Size == m_ExpectedSize;
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}
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FSecure::C3::PacketSplitter::PacketSplitter(ByteView data, uint32_t id)
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: m_Data{ data }, m_OryginalDataSize{ static_cast<uint32_t>(data.size()) }, m_PacketId{ id }, m_ChunkId{ 0 }
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{
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}
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bool FSecure::C3::PacketSplitter::Update(size_t sent)
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{
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auto dataSent = sent - QualityOfService::s_HeaderSize;
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if (sent < QualityOfService::s_MinFrameSize && dataSent != m_Data.size() )
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return false;
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++m_ChunkId;
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m_Data.remove_prefix(dataSent);
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return true;
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}
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FSecure::ByteVector FSecure::C3::PacketSplitter::NextChunk() const
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{
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return ByteVector::Create(m_PacketId, m_ChunkId, m_OryginalDataSize).Concat(m_Data);
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}
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bool FSecure::C3::PacketSplitter::HasMore() const
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{
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return !m_Data.empty();
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}
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@ -6,6 +6,22 @@
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namespace FSecure::C3
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{
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class PacketSplitter
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{
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public:
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PacketSplitter(ByteView data, uint32_t id);
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bool Update(size_t sent);
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ByteVector NextChunk() const;
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bool HasMore() const;
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private:
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ByteView m_Data;
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uint32_t m_OryginalDataSize;
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uint32_t m_PacketId;
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uint32_t m_ChunkId;
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};
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/// A structure that handles Quality of Service of C3 protocols.
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class QualityOfService
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{
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@ -45,6 +61,12 @@ namespace FSecure::C3
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/// Used to mark order to outgoing packets.
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uint32_t m_OutgouingPacketId = 0u;
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/// Map of received packets. Packets could be not complete, or there could be packet missing.
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std::map<uint32_t, Packet> m_ReciveQueue;
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/// Returns next ids for packets.
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uint32_t GetOutgouingPacketId();
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/// Used to find order in incoming packets. GetNextPacket will hold ready packets if there was gap in numbering.
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// removed, manual route table management means that channels should not wait for missing packets. It will be introduced at the edges of network
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//uint32_t m_IncomigPacketId = 0u;
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@ -57,9 +79,6 @@ namespace FSecure::C3
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static constexpr size_t s_MinFrameSize = 64U;
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static constexpr size_t s_MinBodySize = s_MinFrameSize - s_HeaderSize;
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/// Map of received packets. Packets could be not complete, or there could be packet missing.
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std::map<uint32_t, Packet> m_ReciveQueue;
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/// Get next packet.
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/// @returns ByteVector whole packet when it's ready or empty buffer otherwise.
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ByteVector GetNextPacket();
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@ -75,8 +94,7 @@ namespace FSecure::C3
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/// @param chunk chunk of packet.
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void PushReceivedChunk(uint32_t packetId, uint32_t chunkId, uint32_t expectedSize, ByteView chunk);
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/// Returns next ids for packets.
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uint32_t GetOutgouingPacketId();
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PacketSplitter GetPacketSplitter(ByteView data);
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};
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}
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