// // Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018 // // Distributed under the Boost Software License, Version 1.0. (See accompanying // file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt) // #pragma once #include "td/mtproto/IStreamTransport.h" #include "td/utils/AesCtrByteFlow.h" #include "td/utils/buffer.h" #include "td/utils/ByteFlow.h" #include "td/utils/common.h" #include "td/utils/crypto.h" #include "td/utils/port/Fd.h" #include "td/utils/Status.h" namespace td { namespace mtproto { namespace tcp { class ITransport { // Writes packet into message. // Returns 0 if everything is ok, and [expected_size] otherwise. // There is no sense to call this function when [stream->size > expected_size] // // (tpc is stream-base protocol. So the input message is a stream, not a slice) virtual size_t read_from_stream(ChainBufferReader *stream, BufferSlice *message, uint32 *quick_ack) = 0; // Writes header inplace. virtual void write_prepare_inplace(BufferWriter *message, bool quick_ack) = 0; // Writes first several bytes into output stream. virtual void init_output_stream(ChainBufferWriter *stream) = 0; virtual bool support_quick_ack() const = 0; public: ITransport() = default; ITransport(const ITransport &) = delete; ITransport &operator=(const ITransport &) = delete; ITransport(ITransport &&) = delete; ITransport &operator=(ITransport &&) = delete; virtual ~ITransport() = default; }; class AbridgedTransport : public ITransport { public: size_t read_from_stream(ChainBufferReader *stream, BufferSlice *message, uint32 *quick_ack) override; void write_prepare_inplace(BufferWriter *message, bool quick_ack) override; void init_output_stream(ChainBufferWriter *stream) override; bool support_quick_ack() const override { return false; } }; class IntermediateTransport : ITransport { public: size_t read_from_stream(ChainBufferReader *stream, BufferSlice *message, uint32 *quick_ack) override; void write_prepare_inplace(BufferWriter *message, bool quick_ack) override; void init_output_stream(ChainBufferWriter *stream) override; bool support_quick_ack() const override { return true; } }; using TransportImpl = IntermediateTransport; class OldTransport : public IStreamTransport { public: OldTransport() = default; Result read_next(BufferSlice *message, uint32 *quick_ack) override TD_WARN_UNUSED_RESULT { return impl_.read_from_stream(input_, message, quick_ack); } bool support_quick_ack() const override { return impl_.support_quick_ack(); } void write(BufferWriter &&message, bool quick_ack) override { impl_.write_prepare_inplace(&message, quick_ack); output_->append(message.as_buffer_slice()); } void init(ChainBufferReader *input, ChainBufferWriter *output) override { input_ = input; output_ = output; impl_.init_output_stream(output_); } bool can_read() const override { return true; } bool can_write() const override { return true; } size_t max_prepend_size() const override { return 4; } TransportType get_type() const override { return TransportType::Tcp; } private: TransportImpl impl_; ChainBufferReader *input_; ChainBufferWriter *output_; }; class ObfuscatedTransport : public IStreamTransport { public: ObfuscatedTransport() = default; Result read_next(BufferSlice *message, uint32 *quick_ack) override TD_WARN_UNUSED_RESULT { aes_ctr_byte_flow_.wakeup(); return impl_.read_from_stream(byte_flow_sink_.get_output(), message, quick_ack); } bool support_quick_ack() const override { return impl_.support_quick_ack(); } void write(BufferWriter &&message, bool quick_ack) override { impl_.write_prepare_inplace(&message, quick_ack); auto slice = message.as_buffer_slice(); output_state_.encrypt(slice.as_slice(), slice.as_slice()); output_->append(std::move(slice)); } void init(ChainBufferReader *input, ChainBufferWriter *output) override; bool can_read() const override { return true; } bool can_write() const override { return true; } size_t max_prepend_size() const override { return 4; } TransportType get_type() const override { return TransportType::ObfuscatedTcp; } private: TransportImpl impl_; AesCtrByteFlow aes_ctr_byte_flow_; ByteFlowSink byte_flow_sink_; ChainBufferReader *input_; // TODO: use ByteFlow? // One problem is that BufferedFd owns output_buffer_ // The other problem is that first 56 bytes must be sent unencrypted. UInt256 output_key_; AesCtrState output_state_; ChainBufferWriter *output_; }; using Transport = ObfuscatedTransport; } // namespace tcp } // namespace mtproto } // namespace td