1use std::collections::VecDeque;
2
3use bytes::BytesMut;
4use rusty_tpkt::{TpktConnection, TpktReader, TpktWriter};
5
6use crate::{
7 api::{CotpConnection, CotpError, CotpProtocolInformation, CotpReader, CotpRecvResult, CotpResponder, CotpWriter},
8 packet::{
9 connection_confirm::ConnectionConfirm,
10 connection_request::ConnectionRequest,
11 data_transfer::DataTransfer,
12 parameters::{ConnectionClass, CotpParameter, TpduSize},
13 payload::TransportProtocolDataUnit,
14 },
15 parser::packet::TransportProtocolDataUnitParser,
16 serialiser::packet::serialise,
17};
18
19pub struct TcpCotpConnection<R: TpktReader, W: TpktWriter> {
20 reader: R,
21 writer: W,
22
23 max_payload_size: usize,
24 parser: TransportProtocolDataUnitParser,
25}
26
27impl<R: TpktReader, W: TpktWriter> TcpCotpConnection<R, W> {
28 pub async fn initiate(connection: impl TpktConnection, options: CotpProtocolInformation) -> Result<TcpCotpConnection<impl TpktReader, impl TpktWriter>, CotpError> {
29 let source_reference: u16 = options.initiator_reference();
30 let parser = TransportProtocolDataUnitParser::new();
31 let (mut reader, mut writer) = connection.split().await?;
32
33 send_connection_request(&mut writer, source_reference, options).await?;
34 let connection_confirm = receive_connection_confirm(&mut reader, &parser).await?;
35 let (_, max_payload_size) = calculate_remote_size_payload(connection_confirm.parameters()).await?;
36
37 Ok(TcpCotpConnection::new(reader, writer, max_payload_size).await)
38 }
39
40 async fn new(reader: R, writer: W, max_payload_size: usize) -> TcpCotpConnection<R, W> {
41 TcpCotpConnection { reader, writer, max_payload_size, parser: TransportProtocolDataUnitParser::new() }
42 }
43}
44
45impl<R: TpktReader, W: TpktWriter> CotpConnection for TcpCotpConnection<R, W> {
46 fn get_protocol_infomation_list(&self) -> &Vec<Box<dyn rusty_tpkt::ProtocolInformation>> {
47 todo!()
48 }
49
50 async fn split(self) -> Result<(impl CotpReader, impl CotpWriter), CotpError> {
51 let reader = self.reader;
52 let writer = self.writer;
53 Ok((TcpCotpReader::new(reader, self.parser), TcpCotpWriter::new(writer, self.max_payload_size)))
54 }
55}
56
57pub struct TcpCotpAcceptor<R: TpktReader, W: TpktWriter> {
58 reader: R,
59 writer: W,
60 initiator_reference: u16,
61 max_payload_size: usize,
62 max_payload_indicator: TpduSize,
63 called_tsap_id: Option<Vec<u8>>,
64 calling_tsap_id: Option<Vec<u8>>,
65}
66
67impl<R: TpktReader, W: TpktWriter> TcpCotpAcceptor<R, W> {
68 pub async fn new(tpkt_connection: impl TpktConnection) -> Result<(TcpCotpAcceptor<impl TpktReader, impl TpktWriter>, CotpProtocolInformation), CotpError> {
69 let parser = TransportProtocolDataUnitParser::new();
70 let (mut reader, writer) = tpkt_connection.split().await?;
71
72 let connection_request = receive_connection_request(&mut reader, &parser).await?;
73 let (max_payload_indicator, max_payload_size) = calculate_remote_size_payload(connection_request.parameters()).await?;
74 verify_class_compatibility(&connection_request).await?;
75
76 let mut calling_tsap_id = None;
77 let mut called_tsap_id = None;
78 for parameter in connection_request.parameters() {
79 match parameter {
80 CotpParameter::CallingTsap(tsap_id) => calling_tsap_id = Some(tsap_id.clone()),
81 CotpParameter::CalledTsap(tsap_id) => called_tsap_id = Some(tsap_id.clone()),
82 _ => (),
83 }
84 }
85
86 Ok((
87 TcpCotpAcceptor { reader, writer, max_payload_size, max_payload_indicator, called_tsap_id: called_tsap_id.clone(), calling_tsap_id: calling_tsap_id.clone(), initiator_reference: connection_request.source_reference() },
88 CotpProtocolInformation::new(connection_request.source_reference(), 0, calling_tsap_id, called_tsap_id),
89 ))
90 }
91}
92
93impl<R: TpktReader, W: TpktWriter> CotpResponder for TcpCotpAcceptor<R, W> {
94 async fn accept(mut self, options: CotpProtocolInformation) -> Result<impl CotpConnection, CotpError> {
95 send_connection_confirm(&mut self.writer, options.responder_reference(), self.initiator_reference, self.max_payload_indicator, self.calling_tsap_id, self.called_tsap_id).await?;
96 Ok(TcpCotpConnection::new(self.reader, self.writer, self.max_payload_size).await)
97 }
98}
99
100pub struct TcpCotpReader<R: TpktReader> {
101 reader: R,
103 parser: TransportProtocolDataUnitParser,
104
105 data_buffer: BytesMut,
106}
107
108impl<R: TpktReader> TcpCotpReader<R> {
109 pub fn new(reader: R, parser: TransportProtocolDataUnitParser) -> Self {
110 Self { reader, parser, data_buffer: BytesMut::new() }
111 }
112}
113
114impl<R: TpktReader> CotpReader for TcpCotpReader<R> {
115 async fn recv(&mut self) -> Result<CotpRecvResult, CotpError> {
116 loop {
117 let raw_data = match self.reader.recv().await? {
119 None => return Ok(CotpRecvResult::Closed),
120 Some(raw_data) => raw_data,
121 };
122 let data_transfer = match self.parser.parse(raw_data.as_slice())? {
123 TransportProtocolDataUnit::ER(tpdu_error) => return Err(CotpError::ProtocolError(format!("Received an error from the remote host: {:?}", tpdu_error.reason()).into())),
125 TransportProtocolDataUnit::CR(_) => return Err(CotpError::ProtocolError("Received a Connection Request when expecting data.".into())),
126 TransportProtocolDataUnit::CC(_) => return Err(CotpError::ProtocolError("Received a Connection Config when expecting data.".into())),
127 TransportProtocolDataUnit::DR(_) => return Ok(CotpRecvResult::Closed),
128 TransportProtocolDataUnit::DT(data_transfer) => data_transfer,
129 };
130 self.data_buffer.extend_from_slice(data_transfer.user_data());
133 if data_transfer.end_of_transmission() {
134 let data = self.data_buffer.to_vec();
135 self.data_buffer.clear();
136 return Ok(CotpRecvResult::Data(data));
137 }
138 }
139 }
140}
141
142pub struct TcpCotpWriter<W: TpktWriter> {
143 writer: W,
144 max_payload_size: usize,
145 chunks: VecDeque<Vec<u8>>,
146}
147
148impl<W: TpktWriter> TcpCotpWriter<W> {
149 pub fn new(writer: W, max_payload_size: usize) -> Self {
150 Self { writer, max_payload_size, chunks: VecDeque::new() }
151 }
152}
153
154impl<W: TpktWriter> CotpWriter for TcpCotpWriter<W> {
155 async fn send(&mut self, input: &mut VecDeque<Vec<u8>>) -> Result<(), CotpError> {
156 const HEADER_LENGTH: usize = 3;
157
158 while let Some(data_item) = input.pop_front() {
159 let chunks = data_item.as_slice().chunks(self.max_payload_size - HEADER_LENGTH);
160 let chunk_count = chunks.len();
161 for (chunk_index, chunk_data) in chunks.enumerate() {
162 let end_of_transmission = chunk_index + 1 >= chunk_count;
163 let tpdu = DataTransfer::new(end_of_transmission, chunk_data);
164 let tpdu_data = serialise(&TransportProtocolDataUnit::DT(tpdu))?;
165 self.chunks.push_back(tpdu_data);
166 }
167 }
168
169 while !self.chunks.is_empty() {
170 self.writer.send(&mut self.chunks).await?;
171 }
172
173 self.writer.send(&mut self.chunks).await?;
175 Ok(())
176 }
177}
178
179async fn verify_class_compatibility(connection_request: &ConnectionRequest) -> Result<(), CotpError> {
180 let empty_set = Vec::new();
181 let class_parameters = connection_request
182 .parameters()
183 .iter()
184 .filter_map(|p| match p {
185 CotpParameter::AlternativeClassParameter(x) => Some(x),
186 _ => None,
187 })
188 .last()
189 .unwrap_or(&empty_set);
190
191 match connection_request.preferred_class() {
193 ConnectionClass::Class0 => (),
194 ConnectionClass::Class1 => (),
195 ConnectionClass::Class2 if class_parameters.contains(&&ConnectionClass::Class0) => (),
196 ConnectionClass::Class3 if class_parameters.contains(&&ConnectionClass::Class0) => (),
197 ConnectionClass::Class3 if class_parameters.contains(&&ConnectionClass::Class1) => (),
198 ConnectionClass::Class4 if class_parameters.contains(&&ConnectionClass::Class0) => (),
199 ConnectionClass::Class4 if class_parameters.contains(&&ConnectionClass::Class1) => (),
200 _ => {
201 return Err(CotpError::ProtocolError(format!("Cannot downgrade connection request to Class 0 {:?} - {:?}", connection_request.preferred_class(), class_parameters)));
202 }
203 };
204 Ok(())
205}
206
207async fn receive_connection_request(reader: &mut impl TpktReader, parser: &TransportProtocolDataUnitParser) -> Result<ConnectionRequest, CotpError> {
208 let data = match reader.recv().await {
209 Ok(Some(x)) => x,
210 Ok(None) => return Err(CotpError::ProtocolError("The connection was closed before the COTP handshake was complete.".into())),
211 Err(e) => return Err(e.into()),
212 };
213 return Ok(match parser.parse(data.as_slice())? {
214 TransportProtocolDataUnit::CR(x) => x,
215 TransportProtocolDataUnit::CC(_) => return Err(CotpError::ProtocolError("Expected connection request on handshake but got a connextion confirm".into())),
216 TransportProtocolDataUnit::DR(_) => return Err(CotpError::ProtocolError("Expected connection request on handshake but got a disconnect reqeust".into())),
217 TransportProtocolDataUnit::DT(_) => return Err(CotpError::ProtocolError("Expected connection request on handshake but got a data transfer".into())),
218 TransportProtocolDataUnit::ER(_) => return Err(CotpError::ProtocolError("Expected connection request on handshake but got a error response".into())),
219 });
220}
221
222async fn calculate_remote_size_payload(parameters: &[CotpParameter]) -> Result<(TpduSize, usize), CotpError> {
223 let parameter: &TpduSize = parameters
224 .iter()
225 .filter_map(|p| match p {
226 CotpParameter::TpduLengthParameter(x) => Some(x),
227 _ => None,
228 })
229 .last()
230 .unwrap_or(&TpduSize::Size128);
231
232 Ok(match parameter {
233 TpduSize::Size8192 => return Err(CotpError::ProtocolError("The remote side selected an 8192 bytes COTP payload but Class 0 support a maximum for 2048 bytes.".into())),
234 TpduSize::Size4096 => return Err(CotpError::ProtocolError("The remote side selected an 4096 bytes COTP payload but Class 0 support a maximum for 2048 bytes.".into())),
235 TpduSize::Unknown(x) => return Err(CotpError::ProtocolError(format!("The requested TPDU size is unknown {:?}.", x).into())),
236 TpduSize::Size128 => (TpduSize::Size128, 128),
237 TpduSize::Size256 => (TpduSize::Size256, 256),
238 TpduSize::Size512 => (TpduSize::Size512, 512),
239 TpduSize::Size1024 => (TpduSize::Size1024, 1024),
240 TpduSize::Size2048 => (TpduSize::Size2048, 2048),
241 })
242}
243
244async fn send_connection_confirm<W: TpktWriter>(writer: &mut W, source_reference: u16, destination_reference: u16, size: TpduSize, calling_tsap_id: Option<Vec<u8>>, called_tsap_id: Option<Vec<u8>>) -> Result<(), CotpError> {
245 let mut parameters = vec![CotpParameter::TpduLengthParameter(size)];
246 if let Some(tsap_id) = calling_tsap_id {
247 parameters.push(CotpParameter::CallingTsap(tsap_id));
248 }
249 if let Some(tsap_id) = called_tsap_id {
250 parameters.push(CotpParameter::CalledTsap(tsap_id));
251 }
252
253 let payload = serialise(&TransportProtocolDataUnit::CC(ConnectionConfirm::new(0, source_reference, destination_reference, ConnectionClass::Class0, vec![], parameters, &[])))?;
254 Ok(writer.send(&mut VecDeque::from_iter(vec![payload].into_iter())).await?)
255}
256
257async fn send_connection_request(writer: &mut impl TpktWriter, source_reference: u16, options: CotpProtocolInformation) -> Result<(), CotpError> {
258 let mut parameters = vec![CotpParameter::TpduLengthParameter(TpduSize::Size2048)];
259 if let Some(calling_tsap) = options.calling_tsap_id() {
260 parameters.push(CotpParameter::CallingTsap(calling_tsap.clone()));
261 }
262 if let Some(called_tsap) = options.called_tsap_id() {
263 parameters.push(CotpParameter::CalledTsap(called_tsap.clone()));
264 }
265
266 let payload = serialise(&TransportProtocolDataUnit::CR(ConnectionRequest::new(source_reference, 0, ConnectionClass::Class0, vec![], parameters, &[])))?;
267 Ok(writer.send(&mut VecDeque::from_iter(vec![payload].into_iter())).await?)
268}
269
270async fn receive_connection_confirm(reader: &mut impl TpktReader, parser: &TransportProtocolDataUnitParser) -> Result<ConnectionConfirm, CotpError> {
271 let data = match reader.recv().await {
272 Ok(Some(x)) => x,
273 Ok(None) => return Err(CotpError::ProtocolError("The connection was closed before the COTP handshake was complete.".into())),
274 Err(e) => return Err(e.into()),
275 };
276 return Ok(match parser.parse(data.as_slice())? {
277 TransportProtocolDataUnit::CC(x) if x.preferred_class() != &ConnectionClass::Class0 => return Err(CotpError::ProtocolError("Remote failed to select COTP Class 0.".into())),
278 TransportProtocolDataUnit::CC(x) => x,
279 TransportProtocolDataUnit::CR(_) => return Err(CotpError::ProtocolError("Expected connection confirmed on handshake but got a connection request".into())),
280 TransportProtocolDataUnit::DR(_) => return Err(CotpError::ProtocolError("Expected connection confirmed on handshake but got a disconnect reqeust".into())),
281 TransportProtocolDataUnit::DT(_) => return Err(CotpError::ProtocolError("Expected connection confirmed on handshake but got a data transfer".into())),
282 TransportProtocolDataUnit::ER(_) => return Err(CotpError::ProtocolError("Expected connection confirmed on handshake but got a error response".into())),
283 });
284}