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@ -1,3 +1,5 @@ |
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pub mod cipherkeys;
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use std::net::TcpStream;
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use std::net::TcpStream;
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use std::io::{Read, Write};
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use std::io::{Read, Write};
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use libpso::crypto::{PSOCipher, CipherError};
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use libpso::crypto::{PSOCipher, CipherError};
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@ -10,6 +12,7 @@ pub enum PacketNetworkError { |
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PacketParseError(PacketParseError),
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PacketParseError(PacketParseError),
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IOError(std::io::Error),
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IOError(std::io::Error),
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DataNotReady,
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DataNotReady,
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ClientDisconnected,
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}
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}
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impl From<CipherError> for PacketNetworkError {
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impl From<CipherError> for PacketNetworkError {
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@ -30,43 +33,54 @@ impl From<PacketParseError> for PacketNetworkError { |
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}
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}
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}
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}
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pub fn recv_packet<T: Read>(socket: &mut T, cipher: &mut dyn PSOCipher) -> Result<Vec<u8>, PacketNetworkError> {
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pub fn recv_packet<T: Read>(socket: &mut T, cipher: &mut dyn PSOCipher) -> Result<Vec<u8>, PacketNetworkError> {
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let mut size_buf = [0u8; 4];
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//socket.read_exact(&mut size_buf)?;
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/*let mut offset = 0;
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while offset < 4 {
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offset += socket.read(&mut size_buf[offset..])?;
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}*/
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let len = socket.read(&mut size_buf)?;
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if len != 4 {
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return Err(PacketNetworkError::DataNotReady)
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let mut size_buf = vec![0u8; cipher.header_size()];
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let mut offset = 0;
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while offset < cipher.header_size() {
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let diff = socket.read(&mut size_buf[offset..])?;
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println!("! {} {:?}", diff, size_buf);
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if diff == 0 {
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return Err(PacketNetworkError::ClientDisconnected);
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}
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offset += diff;
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}
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}
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let mut dec_size_buf = cipher.decrypt(&size_buf.to_vec())?;
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let size = u16::from_le_bytes([dec_size_buf[0], dec_size_buf[1]]);
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let mut dec_size_buf = cipher.decrypt(&size_buf)?;
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let size = u16::from_le_bytes([dec_size_buf[0], dec_size_buf[1]]) as usize;
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let mut data_buf = vec![0u8; (size - 4) as usize];
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//socket.read_exact(&mut data_buf)?;
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let mut data_buf = vec![0u8; size - cipher.header_size()];
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let mut offset = 0;
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let mut offset = 0;
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while offset < size as usize - 4{
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offset += socket.read(&mut data_buf[offset..])?;
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while offset < size - cipher.header_size() {
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let diff = socket.read(&mut data_buf[offset..])?;
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if diff == 0 {
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return Err(PacketNetworkError::ClientDisconnected);
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}
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offset += diff;
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}
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let mut null_data_count = 0;
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while data_buf.len() % cipher.header_size() != 0 {
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data_buf.push(0);
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null_data_count += 1;
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}
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}
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let mut dec_data_buf = cipher.decrypt(&data_buf.to_vec())?;
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let mut dec_data_buf = cipher.decrypt(&data_buf.to_vec())?;
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for _ in 0..null_data_count {
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dec_data_buf.pop();
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}
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let mut full_buf = Vec::new();
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let mut full_buf = Vec::new();
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full_buf.append(&mut dec_size_buf);
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full_buf.append(&mut dec_size_buf);
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full_buf.append(&mut dec_data_buf);
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full_buf.append(&mut dec_data_buf);
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println!("[recv]: {:X?}", full_buf);
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//println!("[recv]: {:X?}", full_buf);
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Ok(full_buf)
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Ok(full_buf)
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}
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}
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pub fn send_packet<T: Write>(socket: &mut T, cipher: &mut dyn PSOCipher, pkt: &dyn PSOPacket) -> Result<(), PacketNetworkError> {
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pub fn send_packet<T: Write>(socket: &mut T, cipher: &mut dyn PSOCipher, pkt: &dyn PSOPacket) -> Result<(), PacketNetworkError> {
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let buf = pkt.as_bytes();
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let buf = pkt.as_bytes();
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println!("[send]: {:X?}", buf);
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//println!("[send]: {:X?}", buf);
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let cbuf = cipher.encrypt(&buf)?;
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let cbuf = cipher.encrypt(&buf)?;
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Ok(socket.write_all(&cbuf)?)
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Ok(socket.write_all(&cbuf)?)
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}
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}
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