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467 lines
14 KiB
467 lines
14 KiB
/* |
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ddtu - digital data transferring utility |
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Copyright (C) 2022 Kasyanov Nikolay Alexeyevich (Unbewohnte) |
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This program is free software: you can redistribute it and/or modify |
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it under the terms of the GNU Affero General Public License as published by |
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the Free Software Foundation, either version 3 of the License, or |
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(at your option) any later version. |
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This program is distributed in the hope that it will be useful, |
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but WITHOUT ANY WARRANTY; without even the implied warranty of |
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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GNU Affero General Public License for more details. |
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*/ |
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use std::net; |
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use std::io::Write; |
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use std::io::Read; |
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use crate::util::error::Error; |
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use crate::util::buf_read::{read_u128_slice_be, read_utf8_string_slice}; |
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use crate::protocol::specs::*; |
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use crate::fsys::file::ChunkedFile; |
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pub fn send_packet(conn: &mut net::TcpStream, packet: &dyn Packet) -> Result<(), Error> { |
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let mut payload: Vec<u8> = Vec::<u8>::new(); |
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let packet_bytes: Vec<u8> = packet.as_bytes(); |
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let packet_len: usize = packet_bytes.len(); |
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payload.extend_from_slice(&(packet_len as u128).to_be_bytes()); |
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payload.extend_from_slice(&packet_bytes); |
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match conn.write_all(&payload) { |
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Ok(()) => { |
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return Ok(()); |
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} |
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Err(error) => { |
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return Err(Error::new(format!("could not write packet to the connection: {}", error).as_str())) |
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} |
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} |
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} |
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pub fn read_next_packet(conn: &mut net::TcpStream) -> Result<Box<dyn Packet + Send>, Error> { |
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let mut u128_buf: [u8; 16] = [0; 16]; |
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match conn.read_exact(&mut u128_buf) { |
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Ok(()) => {} |
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Err(error) => { |
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return Err(Error::new(format!("error while reading initial length bytes: {}", error).as_str())); |
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} |
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} |
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let packet_len: u128 = u128::from_be_bytes(u128_buf); |
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let mut packet_bytes: Vec<u8> = vec!(0; packet_len as usize); |
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match conn.read_exact(&mut packet_bytes) { |
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Ok(()) => {} |
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Err(error) => { |
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return Err(Error::new(format!("error while reading packet contents: {}", error).as_str())); |
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} |
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} |
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if packet_bytes.len() < packet_len as usize { |
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return Err( |
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Error::new( |
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format!("read {} packet bytes instead of specified {}", packet_bytes.len(), packet_len).as_str()) |
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); |
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} |
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let packet_type_byte: u8 = u8::from_be_bytes([packet_bytes[0]]); |
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match packet_type_byte { |
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CONNECTION_SHUTDOWN_PACKET_ID => { |
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return Ok(Box::new(ConnectionShutdown{})); |
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} |
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TEXT_PACKET_ID => { |
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let mut new_text_packet: Text = Text::empty(); |
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let result = new_text_packet.from_bytes(packet_bytes); |
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match result { |
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Some(error) => { |
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return Err(Error::new(format!("could not construct new text packet: {}", error.text).as_str())); |
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} |
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None => { |
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return Ok(Box::new(new_text_packet)); |
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} |
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} |
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} |
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FILEINFO_PACKET_ID => { |
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let mut new_fileinfo_packet: FileInfo = FileInfo::empty(); |
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let result = new_fileinfo_packet.from_bytes(packet_bytes); |
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match result { |
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Some(error) => { |
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return Err(Error::new(format!("could not construct new fileinfo packet: {}", error.text).as_str())); |
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} |
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None => { |
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return Ok(Box::new(new_fileinfo_packet)); |
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} |
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} |
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} |
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FILEDATA_PACKET_ID => { |
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let mut new_filedata_packet: FileData = FileData::empty(); |
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let result = new_filedata_packet.from_bytes(packet_bytes); |
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match result { |
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Some(error) => { |
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return Err(Error::new(format!("could not construct new filedata packet: {}", error.text).as_str())); |
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} |
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None => { |
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return Ok(Box::new(new_filedata_packet)); |
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} |
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} |
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} |
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_ => { |
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return Err(Error::new(format!("invalid packet type ID \"{}\"", packet_type_byte).as_str())); |
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} |
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} |
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} |
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pub struct Text { |
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pub text: String, |
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} |
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impl Text { |
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pub fn empty() -> Text { |
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return Text{ |
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text: "".to_string(), |
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}; |
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} |
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pub fn new(txt: &str) -> Text { |
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return Text { |
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text: txt.to_string(), |
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} |
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} |
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} |
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impl Packet for Text { |
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fn get_type(&self) -> PacketType { |
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return PacketType::TextData; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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let mut packet_bytes: Vec<u8> = Vec::<u8>::new(); |
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packet_bytes.extend_from_slice(&TEXT_PACKET_ID.to_be_bytes()); |
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let text_length: u128 = self.text.len() as u128; |
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packet_bytes.extend_from_slice(&text_length.to_be_bytes()); |
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packet_bytes.extend_from_slice(&self.text.as_bytes()); |
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return packet_bytes; |
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} |
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fn from_bytes(&mut self, packet_bytes: Vec<u8>) -> Option<Error> { |
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if packet_bytes.len() < 18 { |
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return Some( |
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Error::new(format!("{} bytes is too small for a text packet to be valid", packet_bytes.len()).as_str() |
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)); |
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} |
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// retrieve and check for packet type byte |
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match packet_bytes[0].to_be() { |
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TEXT_PACKET_ID => {} |
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_ => { |
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return Some(Error::new("packet type is not of a text packet")); |
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} |
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} |
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// get text length |
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let text_length: u128 = read_u128_slice_be(&packet_bytes[1..17]); |
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if text_length as usize > packet_bytes[17..].len() { |
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return Some( |
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Error::new( |
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format!( |
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"text length ({}) is bigger than provided packet bytes length ({})", |
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text_length, |
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packet_bytes[16..].len() |
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).as_str() |
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) |
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); |
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} |
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// extract text |
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self.text = read_utf8_string_slice(&packet_bytes[17..]); |
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return None; |
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} |
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} |
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pub struct FileInfo { |
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pub file_id: u128, |
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pub filename: String, |
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pub filesize: u128, |
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pub relative_path: String, |
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} |
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impl FileInfo { |
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pub fn empty() -> FileInfo { |
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return FileInfo{ |
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file_id: 0, |
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filename: String::new(), |
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filesize: 0, |
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relative_path: String::new(), |
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}; |
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} |
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pub fn new(file: &ChunkedFile, file_id: u128, rel_path: String) -> Result<FileInfo, Error> { |
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let mut new_fileinfo_packet: FileInfo = FileInfo::empty(); |
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// id |
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new_fileinfo_packet.file_id = file_id; |
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//filename |
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match file.path.file_name() { |
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Some(filename) => { |
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match filename.to_owned().into_string() { |
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Ok(filename_string) => { |
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new_fileinfo_packet.filename = filename_string; |
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} |
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Err(filename_os_string) => { |
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return Err( |
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Error::new(format!("could not convert \'{:?}\' (OsString) to String", filename_os_string).as_str()) |
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); |
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} |
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} |
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} |
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None => { |
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return Err( |
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Error::new(format!("could not get filename from \'{}\'", file.path.display()).as_str()) |
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); |
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} |
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} |
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// size |
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new_fileinfo_packet.filesize = file.size; |
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// rel path |
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new_fileinfo_packet.relative_path = rel_path; |
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return Ok(new_fileinfo_packet); |
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} |
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} |
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impl Packet for FileInfo { |
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fn get_type(&self) -> PacketType { |
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return PacketType::FileInfo; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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let mut packet_bytes: Vec<u8> = Vec::<u8>::new(); |
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packet_bytes.extend_from_slice(&FILEINFO_PACKET_ID.to_be_bytes()); |
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// file id |
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packet_bytes.extend_from_slice(&self.file_id.to_be_bytes()); |
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// filename |
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let filename_bytes_length: u128 = self.filename.len() as u128; |
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packet_bytes.extend_from_slice(&filename_bytes_length.to_be_bytes()); |
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packet_bytes.extend_from_slice(&self.filename.as_bytes()); |
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// filesize |
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packet_bytes.extend_from_slice(&self.filesize.to_be_bytes()); |
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// relative path |
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let relative_path_bytes_length: u128 = self.relative_path.len() as u128; |
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packet_bytes.extend_from_slice(&relative_path_bytes_length.to_be_bytes()); |
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packet_bytes.extend_from_slice(&self.relative_path.as_bytes()); |
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return packet_bytes; |
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} |
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fn from_bytes(&mut self, packet_bytes: Vec<u8>) -> Option<Error> { |
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if packet_bytes.len() < 16+16+16+16+1+1 { |
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return Some( |
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Error::new(format!("{} bytes is too small for a fileinfo packet to be valid", packet_bytes.len()).as_str() |
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)); |
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} |
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// file id |
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self.file_id = read_u128_slice_be(&packet_bytes[0..16]); |
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// get filename |
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let filename_length: u128 = read_u128_slice_be(&packet_bytes[16..32]); |
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self.filename = read_utf8_string_slice(&packet_bytes[32..(filename_length+32) as usize]); |
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// filesize |
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self.filesize = read_u128_slice_be(&packet_bytes[(filename_length+32) as usize..(filename_length+32+16) as usize]); |
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// relative path |
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let rel_path_length: u128 = read_u128_slice_be( |
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&packet_bytes[(filename_length+32+16) as usize..(filename_length+32+16+16)as usize] |
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); |
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self.relative_path = read_utf8_string_slice( |
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&packet_bytes[(filename_length+32+16+16) as usize..(filename_length+32+16+16+rel_path_length) as usize] |
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); |
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return None; |
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} |
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} |
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pub struct FileData { |
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pub file_id: u128, |
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pub chunk_no: u128, |
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pub chunk: [u8; CHUNK_SIZE], |
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} |
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impl FileData { |
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pub fn empty() -> FileData { |
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return FileData { |
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file_id: 0, |
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chunk_no: 0, |
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chunk: [0; CHUNK_SIZE], |
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} |
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} |
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} |
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impl Packet for FileData { |
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fn get_type(&self) -> PacketType { |
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return PacketType::FileData; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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let mut packet_bytes: Vec<u8> = Vec::<u8>::new(); |
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packet_bytes.extend_from_slice(&FILEDATA_PACKET_ID.to_be_bytes()); |
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// file id |
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packet_bytes.extend_from_slice(&self.file_id.to_be_bytes()); |
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// chunk number |
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packet_bytes.extend_from_slice(&self.chunk_no.to_be_bytes()); |
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// chunk |
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packet_bytes.extend_from_slice(&self.chunk.len().to_be_bytes()); |
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packet_bytes.extend_from_slice(&self.chunk); |
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return packet_bytes; |
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} |
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fn from_bytes(&mut self, packet_bytes: Vec<u8>) -> Option<Error> { |
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if packet_bytes.len() < 16+16+16+1 { |
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return Some( |
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Error::new(format!("{} bytes is too small for a fileinfo packet to be valid", packet_bytes.len()).as_str() |
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)); |
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} |
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// file id |
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self.file_id = read_u128_slice_be(&packet_bytes[0..16]); |
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// chunk number |
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self.chunk_no = read_u128_slice_be(&packet_bytes[16..32]); |
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// chunk bytes |
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let chunk_length = read_u128_slice_be(&packet_bytes[32..48]); |
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for i in 48..(48+chunk_length) as usize { |
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self.chunk[i-48] = packet_bytes[i].to_be(); |
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} |
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return None; |
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} |
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} |
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pub struct ConnectionShutdown {} |
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impl Packet for ConnectionShutdown { |
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fn get_type(&self) -> PacketType { |
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return PacketType::ConnectionShutdown; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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return vec!(CONNECTION_SHUTDOWN_PACKET_ID.to_be_bytes()[0]); |
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} |
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fn from_bytes(&mut self, _packet_bytes: Vec<u8>) -> Option<Error> { |
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return None; |
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} |
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} |
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pub struct Handshake { |
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pub protocol_version: u8, |
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pub encryption_type: u8, |
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pub encryption_key: Vec<u8>, |
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} |
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impl Handshake { |
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pub fn empty() -> Handshake { |
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return Handshake{ |
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protocol_version: PROTOCOL_LATEST_VERSION, |
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encryption_type: ENCRYPTION_NO_ENCRYPTION, |
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encryption_key: vec!(0, 0, 0, 0, 0, 0, 0, 0), |
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}; |
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} |
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} |
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impl Packet for Handshake { |
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fn get_type(&self) -> PacketType { |
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return PacketType::Handshake; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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let mut packet_bytes: Vec<u8> = Vec::<u8>::new(); |
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packet_bytes.extend_from_slice(&HANDSHAKE_PACKET_ID.to_be_bytes()); |
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// protocol version |
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packet_bytes.extend_from_slice(&PROTOCOL_LATEST_VERSION.to_be_bytes()); |
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// encryption type |
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packet_bytes.extend_from_slice(&self.encryption_type.to_be_bytes()); |
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// encryption key |
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packet_bytes.extend_from_slice(&(self.encryption_key.len() as u128).to_be_bytes()); |
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packet_bytes.extend_from_slice(&self.encryption_key); |
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return packet_bytes; |
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} |
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fn from_bytes(&mut self, packet_bytes: Vec<u8>) -> Option<Error> { |
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if packet_bytes.len() < 1+1+1+16+1 { |
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return Some( |
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Error::new(format!("{} bytes is too small for a handshake packet to be valid", packet_bytes.len()).as_str()) |
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); |
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} |
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// protocol version |
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self.protocol_version = packet_bytes[0].to_be(); |
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// encryption type |
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self.encryption_type = packet_bytes[1].to_be(); |
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// key |
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let key_len: u128 = read_u128_slice_be(&packet_bytes[1..17]); |
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for i in 17..(17+key_len) as usize { |
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self.encryption_key[i-17] = packet_bytes[i].to_be(); |
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} |
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return None; |
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} |
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} |
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pub struct HandshakeAccept {} |
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impl Packet for HandshakeAccept { |
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fn get_type(&self) -> PacketType { |
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return PacketType::HandshakeAccept; |
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} |
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fn as_bytes(&self) -> Vec<u8> { |
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return vec!(HANDSHAKE_ACCEPT_PACKET_ID.to_be_bytes()[0]); |
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} |
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fn from_bytes(&mut self, _packet_bytes: Vec<u8>) -> Option<Error> { |
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return None; |
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} |
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} |