cleanup & try to create message obj in client
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352c6ecffd
commit
f4996f366f
@ -4,11 +4,14 @@ use crypto_box::{
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};
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};
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use std::io::Write;
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use std::io::Write;
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use std::net::TcpStream;
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use std::net::TcpStream;
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use crate::message::*;
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mod message;
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fn main() {
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fn main() {
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let port: u32 = 7878; // Port Server
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// Server Port
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//let stream = TcpStream::connect("172.30.16.1:8080");
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let port: u32 = 7878;
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//let stream = TcpStream::connect("27.0.0.1:8080");
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match TcpStream::connect(format!("localhost:{}", port)) {
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match TcpStream::connect(format!("localhost:{}", port)) {
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Ok(mut stream) => {
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Ok(mut stream) => {
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println!("Successfully connected to server");
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println!("Successfully connected to server");
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@ -49,6 +52,7 @@ fn main() {
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// Encrypt the message using the box
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// Encrypt the message using the box
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let ciphertext = salsa_box.encrypt(&nonce, &plaintext[..]).expect("Fehler");
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let ciphertext = salsa_box.encrypt(&nonce, &plaintext[..]).expect("Fehler");
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let message = Message::new(0,0,4, PayloadType::Msg);
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println!("Sending {0} as {1:?}", buffer.trim(), plaintext);
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println!("Sending {0} as {1:?}", buffer.trim(), plaintext);
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stream.write(buffer.as_bytes()).unwrap();
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stream.write(buffer.as_bytes()).unwrap();
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@ -82,17 +86,3 @@ fn main() {
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}
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}
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println!("Terminated.");
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println!("Terminated.");
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}
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}
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fn generate_box(partner_public_key: PublicKey) -> (SalsaBox, PublicKey) {
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// Generate a random secret key.
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// NOTE: The secret key bytes can be accessed by calling `secret_key.as_bytes()`
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let own_secret_key = SecretKey::generate(&mut OsRng);
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// Get the public key for the secret key we just generated
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let own_public_key = own_secret_key.public_key().clone();
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// Create a `SalsaBox` by performing Diffie-Hellman key agreement between
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// the two keys.
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let salsa_box = SalsaBox::new(&partner_public_key, &own_secret_key);
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(salsa_box, own_public_key)
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}
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@ -1,10 +1,7 @@
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<<<<<<< HEAD
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use std::{
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use std::{
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io::{BufReader, Read},
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io::{BufReader, Read},
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net::TcpStream,
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net::TcpStream,
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};
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};
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=======
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>>>>>>> f36772d9e5c0507015de02b8c71ff25d84789b98
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const KEYLENGTH: u8 = 32;
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const KEYLENGTH: u8 = 32;
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@ -29,7 +26,7 @@ pub enum PayloadType {
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//160-255 reserved
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//160-255 reserved
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}
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}
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struct Message {
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pub struct Message {
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// Eigenschaften der Klasse
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// Eigenschaften der Klasse
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src_id: u32,
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src_id: u32,
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dest_id: u32,
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dest_id: u32,
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@ -38,7 +35,7 @@ struct Message {
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}
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}
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impl Message {
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impl Message {
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fn new(src_id: u32, dest_id: u32, size: u16, msg_type: PayloadType) -> Message {
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pub fn new(src_id: u32, dest_id: u32, size: u16, msg_type: PayloadType) -> Message {
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let mut msg = Message {
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let mut msg = Message {
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src_id: src_id,
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src_id: src_id,
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dest_id: dest_id,
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dest_id: dest_id,
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@ -69,7 +66,7 @@ impl Message {
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vec
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vec
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}
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}
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fn recive(stream: TcpStream) -> Message {
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fn receive(stream: TcpStream) -> Message {
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let buffreader = BufReader::new(stream);
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let buffreader = BufReader::new(stream);
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let mut byte_iterator = buffreader.bytes();
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let mut byte_iterator = buffreader.bytes();
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let byte1 = byte_iterator.next().unwrap().unwrap();
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let byte1 = byte_iterator.next().unwrap().unwrap();
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