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client.rs 3.1KB

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  1. use std::io::Write;
  2. use std::net::TcpStream;
  3. use crypto_box::{
  4. aead::{Aead, AeadCore, OsRng},
  5. SalsaBox, PublicKey, SecretKey
  6. };
  7. fn main() {
  8. let port: u32 = 7878;
  9. //let stream = TcpStream::connect("172.30.16.1:8080");
  10. //let stream = TcpStream::connect("27.0.0.1:8080");
  11. match TcpStream::connect(format!("localhost:{}", port)) {
  12. Ok(mut stream) => {
  13. println!("Successfully connected to server");
  14. let bob_init_pub_key = PublicKey::from([
  15. 0xe8, 0x98, 0xc, 0x86, 0xe0, 0x32, 0xf1, 0xeb,
  16. 0x29, 0x75, 0x5, 0x2e, 0x8d, 0x65, 0xbd, 0xdd,
  17. 0x15, 0xc3, 0xb5, 0x96, 0x41, 0x17, 0x4e, 0xc9,
  18. 0x67, 0x8a, 0x53, 0x78, 0x9d, 0x92, 0xc7, 0x54,
  19. ]);
  20. // Generate a random secret key.
  21. // NOTE: The secret key bytes can be accessed by calling `secret_key.as_bytes()`
  22. let own_secret_key = SecretKey::generate(&mut OsRng);
  23. // Get the public key for the secret key we just generated
  24. let own_public_key = own_secret_key.public_key().clone();
  25. // Create a `SalsaBox` by performing Diffie-Hellman key agreement between
  26. // the two keys.
  27. let salsa_box = SalsaBox::new(&bob_init_pub_key, &own_secret_key);
  28. loop {
  29. let mut buffer = String::new();
  30. match std::io::stdin().read_line(&mut buffer) {
  31. Ok(n) => {
  32. if n == 0 {
  33. break; // Beenden bei EOF
  34. }
  35. //
  36. // Encryption
  37. //
  38. // Get a random nonce to encrypt the message under
  39. let nonce = SalsaBox::generate_nonce(&mut OsRng);
  40. // Message to encrypt
  41. let plaintext = buffer.trim().as_bytes();
  42. // Encrypt the message using the box
  43. let ciphertext = salsa_box.encrypt(&nonce, &plaintext[..]).expect("Fehler");
  44. println!("Sending {0} as {1:?}", buffer.trim(), plaintext);
  45. stream.write(buffer.as_bytes()).unwrap();
  46. //
  47. // Decryption
  48. //
  49. // Decrypt the message, using the same randomly generated nonce
  50. let decrypted_plaintext = salsa_box.decrypt(&nonce, &ciphertext[..]).expect("Fehler");
  51. let dec_plain_plaintext = std::str::from_utf8(&*decrypted_plaintext).expect("Nö");
  52. assert_eq!(&plaintext[..], &decrypted_plaintext[..]);
  53. println!("Sent {0:?} as cypher: {1:?}, decrypted: {2:?}, {3}", plaintext, ciphertext, decrypted_plaintext, dec_plain_plaintext);
  54. }
  55. Err(error) => {
  56. println!("error: {error}");
  57. break;
  58. }
  59. }
  60. }
  61. }
  62. Err(e) => {
  63. println!("Failed to connect: {}", e);
  64. }
  65. }
  66. println!("Terminated.");
  67. }