add test for encrypt_password
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fe6a51030f
commit
747c09c91a
1 changed files with 29 additions and 14 deletions
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@ -141,16 +141,8 @@ impl UserLogin {
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let rsa_timestamp: String;
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match resp.json::<RsaResponse>() {
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Ok(rsa_resp) => {
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// println!("rsa: {:?}", rsa_resp);
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let rsa_exponent = rsa::BigUint::parse_bytes(rsa_resp.publickey_exp.as_bytes(), 16).unwrap();
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let rsa_modulus = rsa::BigUint::parse_bytes(rsa_resp.publickey_mod.as_bytes(), 16).unwrap();
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let public_key = RSAPublicKey::new(rsa_modulus, rsa_exponent).unwrap();
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// println!("public key: {:?}", public_key);
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let mut rng = OsRng;
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let padding = rsa::PaddingScheme::new_pkcs1v15_encrypt();
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encrypted_password = base64::encode(public_key.encrypt(&mut rng, padding, self.password.as_bytes()).unwrap());
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// trace!("encrypted_password: {:?}", encrypted_password);
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rsa_timestamp = rsa_resp.timestamp;
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rsa_timestamp = rsa_resp.timestamp.clone();
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encrypted_password = encrypt_password(rsa_resp, &self.password);
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}
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Err(error) => {
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error!("rsa error: {:?}", error);
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@ -158,10 +150,10 @@ impl UserLogin {
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}
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}
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debug!("captchagid: {}", self.captcha_gid);
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debug!("captcha_text: {}", self.captcha_text);
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debug!("twofactorcode: {}", self.twofactor_code);
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debug!("emailauth: {}", self.email_code);
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trace!("captchagid: {}", self.captcha_gid);
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trace!("captcha_text: {}", self.captcha_text);
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trace!("twofactorcode: {}", self.twofactor_code);
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trace!("emailauth: {}", self.email_code);
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let mut params = HashMap::new();
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params.insert("donotcache", format!("{}", SystemTime::now().duration_since(UNIX_EPOCH).unwrap().as_secs() * 1000));
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params.insert("username", self.username.clone());
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@ -345,3 +337,26 @@ pub fn get_server_time() -> i64 {
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return String::from(value["response"]["server_time"].as_str().unwrap()).parse().unwrap();
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}
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fn encrypt_password(rsa_resp: RsaResponse, password: &String) -> String {
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let rsa_exponent = rsa::BigUint::parse_bytes(rsa_resp.publickey_exp.as_bytes(), 16).unwrap();
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let rsa_modulus = rsa::BigUint::parse_bytes(rsa_resp.publickey_mod.as_bytes(), 16).unwrap();
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let public_key = RSAPublicKey::new(rsa_modulus, rsa_exponent).unwrap();
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let mut rng = OsRng;
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let padding = rsa::PaddingScheme::new_pkcs1v15_encrypt();
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let encrypted_password = base64::encode(public_key.encrypt(&mut rng, padding, password.as_bytes()).unwrap());
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return encrypted_password;
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}
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#[test]
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fn test_encrypt_password() {
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let rsa_resp = RsaResponse{
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success: true,
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publickey_exp: String::from("010001"),
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publickey_mod: String::from("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"),
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timestamp: String::from("asdf"),
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token_gid: String::from("asdf"),
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};
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let result = encrypt_password(rsa_resp, &String::from("kelwleofpsm3n4ofc"));
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assert_eq!(result.len(), 344); // can't test exact match because the result is different every time (because of OsRng)
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}
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