Load RSA keys as pem format directly, and using openssl crate, backported from async branch
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2cd17fe7af
commit
46e0f3c43a
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@ -27,7 +27,6 @@ pub fn routes() -> Vec<Route> {
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//
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// Move this somewhere else
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//
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use rocket::response::Response;
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use rocket::Route;
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use rocket_contrib::json::Json;
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use serde_json::Value;
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@ -41,7 +40,7 @@ use crate::{
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};
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#[put("/devices/identifier/<uuid>/clear-token")]
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fn clear_device_token<'a>(uuid: String) -> Response<'a> {
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fn clear_device_token<'a>(uuid: String) -> &'static str {
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// This endpoint doesn't have auth header
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let _ = uuid;
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@ -50,7 +49,7 @@ fn clear_device_token<'a>(uuid: String) -> Response<'a> {
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// This only clears push token
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// https://github.com/bitwarden/core/blob/master/src/Api/Controllers/DevicesController.cs#L109
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// https://github.com/bitwarden/core/blob/master/src/Core/Services/Implementations/DeviceService.cs#L37
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Response::new()
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""
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}
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#[put("/devices/identifier/<uuid>/token", data = "<data>")]
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@ -343,7 +343,7 @@ fn parse_duo_values(key: &str, val: &str, ikey: &str, prefix: &str, time: i64) -
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err!("Invalid ikey")
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}
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let expire = match expire.parse() {
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let expire: i64 = match expire.parse() {
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Ok(e) => e,
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Err(_) => err!("Invalid expire time"),
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};
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28
src/auth.rs
28
src/auth.rs
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@ -27,17 +27,26 @@ static JWT_VERIFYEMAIL_ISSUER: Lazy<String> = Lazy::new(|| format!("{}|verifyema
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static JWT_ADMIN_ISSUER: Lazy<String> = Lazy::new(|| format!("{}|admin", CONFIG.domain_origin()));
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static JWT_SEND_ISSUER: Lazy<String> = Lazy::new(|| format!("{}|send", CONFIG.domain_origin()));
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static PRIVATE_RSA_KEY: Lazy<Vec<u8>> = Lazy::new(|| match read_file(&CONFIG.private_rsa_key()) {
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Ok(key) => key,
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Err(e) => panic!("Error loading private RSA Key.\n Error: {}", e),
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static PRIVATE_RSA_KEY_VEC: Lazy<Vec<u8>> = Lazy::new(|| {
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read_file(&CONFIG.private_rsa_key()).unwrap_or_else(|e| panic!("Error loading private RSA Key.\n{}", e))
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});
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static PUBLIC_RSA_KEY: Lazy<Vec<u8>> = Lazy::new(|| match read_file(&CONFIG.public_rsa_key()) {
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Ok(key) => key,
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Err(e) => panic!("Error loading public RSA Key.\n Error: {}", e),
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static PRIVATE_RSA_KEY: Lazy<EncodingKey> = Lazy::new(|| {
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EncodingKey::from_rsa_pem(&PRIVATE_RSA_KEY_VEC).unwrap_or_else(|e| panic!("Error decoding private RSA Key.\n{}", e))
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});
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static PUBLIC_RSA_KEY_VEC: Lazy<Vec<u8>> = Lazy::new(|| {
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read_file(&CONFIG.public_rsa_key()).unwrap_or_else(|e| panic!("Error loading public RSA Key.\n{}", e))
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});
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static PUBLIC_RSA_KEY: Lazy<DecodingKey> = Lazy::new(|| {
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DecodingKey::from_rsa_pem(&PUBLIC_RSA_KEY_VEC).unwrap_or_else(|e| panic!("Error decoding public RSA Key.\n{}", e))
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});
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pub fn load_keys() {
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Lazy::force(&PRIVATE_RSA_KEY);
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Lazy::force(&PUBLIC_RSA_KEY);
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}
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pub fn encode_jwt<T: Serialize>(claims: &T) -> String {
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match jsonwebtoken::encode(&JWT_HEADER, claims, &EncodingKey::from_rsa_der(&PRIVATE_RSA_KEY)) {
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match jsonwebtoken::encode(&JWT_HEADER, claims, &PRIVATE_RSA_KEY) {
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Ok(token) => token,
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Err(e) => panic!("Error encoding jwt {}", e),
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}
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@ -55,10 +64,7 @@ fn decode_jwt<T: DeserializeOwned>(token: &str, issuer: String) -> Result<T, Err
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};
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let token = token.replace(char::is_whitespace, "");
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jsonwebtoken::decode(&token, &DecodingKey::from_rsa_der(&PUBLIC_RSA_KEY), &validation)
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.map(|d| d.claims)
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.map_res("Error decoding JWT")
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jsonwebtoken::decode(&token, &&PUBLIC_RSA_KEY, &validation).map(|d| d.claims).map_res("Error decoding JWT")
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}
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pub fn decode_login(token: &str) -> Result<LoginJwtClaims, Error> {
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@ -770,13 +770,10 @@ impl Config {
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}
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pub fn private_rsa_key(&self) -> String {
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format!("{}.der", CONFIG.rsa_key_filename())
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}
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pub fn private_rsa_key_pem(&self) -> String {
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format!("{}.pem", CONFIG.rsa_key_filename())
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}
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pub fn public_rsa_key(&self) -> String {
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format!("{}.pub.der", CONFIG.rsa_key_filename())
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format!("{}.pub.pem", CONFIG.rsa_key_filename())
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}
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pub fn mail_enabled(&self) -> bool {
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let inner = &self.inner.read().unwrap().config;
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@ -50,6 +50,7 @@ use std::time::SystemTimeError as TimeErr;
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use u2f::u2ferror::U2fError as U2fErr;
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use webauthn_rs::error::WebauthnError as WebauthnErr;
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use yubico::yubicoerror::YubicoError as YubiErr;
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use openssl::error::ErrorStack as SSLErr;
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#[derive(Serialize)]
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pub struct Empty {}
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@ -82,6 +83,7 @@ make_error! {
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Lettre(LettreErr): _has_source, _api_error,
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Address(AddrErr): _has_source, _api_error,
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Smtp(SmtpErr): _has_source, _api_error,
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OpenSSL(SSLErr): _has_source, _api_error,
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DieselCon(DieselConErr): _has_source, _api_error,
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DieselMig(DieselMigErr): _has_source, _api_error,
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68
src/main.rs
68
src/main.rs
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@ -21,7 +21,7 @@ use std::{
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fs::create_dir_all,
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panic,
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path::Path,
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process::{exit, Command},
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process::exit,
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str::FromStr,
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thread,
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time::Duration,
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@ -53,7 +53,10 @@ fn main() {
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let extra_debug = matches!(level, LF::Trace | LF::Debug);
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check_data_folder();
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check_rsa_keys();
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check_rsa_keys().unwrap_or_else(|_| {
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error!("Error creating keys, exiting...");
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exit(1);
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});
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check_web_vault();
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create_icon_cache_folder();
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@ -249,52 +252,29 @@ fn check_data_folder() {
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}
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}
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fn check_rsa_keys() {
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fn check_rsa_keys()-> Result<(), crate::error::Error> {
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// If the RSA keys don't exist, try to create them
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if !util::file_exists(&CONFIG.private_rsa_key()) || !util::file_exists(&CONFIG.public_rsa_key()) {
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info!("JWT keys don't exist, checking if OpenSSL is available...");
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let priv_path = CONFIG.private_rsa_key();
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let pub_path = CONFIG.public_rsa_key();
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Command::new("openssl").arg("version").status().unwrap_or_else(|_| {
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info!(
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"Can't create keys because OpenSSL is not available, make sure it's installed and available on the PATH"
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);
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exit(1);
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});
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if !util::file_exists(&priv_path) {
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let rsa_key = openssl::rsa::Rsa::generate(2048)?;
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info!("OpenSSL detected, creating keys...");
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let key = CONFIG.rsa_key_filename();
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let pem = format!("{}.pem", key);
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let priv_der = format!("{}.der", key);
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let pub_der = format!("{}.pub.der", key);
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let mut success = Command::new("openssl")
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.args(&["genrsa", "-out", &pem])
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.status()
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.expect("Failed to create private pem file")
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.success();
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success &= Command::new("openssl")
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.args(&["rsa", "-in", &pem, "-outform", "DER", "-out", &priv_der])
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.status()
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.expect("Failed to create private der file")
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.success();
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success &= Command::new("openssl")
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.args(&["rsa", "-in", &priv_der, "-inform", "DER"])
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.args(&["-RSAPublicKey_out", "-outform", "DER", "-out", &pub_der])
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.status()
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.expect("Failed to create public der file")
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.success();
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if success {
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info!("Keys created correctly.");
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} else {
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error!("Error creating keys, exiting...");
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exit(1);
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}
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let priv_key = rsa_key.private_key_to_pem()?;
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crate::util::write_file(&priv_path, &priv_key)?;
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info!("Private key created correctly.");
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}
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if !util::file_exists(&pub_path) {
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let rsa_key = openssl::rsa::Rsa::private_key_from_pem(&util::read_file(&priv_path)?)?;
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let pub_key = rsa_key.public_key_to_pem()?;
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crate::util::write_file(&pub_path, &pub_key)?;
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info!("Public key created correctly.");
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}
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auth::load_keys();
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Ok(())
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}
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fn check_web_vault() {
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@ -219,6 +219,14 @@ pub fn read_file(path: &str) -> IOResult<Vec<u8>> {
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Ok(contents)
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}
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pub fn write_file(path: &str, content: &[u8]) -> Result<(), crate::error::Error> {
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use std::io::Write;
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let mut f = File::create(path)?;
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f.write_all(content)?;
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f.flush()?;
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Ok(())
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}
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pub fn read_file_string(path: &str) -> IOResult<String> {
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let mut contents = String::new();
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