Separated JWT header into own guard
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					@ -10,4 +10,4 @@ limits = { forms = 32768 }
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postgres_rb = { url = "postgres://rb:rb@localhost:5432/rb" }
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					postgres_rb = { url = "postgres://rb:rb@localhost:5432/rb" }
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[release.databases]
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					[release.databases]
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postgres_rb = { url = "postgres://rb:rb@db:5432/rb" }
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					postgres_rb = { url = "postgres://rb:rb@localhost:5432/rb" }
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					@ -11,20 +11,6 @@ use jwt::SignWithKey;
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use rand::{thread_rng, Rng};
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					use rand::{thread_rng, Rng};
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use serde::{Deserialize, Serialize};
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					use serde::{Deserialize, Serialize};
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use sha2::Sha256;
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					use sha2::Sha256;
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use std::collections::HashMap;
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/// Expire time for the JWT tokens in seconds.
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const JWT_EXP_SECONDS: i64 = 900;
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/// Amount of bytes the refresh tokens should consist of
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const REFRESH_TOKEN_N_BYTES: usize = 64;
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/// Expire time for refresh tokens; here: one week
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const REFRESH_TOKEN_EXP_SECONDS: i64 = 604800;
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fn log<T>(message: &str, o: T) -> T {
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    println!("{}", message);
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    o
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}
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pub fn verify_user(conn: &PgConnection, username: &str, password: &str) -> crate::Result<User> {
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					pub fn verify_user(conn: &PgConnection, username: &str, password: &str) -> crate::Result<User> {
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    // TODO handle non-"NotFound" Diesel errors accordingely
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					    // TODO handle non-"NotFound" Diesel errors accordingely
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					@ -62,7 +48,7 @@ pub struct Claims {
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pub fn generate_jwt_token(conn: &PgConnection, user: &User) -> crate::Result<JWTResponse> {
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					pub fn generate_jwt_token(conn: &PgConnection, user: &User) -> crate::Result<JWTResponse> {
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    let secret = std::env::var("JWT_KEY").map_err(|_| RBError::MissingJWTKey)?;
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					    let secret = std::env::var("JWT_KEY").map_err(|_| RBError::MissingJWTKey)?;
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    let key: Hmac<Sha256> = Hmac::new_from_slice(secret.as_bytes())
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					    let key: Hmac<Sha256> = Hmac::new_from_slice(secret.as_bytes())
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        .map_err(|_| log("Failed to create key", RBError::JWTCreationError))?;
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					        .map_err(|_| RBError::JWTCreationError)?;
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    let current_time = Utc::now();
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					    let current_time = Utc::now();
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					@ -71,28 +57,20 @@ pub fn generate_jwt_token(conn: &PgConnection, user: &User) -> crate::Result<JWT
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        id: user.id,
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					        id: user.id,
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        username: user.username.clone(),
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					        username: user.username.clone(),
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        admin: user.admin,
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					        admin: user.admin,
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        exp: current_time.timestamp() + JWT_EXP_SECONDS,
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					        exp: current_time.timestamp() + crate::JWT_EXP_SECONDS,
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    };
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					    };
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    // let mut claims = HashMap::new();
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    // claims.insert("id", user.id.to_string());
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    // claims.insert("username", user.username.clone());
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    // claims.insert("admin", user.admin.to_string());
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    // claims.insert(
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    //     "exp",
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    //     (current_time.timestamp() + JWT_EXP_SECONDS).to_string(),
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    // );
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    // Sign the claims into a new token
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					    // Sign the claims into a new token
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    let token = claims
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					    let token = claims
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        .sign_with_key(&key)
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					        .sign_with_key(&key)
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        .map_err(|_| log("Failed to sign token", RBError::JWTCreationError))?;
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					        .map_err(|_| RBError::JWTCreationError)?;
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    // Generate a random refresh token
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					    // Generate a random refresh token
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    let mut refresh_token = [0u8; REFRESH_TOKEN_N_BYTES];
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					    let mut refresh_token = [0u8; crate::REFRESH_TOKEN_N_BYTES];
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    thread_rng().fill(&mut refresh_token[..]);
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					    thread_rng().fill(&mut refresh_token[..]);
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    let refresh_expire =
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					    let refresh_expire =
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        (current_time + chrono::Duration::seconds(REFRESH_TOKEN_EXP_SECONDS)).naive_utc();
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					        (current_time + chrono::Duration::seconds(crate::REFRESH_TOKEN_EXP_SECONDS)).naive_utc();
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    // Store refresh token in database
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					    // Store refresh token in database
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    // TODO add expires_at here (it's what's causing the errors)
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					    // TODO add expires_at here (it's what's causing the errors)
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					@ -7,3 +7,11 @@ mod models;
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pub(crate) mod schema;
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					pub(crate) mod schema;
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pub use errors::Result;
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					pub use errors::Result;
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					// Any import defaults are defined here
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					/// Expire time for the JWT tokens in seconds.
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					const JWT_EXP_SECONDS: i64 = 900;
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					/// Amount of bytes the refresh tokens should consist of
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					const REFRESH_TOKEN_N_BYTES: usize = 64;
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					/// Expire time for refresh tokens; here: one week
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					const REFRESH_TOKEN_EXP_SECONDS: i64 = 604800;
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					@ -8,10 +8,10 @@ use jwt::VerifyWithKey;
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use rb::auth::Claims;
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					use rb::auth::Claims;
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use sha2::Sha256;
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					use sha2::Sha256;
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pub struct User(Claims);
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					pub struct JWT(String);
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#[rocket::async_trait]
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					#[rocket::async_trait]
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impl<'r> FromRequest<'r> for User {
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					impl<'r> FromRequest<'r> for JWT {
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    type Error = rb::errors::RBError;
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					    type Error = rb::errors::RBError;
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    async fn from_request(req: &'r Request<'_>) -> Outcome<Self, Self::Error> {
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					    async fn from_request(req: &'r Request<'_>) -> Outcome<Self, Self::Error> {
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					@ -28,9 +28,22 @@ impl<'r> FromRequest<'r> for User {
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        // Extract the jwt token from the header
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					        // Extract the jwt token from the header
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        let jwt_token = match header.get(7..) {
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					        let jwt_token = match header.get(7..) {
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            Some(token) => token,
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					            Some(token) => token,
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            None => return Outcome::Failure((Status::Unauthorized, Self::Error::JWTError)),
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					            None => return Outcome::Forward(()),
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        };
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					        };
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					        Outcome::Success(Self(jwt_token.to_string()))
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					    }
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					}
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					pub struct User(Claims);
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					#[rocket::async_trait]
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					impl<'r> FromRequest<'r> for User {
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					    type Error = rb::errors::RBError;
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					    async fn from_request(req: &'r Request<'_>) -> Outcome<Self, Self::Error> {
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					        let jwt_token = try_outcome!(req.guard::<JWT>().await).0;
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        // Get secret & key
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					        // Get secret & key
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        let secret = match std::env::var("JWT_KEY") {
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					        let secret = match std::env::var("JWT_KEY") {
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            Ok(key) => key,
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					            Ok(key) => key,
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