mirror of
https://github.com/pfzetto/axum-oidc.git
synced 2024-11-22 19:42:50 +01:00
Cleanup of RP-Initiated Logout
Added comments Removed unwraps Reworked Session container and middlewares
This commit is contained in:
parent
1844b880c1
commit
6528a6f247
5 changed files with 175 additions and 159 deletions
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@ -13,6 +13,8 @@ The extractors will always return a value.
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The `OidcClaims`-extractor can be used to get the OpenId Conenct Claims.
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The `OidcAccessToken`-extractor can be used to get the OpenId Connect Access Token.
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The `OidcRpInitializedLogout`-extractor can be used to get the rp initialized logout uri.
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Your OIDC-Client must be allowed to redirect to **every** subpath of your application base url.
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# Examples
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@ -1,5 +1,9 @@
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use axum::{
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error_handling::HandleErrorLayer, http::Uri, response::IntoResponse, routing::get, Router,
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error_handling::HandleErrorLayer,
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http::Uri,
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response::{IntoResponse, Redirect},
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routing::get,
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Router,
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};
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use axum_oidc::{
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error::MiddlewareError, EmptyAdditionalClaims, OidcAuthLayer, OidcClaims, OidcLoginLayer,
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@ -80,5 +84,9 @@ async fn maybe_authenticated(
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}
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async fn logout(logout: OidcRpInitiatedLogout) -> impl IntoResponse {
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logout.with_post_logout_redirect(Uri::from_static("https://google.de"))
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let logout_uri = logout
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.with_post_logout_redirect(Uri::from_static("https://pfzetto.de"))
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.uri()
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.unwrap();
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Redirect::temporary(&logout_uri.to_string())
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}
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@ -2,11 +2,7 @@ use std::{borrow::Cow, ops::Deref};
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use crate::{error::ExtractorError, AdditionalClaims};
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use async_trait::async_trait;
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use axum::response::Redirect;
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use axum_core::{
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extract::FromRequestParts,
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response::{IntoResponse, Response},
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};
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use axum_core::extract::FromRequestParts;
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use http::{request::Parts, uri::PathAndQuery, Uri};
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use openidconnect::{core::CoreGenderClaim, IdTokenClaims};
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@ -82,10 +78,13 @@ impl Deref for OidcAccessToken {
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impl AsRef<str> for OidcAccessToken {
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fn as_ref(&self) -> &str {
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self.0.as_str()
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&self.0
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}
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}
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/// Extractor for the [OpenID Connect RP-Initialized Logout](https://openid.net/specs/openid-connect-rpinitiated-1_0.html) URL
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///
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/// This Extractor will only succed when the cached session is valid, [crate::middleware::OidcAuthMiddleware] is loaded and the issuer supports RP-Initialized Logout.
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#[derive(Clone)]
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pub struct OidcRpInitiatedLogout {
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pub(crate) end_session_endpoint: Uri,
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@ -96,19 +95,23 @@ pub struct OidcRpInitiatedLogout {
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}
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impl OidcRpInitiatedLogout {
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/// set uri that the user is redirected to after logout.
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/// This uri must be in the allowed by issuer.
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pub fn with_post_logout_redirect(mut self, uri: Uri) -> Self {
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self.post_logout_redirect_uri = Some(uri);
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self
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}
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/// set the state parameter that is appended as a query to the post logout redirect uri.
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pub fn with_state(mut self, state: String) -> Self {
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self.state = Some(state);
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self
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}
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pub fn uri(self) -> Uri {
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let mut parts = self.end_session_endpoint.into_parts();
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/// get the uri that the client needs to access for logout
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pub fn uri(&self) -> Result<Uri, http::Error> {
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let mut parts = self.end_session_endpoint.clone().into_parts();
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let query = {
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let mut query = Vec::with_capacity(4);
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let mut query: Vec<(&str, Cow<'_, str>)> = Vec::with_capacity(4);
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query.push(("id_token_hint", Cow::Borrowed(&self.id_token_hint)));
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query.push(("client_id", Cow::Borrowed(&self.client_id)));
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@ -124,7 +127,7 @@ impl OidcRpInitiatedLogout {
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query
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.into_iter()
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.map(|(k, v)| format!("{}={}", k, urlencoding::encode(v.as_str())))
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.map(|(k, v)| format!("{}={}", k, urlencoding::encode(&v)))
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.collect::<Vec<_>>()
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.join("&")
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};
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@ -135,11 +138,12 @@ impl OidcRpInitiatedLogout {
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}
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None => PathAndQuery::from_maybe_shared(format!("?{}", query)),
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};
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parts.path_and_query = Some(path_and_query.unwrap());
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parts.path_and_query = Some(path_and_query?);
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Uri::from_parts(parts).unwrap()
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Ok(Uri::from_parts(parts)?)
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}
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}
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#[async_trait]
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impl<S> FromRequestParts<S> for OidcRpInitiatedLogout
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where
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@ -155,10 +159,3 @@ where
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.ok_or(ExtractorError::Unauthorized)
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}
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}
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#[async_trait]
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impl IntoResponse for OidcRpInitiatedLogout {
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fn into_response(self) -> Response {
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Redirect::temporary(&self.uri().to_string()).into_response()
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}
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}
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48
src/lib.rs
48
src/lib.rs
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@ -1,7 +1,8 @@
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#![deny(unsafe_code)]
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#![deny(clippy::unwrap_used)]
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#![deny(warnings)]
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#![doc = include_str!("../README.md")]
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use std::str::FromStr;
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use crate::error::Error;
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use http::Uri;
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use openidconnect::{
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@ -9,15 +10,15 @@ use openidconnect::{
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CoreAuthDisplay, CoreAuthPrompt, CoreClaimName, CoreClaimType, CoreClientAuthMethod,
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CoreErrorResponseType, CoreGenderClaim, CoreGrantType, CoreJsonWebKey, CoreJsonWebKeyType,
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CoreJsonWebKeyUse, CoreJweContentEncryptionAlgorithm, CoreJweKeyManagementAlgorithm,
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CoreJwsSigningAlgorithm, CoreProviderMetadata, CoreResponseMode, CoreResponseType,
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CoreRevocableToken, CoreRevocationErrorResponse, CoreSubjectIdentifierType,
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CoreTokenIntrospectionResponse, CoreTokenType,
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CoreJwsSigningAlgorithm, CoreResponseMode, CoreResponseType, CoreRevocableToken,
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CoreRevocationErrorResponse, CoreSubjectIdentifierType, CoreTokenIntrospectionResponse,
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CoreTokenType,
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},
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reqwest::async_http_client,
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ClientId, ClientSecret, CsrfToken, EmptyExtraTokenFields, IdTokenFields, IssuerUrl, Nonce,
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PkceCodeVerifier, RefreshToken, StandardErrorResponse, StandardTokenResponse,
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AccessToken, ClientId, ClientSecret, CsrfToken, EmptyExtraTokenFields, IdTokenFields,
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IssuerUrl, Nonce, PkceCodeVerifier, RefreshToken, StandardErrorResponse, StandardTokenResponse,
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};
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use serde::{Deserialize, Serialize};
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use serde::{de::DeserializeOwned, Deserialize, Serialize};
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pub mod error;
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mod extractor;
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@ -28,7 +29,10 @@ pub use middleware::{OidcAuthLayer, OidcAuthMiddleware, OidcLoginLayer, OidcLogi
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const SESSION_KEY: &str = "axum-oidc";
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pub trait AdditionalClaims: openidconnect::AdditionalClaims + Clone + Sync + Send {}
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pub trait AdditionalClaims:
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openidconnect::AdditionalClaims + Clone + Sync + Send + Serialize + DeserializeOwned
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{
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}
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type OidcTokenResponse<AC> = StandardTokenResponse<
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IdTokenFields<
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@ -147,28 +151,24 @@ struct OidcQuery {
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/// oidc session
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#[derive(Serialize, Deserialize, Debug)]
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struct OidcSession {
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#[serde(bound = "AC: Serialize + DeserializeOwned")]
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struct OidcSession<AC: AdditionalClaims> {
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nonce: Nonce,
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csrf_token: CsrfToken,
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pkce_verifier: PkceCodeVerifier,
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id_token: Option<String>,
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access_token: Option<String>,
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refresh_token: Option<String>,
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authenticated: Option<AuthenticatedSession<AC>>,
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}
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impl OidcSession {
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pub(crate) fn id_token<AC: AdditionalClaims>(&self) -> Option<IdToken<AC>> {
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self.id_token
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.as_ref()
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.map(|x| IdToken::<AC>::from_str(x).unwrap())
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}
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pub(crate) fn refresh_token(&self) -> Option<RefreshToken> {
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self.refresh_token
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.as_ref()
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.map(|x| RefreshToken::new(x.to_string()))
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}
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#[derive(Serialize, Deserialize, Debug)]
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#[serde(bound = "AC: Serialize + DeserializeOwned")]
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struct AuthenticatedSession<AC: AdditionalClaims> {
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id_token: IdToken<AC>,
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access_token: AccessToken,
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refresh_token: Option<RefreshToken>,
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}
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/// additional metadata that is discovered on client creation via the
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/// `.well-knwon/openid-configuration` endpoint.
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#[derive(Debug, Clone, Serialize, Deserialize)]
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struct AdditionalProviderMetadata {
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end_session_endpoint: Option<String>,
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@ -9,16 +9,16 @@ use axum::{
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};
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use axum_core::{extract::FromRequestParts, response::Response};
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use futures_util::future::BoxFuture;
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use http::{uri::PathAndQuery, Request, Uri};
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use http::{request::Parts, uri::PathAndQuery, Request, Uri};
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use tower_layer::Layer;
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use tower_service::Service;
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use tower_sessions::Session;
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use openidconnect::{
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core::{CoreAuthenticationFlow, CoreErrorResponseType},
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core::{CoreAuthenticationFlow, CoreErrorResponseType, CoreGenderClaim},
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reqwest::async_http_client,
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AccessTokenHash, AuthorizationCode, CsrfToken, Nonce, OAuth2TokenResponse, PkceCodeChallenge,
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PkceCodeVerifier, RedirectUrl,
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AccessToken, AccessTokenHash, AuthorizationCode, CsrfToken, IdTokenClaims, Nonce,
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OAuth2TokenResponse, PkceCodeChallenge, PkceCodeVerifier, RedirectUrl, RefreshToken,
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RequestTokenError::ServerResponse,
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Scope, TokenResponse,
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};
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@ -26,7 +26,8 @@ use openidconnect::{
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use crate::{
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error::{Error, MiddlewareError},
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extractor::{OidcAccessToken, OidcClaims, OidcRpInitiatedLogout},
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AdditionalClaims, BoxError, OidcClient, OidcQuery, OidcSession, SESSION_KEY,
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AdditionalClaims, AuthenticatedSession, BoxError, IdToken, OidcClient, OidcQuery, OidcSession,
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SESSION_KEY,
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};
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/// Layer for the [OidcLoginMiddleware].
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@ -121,7 +122,7 @@ where
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.extensions
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.get::<Session>()
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.ok_or(MiddlewareError::SessionNotFound)?;
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let login_session: Option<OidcSession> = session
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let login_session: Option<OidcSession<AC>> = session
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.get(SESSION_KEY)
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.await
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.map_err(MiddlewareError::from)?;
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@ -158,26 +159,15 @@ where
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let claims = id_token
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.claims(&oidcclient.client.id_token_verifier(), &login_session.nonce)?;
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// Verify the access token hash to ensure that the access token hasn't been substituted for
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// another user's.
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if let Some(expected_access_token_hash) = claims.access_token_hash() {
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let actual_access_token_hash = AccessTokenHash::from_token(
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token_response.access_token(),
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&id_token.signing_alg()?,
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)?;
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if actual_access_token_hash != *expected_access_token_hash {
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return Err(MiddlewareError::AccessTokenHashInvalid);
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}
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}
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validate_access_token_hash(id_token, token_response.access_token(), claims)?;
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login_session.id_token = Some(id_token.to_string());
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login_session.access_token =
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Some(token_response.access_token().secret().to_string());
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login_session.refresh_token = token_response
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.refresh_token()
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.map(|x| x.secret().to_string());
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login_session.authenticated = Some(AuthenticatedSession {
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id_token: id_token.clone(),
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access_token: token_response.access_token().clone(),
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refresh_token: token_response.refresh_token().cloned(),
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});
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session.insert(SESSION_KEY, login_session).await.unwrap();
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session.insert(SESSION_KEY, login_session).await?;
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Ok(Redirect::temporary(&handler_uri.to_string()).into_response())
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} else {
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@ -198,16 +188,14 @@ where
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auth.set_pkce_challenge(pkce_challenge).url()
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};
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let oidc_session = OidcSession {
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let oidc_session = OidcSession::<AC> {
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nonce,
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csrf_token,
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pkce_verifier,
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id_token: None,
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access_token: None,
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refresh_token: None,
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authenticated: None,
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};
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session.insert(SESSION_KEY, oidc_session).await.unwrap();
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session.insert(SESSION_KEY, oidc_session).await?;
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Ok(Redirect::temporary(auth_url.as_str()).into_response())
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}
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@ -307,7 +295,7 @@ where
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.extensions
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.get::<Session>()
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.ok_or(MiddlewareError::SessionNotFound)?;
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let mut login_session: Option<OidcSession> = session
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let mut login_session: Option<OidcSession<AC>> = session
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.get(SESSION_KEY)
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.await
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.map_err(MiddlewareError::from)?;
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@ -320,98 +308,37 @@ where
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.set_redirect_uri(RedirectUrl::new(handler_uri.to_string())?);
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if let Some(login_session) = &mut login_session {
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let id_token_claims = login_session.id_token::<AC>().and_then(|id_token| {
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id_token
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let id_token_claims = login_session.authenticated.as_ref().and_then(|session| {
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session
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.id_token
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.claims(&oidcclient.client.id_token_verifier(), &login_session.nonce)
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.ok()
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.cloned()
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.map(|claims| (session, claims))
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});
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match (id_token_claims, login_session.refresh_token()) {
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if let Some((session, claims)) = id_token_claims {
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// stored id token is valid and can be used
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(Some(claims), _) => {
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parts.extensions.insert(OidcClaims(claims));
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parts.extensions.insert(OidcAccessToken(
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login_session.access_token.clone().unwrap_or_default(),
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));
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if let Some(end_session_endpoint) = oidcclient.end_session_endpoint.clone()
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insert_extensions(&mut parts, claims.clone(), &oidcclient, session);
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} else if let Some(refresh_token) = login_session
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.authenticated
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.as_ref()
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.and_then(|x| x.refresh_token.as_ref())
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{
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parts.extensions.insert(OidcRpInitiatedLogout {
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end_session_endpoint,
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id_token_hint: login_session.id_token.clone().unwrap(),
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client_id: oidcclient.client_id.clone(),
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post_logout_redirect_uri: None,
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state: None,
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});
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}
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}
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// stored id token is invalid and can't be uses, but we have a refresh token
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// and can use it and try to get another id token.
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(_, Some(refresh_token)) => {
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let mut refresh_request =
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oidcclient.client.exchange_refresh_token(&refresh_token);
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for scope in oidcclient.scopes.iter() {
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refresh_request =
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refresh_request.add_scope(Scope::new(scope.to_string()));
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}
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match refresh_request.request_async(async_http_client).await {
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Ok(token_response) => {
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// Extract the ID token claims after verifying its authenticity and nonce.
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let id_token = token_response
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.id_token()
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.ok_or(MiddlewareError::IdTokenMissing)?;
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let claims = id_token.claims(
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&oidcclient.client.id_token_verifier(),
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&login_session.nonce,
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)?;
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// Verify the access token hash to ensure that the access token hasn't been substituted for
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// another user's.
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if let Some(expected_access_token_hash) = claims.access_token_hash()
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if let Some((claims, authenticated_session)) =
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try_refresh_token(&oidcclient, refresh_token, &login_session.nonce).await?
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{
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let actual_access_token_hash = AccessTokenHash::from_token(
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token_response.access_token(),
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&id_token.signing_alg()?,
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)?;
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if actual_access_token_hash != *expected_access_token_hash {
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return Err(MiddlewareError::AccessTokenHashInvalid);
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}
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}
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login_session.id_token = Some(id_token.to_string());
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login_session.access_token =
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Some(token_response.access_token().secret().to_string());
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login_session.refresh_token = token_response
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.refresh_token()
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.map(|x| x.secret().to_string());
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parts.extensions.insert(OidcClaims(claims.clone()));
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parts.extensions.insert(OidcAccessToken(
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login_session.access_token.clone().unwrap_or_default(),
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));
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}
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Err(ServerResponse(e))
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if *e.error() == CoreErrorResponseType::InvalidGrant =>
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{
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// Refresh failed, refresh_token most likely expired or
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// invalid, the session can be considered lost
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login_session.refresh_token = None;
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}
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Err(err) => {
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return Err(err.into());
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}
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insert_extensions(&mut parts, claims, &oidcclient, &authenticated_session);
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login_session.authenticated = Some(authenticated_session);
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};
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// save refreshed session or delete it when the token couldn't be refreshed
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let session = parts
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.extensions
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.get::<Session>()
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.ok_or(MiddlewareError::SessionNotFound)?;
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session.insert(SESSION_KEY, login_session).await.unwrap();
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}
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(None, None) => {}
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session.insert(SESSION_KEY, login_session).await?;
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||||
}
|
||||
}
|
||||
|
||||
|
@ -458,3 +385,85 @@ pub fn strip_oidc_from_path(base_url: Uri, uri: &Uri) -> Result<Uri, MiddlewareE
|
|||
|
||||
Ok(Uri::from_parts(base_url)?)
|
||||
}
|
||||
|
||||
/// insert all extensions that are used by the extractors
|
||||
fn insert_extensions<AC: AdditionalClaims>(
|
||||
parts: &mut Parts,
|
||||
claims: IdTokenClaims<AC, CoreGenderClaim>,
|
||||
client: &OidcClient<AC>,
|
||||
authenticated_session: &AuthenticatedSession<AC>,
|
||||
) {
|
||||
parts.extensions.insert(OidcClaims(claims));
|
||||
parts.extensions.insert(OidcAccessToken(
|
||||
authenticated_session.access_token.secret().to_string(),
|
||||
));
|
||||
if let Some(end_session_endpoint) = &client.end_session_endpoint {
|
||||
parts.extensions.insert(OidcRpInitiatedLogout {
|
||||
end_session_endpoint: end_session_endpoint.clone(),
|
||||
id_token_hint: authenticated_session.id_token.to_string(),
|
||||
client_id: client.client_id.clone(),
|
||||
post_logout_redirect_uri: None,
|
||||
state: None,
|
||||
});
|
||||
}
|
||||
}
|
||||
|
||||
/// Verify the access token hash to ensure that the access token hasn't been substituted for
|
||||
/// another user's.
|
||||
/// Returns `Ok` when access token is valid
|
||||
fn validate_access_token_hash<AC: AdditionalClaims>(
|
||||
id_token: &IdToken<AC>,
|
||||
access_token: &AccessToken,
|
||||
claims: &IdTokenClaims<AC, CoreGenderClaim>,
|
||||
) -> Result<(), MiddlewareError> {
|
||||
if let Some(expected_access_token_hash) = claims.access_token_hash() {
|
||||
let actual_access_token_hash =
|
||||
AccessTokenHash::from_token(access_token, &id_token.signing_alg()?)?;
|
||||
if actual_access_token_hash == *expected_access_token_hash {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(MiddlewareError::AccessTokenHashInvalid)
|
||||
}
|
||||
} else {
|
||||
Ok(())
|
||||
}
|
||||
}
|
||||
|
||||
async fn try_refresh_token<AC: AdditionalClaims>(
|
||||
client: &OidcClient<AC>,
|
||||
refresh_token: &RefreshToken,
|
||||
nonce: &Nonce,
|
||||
) -> Result<Option<(IdTokenClaims<AC, CoreGenderClaim>, AuthenticatedSession<AC>)>, MiddlewareError>
|
||||
{
|
||||
let mut refresh_request = client.client.exchange_refresh_token(refresh_token);
|
||||
|
||||
for scope in client.scopes.iter() {
|
||||
refresh_request = refresh_request.add_scope(Scope::new(scope.to_string()));
|
||||
}
|
||||
|
||||
match refresh_request.request_async(async_http_client).await {
|
||||
Ok(token_response) => {
|
||||
// Extract the ID token claims after verifying its authenticity and nonce.
|
||||
let id_token = token_response
|
||||
.id_token()
|
||||
.ok_or(MiddlewareError::IdTokenMissing)?;
|
||||
let claims = id_token.claims(&client.client.id_token_verifier(), nonce)?;
|
||||
|
||||
validate_access_token_hash(id_token, token_response.access_token(), claims)?;
|
||||
|
||||
let authenticated_session = AuthenticatedSession {
|
||||
id_token: id_token.clone(),
|
||||
access_token: token_response.access_token().clone(),
|
||||
refresh_token: token_response.refresh_token().cloned(),
|
||||
};
|
||||
|
||||
Ok(Some((claims.clone(), authenticated_session)))
|
||||
}
|
||||
Err(ServerResponse(e)) if *e.error() == CoreErrorResponseType::InvalidGrant => {
|
||||
// Refresh failed, refresh_token most likely expired or
|
||||
// invalid, the session can be considered lost
|
||||
Ok(None)
|
||||
}
|
||||
Err(err) => Err(err.into()),
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue