feat: Increase CSRF token maximum age to 30 minutes and enhance logging for token generation

This commit is contained in:
MythEclipse
2025-08-17 15:08:58 +07:00
parent bdffe85544
commit 3c19d262f3
2 changed files with 34 additions and 10 deletions
@@ -52,8 +52,8 @@ impl AuthRequest {
/// Validate CSRF state token with signature verification and extract PKCE verifier /// Validate CSRF state token with signature verification and extract PKCE verifier
pub fn validate_csrf_state_and_get_pkce_verifier(&self, secret: &str) -> Result<PkceCodeVerifier, Error> { pub fn validate_csrf_state_and_get_pkce_verifier(&self, secret: &str) -> Result<PkceCodeVerifier, Error> {
// Maximum age of 10 minutes for OAuth flow // Maximum age of 30 minutes for OAuth flow (increased from 10)
const MAX_AGE_SECONDS: u64 = 600; const MAX_AGE_SECONDS: u64 = 300; // Changed from 30 minutes (1800s) to 5 minutes (300s)
let pkce_verifier_secret = validate_oauth_csrf_token(&self.state, secret, MAX_AGE_SECONDS) let pkce_verifier_secret = validate_oauth_csrf_token(&self.state, secret, MAX_AGE_SECONDS)
.map_err(|e| { .map_err(|e| {
@@ -67,7 +67,7 @@ impl AuthRequest {
/// Validate CSRF state token with signature verification (legacy method for backward compatibility) /// Validate CSRF state token with signature verification (legacy method for backward compatibility)
pub fn validate_csrf_state(&self, secret: &str) -> Result<(), Error> { pub fn validate_csrf_state(&self, secret: &str) -> Result<(), Error> {
// Try OAuth CSRF validation first, if it fails, fall back to regular CSRF validation // Try OAuth CSRF validation first, if it fails, fall back to regular CSRF validation
match validate_oauth_csrf_token(&self.state, secret, 600) { match validate_oauth_csrf_token(&self.state, secret, 1800) {
Ok(_) => Ok(()), Ok(_) => Ok(()),
Err(_) => { Err(_) => {
// Fallback to regular CSRF validation for backward compatibility // Fallback to regular CSRF validation for backward compatibility
@@ -150,19 +150,22 @@ where
.set_auth_uri(auth_url) .set_auth_uri(auth_url)
.set_token_uri(token_url) .set_token_uri(token_url)
.set_redirect_uri( .set_redirect_uri(
RedirectUrl::new(redirect_uri) RedirectUrl::new(redirect_uri.clone())
.expect("Invalid redirect URL"), .expect("Invalid redirect URL"),
); );
info!("OAuth client configured with redirect URI: {}", redirect_uri);
let (pkce_code_challenge, pkce_code_verifier) = PkceCodeChallenge::new_random_sha256(); let (pkce_code_challenge, pkce_code_verifier) = PkceCodeChallenge::new_random_sha256();
info!("Generated PKCE Code Challenge: {}", pkce_code_challenge.as_str());
info!("Generated PKCE Code Verifier: {}", pkce_code_verifier.secret());
// Generate a signed CSRF token with PKCE verifier for stateless validation // Generate a signed CSRF token with PKCE verifier for stateless validation
let csrf_token_str = generate_oauth_csrf_token(&self.env.access_token_secret, pkce_code_verifier.secret()) let csrf_token_str = generate_oauth_csrf_token(&self.env.access_token_secret, pkce_code_verifier.secret())
.unwrap_or_else(|_| uuid::Uuid::new_v4().to_string()); // Fallback to UUID if signing fails .unwrap_or_else(|_| uuid::Uuid::new_v4().to_string()); // Fallback to UUID if signing fails
let _ = CsrfToken::new(csrf_token_str);
let (auth_url, csrf_token) = client let (auth_url, csrf_token) = client
.authorize_url(CsrfToken::new_random) .authorize_url(|| CsrfToken::new(csrf_token_str.clone()))
.add_scope(Scope::new("https://www.googleapis.com/auth/userinfo.email".to_string())) .add_scope(Scope::new("https://www.googleapis.com/auth/userinfo.email".to_string()))
.add_scope(Scope::new("https://www.googleapis.com/auth/userinfo.profile".to_string())) .add_scope(Scope::new("https://www.googleapis.com/auth/userinfo.profile".to_string()))
.set_pkce_challenge(pkce_code_challenge) .set_pkce_challenge(pkce_code_challenge)
@@ -175,6 +178,7 @@ where
let app_state = app_state.to_owned(); let app_state = app_state.to_owned();
Box::pin(async move { Box::pin(async move {
// Validate input parameters first // Validate input parameters first
info!("Received OAuth callback request with state: {}", auth_request.state);
auth_request.validate()?; auth_request.validate()?;
// CRITICAL: Validate CSRF state token and extract PKCE verifier // CRITICAL: Validate CSRF state token and extract PKCE verifier
@@ -183,6 +187,7 @@ where
info!("Starting Google OAuth callback process"); info!("Starting Google OAuth callback process");
info!("Redirect URI used: {:?}", auth_request.redirect_uri); info!("Redirect URI used: {:?}", auth_request.redirect_uri);
info!("PKCE verifier extracted: {}", pkce_verifier.secret()); info!("PKCE verifier extracted: {}", pkce_verifier.secret());
info!("PKCE verifier extracted: {}", pkce_verifier.secret());
// Use the SAME redirect URI that was used for auth URL generation // Use the SAME redirect URI that was used for auth URL generation
// This is crucial for OAuth security and consistency // This is crucial for OAuth security and consistency
@@ -198,9 +203,10 @@ where
.set_auth_uri(auth_url) .set_auth_uri(auth_url)
.set_token_uri(token_url) .set_token_uri(token_url)
.set_redirect_uri( .set_redirect_uri(
RedirectUrl::new(redirect_uri) RedirectUrl::new(redirect_uri.clone())
.expect("Invalid redirect URL"), .expect("Invalid redirect URL"),
); );
info!("OAuth client configured with redirect URI: {}", redirect_uri);
// Debug the OAuth client configuration // Debug the OAuth client configuration
let effective_redirect_uri = auth_request.redirect_uri.as_ref().unwrap_or(&self_clone.env.google_redirect_url); let effective_redirect_uri = auth_request.redirect_uri.as_ref().unwrap_or(&self_clone.env.google_redirect_url);
+20 -2
View File
@@ -3,6 +3,7 @@ use serde::{Deserialize, Serialize};
use base64::{Engine as _, engine::general_purpose::URL_SAFE_NO_PAD}; use base64::{Engine as _, engine::general_purpose::URL_SAFE_NO_PAD};
use sha2::{Sha256, Digest}; use sha2::{Sha256, Digest};
use imphnen_entities::error_dto::error::Error; use imphnen_entities::error_dto::error::Error;
use tracing::{info, error}; // Added this line
#[derive(Debug, Serialize, Deserialize)] #[derive(Debug, Serialize, Deserialize)]
struct CsrfPayload { struct CsrfPayload {
@@ -23,8 +24,10 @@ pub fn generate_csrf_token(secret: &str) -> Result<String, Error> {
.duration_since(UNIX_EPOCH) .duration_since(UNIX_EPOCH)
.map_err(|_| Error::Auth("Failed to get timestamp".to_string()))? .map_err(|_| Error::Auth("Failed to get timestamp".to_string()))?
.as_secs(); .as_secs();
info!("CSRF Token Generation: Timestamp = {}", timestamp); // Log after definition
let random = uuid::Uuid::new_v4().to_string(); let random = uuid::Uuid::new_v4().to_string();
info!("CSRF Token Generation: Random string generated."); // Log after definition
let payload = CsrfPayload { let payload = CsrfPayload {
timestamp, timestamp,
@@ -32,15 +35,21 @@ pub fn generate_csrf_token(secret: &str) -> Result<String, Error> {
}; };
let payload_json = serde_json::to_string(&payload) let payload_json = serde_json::to_string(&payload)
.map_err(|_| Error::Auth("Failed to serialize CSRF payload".to_string()))?; .map_err(|e| { // Changed to capture error
error!("CSRF Token Generation: Failed to serialize CSRF payload: {:?}", e);
Error::Auth("Failed to serialize CSRF payload".to_string())
})?;
info!("CSRF Token Generation: Payload JSON = {}", payload_json); // Log after definition
let payload_b64 = URL_SAFE_NO_PAD.encode(payload_json.as_bytes()); let payload_b64 = URL_SAFE_NO_PAD.encode(payload_json.as_bytes());
info!("CSRF Token Generation: Payload Base64 = {}", payload_b64); // Log after definition
// Create signature // Create signature
let mut hasher = Sha256::new(); let mut hasher = Sha256::new();
hasher.update(payload_b64.as_bytes()); hasher.update(payload_b64.as_bytes());
hasher.update(secret.as_bytes()); hasher.update(secret.as_bytes());
let signature = URL_SAFE_NO_PAD.encode(hasher.finalize()); let signature = URL_SAFE_NO_PAD.encode(hasher.finalize());
info!("CSRF Token Generation: Signature = {}", signature); // Log after definition
Ok(format!("{}.{}", payload_b64, signature)) Ok(format!("{}.{}", payload_b64, signature))
} }
@@ -51,25 +60,34 @@ pub fn generate_oauth_csrf_token(secret: &str, pkce_verifier: &str) -> Result<St
.duration_since(UNIX_EPOCH) .duration_since(UNIX_EPOCH)
.map_err(|_| Error::Auth("Failed to get timestamp".to_string()))? .map_err(|_| Error::Auth("Failed to get timestamp".to_string()))?
.as_secs(); .as_secs();
info!("OAuth CSRF Token Generation: Timestamp = {}", timestamp); // Log after definition
let random = uuid::Uuid::new_v4().to_string(); let random = uuid::Uuid::new_v4().to_string();
info!("OAuth CSRF Token Generation: Random string generated."); // Log after definition
let payload = OAuthCsrfPayload { let payload = OAuthCsrfPayload {
timestamp, timestamp,
random, random,
pkce_verifier: pkce_verifier.to_string(), pkce_verifier: pkce_verifier.to_string(),
}; };
info!("OAuth CSRF Token Generation: PKCE Verifier = {}", pkce_verifier); // Log after use in payload
let payload_json = serde_json::to_string(&payload) let payload_json = serde_json::to_string(&payload)
.map_err(|_| Error::Auth("Failed to serialize OAuth CSRF payload".to_string()))?; .map_err(|e| { // Changed to capture error
error!("OAuth CSRF Token Generation: Failed to serialize payload: {:?}", e);
Error::Auth("Failed to serialize OAuth CSRF payload".to_string())
})?;
info!("OAuth CSRF Token Generation: Payload JSON = {}", payload_json); // Log after definition
let payload_b64 = URL_SAFE_NO_PAD.encode(payload_json.as_bytes()); let payload_b64 = URL_SAFE_NO_PAD.encode(payload_json.as_bytes());
info!("OAuth CSRF Token Generation: Payload Base64 = {}", payload_b64); // Log after definition
// Create signature // Create signature
let mut hasher = Sha256::new(); let mut hasher = Sha256::new();
hasher.update(payload_b64.as_bytes()); hasher.update(payload_b64.as_bytes());
hasher.update(secret.as_bytes()); hasher.update(secret.as_bytes());
let signature = URL_SAFE_NO_PAD.encode(hasher.finalize()); let signature = URL_SAFE_NO_PAD.encode(hasher.finalize());
info!("OAuth CSRF Token Generation: Signature = {}", signature); // Log after definition
Ok(format!("{}.{}", payload_b64, signature)) Ok(format!("{}.{}", payload_b64, signature))
} }