Files
Oxicloud/src/infrastructure/repositories/pg/session_pg_repository.rs
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use async_trait::async_trait;
use chrono::Utc;
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use futures::future::BoxFuture;
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use sqlx::{PgPool, Row};
use std::sync::Arc;
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use crate::application::ports::auth_ports::SessionStoragePort;
use crate::common::errors::DomainError;
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use crate::domain::entities::session::Session;
use crate::domain::repositories::session_repository::{
SessionRepository, SessionRepositoryError, SessionRepositoryResult,
};
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use crate::infrastructure::repositories::pg::transaction_utils::with_transaction;
// Implement From<sqlx::Error> for SessionRepositoryError to allow automatic conversions
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impl From<sqlx::Error> for SessionRepositoryError {
fn from(err: sqlx::Error) -> Self {
SessionPgRepository::map_sqlx_error(err)
}
}
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pub struct SessionPgRepository {
pool: Arc<PgPool>,
}
impl SessionPgRepository {
pub fn new(pool: Arc<PgPool>) -> Self {
Self { pool }
}
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// Helper method to map SQL errors to domain errors
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pub fn map_sqlx_error(err: sqlx::Error) -> SessionRepositoryError {
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match err {
sqlx::Error::RowNotFound => {
SessionRepositoryError::NotFound("Session not found".to_string())
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}
_ => SessionRepositoryError::DatabaseError(format!("Database error: {}", err)),
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}
}
}
#[async_trait]
impl SessionRepository for SessionPgRepository {
/// Creates a new session using a transaction
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async fn create_session(&self, session: Session) -> SessionRepositoryResult<Session> {
// Create a copy of the session for the closure
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let session_clone = session.clone();
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with_transaction(&self.pool, "create_session", |tx| {
Box::pin(async move {
// Insert the session
sqlx::query(
r#"
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INSERT INTO auth.sessions (
id, user_id, refresh_token, expires_at,
ip_address, user_agent, created_at, revoked
) VALUES (
$1, $2, $3, $4, $5, $6, $7, $8
)
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"#,
)
.bind(session_clone.id())
.bind(session_clone.user_id())
.bind(session_clone.refresh_token())
.bind(session_clone.expires_at())
.bind(session_clone.ip_address())
.bind(session_clone.user_agent())
.bind(session_clone.created_at())
.bind(session_clone.is_revoked())
.execute(&mut **tx)
.await
.map_err(Self::map_sqlx_error)?;
// Optionally, update the user's last login
// within the same transaction
sqlx::query(
r#"
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UPDATE auth.users
SET last_login_at = NOW(), updated_at = NOW()
WHERE id = $1
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"#,
)
.bind(session_clone.user_id())
.execute(&mut **tx)
.await
.map_err(|e| {
// Convert the error but without interrupting session
// creation if the update fails
tracing::warn!(
"Could not update last_login_at for user {}: {}",
session_clone.user_id(),
e
);
SessionRepositoryError::DatabaseError(format!(
"Session created but could not update last_login_at: {}",
e
))
})?;
Ok(session_clone)
}) as BoxFuture<'_, SessionRepositoryResult<Session>>
})
.await?;
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Ok(session)
}
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/// Gets a session by ID
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async fn get_session_by_id(&self, id: &str) -> SessionRepositoryResult<Session> {
let row = sqlx::query(
r#"
SELECT
id, user_id, refresh_token, expires_at,
ip_address, user_agent, created_at, revoked
FROM auth.sessions
WHERE id = $1
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"#,
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)
.bind(id)
.fetch_one(&*self.pool)
.await
.map_err(Self::map_sqlx_error)?;
Ok(Session::from_raw(
row.get("id"),
row.get("user_id"),
row.get("refresh_token"),
row.get("expires_at"),
row.get("ip_address"),
row.get("user_agent"),
row.get("created_at"),
row.get("revoked"),
))
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}
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/// Gets a session by refresh token
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async fn get_session_by_refresh_token(
&self,
refresh_token: &str,
) -> SessionRepositoryResult<Session> {
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let row = sqlx::query(
r#"
SELECT
id, user_id, refresh_token, expires_at,
ip_address, user_agent, created_at, revoked
FROM auth.sessions
WHERE refresh_token = $1
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"#,
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)
.bind(refresh_token)
.fetch_one(&*self.pool)
.await
.map_err(Self::map_sqlx_error)?;
Ok(Session::from_raw(
row.get("id"),
row.get("user_id"),
row.get("refresh_token"),
row.get("expires_at"),
row.get("ip_address"),
row.get("user_agent"),
row.get("created_at"),
row.get("revoked"),
))
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}
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/// Gets all sessions for a user
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async fn get_sessions_by_user_id(
&self,
user_id: &str,
) -> SessionRepositoryResult<Vec<Session>> {
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let rows = sqlx::query(
r#"
SELECT
id, user_id, refresh_token, expires_at,
ip_address, user_agent, created_at, revoked
FROM auth.sessions
WHERE user_id = $1
ORDER BY created_at DESC
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"#,
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)
.bind(user_id)
.fetch_all(&*self.pool)
.await
.map_err(Self::map_sqlx_error)?;
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let sessions = rows
.into_iter()
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.map(|row| {
Session::from_raw(
row.get("id"),
row.get("user_id"),
row.get("refresh_token"),
row.get("expires_at"),
row.get("ip_address"),
row.get("user_agent"),
row.get("created_at"),
row.get("revoked"),
)
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})
.collect();
Ok(sessions)
}
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/// Revokes a specific session using a transaction
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async fn revoke_session(&self, session_id: &str) -> SessionRepositoryResult<()> {
let id = session_id.to_string(); // Clone for use in closure
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with_transaction(&self.pool, "revoke_session", |tx| {
Box::pin(async move {
// Revoke the session
let result = sqlx::query(
r#"
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UPDATE auth.sessions
SET revoked = true
WHERE id = $1
RETURNING user_id
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"#,
)
.bind(&id)
.fetch_optional(&mut **tx)
.await
.map_err(Self::map_sqlx_error)?;
// If we found the session, we can log a security event
if let Some(row) = result {
let user_id: String = row.try_get("user_id").unwrap_or_default();
// Log security event (in a security table)
// This is optional but shows how additional operations
// can be performed in the same transaction
tracing::info!("Session with ID {} for user {} revoked", id, user_id);
}
Ok(())
}) as BoxFuture<'_, SessionRepositoryResult<()>>
})
.await
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}
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/// Revokes all sessions for a user using a transaction
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async fn revoke_all_user_sessions(&self, user_id: &str) -> SessionRepositoryResult<u64> {
let user_id_clone = user_id.to_string(); // Clone for use in closure
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with_transaction(&self.pool, "revoke_all_user_sessions", |tx| {
Box::pin(async move {
// Revoke all sessions for the user
let result = sqlx::query(
r#"
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UPDATE auth.sessions
SET revoked = true
WHERE user_id = $1 AND revoked = false
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"#,
)
.bind(&user_id_clone)
.execute(&mut **tx)
.await
.map_err(Self::map_sqlx_error)?;
let affected = result.rows_affected();
// Log security event
if affected > 0 {
tracing::info!("Revoked {} sessions for user {}", affected, user_id_clone);
}
Ok(affected)
}) as BoxFuture<'_, SessionRepositoryResult<u64>>
})
.await
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}
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/// Deletes expired sessions
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async fn delete_expired_sessions(&self) -> SessionRepositoryResult<u64> {
let now = Utc::now();
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let result = sqlx::query(
r#"
DELETE FROM auth.sessions
WHERE expires_at < $1
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"#,
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)
.bind(now)
.execute(&*self.pool)
.await
.map_err(Self::map_sqlx_error)?;
Ok(result.rows_affected())
}
}
// Implementation of the storage port for the application layer
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#[async_trait]
impl SessionStoragePort for SessionPgRepository {
async fn create_session(&self, session: Session) -> Result<Session, DomainError> {
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SessionRepository::create_session(self, session)
.await
.map_err(DomainError::from)
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}
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async fn get_session_by_refresh_token(
&self,
refresh_token: &str,
) -> Result<Session, DomainError> {
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SessionRepository::get_session_by_refresh_token(self, refresh_token)
.await
.map_err(DomainError::from)
}
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async fn revoke_session(&self, session_id: &str) -> Result<(), DomainError> {
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SessionRepository::revoke_session(self, session_id)
.await
.map_err(DomainError::from)
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}
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async fn revoke_all_user_sessions(&self, user_id: &str) -> Result<u64, DomainError> {
SessionRepository::revoke_all_user_sessions(self, user_id)
.await
.map_err(DomainError::from)
}
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}