diesel-postgres

[package]
name = "example-diesel-postgres"
version = "0.1.0"
edition = "2021"
publish = false

[dependencies]
axum = { path = "../../axum", features = ["macros"] }
deadpool-diesel = { version = "0.6.1", features = ["postgres"] }
diesel = { version = "2", features = ["postgres"] }
diesel_migrations = "2"
serde = { version = "1.0", features = ["derive"] }
tokio = { version = "1.0", features = ["full"] }
tracing = "0.1"
tracing-subscriber = { version = "0.3", features = ["env-filter"] }
//! Run with
//!
//! ```not_rust
//! cargo run -p example-diesel-postgres
//! ```
//!
//! Checkout the [diesel webpage](https://diesel.rs) for
//! longer guides about diesel
//!
//! Checkout the [crates.io source code](https://github.com/rust-lang/crates.io/)
//! for a real world application using axum and diesel

use axum::{
    extract::State,
    http::StatusCode,
    response::Json,
    routing::{get, post},
    Router,
};
use diesel::prelude::*;
use diesel_migrations::{embed_migrations, EmbeddedMigrations, MigrationHarness};
use std::net::SocketAddr;
use tracing_subscriber::{layer::SubscriberExt, util::SubscriberInitExt};

// this embeds the migrations into the application binary
// the migration path is relative to the `CARGO_MANIFEST_DIR`
pub const MIGRATIONS: EmbeddedMigrations = embed_migrations!("migrations/");

// normally part of your generated schema.rs file
table! {
    users (id) {
        id -> Integer,
        name -> Text,
        hair_color -> Nullable<Text>,
    }
}

#[derive(serde::Serialize, Selectable, Queryable)]
struct User {
    id: i32,
    name: String,
    hair_color: Option<String>,
}

#[derive(serde::Deserialize, Insertable)]
#[diesel(table_name = users)]
struct NewUser {
    name: String,
    hair_color: Option<String>,
}

#[tokio::main]
async fn main() {
    tracing_subscriber::registry()
        .with(
            tracing_subscriber::EnvFilter::try_from_default_env()
                .unwrap_or_else(|_| format!("{}=debug", env!("CARGO_CRATE_NAME")).into()),
        )
        .with(tracing_subscriber::fmt::layer())
        .init();

    let db_url = std::env::var("DATABASE_URL").unwrap();

    // set up connection pool
    let manager = deadpool_diesel::postgres::Manager::new(db_url, deadpool_diesel::Runtime::Tokio1);
    let pool = deadpool_diesel::postgres::Pool::builder(manager)
        .build()
        .unwrap();

    // run the migrations on server startup
    {
        let conn = pool.get().await.unwrap();
        conn.interact(|conn| conn.run_pending_migrations(MIGRATIONS).map(|_| ()))
            .await
            .unwrap()
            .unwrap();
    }

    // build our application with some routes
    let app = Router::new()
        .route("/user/list", get(list_users))
        .route("/user/create", post(create_user))
        .with_state(pool);

    // run it with hyper
    let addr = SocketAddr::from(([127, 0, 0, 1], 3000));
    tracing::debug!("listening on {addr}");
    let listener = tokio::net::TcpListener::bind(addr).await.unwrap();
    axum::serve(listener, app).await.unwrap();
}

async fn create_user(
    State(pool): State<deadpool_diesel::postgres::Pool>,
    Json(new_user): Json<NewUser>,
) -> Result<Json<User>, (StatusCode, String)> {
    let conn = pool.get().await.map_err(internal_error)?;
    let res = conn
        .interact(|conn| {
            diesel::insert_into(users::table)
                .values(new_user)
                .returning(User::as_returning())
                .get_result(conn)
        })
        .await
        .map_err(internal_error)?
        .map_err(internal_error)?;
    Ok(Json(res))
}

async fn list_users(
    State(pool): State<deadpool_diesel::postgres::Pool>,
) -> Result<Json<Vec<User>>, (StatusCode, String)> {
    let conn = pool.get().await.map_err(internal_error)?;
    let res = conn
        .interact(|conn| users::table.select(User::as_select()).load(conn))
        .await
        .map_err(internal_error)?
        .map_err(internal_error)?;
    Ok(Json(res))
}

/// Utility function for mapping any error into a `500 Internal Server Error`
/// response.
fn internal_error<E>(err: E) -> (StatusCode, String)
where
    E: std::error::Error,
{
    (StatusCode::INTERNAL_SERVER_ERROR, err.to_string())
}
-- Your SQL goes here
CREATE TABLE "users"(
    "id" SERIAL PRIMARY KEY,
    "name" TEXT NOT NULL,
    "hair_color" TEXT
);
-- This file should undo anything in "up.sql"
DROP TABLE "users";

Copyright © 2025 • Created with ❤️ by the authors of axum an Gabor Szabo