TypeScript ORM for Node.js based on Data Mapper, Unit of Work and Identity Map patterns. Supports MongoDB, MySQL, MariaDB, PostgreSQL and SQLite (including libSQL) databases.
You might be asking: What the hell is Unit of Work and why should I care about it?
Unit of Work maintains a list of objects (entities) affected by a business transaction and coordinates the writing out of changes. (Martin Fowler)
Identity Map ensures that each object (entity) gets loaded only once by keeping every loaded object in a map. Looks up objects using the map when referring to them. (Martin Fowler)
So what benefits does it bring to us?
First and most important implication of having Unit of Work is that it allows handling transactions automatically.
When you call em.flush(), all computed changes are queried inside a database transaction (if supported by given driver). This means that you can control the boundaries of transactions simply by calling em.persistLater() and once all your changes are ready, calling flush() will run them inside a transaction.
You can also control the transaction boundaries manually via
em.transactional(cb).
constuser=awaitem.findOneOrFail(User,1);user.email='foo@bar.com';constcar=newCar();user.cars.add(car);// thanks to bi-directional cascading we only need to persist user entity// flushing will create a transaction, insert new car and update user with new email// as user entity is managed, calling flush() is enoughawaitem.flush();MikroORM allows you to implement your domain/business logic directly in the entities. To maintain always valid entities, you can use constructors to mark required properties. Let's define the User entity used in previous example:
@Entity()exportclassUser{
@PrimaryKey()id!: number;
@Property()name!: string;
@OneToOne(()=>Address)address?: Address;
@ManyToMany(()=>Car)cars=newCollection<Car>(this);constructor(name: string){this.name=name;}}Now to create new instance of the User entity, we are forced to provide the name:
constuser=newUser('John Doe');// name is required to create new user instanceuser.address=newAddress('10 Downing Street');// address is optionalOnce your entities are loaded, make a number of synchronous actions on your entities,
then call em.flush(). This will trigger computing of change sets. Only entities
(and properties) that were changed will generate database queries, if there are no changes,
no transaction will be started.
constuser=awaitem.findOneOrFail(User,1,{populate: ['cars','address.city'],});user.title='Mr.';user.address.street='10 Downing Street';// address is 1:1 relation of Address entityuser.cars.getItems().forEach(car=>car.forSale=true);// cars is 1:m collection of Car entitiesconstcar=newCar('VW');user.cars.add(car);// now we can flush all changes done to managed entitiesawaitem.flush();em.flush() will then execute these queries from the example above:
begin;
update"user"set"title"='Mr.'where"id"=1;
update"user_address"set"street"='10 Downing Street'where"id"=123;
update"car"set"for_sale"= case
when ("id"=1) then true
when ("id"=2) then true
when ("id"=3) then true
else "for_sale" end
where"id"in (1, 2, 3)
insert into"car" ("brand", "owner") values ('VW', 1);
commit;Thanks to Identity Map, you will always have only one instance of given entity in one context. This allows for some optimizations (skipping loading of already loaded entities), as well as comparison by identity (ent1 === ent2).
MikroORM documentation, included in this repo in the root directory, is built with Docusaurus and publicly hosted on GitHub Pages at https://mikro-orm.io.
There is also auto-generated CHANGELOG.md file based on commit messages (via semantic-release).
- Clean and Simple Entity Definition
- Identity Map
- Entity References
- Using Entity Constructors
- Modelling Relationships
- Collections
- Unit of Work
- Transactions
- Cascading persist and remove
- Composite and Foreign Keys as Primary Key
- Filters
- Using
QueryBuilder - Preloading Deeply Nested Structures via populate
- Property Validation
- Lifecycle Hooks
- Vanilla JS Support
- Schema Generator
- Entity Generator
You can find example integrations for some popular frameworks in the mikro-orm-examples repository:
- Express + MongoDB
- Nest + MySQL
- RealWorld example app (Nest + MySQL)
- Koa + SQLite
- GraphQL + PostgreSQL
- Inversify + PostgreSQL
- NextJS + MySQL
- Accounts.js REST and GraphQL authentication + SQLite
- Nest + Shopify + PostgreSQL + GraphQL
- Elysia.js + libSQL + Bun
- Electron.js + PostgreSQL
First install the module via yarn or npm and do not forget to install the database driver as well:
Since v4, you should install the driver package, but not the db connector itself, e.g. install
@mikro-orm/sqlite, but notsqlite3as that is already included in the driver package.
yarn add @mikro-orm/core @mikro-orm/mongodb # for mongo
yarn add @mikro-orm/core @mikro-orm/mysql # for mysql/mariadb
yarn add @mikro-orm/core @mikro-orm/mariadb # for mysql/mariadb
yarn add @mikro-orm/core @mikro-orm/postgresql # for postgresql
yarn add @mikro-orm/core @mikro-orm/mssql # for mssql
yarn add @mikro-orm/core @mikro-orm/sqlite # for sqlite
yarn add @mikro-orm/core @mikro-orm/better-sqlite # for better-sqlite
yarn add @mikro-orm/core @mikro-orm/libsql # for libsqlor
npm i -s @mikro-orm/core @mikro-orm/mongodb # for mongo
npm i -s @mikro-orm/core @mikro-orm/mysql # for mysql/mariadb
npm i -s @mikro-orm/core @mikro-orm/mariadb # for mysql/mariadb
npm i -s @mikro-orm/core @mikro-orm/postgresql # for postgresql
npm i -s @mikro-orm/core @mikro-orm/mssql # for mssql
npm i -s @mikro-orm/core @mikro-orm/sqlite # for sqlite
npm i -s @mikro-orm/core @mikro-orm/better-sqlite # for better-sqlite
npm i -s @mikro-orm/core @mikro-orm/libsql # for libsqlNext, if you want to use decorators for your entity definition, you will need to enable support for decorators as well as esModuleInterop in tsconfig.json via:
"experimentalDecorators": true,
"emitDecoratorMetadata": true,
"esModuleInterop": true,Alternatively, you can use EntitySchema.
Then call MikroORM.init as part of bootstrapping your app:
To access driver specific methods like
em.createQueryBuilder()we need to specify the driver type when callingMikroORM.init(). Alternatively we can cast theorm.emtoEntityManagerexported from the driver package:import{EntityManager}from'@mikro-orm/postgresql';constem=orm.emasEntityManager;constqb=em.createQueryBuilder(...);
importtype{PostgreSqlDriver}from'@mikro-orm/postgresql';// or any other SQL driver packageconstorm=awaitMikroORM.init<PostgreSqlDriver>({entities: ['./dist/entities'],// path to your JS entities (dist), relative to `baseDir`dbName: 'my-db-name',type: 'postgresql',});console.log(orm.em);// access EntityManager via `em` propertyThere are more ways to configure your entities, take a look at installation page.
Read more about all the possible configuration options in Advanced Configuration section.
Then you will need to fork entity manager for each request so their identity maps will not collide. To do so, use the RequestContext helper:
constapp=express();app.use((req,res,next)=>{RequestContext.create(orm.em,next);});You should register this middleware as the last one just before request handlers and before any of your custom middleware that is using the ORM. There might be issues when you register it before request processing middleware like
queryParserorbodyParser, so definitely register the context after them.
More info about RequestContext is described here.
Now you can start defining your entities (in one of the entities folders). This is how simple entity can look like in mongo driver:
./entities/MongoBook.ts
@Entity()exportclassMongoBook{
@PrimaryKey()_id: ObjectID;
@SerializedPrimaryKey()id: string;
@Property()title: string;
@ManyToOne(()=>Author)author: Author;
@ManyToMany(()=>BookTag)tags=newCollection<BookTag>(this);constructor(title: string,author: Author){this.title=title;this.author=author;}}For SQL drivers, you can use id: number PK:
./entities/SqlBook.ts
@Entity()exportclassSqlBook{
@PrimaryKey()id: number;}Or if you want to use UUID primary keys:
./entities/UuidBook.ts
import{randomUUID}from'node:crypto';
@Entity()exportclassUuidBook{
@PrimaryKey()uuid=randomUUID();}More information can be found in defining entities section in docs.
When you have your entities defined, you can start using ORM either via EntityManager or via EntityRepositorys.
To save entity state to database, you need to persist it. Persist takes care or deciding whether to use insert or update and computes appropriate change-set. Entity references that are not persisted yet (does not have identifier) will be cascade persisted automatically.
// use constructors in your entities for required parametersconstauthor=newAuthor('Jon Snow','snow@wall.st');author.born=newDate();constpublisher=newPublisher('7K publisher');constbook1=newBook('My Life on The Wall, part 1',author);book1.publisher=publisher;constbook2=newBook('My Life on The Wall, part 2',author);book2.publisher=publisher;constbook3=newBook('My Life on The Wall, part 3',author);book3.publisher=publisher;// just persist books, author and publisher will be automatically cascade persistedawaitem.persistAndFlush([book1,book2,book3]);To fetch entities from database you can use find() and findOne() of EntityManager:
constauthors=em.find(Author,{},{populate: ['books']});for(constauthorofauthors){console.log(author);// instance of Author entityconsole.log(author.name);// Jon Snowfor(constbookofauthor.books){// iterating books collectionconsole.log(book);// instance of Book entityconsole.log(book.title);// My Life on The Wall, part 1/2/3}}More convenient way of fetching entities from database is by using EntityRepository, that carries the entity name, so you do not have to pass it to every find and findOne calls:
constbooksRepository=em.getRepository(Book);constbooks=awaitbooksRepository.find({author: '...'},{populate: ['author'],limit: 1,offset: 2,orderBy: {title: QueryOrder.DESC},});console.log(books);// Loaded<Book, 'author'>[]Take a look at docs about working with EntityManager or using EntityRepository instead.
Contributions, issues and feature requests are welcome. Please read CONTRIBUTING.md for details on the process for submitting pull requests to us.
👤 Martin Adámek
See also the list of contributors who participated in this project.
Please ⭐️ this repository if this project helped you!
Copyright © 2018 Martin Adámek.
This project is licensed under the MIT License - see the LICENSE file for details.