# Repository APIs

# Repository API

  • manager - The EntityManager used by this repository.
const manager = repository.manager
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const metadata = repository.metadata
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  • queryRunner - The query runner used by EntityManager. Used only in transactional instances of EntityManager.
const queryRunner = repository.queryRunner
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  • target - The target entity class managed by this repository. Used only in transactional instances of EntityManager.
const target = repository.target
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  • createQueryBuilder - Creates a query builder use to build SQL queries. Learn more about QueryBuilder.
const users = await repository
    .createQueryBuilder("user")
    .where("user.name = :name", { name: "John" })
    .getMany()
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  • hasId - Checks if the given entity's primary column property is defined.
if (repository.hasId(user)) {
    // ... do something
}
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  • getId - Gets the primary column property values of the given entity. If entity has composite primary keys then the returned value will be an object with names and values of primary columns.
const userId = repository.getId(user) // userId === 1
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  • create - Creates a new instance of User. Optionally accepts an object literal with user properties which will be written into newly created user object
const user = repository.create() // same as const user = new User();
const user = repository.create({
    id: 1,
    firstName: "Timber",
    lastName: "Saw",
}) // same as const user = new User(); user.firstName = "Timber"; user.lastName = "Saw";
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  • merge - Merges multiple entities into a single entity.
const user = new User()
repository.merge(user, { firstName: "Timber" }, { lastName: "Saw" }) // same as user.firstName = "Timber"; user.lastName = "Saw";
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  • preload - Creates a new entity from the given plain javascript object. If the entity already exists in the database, then it loads it (and everything related to it), replaces all values with the new ones from the given object, and returns the new entity. The new entity is actually an entity loaded from the database with all properties replaced from the new object.
    Note that given entity-like object must have an entity id / primary key to find entity by. Returns undefined if entity with given id was not found.
const partialUser = {
    id: 1,
    firstName: "Rizzrak",
    profile: {
        id: 1,
    },
}
const user = await repository.preload(partialUser)
// user will contain all missing data from partialUser with partialUser property values:
// { id: 1, firstName: "Rizzrak", lastName: "Saw", profile: { id: 1, ... } }
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  • save - Saves a given entity or array of entities. If the entity already exist in the database, it is updated. If the entity does not exist in the database, it is inserted. It saves all given entities in a single transaction (in the case of entity, manager is not transactional). Also supports partial updating since all undefined properties are skipped. Returns the saved entity/entities.
await repository.save(user)
await repository.save([category1, category2, category3])
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  • remove - Removes a given entity or array of entities. It removes all given entities in a single transaction (in the case of entity, manager is not transactional). Returns the removed entity/entities.
await repository.remove(user)
await repository.remove([category1, category2, category3])
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  • insert - Inserts a new entity, or array of entities.
await repository.insert({
    firstName: "Timber",
    lastName: "Timber",
})

await repository.insert([
    {
        firstName: "Foo",
        lastName: "Bar",
    },
    {
        firstName: "Rizz",
        lastName: "Rak",
    },
])
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  • update - Partially updates entity by a given update options or entity id.
await repository.update({ firstName: "Timber" }, { firstName: "Rizzrak" })
// executes UPDATE user SET firstName = Rizzrak WHERE firstName = Timber

await repository.update(1, { firstName: "Rizzrak" })
// executes UPDATE user SET firstName = Rizzrak WHERE id = 1
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  • upsert - Inserts a new entity or array of entities unless they already exist in which case they are updated instead. Supported by AuroraDataApi, Cockroach, Mysql, Postgres, and Sqlite database drivers.
await repository.upsert(
    [
        { externalId: "abc123", firstName: "Rizzrak" },
        { externalId: "bca321", firstName: "Karzzir" },
    ],
    ["externalId"],
)
/** executes
 *  INSERT INTO user
 *  VALUES
 *      (externalId = abc123, firstName = Rizzrak),
 *      (externalId = cba321, firstName = Karzzir),
 *  ON CONFLICT (externalId) DO UPDATE firstName = EXCLUDED.firstName
 **/
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await repository.upsert(
    [
        { externalId: "abc123", firstName: "Rizzrak" },
        { externalId: "bca321", firstName: "Karzzir" },
    ],
    {
        conflictPaths: ["externalId"],
        skipUpdateIfNoValuesChanged: true, // supported by postgres, skips update if it would not change row values
    },
)
/** executes
 *  INSERT INTO user
 *  VALUES
 *      (externalId = abc123, firstName = Rizzrak),
 *      (externalId = cba321, firstName = Karzzir),
 *  ON CONFLICT (externalId) DO UPDATE
 *  SET firstName = EXCLUDED.firstName
 *  WHERE user.firstName IS DISTINCT FROM EXCLUDED.firstName
 **/
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  • delete - Deletes entities by entity id, ids or given conditions:
await repository.delete(1)
await repository.delete([1, 2, 3])
await repository.delete({ firstName: "Timber" })
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  • softDelete and restore - Soft deleting and restoring a row by id
const repository = dataSource.getRepository(Entity)
// Delete a entity
await repository.softDelete(1)
// And You can restore it using restore;
await repository.restore(1)
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  • softRemove and recover - This is alternative to softDelete and restore.
// You can soft-delete them using softRemove
const entities = await repository.find()
const entitiesAfterSoftRemove = await repository.softRemove(entities)

// And You can recover them using recover;
await repository.recover(entitiesAfterSoftRemove)
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  • increment - Increments some column by provided value of entities that match given options.
await repository.increment({ firstName: "Timber" }, "age", 3)
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  • decrement - Decrements some column by provided value that match given options.
await repository.decrement({ firstName: "Timber" }, "age", 3)
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  • count - Counts entities that match FindOptions. Useful for pagination.
const count = await repository.count({
    where: {
        firstName: "Timber",
    },
})
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  • countBy - Counts entities that match FindOptionsWhere. Useful for pagination.
const count = await repository.countBy({ firstName: "Timber" })
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  • find - Finds entities that match given FindOptions.
const timbers = await repository.find({
    where: {
        firstName: "Timber",
    },
})
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  • findBy - Finds entities that match given FindWhereOptions.
const timbers = await repository.findBy({
    firstName: "Timber",
})
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  • findAndCount - Finds entities that match given FindOptions. Also counts all entities that match given conditions, but ignores pagination settings (from and take options).
const [timbers, timbersCount] = await repository.findAndCount({
    where: {
        firstName: "Timber",
    },
})
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  • findAndCountBy - Finds entities that match given FindOptionsWhere. Also counts all entities that match given conditions, but ignores pagination settings (from and take options).
const [timbers, timbersCount] = await repository.findAndCountBy({
    firstName: "Timber",
})
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  • findOne - Finds the first entity that matches given FindOptions.
const timber = await repository.findOne({
    where: {
        firstName: "Timber",
    },
})
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  • findOneBy - Finds the first entity that matches given FindOptionsWhere.
const timber = await repository.findOneBy({ firstName: "Timber" })
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  • findOneOrFail - Finds the first entity that matches some id or find options. Rejects the returned promise if nothing matches.
const timber = await repository.findOneOrFail({
    where: {
        firstName: "Timber",
    },
})
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  • findOneByOrFail - Finds the first entity that matches given FindOptions. Rejects the returned promise if nothing matches.
const timber = await repository.findOneByOrFail({ firstName: "Timber" })
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  • query - Executes a raw SQL query.
const rawData = await repository.query(`SELECT * FROM USERS`)
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  • clear - Clears all the data from the given table (truncates/drops it).
await repository.clear()
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# Additional Options

Optional SaveOptions can be passed as parameter for save.

  • data - Additional data to be passed with persist method. This data can be used in subscribers then.
  • listeners: boolean - Indicates if listeners and subscribers are called for this operation. By default they are enabled, you can disable them by setting { listeners: false } in save/remove options.
  • transaction: boolean - By default transactions are enabled and all queries in persistence operation are wrapped into the transaction. You can disable this behaviour by setting { transaction: false } in the persistence options.
  • chunk: number - Breaks save execution into multiple groups of chunks. For example, if you want to save 100.000 objects but you have issues with saving them, you can break them into 10 groups of 10.000 objects (by setting { chunk: 10000 }) and save each group separately. This option is needed to perform very big insertions when you have issues with underlying driver parameter number limitation.
  • reload: boolean - Flag to determine whether the entity that is being persisted should be reloaded during the persistence operation. It will work only on databases which does not support RETURNING / OUTPUT statement. Enabled by default.

Example:

// users contains array of User Entities
userRepository.save(users, { chunk: users.length / 1000 })
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Optional RemoveOptions can be passed as parameter for remove and delete.

  • data - Additional data to be passed with remove method. This data can be used in subscribers then.
  • listeners: boolean - Indicates if listeners and subscribers are called for this operation. By default they are enabled, you can disable them by setting { listeners: false } in save/remove options.
  • transaction: boolean - By default transactions are enabled and all queries in persistence operation are wrapped into the transaction. You can disable this behaviour by setting { transaction: false } in the persistence options.
  • chunk: number - Breaks removal execution into multiple groups of chunks. For example, if you want to remove 100.000 objects but you have issues doing so, you can break them into 10 groups of 10.000 objects, by setting { chunk: 10000 }, and remove each group separately. This option is needed to perform very big deletions when you have issues with underlying driver parameter number limitation.

Example:

// users contains array of User Entities
userRepository.remove(users, { chunk: entities.length / 1000 })
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# TreeRepository API

For TreeRepository API refer to the Tree Entities documentation.

# MongoRepository API

For MongoRepository API refer to the MongoDB documentation.