// Copyright (c) Facebook, Inc. and its affiliates. All Rights Reserved. // This source code is licensed under the Apache 2.0 license found // in the LICENSE file in the root directory of this source tree. // Code generated by entc, DO NOT EDIT. package entv2 import ( "context" "fmt" "log" "github.com/facebookincubator/ent/entc/integration/migrate/entv2/migrate" "github.com/facebookincubator/ent/entc/integration/migrate/entv2/car" "github.com/facebookincubator/ent/entc/integration/migrate/entv2/group" "github.com/facebookincubator/ent/entc/integration/migrate/entv2/pet" "github.com/facebookincubator/ent/entc/integration/migrate/entv2/user" "github.com/facebookincubator/ent/dialect" "github.com/facebookincubator/ent/dialect/sql" "github.com/facebookincubator/ent/dialect/sql/sqlgraph" ) // Client is the client that holds all ent builders. type Client struct { config // Schema is the client for creating, migrating and dropping schema. Schema *migrate.Schema // Car is the client for interacting with the Car builders. Car *CarClient // Group is the client for interacting with the Group builders. Group *GroupClient // Pet is the client for interacting with the Pet builders. Pet *PetClient // User is the client for interacting with the User builders. User *UserClient } // NewClient creates a new client configured with the given options. func NewClient(opts ...Option) *Client { c := config{log: log.Println} c.options(opts...) return &Client{ config: c, Schema: migrate.NewSchema(c.driver), Car: NewCarClient(c), Group: NewGroupClient(c), Pet: NewPetClient(c), User: NewUserClient(c), } } // Open opens a connection to the database specified by the driver name and a // driver-specific data source name, and returns a new client attached to it. // Optional parameters can be added for configuring the client. func Open(driverName, dataSourceName string, options ...Option) (*Client, error) { switch driverName { case dialect.MySQL, dialect.Postgres, dialect.SQLite: drv, err := sql.Open(driverName, dataSourceName) if err != nil { return nil, err } return NewClient(append(options, Driver(drv))...), nil default: return nil, fmt.Errorf("unsupported driver: %q", driverName) } } // Tx returns a new transactional client. func (c *Client) Tx(ctx context.Context) (*Tx, error) { if _, ok := c.driver.(*txDriver); ok { return nil, fmt.Errorf("entv2: cannot start a transaction within a transaction") } tx, err := newTx(ctx, c.driver) if err != nil { return nil, fmt.Errorf("entv2: starting a transaction: %v", err) } cfg := config{driver: tx, log: c.log, debug: c.debug} return &Tx{ config: cfg, Car: NewCarClient(cfg), Group: NewGroupClient(cfg), Pet: NewPetClient(cfg), User: NewUserClient(cfg), }, nil } // Debug returns a new debug-client. It's used to get verbose logging on specific operations. // // client.Debug(). // Car. // Query(). // Count(ctx) // func (c *Client) Debug() *Client { if c.debug { return c } cfg := config{driver: dialect.Debug(c.driver, c.log), log: c.log, debug: true} return &Client{ config: cfg, Schema: migrate.NewSchema(cfg.driver), Car: NewCarClient(cfg), Group: NewGroupClient(cfg), Pet: NewPetClient(cfg), User: NewUserClient(cfg), } } // Close closes the database connection and prevents new queries from starting. func (c *Client) Close() error { return c.driver.Close() } // CarClient is a client for the Car schema. type CarClient struct { config } // NewCarClient returns a client for the Car from the given config. func NewCarClient(c config) *CarClient { return &CarClient{config: c} } // Create returns a create builder for Car. func (c *CarClient) Create() *CarCreate { return &CarCreate{config: c.config} } // Update returns an update builder for Car. func (c *CarClient) Update() *CarUpdate { return &CarUpdate{config: c.config} } // UpdateOne returns an update builder for the given entity. func (c *CarClient) UpdateOne(ca *Car) *CarUpdateOne { return c.UpdateOneID(ca.ID) } // UpdateOneID returns an update builder for the given id. func (c *CarClient) UpdateOneID(id int) *CarUpdateOne { return &CarUpdateOne{config: c.config, id: id} } // Delete returns a delete builder for Car. func (c *CarClient) Delete() *CarDelete { return &CarDelete{config: c.config} } // DeleteOne returns a delete builder for the given entity. func (c *CarClient) DeleteOne(ca *Car) *CarDeleteOne { return c.DeleteOneID(ca.ID) } // DeleteOneID returns a delete builder for the given id. func (c *CarClient) DeleteOneID(id int) *CarDeleteOne { return &CarDeleteOne{c.Delete().Where(car.ID(id))} } // Create returns a query builder for Car. func (c *CarClient) Query() *CarQuery { return &CarQuery{config: c.config} } // Get returns a Car entity by its id. func (c *CarClient) Get(ctx context.Context, id int) (*Car, error) { return c.Query().Where(car.ID(id)).Only(ctx) } // GetX is like Get, but panics if an error occurs. func (c *CarClient) GetX(ctx context.Context, id int) *Car { ca, err := c.Get(ctx, id) if err != nil { panic(err) } return ca } // QueryOwner queries the owner edge of a Car. func (c *CarClient) QueryOwner(ca *Car) *UserQuery { query := &UserQuery{config: c.config} id := ca.ID step := sqlgraph.NewStep( sqlgraph.From(car.Table, car.FieldID, id), sqlgraph.To(user.Table, user.FieldID), sqlgraph.Edge(sqlgraph.M2O, true, car.OwnerTable, car.OwnerColumn), ) query.sql = sqlgraph.Neighbors(ca.driver.Dialect(), step) return query } // GroupClient is a client for the Group schema. type GroupClient struct { config } // NewGroupClient returns a client for the Group from the given config. func NewGroupClient(c config) *GroupClient { return &GroupClient{config: c} } // Create returns a create builder for Group. func (c *GroupClient) Create() *GroupCreate { return &GroupCreate{config: c.config} } // Update returns an update builder for Group. func (c *GroupClient) Update() *GroupUpdate { return &GroupUpdate{config: c.config} } // UpdateOne returns an update builder for the given entity. func (c *GroupClient) UpdateOne(gr *Group) *GroupUpdateOne { return c.UpdateOneID(gr.ID) } // UpdateOneID returns an update builder for the given id. func (c *GroupClient) UpdateOneID(id int) *GroupUpdateOne { return &GroupUpdateOne{config: c.config, id: id} } // Delete returns a delete builder for Group. func (c *GroupClient) Delete() *GroupDelete { return &GroupDelete{config: c.config} } // DeleteOne returns a delete builder for the given entity. func (c *GroupClient) DeleteOne(gr *Group) *GroupDeleteOne { return c.DeleteOneID(gr.ID) } // DeleteOneID returns a delete builder for the given id. func (c *GroupClient) DeleteOneID(id int) *GroupDeleteOne { return &GroupDeleteOne{c.Delete().Where(group.ID(id))} } // Create returns a query builder for Group. func (c *GroupClient) Query() *GroupQuery { return &GroupQuery{config: c.config} } // Get returns a Group entity by its id. func (c *GroupClient) Get(ctx context.Context, id int) (*Group, error) { return c.Query().Where(group.ID(id)).Only(ctx) } // GetX is like Get, but panics if an error occurs. func (c *GroupClient) GetX(ctx context.Context, id int) *Group { gr, err := c.Get(ctx, id) if err != nil { panic(err) } return gr } // PetClient is a client for the Pet schema. type PetClient struct { config } // NewPetClient returns a client for the Pet from the given config. func NewPetClient(c config) *PetClient { return &PetClient{config: c} } // Create returns a create builder for Pet. func (c *PetClient) Create() *PetCreate { return &PetCreate{config: c.config} } // Update returns an update builder for Pet. func (c *PetClient) Update() *PetUpdate { return &PetUpdate{config: c.config} } // UpdateOne returns an update builder for the given entity. func (c *PetClient) UpdateOne(pe *Pet) *PetUpdateOne { return c.UpdateOneID(pe.ID) } // UpdateOneID returns an update builder for the given id. func (c *PetClient) UpdateOneID(id int) *PetUpdateOne { return &PetUpdateOne{config: c.config, id: id} } // Delete returns a delete builder for Pet. func (c *PetClient) Delete() *PetDelete { return &PetDelete{config: c.config} } // DeleteOne returns a delete builder for the given entity. func (c *PetClient) DeleteOne(pe *Pet) *PetDeleteOne { return c.DeleteOneID(pe.ID) } // DeleteOneID returns a delete builder for the given id. func (c *PetClient) DeleteOneID(id int) *PetDeleteOne { return &PetDeleteOne{c.Delete().Where(pet.ID(id))} } // Create returns a query builder for Pet. func (c *PetClient) Query() *PetQuery { return &PetQuery{config: c.config} } // Get returns a Pet entity by its id. func (c *PetClient) Get(ctx context.Context, id int) (*Pet, error) { return c.Query().Where(pet.ID(id)).Only(ctx) } // GetX is like Get, but panics if an error occurs. func (c *PetClient) GetX(ctx context.Context, id int) *Pet { pe, err := c.Get(ctx, id) if err != nil { panic(err) } return pe } // UserClient is a client for the User schema. type UserClient struct { config } // NewUserClient returns a client for the User from the given config. func NewUserClient(c config) *UserClient { return &UserClient{config: c} } // Create returns a create builder for User. func (c *UserClient) Create() *UserCreate { return &UserCreate{config: c.config} } // Update returns an update builder for User. func (c *UserClient) Update() *UserUpdate { return &UserUpdate{config: c.config} } // UpdateOne returns an update builder for the given entity. func (c *UserClient) UpdateOne(u *User) *UserUpdateOne { return c.UpdateOneID(u.ID) } // UpdateOneID returns an update builder for the given id. func (c *UserClient) UpdateOneID(id int) *UserUpdateOne { return &UserUpdateOne{config: c.config, id: id} } // Delete returns a delete builder for User. func (c *UserClient) Delete() *UserDelete { return &UserDelete{config: c.config} } // DeleteOne returns a delete builder for the given entity. func (c *UserClient) DeleteOne(u *User) *UserDeleteOne { return c.DeleteOneID(u.ID) } // DeleteOneID returns a delete builder for the given id. func (c *UserClient) DeleteOneID(id int) *UserDeleteOne { return &UserDeleteOne{c.Delete().Where(user.ID(id))} } // Create returns a query builder for User. func (c *UserClient) Query() *UserQuery { return &UserQuery{config: c.config} } // Get returns a User entity by its id. func (c *UserClient) Get(ctx context.Context, id int) (*User, error) { return c.Query().Where(user.ID(id)).Only(ctx) } // GetX is like Get, but panics if an error occurs. func (c *UserClient) GetX(ctx context.Context, id int) *User { u, err := c.Get(ctx, id) if err != nil { panic(err) } return u } // QueryCar queries the car edge of a User. func (c *UserClient) QueryCar(u *User) *CarQuery { query := &CarQuery{config: c.config} id := u.ID step := sqlgraph.NewStep( sqlgraph.From(user.Table, user.FieldID, id), sqlgraph.To(car.Table, car.FieldID), sqlgraph.Edge(sqlgraph.O2M, false, user.CarTable, user.CarColumn), ) query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step) return query } // QueryPets queries the pets edge of a User. func (c *UserClient) QueryPets(u *User) *PetQuery { query := &PetQuery{config: c.config} id := u.ID step := sqlgraph.NewStep( sqlgraph.From(user.Table, user.FieldID, id), sqlgraph.To(pet.Table, pet.FieldID), sqlgraph.Edge(sqlgraph.M2O, false, user.PetsTable, user.PetsColumn), ) query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step) return query }