Files
ent/entc/integration/migrate/entv1/client.go

302 lines
8.3 KiB
Go

// 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 entv1
import (
"context"
"fmt"
"log"
"github.com/facebookincubator/ent/entc/integration/migrate/entv1/migrate"
"github.com/facebookincubator/ent/entc/integration/migrate/entv1/car"
"github.com/facebookincubator/ent/entc/integration/migrate/entv1/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
// 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),
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("entv1: cannot start a transaction within a transaction")
}
tx, err := newTx(ctx, c.driver)
if err != nil {
return nil, fmt.Errorf("entv1: starting a transaction: %v", err)
}
cfg := config{driver: tx, log: c.log, debug: c.debug}
return &Tx{
config: cfg,
Car: NewCarClient(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),
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.O2O, true, car.OwnerTable, car.OwnerColumn),
)
query.sql = sqlgraph.Neighbors(ca.driver.Dialect(), step)
return query
}
// 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
}
// QueryParent queries the parent edge of a User.
func (c *UserClient) QueryParent(u *User) *UserQuery {
query := &UserQuery{config: c.config}
id := u.ID
step := sqlgraph.NewStep(
sqlgraph.From(user.Table, user.FieldID, id),
sqlgraph.To(user.Table, user.FieldID),
sqlgraph.Edge(sqlgraph.M2O, true, user.ParentTable, user.ParentColumn),
)
query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step)
return query
}
// QueryChildren queries the children edge of a User.
func (c *UserClient) QueryChildren(u *User) *UserQuery {
query := &UserQuery{config: c.config}
id := u.ID
step := sqlgraph.NewStep(
sqlgraph.From(user.Table, user.FieldID, id),
sqlgraph.To(user.Table, user.FieldID),
sqlgraph.Edge(sqlgraph.O2M, false, user.ChildrenTable, user.ChildrenColumn),
)
query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step)
return query
}
// QuerySpouse queries the spouse edge of a User.
func (c *UserClient) QuerySpouse(u *User) *UserQuery {
query := &UserQuery{config: c.config}
id := u.ID
step := sqlgraph.NewStep(
sqlgraph.From(user.Table, user.FieldID, id),
sqlgraph.To(user.Table, user.FieldID),
sqlgraph.Edge(sqlgraph.O2O, false, user.SpouseTable, user.SpouseColumn),
)
query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step)
return query
}
// 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.O2O, false, user.CarTable, user.CarColumn),
)
query.sql = sqlgraph.Neighbors(u.driver.Dialect(), step)
return query
}