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Most queries are not graph traversals but rather regular table scans, in which case the DISTINCT clause is not needed as duplicates cannot be returned (unless query was modified by the user).
618 lines
16 KiB
Go
618 lines
16 KiB
Go
// Copyright 2019-present Facebook Inc. All rights reserved.
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// This source code is licensed under the Apache 2.0 license found
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// in the LICENSE file in the root directory of this source tree.
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// Code generated by ent, DO NOT EDIT.
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package entv2
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import (
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"context"
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"fmt"
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"math"
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"entgo.io/ent/dialect/sql"
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"entgo.io/ent/dialect/sql/sqlgraph"
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"entgo.io/ent/entc/integration/migrate/entv2/car"
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"entgo.io/ent/entc/integration/migrate/entv2/predicate"
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"entgo.io/ent/entc/integration/migrate/entv2/user"
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"entgo.io/ent/schema/field"
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)
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// CarQuery is the builder for querying Car entities.
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type CarQuery struct {
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config
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ctx *QueryContext
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order []OrderFunc
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inters []Interceptor
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predicates []predicate.Car
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withOwner *UserQuery
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withFKs bool
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// intermediate query (i.e. traversal path).
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sql *sql.Selector
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path func(context.Context) (*sql.Selector, error)
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}
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// Where adds a new predicate for the CarQuery builder.
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func (cq *CarQuery) Where(ps ...predicate.Car) *CarQuery {
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cq.predicates = append(cq.predicates, ps...)
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return cq
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}
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// Limit the number of records to be returned by this query.
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func (cq *CarQuery) Limit(limit int) *CarQuery {
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cq.ctx.Limit = &limit
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return cq
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}
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// Offset to start from.
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func (cq *CarQuery) Offset(offset int) *CarQuery {
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cq.ctx.Offset = &offset
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return cq
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}
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// Unique configures the query builder to filter duplicate records on query.
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// By default, unique is set to true, and can be disabled using this method.
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func (cq *CarQuery) Unique(unique bool) *CarQuery {
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cq.ctx.Unique = &unique
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return cq
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}
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// Order specifies how the records should be ordered.
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func (cq *CarQuery) Order(o ...OrderFunc) *CarQuery {
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cq.order = append(cq.order, o...)
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return cq
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}
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// QueryOwner chains the current query on the "owner" edge.
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func (cq *CarQuery) QueryOwner() *UserQuery {
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query := (&UserClient{config: cq.config}).Query()
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query.path = func(ctx context.Context) (fromU *sql.Selector, err error) {
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if err := cq.prepareQuery(ctx); err != nil {
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return nil, err
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}
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selector := cq.sqlQuery(ctx)
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if err := selector.Err(); err != nil {
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return nil, err
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}
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step := sqlgraph.NewStep(
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sqlgraph.From(car.Table, car.FieldID, selector),
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sqlgraph.To(user.Table, user.FieldID),
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sqlgraph.Edge(sqlgraph.M2O, true, car.OwnerTable, car.OwnerColumn),
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)
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fromU = sqlgraph.SetNeighbors(cq.driver.Dialect(), step)
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return fromU, nil
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}
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return query
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}
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// First returns the first Car entity from the query.
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// Returns a *NotFoundError when no Car was found.
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func (cq *CarQuery) First(ctx context.Context) (*Car, error) {
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nodes, err := cq.Limit(1).All(setContextOp(ctx, cq.ctx, "First"))
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if err != nil {
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return nil, err
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}
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if len(nodes) == 0 {
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return nil, &NotFoundError{car.Label}
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}
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return nodes[0], nil
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}
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// FirstX is like First, but panics if an error occurs.
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func (cq *CarQuery) FirstX(ctx context.Context) *Car {
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node, err := cq.First(ctx)
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if err != nil && !IsNotFound(err) {
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panic(err)
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}
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return node
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}
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// FirstID returns the first Car ID from the query.
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// Returns a *NotFoundError when no Car ID was found.
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func (cq *CarQuery) FirstID(ctx context.Context) (id int, err error) {
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var ids []int
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if ids, err = cq.Limit(1).IDs(setContextOp(ctx, cq.ctx, "FirstID")); err != nil {
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return
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}
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if len(ids) == 0 {
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err = &NotFoundError{car.Label}
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return
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}
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return ids[0], nil
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}
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// FirstIDX is like FirstID, but panics if an error occurs.
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func (cq *CarQuery) FirstIDX(ctx context.Context) int {
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id, err := cq.FirstID(ctx)
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if err != nil && !IsNotFound(err) {
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panic(err)
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}
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return id
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}
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// Only returns a single Car entity found by the query, ensuring it only returns one.
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// Returns a *NotSingularError when more than one Car entity is found.
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// Returns a *NotFoundError when no Car entities are found.
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func (cq *CarQuery) Only(ctx context.Context) (*Car, error) {
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nodes, err := cq.Limit(2).All(setContextOp(ctx, cq.ctx, "Only"))
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if err != nil {
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return nil, err
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}
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switch len(nodes) {
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case 1:
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return nodes[0], nil
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case 0:
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return nil, &NotFoundError{car.Label}
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default:
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return nil, &NotSingularError{car.Label}
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}
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}
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// OnlyX is like Only, but panics if an error occurs.
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func (cq *CarQuery) OnlyX(ctx context.Context) *Car {
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node, err := cq.Only(ctx)
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if err != nil {
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panic(err)
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}
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return node
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}
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// OnlyID is like Only, but returns the only Car ID in the query.
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// Returns a *NotSingularError when more than one Car ID is found.
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// Returns a *NotFoundError when no entities are found.
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func (cq *CarQuery) OnlyID(ctx context.Context) (id int, err error) {
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var ids []int
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if ids, err = cq.Limit(2).IDs(setContextOp(ctx, cq.ctx, "OnlyID")); err != nil {
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return
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}
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switch len(ids) {
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case 1:
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id = ids[0]
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case 0:
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err = &NotFoundError{car.Label}
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default:
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err = &NotSingularError{car.Label}
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}
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return
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}
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// OnlyIDX is like OnlyID, but panics if an error occurs.
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func (cq *CarQuery) OnlyIDX(ctx context.Context) int {
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id, err := cq.OnlyID(ctx)
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if err != nil {
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panic(err)
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}
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return id
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}
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// All executes the query and returns a list of Cars.
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func (cq *CarQuery) All(ctx context.Context) ([]*Car, error) {
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ctx = setContextOp(ctx, cq.ctx, "All")
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if err := cq.prepareQuery(ctx); err != nil {
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return nil, err
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}
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qr := querierAll[[]*Car, *CarQuery]()
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return withInterceptors[[]*Car](ctx, cq, qr, cq.inters)
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}
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// AllX is like All, but panics if an error occurs.
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func (cq *CarQuery) AllX(ctx context.Context) []*Car {
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nodes, err := cq.All(ctx)
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if err != nil {
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panic(err)
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}
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return nodes
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}
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// IDs executes the query and returns a list of Car IDs.
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func (cq *CarQuery) IDs(ctx context.Context) (ids []int, err error) {
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if cq.ctx.Unique == nil && cq.path != nil {
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cq.Unique(true)
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}
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ctx = setContextOp(ctx, cq.ctx, "IDs")
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if err = cq.Select(car.FieldID).Scan(ctx, &ids); err != nil {
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return nil, err
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}
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return ids, nil
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}
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// IDsX is like IDs, but panics if an error occurs.
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func (cq *CarQuery) IDsX(ctx context.Context) []int {
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ids, err := cq.IDs(ctx)
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if err != nil {
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panic(err)
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}
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return ids
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}
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// Count returns the count of the given query.
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func (cq *CarQuery) Count(ctx context.Context) (int, error) {
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ctx = setContextOp(ctx, cq.ctx, "Count")
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if err := cq.prepareQuery(ctx); err != nil {
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return 0, err
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}
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return withInterceptors[int](ctx, cq, querierCount[*CarQuery](), cq.inters)
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}
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// CountX is like Count, but panics if an error occurs.
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func (cq *CarQuery) CountX(ctx context.Context) int {
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count, err := cq.Count(ctx)
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if err != nil {
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panic(err)
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}
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return count
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}
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// Exist returns true if the query has elements in the graph.
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func (cq *CarQuery) Exist(ctx context.Context) (bool, error) {
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ctx = setContextOp(ctx, cq.ctx, "Exist")
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switch _, err := cq.FirstID(ctx); {
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case IsNotFound(err):
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return false, nil
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case err != nil:
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return false, fmt.Errorf("entv2: check existence: %w", err)
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default:
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return true, nil
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}
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}
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// ExistX is like Exist, but panics if an error occurs.
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func (cq *CarQuery) ExistX(ctx context.Context) bool {
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exist, err := cq.Exist(ctx)
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if err != nil {
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panic(err)
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}
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return exist
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}
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// Clone returns a duplicate of the CarQuery builder, including all associated steps. It can be
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// used to prepare common query builders and use them differently after the clone is made.
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func (cq *CarQuery) Clone() *CarQuery {
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if cq == nil {
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return nil
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}
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return &CarQuery{
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config: cq.config,
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ctx: cq.ctx.Clone(),
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order: append([]OrderFunc{}, cq.order...),
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inters: append([]Interceptor{}, cq.inters...),
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predicates: append([]predicate.Car{}, cq.predicates...),
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withOwner: cq.withOwner.Clone(),
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// clone intermediate query.
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sql: cq.sql.Clone(),
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path: cq.path,
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}
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}
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// WithOwner tells the query-builder to eager-load the nodes that are connected to
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// the "owner" edge. The optional arguments are used to configure the query builder of the edge.
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func (cq *CarQuery) WithOwner(opts ...func(*UserQuery)) *CarQuery {
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query := (&UserClient{config: cq.config}).Query()
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for _, opt := range opts {
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opt(query)
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}
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cq.withOwner = query
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return cq
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}
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// GroupBy is used to group vertices by one or more fields/columns.
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// It is often used with aggregate functions, like: count, max, mean, min, sum.
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//
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// Example:
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//
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// var v []struct {
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// Name string `json:"name,omitempty"`
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// Count int `json:"count,omitempty"`
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// }
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//
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// client.Car.Query().
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// GroupBy(car.FieldName).
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// Aggregate(entv2.Count()).
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// Scan(ctx, &v)
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func (cq *CarQuery) GroupBy(field string, fields ...string) *CarGroupBy {
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cq.ctx.Fields = append([]string{field}, fields...)
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grbuild := &CarGroupBy{build: cq}
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grbuild.flds = &cq.ctx.Fields
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grbuild.label = car.Label
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grbuild.scan = grbuild.Scan
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return grbuild
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}
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// Select allows the selection one or more fields/columns for the given query,
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// instead of selecting all fields in the entity.
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//
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// Example:
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//
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// var v []struct {
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// Name string `json:"name,omitempty"`
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// }
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//
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// client.Car.Query().
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// Select(car.FieldName).
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// Scan(ctx, &v)
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func (cq *CarQuery) Select(fields ...string) *CarSelect {
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cq.ctx.Fields = append(cq.ctx.Fields, fields...)
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sbuild := &CarSelect{CarQuery: cq}
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sbuild.label = car.Label
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sbuild.flds, sbuild.scan = &cq.ctx.Fields, sbuild.Scan
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return sbuild
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}
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// Aggregate returns a CarSelect configured with the given aggregations.
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func (cq *CarQuery) Aggregate(fns ...AggregateFunc) *CarSelect {
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return cq.Select().Aggregate(fns...)
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}
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func (cq *CarQuery) prepareQuery(ctx context.Context) error {
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for _, inter := range cq.inters {
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if inter == nil {
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return fmt.Errorf("entv2: uninitialized interceptor (forgotten import entv2/runtime?)")
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}
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if trv, ok := inter.(Traverser); ok {
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if err := trv.Traverse(ctx, cq); err != nil {
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return err
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}
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}
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}
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for _, f := range cq.ctx.Fields {
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if !car.ValidColumn(f) {
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return &ValidationError{Name: f, err: fmt.Errorf("entv2: invalid field %q for query", f)}
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}
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}
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if cq.path != nil {
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prev, err := cq.path(ctx)
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if err != nil {
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return err
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}
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cq.sql = prev
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}
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return nil
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}
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func (cq *CarQuery) sqlAll(ctx context.Context, hooks ...queryHook) ([]*Car, error) {
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var (
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nodes = []*Car{}
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withFKs = cq.withFKs
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_spec = cq.querySpec()
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loadedTypes = [1]bool{
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cq.withOwner != nil,
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}
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)
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if cq.withOwner != nil {
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withFKs = true
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}
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if withFKs {
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_spec.Node.Columns = append(_spec.Node.Columns, car.ForeignKeys...)
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}
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_spec.ScanValues = func(columns []string) ([]any, error) {
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return (*Car).scanValues(nil, columns)
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}
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_spec.Assign = func(columns []string, values []any) error {
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node := &Car{config: cq.config}
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nodes = append(nodes, node)
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node.Edges.loadedTypes = loadedTypes
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return node.assignValues(columns, values)
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}
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for i := range hooks {
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hooks[i](ctx, _spec)
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}
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if err := sqlgraph.QueryNodes(ctx, cq.driver, _spec); err != nil {
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return nil, err
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}
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if len(nodes) == 0 {
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return nodes, nil
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}
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if query := cq.withOwner; query != nil {
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if err := cq.loadOwner(ctx, query, nodes, nil,
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func(n *Car, e *User) { n.Edges.Owner = e }); err != nil {
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return nil, err
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}
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}
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return nodes, nil
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}
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func (cq *CarQuery) loadOwner(ctx context.Context, query *UserQuery, nodes []*Car, init func(*Car), assign func(*Car, *User)) error {
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ids := make([]int, 0, len(nodes))
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nodeids := make(map[int][]*Car)
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for i := range nodes {
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if nodes[i].user_car == nil {
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continue
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}
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fk := *nodes[i].user_car
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if _, ok := nodeids[fk]; !ok {
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ids = append(ids, fk)
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}
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nodeids[fk] = append(nodeids[fk], nodes[i])
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}
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if len(ids) == 0 {
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return nil
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}
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query.Where(user.IDIn(ids...))
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neighbors, err := query.All(ctx)
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if err != nil {
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return err
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}
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for _, n := range neighbors {
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nodes, ok := nodeids[n.ID]
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if !ok {
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return fmt.Errorf(`unexpected foreign-key "user_car" returned %v`, n.ID)
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}
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for i := range nodes {
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assign(nodes[i], n)
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}
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}
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return nil
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}
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func (cq *CarQuery) sqlCount(ctx context.Context) (int, error) {
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_spec := cq.querySpec()
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_spec.Node.Columns = cq.ctx.Fields
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if len(cq.ctx.Fields) > 0 {
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_spec.Unique = cq.ctx.Unique != nil && *cq.ctx.Unique
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}
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return sqlgraph.CountNodes(ctx, cq.driver, _spec)
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}
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func (cq *CarQuery) querySpec() *sqlgraph.QuerySpec {
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_spec := sqlgraph.NewQuerySpec(car.Table, car.Columns, sqlgraph.NewFieldSpec(car.FieldID, field.TypeInt))
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_spec.From = cq.sql
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if unique := cq.ctx.Unique; unique != nil {
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_spec.Unique = *unique
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} else if cq.path != nil {
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_spec.Unique = true
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}
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if fields := cq.ctx.Fields; len(fields) > 0 {
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_spec.Node.Columns = make([]string, 0, len(fields))
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_spec.Node.Columns = append(_spec.Node.Columns, car.FieldID)
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for i := range fields {
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if fields[i] != car.FieldID {
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_spec.Node.Columns = append(_spec.Node.Columns, fields[i])
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}
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}
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}
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if ps := cq.predicates; len(ps) > 0 {
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_spec.Predicate = func(selector *sql.Selector) {
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for i := range ps {
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ps[i](selector)
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}
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}
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}
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if limit := cq.ctx.Limit; limit != nil {
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_spec.Limit = *limit
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}
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if offset := cq.ctx.Offset; offset != nil {
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_spec.Offset = *offset
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}
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if ps := cq.order; len(ps) > 0 {
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_spec.Order = func(selector *sql.Selector) {
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for i := range ps {
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ps[i](selector)
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}
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}
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}
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return _spec
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}
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func (cq *CarQuery) sqlQuery(ctx context.Context) *sql.Selector {
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builder := sql.Dialect(cq.driver.Dialect())
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t1 := builder.Table(car.Table)
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columns := cq.ctx.Fields
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if len(columns) == 0 {
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columns = car.Columns
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}
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selector := builder.Select(t1.Columns(columns...)...).From(t1)
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if cq.sql != nil {
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selector = cq.sql
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selector.Select(selector.Columns(columns...)...)
|
|
}
|
|
if cq.ctx.Unique != nil && *cq.ctx.Unique {
|
|
selector.Distinct()
|
|
}
|
|
for _, p := range cq.predicates {
|
|
p(selector)
|
|
}
|
|
for _, p := range cq.order {
|
|
p(selector)
|
|
}
|
|
if offset := cq.ctx.Offset; offset != nil {
|
|
// limit is mandatory for offset clause. We start
|
|
// with default value, and override it below if needed.
|
|
selector.Offset(*offset).Limit(math.MaxInt32)
|
|
}
|
|
if limit := cq.ctx.Limit; limit != nil {
|
|
selector.Limit(*limit)
|
|
}
|
|
return selector
|
|
}
|
|
|
|
// CarGroupBy is the group-by builder for Car entities.
|
|
type CarGroupBy struct {
|
|
selector
|
|
build *CarQuery
|
|
}
|
|
|
|
// Aggregate adds the given aggregation functions to the group-by query.
|
|
func (cgb *CarGroupBy) Aggregate(fns ...AggregateFunc) *CarGroupBy {
|
|
cgb.fns = append(cgb.fns, fns...)
|
|
return cgb
|
|
}
|
|
|
|
// Scan applies the selector query and scans the result into the given value.
|
|
func (cgb *CarGroupBy) Scan(ctx context.Context, v any) error {
|
|
ctx = setContextOp(ctx, cgb.build.ctx, "GroupBy")
|
|
if err := cgb.build.prepareQuery(ctx); err != nil {
|
|
return err
|
|
}
|
|
return scanWithInterceptors[*CarQuery, *CarGroupBy](ctx, cgb.build, cgb, cgb.build.inters, v)
|
|
}
|
|
|
|
func (cgb *CarGroupBy) sqlScan(ctx context.Context, root *CarQuery, v any) error {
|
|
selector := root.sqlQuery(ctx).Select()
|
|
aggregation := make([]string, 0, len(cgb.fns))
|
|
for _, fn := range cgb.fns {
|
|
aggregation = append(aggregation, fn(selector))
|
|
}
|
|
if len(selector.SelectedColumns()) == 0 {
|
|
columns := make([]string, 0, len(*cgb.flds)+len(cgb.fns))
|
|
for _, f := range *cgb.flds {
|
|
columns = append(columns, selector.C(f))
|
|
}
|
|
columns = append(columns, aggregation...)
|
|
selector.Select(columns...)
|
|
}
|
|
selector.GroupBy(selector.Columns(*cgb.flds...)...)
|
|
if err := selector.Err(); err != nil {
|
|
return err
|
|
}
|
|
rows := &sql.Rows{}
|
|
query, args := selector.Query()
|
|
if err := cgb.build.driver.Query(ctx, query, args, rows); err != nil {
|
|
return err
|
|
}
|
|
defer rows.Close()
|
|
return sql.ScanSlice(rows, v)
|
|
}
|
|
|
|
// CarSelect is the builder for selecting fields of Car entities.
|
|
type CarSelect struct {
|
|
*CarQuery
|
|
selector
|
|
}
|
|
|
|
// Aggregate adds the given aggregation functions to the selector query.
|
|
func (cs *CarSelect) Aggregate(fns ...AggregateFunc) *CarSelect {
|
|
cs.fns = append(cs.fns, fns...)
|
|
return cs
|
|
}
|
|
|
|
// Scan applies the selector query and scans the result into the given value.
|
|
func (cs *CarSelect) Scan(ctx context.Context, v any) error {
|
|
ctx = setContextOp(ctx, cs.ctx, "Select")
|
|
if err := cs.prepareQuery(ctx); err != nil {
|
|
return err
|
|
}
|
|
return scanWithInterceptors[*CarQuery, *CarSelect](ctx, cs.CarQuery, cs, cs.inters, v)
|
|
}
|
|
|
|
func (cs *CarSelect) sqlScan(ctx context.Context, root *CarQuery, v any) error {
|
|
selector := root.sqlQuery(ctx)
|
|
aggregation := make([]string, 0, len(cs.fns))
|
|
for _, fn := range cs.fns {
|
|
aggregation = append(aggregation, fn(selector))
|
|
}
|
|
switch n := len(*cs.selector.flds); {
|
|
case n == 0 && len(aggregation) > 0:
|
|
selector.Select(aggregation...)
|
|
case n != 0 && len(aggregation) > 0:
|
|
selector.AppendSelect(aggregation...)
|
|
}
|
|
rows := &sql.Rows{}
|
|
query, args := selector.Query()
|
|
if err := cs.driver.Query(ctx, query, args, rows); err != nil {
|
|
return err
|
|
}
|
|
defer rows.Close()
|
|
return sql.ScanSlice(rows, v)
|
|
}
|