online-order/ent/domain_query.go

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2023-10-28 23:12:07 +00:00
// Code generated by ent, DO NOT EDIT.
package ent
import (
"context"
"fmt"
"math"
"online-order/ent/business"
"online-order/ent/domain"
"online-order/ent/predicate"
"online-order/ent/user"
"entgo.io/ent/dialect/sql"
"entgo.io/ent/dialect/sql/sqlgraph"
"entgo.io/ent/schema/field"
)
// DomainQuery is the builder for querying Domain entities.
type DomainQuery struct {
config
ctx *QueryContext
order []domain.OrderOption
inters []Interceptor
predicates []predicate.Domain
withBusinesses *BusinessQuery
withUsers *UserQuery
// intermediate query (i.e. traversal path).
sql *sql.Selector
path func(context.Context) (*sql.Selector, error)
}
// Where adds a new predicate for the DomainQuery builder.
func (dq *DomainQuery) Where(ps ...predicate.Domain) *DomainQuery {
dq.predicates = append(dq.predicates, ps...)
return dq
}
// Limit the number of records to be returned by this query.
func (dq *DomainQuery) Limit(limit int) *DomainQuery {
dq.ctx.Limit = &limit
return dq
}
// Offset to start from.
func (dq *DomainQuery) Offset(offset int) *DomainQuery {
dq.ctx.Offset = &offset
return dq
}
// Unique configures the query builder to filter duplicate records on query.
// By default, unique is set to true, and can be disabled using this method.
func (dq *DomainQuery) Unique(unique bool) *DomainQuery {
dq.ctx.Unique = &unique
return dq
}
// Order specifies how the records should be ordered.
func (dq *DomainQuery) Order(o ...domain.OrderOption) *DomainQuery {
dq.order = append(dq.order, o...)
return dq
}
// QueryBusinesses chains the current query on the "businesses" edge.
func (dq *DomainQuery) QueryBusinesses() *BusinessQuery {
query := (&BusinessClient{config: dq.config}).Query()
query.path = func(ctx context.Context) (fromU *sql.Selector, err error) {
if err := dq.prepareQuery(ctx); err != nil {
return nil, err
}
selector := dq.sqlQuery(ctx)
if err := selector.Err(); err != nil {
return nil, err
}
step := sqlgraph.NewStep(
sqlgraph.From(domain.Table, domain.FieldID, selector),
sqlgraph.To(business.Table, business.FieldID),
sqlgraph.Edge(sqlgraph.M2O, true, domain.BusinessesTable, domain.BusinessesColumn),
)
fromU = sqlgraph.SetNeighbors(dq.driver.Dialect(), step)
return fromU, nil
}
return query
}
// QueryUsers chains the current query on the "users" edge.
func (dq *DomainQuery) QueryUsers() *UserQuery {
query := (&UserClient{config: dq.config}).Query()
query.path = func(ctx context.Context) (fromU *sql.Selector, err error) {
if err := dq.prepareQuery(ctx); err != nil {
return nil, err
}
selector := dq.sqlQuery(ctx)
if err := selector.Err(); err != nil {
return nil, err
}
step := sqlgraph.NewStep(
sqlgraph.From(domain.Table, domain.FieldID, selector),
sqlgraph.To(user.Table, user.FieldID),
sqlgraph.Edge(sqlgraph.M2O, true, domain.UsersTable, domain.UsersColumn),
)
fromU = sqlgraph.SetNeighbors(dq.driver.Dialect(), step)
return fromU, nil
}
return query
}
// First returns the first Domain entity from the query.
// Returns a *NotFoundError when no Domain was found.
func (dq *DomainQuery) First(ctx context.Context) (*Domain, error) {
nodes, err := dq.Limit(1).All(setContextOp(ctx, dq.ctx, "First"))
if err != nil {
return nil, err
}
if len(nodes) == 0 {
return nil, &NotFoundError{domain.Label}
}
return nodes[0], nil
}
// FirstX is like First, but panics if an error occurs.
func (dq *DomainQuery) FirstX(ctx context.Context) *Domain {
node, err := dq.First(ctx)
if err != nil && !IsNotFound(err) {
panic(err)
}
return node
}
// FirstID returns the first Domain ID from the query.
// Returns a *NotFoundError when no Domain ID was found.
func (dq *DomainQuery) FirstID(ctx context.Context) (id int, err error) {
var ids []int
if ids, err = dq.Limit(1).IDs(setContextOp(ctx, dq.ctx, "FirstID")); err != nil {
return
}
if len(ids) == 0 {
err = &NotFoundError{domain.Label}
return
}
return ids[0], nil
}
// FirstIDX is like FirstID, but panics if an error occurs.
func (dq *DomainQuery) FirstIDX(ctx context.Context) int {
id, err := dq.FirstID(ctx)
if err != nil && !IsNotFound(err) {
panic(err)
}
return id
}
// Only returns a single Domain entity found by the query, ensuring it only returns one.
// Returns a *NotSingularError when more than one Domain entity is found.
// Returns a *NotFoundError when no Domain entities are found.
func (dq *DomainQuery) Only(ctx context.Context) (*Domain, error) {
nodes, err := dq.Limit(2).All(setContextOp(ctx, dq.ctx, "Only"))
if err != nil {
return nil, err
}
switch len(nodes) {
case 1:
return nodes[0], nil
case 0:
return nil, &NotFoundError{domain.Label}
default:
return nil, &NotSingularError{domain.Label}
}
}
// OnlyX is like Only, but panics if an error occurs.
func (dq *DomainQuery) OnlyX(ctx context.Context) *Domain {
node, err := dq.Only(ctx)
if err != nil {
panic(err)
}
return node
}
// OnlyID is like Only, but returns the only Domain ID in the query.
// Returns a *NotSingularError when more than one Domain ID is found.
// Returns a *NotFoundError when no entities are found.
func (dq *DomainQuery) OnlyID(ctx context.Context) (id int, err error) {
var ids []int
if ids, err = dq.Limit(2).IDs(setContextOp(ctx, dq.ctx, "OnlyID")); err != nil {
return
}
switch len(ids) {
case 1:
id = ids[0]
case 0:
err = &NotFoundError{domain.Label}
default:
err = &NotSingularError{domain.Label}
}
return
}
// OnlyIDX is like OnlyID, but panics if an error occurs.
func (dq *DomainQuery) OnlyIDX(ctx context.Context) int {
id, err := dq.OnlyID(ctx)
if err != nil {
panic(err)
}
return id
}
// All executes the query and returns a list of Domains.
func (dq *DomainQuery) All(ctx context.Context) ([]*Domain, error) {
ctx = setContextOp(ctx, dq.ctx, "All")
if err := dq.prepareQuery(ctx); err != nil {
return nil, err
}
qr := querierAll[[]*Domain, *DomainQuery]()
return withInterceptors[[]*Domain](ctx, dq, qr, dq.inters)
}
// AllX is like All, but panics if an error occurs.
func (dq *DomainQuery) AllX(ctx context.Context) []*Domain {
nodes, err := dq.All(ctx)
if err != nil {
panic(err)
}
return nodes
}
// IDs executes the query and returns a list of Domain IDs.
func (dq *DomainQuery) IDs(ctx context.Context) (ids []int, err error) {
if dq.ctx.Unique == nil && dq.path != nil {
dq.Unique(true)
}
ctx = setContextOp(ctx, dq.ctx, "IDs")
if err = dq.Select(domain.FieldID).Scan(ctx, &ids); err != nil {
return nil, err
}
return ids, nil
}
// IDsX is like IDs, but panics if an error occurs.
func (dq *DomainQuery) IDsX(ctx context.Context) []int {
ids, err := dq.IDs(ctx)
if err != nil {
panic(err)
}
return ids
}
// Count returns the count of the given query.
func (dq *DomainQuery) Count(ctx context.Context) (int, error) {
ctx = setContextOp(ctx, dq.ctx, "Count")
if err := dq.prepareQuery(ctx); err != nil {
return 0, err
}
return withInterceptors[int](ctx, dq, querierCount[*DomainQuery](), dq.inters)
}
// CountX is like Count, but panics if an error occurs.
func (dq *DomainQuery) CountX(ctx context.Context) int {
count, err := dq.Count(ctx)
if err != nil {
panic(err)
}
return count
}
// Exist returns true if the query has elements in the graph.
func (dq *DomainQuery) Exist(ctx context.Context) (bool, error) {
ctx = setContextOp(ctx, dq.ctx, "Exist")
switch _, err := dq.FirstID(ctx); {
case IsNotFound(err):
return false, nil
case err != nil:
return false, fmt.Errorf("ent: check existence: %w", err)
default:
return true, nil
}
}
// ExistX is like Exist, but panics if an error occurs.
func (dq *DomainQuery) ExistX(ctx context.Context) bool {
exist, err := dq.Exist(ctx)
if err != nil {
panic(err)
}
return exist
}
// Clone returns a duplicate of the DomainQuery builder, including all associated steps. It can be
// used to prepare common query builders and use them differently after the clone is made.
func (dq *DomainQuery) Clone() *DomainQuery {
if dq == nil {
return nil
}
return &DomainQuery{
config: dq.config,
ctx: dq.ctx.Clone(),
order: append([]domain.OrderOption{}, dq.order...),
inters: append([]Interceptor{}, dq.inters...),
predicates: append([]predicate.Domain{}, dq.predicates...),
withBusinesses: dq.withBusinesses.Clone(),
withUsers: dq.withUsers.Clone(),
// clone intermediate query.
sql: dq.sql.Clone(),
path: dq.path,
}
}
// WithBusinesses tells the query-builder to eager-load the nodes that are connected to
// the "businesses" edge. The optional arguments are used to configure the query builder of the edge.
func (dq *DomainQuery) WithBusinesses(opts ...func(*BusinessQuery)) *DomainQuery {
query := (&BusinessClient{config: dq.config}).Query()
for _, opt := range opts {
opt(query)
}
dq.withBusinesses = query
return dq
}
// WithUsers tells the query-builder to eager-load the nodes that are connected to
// the "users" edge. The optional arguments are used to configure the query builder of the edge.
func (dq *DomainQuery) WithUsers(opts ...func(*UserQuery)) *DomainQuery {
query := (&UserClient{config: dq.config}).Query()
for _, opt := range opts {
opt(query)
}
dq.withUsers = query
return dq
}
// GroupBy is used to group vertices by one or more fields/columns.
// It is often used with aggregate functions, like: count, max, mean, min, sum.
//
// Example:
//
// var v []struct {
// Domain string `json:"domain,omitempty"`
// Count int `json:"count,omitempty"`
// }
//
// client.Domain.Query().
// GroupBy(domain.FieldDomain).
// Aggregate(ent.Count()).
// Scan(ctx, &v)
func (dq *DomainQuery) GroupBy(field string, fields ...string) *DomainGroupBy {
dq.ctx.Fields = append([]string{field}, fields...)
grbuild := &DomainGroupBy{build: dq}
grbuild.flds = &dq.ctx.Fields
grbuild.label = domain.Label
grbuild.scan = grbuild.Scan
return grbuild
}
// Select allows the selection one or more fields/columns for the given query,
// instead of selecting all fields in the entity.
//
// Example:
//
// var v []struct {
// Domain string `json:"domain,omitempty"`
// }
//
// client.Domain.Query().
// Select(domain.FieldDomain).
// Scan(ctx, &v)
func (dq *DomainQuery) Select(fields ...string) *DomainSelect {
dq.ctx.Fields = append(dq.ctx.Fields, fields...)
sbuild := &DomainSelect{DomainQuery: dq}
sbuild.label = domain.Label
sbuild.flds, sbuild.scan = &dq.ctx.Fields, sbuild.Scan
return sbuild
}
// Aggregate returns a DomainSelect configured with the given aggregations.
func (dq *DomainQuery) Aggregate(fns ...AggregateFunc) *DomainSelect {
return dq.Select().Aggregate(fns...)
}
func (dq *DomainQuery) prepareQuery(ctx context.Context) error {
for _, inter := range dq.inters {
if inter == nil {
return fmt.Errorf("ent: uninitialized interceptor (forgotten import ent/runtime?)")
}
if trv, ok := inter.(Traverser); ok {
if err := trv.Traverse(ctx, dq); err != nil {
return err
}
}
}
for _, f := range dq.ctx.Fields {
if !domain.ValidColumn(f) {
return &ValidationError{Name: f, err: fmt.Errorf("ent: invalid field %q for query", f)}
}
}
if dq.path != nil {
prev, err := dq.path(ctx)
if err != nil {
return err
}
dq.sql = prev
}
return nil
}
func (dq *DomainQuery) sqlAll(ctx context.Context, hooks ...queryHook) ([]*Domain, error) {
var (
nodes = []*Domain{}
_spec = dq.querySpec()
loadedTypes = [2]bool{
dq.withBusinesses != nil,
dq.withUsers != nil,
}
)
_spec.ScanValues = func(columns []string) ([]any, error) {
return (*Domain).scanValues(nil, columns)
}
_spec.Assign = func(columns []string, values []any) error {
node := &Domain{config: dq.config}
nodes = append(nodes, node)
node.Edges.loadedTypes = loadedTypes
return node.assignValues(columns, values)
}
for i := range hooks {
hooks[i](ctx, _spec)
}
if err := sqlgraph.QueryNodes(ctx, dq.driver, _spec); err != nil {
return nil, err
}
if len(nodes) == 0 {
return nodes, nil
}
if query := dq.withBusinesses; query != nil {
if err := dq.loadBusinesses(ctx, query, nodes, nil,
func(n *Domain, e *Business) { n.Edges.Businesses = e }); err != nil {
return nil, err
}
}
if query := dq.withUsers; query != nil {
if err := dq.loadUsers(ctx, query, nodes, nil,
func(n *Domain, e *User) { n.Edges.Users = e }); err != nil {
return nil, err
}
}
return nodes, nil
}
func (dq *DomainQuery) loadBusinesses(ctx context.Context, query *BusinessQuery, nodes []*Domain, init func(*Domain), assign func(*Domain, *Business)) error {
ids := make([]int, 0, len(nodes))
nodeids := make(map[int][]*Domain)
for i := range nodes {
if nodes[i].BusinessID == nil {
continue
}
fk := *nodes[i].BusinessID
if _, ok := nodeids[fk]; !ok {
ids = append(ids, fk)
}
nodeids[fk] = append(nodeids[fk], nodes[i])
}
if len(ids) == 0 {
return nil
}
query.Where(business.IDIn(ids...))
neighbors, err := query.All(ctx)
if err != nil {
return err
}
for _, n := range neighbors {
nodes, ok := nodeids[n.ID]
if !ok {
return fmt.Errorf(`unexpected foreign-key "business_id" returned %v`, n.ID)
}
for i := range nodes {
assign(nodes[i], n)
}
}
return nil
}
func (dq *DomainQuery) loadUsers(ctx context.Context, query *UserQuery, nodes []*Domain, init func(*Domain), assign func(*Domain, *User)) error {
ids := make([]int, 0, len(nodes))
nodeids := make(map[int][]*Domain)
for i := range nodes {
if nodes[i].UserID == nil {
continue
}
fk := *nodes[i].UserID
if _, ok := nodeids[fk]; !ok {
ids = append(ids, fk)
}
nodeids[fk] = append(nodeids[fk], nodes[i])
}
if len(ids) == 0 {
return nil
}
query.Where(user.IDIn(ids...))
neighbors, err := query.All(ctx)
if err != nil {
return err
}
for _, n := range neighbors {
nodes, ok := nodeids[n.ID]
if !ok {
return fmt.Errorf(`unexpected foreign-key "user_id" returned %v`, n.ID)
}
for i := range nodes {
assign(nodes[i], n)
}
}
return nil
}
func (dq *DomainQuery) sqlCount(ctx context.Context) (int, error) {
_spec := dq.querySpec()
_spec.Node.Columns = dq.ctx.Fields
if len(dq.ctx.Fields) > 0 {
_spec.Unique = dq.ctx.Unique != nil && *dq.ctx.Unique
}
return sqlgraph.CountNodes(ctx, dq.driver, _spec)
}
func (dq *DomainQuery) querySpec() *sqlgraph.QuerySpec {
_spec := sqlgraph.NewQuerySpec(domain.Table, domain.Columns, sqlgraph.NewFieldSpec(domain.FieldID, field.TypeInt))
_spec.From = dq.sql
if unique := dq.ctx.Unique; unique != nil {
_spec.Unique = *unique
} else if dq.path != nil {
_spec.Unique = true
}
if fields := dq.ctx.Fields; len(fields) > 0 {
_spec.Node.Columns = make([]string, 0, len(fields))
_spec.Node.Columns = append(_spec.Node.Columns, domain.FieldID)
for i := range fields {
if fields[i] != domain.FieldID {
_spec.Node.Columns = append(_spec.Node.Columns, fields[i])
}
}
if dq.withBusinesses != nil {
_spec.Node.AddColumnOnce(domain.FieldBusinessID)
}
if dq.withUsers != nil {
_spec.Node.AddColumnOnce(domain.FieldUserID)
}
}
if ps := dq.predicates; len(ps) > 0 {
_spec.Predicate = func(selector *sql.Selector) {
for i := range ps {
ps[i](selector)
}
}
}
if limit := dq.ctx.Limit; limit != nil {
_spec.Limit = *limit
}
if offset := dq.ctx.Offset; offset != nil {
_spec.Offset = *offset
}
if ps := dq.order; len(ps) > 0 {
_spec.Order = func(selector *sql.Selector) {
for i := range ps {
ps[i](selector)
}
}
}
return _spec
}
func (dq *DomainQuery) sqlQuery(ctx context.Context) *sql.Selector {
builder := sql.Dialect(dq.driver.Dialect())
t1 := builder.Table(domain.Table)
columns := dq.ctx.Fields
if len(columns) == 0 {
columns = domain.Columns
}
selector := builder.Select(t1.Columns(columns...)...).From(t1)
if dq.sql != nil {
selector = dq.sql
selector.Select(selector.Columns(columns...)...)
}
if dq.ctx.Unique != nil && *dq.ctx.Unique {
selector.Distinct()
}
for _, p := range dq.predicates {
p(selector)
}
for _, p := range dq.order {
p(selector)
}
if offset := dq.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 := dq.ctx.Limit; limit != nil {
selector.Limit(*limit)
}
return selector
}
// DomainGroupBy is the group-by builder for Domain entities.
type DomainGroupBy struct {
selector
build *DomainQuery
}
// Aggregate adds the given aggregation functions to the group-by query.
func (dgb *DomainGroupBy) Aggregate(fns ...AggregateFunc) *DomainGroupBy {
dgb.fns = append(dgb.fns, fns...)
return dgb
}
// Scan applies the selector query and scans the result into the given value.
func (dgb *DomainGroupBy) Scan(ctx context.Context, v any) error {
ctx = setContextOp(ctx, dgb.build.ctx, "GroupBy")
if err := dgb.build.prepareQuery(ctx); err != nil {
return err
}
return scanWithInterceptors[*DomainQuery, *DomainGroupBy](ctx, dgb.build, dgb, dgb.build.inters, v)
}
func (dgb *DomainGroupBy) sqlScan(ctx context.Context, root *DomainQuery, v any) error {
selector := root.sqlQuery(ctx).Select()
aggregation := make([]string, 0, len(dgb.fns))
for _, fn := range dgb.fns {
aggregation = append(aggregation, fn(selector))
}
if len(selector.SelectedColumns()) == 0 {
columns := make([]string, 0, len(*dgb.flds)+len(dgb.fns))
for _, f := range *dgb.flds {
columns = append(columns, selector.C(f))
}
columns = append(columns, aggregation...)
selector.Select(columns...)
}
selector.GroupBy(selector.Columns(*dgb.flds...)...)
if err := selector.Err(); err != nil {
return err
}
rows := &sql.Rows{}
query, args := selector.Query()
if err := dgb.build.driver.Query(ctx, query, args, rows); err != nil {
return err
}
defer rows.Close()
return sql.ScanSlice(rows, v)
}
// DomainSelect is the builder for selecting fields of Domain entities.
type DomainSelect struct {
*DomainQuery
selector
}
// Aggregate adds the given aggregation functions to the selector query.
func (ds *DomainSelect) Aggregate(fns ...AggregateFunc) *DomainSelect {
ds.fns = append(ds.fns, fns...)
return ds
}
// Scan applies the selector query and scans the result into the given value.
func (ds *DomainSelect) Scan(ctx context.Context, v any) error {
ctx = setContextOp(ctx, ds.ctx, "Select")
if err := ds.prepareQuery(ctx); err != nil {
return err
}
return scanWithInterceptors[*DomainQuery, *DomainSelect](ctx, ds.DomainQuery, ds, ds.inters, v)
}
func (ds *DomainSelect) sqlScan(ctx context.Context, root *DomainQuery, v any) error {
selector := root.sqlQuery(ctx)
aggregation := make([]string, 0, len(ds.fns))
for _, fn := range ds.fns {
aggregation = append(aggregation, fn(selector))
}
switch n := len(*ds.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 := ds.driver.Query(ctx, query, args, rows); err != nil {
return err
}
defer rows.Close()
return sql.ScanSlice(rows, v)
}