mirror of
https://github.com/ent/ent.git
synced 2026-05-24 09:31:56 +03:00
Summary: Pull Request resolved: https://github.com/facebookincubator/ent/pull/143 Reviewed By: idoshveki Differential Revision: D18346652 fbshipit-source-id: e8c5d7eb3cefc16f52090de0d121e82cae058fc2
920 lines
21 KiB
Go
920 lines
21 KiB
Go
// Copyright (c) Facebook, Inc. and its affiliates. 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 (@generated) by entc, DO NOT EDIT.
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package user
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import (
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"github.com/facebookincubator/ent/dialect/sql"
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"github.com/facebookincubator/ent/entc/integration/migrate/entv1/predicate"
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)
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// ID filters vertices based on their identifier.
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func ID(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldID), id))
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},
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)
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}
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// IDEQ applies the EQ predicate on the ID field.
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func IDEQ(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldID), id))
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},
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)
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}
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// IDNEQ applies the NEQ predicate on the ID field.
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func IDNEQ(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.NEQ(s.C(FieldID), id))
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},
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)
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}
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// IDIn applies the In predicate on the ID field.
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func IDIn(ids ...int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(ids) == 0 {
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s.Where(sql.False())
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return
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}
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v := make([]interface{}, len(ids))
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for i := range v {
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v[i] = ids[i]
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}
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s.Where(sql.In(s.C(FieldID), v...))
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},
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)
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}
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// IDNotIn applies the NotIn predicate on the ID field.
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func IDNotIn(ids ...int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(ids) == 0 {
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s.Where(sql.False())
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return
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}
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v := make([]interface{}, len(ids))
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for i := range v {
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v[i] = ids[i]
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}
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s.Where(sql.NotIn(s.C(FieldID), v...))
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},
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)
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}
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// IDGT applies the GT predicate on the ID field.
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func IDGT(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GT(s.C(FieldID), id))
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},
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)
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}
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// IDGTE applies the GTE predicate on the ID field.
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func IDGTE(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GTE(s.C(FieldID), id))
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},
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)
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}
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// IDLT applies the LT predicate on the ID field.
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func IDLT(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LT(s.C(FieldID), id))
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},
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)
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}
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// IDLTE applies the LTE predicate on the ID field.
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func IDLTE(id int) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LTE(s.C(FieldID), id))
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},
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)
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}
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// Age applies equality check predicate on the "age" field. It's identical to AgeEQ.
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func Age(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldAge), v))
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},
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)
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}
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// Name applies equality check predicate on the "name" field. It's identical to NameEQ.
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func Name(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldName), v))
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},
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)
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}
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// Address applies equality check predicate on the "address" field. It's identical to AddressEQ.
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func Address(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldAddress), v))
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},
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)
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}
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// Renamed applies equality check predicate on the "renamed" field. It's identical to RenamedEQ.
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func Renamed(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldRenamed), v))
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},
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)
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}
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// Blob applies equality check predicate on the "blob" field. It's identical to BlobEQ.
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func Blob(v []byte) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldBlob), v))
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},
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)
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}
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// AgeEQ applies the EQ predicate on the "age" field.
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func AgeEQ(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldAge), v))
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},
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)
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}
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// AgeNEQ applies the NEQ predicate on the "age" field.
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func AgeNEQ(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.NEQ(s.C(FieldAge), v))
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},
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)
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}
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// AgeIn applies the In predicate on the "age" field.
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func AgeIn(vs ...int32) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.In(s.C(FieldAge), v...))
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},
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)
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}
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// AgeNotIn applies the NotIn predicate on the "age" field.
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func AgeNotIn(vs ...int32) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.NotIn(s.C(FieldAge), v...))
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},
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)
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}
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// AgeGT applies the GT predicate on the "age" field.
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func AgeGT(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GT(s.C(FieldAge), v))
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},
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)
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}
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// AgeGTE applies the GTE predicate on the "age" field.
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func AgeGTE(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GTE(s.C(FieldAge), v))
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},
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)
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}
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// AgeLT applies the LT predicate on the "age" field.
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func AgeLT(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LT(s.C(FieldAge), v))
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},
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)
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}
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// AgeLTE applies the LTE predicate on the "age" field.
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func AgeLTE(v int32) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LTE(s.C(FieldAge), v))
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},
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)
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}
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// NameEQ applies the EQ predicate on the "name" field.
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func NameEQ(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldName), v))
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},
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)
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}
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// NameNEQ applies the NEQ predicate on the "name" field.
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func NameNEQ(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.NEQ(s.C(FieldName), v))
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},
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)
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}
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// NameIn applies the In predicate on the "name" field.
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func NameIn(vs ...string) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.In(s.C(FieldName), v...))
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},
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)
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}
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// NameNotIn applies the NotIn predicate on the "name" field.
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func NameNotIn(vs ...string) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.NotIn(s.C(FieldName), v...))
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},
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)
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}
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// NameGT applies the GT predicate on the "name" field.
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func NameGT(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GT(s.C(FieldName), v))
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},
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)
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}
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// NameGTE applies the GTE predicate on the "name" field.
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func NameGTE(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GTE(s.C(FieldName), v))
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},
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)
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}
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// NameLT applies the LT predicate on the "name" field.
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func NameLT(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LT(s.C(FieldName), v))
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},
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)
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}
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// NameLTE applies the LTE predicate on the "name" field.
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func NameLTE(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LTE(s.C(FieldName), v))
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},
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)
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}
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// NameContains applies the Contains predicate on the "name" field.
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func NameContains(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.Contains(s.C(FieldName), v))
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},
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)
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}
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// NameHasPrefix applies the HasPrefix predicate on the "name" field.
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func NameHasPrefix(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.HasPrefix(s.C(FieldName), v))
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},
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)
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}
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// NameHasSuffix applies the HasSuffix predicate on the "name" field.
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func NameHasSuffix(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.HasSuffix(s.C(FieldName), v))
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},
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)
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}
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// NameEqualFold applies the EqualFold predicate on the "name" field.
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func NameEqualFold(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EqualFold(s.C(FieldName), v))
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},
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)
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}
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// NameContainsFold applies the ContainsFold predicate on the "name" field.
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func NameContainsFold(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.ContainsFold(s.C(FieldName), v))
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},
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)
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}
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// AddressEQ applies the EQ predicate on the "address" field.
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func AddressEQ(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EQ(s.C(FieldAddress), v))
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},
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)
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}
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// AddressNEQ applies the NEQ predicate on the "address" field.
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func AddressNEQ(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.NEQ(s.C(FieldAddress), v))
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},
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)
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}
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// AddressIn applies the In predicate on the "address" field.
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func AddressIn(vs ...string) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.In(s.C(FieldAddress), v...))
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},
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)
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}
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// AddressNotIn applies the NotIn predicate on the "address" field.
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func AddressNotIn(vs ...string) predicate.User {
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v := make([]interface{}, len(vs))
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for i := range v {
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v[i] = vs[i]
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}
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return predicate.User(
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func(s *sql.Selector) {
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// if not arguments were provided, append the FALSE constants,
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// since we can't apply "IN ()". This will make this predicate falsy.
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if len(vs) == 0 {
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s.Where(sql.False())
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return
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}
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s.Where(sql.NotIn(s.C(FieldAddress), v...))
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},
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)
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}
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// AddressGT applies the GT predicate on the "address" field.
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func AddressGT(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GT(s.C(FieldAddress), v))
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},
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)
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}
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// AddressGTE applies the GTE predicate on the "address" field.
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func AddressGTE(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.GTE(s.C(FieldAddress), v))
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},
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)
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}
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// AddressLT applies the LT predicate on the "address" field.
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func AddressLT(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LT(s.C(FieldAddress), v))
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},
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)
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}
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// AddressLTE applies the LTE predicate on the "address" field.
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func AddressLTE(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.LTE(s.C(FieldAddress), v))
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},
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)
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}
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// AddressContains applies the Contains predicate on the "address" field.
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func AddressContains(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.Contains(s.C(FieldAddress), v))
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},
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)
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}
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// AddressHasPrefix applies the HasPrefix predicate on the "address" field.
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func AddressHasPrefix(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.HasPrefix(s.C(FieldAddress), v))
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},
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)
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}
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// AddressHasSuffix applies the HasSuffix predicate on the "address" field.
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func AddressHasSuffix(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.HasSuffix(s.C(FieldAddress), v))
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},
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)
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}
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// AddressIsNil applies the IsNil predicate on the "address" field.
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func AddressIsNil() predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.IsNull(s.C(FieldAddress)))
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},
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)
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}
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// AddressNotNil applies the NotNil predicate on the "address" field.
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func AddressNotNil() predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.NotNull(s.C(FieldAddress)))
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},
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)
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}
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// AddressEqualFold applies the EqualFold predicate on the "address" field.
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func AddressEqualFold(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.EqualFold(s.C(FieldAddress), v))
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},
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)
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}
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// AddressContainsFold applies the ContainsFold predicate on the "address" field.
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func AddressContainsFold(v string) predicate.User {
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return predicate.User(
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func(s *sql.Selector) {
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s.Where(sql.ContainsFold(s.C(FieldAddress), v))
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},
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)
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}
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|
|
// RenamedEQ applies the EQ predicate on the "renamed" field.
|
|
func RenamedEQ(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.EQ(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedNEQ applies the NEQ predicate on the "renamed" field.
|
|
func RenamedNEQ(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NEQ(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedIn applies the In predicate on the "renamed" field.
|
|
func RenamedIn(vs ...string) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.In(s.C(FieldRenamed), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedNotIn applies the NotIn predicate on the "renamed" field.
|
|
func RenamedNotIn(vs ...string) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.NotIn(s.C(FieldRenamed), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedGT applies the GT predicate on the "renamed" field.
|
|
func RenamedGT(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.GT(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedGTE applies the GTE predicate on the "renamed" field.
|
|
func RenamedGTE(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.GTE(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedLT applies the LT predicate on the "renamed" field.
|
|
func RenamedLT(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.LT(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedLTE applies the LTE predicate on the "renamed" field.
|
|
func RenamedLTE(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.LTE(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedContains applies the Contains predicate on the "renamed" field.
|
|
func RenamedContains(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.Contains(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedHasPrefix applies the HasPrefix predicate on the "renamed" field.
|
|
func RenamedHasPrefix(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.HasPrefix(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedHasSuffix applies the HasSuffix predicate on the "renamed" field.
|
|
func RenamedHasSuffix(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.HasSuffix(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedIsNil applies the IsNil predicate on the "renamed" field.
|
|
func RenamedIsNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.IsNull(s.C(FieldRenamed)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedNotNil applies the NotNil predicate on the "renamed" field.
|
|
func RenamedNotNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NotNull(s.C(FieldRenamed)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedEqualFold applies the EqualFold predicate on the "renamed" field.
|
|
func RenamedEqualFold(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.EqualFold(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// RenamedContainsFold applies the ContainsFold predicate on the "renamed" field.
|
|
func RenamedContainsFold(v string) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.ContainsFold(s.C(FieldRenamed), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobEQ applies the EQ predicate on the "blob" field.
|
|
func BlobEQ(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.EQ(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobNEQ applies the NEQ predicate on the "blob" field.
|
|
func BlobNEQ(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NEQ(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobIn applies the In predicate on the "blob" field.
|
|
func BlobIn(vs ...[]byte) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.In(s.C(FieldBlob), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobNotIn applies the NotIn predicate on the "blob" field.
|
|
func BlobNotIn(vs ...[]byte) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.NotIn(s.C(FieldBlob), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobGT applies the GT predicate on the "blob" field.
|
|
func BlobGT(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.GT(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobGTE applies the GTE predicate on the "blob" field.
|
|
func BlobGTE(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.GTE(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobLT applies the LT predicate on the "blob" field.
|
|
func BlobLT(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.LT(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobLTE applies the LTE predicate on the "blob" field.
|
|
func BlobLTE(v []byte) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.LTE(s.C(FieldBlob), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobIsNil applies the IsNil predicate on the "blob" field.
|
|
func BlobIsNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.IsNull(s.C(FieldBlob)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// BlobNotNil applies the NotNil predicate on the "blob" field.
|
|
func BlobNotNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NotNull(s.C(FieldBlob)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateEQ applies the EQ predicate on the "state" field.
|
|
func StateEQ(v State) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.EQ(s.C(FieldState), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateNEQ applies the NEQ predicate on the "state" field.
|
|
func StateNEQ(v State) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NEQ(s.C(FieldState), v))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateIn applies the In predicate on the "state" field.
|
|
func StateIn(vs ...State) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.In(s.C(FieldState), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateNotIn applies the NotIn predicate on the "state" field.
|
|
func StateNotIn(vs ...State) predicate.User {
|
|
v := make([]interface{}, len(vs))
|
|
for i := range v {
|
|
v[i] = vs[i]
|
|
}
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
// if not arguments were provided, append the FALSE constants,
|
|
// since we can't apply "IN ()". This will make this predicate falsy.
|
|
if len(vs) == 0 {
|
|
s.Where(sql.False())
|
|
return
|
|
}
|
|
s.Where(sql.NotIn(s.C(FieldState), v...))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateIsNil applies the IsNil predicate on the "state" field.
|
|
func StateIsNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.IsNull(s.C(FieldState)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// StateNotNil applies the NotNil predicate on the "state" field.
|
|
func StateNotNil() predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s.Where(sql.NotNull(s.C(FieldState)))
|
|
},
|
|
)
|
|
}
|
|
|
|
// And groups list of predicates with the AND operator between them.
|
|
func And(predicates ...predicate.User) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s1 := s.Clone().SetP(nil)
|
|
for _, p := range predicates {
|
|
p(s1)
|
|
}
|
|
s.Where(s1.P())
|
|
},
|
|
)
|
|
}
|
|
|
|
// Or groups list of predicates with the OR operator between them.
|
|
func Or(predicates ...predicate.User) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
s1 := s.Clone().SetP(nil)
|
|
for i, p := range predicates {
|
|
if i > 0 {
|
|
s1.Or()
|
|
}
|
|
p(s1)
|
|
}
|
|
s.Where(s1.P())
|
|
},
|
|
)
|
|
}
|
|
|
|
// Not applies the not operator on the given predicate.
|
|
func Not(p predicate.User) predicate.User {
|
|
return predicate.User(
|
|
func(s *sql.Selector) {
|
|
p(s.Not())
|
|
},
|
|
)
|
|
}
|