526 lines
16 KiB
Go
526 lines
16 KiB
Go
// Code generated by ent, DO NOT EDIT.
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package user
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import (
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"entgo.io/ent/dialect/sql"
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"entgo.io/ent/dialect/sql/sqlgraph"
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"tinyskin/db/ent/predicate"
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)
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// ID filters vertices based on their ID field.
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func ID(id int) predicate.User {
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return predicate.User(sql.FieldEQ(FieldID, id))
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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(sql.FieldEQ(FieldID, id))
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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(sql.FieldNEQ(FieldID, id))
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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(sql.FieldIn(FieldID, ids...))
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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(sql.FieldNotIn(FieldID, ids...))
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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(sql.FieldGT(FieldID, id))
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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(sql.FieldGTE(FieldID, id))
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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(sql.FieldLT(FieldID, id))
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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(sql.FieldLTE(FieldID, id))
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}
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// Email applies equality check predicate on the "email" field. It's identical to EmailEQ.
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func Email(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldEmail, v))
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}
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// Password applies equality check predicate on the "password" field. It's identical to PasswordEQ.
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func Password(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldPassword, v))
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}
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// Salt applies equality check predicate on the "salt" field. It's identical to SaltEQ.
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func Salt(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldSalt, v))
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}
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// RegIP applies equality check predicate on the "reg_ip" field. It's identical to RegIPEQ.
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func RegIP(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldRegIP, v))
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}
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// State applies equality check predicate on the "state" field. It's identical to StateEQ.
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func State(v int) predicate.User {
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return predicate.User(sql.FieldEQ(FieldState, v))
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}
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// RegTime applies equality check predicate on the "reg_time" field. It's identical to RegTimeEQ.
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func RegTime(v int64) predicate.User {
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return predicate.User(sql.FieldEQ(FieldRegTime, v))
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}
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// EmailEQ applies the EQ predicate on the "email" field.
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func EmailEQ(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldEmail, v))
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}
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// EmailNEQ applies the NEQ predicate on the "email" field.
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func EmailNEQ(v string) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldEmail, v))
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}
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// EmailIn applies the In predicate on the "email" field.
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func EmailIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldIn(FieldEmail, vs...))
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}
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// EmailNotIn applies the NotIn predicate on the "email" field.
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func EmailNotIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldEmail, vs...))
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}
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// EmailGT applies the GT predicate on the "email" field.
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func EmailGT(v string) predicate.User {
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return predicate.User(sql.FieldGT(FieldEmail, v))
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}
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// EmailGTE applies the GTE predicate on the "email" field.
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func EmailGTE(v string) predicate.User {
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return predicate.User(sql.FieldGTE(FieldEmail, v))
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}
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// EmailLT applies the LT predicate on the "email" field.
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func EmailLT(v string) predicate.User {
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return predicate.User(sql.FieldLT(FieldEmail, v))
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}
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// EmailLTE applies the LTE predicate on the "email" field.
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func EmailLTE(v string) predicate.User {
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return predicate.User(sql.FieldLTE(FieldEmail, v))
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}
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// EmailContains applies the Contains predicate on the "email" field.
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func EmailContains(v string) predicate.User {
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return predicate.User(sql.FieldContains(FieldEmail, v))
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}
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// EmailHasPrefix applies the HasPrefix predicate on the "email" field.
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func EmailHasPrefix(v string) predicate.User {
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return predicate.User(sql.FieldHasPrefix(FieldEmail, v))
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}
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// EmailHasSuffix applies the HasSuffix predicate on the "email" field.
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func EmailHasSuffix(v string) predicate.User {
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return predicate.User(sql.FieldHasSuffix(FieldEmail, v))
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}
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// EmailEqualFold applies the EqualFold predicate on the "email" field.
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func EmailEqualFold(v string) predicate.User {
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return predicate.User(sql.FieldEqualFold(FieldEmail, v))
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}
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// EmailContainsFold applies the ContainsFold predicate on the "email" field.
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func EmailContainsFold(v string) predicate.User {
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return predicate.User(sql.FieldContainsFold(FieldEmail, v))
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}
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// PasswordEQ applies the EQ predicate on the "password" field.
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func PasswordEQ(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldPassword, v))
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}
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// PasswordNEQ applies the NEQ predicate on the "password" field.
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func PasswordNEQ(v string) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldPassword, v))
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}
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// PasswordIn applies the In predicate on the "password" field.
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func PasswordIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldIn(FieldPassword, vs...))
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}
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// PasswordNotIn applies the NotIn predicate on the "password" field.
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func PasswordNotIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldPassword, vs...))
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}
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// PasswordGT applies the GT predicate on the "password" field.
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func PasswordGT(v string) predicate.User {
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return predicate.User(sql.FieldGT(FieldPassword, v))
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}
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// PasswordGTE applies the GTE predicate on the "password" field.
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func PasswordGTE(v string) predicate.User {
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return predicate.User(sql.FieldGTE(FieldPassword, v))
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}
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// PasswordLT applies the LT predicate on the "password" field.
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func PasswordLT(v string) predicate.User {
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return predicate.User(sql.FieldLT(FieldPassword, v))
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}
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// PasswordLTE applies the LTE predicate on the "password" field.
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func PasswordLTE(v string) predicate.User {
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return predicate.User(sql.FieldLTE(FieldPassword, v))
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}
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// PasswordContains applies the Contains predicate on the "password" field.
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func PasswordContains(v string) predicate.User {
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return predicate.User(sql.FieldContains(FieldPassword, v))
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}
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// PasswordHasPrefix applies the HasPrefix predicate on the "password" field.
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func PasswordHasPrefix(v string) predicate.User {
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return predicate.User(sql.FieldHasPrefix(FieldPassword, v))
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}
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// PasswordHasSuffix applies the HasSuffix predicate on the "password" field.
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func PasswordHasSuffix(v string) predicate.User {
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return predicate.User(sql.FieldHasSuffix(FieldPassword, v))
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}
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// PasswordEqualFold applies the EqualFold predicate on the "password" field.
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func PasswordEqualFold(v string) predicate.User {
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return predicate.User(sql.FieldEqualFold(FieldPassword, v))
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}
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// PasswordContainsFold applies the ContainsFold predicate on the "password" field.
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func PasswordContainsFold(v string) predicate.User {
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return predicate.User(sql.FieldContainsFold(FieldPassword, v))
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}
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// SaltEQ applies the EQ predicate on the "salt" field.
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func SaltEQ(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldSalt, v))
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}
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// SaltNEQ applies the NEQ predicate on the "salt" field.
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func SaltNEQ(v string) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldSalt, v))
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}
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// SaltIn applies the In predicate on the "salt" field.
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func SaltIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldIn(FieldSalt, vs...))
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}
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// SaltNotIn applies the NotIn predicate on the "salt" field.
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func SaltNotIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldSalt, vs...))
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}
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// SaltGT applies the GT predicate on the "salt" field.
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func SaltGT(v string) predicate.User {
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return predicate.User(sql.FieldGT(FieldSalt, v))
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}
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// SaltGTE applies the GTE predicate on the "salt" field.
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func SaltGTE(v string) predicate.User {
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return predicate.User(sql.FieldGTE(FieldSalt, v))
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}
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// SaltLT applies the LT predicate on the "salt" field.
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func SaltLT(v string) predicate.User {
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return predicate.User(sql.FieldLT(FieldSalt, v))
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}
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// SaltLTE applies the LTE predicate on the "salt" field.
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func SaltLTE(v string) predicate.User {
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return predicate.User(sql.FieldLTE(FieldSalt, v))
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}
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// SaltContains applies the Contains predicate on the "salt" field.
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func SaltContains(v string) predicate.User {
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return predicate.User(sql.FieldContains(FieldSalt, v))
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}
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// SaltHasPrefix applies the HasPrefix predicate on the "salt" field.
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func SaltHasPrefix(v string) predicate.User {
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return predicate.User(sql.FieldHasPrefix(FieldSalt, v))
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}
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// SaltHasSuffix applies the HasSuffix predicate on the "salt" field.
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func SaltHasSuffix(v string) predicate.User {
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return predicate.User(sql.FieldHasSuffix(FieldSalt, v))
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}
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// SaltEqualFold applies the EqualFold predicate on the "salt" field.
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func SaltEqualFold(v string) predicate.User {
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return predicate.User(sql.FieldEqualFold(FieldSalt, v))
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}
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// SaltContainsFold applies the ContainsFold predicate on the "salt" field.
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func SaltContainsFold(v string) predicate.User {
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return predicate.User(sql.FieldContainsFold(FieldSalt, v))
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}
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// RegIPEQ applies the EQ predicate on the "reg_ip" field.
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func RegIPEQ(v string) predicate.User {
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return predicate.User(sql.FieldEQ(FieldRegIP, v))
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}
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// RegIPNEQ applies the NEQ predicate on the "reg_ip" field.
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func RegIPNEQ(v string) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldRegIP, v))
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}
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// RegIPIn applies the In predicate on the "reg_ip" field.
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func RegIPIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldIn(FieldRegIP, vs...))
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}
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// RegIPNotIn applies the NotIn predicate on the "reg_ip" field.
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func RegIPNotIn(vs ...string) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldRegIP, vs...))
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}
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// RegIPGT applies the GT predicate on the "reg_ip" field.
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func RegIPGT(v string) predicate.User {
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return predicate.User(sql.FieldGT(FieldRegIP, v))
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}
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// RegIPGTE applies the GTE predicate on the "reg_ip" field.
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func RegIPGTE(v string) predicate.User {
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return predicate.User(sql.FieldGTE(FieldRegIP, v))
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}
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// RegIPLT applies the LT predicate on the "reg_ip" field.
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func RegIPLT(v string) predicate.User {
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return predicate.User(sql.FieldLT(FieldRegIP, v))
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}
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// RegIPLTE applies the LTE predicate on the "reg_ip" field.
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func RegIPLTE(v string) predicate.User {
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return predicate.User(sql.FieldLTE(FieldRegIP, v))
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}
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// RegIPContains applies the Contains predicate on the "reg_ip" field.
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func RegIPContains(v string) predicate.User {
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return predicate.User(sql.FieldContains(FieldRegIP, v))
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}
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// RegIPHasPrefix applies the HasPrefix predicate on the "reg_ip" field.
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func RegIPHasPrefix(v string) predicate.User {
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return predicate.User(sql.FieldHasPrefix(FieldRegIP, v))
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}
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// RegIPHasSuffix applies the HasSuffix predicate on the "reg_ip" field.
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func RegIPHasSuffix(v string) predicate.User {
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return predicate.User(sql.FieldHasSuffix(FieldRegIP, v))
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}
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// RegIPEqualFold applies the EqualFold predicate on the "reg_ip" field.
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func RegIPEqualFold(v string) predicate.User {
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return predicate.User(sql.FieldEqualFold(FieldRegIP, v))
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}
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// RegIPContainsFold applies the ContainsFold predicate on the "reg_ip" field.
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func RegIPContainsFold(v string) predicate.User {
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return predicate.User(sql.FieldContainsFold(FieldRegIP, v))
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}
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// StateEQ applies the EQ predicate on the "state" field.
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func StateEQ(v int) predicate.User {
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return predicate.User(sql.FieldEQ(FieldState, v))
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}
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// StateNEQ applies the NEQ predicate on the "state" field.
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func StateNEQ(v int) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldState, v))
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}
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// StateIn applies the In predicate on the "state" field.
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func StateIn(vs ...int) predicate.User {
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return predicate.User(sql.FieldIn(FieldState, vs...))
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}
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// StateNotIn applies the NotIn predicate on the "state" field.
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func StateNotIn(vs ...int) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldState, vs...))
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}
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// StateGT applies the GT predicate on the "state" field.
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func StateGT(v int) predicate.User {
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return predicate.User(sql.FieldGT(FieldState, v))
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}
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// StateGTE applies the GTE predicate on the "state" field.
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func StateGTE(v int) predicate.User {
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return predicate.User(sql.FieldGTE(FieldState, v))
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}
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// StateLT applies the LT predicate on the "state" field.
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func StateLT(v int) predicate.User {
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return predicate.User(sql.FieldLT(FieldState, v))
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}
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// StateLTE applies the LTE predicate on the "state" field.
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func StateLTE(v int) predicate.User {
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return predicate.User(sql.FieldLTE(FieldState, v))
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}
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// RegTimeEQ applies the EQ predicate on the "reg_time" field.
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func RegTimeEQ(v int64) predicate.User {
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return predicate.User(sql.FieldEQ(FieldRegTime, v))
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}
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// RegTimeNEQ applies the NEQ predicate on the "reg_time" field.
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func RegTimeNEQ(v int64) predicate.User {
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return predicate.User(sql.FieldNEQ(FieldRegTime, v))
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}
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// RegTimeIn applies the In predicate on the "reg_time" field.
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func RegTimeIn(vs ...int64) predicate.User {
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return predicate.User(sql.FieldIn(FieldRegTime, vs...))
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}
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// RegTimeNotIn applies the NotIn predicate on the "reg_time" field.
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func RegTimeNotIn(vs ...int64) predicate.User {
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return predicate.User(sql.FieldNotIn(FieldRegTime, vs...))
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}
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// RegTimeGT applies the GT predicate on the "reg_time" field.
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func RegTimeGT(v int64) predicate.User {
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return predicate.User(sql.FieldGT(FieldRegTime, v))
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}
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// RegTimeGTE applies the GTE predicate on the "reg_time" field.
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func RegTimeGTE(v int64) predicate.User {
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return predicate.User(sql.FieldGTE(FieldRegTime, v))
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}
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// RegTimeLT applies the LT predicate on the "reg_time" field.
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func RegTimeLT(v int64) predicate.User {
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return predicate.User(sql.FieldLT(FieldRegTime, v))
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}
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// RegTimeLTE applies the LTE predicate on the "reg_time" field.
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func RegTimeLTE(v int64) predicate.User {
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return predicate.User(sql.FieldLTE(FieldRegTime, v))
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}
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// HasCreatedTexture applies the HasEdge predicate on the "created_texture" edge.
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func HasCreatedTexture() predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := sqlgraph.NewStep(
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sqlgraph.From(Table, FieldID),
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sqlgraph.Edge(sqlgraph.O2M, true, CreatedTextureTable, CreatedTextureColumn),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasCreatedTextureWith applies the HasEdge predicate on the "created_texture" edge with a given conditions (other predicates).
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func HasCreatedTextureWith(preds ...predicate.Texture) predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := newCreatedTextureStep()
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sqlgraph.HasNeighborsWith(s, step, func(s *sql.Selector) {
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for _, p := range preds {
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p(s)
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}
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})
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})
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}
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// HasProfile applies the HasEdge predicate on the "profile" edge.
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func HasProfile() predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := sqlgraph.NewStep(
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sqlgraph.From(Table, FieldID),
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sqlgraph.Edge(sqlgraph.O2O, false, ProfileTable, ProfileColumn),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasProfileWith applies the HasEdge predicate on the "profile" edge with a given conditions (other predicates).
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func HasProfileWith(preds ...predicate.UserProfile) predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := newProfileStep()
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sqlgraph.HasNeighborsWith(s, step, func(s *sql.Selector) {
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for _, p := range preds {
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p(s)
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}
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})
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})
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}
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// HasToken applies the HasEdge predicate on the "token" edge.
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func HasToken() predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := sqlgraph.NewStep(
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sqlgraph.From(Table, FieldID),
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sqlgraph.Edge(sqlgraph.O2O, false, TokenTable, TokenColumn),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasTokenWith applies the HasEdge predicate on the "token" edge with a given conditions (other predicates).
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func HasTokenWith(preds ...predicate.UserToken) predicate.User {
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return predicate.User(func(s *sql.Selector) {
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step := newTokenStep()
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sqlgraph.HasNeighborsWith(s, step, func(s *sql.Selector) {
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for _, p := range preds {
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p(s)
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}
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})
|
|
})
|
|
}
|
|
|
|
// And groups 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 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())
|
|
})
|
|
}
|