296 lines
9.3 KiB
Go
296 lines
9.3 KiB
Go
// Code generated by ent, DO NOT EDIT.
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package userprofile
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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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"github.com/xmdhs/authlib-skin/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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(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.UserProfile {
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return predicate.UserProfile(sql.FieldLTE(FieldID, id))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldEQ(FieldName, v))
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}
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// UUID applies equality check predicate on the "uuid" field. It's identical to UUIDEQ.
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func UUID(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldEQ(FieldUUID, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldEQ(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldNEQ(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldIn(FieldName, vs...))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldNotIn(FieldName, vs...))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldGT(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldGTE(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldLT(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldLTE(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldContains(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldHasPrefix(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldHasSuffix(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldEqualFold(FieldName, v))
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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.UserProfile {
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return predicate.UserProfile(sql.FieldContainsFold(FieldName, v))
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}
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// UUIDEQ applies the EQ predicate on the "uuid" field.
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func UUIDEQ(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldEQ(FieldUUID, v))
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}
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// UUIDNEQ applies the NEQ predicate on the "uuid" field.
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func UUIDNEQ(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldNEQ(FieldUUID, v))
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}
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// UUIDIn applies the In predicate on the "uuid" field.
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func UUIDIn(vs ...string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldIn(FieldUUID, vs...))
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}
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// UUIDNotIn applies the NotIn predicate on the "uuid" field.
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func UUIDNotIn(vs ...string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldNotIn(FieldUUID, vs...))
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}
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// UUIDGT applies the GT predicate on the "uuid" field.
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func UUIDGT(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldGT(FieldUUID, v))
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}
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// UUIDGTE applies the GTE predicate on the "uuid" field.
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func UUIDGTE(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldGTE(FieldUUID, v))
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}
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// UUIDLT applies the LT predicate on the "uuid" field.
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func UUIDLT(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldLT(FieldUUID, v))
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}
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// UUIDLTE applies the LTE predicate on the "uuid" field.
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func UUIDLTE(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldLTE(FieldUUID, v))
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}
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// UUIDContains applies the Contains predicate on the "uuid" field.
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func UUIDContains(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldContains(FieldUUID, v))
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}
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// UUIDHasPrefix applies the HasPrefix predicate on the "uuid" field.
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func UUIDHasPrefix(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldHasPrefix(FieldUUID, v))
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}
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// UUIDHasSuffix applies the HasSuffix predicate on the "uuid" field.
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func UUIDHasSuffix(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldHasSuffix(FieldUUID, v))
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}
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// UUIDEqualFold applies the EqualFold predicate on the "uuid" field.
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func UUIDEqualFold(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldEqualFold(FieldUUID, v))
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}
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// UUIDContainsFold applies the ContainsFold predicate on the "uuid" field.
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func UUIDContainsFold(v string) predicate.UserProfile {
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return predicate.UserProfile(sql.FieldContainsFold(FieldUUID, v))
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}
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// HasUser applies the HasEdge predicate on the "user" edge.
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func HasUser() predicate.UserProfile {
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return predicate.UserProfile(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, true, UserTable, UserColumn),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasUserWith applies the HasEdge predicate on the "user" edge with a given conditions (other predicates).
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func HasUserWith(preds ...predicate.User) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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step := newUserStep()
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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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// HasTexture applies the HasEdge predicate on the "texture" edge.
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func HasTexture() predicate.UserProfile {
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return predicate.UserProfile(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.M2M, true, TextureTable, TexturePrimaryKey...),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasTextureWith applies the HasEdge predicate on the "texture" edge with a given conditions (other predicates).
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func HasTextureWith(preds ...predicate.Texture) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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step := newTextureStep()
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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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// HasUsertexture applies the HasEdge predicate on the "usertexture" edge.
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func HasUsertexture() predicate.UserProfile {
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return predicate.UserProfile(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, UsertextureTable, UsertextureColumn),
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)
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sqlgraph.HasNeighbors(s, step)
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})
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}
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// HasUsertextureWith applies the HasEdge predicate on the "usertexture" edge with a given conditions (other predicates).
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func HasUsertextureWith(preds ...predicate.UserTexture) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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step := newUsertextureStep()
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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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// And groups predicates with the AND operator between them.
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func And(predicates ...predicate.UserProfile) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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s1 := s.Clone().SetP(nil)
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for _, p := range predicates {
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p(s1)
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}
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s.Where(s1.P())
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})
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}
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// Or groups predicates with the OR operator between them.
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func Or(predicates ...predicate.UserProfile) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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s1 := s.Clone().SetP(nil)
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for i, p := range predicates {
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if i > 0 {
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s1.Or()
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}
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p(s1)
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}
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s.Where(s1.P())
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})
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}
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// Not applies the not operator on the given predicate.
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func Not(p predicate.UserProfile) predicate.UserProfile {
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return predicate.UserProfile(func(s *sql.Selector) {
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p(s.Not())
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})
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}
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