update migrate
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@ -2,6 +2,11 @@
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package group
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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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)
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const (
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// Label holds the string label denoting the group type in the database.
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Label = "group"
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@ -9,6 +14,8 @@ const (
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FieldID = "id"
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// FieldName holds the string denoting the name field in the database.
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FieldName = "name"
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// FieldPassword holds the string denoting the password field in the database.
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FieldPassword = "password"
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// EdgeUsers holds the string denoting the users edge name in mutations.
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EdgeUsers = "users"
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// Table holds the table name of the group in the database.
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@ -26,6 +33,7 @@ const (
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var Columns = []string{
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FieldID,
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FieldName,
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FieldPassword,
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}
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// ValidColumn reports if the column name is valid (part of the table columns).
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@ -37,3 +45,47 @@ func ValidColumn(column string) bool {
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}
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return false
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}
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var (
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// PasswordValidator is a validator for the "password" field. It is called by the builders before save.
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PasswordValidator func(string) error
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)
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// OrderOption defines the ordering options for the Group queries.
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type OrderOption func(*sql.Selector)
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// ByID orders the results by the id field.
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func ByID(opts ...sql.OrderTermOption) OrderOption {
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return sql.OrderByField(FieldID, opts...).ToFunc()
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}
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// ByName orders the results by the name field.
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func ByName(opts ...sql.OrderTermOption) OrderOption {
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return sql.OrderByField(FieldName, opts...).ToFunc()
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}
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// ByPassword orders the results by the password field.
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func ByPassword(opts ...sql.OrderTermOption) OrderOption {
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return sql.OrderByField(FieldPassword, opts...).ToFunc()
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}
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// ByUsersCount orders the results by users count.
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func ByUsersCount(opts ...sql.OrderTermOption) OrderOption {
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return func(s *sql.Selector) {
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sqlgraph.OrderByNeighborsCount(s, newUsersStep(), opts...)
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}
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}
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// ByUsers orders the results by users terms.
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func ByUsers(term sql.OrderTerm, terms ...sql.OrderTerm) OrderOption {
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return func(s *sql.Selector) {
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sqlgraph.OrderByNeighborTerms(s, newUsersStep(), append([]sql.OrderTerm{term}, terms...)...)
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}
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}
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func newUsersStep() *sqlgraph.Step {
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return sqlgraph.NewStep(
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sqlgraph.From(Table, FieldID),
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sqlgraph.To(UsersInverseTable, FieldID),
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sqlgraph.Edge(sqlgraph.O2M, false, UsersTable, UsersColumn),
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)
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}
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@ -3,7 +3,7 @@
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package group
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import (
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"t/ent/predicate"
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"api/ent/predicate"
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"entgo.io/ent/dialect/sql"
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"entgo.io/ent/dialect/sql/sqlgraph"
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@ -59,6 +59,11 @@ func Name(v string) predicate.Group {
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return predicate.Group(sql.FieldEQ(FieldName, 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.Group {
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return predicate.Group(sql.FieldEQ(FieldPassword, 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.Group {
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return predicate.Group(sql.FieldEQ(FieldName, v))
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@ -124,6 +129,71 @@ func NameContainsFold(v string) predicate.Group {
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return predicate.Group(sql.FieldContainsFold(FieldName, 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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(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.Group {
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return predicate.Group(sql.FieldContainsFold(FieldPassword, v))
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}
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// HasUsers applies the HasEdge predicate on the "users" edge.
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func HasUsers() predicate.Group {
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return predicate.Group(func(s *sql.Selector) {
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@ -138,11 +208,7 @@ func HasUsers() predicate.Group {
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// HasUsersWith applies the HasEdge predicate on the "users" edge with a given conditions (other predicates).
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func HasUsersWith(preds ...predicate.User) predicate.Group {
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return predicate.Group(func(s *sql.Selector) {
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step := sqlgraph.NewStep(
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sqlgraph.From(Table, FieldID),
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sqlgraph.To(UsersInverseTable, FieldID),
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sqlgraph.Edge(sqlgraph.O2M, false, UsersTable, UsersColumn),
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)
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step := newUsersStep()
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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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