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package db
import (
"context"
"errors"
"fmt"
"sync"
"time"
"entgo.io/ent"
"entgo.io/ent/dialect/sql"
"github.com/openmeterio/openmeter/pkg/framework/entutils/testutils/ent2/db/example2"
"github.com/openmeterio/openmeter/pkg/framework/entutils/testutils/ent2/db/predicate"
)
const (
// Operation types.
OpCreate = ent.OpCreate
OpDelete = ent.OpDelete
OpDeleteOne = ent.OpDeleteOne
OpUpdate = ent.OpUpdate
OpUpdateOne = ent.OpUpdateOne
// Node types.
TypeExample2 = "Example2"
)
// Example2Mutation represents an operation that mutates the Example2 nodes in the graph.
type Example2Mutation struct {
config
op Op
typ string
id *string
created_at *time.Time
updated_at *time.Time
deleted_at *time.Time
example_value_2 *string
clearedFields map[string]struct{}
done bool
oldValue func(context.Context) (*Example2, error)
predicates []predicate.Example2
}
var _ ent.Mutation = (*Example2Mutation)(nil)
// example2Option allows management of the mutation configuration using functional options.
type example2Option func(*Example2Mutation)
// newExample2Mutation creates new mutation for the Example2 entity.
func newExample2Mutation(c config, op Op, opts ...example2Option) *Example2Mutation {
m := &Example2Mutation{
config: c,
op: op,
typ: TypeExample2,
clearedFields: make(map[string]struct{}),
}
for _, opt := range opts {
opt(m)
}
return m
}
// withExample2ID sets the ID field of the mutation.
func withExample2ID(id string) example2Option {
return func(m *Example2Mutation) {
var (
err error
once sync.Once
value *Example2
)
m.oldValue = func(ctx context.Context) (*Example2, error) {
once.Do(func() {
if m.done {
err = errors.New("querying old values post mutation is not allowed")
} else {
value, err = m.Client().Example2.Get(ctx, id)
}
})
return value, err
}
m.id = &id
}
}
// withExample2 sets the old Example2 of the mutation.
func withExample2(node *Example2) example2Option {
return func(m *Example2Mutation) {
m.oldValue = func(context.Context) (*Example2, error) {
return node, nil
}
m.id = &node.ID
}
}
// Client returns a new `ent.Client` from the mutation. If the mutation was
// executed in a transaction (ent.Tx), a transactional client is returned.
func (m Example2Mutation) Client() *Client {
client := &Client{config: m.config}
client.init()
return client
}
// Tx returns an `ent.Tx` for mutations that were executed in transactions;
// it returns an error otherwise.
func (m Example2Mutation) Tx() (*Tx, error) {
if _, ok := m.driver.(*txDriver); !ok {
return nil, errors.New("db: mutation is not running in a transaction")
}
tx := &Tx{config: m.config}
tx.init()
return tx, nil
}
// SetID sets the value of the id field. Note that this
// operation is only accepted on creation of Example2 entities.
func (m *Example2Mutation) SetID(id string) {
m.id = &id
}
// ID returns the ID value in the mutation. Note that the ID is only available
// if it was provided to the builder or after it was returned from the database.
func (m *Example2Mutation) ID() (id string, exists bool) {
if m.id == nil {
return
}
return *m.id, true
}
// IDs queries the database and returns the entity ids that match the mutation's predicate.
// That means, if the mutation is applied within a transaction with an isolation level such
// as sql.LevelSerializable, the returned ids match the ids of the rows that will be updated
// or updated by the mutation.
func (m *Example2Mutation) IDs(ctx context.Context) ([]string, error) {
switch {
case m.op.Is(OpUpdateOne | OpDeleteOne):
id, exists := m.ID()
if exists {
return []string{id}, nil
}
fallthrough
case m.op.Is(OpUpdate | OpDelete):
return m.Client().Example2.Query().Where(m.predicates...).IDs(ctx)
default:
return nil, fmt.Errorf("IDs is not allowed on %s operations", m.op)
}
}
// SetCreatedAt sets the "created_at" field.
func (m *Example2Mutation) SetCreatedAt(t time.Time) {
m.created_at = &t
}
// CreatedAt returns the value of the "created_at" field in the mutation.
func (m *Example2Mutation) CreatedAt() (r time.Time, exists bool) {
v := m.created_at
if v == nil {
return
}
return *v, true
}
// OldCreatedAt returns the old "created_at" field's value of the Example2 entity.
// If the Example2 object wasn't provided to the builder, the object is fetched from the database.
// An error is returned if the mutation operation is not UpdateOne, or the database query fails.
func (m *Example2Mutation) OldCreatedAt(ctx context.Context) (v time.Time, err error) {
if !m.op.Is(OpUpdateOne) {
return v, errors.New("OldCreatedAt is only allowed on UpdateOne operations")
}
if m.id == nil || m.oldValue == nil {
return v, errors.New("OldCreatedAt requires an ID field in the mutation")
}
oldValue, err := m.oldValue(ctx)
if err != nil {
return v, fmt.Errorf("querying old value for OldCreatedAt: %w", err)
}
return oldValue.CreatedAt, nil
}
// ResetCreatedAt resets all changes to the "created_at" field.
func (m *Example2Mutation) ResetCreatedAt() {
m.created_at = nil
}
// SetUpdatedAt sets the "updated_at" field.
func (m *Example2Mutation) SetUpdatedAt(t time.Time) {
m.updated_at = &t
}
// UpdatedAt returns the value of the "updated_at" field in the mutation.
func (m *Example2Mutation) UpdatedAt() (r time.Time, exists bool) {
v := m.updated_at
if v == nil {
return
}
return *v, true
}
// OldUpdatedAt returns the old "updated_at" field's value of the Example2 entity.
// If the Example2 object wasn't provided to the builder, the object is fetched from the database.
// An error is returned if the mutation operation is not UpdateOne, or the database query fails.
func (m *Example2Mutation) OldUpdatedAt(ctx context.Context) (v time.Time, err error) {
if !m.op.Is(OpUpdateOne) {
return v, errors.New("OldUpdatedAt is only allowed on UpdateOne operations")
}
if m.id == nil || m.oldValue == nil {
return v, errors.New("OldUpdatedAt requires an ID field in the mutation")
}
oldValue, err := m.oldValue(ctx)
if err != nil {
return v, fmt.Errorf("querying old value for OldUpdatedAt: %w", err)
}
return oldValue.UpdatedAt, nil
}
// ResetUpdatedAt resets all changes to the "updated_at" field.
func (m *Example2Mutation) ResetUpdatedAt() {
m.updated_at = nil
}
// SetDeletedAt sets the "deleted_at" field.
func (m *Example2Mutation) SetDeletedAt(t time.Time) {
m.deleted_at = &t
}
// DeletedAt returns the value of the "deleted_at" field in the mutation.
func (m *Example2Mutation) DeletedAt() (r time.Time, exists bool) {
v := m.deleted_at
if v == nil {
return
}
return *v, true
}
// OldDeletedAt returns the old "deleted_at" field's value of the Example2 entity.
// If the Example2 object wasn't provided to the builder, the object is fetched from the database.
// An error is returned if the mutation operation is not UpdateOne, or the database query fails.
func (m *Example2Mutation) OldDeletedAt(ctx context.Context) (v *time.Time, err error) {
if !m.op.Is(OpUpdateOne) {
return v, errors.New("OldDeletedAt is only allowed on UpdateOne operations")
}
if m.id == nil || m.oldValue == nil {
return v, errors.New("OldDeletedAt requires an ID field in the mutation")
}
oldValue, err := m.oldValue(ctx)
if err != nil {
return v, fmt.Errorf("querying old value for OldDeletedAt: %w", err)
}
return oldValue.DeletedAt, nil
}
// ClearDeletedAt clears the value of the "deleted_at" field.
func (m *Example2Mutation) ClearDeletedAt() {
m.deleted_at = nil
m.clearedFields[example2.FieldDeletedAt] = struct{}{}
}
// DeletedAtCleared returns if the "deleted_at" field was cleared in this mutation.
func (m *Example2Mutation) DeletedAtCleared() bool {
_, ok := m.clearedFields[example2.FieldDeletedAt]
return ok
}
// ResetDeletedAt resets all changes to the "deleted_at" field.
func (m *Example2Mutation) ResetDeletedAt() {
m.deleted_at = nil
delete(m.clearedFields, example2.FieldDeletedAt)
}
// SetExampleValue2 sets the "example_value_2" field.
func (m *Example2Mutation) SetExampleValue2(s string) {
m.example_value_2 = &s
}
// ExampleValue2 returns the value of the "example_value_2" field in the mutation.
func (m *Example2Mutation) ExampleValue2() (r string, exists bool) {
v := m.example_value_2
if v == nil {
return
}
return *v, true
}
// OldExampleValue2 returns the old "example_value_2" field's value of the Example2 entity.
// If the Example2 object wasn't provided to the builder, the object is fetched from the database.
// An error is returned if the mutation operation is not UpdateOne, or the database query fails.
func (m *Example2Mutation) OldExampleValue2(ctx context.Context) (v string, err error) {
if !m.op.Is(OpUpdateOne) {
return v, errors.New("OldExampleValue2 is only allowed on UpdateOne operations")
}
if m.id == nil || m.oldValue == nil {
return v, errors.New("OldExampleValue2 requires an ID field in the mutation")
}
oldValue, err := m.oldValue(ctx)
if err != nil {
return v, fmt.Errorf("querying old value for OldExampleValue2: %w", err)
}
return oldValue.ExampleValue2, nil
}
// ResetExampleValue2 resets all changes to the "example_value_2" field.
func (m *Example2Mutation) ResetExampleValue2() {
m.example_value_2 = nil
}
// Where appends a list predicates to the Example2Mutation builder.
func (m *Example2Mutation) Where(ps ...predicate.Example2) {
m.predicates = append(m.predicates, ps...)
}
// WhereP appends storage-level predicates to the Example2Mutation builder. Using this method,
// users can use type-assertion to append predicates that do not depend on any generated package.
func (m *Example2Mutation) WhereP(ps ...func(*sql.Selector)) {
p := make([]predicate.Example2, len(ps))
for i := range ps {
p[i] = ps[i]
}
m.Where(p...)
}
// Op returns the operation name.
func (m *Example2Mutation) Op() Op {
return m.op
}
// SetOp allows setting the mutation operation.
func (m *Example2Mutation) SetOp(op Op) {
m.op = op
}
// Type returns the node type of this mutation (Example2).
func (m *Example2Mutation) Type() string {
return m.typ
}
// Fields returns all fields that were changed during this mutation. Note that in
// order to get all numeric fields that were incremented/decremented, call
// AddedFields().
func (m *Example2Mutation) Fields() []string {
fields := make([]string, 0, 4)
if m.created_at != nil {
fields = append(fields, example2.FieldCreatedAt)
}
if m.updated_at != nil {
fields = append(fields, example2.FieldUpdatedAt)
}
if m.deleted_at != nil {
fields = append(fields, example2.FieldDeletedAt)
}
if m.example_value_2 != nil {
fields = append(fields, example2.FieldExampleValue2)
}
return fields
}
// Field returns the value of a field with the given name. The second boolean
// return value indicates that this field was not set, or was not defined in the
// schema.
func (m *Example2Mutation) Field(name string) (ent.Value, bool) {
switch name {
case example2.FieldCreatedAt:
return m.CreatedAt()
case example2.FieldUpdatedAt:
return m.UpdatedAt()
case example2.FieldDeletedAt:
return m.DeletedAt()
case example2.FieldExampleValue2:
return m.ExampleValue2()
}
return nil, false
}
// OldField returns the old value of the field from the database. An error is
// returned if the mutation operation is not UpdateOne, or the query to the
// database failed.
func (m *Example2Mutation) OldField(ctx context.Context, name string) (ent.Value, error) {
switch name {
case example2.FieldCreatedAt:
return m.OldCreatedAt(ctx)
case example2.FieldUpdatedAt:
return m.OldUpdatedAt(ctx)
case example2.FieldDeletedAt:
return m.OldDeletedAt(ctx)
case example2.FieldExampleValue2:
return m.OldExampleValue2(ctx)
}
return nil, fmt.Errorf("unknown Example2 field %s", name)
}
// SetField sets the value of a field with the given name. It returns an error if
// the field is not defined in the schema, or if the type mismatched the field
// type.
func (m *Example2Mutation) SetField(name string, value ent.Value) error {
switch name {
case example2.FieldCreatedAt:
v, ok := value.(time.Time)
if !ok {
return fmt.Errorf("unexpected type %T for field %s", value, name)
}
m.SetCreatedAt(v)
return nil
case example2.FieldUpdatedAt:
v, ok := value.(time.Time)
if !ok {
return fmt.Errorf("unexpected type %T for field %s", value, name)
}
m.SetUpdatedAt(v)
return nil
case example2.FieldDeletedAt:
v, ok := value.(time.Time)
if !ok {
return fmt.Errorf("unexpected type %T for field %s", value, name)
}
m.SetDeletedAt(v)
return nil
case example2.FieldExampleValue2:
v, ok := value.(string)
if !ok {
return fmt.Errorf("unexpected type %T for field %s", value, name)
}
m.SetExampleValue2(v)
return nil
}
return fmt.Errorf("unknown Example2 field %s", name)
}
// AddedFields returns all numeric fields that were incremented/decremented during
// this mutation.
func (m *Example2Mutation) AddedFields() []string {
return nil
}
// AddedField returns the numeric value that was incremented/decremented on a field
// with the given name. The second boolean return value indicates that this field
// was not set, or was not defined in the schema.
func (m *Example2Mutation) AddedField(name string) (ent.Value, bool) {
return nil, false
}
// AddField adds the value to the field with the given name. It returns an error if
// the field is not defined in the schema, or if the type mismatched the field
// type.
func (m *Example2Mutation) AddField(name string, value ent.Value) error {
switch name {
}
return fmt.Errorf("unknown Example2 numeric field %s", name)
}
// ClearedFields returns all nullable fields that were cleared during this
// mutation.
func (m *Example2Mutation) ClearedFields() []string {
var fields []string
if m.FieldCleared(example2.FieldDeletedAt) {
fields = append(fields, example2.FieldDeletedAt)
}
return fields
}
// FieldCleared returns a boolean indicating if a field with the given name was
// cleared in this mutation.
func (m *Example2Mutation) FieldCleared(name string) bool {
_, ok := m.clearedFields[name]
return ok
}
// ClearField clears the value of the field with the given name. It returns an
// error if the field is not defined in the schema.
func (m *Example2Mutation) ClearField(name string) error {
switch name {
case example2.FieldDeletedAt:
m.ClearDeletedAt()
return nil
}
return fmt.Errorf("unknown Example2 nullable field %s", name)
}
// ResetField resets all changes in the mutation for the field with the given name.
// It returns an error if the field is not defined in the schema.
func (m *Example2Mutation) ResetField(name string) error {
switch name {
case example2.FieldCreatedAt:
m.ResetCreatedAt()
return nil
case example2.FieldUpdatedAt:
m.ResetUpdatedAt()
return nil
case example2.FieldDeletedAt:
m.ResetDeletedAt()
return nil
case example2.FieldExampleValue2:
m.ResetExampleValue2()
return nil
}
return fmt.Errorf("unknown Example2 field %s", name)
}
// AddedEdges returns all edge names that were set/added in this mutation.
func (m *Example2Mutation) AddedEdges() []string {
edges := make([]string, 0, 0)
return edges
}
// AddedIDs returns all IDs (to other nodes) that were added for the given edge
// name in this mutation.
func (m *Example2Mutation) AddedIDs(name string) []ent.Value {
return nil
}
// RemovedEdges returns all edge names that were removed in this mutation.
func (m *Example2Mutation) RemovedEdges() []string {
edges := make([]string, 0, 0)
return edges
}
// RemovedIDs returns all IDs (to other nodes) that were removed for the edge with
// the given name in this mutation.
func (m *Example2Mutation) RemovedIDs(name string) []ent.Value {
return nil
}
// ClearedEdges returns all edge names that were cleared in this mutation.
func (m *Example2Mutation) ClearedEdges() []string {
edges := make([]string, 0, 0)
return edges
}
// EdgeCleared returns a boolean which indicates if the edge with the given name
// was cleared in this mutation.
func (m *Example2Mutation) EdgeCleared(name string) bool {
return false
}
// ClearEdge clears the value of the edge with the given name. It returns an error
// if that edge is not defined in the schema.
func (m *Example2Mutation) ClearEdge(name string) error {
return fmt.Errorf("unknown Example2 unique edge %s", name)
}
// ResetEdge resets all changes to the edge with the given name in this mutation.
// It returns an error if the edge is not defined in the schema.
func (m *Example2Mutation) ResetEdge(name string) error {
return fmt.Errorf("unknown Example2 edge %s", name)
}
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