bindbox-game/internal/repository/mysql/dao/mini_program_access_token.gen.go
2025-10-27 11:05:03 +08:00

337 lines
10 KiB
Go

// Code generated by gorm.io/gen. DO NOT EDIT.
// Code generated by gorm.io/gen. DO NOT EDIT.
// Code generated by gorm.io/gen. DO NOT EDIT.
package dao
import (
"context"
"gorm.io/gorm"
"gorm.io/gorm/clause"
"gorm.io/gorm/schema"
"gorm.io/gen"
"gorm.io/gen/field"
"gorm.io/plugin/dbresolver"
"mini-chat/internal/repository/mysql/model"
)
func newMiniProgramAccessToken(db *gorm.DB, opts ...gen.DOOption) miniProgramAccessToken {
_miniProgramAccessToken := miniProgramAccessToken{}
_miniProgramAccessToken.miniProgramAccessTokenDo.UseDB(db, opts...)
_miniProgramAccessToken.miniProgramAccessTokenDo.UseModel(&model.MiniProgramAccessToken{})
tableName := _miniProgramAccessToken.miniProgramAccessTokenDo.TableName()
_miniProgramAccessToken.ALL = field.NewAsterisk(tableName)
_miniProgramAccessToken.ID = field.NewInt32(tableName, "id")
_miniProgramAccessToken.AppID = field.NewString(tableName, "app_id")
_miniProgramAccessToken.AccessToken = field.NewString(tableName, "access_token")
_miniProgramAccessToken.CreatedAt = field.NewTime(tableName, "created_at")
_miniProgramAccessToken.ExpiredAt = field.NewTime(tableName, "expired_at")
_miniProgramAccessToken.fillFieldMap()
return _miniProgramAccessToken
}
// miniProgramAccessToken 小程序 access_token 表
type miniProgramAccessToken struct {
miniProgramAccessTokenDo
ALL field.Asterisk
ID field.Int32 // 主键
AppID field.String // app_id
AccessToken field.String // access_token
CreatedAt field.Time // 创建时间
ExpiredAt field.Time // 过期时间
fieldMap map[string]field.Expr
}
func (m miniProgramAccessToken) Table(newTableName string) *miniProgramAccessToken {
m.miniProgramAccessTokenDo.UseTable(newTableName)
return m.updateTableName(newTableName)
}
func (m miniProgramAccessToken) As(alias string) *miniProgramAccessToken {
m.miniProgramAccessTokenDo.DO = *(m.miniProgramAccessTokenDo.As(alias).(*gen.DO))
return m.updateTableName(alias)
}
func (m *miniProgramAccessToken) updateTableName(table string) *miniProgramAccessToken {
m.ALL = field.NewAsterisk(table)
m.ID = field.NewInt32(table, "id")
m.AppID = field.NewString(table, "app_id")
m.AccessToken = field.NewString(table, "access_token")
m.CreatedAt = field.NewTime(table, "created_at")
m.ExpiredAt = field.NewTime(table, "expired_at")
m.fillFieldMap()
return m
}
func (m *miniProgramAccessToken) GetFieldByName(fieldName string) (field.OrderExpr, bool) {
_f, ok := m.fieldMap[fieldName]
if !ok || _f == nil {
return nil, false
}
_oe, ok := _f.(field.OrderExpr)
return _oe, ok
}
func (m *miniProgramAccessToken) fillFieldMap() {
m.fieldMap = make(map[string]field.Expr, 5)
m.fieldMap["id"] = m.ID
m.fieldMap["app_id"] = m.AppID
m.fieldMap["access_token"] = m.AccessToken
m.fieldMap["created_at"] = m.CreatedAt
m.fieldMap["expired_at"] = m.ExpiredAt
}
func (m miniProgramAccessToken) clone(db *gorm.DB) miniProgramAccessToken {
m.miniProgramAccessTokenDo.ReplaceConnPool(db.Statement.ConnPool)
return m
}
func (m miniProgramAccessToken) replaceDB(db *gorm.DB) miniProgramAccessToken {
m.miniProgramAccessTokenDo.ReplaceDB(db)
return m
}
type miniProgramAccessTokenDo struct{ gen.DO }
func (m miniProgramAccessTokenDo) Debug() *miniProgramAccessTokenDo {
return m.withDO(m.DO.Debug())
}
func (m miniProgramAccessTokenDo) WithContext(ctx context.Context) *miniProgramAccessTokenDo {
return m.withDO(m.DO.WithContext(ctx))
}
func (m miniProgramAccessTokenDo) ReadDB() *miniProgramAccessTokenDo {
return m.Clauses(dbresolver.Read)
}
func (m miniProgramAccessTokenDo) WriteDB() *miniProgramAccessTokenDo {
return m.Clauses(dbresolver.Write)
}
func (m miniProgramAccessTokenDo) Session(config *gorm.Session) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Session(config))
}
func (m miniProgramAccessTokenDo) Clauses(conds ...clause.Expression) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Clauses(conds...))
}
func (m miniProgramAccessTokenDo) Returning(value interface{}, columns ...string) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Returning(value, columns...))
}
func (m miniProgramAccessTokenDo) Not(conds ...gen.Condition) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Not(conds...))
}
func (m miniProgramAccessTokenDo) Or(conds ...gen.Condition) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Or(conds...))
}
func (m miniProgramAccessTokenDo) Select(conds ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Select(conds...))
}
func (m miniProgramAccessTokenDo) Where(conds ...gen.Condition) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Where(conds...))
}
func (m miniProgramAccessTokenDo) Order(conds ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Order(conds...))
}
func (m miniProgramAccessTokenDo) Distinct(cols ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Distinct(cols...))
}
func (m miniProgramAccessTokenDo) Omit(cols ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Omit(cols...))
}
func (m miniProgramAccessTokenDo) Join(table schema.Tabler, on ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Join(table, on...))
}
func (m miniProgramAccessTokenDo) LeftJoin(table schema.Tabler, on ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.LeftJoin(table, on...))
}
func (m miniProgramAccessTokenDo) RightJoin(table schema.Tabler, on ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.RightJoin(table, on...))
}
func (m miniProgramAccessTokenDo) Group(cols ...field.Expr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Group(cols...))
}
func (m miniProgramAccessTokenDo) Having(conds ...gen.Condition) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Having(conds...))
}
func (m miniProgramAccessTokenDo) Limit(limit int) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Limit(limit))
}
func (m miniProgramAccessTokenDo) Offset(offset int) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Offset(offset))
}
func (m miniProgramAccessTokenDo) Scopes(funcs ...func(gen.Dao) gen.Dao) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Scopes(funcs...))
}
func (m miniProgramAccessTokenDo) Unscoped() *miniProgramAccessTokenDo {
return m.withDO(m.DO.Unscoped())
}
func (m miniProgramAccessTokenDo) Create(values ...*model.MiniProgramAccessToken) error {
if len(values) == 0 {
return nil
}
return m.DO.Create(values)
}
func (m miniProgramAccessTokenDo) CreateInBatches(values []*model.MiniProgramAccessToken, batchSize int) error {
return m.DO.CreateInBatches(values, batchSize)
}
// Save : !!! underlying implementation is different with GORM
// The method is equivalent to executing the statement: db.Clauses(clause.OnConflict{UpdateAll: true}).Create(values)
func (m miniProgramAccessTokenDo) Save(values ...*model.MiniProgramAccessToken) error {
if len(values) == 0 {
return nil
}
return m.DO.Save(values)
}
func (m miniProgramAccessTokenDo) First() (*model.MiniProgramAccessToken, error) {
if result, err := m.DO.First(); err != nil {
return nil, err
} else {
return result.(*model.MiniProgramAccessToken), nil
}
}
func (m miniProgramAccessTokenDo) Take() (*model.MiniProgramAccessToken, error) {
if result, err := m.DO.Take(); err != nil {
return nil, err
} else {
return result.(*model.MiniProgramAccessToken), nil
}
}
func (m miniProgramAccessTokenDo) Last() (*model.MiniProgramAccessToken, error) {
if result, err := m.DO.Last(); err != nil {
return nil, err
} else {
return result.(*model.MiniProgramAccessToken), nil
}
}
func (m miniProgramAccessTokenDo) Find() ([]*model.MiniProgramAccessToken, error) {
result, err := m.DO.Find()
return result.([]*model.MiniProgramAccessToken), err
}
func (m miniProgramAccessTokenDo) FindInBatch(batchSize int, fc func(tx gen.Dao, batch int) error) (results []*model.MiniProgramAccessToken, err error) {
buf := make([]*model.MiniProgramAccessToken, 0, batchSize)
err = m.DO.FindInBatches(&buf, batchSize, func(tx gen.Dao, batch int) error {
defer func() { results = append(results, buf...) }()
return fc(tx, batch)
})
return results, err
}
func (m miniProgramAccessTokenDo) FindInBatches(result *[]*model.MiniProgramAccessToken, batchSize int, fc func(tx gen.Dao, batch int) error) error {
return m.DO.FindInBatches(result, batchSize, fc)
}
func (m miniProgramAccessTokenDo) Attrs(attrs ...field.AssignExpr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Attrs(attrs...))
}
func (m miniProgramAccessTokenDo) Assign(attrs ...field.AssignExpr) *miniProgramAccessTokenDo {
return m.withDO(m.DO.Assign(attrs...))
}
func (m miniProgramAccessTokenDo) Joins(fields ...field.RelationField) *miniProgramAccessTokenDo {
for _, _f := range fields {
m = *m.withDO(m.DO.Joins(_f))
}
return &m
}
func (m miniProgramAccessTokenDo) Preload(fields ...field.RelationField) *miniProgramAccessTokenDo {
for _, _f := range fields {
m = *m.withDO(m.DO.Preload(_f))
}
return &m
}
func (m miniProgramAccessTokenDo) FirstOrInit() (*model.MiniProgramAccessToken, error) {
if result, err := m.DO.FirstOrInit(); err != nil {
return nil, err
} else {
return result.(*model.MiniProgramAccessToken), nil
}
}
func (m miniProgramAccessTokenDo) FirstOrCreate() (*model.MiniProgramAccessToken, error) {
if result, err := m.DO.FirstOrCreate(); err != nil {
return nil, err
} else {
return result.(*model.MiniProgramAccessToken), nil
}
}
func (m miniProgramAccessTokenDo) FindByPage(offset int, limit int) (result []*model.MiniProgramAccessToken, count int64, err error) {
result, err = m.Offset(offset).Limit(limit).Find()
if err != nil {
return
}
if size := len(result); 0 < limit && 0 < size && size < limit {
count = int64(size + offset)
return
}
count, err = m.Offset(-1).Limit(-1).Count()
return
}
func (m miniProgramAccessTokenDo) ScanByPage(result interface{}, offset int, limit int) (count int64, err error) {
count, err = m.Count()
if err != nil {
return
}
err = m.Offset(offset).Limit(limit).Scan(result)
return
}
func (m miniProgramAccessTokenDo) Scan(result interface{}) (err error) {
return m.DO.Scan(result)
}
func (m miniProgramAccessTokenDo) Delete(models ...*model.MiniProgramAccessToken) (result gen.ResultInfo, err error) {
return m.DO.Delete(models)
}
func (m *miniProgramAccessTokenDo) withDO(do gen.Dao) *miniProgramAccessTokenDo {
m.DO = *do.(*gen.DO)
return m
}