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+// ==========================================================================
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+// This is auto-generated by gf cli tool. DO NOT EDIT THIS FILE MANUALLY.
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+// ==========================================================================
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+
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+package internal
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+
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+import (
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+ "context"
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+ "database/sql"
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+ "github.com/gogf/gf/database/gdb"
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+ "github.com/gogf/gf/frame/g"
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+ "github.com/gogf/gf/frame/gmvc"
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+ model2 "lims_adapter/model"
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+ "time"
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+)
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+
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+// BaseUserDao is the manager for logic model data accessing
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+// and custom defined data operations functions management.
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+type BaseUserDao struct {
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+ gmvc.M
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+ DB gdb.DB
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+ Table string
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+ Columns baseUserColumns
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+}
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+
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+// BaseUserColumns defines and stores column names for table base_user.
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+type baseUserColumns struct {
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+ Id string //
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+ Uuid string // 用户Id标识,不易猜出
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+ AccCode string // 区分不同App的用户
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+ Code string // 编码
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+ UserName string // 用户登录名
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+ Realname string // 用户名
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+ RoleId string // 角色id
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+ SecurityLevel string //
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+ UserFrom string //
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+ CompanyId string // 公司id
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+ CompanyName string // 公司名称
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+ DepartmentId string // 部门id
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+ DepartmentName string // 部门名称
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+ WorkgroupId string // 工作组id
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+ WorkgroupName string // 工作组名称
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+ WorkCategory string //
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+ Duty string // 职务
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+ Title string // 头衔
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+ Gender string // 性别
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+ Birthday string //
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+ Mobile string //
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+ Telephone string //
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+ Email string //
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+ OICQ string //
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+ HomeAddress string //
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+ UserPassword string //
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+ ChangePasswordDate string // 改密码时间
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+ CommunicationPassword string //
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+ PublicKey string //
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+ SignedPassword string //
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+ Lang string //
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+ Theme string //
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+ AllowStartTime string //
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+ AllowEndTime string //
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+ LockStartDate string //
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+ LockEndDate string //
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+ FirstVisit string //
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+ PreviousVisit string //
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+ LastVisit string //
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+ LogOnCount string //
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+ IsStaff string //
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+ UserOnLine string //
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+ IsVisible string // 是否可视,1为可视
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+ OpenId string //
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+ IPAddress string //
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+ MACAddress string //
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+ Question string //
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+ AnswerQuestion string //
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+ UserAddressId string //
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+ Enabled string // 是否可用
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+ AuditStatus string // 激活状态(1激活)
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+ DeletionStateCode string // 删除状态
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+ SortCode string //
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+ Description string //
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+ CreateOn string //
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+ CreateUserId string //
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+ CreateBy string //
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+ ModifiedOn string //
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+ ModifiedUserId string //
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+ ModifiedBy string //
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+ Photo string //
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+ QRCode string //
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+ QRCodeImage string //
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+ IsCompanyUser string // 是否是企业用户(供方字段用)
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+ Superior string // 上级部门
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+ UnitId string // 二级单位ID(供方字段用)
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+ Unit string //
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+ DeletedAt string // 删除时间
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+}
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+
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+var (
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+ // BaseUser is globally public accessible object for table base_user operations.
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+ BaseUser = BaseUserDao{
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+ M: g.DB("default").Model("base_user").Safe(),
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+ DB: g.DB("default"),
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+ Table: "base_user",
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+ Columns: baseUserColumns{
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+ Id: "Id",
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+ Uuid: "Uuid",
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+ AccCode: "AccCode",
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+ Code: "Code",
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+ UserName: "UserName",
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+ Realname: "Realname",
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+ RoleId: "RoleId",
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+ SecurityLevel: "SecurityLevel",
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+ UserFrom: "UserFrom",
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+ CompanyId: "CompanyId",
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+ CompanyName: "CompanyName",
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+ DepartmentId: "DepartmentId",
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+ DepartmentName: "DepartmentName",
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+ WorkgroupId: "WorkgroupId",
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+ WorkgroupName: "WorkgroupName",
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+ WorkCategory: "WorkCategory",
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+ Duty: "Duty",
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+ Title: "Title",
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+ Gender: "Gender",
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+ Birthday: "Birthday",
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+ Mobile: "Mobile",
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+ Telephone: "Telephone",
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+ Email: "Email",
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+ OICQ: "OICQ",
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+ HomeAddress: "HomeAddress",
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+ UserPassword: "UserPassword",
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+ ChangePasswordDate: "ChangePasswordDate",
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+ CommunicationPassword: "CommunicationPassword",
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+ PublicKey: "PublicKey",
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+ SignedPassword: "SignedPassword",
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+ Lang: "Lang",
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+ Theme: "Theme",
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+ AllowStartTime: "AllowStartTime",
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+ AllowEndTime: "AllowEndTime",
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+ LockStartDate: "LockStartDate",
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+ LockEndDate: "LockEndDate",
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+ FirstVisit: "FirstVisit",
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+ PreviousVisit: "PreviousVisit",
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+ LastVisit: "LastVisit",
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+ LogOnCount: "LogOnCount",
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+ IsStaff: "IsStaff",
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+ UserOnLine: "UserOnLine",
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+ IsVisible: "IsVisible",
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+ OpenId: "OpenId",
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+ IPAddress: "IPAddress",
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+ MACAddress: "MACAddress",
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+ Question: "Question",
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+ AnswerQuestion: "AnswerQuestion",
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+ UserAddressId: "UserAddressId",
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+ Enabled: "Enabled",
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+ AuditStatus: "AuditStatus",
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+ DeletionStateCode: "DeletionStateCode",
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+ SortCode: "SortCode",
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+ Description: "Description",
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+ CreateOn: "CreateOn",
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+ CreateUserId: "CreateUserId",
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+ CreateBy: "CreateBy",
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+ ModifiedOn: "ModifiedOn",
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+ ModifiedUserId: "ModifiedUserId",
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+ ModifiedBy: "ModifiedBy",
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+ Photo: "Photo",
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+ QRCode: "QRCode",
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+ QRCodeImage: "QRCodeImage",
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+ IsCompanyUser: "IsCompanyUser",
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+ Superior: "Superior",
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+ UnitId: "UnitId",
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+ Unit: "Unit",
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+ DeletedAt: "DeletedAt",
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+ },
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+ }
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+)
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+
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+func NewBaseUserDao(tenant string) BaseUserDao {
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+ var dao BaseUserDao
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+ dao = BaseUserDao{
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+ M: g.DB(tenant).Model("base_user").Safe(),
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+ DB: g.DB(tenant),
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+ Table: "base_user",
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+ Columns: baseUserColumns{
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+ Id: "Id",
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+ Uuid: "Uuid",
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+ AccCode: "AccCode",
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+ Code: "Code",
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+ UserName: "UserName",
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+ Realname: "Realname",
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+ RoleId: "RoleId",
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+ SecurityLevel: "SecurityLevel",
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+ UserFrom: "UserFrom",
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+ CompanyId: "CompanyId",
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+ CompanyName: "CompanyName",
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+ DepartmentId: "DepartmentId",
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+ DepartmentName: "DepartmentName",
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+ WorkgroupId: "WorkgroupId",
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+ WorkgroupName: "WorkgroupName",
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+ WorkCategory: "WorkCategory",
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+ Duty: "Duty",
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+ Title: "Title",
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+ Gender: "Gender",
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+ Birthday: "Birthday",
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+ Mobile: "Mobile",
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+ Telephone: "Telephone",
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+ Email: "Email",
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+ OICQ: "OICQ",
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+ HomeAddress: "HomeAddress",
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+ UserPassword: "UserPassword",
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+ ChangePasswordDate: "ChangePasswordDate",
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+ CommunicationPassword: "CommunicationPassword",
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+ PublicKey: "PublicKey",
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+ SignedPassword: "SignedPassword",
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+ Lang: "Lang",
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+ Theme: "Theme",
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+ AllowStartTime: "AllowStartTime",
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+ AllowEndTime: "AllowEndTime",
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+ LockStartDate: "LockStartDate",
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+ LockEndDate: "LockEndDate",
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+ FirstVisit: "FirstVisit",
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+ PreviousVisit: "PreviousVisit",
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+ LastVisit: "LastVisit",
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+ LogOnCount: "LogOnCount",
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+ IsStaff: "IsStaff",
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+ UserOnLine: "UserOnLine",
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+ IsVisible: "IsVisible",
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+ OpenId: "OpenId",
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+ IPAddress: "IPAddress",
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+ MACAddress: "MACAddress",
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+ Question: "Question",
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+ AnswerQuestion: "AnswerQuestion",
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+ UserAddressId: "UserAddressId",
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+ Enabled: "Enabled",
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+ AuditStatus: "AuditStatus",
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+ DeletionStateCode: "DeletionStateCode",
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+ SortCode: "SortCode",
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+ Description: "Description",
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+ CreateOn: "CreateOn",
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+ CreateUserId: "CreateUserId",
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+ CreateBy: "CreateBy",
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+ ModifiedOn: "ModifiedOn",
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+ ModifiedUserId: "ModifiedUserId",
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+ ModifiedBy: "ModifiedBy",
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+ Photo: "Photo",
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+ QRCode: "QRCode",
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+ QRCodeImage: "QRCodeImage",
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+ IsCompanyUser: "IsCompanyUser",
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+ Superior: "Superior",
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+ UnitId: "UnitId",
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+ Unit: "Unit",
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+ DeletedAt: "DeletedAt",
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+ },
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+ }
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+ return dao
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+}
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+
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+// Ctx is a chaining function, which creates and returns a new DB that is a shallow copy
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+// of current DB object and with given context in it.
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+// Note that this returned DB object can be used only once, so do not assign it to
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+// a global or package variable for long using.
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+func (d *BaseUserDao) Ctx(ctx context.Context) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Ctx(ctx)}
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+}
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+
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+// As sets an alias name for current table.
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+func (d *BaseUserDao) As(as string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.As(as)}
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+}
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+
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+// TX sets the transaction for current operation.
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+func (d *BaseUserDao) TX(tx *gdb.TX) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.TX(tx)}
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+}
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+
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+// Master marks the following operation on master node.
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+func (d *BaseUserDao) Master() *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Master()}
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+}
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+
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+// Slave marks the following operation on slave node.
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+// Note that it makes sense only if there's any slave node configured.
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+func (d *BaseUserDao) Slave() *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Slave()}
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+}
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+
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+// Args sets custom arguments for model operation.
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+func (d *BaseUserDao) Args(args ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Args(args...)}
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+}
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+
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+// LeftJoin does "LEFT JOIN ... ON ..." statement on the model.
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+// The parameter <table> can be joined table and its joined condition,
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+// and also with its alias name, like:
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+// Table("user").LeftJoin("user_detail", "user_detail.uid=user.uid")
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+// Table("user", "u").LeftJoin("user_detail", "ud", "ud.uid=u.uid")
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+func (d *BaseUserDao) LeftJoin(table ...string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.LeftJoin(table...)}
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+}
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+
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+// RightJoin does "RIGHT JOIN ... ON ..." statement on the model.
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+// The parameter <table> can be joined table and its joined condition,
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+// and also with its alias name, like:
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+// Table("user").RightJoin("user_detail", "user_detail.uid=user.uid")
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+// Table("user", "u").RightJoin("user_detail", "ud", "ud.uid=u.uid")
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+func (d *BaseUserDao) RightJoin(table ...string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.RightJoin(table...)}
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+}
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+
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+// InnerJoin does "INNER JOIN ... ON ..." statement on the model.
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+// The parameter <table> can be joined table and its joined condition,
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+// and also with its alias name, like:
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+// Table("user").InnerJoin("user_detail", "user_detail.uid=user.uid")
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+// Table("user", "u").InnerJoin("user_detail", "ud", "ud.uid=u.uid")
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+func (d *BaseUserDao) InnerJoin(table ...string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.InnerJoin(table...)}
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+}
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+
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+// Fields sets the operation fields of the model, multiple fields joined using char ','.
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+// The parameter <fieldNamesOrMapStruct> can be type of string/map/*map/struct/*struct.
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+func (d *BaseUserDao) Fields(fieldNamesOrMapStruct ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Fields(fieldNamesOrMapStruct...)}
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+}
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+
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+// FieldsEx sets the excluded operation fields of the model, multiple fields joined using char ','.
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+// The parameter <fieldNamesOrMapStruct> can be type of string/map/*map/struct/*struct.
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+func (d *BaseUserDao) FieldsEx(fieldNamesOrMapStruct ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.FieldsEx(fieldNamesOrMapStruct...)}
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+}
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+
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+// Option sets the extra operation option for the model.
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+func (d *BaseUserDao) Option(option int) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Option(option)}
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+}
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+
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+// OmitEmpty sets OPTION_OMITEMPTY option for the model, which automatically filers
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+// the data and where attributes for empty values.
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+func (d *BaseUserDao) OmitEmpty() *BaseUserDao {
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+ return &BaseUserDao{M: d.M.OmitEmpty()}
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+}
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+
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+// Filter marks filtering the fields which does not exist in the fields of the operated table.
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+func (d *BaseUserDao) Filter() *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Filter()}
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+}
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+
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+// Where sets the condition statement for the model. The parameter <where> can be type of
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+// string/map/gmap/slice/struct/*struct, etc. Note that, if it's called more than one times,
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+// multiple conditions will be joined into where statement using "AND".
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+// Eg:
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+// Where("uid=10000")
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+// Where("uid", 10000)
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+// Where("money>? AND name like ?", 99999, "vip_%")
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+// Where("uid", 1).Where("name", "john")
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+// Where("status IN (?)", g.Slice{1,2,3})
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+// Where("age IN(?,?)", 18, 50)
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+// Where(User{ Id : 1, UserName : "john"})
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+func (d *BaseUserDao) Where(where interface{}, args ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Where(where, args...)}
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+}
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+
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+// WherePri does the same logic as M.Where except that if the parameter <where>
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+// is a single condition like int/string/float/slice, it treats the condition as the primary
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+// key value. That is, if primary key is "id" and given <where> parameter as "123", the
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+// WherePri function treats the condition as "id=123", but M.Where treats the condition
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+// as string "123".
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+func (d *BaseUserDao) WherePri(where interface{}, args ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.WherePri(where, args...)}
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+}
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+
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+// And adds "AND" condition to the where statement.
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+func (d *BaseUserDao) And(where interface{}, args ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.And(where, args...)}
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+}
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+
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+// Or adds "OR" condition to the where statement.
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+func (d *BaseUserDao) Or(where interface{}, args ...interface{}) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Or(where, args...)}
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+}
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+
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+// Group sets the "GROUP BY" statement for the model.
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+func (d *BaseUserDao) Group(groupBy string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Group(groupBy)}
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+}
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+
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+// Order sets the "ORDER BY" statement for the model.
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+func (d *BaseUserDao) Order(orderBy ...string) *BaseUserDao {
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+ return &BaseUserDao{M: d.M.Order(orderBy...)}
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+}
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+
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+// Limit sets the "LIMIT" statement for the model.
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+// The parameter <limit> can be either one or two number, if passed two number is passed,
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+// it then sets "LIMIT limit[0],limit[1]" statement for the model, or else it sets "LIMIT limit[0]"
|
|
|
+// statement.
|
|
|
+func (d *BaseUserDao) Limit(limit ...int) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Limit(limit...)}
|
|
|
+}
|
|
|
+
|
|
|
+// Offset sets the "OFFSET" statement for the model.
|
|
|
+// It only makes sense for some databases like SQLServer, PostgreSQL, etc.
|
|
|
+func (d *BaseUserDao) Offset(offset int) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Offset(offset)}
|
|
|
+}
|
|
|
+
|
|
|
+// Page sets the paging number for the model.
|
|
|
+// The parameter <page> is started from 1 for paging.
|
|
|
+// Note that, it differs that the Limit function start from 0 for "LIMIT" statement.
|
|
|
+func (d *BaseUserDao) Page(page, limit int) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Page(page, limit)}
|
|
|
+}
|
|
|
+
|
|
|
+// Batch sets the batch operation number for the model.
|
|
|
+func (d *BaseUserDao) Batch(batch int) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Batch(batch)}
|
|
|
+}
|
|
|
+
|
|
|
+// Cache sets the cache feature for the model. It caches the result of the sql, which means
|
|
|
+// if there's another same sql request, it just reads and returns the result from cache, it
|
|
|
+// but not committed and executed into the database.
|
|
|
+//
|
|
|
+// If the parameter <duration> < 0, which means it clear the cache with given <name>.
|
|
|
+// If the parameter <duration> = 0, which means it never expires.
|
|
|
+// If the parameter <duration> > 0, which means it expires after <duration>.
|
|
|
+//
|
|
|
+// The optional parameter <name> is used to bind a name to the cache, which means you can later
|
|
|
+// control the cache like changing the <duration> or clearing the cache with specified <name>.
|
|
|
+//
|
|
|
+// Note that, the cache feature is disabled if the model is operating on a transaction.
|
|
|
+func (d *BaseUserDao) Cache(duration time.Duration, name ...string) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Cache(duration, name...)}
|
|
|
+}
|
|
|
+
|
|
|
+// Data sets the operation data for the model.
|
|
|
+// The parameter <data> can be type of string/map/gmap/slice/struct/*struct, etc.
|
|
|
+// Eg:
|
|
|
+// Data("uid=10000")
|
|
|
+// Data("uid", 10000)
|
|
|
+// Data(g.Map{"uid": 10000, "name":"john"})
|
|
|
+// Data(g.Slice{g.Map{"uid": 10000, "name":"john"}, g.Map{"uid": 20000, "name":"smith"})
|
|
|
+func (d *BaseUserDao) Data(data ...interface{}) *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Data(data...)}
|
|
|
+}
|
|
|
+
|
|
|
+// All does "SELECT FROM ..." statement for the model.
|
|
|
+// It retrieves the records from table and returns the result as []*model.BaseUser.
|
|
|
+// It returns nil if there's no record retrieved with the given conditions from table.
|
|
|
+//
|
|
|
+// The optional parameter <where> is the same as the parameter of M.Where function,
|
|
|
+// see M.Where.
|
|
|
+func (d *BaseUserDao) All(where ...interface{}) ([]*model2.BaseUser, error) {
|
|
|
+ all, err := d.M.All(where...)
|
|
|
+ if err != nil {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ var entities []*model2.BaseUser
|
|
|
+ if err = all.Structs(&entities); err != nil && err != sql.ErrNoRows {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ return entities, nil
|
|
|
+}
|
|
|
+
|
|
|
+// One retrieves one record from table and returns the result as *model.BaseUser.
|
|
|
+// It returns nil if there's no record retrieved with the given conditions from table.
|
|
|
+//
|
|
|
+// The optional parameter <where> is the same as the parameter of M.Where function,
|
|
|
+// see M.Where.
|
|
|
+func (d *BaseUserDao) One(where ...interface{}) (*model2.BaseUser, error) {
|
|
|
+ one, err := d.M.One(where...)
|
|
|
+ if err != nil {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ var entity *model2.BaseUser
|
|
|
+ if err = one.Struct(&entity); err != nil && err != sql.ErrNoRows {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ return entity, nil
|
|
|
+}
|
|
|
+
|
|
|
+// FindOne retrieves and returns a single Record by M.WherePri and M.One.
|
|
|
+// Also see M.WherePri and M.One.
|
|
|
+func (d *BaseUserDao) FindOne(where ...interface{}) (*model2.BaseUser, error) {
|
|
|
+ one, err := d.M.FindOne(where...)
|
|
|
+ if err != nil {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ var entity *model2.BaseUser
|
|
|
+ if err = one.Struct(&entity); err != nil && err != sql.ErrNoRows {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ return entity, nil
|
|
|
+}
|
|
|
+
|
|
|
+// FindAll retrieves and returns Result by by M.WherePri and M.All.
|
|
|
+// Also see M.WherePri and M.All.
|
|
|
+func (d *BaseUserDao) FindAll(where ...interface{}) ([]*model2.BaseUser, error) {
|
|
|
+ all, err := d.M.FindAll(where...)
|
|
|
+ if err != nil {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ var entities []*model2.BaseUser
|
|
|
+ if err = all.Structs(&entities); err != nil && err != sql.ErrNoRows {
|
|
|
+ return nil, err
|
|
|
+ }
|
|
|
+ return entities, nil
|
|
|
+}
|
|
|
+
|
|
|
+// Struct retrieves one record from table and converts it into given struct.
|
|
|
+// The parameter <pointer> should be type of *struct/**struct. If type **struct is given,
|
|
|
+// it can create the struct internally during converting.
|
|
|
+//
|
|
|
+// The optional parameter <where> is the same as the parameter of Model.Where function,
|
|
|
+// see Model.Where.
|
|
|
+//
|
|
|
+// Note that it returns sql.ErrNoRows if there's no record retrieved with the given conditions
|
|
|
+// from table and <pointer> is not nil.
|
|
|
+//
|
|
|
+// Eg:
|
|
|
+// user := new(User)
|
|
|
+// err := dao.User.Where("id", 1).Struct(user)
|
|
|
+//
|
|
|
+// user := (*User)(nil)
|
|
|
+// err := dao.User.Where("id", 1).Struct(&user)
|
|
|
+func (d *BaseUserDao) Struct(pointer interface{}, where ...interface{}) error {
|
|
|
+ return d.M.Struct(pointer, where...)
|
|
|
+}
|
|
|
+
|
|
|
+// Structs retrieves records from table and converts them into given struct slice.
|
|
|
+// The parameter <pointer> should be type of *[]struct/*[]*struct. It can create and fill the struct
|
|
|
+// slice internally during converting.
|
|
|
+//
|
|
|
+// The optional parameter <where> is the same as the parameter of Model.Where function,
|
|
|
+// see Model.Where.
|
|
|
+//
|
|
|
+// Note that it returns sql.ErrNoRows if there's no record retrieved with the given conditions
|
|
|
+// from table and <pointer> is not empty.
|
|
|
+//
|
|
|
+// Eg:
|
|
|
+// users := ([]User)(nil)
|
|
|
+// err := dao.User.Structs(&users)
|
|
|
+//
|
|
|
+// users := ([]*User)(nil)
|
|
|
+// err := dao.User.Structs(&users)
|
|
|
+func (d *BaseUserDao) Structs(pointer interface{}, where ...interface{}) error {
|
|
|
+ return d.M.Structs(pointer, where...)
|
|
|
+}
|
|
|
+
|
|
|
+// Scan automatically calls Struct or Structs function according to the type of parameter <pointer>.
|
|
|
+// It calls function Struct if <pointer> is type of *struct/**struct.
|
|
|
+// It calls function Structs if <pointer> is type of *[]struct/*[]*struct.
|
|
|
+//
|
|
|
+// The optional parameter <where> is the same as the parameter of Model.Where function,
|
|
|
+// see Model.Where.
|
|
|
+//
|
|
|
+// Note that it returns sql.ErrNoRows if there's no record retrieved and given pointer is not empty or nil.
|
|
|
+//
|
|
|
+// Eg:
|
|
|
+// user := new(User)
|
|
|
+// err := dao.User.Where("id", 1).Scan(user)
|
|
|
+//
|
|
|
+// user := (*User)(nil)
|
|
|
+// err := dao.User.Where("id", 1).Scan(&user)
|
|
|
+//
|
|
|
+// users := ([]User)(nil)
|
|
|
+// err := dao.User.Scan(&users)
|
|
|
+//
|
|
|
+// users := ([]*User)(nil)
|
|
|
+// err := dao.User.Scan(&users)
|
|
|
+func (d *BaseUserDao) Scan(pointer interface{}, where ...interface{}) error {
|
|
|
+ return d.M.Scan(pointer, where...)
|
|
|
+}
|
|
|
+
|
|
|
+// Chunk iterates the table with given size and callback function.
|
|
|
+func (d *BaseUserDao) Chunk(limit int, callback func(entities []*model2.BaseUser, err error) bool) {
|
|
|
+ d.M.Chunk(limit, func(result gdb.Result, err error) bool {
|
|
|
+ var entities []*model2.BaseUser
|
|
|
+ err = result.Structs(&entities)
|
|
|
+ if err == sql.ErrNoRows {
|
|
|
+ return false
|
|
|
+ }
|
|
|
+ return callback(entities, err)
|
|
|
+ })
|
|
|
+}
|
|
|
+
|
|
|
+// LockUpdate sets the lock for update for current operation.
|
|
|
+func (d *BaseUserDao) LockUpdate() *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.LockUpdate()}
|
|
|
+}
|
|
|
+
|
|
|
+// LockShared sets the lock in share mode for current operation.
|
|
|
+func (d *BaseUserDao) LockShared() *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.LockShared()}
|
|
|
+}
|
|
|
+
|
|
|
+// Unscoped enables/disables the soft deleting feature.
|
|
|
+func (d *BaseUserDao) Unscoped() *BaseUserDao {
|
|
|
+ return &BaseUserDao{M: d.M.Unscoped()}
|
|
|
+}
|