// Code generated by ent, DO NOT EDIT. package ent import ( "bj_power_mes/ent/materialqtyreport" "fmt" "strings" "time" "entgo.io/ent" "entgo.io/ent/dialect/sql" ) // MaterialQtyReport is the model entity for the MaterialQtyReport schema. type MaterialQtyReport struct { config `json:"-"` // ID of the ent. ID int `json:"id,omitempty"` // 工位号 StationNo int `json:"stationNo,omitempty"` // 工单号 OrderNo string `json:"orderNo,omitempty"` // 工件SN Sn string `json:"sn,omitempty"` // 物料编码 MaterialCode string `json:"materialCode,omitempty"` // 物料名称 MaterialName string `json:"materialName,omitempty"` // 应发数量 PlanQty int `json:"planQty,omitempty"` // 实收数量 ActualQty int `json:"actualQty,omitempty"` // 差异=应发-实收 DiffQty int `json:"diffQty,omitempty"` // 差异原因 Cause string `json:"cause,omitempty"` // PENDING/RESOLVED Status string `json:"status,omitempty"` // 上报人 Operator string `json:"operator,omitempty"` // CreatedAt holds the value of the "createdAt" field. CreatedAt time.Time `json:"createdAt,omitempty"` // ResolvedAt holds the value of the "resolvedAt" field. ResolvedAt *time.Time `json:"resolvedAt,omitempty"` selectValues sql.SelectValues } // scanValues returns the types for scanning values from sql.Rows. func (*MaterialQtyReport) scanValues(columns []string) ([]any, error) { values := make([]any, len(columns)) for i := range columns { switch columns[i] { case materialqtyreport.FieldID, materialqtyreport.FieldStationNo, materialqtyreport.FieldPlanQty, materialqtyreport.FieldActualQty, materialqtyreport.FieldDiffQty: values[i] = new(sql.NullInt64) case materialqtyreport.FieldOrderNo, materialqtyreport.FieldSn, materialqtyreport.FieldMaterialCode, materialqtyreport.FieldMaterialName, materialqtyreport.FieldCause, materialqtyreport.FieldStatus, materialqtyreport.FieldOperator: values[i] = new(sql.NullString) case materialqtyreport.FieldCreatedAt, materialqtyreport.FieldResolvedAt: values[i] = new(sql.NullTime) default: values[i] = new(sql.UnknownType) } } return values, nil } // assignValues assigns the values that were returned from sql.Rows (after scanning) // to the MaterialQtyReport fields. func (_m *MaterialQtyReport) assignValues(columns []string, values []any) error { if m, n := len(values), len(columns); m < n { return fmt.Errorf("mismatch number of scan values: %d != %d", m, n) } for i := range columns { switch columns[i] { case materialqtyreport.FieldID: value, ok := values[i].(*sql.NullInt64) if !ok { return fmt.Errorf("unexpected type %T for field id", value) } _m.ID = int(value.Int64) case materialqtyreport.FieldStationNo: if value, ok := values[i].(*sql.NullInt64); !ok { return fmt.Errorf("unexpected type %T for field stationNo", values[i]) } else if value.Valid { _m.StationNo = int(value.Int64) } case materialqtyreport.FieldOrderNo: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field orderNo", values[i]) } else if value.Valid { _m.OrderNo = value.String } case materialqtyreport.FieldSn: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field sn", values[i]) } else if value.Valid { _m.Sn = value.String } case materialqtyreport.FieldMaterialCode: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field materialCode", values[i]) } else if value.Valid { _m.MaterialCode = value.String } case materialqtyreport.FieldMaterialName: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field materialName", values[i]) } else if value.Valid { _m.MaterialName = value.String } case materialqtyreport.FieldPlanQty: if value, ok := values[i].(*sql.NullInt64); !ok { return fmt.Errorf("unexpected type %T for field planQty", values[i]) } else if value.Valid { _m.PlanQty = int(value.Int64) } case materialqtyreport.FieldActualQty: if value, ok := values[i].(*sql.NullInt64); !ok { return fmt.Errorf("unexpected type %T for field actualQty", values[i]) } else if value.Valid { _m.ActualQty = int(value.Int64) } case materialqtyreport.FieldDiffQty: if value, ok := values[i].(*sql.NullInt64); !ok { return fmt.Errorf("unexpected type %T for field diffQty", values[i]) } else if value.Valid { _m.DiffQty = int(value.Int64) } case materialqtyreport.FieldCause: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field cause", values[i]) } else if value.Valid { _m.Cause = value.String } case materialqtyreport.FieldStatus: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field status", values[i]) } else if value.Valid { _m.Status = value.String } case materialqtyreport.FieldOperator: if value, ok := values[i].(*sql.NullString); !ok { return fmt.Errorf("unexpected type %T for field operator", values[i]) } else if value.Valid { _m.Operator = value.String } case materialqtyreport.FieldCreatedAt: if value, ok := values[i].(*sql.NullTime); !ok { return fmt.Errorf("unexpected type %T for field createdAt", values[i]) } else if value.Valid { _m.CreatedAt = value.Time } case materialqtyreport.FieldResolvedAt: if value, ok := values[i].(*sql.NullTime); !ok { return fmt.Errorf("unexpected type %T for field resolvedAt", values[i]) } else if value.Valid { _m.ResolvedAt = new(time.Time) *_m.ResolvedAt = value.Time } default: _m.selectValues.Set(columns[i], values[i]) } } return nil } // Value returns the ent.Value that was dynamically selected and assigned to the MaterialQtyReport. // This includes values selected through modifiers, order, etc. func (_m *MaterialQtyReport) Value(name string) (ent.Value, error) { return _m.selectValues.Get(name) } // Update returns a builder for updating this MaterialQtyReport. // Note that you need to call MaterialQtyReport.Unwrap() before calling this method if this MaterialQtyReport // was returned from a transaction, and the transaction was committed or rolled back. func (_m *MaterialQtyReport) Update() *MaterialQtyReportUpdateOne { return NewMaterialQtyReportClient(_m.config).UpdateOne(_m) } // Unwrap unwraps the MaterialQtyReport entity that was returned from a transaction after it was closed, // so that all future queries will be executed through the driver which created the transaction. func (_m *MaterialQtyReport) Unwrap() *MaterialQtyReport { _tx, ok := _m.config.driver.(*txDriver) if !ok { panic("ent: MaterialQtyReport is not a transactional entity") } _m.config.driver = _tx.drv return _m } // String implements the fmt.Stringer. func (_m *MaterialQtyReport) String() string { var builder strings.Builder builder.WriteString("MaterialQtyReport(") builder.WriteString(fmt.Sprintf("id=%v, ", _m.ID)) builder.WriteString("stationNo=") builder.WriteString(fmt.Sprintf("%v", _m.StationNo)) builder.WriteString(", ") builder.WriteString("orderNo=") builder.WriteString(_m.OrderNo) builder.WriteString(", ") builder.WriteString("sn=") builder.WriteString(_m.Sn) builder.WriteString(", ") builder.WriteString("materialCode=") builder.WriteString(_m.MaterialCode) builder.WriteString(", ") builder.WriteString("materialName=") builder.WriteString(_m.MaterialName) builder.WriteString(", ") builder.WriteString("planQty=") builder.WriteString(fmt.Sprintf("%v", _m.PlanQty)) builder.WriteString(", ") builder.WriteString("actualQty=") builder.WriteString(fmt.Sprintf("%v", _m.ActualQty)) builder.WriteString(", ") builder.WriteString("diffQty=") builder.WriteString(fmt.Sprintf("%v", _m.DiffQty)) builder.WriteString(", ") builder.WriteString("cause=") builder.WriteString(_m.Cause) builder.WriteString(", ") builder.WriteString("status=") builder.WriteString(_m.Status) builder.WriteString(", ") builder.WriteString("operator=") builder.WriteString(_m.Operator) builder.WriteString(", ") builder.WriteString("createdAt=") builder.WriteString(_m.CreatedAt.Format(time.ANSIC)) builder.WriteString(", ") if v := _m.ResolvedAt; v != nil { builder.WriteString("resolvedAt=") builder.WriteString(v.Format(time.ANSIC)) } builder.WriteByte(')') return builder.String() } // MaterialQtyReports is a parsable slice of MaterialQtyReport. type MaterialQtyReports []*MaterialQtyReport