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2026-08-28 15:06:01 +08:00

192 lines
6.1 KiB
Go

// Code generated by ent, DO NOT EDIT.
package ent
import (
"bj_power_mes/ent/stepcriterion"
"fmt"
"strings"
"time"
"entgo.io/ent"
"entgo.io/ent/dialect/sql"
)
// StepCriterion is the model entity for the StepCriterion schema.
type StepCriterion struct {
config `json:"-"`
// ID of the ent.
ID int `json:"id,omitempty"`
// 步骤ID
StepId int `json:"stepId,omitempty"`
// 指标名,如 扭矩/角度
Name string `json:"name,omitempty"`
// Unit holds the value of the "unit" field.
Unit string `json:"unit,omitempty"`
// Logic holds the value of the "logic" field.
Logic string `json:"logic,omitempty"`
// 目标值
Target float64 `json:"target,omitempty"`
// 范围下限
Min *float64 `json:"min,omitempty"`
// 范围上限
Max *float64 `json:"max,omitempty"`
// CreatedAt holds the value of the "createdAt" field.
CreatedAt time.Time `json:"createdAt,omitempty"`
selectValues sql.SelectValues
}
// scanValues returns the types for scanning values from sql.Rows.
func (*StepCriterion) scanValues(columns []string) ([]any, error) {
values := make([]any, len(columns))
for i := range columns {
switch columns[i] {
case stepcriterion.FieldTarget, stepcriterion.FieldMin, stepcriterion.FieldMax:
values[i] = new(sql.NullFloat64)
case stepcriterion.FieldID, stepcriterion.FieldStepId:
values[i] = new(sql.NullInt64)
case stepcriterion.FieldName, stepcriterion.FieldUnit, stepcriterion.FieldLogic:
values[i] = new(sql.NullString)
case stepcriterion.FieldCreatedAt:
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 StepCriterion fields.
func (_m *StepCriterion) 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 stepcriterion.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 stepcriterion.FieldStepId:
if value, ok := values[i].(*sql.NullInt64); !ok {
return fmt.Errorf("unexpected type %T for field stepId", values[i])
} else if value.Valid {
_m.StepId = int(value.Int64)
}
case stepcriterion.FieldName:
if value, ok := values[i].(*sql.NullString); !ok {
return fmt.Errorf("unexpected type %T for field name", values[i])
} else if value.Valid {
_m.Name = value.String
}
case stepcriterion.FieldUnit:
if value, ok := values[i].(*sql.NullString); !ok {
return fmt.Errorf("unexpected type %T for field unit", values[i])
} else if value.Valid {
_m.Unit = value.String
}
case stepcriterion.FieldLogic:
if value, ok := values[i].(*sql.NullString); !ok {
return fmt.Errorf("unexpected type %T for field logic", values[i])
} else if value.Valid {
_m.Logic = value.String
}
case stepcriterion.FieldTarget:
if value, ok := values[i].(*sql.NullFloat64); !ok {
return fmt.Errorf("unexpected type %T for field target", values[i])
} else if value.Valid {
_m.Target = value.Float64
}
case stepcriterion.FieldMin:
if value, ok := values[i].(*sql.NullFloat64); !ok {
return fmt.Errorf("unexpected type %T for field min", values[i])
} else if value.Valid {
_m.Min = new(float64)
*_m.Min = value.Float64
}
case stepcriterion.FieldMax:
if value, ok := values[i].(*sql.NullFloat64); !ok {
return fmt.Errorf("unexpected type %T for field max", values[i])
} else if value.Valid {
_m.Max = new(float64)
*_m.Max = value.Float64
}
case stepcriterion.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
}
default:
_m.selectValues.Set(columns[i], values[i])
}
}
return nil
}
// Value returns the ent.Value that was dynamically selected and assigned to the StepCriterion.
// This includes values selected through modifiers, order, etc.
func (_m *StepCriterion) Value(name string) (ent.Value, error) {
return _m.selectValues.Get(name)
}
// Update returns a builder for updating this StepCriterion.
// Note that you need to call StepCriterion.Unwrap() before calling this method if this StepCriterion
// was returned from a transaction, and the transaction was committed or rolled back.
func (_m *StepCriterion) Update() *StepCriterionUpdateOne {
return NewStepCriterionClient(_m.config).UpdateOne(_m)
}
// Unwrap unwraps the StepCriterion 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 *StepCriterion) Unwrap() *StepCriterion {
_tx, ok := _m.config.driver.(*txDriver)
if !ok {
panic("ent: StepCriterion is not a transactional entity")
}
_m.config.driver = _tx.drv
return _m
}
// String implements the fmt.Stringer.
func (_m *StepCriterion) String() string {
var builder strings.Builder
builder.WriteString("StepCriterion(")
builder.WriteString(fmt.Sprintf("id=%v, ", _m.ID))
builder.WriteString("stepId=")
builder.WriteString(fmt.Sprintf("%v", _m.StepId))
builder.WriteString(", ")
builder.WriteString("name=")
builder.WriteString(_m.Name)
builder.WriteString(", ")
builder.WriteString("unit=")
builder.WriteString(_m.Unit)
builder.WriteString(", ")
builder.WriteString("logic=")
builder.WriteString(_m.Logic)
builder.WriteString(", ")
builder.WriteString("target=")
builder.WriteString(fmt.Sprintf("%v", _m.Target))
builder.WriteString(", ")
if v := _m.Min; v != nil {
builder.WriteString("min=")
builder.WriteString(fmt.Sprintf("%v", *v))
}
builder.WriteString(", ")
if v := _m.Max; v != nil {
builder.WriteString("max=")
builder.WriteString(fmt.Sprintf("%v", *v))
}
builder.WriteString(", ")
builder.WriteString("createdAt=")
builder.WriteString(_m.CreatedAt.Format(time.ANSIC))
builder.WriteByte(')')
return builder.String()
}
// StepCriterions is a parsable slice of StepCriterion.
type StepCriterions []*StepCriterion