package kills import ( "encoding/base64" "fmt" "github.com/gin-gonic/gin" "gorm.io/gorm" "log" "math/rand" "time" "toutoukan/init/databaseInit" ) const ( colorRed = "\033[31m" // 红色 colorGreen = "\033[32m" // 绿色 colorYellow = "\033[33m" // 黄色 colorBlue = "\033[34m" // 蓝色 colorReset = "\033[0m" // 重置颜色 ) type Goods struct { GID uint `gorm:"column:gid"` Stock int `gorm:"column:stock"` StartTime time.Time `gorm:"column:start_time"` EndTime time.Time `gorm:"column:end_time"` } // Order 订单模型,对应 orders_list 表 type Order struct { OrderId string `gorm:"column:order_id"` // 关联商品ID TradeTime time.Time `gorm:"column:trade_time"` } // 为模型指定数据库表名 func (Goods) TableName() string { return "goods_list" } func (Order) TableName() string { return "oders_list" } // 生成25位随机订单编号(string类型) func GenerateOrderID() string { // 1. 取当前时间戳(精确到毫秒,8位数字) timestamp := time.Now().Format("20060102150405") // 年月日时分秒(14位) // 2. 生成随机字符串(11位,补足25位) randomBytes := make([]byte, 8) // 8字节随机数经base64编码后约11字符 _, err := rand.Read(randomBytes) if err != nil { // 出错时降级为伪随机数 return fmt.Sprintf("ORD%s%011d", timestamp, time.Now().UnixNano()%100000000000) } // 3. 拼接前缀+时间戳+随机字符串(确保25位) randomStr := base64.URLEncoding.EncodeToString(randomBytes)[:11] // 截取前11位 return fmt.Sprintf("ORD%s%s", timestamp, randomStr) } func Userkill(c *gin.Context) { // 直接使用全局初始化好的 UserDB 连接池 db := databaseInit.UserDB if db == nil { log.Printf("%sUserDB 未初始化,请先调用 InitUserDB()%s\n", colorRed, colorReset) c.JSON(500, gin.H{"error": "系统数据库未初始化"}) return } fmt.Printf("%s用户请求处理完成%s\n", colorBlue, colorReset) // 定义要查询的商品ID var targetGID uint = 1 var goods Goods tx := db.Begin() if tx.Error != nil { log.Printf("%s开启事务失败: %v%s\n", colorRed, tx.Error, colorReset) c.JSON(500, gin.H{"body": "事务开启失败"}) return } result := tx.Set("gorm:query_option", "FOR UPDATE").Where("gid = ?", targetGID).First(&goods) if result.Error != nil { tx.Rollback() // 失败回滚事务 log.Printf("%s查询商品失败: %v%s\n", colorRed, result.Error, colorReset) c.JSON(404, gin.H{"error": "商品不存在"}) return } // 2. 检查库存是否充足 if goods.Stock <= 0 { tx.Rollback() log.Printf("%s商品库存不足%s\n", colorYellow, colorReset) c.JSON(400, gin.H{"error": "商品库存不足"}) return } // 3. 生成订单 order := Order{ OrderId: GenerateOrderID(), TradeTime: time.Now(), } if err := tx.Create(&order).Error; err != nil { tx.Rollback() log.Printf("%s创建订单失败: %v%s\n", colorRed, err, colorReset) c.JSON(500, gin.H{"error": "创建订单失败"}) return } updateResult := tx.Model(&Goods{}). Where("gid = ? AND stock > 0", targetGID). Update("stock", gorm.Expr("stock - 1")) if updateResult.Error != nil { tx.Rollback() log.Printf("%s扣减库存失败: %v%s\n", colorRed, updateResult.Error, colorReset) c.JSON(500, gin.H{"error": "库存更新失败"}) return } // 5. 检查库存是否实际被扣减(防止并发下库存已被其他事务耗尽) if updateResult.RowsAffected == 0 { tx.Rollback() log.Printf("%s库存扣减失败:并发冲突,库存已不足%s\n", colorRed, colorReset) c.JSON(400, gin.H{"error": "商品库存不足"}) return } // 5. 提交事务 if err := tx.Commit().Error; err != nil { tx.Rollback() log.Printf("%s提交事务失败: %v%s\n", colorRed, err, colorReset) c.JSON(500, gin.H{"error": "系统错误"}) return } log.Printf("%s订单创建成功,订单ID: %s,剩余库存: %d%s\n", colorGreen, order.OrderId, goods.Stock-1, colorReset) c.JSON(200, gin.H{ "message": "下单成功", "order_id": order.OrderId, "stock": goods.Stock - 1, }) }