Files
xiaomihome/xiaomi/examples/09_spec_parser/main.go
T
4566704 b808e51b3e refactor: 重大架构升级 — HomeID/RoomID int64化 + 设备驱动重构 + 结构化日志
主要变更:

**类型系统重构**
- HomeInfo.ID/RoomInfo.ID/HomeID 从 string 改为 int64,json tag 使用 ,string
- GetHome/GetRooms/GetRoomDevices 接口同步修改
- 新增 int64FromStr 工具函数,更新 parseHomeInfo 解析逻辑

**新增 Speaker 设备**
- 新增 KindSpeaker 类型
- classify 映射覆盖 speaker/bluetooth-speaker/alarm-clock/media-player/playback/music

**设备驱动重构**
- AC 驱动彻底重写:从硬编码常量改为基于 SPEC ValueList 的动态 valMapper
- 所有设备(Fan/Humidifier/Light/OccupancySensor/Switch/TempHumiditySensor/Thermostat/Vacuum/WaterHeater/Cover)新增 GetState() 和 FetchState(ctx) 接口
- base.go 新增 specResolver.format() 方法

**MIoT 模块增强**
- MIoTClient 新增 homeIDs 字段,支持按家庭过滤设备
- RefreshDevices 支持 homeIDs 参数
- SpecStdLib 引入 logger.Logger,log.Printf 全部迁移为结构化日志

**其他**
- Config 新增 RedirectURL 和 HomeIDs 字段
- AuthInfo.ExpiresIn 类型从 int 改为 int32
- UUID 生成简化为 hex.EncodeToString
- 新增 github.com/sirupsen/logrus 依赖
- .gitignore 新增 examples/*/data/ 忽略规则
- 删除已提交的 config.json 敏感配置
2026-07-13 10:40:20 +08:00

161 lines
4.5 KiB
Go

// Package main demonstrates the SPEC parser's independent usage — resolving device
//
// properties, events, and actions without requiring a device to be online.
//
// 运行前提:已配置环境变量 XIAOMI_CLIENT_ID / XIAOMI_CLIENT_SECRET / XIAOMI_ACCESS_TOKEN。
package main
import (
"context"
"log"
"time"
"xiaomihome/miot"
"xiaomihome/xiaomi"
miotconfig "xiaomihome/miot/examples/config"
"xiaomihome/xiaomi/specs"
)
func main() {
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
// 1. 加载配置
cfg, err := miotconfig.LoadConfig("../../../miot/examples/config.json")
if err != nil {
log.Fatal("请先运行 miot/examples/cloud_oauth 获取 token:", err)
}
client, err := xiaomi.NewClient(ctx, xiaomi.Config{
AuthInfo: xiaomi.AuthInfo{
AccessToken: cfg.AuthInfo.AccessToken,
RefreshToken: cfg.AuthInfo.RefreshToken,
ExpiresIn: int32(cfg.AuthInfo.ExpiresIn),
ExpiresTS: cfg.AuthInfo.ExpiresTS,
},
DataDir: "./data",
UUID: cfg.UUID,
UID: cfg.UID,
})
if err != nil {
log.Fatal(err)
}
defer client.Close()
// 3. 获取全部设备
allDevices, err := client.GetDevices(ctx)
if err != nil {
log.Fatal("获取设备列表失败:", err)
}
if len(allDevices) == 0 {
log.Fatal("未找到任何设备")
}
// 4. 创建 SPEC 解析器(需要存储目录用于缓存 SPEC 文件)
storage := miot.NewMIoTStorage("./data")
parser := miot.NewMIoTSpecParser(miot.DEFAULT_INTEGRATION_LANGUAGE, storage, "./data")
// 5. 对每个设备解析 SPEC 并打印属性/事件/动作
for _, dev := range allDevices {
if dev.URN == "" || dev.Model == "" {
continue
}
log.Printf("=== %s (型号: %s) ===", dev.Name, dev.Model)
log.Printf(" URN: %s", dev.URN)
specInst, err := parser.Parse(dev.URN, dev.Model)
if err != nil {
log.Printf(" 解析 SPEC 失败: %v", err)
continue
}
resolver := specs.NewPropertyResolver(specInst)
log.Printf(" 服务数: %d", len(specInst.Services))
for _, svc := range specInst.Services {
log.Printf(" --- 服务 %d: %s (%s) ---", svc.IID, svc.Type, svc.Description)
// 属性
if len(svc.Properties) > 0 {
log.Printf(" 属性 (%d 个):", len(svc.Properties))
for _, prop := range svc.Properties {
access := accessStr(prop.Access)
log.Printf(" [%d/%d] %s type=%s format=%s access=%s",
prop.SIID, prop.PIID, prop.Description, prop.Type, prop.Format, access)
}
}
// 事件
if len(svc.Events) > 0 {
log.Printf(" 事件 (%d 个):", len(svc.Events))
for _, evt := range svc.Events {
log.Printf(" [%d/%d] %s args=%v",
evt.SIID, evt.EIID, evt.Type, evt.Arguments)
}
}
// 动作
if len(svc.Actions) > 0 {
log.Printf(" 动作 (%d 个):", len(svc.Actions))
for _, act := range svc.Actions {
log.Printf(" [%d/%d] %s in=%v out=%v",
act.SIID, act.AIID, act.Type, act.In, act.Out)
}
}
}
// 演示 resolver 查找
log.Printf(" --- Resolver 查找示例 ---")
if siid, piid, found := resolver.FindByType("on"); found {
log.Printf(" FindByType(\"on\"): siid=%d piid=%d ok", siid, piid)
} else {
log.Printf(" FindByType(\"on\"): not found")
}
if siid, piid, found := resolver.FindByType("mode"); found {
log.Printf(" FindByType(\"mode\"): siid=%d piid=%d ok", siid, piid)
}
if siid, piid, found := resolver.FindByType("temperature"); found {
log.Printf(" FindByType(\"temperature\"): siid=%d piid=%d ok", siid, piid)
}
if siid, piid, found := resolver.FindByType("brightness"); found {
log.Printf(" FindByType(\"brightness\"): siid=%d piid=%d ok", siid, piid)
}
if siid, piid, found := resolver.FindByType("color-temperature"); found {
log.Printf(" FindByType(\"color-temperature\"): siid=%d piid=%d ok", siid, piid)
}
if siid, piid, found := resolver.FindByType("target-temperature"); found {
log.Printf(" FindByType(\"target-temperature\"): siid=%d piid=%d ok", siid, piid)
}
if siid, piid, found := resolver.FindByType("fan-level"); found {
log.Printf(" FindByType(\"fan-level\"): siid=%d piid=%d ok", siid, piid)
}
}
log.Println("SPEC 解析器演示完毕")
}
func contains(slice []string, s string) bool {
for _, v := range slice {
if v == s {
return true
}
}
return false
}
func accessStr(access []string) string {
readable := contains(access, "read")
writable := contains(access, "write")
if readable && writable {
return "rw"
}
if readable {
return "r"
}
if writable {
return "w"
}
return ""
}