Files
xiaomihome/xiaomi/devices/light.go
T
4566704 8ffc9e4e44 refactor: 重构 token 管理,新增 NATS adapter 和多示例
按照 TOKEN_REFACTOR.md / FIX_CONFIG.md 方案重构核心层:
- miot: Init() 优先读 storage token,新增 RefreshAuthInfo() 和刷新回调
- xiaomi: Config 改用 AuthInfo 结构体(含 UUID/UID/DataDir/OnTokenRefreshed)
- xiaomi: NewClient(ctx, Config) 新签名,新增 RefreshToken(),后台自动刷新
- xiaomi/devices: 设备控制接口重构
- 新增示例 12_ac_subscribe,其余示例适配新 Config
2026-06-30 12:16:49 +08:00

244 lines
6.3 KiB
Go

package devices
import (
"context"
"xiaomihome/xiaomi"
)
// Light 灯光统一控制接口
type Light interface {
Device
TurnOn(ctx context.Context) error
TurnOff(ctx context.Context) error
Toggle(ctx context.Context) error
// 能力查询
HasBrightness() bool
HasColorTemp() bool
HasColor() bool
// 亮度 (1-100)
SetBrightness(ctx context.Context, pct int) error
GetBrightness(ctx context.Context) (int, error)
// 色温 (2700-6500K)
SetColorTemp(ctx context.Context, kelvin int) error
GetColorTemp(ctx context.Context) (int, error)
// 颜色 (0-255)
SetColor(ctx context.Context, r, g, b int) error
GetColor(ctx context.Context) (r, g, b int, err error)
OnStateChanged(handler func(state LightState, changed string)) (string, error)
}
// LightState 灯光完整状态(字段名对齐 SPEC type)
type LightState struct {
On bool `json:"on"` // SPEC: "on"
Brightness int `json:"brightness"` // SPEC: "brightness"
ColorTemperature int `json:"colorTemperature"` // SPEC: "color-temperature"
ColorRGB [3]int `json:"colorRgb"` // SPEC: "color"
}
type lightDevice struct {
BaseDevice
propOn siidPiid // "on"
propBrightness siidPiid // "brightness"
propColorTemp siidPiid // "color-temperature"
propColor siidPiid // "color"
stateCache LightState // MQTT 推送维护的本地缓存
}
// NewLight creates a Light control for the given device.
func NewLight(client *xiaomi.Client, info *xiaomi.DeviceInfo) (Light, error) {
d := &lightDevice{
BaseDevice: NewBaseDevice(client, info),
}
resolver := d.getSpecResolver()
if resolver == nil {
return nil, xiaomi.ErrNoSPEC
}
// "on" is required
siid, piid, ok := resolver.find("on")
if !ok {
return nil, xiaomi.ErrNotSupported
}
d.propOn = siidPiid{siid, piid, true}
// Optional properties
if s, p, ok := resolver.find("brightness"); ok {
d.propBrightness = siidPiid{s, p, true}
}
if s, p, ok := resolver.find("color-temperature"); ok {
d.propColorTemp = siidPiid{s, p, true}
}
if s, p, ok := resolver.find("color"); ok {
d.propColor = siidPiid{s, p, true}
}
return d, nil
}
func (d *lightDevice) TurnOn(ctx context.Context) error {
if !d.propOn.valid {
return xiaomi.ErrNotSupported
}
return d.SetProp(ctx, d.propOn.siid, d.propOn.piid, true)
}
func (d *lightDevice) TurnOff(ctx context.Context) error {
if !d.propOn.valid {
return xiaomi.ErrNotSupported
}
return d.SetProp(ctx, d.propOn.siid, d.propOn.piid, false)
}
func (d *lightDevice) Toggle(ctx context.Context) error {
on, err := d.isOn(ctx)
if err != nil {
return err
}
if on {
return d.TurnOff(ctx)
}
return d.TurnOn(ctx)
}
func (d *lightDevice) isOn(ctx context.Context) (bool, error) {
prop, err := d.GetProp(ctx, d.propOn.siid, d.propOn.piid)
if err != nil {
return false, err
}
if b, ok := prop.Value.(bool); ok {
return b, nil
}
return false, nil
}
func (d *lightDevice) HasBrightness() bool { return d.propBrightness.valid }
func (d *lightDevice) HasColorTemp() bool { return d.propColorTemp.valid }
func (d *lightDevice) HasColor() bool { return d.propColor.valid }
func (d *lightDevice) SetBrightness(ctx context.Context, pct int) error {
if !d.propBrightness.valid {
return xiaomi.ErrNotSupported
}
return d.SetProp(ctx, d.propBrightness.siid, d.propBrightness.piid, pct)
}
func (d *lightDevice) GetBrightness(ctx context.Context) (int, error) {
if !d.propBrightness.valid {
return 0, xiaomi.ErrNotSupported
}
prop, err := d.GetProp(ctx, d.propBrightness.siid, d.propBrightness.piid)
if err != nil {
return 0, err
}
return toInt(prop.Value), nil
}
func (d *lightDevice) SetColorTemp(ctx context.Context, kelvin int) error {
if !d.propColorTemp.valid {
return xiaomi.ErrNotSupported
}
return d.SetProp(ctx, d.propColorTemp.siid, d.propColorTemp.piid, kelvin)
}
func (d *lightDevice) GetColorTemp(ctx context.Context) (int, error) {
if !d.propColorTemp.valid {
return 0, xiaomi.ErrNotSupported
}
prop, err := d.GetProp(ctx, d.propColorTemp.siid, d.propColorTemp.piid)
if err != nil {
return 0, err
}
return toInt(prop.Value), nil
}
func (d *lightDevice) SetColor(ctx context.Context, r, g, b int) error {
if !d.propColor.valid {
return xiaomi.ErrNotSupported
}
colorVal := (r << 16) | (g << 8) | b
return d.SetProp(ctx, d.propColor.siid, d.propColor.piid, colorVal)
}
func (d *lightDevice) GetColor(ctx context.Context) (r, g, b int, err error) {
if !d.propColor.valid {
return 0, 0, 0, xiaomi.ErrNotSupported
}
prop, err := d.GetProp(ctx, d.propColor.siid, d.propColor.piid)
if err != nil {
return 0, 0, 0, err
}
val := toInt(prop.Value)
r = (val >> 16) & 0xFF
g = (val >> 8) & 0xFF
b = val & 0xFF
return r, g, b, nil
}
func (d *lightDevice) OnStateChanged(handler func(state LightState, changed string)) (string, error) {
type field struct {
siid, piid int
name string
fill func(*LightState, interface{})
}
var fields []field
if d.propOn.valid {
fields = append(fields, field{d.propOn.siid, d.propOn.piid, "on",
func(s *LightState, v interface{}) { s.On, _ = v.(bool) }})
}
if d.propBrightness.valid {
fields = append(fields, field{d.propBrightness.siid, d.propBrightness.piid, "brightness",
func(s *LightState, v interface{}) { s.Brightness = toInt(v) }})
}
if d.propColorTemp.valid {
fields = append(fields, field{d.propColorTemp.siid, d.propColorTemp.piid, "color-temperature",
func(s *LightState, v interface{}) { s.ColorTemperature = toInt(v) }})
}
if d.propColor.valid {
fields = append(fields, field{d.propColor.siid, d.propColor.piid, "color",
func(s *LightState, v interface{}) {
if v, ok := v.(float64); ok {
c := int(v)
s.ColorRGB = [3]int{(c >> 16) & 0xFF, (c >> 8) & 0xFF, c & 0xFF}
}
}})
}
if len(fields) == 0 {
return "", xiaomi.ErrNotSupported
}
return d.SubProp(0, 0, func(did string, prop *xiaomi.PropertyValue) {
for _, f := range fields {
if f.siid == prop.SIID && f.piid == prop.PIID {
f.fill(&d.stateCache, prop.Value)
handler(d.stateCache, f.name)
return
}
}
})
}
// toInt converts an interface{} value to int.
func toInt(v interface{}) int {
switch n := v.(type) {
case float64:
return int(n)
case int:
return n
case int64:
return int(n)
case uint8:
return int(n)
case uint16:
return int(n)
case uint32:
return int(n)
}
return 0
}