evcc-io/meter/ecoflow-powerocean.go
2025-12-25 10:54:29 +00:00

162 lines
3.9 KiB
Go

package meter
import (
"context"
"errors"
"fmt"
"time"
"github.com/evcc-io/evcc/api"
"github.com/evcc-io/evcc/util"
"github.com/spf13/cast"
"github.com/tess1o/go-ecoflow"
)
// EcoFlowPowerOcean represents the EcoFlow PowerOcean meter
type EcoFlowPowerOcean struct {
usage string
accessKey string
secretKey string
deviceId string
cache time.Duration
client *ecoflow.Client
dataG func() (*ecoflow.GetCmdResponse, error)
}
func init() {
registry.Add("ecoflow-powerocean", NewEcoFlowPowerOceanFromConfig)
}
// NewEcoFlowPowerOceanFromConfig creates an EcoFlow PowerOcean meter from generic config
func NewEcoFlowPowerOceanFromConfig(other map[string]any) (api.Meter, error) {
cc := struct {
AccessKey string
SecretKey string
DeviceId string
Usage string
Cache time.Duration
}{
Cache: 30 * time.Second,
}
if err := util.DecodeOther(other, &cc); err != nil {
return nil, err
}
if cc.AccessKey == "" {
return nil, errors.New("missing access key")
}
if cc.SecretKey == "" {
return nil, errors.New("missing secret key")
}
if cc.DeviceId == "" {
return nil, errors.New("missing device ID")
}
if cc.Usage == "" {
return nil, errors.New("missing usage")
}
m, err := NewEcoFlowPowerOcean(cc.AccessKey, cc.SecretKey, cc.DeviceId, cc.Usage, cc.Cache)
if err != nil {
return nil, err
}
if cc.Usage == "battery" {
return &EcoFlowPowerOceanBattery{m}, nil
}
return m, nil
}
// NewEcoFlowPowerOcean constructs the EcoFlowPowerOcean struct
func NewEcoFlowPowerOcean(accessKey, secretKey, deviceId, usage string, cache time.Duration) (*EcoFlowPowerOcean, error) {
client := ecoflow.NewEcoflowClient(accessKey, secretKey)
m := &EcoFlowPowerOcean{
accessKey: accessKey,
secretKey: secretKey,
deviceId: deviceId,
usage: usage,
cache: cache,
client: client,
}
m.dataG = util.Cached(m.getData, cache)
return m, nil
}
// getData retrieves device parameters from EcoFlow API
func (m *EcoFlowPowerOcean) getData() (*ecoflow.GetCmdResponse, error) {
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
var params []string
switch m.usage {
case "grid":
params = []string{"sysGridPwr"}
case "pv":
params = []string{"mpptPwr"}
case "battery":
params = []string{"bpPwr", "bpSoc"}
}
return m.client.GetDeviceParameters(ctx, m.deviceId, params)
}
var _ api.Meter = (*EcoFlowPowerOcean)(nil)
// CurrentPower implements the api.Meter interface
func (m *EcoFlowPowerOcean) CurrentPower() (float64, error) {
response, err := m.dataG()
if err != nil {
return 0, err
}
// sysGridPwr responds with int
// mpptPwr responds with an array of floats
// bpPwr responds with int
// bpSoc responds with int
switch m.usage {
case "grid":
return extractFloat(response.Data, "sysGridPwr")
case "pv":
return extractFloat(response.Data, "mpptPwr")
case "battery":
pwr, err := extractFloat(response.Data, "bpPwr")
if err != nil {
return 0, err
}
return -pwr, nil // invert battery power: ecoflow returns negative when discharging and positive when charging.
default:
return 0, fmt.Errorf("invalid usage: %s", m.usage)
}
}
// extractFloat extracts a float64 or int value from a map by key.
func extractFloat(data map[string]any, key string) (float64, error) {
if data != nil {
if v, ok := data[key]; ok {
return cast.ToFloat64E(v)
}
}
return 0, fmt.Errorf("data not available for key: %s", key)
}
// EcoFlowPowerOceanBattery represents the EcoFlow PowerOcean battery decorator
type EcoFlowPowerOceanBattery struct {
*EcoFlowPowerOcean
}
// Soc implements the api.Battery interface for battery usage
func (m *EcoFlowPowerOceanBattery) Soc() (float64, error) {
response, err := m.dataG()
if err != nil {
return 0, err
}
// Access the data from the GetCmdResponse
if response.Data != nil {
if soc, ok := response.Data["bpSoc"]; ok {
return cast.ToFloat64E(soc)
}
}
return 0, api.ErrNotAvailable
}