Files
2026-07-16 16:32:44 -04:00

359 lines
9.8 KiB
Go

package econetclient
import (
"encoding/json"
"strconv"
"strings"
"time"
)
// Device is a flat snapshot of one piece of Rheem equipment, decoded from
// the getUserDataForApp REST response. Fields are computed once per refresh;
// consumers read them directly. WiFiSignal only arrives over MQTT (which this
// client does not use), so it stays at its zero value.
type Device struct {
SerialNumber string
DeviceID string
FriendlyName string
Type string // water_heater | thermostat | unknown
GenericType string // e.g. heatpumpWaterHeater, gasWaterHeater
Connected bool
WiFiSignal int // MQTT-only; always 0 here
Mode string
Enabled bool
Running bool // true when actively heating (decoded from @RUNNING over REST)
RunningState string // normalized @RUNNING label: "compressor-running" | "element-running" | "idle" | ...
// modeEnumText is the raw @MODE enum label list; the slice index is the
// integer value published to change the mode. Empty for units without a
// settable @MODE (mode changes are unsupported for those).
modeEnumText []string
Setpoint int
SetpointMin int
SetpointMax int
HotWaterAvailability int // -1 if not reported, else 0/33/66/100
AlertCount int
Away bool
LastUpdated time.Time
// Usage totals for the current day, populated by Client.Refresh.
EnergyKWH float64
EnergyType string // "KWH" or "KBTU"
WaterGallons float64
// Raw is the undecoded equipment payload as received, kept for the web UI's
// debug view (and to surface any fields we don't decode).
Raw json.RawMessage
}
// newDevice decodes an equipment block (the raw JSON map for one unit) into
// a flat Device. It ports the accessor logic from kevinburke/rheemcloud-go
// so behaviour matches, minus the MQTT-only fields.
func newDevice(info map[string]json.RawMessage, now time.Time) *Device {
d := &Device{
DeviceID: jsonStr(info["device_name"]),
SerialNumber: jsonStr(info["serial_number"]),
Type: deviceTypeString(jsonStr(info["device_type"])),
GenericType: jsonStr(info["@TYPE"]),
Connected: connected(info),
Away: jsonBool(info["@AWAY"]),
AlertCount: alertCount(info["@ALERTCOUNT"]),
HotWaterAvailability: hotWater(info["@HOTWATER"]),
Enabled: enabled(info),
Mode: mode(info),
LastUpdated: now,
}
d.FriendlyName = friendlyName(info, d.DeviceID)
d.Setpoint, d.SetpointMin, d.SetpointMax = setpoint(info["@SETPOINT"])
d.Running, d.RunningState = running(info)
d.modeEnumText = modeLabels(info)
if b, err := json.Marshal(info); err == nil {
d.Raw = b
}
return d
}
// SupportedModes returns the normalized mode slugs this device can be set to,
// in publish-index order. Empty for units without a settable @MODE.
func (d *Device) SupportedModes() []string {
out := make([]string, 0, len(d.modeEnumText))
for _, label := range d.modeEnumText {
out = append(out, modeFromEnumText(label))
}
return out
}
// modeIndex maps a normalized mode slug to the integer value the EcoNet cloud
// expects in a @MODE publish, matching pyeconet's enumText-position lookup.
func (d *Device) modeIndex(slug string) (int, bool) {
for i, label := range d.modeEnumText {
if modeFromEnumText(label) == slug {
return i, true
}
}
return 0, false
}
// --- field decoders ------------------------------------------------------
func connected(info map[string]json.RawMessage) bool {
v, ok := info["@CONNECTED"]
if !ok {
return true // older units omit it and are assumed connected
}
return jsonBool(v)
}
func friendlyName(info map[string]json.RawMessage, deviceID string) string {
if obj := decodeDatapoint(info["@NAME"]); obj != nil {
if s := jsonStr(obj.Value); s != "" {
return s
}
}
return deviceID
}
func alertCount(v json.RawMessage) int {
if len(v) == 0 {
return 0
}
var n float64
if json.Unmarshal(v, &n) == nil {
return int(n)
}
var s string
if json.Unmarshal(v, &s) == nil {
if i, err := strconv.Atoi(s); err == nil {
return i
}
}
return 0
}
func hotWater(v json.RawMessage) int {
var icon string
if len(v) == 0 || json.Unmarshal(v, &icon) != nil {
return -1
}
switch {
case strings.Contains(icon, "ic_tank_hundread_percent"):
return 100
case strings.Contains(icon, "ic_tank_fourty_percent"):
return 66
case strings.Contains(icon, "ic_tank_ten_percent"):
return 33
case strings.Contains(icon, "ic_tank_empty"), strings.Contains(icon, "ic_tank_zero_percent"):
return 0
default:
return -1
}
}
func setpoint(v json.RawMessage) (val, min, max int) {
obj := decodeDatapoint(v)
if obj == nil {
return 0, 0, 0
}
var n float64
_ = json.Unmarshal(obj.Value, &n)
return int(n), int(obj.Constraints.LowerLimit), int(obj.Constraints.UpperLimit)
}
// enabled reports the master on/off state, porting rheemcloud's Device.Enabled.
func enabled(info map[string]json.RawMessage) bool {
if _, ok := info["@MODE"]; ok {
labels := modeLabels(info)
if obj := decodeDatapoint(info["@MODE"]); obj != nil {
if idx, ok := datapointIndex(obj); ok && idx >= 0 && idx < len(labels) {
return !strings.EqualFold(labels[idx], "OFF")
}
}
}
if _, ok := info["@ENABLED"]; ok {
obj := decodeDatapoint(info["@ENABLED"])
if obj == nil {
return false
}
idx, _ := datapointIndex(obj)
return idx == 1
}
return false
}
// mode returns the current operating-mode label, porting rheemcloud's Device.Mode.
func mode(info map[string]json.RawMessage) string {
_, supportsModes := info["@MODE"]
_, supportsOnOff := info["@ENABLED"]
if supportsOnOff && !enabled(info) {
return "off"
}
if !supportsModes {
switch jsonStr(info["@TYPE"]) {
case "gasWaterHeater", "tanklessWaterHeater":
return "gas"
default:
return "electric"
}
}
labels := modeLabels(info)
obj := decodeDatapoint(info["@MODE"])
if obj == nil {
return "unknown"
}
idx, _ := datapointIndex(obj)
if idx < 0 || idx >= len(labels) {
return "unknown"
}
return modeFromEnumText(labels[idx])
}
func modeLabels(info map[string]json.RawMessage) []string {
obj := decodeDatapoint(info["@MODE"])
if obj == nil {
return nil
}
return obj.Constraints.EnumText
}
// modeFromEnumText normalizes a Rheem mode label into a stable slug,
// matching pyeconet's WaterHeaterOperationMode labels.
func modeFromEnumText(s string) string {
cleaned := strings.ToUpper(strings.ReplaceAll(strings.ReplaceAll(strings.TrimRight(s, " "), " ", "_"), "/", "_"))
switch cleaned {
case "OFF":
return "off"
case "ELECTRIC", "ELECTRIC_MODE":
return "electric"
case "ENERGY_SAVING", "ENERGY_SAVER":
return "energy-saving"
case "HEAT_PUMP", "HEAT_PUMP_ONLY":
return "heat-pump"
case "HIGH_DEMAND":
return "high-demand"
case "ELECTRIC_GAS":
return "electric-gas"
case "GAS":
return "gas"
case "PERFORMANCE":
return "performance"
case "VACATION":
return "vacation"
default:
return "unknown"
}
}
// KnownModes are the normalized operating-mode slugs modeFromEnumText emits.
// Consumers (e.g. the mode enum gauge) iterate these so every mode gets a
// series regardless of which one is currently active.
var KnownModes = []string{
"off", "electric", "energy-saving", "heat-pump",
"high-demand", "electric-gas", "gas", "performance", "vacation", "unknown",
}
// running reports whether the unit is actively heating and a normalized label
// for what is running. It reads the @RUNNING datapoint, a bare string the REST
// getUserDataForApp payload populates (e.g. "Compressor Running" -> true,
// "compressor-running"); empty means idle. This is served over plain REST
// despite older code assuming it was MQTT-only.
func running(info map[string]json.RawMessage) (active bool, state string) {
raw := strings.TrimSpace(jsonStr(info["@RUNNING"]))
if raw == "" {
return false, "idle"
}
state = slugify(raw)
if state == "off" || state == "idle" {
return false, state
}
return true, state
}
// slugify normalizes a Rheem label into a stable lowercase kebab-case slug,
// e.g. "Compressor Running" -> "compressor-running".
func slugify(s string) string {
s = strings.ToLower(strings.TrimSpace(s))
s = strings.ReplaceAll(s, "/", "-")
s = strings.Join(strings.Fields(s), "-")
return s
}
func deviceTypeString(s string) string {
switch s {
case "WH":
return "water_heater"
case "HVAC":
return "thermostat"
default:
return "unknown"
}
}
// --- datapoint plumbing --------------------------------------------------
// datapointObject is the {value, status, title, constraints} shape many
// "@..." fields use. Some fields are bare scalars instead; decodeDatapoint
// returns nil for those and callers fall back to reading the raw value.
type datapointObject struct {
Value json.RawMessage `json:"value"`
Status string `json:"status"`
Title string `json:"title"`
Constraints datapointConstraints `json:"constraints"`
}
type datapointConstraints struct {
LowerLimit float64 `json:"lowerLimit"`
UpperLimit float64 `json:"upperLimit"`
EnumText []string `json:"enumText"`
}
func decodeDatapoint(b json.RawMessage) *datapointObject {
if len(b) == 0 || !isJSONObject(b) {
return nil
}
var obj datapointObject
if json.Unmarshal(b, &obj) != nil {
return nil
}
return &obj
}
// datapointIndex reads a datapoint's numeric value (mode index / enabled flag).
func datapointIndex(obj *datapointObject) (int, bool) {
var n float64
if json.Unmarshal(obj.Value, &n) != nil {
return 0, false
}
return int(n), true
}
func isJSONObject(b json.RawMessage) bool {
for _, c := range b {
switch c {
case ' ', '\t', '\n', '\r':
continue
case '{':
return true
default:
return false
}
}
return false
}
func jsonStr(v json.RawMessage) string {
var s string
_ = json.Unmarshal(v, &s)
return s
}
func jsonBool(v json.RawMessage) bool {
var b bool
_ = json.Unmarshal(v, &b)
return b
}