gh-6 /api/v1/status returns float values if applicable
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853ef45464
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@ -19,7 +19,7 @@ import (
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var static embed.FS
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var static embed.FS
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var (
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var (
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version = "0.0.4"
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version = "0.0.5"
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pingvin pingvinKL.PingvinKL
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pingvin pingvinKL.PingvinKL
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DEBUG = false
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DEBUG = false
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)
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)
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@ -45,22 +45,22 @@ type pingvinRegister struct {
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}
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}
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type pingvinVentInfo struct {
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type pingvinVentInfo struct {
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Roomtemp1 int `json:"room_temp1"` // Room temperature at panel 1
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Roomtemp1 float32 `json:"room_temp1"` // Room temperature at panel 1
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SupplyHeated int `json:"supply_heated"` // Temperature of supply air after heating
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SupplyHeated float32 `json:"supply_heated"` // Temperature of supply air after heating
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SupplyHrc int `json:"supply_hrc"` // Temperature of supply air after heat recovery
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SupplyHrc float32 `json:"supply_hrc"` // Temperature of supply air after heat recovery
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SupplyIntake int `json:"supply_intake"` // Temperature of outside air at device
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SupplyIntake float32 `json:"supply_intake"` // Temperature of outside air at device
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SupplyIntake24h int `json:"supply_intake_24h"` // 24h avg of outside air humidity
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SupplyIntake24h float32 `json:"supply_intake_24h"` // 24h avg of outside air humidity
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SupplyHum int `json:"supply_hum"` // Supply air humidity
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SupplyHum float32 `json:"supply_hum"` // Supply air humidity
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ExtractIntake int `json:"extract_intake"` // Temperature of extract air
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ExtractIntake float32 `json:"extract_intake"` // Temperature of extract air
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ExtractHrc int `json:"extract_hrc"` // Temperature of extract air after heat recovery
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ExtractHrc float32 `json:"extract_hrc"` // Temperature of extract air after heat recovery
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ExtractHum int `json:"extract_hum"` // Relative humidity of extract air
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ExtractHum float32 `json:"extract_hum"` // Relative humidity of extract air
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ExtractHum48h int `json:"extract_hum_48h"` // 48h avg extract air humidity
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ExtractHum48h float32 `json:"extract_hum_48h"` // 48h avg extract air humidity
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}
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}
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type pingvinStatus struct {
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type pingvinStatus struct {
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HeaterPct int `json:"heater_pct"` // After heater valve position
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HeaterPct int `json:"heater_pct"` // After heater valve position
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HrcPct int `json:"hrc_pct"` // Heat recovery turn speed
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HrcPct int `json:"hrc_pct"` // Heat recovery turn speed
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TempSetting int `json:"temp_setting"` // Requested room temperature
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TempSetting float32 `json:"temp_setting"` // Requested room temperature
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FanPct int `json:"fan_pct"` // Circulation fan setting
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FanPct int `json:"fan_pct"` // Circulation fan setting
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VentInfo pingvinVentInfo `json:"vent_info"` // Measurements
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VentInfo pingvinVentInfo `json:"vent_info"` // Measurements
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HrcEffIn int `json:"hrc_efficiency_in"` // Calculated HRC efficiency, intake
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HrcEffIn int `json:"hrc_efficiency_in"` // Calculated HRC efficiency, intake
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@ -382,18 +382,18 @@ func (p *PingvinKL) populateStatus() {
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p.Status.HeaterPct = 0
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p.Status.HeaterPct = 0
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p.Status.HrcPct = hpct
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p.Status.HrcPct = hpct
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}
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}
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p.Status.TempSetting = p.Registers[135].Value / p.Registers[135].Multiplier
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p.Status.TempSetting = float32(p.Registers[135].Value) / float32(p.Registers[135].Multiplier)
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p.Status.FanPct = p.Registers[774].Value / p.Registers[774].Multiplier
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p.Status.FanPct = p.Registers[774].Value / p.Registers[774].Multiplier
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p.Status.VentInfo.Roomtemp1 = p.Registers[1].Value / p.Registers[1].Multiplier
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p.Status.VentInfo.Roomtemp1 = float32(p.Registers[1].Value) / float32(p.Registers[1].Multiplier)
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p.Status.VentInfo.SupplyHeated = p.Registers[8].Value / p.Registers[8].Multiplier
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p.Status.VentInfo.SupplyHeated = float32(p.Registers[8].Value) / float32(p.Registers[8].Multiplier)
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p.Status.VentInfo.SupplyHrc = p.Registers[7].Value / p.Registers[7].Multiplier
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p.Status.VentInfo.SupplyHrc = float32(p.Registers[7].Value) / float32(p.Registers[7].Multiplier)
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p.Status.VentInfo.SupplyIntake = p.Registers[6].Value / p.Registers[6].Multiplier
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p.Status.VentInfo.SupplyIntake = float32(p.Registers[6].Value) / float32(p.Registers[6].Multiplier)
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p.Status.VentInfo.SupplyIntake24h = p.Registers[134].Value / p.Registers[134].Multiplier
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p.Status.VentInfo.SupplyIntake24h = float32(p.Registers[134].Value) / float32(p.Registers[134].Multiplier)
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p.Status.VentInfo.SupplyHum = p.Registers[36].Value / p.Registers[46].Multiplier
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p.Status.VentInfo.SupplyHum = float32(p.Registers[36].Value) / float32(p.Registers[46].Multiplier)
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p.Status.VentInfo.ExtractIntake = p.Registers[10].Value / p.Registers[10].Multiplier
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p.Status.VentInfo.ExtractIntake = float32(p.Registers[10].Value) / float32(p.Registers[10].Multiplier)
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p.Status.VentInfo.ExtractHrc = p.Registers[9].Value / p.Registers[9].Multiplier
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p.Status.VentInfo.ExtractHrc = float32(p.Registers[9].Value) / float32(p.Registers[9].Multiplier)
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p.Status.VentInfo.ExtractHum = p.Registers[28].Value / p.Registers[28].Multiplier
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p.Status.VentInfo.ExtractHum = float32(p.Registers[28].Value) / float32(p.Registers[28].Multiplier)
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p.Status.VentInfo.ExtractHum48h = p.Registers[50].Value / p.Registers[50].Multiplier
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p.Status.VentInfo.ExtractHum48h = float32(p.Registers[50].Value) / float32(p.Registers[50].Multiplier)
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p.Status.HrcEffIn = p.Registers[29].Value / p.Registers[29].Multiplier
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p.Status.HrcEffIn = p.Registers[29].Value / p.Registers[29].Multiplier
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p.Status.HrcEffEx = p.Registers[30].Value / p.Registers[30].Multiplier
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p.Status.HrcEffEx = p.Registers[30].Value / p.Registers[30].Multiplier
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p.Status.OpMode = parseStatus(p.Registers[44].Value)
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p.Status.OpMode = parseStatus(p.Registers[44].Value)
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@ -411,7 +411,7 @@ func parseStatus(value int) string {
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"Stopped by user",
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"Stopped by user",
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"Away",
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"Away",
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"reserved",
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"reserved",
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"Temperature boost",
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"Adaptive",
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"CO2 boost",
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"CO2 boost",
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"RH boost",
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"RH boost",
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"Manual boost",
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"Manual boost",
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