evcc-io/core/loadpoint_api.go

208 lines
4.4 KiB
Go

package core
import (
"time"
"github.com/evcc-io/evcc/api"
"github.com/evcc-io/evcc/core/loadpoint"
"github.com/evcc-io/evcc/core/wrapper"
)
var _ loadpoint.API = (*LoadPoint)(nil)
// GetStatus returns the charging status
func (lp *LoadPoint) GetStatus() api.ChargeStatus {
lp.Lock()
defer lp.Unlock()
return lp.status
}
// GetMode returns loadpoint charge mode
func (lp *LoadPoint) GetMode() api.ChargeMode {
lp.Lock()
defer lp.Unlock()
return lp.Mode
}
// SetMode sets loadpoint charge mode
func (lp *LoadPoint) SetMode(mode api.ChargeMode) {
lp.Lock()
defer lp.Unlock()
lp.log.INFO.Printf("set charge mode: %s", string(mode))
// apply immediately
if lp.Mode != mode {
lp.Mode = mode
lp.publish("mode", mode)
// immediately allow pv mode activity
lp.elapsePVTimer()
lp.requestUpdate()
}
}
// GetTargetSoC returns loadpoint charge target soc
func (lp *LoadPoint) GetTargetSoC() int {
lp.Lock()
defer lp.Unlock()
return lp.SoC.Target
}
// SetTargetSoC sets loadpoint charge target soc
func (lp *LoadPoint) SetTargetSoC(soc int) error {
if lp.vehicle == nil {
return api.ErrNotAvailable
}
lp.Lock()
defer lp.Unlock()
lp.log.INFO.Println("set target soc:", soc)
// apply immediately
if lp.SoC.Target != soc {
lp.SoC.Target = soc
lp.publish("targetSoC", soc)
lp.requestUpdate()
}
return nil
}
// GetMinSoC returns loadpoint charge minimum soc
func (lp *LoadPoint) GetMinSoC() int {
lp.Lock()
defer lp.Unlock()
return lp.SoC.Min
}
// SetMinSoC sets loadpoint charge minimum soc
func (lp *LoadPoint) SetMinSoC(soc int) error {
if lp.vehicle == nil {
return api.ErrNotAvailable
}
lp.Lock()
defer lp.Unlock()
lp.log.INFO.Println("set min soc:", soc)
// apply immediately
if lp.SoC.Min != soc {
lp.SoC.Min = soc
lp.publish("minSoC", soc)
lp.requestUpdate()
}
return nil
}
// GetPhases returns loadpoint enabled phases
func (lp *LoadPoint) GetPhases() int {
lp.Lock()
defer lp.Unlock()
return int(lp.Phases)
}
// SetPhases sets loadpoint enabled phases
func (lp *LoadPoint) SetPhases(phases int) error {
return lp.scalePhases(phases)
}
// SetTargetCharge sets loadpoint charge targetSoC
func (lp *LoadPoint) SetTargetCharge(finishAt time.Time, targetSoC int) {
lp.Lock()
defer lp.Unlock()
lp.log.INFO.Printf("set target charge: %d @ %v", targetSoC, finishAt)
// apply immediately
// TODO check reset of targetSoC
lp.publish("targetTime", finishAt)
lp.publish("targetSoC", targetSoC)
lp.socTimer.Time = finishAt
lp.socTimer.SoC = targetSoC
lp.requestUpdate()
}
// RemoteControl sets remote status demand
func (lp *LoadPoint) RemoteControl(source string, demand loadpoint.RemoteDemand) {
lp.Lock()
defer lp.Unlock()
lp.log.INFO.Println("remote demand:", demand)
// apply immediately
if lp.remoteDemand != demand {
lp.remoteDemand = demand
lp.publish("remoteDisabled", demand)
lp.publish("remoteDisabledSource", source)
lp.requestUpdate()
}
}
// HasChargeMeter determines if a physical charge meter is attached
func (lp *LoadPoint) HasChargeMeter() bool {
_, isWrapped := lp.chargeMeter.(*wrapper.ChargeMeter)
return lp.chargeMeter != nil && !isWrapped
}
// GetChargePower returns the current charge power
func (lp *LoadPoint) GetChargePower() float64 {
lp.Lock()
defer lp.Unlock()
return lp.chargePower
}
// GetMinCurrent returns the min loadpoint current
func (lp *LoadPoint) GetMinCurrent() float64 {
lp.Lock()
defer lp.Unlock()
return lp.MinCurrent
}
// SetMinCurrent returns the min loadpoint current
func (lp *LoadPoint) SetMinCurrent(current float64) {
lp.Lock()
defer lp.Unlock()
if current != lp.MinCurrent {
lp.MinCurrent = current
lp.publish("minCurrent", lp.MinCurrent)
}
}
// GetMaxCurrent returns the max loadpoint current
func (lp *LoadPoint) GetMaxCurrent() float64 {
lp.Lock()
defer lp.Unlock()
return lp.MaxCurrent
}
// SetMaxCurrent returns the max loadpoint current
func (lp *LoadPoint) SetMaxCurrent(current float64) {
lp.Lock()
defer lp.Unlock()
if current != lp.MaxCurrent {
lp.MaxCurrent = current
lp.publish("maxCurrent", lp.MaxCurrent)
}
}
// GetMinPower returns the min loadpoint power for a single phase
func (lp *LoadPoint) GetMinPower() float64 {
return Voltage * lp.GetMinCurrent()
}
// GetMaxPower returns the max loadpoint power taking active phases into account
func (lp *LoadPoint) GetMaxPower() float64 {
return Voltage * lp.GetMaxCurrent() * float64(lp.GetPhases())
}