Files
nuki_hub/Nuki.cpp

155 lines
4.6 KiB
C++

#include "Nuki.h"
#include <FreeRTOS.h>
#include "PreferencesKeys.h"
Nuki* nukiInst;
Nuki::Nuki(const std::string& name, uint32_t id, Network* network, Preferences* preferences)
: _nukiBle(name, id),
_network(network),
_preferences(preferences)
{
nukiInst = this;
memset(&_keyTurnerState, sizeof(KeyTurnerState), 0);
memset(&_lastKeyTurnerState, sizeof(KeyTurnerState), 0);
memset(&_lastBatteryReport, sizeof(BatteryReport), 0);
memset(&_batteryReport, sizeof(BatteryReport), 0);
network->setLockActionReceived(nukiInst->onLockActionReceived);
}
void Nuki::initialize()
{
_bleScanner.initialize();
_nukiBle.initialize();
_nukiBle.registerBleScanner(&_bleScanner);
_intervalLockstate = _preferences->getInt(preference_query_interval_lockstate);
_intervalBattery = _preferences->getInt(preference_query_interval_battery);
if(_intervalLockstate == 0)
{
_intervalLockstate = 30;
_preferences->putInt(preference_query_interval_lockstate, _intervalLockstate);
}
if(_intervalBattery == 0)
{
_intervalBattery = 60 * 30;
_preferences->putInt(preference_query_interval_battery, _intervalBattery);
}
_nukiBle.setEventHandler(this);
Serial.print(F("Lock state interval: "));
Serial.print(_intervalLockstate);
Serial.print(F("| Battery interval: "));
Serial.println(_intervalBattery);
}
void Nuki::update()
{
if (!_paired) {
Serial.println(F("Nuki start pairing"));
if (_nukiBle.pairNuki()) {
Serial.println(F("Nuki paired"));
_paired = true;
}
else
{
vTaskDelay( 200 / portTICK_PERIOD_MS);
return;
}
}
vTaskDelay( 20 / portTICK_PERIOD_MS);
_bleScanner.update();
unsigned long ts = millis();
if(_statusUpdated || _nextLockStateUpdateTs == 0 || ts >= _nextLockStateUpdateTs)
{
_statusUpdated = false;
_nextLockStateUpdateTs = ts + _intervalLockstate * 1000;
updateKeyTurnerState();
}
if(_nextBatteryReportTs == 0 || ts > _nextBatteryReportTs)
{
_nextBatteryReportTs = ts + _intervalBattery * 1000;
updateBatteryState();
}
if(_nextLockAction != (LockAction)0xff)
{
_nukiBle.lockAction(_nextLockAction, 0, 0);
_nextLockAction = (LockAction)0xff;
if(_intervalLockstate > 10 * 1000)
{
_nextLockStateUpdateTs = ts + 10 * 1000;
}
}
memcpy(&_lastKeyTurnerState, &_keyTurnerState, sizeof(KeyTurnerState));
}
void Nuki::updateKeyTurnerState()
{
_nukiBle.requestKeyTurnerState(&_keyTurnerState);
_network->publishKeyTurnerState(_keyTurnerState, _lastKeyTurnerState);
if(_keyTurnerState.lockState != _lastKeyTurnerState.lockState)
{
char lockStateStr[20];
nukiLockstateToString(_keyTurnerState.lockState, lockStateStr);
Serial.print(F("Nuki lock state: "));
Serial.println(lockStateStr);
}
}
void Nuki::updateBatteryState()
{
_nukiBle.requestBatteryReport(&_batteryReport);
Serial.print(F("Voltage: ")); Serial.println(_batteryReport.batteryVoltage);
Serial.print(F("Drain: ")); Serial.println(_batteryReport.batteryDrain);
Serial.print(F("Resistance: ")); Serial.println(_batteryReport.batteryResistance);
Serial.print(F("Max Current: ")); Serial.println(_batteryReport.maxTurnCurrent);
Serial.print(F("Crit. State: ")); Serial.println(_batteryReport.criticalBatteryState);
Serial.print(F("Lock Dist: ")); Serial.println(_batteryReport.lockDistance);
_network->publishBatteryReport(_batteryReport);
}
LockAction Nuki::lockActionToEnum(const char *str)
{
if(strcmp(str, "unlock") == 0) return LockAction::unlock;
else if(strcmp(str, "lock") == 0) return LockAction::lock;
else if(strcmp(str, "unlatch") == 0) return LockAction::unlatch;
else if(strcmp(str, "lockNgo") == 0) return LockAction::lockNgo;
else if(strcmp(str, "lockNgoUnlatch") == 0) return LockAction::lockNgoUnlatch;
else if(strcmp(str, "fullLock") == 0) return LockAction::fullLock;
else if(strcmp(str, "fobAction2") == 0) return LockAction::fobAction2;
else if(strcmp(str, "fobAction1") == 0) return LockAction::fobAction1;
else if(strcmp(str, "fobAction3") == 0) return LockAction::fobAction3;
return (LockAction)0xff;
}
void Nuki::onLockActionReceived(const char *value)
{
nukiInst->_nextLockAction = nukiInst->lockActionToEnum(value);
}
const bool Nuki::isPaired()
{
return _paired;
}
void Nuki::notify(NukiEventType eventType)
{
if(eventType == NukiEventType::KeyTurnerStatusUpdated)
{
// Serial.println("SUP2");
_statusUpdated = true;
}
}