mirror of https://github.com/arendst/Tasmota.git
Refactor energy drivers
This commit is contained in:
parent
171d641092
commit
33062dc839
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@ -562,9 +562,9 @@ typedef struct {
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uint16_t energy_max_power_limit; // 386 MaxPowerLimit
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uint16_t energy_max_power_limit_hold; // 388 MaxPowerLimitHold
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uint16_t energy_max_power_limit_window; // 38A MaxPowerLimitWindow
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uint16_t energy_max_power_safe_limit; // 38C MaxSafePowerLimit
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uint16_t energy_max_power_safe_limit_hold; // 38E MaxSafePowerLimitHold
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uint16_t energy_max_power_safe_limit_window; // 390 MaxSafePowerLimitWindow
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uint16_t ex_energy_max_power_safe_limit; // 38C MaxSafePowerLimit - Free since 14.1.0.3
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uint16_t ex_energy_max_power_safe_limit_hold; // 38E MaxSafePowerLimitHold - Free since 14.1.0.3
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uint16_t ex_energy_max_power_safe_limit_window; // 390 MaxSafePowerLimitWindow - Free since 14.1.0.3
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uint16_t energy_max_energy; // 392 MaxEnergy
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uint16_t energy_max_energy_start; // 394 MaxEnergyStart
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uint16_t mqtt_retry; // 396
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@ -1208,9 +1208,9 @@ void SettingsDefaultSet2(void) {
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// Settings->energy_max_power_limit = 0; // MaxPowerLimit
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Settings->energy_max_power_limit_hold = MAX_POWER_HOLD;
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Settings->energy_max_power_limit_window = MAX_POWER_WINDOW;
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// Settings->energy_max_power_safe_limit = 0; // MaxSafePowerLimit
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Settings->energy_max_power_safe_limit_hold = SAFE_POWER_HOLD;
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Settings->energy_max_power_safe_limit_window = SAFE_POWER_WINDOW;
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// Settings->ex_energy_max_power_safe_limit = 0; // MaxSafePowerLimit
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// Settings->ex_energy_max_power_safe_limit_hold = SAFE_POWER_HOLD;
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// Settings->ex_energy_max_power_safe_limit_window = SAFE_POWER_WINDOW;
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// Settings->energy_max_energy = 0; // MaxEnergy
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// Settings->energy_max_energy_start = 0; // MaxEnergyStart
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// Settings->energy_kWhtotal_ph[0] = 0;
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@ -59,7 +59,6 @@ const char kEnergyCommands[] PROGMEM = "|" // No prefix
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#ifdef USE_ENERGY_POWER_LIMIT
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D_CMND_MAXENERGY "|" D_CMND_MAXENERGYSTART "|"
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D_CMND_MAXPOWER "|" D_CMND_MAXPOWERHOLD "|" D_CMND_MAXPOWERWINDOW "|"
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D_CMND_SAFEPOWER "|" D_CMND_SAFEPOWERHOLD "|" D_CMND_SAFEPOWERWINDOW "|"
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#endif // USE_ENERGY_POWER_LIMIT
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#endif // USE_ENERGY_MARGIN_DETECTION
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D_CMND_ENERGYTODAY "|" D_CMND_ENERGYYESTERDAY "|" D_CMND_ENERGYTOTAL "|" D_CMND_ENERGYEXPORTACTIVE "|" D_CMND_ENERGYUSAGE "|" D_CMND_ENERGYEXPORT "|" D_CMND_TARIFF;
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@ -72,7 +71,6 @@ void (* const EnergyCommand[])(void) PROGMEM = {
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#ifdef USE_ENERGY_POWER_LIMIT
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&CmndMaxEnergy, &CmndMaxEnergyStart,
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&CmndMaxPower, &CmndMaxPowerHold, &CmndMaxPowerWindow,
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&CmndSafePower, &CmndSafePowerHold, &CmndSafePowerWindow,
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#endif // USE_ENERGY_POWER_LIMIT
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#endif // USE_ENERGY_MARGIN_DETECTION
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&CmndEnergyToday, &CmndEnergyYesterday, &CmndEnergyTotal, &CmndEnergyExportActive, &CmndEnergyUsage, &CmndEnergyExport, &CmndTariff};
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@ -1018,10 +1016,30 @@ void CmndEnergyConfig(void) {
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\*********************************************************************************************/
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void EnergyMarginStatus(void) {
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Response_P(PSTR("{\"" D_CMND_STATUS D_STATUS9_MARGIN "\":{\"" D_CMND_POWERDELTA "\":[%d,%d,%d],\"" D_CMND_POWERLOW "\":%d,\"" D_CMND_POWERHIGH "\":%d,\""
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D_CMND_VOLTAGELOW "\":%d,\"" D_CMND_VOLTAGEHIGH "\":%d,\"" D_CMND_CURRENTLOW "\":%d,\"" D_CMND_CURRENTHIGH "\":%d}}"),
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Settings->energy_power_delta[0], Settings->energy_power_delta[1], Settings->energy_power_delta[2], Settings->energy_min_power, Settings->energy_max_power,
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Settings->energy_min_voltage, Settings->energy_max_voltage, Settings->energy_min_current, Settings->energy_max_current);
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Response_P(PSTR("{\"" D_CMND_STATUS D_STATUS9_MARGIN "\":{\"" D_CMND_POWERDELTA "\":"));
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if (Energy->phase_count > 1) {
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for (uint32_t i = 0; i < Energy->phase_count; i++) {
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ResponseAppend_P(PSTR("%c%d"), (i)?',':'[', Settings->energy_power_delta[i]);
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}
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ResponseAppend_P(PSTR("]"));
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} else {
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ResponseAppend_P(PSTR("%d"), Settings->energy_power_delta[0]);
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}
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ResponseAppend_P(PSTR(",\"" D_CMND_POWERLOW "\":%d,\"" D_CMND_POWERHIGH "\":%d,\""
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D_CMND_VOLTAGELOW "\":%d,\"" D_CMND_VOLTAGEHIGH "\":%d,\""
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D_CMND_CURRENTLOW "\":%d,\"" D_CMND_CURRENTHIGH "\":%d"),
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Settings->energy_min_power, Settings->energy_max_power,
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Settings->energy_min_voltage, Settings->energy_max_voltage,
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Settings->energy_min_current, Settings->energy_max_current);
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#ifdef USE_ENERGY_POWER_LIMIT
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ResponseAppend_P(PSTR(",\"" D_CMND_MAXPOWER "\":%d,\""
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D_CMND_MAXPOWERHOLD "\":%d,\"" D_CMND_MAXPOWERWINDOW "\":%d,\""
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D_CMND_MAXENERGY "\":%d,\"" D_CMND_MAXENERGYSTART "\":%d"),
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Settings->energy_max_power_limit,
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Settings->energy_max_power_limit_hold, Settings->energy_max_power_limit_window,
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Settings->energy_max_energy, Settings->energy_max_energy_start);
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#endif // USE_ENERGY_POWER_LIMIT
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ResponseJsonEndEnd();
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}
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void CmndPowerDelta(void) {
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@ -1033,104 +1051,62 @@ void CmndPowerDelta(void) {
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}
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}
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void CmndPowerLow(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_min_power = XdrvMailbox.payload;
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bool ResponseCmndEnergyMargin(uint16_t* value, uint32_t max_value, uint32_t default_value = 1);
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bool ResponseCmndEnergyMargin(uint16_t* value, uint32_t max_value, uint32_t default_value) {
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bool value_changed = false;
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= max_value)) {
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*value = (1 == XdrvMailbox.payload) ? default_value : XdrvMailbox.payload;
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value_changed = true;
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}
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ResponseCmndNumber(Settings->energy_min_power);
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ResponseCmndNumber(*value);
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return value_changed;
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}
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void CmndPowerLow(void) {
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ResponseCmndEnergyMargin(&Settings->energy_min_power, 6000);
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}
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void CmndPowerHigh(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power);
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ResponseCmndEnergyMargin(&Settings->energy_max_power, 6000);
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}
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void CmndVoltageLow(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 500)) {
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Settings->energy_min_voltage = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_min_voltage);
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ResponseCmndEnergyMargin(&Settings->energy_min_voltage, 500);
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}
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void CmndVoltageHigh(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 500)) {
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Settings->energy_max_voltage = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_voltage);
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ResponseCmndEnergyMargin(&Settings->energy_max_voltage, 500);
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}
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void CmndCurrentLow(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 25000)) {
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Settings->energy_min_current = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_min_current);
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ResponseCmndEnergyMargin(&Settings->energy_min_current, 25000);
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}
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void CmndCurrentHigh(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 25000)) {
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Settings->energy_max_current = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_current);
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ResponseCmndEnergyMargin(&Settings->energy_max_current, 25000);
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}
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#ifdef USE_ENERGY_POWER_LIMIT
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void CmndMaxPower(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power_limit = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_limit);
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ResponseCmndEnergyMargin(&Settings->energy_max_power_limit, 6000);
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}
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void CmndMaxPowerHold(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power_limit_hold = (1 == XdrvMailbox.payload) ? MAX_POWER_HOLD : XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_limit_hold);
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ResponseCmndEnergyMargin(&Settings->energy_max_power_limit_hold, 6000, MAX_POWER_HOLD);
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}
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void CmndMaxPowerWindow(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power_limit_window = (1 == XdrvMailbox.payload) ? MAX_POWER_WINDOW : XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_limit_window);
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}
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void CmndSafePower(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power_safe_limit = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_safe_limit);
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}
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void CmndSafePowerHold(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_power_safe_limit_hold = (1 == XdrvMailbox.payload) ? SAFE_POWER_HOLD : XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_safe_limit_hold);
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}
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void CmndSafePowerWindow(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload < 1440)) {
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Settings->energy_max_power_safe_limit_window = (1 == XdrvMailbox.payload) ? SAFE_POWER_WINDOW : XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_power_safe_limit_window);
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ResponseCmndEnergyMargin(&Settings->energy_max_power_limit_window, 6000, MAX_POWER_WINDOW);
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}
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void CmndMaxEnergy(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload <= 6000)) {
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Settings->energy_max_energy = XdrvMailbox.payload;
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if (ResponseCmndEnergyMargin(&Settings->energy_max_energy, 6000)) {
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Energy->max_energy_state = 3;
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}
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ResponseCmndNumber(Settings->energy_max_energy);
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}
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void CmndMaxEnergyStart(void) {
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if ((XdrvMailbox.payload >= 0) && (XdrvMailbox.payload < 24)) {
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Settings->energy_max_energy_start = XdrvMailbox.payload;
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}
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ResponseCmndNumber(Settings->energy_max_energy_start);
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ResponseCmndEnergyMargin(&Settings->energy_max_energy_start, 23);
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}
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#endif // USE_ENERGY_POWER_LIMIT
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#endif // USE_ENERGY_MARGIN_DETECTION
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@ -1329,18 +1329,18 @@ void CmndEnergyConfig(void) {
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* USE_ENERGY_MARGIN_DETECTION and USE_ENERGY_POWER_LIMIT
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\*********************************************************************************************/
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void ResponseAppendMargin(uint16_t* start, uint32_t step_size = 0);
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void ResponseAppendMargin(uint16_t* start, uint32_t step_size) {
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void ResponseAppendMargin(uint16_t* value, uint32_t step_size = 0);
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void ResponseAppendMargin(uint16_t* value, uint32_t step_size) {
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if (Energy->phase_count > 1) {
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if (0 == step_size) {
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step_size = sizeof(tPhase) / sizeof(uint16_t);
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}
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for (uint32_t i = 0; i < Energy->phase_count; i++) {
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ResponseAppend_P(PSTR("%c%d"), (i)?',':'[', start[i * step_size]);
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ResponseAppend_P(PSTR("%c%d"), (i)?',':'[', value[i * step_size]);
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}
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ResponseAppend_P(PSTR("]"));
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} else {
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ResponseAppend_P(PSTR("%d"), start[0]);
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ResponseAppend_P(PSTR("%d"), value[0]);
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}
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}
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@ -1372,8 +1372,8 @@ void EnergyMarginStatus(void) {
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ResponseJsonEndEnd();
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}
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bool ResponseCmndEnergyMargin(uint16_t* start, uint32_t max_value, uint32_t default_value = 1, uint32_t step_size = 0);
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bool ResponseCmndEnergyMargin(uint16_t* start, uint32_t max_value, uint32_t default_value, uint32_t step_size) {
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bool ResponseCmndIdxEnergyMargin(uint16_t* value, uint32_t max_value, uint32_t default_value = 1, uint32_t step_size = 0);
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bool ResponseCmndIdxEnergyMargin(uint16_t* value, uint32_t max_value, uint32_t default_value, uint32_t step_size) {
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bool value_changed = false;
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if ((XdrvMailbox.index >= 0) && (XdrvMailbox.index <= ENERGY_MAX_PHASES)) {
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if (0 == step_size) {
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@ -1383,75 +1383,75 @@ bool ResponseCmndEnergyMargin(uint16_t* start, uint32_t max_value, uint32_t defa
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if (0 == XdrvMailbox.index) {
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// PowerLow0 10
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for (uint32_t i = 0; i < Energy->phase_count; i++) {
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start[i * step_size] = (1 == XdrvMailbox.payload) ? default_value : XdrvMailbox.payload;
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value[i * step_size] = (1 == XdrvMailbox.payload) ? default_value : XdrvMailbox.payload;
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}
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} else {
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// PowerLow 10 = PowerLow1 10 .. PowerLow8 10
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start[(XdrvMailbox.index -1) * step_size] = (1 == XdrvMailbox.payload) ? default_value : XdrvMailbox.payload;
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value[(XdrvMailbox.index -1) * step_size] = (1 == XdrvMailbox.payload) ? default_value : XdrvMailbox.payload;
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}
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value_changed = true;
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}
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if (0 == XdrvMailbox.index) {
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// PowerLow0, PowerLow0 10
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ResponseCmnd();
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ResponseAppendMargin(start, step_size);
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ResponseAppendMargin(value, step_size);
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ResponseJsonEnd();
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} else {
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// PowerLow = PowerLow1 .. PowerLow8
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ResponseCmndIdxNumber(start[(XdrvMailbox.index -1) * step_size]);
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ResponseCmndIdxNumber(value[(XdrvMailbox.index -1) * step_size]);
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}
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}
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return value_changed;
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}
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void CmndPowerDelta(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.power_delta[0], 32000, 1, 1);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.power_delta[0], 32000, 1, 1);
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}
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void CmndPowerLow(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].min_power, 6000);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].min_power, 6000);
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}
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void CmndPowerHigh(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_power, 6000);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_power, 6000);
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}
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void CmndVoltageLow(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].min_voltage, 500);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].min_voltage, 500);
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}
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void CmndVoltageHigh(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_voltage, 500);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_voltage, 500);
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}
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void CmndCurrentLow(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].min_current, 25000);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].min_current, 25000);
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}
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void CmndCurrentHigh(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_current, 25000);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_current, 25000);
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}
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void CmndMaxPower(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_power_limit, 6000);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_power_limit, 6000);
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}
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void CmndMaxPowerHold(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_power_limit_hold, 6000, MAX_POWER_HOLD);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_power_limit_hold, 6000, MAX_POWER_HOLD);
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}
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void CmndMaxPowerWindow(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_power_limit_window, 6000, MAX_POWER_WINDOW);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_power_limit_window, 6000, MAX_POWER_WINDOW);
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}
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void CmndMaxEnergy(void) {
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if (ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_energy, 6000)) {
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if (ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_energy, 6000)) {
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Energy->max_energy_state[XdrvMailbox.index -1] = 3;
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}
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}
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void CmndMaxEnergyStart(void) {
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ResponseCmndEnergyMargin(&Energy->Settings.phase[0].max_energy_start, 23);
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ResponseCmndIdxEnergyMargin(&Energy->Settings.phase[0].max_energy_start, 23);
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}
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/********************************************************************************************/
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