@@ -612,15 +612,16 @@ vTaskAdjustLoad([[maybe_unused]] void *pvParameters) { // NOSONAR
612612 }
613613#elif LOAD_STRATEGY == LOAD_STRATEGY_VOLTAGE_FIX
614614 // Iterate over the parallel array in revers order
615- static uint_fast8_t voltLimitIndex = LOAD ::VOLT_LIMITS_TABLE_mV.size () - 1 ;
615+ static uint_fast8_t voltLimitIndex =
616+ LOAD ::VOLT_LIMITS_TABLE_mV.size () - 1 ;
616617 // LCR: Load Control Resistor
617618 static uint_fast8_t lCRIndex = LOAD ::RES_INDEX_TABLE .size () - 1 ;
618619
619620 constexpr int_fast16_t MAX_SAFE_VOLTAGE_mV =
620621 30000 ; // CONFIG - Actually 32 or 36 V max
621622 if (INA260 ::voltage_mV > MAX_SAFE_VOLTAGE_mV) {
622- ESP_LOGW (TAG , " %d mV exceeds max safe of %d mV" , INA260 ::voltage_mV,
623- MAX_SAFE_VOLTAGE_mV);
623+ ESP_LOGW (TAG , " %d mV exceeds max safe of %d mV" ,
624+ INA260 ::voltage_mV. load (), MAX_SAFE_VOLTAGE_mV);
624625 // Decrease limit
625626 if (voltLimitIndex > 0 ) {
626627 // Have not reached lowest value
@@ -637,7 +638,8 @@ vTaskAdjustLoad([[maybe_unused]] void *pvParameters) { // NOSONAR
637638 }
638639
639640 ESP_LOGI (TAG , " Adjust Load: %d mV, Threshold: %d mV" ,
640- INA260 ::voltage_mV, LOAD ::VOLT_LIMITS_TABLE_mV[voltLimitIndex]);
641+ INA260 ::voltage_mV.load (),
642+ LOAD ::VOLT_LIMITS_TABLE_mV[voltLimitIndex]);
641643 if (INA260 ::voltage_mV > LOAD ::VOLT_LIMITS_TABLE_mV[voltLimitIndex]) {
642644 // Exceeded threshold voltage
643645 load.setLoadGPIO (LOAD ::RES_INDEX_TABLE [lCRIndex]);
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