2022-04-21 16:56:46 +02:00
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#include "RwAssembly.h"
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2023-04-11 22:58:13 +02:00
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RwAssembly::RwAssembly(object_id_t objectId, PowerSwitchIF* pwrSwitcher, power::Switch_t switchId,
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2022-09-30 14:30:30 +02:00
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RwHelper helper)
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2023-04-11 22:58:13 +02:00
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: SharedPowerAssemblyBase(objectId, pwrSwitcher, switchId), helper(helper) {
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2022-04-22 10:28:29 +02:00
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ModeListEntry entry;
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for (uint8_t idx = 0; idx < NUMBER_RWS; idx++) {
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entry.setObject(helper.rwIds[idx]);
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entry.setMode(MODE_OFF);
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entry.setSubmode(SUBMODE_NONE);
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modeTable.insert(entry);
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}
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}
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ReturnValue_t RwAssembly::commandChildren(Mode_t mode, Submode_t submode) {
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2022-08-24 17:27:47 +02:00
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ReturnValue_t result = returnvalue::OK;
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2022-04-22 10:28:29 +02:00
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// Initialize the mode table to ensure all devices are in a defined state
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for (uint8_t idx = 0; idx < NUMBER_RWS; idx++) {
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modeTable[idx].setMode(MODE_OFF);
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modeTable[idx].setSubmode(SUBMODE_NONE);
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}
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if (recoveryState != RecoveryState::RECOVERY_STARTED) {
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if (mode == DeviceHandlerIF::MODE_NORMAL or mode == MODE_ON) {
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result = handleNormalOrOnModeCmd(mode, submode);
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}
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}
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HybridIterator<ModeListEntry> tableIter(modeTable.begin(), modeTable.end());
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executeTable(tableIter);
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return result;
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}
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ReturnValue_t RwAssembly::checkChildrenStateOn(Mode_t wantedMode, Submode_t wantedSubmode) {
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int devsInCorrectMode = 0;
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try {
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for (uint8_t idx = 0; idx < NUMBER_RWS; idx++) {
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2022-05-11 01:48:26 +02:00
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if (childrenMap.at(helper.rwIds[idx]).mode == wantedMode) {
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2022-04-22 10:28:29 +02:00
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devsInCorrectMode++;
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}
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}
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} catch (const std::out_of_range& e) {
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2023-04-06 19:11:26 +02:00
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sif::error << "RW ASSY: Invalid children map: " << e.what() << std::endl;
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2022-04-22 10:28:29 +02:00
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}
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if (devsInCorrectMode < 3) {
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if (warningSwitch) {
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2023-04-06 19:11:26 +02:00
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sif::warning << "RW ASSY: Only " << devsInCorrectMode << " devices in correct mode"
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<< std::endl;
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2022-04-22 10:28:29 +02:00
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warningSwitch = false;
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}
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return NOT_ENOUGH_CHILDREN_IN_CORRECT_STATE;
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}
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2022-08-24 17:27:47 +02:00
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return returnvalue::OK;
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2022-04-22 10:28:29 +02:00
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}
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ReturnValue_t RwAssembly::isModeCombinationValid(Mode_t mode, Submode_t submode) {
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if (mode == MODE_ON or mode == MODE_OFF or mode == DeviceHandlerIF::MODE_NORMAL) {
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2022-08-24 17:27:47 +02:00
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return returnvalue::OK;
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2022-04-22 10:28:29 +02:00
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}
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return HasModesIF::INVALID_MODE;
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}
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ReturnValue_t RwAssembly::handleNormalOrOnModeCmd(Mode_t mode, Submode_t submode) {
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2022-08-24 17:27:47 +02:00
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ReturnValue_t result = returnvalue::OK;
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2022-04-22 10:28:29 +02:00
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object_id_t objId = 0;
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try {
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for (uint8_t idx = 0; idx < NUMBER_RWS; idx++) {
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2023-04-06 19:11:26 +02:00
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if (isUseable(objId, mode)) {
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2022-04-22 10:28:29 +02:00
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modeTable[idx].setMode(mode);
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2023-04-06 19:11:26 +02:00
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modeTable[idx].setSubmode(submode);
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2022-04-22 10:28:29 +02:00
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}
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}
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} catch (const std::out_of_range& e) {
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2023-04-06 19:11:26 +02:00
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sif::error << "RW ASSY: Invalid children map: " << e.what() << std::endl;
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2022-04-22 10:28:29 +02:00
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}
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return result;
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}
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bool RwAssembly::isUseable(object_id_t object, Mode_t mode) {
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if (healthHelper.healthTable->isFaulty(object)) {
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return false;
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}
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// Check if device is already in target mode
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if (childrenMap[object].mode == mode) {
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return true;
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}
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if (healthHelper.healthTable->isCommandable(object)) {
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return true;
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}
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return false;
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}
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2023-02-17 02:10:08 +01:00
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ReturnValue_t RwAssembly::initialize() {
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for (auto objId : helper.rwIds) {
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updateChildModeByObjId(objId, MODE_OFF, SUBMODE_NONE);
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}
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return AssemblyBase::initialize();
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}
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