save voltage params
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8bbbadee5a
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04c18e836f
@ -193,6 +193,8 @@ typedef struct {
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int Voltage;
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float nodeWorkTime;
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float nodeSendTime;
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int minmumBatteryVoltageType;
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int instantaneousBatteryVoltage;
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}DataRecvStatic;
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typedef struct {
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@ -198,6 +198,14 @@ void SqliteDB::SqliteInit(const char *pDbName) {
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if(iRet == 0){
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CreateTable("ALTER TABLE t_datastatic_info ADD COLUMN 'nodeTimeStamp'");
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}
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iRet = GetTableRows(" sqlite_master "," name = 't_datastatic_info' and sql LIKE '%minmumBatteryVoltageType%' ");
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if(iRet == 0){
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CreateTable("ALTER TABLE t_datastatic_info ADD COLUMN 'minmumBatteryVoltageType'");
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}
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iRet = GetTableRows(" sqlite_master "," name = 't_datastatic_info' and sql LIKE '%instantaneousBatteryVoltage%' ");
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if(iRet == 0){
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CreateTable("ALTER TABLE t_datastatic_info ADD COLUMN 'instantaneousBatteryVoltage'");
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}
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memset(sql_exec, 0, 2048);
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// clang-format off
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sprintf(sql_exec, "create table if not exists %s(%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s,%s);",
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@ -351,8 +359,8 @@ void SqliteDB::CreatedataStatictable(const char *ptableName) {
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char sql_exec[2048];
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//创建传感器数据存储表
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memset(sql_exec, 0, 2048);
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sprintf(sql_exec, "create table if not exists %s(%s,%s,%s,%s,%s,%s,%s,%s integer,%s,%s,%s,%s integer,%s,%s,%s);", ptableName, T_DATASTATIC_INFO(DATANODENO), T_DATASTATIC_INFO(CHANNELID), T_DATASTATIC_INFO(TEMTOP), T_DATASTATIC_INFO(TEMBOT), T_DATASTATIC_INFO(DIP),
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T_DATASTATIC_INFO(VOLTAGE), "zigbeeSignal", "StaticIndex", T_DATASTATIC_INFO(TIMESTAMP), "sendMsg", "nodeResend", "zigbeeSignalNode", "statisticType", "timing", "nodeTimestamp");
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sprintf(sql_exec, "create table if not exists %s(%s,%s,%s,%s,%s,%s,%s,%s integer,%s,%s,%s,%s integer,%s,%s,%s,%s,%s);", ptableName, T_DATASTATIC_INFO(DATANODENO), T_DATASTATIC_INFO(CHANNELID), T_DATASTATIC_INFO(TEMTOP), T_DATASTATIC_INFO(TEMBOT), T_DATASTATIC_INFO(DIP),
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T_DATASTATIC_INFO(VOLTAGE), "zigbeeSignal", "StaticIndex", T_DATASTATIC_INFO(TIMESTAMP), "sendMsg", "nodeResend", "zigbeeSignalNode", "statisticType", "timing", "nodeTimestamp","minmumBatteryVoltageType","instantaneousBatteryVoltage");
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CreateTable(sql_exec);
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memset(sql_exec, 0, 2048);
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sprintf(sql_exec, "CREATE INDEX %s_1 ON %s (%s)", ptableName, ptableName, T_DATA_INFO(DATANODENO));
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@ -605,6 +605,32 @@ int Uart::DealFeatureValue(const char *pData,uint16_t ushortAdd){
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last_time = atol(nowTimetamp.c_str());
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return 0;
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}
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int Uart::DealAskTaskOld(uint16_t ushortAdd){
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char wherecon[50]={0};
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sprintf(wherecon, "zigbeeShortAddr='%02x%02x'", UINT16_HIGH(ushortAdd),UINT16_LOW(ushortAdd));
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int sensor_count = sqlite_db_ctrl::instance().GetTableRows(T_SENSOR_INFO(TNAME), wherecon);
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if (sensor_count < 1) {
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zlog_warn(zct, "device info not found %02x%02x ", UINT16_HIGH(ushortAdd),UINT16_LOW(ushortAdd));
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return 1;
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}
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int next_duration = 0,next_task_id = 0;
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int taskID;
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ScheduleTask scheduleTask;
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taskID = scheduler::instance().StartSchedule(ushortAdd,next_duration, next_task_id);
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zlog_info(zct, "DealAskTaskOld taskID = %d next_duration = %d next_task_id = %d", taskID, next_duration, next_task_id);
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if(next_task_id == kScheduleUpgrade){
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scheduleTask.cmd = REVIVE_DURATION;
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scheduleTask.shortAddr = ushortAdd;
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scheduleTask.duration = next_duration;
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scheduleTask.next_taskID = UPGRADE;
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TaskResp(scheduleTask);
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}
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if (taskID == kScheduleUpgrade){
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UpdateWirelessNode(ushortAdd);
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}
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return 0;
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}
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void Uart::DealRecvData(const char *pData) {
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uint16_t ushortAdd = BUILD_UINT16(pData[3] & 0xFF, pData[4] & 0xFF);
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@ -640,6 +666,9 @@ void Uart::DealRecvData(const char *pData) {
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case DEVICE_INF2:
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DealDataNodeName(pData);
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break;
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case ASK_TASK:
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DealAskTaskOld(ushortAdd);
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break;
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// case ASK_TASK:
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// DealAskTask(ushortAdd);
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// break;
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@ -1306,9 +1335,9 @@ int Uart::FindRecvPackage(int bytesRead, char *mUartRecvBuf, char *head) {
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memcpy(RecvBuf, (char *)&UartRecvBuf[i], 100);
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DealDataNodeWave(RecvBuf, command);
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mPackgeIndex = (unsigned int)UartRecvBuf[i + 6];
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} else if (now_task != WAVE_CMD && ( command == DEVICE_INF || command == MEAS_EVAL || command == CONFIG || command == UPGRADE || command == DEVICE_INF2 || command == SIGNAL_STRENGTH || command == DEVICE_EXCEPTION || command == UPGRADE_ASK)) {
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} else if (now_task != WAVE_CMD && ( command == ASK_TASK || command == DEVICE_INF || command == MEAS_EVAL || command == CONFIG || command == UPGRADE || command == DEVICE_INF2 || command == SIGNAL_STRENGTH || command == DEVICE_EXCEPTION || command == UPGRADE_ASK)) {
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char RecvBuf[100] = {0x00};
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if (command == UPGRADE_ASK)
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if (command == UPGRADE_ASK || command == ASK_TASK)
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{
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memcpy(RecvBuf, &UartRecvBuf[i], 8);
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if (!CheckCrc(RecvBuf, 7)) {
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@ -166,6 +166,7 @@ public:
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void Stop();
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void UpdateZigbeeInfo(const char* pData);
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int DealAskTaskOld(uint16_t ushortAdd);
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void DealRecvData(const char* pData);
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void DealDataNodeInfo(const char* pData);
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void DealDataNodeName(const char* pData);
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@ -146,6 +146,16 @@ int Uart::DealDataNodeFeature(const char *pData, int flag) {
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RecordBattery(strMeasurementID, dataStatic, nowTimetamp);
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memset(buf, 0, sizeof(buf));
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sprintf(buf, "%02x%02x", pRecvData->Data[81]);
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iTemp = (int)strtol(buf, NULL, 8);
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dataStatic.minmumBatteryVoltageType = iTemp;
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memset(buf, 0, sizeof(buf));
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sprintf(buf, "%02x%02x", pRecvData->Data[83], pRecvData->Data[82]);
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iTemp = (int)strtol(buf, NULL, 16);
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dataStatic.instantaneousBatteryVoltage = iTemp;
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char szTableName[50] = {0x00}, szTableNameStatic[50] = {0x00}, szTableNameData[50] = {0x00};
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sprintf(szTableName, "t_dataStatic_%s", strMeasurementID.c_str());
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memcpy(szTableNameStatic, szTableName, sizeof(szTableNameStatic));
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@ -234,24 +244,24 @@ int Uart::DealDataNodeFeature(const char *pData, int flag) {
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zlog_info(zct, "dataStatic.TemTop : %f dataStatic.TemBot : %f dataStatic.Dip :%d dataStatic.Voltage : %d", dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage);
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sprintf(updateSql, "temTop='%f',temBot='%f',dip='%d',voltage='%d',timeStamp='%s',StaticIndex = %ld, nodeResend = %d,zigbeeSignal = '',zigbeeSignalNode = '',statisticType = '%d',timing = '%d' ", dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage,
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nowTimetamp.c_str(), staticIndex, nodeResend, flag, timing);
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sprintf(updateSql, "temTop='%f',temBot='%f',dip='%d',voltage='%d',timeStamp='%s',StaticIndex = %ld, nodeResend = %d,zigbeeSignal = '',zigbeeSignalNode = '',statisticType = '%d',timing = '%d',,nodeTimestamp = '%s',minmumBatteryVoltageType = '%d',instantaneousBatteryVoltage = '%d' ", dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage,
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nowTimetamp.c_str(), staticIndex, nodeResend, flag, timing, nodetimestamp, dataStatic.minmumBatteryVoltageType, dataStatic.instantaneousBatteryVoltage);
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sprintf(whereCon, "channelID='%s' ", (strMeasurementID + "-S").c_str());
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if (/*0 == sqlite_db_ctrl::instance().GetTableRows(T_DATASTATIC_INFO(TNAME), whereCon)*/ (Count * 3 < SAVE_COUNT && lTime < OneWeek) || strTime.size() == 0) {
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zlog_info(zct, "insert static data to sql");
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char insertSql[1024] = {0};
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sprintf(insertSql, "'%s','%s','%f','%f','%d','%d','',%ld,'%s','1',%d,'','%d','%d','%s'", strMeasurementID.c_str(), (strMeasurementID + "-S").c_str(), dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, staticIndex, nowTimetamp.c_str(), nodeResend, flag,
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timing,nodetimestamp);
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sprintf(insertSql, "'%s','%s','%f','%f','%d','%d','',%ld,'%s','1',%d,'','%d','%d','%s','%d','%d'", strMeasurementID.c_str(), (strMeasurementID + "-S").c_str(), dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, staticIndex, nowTimetamp.c_str(), nodeResend, flag,
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timing,nodetimestamp, dataStatic.minmumBatteryVoltageType, dataStatic.instantaneousBatteryVoltage);
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sqlite_db_ctrl::instance().InsertData(szTableName, insertSql);
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if (0 == sqlite_db_ctrl::instance().GetTableRows(T_DATASTATIC_INFO(TNAME), whereCon)) { // First Connect
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char insertSql[1024] = {0};
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sprintf(insertSql, "'%s','%s','%f','%f','%d','%d','',%ld,'%s','1',%d,%s", strMeasurementID.c_str(), (strMeasurementID + "-S").c_str(), dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, staticIndex, nowTimetamp.c_str(), nodeResend,nodetimestamp);
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sprintf(insertSql, "'%s','%s','%f','%f','%d','%d','',%ld,'%s','1',%d,%s,'%d','%d'", strMeasurementID.c_str(), (strMeasurementID + "-S").c_str(), dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, staticIndex, nowTimetamp.c_str(), nodeResend,nodetimestamp, dataStatic.minmumBatteryVoltageType, dataStatic.instantaneousBatteryVoltage);
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sqlite_db_ctrl::instance().InsertData(T_DATASTATIC_INFO(TNAME), insertSql);
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sqlite_db_ctrl::instance().CalculateBattery();
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} else {
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memset(updateSql, 0x00, sizeof(updateSql));
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sprintf(updateSql, "temTop='%f',temBot='%f',dip='%d',voltage='%d',timeStamp='%s',StaticIndex = %ld,nodeTimestamp = '%s' ", dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, nowTimetamp.c_str(), staticIndex,nodetimestamp);
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sprintf(updateSql, "temTop='%f',temBot='%f',dip='%d',voltage='%d',timeStamp='%s',StaticIndex = %ld,nodeTimestamp = '%s',minmumBatteryVoltageType = '%d',instantaneousBatteryVoltage = '%d' ", dataStatic.TemTop, dataStatic.TemBot, dataStatic.Dip, dataStatic.Voltage, nowTimetamp.c_str(), staticIndex,nodetimestamp, dataStatic.minmumBatteryVoltageType, dataStatic.instantaneousBatteryVoltage);
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sqlite_db_ctrl::instance().UpdateTableData(T_DATASTATIC_INFO(TNAME), updateSql, whereCon);
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}
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} else {
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