mirror of
https://github.com/jomjol/AI-on-the-edge-device.git
synced 2025-12-06 11:36:51 +03:00
631 lines
17 KiB
C++
631 lines
17 KiB
C++
#include "ClassFlowControll.h"
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#include "connect_wlan.h"
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#include "read_wlanini.h"
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#include "freertos/task.h"
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#include <sys/stat.h>
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#include <dirent.h>
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#include "ClassLogFile.h"
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#include "time_sntp.h"
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#include "Helper.h"
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#include "server_ota.h"
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//#include "CImg.h"
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#include "server_help.h"
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//#define DEBUG_DETAIL_ON
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static const char* TAG = "flow_controll";
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std::string ClassFlowControll::doSingleStep(std::string _stepname, std::string _host){
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std::string _classname = "";
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std::string result = "";
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// printf("_stepname: %s\n", _stepname.c_str());
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if ((_stepname.compare("[MakeImage]") == 0) || (_stepname.compare(";[MakeImage]") == 0)){
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_classname = "ClassFlowMakeImage";
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}
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if ((_stepname.compare("[Alignment]") == 0) || (_stepname.compare(";[Alignment]") == 0)){
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_classname = "ClassFlowAlignment";
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}
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if ((_stepname.compare(0, 7, "[Digits") == 0) || (_stepname.compare(0, 8, ";[Digits") == 0)) {
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// if ((_stepname.compare("[Digits]") == 0) || (_stepname.compare(";[Digits]") == 0)){
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// printf("Digits!!!\n");
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_classname = "ClassFlowCNNGeneral";
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}
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if ((_stepname.compare("[Analog]") == 0) || (_stepname.compare(";[Analog]") == 0)){
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_classname = "ClassFlowCNNGeneral";
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}
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if ((_stepname.compare("[MQTT]") == 0) || (_stepname.compare(";[MQTT]") == 0)){
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_classname = "ClassFlowMQTT";
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}
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for (int i = 0; i < FlowControll.size(); ++i)
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if (FlowControll[i]->name().compare(_classname) == 0){
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if (!(FlowControll[i]->name().compare("ClassFlowMakeImage") == 0)) // falls es ein MakeImage ist, braucht das Bild nicht extra aufgenommen zu werden, dass passiert bei html-Abfrage automatisch
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FlowControll[i]->doFlow("");
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result = FlowControll[i]->getHTMLSingleStep(_host);
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}
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return result;
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}
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std::string ClassFlowControll::TranslateAktstatus(std::string _input)
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{
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if (_input.compare("ClassFlowMakeImage") == 0)
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return ("Take Image");
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if (_input.compare("ClassFlowAlignment") == 0)
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return ("Aligning");
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//if (_input.compare("ClassFlowAnalog") == 0)
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// return ("Analog ROIs");
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if (_input.compare("ClassFlowCNNGeneral") == 0)
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return ("Digitalization of ROIs");
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if (_input.compare("ClassFlowMQTT") == 0)
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return ("Sending MQTT");
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if (_input.compare("ClassFlowPostProcessing") == 0)
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return ("Processing");
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return "Unkown Status";
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}
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std::vector<HTMLInfo*> ClassFlowControll::GetAllDigital()
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{
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if (flowdigit)
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{
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printf("ClassFlowControll::GetAllDigital - flowdigit != NULL\n");
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return flowdigit->GetHTMLInfo();
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}
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std::vector<HTMLInfo*> empty;
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return empty;
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}
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std::vector<HTMLInfo*> ClassFlowControll::GetAllAnalog()
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{
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if (flowanalog)
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return flowanalog->GetHTMLInfo();
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std::vector<HTMLInfo*> empty;
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return empty;
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}
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t_CNNType ClassFlowControll::GetTypeDigital()
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{
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if (flowdigit)
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return flowdigit->getCNNType();
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return t_CNNType::None;
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}
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t_CNNType ClassFlowControll::GetTypeAnalog()
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{
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if (flowanalog)
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return flowanalog->getCNNType();
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return t_CNNType::None;
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}
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string ClassFlowControll::GetMQTTMainTopic()
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{
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for (int i = 0; i < FlowControll.size(); ++i)
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if (FlowControll[i]->name().compare("ClassFlowMQTT") == 0)
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return ((ClassFlowMQTT*) (FlowControll[i]))->GetMQTTMainTopic();
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return "";
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}
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void ClassFlowControll::SetInitialParameter(void)
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{
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AutoStart = false;
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SetupModeActive = false;
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AutoIntervall = 10;
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flowdigit = NULL;
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flowanalog = NULL;
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flowpostprocessing = NULL;
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disabled = false;
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aktRunNr = 0;
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aktstatus = "Booting ...";
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}
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bool ClassFlowControll::isAutoStart(long &_intervall)
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{
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_intervall = AutoIntervall * 60 * 1000; // AutoIntervall: Minuten -> ms
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return AutoStart;
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}
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ClassFlow* ClassFlowControll::CreateClassFlow(std::string _type)
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{
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ClassFlow* cfc = NULL;
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_type = trim(_type);
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if (toUpper(_type).compare("[MAKEIMAGE]") == 0)
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{
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cfc = new ClassFlowMakeImage(&FlowControll);
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flowmakeimage = (ClassFlowMakeImage*) cfc;
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}
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if (toUpper(_type).compare("[ALIGNMENT]") == 0)
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{
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cfc = new ClassFlowAlignment(&FlowControll);
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flowalignment = (ClassFlowAlignment*) cfc;
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}
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if (toUpper(_type).compare("[ANALOG]") == 0)
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{
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cfc = new ClassFlowCNNGeneral(flowalignment);
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flowanalog = (ClassFlowCNNGeneral*) cfc;
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}
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if (toUpper(_type).compare(0, 7, "[DIGITS") == 0)
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{
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cfc = new ClassFlowCNNGeneral(flowalignment);
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flowdigit = (ClassFlowCNNGeneral*) cfc;
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}
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if (toUpper(_type).compare("[MQTT]") == 0)
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cfc = new ClassFlowMQTT(&FlowControll);
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if (toUpper(_type).compare("[POSTPROCESSING]") == 0)
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{
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cfc = new ClassFlowPostProcessing(&FlowControll, flowanalog, flowdigit);
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flowpostprocessing = (ClassFlowPostProcessing*) cfc;
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}
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if (cfc) // Wird nur angehangen, falls es nicht [AutoTimer] ist, denn dieses ist für FlowControll
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FlowControll.push_back(cfc);
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if (toUpper(_type).compare("[AUTOTIMER]") == 0)
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cfc = this;
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if (toUpper(_type).compare("[DEBUG]") == 0)
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cfc = this;
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if (toUpper(_type).compare("[SYSTEM]") == 0)
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cfc = this;
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return cfc;
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}
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void ClassFlowControll::InitFlow(std::string config)
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{
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string line;
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flowpostprocessing = NULL;
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ClassFlow* cfc;
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FILE* pFile;
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config = FormatFileName(config);
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pFile = OpenFileAndWait(config.c_str(), "r");
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line = "";
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char zw[1024];
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if (pFile != NULL)
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{
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fgets(zw, 1024, pFile);
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printf("%s", zw);
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line = std::string(zw);
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}
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while ((line.size() > 0) && !(feof(pFile)))
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{
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cfc = CreateClassFlow(line);
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if (cfc)
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{
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printf("Start ReadParameter (%s)\n", line.c_str());
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cfc->ReadParameter(pFile, line);
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}
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else
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{
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line = "";
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if (fgets(zw, 1024, pFile) && !feof(pFile))
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{
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printf("Read: %s", zw);
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line = std::string(zw);
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}
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}
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}
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fclose(pFile);
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}
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std::string ClassFlowControll::getActStatus(){
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return aktstatus;
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}
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void ClassFlowControll::doFlowMakeImageOnly(string time){
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std::string zw_time;
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for (int i = 0; i < FlowControll.size(); ++i)
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{
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if (FlowControll[i]->name() == "ClassFlowMakeImage") {
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// zw_time = gettimestring("%Y%m%d-%H%M%S");
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zw_time = gettimestring("%H:%M:%S");
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aktstatus = TranslateAktstatus(FlowControll[i]->name()) + " (" + zw_time + ")";
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FlowControll[i]->doFlow(time);
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}
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}
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}
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bool ClassFlowControll::doFlow(string time)
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{
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// CleanTempFolder(); // dazu muss man noch eine Rolling einführen
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bool result = true;
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std::string zw_time;
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int repeat = 0;
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("ClassFlowControll::doFlow - Start");
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#endif
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for (int i = 0; i < FlowControll.size(); ++i)
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{
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zw_time = gettimestring("%H:%M:%S");
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aktstatus = TranslateAktstatus(FlowControll[i]->name()) + " (" + zw_time + ")";
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// zw_time = gettimestring("%Y%m%d-%H%M%S");
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// aktstatus = zw_time + ": " + FlowControll[i]->name();
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string zw = "FlowControll.doFlow - " + FlowControll[i]->name();
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LogFile.WriteHeapInfo(zw);
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if (!FlowControll[i]->doFlow(time)){
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repeat++;
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LogFile.WriteToFile("Fehler im vorheriger Schritt - wird zum " + to_string(repeat) + ". Mal wiederholt");
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i = -1; // vorheriger Schritt muss wiederholt werden (vermutlich Bilder aufnehmen)
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result = false;
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if (repeat > 5) {
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LogFile.WriteToFile("Wiederholung 5x nicht erfolgreich --> reboot");
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doReboot();
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// Schritt wurde 5x wiederholt --> reboot
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}
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}
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else
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{
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result = true;
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}
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("ClassFlowControll::doFlow");
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#endif
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}
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zw_time = gettimestring("%H:%M:%S");
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aktstatus = "Flow finished (" + zw_time + ")";
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return result;
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}
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string ClassFlowControll::getReadoutAll(int _type)
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{
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std::vector<NumberPost*> numbers = flowpostprocessing->GetNumbers();
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std::string out = "";
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for (int i = 0; i < numbers.size(); ++i)
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{
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out = out + numbers[i]->name + "\t";
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switch (_type) {
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case READOUT_TYPE_VALUE:
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out = out + numbers[i]->ReturnValueNoError;
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break;
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case READOUT_TYPE_PREVALUE:
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if (flowpostprocessing->PreValueUse)
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{
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if (numbers[i]->PreValueOkay)
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out = out + numbers[i]->ReturnPreValue;
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else
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out = out + "PreValue too old";
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}
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else
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out = out + "PreValue deactivated";
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break;
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case READOUT_TYPE_RAWVALUE:
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out = out + numbers[i]->ReturnRawValue;
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break;
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case READOUT_TYPE_ERROR:
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out = out + numbers[i]->ErrorMessageText;
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break;
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}
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if (i < numbers.size()-1)
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out = out + "\r\n";
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}
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// printf("OUT: %s", out.c_str());
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return out;
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}
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string ClassFlowControll::getReadout(bool _rawvalue = false, bool _noerror = false)
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{
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if (flowpostprocessing)
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return flowpostprocessing->getReadoutParam(_rawvalue, _noerror);
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string zw = "";
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string result = "";
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for (int i = 0; i < FlowControll.size(); ++i)
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{
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zw = FlowControll[i]->getReadout();
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if (zw.length() > 0)
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{
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if (result.length() == 0)
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result = zw;
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else
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result = result + "\t" + zw;
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}
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}
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return result;
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}
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string ClassFlowControll::GetPrevalue(std::string _number)
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{
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if (flowpostprocessing)
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{
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return flowpostprocessing->GetPreValue(_number);
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}
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return std::string();
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}
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std::string ClassFlowControll::UpdatePrevalue(std::string _newvalue, std::string _numbers, bool _extern)
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{
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float zw;
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char* p;
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_newvalue = trim(_newvalue);
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// printf("Input UpdatePreValue: %s\n", _newvalue.c_str());
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if (_newvalue.compare("0.0") == 0)
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{
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zw = 0;
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}
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else
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{
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zw = strtof(_newvalue.c_str(), &p);
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if (zw == 0)
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return "- Error in String to Value Conversion!!! Must be of format value=123.456";
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}
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if (flowpostprocessing)
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{
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flowpostprocessing->SetPreValue(zw, _numbers, _extern);
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return _newvalue;
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}
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return std::string();
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}
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bool ClassFlowControll::ReadParameter(FILE* pfile, string& aktparamgraph)
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{
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std::vector<string> zerlegt;
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aktparamgraph = trim(aktparamgraph);
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if (aktparamgraph.size() == 0)
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if (!this->GetNextParagraph(pfile, aktparamgraph))
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return false;
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if ((toUpper(aktparamgraph).compare("[AUTOTIMER]") != 0) && (toUpper(aktparamgraph).compare("[DEBUG]") != 0) && (toUpper(aktparamgraph).compare("[SYSTEM]") != 0)) // Paragraph passt nicht zu MakeImage
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return false;
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while (this->getNextLine(pfile, &aktparamgraph) && !this->isNewParagraph(aktparamgraph))
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{
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zerlegt = this->ZerlegeZeile(aktparamgraph, " =");
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if ((toUpper(zerlegt[0]) == "AUTOSTART") && (zerlegt.size() > 1))
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{
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if (toUpper(zerlegt[1]) == "TRUE")
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{
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AutoStart = true;
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}
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}
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if ((toUpper(zerlegt[0]) == "INTERVALL") && (zerlegt.size() > 1))
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{
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AutoIntervall = std::stof(zerlegt[1]);
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}
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if ((toUpper(zerlegt[0]) == "LOGFILE") && (zerlegt.size() > 1))
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{
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if (toUpper(zerlegt[1]) == "TRUE")
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{
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LogFile.SwitchOnOff(true);
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}
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if (toUpper(zerlegt[1]) == "FALSE")
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{
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LogFile.SwitchOnOff(false);
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}
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}
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if ((toUpper(zerlegt[0]) == "LOGFILERETENTIONINDAYS") && (zerlegt.size() > 1))
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{
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LogFile.SetRetention(std::stoi(zerlegt[1]));
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}
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if ((toUpper(zerlegt[0]) == "TIMEZONE") && (zerlegt.size() > 1))
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{
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string zw = "Set TimeZone: " + zerlegt[1];
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setTimeZone(zerlegt[1]);
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}
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if ((toUpper(zerlegt[0]) == "TIMESERVER") && (zerlegt.size() > 1))
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{
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string zw = "Set TimeZone: " + zerlegt[1];
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reset_servername(zerlegt[1]);
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}
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if ((toUpper(zerlegt[0]) == "HOSTNAME") && (zerlegt.size() > 1))
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{
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if (ChangeHostName("/sdcard/wlan.ini", zerlegt[1]))
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{
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// reboot notwendig damit die neue wlan.ini auch benutzt wird !!!
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fclose(pfile);
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printf("do reboot\n");
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esp_restart();
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hard_restart();
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doReboot();
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}
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}
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if ((toUpper(zerlegt[0]) == "SETUPMODE") && (zerlegt.size() > 1))
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{
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if (toUpper(zerlegt[1]) == "TRUE")
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{
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SetupModeActive = true;
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}
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}
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if ((toUpper(zerlegt[0]) == "LOGLEVEL") && (zerlegt.size() > 1))
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{
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LogFile.setLogLevel(stoi(zerlegt[1]));
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}
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}
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return true;
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}
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int ClassFlowControll::CleanTempFolder() {
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const char* folderPath = "/sdcard/img_tmp";
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ESP_LOGI(TAG, "Clean up temporary folder to avoid damage of sdcard sectors : %s", folderPath);
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DIR *dir = opendir(folderPath);
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if (!dir) {
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ESP_LOGE(TAG, "Failed to stat dir : %s", folderPath);
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return -1;
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}
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struct dirent *entry;
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int deleted = 0;
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while ((entry = readdir(dir)) != NULL) {
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std::string path = string(folderPath) + "/" + entry->d_name;
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if (entry->d_type == DT_REG) {
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if (unlink(path.c_str()) == 0) {
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deleted ++;
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} else {
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ESP_LOGE(TAG, "can't delete file : %s", path.c_str());
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}
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} else if (entry->d_type == DT_DIR) {
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deleted += removeFolder(path.c_str(), TAG);
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}
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}
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closedir(dir);
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ESP_LOGI(TAG, "%d files deleted", deleted);
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return 0;
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}
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esp_err_t ClassFlowControll::SendRawJPG(httpd_req_t *req)
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{
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return flowmakeimage != NULL ? flowmakeimage->SendRawJPG(req) : ESP_FAIL;
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}
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esp_err_t ClassFlowControll::GetJPGStream(std::string _fn, httpd_req_t *req)
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{
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printf("ClassFlowControll::GetJPGStream %s\n", _fn.c_str());
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CImageBasis *_send = NULL;
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esp_err_t result = ESP_FAIL;
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bool Dodelete = false;
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if (flowalignment == NULL)
|
|
{
|
|
printf("Can't continue, flowalignment is NULL\n");
|
|
return ESP_FAIL;
|
|
}
|
|
|
|
if (_fn == "alg.jpg")
|
|
{
|
|
_send = flowalignment->ImageBasis;
|
|
}
|
|
|
|
|
|
|
|
if (_fn == "alg_roi.jpg")
|
|
{
|
|
CImageBasis* _imgzw = new CImageBasis(flowalignment->ImageBasis);
|
|
flowalignment->DrawRef(_imgzw);
|
|
if (flowdigit) flowdigit->DrawROI(_imgzw);
|
|
if (flowanalog) flowanalog->DrawROI(_imgzw);
|
|
|
|
/*/////////////////////////////////////
|
|
cimg_library::CImg<unsigned char> cimg(_imgzw->rgb_image, _imgzw->bpp, _imgzw->width, _imgzw->height, 1);
|
|
|
|
//Convert cimg type
|
|
// cimg.permute_axes("yzcx");
|
|
cimg.draw_text(300, 300, "Dies ist ein Test", "black");
|
|
|
|
|
|
//Convert back to stb type to save
|
|
// cimg.permute_axes("cxyz");
|
|
*////////////////////////////////////
|
|
_send = _imgzw;
|
|
Dodelete = true;
|
|
}
|
|
|
|
std::vector<HTMLInfo*> htmlinfo;
|
|
htmlinfo = GetAllDigital();
|
|
for (int i = 0; i < htmlinfo.size(); ++i)
|
|
{
|
|
if (_fn == htmlinfo[i]->filename)
|
|
{
|
|
if (htmlinfo[i]->image)
|
|
_send = htmlinfo[i]->image;
|
|
}
|
|
if (_fn == htmlinfo[i]->filename_org)
|
|
{
|
|
if (htmlinfo[i]->image_org)
|
|
_send = htmlinfo[i]->image_org;
|
|
}
|
|
delete htmlinfo[i];
|
|
}
|
|
htmlinfo.clear();
|
|
|
|
htmlinfo = GetAllAnalog();
|
|
for (int i = 0; i < htmlinfo.size(); ++i)
|
|
{
|
|
if (_fn == htmlinfo[i]->filename)
|
|
{
|
|
if (htmlinfo[i]->image)
|
|
_send = htmlinfo[i]->image;
|
|
}
|
|
if (_fn == htmlinfo[i]->filename_org)
|
|
{
|
|
if (htmlinfo[i]->image_org)
|
|
_send = htmlinfo[i]->image_org;
|
|
}
|
|
delete htmlinfo[i];
|
|
}
|
|
htmlinfo.clear();
|
|
|
|
if (_send)
|
|
{
|
|
ESP_LOGI(TAG, "Sending file : %s ...", _fn.c_str());
|
|
set_content_type_from_file(req, _fn.c_str());
|
|
result = _send->SendJPGtoHTTP(req);
|
|
ESP_LOGI(TAG, "File sending complete");
|
|
/* Respond with an empty chunk to signal HTTP response completion */
|
|
httpd_resp_send_chunk(req, NULL, 0);
|
|
}
|
|
|
|
if (Dodelete)
|
|
{
|
|
delete _send;
|
|
}
|
|
|
|
return result;
|
|
} |