mirror of
https://github.com/jomjol/AI-on-the-edge-device.git
synced 2025-12-06 19:46:54 +03:00
621 lines
19 KiB
C++
621 lines
19 KiB
C++
#include <iostream>
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#include <string>
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#include <vector>
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#include <regex>
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#include "ClassFlowTakeImage.h"
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#include "Helper.h"
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#include "ClassLogFile.h"
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#include "CImageBasis.h"
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#include "ClassControllCamera.h"
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#include "MainFlowControl.h"
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#include "esp_wifi.h"
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#include "esp_log.h"
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#include "../../include/defines.h"
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#include "psram.h"
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#include <time.h>
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// #define DEBUG_DETAIL_ON
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// #define WIFITURNOFF
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static const char *TAG = "TAKEIMAGE";
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esp_err_t ClassFlowTakeImage::camera_capture(void)
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{
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string nm = namerawimage;
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Camera.CaptureToFile(nm);
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time(&TimeImageTaken);
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localtime(&TimeImageTaken);
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return ESP_OK;
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}
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void ClassFlowTakeImage::takePictureWithFlash(int flash_duration)
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{
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// in case the image is flipped, it must be reset here //
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rawImage->width = CCstatus.ImageWidth;
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rawImage->height = CCstatus.ImageHeight;
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ESP_LOGD(TAG, "flash_duration: %d", flash_duration);
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Camera.CaptureToBasisImage(rawImage, flash_duration);
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time(&TimeImageTaken);
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localtime(&TimeImageTaken);
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if (CCstatus.SaveAllFiles)
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{
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rawImage->SaveToFile(namerawimage);
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}
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}
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void ClassFlowTakeImage::SetInitialParameter(void)
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{
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TimeImageTaken = 0;
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rawImage = NULL;
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disabled = false;
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namerawimage = "/sdcard/img_tmp/raw.jpg";
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}
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// auslesen der Kameraeinstellungen aus der config.ini
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// wird beim Start aufgerufen
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bool ClassFlowTakeImage::ReadParameter(FILE *pfile, string &aktparamgraph)
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{
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Camera.getSensorDatenToCCstatus(); // Kamera >>> CCstatus
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std::vector<string> splitted;
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aktparamgraph = trim(aktparamgraph);
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if (aktparamgraph.size() == 0)
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{
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if (!this->GetNextParagraph(pfile, aktparamgraph))
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{
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return false;
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}
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}
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if (aktparamgraph.compare("[TakeImage]") != 0)
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{
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// Paragraph does not fit TakeImage
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return false;
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}
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while (this->getNextLine(pfile, &aktparamgraph) && !this->isNewParagraph(aktparamgraph))
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{
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splitted = ZerlegeZeile(aktparamgraph);
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if ((toUpper(splitted[0]) == "RAWIMAGESLOCATION") && (splitted.size() > 1))
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{
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imagesLocation = "/sdcard" + splitted[1];
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isLogImage = true;
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}
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else if ((toUpper(splitted[0]) == "RAWIMAGESRETENTION") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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this->imagesRetention = std::stod(splitted[1]);
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}
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}
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else if ((toUpper(splitted[0]) == "SAVEALLFILES") && (splitted.size() > 1))
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{
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CCstatus.SaveAllFiles = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "WAITBEFORETAKINGPICTURE") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _WaitBeforePicture = std::stoi(splitted[1]);
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if (_WaitBeforePicture != 0)
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{
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CCstatus.WaitBeforePicture = _WaitBeforePicture;
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}
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else
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{
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CCstatus.WaitBeforePicture = 2;
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMGAINCEILING") && (splitted.size() > 1))
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{
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std::string _ImageGainceiling = toUpper(splitted[1]);
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if (isStringNumeric(_ImageGainceiling))
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{
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int _ImageGainceiling_ = std::stoi(_ImageGainceiling);
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switch (_ImageGainceiling_)
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{
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case 1:
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CFstatus.ImageGainceiling = GAINCEILING_4X;
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break;
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case 2:
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CFstatus.ImageGainceiling = GAINCEILING_8X;
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break;
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case 3:
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CFstatus.ImageGainceiling = GAINCEILING_16X;
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break;
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case 4:
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CFstatus.ImageGainceiling = GAINCEILING_32X;
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break;
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case 5:
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CFstatus.ImageGainceiling = GAINCEILING_64X;
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break;
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case 6:
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CFstatus.ImageGainceiling = GAINCEILING_128X;
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break;
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default:
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CFstatus.ImageGainceiling = GAINCEILING_2X;
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}
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}
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else
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{
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if (_ImageGainceiling == "X4")
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{
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CCstatus.ImageGainceiling = GAINCEILING_4X;
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}
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else if (_ImageGainceiling == "X8")
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{
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CCstatus.ImageGainceiling = GAINCEILING_8X;
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}
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else if (_ImageGainceiling == "X16")
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{
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CCstatus.ImageGainceiling = GAINCEILING_16X;
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}
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else if (_ImageGainceiling == "X32")
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{
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CCstatus.ImageGainceiling = GAINCEILING_32X;
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}
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else if (_ImageGainceiling == "X64")
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{
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CCstatus.ImageGainceiling = GAINCEILING_64X;
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}
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else if (_ImageGainceiling == "X128")
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{
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CCstatus.ImageGainceiling = GAINCEILING_128X;
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}
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else
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{
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CCstatus.ImageGainceiling = GAINCEILING_2X;
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMQUALITY") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageQuality = std::stoi(splitted[1]);
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CCstatus.ImageQuality = clipInt(_ImageQuality, 63, 6);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMBRIGHTNESS") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageBrightness = std::stoi(splitted[1]);
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CCstatus.ImageBrightness = clipInt(_ImageBrightness, 2, -2);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMCONTRAST") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageContrast = std::stoi(splitted[1]);
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CCstatus.ImageContrast = clipInt(_ImageContrast, 2, -2);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMSATURATION") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageSaturation = std::stoi(splitted[1]);
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CCstatus.ImageSaturation = clipInt(_ImageSaturation, 2, -2);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMSHARPNESS") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageSharpness = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageSharpness = clipInt(_ImageSharpness, 2, -2);
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}
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else
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{
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CCstatus.ImageSharpness = clipInt(_ImageSharpness, 3, -3);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMAUTOSHARPNESS") && (splitted.size() > 1))
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{
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CCstatus.ImageAutoSharpness = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMSPECIALEFFECT") && (splitted.size() > 1))
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{
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std::string _ImageSpecialEffect = toUpper(splitted[1]);
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if (isStringNumeric(_ImageSpecialEffect))
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{
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int _ImageSpecialEffect_ = std::stoi(_ImageSpecialEffect);
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CFstatus.ImageSpecialEffect = clipInt(_ImageSpecialEffect_, 6, 0);
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}
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else
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{
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if (_ImageSpecialEffect == "NEGATIVE")
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{
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CCstatus.ImageSpecialEffect = 1;
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}
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else if (_ImageSpecialEffect == "GRAYSCALE")
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{
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CCstatus.ImageSpecialEffect = 2;
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}
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else if (_ImageSpecialEffect == "RED")
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{
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CCstatus.ImageSpecialEffect = 3;
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}
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else if (_ImageSpecialEffect == "GREEN")
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{
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CCstatus.ImageSpecialEffect = 4;
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}
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else if (_ImageSpecialEffect == "BLUE")
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{
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CCstatus.ImageSpecialEffect = 5;
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}
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else if (_ImageSpecialEffect == "RETRO")
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{
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CCstatus.ImageSpecialEffect = 6;
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}
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else
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{
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CCstatus.ImageSpecialEffect = 0;
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMWBMODE") && (splitted.size() > 1))
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{
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std::string _ImageWbMode = toUpper(splitted[1]);
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if (isStringNumeric(_ImageWbMode))
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{
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int _ImageWbMode_ = std::stoi(_ImageWbMode);
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CFstatus.ImageWbMode = clipInt(_ImageWbMode_, 4, 0);
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}
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else
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{
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if (_ImageWbMode == "SUNNY")
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{
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CCstatus.ImageWbMode = 1;
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}
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else if (_ImageWbMode == "CLOUDY")
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{
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CCstatus.ImageWbMode = 2;
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}
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else if (_ImageWbMode == "OFFICE")
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{
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CCstatus.ImageWbMode = 3;
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}
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else if (_ImageWbMode == "HOME")
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{
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CCstatus.ImageWbMode = 4;
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}
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else
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{
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CCstatus.ImageWbMode = 0;
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMAWB") && (splitted.size() > 1))
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{
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CCstatus.ImageAwb = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMAWBGAIN") && (splitted.size() > 1))
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{
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CCstatus.ImageAwbGain = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMAEC") && (splitted.size() > 1))
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{
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CCstatus.ImageAec = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMAEC2") && (splitted.size() > 1))
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{
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CCstatus.ImageAec2 = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMAELEVEL") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageAeLevel = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageAeLevel = clipInt(_ImageAeLevel, 2, -2);
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}
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else
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{
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CCstatus.ImageAeLevel = clipInt(_ImageAeLevel, 5, -5);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMAECVALUE") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageAecValue = std::stoi(splitted[1]);
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CCstatus.ImageAecValue = clipInt(_ImageAecValue, 1200, 0);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMAGC") && (splitted.size() > 1))
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{
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CCstatus.ImageAgc = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMAGCGAIN") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageAgcGain = std::stoi(splitted[1]);
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CCstatus.ImageAgcGain = clipInt(_ImageAgcGain, 30, 0);
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}
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}
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else if ((toUpper(splitted[0]) == "CAMBPC") && (splitted.size() > 1))
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{
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CCstatus.ImageBpc = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMWPC") && (splitted.size() > 1))
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{
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CCstatus.ImageWpc = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMRAWGMA") && (splitted.size() > 1))
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{
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CCstatus.ImageRawGma = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMLENC") && (splitted.size() > 1))
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{
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CCstatus.ImageLenc = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMHMIRROR") && (splitted.size() > 1))
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{
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CCstatus.ImageHmirror = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMVFLIP") && (splitted.size() > 1))
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{
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CCstatus.ImageVflip = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMDCW") && (splitted.size() > 1))
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{
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CCstatus.ImageDcw = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMDENOISE") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageDenoiseLevel = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageDenoiseLevel = 0;
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}
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else
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{
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CCstatus.ImageDenoiseLevel = clipInt(_ImageDenoiseLevel, 8, 0);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMZOOM") && (splitted.size() > 1))
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{
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CCstatus.ImageZoomEnabled = alphanumericToBoolean(splitted[1]);
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}
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else if ((toUpper(splitted[0]) == "CAMZOOMOFFSETX") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageZoomOffsetX = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageZoomOffsetX = clipInt(_ImageZoomOffsetX, 480, -480);
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}
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else if (CCstatus.CamSensor_id == OV3660_PID)
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{
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CCstatus.ImageZoomOffsetX = clipInt(_ImageZoomOffsetX, 704, -704);
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}
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else if (CCstatus.CamSensor_id == OV5640_PID)
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{
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CCstatus.ImageZoomOffsetX = clipInt(_ImageZoomOffsetX, 960, -960);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMZOOMOFFSETY") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageZoomOffsetY = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageZoomOffsetY = clipInt(_ImageZoomOffsetY, 360, -360);
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}
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else if (CCstatus.CamSensor_id == OV3660_PID)
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{
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CCstatus.ImageZoomOffsetY = clipInt(_ImageZoomOffsetY, 528, -528);
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}
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else if (CCstatus.CamSensor_id == OV5640_PID)
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{
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CCstatus.ImageZoomOffsetY = clipInt(_ImageZoomOffsetY, 720, -720);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "CAMZOOMSIZE") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int _ImageZoomSize = std::stoi(splitted[1]);
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if (CCstatus.CamSensor_id == OV2640_PID)
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{
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CCstatus.ImageZoomSize = clipInt(_ImageZoomSize, 29, 0);
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}
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else if (CCstatus.CamSensor_id == OV3660_PID)
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{
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CCstatus.ImageZoomSize = clipInt(_ImageZoomSize, 43, 0);
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}
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else if (CCstatus.CamSensor_id == OV5640_PID)
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{
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CCstatus.ImageZoomSize = clipInt(_ImageZoomSize, 59, 0);
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}
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}
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}
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else if ((toUpper(splitted[0]) == "LEDINTENSITY") && (splitted.size() > 1))
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{
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if (isStringNumeric(splitted[1]))
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{
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int ledintensity = std::stoi(splitted[1]);
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CCstatus.ImageLedIntensity = Camera.SetLEDIntensity(ledintensity);
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}
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}
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else if ((toUpper(splitted[0]) == "DEMO") && (splitted.size() > 1))
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{
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CCstatus.DemoMode = alphanumericToBoolean(splitted[1]);
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if (CCstatus.DemoMode == true)
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{
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Camera.useDemoMode();
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}
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}
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}
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Camera.setSensorDatenFromCCstatus(); // CCstatus >>> Kamera
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Camera.SetQualityZoomSize(CCstatus.ImageQuality, CCstatus.ImageFrameSize, CCstatus.ImageZoomEnabled, CCstatus.ImageZoomOffsetX, CCstatus.ImageZoomOffsetY, CCstatus.ImageZoomSize, CCstatus.ImageVflip);
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rawImage = new CImageBasis("rawImage");
|
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rawImage->CreateEmptyImage(CCstatus.ImageWidth, CCstatus.ImageHeight, 3);
|
|
|
|
return true;
|
|
}
|
|
|
|
ClassFlowTakeImage::ClassFlowTakeImage(std::vector<ClassFlow *> *lfc) : ClassFlowImage(lfc, TAG)
|
|
{
|
|
imagesLocation = "/log/source";
|
|
imagesRetention = 5;
|
|
SetInitialParameter();
|
|
}
|
|
|
|
string ClassFlowTakeImage::getHTMLSingleStep(string host)
|
|
{
|
|
string result;
|
|
result = "Raw Image: <br>\n<img src=\"" + host + "/img_tmp/raw.jpg\">\n";
|
|
return result;
|
|
}
|
|
|
|
// wird bei jeder Auswertrunde aufgerufen
|
|
bool ClassFlowTakeImage::doFlow(string zwtime)
|
|
{
|
|
psram_init_shared_memory_for_take_image_step();
|
|
|
|
string logPath = CreateLogFolder(zwtime);
|
|
|
|
int flash_duration = (int)(CCstatus.WaitBeforePicture * 1000);
|
|
|
|
#ifdef DEBUG_DETAIL_ON
|
|
LogFile.WriteHeapInfo("ClassFlowTakeImage::doFlow - Before takePictureWithFlash");
|
|
#endif
|
|
|
|
#ifdef WIFITURNOFF
|
|
esp_wifi_stop(); // to save power usage and
|
|
#endif
|
|
|
|
// wenn die Kameraeinstellungen durch Erstellen eines neuen Referenzbildes verändert wurden, müssen sie neu gesetzt werden
|
|
if (CFstatus.changedCameraSettings)
|
|
{
|
|
Camera.setSensorDatenFromCCstatus(); // CCstatus >>> Kamera
|
|
Camera.SetQualityZoomSize(CCstatus.ImageQuality, CCstatus.ImageFrameSize, CCstatus.ImageZoomEnabled, CCstatus.ImageZoomOffsetX, CCstatus.ImageZoomOffsetY, CCstatus.ImageZoomSize, CCstatus.ImageVflip);
|
|
Camera.LedIntensity = CCstatus.ImageLedIntensity;
|
|
CFstatus.changedCameraSettings = false;
|
|
}
|
|
|
|
takePictureWithFlash(flash_duration);
|
|
|
|
#ifdef WIFITURNOFF
|
|
esp_wifi_start();
|
|
#endif
|
|
|
|
#ifdef DEBUG_DETAIL_ON
|
|
LogFile.WriteHeapInfo("ClassFlowTakeImage::doFlow - After takePictureWithFlash");
|
|
#endif
|
|
|
|
LogImage(logPath, "raw", NULL, NULL, zwtime, rawImage);
|
|
|
|
RemoveOldLogs();
|
|
|
|
#ifdef DEBUG_DETAIL_ON
|
|
LogFile.WriteHeapInfo("ClassFlowTakeImage::doFlow - After RemoveOldLogs");
|
|
#endif
|
|
|
|
psram_deinit_shared_memory_for_take_image_step();
|
|
|
|
return true;
|
|
}
|
|
|
|
esp_err_t ClassFlowTakeImage::SendRawJPG(httpd_req_t *req)
|
|
{
|
|
int flash_duration = (int)(CCstatus.WaitBeforePicture * 1000);
|
|
time(&TimeImageTaken);
|
|
localtime(&TimeImageTaken);
|
|
|
|
return Camera.CaptureToHTTP(req, flash_duration);
|
|
}
|
|
|
|
ImageData *ClassFlowTakeImage::SendRawImage(void)
|
|
{
|
|
CImageBasis *zw = new CImageBasis("SendRawImage", rawImage);
|
|
ImageData *id;
|
|
int flash_duration = (int)(CCstatus.WaitBeforePicture * 1000);
|
|
Camera.CaptureToBasisImage(zw, flash_duration);
|
|
time(&TimeImageTaken);
|
|
localtime(&TimeImageTaken);
|
|
|
|
id = zw->writeToMemoryAsJPG();
|
|
delete zw;
|
|
return id;
|
|
}
|
|
|
|
time_t ClassFlowTakeImage::getTimeImageTaken(void)
|
|
{
|
|
return TimeImageTaken;
|
|
}
|
|
|
|
ClassFlowTakeImage::~ClassFlowTakeImage(void)
|
|
{
|
|
delete rawImage;
|
|
}
|