mirror of
https://github.com/jomjol/AI-on-the-edge-device.git
synced 2025-12-07 20:16:55 +03:00
604 lines
15 KiB
C++
604 lines
15 KiB
C++
#include "ClassControllCamera.h"
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#include "ClassLogFile.h"
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#include <stdio.h>
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#include "driver/gpio.h"
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#include "esp_timer.h"
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#include "esp_log.h"
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#include "Helper.h"
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#include "CImageBasis.h"
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#define BOARD_ESP32CAM_AITHINKER
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#include <esp_event_loop.h>
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#include <esp_log.h>
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#include <esp_system.h>
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#include <nvs_flash.h>
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#include <sys/param.h>
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#include <string.h>
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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#include "esp_camera.h"
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// #define DEBUG_DETAIL_ON
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// ESP32Cam (AiThinker) PIN Map
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#define CAM_PIN_PWDN (gpio_num_t) 32
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#define CAM_PIN_RESET -1 //software reset will be performed
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#define CAM_PIN_XCLK 0
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#define CAM_PIN_SIOD 26
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#define CAM_PIN_SIOC 27
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#define CAM_PIN_D7 35
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#define CAM_PIN_D6 34
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#define CAM_PIN_D5 39
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#define CAM_PIN_D4 36
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#define CAM_PIN_D3 21
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#define CAM_PIN_D2 19
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#define CAM_PIN_D1 18
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#define CAM_PIN_D0 5
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#define CAM_PIN_VSYNC 25
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#define CAM_PIN_HREF 23
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#define CAM_PIN_PCLK 22
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static const char *TAG = "example:take_picture";
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static camera_config_t camera_config = {
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.pin_pwdn = CAM_PIN_PWDN,
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.pin_reset = CAM_PIN_RESET,
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.pin_xclk = CAM_PIN_XCLK,
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.pin_sscb_sda = CAM_PIN_SIOD,
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.pin_sscb_scl = CAM_PIN_SIOC,
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.pin_d7 = CAM_PIN_D7,
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.pin_d6 = CAM_PIN_D6,
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.pin_d5 = CAM_PIN_D5,
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.pin_d4 = CAM_PIN_D4,
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.pin_d3 = CAM_PIN_D3,
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.pin_d2 = CAM_PIN_D2,
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.pin_d1 = CAM_PIN_D1,
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.pin_d0 = CAM_PIN_D0,
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.pin_vsync = CAM_PIN_VSYNC,
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.pin_href = CAM_PIN_HREF,
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.pin_pclk = CAM_PIN_PCLK,
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//XCLK 20MHz or 10MHz for OV2640 double FPS (Experimental)
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// .xclk_freq_hz = 20000000, // Orginalwert
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.xclk_freq_hz = 5000000, // Test, um die Bildfehler los zu werden !!!!
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.ledc_timer = LEDC_TIMER_0,
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.ledc_channel = LEDC_CHANNEL_0,
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.pixel_format = PIXFORMAT_JPEG, //YUV422,GRAYSCALE,RGB565,JPEG
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.frame_size = FRAMESIZE_VGA, //QQVGA-UXGA Do not use sizes above QVGA when not JPEG
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// .frame_size = FRAMESIZE_UXGA, //QQVGA-UXGA Do not use sizes above QVGA when not JPEG
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.jpeg_quality = 5, //0-63 lower number means higher quality
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.fb_count = 1 //if more than one, i2s runs in continuous mode. Use only with JPEG
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};
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#include "driver/ledc.h"
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CCamera Camera;
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#define FLASH_GPIO GPIO_NUM_4
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#define BLINK_GPIO GPIO_NUM_33
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typedef struct {
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httpd_req_t *req;
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size_t len;
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} jpg_chunking_t;
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#define LEDC_LS_CH2_GPIO (4)
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#define LEDC_LS_CH2_CHANNEL LEDC_CHANNEL_2
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#define LEDC_LS_TIMER LEDC_TIMER_1
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#define LEDC_LS_MODE LEDC_LOW_SPEED_MODE
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#define LEDC_TEST_DUTY (4000)
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void test(){
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ledc_channel_config_t ledc_channel = { };
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ledc_channel.channel = LEDC_LS_CH2_CHANNEL;
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ledc_channel.duty = 0;
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ledc_channel.gpio_num = FLASH_GPIO;
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ledc_channel.speed_mode = LEDC_LS_MODE;
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ledc_channel.hpoint = 0;
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ledc_channel.timer_sel = LEDC_LS_TIMER;
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ledc_channel_config(&ledc_channel);
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ledc_set_duty(ledc_channel.speed_mode, ledc_channel.channel, LEDC_TEST_DUTY);
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ledc_update_duty(ledc_channel.speed_mode, ledc_channel.channel);
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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};
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static size_t jpg_encode_stream(void * arg, size_t index, const void* data, size_t len){
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jpg_chunking_t *j = (jpg_chunking_t *)arg;
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if(!index){
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j->len = 0;
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}
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if(httpd_resp_send_chunk(j->req, (const char *)data, len) != ESP_OK){
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return 0;
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}
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j->len += len;
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return len;
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}
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bool CCamera::SetBrightnessContrastSaturation(int _brightness, int _contrast, int _saturation)
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{
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bool result = false;
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sensor_t * s = esp_camera_sensor_get();
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if (_brightness > -100)
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_brightness = min(2, max(-2, _brightness));
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if (_contrast > -100)
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_contrast = min(2, max(-2, _contrast));
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// _saturation = min(2, max(-2, _saturation));
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// s->set_saturation(s, _saturation);
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if (_contrast > -100)
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s->set_contrast(s, _contrast);
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if (_brightness > -100)
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s->set_brightness(s, _brightness);
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if ((_brightness != brightness) && (_brightness > -100))
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result = true;
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if ((_contrast != contrast) && (_contrast > -100))
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result = true;
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if ((_saturation != saturation) && (_saturation > -100))
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result = true;
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if (_brightness > -100)
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brightness = _brightness;
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if (_contrast > -100)
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contrast = _contrast;
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if (_saturation > -100)
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saturation = _saturation;
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if (result && isFixedExposure)
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EnableAutoExposure(waitbeforepicture_org);
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return result;
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}
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void CCamera::SetQualitySize(int qual, framesize_t resol)
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{
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sensor_t * s = esp_camera_sensor_get();
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s->set_quality(s, qual);
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s->set_framesize(s, resol);
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ActualResolution = resol;
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ActualQuality = qual;
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if (resol == FRAMESIZE_QVGA)
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{
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image_height = 240;
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image_width = 320;
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}
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if (resol == FRAMESIZE_VGA)
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{
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image_height = 480;
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image_width = 640;
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}
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// No higher Mode than VGA, damit der Kameraspeicher ausreicht.
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/*
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if (resol == FRAMESIZE_SVGA)
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{
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image_height = 600;
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image_width = 800;
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}
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if (resol == FRAMESIZE_XGA)
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{
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image_height = 768;
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image_width = 1024;
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}
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if (resol == FRAMESIZE_SXGA)
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{
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image_height = 1024;
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image_width = 1280;
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}
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if (resol == FRAMESIZE_UXGA)
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{
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image_height = 1200;
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image_width = 1600;
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}
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*/
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}
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void CCamera::EnableAutoExposure(int flashdauer)
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{
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LEDOnOff(true);
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LightOnOff(true);
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const TickType_t xDelay = flashdauer / portTICK_PERIOD_MS;
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vTaskDelay( xDelay );
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camera_fb_t * fb = esp_camera_fb_get();
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if (!fb) {
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ESP_LOGE(TAGCAMERACLASS, "Camera Capture Failed");
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}
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esp_camera_fb_return(fb);
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sensor_t * s = esp_camera_sensor_get();
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s->set_gain_ctrl(s, 0);
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s->set_exposure_ctrl(s, 0);
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LEDOnOff(false);
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LightOnOff(false);
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isFixedExposure = true;
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waitbeforepicture_org = flashdauer;
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}
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esp_err_t CCamera::CaptureToBasisImage(CImageBasis *_Image, int delay)
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{
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string ftype;
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uint8_t *zwischenspeicher = NULL;
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LEDOnOff(true);
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - Start");
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#endif
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if (delay > 0)
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{
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LightOnOff(true);
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const TickType_t xDelay = delay / portTICK_PERIOD_MS;
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vTaskDelay( xDelay );
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}
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - After LightOn");
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#endif
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camera_fb_t * fb = esp_camera_fb_get();
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if (!fb) {
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ESP_LOGE(TAGCAMERACLASS, "Camera Capture Failed");
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LEDOnOff(false);
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return ESP_FAIL;
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}
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int _size = fb->len;
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zwischenspeicher = (uint8_t*) malloc(_size);
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for (int i = 0; i < _size; ++i)
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*(zwischenspeicher + i) = *(fb->buf + i);
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esp_camera_fb_return(fb);
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - After fb_get");
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#endif
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LEDOnOff(false);
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if (delay > 0)
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LightOnOff(false);
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// TickType_t xDelay = 1000 / portTICK_PERIOD_MS;
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// vTaskDelay( xDelay ); // wait for power to recover
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uint8_t * buf = NULL;
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CImageBasis _zwImage;
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_zwImage.LoadFromMemory(zwischenspeicher, _size);
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free(zwischenspeicher);
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - After LoadFromMemory");
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#endif
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stbi_uc* p_target;
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stbi_uc* p_source;
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int channels = 3;
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int width = image_width;
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int height = image_height;
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#ifdef DEBUG_DETAIL_ON
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std::string _zw = "Targetimage: " + std::to_string((int) _Image->rgb_image) + " Size: " + std::to_string(_Image->width) + ", " + std::to_string(_Image->height);
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_zw = _zw + " _zwImage: " + std::to_string((int) _zwImage.rgb_image) + " Size: " + std::to_string(_zwImage.width) + ", " + std::to_string(_zwImage.height);
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LogFile.WriteToFile(_zw);
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#endif
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for (int x = 0; x < width; ++x)
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for (int y = 0; y < height; ++y)
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{
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p_target = _Image->rgb_image + (channels * (y * width + x));
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p_source = _zwImage.rgb_image + (channels * (y * width + x));
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p_target[0] = p_source[0];
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p_target[1] = p_source[1];
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p_target[2] = p_source[2];
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}
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - After Copy To Target");
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#endif
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free(buf);
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#ifdef DEBUG_DETAIL_ON
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LogFile.WriteHeapInfo("CCamera::CaptureToBasisImage - Done");
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#endif
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return ESP_OK;
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}
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esp_err_t CCamera::CaptureToFile(std::string nm, int delay)
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{
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string ftype;
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LEDOnOff(true); // Abgeschaltet, um Strom zu sparen !!!!!!
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if (delay > 0)
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{
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LightOnOff(true);
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const TickType_t xDelay = delay / portTICK_PERIOD_MS;
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vTaskDelay( xDelay );
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}
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camera_fb_t * fb = esp_camera_fb_get();
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if (!fb) {
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ESP_LOGE(TAGCAMERACLASS, "Camera Capture Failed");
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LEDOnOff(false);
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return ESP_FAIL;
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}
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LEDOnOff(false);
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#ifdef DEBUG_DETAIL_ON
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printf("w %d, h %d, size %d\n", fb->width, fb->height, fb->len);
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#endif
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nm = FormatFileName(nm);
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#ifdef DEBUG_DETAIL_ON
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printf("Save Camera to : %s\n", nm.c_str());
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#endif
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ftype = toUpper(getFileType(nm));
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#ifdef DEBUG_DETAIL_ON
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printf("Filetype: %s\n", ftype.c_str());
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#endif
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uint8_t * buf = NULL;
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size_t buf_len = 0;
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bool converted = false;
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if (ftype.compare("BMP") == 0)
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{
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frame2bmp(fb, &buf, &buf_len);
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converted = true;
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}
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if (ftype.compare("JPG") == 0)
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{
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if(fb->format != PIXFORMAT_JPEG){
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bool jpeg_converted = frame2jpg(fb, ActualQuality, &buf, &buf_len);
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converted = true;
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if(!jpeg_converted){
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ESP_LOGE(TAGCAMERACLASS, "JPEG compression failed");
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}
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} else {
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buf_len = fb->len;
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buf = fb->buf;
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}
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}
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FILE * fp = OpenFileAndWait(nm.c_str(), "wb");
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if (fp == NULL) /* If an error occurs during the file creation */
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{
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fprintf(stderr, "fopen() failed for '%s'\n", nm.c_str());
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}
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else
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{
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fwrite(buf, sizeof(uint8_t), buf_len, fp);
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fclose(fp);
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}
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if (converted)
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free(buf);
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esp_camera_fb_return(fb);
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if (delay > 0)
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{
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LightOnOff(false);
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}
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return ESP_OK;
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}
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esp_err_t CCamera::CaptureToHTTP(httpd_req_t *req, int delay)
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{
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camera_fb_t * fb = NULL;
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esp_err_t res = ESP_OK;
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size_t fb_len = 0;
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int64_t fr_start = esp_timer_get_time();
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LEDOnOff(true);
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if (delay > 0)
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{
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LightOnOff(true);
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const TickType_t xDelay = delay / portTICK_PERIOD_MS;
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vTaskDelay( xDelay );
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}
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fb = esp_camera_fb_get();
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if (!fb) {
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ESP_LOGE(TAGCAMERACLASS, "Camera capture failed");
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httpd_resp_send_500(req);
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return ESP_FAIL;
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}
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LEDOnOff(false);
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res = httpd_resp_set_type(req, "image/jpeg");
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if(res == ESP_OK){
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res = httpd_resp_set_hdr(req, "Content-Disposition", "inline; filename=raw.jpg");
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}
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if(res == ESP_OK){
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if(fb->format == PIXFORMAT_JPEG){
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fb_len = fb->len;
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res = httpd_resp_send(req, (const char *)fb->buf, fb->len);
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} else {
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jpg_chunking_t jchunk = {req, 0};
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res = frame2jpg_cb(fb, 80, jpg_encode_stream, &jchunk)?ESP_OK:ESP_FAIL;
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httpd_resp_send_chunk(req, NULL, 0);
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fb_len = jchunk.len;
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}
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}
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esp_camera_fb_return(fb);
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int64_t fr_end = esp_timer_get_time();
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ESP_LOGI(TAGCAMERACLASS, "JPG: %uKB %ums", (uint32_t)(fb_len/1024), (uint32_t)((fr_end - fr_start)/1000));
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if (delay > 0)
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{
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LightOnOff(false);
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}
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return res;
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}
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void CCamera::LightOnOff(bool status)
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{
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// Init the GPIO
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gpio_pad_select_gpio(FLASH_GPIO);
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/* Set the GPIO as a push/pull output */
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gpio_set_direction(FLASH_GPIO, GPIO_MODE_OUTPUT);
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if (status)
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gpio_set_level(FLASH_GPIO, 1);
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else
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gpio_set_level(FLASH_GPIO, 0);
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}
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void CCamera::LEDOnOff(bool status)
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{
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// Init the GPIO
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gpio_pad_select_gpio(BLINK_GPIO);
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/* Set the GPIO as a push/pull output */
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gpio_set_direction(BLINK_GPIO, GPIO_MODE_OUTPUT);
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if (!status)
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gpio_set_level(BLINK_GPIO, 1);
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else
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gpio_set_level(BLINK_GPIO, 0);
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}
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void CCamera::GetCameraParameter(httpd_req_t *req, int &qual, framesize_t &resol)
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{
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char _query[100];
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char _qual[10];
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char _size[10];
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resol = ActualResolution;
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qual = ActualQuality;
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if (httpd_req_get_url_query_str(req, _query, 100) == ESP_OK)
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{
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printf("Query: "); printf(_query); printf("\n");
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if (httpd_query_key_value(_query, "size", _size, 10) == ESP_OK)
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{
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#ifdef DEBUG_DETAIL_ON
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printf("Size: "); printf(_size); printf("\n");
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#endif
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if (strcmp(_size, "QVGA") == 0)
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resol = FRAMESIZE_QVGA; // 320x240
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if (strcmp(_size, "VGA") == 0)
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resol = FRAMESIZE_VGA; // 640x480
|
|
if (strcmp(_size, "SVGA") == 0)
|
|
resol = FRAMESIZE_SVGA; // 800x600
|
|
if (strcmp(_size, "XGA") == 0)
|
|
resol = FRAMESIZE_XGA; // 1024x768
|
|
if (strcmp(_size, "SXGA") == 0)
|
|
resol = FRAMESIZE_SXGA; // 1280x1024
|
|
if (strcmp(_size, "UXGA") == 0)
|
|
resol = FRAMESIZE_UXGA; // 1600x1200
|
|
}
|
|
if (httpd_query_key_value(_query, "quality", _qual, 10) == ESP_OK)
|
|
{
|
|
#ifdef DEBUG_DETAIL_ON
|
|
printf("Quality: "); printf(_qual); printf("\n");
|
|
#endif
|
|
qual = atoi(_qual);
|
|
|
|
if (qual > 63)
|
|
qual = 63;
|
|
if (qual < 0)
|
|
qual = 0;
|
|
}
|
|
};
|
|
}
|
|
|
|
framesize_t CCamera::TextToFramesize(const char * _size)
|
|
{
|
|
if (strcmp(_size, "QVGA") == 0)
|
|
return FRAMESIZE_QVGA; // 320x240
|
|
if (strcmp(_size, "VGA") == 0)
|
|
return FRAMESIZE_VGA; // 640x480
|
|
if (strcmp(_size, "SVGA") == 0)
|
|
return FRAMESIZE_SVGA; // 800x600
|
|
if (strcmp(_size, "XGA") == 0)
|
|
return FRAMESIZE_XGA; // 1024x768
|
|
if (strcmp(_size, "SXGA") == 0)
|
|
return FRAMESIZE_SXGA; // 1280x1024
|
|
if (strcmp(_size, "UXGA") == 0)
|
|
return FRAMESIZE_UXGA; // 1600x1200
|
|
return ActualResolution;
|
|
}
|
|
|
|
|
|
CCamera::CCamera()
|
|
{
|
|
#ifdef DEBUG_DETAIL_ON
|
|
printf("CreateClassCamera\n");
|
|
#endif
|
|
brightness = -5;
|
|
contrast = -5;
|
|
saturation = -5;
|
|
isFixedExposure = false;
|
|
}
|
|
|
|
esp_err_t CCamera::InitCam()
|
|
{
|
|
if(CAM_PIN_PWDN != -1){
|
|
// Init the GPIO
|
|
gpio_pad_select_gpio(CAM_PIN_PWDN);
|
|
/* Set the GPIO as a push/pull output */
|
|
gpio_set_direction(CAM_PIN_PWDN, GPIO_MODE_OUTPUT);
|
|
gpio_set_level(CAM_PIN_PWDN, 0);
|
|
}
|
|
|
|
printf("Init Camera\n");
|
|
ActualQuality = camera_config.jpeg_quality;
|
|
ActualResolution = camera_config.frame_size;
|
|
//initialize the camera
|
|
esp_err_t err = esp_camera_init(&camera_config);
|
|
if (err != ESP_OK) {
|
|
ESP_LOGE(TAGCAMERACLASS, "Camera Init Failed");
|
|
return err;
|
|
}
|
|
|
|
return ESP_OK;
|
|
} |