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https://github.com/0015/ThatProject.git
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179 lines
5.1 KiB
C++
179 lines
5.1 KiB
C++
/////////////////////////////////////////////////////////////////
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/*
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Tic Tac Camera Using ESP32CAM And Wireless Charging
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Video Tutorial: https://youtu.be/hteut2R8eQ0
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Created by Eric N. (ThatProject)
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*/
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/////////////////////////////////////////////////////////////////
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/*********
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Rui Santos
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Complete project details at https://RandomNerdTutorials.com/esp32-cam-take-photo-save-microsd-card
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IMPORTANT!!!
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- Select Board "AI Thinker ESP32-CAM"
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- GPIO 0 must be connected to GND to upload a sketch
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- After connecting GPIO 0 to GND, press the ESP32-CAM on-board RESET button to put your board in flashing mode
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files.
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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*********/
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#include "esp_camera.h"
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#include "Arduino.h"
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#include "FS.h" // SD Card ESP32
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#include "SD_MMC.h" // SD Card ESP32
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#include "soc/soc.h" // Disable brownour problems
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#include "soc/rtc_cntl_reg.h" // Disable brownour problems
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#include "driver/rtc_io.h"
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#include <EEPROM.h> // read and write from flash memory
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// define the number of bytes you want to access
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#define EEPROM_SIZE 4
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// Pin definition for CAMERA_MODEL_AI_THINKER
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#define PWDN_GPIO_NUM 32
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#define RESET_GPIO_NUM -1
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#define XCLK_GPIO_NUM 0
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#define SIOD_GPIO_NUM 26
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#define SIOC_GPIO_NUM 27
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#define Y9_GPIO_NUM 35
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#define Y8_GPIO_NUM 34
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#define Y7_GPIO_NUM 39
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#define Y6_GPIO_NUM 36
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#define Y5_GPIO_NUM 21
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#define Y4_GPIO_NUM 19
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#define Y3_GPIO_NUM 18
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#define Y2_GPIO_NUM 5
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#define VSYNC_GPIO_NUM 25
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#define HREF_GPIO_NUM 23
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#define PCLK_GPIO_NUM 22
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int pictureNumber = 0;
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void setup() {
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WRITE_PERI_REG(RTC_CNTL_BROWN_OUT_REG, 0); //disable brownout detector
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Serial.begin(115200);
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camera_config_t config;
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config.ledc_channel = LEDC_CHANNEL_0;
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config.ledc_timer = LEDC_TIMER_0;
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config.pin_d0 = Y2_GPIO_NUM;
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config.pin_d1 = Y3_GPIO_NUM;
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config.pin_d2 = Y4_GPIO_NUM;
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config.pin_d3 = Y5_GPIO_NUM;
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config.pin_d4 = Y6_GPIO_NUM;
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config.pin_d5 = Y7_GPIO_NUM;
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config.pin_d6 = Y8_GPIO_NUM;
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config.pin_d7 = Y9_GPIO_NUM;
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config.pin_xclk = XCLK_GPIO_NUM;
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config.pin_pclk = PCLK_GPIO_NUM;
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config.pin_vsync = VSYNC_GPIO_NUM;
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config.pin_href = HREF_GPIO_NUM;
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config.pin_sscb_sda = SIOD_GPIO_NUM;
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config.pin_sscb_scl = SIOC_GPIO_NUM;
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config.pin_pwdn = PWDN_GPIO_NUM;
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config.pin_reset = RESET_GPIO_NUM;
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config.xclk_freq_hz = 10000000;
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config.pixel_format = PIXFORMAT_JPEG;
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config.frame_size = FRAMESIZE_VGA; // FRAMESIZE_ + QVGA|CIF|VGA|SVGA|XGA|SXGA|UXGA
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config.jpeg_quality = 10;
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config.fb_count = 2;
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// Init Camera
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esp_err_t err = esp_camera_init(&config);
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if (err != ESP_OK) {
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Serial.printf("Camera init failed with error 0x%x", err);
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return;
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}
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//Serial.println("Starting SD Card");
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if (!SD_MMC.begin()) {
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Serial.println("SD Card Mount Failed");
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return;
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}
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uint8_t cardType = SD_MMC.cardType();
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if (cardType == CARD_NONE) {
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Serial.println("No SD Card attached");
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return;
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}
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// initialize EEPROM with predefined size
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EEPROM.begin(EEPROM_SIZE);
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pictureNumber = EEPROMReadlong(0);
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if (pictureNumber < 0) {
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pictureNumber = 0;
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EEPROMWritelong(0, pictureNumber);
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}
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Serial.printf("The Picture Number: %d\n", pictureNumber);
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}
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void loop() {
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camera_fb_t *fb = NULL;
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// Take Picture with Camera
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fb = esp_camera_fb_get();
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if (!fb) {
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Serial.println("Camera capture failed");
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return;
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}
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// Path where new picture will be saved in SD Card
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String path = "/img_" + String(pictureNumber) + ".jpg";
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fs::FS &fs = SD_MMC;
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Serial.printf("Picture file name: %s\n", path.c_str());
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File file = fs.open(path.c_str(), FILE_WRITE);
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if (!file) {
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Serial.println("Failed to open file in writing mode");
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} else {
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file.write(fb->buf, fb->len); // payload (image), payload length
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Serial.printf("Saved file to path: %s\n", path.c_str());
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++pictureNumber;
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EEPROMWritelong(0, pictureNumber);
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}
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file.close();
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esp_camera_fb_return(fb);
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delay(1);
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}
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void EEPROMWritelong(int address, unsigned long value) {
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//Decomposition from a long to 4 bytes by using bitshift.
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//One = Most significant -> Four = Least significant byte
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byte four = (value & 0xFF);
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byte three = ((value >> 8) & 0xFF);
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byte two = ((value >> 16) & 0xFF);
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byte one = ((value >> 24) & 0xFF);
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//Write the 4 bytes into the eeprom memory.
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EEPROM.write(address, four);
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EEPROM.write(address + 1, three);
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EEPROM.write(address + 2, two);
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EEPROM.write(address + 3, one);
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EEPROM.commit();
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}
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//This function will return a 4 byte (32bit) long from the eeprom
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//at the specified address to adress + 3.
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unsigned long EEPROMReadlong(long address) {
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//Read the 4 bytes from the eeprom memory.
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long four = EEPROM.read(address);
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long three = EEPROM.read(address + 1);
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long two = EEPROM.read(address + 2);
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long one = EEPROM.read(address + 3);
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//Return the recomposed long by using bitshift.
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return ((four << 0) & 0xFF) + ((three << 8) & 0xFFFF) + ((two << 16) & 0xFFFFFF) + ((one << 24) & 0xFFFFFFFF);
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} |