the-cup/the-cup.ino
Christophe Robillard 4e59d647aa use rgb led
2026-07-29 14:22:46 +02:00

188 lines
5.7 KiB
C++

/* Pin layout used:
* -----------------------------------------------------------------------------------------
* MFRC522 ESP32C6
* Reader/PCD Feather
* Signal Pin Pin
* -----------------------------------------------------------------------------------------
* SPI SS 1 SDA(SS) SDA/4
* SPI SCK SCK SCK
* SPI MOSI MOSI MOSI
* SPI MISO MISO MISO
*
*/
#include <WiFiManager.h> // https://github.com/tzapu/WiFiManager
#include <HTTPClient.h>
#include <MFRC522v2.h> // https://github.com/OSSLibraries/Arduino_MFRC522v2
#include <MFRC522DriverSPI.h>
#include <MFRC522DriverPinSimple.h>
#include <MFRC522Debug.h>
#define SS_PIN SDA
#define DEBUG
const int RED_PIN = 5;
const int GREEN_PIN = 6;
const int BLUE_PIN = 7;
MFRC522DriverPinSimple ss_1_pin(SS_PIN); // Configurable, take an unused pin, only HIGH/LOW required, must be different to SS 2.
MFRC522DriverSPI driver_1{ss_1_pin};
MFRC522 reader{driver_1}; // Create MFRC522 instance.
const char *rootCACertificate = R"string_literal(
-----BEGIN CERTIFICATE-----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=
-----END CERTIFICATE-----
)string_literal";
void read_card(char reader_uid[]);
void send_uid(char reader_uid[]);
void setup() {
#ifdef DEBUG
Serial.begin(115200);
while (!Serial) delay(10);
#endif
reader.PCD_Init(); // Init each MFRC522 card.
#ifdef DEBUG
MFRC522Debug::PCD_DumpVersionToSerial(reader, Serial); // Show details of PCD - MFRC522 Card Reader details.
#endif
}
void loop() {
if (reader.PICC_IsNewCardPresent() && reader.PICC_ReadCardSerial()) {
char reader_uid[32] = "";
readCard(reader_uid);
sendUid(reader_uid);
}
else {
delay(200);
}
}
void readCard(char reader_uid[]) {
reader.PICC_HaltA();
reader.PCD_StopCrypto1();
byte_to_string(reader.uid.uidByte, 4, reader_uid);
#ifdef DEBUG
Serial.println(reader_uid);
#endif
displaySuccess();
}
void sendUid(char reader_uid[]) {
connectToWifi();
postUid(reader_uid);
}
void connectToWifi() {
WiFiManager wm;
bool res;
res = wm.autoConnect("KLUK"); // password protected ap
if(!res) {
#ifdef DEBUG
Serial.println("Failed to connect");
#endif
displayError();
// ESP.restart();
}
else {
//if you get here you have connected to the WiFi
#ifdef DEBUG
Serial.println("connected...yeey :)");
#endif
}
}
void postUid(char reader_uid[]) {
NetworkClientSecure *client = new NetworkClientSecure;
client->setCACert(rootCACertificate);
HTTPClient https;
#ifdef DEBUG
Serial.print("[HTTPS] begin...\n");
#endif
// configure traged server and url
https.begin("https://robi.kluk.fr/rfid_tags"); // HTTP
https.addHeader("Content-Type", "application/json");
// start connection and send HTTP header and body
int httpCode = https.POST("{\"identifier\":\"" + String(reader_uid) + "\"}");
#ifdef DEBUG
Serial.print("httpCode: ");
Serial.println(httpCode);
#endif
if (httpCode > 0) {
if (httpCode == HTTP_CODE_CREATED) {
} else {
#ifdef DEBUG
Serial.println("Remote error while sending uid");
#endif
displayError();
}
} else {
#ifdef DEBUG
Serial.print("Remote error while sending uid");
#endif
displayError();
}
https.end();
#ifdef DEBUG
Serial.print("[HTTPS] ended...\n");
#endif
}
void byte_to_string(byte array[], unsigned int len, char buffer[]) {
for (unsigned int i = 0; i < len; i++)
{
byte nib1 = (array[i] >> 4) & 0x0F;
byte nib2 = (array[i] >> 0) & 0x0F;
buffer[i*2+0] = nib1 < 0xA ? '0' + nib1 : 'A' + nib1 - 0xA;
buffer[i*2+1] = nib2 < 0xA ? '0' + nib2 : 'A' + nib2 - 0xA;
}
buffer[len*2] = '\0';
}
void displayError() {
analogWrite(RED_PIN, 200);
delay(1000);
analogWrite(RED_PIN, 0);
}
void displaySuccess() {
analogWrite(GREEN_PIN, 200);
delay(1000);
analogWrite(GREEN_PIN, 0);
}