/* * SPDX-FileCopyrightText: 2025 M5Stack Technology CO LTD * * SPDX-License-Identifier: MIT */ /* Example using M5UnitUnified for ST25R3916 Detect NFC-V PICC */ #include #include #include #include #include // ************************************************************* // Choose one define symbol to match the unit you are using // ************************************************************* #if !defined(USING_UNIT_NFC) && !defined(USING_CAP_CC1101) // For UnitNFC // #define USING_UNIT_NFC // For CapNFC // #define USING_CAP_CC1101 #endif using namespace m5::nfc; using namespace m5::nfc::v; namespace { auto& lcd = M5.Display; m5::unit::UnitUnified Units; #if defined(USING_UNIT_NFC) #pragma message "Choose UnitNFC" m5::unit::UnitNFC unit{}; // I2C #elif defined(USING_CAP_CC1101) #pragma message "Choose CapCC1101NFC" m5::unit::CapCC1101NFC unit{}; // CapCC1101 (SPI) #else #error Choose unit please! #endif m5::nfc::NFCLayerV nfc_v{unit}; } // namespace void setup() { M5.begin(); M5.setTouchButtonHeightByRatio(100); auto cfg = unit.config(); cfg.mode = NFC::V; unit.config(cfg); #if defined(USING_UNIT_NFC) auto board = M5.getBoard(); bool unit_ready{}; // NessoN1: SoftwareI2C too slow for NFC RF timing -> use port_a (Wire) via else branch if (board == m5::board_t::board_M5NanoC6) { M5_LOGI("Using M5.Ex_I2C"); unit_ready = Units.add(unit, M5.Ex_I2C) && Units.begin(); } else { auto pin_num_sda = M5.getPin(m5::pin_name_t::port_a_sda); auto pin_num_scl = M5.getPin(m5::pin_name_t::port_a_scl); M5_LOGI("getPin: SDA:%u SCL:%u", pin_num_sda, pin_num_scl); Wire.end(); Wire.begin(pin_num_sda, pin_num_scl, 400 * 1000U); unit_ready = Units.add(unit, Wire) && Units.begin(); } if (!unit_ready) { M5_LOGE("Failed to begin"); lcd.fillScreen(TFT_RED); while (true) { m5::utility::delay(10000); } } #elif defined(USING_CAP_CC1101) if (!SPI.bus()) { auto spi_sclk = M5.getPin(m5::pin_name_t::sd_spi_sclk); auto spi_mosi = M5.getPin(m5::pin_name_t::sd_spi_mosi); auto spi_miso = M5.getPin(m5::pin_name_t::sd_spi_miso); M5_LOGI("getPin: %d,%d,%d", spi_sclk, spi_mosi, spi_miso); SPI.begin(spi_sclk, spi_miso, spi_mosi /* SS is shared SD, CC1101, ST25R3916 */); } SPISettings settings = {10000000, MSBFIRST, SPI_MODE1}; if (!Units.add(unit, SPI, settings) || !Units.begin()) { M5_LOGE("Failed to begin"); lcd.fillScreen(TFT_RED); while (true) { m5::utility::delay(10000); } } #endif M5_LOGI("M5UnitUnified initialized"); M5_LOGI("%s", Units.debugInfo().c_str()); if (lcd.height() > lcd.width()) { lcd.setRotation(1); } lcd.setFont(&fonts::Font0); lcd.fillScreen(TFT_DARKGREEN); lcd.setCursor(0, 0); } void loop() { M5.update(); Units.update(); std::vector piccs; if (nfc_v.detect(piccs)) { M5.Speaker.tone(3000, 10); lcd.fillScreen(0); lcd.setCursor(0, 0); lcd.printf("%zu PICC\n", piccs.size()); M5.Log.printf("%zu PICC\n", piccs.size()); uint32_t idx{}; for (auto&& u : piccs) { M5.Log.printf("PICC:%s %s %u\n", u.uidAsString().c_str(), u.typeAsString().c_str(), u.totalSize()); lcd.printf("[%2u]:PICC:<%s> %s\n", static_cast(idx), u.uidAsString().c_str(), u.typeAsString().c_str()); ++idx; } } }