mirror of
https://git.mirrors.martin98.com/https://github.com/luc-github/ESP3D.git
synced 2025-08-02 07:30:39 +08:00
237 lines
6.3 KiB
C++
237 lines
6.3 KiB
C++
// Test of time-stamp callback.
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// Set the callback with this statement.
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// FsDateTime::setCallback(dateTime);
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#include "SdFat.h"
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using namespace sdfat;
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// https://github.com/adafruit/RTClib
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#include "RTClib.h"
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// Set RTC_TYPE for file timestamps.
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// 0 - millis()
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// 1 - DS1307
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// 2 - DS3231
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// 3 - PCF8523
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#define RTC_TYPE 3
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// SD_FAT_TYPE = 0 for SdFat/File as defined in SdFatConfig.h,
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// 1 for FAT16/FAT32, 2 for exFAT, 3 for FAT16/FAT32 and exFAT.
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#define SD_FAT_TYPE 1
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/*
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Change the value of SD_CS_PIN if you are using SPI and
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your hardware does not use the default value, SS.
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Common values are:
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Arduino Ethernet shield: pin 4
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Sparkfun SD shield: pin 8
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Adafruit SD shields and modules: pin 10
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*/
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// SDCARD_SS_PIN is defined for the built-in SD on some boards.
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#ifndef SDCARD_SS_PIN
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const uint8_t SD_CS_PIN = SS;
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#else // SDCARD_SS_PIN
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// Assume built-in SD is used.
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const uint8_t SD_CS_PIN = SDCARD_SS_PIN;
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#endif // SDCARD_SS_PIN
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// Try to select the best SD card configuration.
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#if HAS_SDIO_CLASS
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#define SD_CONFIG SdioConfig(FIFO_SDIO)
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#elif ENABLE_DEDICATED_SPI
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#define SD_CONFIG SdSpiConfig(SD_CS_PIN, DEDICATED_SPI)
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#else // HAS_SDIO_CLASS
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#define SD_CONFIG SdSpiConfig(SD_CS_PIN, SHARED_SPI)
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#endif // HAS_SDIO_CLASS
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#if SD_FAT_TYPE == 0
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SdFat sd;
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File file;
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#elif SD_FAT_TYPE == 1
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SdFat32 sd;
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File32 file;
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#elif SD_FAT_TYPE == 2
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SdExFat sd;
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ExFile file;
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#elif SD_FAT_TYPE == 3
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SdFs sd;
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FsFile file;
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#else // SD_FAT_TYPE
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#error Invalid SD_FAT_TYPE
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#endif // SD_FAT_TYPE
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#if RTC_TYPE == 0
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RTC_Millis rtc;
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#elif RTC_TYPE == 1
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RTC_DS1307 rtc;
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#elif RTC_TYPE == 2
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RTC_DS3231 rtc;
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#elif RTC_TYPE == 3
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RTC_PCF8523 rtc;
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#else // RTC_TYPE == type
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#error RTC_TYPE type not implemented.
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#endif // RTC_TYPE == type
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//------------------------------------------------------------------------------
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// Call back for file timestamps. Only called for file create and sync().
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void dateTime(uint16_t* date, uint16_t* time, uint8_t* ms10) {
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DateTime now = rtc.now();
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// Return date using FS_DATE macro to format fields.
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*date = FS_DATE(now.year(), now.month(), now.day());
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// Return time using FS_TIME macro to format fields.
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*time = FS_TIME(now.hour(), now.minute(), now.second());
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// Return low time bits in units of 10 ms, 0 <= ms10 <= 199.
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*ms10 = now.second() & 1 ? 100 : 0;
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}
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//------------------------------------------------------------------------------
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#define error(msg) (Serial.println(F("error " msg)), false)
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//------------------------------------------------------------------------------
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void clearSerialInput() {
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uint32_t m = micros();
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do {
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if (Serial.read() >= 0) {
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m = micros();
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}
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} while (micros() - m < 10000);
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}
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//------------------------------------------------------------------------------
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void getLine(char* line, size_t size) {
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size_t i = 0;
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uint32_t t;
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line[0] = '\0';
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while (!Serial.available()) {
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yield();
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}
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while (true) {
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t = millis() + 10;
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while (!Serial.available()) {
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if (millis() > t){
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return;
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}
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}
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int c = Serial.read();
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if (i >= (size - 1) || c == '\r' || c == '\n' ) {
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return;
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}
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line[i++] = c;
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line[i] = '\0';
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}
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}
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//------------------------------------------------------------------------------
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void printField(Print* pr, char sep, uint8_t v) {
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if (sep) {
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pr->write(sep);
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}
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if (v < 10) {
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pr->write('0');
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}
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pr->print(v);
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}
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//------------------------------------------------------------------------------
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void printNow(Print* pr) {
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DateTime now = rtc.now();
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pr->print(now.year());
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printField(pr, '-',now.month());
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printField(pr, '-',now.day());
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printField(pr, ' ',now.hour());
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printField(pr, ':',now.minute());
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printField(pr, ':',now.second());
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}
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//------------------------------------------------------------------------------
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bool setRtc() {
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uint16_t y;
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uint8_t m, d, hh, mm, ss;
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char line[30];
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char* ptr;
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clearSerialInput();
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Serial.println(F("Enter: YYYY-MM-DD hh:mm:ss"));
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getLine(line, sizeof(line));
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Serial.print(F("Input: "));
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Serial.println(line);
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y = strtol(line, &ptr, 0);
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if (*ptr++ != '-' || y < 2000 || y > 2099) return error("year");
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m = strtol(ptr, &ptr, 0);
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if (*ptr++ != '-' || m < 1 || m > 12) return error("month");
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d = strtol(ptr, &ptr, 0);
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if (d < 1 || d > 31) return error("day");
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hh = strtol(ptr, &ptr, 0);
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if (*ptr++ != ':' || hh > 23) return error("hour");
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mm = strtol(ptr, &ptr, 0);
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if (*ptr++ != ':' || mm > 59) return error("minute");
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ss = strtol(ptr, &ptr, 0);
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if (ss > 59) return error("second");
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rtc.adjust(DateTime(y, m, d, hh, mm, ss));
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Serial.print(F("RTC set to "));
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printNow(&Serial);
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Serial.println();
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return true;
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}
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//------------------------------------------------------------------------------
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void setup() {
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Serial.begin(9600);
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while (!Serial) {
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yield();
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}
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#if RTC_TYPE == 0
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rtc.begin(DateTime(F(__DATE__), F(__TIME__)));
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#else // RTC_TYPE
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if (!rtc.begin()) {
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Serial.println(F("rtc.begin failed"));
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return;
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}
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if (!rtc.isrunning()) {
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Serial.println(F("RTC is NOT running!"));
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return;
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// following line sets the RTC to the date & time this sketch was compiled
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// rtc.adjust(DateTime(F(__DATE__), F(__TIME__)));
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// This line sets the RTC with an explicit date & time, for example to set
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// January 21, 2014 at 3am you would call:
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// rtc.adjust(DateTime(2014, 1, 21, 3, 0, 0));
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}
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#endif // RTC_TYPE
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while (true) {
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Serial.print(F("DateTime::now "));
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printNow(&Serial);
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Serial.println();
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clearSerialInput();
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Serial.println(F("Type Y to set RTC, any other character to continue"));
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while (!Serial.available()) {}
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if (Serial.read() != 'Y') break;
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if (setRtc()) break;
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}
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Serial.println();
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// Set callback
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FsDateTime::setCallback(dateTime);
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if (!sd.begin(SD_CONFIG)) {
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sd.initErrorHalt(&Serial);
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}
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// Remove old version to set create time.
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if (sd.exists("RtcTest.txt")) {
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sd.remove("RtcTest.txt");
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}
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if (!file.open("RtcTest.txt", FILE_WRITE)) {
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Serial.println(F("file.open failed"));
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return;
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}
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// Print current date time to file.
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file.print(F("Test file at: "));
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printNow(&file);
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file.println();
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file.close();
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// List files in SD root.
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sd.ls(LS_DATE | LS_SIZE);
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Serial.println(F("Done"));
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}
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//------------------------------------------------------------------------------
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void loop() {
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}
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