2019-06-10 15:05:30 +00:00
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/*
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SD card read/write
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This example shows how to read and write data to and from an SD card file
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The circuit:
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* SD card attached to SPI bus as follows:
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** MOSI - pin 11
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** MISO - pin 12
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** CLK - pin 13
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** CS - pin 9
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LED on pin 5
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This example code is in the public domain.
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*/
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#include <SPI.h>
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#include <SD.h>
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#define PIN_SPI_DATA 9
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#define PIN_SPI_CHIP_SELECT 3
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File myFile;
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void setup()
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{
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int i;
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2019-07-11 11:52:05 +00:00
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Serial.begin(115200);
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2019-06-10 15:05:30 +00:00
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Serial.println("\r\nHobbytronics Test Program for SD card...");
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Serial.println("Initializing SD card...");
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// On the Ethernet Shield, CS is pin 4. It's set as an output by default.
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// Note that even if it's not used as the CS pin, the hardware SS pin
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// (10 on most Arduino boards, 53 on the Mega) must be left as an output
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// or the SD library functions will not work.
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pinMode(PIN_SPI_CHIP_SELECT, OUTPUT);
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2019-06-12 12:38:21 +00:00
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2019-06-10 15:05:30 +00:00
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if (!SD.begin(PIN_SPI_DATA)) {
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Serial.println("initialization failed!");
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return;
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}
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Serial.println("initialization done.");
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if (SD.exists("test.txt"))
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SD.remove("test.txt");
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myFile = SD.open("test.txt", FILE_WRITE);
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// if the file opened okay, write to it:
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if (myFile) {
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Serial.println("Writing to test.txt...");
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Serial.println("Hobbytronics Test");
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for(i=0; i<20; i++)
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{
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myFile.println("Hobbytronics Test of file writing");
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}
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// close the file:
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myFile.close();
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Serial.println("done.");
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} else {
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// if the file didn't open, print an error:
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Serial.println("error opening test.txt");
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}
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// re-open the file for reading:
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Serial.println("\n\rReading from test.txt...");
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myFile = SD.open("test.txt");
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if (myFile) {
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// read from the file until there's nothing else in it:
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while (myFile.available()) {
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Serial.write(myFile.read());
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}
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// close the file:
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myFile.close();
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} else {
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// if the file didn't open, print an error:
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Serial.println("error opening test.txt");
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}
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Serial.println("Test Complete.");
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}
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void loop()
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{
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// nothing happens after setup
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}
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