mirror of
https://github.com/RobTillaart/Arduino.git
synced 2024-10-03 18:09:02 -04:00
160 lines
3.1 KiB
C++
160 lines
3.1 KiB
C++
//
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// FILE: FRAM_clear.ino
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// AUTHOR: Rob Tillaart
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// PURPOSE: demo clear FRAM
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// URL: https://github.com/RobTillaart/FRAM_I2C
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//
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// experimental performance test "clear" function.
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#include "FRAM.h"
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FRAM fram;
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uint32_t start;
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uint32_t stop;
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uint32_t sizeInBytes = 0;
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void setup()
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{
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Serial.begin(115200);
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Serial.println(__FILE__);
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Serial.print("FRAM_LIB_VERSION: ");
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Serial.println(FRAM_LIB_VERSION);
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Wire.begin();
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int rv = fram.begin(0x50);
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if (rv != 0)
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{
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Serial.print("INIT ERROR: ");
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Serial.println(rv);
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}
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// get size in bytes
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sizeInBytes = fram.getSize() * 1024;
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Serial.print("BYTES :\t");
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Serial.println(sizeInBytes);
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delay(100);
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Serial.println("\nSPEED :\t100000");
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Wire.setClock(100000);
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test();
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Serial.println("\nSPEED :\t200000");
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Wire.setClock(200000);
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test();
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Serial.println("\nSPEED :\t400000");
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Wire.setClock(400000);
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test();
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Serial.println("done...");
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}
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void loop()
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{
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}
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void test()
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{
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start = micros();
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for (uint32_t addr = 0; addr < sizeInBytes; addr++)
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{
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fram.write8(addr, 0x00);
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}
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stop = micros();
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Serial.print("BYTES 1:\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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start = micros();
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for (uint32_t addr = 0; addr < sizeInBytes; addr += 2)
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{
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fram.write16(addr, 0x0000);
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}
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stop = micros();
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Serial.print("BYTES 2:\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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start = micros();
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for (uint32_t addr = 0; addr < sizeInBytes; addr += 4)
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{
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fram.write32(addr, 0x00000000);
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}
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stop = micros();
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Serial.print("BYTES 4:\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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uint8_t buf[16] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
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start = micros();
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for (uint32_t addr = 0; addr < sizeInBytes; addr += 8)
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{
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fram.write(addr, buf, 8);
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}
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stop = micros();
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Serial.print("BYTES 8:\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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start = micros();
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for (uint32_t addr = 0; addr < sizeInBytes; addr += 16)
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{
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fram.write(addr, buf, 16);
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}
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stop = micros();
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Serial.print("BYTES 16:\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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start = micros();
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fram.clear();
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stop = micros();
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Serial.print("CLEAR():\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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start = micros();
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fram.clear(0xFF);
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stop = micros();
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Serial.print("CLEAR(0xFF):\t");
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Serial.print(stop - start);
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Serial.print(" ==> \t");
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Serial.print((stop - start) * 1.0 / 32768.0);
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Serial.println(" us/byte");
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delay(100);
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}
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// -- END OF FILE --
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