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I'm trying to implement a checksum for a message. The specification is that:

The checksum is implemented such that the entire message wrapper and the message data, excluding the checksum, is a result of a simple binary addition truncated to four bytes.

I'm afraid I have no idea how to do it in Java, though. I would greatly appreciate any advice.

M.

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Out of curiosity: what uses that kind of checksum? Unless I misunderstand it, it's a very bad checksum. It doesn't detect any error where two bytes are swapped, for example. –  Joachim Sauer Jan 27 '11 at 13:56
    
That is part of the STANAG 4586 specification. –  Myn Jan 27 '11 at 14:03

2 Answers 2

up vote 3 down vote accepted

They probably mean a simple unsigned addition of all the bytes (assuming a 8-bit byte is the smallest unit in whatever you interact with):

byte[] data = getTheDataFromSomewhere();
long checksum = 0;
for (int i = 0; i < data.length; i++) {
  checksum += (data[i] & 0xFF);
}
checksum = checksum & 0xFFFFFFFFL; // truncate to 4 byte

You could use an int there as well, but that would result in a negative number. Bit-wise it would be equivalent, but this way it's easier to compare values.

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Thank you very much Joachim, I'll give this a go. The size of the checksum, according to specification, is 4 bytes, so it sounds like I'll be using an int. Again, thank you so much. –  Myn Jan 27 '11 at 14:18
    
The reason I've been using a long is that an int is signed (so is a long, but if only the first 4 byte are used, then it's always positive) and most of those protocols assume unsigned operation. –  Joachim Sauer Jan 27 '11 at 14:23

If you want you can use the java standard library function. http://download.oracle.com/javase/1.5.0/docs/api/java/util/zip/CRC32.html

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Thanks jogabonito, I'm just reading this - just to check, should this do the binary addition detailed above? –  Myn Jan 27 '11 at 14:05
    
Nope, that does CRC32, which is a very simple and standardized checksum algorithm but still a bit more complicated than binary addition. –  Joachim Sauer Jan 27 '11 at 14:10

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