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I generated two matrices of 1000 x 1000:

First Matrix: O and #.
Second Matrix: O and B.

Using the following code, the first matrix took 8.52 seconds to complete:

Random r = new Random();
for (int i = 0; i < 1000; i++) {
    for (int j = 0; j < 1000; j++) {
        if(r.nextInt(4) == 0) {
            System.out.print("O");
        } else {
            System.out.print("#");
        }
    }

   System.out.println("");
 }

With this code, the second matrix took 259.152 seconds to complete:

Random r = new Random();
for (int i = 0; i < 1000; i++) {
    for (int j = 0; j < 1000; j++) {
        if(r.nextInt(4) == 0) {
            System.out.print("O");
        } else {
            System.out.print("B"); //only line changed
        }
    }

    System.out.println("");
}

What is the reason behind the dramatically different run times?


As suggested in the comments, printing only System.out.print("#"); takes 7.8871 seconds, whereas System.out.print("B"); gives still printing....

As others who pointed out that it works for them normally, I tried Ideone.com for instance, and both pieces of code execute at the same speed.

Test Conditions:

  • I ran this test from Netbeans 7.2, with the output into its console
  • I used System.nanoTime() for measurements
share|improve this question
22  
Try changing rand.nextInt(4) == 0 to i < 250 to eliminate the effect of the random generator. You might run out of entropy that slows down the random generation –  fejese Feb 21 at 23:49
76  
if you are suggesting that printing B takes more time than printing #....why dont you try to print all B & all # rather than relying on random variable r –  Kakarot Feb 21 at 23:52
7  
Based on the accepted answer, you apparently didn't try running it with output redirected to a file or /dev/null. –  Barmar Feb 23 at 3:21
11  
@fejese, Random() is not a cryptographical rng and so doesn't use up the entropy pool. –  Divide Feb 25 at 11:44
12  
The real answer is clearly because hashes are faster than b trees. –  slicedtoad Sep 4 at 15:48

1 Answer 1

up vote 2014 down vote accepted

Pure speculation is that you're using a terminal that attempts to do word-wrapping rather than character-wrapping, and treats B as a word character but # as a non-word character. So when it reaches the end of a line and searches for a place to break the line, it sees a # almost immediately and happily breaks there; whereas with the B, it has to keep searching for longer, and may have more text to wrap (which may be expensive on some terminals, e.g., outputting backspaces, then outputting spaces to overwrite the letters being wrapped).

But that's pure speculation.

share|improve this answer
219  
This is actually the correct answer! Adding a space after the B solves it. –  Kuba Spatny Feb 22 at 0:04
95  
There are some answers that come from hard learned experience. T.J. and I (since we are friends) grew up in the days of the Apple ][ and the zx80/81. There was no built in word wrap back then. So we both ended up writing our own — more than once. And those lessons stick with you, they get burned in to your lizard brain. But if you leaned to code after that, when your environment word wraps everything, or you do it manually prior to runtime, it is harder to run into the issues with word wrap. –  JockM Feb 23 at 15:42
136  
Brilliant deduction. But we should generalize from this lesson, and always measure performance with output either eliminated, directed to /dev/null (NUL on Windows) or at least to a file. Displaying on any sort of Console is generally very expensive IO, and always distorts timings -- even if not as dramatically confusingly as this. –  Bob Kerns Feb 23 at 22:38
12  
@BobKerns: Surely that would still have generated an appropriate question though. The problem remains that printing Bs takes longer and not printing them isn't really a solution so much as a trick to help debug the problem. –  Chris Feb 24 at 15:09
14  
@MrLister: System.out.println doesn't do wordwrapping; the thing it was outputting to was doing word-wrapping (and blocking, so System.out.println had to wait). –  T.J. Crowder Feb 26 at 22:11

protected by Robert Levy Feb 25 at 20:05

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