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What's the difference between Float.POSITIVE_INFINITY and Float.MAX_VALUE? Which is greater? Are they the same?

I came accross them looking for a value that would be greater than every other float or failing that all except the greatest. Does either meet that criteria?


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up vote 17 down vote accepted

No, they're not the same thing at all.

Float.MAX_VALUE is the largest finite value that can be represented in a float. You won't find any value greater than that, other than infinity. But you can perform all kinds of other operations on it.

Float.POSITIVE_INFINITY is, well, infinity. Most operations involving an infinity will end up with infinity (either positive or negative).

For example:

public class Test {
    public static void main(String[] args) {

    public static void testOperations(float input) {
        System.out.println("input: " + input);
        System.out.println("input / 100: " + input / 100);
        System.out.println("input * 100: " + input * 100);
        System.out.println("-input: " + (-input));


input: 3.4028235E38
input / 100: 3.4028236E36
input * 100: Infinity
-input: -3.4028235E38

input: Infinity
input / 100: Infinity
input * 100: Infinity
-input: -Infinity
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So, when compared with any other Float, Float.POSITIVE_INFINITY will always be greater? – Adam Mar 16 '12 at 19:42
@Adam: Unless the other float is NaN, yes. (NaN is neither greater than nor less than nor equal to any float.) – Jon Skeet Mar 16 '12 at 19:44
Perfect. Thanks! – Adam Mar 16 '12 at 19:46
I wonder why did they implement it that way that input * 100: Infinity (for MAX_VALUE test). I guess it would be more logical to throw some kind of exception in that case. – bezmax Mar 16 '12 at 20:22
@Max First of all we're talking about low level hardware here and exceptions there are something completely different than Java's exceptions. But actually IEEE-754 does define several exceptions (so for the right definition of "exception" we actually do get one for division by zero ;) ). And: overflow is also one of them. See here. But Java is most certainly the wrong language for that kind of stuff - you'll even have a hard time doing these things in C. – Voo Mar 16 '12 at 20:45

To answer your specific question:

I came accross them looking for a value that would be greater than every other float or failing that all except the greatest. Does either meet that criteria?

Yes, Float.POSITIVE_INFINITY is, by its definition, the only Float that is greater than Float.MAX_VALUE. It is, however, something of a special case in terms of how it interacts with mathematical operations.

From the javadoc:

public static final float POSITIVE_INFINITY :

A constant holding the positive infinity of type float. It is equal to the value returned by Float.intBitsToFloat(0x7f800000).

public static final float MAX_VALUE :

A constant holding the largest positive finite value of type float, (2-2-23)·2127. It is equal to the hexadecimal floating-point literal 0x1.fffffeP+127f and also equal to Float.intBitsToFloat(0x7f7fffff).

So, as you can see, according to the very literal definition is that POSITIVE_INFINITY is greater than MAX_VALUE by one bit.

In terms of their utility, POSITIVE_INFINITY provides a value that you can use to recognize otherwise problematic mathematical expressions. The one used in the JDK source is 1.0f / 0.0f. The result of this expression is POSITIVE_INFINITY, indicating that you have exceeded the upper bound of reasonable mathematics, never to return. Given the two constants POSITIVE_INFINITY and NEGATIVE_INFINITY, you can check to see if a general expression has left the bounds of the useful Floats and whether it was the positive or negative door.

MAX_VALUE, on the other hand, represents the maximum value on which you can still apply normal mathematical operations. For example, MAX_VALUE - 1.0f is a (very slightly) smaller number than MAX_VALUE. POSITIVE_INFINITY - 1.0f, however, is still POSITIVE_INFINITY.

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You can find more detailed information on IEEE 754 floating point values here: http://steve.hollasch.net/cgindex/coding/ieeefloat.html

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