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What is the equivalent of this statement?

if(cond1 AND cond2 AND cond3 OR cond4 AND cond5 AND cond 6)

Is it

if((cond1 AND cond2 AND cond3) OR (cond4 AND cond5 AND cond 6))

Or

if(cond1 AND cond2 AND (cond3 OR cond4) AND cond5 AND cond 6)

Or

if(((cond1 AND cond2 AND cond3) OR cond4) AND cond5 AND cond 6)

ect...

This has been something that I've always been scared approaching, to which I just surround the conditions in parenthesis (). It would be great if my mind could be settled

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Using parentheses to disambiguate is a great idea. –  Carl Norum May 29 '13 at 4:50

4 Answers 4

up vote 2 down vote accepted

In most langueges AND is evaluated first, hence

if((cond1 AND cond2 AND cond3) OR (cond4 AND cond5 AND cond 6))

is the right choice.

For C#, See http://msdn.microsoft.com/en-us/library/aa691323%28v=vs.71%29.aspx

For C, See http://en.cppreference.com/w/cpp/language/operator_precedence

For Java , See http://bmanolov.free.fr/javaoperators.php

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Most languages evaluate AND first.

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In the normal set of boolean connectives (from a logic standpoint), and is higher-precedence than or, so A or B and C is really A or (B and C). Wikipedia lists them in-order. Most programming languages should obey this convention unless they are really weird.

That said, for your particular language or environment it should be possible to concoct a very small test to satisfy yourself that it is one way or the other :)

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It depends entirely on the language or environment you're asking about, which unfortunately you haven't specified.

AND may have higher precedence over OR, or it may be the other way around, or it may be equal.

It may be evaluated left-to-right, right-to-left or, from the middle outwards in alternating directions if your language is designed by a sadist :-)

It's quite common for AND to have a higher precedence than OR and for them both to be left-to-right associative.

In that case

cond1 AND cond2 AND cond3 OR cond4 AND cond5 AND cond 6

would be equivalent to:

((cond1 AND cond2) AND cond3) OR ((cond4 AND cond5) AND cond 6)
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