Short-Circuiting: Logical Operators Revisited
When working with boolean expressions, the logical OR operator (||) is often preferred over the bitwise OR operator (|). This choice is not solely based on functionality, but also on a key performance feature: short-circuiting.
What is Short-Circuiting?
Short-circuiting is a property of logical operators that allows them to evaluate only the necessary operand. For example, in the expression "a || b", if "a" evaluates to "true", "b" will not be evaluated because the result is already "true". This optimization can significantly improve performance, especially in situations where evaluating subsequent operands is time-consuming.
Logical OR vs. Bitwise OR
The difference between logical OR and bitwise OR lies in their evaluation behavior. Logical OR will only evaluate the second operand if the first operand is "false", while bitwise OR always evaluates both operands.
Why Prefer Logical OR (||)?
Most programming scenarios rely on short-circuit evaluation for optimization purposes. By using logical OR, you allow the interpreter to short-circuit the evaluation, reducing execution time when the first operand is sufficient to determine the result.
Examples of Benefits
1. Time-Consuming Operations:
Consider the following code:
Boolean b = true; if (b || foo.timeConsumingCall()) { // Only foo.timeConsumingCall() is executed }
Without short-circuiting, the interpreter would always evaluate both "b" and "foo.timeConsumingCall()".
2. Null Reference Checks:
Null reference checks benefit greatly from short-circuiting:
if (string != null && string.isEmpty()) { // string.isEmpty() is only executed if string is not null }
Without short-circuiting, an exception could be thrown if "string" is null, leading to incorrect behavior.
Conclusion:
While both logical OR and bitwise OR operators can achieve the same logical outcome, using logical OR (||) is generally recommended for its short-circuiting capability. This optimization can reduce execution time and improve code efficiency, especially in scenarios where subsequent operand evaluation is computationally expensive or could lead to errors.
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