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* accompanied this code).
*
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package com.xenoamess.commons.primitive.functions;
import com.xenoamess.commons.primitive.Primitive;
import java.util.Objects;
import java.util.function.Predicate;
/**
* Represents a predicate (boolean-valued function) of one argument.
*
* This is a functional interface
* whose functional method is {@link #test(Float)}.
*
* @author XenoAmess
* @version 0.8.0
* @see Predicate
* @since 1.8
*/
@FunctionalInterface
public interface FloatPredicate extends Predicate, Primitive {
/**
* {@inheritDoc}
*
* Evaluates this predicate on the given argument.
*/
@Override
default boolean test(Float t) {
return this.testPrimitive(t);
}
/**
* Primitive replacement of test(Float t)
*
* @param t the input argument
* @return {@code true} if the input argument matches the predicate,
* otherwise {@code false}
* @see #test(Float t)
*/
default boolean test(float t) {
return this.testPrimitive(t);
}
/**
* Primitive replacement of test(Float t)
*
* @param t the input argument
* @return {@code true} if the input argument matches the predicate,
* otherwise {@code false}
* @see #test(Float t)
*/
boolean testPrimitive(float t);
/**
* {@inheritDoc}
*
* Returns a composed predicate that represents a short-circuiting logical
* AND of this predicate and another. When evaluating the composed
* predicate, if this predicate is {@code false}, then the {@code other}
* predicate is not evaluated.
*
*
Any exceptions thrown during evaluation of either predicate are relayed
* to the caller; if evaluation of this predicate throws an exception, the
* {@code other} predicate will not be evaluated.
*/
@Override
default Predicate and(final Predicate super Float> other) {
Objects.requireNonNull(other);
if (other instanceof FloatPredicate) {
return (FloatPredicate) t -> FloatPredicate.this.testPrimitive(t) && ((FloatPredicate) other).testPrimitive(t);
} else {
return (t) -> test(t) && other.test(t);
}
}
/**
* {@inheritDoc}
*
* Returns a predicate that represents the logical negation of this
* predicate.
*/
@Override
default FloatPredicate negate() {
return (float t) -> !testPrimitive(t);
}
/**
* {@inheritDoc}
*
* Returns a composed predicate that represents a short-circuiting logical
* OR of this predicate and another. When evaluating the composed
* predicate, if this predicate is {@code true}, then the {@code other}
* predicate is not evaluated.
*
*
Any exceptions thrown during evaluation of either predicate are relayed
* to the caller; if evaluation of this predicate throws an exception, the
* {@code other} predicate will not be evaluated.
*/
@Override
default Predicate or(Predicate super Float> other) {
Objects.requireNonNull(other);
if (other instanceof FloatPredicate) {
return (FloatPredicate) t -> FloatPredicate.this.testPrimitive(t) || ((FloatPredicate) other).testPrimitive(t);
} else {
return (t) -> test(t) || other.test(t);
}
}
/**
* Returns a predicate that tests if two arguments are equal according
* to {@link java.util.Objects#equals(Object, Object)}.
*
* @param targetPrimitive the object reference with which to compare for equality,
* which may be {@code null}
* @return a predicate that tests if two arguments are equal according
* to {@link java.util.Objects#equals(Object, Object)}
*/
static FloatPredicate isEqual(float targetPrimitive) {
return t -> t == targetPrimitive;
}
/**
* {@inheritDoc}
*
* Returns a predicate that is the negation of the supplied predicate.
* This is accomplished by returning result of the calling
* {@code target.negate()}.
*
* @since 11
*/
static FloatPredicate not(Predicate super Float> target) {
Objects.requireNonNull(target);
return (FloatPredicate) target.negate();
}
}