alvinalexander.com | career | drupal | java | mac | mysql | perl | scala | uml | unix  

Java example source code file (DoubleStreamTestScenario.java)

This example Java source code file (DoubleStreamTestScenario.java) is included in the alvinalexander.com "Java Source Code Warehouse" project. The intent of this project is to help you "Learn Java by Example" TM.

Learn more about this Java project at its project page.

Java - Java tags/keywords

basestream, doubleconsumer, doublestream, doublestreamtestscenario, function, par_stream_sequential_for_each, par_stream_spliterator_foreach, par_stream_spliterator_stream_to_array, s_in, s_out, stream_iterator, stream_spliterator_with_mixed_traverse_and_split, streamshape, suppresswarnings, util

The DoubleStreamTestScenario.java Java example source code

/*
 * Copyright (c) 2013, Oracle and/or its affiliates. All rights reserved.
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
 */
package java.util.stream;

import java.util.PrimitiveIterator;
import java.util.Spliterator;
import java.util.function.Consumer;
import java.util.function.DoubleConsumer;
import java.util.function.Function;

/**
 * Test scenarios for double streams.
 *
 * Each scenario is provided with a data source, a function that maps a fresh
 * stream (as provided by the data source) to a new stream, and a sink to
 * receive results.  Each scenario describes a different way of computing the
 * stream contents.  The test driver will ensure that all scenarios produce
 * the same output (modulo allowable differences in ordering).
 */
@SuppressWarnings({"rawtypes", "unchecked"})
public enum DoubleStreamTestScenario implements OpTestCase.BaseStreamTestScenario {

    STREAM_FOR_EACH_WITH_CLOSE(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            DoubleStream s = m.apply(data.stream());
            if (s.isParallel()) {
                s = s.sequential();
            }
            s.forEach(b);
            s.close();
        }
    },

    STREAM_TO_ARRAY(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            for (double t : m.apply(data.stream()).toArray()) {
                b.accept(t);
            }
        }
    },

    STREAM_ITERATOR(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            for (PrimitiveIterator.OfDouble seqIter = m.apply(data.stream()).iterator(); seqIter.hasNext(); )
                b.accept(seqIter.nextDouble());
        }
    },

    // Wrap as stream, and spliterate then iterate in pull mode
    STREAM_SPLITERATOR(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            for (Spliterator.OfDouble spl = m.apply(data.stream()).spliterator(); spl.tryAdvance(b); ) {
            }
        }
    },

    // Wrap as stream, spliterate, then split a few times mixing advances with forEach
    STREAM_SPLITERATOR_WITH_MIXED_TRAVERSE_AND_SPLIT(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            SpliteratorTestHelper.mixedTraverseAndSplit(b, m.apply(data.stream()).spliterator());
        }
    },

    // Wrap as stream, and spliterate then iterate in pull mode
    STREAM_SPLITERATOR_FOREACH(false) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            m.apply(data.stream()).spliterator().forEachRemaining(b);
        }
    },

    PAR_STREAM_SEQUENTIAL_FOR_EACH(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            m.apply(data.parallelStream()).sequential().forEach(b);
        }
    },

    // Wrap as parallel stream + forEachOrdered
    PAR_STREAM_FOR_EACH_ORDERED(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            // @@@ Want to explicitly select ordered equalator
            m.apply(data.parallelStream()).forEachOrdered(b);
        }
    },

    // Wrap as stream, and spliterate then iterate sequentially
    PAR_STREAM_SPLITERATOR(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            for (Spliterator.OfDouble spl = m.apply(data.parallelStream()).spliterator(); spl.tryAdvance(b); ) {
            }
        }
    },

    // Wrap as stream, and spliterate then iterate sequentially
    PAR_STREAM_SPLITERATOR_FOREACH(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            m.apply(data.parallelStream()).spliterator().forEachRemaining(b);
        }
    },

    PAR_STREAM_TO_ARRAY(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            for (double t : m.apply(data.parallelStream()).toArray())
                b.accept(t);
        }
    },

    // Wrap as parallel stream, get the spliterator, wrap as a stream + toArray
    PAR_STREAM_SPLITERATOR_STREAM_TO_ARRAY(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            DoubleStream s = m.apply(data.parallelStream());
            Spliterator.OfDouble sp = s.spliterator();
            DoubleStream ss = StreamSupport.doubleStream(() -> sp,
                                                         StreamOpFlag.toCharacteristics(OpTestCase.getStreamFlags(s))
                                                         | (sp.getExactSizeIfKnown() < 0 ? 0 : Spliterator.SIZED), true);
            for (double t : ss.toArray())
                b.accept(t);
        }
    },

    PAR_STREAM_TO_ARRAY_CLEAR_SIZED(true) {
        <T, S_IN extends BaseStream
        void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m) {
            S_IN pipe1 = (S_IN) OpTestCase.chain(data.parallelStream(),
                                                 new FlagDeclaringOp(StreamOpFlag.NOT_SIZED, data.getShape()));
            DoubleStream pipe2 = m.apply(pipe1);

            for (double t : pipe2.toArray())
                b.accept(t);
        }
    },;

    private boolean isParallel;

    DoubleStreamTestScenario(boolean isParallel) {
        this.isParallel = isParallel;
    }

    public StreamShape getShape() {
        return StreamShape.DOUBLE_VALUE;
    }

    public boolean isParallel() {
        return isParallel;
    }

    public <T, U, S_IN extends BaseStream>
    void run(TestData<T, S_IN> data, Consumer b, Function m) {
        _run(data, (DoubleConsumer) b, (Function<S_IN, DoubleStream>) m);
    }

    abstract <T, S_IN extends BaseStream
    void _run(TestData<T, S_IN> data, DoubleConsumer b, Function m);

}

Other Java examples (source code examples)

Here is a short list of links related to this Java DoubleStreamTestScenario.java source code file:

... this post is sponsored by my books ...

#1 New Release!

FP Best Seller

 

new blog posts

 

Copyright 1998-2021 Alvin Alexander, alvinalexander.com
All Rights Reserved.

A percentage of advertising revenue from
pages under the /java/jwarehouse URI on this website is
paid back to open source projects.