Example usage for org.apache.commons.lang3 ArrayUtils toPrimitive

List of usage examples for org.apache.commons.lang3 ArrayUtils toPrimitive

Introduction

In this page you can find the example usage for org.apache.commons.lang3 ArrayUtils toPrimitive.

Prototype

public static boolean[] toPrimitive(final Boolean[] array) 

Source Link

Document

Converts an array of object Booleans to primitives.

This method returns null for a null input array.

Usage

From source file:com.github.jessemull.microflexinteger.math.AdditionTest.java

/**
 * Tests the strict addition of an array to a well using indices.
 *///  w w  w.  j a va 2 s  . co m
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Integer> list1 = well1[j].data();
            List<Integer> list2 = well2[j].data();
            int[] array = ArrayUtils.toPrimitive(list2.toArray(new Integer[list2.size()]));
            List<Integer> unevenList = wellUneven[j].data();
            int[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Integer[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Integer> result = new ArrayList<Integer>();
            List<Integer> resultUneven = new ArrayList<Integer>();
            List<Integer> returned = addition.wellsStrict(well1[j], array, begin, end - begin);
            List<Integer> returnedUneven = addition.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) + array[k]);
                resultUneven.add(list1.get(k) + arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexinteger.math.DivisionTest.java

/**
 * Tests the strict division of an array to a well using indices.
 *//*from  ww w .  java 2 s .c  om*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Integer> list1 = well1[j].data();
            List<Integer> list2 = well2[j].data();
            int[] array = ArrayUtils.toPrimitive(list2.toArray(new Integer[list2.size()]));
            List<Integer> unevenList = wellUneven[j].data();
            int[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Integer[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Integer> result = new ArrayList<Integer>();
            List<Integer> resultUneven = new ArrayList<Integer>();
            List<Integer> returned = division.wellsStrict(well1[j], array, begin, end - begin);
            List<Integer> returnedUneven = division.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) / array[k]);
                resultUneven.add(list1.get(k) / arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexdouble.math.ModulusTest.java

/**
 * Tests the strict modulus operation using an array, a well and indices.
 *//*  w ww.  j  a  va  2s .  co m*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Double> list1 = well1[j].data();
            List<Double> list2 = well2[j].data();
            double[] array = ArrayUtils.toPrimitive(list2.toArray(new Double[list2.size()]));
            List<Double> unevenList = wellUneven[j].data();
            double[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Double[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Double> result = new ArrayList<Double>();
            List<Double> resultUneven = new ArrayList<Double>();
            List<Double> returned = modulus.wellsStrict(well1[j], array, begin, end - begin);
            List<Double> returnedUneven = modulus.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) % array[k]);
                resultUneven.add(list1.get(k) % arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexdouble.math.SubtractionTest.java

/**
 * Tests the strict subtraction of an array to a well using indices.
 *//*from w  w  w. ja v  a2s.c o  m*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Double> list1 = well1[j].data();
            List<Double> list2 = well2[j].data();
            double[] array = ArrayUtils.toPrimitive(list2.toArray(new Double[list2.size()]));
            List<Double> unevenList = wellUneven[j].data();
            double[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Double[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Double> result = new ArrayList<Double>();
            List<Double> resultUneven = new ArrayList<Double>();
            List<Double> returned = subtraction.wellsStrict(well1[j], array, begin, end - begin);
            List<Double> returnedUneven = subtraction.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) - array[k]);
                resultUneven.add(list1.get(k) - arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexinteger.math.ModulusTest.java

/**
 * Tests the strict modulus operation using an array, a well and indices.
 *//* ww w  .j a  v a2 s .  c om*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Integer> list1 = well1[j].data();
            List<Integer> list2 = well2[j].data();
            int[] array = ArrayUtils.toPrimitive(list2.toArray(new Integer[list2.size()]));
            List<Integer> unevenList = wellUneven[j].data();
            int[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Integer[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Integer> result = new ArrayList<Integer>();
            List<Integer> resultUneven = new ArrayList<Integer>();
            List<Integer> returned = modulus.wellsStrict(well1[j], array, begin, end - begin);
            List<Integer> returnedUneven = modulus.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) % array[k]);
                resultUneven.add(list1.get(k) % arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexinteger.math.SubtractionTest.java

/**
 * Tests the strict subtraction of an array to a well using indices.
 *///from  www  . j av a  2  s. co  m
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Integer> list1 = well1[j].data();
            List<Integer> list2 = well2[j].data();
            int[] array = ArrayUtils.toPrimitive(list2.toArray(new Integer[list2.size()]));
            List<Integer> unevenList = wellUneven[j].data();
            int[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Integer[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Integer> result = new ArrayList<Integer>();
            List<Integer> resultUneven = new ArrayList<Integer>();
            List<Integer> returned = subtraction.wellsStrict(well1[j], array, begin, end - begin);
            List<Integer> returnedUneven = subtraction.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) - array[k]);
                resultUneven.add(list1.get(k) - arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexdouble.math.MultiplicationTest.java

/**
 * Tests the strict multiplication of an array to a well using indices.
 *//*from   w  ww .  j  a  v a  2 s .c om*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Double> list1 = well1[j].data();
            List<Double> list2 = well2[j].data();
            double[] array = ArrayUtils.toPrimitive(list2.toArray(new Double[list2.size()]));
            List<Double> unevenList = wellUneven[j].data();
            double[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Double[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Double> result = new ArrayList<Double>();
            List<Double> resultUneven = new ArrayList<Double>();
            List<Double> returned = multiplication.wellsStrict(well1[j], array, begin, end - begin);
            List<Double> returnedUneven = multiplication.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) * array[k]);
                resultUneven.add(list1.get(k) * arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflexinteger.math.MultiplicationTest.java

/**
 * Tests the strict multiplication of an array to a well using indices.
 *//*  w w w.j av a 2 s. co m*/
@Test
public void testWellStrictArrayIndices() {

    Plate[] plates1 = arrays1.get(0);
    Plate[] plates2 = arrays2.get(0);
    Plate[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        Well[] well1 = plates1[i].dataSet().toWellArray();
        Well[] well2 = plates2[i].dataSet().toWellArray();
        Well[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Integer> list1 = well1[j].data();
            List<Integer> list2 = well2[j].data();
            int[] array = ArrayUtils.toPrimitive(list2.toArray(new Integer[list2.size()]));
            List<Integer> unevenList = wellUneven[j].data();
            int[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Integer[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Integer> result = new ArrayList<Integer>();
            List<Integer> resultUneven = new ArrayList<Integer>();
            List<Integer> returned = multiplication.wellsStrict(well1[j], array, begin, end - begin);
            List<Integer> returnedUneven = multiplication.wellsStrict(well1[j], arrayUneven, begin,
                    end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) * array[k]);
                resultUneven.add(list1.get(k) * arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflex.math.mathdouble.DivisionDoubleTest.java

/**
 * Tests the strict division of an array to a well using indices.
 *///from  ww w  .  jav  a  2  s .  c  om
@Test
public void testWellStrictArrayIndices() {

    PlateDouble[] plates1 = arrays1.get(0);
    PlateDouble[] plates2 = arrays2.get(0);
    PlateDouble[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        WellDouble[] well1 = plates1[i].dataSet().toWellArray();
        WellDouble[] well2 = plates2[i].dataSet().toWellArray();
        WellDouble[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Double> list1 = well1[j].data();
            List<Double> list2 = well2[j].data();
            double[] array = ArrayUtils.toPrimitive(list2.toArray(new Double[list2.size()]));
            List<Double> unevenList = wellUneven[j].data();
            double[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Double[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Double> result = new ArrayList<Double>();
            List<Double> resultUneven = new ArrayList<Double>();
            List<Double> returned = division.wellsStrict(well1[j], array, begin, end - begin);
            List<Double> returnedUneven = division.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) / array[k]);
                resultUneven.add(list1.get(k) / arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}

From source file:com.github.jessemull.microflex.math.mathdouble.AdditionDoubleTest.java

/**
 * Tests the strict addition of an array to a well using indices.
 *///  w w w.  java2 s .  c  om
@Test
public void testWellStrictArrayIndices() {

    PlateDouble[] plates1 = arrays1.get(0);
    PlateDouble[] plates2 = arrays2.get(0);
    PlateDouble[] unevenPlates = uneven.get(0);

    for (int i = 0; i < plates1.length; i++) {

        WellDouble[] well1 = plates1[i].dataSet().toWellArray();
        WellDouble[] well2 = plates2[i].dataSet().toWellArray();
        WellDouble[] wellUneven = unevenPlates[i].dataSet().toWellArray();

        for (int j = 0; j < well1.length; j++) {

            List<Double> list1 = well1[j].data();
            List<Double> list2 = well2[j].data();
            double[] array = ArrayUtils.toPrimitive(list2.toArray(new Double[list2.size()]));
            List<Double> unevenList = wellUneven[j].data();
            double[] arrayUneven = ArrayUtils.toPrimitive(unevenList.toArray(new Double[unevenList.size()]));

            int begin = 1 + random.nextInt(list1.size() - 1);
            int end = begin + random.nextInt(list1.size() - begin);

            List<Double> result = new ArrayList<Double>();
            List<Double> resultUneven = new ArrayList<Double>();
            List<Double> returned = addition.wellsStrict(well1[j], array, begin, end - begin);
            List<Double> returnedUneven = addition.wellsStrict(well1[j], arrayUneven, begin, end - begin);

            for (int k = begin; k < end; k++) {
                result.add(list1.get(k) + array[k]);
                resultUneven.add(list1.get(k) + arrayUneven[k]);
            }

            assertEquals(result, returned);
            assertEquals(resultUneven, returnedUneven);
        }
    }
}