@Test
 public void testTwoLikes() {
   SparseVector vec = sum.summarize(History.forUser(42, Like.create(42, 39), Like.create(42, 67)));
   assertThat(vec.size(), equalTo(2));
   assertThat(vec.get(39), equalTo(1.0));
   assertThat(vec.get(67), equalTo(1.0));
 }
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 @Override
 public Double get(long key) {
   if (vector.containsKey(key)) {
     return vector.get(key);
   } else {
     return defaultReturnValue();
   }
 }
 @Test
 public void testLikeBatch() {
   SparseVector vec =
       sum.summarize(
           History.forUser(
               42, Like.create(42, 39), LikeBatch.create(42, 67, 402), Like.create(42, 39)));
   assertThat(vec.size(), equalTo(2));
   assertThat(vec.get(39), equalTo(2.0));
   assertThat(vec.get(67), equalTo(402.0));
 }
 /**
  * Check that we score items but do not provide scores for items the user has previously rated.
  * User 5 has rated only item 8 previously.
  */
 @Test
 public void testItemScorerNoRating() {
   long[] items = {7, 8};
   ItemItemScorer scorer = session.get(ItemItemScorer.class);
   assertThat(scorer, notNullValue());
   SparseVector scores = scorer.score(5, LongArrayList.wrap(items));
   assertThat(scores, notNullValue());
   assertThat(scores.size(), equalTo(1));
   assertThat(scores.get(7), not(notANumber()));
   assertThat(scores.containsKey(8), equalTo(false));
 }
  /** Compute the DCG of a list of items with respect to a value vector. */
  static double computeDCG(LongList items, SparseVector values) {
    final double lg2 = log(2);

    double gain = 0;
    int rank = 0;

    LongIterator iit = items.iterator();
    while (iit.hasNext()) {
      final long item = iit.nextLong();
      final double v = values.get(item, 0);
      rank++;
      if (rank < 2) {
        gain += v;
      } else {
        gain += v * lg2 / log(rank);
      }
    }

    return gain;
  }
  /**
   * Check that we score items but do not provide scores for items the user has previously rated.
   * User 5 has rated only item 8 previously.
   */
  @Test
  public void testItemScorerChannels() {
    long[] items = {7, 8};
    ItemItemScorer scorer = session.get(ItemItemScorer.class);
    assertThat(scorer, notNullValue());
    SparseVector scores = scorer.score(5, LongArrayList.wrap(items));
    assertThat(scores, notNullValue());
    assertThat(scores.size(), equalTo(1));
    assertThat(scores.get(7), not(notANumber()));
    assertThat(
        scores.getChannelVector(ItemItemScorer.NEIGHBORHOOD_SIZE_SYMBOL).get(7),
        closeTo(1.0, 1.0e-5));
    assertThat(scores.containsKey(8), equalTo(false));

    long[] items2 = {7, 8, 9};
    scorer = session.get(ItemItemScorer.class);
    assertThat(scorer, notNullValue());
    scores = scorer.score(2, LongArrayList.wrap(items2));
    assertThat(
        scores.getChannelVector(ItemItemScorer.NEIGHBORHOOD_SIZE_SYMBOL).get(9),
        closeTo(3.0, 1.0e-5)); // 1, 7, 8
  }
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 @Test
 public void testMeanBaseline() {
   ItemScorer pred = makeGlobalMean();
   SparseVector pv = pred.score(10L, itemSet(2l));
   assertEquals(RATINGS_DAT_MEAN, pv.get(2l), 0.00001);
 }
 @Test
 public void testEmptyConstructor() {
   SparseVector v = new ImmutableSparseVector();
   assertThat(v.isEmpty(), equalTo(true));
   assertThat(v.get(15, Double.NaN), notANumber());
 }