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-rw-r--r--java/src/com/android/inputmethod/latin/makedict/BinaryDictInputOutput.java6
1 files changed, 3 insertions, 3 deletions
diff --git a/java/src/com/android/inputmethod/latin/makedict/BinaryDictInputOutput.java b/java/src/com/android/inputmethod/latin/makedict/BinaryDictInputOutput.java
index 0c5d41a5c..2c3eee74c 100644
--- a/java/src/com/android/inputmethod/latin/makedict/BinaryDictInputOutput.java
+++ b/java/src/com/android/inputmethod/latin/makedict/BinaryDictInputOutput.java
@@ -787,9 +787,9 @@ public class BinaryDictInputOutput {
// (discretizedFrequency + 0.5) times this value to get the median value of the step,
// which is the best approximation. This is how we get the most precise result with
// only four bits.
- final double stepSize =
- (MAX_TERMINAL_FREQUENCY - unigramFrequency) / (1.5 + MAX_BIGRAM_FREQUENCY);
- final double firstStepStart = 1 + unigramFrequency + (stepSize / 2.0);
+ final float stepSize =
+ (MAX_TERMINAL_FREQUENCY - unigramFrequency) / (1.5f + MAX_BIGRAM_FREQUENCY);
+ final float firstStepStart = 1 + unigramFrequency + (stepSize / 2.0f);
final int discretizedFrequency = (int)((bigramFrequency - firstStepStart) / stepSize);
// If the bigram freq is less than half-a-step higher than the unigram freq, we get -1
// here. The best approximation would be the unigram freq itself, so we should not