Merge "Change BinderLatencyBuckets to use int[] instead of ArrayList to improve performance."
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@@ -20,8 +20,7 @@ import android.util.Slog;
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import com.android.internal.annotations.VisibleForTesting;
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import java.util.ArrayList;
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import java.util.Collections;
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import java.util.Arrays;
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/**
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* Generates the bucket thresholds (with a custom logarithmic scale) for a histogram to store
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@@ -29,7 +28,7 @@ import java.util.Collections;
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*/
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public class BinderLatencyBuckets {
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private static final String TAG = "BinderLatencyBuckets";
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private ArrayList<Integer> mBuckets;
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private final int[] mBuckets;
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/**
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* @param bucketCount the number of buckets the histogram should have
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@@ -37,12 +36,11 @@ public class BinderLatencyBuckets {
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* @param scaleFactor the rate in which each consecutive bucket increases (before rounding)
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*/
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public BinderLatencyBuckets(int bucketCount, int firstBucketSize, float scaleFactor) {
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mBuckets = new ArrayList<>(bucketCount - 1);
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mBuckets.add(firstBucketSize);
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int[] buffer = new int[bucketCount - 1];
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buffer[0] = firstBucketSize;
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// Last value and the target are disjoint as we never want to create buckets smaller than 1.
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double lastTarget = firstBucketSize;
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int lastValue = firstBucketSize;
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// First bucket is already created and the last bucket is anything greater than the final
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// bucket in the list, so create 'bucketCount' - 2 buckets.
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@@ -50,29 +48,29 @@ public class BinderLatencyBuckets {
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// Increase the target bucket limit value by the scale factor.
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double nextTarget = lastTarget * scaleFactor;
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if (nextTarget > Integer.MAX_VALUE || lastValue == Integer.MAX_VALUE) {
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if (nextTarget > Integer.MAX_VALUE) {
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// Do not throw an exception here as this should not affect binder calls.
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Slog.w(TAG, "Attempted to create a bucket larger than maxint");
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mBuckets = Arrays.copyOfRange(buffer, 0, i);
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return;
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}
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if ((int) nextTarget > lastValue) {
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if ((int) nextTarget > buffer[i - 1]) {
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// Convert the target bucket limit value to an integer.
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mBuckets.add((int) nextTarget);
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lastValue = (int) nextTarget;
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buffer[i] = (int) nextTarget;
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} else {
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// Avoid creating redundant buckets, so bucket size should be 1 at a minimum.
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mBuckets.add(lastValue + 1);
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lastValue = lastValue + 1;
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buffer[i] = buffer[i - 1] + 1;
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}
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lastTarget = nextTarget;
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}
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mBuckets = buffer;
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}
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/** Gets the bucket index to insert the provided sample in. */
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public int sampleToBucket(int sample) {
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if (sample > mBuckets.get(mBuckets.size() - 1)) {
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return mBuckets.size();
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if (sample >= mBuckets[mBuckets.length - 1]) {
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return mBuckets.length;
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}
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// Binary search returns the element index if it is contained in the list - in this case the
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@@ -80,12 +78,12 @@ public class BinderLatencyBuckets {
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// Otherwise, it returns (-(insertion point) - 1), where insertion point is the point where
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// to insert the element so that the array remains sorted - in this case the bucket index
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// is the insertion point.
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int searchResult = Collections.binarySearch(mBuckets, sample);
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int searchResult = Arrays.binarySearch(mBuckets, sample);
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return searchResult < 0 ? -(1 + searchResult) : searchResult + 1;
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}
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@VisibleForTesting
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public ArrayList<Integer> getBuckets() {
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public int[] getBuckets() {
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return mBuckets;
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}
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}
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@@ -36,6 +36,7 @@ public class BinderLatencyBucketsTest {
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public void testBucketThresholds() {
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BinderLatencyBuckets latencyBuckets = new BinderLatencyBuckets(10, 2, 1.45f);
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assertThat(latencyBuckets.getBuckets())
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.asList()
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.containsExactly(2, 3, 4, 6, 8, 12, 18, 26, 39)
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.inOrder();
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}
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@@ -58,6 +59,7 @@ public class BinderLatencyBucketsTest {
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public void testMaxIntBuckets() {
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BinderLatencyBuckets latencyBuckets = new BinderLatencyBuckets(5, Integer.MAX_VALUE / 2, 2);
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assertThat(latencyBuckets.getBuckets())
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.asList()
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.containsExactly(Integer.MAX_VALUE / 2, Integer.MAX_VALUE - 1)
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.inOrder();
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