Merge "Allow annotations to be added to Atom Id" into rvc-dev am: 027c823801
Change-Id: I13a288f305ff831a6509669b9a1d39c226acd6e6
This commit is contained in:
@@ -188,6 +188,12 @@ public final class StatsEvent {
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@VisibleForTesting
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public static final int ERROR_ATTRIBUTION_UIDS_TAGS_SIZES_NOT_EQUAL = 0x1000;
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/**
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* @hide
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**/
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@VisibleForTesting
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public static final int ERROR_ATOM_ID_INVALID_POSITION = 0x2000;
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// Size limits.
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/**
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@@ -350,19 +356,32 @@ public final class StatsEvent {
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mPos = 0;
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writeTypeId(TYPE_OBJECT);
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// Set mPos to after atom id's location in the buffer.
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// First 2 elements in the buffer are event timestamp followed by the atom id.
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mPos = POS_ATOM_ID + Byte.BYTES + Integer.BYTES;
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mPosLastField = 0;
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mLastType = 0;
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// Write timestamp.
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mPos = POS_TIMESTAMP_NS;
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writeLong(mTimestampNs);
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}
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/**
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* Sets the atom id for this StatsEvent.
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*
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* This should be called immediately after StatsEvent.newBuilder()
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* and should only be called once.
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* Not calling setAtomId will result in ERROR_NO_ATOM_ID.
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* Calling setAtomId out of order will result in ERROR_ATOM_ID_INVALID_POSITION.
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**/
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@NonNull
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public Builder setAtomId(final int atomId) {
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mAtomId = atomId;
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if (0 == mAtomId) {
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mAtomId = atomId;
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if (1 == mNumElements) { // Only timestamp is written so far.
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writeInt(atomId);
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} else {
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// setAtomId called out of order.
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mErrorMask |= ERROR_ATOM_ID_INVALID_POSITION;
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}
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}
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return this;
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}
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@@ -557,7 +576,7 @@ public final class StatsEvent {
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public Builder addBooleanAnnotation(
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final byte annotationId, final boolean value) {
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// Ensure there's a field written to annotate.
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if (0 == mPosLastField) {
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if (mNumElements < 2) {
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mErrorMask |= ERROR_ANNOTATION_DOES_NOT_FOLLOW_FIELD;
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} else if (mCurrentAnnotationCount >= MAX_ANNOTATION_COUNT) {
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mErrorMask |= ERROR_TOO_MANY_ANNOTATIONS;
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@@ -568,6 +587,7 @@ public final class StatsEvent {
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mCurrentAnnotationCount++;
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writeAnnotationCount();
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}
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return this;
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}
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@@ -576,7 +596,7 @@ public final class StatsEvent {
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**/
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@NonNull
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public Builder addIntAnnotation(final byte annotationId, final int value) {
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if (0 == mPosLastField) {
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if (mNumElements < 2) {
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mErrorMask |= ERROR_ANNOTATION_DOES_NOT_FOLLOW_FIELD;
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} else if (mCurrentAnnotationCount >= MAX_ANNOTATION_COUNT) {
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mErrorMask |= ERROR_TOO_MANY_ANNOTATIONS;
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@@ -587,6 +607,7 @@ public final class StatsEvent {
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mCurrentAnnotationCount++;
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writeAnnotationCount();
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}
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return this;
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}
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@@ -619,19 +640,20 @@ public final class StatsEvent {
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mErrorMask |= ERROR_TOO_MANY_FIELDS;
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}
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int size = mPos;
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mPos = POS_TIMESTAMP_NS;
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writeLong(mTimestampNs);
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writeInt(mAtomId);
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if (0 == mErrorMask) {
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mBuffer.putByte(POS_NUM_ELEMENTS, (byte) mNumElements);
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} else {
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// Write atom id and error mask. Overwrite any annotations for atom Id.
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mPos = POS_ATOM_ID;
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mPos += mBuffer.putByte(mPos, TYPE_INT);
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mPos += mBuffer.putInt(mPos, mAtomId);
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mPos += mBuffer.putByte(mPos, TYPE_ERRORS);
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mPos += mBuffer.putInt(mPos, mErrorMask);
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mBuffer.putByte(POS_NUM_ELEMENTS, (byte) 3);
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size = mPos;
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}
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final int size = mPos;
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if (mUsePooledBuffer) {
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return new StatsEvent(mAtomId, mBuffer, mBuffer.getBytes(), size);
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} else {
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@@ -84,6 +84,45 @@ public class StatsEventTest {
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statsEvent.release();
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}
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@Test
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public void testOnlyAtomId() {
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final int expectedAtomId = 109;
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final long minTimestamp = SystemClock.elapsedRealtimeNanos();
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final StatsEvent statsEvent = StatsEvent.newBuilder()
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.setAtomId(expectedAtomId)
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.usePooledBuffer()
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.build();
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final long maxTimestamp = SystemClock.elapsedRealtimeNanos();
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assertThat(statsEvent.getAtomId()).isEqualTo(expectedAtomId);
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final ByteBuffer buffer =
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ByteBuffer.wrap(statsEvent.getBytes()).order(ByteOrder.LITTLE_ENDIAN);
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assertWithMessage("Root element in buffer is not TYPE_OBJECT")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_OBJECT);
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assertWithMessage("Incorrect number of elements in root object")
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.that(buffer.get()).isEqualTo(2);
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assertWithMessage("First element is not timestamp")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_LONG);
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assertWithMessage("Incorrect timestamp")
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.that(buffer.getLong()).isIn(Range.closed(minTimestamp, maxTimestamp));
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assertWithMessage("Second element is not atom id")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("Incorrect atom id")
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.that(buffer.getInt()).isEqualTo(expectedAtomId);
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assertThat(statsEvent.getNumBytes()).isEqualTo(buffer.position());
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statsEvent.release();
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}
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@Test
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public void testIntBooleanIntInt() {
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final int expectedAtomId = 109;
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@@ -460,6 +499,151 @@ public class StatsEventTest {
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statsEvent.release();
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}
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@Test
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public void testAtomIdAnnotations() {
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final int expectedAtomId = 109;
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final byte atomAnnotationId = 84;
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final int atomAnnotationValue = 9;
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final int field1 = 1;
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final byte field1AnnotationId = 45;
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final boolean field1AnnotationValue = false;
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final boolean field2 = true;
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final byte field2AnnotationId = 1;
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final int field2AnnotationValue = 23;
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final long minTimestamp = SystemClock.elapsedRealtimeNanos();
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final StatsEvent statsEvent = StatsEvent.newBuilder()
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.setAtomId(expectedAtomId)
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.addIntAnnotation(atomAnnotationId, atomAnnotationValue)
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.writeInt(field1)
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.addBooleanAnnotation(field1AnnotationId, field1AnnotationValue)
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.writeBoolean(field2)
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.addIntAnnotation(field2AnnotationId, field2AnnotationValue)
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.usePooledBuffer()
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.build();
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final long maxTimestamp = SystemClock.elapsedRealtimeNanos();
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assertThat(statsEvent.getAtomId()).isEqualTo(expectedAtomId);
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final ByteBuffer buffer =
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ByteBuffer.wrap(statsEvent.getBytes()).order(ByteOrder.LITTLE_ENDIAN);
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assertWithMessage("Root element in buffer is not TYPE_OBJECT")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_OBJECT);
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assertWithMessage("Incorrect number of elements in root object")
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.that(buffer.get()).isEqualTo(4);
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assertWithMessage("First element is not timestamp")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_LONG);
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assertWithMessage("Incorrect timestamp")
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.that(buffer.getLong()).isIn(Range.closed(minTimestamp, maxTimestamp));
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final byte atomIdHeader = buffer.get();
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final int atomIdAnnotationValueCount = atomIdHeader >> 4;
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final byte atomIdValueType = (byte) (atomIdHeader & 0x0F);
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assertWithMessage("Second element is not atom id")
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.that(atomIdValueType).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("Atom id annotation count is wrong")
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.that(atomIdAnnotationValueCount).isEqualTo(1);
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assertWithMessage("Incorrect atom id")
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.that(buffer.getInt()).isEqualTo(expectedAtomId);
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assertWithMessage("Atom id's annotation id is wrong")
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.that(buffer.get()).isEqualTo(atomAnnotationId);
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assertWithMessage("Atom id's annotation type is wrong")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("Atom id's annotation value is wrong")
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.that(buffer.getInt()).isEqualTo(atomAnnotationValue);
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final byte field1Header = buffer.get();
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final int field1AnnotationValueCount = field1Header >> 4;
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final byte field1Type = (byte) (field1Header & 0x0F);
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assertWithMessage("First field is not Int")
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.that(field1Type).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("First field annotation count is wrong")
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.that(field1AnnotationValueCount).isEqualTo(1);
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assertWithMessage("Incorrect field 1")
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.that(buffer.getInt()).isEqualTo(field1);
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assertWithMessage("First field's annotation id is wrong")
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.that(buffer.get()).isEqualTo(field1AnnotationId);
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assertWithMessage("First field's annotation type is wrong")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_BOOLEAN);
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assertWithMessage("First field's annotation value is wrong")
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.that(buffer.get()).isEqualTo(field1AnnotationValue ? 1 : 0);
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final byte field2Header = buffer.get();
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final int field2AnnotationValueCount = field2Header >> 4;
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final byte field2Type = (byte) (field2Header & 0x0F);
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assertWithMessage("Second field is not boolean")
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.that(field2Type).isEqualTo(StatsEvent.TYPE_BOOLEAN);
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assertWithMessage("Second field annotation count is wrong")
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.that(field2AnnotationValueCount).isEqualTo(1);
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assertWithMessage("Incorrect field 2")
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.that(buffer.get()).isEqualTo(field2 ? 1 : 0);
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assertWithMessage("Second field's annotation id is wrong")
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.that(buffer.get()).isEqualTo(field2AnnotationId);
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assertWithMessage("Second field's annotation type is wrong")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("Second field's annotation value is wrong")
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.that(buffer.getInt()).isEqualTo(field2AnnotationValue);
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assertThat(statsEvent.getNumBytes()).isEqualTo(buffer.position());
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statsEvent.release();
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}
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@Test
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public void testSetAtomIdNotCalledImmediately() {
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final int expectedAtomId = 109;
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final int field1 = 25;
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final boolean field2 = true;
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final long minTimestamp = SystemClock.elapsedRealtimeNanos();
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final StatsEvent statsEvent = StatsEvent.newBuilder()
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.writeInt(field1)
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.setAtomId(expectedAtomId)
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.writeBoolean(field2)
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.usePooledBuffer()
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.build();
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final long maxTimestamp = SystemClock.elapsedRealtimeNanos();
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assertThat(statsEvent.getAtomId()).isEqualTo(expectedAtomId);
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final ByteBuffer buffer =
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ByteBuffer.wrap(statsEvent.getBytes()).order(ByteOrder.LITTLE_ENDIAN);
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assertWithMessage("Root element in buffer is not TYPE_OBJECT")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_OBJECT);
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assertWithMessage("Incorrect number of elements in root object")
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.that(buffer.get()).isEqualTo(3);
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assertWithMessage("First element is not timestamp")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_LONG);
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assertWithMessage("Incorrect timestamp")
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.that(buffer.getLong()).isIn(Range.closed(minTimestamp, maxTimestamp));
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assertWithMessage("Second element is not atom id")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_INT);
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assertWithMessage("Incorrect atom id")
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.that(buffer.getInt()).isEqualTo(expectedAtomId);
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assertWithMessage("Third element is not errors type")
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.that(buffer.get()).isEqualTo(StatsEvent.TYPE_ERRORS);
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final int errorMask = buffer.getInt();
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assertWithMessage("ERROR_ATOM_ID_INVALID_POSITION should be the only error in the mask")
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.that(errorMask).isEqualTo(StatsEvent.ERROR_ATOM_ID_INVALID_POSITION);
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assertThat(statsEvent.getNumBytes()).isEqualTo(buffer.position());
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statsEvent.release();
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}
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private static byte[] getByteArrayFromByteBuffer(final ByteBuffer buffer) {
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final int numBytes = buffer.getInt();
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byte[] bytes = new byte[numBytes];
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