use of android.hardware.camera2.TotalCaptureResult in project android_frameworks_base by AOSPA.
the class Camera2ReprocessCaptureTest method testReprocessTimestamps.
/**
* Test timestamps for reprocess requests. Reprocess request's shutter timestamp, result's
* sensor timestamp, and output image's timestamp should match the reprocess input's timestamp.
*/
private void testReprocessTimestamps(String cameraId, Size inputSize, int inputFormat, Size reprocessOutputSize, int reprocessOutputFormat) throws Exception {
if (VERBOSE) {
Log.v(TAG, "testReprocessTimestamps: cameraId: " + cameraId + " inputSize: " + inputSize + " inputFormat: " + inputFormat + " reprocessOutputSize: " + reprocessOutputSize + " reprocessOutputFormat: " + reprocessOutputFormat);
}
try {
setupImageReaders(inputSize, inputFormat, reprocessOutputSize, reprocessOutputFormat, NUM_REPROCESS_CAPTURES);
setupReprocessableSession(/*previewSurface*/
null, NUM_REPROCESS_CAPTURES);
// Prepare reprocess capture requests.
ArrayList<CaptureRequest> reprocessRequests = new ArrayList<>(NUM_REPROCESS_CAPTURES);
ArrayList<Long> expectedTimestamps = new ArrayList<>(NUM_REPROCESS_CAPTURES);
for (int i = 0; i < NUM_REPROCESS_CAPTURES; i++) {
TotalCaptureResult result = submitCaptureRequest(mFirstImageReader.getSurface(), /*inputResult*/
null);
mImageWriter.queueInputImage(mFirstImageReaderListener.getImage(CAPTURE_TIMEOUT_MS));
CaptureRequest.Builder builder = mCamera.createReprocessCaptureRequest(result);
builder.addTarget(getReprocessOutputImageReader().getSurface());
reprocessRequests.add(builder.build());
// Reprocess result's timestamp should match input image's timestamp.
expectedTimestamps.add(result.get(CaptureResult.SENSOR_TIMESTAMP));
}
// Submit reprocess requests.
SimpleCaptureCallback captureCallback = new SimpleCaptureCallback();
mSession.captureBurst(reprocessRequests, captureCallback, mHandler);
// Verify we get the expected timestamps.
for (int i = 0; i < reprocessRequests.size(); i++) {
captureCallback.waitForCaptureStart(reprocessRequests.get(i), expectedTimestamps.get(i), CAPTURE_TIMEOUT_FRAMES);
}
TotalCaptureResult[] reprocessResults = captureCallback.getTotalCaptureResultsForRequests(reprocessRequests, CAPTURE_TIMEOUT_FRAMES);
for (int i = 0; i < expectedTimestamps.size(); i++) {
// Verify the result timestamps match the input image's timestamps.
long expected = expectedTimestamps.get(i);
long timestamp = reprocessResults[i].get(CaptureResult.SENSOR_TIMESTAMP);
assertEquals("Reprocess result timestamp (" + timestamp + ") doesn't match input " + "image's timestamp (" + expected + ")", expected, timestamp);
// Verify the reprocess output image timestamps match the input image's timestamps.
Image image = getReprocessOutputImageReaderListener().getImage(CAPTURE_TIMEOUT_MS);
timestamp = image.getTimestamp();
image.close();
assertEquals("Reprocess output timestamp (" + timestamp + ") doesn't match input " + "image's timestamp (" + expected + ")", expected, timestamp);
}
// Make sure all input surfaces are released.
for (int i = 0; i < NUM_REPROCESS_CAPTURES; i++) {
mImageWriterListener.waitForImageReleased(CAPTURE_TIMEOUT_MS);
}
} finally {
closeReprossibleSession();
closeImageReaders();
}
}
use of android.hardware.camera2.TotalCaptureResult in project android_frameworks_base by AOSPA.
the class Camera2ReprocessCaptureTest method doMixedReprocessBurstCapture.
/**
* Do a burst of captures that are mixed with regular and reprocess captures.
*
* @param isReprocessCaptures An array whose elements indicate whether it's a reprocess capture
* request. If the element is true, it represents a reprocess capture
* request. If the element is false, it represents a regular capture
* request. The size of the array is the number of capture requests
* in the burst.
*/
private ImageResultHolder[] doMixedReprocessBurstCapture(boolean[] isReprocessCaptures) throws Exception {
if (isReprocessCaptures == null || isReprocessCaptures.length <= 0) {
throw new IllegalArgumentException("isReprocessCaptures must have at least 1 capture.");
}
boolean hasReprocessRequest = false;
boolean hasRegularRequest = false;
TotalCaptureResult[] results = new TotalCaptureResult[isReprocessCaptures.length];
for (int i = 0; i < isReprocessCaptures.length; i++) {
// submit a capture and get the result if this entry is a reprocess capture.
if (isReprocessCaptures[i]) {
results[i] = submitCaptureRequest(mFirstImageReader.getSurface(), /*inputResult*/
null);
mImageWriter.queueInputImage(mFirstImageReaderListener.getImage(CAPTURE_TIMEOUT_MS));
hasReprocessRequest = true;
} else {
hasRegularRequest = true;
}
}
Surface[] outputSurfaces = new Surface[isReprocessCaptures.length];
for (int i = 0; i < isReprocessCaptures.length; i++) {
outputSurfaces[i] = getReprocessOutputImageReader().getSurface();
}
TotalCaptureResult[] finalResults = submitMixedCaptureBurstRequest(outputSurfaces, results);
ImageResultHolder[] holders = new ImageResultHolder[isReprocessCaptures.length];
for (int i = 0; i < isReprocessCaptures.length; i++) {
Image image = getReprocessOutputImageReaderListener().getImage(CAPTURE_TIMEOUT_MS);
if (hasReprocessRequest && hasRegularRequest) {
// If there are mixed requests, images and results may not be in the same order.
for (int j = 0; j < finalResults.length; j++) {
if (finalResults[j] != null && finalResults[j].get(CaptureResult.SENSOR_TIMESTAMP) == image.getTimestamp()) {
holders[i] = new ImageResultHolder(image, finalResults[j]);
finalResults[j] = null;
break;
}
}
assertNotNull("Cannot find a result matching output image's timestamp: " + image.getTimestamp(), holders[i]);
} else {
// If no mixed requests, images and results should be in the same order.
holders[i] = new ImageResultHolder(image, finalResults[i]);
}
}
return holders;
}
use of android.hardware.camera2.TotalCaptureResult in project android_frameworks_base by AOSPA.
the class Camera2ReprocessCaptureTest method testReprocessRequestKeys.
/**
* Test the following keys in reprocess results match the keys in reprocess requests:
* 1. EDGE_MODE
* 2. NOISE_REDUCTION_MODE
* 3. REPROCESS_EFFECTIVE_EXPOSURE_FACTOR (only for YUV reprocess)
*/
private void testReprocessRequestKeys(String cameraId, Size inputSize, int inputFormat, Size reprocessOutputSize, int reprocessOutputFormat) throws Exception {
if (VERBOSE) {
Log.v(TAG, "testReprocessRequestKeys: cameraId: " + cameraId + " inputSize: " + inputSize + " inputFormat: " + inputFormat + " reprocessOutputSize: " + reprocessOutputSize + " reprocessOutputFormat: " + reprocessOutputFormat);
}
final Integer[] EDGE_MODES = { CaptureRequest.EDGE_MODE_FAST, CaptureRequest.EDGE_MODE_HIGH_QUALITY, CaptureRequest.EDGE_MODE_OFF, CaptureRequest.EDGE_MODE_ZERO_SHUTTER_LAG };
final Integer[] NR_MODES = { CaptureRequest.NOISE_REDUCTION_MODE_HIGH_QUALITY, CaptureRequest.NOISE_REDUCTION_MODE_OFF, CaptureRequest.NOISE_REDUCTION_MODE_ZERO_SHUTTER_LAG, CaptureRequest.NOISE_REDUCTION_MODE_FAST };
final Float[] EFFECTIVE_EXP_FACTORS = { null, 1.0f, 2.5f, 4.0f };
int numFrames = EDGE_MODES.length;
try {
setupImageReaders(inputSize, inputFormat, reprocessOutputSize, reprocessOutputFormat, numFrames);
setupReprocessableSession(/*previewSurface*/
null, numFrames);
// Prepare reprocess capture requests.
ArrayList<CaptureRequest> reprocessRequests = new ArrayList<>(numFrames);
for (int i = 0; i < numFrames; i++) {
TotalCaptureResult result = submitCaptureRequest(mFirstImageReader.getSurface(), /*inputResult*/
null);
mImageWriter.queueInputImage(mFirstImageReaderListener.getImage(CAPTURE_TIMEOUT_MS));
CaptureRequest.Builder builder = mCamera.createReprocessCaptureRequest(result);
builder.addTarget(getReprocessOutputImageReader().getSurface());
// Set reprocess request keys
builder.set(CaptureRequest.EDGE_MODE, EDGE_MODES[i]);
builder.set(CaptureRequest.NOISE_REDUCTION_MODE, NR_MODES[i]);
if (inputFormat == ImageFormat.YUV_420_888) {
builder.set(CaptureRequest.REPROCESS_EFFECTIVE_EXPOSURE_FACTOR, EFFECTIVE_EXP_FACTORS[i]);
}
reprocessRequests.add(builder.build());
}
// Submit reprocess requests.
SimpleCaptureCallback captureCallback = new SimpleCaptureCallback();
mSession.captureBurst(reprocessRequests, captureCallback, mHandler);
TotalCaptureResult[] reprocessResults = captureCallback.getTotalCaptureResultsForRequests(reprocessRequests, CAPTURE_TIMEOUT_FRAMES);
for (int i = 0; i < numFrames; i++) {
// Verify result's keys
Integer resultEdgeMode = reprocessResults[i].get(CaptureResult.EDGE_MODE);
Integer resultNoiseReductionMode = reprocessResults[i].get(CaptureResult.NOISE_REDUCTION_MODE);
assertEquals("Reprocess result edge mode (" + resultEdgeMode + ") doesn't match requested edge mode (" + EDGE_MODES[i] + ")", resultEdgeMode, EDGE_MODES[i]);
assertEquals("Reprocess result noise reduction mode (" + resultNoiseReductionMode + ") doesn't match requested noise reduction mode (" + NR_MODES[i] + ")", resultNoiseReductionMode, NR_MODES[i]);
if (inputFormat == ImageFormat.YUV_420_888) {
Float resultEffectiveExposureFactor = reprocessResults[i].get(CaptureResult.REPROCESS_EFFECTIVE_EXPOSURE_FACTOR);
assertEquals("Reprocess effective exposure factor (" + resultEffectiveExposureFactor + ") doesn't match requested " + "effective exposure factor (" + EFFECTIVE_EXP_FACTORS[i] + ")", resultEffectiveExposureFactor, EFFECTIVE_EXP_FACTORS[i]);
}
}
} finally {
closeReprossibleSession();
closeImageReaders();
}
}
use of android.hardware.camera2.TotalCaptureResult in project android_frameworks_base by AOSPA.
the class Camera2ReprocessCaptureTest method testReprocessJpegExif.
/**
* Test JPEG tags for reprocess requests. Reprocess result's JPEG tags and JPEG image's tags
* match reprocess request's JPEG tags.
*/
private void testReprocessJpegExif(String cameraId, Size inputSize, int inputFormat, Size reprocessOutputSize) throws Exception {
if (VERBOSE) {
Log.v(TAG, "testReprocessJpegExif: cameraId: " + cameraId + " inputSize: " + inputSize + " inputFormat: " + inputFormat + " reprocessOutputSize: " + reprocessOutputSize);
}
Size[] thumbnailSizes = mStaticInfo.getAvailableThumbnailSizesChecked();
Size[] testThumbnailSizes = new Size[EXIF_TEST_DATA.length];
Arrays.fill(testThumbnailSizes, thumbnailSizes[thumbnailSizes.length - 1]);
// Make sure thumbnail size (0, 0) is covered.
testThumbnailSizes[0] = new Size(0, 0);
try {
setupImageReaders(inputSize, inputFormat, reprocessOutputSize, ImageFormat.JPEG, EXIF_TEST_DATA.length);
setupReprocessableSession(/*previewSurface*/
null, EXIF_TEST_DATA.length);
// Prepare reprocess capture requests.
ArrayList<CaptureRequest> reprocessRequests = new ArrayList<>(EXIF_TEST_DATA.length);
for (int i = 0; i < EXIF_TEST_DATA.length; i++) {
TotalCaptureResult result = submitCaptureRequest(mFirstImageReader.getSurface(), /*inputResult*/
null);
mImageWriter.queueInputImage(mFirstImageReaderListener.getImage(CAPTURE_TIMEOUT_MS));
CaptureRequest.Builder builder = mCamera.createReprocessCaptureRequest(result);
builder.addTarget(getReprocessOutputImageReader().getSurface());
// set jpeg keys
setJpegKeys(builder, EXIF_TEST_DATA[i], testThumbnailSizes[i], mCollector);
reprocessRequests.add(builder.build());
}
// Submit reprocess requests.
SimpleCaptureCallback captureCallback = new SimpleCaptureCallback();
mSession.captureBurst(reprocessRequests, captureCallback, mHandler);
TotalCaptureResult[] reprocessResults = captureCallback.getTotalCaptureResultsForRequests(reprocessRequests, CAPTURE_TIMEOUT_FRAMES);
for (int i = 0; i < EXIF_TEST_DATA.length; i++) {
// Verify output image's and result's JPEG EXIF data.
Image image = getReprocessOutputImageReaderListener().getImage(CAPTURE_TIMEOUT_MS);
verifyJpegKeys(image, reprocessResults[i], reprocessOutputSize, testThumbnailSizes[i], EXIF_TEST_DATA[i], mStaticInfo, mCollector);
image.close();
}
} finally {
closeReprossibleSession();
closeImageReaders();
}
}
use of android.hardware.camera2.TotalCaptureResult in project android_frameworks_base by AOSPA.
the class Camera2ReprocessCaptureTest method testReprocessMixedBurst.
/**
* Test burst that is mixed with regular and reprocess capture requests.
*/
private void testReprocessMixedBurst(String cameraId, Size inputSize, int inputFormat, Size reprocessOutputSize, int reprocessOutputFormat, Size previewSize, int numBurst) throws Exception {
if (VERBOSE) {
Log.v(TAG, "testReprocessMixedBurst: cameraId: " + cameraId + " inputSize: " + inputSize + " inputFormat: " + inputFormat + " reprocessOutputSize: " + reprocessOutputSize + " reprocessOutputFormat: " + reprocessOutputFormat + " previewSize: " + previewSize + " numBurst: " + numBurst);
}
boolean enablePreview = (previewSize != null);
ImageResultHolder[] imageResultHolders = new ImageResultHolder[0];
try {
// totalNumBurst = number of regular burst + number of reprocess burst.
int totalNumBurst = numBurst * 2;
if (enablePreview) {
updatePreviewSurface(previewSize);
} else {
mPreviewSurface = null;
}
setupImageReaders(inputSize, inputFormat, reprocessOutputSize, reprocessOutputFormat, totalNumBurst);
setupReprocessableSession(mPreviewSurface, /*numImageWriterImages*/
numBurst);
if (enablePreview) {
startPreview(mPreviewSurface);
}
// Prepare an array of booleans indicating each capture's type (regular or reprocess)
boolean[] isReprocessCaptures = new boolean[totalNumBurst];
for (int i = 0; i < totalNumBurst; i++) {
if ((i & 1) == 0) {
isReprocessCaptures[i] = true;
} else {
isReprocessCaptures[i] = false;
}
}
imageResultHolders = doMixedReprocessBurstCapture(isReprocessCaptures);
for (ImageResultHolder holder : imageResultHolders) {
Image reprocessedImage = holder.getImage();
TotalCaptureResult result = holder.getTotalCaptureResult();
mCollector.expectImageProperties("testReprocessMixedBurst", reprocessedImage, reprocessOutputFormat, reprocessOutputSize, result.get(CaptureResult.SENSOR_TIMESTAMP));
if (DEBUG) {
Log.d(TAG, String.format("camera %s in %dx%d %d out %dx%d %d", cameraId, inputSize.getWidth(), inputSize.getHeight(), inputFormat, reprocessOutputSize.getWidth(), reprocessOutputSize.getHeight(), reprocessOutputFormat));
dumpImage(reprocessedImage, "/testReprocessMixedBurst_camera" + cameraId + "_" + mDumpFrameCount);
mDumpFrameCount++;
}
}
} finally {
for (ImageResultHolder holder : imageResultHolders) {
holder.getImage().close();
}
closeReprossibleSession();
closeImageReaders();
}
}
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