android: Set result metadata and EXIF fields based on request metadata

Set the following android result metadata:
- ANDROID_LENS_FOCAL_LENGTH
- ANDROID_LENS_APERTURE
- ANDROID_JPEG_GPS_TIMESTAMP
- ANDROID_JPEG_GPS_COORDINATES
- ANDROID_JPEG_GPS_PROCESSING_METHOD

And the following EXIF fields:
- GPSDatestamp
- GPSTimestamp
- GPSLocation
  - GPSLatitudeRef
  - GPSLatitude
  - GPSLongitudeRef
  - GPSLongitude
  - GPSAltitudeRef
  - GPSAltitude
- GPSProcessingMethod
- FocalLength
- ExposureTime
- FNumber
- ISO
- Flash
- WhiteBalance
- SubsecTime
- SubsecTimeOriginal
- SubsecTimeDigitized

Based on android request metadata.

This allows the following CTS tests to pass:
- android.hardware.camera2.cts.StillCaptureTest#testFocalLengths
- android.hardware.camera2.cts.StillCaptureTest#testJpegExif

Signed-off-by: Paul Elder <paul.elder@ideasonboard.com>
Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
Reviewed-by: Jacopo Mondi <jacopo@jmondi.org>
This commit is contained in:
Paul Elder 2021-01-23 13:54:28 +09:00
parent 229653a59b
commit abfabdd6e7
6 changed files with 89 additions and 21 deletions

View file

@ -708,7 +708,7 @@ std::tuple<uint32_t, uint32_t> CameraDevice::calculateStaticMetadataSize()
* Currently: 53 entries, 782 bytes of static metadata * Currently: 53 entries, 782 bytes of static metadata
*/ */
uint32_t numEntries = 53; uint32_t numEntries = 53;
uint32_t byteSize = 782; uint32_t byteSize = 802;
/* /*
* Calculate space occupation in bytes for dynamically built metadata * Calculate space occupation in bytes for dynamically built metadata
@ -1253,6 +1253,8 @@ const camera_metadata_t *CameraDevice::getStaticMetadata()
ANDROID_CONTROL_VIDEO_STABILIZATION_MODE, ANDROID_CONTROL_VIDEO_STABILIZATION_MODE,
ANDROID_FLASH_MODE, ANDROID_FLASH_MODE,
ANDROID_FLASH_STATE, ANDROID_FLASH_STATE,
ANDROID_LENS_APERTURE,
ANDROID_LENS_FOCAL_LENGTH,
ANDROID_LENS_STATE, ANDROID_LENS_STATE,
ANDROID_LENS_OPTICAL_STABILIZATION_MODE, ANDROID_LENS_OPTICAL_STABILIZATION_MODE,
ANDROID_SENSOR_TIMESTAMP, ANDROID_SENSOR_TIMESTAMP,
@ -1264,6 +1266,9 @@ const camera_metadata_t *CameraDevice::getStaticMetadata()
ANDROID_NOISE_REDUCTION_MODE, ANDROID_NOISE_REDUCTION_MODE,
ANDROID_REQUEST_PIPELINE_DEPTH, ANDROID_REQUEST_PIPELINE_DEPTH,
ANDROID_SCALER_CROP_REGION, ANDROID_SCALER_CROP_REGION,
ANDROID_JPEG_GPS_COORDINATES,
ANDROID_JPEG_GPS_PROCESSING_METHOD,
ANDROID_JPEG_GPS_TIMESTAMP,
ANDROID_JPEG_SIZE, ANDROID_JPEG_SIZE,
ANDROID_JPEG_QUALITY, ANDROID_JPEG_QUALITY,
ANDROID_JPEG_ORIENTATION, ANDROID_JPEG_ORIENTATION,
@ -1816,6 +1821,7 @@ void CameraDevice::requestComplete(Request *request)
} }
int ret = cameraStream->process(*buffer, &mapped, int ret = cameraStream->process(*buffer, &mapped,
descriptor->settings_,
resultMetadata.get()); resultMetadata.get());
if (ret) { if (ret) {
status = CAMERA3_BUFFER_STATUS_ERROR; status = CAMERA3_BUFFER_STATUS_ERROR;
@ -1912,14 +1918,20 @@ CameraDevice::getResultMetadata(Camera3RequestDescriptor *descriptor,
/* /*
* \todo Keep this in sync with the actual number of entries. * \todo Keep this in sync with the actual number of entries.
* Currently: 33 entries, 75 bytes * Currently: 38 entries, 147 bytes
* *
* Reserve more space for the JPEG metadata set by the post-processor. * Reserve more space for the JPEG metadata set by the post-processor.
* Currently: ANDROID_JPEG_SIZE (int32_t), ANDROID_JPEG_QUALITY (byte), * Currently:
* ANDROID_JPEG_ORIENTATION (int32_t) = 3 entries, 9 bytes. * ANDROID_JPEG_GPS_COORDINATES (double x 3) = 24 bytes
* ANDROID_JPEG_GPS_PROCESSING_METHOD (byte x 32) = 32 bytes
* ANDROID_JPEG_GPS_TIMESTAMP (int64) = 8 bytes
* ANDROID_JPEG_SIZE (int32_t) = 4 bytes
* ANDROID_JPEG_QUALITY (byte) = 1 byte
* ANDROID_JPEG_ORIENTATION (int32_t) = 4 bytes
* Total bytes for JPEG metadata: 73
*/ */
std::unique_ptr<CameraMetadata> resultMetadata = std::unique_ptr<CameraMetadata> resultMetadata =
std::make_unique<CameraMetadata>(33, 75); std::make_unique<CameraMetadata>(38, 147);
if (!resultMetadata->isValid()) { if (!resultMetadata->isValid()) {
LOG(HAL, Error) << "Failed to allocate static metadata"; LOG(HAL, Error) << "Failed to allocate static metadata";
return nullptr; return nullptr;
@ -1984,6 +1996,14 @@ CameraDevice::getResultMetadata(Camera3RequestDescriptor *descriptor,
value = ANDROID_FLASH_STATE_UNAVAILABLE; value = ANDROID_FLASH_STATE_UNAVAILABLE;
resultMetadata->addEntry(ANDROID_FLASH_STATE, &value, 1); resultMetadata->addEntry(ANDROID_FLASH_STATE, &value, 1);
camera_metadata_ro_entry_t entry;
int ret = descriptor->settings_.getEntry(ANDROID_LENS_APERTURE, &entry);
if (ret)
resultMetadata->addEntry(ANDROID_LENS_APERTURE, entry.data.f, 1);
float focal_length = 1.0;
resultMetadata->addEntry(ANDROID_LENS_FOCAL_LENGTH, &focal_length, 1);
value = ANDROID_LENS_STATE_STATIONARY; value = ANDROID_LENS_STATE_STATIONARY;
resultMetadata->addEntry(ANDROID_LENS_STATE, &value, 1); resultMetadata->addEntry(ANDROID_LENS_STATE, &value, 1);

View file

@ -96,12 +96,15 @@ int CameraStream::configure()
} }
int CameraStream::process(const libcamera::FrameBuffer &source, int CameraStream::process(const libcamera::FrameBuffer &source,
MappedCamera3Buffer *dest, CameraMetadata *metadata) MappedCamera3Buffer *dest,
const CameraMetadata &requestMetadata,
CameraMetadata *resultMetadata)
{ {
if (!postProcessor_) if (!postProcessor_)
return 0; return 0;
return postProcessor_->process(source, dest->maps()[0], metadata); return postProcessor_->process(source, dest->maps()[0],
requestMetadata, resultMetadata);
} }
FrameBuffer *CameraStream::getBuffer() FrameBuffer *CameraStream::getBuffer()

View file

@ -119,7 +119,9 @@ public:
int configure(); int configure();
int process(const libcamera::FrameBuffer &source, int process(const libcamera::FrameBuffer &source,
MappedCamera3Buffer *dest, CameraMetadata *metadata); MappedCamera3Buffer *dest,
const CameraMetadata &requestMetadata,
CameraMetadata *resultMetadata);
libcamera::FrameBuffer *getBuffer(); libcamera::FrameBuffer *getBuffer();
void putBuffer(libcamera::FrameBuffer *buffer); void putBuffer(libcamera::FrameBuffer *buffer);

View file

@ -83,17 +83,26 @@ void PostProcessorJpeg::generateThumbnail(const FrameBuffer &source,
int PostProcessorJpeg::process(const FrameBuffer &source, int PostProcessorJpeg::process(const FrameBuffer &source,
Span<uint8_t> destination, Span<uint8_t> destination,
CameraMetadata *metadata) const CameraMetadata &requestMetadata,
CameraMetadata *resultMetadata)
{ {
if (!encoder_) if (!encoder_)
return 0; return 0;
camera_metadata_ro_entry_t entry;
int ret;
/* Set EXIF metadata for various tags. */ /* Set EXIF metadata for various tags. */
Exif exif; Exif exif;
/* \todo Set Make and Model from external vendor tags. */ exif.setMake(cameraDevice_->maker());
exif.setMake("libcamera"); exif.setModel(cameraDevice_->model());
exif.setModel("cameraModel");
exif.setOrientation(cameraDevice_->orientation()); ret = requestMetadata.getEntry(ANDROID_JPEG_ORIENTATION, &entry);
const uint32_t jpegOrientation = ret ? *entry.data.i32 : 0;
resultMetadata->addEntry(ANDROID_JPEG_ORIENTATION, &jpegOrientation, 1);
exif.setOrientation(jpegOrientation);
exif.setSize(streamSize_); exif.setSize(streamSize_);
/* /*
* We set the frame's EXIF timestamp as the time of encode. * We set the frame's EXIF timestamp as the time of encode.
@ -102,6 +111,39 @@ int PostProcessorJpeg::process(const FrameBuffer &source,
*/ */
exif.setTimestamp(std::time(nullptr), 0ms); exif.setTimestamp(std::time(nullptr), 0ms);
/* \todo Get this information from libcamera::Request::metadata */
exif.setExposureTime(0);
ret = requestMetadata.getEntry(ANDROID_LENS_APERTURE, &entry);
if (ret)
exif.setAperture(*entry.data.f);
exif.setISO(100);
exif.setFlash(Exif::Flash::FlashNotPresent);
exif.setWhiteBalance(Exif::WhiteBalance::Auto);
exif.setFocalLength(1.0);
ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_TIMESTAMP, &entry);
if (ret) {
exif.setGPSDateTimestamp(*entry.data.i64);
resultMetadata->addEntry(ANDROID_JPEG_GPS_TIMESTAMP,
entry.data.i64, 1);
}
ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_COORDINATES, &entry);
if (ret) {
exif.setGPSLocation(entry.data.d);
resultMetadata->addEntry(ANDROID_JPEG_GPS_COORDINATES,
entry.data.d, 3);
}
ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_PROCESSING_METHOD, &entry);
if (ret) {
std::string method(entry.data.u8, entry.data.u8 + entry.count);
exif.setGPSMethod(method);
resultMetadata->addEntry(ANDROID_JPEG_GPS_PROCESSING_METHOD,
entry.data.u8, entry.count);
}
std::vector<unsigned char> thumbnail; std::vector<unsigned char> thumbnail;
generateThumbnail(source, &thumbnail); generateThumbnail(source, &thumbnail);
if (!thumbnail.empty()) if (!thumbnail.empty())
@ -136,13 +178,12 @@ int PostProcessorJpeg::process(const FrameBuffer &source,
blob->jpeg_size = jpeg_size; blob->jpeg_size = jpeg_size;
/* Update the JPEG result Metadata. */ /* Update the JPEG result Metadata. */
metadata->addEntry(ANDROID_JPEG_SIZE, &jpeg_size, 1); resultMetadata->addEntry(ANDROID_JPEG_SIZE, &jpeg_size, 1);
const uint32_t jpeg_quality = 95; /* \todo Configure JPEG encoder with this */
metadata->addEntry(ANDROID_JPEG_QUALITY, &jpeg_quality, 1); ret = requestMetadata.getEntry(ANDROID_JPEG_QUALITY, &entry);
const uint8_t jpegQuality = ret ? *entry.data.u8 : 95;
const uint32_t jpeg_orientation = 0; resultMetadata->addEntry(ANDROID_JPEG_QUALITY, &jpegQuality, 1);
metadata->addEntry(ANDROID_JPEG_ORIENTATION, &jpeg_orientation, 1);
return 0; return 0;
} }

View file

@ -26,7 +26,8 @@ public:
const libcamera::StreamConfiguration &outcfg) override; const libcamera::StreamConfiguration &outcfg) override;
int process(const libcamera::FrameBuffer &source, int process(const libcamera::FrameBuffer &source,
libcamera::Span<uint8_t> destination, libcamera::Span<uint8_t> destination,
CameraMetadata *metadata) override; const CameraMetadata &requestMetadata,
CameraMetadata *resultMetadata) override;
private: private:
void generateThumbnail(const libcamera::FrameBuffer &source, void generateThumbnail(const libcamera::FrameBuffer &source,

View file

@ -22,7 +22,8 @@ public:
const libcamera::StreamConfiguration &outCfg) = 0; const libcamera::StreamConfiguration &outCfg) = 0;
virtual int process(const libcamera::FrameBuffer &source, virtual int process(const libcamera::FrameBuffer &source,
libcamera::Span<uint8_t> destination, libcamera::Span<uint8_t> destination,
CameraMetadata *metadata) = 0; const CameraMetadata &requestMetadata,
CameraMetadata *resultMetadata) = 0;
}; };
#endif /* __ANDROID_POST_PROCESSOR_H__ */ #endif /* __ANDROID_POST_PROCESSOR_H__ */