mirror of
https://git.libcamera.org/libcamera/libcamera.git
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Move the functionality for the following components to the new base support library: - BoundMethod - EventDispatcher - EventDispatcherPoll - Log - Message - Object - Signal - Semaphore - Thread - Timer While it would be preferable to see these split to move one component per commit, these components are all interdependent upon each other, which leaves us with one big change performing the move for all of them. Reviewed-by: Hirokazu Honda <hiroh@chromium.org> Reviewed-by: Paul Elder <paul.elder@ideasonboard.com> Signed-off-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
196 lines
5.5 KiB
C++
196 lines
5.5 KiB
C++
/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2020, Google Inc.
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*
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* post_processor_jpeg.cpp - JPEG Post Processor
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*/
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#include "post_processor_jpeg.h"
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#include <chrono>
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#include "../camera_device.h"
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#include "../camera_metadata.h"
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#include "encoder_libjpeg.h"
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#include "exif.h"
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#include <libcamera/base/log.h>
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#include <libcamera/formats.h>
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using namespace libcamera;
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using namespace std::chrono_literals;
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LOG_DEFINE_CATEGORY(JPEG)
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PostProcessorJpeg::PostProcessorJpeg(CameraDevice *const device)
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: cameraDevice_(device)
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{
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}
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int PostProcessorJpeg::configure(const StreamConfiguration &inCfg,
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const StreamConfiguration &outCfg)
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{
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if (inCfg.size != outCfg.size) {
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LOG(JPEG, Error) << "Mismatch of input and output stream sizes";
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return -EINVAL;
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}
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if (outCfg.pixelFormat != formats::MJPEG) {
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LOG(JPEG, Error) << "Output stream pixel format is not JPEG";
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return -EINVAL;
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}
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streamSize_ = outCfg.size;
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thumbnailer_.configure(inCfg.size, inCfg.pixelFormat);
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encoder_ = std::make_unique<EncoderLibJpeg>();
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return encoder_->configure(inCfg);
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}
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void PostProcessorJpeg::generateThumbnail(const FrameBuffer &source,
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const Size &targetSize,
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unsigned int quality,
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std::vector<unsigned char> *thumbnail)
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{
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/* Stores the raw scaled-down thumbnail bytes. */
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std::vector<unsigned char> rawThumbnail;
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thumbnailer_.createThumbnail(source, targetSize, &rawThumbnail);
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StreamConfiguration thCfg;
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thCfg.size = targetSize;
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thCfg.pixelFormat = thumbnailer_.pixelFormat();
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int ret = thumbnailEncoder_.configure(thCfg);
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if (!rawThumbnail.empty() && !ret) {
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/*
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* \todo Avoid value-initialization of all elements of the
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* vector.
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*/
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thumbnail->resize(rawThumbnail.size());
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int jpeg_size = thumbnailEncoder_.encode(rawThumbnail,
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*thumbnail, {}, quality);
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thumbnail->resize(jpeg_size);
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LOG(JPEG, Debug)
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<< "Thumbnail compress returned "
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<< jpeg_size << " bytes";
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}
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}
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int PostProcessorJpeg::process(const FrameBuffer &source,
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CameraBuffer *destination,
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const CameraMetadata &requestMetadata,
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CameraMetadata *resultMetadata)
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{
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if (!encoder_)
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return 0;
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ASSERT(destination->numPlanes() == 1);
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camera_metadata_ro_entry_t entry;
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int ret;
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/* Set EXIF metadata for various tags. */
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Exif exif;
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exif.setMake(cameraDevice_->maker());
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exif.setModel(cameraDevice_->model());
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ret = requestMetadata.getEntry(ANDROID_JPEG_ORIENTATION, &entry);
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const uint32_t jpegOrientation = ret ? *entry.data.i32 : 0;
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resultMetadata->addEntry(ANDROID_JPEG_ORIENTATION, jpegOrientation);
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exif.setOrientation(jpegOrientation);
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exif.setSize(streamSize_);
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/*
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* We set the frame's EXIF timestamp as the time of encode.
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* Since the precision we need for EXIF timestamp is only one
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* second, it is good enough.
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*/
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exif.setTimestamp(std::time(nullptr), 0ms);
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ret = resultMetadata->getEntry(ANDROID_SENSOR_EXPOSURE_TIME, &entry);
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exif.setExposureTime(ret ? *entry.data.i64 : 0);
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ret = requestMetadata.getEntry(ANDROID_LENS_APERTURE, &entry);
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if (ret)
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exif.setAperture(*entry.data.f);
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exif.setISO(100);
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exif.setFlash(Exif::Flash::FlashNotPresent);
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exif.setWhiteBalance(Exif::WhiteBalance::Auto);
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exif.setFocalLength(1.0);
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ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_TIMESTAMP, &entry);
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if (ret) {
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exif.setGPSDateTimestamp(*entry.data.i64);
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resultMetadata->addEntry(ANDROID_JPEG_GPS_TIMESTAMP,
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*entry.data.i64);
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}
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ret = requestMetadata.getEntry(ANDROID_JPEG_THUMBNAIL_SIZE, &entry);
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if (ret) {
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const int32_t *data = entry.data.i32;
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Size thumbnailSize = { static_cast<uint32_t>(data[0]),
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static_cast<uint32_t>(data[1]) };
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ret = requestMetadata.getEntry(ANDROID_JPEG_THUMBNAIL_QUALITY, &entry);
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uint8_t quality = ret ? *entry.data.u8 : 95;
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resultMetadata->addEntry(ANDROID_JPEG_THUMBNAIL_QUALITY, quality);
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if (thumbnailSize != Size(0, 0)) {
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std::vector<unsigned char> thumbnail;
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generateThumbnail(source, thumbnailSize, quality, &thumbnail);
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if (!thumbnail.empty())
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exif.setThumbnail(thumbnail, Exif::Compression::JPEG);
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}
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resultMetadata->addEntry(ANDROID_JPEG_THUMBNAIL_SIZE, data, 2);
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}
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ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_COORDINATES, &entry);
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if (ret) {
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exif.setGPSLocation(entry.data.d);
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resultMetadata->addEntry(ANDROID_JPEG_GPS_COORDINATES,
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entry.data.d, 3);
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}
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ret = requestMetadata.getEntry(ANDROID_JPEG_GPS_PROCESSING_METHOD, &entry);
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if (ret) {
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std::string method(entry.data.u8, entry.data.u8 + entry.count);
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exif.setGPSMethod(method);
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resultMetadata->addEntry(ANDROID_JPEG_GPS_PROCESSING_METHOD,
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entry.data.u8, entry.count);
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}
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if (exif.generate() != 0)
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LOG(JPEG, Error) << "Failed to generate valid EXIF data";
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ret = requestMetadata.getEntry(ANDROID_JPEG_QUALITY, &entry);
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const uint8_t quality = ret ? *entry.data.u8 : 95;
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resultMetadata->addEntry(ANDROID_JPEG_QUALITY, quality);
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int jpeg_size = encoder_->encode(source, destination->plane(0),
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exif.data(), quality);
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if (jpeg_size < 0) {
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LOG(JPEG, Error) << "Failed to encode stream image";
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return jpeg_size;
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}
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/* Fill in the JPEG blob header. */
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uint8_t *resultPtr = destination->plane(0).data()
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+ destination->jpegBufferSize(cameraDevice_->maxJpegBufferSize())
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- sizeof(struct camera3_jpeg_blob);
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auto *blob = reinterpret_cast<struct camera3_jpeg_blob *>(resultPtr);
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blob->jpeg_blob_id = CAMERA3_JPEG_BLOB_ID;
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blob->jpeg_size = jpeg_size;
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/* Update the JPEG result Metadata. */
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resultMetadata->addEntry(ANDROID_JPEG_SIZE, jpeg_size);
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return 0;
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}
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