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Naushir Patuck eff4b1aa01 libcamera: controls: Reorder and update description of existing controls
Group AE, AWB, etc. controls together for accessibility.

Update descriptions for Contrast, Brightness, and Saturation controls.

Update the uvcvideo and vimc pipeline handlers to use the new
brightness, contrast and saturation units. UVC has no explicit units for
those controls, so map them with a best effort heuristic. For VIMC,
hardcode the control range based on knowledge of the driver
implementation for simplicity.

Signed-off-by: Naushir Patuck <naush@raspberrypi.com>
Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
Signed-off-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
2020-04-27 20:18:12 +03:00
Documentation licenses: Add SPDX headers to Doxygen configuration 2020-04-15 19:51:56 +03:00
include libcamera: geometry: Rename Rectangle fields 2020-04-26 17:12:42 +02:00
LICENSES licenses: Move developer's certificate of origin to Documentation/ 2020-04-15 19:51:56 +03:00
package/gentoo/media-libs/libcamera licenses: Add SPDX headers to Gentoo ebuild 2020-04-15 19:51:56 +03:00
src libcamera: controls: Reorder and update description of existing controls 2020-04-27 20:18:12 +03:00
test test: list-camera: Handle error on starting the CameraManager 2020-04-15 01:09:23 +03:00
utils licenses: Add SPDX headers to the git commit hook scripts 2020-04-15 19:51:56 +03:00
.clang-format licenses: Replace deprecated GPL-2.0 with GPL-2.0-only 2020-04-15 19:51:56 +03:00
.gitignore git: Add .gitignore file 2018-12-14 13:23:07 +00:00
meson.build meson.build: Silence the C99 designators warning 2020-02-13 14:10:48 +02:00
meson_options.txt libcamera: Make pipeline handlers selectable at compile time 2020-03-25 12:21:13 +02:00
README.rst libcamera: Make IPA module signing mandatory for the meantime 2020-04-16 17:37:41 +03:00

.. SPDX-License-Identifier: CC-BY-SA-4.0

.. section-begin-libcamera

===========
 libcamera
===========

**A complex camera support library for Linux, Android, and ChromeOS**

Cameras are complex devices that need heavy hardware image processing
operations. Control of the processing is based on advanced algorithms that must
run on a programmable processor. This has traditionally been implemented in a
dedicated MCU in the camera, but in embedded devices algorithms have been moved
to the main CPU to save cost. Blurring the boundary between camera devices and
Linux often left the user with no other option than a vendor-specific
closed-source solution.

To address this problem the Linux media community has very recently started
collaboration with the industry to develop a camera stack that will be
open-source-friendly while still protecting vendor core IP. libcamera was born
out of that collaboration and will offer modern camera support to Linux-based
systems, including traditional Linux distributions, ChromeOS and Android.

.. section-end-libcamera
.. section-begin-getting-started

Getting Started
---------------

To fetch the sources, build and install:

::

  git clone git://linuxtv.org/libcamera.git
  cd libcamera
  meson build
  ninja -C build install

Dependencies
~~~~~~~~~~~~

The following Debian/Ubuntu packages are required for building libcamera.
Other distributions may have differing package names:

A C++ toolchain: [required]
	Either {g++, clang}

for libcamera: [required]
        meson (>= 0.47) ninja-build python3-yaml

        If your distribution doesn't provide a recent enough version of meson,
        you can install or upgrade it using pip3.

        .. code::

            pip3 install --user meson
            pip3 install --user --upgrade meson

for device hotplug enumeration: [optional]
	pkg-config libudev-dev

for documentation: [optional]
	python3-sphinx doxygen

for gstreamer: [optional]
	libgstreamer1.0-dev libgstreamer-plugins-base1.0-dev

for IPA module signing: [required]
        libgnutls28-dev openssl

for qcam: [optional]
	qtbase5-dev libqt5core5a libqt5gui5 libqt5widgets5

Using GStreamer plugin
~~~~~~~~~~~~~~~~~~~~~~

To use GStreamer plugin from source tree, set the following environment so that
GStreamer can find it.

  export GST_PLUGIN_PATH=$(pwd)/build/src/gstreamer

The debugging tool `gst-launch-1.0` can be used to construct and pipeline and test
it. The following pipeline will stream from the camera named "Camera 1" onto the
default video display element on your system.

.. code::

  gst-launch-1.0 libcamerasrc camera-name="Camera 1" ! videoconvert ! autovideosink

.. section-end-getting-started