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authorMatthias Vogelgesang <matthias.vogelgesang@gmail.com>2012-10-08 16:05:19 +0200
committerMatthias Vogelgesang <matthias.vogelgesang@gmail.com>2012-10-08 16:05:19 +0200
commit1716926f5c36a89cb00c900160629110657638b1 (patch)
tree06994dd5f8b1365cc27103880a2a5573c46fddc1
parent1568fc37538a70bb0309df98f2b8e7b6d0daa265 (diff)
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Add packages and bindings sections
-rw-r--r--docs/manual.md51
1 files changed, 47 insertions, 4 deletions
diff --git a/docs/manual.md b/docs/manual.md
index 0fe4cca..5162ddf 100644
--- a/docs/manual.md
+++ b/docs/manual.md
@@ -12,7 +12,18 @@ Before installing `libuca` itself, you should install any drivers and SDKs
needed to access the cameras you want to access through `libuca`. Now you have
two options: install pre-built packages or build from source.
-## Building from source
+### Installing packages
+
+Packages for the core library and all plugins are currently provided for
+openSUSE. To install them run `zypper`:
+
+ sudo zypper in libuca-x.y.z-x86_64.rpm
+ sudo zypper in uca-plugin-*.rpm
+
+To install development files such as headers, you have to install the
+`libuca-x.y.z-devel.rpm` package.
+
+### Building from source
Building the library and installing from source is simple and straightforward.
Make sure you have
@@ -38,7 +49,8 @@ repository][repo], you also need Git:
[repo]: http://ufo.kit.edu/repos/libuca.git/
-### Fetching the sources
+
+#### Fetching the sources
Untar the distribution
@@ -54,7 +66,7 @@ and create a new, empty build directory inside:
mkdir build
-### Configuring and building
+#### Configuring and building
Now you need to create the Makefile with CMake. Go into the build directory and
point CMake to the `libuca` top-level directory:
@@ -86,7 +98,7 @@ latter that 64 should be appended to any library paths. This is necessary on
Linux distributions that expect 64-bit libraries in `/usr[/local]/lib64`.
-### Building this manual
+#### Building this manual
Make sure you have [Pandoc][] installed. With Debian/Ubuntu this can be achieved
with
@@ -367,6 +379,37 @@ setup_async (UcaCamera *camera)
}
~~~
+
+# Bindings
+
+Since version 1.1, libuca generates GObject introspection meta data if
+`g-ir-scanner` and `g-ir-compiler` can be found. When the XML description
+`Uca-x.y.gir` and the typelib `Uca-x.y.typelib` are installed, GI-aware
+languages can access libuca and create and modify cameras, for example in
+Python:
+
+~~~ {.python}
+from gi.repository import Uca
+
+pm = Uca.PluginManager()
+
+# List all cameras
+print(pm.get_available_cameras())
+
+# Load a camera
+cam = pm.get_camera('pco')
+
+# You can read and write properties in two ways
+cam.set_properties(exposure_time=0.05)
+cam.props.roi_width = 1024
+~~~
+
+Note, that the naming of classes and properties depends on the GI implementation
+of the target language. For example with Python, the namespace prefix `uca_`
+becomes the module name `Uca` and dashes separating property names become
+underscores.
+
+
# Integrating new cameras
A new camera is integrated by [sub-classing][] `UcaCamera` and implement all