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We maintain Siril binaries in many operating systems, but in general only for the official releases. If your operating system has no binary version or if you want to customize it, you will have to build it from source.

This is the installation documentation for Siril 1.2, for Siril 1.0 see older version of the page

Installare Siril dai binari

Siril è attualmente disponibile come binario solo per i pacchetti come 0.9.4.


Il pacchetto binario è disponibile su Debian testing e instabile. Dovrebbe essere installato utilizzando i repository, con privilegi di root:

   apt-get install siril

Ubuntu & Linux Mint

Repository ufficiali

   sudo apt-get install siril

Repository PPA

Su Ubuntu 16.04 e Linux Mint 18.X, per una nuova versione che è stata fornita sui repository ufficiali, c'è un PPA:

   sudo add-apt-repository ppa:lock042/siril
   sudo apt-get update
   sudo apt-get install siril

Per altri sistemi operativi si prega di utilizzare il codice sorgente come descritto qui sotto. Windows è completamente non supportato. Se puoi, considera di creare un processo di installazione o un pacchetto per il tuo sistema operativo.

Mac OS X

See our download page for an official build for Mac.

Flatpak and AppImage

Siril is also available with the static binary packages flatpak and AppImage. You should not use these if Siril is available in your OS like Ubuntu because they take more space on the disk and may not work as well.

Installazione da sorgente

L'installazione da sorgente è raccomandata se vuoi le ultime funzionalità, se la precedente release sta diventando vecchia o se vuoi partecipare al miglioramento di Siril. Molti utenti stanno segnalando i ritocchi che vorrebbero, e spesso li implementiamo molto rapidamente.

Getting the sources

I sorgenti sono memorizzati in un repository subversion, puoi scaricarli per la prima volta utilizzando questo comando:

   svn co siril

E aggiornarli le volte successive digitando svn up nella directory radice.


Siril depends on a number of libraries, most of which should be available in your operating system if it is recent enough. The names of the packages specific to operating systems are listed in each section below. Mandatory dependencies are:

  • gtk+3 (Graphical user interface library), at least version 3.20
  • cfitsio (FITS images support)
  • fftw (Discrete Fourier Transform library)
  • gsl (The GNU Scientific Library), version 1 or 2 starting with release 0.9.1 or SVN revision 1040
  • OpenCV and a C++ compiler for some image operations

Note: even if Siril can run in console since version 0.9.9, it is still linked against the graphical libraries, so you still need GTK+ to compile and run it.

Optional dependencies are:

  • libcurl OR glib-networking with its HTTP backend for online operations like update checks, astrometry and photometry requests.
  • libraw, libtiff, libjpeg, libpng, libheif for RAW, TIFF, JPEG, PNG and HEIF images import and export. The libraries are detected at compilation-time.
  • FFMS2 for film native support as image sequences. It also allows frames to be extracted from many kinds of film, for other purposes than astronomy. Versions < 2.20 have an annoying bug. It is recommended to install the latest version.
  • ffmpeg (or libav), providing libavformat, libavutil (>= 55.20), libavcodec, libswscale and libswresample for mp4 sequence export
  • gnuplot for photometry graph creation (not required at compilation time)
  • wcslib for world coordinate system management, annotations and the photometric color calibration
  • libconfig (Structured configuration files support), used to read the configuration file from versions up to 1.0, only used to get old settings now
  • libjson-glib for update checking (useless if you build an non-released version).
  • Exiv2 to manage image metadata.

Build dependencies

To install from source, you will have to install the base development packages:

    git, autoconf, automake, libtool, intltool, pkg-tools, make, cmake, gcc, g++

The compilers gcc and g++ from this list can be replaced by clang and clang++ (we use them for development), probably others as well.

The autotools packages (autoconf, automake, probably some others) can be replaced by meson.

Generic build process

Siril can be compiled either using autotools or meson.


The newer (since version 0.99.4) way is to use meson and ninja:

   meson --buildtype release _build
   cd _build
   ninja install

To disable some dependencies or features, use meson options -Dfeature=false or -Ddisable-feature=yes depending on the case.


The autotools ways is well known in the unix world, once the source has been downloaded and the prerequisites have been installed, the general way to build it is as such:

   make install

possibly with superuser privileges.

Potresti voler passare opzioni specifiche al compilatore, per esempio che tu vuoi l'ottimizzazione e l'installazione in /opt invece del default /usr/local:

   CFLAGS='-mtune=native -O2' ./ --prefix=/opt

Per lanciare Siril, il nome del comando è siril.

To launch Siril, the command name is siril or siril-cli.

Installing on Debian

You may want to build a .deb package instead of using a non-packaged version, in that case see this help. In particular, to install dependencies, you can use the command:

   apt build-dep siril

Otherwise, here is the list of packages for the current version:

  • Packages required for the build system:
   autoconf automake make gcc g++ libtool intltool pkg-config cmake
  • List of packages for mandatory dependencies:
   libfftw3-dev libgsl-dev libcfitsio-dev libgtk-3-dev libopencv-dev libexiv2-dev
  • List of packages for optional dependencies:
   wcslib-dev libcurl4-gnutls-dev libpng-dev libjpeg-dev libtiff5-dev libraw-dev gnome-icon-theme libavformat-dev libavutil-dev libavcodec-dev libswscale-dev libswresample-dev 

for film input (AVI and others) support: libffms2-dev.

Installing on Arch Linux

Two packages are available on AUR: siril and siril-git. Download the PKGBUILD or the repository, install dependencies, run makepkg to build the package and pacman -U to install it.

Dependencies (mandatory and a few optional):

   pacman -S base-devel cmake git intltool gtk3 fftw cfitsio gsl opencv exiv2 libraw wcslib

Installing on FreeBSD 10

(Not updated in a while)

The list of dependencies is basically the same as for other OS, below are a list for build dependencies and a list of Siril dependencies:

   pkg install autotools gmake pkgconf libtool intltool gettext gtk3 fftw3 gsl cfitsio libraw opencv curl

The only package not available as binary is ffms2, for film files handling, you will need to compile it from source.

Compilation and the software are working fine with the default clang (cc) compiler. As clang 3.8 appeared in FreeBSD 10 with OpenMP support (clang38 in pkg), Siril can be compiled with it using the following configure command:

   C=clang38 CXX=clang++38 LD=clang++38 LDFLAGS='-L/usr/local/llvm38/lib' ./

It is also possible to install gcc 4.8 or gcc 5 in FreeBSD. Make sure to link with the OS official compiler however, cc or c++ and not gcc or g++, otherwise the generated binary will be incorrect. That's also why the -lgomp is required to link it:

   CC=gcc5 LDFLAGS="-Wl,-rpath=/usr/local/lib/gcc5 -L/usr/local/lib/gcc5 -lgomp" ./

Building on Windows with msys2

These instructions are made for compiling on Windows with MSYS2 distribution using MinGW. MSYS2 requires 64 bit Windows 7 or newer, and does not work with FAT filesystems.

Download MSYS2 64bit, a software distribution and building platform for Windows and run the installer - "x86_64" for 64-bit. When asked, specify the directory where MSYS2 64bit will be installed.

Run MSYS2 directly from the installer or later "MSYS2 MinGW 64 bit" from Start menu or shortcut.

First, update the package database and core system packages by typing (for more info about pacman see this page):

pacman -Syu

Installing dependencies: Note: automake is the legacy (stable) build method, now being replaced by meson (experimental) build system.

   pacman -S --needed base-devel mingw-w64-x86_64-toolchain mingw-w64-x86_64-cmake git automake mingw-w64-x86_64-meson mingw-w64-x86_64-ninja mingw-w64-x86_64-gtk3 mingw-w64-x86_64-cfitsio mingw-w64-x86_64-fftw mingw-w64-x86_64-gsl mingw-w64-x86_64-opencv mingw-w64-x86_64-exiv2 mingw-w64-x86_64-curl

Warning: meson will need a restart of MSYS2 to be usable.

Also install some optional dependencies (recommended):

   pacman -S mingw-w64-x86_64-libraw mingw-w64-x86_64-libheif mingw-w64-x86_64-ffms2

Building Siril from source:

The source code is stored on a gitlab repository, you can download it with this command the first time:

   git clone
   cd siril
   git submodule update --init

Now, meson and ninja are the official way to build siril on Windows: Generate the build system and compile the code by typing:

   meson _build
   ninja -C _build install

To launch your build of Siril:

Run MSYS2 64bit and type siril's command name:


You can also create a shortcut to siril.exe to start it, the default location is /mingw64/bin/.

To update your version:

Run MSYS2 64bit then

   pacman -Syu
   cd siril
   git pull --recurse-submodules
   meson _build
   ninja -C _build install

If git pull does not show any change, there is no need to rebuild by running the make command. Otherwise, it will update your build.

After that just launch the build by typing siril