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Purism GNOME phone app
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.gitlab/issue_templates gitlab-template: Add Librem 5 2020-12-22 08:04:19 +00:00
build-aux meson: Add postinstall script to compile schemas etc 2021-06-30 00:39:07 +02:00
data application: settings: Add autoload-plugins setting 2021-06-26 08:57:53 +02:00
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plugins sip: provider: Keep provider alive while there are still origins 2021-06-26 08:56:18 +02:00
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.gitlab-ci.yml ci: Switch to Debian Bullseye images 2021-07-12 12:03:57 +02:00
calls.doap doap: Add gnome user ids 2021-07-05 14:17:58 +02:00
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HACKING.md Introduce HACKING.md 2021-04-09 10:20:03 +02:00
meson.build meson: Change homepage to GNOMEs gitlab 2021-07-12 13:35:57 +00:00
meson_options.txt src: meson.build: remove librem5-hack option and depend on libcallaudio 2020-11-01 13:17:32 +01:00
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sm.puri.Calls.json flatpak: Update ModemManager to 1.16 2021-06-22 06:27:26 +02:00

Calls

Code coverage

A phone dialer and call handler.

License

Calls is licensed under the GPLv3+.

Dependencies

To build Calls you need to first install the build-deps defined by the debian/control file

If you are running a Debian based distribution, you can easily install all those the dependencies making use of the following command

sudo apt-get build-dep .

Building

We use the meson and thereby Ninja. The quickest way to get going is to do the following:

meson . _build
ninja -C _build
ninja -C _build install

If you don't want to pollute your filesystem please be aware, that you can also use --prefix=~/install.

Build the documentation

If you want to build the documentation you have to configure the meson project with -Ggtk_doc=true

meson . _build -Dgtk_doc=true
ninja -C _build
ninja -C _build calls-doc

Running

Calls has a variety of backends. The default backend is "mm", which utilises ModemManager. To choose a different backend, use the -p command-line option. For example, to run with the dummy backend and some useful debugging output:

export G_MESSAGES_DEBUG=all
/usr/local/bin/gnome-calls -p dummy

If using ModemManager, Calls will wait for ModemManager to appear on D-Bus and then wait for usable modems to appear. The UI will be inactive and display a status message until a usable modem appears.

Running from the build directory

You can run calls without having to install it by executing the run script in the build folder, i.e. _build/run. This script will setup the needed environment and start Calls.

Call provider backends

Call provider backends are compiled as plugins and can be loaded and unloaded at runtime using the -p command line flag, followed by the plugin name.

Setting the CALLS_PLUGIN_DIR environment variable will include the specified directory in the plugin search path. F.e.

export CALLS_PLUGIN_DIR=_build/plugins/
/usr/local/bin/gnome-calls -p dummy

oFono

There is also an oFono backend, "ofono". This was the first backend developed but has been superceded by the ModemManager backend so it may suffer from a lack of attention.

The ofono backend depends on oFono Modem objects being present on D-Bus. To run oFono with useful output:

sudo OFONO_AT_DEBUG=1 ofonod -n -d

The test programs within the oFono source tree are useful to bring up a modem to a suitable state. For example:

cd $OFONO_SOURCE/test
./list-modems
./enable-modem /sim7100
./online-modem /sim7100

Then run Calls:

/usr/bin/gnome-calls -p ofono

Phonesim

One can also make use of the oFono modem simulator, phonesim (in the ofono-phonesim package in Debian):

ofono-phonesim -p 12345 -gui /usr/local/share/phonesim/default.xml

then, ensuring /etc/ofono/phonesim.conf has appropriate contents like:

[phonesim]
Address=127.0.0.1
Port=12345

run oFono as above, then:

cd $OFONO_SOURCE/test
./enable-modem /phonesim
./online-modem /phonesim

And again run Calls.