Marco Trevisan (Treviño) 3e1e2cb91f monitor: Do not overlap when checking for applicable scaling values
With some resolutions (such as 4096x2160) we may compute duplicated
scale factors because we used a too wide threshold to check for an
applicable value.

In fact, while when we're at the first and last values it's fine to
search applicable values up to SCALE_FACTORS_STEP, on intermediate ones
we should stop in the middle of it, or we're end up overlapping the
previous scaling value domain.

In the said example in fact we were returning 2.666667 both when
looking to a scaling value close to 2.75 and 3.00 as the upper bound of
2.75 (3.0) was overlapping with the lower bound of 3.0 (2.75).
With the current code, the lower and upper bounds will be instead 2.875.

Adapt test to this, and this allows to also ensure that we're always
returning a sorted and unique list of scales (which is useful as also
g-c-c can ensure that this is true).

Part-of: <https://gitlab.gnome.org/GNOME/mutter/-/merge_requests/1878>
2021-07-22 16:19:15 +02:00
..
2019-06-05 14:49:35 -03:00

This directory implements a framework for automated tests of Mutter. The basic
idea is that mutter-test-runner acts as the window manager and compositor, and
forks off instances of mutter-test-client to act as clients.

There's a simple scripting language for tests. A very small test would look like:

---
# Start up a new X11 client with the client id 1 (doesn't have to be an integer)
# Windows for this client will be referred to as 1/<window-id>
new_client 1 x11

# Create and show two windows - again the IDs don't have to be integers
create 1/1
show 1/1
create 1/2
show 1/2

# Wait for the commands we've executed in the clients to reach Mutter
wait

# Check that the windows are in the order we expect
assert_stacking 1/1 1/2
---

Running
=======

The tests are installed according to:

https://wiki.gnome.org/Initiatives/GnomeGoals/InstalledTests

if -Dtests=true is passed to `meson configure`. You can run them uninstalled with:

 ninja test

Command reference
=================

The following commands are supported. Quoting and comments follow shell rules.

new_client <client-id> [wayland|x11]
 Starts a client, connecting by either Wayland or X11. The client
 will subsequently be known with the given client-id (an arbitrary
 string)

quit_client <client-id>
 Destroys all windows for the client, waits for that to be processed,
 then instructs the client to exit.

create <client-id>/<window-id> [override|csd]
 Creates a new window. For the X11 backend, the keyword 'override'
 can be given to create an override-redirect and the keyword 'csd'
 can be given to create a client-side decorated window.

show <client-id>/<window-id>
hide <client-id>/<window-id>
 Ask the client to show (map) or hide (unmap) the given window

activate <client-id>/<window-id>
 Ask the client to raise and focus the given window. This is currently a no-op
 for Wayland, where this capability is not supported in the protocol.

local_activate <client-id>-<window-id>
  The same as 'activate', but the operation is done directly inside Mutter
  and works for both backends

raise <client-id>/<window-id>
lower <client-id>/<window-id>
  Ask the client to raise or lower the given window ID. This is a no-op
  for Wayland clients. (It's also considered discouraged, but supported, for
  non-override-redirect X11 clients.)

minimize <client-id>/<window-id>
unminimize <client-id>/<window-id>
  Ask the client to minimize or unminimize the given window ID. This older
  term for this operation is "iconify".

destroy <client-id>/<window-id>
  Destroy the given window

wait
  Wait until all requests sent by Mutter to clients have been received by Mutter,
  and then wait until all requests by Mutter have been processed by the X server.

assert_stacking <client-id>/<window-id> <client-id>/<window-id> ...
  Assert that the list of client windows known to Mutter is as given and in
  the given order, bottom to top. The character '|' can be present in the
  list of windows to indicate the guard window that separates hidden and
  visible windows. If '|' isn't present, the guard window is asserted to
  be below all client windows.

  This function also queries the X server stack and verifies that Mutter's
  expectation of the X server stack matches reality.