xdg-shell: Update for new state change mechanism
We're still not properly going through the request system. This will require a dense investigation of the code, but it will happen soon...
This commit is contained in:
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@ -40,19 +40,22 @@
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<enum name="version">
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<description summary="latest protocol version">
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Use this enum to check the protocol version, and it will be updated
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automatically.
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The 'current' member of this enum gives the version of the
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protocol. Implementations can compare this to the version
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they implement using static_assert to ensure the protocol and
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implementation versions match.
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</description>
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<entry name="current" value="2" summary="Always the latest version"/>
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<entry name="current" value="3" summary="Always the latest version"/>
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</enum>
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<request name="use_unstable_version">
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<description summary="enable use of this unstable version">
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Use this request in order to enable use of this interface.
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Understand and agree that one is using an unstable interface,
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that will likely change in the future, breaking the API.
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Negotiate the unstable version of the interface. This
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mechanism is in place to ensure client and server agree on the
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unstable versions of the protocol that they speak or exit
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cleanly if they don't agree. This request will go away once
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the xdg-shell protocol is stable.
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</description>
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<arg name="version" type="int"/>
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</request>
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@ -275,113 +278,87 @@
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<arg name="output" type="object" interface="wl_output" allow-null="true"/>
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</request>
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<event name="request_set_fullscreen">
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<description summary="server requests that the client set fullscreen">
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Event sent from the compositor to the client requesting that the client
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goes to a fullscreen state. It's the client job to call set_fullscreen
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and really trigger the fullscreen state.
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<enum name="state">
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<description summary="types of state on the surface">
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The different state values used on the surface. This is designed for
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state values like maximized, fullscreen. It is paired with the
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request_change_state event to ensure that both the client and the
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compositor setting the state can be synchronized.
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States set in this way are double-buffered. They will get applied on
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the next commit.
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Desktop environments may extend this enum by taking up a range of
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values and documenting the range they chose in this description.
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They are not required to document the values for the range that they
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chose. Ideally, any good extensions from a desktop environment should
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make its way into standardization into this enum.
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The current reserved ranges are:
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0x0000 - 0x0FFF: xdg-shell core values, documented below.
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0x1000 - 0x1FFF: GNOME
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</description>
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</event>
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<entry name="maximized" value="1" summary="the surface is maximized">
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A non-zero value indicates the surface is maximized. Otherwise,
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the surface is unmaximized.
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</entry>
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<entry name="fullscreen" value="2" summary="the surface is fullscreen">
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A non-zero value indicates the surface is fullscreen. Otherwise,
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the surface is not fullscreen.
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</entry>
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</enum>
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<event name="request_unset_fullscreen">
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<description summary="server requests that the client unset fullscreen">
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Event sent from the compositor to the client requesting that the client
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leaves the fullscreen state. It's the client job to call
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unset_fullscreen and really leave the fullscreen state.
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</description>
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</event>
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<request name="set_fullscreen">
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<description summary="set the surface state as fullscreen">
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Set the surface as fullscreen.
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After this request, the compositor should send a configure event
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informing the output size.
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This request informs the compositor that the next attached buffer
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committed will be in a fullscreen state. The buffer size should be the
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same size as the size informed in the configure event, if the client
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doesn't want to leave any empty area.
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In other words: the next attached buffer after set_maximized is the new
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maximized buffer. And the surface will be positioned at the maximized
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position on commit.
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A simple way to synchronize and wait for the correct configure event is
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to use a wl_display.sync request right after the set_fullscreen
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request. When the sync callback returns, the last configure event
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received just before it will be the correct one, and should contain the
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right size for the surface to maximize.
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Setting one state won't unset another state. Use
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xdg_surface.unset_fullscreen for unsetting it.
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<request name="request_change_state">
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<description summary="client requests to change a surface's state">
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This asks the compositor to change the state. If the compositor wants
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to change the state, it will send a change_state event with the same
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state_type, value, and serial, and the event flow continues as if it
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it was initiated by the compositor.
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If the compositor does not want to change the state, it will send a
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change_state to the client with the old value of the state.
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</description>
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<arg name="state_type" type="uint" summary="the state to set"/>
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<arg name="value" type="uint" summary="the value to change the state to"/>
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<arg name="serial" type="uint" summary="an event serial">
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This serial is so the client can know which change_state event corresponds
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to which request_change_state request it sent out.
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</arg>
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</request>
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<request name="unset_fullscreen">
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<description summary="unset the surface state as fullscreen">
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Unset the surface fullscreen state.
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Same negotiation as set_fullscreen must be used.
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<event name="change_state">
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<description summary="compositor wants to change a surface's state">
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This event tells the client to change a surface's state. The client
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should respond with an ack_change_state request to the compositor to
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guarantee that the compositor knows that the client has seen it.
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</description>
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</request>
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<event name="request_set_maximized">
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<description summary="server requests that the client set maximized">
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Event sent from the compositor to the client requesting that the client
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goes to a maximized state. It's the client job to call set_maximized
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and really trigger the maximized state.
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</description>
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<arg name="state_type" type="uint" summary="the state to set"/>
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<arg name="value" type="uint" summary="the value to change the state to"/>
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<arg name="serial" type="uint" summary="a serial for the compositor's own tracking"/>
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</event>
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<event name="request_unset_maximized">
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<description summary="server requests that the client unset maximized">
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Event sent from the compositor to the client requesting that the client
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leaves the maximized state. It's the client job to call unset_maximized
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and really leave the maximized state.
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</description>
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</event>
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<request name="set_maximized">
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<description summary="set the surface state as maximized">
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Set the surface as maximized.
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After this request, the compositor will send a configure event
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informing the output size minus panel and other MW decorations.
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This request informs the compositor that the next attached buffer
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committed will be in a maximized state. The buffer size should be the
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same size as the size informed in the configure event, if the client
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doesn't want to leave any empty area.
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In other words: the next attached buffer after set_maximized is the new
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maximized buffer. And the surface will be positioned at the maximized
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position on commit.
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A simple way to synchronize and wait for the correct configure event is
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to use a wl_display.sync request right after the set_maximized request.
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When the sync callback returns, the last configure event received just
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before it will be the correct one, and should contain the right size
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for the surface to maximize.
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Setting one state won't unset another state. Use
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xdg_surface.unset_maximized for unsetting it.
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</description>
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</request>
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<request name="unset_maximized">
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<description summary="unset the surface state as maximized">
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Unset the surface maximized state.
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Same negotiation as set_maximized must be used.
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<request name="ack_change_state">
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<description summary="ack a change_state event">
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When a change_state event is received, a client should then ack it
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using the ack_change_state request to ensure that the compositor
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knows the client has seen the event.
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By this point, the state is confirmed, and the next attach should
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contain the buffer drawn for the new state value.
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The values here need to be the same as the values in the cooresponding
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change_state event.
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</description>
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<arg name="state_type" type="uint" summary="the state to set"/>
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<arg name="value" type="uint" summary="the value to change the state to"/>
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<arg name="serial" type="uint" summary="a serial to pass to change_state"/>
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</request>
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<request name="set_minimized">
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<description summary="set the surface state as minimized">
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Set the surface minimized state.
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Setting one state won't unset another state.
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<description summary="minimize the surface">
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Minimize the surface.
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</description>
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</request>
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@ -3120,6 +3120,9 @@ meta_window_maximize_internal (MetaWindow *window,
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meta_window_recalc_features (window);
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set_net_wm_state (window);
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if (window->surface && window->maximized_horizontally && window->maximized_vertically)
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meta_wayland_surface_send_maximized (window->surface);
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g_object_freeze_notify (G_OBJECT (window));
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g_object_notify (G_OBJECT (window), "maximized-horizontally");
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g_object_notify (G_OBJECT (window), "maximized-vertically");
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@ -3605,10 +3608,13 @@ meta_window_unmaximize_internal (MetaWindow *window,
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set_net_wm_state (window);
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}
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g_object_freeze_notify (G_OBJECT (window));
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g_object_notify (G_OBJECT (window), "maximized-horizontally");
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g_object_notify (G_OBJECT (window), "maximized-vertically");
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g_object_thaw_notify (G_OBJECT (window));
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if (window->surface && !window->maximized_horizontally && !window->maximized_vertically)
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meta_wayland_surface_send_unmaximized (window->surface);
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g_object_freeze_notify (G_OBJECT (window));
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g_object_notify (G_OBJECT (window), "maximized-horizontally");
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g_object_notify (G_OBJECT (window), "maximized-vertically");
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g_object_thaw_notify (G_OBJECT (window));
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}
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void
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@ -3711,6 +3717,9 @@ meta_window_make_fullscreen_internal (MetaWindow *window)
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/* For the auto-minimize feature, if we fail to get focus */
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meta_screen_queue_check_fullscreen (window->screen);
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if (window->surface)
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meta_wayland_surface_send_fullscreened (window->surface);
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g_object_notify (G_OBJECT (window), "fullscreen");
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}
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}
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@ -3767,6 +3776,9 @@ meta_window_unmake_fullscreen (MetaWindow *window)
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meta_window_update_layer (window);
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if (window->surface)
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meta_wayland_surface_send_unfullscreened (window->surface);
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g_object_notify (G_OBJECT (window), "fullscreen");
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}
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}
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@ -336,22 +336,6 @@ toplevel_surface_commit (MetaWaylandSurface *surface,
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if (pending->frame_extents_changed)
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meta_window_set_custom_frame_extents (surface->window, &pending->frame_extents);
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if (pending->maximized.changed)
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{
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if (pending->maximized.value)
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meta_window_maximize (surface->window, META_MAXIMIZE_HORIZONTAL | META_MAXIMIZE_VERTICAL);
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else
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meta_window_unmaximize (surface->window, META_MAXIMIZE_HORIZONTAL | META_MAXIMIZE_VERTICAL);
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}
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if (pending->fullscreen.changed)
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{
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if (pending->fullscreen.value)
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meta_window_make_fullscreen (surface->window);
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else
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meta_window_unmake_fullscreen (surface->window);
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}
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}
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static void
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@ -377,8 +361,6 @@ double_buffered_state_init (MetaWaylandDoubleBufferedState *state)
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wl_list_init (&state->frame_callback_list);
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state->frame_extents_changed = FALSE;
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state->maximized.changed = FALSE;
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state->fullscreen.changed = FALSE;
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}
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static void
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@ -861,43 +843,44 @@ xdg_surface_set_output (struct wl_client *client,
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}
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static void
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xdg_surface_set_fullscreen (struct wl_client *client,
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struct wl_resource *resource)
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xdg_surface_request_change_state (struct wl_client *client,
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struct wl_resource *resource,
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uint32_t state_type,
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uint32_t value,
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uint32_t serial)
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{
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MetaWaylandSurface *surface = wl_resource_get_user_data (resource);
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surface->pending.fullscreen.changed = TRUE;
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surface->pending.fullscreen.value = TRUE;
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surface->state_changed_serial = serial;
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switch (state_type)
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{
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case XDG_SURFACE_STATE_MAXIMIZED:
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if (value)
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meta_window_maximize (surface->window, META_MAXIMIZE_HORIZONTAL | META_MAXIMIZE_VERTICAL);
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else
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meta_window_unmaximize (surface->window, META_MAXIMIZE_HORIZONTAL | META_MAXIMIZE_VERTICAL);
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break;
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case XDG_SURFACE_STATE_FULLSCREEN:
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if (value)
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meta_window_make_fullscreen (surface->window);
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else
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meta_window_unmake_fullscreen (surface->window);
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}
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}
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static void
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xdg_surface_unset_fullscreen (struct wl_client *client,
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struct wl_resource *resource)
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xdg_surface_ack_change_state (struct wl_client *client,
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struct wl_resource *resource,
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uint32_t state_type,
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uint32_t value,
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uint32_t serial)
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{
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MetaWaylandSurface *surface = wl_resource_get_user_data (resource);
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surface->pending.fullscreen.changed = TRUE;
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surface->pending.fullscreen.value = FALSE;
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}
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static void
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xdg_surface_set_maximized (struct wl_client *client,
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struct wl_resource *resource)
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{
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MetaWaylandSurface *surface = wl_resource_get_user_data (resource);
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surface->pending.maximized.changed = TRUE;
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surface->pending.maximized.value = TRUE;
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}
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static void
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xdg_surface_unset_maximized (struct wl_client *client,
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struct wl_resource *resource)
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{
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MetaWaylandSurface *surface = wl_resource_get_user_data (resource);
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surface->pending.maximized.changed = TRUE;
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surface->pending.maximized.value = FALSE;
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/* Do nothing for now. In the future, we'd imagine that
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* we'd ignore attaches when we have a state pending that
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* we haven't had the client ACK'd, to prevent a race
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* condition when we have an in-flight attach when the
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* client gets the new state. */
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}
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static void
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@ -918,10 +901,8 @@ static const struct xdg_surface_interface meta_wayland_xdg_surface_interface = {
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xdg_surface_move,
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xdg_surface_resize,
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xdg_surface_set_output,
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xdg_surface_set_fullscreen,
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xdg_surface_unset_fullscreen,
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xdg_surface_set_maximized,
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xdg_surface_unset_maximized,
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xdg_surface_request_change_state,
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xdg_surface_ack_change_state,
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xdg_surface_set_minimized,
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};
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@ -1735,6 +1716,55 @@ meta_wayland_surface_configure_notify (MetaWaylandSurface *surface,
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0, new_width, new_height);
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}
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static void
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send_change_state (MetaWaylandSurface *surface,
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uint32_t state_type,
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uint32_t value)
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{
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if (surface->xdg_surface.resource)
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{
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uint32_t serial;
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if (surface->state_changed_serial != 0)
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{
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serial = surface->state_changed_serial;
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surface->state_changed_serial = 0;
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}
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else
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{
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struct wl_client *client = wl_resource_get_client (surface->xdg_surface.resource);
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struct wl_display *display = wl_client_get_display (client);
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serial = wl_display_next_serial (display);
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}
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xdg_surface_send_change_state (surface->xdg_surface.resource, state_type, value, serial);
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}
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}
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void
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meta_wayland_surface_send_maximized (MetaWaylandSurface *surface)
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{
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send_change_state (surface, XDG_SURFACE_STATE_MAXIMIZED, TRUE);
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}
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void
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meta_wayland_surface_send_unmaximized (MetaWaylandSurface *surface)
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{
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send_change_state (surface, XDG_SURFACE_STATE_MAXIMIZED, FALSE);
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}
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void
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meta_wayland_surface_send_fullscreened (MetaWaylandSurface *surface)
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{
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send_change_state (surface, XDG_SURFACE_STATE_FULLSCREEN, TRUE);
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}
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void
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meta_wayland_surface_send_unfullscreened (MetaWaylandSurface *surface)
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{
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send_change_state (surface, XDG_SURFACE_STATE_FULLSCREEN, FALSE);
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}
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void
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meta_wayland_surface_activated (MetaWaylandSurface *surface)
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{
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@ -41,12 +41,6 @@ struct _MetaWaylandBuffer
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uint32_t ref_count;
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};
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typedef struct
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{
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guint changed : 1;
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guint value : 1;
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} MetaWaylandStateFlag;
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typedef struct
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{
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/* wl_surface.attach */
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@ -67,9 +61,6 @@ typedef struct
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gboolean frame_extents_changed;
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GtkBorder frame_extents;
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MetaWaylandStateFlag fullscreen;
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MetaWaylandStateFlag maximized;
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} MetaWaylandDoubleBufferedState;
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typedef struct
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@ -107,6 +98,8 @@ struct _MetaWaylandSurface
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||||
GSList *pending_placement_ops;
|
||||
} sub;
|
||||
|
||||
uint32_t state_changed_serial;
|
||||
|
||||
/* All the pending state, that wl_surface.commit will apply. */
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||||
MetaWaylandDoubleBufferedState pending;
|
||||
};
|
||||
@ -124,6 +117,10 @@ void meta_wayland_surface_window_unmanaged (MetaWaylandSurface *s
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||||
void meta_wayland_surface_configure_notify (MetaWaylandSurface *surface,
|
||||
int width,
|
||||
int height);
|
||||
void meta_wayland_surface_send_maximized (MetaWaylandSurface *surface);
|
||||
void meta_wayland_surface_send_unmaximized (MetaWaylandSurface *surface);
|
||||
void meta_wayland_surface_send_fullscreened (MetaWaylandSurface *surface);
|
||||
void meta_wayland_surface_send_unfullscreened (MetaWaylandSurface *surface);
|
||||
|
||||
void meta_wayland_surface_activated (MetaWaylandSurface *surface);
|
||||
void meta_wayland_surface_deactivated (MetaWaylandSurface *surface);
|
||||
|
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Block a user