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backends/x11: Observe multiple pad mode switch buttons in a group
Some tablets like the Cintiq 24HDT have several mode switch buttons per group. Those are meant to jump straight to a given mode, however we just handle cycling across modes (as most other tablets have a single mode switch button per group). So spice up the mode switch handling so we handle multiple mode switch buttons, assigning each of them a mode. If the device only has one mode switch button, we do the old-fashioned cycling. https://gitlab.gnome.org/GNOME/mutter/merge_requests/970
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@ -393,6 +393,57 @@ meta_input_device_x11_get_pad_group_mode (ClutterInputDevice *device,
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return g_array_index (device_xi2->group_modes, uint32_t, group);
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return g_array_index (device_xi2->group_modes, uint32_t, group);
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}
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}
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static gboolean
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pad_switch_mode (ClutterInputDevice *device,
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uint32_t button,
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uint32_t group,
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uint32_t *mode)
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{
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MetaInputDeviceX11 *device_x11 = META_INPUT_DEVICE_X11 (device);
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uint32_t n_buttons, n_modes, button_group, next_mode, i;
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GList *switch_buttons = NULL;
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n_buttons = libwacom_get_num_buttons (device_x11->wacom_device);
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for (i = 0; i < n_buttons; i++)
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{
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button_group = meta_input_device_x11_get_button_group (device, i);
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if (button_group == group)
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switch_buttons = g_list_prepend (switch_buttons, GINT_TO_POINTER (button));
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}
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switch_buttons = g_list_reverse (switch_buttons);
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n_modes = clutter_input_device_get_group_n_modes (device, group);
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if (g_list_length (switch_buttons) > 1)
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{
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/* If there's multiple switch buttons, we don't toggle but assign a mode
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* to each of those buttons.
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*/
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next_mode = g_list_index (switch_buttons, GINT_TO_POINTER (button));
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}
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else if (switch_buttons)
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{
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uint32_t cur_mode;
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/* If there is a single button, have it toggle across modes */
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cur_mode = g_array_index (device_x11->group_modes, uint32_t, group);
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next_mode = (cur_mode + 1) % n_modes;
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}
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else
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{
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return FALSE;
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}
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g_list_free (switch_buttons);
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if (next_mode < 0 || next_mode > n_modes)
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return FALSE;
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*mode = next_mode;
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return TRUE;
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}
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void
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void
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meta_input_device_x11_update_pad_state (ClutterInputDevice *device,
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meta_input_device_x11_update_pad_state (ClutterInputDevice *device,
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uint32_t button,
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uint32_t button,
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@ -402,26 +453,26 @@ meta_input_device_x11_update_pad_state (ClutterInputDevice *device,
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{
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{
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MetaInputDeviceX11 *device_xi2 = META_INPUT_DEVICE_X11 (device);
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MetaInputDeviceX11 *device_xi2 = META_INPUT_DEVICE_X11 (device);
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uint32_t button_group, *group_mode;
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uint32_t button_group, *group_mode;
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gboolean is_mode_switch = FALSE;
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button_group = meta_input_device_x11_get_button_group (device, button);
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button_group = meta_input_device_x11_get_button_group (device, button);
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is_mode_switch = button_group >= 0;
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/* Assign all non-mode-switch buttons to group 0 so far */
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if (button_group < 0 || button_group >= device_xi2->group_modes->len)
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button_group = MAX (0, button_group);
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{
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if (group)
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if (button_group >= device_xi2->group_modes->len)
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*group = 0;
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return;
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if (mode)
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*mode = 0;
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return;
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}
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group_mode = &g_array_index (device_xi2->group_modes, uint32_t, button_group);
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group_mode = &g_array_index (device_xi2->group_modes, uint32_t, button_group);
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if (is_mode_switch && state)
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if (state)
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{
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{
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uint32_t next, n_modes;
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uint32_t next_mode;
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n_modes = clutter_input_device_get_group_n_modes (device, button_group);
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if (pad_switch_mode (device, button, button_group, &next_mode))
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next = (*group_mode + 1) % n_modes;
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*group_mode = next_mode;
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*group_mode = next;
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}
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}
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if (group)
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if (group)
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