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@ -62,6 +62,20 @@ static bool handle_x11_event(struct wlr_x11_backend *x11, xcb_generic_event_t *e
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case XCB_BUTTON_PRESS:
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case XCB_BUTTON_PRESS:
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case XCB_BUTTON_RELEASE: {
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case XCB_BUTTON_RELEASE: {
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xcb_button_press_event_t *ev = (xcb_button_press_event_t *)event;
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xcb_button_press_event_t *ev = (xcb_button_press_event_t *)event;
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if (ev->detail == XCB_BUTTON_INDEX_4 ||
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ev->detail == XCB_BUTTON_INDEX_5) {
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double delta = (ev->detail == XCB_BUTTON_INDEX_4 ? -15 : 15);
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struct wlr_event_pointer_axis axis = {
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.device = &x11->pointer_dev,
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.time_sec = ev->time / 1000,
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.time_usec = ev->time * 1000,
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.source = WLR_AXIS_SOURCE_WHEEL,
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.orientation = WLR_AXIS_ORIENTATION_VERTICAL,
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.delta = delta,
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};
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wl_signal_emit(&x11->pointer.events.axis, &axis);
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} else {
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struct wlr_event_pointer_button button = {
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struct wlr_event_pointer_button button = {
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.device = &x11->pointer_dev,
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.device = &x11->pointer_dev,
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.time_sec = ev->time / 1000,
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.time_sec = ev->time / 1000,
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@ -72,6 +86,7 @@ static bool handle_x11_event(struct wlr_x11_backend *x11, xcb_generic_event_t *e
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};
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};
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wl_signal_emit(&x11->pointer.events.button, &button);
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wl_signal_emit(&x11->pointer.events.button, &button);
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}
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x11->time = ev->time;
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x11->time = ev->time;
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break;
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break;
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}
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}
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