mirror of
https://gitlab.freedesktop.org/libinput/libinput.git
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For certain applications (such as FPS games) it is necessary to use unaccelerated motion events (the motion vector that is passed to the acceleration filter) to get a more natural feeling. Supply this information by passing both accelerated and unaccelerated motion vectors to the existing motion event. Note that the unaccelerated motion event is not equivalent to 'raw' events as read from devices. Signed-off-by: Jonas Ådahl <jadahl@gmail.com> Reviewed-by: Peter Hutterer <peter.hutterer@who-t.net> Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
748 lines
22 KiB
C
748 lines
22 KiB
C
/*
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* Copyright © 2013 Red Hat, Inc.
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*
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* Permission to use, copy, modify, distribute, and sell this software and
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* its documentation for any purpose is hereby granted without fee, provided
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* that the above copyright notice appear in all copies and that both that
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* copyright notice and this permission notice appear in supporting
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* documentation, and that the name of the copyright holders not be used in
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* advertising or publicity pertaining to distribution of the software
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* without specific, written prior permission. The copyright holders make
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* no representations about the suitability of this software for any
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* purpose. It is provided "as is" without express or implied warranty.
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*
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* THE COPYRIGHT HOLDERS DISCLAIM ALL WARRANTIES WITH REGARD TO THIS
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* SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND
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* FITNESS, IN NO EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY
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* SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER
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* RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF
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* CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <config.h>
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#include <stdio.h>
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#include <check.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <libinput.h>
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#include <math.h>
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#include <unistd.h>
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#include <values.h>
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#include "libinput-util.h"
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#include "litest.h"
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static struct libinput_event_pointer *
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get_accelerated_motion_event(struct libinput *li)
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{
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struct libinput_event *event;
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struct libinput_event_pointer *ptrev;
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while (1) {
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event = libinput_get_event(li);
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ck_assert_notnull(event);
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ck_assert_int_eq(libinput_event_get_type(event),
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LIBINPUT_EVENT_POINTER_MOTION);
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ptrev = libinput_event_get_pointer_event(event);
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ck_assert_notnull(ptrev);
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if (fabs(libinput_event_pointer_get_dx(ptrev)) < DBL_MIN &&
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fabs(libinput_event_pointer_get_dy(ptrev)) < DBL_MIN) {
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libinput_event_destroy(event);
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continue;
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}
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return ptrev;
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}
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ck_abort_msg("No accelerated pointer motion event found");
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return NULL;
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}
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static void
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test_relative_event(struct litest_device *dev, int dx, int dy)
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{
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struct libinput *li = dev->libinput;
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struct libinput_event_pointer *ptrev;
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double ev_dx, ev_dy;
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double expected_dir;
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double expected_length;
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double actual_dir;
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double actual_length;
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/* Send two deltas, as the first one may be eaten up by an
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* acceleration filter. */
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litest_event(dev, EV_REL, REL_X, dx);
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litest_event(dev, EV_REL, REL_Y, dy);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_event(dev, EV_REL, REL_X, dx);
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litest_event(dev, EV_REL, REL_Y, dy);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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libinput_dispatch(li);
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ptrev = get_accelerated_motion_event(li);
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expected_length = sqrt(4 * dx*dx + 4 * dy*dy);
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expected_dir = atan2(dx, dy);
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ev_dx = libinput_event_pointer_get_dx(ptrev);
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ev_dy = libinput_event_pointer_get_dy(ptrev);
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actual_length = sqrt(ev_dx*ev_dx + ev_dy*ev_dy);
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actual_dir = atan2(ev_dx, ev_dy);
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/* Check the length of the motion vector (tolerate 1.0 indifference). */
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ck_assert(fabs(expected_length) >= actual_length);
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/* Check the direction of the motion vector (tolerate 2π/4 radians
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* indifference). */
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ck_assert(fabs(expected_dir - actual_dir) < M_PI_2);
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libinput_event_destroy(libinput_event_pointer_get_base_event(ptrev));
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litest_drain_events(dev->libinput);
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}
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START_TEST(pointer_motion_relative)
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{
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struct litest_device *dev = litest_current_device();
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litest_drain_events(dev->libinput);
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test_relative_event(dev, 1, 0);
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test_relative_event(dev, 1, 1);
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test_relative_event(dev, 1, -1);
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test_relative_event(dev, 0, 1);
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test_relative_event(dev, -1, 0);
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test_relative_event(dev, -1, 1);
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test_relative_event(dev, -1, -1);
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test_relative_event(dev, 0, -1);
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}
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END_TEST
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static void
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test_absolute_event(struct litest_device *dev, double x, double y)
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{
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struct libinput *li = dev->libinput;
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struct libinput_event *event;
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struct libinput_event_pointer *ptrev;
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double ex, ey;
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litest_touch_down(dev, 0, x, y);
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libinput_dispatch(li);
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event = libinput_get_event(li);
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ck_assert_int_eq(libinput_event_get_type(event),
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LIBINPUT_EVENT_POINTER_MOTION_ABSOLUTE);
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ptrev = libinput_event_get_pointer_event(event);
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ck_assert(ptrev != NULL);
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ex = libinput_event_pointer_get_absolute_x_transformed(ptrev, 100);
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ey = libinput_event_pointer_get_absolute_y_transformed(ptrev, 100);
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ck_assert_int_eq(ex + 0.5, x);
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ck_assert_int_eq(ey + 0.5, y);
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libinput_event_destroy(event);
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}
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START_TEST(pointer_motion_absolute)
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{
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struct litest_device *dev = litest_current_device();
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litest_drain_events(dev->libinput);
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test_absolute_event(dev, 0, 100);
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test_absolute_event(dev, 100, 0);
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test_absolute_event(dev, 50, 50);
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}
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END_TEST
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static void
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test_unaccel_event(struct litest_device *dev, int dx, int dy)
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{
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struct libinput *li = dev->libinput;
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struct libinput_event *event;
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struct libinput_event_pointer *ptrev;
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double ev_dx, ev_dy;
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litest_event(dev, EV_REL, REL_X, dx);
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litest_event(dev, EV_REL, REL_Y, dy);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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libinput_dispatch(li);
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event = libinput_get_event(li);
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ck_assert_notnull(event);
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ck_assert_int_eq(libinput_event_get_type(event),
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LIBINPUT_EVENT_POINTER_MOTION);
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ptrev = libinput_event_get_pointer_event(event);
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ck_assert(ptrev != NULL);
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ev_dx = libinput_event_pointer_get_dx_unaccelerated(ptrev);
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ev_dy = libinput_event_pointer_get_dy_unaccelerated(ptrev);
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ck_assert_int_eq(dx, ev_dx);
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ck_assert_int_eq(dy, ev_dy);
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libinput_event_destroy(event);
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litest_drain_events(dev->libinput);
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}
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START_TEST(pointer_motion_unaccel)
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{
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struct litest_device *dev = litest_current_device();
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litest_drain_events(dev->libinput);
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test_unaccel_event(dev, 10, 0);
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test_unaccel_event(dev, 10, 10);
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test_unaccel_event(dev, 10, -10);
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test_unaccel_event(dev, 0, 10);
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test_unaccel_event(dev, -10, 0);
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test_unaccel_event(dev, -10, 10);
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test_unaccel_event(dev, -10, -10);
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test_unaccel_event(dev, 0, -10);
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}
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END_TEST
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static void
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test_button_event(struct litest_device *dev, unsigned int button, int state)
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{
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struct libinput *li = dev->libinput;
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litest_event(dev, EV_KEY, button, state);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_assert_button_event(li, button,
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state ? LIBINPUT_BUTTON_STATE_PRESSED :
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LIBINPUT_BUTTON_STATE_RELEASED);
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}
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START_TEST(pointer_button)
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{
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struct litest_device *dev = litest_current_device();
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litest_drain_events(dev->libinput);
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test_button_event(dev, BTN_LEFT, 1);
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test_button_event(dev, BTN_LEFT, 0);
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/* press it twice for good measure */
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test_button_event(dev, BTN_LEFT, 1);
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test_button_event(dev, BTN_LEFT, 0);
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if (libevdev_has_event_code(dev->evdev, EV_KEY, BTN_RIGHT)) {
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test_button_event(dev, BTN_RIGHT, 1);
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test_button_event(dev, BTN_RIGHT, 0);
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}
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/* Skip middle button test on trackpoints (used for scrolling) */
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if (!libevdev_has_property(dev->evdev, INPUT_PROP_POINTING_STICK) &&
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libevdev_has_event_code(dev->evdev, EV_KEY, BTN_MIDDLE)) {
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test_button_event(dev, BTN_MIDDLE, 1);
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test_button_event(dev, BTN_MIDDLE, 0);
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}
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}
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END_TEST
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START_TEST(pointer_button_auto_release)
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{
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struct libinput *libinput;
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struct litest_device *dev;
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struct libinput_event *event;
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enum libinput_event_type type;
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struct libinput_event_pointer *pevent;
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struct {
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int code;
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int released;
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} buttons[] = {
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{ .code = BTN_LEFT, },
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{ .code = BTN_MIDDLE, },
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{ .code = BTN_EXTRA, },
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{ .code = BTN_SIDE, },
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{ .code = BTN_BACK, },
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{ .code = BTN_FORWARD, },
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{ .code = BTN_4, },
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};
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int events[2 * (ARRAY_LENGTH(buttons) + 1)];
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unsigned i;
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int button;
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int valid_code;
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/* Enable all tested buttons on the device */
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for (i = 0; i < 2 * ARRAY_LENGTH(buttons);) {
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button = buttons[i / 2].code;
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events[i++] = EV_KEY;
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events[i++] = button;
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}
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events[i++] = -1;
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events[i++] = -1;
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libinput = litest_create_context();
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dev = litest_add_device_with_overrides(libinput,
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LITEST_MOUSE,
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"Generic mouse",
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NULL, NULL, events);
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litest_drain_events(libinput);
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/* Send pressed events, without releasing */
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for (i = 0; i < ARRAY_LENGTH(buttons); ++i) {
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test_button_event(dev, buttons[i].code, 1);
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}
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litest_drain_events(libinput);
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/* "Disconnect" device */
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litest_delete_device(dev);
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/* Mark all released buttons until device is removed */
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while (1) {
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event = libinput_get_event(libinput);
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ck_assert_notnull(event);
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type = libinput_event_get_type(event);
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if (type == LIBINPUT_EVENT_DEVICE_REMOVED) {
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libinput_event_destroy(event);
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break;
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}
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ck_assert_int_eq(type, LIBINPUT_EVENT_POINTER_BUTTON);
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pevent = libinput_event_get_pointer_event(event);
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ck_assert_int_eq(libinput_event_pointer_get_button_state(pevent),
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LIBINPUT_BUTTON_STATE_RELEASED);
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button = libinput_event_pointer_get_button(pevent);
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valid_code = 0;
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for (i = 0; i < ARRAY_LENGTH(buttons); ++i) {
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if (buttons[i].code == button) {
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ck_assert_int_eq(buttons[i].released, 0);
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buttons[i].released = 1;
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valid_code = 1;
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}
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}
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ck_assert_int_eq(valid_code, 1);
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libinput_event_destroy(event);
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}
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/* Check that all pressed buttons has been released. */
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for (i = 0; i < ARRAY_LENGTH(buttons); ++i) {
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ck_assert_int_eq(buttons[i].released, 1);
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}
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libinput_unref(libinput);
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}
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END_TEST
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static void
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test_wheel_event(struct litest_device *dev, int which, int amount)
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{
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struct libinput *li = dev->libinput;
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struct libinput_event *event;
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struct libinput_event_pointer *ptrev;
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/* the current evdev implementation scales the scroll wheel events
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up by a factor 10 */
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const int scroll_step = 10;
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int expected = amount * scroll_step;
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if (libinput_device_config_scroll_get_natural_scroll_enabled(dev->libinput_device))
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expected *= -1;
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/* mouse scroll wheels are 'upside down' */
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if (which == REL_WHEEL)
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amount *= -1;
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litest_event(dev, EV_REL, which, amount);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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libinput_dispatch(li);
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event = libinput_get_event(li);
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ck_assert(event != NULL);
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ck_assert_int_eq(libinput_event_get_type(event),
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LIBINPUT_EVENT_POINTER_AXIS);
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ptrev = libinput_event_get_pointer_event(event);
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ck_assert(ptrev != NULL);
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ck_assert_int_eq(libinput_event_pointer_get_axis(ptrev),
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which == REL_WHEEL ?
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LIBINPUT_POINTER_AXIS_SCROLL_VERTICAL :
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LIBINPUT_POINTER_AXIS_SCROLL_HORIZONTAL);
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ck_assert_int_eq(libinput_event_pointer_get_axis_value(ptrev), expected);
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libinput_event_destroy(event);
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}
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START_TEST(pointer_scroll_wheel)
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{
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struct litest_device *dev = litest_current_device();
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litest_drain_events(dev->libinput);
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test_wheel_event(dev, REL_WHEEL, -1);
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test_wheel_event(dev, REL_WHEEL, 1);
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test_wheel_event(dev, REL_WHEEL, -5);
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test_wheel_event(dev, REL_WHEEL, 6);
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if (libevdev_has_event_code(dev->evdev, EV_REL, REL_HWHEEL)) {
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test_wheel_event(dev, REL_HWHEEL, -1);
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test_wheel_event(dev, REL_HWHEEL, 1);
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test_wheel_event(dev, REL_HWHEEL, -5);
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test_wheel_event(dev, REL_HWHEEL, 6);
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}
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}
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END_TEST
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START_TEST(pointer_scroll_natural_defaults)
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{
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struct litest_device *dev = litest_current_device();
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ck_assert_int_ge(libinput_device_config_scroll_has_natural_scroll(dev->libinput_device), 1);
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ck_assert_int_eq(libinput_device_config_scroll_get_natural_scroll_enabled(dev->libinput_device), 0);
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ck_assert_int_eq(libinput_device_config_scroll_get_default_natural_scroll_enabled(dev->libinput_device), 0);
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}
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END_TEST
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START_TEST(pointer_scroll_natural_enable_config)
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{
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struct litest_device *dev = litest_current_device();
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enum libinput_config_status status;
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status = libinput_device_config_scroll_set_natural_scroll_enabled(dev->libinput_device, 1);
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ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
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ck_assert_int_eq(libinput_device_config_scroll_get_natural_scroll_enabled(dev->libinput_device), 1);
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status = libinput_device_config_scroll_set_natural_scroll_enabled(dev->libinput_device, 0);
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ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
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ck_assert_int_eq(libinput_device_config_scroll_get_natural_scroll_enabled(dev->libinput_device), 0);
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}
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END_TEST
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START_TEST(pointer_scroll_natural_wheel)
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{
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struct litest_device *dev = litest_current_device();
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struct libinput_device *device = dev->libinput_device;
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litest_drain_events(dev->libinput);
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libinput_device_config_scroll_set_natural_scroll_enabled(device, 1);
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test_wheel_event(dev, REL_WHEEL, -1);
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test_wheel_event(dev, REL_WHEEL, 1);
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test_wheel_event(dev, REL_WHEEL, -5);
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test_wheel_event(dev, REL_WHEEL, 6);
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if (libevdev_has_event_code(dev->evdev, EV_REL, REL_HWHEEL)) {
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test_wheel_event(dev, REL_HWHEEL, -1);
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test_wheel_event(dev, REL_HWHEEL, 1);
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test_wheel_event(dev, REL_HWHEEL, -5);
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test_wheel_event(dev, REL_HWHEEL, 6);
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}
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}
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END_TEST
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START_TEST(pointer_seat_button_count)
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{
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const int num_devices = 4;
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struct litest_device *devices[num_devices];
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struct libinput *libinput;
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struct libinput_event *ev;
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struct libinput_event_pointer *tev;
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int i;
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int seat_button_count;
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int expected_seat_button_count = 0;
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char device_name[255];
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libinput = litest_create_context();
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for (i = 0; i < num_devices; ++i) {
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sprintf(device_name, "litest Generic mouse (%d)", i);
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devices[i] = litest_add_device_with_overrides(libinput,
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LITEST_MOUSE,
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device_name,
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NULL, NULL, NULL);
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}
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for (i = 0; i < num_devices; ++i)
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litest_button_click(devices[i], BTN_LEFT, true);
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libinput_dispatch(libinput);
|
|
while ((ev = libinput_get_event(libinput))) {
|
|
if (libinput_event_get_type(ev) !=
|
|
LIBINPUT_EVENT_POINTER_BUTTON) {
|
|
libinput_event_destroy(ev);
|
|
libinput_dispatch(libinput);
|
|
continue;
|
|
}
|
|
|
|
tev = libinput_event_get_pointer_event(ev);
|
|
ck_assert_notnull(tev);
|
|
ck_assert_int_eq(libinput_event_pointer_get_button(tev),
|
|
BTN_LEFT);
|
|
ck_assert_int_eq(libinput_event_pointer_get_button_state(tev),
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
|
|
++expected_seat_button_count;
|
|
seat_button_count =
|
|
libinput_event_pointer_get_seat_button_count(tev);
|
|
ck_assert_int_eq(expected_seat_button_count, seat_button_count);
|
|
|
|
libinput_event_destroy(ev);
|
|
libinput_dispatch(libinput);
|
|
}
|
|
|
|
ck_assert_int_eq(seat_button_count, num_devices);
|
|
|
|
for (i = 0; i < num_devices; ++i)
|
|
litest_button_click(devices[i], BTN_LEFT, false);
|
|
|
|
libinput_dispatch(libinput);
|
|
while ((ev = libinput_get_event(libinput))) {
|
|
if (libinput_event_get_type(ev) !=
|
|
LIBINPUT_EVENT_POINTER_BUTTON) {
|
|
libinput_event_destroy(ev);
|
|
libinput_dispatch(libinput);
|
|
continue;
|
|
}
|
|
|
|
tev = libinput_event_get_pointer_event(ev);
|
|
ck_assert_notnull(tev);
|
|
ck_assert_int_eq(libinput_event_pointer_get_button(tev),
|
|
BTN_LEFT);
|
|
ck_assert_int_eq(libinput_event_pointer_get_button_state(tev),
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
|
|
--expected_seat_button_count;
|
|
seat_button_count =
|
|
libinput_event_pointer_get_seat_button_count(tev);
|
|
ck_assert_int_eq(expected_seat_button_count, seat_button_count);
|
|
|
|
libinput_event_destroy(ev);
|
|
libinput_dispatch(libinput);
|
|
}
|
|
|
|
ck_assert_int_eq(seat_button_count, 0);
|
|
|
|
for (i = 0; i < num_devices; ++i)
|
|
litest_delete_device(devices[i]);
|
|
libinput_unref(libinput);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_no_calibration)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput_device *d = dev->libinput_device;
|
|
enum libinput_config_status status;
|
|
int rc;
|
|
float calibration[6] = {0};
|
|
|
|
rc = libinput_device_config_calibration_has_matrix(d);
|
|
ck_assert_int_eq(rc, 0);
|
|
rc = libinput_device_config_calibration_get_matrix(d, calibration);
|
|
ck_assert_int_eq(rc, 0);
|
|
rc = libinput_device_config_calibration_get_default_matrix(d,
|
|
calibration);
|
|
ck_assert_int_eq(rc, 0);
|
|
|
|
status = libinput_device_config_calibration_set_matrix(d,
|
|
calibration);
|
|
ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_UNSUPPORTED);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_left_handed_defaults)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput_device *d = dev->libinput_device;
|
|
int rc;
|
|
|
|
rc = libinput_device_config_buttons_has_left_handed(d);
|
|
ck_assert_int_ne(rc, 0);
|
|
|
|
rc = libinput_device_config_buttons_get_left_handed(d);
|
|
ck_assert_int_eq(rc, 0);
|
|
|
|
rc = libinput_device_config_buttons_get_default_left_handed(d);
|
|
ck_assert_int_eq(rc, 0);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_left_handed)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput_device *d = dev->libinput_device;
|
|
struct libinput *li = dev->libinput;
|
|
enum libinput_config_status status;
|
|
|
|
status = libinput_device_config_buttons_set_left_handed(d, 1);
|
|
ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
|
|
|
|
litest_drain_events(li);
|
|
litest_button_click(dev, BTN_LEFT, 1);
|
|
litest_button_click(dev, BTN_LEFT, 0);
|
|
|
|
litest_assert_button_event(li,
|
|
BTN_RIGHT,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_RIGHT,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
|
|
litest_button_click(dev, BTN_RIGHT, 1);
|
|
litest_button_click(dev, BTN_RIGHT, 0);
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
|
|
if (libevdev_has_event_code(dev->evdev,
|
|
EV_KEY,
|
|
BTN_MIDDLE)) {
|
|
litest_button_click(dev, BTN_MIDDLE, 1);
|
|
litest_button_click(dev, BTN_MIDDLE, 0);
|
|
litest_assert_button_event(li,
|
|
BTN_MIDDLE,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_MIDDLE,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
}
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_left_handed_during_click)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput_device *d = dev->libinput_device;
|
|
struct libinput *li = dev->libinput;
|
|
enum libinput_config_status status;
|
|
|
|
litest_drain_events(li);
|
|
litest_button_click(dev, BTN_LEFT, 1);
|
|
libinput_dispatch(li);
|
|
|
|
/* Change while button is down, expect correct release event */
|
|
status = libinput_device_config_buttons_set_left_handed(d, 1);
|
|
ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
|
|
|
|
litest_button_click(dev, BTN_LEFT, 0);
|
|
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_left_handed_during_click_multiple_buttons)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput_device *d = dev->libinput_device;
|
|
struct libinput *li = dev->libinput;
|
|
enum libinput_config_status status;
|
|
|
|
litest_drain_events(li);
|
|
litest_button_click(dev, BTN_LEFT, 1);
|
|
libinput_dispatch(li);
|
|
|
|
status = libinput_device_config_buttons_set_left_handed(d, 1);
|
|
ck_assert_int_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
|
|
|
|
/* No left-handed until all buttons were down */
|
|
litest_button_click(dev, BTN_RIGHT, 1);
|
|
litest_button_click(dev, BTN_RIGHT, 0);
|
|
litest_button_click(dev, BTN_LEFT, 0);
|
|
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_RIGHT,
|
|
LIBINPUT_BUTTON_STATE_PRESSED);
|
|
litest_assert_button_event(li,
|
|
BTN_RIGHT,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
litest_assert_button_event(li,
|
|
BTN_LEFT,
|
|
LIBINPUT_BUTTON_STATE_RELEASED);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(pointer_scroll_button)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput *li = dev->libinput;
|
|
|
|
/* Make left button switch to scrolling mode */
|
|
libinput_device_config_scroll_set_method(dev->libinput_device,
|
|
LIBINPUT_CONFIG_SCROLL_ON_BUTTON_DOWN);
|
|
libinput_device_config_scroll_set_button(dev->libinput_device,
|
|
BTN_LEFT);
|
|
|
|
litest_drain_events(li);
|
|
|
|
litest_button_scroll(dev, BTN_LEFT, 1, 6);
|
|
litest_assert_scroll(li, LIBINPUT_POINTER_AXIS_SCROLL_VERTICAL, 6);
|
|
litest_button_scroll(dev, BTN_LEFT, 1, -7);
|
|
litest_assert_scroll(li, LIBINPUT_POINTER_AXIS_SCROLL_VERTICAL, -7);
|
|
litest_button_scroll(dev, BTN_LEFT, 8, 1);
|
|
litest_assert_scroll(li, LIBINPUT_POINTER_AXIS_SCROLL_HORIZONTAL, 8);
|
|
litest_button_scroll(dev, BTN_LEFT, -9, 1);
|
|
litest_assert_scroll(li, LIBINPUT_POINTER_AXIS_SCROLL_HORIZONTAL, -9);
|
|
|
|
/* scroll smaller than the threshold should not generate events */
|
|
litest_button_scroll(dev, BTN_LEFT, 1, 1);
|
|
/* left press without movement should not generate events */
|
|
litest_button_scroll(dev, BTN_LEFT, 0, 0);
|
|
|
|
litest_assert_empty_queue(li);
|
|
|
|
/* Restore default scroll behavior */
|
|
libinput_device_config_scroll_set_method(dev->libinput_device,
|
|
libinput_device_config_scroll_get_default_method(
|
|
dev->libinput_device));
|
|
libinput_device_config_scroll_set_button(dev->libinput_device,
|
|
libinput_device_config_scroll_get_default_button(
|
|
dev->libinput_device));
|
|
}
|
|
END_TEST
|
|
|
|
int main (int argc, char **argv) {
|
|
|
|
litest_add("pointer:motion", pointer_motion_relative, LITEST_RELATIVE, LITEST_ANY);
|
|
litest_add("pointer:motion", pointer_motion_absolute, LITEST_ABSOLUTE, LITEST_ANY);
|
|
litest_add("pointer:motion", pointer_motion_unaccel, LITEST_RELATIVE, LITEST_ANY);
|
|
litest_add("pointer:button", pointer_button, LITEST_BUTTON, LITEST_CLICKPAD);
|
|
litest_add_no_device("pointer:button_auto_release", pointer_button_auto_release);
|
|
litest_add("pointer:scroll", pointer_scroll_wheel, LITEST_WHEEL, LITEST_ANY);
|
|
litest_add("pointer:scroll", pointer_scroll_button, LITEST_RELATIVE|LITEST_BUTTON, LITEST_ANY);
|
|
litest_add("pointer:scroll", pointer_scroll_natural_defaults, LITEST_WHEEL, LITEST_ANY);
|
|
litest_add("pointer:scroll", pointer_scroll_natural_enable_config, LITEST_WHEEL, LITEST_ANY);
|
|
litest_add("pointer:scroll", pointer_scroll_natural_wheel, LITEST_WHEEL, LITEST_ANY);
|
|
litest_add_no_device("pointer:seat button count", pointer_seat_button_count);
|
|
|
|
litest_add("pointer:calibration", pointer_no_calibration, LITEST_ANY, LITEST_TOUCH|LITEST_SINGLE_TOUCH|LITEST_ABSOLUTE);
|
|
|
|
/* tests touchpads too */
|
|
litest_add("pointer:left-handed", pointer_left_handed_defaults, LITEST_BUTTON, LITEST_ANY);
|
|
litest_add("pointer:left-handed", pointer_left_handed, LITEST_RELATIVE|LITEST_BUTTON, LITEST_ANY);
|
|
litest_add("pointer:left-handed", pointer_left_handed_during_click, LITEST_RELATIVE|LITEST_BUTTON, LITEST_ANY);
|
|
litest_add("pointer:left-handed", pointer_left_handed_during_click_multiple_buttons, LITEST_RELATIVE|LITEST_BUTTON, LITEST_ANY);
|
|
|
|
return litest_run(argc, argv);
|
|
}
|