mirror of
https://gitlab.freedesktop.org/libinput/libinput.git
synced 2025-12-20 12:40:05 +01:00
They weren't originally prefixed but the various tests were, but now that we only have one test runner binary anyway, the prefix helps sorting the files easily within e.g. gcov results. Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
525 lines
13 KiB
C
525 lines
13 KiB
C
/*
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* Copyright © 2013 Red Hat, Inc.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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* DEALINGS IN THE SOFTWARE.
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*/
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#include <config.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 <libinput-util.h>
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#include <libudev.h>
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#include <unistd.h>
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#include "litest.h"
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static int open_restricted(const char *path, int flags, void *data)
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{
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int fd;
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fd = open(path, flags);
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return fd < 0 ? -errno : fd;
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}
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static void close_restricted(int fd, void *data)
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{
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close(fd);
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}
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static const struct libinput_interface simple_interface = {
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.open_restricted = open_restricted,
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.close_restricted = close_restricted,
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};
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START_TEST(udev_create_NULL)
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{
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struct libinput *li;
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struct udev *udev;
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udev = udev_new();
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li = libinput_udev_create_context(NULL, NULL, NULL);
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ck_assert(li == NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, NULL);
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ck_assert(li == NULL);
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li = libinput_udev_create_context(NULL, NULL, udev);
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ck_assert(li == NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, NULL), -1);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_create_seat0)
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{
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struct libinput *li;
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struct libinput_event *event;
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struct udev *udev;
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int fd;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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fd = libinput_get_fd(li);
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ck_assert_int_ge(fd, 0);
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/* expect at least one event */
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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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libinput_event_destroy(event);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_create_empty_seat)
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{
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struct libinput *li;
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struct libinput_event *event;
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struct udev *udev;
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int fd;
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udev = udev_new();
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ck_assert(udev != NULL);
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/* expect a libinput reference, but no events */
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seatdoesntexist"), 0);
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fd = libinput_get_fd(li);
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ck_assert_int_ge(fd, 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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libinput_event_destroy(event);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_set_user_data)
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{
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struct libinput *li;
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struct udev *udev;
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int data1, data2;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, &data1, udev);
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ck_assert(li != NULL);
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ck_assert(libinput_get_user_data(li) == &data1);
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libinput_set_user_data(li, &data2);
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ck_assert(libinput_get_user_data(li) == &data2);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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/**
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* This test only works if there's at least one device in the system that is
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* assigned the default seat. Should cover the 99% case.
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*/
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START_TEST(udev_added_seat_default)
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{
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struct libinput *li;
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struct libinput_event *event;
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struct udev *udev;
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struct libinput_device *device;
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struct libinput_seat *seat;
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const char *seat_name;
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enum libinput_event_type type;
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int default_seat_found = 0;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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libinput_dispatch(li);
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while (!default_seat_found && (event = libinput_get_event(li))) {
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type = libinput_event_get_type(event);
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if (type != LIBINPUT_EVENT_DEVICE_ADDED) {
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libinput_event_destroy(event);
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continue;
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}
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device = libinput_event_get_device(event);
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seat = libinput_device_get_seat(device);
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ck_assert(seat != NULL);
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seat_name = libinput_seat_get_logical_name(seat);
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default_seat_found = streq(seat_name, "default");
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libinput_event_destroy(event);
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}
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ck_assert(default_seat_found);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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/**
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* This test only works if there's at least one device in the system that is
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* assigned the default seat. Should cover the 99% case.
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*/
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START_TEST(udev_change_seat)
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{
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struct libinput *li;
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struct udev *udev;
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struct libinput_event *event;
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struct libinput_device *device;
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struct libinput_seat *seat1, *seat2;
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const char *seat1_name;
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const char *seat2_name = "new seat";
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int rc;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 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_DEVICE_ADDED);
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device = libinput_event_get_device(event);
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libinput_device_ref(device);
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seat1 = libinput_device_get_seat(device);
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libinput_seat_ref(seat1);
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seat1_name = libinput_seat_get_logical_name(seat1);
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libinput_event_destroy(event);
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litest_drain_events(li);
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rc = libinput_device_set_seat_logical_name(device,
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seat2_name);
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ck_assert_int_eq(rc, 0);
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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_DEVICE_REMOVED);
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ck_assert(libinput_event_get_device(event) == device);
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libinput_event_destroy(event);
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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_DEVICE_ADDED);
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ck_assert(libinput_event_get_device(event) != device);
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libinput_device_unref(device);
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device = libinput_event_get_device(event);
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seat2 = libinput_device_get_seat(device);
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ck_assert_str_ne(libinput_seat_get_logical_name(seat2),
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seat1_name);
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ck_assert_str_eq(libinput_seat_get_logical_name(seat2),
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seat2_name);
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libinput_event_destroy(event);
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libinput_seat_unref(seat1);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_double_suspend)
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{
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struct libinput *li;
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struct libinput_event *event;
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struct udev *udev;
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int fd;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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fd = libinput_get_fd(li);
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ck_assert_int_ge(fd, 0);
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/* expect at least one event */
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ck_assert_int_ge(libinput_dispatch(li), 0);
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event = libinput_get_event(li);
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ck_assert(event != NULL);
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libinput_suspend(li);
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libinput_suspend(li);
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libinput_resume(li);
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libinput_event_destroy(event);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_double_resume)
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{
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struct libinput *li;
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struct libinput_event *event;
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struct udev *udev;
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int fd;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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fd = libinput_get_fd(li);
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ck_assert_int_ge(fd, 0);
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/* expect at least one event */
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ck_assert_int_ge(libinput_dispatch(li), 0);
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event = libinput_get_event(li);
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ck_assert(event != NULL);
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libinput_suspend(li);
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libinput_resume(li);
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libinput_resume(li);
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libinput_event_destroy(event);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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static void
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process_events_count_devices(struct libinput *li, int *device_count)
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{
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struct libinput_event *event;
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while ((event = libinput_get_event(li))) {
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switch (libinput_event_get_type(event)) {
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case LIBINPUT_EVENT_DEVICE_ADDED:
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(*device_count)++;
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break;
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case LIBINPUT_EVENT_DEVICE_REMOVED:
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(*device_count)--;
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break;
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default:
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break;
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}
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libinput_event_destroy(event);
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}
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}
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START_TEST(udev_suspend_resume)
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{
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struct libinput *li;
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struct udev *udev;
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int fd;
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int num_devices = 0;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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fd = libinput_get_fd(li);
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ck_assert_int_ge(fd, 0);
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/* Check that at least one device was discovered after creation. */
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ck_assert_int_ge(libinput_dispatch(li), 0);
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process_events_count_devices(li, &num_devices);
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ck_assert_int_gt(num_devices, 0);
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/* Check that after a suspend, no devices are left. */
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libinput_suspend(li);
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ck_assert_int_ge(libinput_dispatch(li), 0);
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process_events_count_devices(li, &num_devices);
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ck_assert_int_eq(num_devices, 0);
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/* Check that after a resume, at least one device is discovered. */
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libinput_resume(li);
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ck_assert_int_ge(libinput_dispatch(li), 0);
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process_events_count_devices(li, &num_devices);
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ck_assert_int_gt(num_devices, 0);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_device_sysname)
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{
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struct libinput *li;
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struct libinput_event *ev;
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struct libinput_device *device;
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const char *sysname;
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struct udev *udev;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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libinput_dispatch(li);
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while ((ev = libinput_get_event(li))) {
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if (libinput_event_get_type(ev) !=
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LIBINPUT_EVENT_DEVICE_ADDED) {
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libinput_event_destroy(ev);
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continue;
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}
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device = libinput_event_get_device(ev);
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sysname = libinput_device_get_sysname(device);
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ck_assert(sysname != NULL && strlen(sysname) > 1);
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ck_assert(strchr(sysname, '/') == NULL);
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ck_assert_int_eq(strncmp(sysname, "event", 5), 0);
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libinput_event_destroy(ev);
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}
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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START_TEST(udev_seat_recycle)
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{
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struct udev *udev;
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struct libinput *li;
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struct libinput_event *ev;
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struct libinput_device *device;
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struct libinput_seat *saved_seat = NULL;
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struct libinput_seat *seat;
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int data = 0;
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int found = 0;
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void *user_data;
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udev = udev_new();
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ck_assert(udev != NULL);
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li = libinput_udev_create_context(&simple_interface, NULL, udev);
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ck_assert(li != NULL);
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ck_assert_int_eq(libinput_udev_assign_seat(li, "seat0"), 0);
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libinput_dispatch(li);
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while ((ev = libinput_get_event(li))) {
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switch (libinput_event_get_type(ev)) {
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case LIBINPUT_EVENT_DEVICE_ADDED:
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if (saved_seat)
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break;
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device = libinput_event_get_device(ev);
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ck_assert(device != NULL);
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saved_seat = libinput_device_get_seat(device);
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libinput_seat_set_user_data(saved_seat, &data);
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libinput_seat_ref(saved_seat);
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break;
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default:
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break;
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}
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libinput_event_destroy(ev);
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}
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ck_assert(saved_seat != NULL);
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libinput_suspend(li);
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litest_drain_events(li);
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libinput_resume(li);
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libinput_dispatch(li);
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while ((ev = libinput_get_event(li))) {
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switch (libinput_event_get_type(ev)) {
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case LIBINPUT_EVENT_DEVICE_ADDED:
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device = libinput_event_get_device(ev);
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ck_assert(device != NULL);
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seat = libinput_device_get_seat(device);
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user_data = libinput_seat_get_user_data(seat);
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if (user_data == &data) {
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found = 1;
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ck_assert(seat == saved_seat);
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}
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break;
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default:
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break;
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}
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libinput_event_destroy(ev);
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}
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ck_assert(found == 1);
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libinput_unref(li);
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udev_unref(udev);
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}
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END_TEST
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void
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litest_setup_tests_udev(void)
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{
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litest_add_no_device("udev:create", udev_create_NULL);
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litest_add_no_device("udev:create", udev_create_seat0);
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litest_add_no_device("udev:create", udev_create_empty_seat);
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litest_add_no_device("udev:create", udev_set_user_data);
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litest_add_no_device("udev:seat", udev_added_seat_default);
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litest_add_no_device("udev:seat", udev_change_seat);
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litest_add_for_device("udev:suspend", udev_double_suspend, LITEST_SYNAPTICS_CLICKPAD_X220);
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litest_add_for_device("udev:suspend", udev_double_resume, LITEST_SYNAPTICS_CLICKPAD_X220);
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litest_add_for_device("udev:suspend", udev_suspend_resume, LITEST_SYNAPTICS_CLICKPAD_X220);
|
|
litest_add_for_device("udev:device events", udev_device_sysname, LITEST_SYNAPTICS_CLICKPAD_X220);
|
|
litest_add_for_device("udev:seat", udev_seat_recycle, LITEST_SYNAPTICS_CLICKPAD_X220);
|
|
}
|