mirror of
https://gitlab.freedesktop.org/libinput/libinput.git
synced 2025-12-20 05:40:04 +01:00
An earlier version of73103a5c38only obfuscated the plugin key codes, not the "Queuing ..." message libinput itself uses. The test didn't get updated when the queuing message was updated to obfuscate. Fixes:73103a5c38("plugin: always obfuscate keycodes") Part-of: <https://gitlab.freedesktop.org/libinput/libinput/-/merge_requests/1284>
638 lines
19 KiB
C
638 lines
19 KiB
C
/*
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* Copyright © 2014 Jonas Ådahl <jadahl@gmail.com>
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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 <stdio.h>
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#include "libinput-util.h"
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#include "litest.h"
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START_TEST(keyboard_seat_key_count)
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{
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struct litest_device *devices[4];
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const int num_devices = ARRAY_LENGTH(devices);
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struct libinput_event *ev;
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struct libinput_event_keyboard *kev;
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int i;
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int seat_key_count = 0;
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int expected_key_button_count = 0;
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char device_name[255];
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_litest_context_destroy_ struct libinput *libinput = litest_create_context();
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for (i = 0; i < num_devices; ++i) {
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sprintf(device_name, "litest Generic keyboard (%d)", i);
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devices[i] = litest_add_device_with_overrides(libinput,
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LITEST_KEYBOARD,
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device_name,
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NULL,
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NULL,
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NULL);
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}
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litest_drain_events(libinput);
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for (i = 0; i < num_devices; ++i)
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litest_keyboard_key(devices[i], KEY_A, true);
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litest_dispatch(libinput);
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while ((ev = libinput_get_event(libinput))) {
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kev = litest_is_keyboard_event(ev, KEY_A, LIBINPUT_KEY_STATE_PRESSED);
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++expected_key_button_count;
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seat_key_count = libinput_event_keyboard_get_seat_key_count(kev);
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litest_assert_int_eq(expected_key_button_count, seat_key_count);
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libinput_event_destroy(ev);
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litest_dispatch(libinput);
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}
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litest_assert_int_eq(seat_key_count, num_devices);
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for (i = 0; i < num_devices; ++i)
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litest_keyboard_key(devices[i], KEY_A, false);
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litest_dispatch(libinput);
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while ((ev = libinput_get_event(libinput))) {
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kev = libinput_event_get_keyboard_event(ev);
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litest_assert_notnull(kev);
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litest_assert_int_eq(libinput_event_keyboard_get_key(kev),
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(unsigned int)KEY_A);
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litest_assert_enum_eq(libinput_event_keyboard_get_key_state(kev),
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LIBINPUT_KEY_STATE_RELEASED);
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--expected_key_button_count;
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seat_key_count = libinput_event_keyboard_get_seat_key_count(kev);
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litest_assert_int_eq(expected_key_button_count, seat_key_count);
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libinput_event_destroy(ev);
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litest_dispatch(libinput);
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}
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litest_assert_int_eq(seat_key_count, 0);
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for (i = 0; i < num_devices; ++i)
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litest_device_destroy(devices[i]);
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}
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END_TEST
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START_TEST(keyboard_ignore_no_pressed_release)
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{
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struct litest_device *dev;
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struct libinput_event *event;
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struct libinput_event_keyboard *kevent;
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int events[] = {
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EV_KEY,
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KEY_A,
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-1,
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-1,
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};
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enum libinput_key_state expected_states[] = {
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LIBINPUT_KEY_STATE_PRESSED,
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LIBINPUT_KEY_STATE_RELEASED,
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};
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/* We can't send pressed -> released -> pressed events using uinput
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* as such non-symmetric events are dropped. Work-around this by first
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* adding the test device to the tested context after having sent an
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* initial pressed event. */
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_litest_context_destroy_ struct libinput *unused_libinput =
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litest_create_context();
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dev = litest_add_device_with_overrides(unused_libinput,
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LITEST_KEYBOARD,
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"Generic keyboard",
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NULL,
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NULL,
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events);
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litest_keyboard_key(dev, KEY_A, true);
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litest_drain_events(unused_libinput);
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_litest_context_destroy_ struct libinput *libinput = litest_create_context();
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libinput_path_add_device(libinput, libevdev_uinput_get_devnode(dev->uinput));
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litest_drain_events(libinput);
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litest_keyboard_key(dev, KEY_A, false);
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litest_keyboard_key(dev, KEY_A, true);
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litest_keyboard_key(dev, KEY_A, false);
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litest_dispatch(libinput);
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ARRAY_FOR_EACH(expected_states, state) {
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event = libinput_get_event(libinput);
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litest_assert_notnull(event);
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litest_assert_event_type(event, LIBINPUT_EVENT_KEYBOARD_KEY);
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kevent = libinput_event_get_keyboard_event(event);
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litest_assert_int_eq(libinput_event_keyboard_get_key(kevent),
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(unsigned int)KEY_A);
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litest_assert_int_eq(libinput_event_keyboard_get_key_state(kevent),
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*state);
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libinput_event_destroy(event);
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litest_dispatch(libinput);
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}
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litest_assert_empty_queue(libinput);
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litest_device_destroy(dev);
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}
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END_TEST
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START_TEST(keyboard_key_auto_release)
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{
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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_keyboard *kevent;
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struct {
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int code;
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int released;
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} keys[] = {
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{
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.code = KEY_A,
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},
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{
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.code = KEY_S,
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},
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{
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.code = KEY_D,
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},
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{
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.code = KEY_G,
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},
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{
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.code = KEY_Z,
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},
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{
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.code = KEY_DELETE,
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},
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{
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.code = KEY_F24,
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},
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};
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int events[2 * (ARRAY_LENGTH(keys) + 1)];
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unsigned i;
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int key;
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int valid_code;
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/* Enable all tested keys on the device */
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i = 0;
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while (i < 2 * ARRAY_LENGTH(keys)) {
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key = keys[i / 2].code;
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events[i++] = EV_KEY;
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events[i++] = key;
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}
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events[i++] = -1;
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events[i++] = -1;
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_litest_context_destroy_ struct libinput *libinput = litest_create_context();
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dev = litest_add_device_with_overrides(libinput,
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LITEST_KEYBOARD,
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"Generic keyboard",
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NULL,
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NULL,
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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(keys); ++i) {
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key = keys[i].code;
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litest_event(dev, EV_KEY, key, 1);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_dispatch(libinput);
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event = libinput_get_event(libinput);
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litest_is_keyboard_event(event, key, LIBINPUT_KEY_STATE_PRESSED);
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libinput_event_destroy(event);
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}
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litest_drain_events(libinput);
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/* "Disconnect" device */
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litest_device_destroy(dev);
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/* Mark all released keys until device is removed */
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while (1) {
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event = libinput_get_event(libinput);
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litest_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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litest_assert_event_type(event, LIBINPUT_EVENT_KEYBOARD_KEY);
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kevent = libinput_event_get_keyboard_event(event);
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litest_assert_enum_eq(libinput_event_keyboard_get_key_state(kevent),
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LIBINPUT_KEY_STATE_RELEASED);
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key = libinput_event_keyboard_get_key(kevent);
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valid_code = 0;
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for (i = 0; i < ARRAY_LENGTH(keys); ++i) {
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if (keys[i].code == key) {
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litest_assert_int_eq(keys[i].released, 0);
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keys[i].released = 1;
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valid_code = 1;
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}
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}
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litest_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 keys has been released. */
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for (i = 0; i < ARRAY_LENGTH(keys); ++i) {
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litest_assert_int_eq(keys[i].released, 1);
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}
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}
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END_TEST
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START_TEST(keyboard_has_key)
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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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unsigned int code;
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int evdev_has, libinput_has;
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litest_assert(
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libinput_device_has_capability(device, LIBINPUT_DEVICE_CAP_KEYBOARD));
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for (code = 0; code < KEY_CNT; code++) {
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evdev_has = libevdev_has_event_code(dev->evdev, EV_KEY, code);
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libinput_has = libinput_device_keyboard_has_key(device, code);
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litest_assert_int_eq(evdev_has, libinput_has);
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}
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}
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END_TEST
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START_TEST(keyboard_keys_bad_device)
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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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unsigned int code;
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int has_key;
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if (libinput_device_has_capability(device, LIBINPUT_DEVICE_CAP_KEYBOARD))
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return LITEST_NOT_APPLICABLE;
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for (code = 0; code < KEY_CNT; code++) {
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has_key = libinput_device_keyboard_has_key(device, code);
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litest_assert_int_eq(has_key, -1);
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}
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}
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END_TEST
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START_TEST(keyboard_time_usec)
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{
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struct litest_device *dev = litest_current_device();
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struct libinput *li = dev->libinput;
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struct libinput_event_keyboard *kev;
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struct libinput_event *event;
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uint64_t time_usec;
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if (!libevdev_has_event_code(dev->evdev, EV_KEY, KEY_A))
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return LITEST_NOT_APPLICABLE;
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litest_drain_events(dev->libinput);
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litest_keyboard_key(dev, KEY_A, true);
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litest_dispatch(li);
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event = libinput_get_event(li);
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kev = litest_is_keyboard_event(event, KEY_A, LIBINPUT_KEY_STATE_PRESSED);
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time_usec = libinput_event_keyboard_get_time_usec(kev);
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litest_assert_int_eq(libinput_event_keyboard_get_time(kev),
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(uint32_t)(time_usec / 1000));
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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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END_TEST
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START_TEST(keyboard_no_buttons)
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{
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struct litest_device *dev = litest_current_device();
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struct libinput *li = dev->libinput;
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struct libinput_event *event;
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int code;
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const char *name;
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litest_drain_events(dev->libinput);
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for (code = 0; code < KEY_MAX; code++) {
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if (!libevdev_has_event_code(dev->evdev, EV_KEY, code))
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continue;
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name = libevdev_event_code_get_name(EV_KEY, code);
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if (!strstartswith(name, "KEY_"))
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continue;
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litest_keyboard_key(dev, code, true);
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litest_keyboard_key(dev, code, false);
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litest_dispatch(li);
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event = libinput_get_event(li);
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litest_is_keyboard_event(event, code, LIBINPUT_KEY_STATE_PRESSED);
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libinput_event_destroy(event);
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event = libinput_get_event(li);
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litest_is_keyboard_event(event, code, LIBINPUT_KEY_STATE_RELEASED);
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libinput_event_destroy(event);
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}
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}
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END_TEST
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START_TEST(keyboard_frame_order)
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{
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struct litest_device *dev = litest_current_device();
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struct libinput *li = dev->libinput;
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if (!libevdev_has_event_code(dev->evdev, EV_KEY, KEY_A) ||
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!libevdev_has_event_code(dev->evdev, EV_KEY, KEY_LEFTSHIFT))
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return LITEST_NOT_APPLICABLE;
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litest_drain_events(li);
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litest_event(dev, EV_KEY, KEY_LEFTSHIFT, 1);
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litest_event(dev, EV_KEY, KEY_A, 1);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_dispatch(li);
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litest_assert_key_event(li, KEY_LEFTSHIFT, LIBINPUT_KEY_STATE_PRESSED);
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litest_assert_key_event(li, KEY_A, LIBINPUT_KEY_STATE_PRESSED);
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litest_event(dev, EV_KEY, KEY_LEFTSHIFT, 0);
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litest_event(dev, EV_KEY, KEY_A, 0);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_dispatch(li);
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litest_assert_key_event(li, KEY_LEFTSHIFT, LIBINPUT_KEY_STATE_RELEASED);
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litest_assert_key_event(li, KEY_A, LIBINPUT_KEY_STATE_RELEASED);
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litest_event(dev, EV_KEY, KEY_A, 1);
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litest_event(dev, EV_KEY, KEY_LEFTSHIFT, 1);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_dispatch(li);
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litest_assert_key_event(li, KEY_A, LIBINPUT_KEY_STATE_PRESSED);
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litest_assert_key_event(li, KEY_LEFTSHIFT, LIBINPUT_KEY_STATE_PRESSED);
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litest_event(dev, EV_KEY, KEY_A, 0);
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litest_event(dev, EV_KEY, KEY_LEFTSHIFT, 0);
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litest_event(dev, EV_SYN, SYN_REPORT, 0);
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litest_dispatch(li);
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litest_assert_key_event(li, KEY_A, LIBINPUT_KEY_STATE_RELEASED);
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litest_assert_key_event(li, KEY_LEFTSHIFT, LIBINPUT_KEY_STATE_RELEASED);
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litest_dispatch(li);
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}
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END_TEST
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START_TEST(keyboard_leds)
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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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/* we can't actually test the results here without physically
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* looking at the LEDs. So all we do is trigger the code for devices
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* with and without LEDs and check that it doesn't go boom
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*/
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libinput_device_led_update(device, LIBINPUT_LED_NUM_LOCK);
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libinput_device_led_update(device, LIBINPUT_LED_CAPS_LOCK);
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libinput_device_led_update(device, LIBINPUT_LED_SCROLL_LOCK);
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libinput_device_led_update(device, LIBINPUT_LED_COMPOSE);
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libinput_device_led_update(device, LIBINPUT_LED_KANA);
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libinput_device_led_update(device,
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LIBINPUT_LED_NUM_LOCK | LIBINPUT_LED_CAPS_LOCK);
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libinput_device_led_update(device,
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LIBINPUT_LED_NUM_LOCK | LIBINPUT_LED_CAPS_LOCK |
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LIBINPUT_LED_SCROLL_LOCK);
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libinput_device_led_update(device,
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LIBINPUT_LED_NUM_LOCK | LIBINPUT_LED_CAPS_LOCK |
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LIBINPUT_LED_SCROLL_LOCK |
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LIBINPUT_LED_COMPOSE | LIBINPUT_LED_KANA);
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libinput_device_led_update(device, 0);
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libinput_device_led_update(device, -1);
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}
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END_TEST
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START_TEST(keyboard_no_scroll)
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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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enum libinput_config_scroll_method method;
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enum libinput_config_status status;
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method = libinput_device_config_scroll_get_method(device);
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litest_assert_enum_eq(method, LIBINPUT_CONFIG_SCROLL_NO_SCROLL);
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method = libinput_device_config_scroll_get_default_method(device);
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litest_assert_enum_eq(method, LIBINPUT_CONFIG_SCROLL_NO_SCROLL);
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status = libinput_device_config_scroll_set_method(device,
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LIBINPUT_CONFIG_SCROLL_2FG);
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litest_assert_enum_eq(status, LIBINPUT_CONFIG_STATUS_UNSUPPORTED);
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status = libinput_device_config_scroll_set_method(device,
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LIBINPUT_CONFIG_SCROLL_EDGE);
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litest_assert_enum_eq(status, LIBINPUT_CONFIG_STATUS_UNSUPPORTED);
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status = libinput_device_config_scroll_set_method(
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device,
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LIBINPUT_CONFIG_SCROLL_ON_BUTTON_DOWN);
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litest_assert_enum_eq(status, LIBINPUT_CONFIG_STATUS_UNSUPPORTED);
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status = libinput_device_config_scroll_set_method(
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device,
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LIBINPUT_CONFIG_SCROLL_NO_SCROLL);
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litest_assert_enum_eq(status, LIBINPUT_CONFIG_STATUS_SUCCESS);
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}
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END_TEST
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START_TEST(keyboard_alt_printscreen)
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{
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struct litest_device *dev = litest_current_device();
|
|
struct libinput *li = dev->libinput;
|
|
|
|
litest_drain_events(li);
|
|
|
|
/* normal key press, not ignored */
|
|
litest_event(dev, EV_KEY, KEY_LEFTALT, 1);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 0);
|
|
litest_dispatch(li);
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_PRESSED);
|
|
|
|
/* normal key repeat, ignored */
|
|
litest_event(dev, EV_KEY, KEY_LEFTALT, 2);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 1);
|
|
litest_dispatch(li);
|
|
litest_assert_empty_queue(li);
|
|
|
|
/* not a repeat, not ignored */
|
|
litest_event(dev, EV_KEY, KEY_LEFTALT, 0);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 0);
|
|
litest_dispatch(li);
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_RELEASED);
|
|
litest_assert_empty_queue(li);
|
|
|
|
/* special alt+printscreen frame, *not* ignored */
|
|
litest_event(dev, EV_KEY, KEY_LEFTALT, 1);
|
|
litest_event(dev, EV_KEY, KEY_SYSRQ, 1);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 1);
|
|
litest_dispatch(li);
|
|
|
|
/* special alt+printscreen frame, *not* ignored */
|
|
litest_event(dev, EV_KEY, KEY_LEFTALT, 0);
|
|
litest_event(dev, EV_KEY, KEY_SYSRQ, 0);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 1);
|
|
litest_dispatch(li);
|
|
|
|
/* Note: The kernel first releases KEY_LEFTALT when pressing KEY_SYSRQ,
|
|
* then later generates press/release for KEY_LEFTALT + KEY_SYSRQ
|
|
* once *both* keys are released. The order is reshuffled so we have
|
|
* alt down, sysrq down, sysrq up, alt up.
|
|
*/
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_PRESSED);
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_RELEASED);
|
|
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_PRESSED);
|
|
litest_assert_key_event(li, KEY_SYSRQ, LIBINPUT_KEY_STATE_PRESSED);
|
|
litest_assert_key_event(li, KEY_SYSRQ, LIBINPUT_KEY_STATE_RELEASED);
|
|
litest_assert_key_event(li, KEY_LEFTALT, LIBINPUT_KEY_STATE_RELEASED);
|
|
|
|
litest_assert_empty_queue(li);
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(keyboard_keycode_obfuscation)
|
|
{
|
|
#ifdef EVENT_DEBUGGING
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput *li = dev->libinput;
|
|
|
|
litest_drain_events(li);
|
|
|
|
litest_with_logcapture(li, capture) {
|
|
litest_event(dev, EV_KEY, KEY_Q, 1);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 0);
|
|
litest_event(dev, EV_KEY, KEY_Q, 0);
|
|
litest_event(dev, EV_SYN, SYN_REPORT, 0);
|
|
litest_dispatch(li);
|
|
litest_drain_events(li);
|
|
|
|
/* clang-format off */
|
|
/* We get two possible debug messages:
|
|
* Queuing event14 KEYBOARD_KEY +0.000s KEY_Q (16) released
|
|
* event14: plugin evdev - 0.000 EV_KEY KEY_Q 0
|
|
*
|
|
* Both KEY_Q must be obfuscated to KEY_A
|
|
*/
|
|
/* clang-format on */
|
|
char **strv = capture->debugs;
|
|
litest_assert_strv_no_substring(strv, "KEY_Q");
|
|
|
|
strv = capture->debugs;
|
|
size_t index;
|
|
litest_assert(strv_find_substring(strv, "KEY_A", &index));
|
|
do {
|
|
litest_assert_str_in("EV_KEY", strv[index]);
|
|
strv += index + 1;
|
|
} while (strv_find_substring(strv, "KEY_A", &index));
|
|
}
|
|
#else
|
|
return LITEST_SKIP;
|
|
#endif
|
|
}
|
|
END_TEST
|
|
|
|
START_TEST(keyboard_nkey_rollover)
|
|
{
|
|
struct litest_device *dev = litest_current_device();
|
|
struct libinput *li = dev->libinput;
|
|
|
|
int nkeys = litest_test_param_get_i32(test_env->params, "nkeys");
|
|
|
|
litest_drain_events(li);
|
|
|
|
/* The kernel allocates a 7 + 1 buffer for devices without EV_ABS and
|
|
* EV_REL, see
|
|
* drivers/input/input.c:input_estimate_events_per_packet()
|
|
*
|
|
* If the device exceeds that buffer the current set is flushed out
|
|
* as SYN_REPORT 1 followed by (if any) the remaining events immediately
|
|
* after.
|
|
*
|
|
* Either way, we expect n keys to arrive, regardless what the kernel
|
|
* does.
|
|
*/
|
|
for (int i = 0; i < nkeys; i++) {
|
|
litest_event_unchecked(dev, EV_KEY, KEY_A + i, 1);
|
|
litest_event_unchecked(dev, EV_MSC, MSC_SCAN, 0x1000 + i);
|
|
}
|
|
litest_event_unchecked(dev, EV_SYN, SYN_REPORT, 0);
|
|
|
|
for (int i = 0; i < nkeys; i++) {
|
|
litest_event_unchecked(dev, EV_KEY, KEY_A + i, 0);
|
|
litest_event_unchecked(dev, EV_MSC, MSC_SCAN, 0x1000 + i);
|
|
}
|
|
litest_event_unchecked(dev, EV_SYN, SYN_REPORT, 0);
|
|
|
|
litest_dispatch(li);
|
|
|
|
for (int i = 0; i < nkeys; i++) {
|
|
litest_checkpoint("here for %d", i);
|
|
litest_assert_key_event(li, KEY_A + i, LIBINPUT_KEY_STATE_PRESSED);
|
|
}
|
|
for (int i = 0; i < nkeys; i++) {
|
|
litest_assert_key_event(li, KEY_A + i, LIBINPUT_KEY_STATE_RELEASED);
|
|
}
|
|
|
|
litest_assert_empty_queue(li);
|
|
}
|
|
END_TEST
|
|
|
|
TEST_COLLECTION(keyboard)
|
|
{
|
|
/* clang-format off */
|
|
litest_add_no_device(keyboard_seat_key_count);
|
|
litest_add_no_device(keyboard_ignore_no_pressed_release);
|
|
litest_add_no_device(keyboard_key_auto_release);
|
|
litest_add(keyboard_has_key, LITEST_KEYS, LITEST_ANY);
|
|
litest_add(keyboard_keys_bad_device, LITEST_ANY, LITEST_ANY);
|
|
litest_add(keyboard_time_usec, LITEST_KEYS, LITEST_ANY);
|
|
|
|
litest_add(keyboard_no_buttons, LITEST_KEYS, LITEST_ANY);
|
|
litest_add(keyboard_frame_order, LITEST_KEYS, LITEST_ANY);
|
|
|
|
litest_add(keyboard_leds, LITEST_ANY, LITEST_ANY);
|
|
|
|
litest_add(keyboard_no_scroll, LITEST_KEYS, LITEST_WHEEL);
|
|
|
|
litest_add_for_device(keyboard_alt_printscreen, LITEST_KEYBOARD);
|
|
litest_add_for_device(keyboard_keycode_obfuscation, LITEST_KEYBOARD);
|
|
|
|
/* Adding for one device only to be able to hardcode buffer sizes */
|
|
litest_with_parameters(params, "nkeys", 'i', 4, 3, 4, 5, 6)
|
|
litest_add_parametrized_for_device(keyboard_nkey_rollover, LITEST_KEYBOARD, params);
|
|
|
|
/* clang-format on */
|
|
}
|