weston/libweston/libinput-device.c
Marius Vlad 99527e6b92 input: Introduce weston_key_event struct
Rather than passing a time stamp, key, key state and key event state
use a weston_key_event struct to pass by all that using it.

This would allow in further patches to attach additional information
like a flow id used by Perfetto debug annotations for input events.

This patch has no functional change as it is now.

All the callees will just will extract the required information out of
struct weston_key_event.

Signed-off-by: Marius Vlad <marius.vlad@collabora.com>
2026-05-13 21:38:55 +03:00

1100 lines
32 KiB
C

/*
* Copyright © 2010 Intel Corporation
* Copyright © 2013 Jonas Ådahl
* Copyright 2017-2018 Collabora, Ltd.
* Copyright 2017-2018 General Electric Company
*
* Permission is hereby granted, free of charge, to any person obtaining
* a copy of this software and associated documentation files (the
* "Software"), to deal in the Software without restriction, including
* without limitation the rights to use, copy, modify, merge, publish,
* distribute, sublicense, and/or sell copies of the Software, and to
* permit persons to whom the Software is furnished to do so, subject to
* the following conditions:
*
* The above copyright notice and this permission notice (including the
* next paragraph) shall be included in all copies or substantial
* portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
#include "config.h"
#include <errno.h>
#include <stdint.h>
#include <stdlib.h>
#include <string.h>
#include <linux/input.h>
#include <unistd.h>
#include <fcntl.h>
#include <assert.h>
#include <libinput.h>
#include <libweston/libweston.h>
#include "backend.h"
#include "libweston-internal.h"
#include "libinput-device.h"
#include "shared/helpers.h"
#include "shared/timespec-util.h"
#include "tablet-unstable-v2-server-protocol.h"
struct tablet_output_listener {
struct wl_listener base;
struct wl_list tablet_list;
};
void
evdev_led_update(struct evdev_device *device, enum weston_led weston_leds)
{
enum libinput_led leds = 0;
if (weston_leds & WESTON_LED_NUM_LOCK)
leds |= LIBINPUT_LED_NUM_LOCK;
if (weston_leds & WESTON_LED_CAPS_LOCK)
leds |= LIBINPUT_LED_CAPS_LOCK;
if (weston_leds & WESTON_LED_SCROLL_LOCK)
leds |= LIBINPUT_LED_SCROLL_LOCK;
#ifdef HAVE_COMPOSE_AND_KANA
if (weston_leds & WESTON_LED_COMPOSE)
leds |= LIBINPUT_LED_COMPOSE;
if (weston_leds & WESTON_LED_KANA)
leds |= LIBINPUT_LED_KANA;
#endif
libinput_device_led_update(device->device, leds);
}
static void
ensure_pointer_capability(struct libinput_device *libinput_device)
{
struct evdev_device *device = libinput_device_get_user_data(libinput_device);
struct weston_seat *seat = device->seat;
if (!libinput_device_has_capability(libinput_device, LIBINPUT_DEVICE_CAP_POINTER))
return;
if (!(device->seat_caps & EVDEV_SEAT_POINTER)) {
weston_seat_init_pointer(seat);
device->seat_caps |= EVDEV_SEAT_POINTER;
}
}
static void
handle_keyboard_key(struct libinput_device *libinput_device,
struct libinput_event_keyboard *keyboard_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
int key_state =
libinput_event_keyboard_get_key_state(keyboard_event);
int seat_key_count =
libinput_event_keyboard_get_seat_key_count(keyboard_event);
struct timespec time;
uint32_t key = libinput_event_keyboard_get_key(keyboard_event);
struct weston_key_event key_event;
/* Ignore key events that are not seat wide state changes. */
if ((key_state == LIBINPUT_KEY_STATE_PRESSED &&
seat_key_count != 1) ||
(key_state == LIBINPUT_KEY_STATE_RELEASED &&
seat_key_count != 0))
return;
timespec_from_usec(&time, libinput_event_keyboard_get_time_usec(keyboard_event));
weston_key_event_init(&key_event, &time, device->seat,
key, key_state, STATE_UPDATE_AUTOMATIC);
notify_key(&key_event);
}
static bool
handle_pointer_motion(struct libinput_device *libinput_device,
struct libinput_event_pointer *pointer_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
struct weston_pointer_motion_event event = { 0 };
struct timespec time;
double dx_unaccel, dy_unaccel;
ensure_pointer_capability(libinput_device);
timespec_from_usec(&time,
libinput_event_pointer_get_time_usec(pointer_event));
dx_unaccel = libinput_event_pointer_get_dx_unaccelerated(pointer_event);
dy_unaccel = libinput_event_pointer_get_dy_unaccelerated(pointer_event);
event = (struct weston_pointer_motion_event) {
.mask = WESTON_POINTER_MOTION_REL |
WESTON_POINTER_MOTION_REL_UNACCEL,
.time = time,
};
event.rel = weston_coord(libinput_event_pointer_get_dx(pointer_event),
libinput_event_pointer_get_dy(pointer_event));
event.rel_unaccel = weston_coord(dx_unaccel, dy_unaccel);
notify_motion(device->seat, &time, &event);
return true;
}
static bool
handle_pointer_motion_absolute(
struct libinput_device *libinput_device,
struct libinput_event_pointer *pointer_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
struct weston_output *output = device->output;
struct weston_coord_global pos;
struct timespec time;
double x, y;
uint32_t width, height;
ensure_pointer_capability(libinput_device);
if (!output)
return false;
timespec_from_usec(&time,
libinput_event_pointer_get_time_usec(pointer_event));
width = device->output->current_mode->width;
height = device->output->current_mode->height;
x = libinput_event_pointer_get_absolute_x_transformed(pointer_event,
width);
y = libinput_event_pointer_get_absolute_y_transformed(pointer_event,
height);
pos = weston_coord_global_from_output_point(x, y, output);
notify_motion_absolute(device->seat, &time, pos);
return true;
}
static bool
handle_pointer_button(struct libinput_device *libinput_device,
struct libinput_event_pointer *pointer_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
int button_state =
libinput_event_pointer_get_button_state(pointer_event);
int seat_button_count =
libinput_event_pointer_get_seat_button_count(pointer_event);
struct timespec time;
ensure_pointer_capability(libinput_device);
/* Ignore button events that are not seat wide state changes. */
if ((button_state == LIBINPUT_BUTTON_STATE_PRESSED &&
seat_button_count != 1) ||
(button_state == LIBINPUT_BUTTON_STATE_RELEASED &&
seat_button_count != 0))
return false;
timespec_from_usec(&time,
libinput_event_pointer_get_time_usec(pointer_event));
notify_button(device->seat, &time,
libinput_event_pointer_get_button(pointer_event),
button_state);
return true;
}
static double
normalize_scroll(struct libinput_event_pointer *pointer_event,
enum libinput_pointer_axis axis)
{
enum libinput_pointer_axis_source source;
double value = 0.0;
source = libinput_event_pointer_get_axis_source(pointer_event);
/* libinput < 0.8 sent wheel click events with value 10. Since 0.8
the value is the angle of the click in degrees. To keep
backwards-compat with existing clients, we just send multiples of
the click count.
*/
switch (source) {
case LIBINPUT_POINTER_AXIS_SOURCE_WHEEL:
value = 10 * libinput_event_pointer_get_axis_value_discrete(
pointer_event,
axis);
break;
case LIBINPUT_POINTER_AXIS_SOURCE_FINGER:
case LIBINPUT_POINTER_AXIS_SOURCE_CONTINUOUS:
value = libinput_event_pointer_get_axis_value(pointer_event,
axis);
break;
default:
assert(!"unhandled event source in normalize_scroll");
}
return value;
}
static int32_t
get_axis_discrete(struct libinput_event_pointer *pointer_event,
enum libinput_pointer_axis axis)
{
enum libinput_pointer_axis_source source;
source = libinput_event_pointer_get_axis_source(pointer_event);
if (source != LIBINPUT_POINTER_AXIS_SOURCE_WHEEL)
return 0;
return libinput_event_pointer_get_axis_value_discrete(pointer_event,
axis);
}
static bool
handle_pointer_axis(struct libinput_device *libinput_device,
struct libinput_event_pointer *pointer_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
double vert, horiz;
int32_t vert_discrete, horiz_discrete;
enum libinput_pointer_axis axis;
struct weston_pointer_axis_event weston_event;
enum libinput_pointer_axis_source source;
uint32_t wl_axis_source;
bool has_vert, has_horiz;
struct timespec time;
ensure_pointer_capability(libinput_device);
has_vert = libinput_event_pointer_has_axis(pointer_event,
LIBINPUT_POINTER_AXIS_SCROLL_VERTICAL);
has_horiz = libinput_event_pointer_has_axis(pointer_event,
LIBINPUT_POINTER_AXIS_SCROLL_HORIZONTAL);
if (!has_vert && !has_horiz)
return false;
source = libinput_event_pointer_get_axis_source(pointer_event);
switch (source) {
case LIBINPUT_POINTER_AXIS_SOURCE_WHEEL:
wl_axis_source = WL_POINTER_AXIS_SOURCE_WHEEL;
break;
case LIBINPUT_POINTER_AXIS_SOURCE_FINGER:
wl_axis_source = WL_POINTER_AXIS_SOURCE_FINGER;
break;
case LIBINPUT_POINTER_AXIS_SOURCE_CONTINUOUS:
wl_axis_source = WL_POINTER_AXIS_SOURCE_CONTINUOUS;
break;
default:
weston_log_paced(&device->unknown_scroll_pacer, 5, 0,
"Unknown scroll source %d.\n", source);
return false;
}
notify_axis_source(device->seat, wl_axis_source);
timespec_from_usec(&time,
libinput_event_pointer_get_time_usec(pointer_event));
if (has_vert) {
axis = LIBINPUT_POINTER_AXIS_SCROLL_VERTICAL;
vert_discrete = get_axis_discrete(pointer_event, axis);
vert = normalize_scroll(pointer_event, axis);
weston_event.axis = WL_POINTER_AXIS_VERTICAL_SCROLL;
weston_event.value = vert;
weston_event.discrete = vert_discrete;
weston_event.has_discrete = (vert_discrete != 0);
notify_axis(device->seat, &time, &weston_event);
}
if (has_horiz) {
axis = LIBINPUT_POINTER_AXIS_SCROLL_HORIZONTAL;
horiz_discrete = get_axis_discrete(pointer_event, axis);
horiz = normalize_scroll(pointer_event, axis);
weston_event.axis = WL_POINTER_AXIS_HORIZONTAL_SCROLL;
weston_event.value = horiz;
weston_event.discrete = horiz_discrete;
weston_event.has_discrete = (horiz_discrete != 0);
notify_axis(device->seat, &time, &weston_event);
}
return true;
}
static struct weston_output *
touch_get_output(struct weston_touch_device *device)
{
struct evdev_device *evdev_device = device->backend_data;
return evdev_device->output;
}
static const char *
touch_get_calibration_head_name(struct weston_touch_device *device)
{
struct evdev_device *evdev_device = device->backend_data;
struct weston_output *output = evdev_device->output;
struct weston_head *head;
if (!output)
return NULL;
assert(output->enabled);
if (evdev_device->output_name)
return evdev_device->output_name;
/* No specific head was configured, so the association was made by
* the default rule. Just grab whatever head's name.
*/
wl_list_for_each(head, &output->head_list, output_link)
return head->name;
assert(0);
return NULL;
}
static void
touch_get_calibration(struct weston_touch_device *device,
struct weston_touch_device_matrix *cal)
{
struct evdev_device *evdev_device = device->backend_data;
libinput_device_config_calibration_get_matrix(evdev_device->device,
cal->m);
}
static void
do_set_calibration(struct evdev_device *evdev_device,
const struct weston_touch_device_matrix *cal)
{
enum libinput_config_status status;
weston_log("input device %s: applying calibration:\n",
libinput_device_get_sysname(evdev_device->device));
weston_log_continue(STAMP_SPACE " %f %f %f\n",
cal->m[0], cal->m[1], cal->m[2]);
weston_log_continue(STAMP_SPACE " %f %f %f\n",
cal->m[3], cal->m[4], cal->m[5]);
status = libinput_device_config_calibration_set_matrix(evdev_device->device,
cal->m);
if (status != LIBINPUT_CONFIG_STATUS_SUCCESS)
weston_log("Error: Failed to apply calibration.\n");
}
static void
touch_set_calibration(struct weston_touch_device *device,
const struct weston_touch_device_matrix *cal)
{
struct evdev_device *evdev_device = device->backend_data;
/* Stop output hotplug from reloading the WL_CALIBRATION values.
* libinput will maintain the latest calibration for us.
*/
evdev_device->override_wl_calibration = true;
do_set_calibration(evdev_device, cal);
}
static const struct weston_touch_device_ops touch_calibration_ops = {
.get_output = touch_get_output,
.get_calibration_head_name = touch_get_calibration_head_name,
.get_calibration = touch_get_calibration,
.set_calibration = touch_set_calibration
};
static struct weston_touch_device *
create_touch_device(struct evdev_device *device)
{
const struct weston_touch_device_ops *ops = NULL;
struct weston_touch_device *touch_device;
struct udev_device *udev_device;
if (libinput_device_config_calibration_has_matrix(device->device))
ops = &touch_calibration_ops;
udev_device = libinput_device_get_udev_device(device->device);
if (!udev_device)
return NULL;
touch_device = weston_touch_create_touch_device(device->seat->touch_state,
udev_device_get_syspath(udev_device),
device, ops);
udev_device_unref(udev_device);
if (!touch_device)
return NULL;
weston_log("Touchscreen - %s - %s\n",
libinput_device_get_name(device->device),
touch_device->syspath);
return touch_device;
}
static void
handle_touch_with_coords(struct libinput_device *libinput_device,
struct libinput_event_touch *touch_event,
int touch_type)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
double x;
double y;
struct weston_point2d_device_normalized norm;
uint32_t width, height;
struct timespec time;
int32_t slot;
struct weston_coord_global pos;
if (!device->output)
return;
timespec_from_usec(&time,
libinput_event_touch_get_time_usec(touch_event));
slot = libinput_event_touch_get_seat_slot(touch_event);
width = device->output->current_mode->width;
height = device->output->current_mode->height;
x = libinput_event_touch_get_x_transformed(touch_event, width);
y = libinput_event_touch_get_y_transformed(touch_event, height);
pos = weston_coord_global_from_output_point(x, y, device->output);
if (weston_touch_device_can_calibrate(device->touch_device)) {
norm.x = libinput_event_touch_get_x_transformed(touch_event, 1);
norm.y = libinput_event_touch_get_y_transformed(touch_event, 1);
notify_touch_normalized(device->touch_device, &time, slot,
&pos, &norm, touch_type);
} else {
notify_touch(device->touch_device, &time, slot,
&pos, touch_type);
}
}
static void
handle_touch_down(struct libinput_device *device,
struct libinput_event_touch *touch_event)
{
handle_touch_with_coords(device, touch_event, WL_TOUCH_DOWN);
}
static void
handle_touch_motion(struct libinput_device *device,
struct libinput_event_touch *touch_event)
{
handle_touch_with_coords(device, touch_event, WL_TOUCH_MOTION);
}
static void
handle_touch_up(struct libinput_device *libinput_device,
struct libinput_event_touch *touch_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
struct timespec time;
int32_t slot = libinput_event_touch_get_seat_slot(touch_event);
if (!device->output)
return;
timespec_from_usec(&time,
libinput_event_touch_get_time_usec(touch_event));
notify_touch(device->touch_device, &time, slot, NULL, WL_TOUCH_UP);
}
static void
handle_touch_frame(struct libinput_device *libinput_device,
struct libinput_event_touch *touch_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
notify_touch_frame(device->touch_device);
}
static void
process_tablet_axis(struct weston_output *output, struct weston_tablet *tablet,
struct weston_tablet_tool *tool,
struct libinput_event_tablet_tool *axis_event)
{
struct timespec time;
const int NORMALIZED_AXIS_MAX = 65535;
timespec_from_usec(&time,
libinput_event_tablet_tool_get_time(axis_event));
if (libinput_event_tablet_tool_x_has_changed(axis_event) ||
libinput_event_tablet_tool_y_has_changed(axis_event)) {
double x, y;
uint32_t width, height;
struct weston_coord_global pos;
width = output->current_mode->width;
height = output->current_mode->height;
x = libinput_event_tablet_tool_get_x_transformed(axis_event,
width);
y = libinput_event_tablet_tool_get_y_transformed(axis_event,
height);
pos = weston_coord_global_from_output_point(x, y, output);
notify_tablet_tool_motion(tool, &time, pos);
}
if (libinput_event_tablet_tool_pressure_has_changed(axis_event)) {
double pressure;
pressure = libinput_event_tablet_tool_get_pressure(axis_event);
/* convert axis range [0.0, 1.0] to [0, 65535] */
pressure *= NORMALIZED_AXIS_MAX;
notify_tablet_tool_pressure(tool, &time, pressure);
}
if (libinput_event_tablet_tool_distance_has_changed(axis_event)) {
double distance;
distance = libinput_event_tablet_tool_get_distance(axis_event);
/* convert axis range [0.0, 1.0] to [0, 65535] */
distance *= NORMALIZED_AXIS_MAX;
notify_tablet_tool_distance(tool, &time, distance);
}
if (libinput_event_tablet_tool_tilt_x_has_changed(axis_event) ||
libinput_event_tablet_tool_tilt_y_has_changed(axis_event)) {
double tx, ty;
tx = libinput_event_tablet_tool_get_tilt_x(axis_event);
ty = libinput_event_tablet_tool_get_tilt_y(axis_event);
notify_tablet_tool_tilt(tool, &time,
wl_fixed_from_double(tx),
wl_fixed_from_double(ty));
}
}
static void
idle_notify_tablet_tool_frame(void *data)
{
struct weston_tablet_tool *tool = data;
notify_tablet_tool_frame(tool, &tool->frame_time);
timespec_from_nsec(&tool->frame_time, 0);
}
/*
* libinput does not provide frame information. So assume that all events that
* belong to the same hardware event have the same timestamp and are created
* together. Use an idle callback to delay the frame event until all events that
* blong together have been handled.
*/
static void
async_notify_tablet_tool_frame(struct weston_tablet_tool *tool,
struct timespec *time)
{
if (timespec_eq(&tool->frame_time, time))
return;
/* If this is a second timestamp, then push out the first frame and use
* the already queued callback for the new timestamp. Otherwise queue a
* new callback. */
if (!timespec_is_zero(&tool->frame_time))
notify_tablet_tool_frame(tool, &tool->frame_time);
else {
struct wl_event_loop *loop;
loop = wl_display_get_event_loop(tool->seat->compositor->wl_display);
wl_event_loop_add_idle(loop, idle_notify_tablet_tool_frame, tool);
}
tool->frame_time = *time;
}
static void
handle_tablet_proximity(struct libinput_device *libinput_device,
struct libinput_event_tablet_tool *proximity_event)
{
struct evdev_device *device;
struct weston_tablet *tablet;
struct weston_tablet_tool *tool;
struct libinput_tablet_tool *libinput_tool;
struct timespec time;
device = libinput_device_get_user_data(libinput_device);
timespec_from_usec(&time,
libinput_event_tablet_tool_get_time(proximity_event));
libinput_tool = libinput_event_tablet_tool_get_tool(proximity_event);
tool = libinput_tablet_tool_get_user_data(libinput_tool);
tablet = device->tablet;
if (libinput_event_tablet_tool_get_proximity_state(proximity_event) ==
LIBINPUT_TABLET_TOOL_PROXIMITY_STATE_OUT) {
notify_tablet_tool_proximity_out(tool, &time);
async_notify_tablet_tool_frame(tool, &time);
return;
}
if (!tool) {
uint64_t serial;
enum libinput_tablet_tool_type libinput_tool_type;
uint32_t type;
serial = libinput_tablet_tool_get_serial(libinput_tool);
libinput_tool_type = libinput_tablet_tool_get_type(libinput_tool);
switch (libinput_tool_type) {
case LIBINPUT_TABLET_TOOL_TYPE_PEN:
type = ZWP_TABLET_TOOL_V2_TYPE_PEN;
break;
case LIBINPUT_TABLET_TOOL_TYPE_ERASER:
type = ZWP_TABLET_TOOL_V2_TYPE_ERASER;
break;
default:
weston_log("Unknown libinput tool type %d\n",
libinput_tool_type);
return;
}
tool = weston_seat_add_tablet_tool(device->seat);
tool->serial = serial;
tool->hwid = libinput_tablet_tool_get_tool_id(libinput_tool);
tool->type = type;
tool->capabilities = 0;
if (libinput_tablet_tool_has_distance(libinput_tool))
tool->capabilities |= 1 << ZWP_TABLET_TOOL_V2_CAPABILITY_DISTANCE;
if (libinput_tablet_tool_has_pressure(libinput_tool))
tool->capabilities |= 1 << ZWP_TABLET_TOOL_V2_CAPABILITY_PRESSURE;
if (libinput_tablet_tool_has_tilt(libinput_tool))
tool->capabilities |= 1 << ZWP_TABLET_TOOL_V2_CAPABILITY_TILT;
/* unique tools are tracked globally, others per tablet */
if (libinput_tablet_tool_is_unique(libinput_tool))
wl_list_insert(&device->seat->tablet_tool_list, &tool->link);
else
wl_list_insert(&tablet->tool_list, &tool->link);
libinput_tablet_tool_set_user_data(libinput_tool, tool);
notify_tablet_tool_added(tool);
}
notify_tablet_tool_proximity_in(tool, &time, tablet);
process_tablet_axis(device->output, tablet, tool, proximity_event);
async_notify_tablet_tool_frame(tool, &time);
}
static void
handle_tablet_axis(struct libinput_device *libinput_device,
struct libinput_event_tablet_tool *axis_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
struct weston_tablet_tool *tool;
struct weston_tablet *tablet = device->tablet;
struct libinput_tablet_tool *libinput_tool;
struct timespec time;
libinput_tool = libinput_event_tablet_tool_get_tool(axis_event);
tool = libinput_tablet_tool_get_user_data(libinput_tool);
timespec_from_usec(&time,
libinput_event_tablet_tool_get_time(axis_event));
process_tablet_axis(device->output, tablet, tool, axis_event);
async_notify_tablet_tool_frame(tool, &time);
}
static void
handle_tablet_tip(struct libinput_device *libinput_device,
struct libinput_event_tablet_tool *tip_event)
{
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
struct weston_tablet_tool *tool;
struct libinput_tablet_tool *libinput_tool;
struct timespec time;
libinput_tool = libinput_event_tablet_tool_get_tool(tip_event);
tool = libinput_tablet_tool_get_user_data(libinput_tool);
timespec_from_usec(&time,
libinput_event_tablet_tool_get_time(tip_event));
process_tablet_axis(device->output, device->tablet, tool, tip_event);
if (libinput_event_tablet_tool_get_tip_state(tip_event) ==
LIBINPUT_TABLET_TOOL_TIP_DOWN)
notify_tablet_tool_down(tool, &time);
else
notify_tablet_tool_up(tool, &time);
async_notify_tablet_tool_frame(tool, &time);
}
static void
handle_tablet_button(struct libinput_device *libinput_device,
struct libinput_event_tablet_tool *button_event)
{
struct weston_tablet_tool *tool;
struct libinput_tablet_tool *libinput_tool;
struct timespec time;
uint32_t button;
enum zwp_tablet_tool_v2_button_state state;
libinput_tool = libinput_event_tablet_tool_get_tool(button_event);
tool = libinput_tablet_tool_get_user_data(libinput_tool);
timespec_from_usec(&time,
libinput_event_tablet_tool_get_time(button_event));
button = libinput_event_tablet_tool_get_button(button_event);
if (libinput_event_tablet_tool_get_button_state(button_event) ==
LIBINPUT_BUTTON_STATE_PRESSED)
state = ZWP_TABLET_TOOL_V2_BUTTON_STATE_PRESSED;
else
state = ZWP_TABLET_TOOL_V2_BUTTON_STATE_RELEASED;
notify_tablet_tool_button(tool, &time, button, state);
async_notify_tablet_tool_frame(tool, &time);
}
int
evdev_device_process_event(struct libinput_event *event)
{
struct libinput_device *libinput_device =
libinput_event_get_device(event);
struct evdev_device *device =
libinput_device_get_user_data(libinput_device);
int handled = 1;
bool need_frame = false;
if (!device)
return 0;
switch (libinput_event_get_type(event)) {
case LIBINPUT_EVENT_KEYBOARD_KEY:
handle_keyboard_key(libinput_device,
libinput_event_get_keyboard_event(event));
break;
case LIBINPUT_EVENT_POINTER_MOTION:
need_frame = handle_pointer_motion(libinput_device,
libinput_event_get_pointer_event(event));
break;
case LIBINPUT_EVENT_POINTER_MOTION_ABSOLUTE:
need_frame = handle_pointer_motion_absolute(
libinput_device,
libinput_event_get_pointer_event(event));
break;
case LIBINPUT_EVENT_POINTER_BUTTON:
need_frame = handle_pointer_button(libinput_device,
libinput_event_get_pointer_event(event));
break;
case LIBINPUT_EVENT_POINTER_AXIS:
need_frame = handle_pointer_axis(
libinput_device,
libinput_event_get_pointer_event(event));
break;
case LIBINPUT_EVENT_TOUCH_DOWN:
handle_touch_down(libinput_device,
libinput_event_get_touch_event(event));
break;
case LIBINPUT_EVENT_TOUCH_MOTION:
handle_touch_motion(libinput_device,
libinput_event_get_touch_event(event));
break;
case LIBINPUT_EVENT_TOUCH_UP:
handle_touch_up(libinput_device,
libinput_event_get_touch_event(event));
break;
case LIBINPUT_EVENT_TOUCH_FRAME:
handle_touch_frame(libinput_device,
libinput_event_get_touch_event(event));
break;
case LIBINPUT_EVENT_TABLET_TOOL_PROXIMITY:
handle_tablet_proximity(libinput_device,
libinput_event_get_tablet_tool_event(event));
break;
case LIBINPUT_EVENT_TABLET_TOOL_TIP:
handle_tablet_tip(libinput_device,
libinput_event_get_tablet_tool_event(event));
break;
case LIBINPUT_EVENT_TABLET_TOOL_AXIS:
handle_tablet_axis(libinput_device,
libinput_event_get_tablet_tool_event(event));
break;
case LIBINPUT_EVENT_TABLET_TOOL_BUTTON:
handle_tablet_button(libinput_device,
libinput_event_get_tablet_tool_event(event));
break;
default:
handled = 0;
weston_log("unknown libinput event %d\n",
libinput_event_get_type(event));
}
if (need_frame)
notify_pointer_frame(device->seat);
return handled;
}
static void
notify_output_destroy(struct wl_listener *listener, void *data)
{
struct evdev_device *device =
container_of(listener,
struct evdev_device, output_destroy_listener);
evdev_device_set_output(device, NULL);
}
/**
* The WL_CALIBRATION property requires a pixel-specific matrix to be
* applied after scaling device coordinates to screen coordinates. libinput
* can't do that, so we need to convert the calibration to the normalized
* format libinput expects.
*/
void
evdev_device_set_calibration(struct evdev_device *device)
{
struct udev *udev;
struct udev_device *udev_device = NULL;
const char *sysname = libinput_device_get_sysname(device->device);
const char *calibration_values;
uint32_t width, height;
struct weston_touch_device_matrix calibration;
if (!libinput_device_config_calibration_has_matrix(device->device))
return;
/* If LIBINPUT_CALIBRATION_MATRIX was set to non-identity, we will not
* override it with WL_CALIBRATION. It also means we don't need an
* output to load a calibration. */
if (libinput_device_config_calibration_get_default_matrix(
device->device,
calibration.m) != 0)
return;
/* touch_set_calibration() has updated the values, do not load old
* values from WL_CALIBRATION.
*/
if (device->override_wl_calibration)
return;
if (!device->output) {
weston_log("input device %s has no enabled output associated "
"(%s named), skipping calibration for now.\n",
sysname, device->output_name ?: "none");
return;
}
width = device->output->width;
height = device->output->height;
if (width == 0 || height == 0)
return;
udev = udev_new();
if (!udev)
return;
udev_device = udev_device_new_from_subsystem_sysname(udev,
"input",
sysname);
if (!udev_device)
goto out;
calibration_values =
udev_device_get_property_value(udev_device,
"WL_CALIBRATION");
if (calibration_values) {
weston_log("Warning: input device %s has WL_CALIBRATION property set. "
"Support for it will be removed in the future. "
"Please use LIBINPUT_CALIBRATION_MATRIX instead.\n",
sysname);
}
if (!calibration_values || sscanf(calibration_values,
"%f %f %f %f %f %f",
&calibration.m[0],
&calibration.m[1],
&calibration.m[2],
&calibration.m[3],
&calibration.m[4],
&calibration.m[5]) != 6)
goto out;
/* normalize to a format libinput can use. There is a chance of
this being wrong if the width/height don't match the device
width/height but I'm not sure how to fix that */
calibration.m[2] /= width;
calibration.m[5] /= height;
do_set_calibration(device, &calibration);
weston_log_continue(STAMP_SPACE " raw translation %f %f for output %s\n",
calibration.m[2] * width,
calibration.m[5] * height,
device->output->name);
out:
if (udev_device)
udev_device_unref(udev_device);
udev_unref(udev);
}
void
evdev_device_set_output(struct evdev_device *device,
struct weston_output *output)
{
if (device->output == output)
return;
if (device->output_destroy_listener.notify) {
wl_list_remove(&device->output_destroy_listener.link);
device->output_destroy_listener.notify = NULL;
}
if (!output) {
weston_log("output for input device %s removed\n",
libinput_device_get_sysname(device->device));
device->output = NULL;
return;
}
weston_log("associating input device %s with output %s "
"(%s by udev)\n",
libinput_device_get_sysname(device->device),
output->name,
device->output_name ?: "none");
device->output = output;
device->output_destroy_listener.notify = notify_output_destroy;
wl_signal_add(&output->destroy_signal,
&device->output_destroy_listener);
evdev_device_set_calibration(device);
}
static void
evdev_device_init_tablet(struct evdev_device *device,
struct libinput_device *libinput_device,
struct weston_seat *seat)
{
struct weston_tablet *tablet;
struct udev_device *udev_device;
tablet = weston_seat_add_tablet(seat);
tablet->name = strdup(libinput_device_get_name(libinput_device));
tablet->vid = libinput_device_get_id_vendor(libinput_device);
tablet->pid = libinput_device_get_id_product(libinput_device);
udev_device = libinput_device_get_udev_device(libinput_device);
if (udev_device) {
tablet->path = udev_device_get_devnode(udev_device);
udev_device_unref(udev_device);
}
wl_list_insert(&seat->tablet_list, &tablet->link);
device->seat_caps |= EVDEV_SEAT_TABLET;
device->tablet = tablet;
notify_tablet_added(tablet);
}
struct evdev_device *
evdev_device_create(struct libinput_device *libinput_device,
struct weston_seat *seat)
{
struct evdev_device *device;
device = zalloc(sizeof *device);
if (device == NULL)
return NULL;
device->seat = seat;
wl_list_init(&device->link);
device->device = libinput_device;
if (libinput_device_has_capability(libinput_device,
LIBINPUT_DEVICE_CAP_KEYBOARD)) {
if (weston_seat_init_keyboard(seat, NULL) < 0) {
free(device);
return NULL;
}
device->seat_caps |= EVDEV_SEAT_KEYBOARD;
}
if (libinput_device_has_capability(libinput_device,
LIBINPUT_DEVICE_CAP_TOUCH)) {
if (weston_seat_init_touch(seat) < 0) {
/* maybe we're a keyboard + touch device thus we need
* to release the keyboard in case we couldn't make use
* of the touch */
if (device->seat_caps & EVDEV_SEAT_KEYBOARD)
weston_seat_release_keyboard(seat);
free(device);
return NULL;
}
device->seat_caps |= EVDEV_SEAT_TOUCH;
device->touch_device = create_touch_device(device);
}
if (libinput_device_has_capability(libinput_device,
LIBINPUT_DEVICE_CAP_TABLET_TOOL)) {
evdev_device_init_tablet(device, libinput_device, seat);
}
libinput_device_set_user_data(libinput_device, device);
libinput_device_ref(libinput_device);
return device;
}
void
evdev_device_destroy(struct evdev_device *device)
{
if (device->seat_caps & EVDEV_SEAT_POINTER)
weston_seat_release_pointer(device->seat);
if (device->seat_caps & EVDEV_SEAT_KEYBOARD)
weston_seat_release_keyboard(device->seat);
if (device->seat_caps & EVDEV_SEAT_TOUCH) {
weston_touch_device_destroy(device->touch_device);
weston_seat_release_touch(device->seat);
}
if (device->seat_caps & EVDEV_SEAT_TABLET)
weston_seat_release_tablet(device->tablet);
if (device->output)
wl_list_remove(&device->output_destroy_listener.link);
wl_list_remove(&device->link);
libinput_device_unref(device->device);
free(device->output_name);
free(device);
}
void
evdev_notify_keyboard_focus(struct weston_seat *seat,
struct wl_list *evdev_devices)
{
struct wl_array keys;
if (seat->keyboard_device_count == 0)
return;
wl_array_init(&keys);
notify_keyboard_focus_in(seat, &keys, STATE_UPDATE_AUTOMATIC);
wl_array_release(&keys);
}