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This works on capability bitfields that can either come from udev or from ioctls, so it is equally applicable to both udev and non-udev input device detection. Signed-off-by: Simon McVittie <smcv@collabora.com>
799 lines
28 KiB
C
799 lines
28 KiB
C
/*
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Simple DirectMedia Layer
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Copyright (C) 1997-2020 Sam Lantinga <slouken@libsdl.org>
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This software is provided 'as-is', without any express or implied
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warranty. In no event will the authors be held liable for any damages
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arising from the use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it
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freely, subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must not
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claim that you wrote the original software. If you use this software
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in a product, an acknowledgment in the product documentation would be
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appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not be
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misrepresented as being the original software.
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3. This notice may not be removed or altered from any source distribution.
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*/
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#include "../../SDL_internal.h"
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#ifdef SDL_INPUT_LINUXEV
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/* This is based on the linux joystick driver */
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/* References: https://www.kernel.org/doc/Documentation/input/input.txt
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* https://www.kernel.org/doc/Documentation/input/event-codes.txt
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* /usr/include/linux/input.h
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* The evtest application is also useful to debug the protocol
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*/
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#include "SDL_evdev.h"
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#include "SDL_evdev_kbd.h"
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#include <sys/stat.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <sys/ioctl.h>
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#include <linux/input.h>
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#include "SDL.h"
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#include "SDL_assert.h"
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#include "SDL_endian.h"
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#include "SDL_scancode.h"
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#include "../../events/SDL_events_c.h"
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#include "../../events/scancodes_linux.h" /* adds linux_scancode_table */
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#include "../../core/linux/SDL_evdev_capabilities.h"
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#include "../../core/linux/SDL_udev.h"
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/* These are not defined in older Linux kernel headers */
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#ifndef SYN_DROPPED
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#define SYN_DROPPED 3
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#endif
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#ifndef ABS_MT_SLOT
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#define ABS_MT_SLOT 0x2f
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#define ABS_MT_POSITION_X 0x35
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#define ABS_MT_POSITION_Y 0x36
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#define ABS_MT_TRACKING_ID 0x39
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#define ABS_MT_PRESSURE 0x3a
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#endif
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typedef struct SDL_evdevlist_item
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{
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char *path;
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int fd;
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/* TODO: use this for every device, not just touchscreen */
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int out_of_sync;
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/* TODO: expand on this to have data for every possible class (mouse,
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keyboard, touchpad, etc.). Also there's probably some things in here we
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can pull out to the SDL_evdevlist_item i.e. name */
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int is_touchscreen;
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struct {
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char* name;
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int min_x, max_x, range_x;
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int min_y, max_y, range_y;
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int min_pressure, max_pressure, range_pressure;
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int max_slots;
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int current_slot;
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struct {
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enum {
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EVDEV_TOUCH_SLOTDELTA_NONE = 0,
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EVDEV_TOUCH_SLOTDELTA_DOWN,
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EVDEV_TOUCH_SLOTDELTA_UP,
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EVDEV_TOUCH_SLOTDELTA_MOVE
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} delta;
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int tracking_id;
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int x, y, pressure;
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} * slots;
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} * touchscreen_data;
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struct SDL_evdevlist_item *next;
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} SDL_evdevlist_item;
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typedef struct SDL_EVDEV_PrivateData
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{
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int ref_count;
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int num_devices;
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SDL_evdevlist_item *first;
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SDL_evdevlist_item *last;
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SDL_EVDEV_keyboard_state *kbd;
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} SDL_EVDEV_PrivateData;
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#undef _THIS
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#define _THIS SDL_EVDEV_PrivateData *_this
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static _THIS = NULL;
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static SDL_Scancode SDL_EVDEV_translate_keycode(int keycode);
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static void SDL_EVDEV_sync_device(SDL_evdevlist_item *item);
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static int SDL_EVDEV_device_removed(const char *dev_path);
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#if SDL_USE_LIBUDEV
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static int SDL_EVDEV_device_added(const char *dev_path, int udev_class);
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static void SDL_EVDEV_udev_callback(SDL_UDEV_deviceevent udev_type, int udev_class,
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const char *dev_path);
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#endif /* SDL_USE_LIBUDEV */
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static Uint8 EVDEV_MouseButtons[] = {
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SDL_BUTTON_LEFT, /* BTN_LEFT 0x110 */
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SDL_BUTTON_RIGHT, /* BTN_RIGHT 0x111 */
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SDL_BUTTON_MIDDLE, /* BTN_MIDDLE 0x112 */
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SDL_BUTTON_X1, /* BTN_SIDE 0x113 */
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SDL_BUTTON_X2, /* BTN_EXTRA 0x114 */
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SDL_BUTTON_X2 + 1, /* BTN_FORWARD 0x115 */
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SDL_BUTTON_X2 + 2, /* BTN_BACK 0x116 */
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SDL_BUTTON_X2 + 3 /* BTN_TASK 0x117 */
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};
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static int
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SDL_EVDEV_SetRelativeMouseMode(SDL_bool enabled)
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{
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/* Mice already send relative events through this interface */
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return 0;
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}
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int
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SDL_EVDEV_Init(void)
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{
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if (_this == NULL) {
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_this = (SDL_EVDEV_PrivateData*)SDL_calloc(1, sizeof(*_this));
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if (_this == NULL) {
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return SDL_OutOfMemory();
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}
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#if SDL_USE_LIBUDEV
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if (SDL_UDEV_Init() < 0) {
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SDL_free(_this);
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_this = NULL;
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return -1;
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}
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/* Set up the udev callback */
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if (SDL_UDEV_AddCallback(SDL_EVDEV_udev_callback) < 0) {
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SDL_UDEV_Quit();
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SDL_free(_this);
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_this = NULL;
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return -1;
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}
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/* Force a scan to build the initial device list */
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SDL_UDEV_Scan();
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#else
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/* TODO: Scan the devices manually, like a caveman */
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#endif /* SDL_USE_LIBUDEV */
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_this->kbd = SDL_EVDEV_kbd_init();
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}
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SDL_GetMouse()->SetRelativeMouseMode = SDL_EVDEV_SetRelativeMouseMode;
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_this->ref_count += 1;
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return 0;
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}
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void
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SDL_EVDEV_Quit(void)
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{
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if (_this == NULL) {
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return;
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}
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_this->ref_count -= 1;
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if (_this->ref_count < 1) {
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#if SDL_USE_LIBUDEV
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SDL_UDEV_DelCallback(SDL_EVDEV_udev_callback);
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SDL_UDEV_Quit();
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#endif /* SDL_USE_LIBUDEV */
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SDL_EVDEV_kbd_quit(_this->kbd);
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/* Remove existing devices */
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while(_this->first != NULL) {
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SDL_EVDEV_device_removed(_this->first->path);
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}
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SDL_assert(_this->first == NULL);
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SDL_assert(_this->last == NULL);
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SDL_assert(_this->num_devices == 0);
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SDL_free(_this);
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_this = NULL;
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}
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}
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#if SDL_USE_LIBUDEV
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static void SDL_EVDEV_udev_callback(SDL_UDEV_deviceevent udev_event, int udev_class,
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const char* dev_path)
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{
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if (dev_path == NULL) {
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return;
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}
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switch(udev_event) {
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case SDL_UDEV_DEVICEADDED:
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if (!(udev_class & (SDL_UDEV_DEVICE_MOUSE | SDL_UDEV_DEVICE_KEYBOARD |
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SDL_UDEV_DEVICE_TOUCHSCREEN)))
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return;
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SDL_EVDEV_device_added(dev_path, udev_class);
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break;
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case SDL_UDEV_DEVICEREMOVED:
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SDL_EVDEV_device_removed(dev_path);
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break;
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default:
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break;
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}
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}
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#endif /* SDL_USE_LIBUDEV */
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void
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SDL_EVDEV_Poll(void)
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{
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struct input_event events[32];
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int i, j, len;
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SDL_evdevlist_item *item;
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SDL_Scancode scan_code;
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int mouse_button;
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SDL_Mouse *mouse;
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float norm_x, norm_y, norm_pressure;
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if (!_this) {
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return;
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}
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#if SDL_USE_LIBUDEV
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SDL_UDEV_Poll();
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#endif
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mouse = SDL_GetMouse();
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for (item = _this->first; item != NULL; item = item->next) {
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while ((len = read(item->fd, events, (sizeof events))) > 0) {
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len /= sizeof(events[0]);
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for (i = 0; i < len; ++i) {
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/* special handling for touchscreen, that should eventually be
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used for all devices */
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if (item->out_of_sync && item->is_touchscreen &&
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events[i].type == EV_SYN && events[i].code != SYN_REPORT) {
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break;
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}
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switch (events[i].type) {
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case EV_KEY:
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if (events[i].code >= BTN_MOUSE && events[i].code < BTN_MOUSE + SDL_arraysize(EVDEV_MouseButtons)) {
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mouse_button = events[i].code - BTN_MOUSE;
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if (events[i].value == 0) {
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SDL_SendMouseButton(mouse->focus, mouse->mouseID, SDL_RELEASED, EVDEV_MouseButtons[mouse_button]);
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} else if (events[i].value == 1) {
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SDL_SendMouseButton(mouse->focus, mouse->mouseID, SDL_PRESSED, EVDEV_MouseButtons[mouse_button]);
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}
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break;
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}
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/* BTH_TOUCH event value 1 indicates there is contact with
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a touchscreen or trackpad (earlist finger's current
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position is sent in EV_ABS ABS_X/ABS_Y, switching to
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next finger after earlist is released) */
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if (item->is_touchscreen && events[i].code == BTN_TOUCH) {
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if (item->touchscreen_data->max_slots == 1) {
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if (events[i].value)
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item->touchscreen_data->slots[0].delta = EVDEV_TOUCH_SLOTDELTA_DOWN;
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else
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item->touchscreen_data->slots[0].delta = EVDEV_TOUCH_SLOTDELTA_UP;
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}
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break;
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}
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/* Probably keyboard */
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scan_code = SDL_EVDEV_translate_keycode(events[i].code);
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if (scan_code != SDL_SCANCODE_UNKNOWN) {
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if (events[i].value == 0) {
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SDL_SendKeyboardKey(SDL_RELEASED, scan_code);
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} else if (events[i].value == 1 || events[i].value == 2 /* key repeated */) {
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SDL_SendKeyboardKey(SDL_PRESSED, scan_code);
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}
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}
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SDL_EVDEV_kbd_keycode(_this->kbd, events[i].code, events[i].value);
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break;
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case EV_ABS:
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switch(events[i].code) {
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case ABS_MT_SLOT:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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item->touchscreen_data->current_slot = events[i].value;
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break;
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case ABS_MT_TRACKING_ID:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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if (events[i].value >= 0) {
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].tracking_id = events[i].value;
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta = EVDEV_TOUCH_SLOTDELTA_DOWN;
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} else {
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta = EVDEV_TOUCH_SLOTDELTA_UP;
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}
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break;
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case ABS_MT_POSITION_X:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].x = events[i].value;
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if (item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta == EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta = EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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break;
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case ABS_MT_POSITION_Y:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].y = events[i].value;
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if (item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta == EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta = EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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break;
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case ABS_MT_PRESSURE:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].pressure = events[i].value;
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if (item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta == EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[item->touchscreen_data->current_slot].delta = EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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break;
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case ABS_X:
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if (item->is_touchscreen) {
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if (item->touchscreen_data->max_slots != 1)
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break;
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item->touchscreen_data->slots[0].x = events[i].value;
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} else
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SDL_SendMouseMotion(mouse->focus, mouse->mouseID, SDL_FALSE, events[i].value, mouse->y);
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break;
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case ABS_Y:
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if (item->is_touchscreen) {
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if (item->touchscreen_data->max_slots != 1)
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break;
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item->touchscreen_data->slots[0].y = events[i].value;
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} else
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SDL_SendMouseMotion(mouse->focus, mouse->mouseID, SDL_FALSE, mouse->x, events[i].value);
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break;
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default:
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break;
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}
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break;
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case EV_REL:
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switch(events[i].code) {
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case REL_X:
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SDL_SendMouseMotion(mouse->focus, mouse->mouseID, SDL_TRUE, events[i].value, 0);
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break;
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case REL_Y:
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SDL_SendMouseMotion(mouse->focus, mouse->mouseID, SDL_TRUE, 0, events[i].value);
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break;
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case REL_WHEEL:
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SDL_SendMouseWheel(mouse->focus, mouse->mouseID, 0, events[i].value, SDL_MOUSEWHEEL_NORMAL);
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break;
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case REL_HWHEEL:
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SDL_SendMouseWheel(mouse->focus, mouse->mouseID, events[i].value, 0, SDL_MOUSEWHEEL_NORMAL);
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break;
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default:
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break;
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}
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break;
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case EV_SYN:
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switch (events[i].code) {
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case SYN_REPORT:
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if (!item->is_touchscreen) /* FIXME: temp hack */
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break;
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for(j = 0; j < item->touchscreen_data->max_slots; j++) {
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norm_x = (float)(item->touchscreen_data->slots[j].x - item->touchscreen_data->min_x) /
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(float)item->touchscreen_data->range_x;
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norm_y = (float)(item->touchscreen_data->slots[j].y - item->touchscreen_data->min_y) /
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(float)item->touchscreen_data->range_y;
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if (item->touchscreen_data->range_pressure > 0) {
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norm_pressure = (float)(item->touchscreen_data->slots[j].pressure - item->touchscreen_data->min_pressure) /
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(float)item->touchscreen_data->range_pressure;
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} else {
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/* This touchscreen does not support pressure */
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norm_pressure = 1.0f;
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}
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/* FIXME: the touch's window shouldn't be null, but
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* the coordinate space of touch positions needs to
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* be window-relative in that case. */
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switch(item->touchscreen_data->slots[j].delta) {
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case EVDEV_TOUCH_SLOTDELTA_DOWN:
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SDL_SendTouch(item->fd, item->touchscreen_data->slots[j].tracking_id, NULL, SDL_TRUE, norm_x, norm_y, norm_pressure);
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item->touchscreen_data->slots[j].delta = EVDEV_TOUCH_SLOTDELTA_NONE;
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break;
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case EVDEV_TOUCH_SLOTDELTA_UP:
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SDL_SendTouch(item->fd, item->touchscreen_data->slots[j].tracking_id, NULL, SDL_FALSE, norm_x, norm_y, norm_pressure);
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item->touchscreen_data->slots[j].tracking_id = -1;
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item->touchscreen_data->slots[j].delta = EVDEV_TOUCH_SLOTDELTA_NONE;
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break;
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case EVDEV_TOUCH_SLOTDELTA_MOVE:
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SDL_SendTouchMotion(item->fd, item->touchscreen_data->slots[j].tracking_id, NULL, norm_x, norm_y, norm_pressure);
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item->touchscreen_data->slots[j].delta = EVDEV_TOUCH_SLOTDELTA_NONE;
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break;
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default:
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break;
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}
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}
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if (item->out_of_sync)
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item->out_of_sync = 0;
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break;
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case SYN_DROPPED:
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if (item->is_touchscreen)
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item->out_of_sync = 1;
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SDL_EVDEV_sync_device(item);
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break;
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default:
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break;
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}
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break;
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}
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}
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}
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}
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}
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static SDL_Scancode
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SDL_EVDEV_translate_keycode(int keycode)
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{
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SDL_Scancode scancode = SDL_SCANCODE_UNKNOWN;
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if (keycode < SDL_arraysize(linux_scancode_table)) {
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scancode = linux_scancode_table[keycode];
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if (scancode == SDL_SCANCODE_UNKNOWN) {
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/* BTN_TOUCH is handled elsewhere, but we might still end up here if
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you get an unexpected BTN_TOUCH from something SDL believes is not
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a touch device. In this case, we'd rather not get a misleading
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SDL_Log message about an unknown key. */
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if (keycode != BTN_TOUCH) {
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SDL_Log("The key you just pressed is not recognized by SDL. To help "
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|
"get this fixed, please report this to the SDL forums/mailing list "
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"<https://discourse.libsdl.org/> EVDEV KeyCode %d", keycode);
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}
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}
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}
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return scancode;
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}
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#ifdef SDL_USE_LIBUDEV
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static int
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SDL_EVDEV_init_touchscreen(SDL_evdevlist_item* item)
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{
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int ret, i;
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unsigned long xreq, yreq;
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char name[64];
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struct input_absinfo abs_info;
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if (!item->is_touchscreen)
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return 0;
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item->touchscreen_data = SDL_calloc(1, sizeof(*item->touchscreen_data));
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if (item->touchscreen_data == NULL)
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return SDL_OutOfMemory();
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ret = ioctl(item->fd, EVIOCGNAME(sizeof(name)), name);
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if (ret < 0) {
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SDL_free(item->touchscreen_data);
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return SDL_SetError("Failed to get evdev touchscreen name");
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}
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item->touchscreen_data->name = SDL_strdup(name);
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if (item->touchscreen_data->name == NULL) {
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SDL_free(item->touchscreen_data);
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return SDL_OutOfMemory();
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}
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ret = ioctl(item->fd, EVIOCGABS(ABS_MT_SLOT), &abs_info);
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if (ret < 0) {
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return SDL_SetError("Failed to get evdev touchscreen limits");
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}
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if (abs_info.maximum == 0) {
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item->touchscreen_data->max_slots = 1;
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xreq = EVIOCGABS(ABS_X);
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yreq = EVIOCGABS(ABS_Y);
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} else {
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item->touchscreen_data->max_slots = abs_info.maximum + 1;
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xreq = EVIOCGABS(ABS_MT_POSITION_X);
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yreq = EVIOCGABS(ABS_MT_POSITION_Y);
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}
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ret = ioctl(item->fd, xreq, &abs_info);
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if (ret < 0) {
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return SDL_SetError("Failed to get evdev touchscreen limits");
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}
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item->touchscreen_data->min_x = abs_info.minimum;
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item->touchscreen_data->max_x = abs_info.maximum;
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item->touchscreen_data->range_x = abs_info.maximum - abs_info.minimum;
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ret = ioctl(item->fd, yreq, &abs_info);
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if (ret < 0) {
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return SDL_SetError("Failed to get evdev touchscreen limits");
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}
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item->touchscreen_data->min_y = abs_info.minimum;
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item->touchscreen_data->max_y = abs_info.maximum;
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item->touchscreen_data->range_y = abs_info.maximum - abs_info.minimum;
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ret = ioctl(item->fd, EVIOCGABS(ABS_MT_PRESSURE), &abs_info);
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if (ret < 0) {
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return SDL_SetError("Failed to get evdev touchscreen limits");
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}
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item->touchscreen_data->min_pressure = abs_info.minimum;
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item->touchscreen_data->max_pressure = abs_info.maximum;
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item->touchscreen_data->range_pressure = abs_info.maximum - abs_info.minimum;
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item->touchscreen_data->slots = SDL_calloc(
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item->touchscreen_data->max_slots,
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sizeof(*item->touchscreen_data->slots));
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if (item->touchscreen_data->slots == NULL) {
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return SDL_OutOfMemory();
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}
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for(i = 0; i < item->touchscreen_data->max_slots; i++) {
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item->touchscreen_data->slots[i].tracking_id = -1;
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}
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ret = SDL_AddTouch(item->fd, /* I guess our fd is unique enough */
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SDL_TOUCH_DEVICE_DIRECT,
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item->touchscreen_data->name);
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if (ret < 0) {
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SDL_free(item->touchscreen_data->slots);
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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return ret;
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}
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return 0;
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}
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#endif /* SDL_USE_LIBUDEV */
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static void
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SDL_EVDEV_destroy_touchscreen(SDL_evdevlist_item* item) {
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if (!item->is_touchscreen)
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return;
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SDL_DelTouch(item->fd);
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SDL_free(item->touchscreen_data->slots);
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SDL_free(item->touchscreen_data->name);
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SDL_free(item->touchscreen_data);
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}
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static void
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SDL_EVDEV_sync_device(SDL_evdevlist_item *item)
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{
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#ifdef EVIOCGMTSLOTS
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int i, ret;
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struct input_absinfo abs_info;
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/*
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* struct input_mt_request_layout {
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* __u32 code;
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* __s32 values[num_slots];
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* };
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*
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* this is the structure we're trying to emulate
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*/
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Uint32* mt_req_code;
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Sint32* mt_req_values;
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size_t mt_req_size;
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/* TODO: sync devices other than touchscreen */
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if (!item->is_touchscreen)
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return;
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mt_req_size = sizeof(*mt_req_code) +
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sizeof(*mt_req_values) * item->touchscreen_data->max_slots;
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mt_req_code = SDL_calloc(1, mt_req_size);
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if (mt_req_code == NULL) {
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return;
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}
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mt_req_values = (Sint32*)mt_req_code + 1;
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*mt_req_code = ABS_MT_TRACKING_ID;
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ret = ioctl(item->fd, EVIOCGMTSLOTS(mt_req_size), mt_req_code);
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if (ret < 0) {
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SDL_free(mt_req_code);
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return;
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}
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for(i = 0; i < item->touchscreen_data->max_slots; i++) {
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/*
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* This doesn't account for the very edge case of the user removing their
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* finger and replacing it on the screen during the time we're out of sync,
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* which'll mean that we're not going from down -> up or up -> down, we're
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* going from down -> down but with a different tracking id, meaning we'd
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* have to tell SDL of the two events, but since we wait till SYN_REPORT in
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* SDL_EVDEV_Poll to tell SDL, the current structure of this code doesn't
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* allow it. Lets just pray to God it doesn't happen.
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*/
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if (item->touchscreen_data->slots[i].tracking_id < 0 &&
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mt_req_values[i] >= 0) {
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item->touchscreen_data->slots[i].tracking_id = mt_req_values[i];
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item->touchscreen_data->slots[i].delta = EVDEV_TOUCH_SLOTDELTA_DOWN;
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} else if (item->touchscreen_data->slots[i].tracking_id >= 0 &&
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mt_req_values[i] < 0) {
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item->touchscreen_data->slots[i].tracking_id = -1;
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item->touchscreen_data->slots[i].delta = EVDEV_TOUCH_SLOTDELTA_UP;
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}
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}
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*mt_req_code = ABS_MT_POSITION_X;
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ret = ioctl(item->fd, EVIOCGMTSLOTS(mt_req_size), mt_req_code);
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if (ret < 0) {
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SDL_free(mt_req_code);
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return;
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}
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for(i = 0; i < item->touchscreen_data->max_slots; i++) {
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if (item->touchscreen_data->slots[i].tracking_id >= 0 &&
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item->touchscreen_data->slots[i].x != mt_req_values[i]) {
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item->touchscreen_data->slots[i].x = mt_req_values[i];
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if (item->touchscreen_data->slots[i].delta ==
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EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[i].delta =
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EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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}
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}
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*mt_req_code = ABS_MT_POSITION_Y;
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ret = ioctl(item->fd, EVIOCGMTSLOTS(mt_req_size), mt_req_code);
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if (ret < 0) {
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SDL_free(mt_req_code);
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return;
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}
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for(i = 0; i < item->touchscreen_data->max_slots; i++) {
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if (item->touchscreen_data->slots[i].tracking_id >= 0 &&
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item->touchscreen_data->slots[i].y != mt_req_values[i]) {
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item->touchscreen_data->slots[i].y = mt_req_values[i];
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if (item->touchscreen_data->slots[i].delta ==
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EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[i].delta =
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EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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}
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}
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*mt_req_code = ABS_MT_PRESSURE;
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ret = ioctl(item->fd, EVIOCGMTSLOTS(mt_req_size), mt_req_code);
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if (ret < 0) {
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SDL_free(mt_req_code);
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return;
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}
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for(i = 0; i < item->touchscreen_data->max_slots; i++) {
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if (item->touchscreen_data->slots[i].tracking_id >= 0 &&
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item->touchscreen_data->slots[i].pressure != mt_req_values[i]) {
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item->touchscreen_data->slots[i].pressure = mt_req_values[i];
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if (item->touchscreen_data->slots[i].delta ==
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EVDEV_TOUCH_SLOTDELTA_NONE) {
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item->touchscreen_data->slots[i].delta =
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EVDEV_TOUCH_SLOTDELTA_MOVE;
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}
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}
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}
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ret = ioctl(item->fd, EVIOCGABS(ABS_MT_SLOT), &abs_info);
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if (ret < 0) {
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SDL_free(mt_req_code);
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return;
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}
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item->touchscreen_data->current_slot = abs_info.value;
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SDL_free(mt_req_code);
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#endif /* EVIOCGMTSLOTS */
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}
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#if SDL_USE_LIBUDEV
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static int
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SDL_EVDEV_device_added(const char *dev_path, int udev_class)
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{
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int ret;
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SDL_evdevlist_item *item;
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/* Check to make sure it's not already in list. */
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for (item = _this->first; item != NULL; item = item->next) {
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if (SDL_strcmp(dev_path, item->path) == 0) {
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return -1; /* already have this one */
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}
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}
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item = (SDL_evdevlist_item *) SDL_calloc(1, sizeof (SDL_evdevlist_item));
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if (item == NULL) {
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return SDL_OutOfMemory();
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}
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item->fd = open(dev_path, O_RDONLY | O_NONBLOCK);
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if (item->fd < 0) {
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SDL_free(item);
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return SDL_SetError("Unable to open %s", dev_path);
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}
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item->path = SDL_strdup(dev_path);
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if (item->path == NULL) {
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close(item->fd);
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SDL_free(item);
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return SDL_OutOfMemory();
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}
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if (udev_class & SDL_UDEV_DEVICE_TOUCHSCREEN) {
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item->is_touchscreen = 1;
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if ((ret = SDL_EVDEV_init_touchscreen(item)) < 0) {
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close(item->fd);
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SDL_free(item);
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return ret;
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}
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}
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if (_this->last == NULL) {
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_this->first = _this->last = item;
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} else {
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_this->last->next = item;
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_this->last = item;
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}
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SDL_EVDEV_sync_device(item);
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return _this->num_devices++;
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}
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#endif /* SDL_USE_LIBUDEV */
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static int
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SDL_EVDEV_device_removed(const char *dev_path)
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{
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SDL_evdevlist_item *item;
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SDL_evdevlist_item *prev = NULL;
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for (item = _this->first; item != NULL; item = item->next) {
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/* found it, remove it. */
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if (SDL_strcmp(dev_path, item->path) == 0) {
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if (prev != NULL) {
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prev->next = item->next;
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} else {
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SDL_assert(_this->first == item);
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_this->first = item->next;
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}
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if (item == _this->last) {
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_this->last = prev;
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}
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if (item->is_touchscreen) {
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SDL_EVDEV_destroy_touchscreen(item);
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}
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close(item->fd);
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SDL_free(item->path);
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SDL_free(item);
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_this->num_devices--;
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return 0;
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}
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prev = item;
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}
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return -1;
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}
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#endif /* SDL_INPUT_LINUXEV */
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/* vi: set ts=4 sw=4 expandtab: */
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