626 lines
16 KiB
C
626 lines
16 KiB
C
/*
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Simple DirectMedia Layer
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Copyright (C) 1997-2024 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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/* This is the sensor API for Simple DirectMedia Layer */
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#include "SDL_syssensor.h"
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#include "../events/SDL_events_c.h"
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#include "../joystick/SDL_gamepad_c.h"
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static SDL_SensorDriver *SDL_sensor_drivers[] = {
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#ifdef SDL_SENSOR_ANDROID
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&SDL_ANDROID_SensorDriver,
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#endif
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#ifdef SDL_SENSOR_COREMOTION
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&SDL_COREMOTION_SensorDriver,
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#endif
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#ifdef SDL_SENSOR_WINDOWS
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&SDL_WINDOWS_SensorDriver,
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#endif
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#ifdef SDL_SENSOR_VITA
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&SDL_VITA_SensorDriver,
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#endif
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#ifdef SDL_SENSOR_N3DS
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&SDL_N3DS_SensorDriver,
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#endif
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#if defined(SDL_SENSOR_DUMMY) || defined(SDL_SENSOR_DISABLED)
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&SDL_DUMMY_SensorDriver
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#endif
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};
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#ifndef SDL_THREAD_SAFETY_ANALYSIS
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static
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#endif
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SDL_Mutex *SDL_sensor_lock = NULL; /* This needs to support recursive locks */
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static SDL_AtomicInt SDL_sensor_lock_pending;
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static int SDL_sensors_locked;
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static SDL_bool SDL_sensors_initialized;
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static SDL_Sensor *SDL_sensors SDL_GUARDED_BY(SDL_sensor_lock) = NULL;
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#define CHECK_SENSOR_MAGIC(sensor, retval) \
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if (!SDL_ObjectValid(sensor, SDL_OBJECT_TYPE_SENSOR)) { \
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SDL_InvalidParamError("sensor"); \
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SDL_UnlockSensors(); \
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return retval; \
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}
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SDL_bool SDL_SensorsInitialized(void)
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{
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return SDL_sensors_initialized;
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}
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void SDL_LockSensors(void)
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{
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(void)SDL_AtomicIncRef(&SDL_sensor_lock_pending);
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SDL_LockMutex(SDL_sensor_lock);
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(void)SDL_AtomicDecRef(&SDL_sensor_lock_pending);
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++SDL_sensors_locked;
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}
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void SDL_UnlockSensors(void)
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{
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SDL_bool last_unlock = SDL_FALSE;
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--SDL_sensors_locked;
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if (!SDL_sensors_initialized) {
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/* NOTE: There's a small window here where another thread could lock the mutex after we've checked for pending locks */
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if (!SDL_sensors_locked && SDL_AtomicGet(&SDL_sensor_lock_pending) == 0) {
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last_unlock = SDL_TRUE;
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}
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}
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/* The last unlock after sensors are uninitialized will cleanup the mutex,
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* allowing applications to lock sensors while reinitializing the system.
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*/
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if (last_unlock) {
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SDL_Mutex *sensor_lock = SDL_sensor_lock;
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SDL_LockMutex(sensor_lock);
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{
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SDL_UnlockMutex(SDL_sensor_lock);
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SDL_sensor_lock = NULL;
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}
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SDL_UnlockMutex(sensor_lock);
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SDL_DestroyMutex(sensor_lock);
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} else {
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SDL_UnlockMutex(SDL_sensor_lock);
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}
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}
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SDL_bool SDL_SensorsLocked(void)
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{
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return (SDL_sensors_locked > 0);
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}
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void SDL_AssertSensorsLocked(void)
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{
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SDL_assert(SDL_SensorsLocked());
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}
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int SDL_InitSensors(void)
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{
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int i, status;
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/* Create the sensor list lock */
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if (SDL_sensor_lock == NULL) {
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SDL_sensor_lock = SDL_CreateMutex();
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}
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if (SDL_InitSubSystem(SDL_INIT_EVENTS) < 0) {
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return -1;
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}
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SDL_LockSensors();
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SDL_sensors_initialized = SDL_TRUE;
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status = -1;
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for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
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if (SDL_sensor_drivers[i]->Init() >= 0) {
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status = 0;
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}
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}
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SDL_UnlockSensors();
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if (status < 0) {
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SDL_QuitSensors();
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}
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return status;
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}
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SDL_bool SDL_SensorsOpened(void)
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{
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SDL_bool opened;
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SDL_LockSensors();
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{
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if (SDL_sensors != NULL) {
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opened = SDL_TRUE;
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} else {
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opened = SDL_FALSE;
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}
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}
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SDL_UnlockSensors();
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return opened;
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}
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const SDL_SensorID *SDL_GetSensors(int *count)
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{
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int i, num_sensors, device_index;
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int sensor_index = 0, total_sensors = 0;
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SDL_SensorID *sensors;
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SDL_LockSensors();
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{
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for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
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total_sensors += SDL_sensor_drivers[i]->GetCount();
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}
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sensors = (SDL_SensorID *)SDL_malloc((total_sensors + 1) * sizeof(*sensors));
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if (sensors) {
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if (count) {
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*count = total_sensors;
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}
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for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
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num_sensors = SDL_sensor_drivers[i]->GetCount();
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for (device_index = 0; device_index < num_sensors; ++device_index) {
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SDL_assert(sensor_index < total_sensors);
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sensors[sensor_index] = SDL_sensor_drivers[i]->GetDeviceInstanceID(device_index);
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SDL_assert(sensors[sensor_index] > 0);
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++sensor_index;
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}
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}
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SDL_assert(sensor_index == total_sensors);
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sensors[sensor_index] = 0;
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} else {
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if (count) {
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*count = 0;
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}
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}
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}
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SDL_UnlockSensors();
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return SDL_FreeLater(sensors);
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}
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/*
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* Get the driver and device index for a sensor instance ID
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* This should be called while the sensor lock is held, to prevent another thread from updating the list
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*/
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static SDL_bool SDL_GetDriverAndSensorIndex(SDL_SensorID instance_id, SDL_SensorDriver **driver, int *driver_index)
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{
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int i, num_sensors, device_index;
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if (instance_id > 0) {
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for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
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num_sensors = SDL_sensor_drivers[i]->GetCount();
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for (device_index = 0; device_index < num_sensors; ++device_index) {
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SDL_SensorID sensor_id = SDL_sensor_drivers[i]->GetDeviceInstanceID(device_index);
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if (sensor_id == instance_id) {
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*driver = SDL_sensor_drivers[i];
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*driver_index = device_index;
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return SDL_TRUE;
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}
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}
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}
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}
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SDL_SetError("Sensor %" SDL_PRIu32 " not found", instance_id);
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return SDL_FALSE;
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}
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/*
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* Get the implementation dependent name of a sensor
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*/
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const char *SDL_GetSensorNameForID(SDL_SensorID instance_id)
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{
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SDL_SensorDriver *driver;
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int device_index;
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const char *name = NULL;
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SDL_LockSensors();
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if (SDL_GetDriverAndSensorIndex(instance_id, &driver, &device_index)) {
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name = SDL_CreateTemporaryString(driver->GetDeviceName(device_index));
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}
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SDL_UnlockSensors();
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return name;
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}
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SDL_SensorType SDL_GetSensorTypeForID(SDL_SensorID instance_id)
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{
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SDL_SensorDriver *driver;
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int device_index;
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SDL_SensorType type = SDL_SENSOR_INVALID;
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SDL_LockSensors();
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if (SDL_GetDriverAndSensorIndex(instance_id, &driver, &device_index)) {
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type = driver->GetDeviceType(device_index);
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}
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SDL_UnlockSensors();
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return type;
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}
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int SDL_GetSensorNonPortableTypeForID(SDL_SensorID instance_id)
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{
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SDL_SensorDriver *driver;
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int device_index;
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int type = -1;
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SDL_LockSensors();
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if (SDL_GetDriverAndSensorIndex(instance_id, &driver, &device_index)) {
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type = driver->GetDeviceNonPortableType(device_index);
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}
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SDL_UnlockSensors();
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return type;
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}
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/*
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* Open a sensor for use - the index passed as an argument refers to
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* the N'th sensor on the system. This index is the value which will
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* identify this sensor in future sensor events.
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*
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* This function returns a sensor identifier, or NULL if an error occurred.
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*/
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SDL_Sensor *SDL_OpenSensor(SDL_SensorID instance_id)
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{
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SDL_SensorDriver *driver;
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int device_index;
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SDL_Sensor *sensor;
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SDL_Sensor *sensorlist;
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const char *sensorname = NULL;
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SDL_LockSensors();
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if (!SDL_GetDriverAndSensorIndex(instance_id, &driver, &device_index)) {
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SDL_UnlockSensors();
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return NULL;
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}
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sensorlist = SDL_sensors;
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/* If the sensor is already open, return it
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* it is important that we have a single sensor * for each instance id
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*/
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while (sensorlist) {
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if (instance_id == sensorlist->instance_id) {
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sensor = sensorlist;
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++sensor->ref_count;
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SDL_UnlockSensors();
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return sensor;
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}
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sensorlist = sensorlist->next;
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}
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/* Create and initialize the sensor */
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sensor = (SDL_Sensor *)SDL_calloc(sizeof(*sensor), 1);
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if (!sensor) {
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SDL_UnlockSensors();
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return NULL;
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}
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SDL_SetObjectValid(sensor, SDL_OBJECT_TYPE_SENSOR, SDL_TRUE);
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sensor->driver = driver;
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sensor->instance_id = instance_id;
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sensor->type = driver->GetDeviceType(device_index);
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sensor->non_portable_type = driver->GetDeviceNonPortableType(device_index);
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if (driver->Open(sensor, device_index) < 0) {
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SDL_SetObjectValid(sensor, SDL_OBJECT_TYPE_SENSOR, SDL_FALSE);
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SDL_free(sensor);
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SDL_UnlockSensors();
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return NULL;
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}
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sensorname = driver->GetDeviceName(device_index);
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if (sensorname) {
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sensor->name = SDL_strdup(sensorname);
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} else {
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sensor->name = NULL;
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}
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/* Add sensor to list */
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++sensor->ref_count;
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/* Link the sensor in the list */
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sensor->next = SDL_sensors;
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SDL_sensors = sensor;
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driver->Update(sensor);
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SDL_UnlockSensors();
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return sensor;
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}
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/*
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* Find the SDL_Sensor that owns this instance id
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*/
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SDL_Sensor *SDL_GetSensorFromID(SDL_SensorID instance_id)
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{
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SDL_Sensor *sensor;
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SDL_LockSensors();
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for (sensor = SDL_sensors; sensor; sensor = sensor->next) {
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if (sensor->instance_id == instance_id) {
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break;
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}
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}
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SDL_UnlockSensors();
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return sensor;
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}
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/*
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* Get the properties associated with a sensor.
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*/
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SDL_PropertiesID SDL_GetSensorProperties(SDL_Sensor *sensor)
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{
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SDL_PropertiesID retval;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, 0);
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if (sensor->props == 0) {
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sensor->props = SDL_CreateProperties();
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}
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retval = sensor->props;
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}
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SDL_UnlockSensors();
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return retval;
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}
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/*
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* Get the friendly name of this sensor
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*/
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const char *SDL_GetSensorName(SDL_Sensor *sensor)
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{
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const char *retval;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, NULL);
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retval = SDL_CreateTemporaryString(sensor->name);
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}
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SDL_UnlockSensors();
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return retval;
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}
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/*
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* Get the type of this sensor
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*/
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SDL_SensorType SDL_GetSensorType(SDL_Sensor *sensor)
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{
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SDL_SensorType retval;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, SDL_SENSOR_INVALID);
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retval = sensor->type;
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}
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SDL_UnlockSensors();
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return retval;
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}
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/*
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* Get the platform dependent type of this sensor
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*/
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int SDL_GetSensorNonPortableType(SDL_Sensor *sensor)
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{
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int retval;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, -1);
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retval = sensor->non_portable_type;
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}
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SDL_UnlockSensors();
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return retval;
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}
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/*
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* Get the instance id for this opened sensor
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*/
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SDL_SensorID SDL_GetSensorID(SDL_Sensor *sensor)
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{
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SDL_SensorID retval;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, 0);
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retval = sensor->instance_id;
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}
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SDL_UnlockSensors();
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return retval;
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}
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/*
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* Get the current state of this sensor
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*/
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int SDL_GetSensorData(SDL_Sensor *sensor, float *data, int num_values)
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{
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor, -1);
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num_values = SDL_min(num_values, SDL_arraysize(sensor->data));
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SDL_memcpy(data, sensor->data, num_values * sizeof(*data));
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}
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SDL_UnlockSensors();
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return 0;
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}
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/*
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* Close a sensor previously opened with SDL_OpenSensor()
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*/
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void SDL_CloseSensor(SDL_Sensor *sensor)
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{
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SDL_Sensor *sensorlist;
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SDL_Sensor *sensorlistprev;
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SDL_LockSensors();
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{
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CHECK_SENSOR_MAGIC(sensor,);
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/* First decrement ref count */
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if (--sensor->ref_count > 0) {
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SDL_UnlockSensors();
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return;
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}
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SDL_DestroyProperties(sensor->props);
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sensor->driver->Close(sensor);
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sensor->hwdata = NULL;
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SDL_SetObjectValid(sensor, SDL_OBJECT_TYPE_SENSOR, SDL_FALSE);
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sensorlist = SDL_sensors;
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sensorlistprev = NULL;
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while (sensorlist) {
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if (sensor == sensorlist) {
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if (sensorlistprev) {
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/* unlink this entry */
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sensorlistprev->next = sensorlist->next;
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} else {
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SDL_sensors = sensor->next;
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}
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break;
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}
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sensorlistprev = sensorlist;
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sensorlist = sensorlist->next;
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}
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/* Free the data associated with this sensor */
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SDL_free(sensor->name);
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SDL_free(sensor);
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}
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SDL_UnlockSensors();
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}
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void SDL_QuitSensors(void)
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{
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int i;
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SDL_LockSensors();
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/* Stop the event polling */
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while (SDL_sensors) {
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SDL_sensors->ref_count = 1;
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SDL_CloseSensor(SDL_sensors);
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}
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/* Quit the sensor setup */
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for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
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SDL_sensor_drivers[i]->Quit();
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}
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SDL_QuitSubSystem(SDL_INIT_EVENTS);
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SDL_sensors_initialized = SDL_FALSE;
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SDL_UnlockSensors();
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}
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/* These are global for SDL_syssensor.c and SDL_events.c */
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int SDL_SendSensorUpdate(Uint64 timestamp, SDL_Sensor *sensor, Uint64 sensor_timestamp, float *data, int num_values)
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{
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int posted;
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SDL_AssertSensorsLocked();
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/* Allow duplicate events, for things like steps and heartbeats */
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/* Update internal sensor state */
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num_values = SDL_min(num_values, SDL_arraysize(sensor->data));
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SDL_memcpy(sensor->data, data, num_values * sizeof(*data));
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/* Post the event, if desired */
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posted = 0;
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if (SDL_EventEnabled(SDL_EVENT_SENSOR_UPDATE)) {
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SDL_Event event;
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event.type = SDL_EVENT_SENSOR_UPDATE;
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event.common.timestamp = timestamp;
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event.sensor.which = sensor->instance_id;
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num_values = SDL_min(num_values, SDL_arraysize(event.sensor.data));
|
|
SDL_memset(event.sensor.data, 0, sizeof(event.sensor.data));
|
|
SDL_memcpy(event.sensor.data, data, num_values * sizeof(*data));
|
|
event.sensor.sensor_timestamp = sensor_timestamp;
|
|
posted = SDL_PushEvent(&event) == 1;
|
|
}
|
|
|
|
SDL_GamepadSensorWatcher(timestamp, sensor->instance_id, sensor_timestamp, data, num_values);
|
|
|
|
return posted;
|
|
}
|
|
|
|
void SDL_UpdateSensor(SDL_Sensor *sensor)
|
|
{
|
|
SDL_LockSensors();
|
|
{
|
|
CHECK_SENSOR_MAGIC(sensor,);
|
|
|
|
sensor->driver->Update(sensor);
|
|
}
|
|
SDL_UnlockSensors();
|
|
}
|
|
|
|
void SDL_UpdateSensors(void)
|
|
{
|
|
int i;
|
|
SDL_Sensor *sensor;
|
|
|
|
if (!SDL_WasInit(SDL_INIT_SENSOR)) {
|
|
return;
|
|
}
|
|
|
|
SDL_LockSensors();
|
|
|
|
for (sensor = SDL_sensors; sensor; sensor = sensor->next) {
|
|
sensor->driver->Update(sensor);
|
|
}
|
|
|
|
/* this needs to happen AFTER walking the sensor list above, so that any
|
|
dangling hardware data from removed devices can be free'd
|
|
*/
|
|
for (i = 0; i < SDL_arraysize(SDL_sensor_drivers); ++i) {
|
|
SDL_sensor_drivers[i]->Detect();
|
|
}
|
|
|
|
SDL_UnlockSensors();
|
|
}
|