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hybris-sensors.c
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hybris-sensors.c
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/** @file hybris-sensors.c
*
* mce-plugin-libhybris - Libhybris plugin for Mode Control Entity
* <p>
* Copyright (C) 2013-2017 Jolla Ltd.
* <p>
* @author Simo Piiroinen <simo.piiroinen@jollamobile.com>
*
* mce-plugin-libhybris is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License.
*
* mce-plugin-libhybris is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public License
* along with mce-plugin-libhybris; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "hybris-sensors.h"
#include "plugin-logging.h"
#include "hybris-thread.h"
#include <android-config.h>
#include <hardware/sensors.h>
#include <glib.h>
/* ========================================================================= *
* PROTOTYPES
* ========================================================================= */
/* ------------------------------------------------------------------------- *
* SENSORS_PLUGIN
* ------------------------------------------------------------------------- */
static const struct sensor_t *hybris_plugin_sensors_get_sensor (int type);
bool hybris_plugin_sensors_load (void);
void hybris_plugin_sensors_unload (void);
static bool hybris_plugin_sensors_open_device (struct sensors_poll_device_t **pdevice);
static void hybris_plugin_sensors_close_device (struct sensors_poll_device_t **pdevice);
/* ------------------------------------------------------------------------- *
* SENSORS_DEVICE
* ------------------------------------------------------------------------- */
static void hybris_device_sensors_thread_cb (void *aptr);
static bool hybris_device_sensors_init (void);
static void hybris_device_sensors_quit (void);
/* ------------------------------------------------------------------------- *
* PROXIMITY_SENSOR
* ------------------------------------------------------------------------- */
bool hybris_sensor_ps_init (void);
void hybris_sensor_ps_quit (void);
void hybris_sensor_ps_set_hook (mce_hybris_ps_fn cb);
bool hybris_sensor_ps_set_active (bool state);
/* ------------------------------------------------------------------------- *
* AMBIENT_LIGHT_SENSOR
* ------------------------------------------------------------------------- */
bool hybris_device_als_init (void);
void hybris_device_als_quit (void);
void hybris_device_als_set_hook (mce_hybris_als_fn cb);
bool hybris_device_als_set_active (bool state);
/* ========================================================================= *
* SENSORS_PLUGIN
* ========================================================================= */
/** Handle for libhybris sensors plugin */
static struct sensors_module_t *hybris_plugin_sensors_handle = 0;
/** Array of sensors available via hybris_plugin_sensors_handle */
static const struct sensor_t *hybris_plugin_sensors_lut = 0;
/** Number of sensors available via hybris_plugin_sensors_handle */
static int hybris_plugin_sensors_cnt = 0;
/** Pointer to libhybris proximity sensor object */
static const struct sensor_t *hybris_plugin_sensors_ps_sensor = 0;
/** Pointer to libhybris ambient light sensor object */
static const struct sensor_t *hybris_plugin_sensors_als_sensor = 0;
/** Helper for locating sensor objects by type
*
* @param type SENSOR_TYPE_LIGHT etc
*
* @return sensor pointer, or NULL if not available
*/
static const struct sensor_t *
hybris_plugin_sensors_get_sensor(int type)
{
const struct sensor_t *res = 0;
for( int i = 0; i < hybris_plugin_sensors_cnt; ++i ) {
if( hybris_plugin_sensors_lut[i].type == type ) {
res = &hybris_plugin_sensors_lut[i];
break;
}
}
return res;
}
/** Load libhybris sensors plugin
*
* Also initializes look up table for supported sensors.
*
* @return true on success, false on failure
*/
bool
hybris_plugin_sensors_load(void)
{
static bool done = false;
if( done ) {
goto cleanup;
}
done = true;
{
const struct hw_module_t *mod = 0;
hw_get_module(SENSORS_HARDWARE_MODULE_ID, &mod);
hybris_plugin_sensors_handle = (struct sensors_module_t *)mod;
}
if( !hybris_plugin_sensors_handle ) {
mce_log(LL_WARN, "failed top open sensors module");
}
else {
mce_log(LL_DEBUG, "hybris_plugin_sensors_handle = %p",
hybris_plugin_sensors_handle);
}
if( !hybris_plugin_sensors_handle ) {
goto cleanup;
}
hybris_plugin_sensors_cnt = hybris_plugin_sensors_handle->get_sensors_list(hybris_plugin_sensors_handle,
&hybris_plugin_sensors_lut);
hybris_plugin_sensors_als_sensor = hybris_plugin_sensors_get_sensor(SENSOR_TYPE_LIGHT);
hybris_plugin_sensors_ps_sensor = hybris_plugin_sensors_get_sensor(SENSOR_TYPE_PROXIMITY);
cleanup:
return hybris_plugin_sensors_handle != 0;
}
/** Unload libhybris sensors plugin
*/
void
hybris_plugin_sensors_unload(void)
{
/* cleanup dependencies */
hybris_device_sensors_quit();
/* actually unload the module */
// FIXME: how to unload libhybris modules?
}
/** Convenience function for opening sensors device
*
* Similar to what we might or might not have available from hardware/sensors.h
*/
static bool
hybris_plugin_sensors_open_device(struct sensors_poll_device_t **pdevice)
{
bool ack = false;
if( !hybris_plugin_sensors_load() ) {
goto cleanup;
}
const struct hw_module_t *mod = &hybris_plugin_sensors_handle->common;
const char *id = SENSORS_HARDWARE_POLL;
struct hw_device_t *dev = 0;
if( !mod->methods->open(mod, id, &dev) ) {
goto cleanup;
}
*pdevice = (struct sensors_poll_device_t *)dev;
ack = true;
cleanup:
return ack;
}
/** Convenience function for closing sensors device
*
* Similar to what we might or might not have available from hardware/sensors.h
*/
static void
hybris_plugin_sensors_close_device(struct sensors_poll_device_t **pdevice)
{
struct sensors_poll_device_t *device;
if( (device = *pdevice) ) {
*pdevice = 0, device->common.close(&device->common);
}
}
/* ========================================================================= *
* SENSORS_DEVICE
* ========================================================================= */
/** Pointer to libhybris sensor poll device object */
static struct sensors_poll_device_t *hybris_device_sensors_handle = 0;
/** Callback for forwarding proximity sensor events */
static mce_hybris_ps_fn hybris_device_sensors_ps_cb = 0;
/** Callback for forwarding ambient light sensor events */
static mce_hybris_als_fn hybris_device_sensors_als_cb = 0;
/** Worker thread id */
static pthread_t hybris_device_sensors_thread_id = 0;
/** Worker thread for reading sensor events via blocking libhybris interface
*
* Note: no mce_log() calls from this function - they are not thread safe
*
* @param aptr (thread parameter, not used)
*/
static void
hybris_device_sensors_thread_cb(void *aptr)
{
(void)aptr;
sensors_event_t eve[32];
while( hybris_device_sensors_handle ) {
/* This blocks until there are events available, or possibly sooner
* if enabling/disabling sensors changes something. Since we can't
* guarantee that we ever return from the call, the thread is cancelled
* asynchronously on cleanup - and any resources possibly reserved by
* the hybris_device_sensors_handle->poll() are lost. */
int n = hybris_device_sensors_handle->poll(hybris_device_sensors_handle, eve, G_N_ELEMENTS(eve));
for( int i = 0; i < n; ++i ) {
sensors_event_t *e = &eve[i];
/* Forward data via per sensor callback routines. The callbacks must
* handle the fact that they get called from the context of the worker
* thread. */
switch( e->type ) {
case SENSOR_TYPE_LIGHT:
if( hybris_device_sensors_als_cb ) {
hybris_device_sensors_als_cb(e->timestamp, e->distance);
}
break;
case SENSOR_TYPE_PROXIMITY:
if( hybris_device_sensors_ps_cb ) {
hybris_device_sensors_ps_cb(e->timestamp, e->light);
}
break;
case SENSOR_TYPE_ACCELEROMETER:
case SENSOR_TYPE_MAGNETIC_FIELD:
case SENSOR_TYPE_ORIENTATION:
case SENSOR_TYPE_GYROSCOPE:
case SENSOR_TYPE_PRESSURE:
case SENSOR_TYPE_TEMPERATURE:
case SENSOR_TYPE_GRAVITY:
case SENSOR_TYPE_LINEAR_ACCELERATION:
case SENSOR_TYPE_ROTATION_VECTOR:
case SENSOR_TYPE_RELATIVE_HUMIDITY:
case SENSOR_TYPE_AMBIENT_TEMPERATURE:
break;
}
}
}
}
/** Initialize libhybris sensor poll device object
*
* Also:
* - disables ALS and PS sensor inputs if possible
* - starts worker thread to handle sensor input events
*
* @return true on success, false on failure
*/
static bool
hybris_device_sensors_init(void)
{
if( hybris_device_sensors_handle ) {
goto cleanup;
}
if( !hybris_plugin_sensors_open_device(&hybris_device_sensors_handle) ) {
mce_log(LL_WARN, "failed to open sensor poll device");
goto cleanup;
}
mce_log(LL_DEBUG, "hybris_device_sensors_handle = %p",
hybris_device_sensors_handle);
if( hybris_plugin_sensors_ps_sensor ) {
hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_ps_sensor->handle, false);
}
if( hybris_plugin_sensors_als_sensor ) {
hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_als_sensor->handle, false);
}
hybris_device_sensors_thread_id = hybris_thread_start(hybris_device_sensors_thread_cb, 0);
cleanup:
return hybris_device_sensors_handle != 0;
}
/** Release libhybris display backlight device object
*
* Also:
* - stops the sensor input worker thread
* - disables ALS and PS sensor inputs if possible
*/
static void
hybris_device_sensors_quit(void)
{
if( hybris_device_sensors_handle ) {
if( hybris_device_sensors_thread_id ) {
hybris_thread_stop(hybris_device_sensors_thread_id),
hybris_device_sensors_thread_id = 0;
}
if( hybris_plugin_sensors_ps_sensor ) {
hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_ps_sensor->handle, false);
}
if( hybris_plugin_sensors_als_sensor ) {
hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_als_sensor->handle, false);
}
hybris_plugin_sensors_close_device(&hybris_device_sensors_handle);
}
}
/* ========================================================================= *
* PROXIMITY_SENSOR
* ========================================================================= */
/** Start using proximity sensor via libhybris
*
* @return true on success, false on failure
*/
bool
hybris_sensor_ps_init(void)
{
bool res = false;
if( !hybris_device_sensors_init() ) {
goto cleanup;
}
if( !hybris_plugin_sensors_ps_sensor ) {
goto cleanup;
}
res = true;
cleanup:
return res;
}
/** Stop using proximity sensor via libhybris
*
* @return true on success, false on failure
*/
void
hybris_sensor_ps_quit(void)
{
hybris_device_sensors_ps_cb = 0;
}
/** Set callback function for handling proximity sensor events
*
* Note: the callback function will be called from worker thread.
*/
void
hybris_sensor_ps_set_hook(mce_hybris_ps_fn cb)
{
hybris_device_sensors_ps_cb = cb;
}
/** Set proximity sensort input enabled state
*
* @param state true to enable input, or false to disable input
*/
bool
hybris_sensor_ps_set_active(bool state)
{
bool res = false;
if( !hybris_sensor_ps_init() ) {
goto cleanup;
}
if( hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_ps_sensor->handle, state) < 0 ) {
goto cleanup;
}
res = true;
cleanup:
return res;
}
/* ========================================================================= *
* AMBIENT_LIGHT_SENSOR
* ========================================================================= */
/** Start using ambient light sensor via libhybris
*
* @return true on success, false on failure
*/
bool
hybris_device_als_init(void)
{
bool res = false;
if( !hybris_device_sensors_init() ) {
goto cleanup;
}
if( !hybris_plugin_sensors_als_sensor ) {
goto cleanup;
}
res = true;
cleanup:
return res;
}
/** Stop using ambient light sensor via libhybris
*
* @return true on success, false on failure
*/
void
hybris_device_als_quit(void)
{
hybris_device_sensors_als_cb = 0;
}
/** Set callback function for handling ambient light sensor events
*
* Note: the callback function will be called from worker thread.
*/
void
hybris_device_als_set_hook(mce_hybris_als_fn cb)
{
hybris_device_sensors_als_cb = cb;
}
/** Set ambient light sensor input enabled state
*
* @param state true to enable input, or false to disable input
*/
bool
hybris_device_als_set_active(bool state)
{
bool res = false;
if( !hybris_device_als_init() ) {
goto cleanup;
}
if( hybris_device_sensors_handle->activate(hybris_device_sensors_handle, hybris_plugin_sensors_als_sensor->handle, state) < 0 ) {
goto cleanup;
}
res = true;
cleanup:
return res;
}