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sysfs-led-f5121.c
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sysfs-led-f5121.c
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/** @file sysfs-led-f5121.c
*
* mce-plugin-libhybris - Libhybris plugin for Mode Control Entity
* <p>
* Copyright (C) 2017 Jolla Ltd.
* <p>
* @author Simo Piiroinen <simo.piiroinen@jollamobile.com>
* @author Kimmo Lindholm <kimmo.lindholm@eke.fi>
*
* 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
*/
/* ========================================================================= *
* RGB led control: Sony Xperia X backend
*
* Three channels, all of which:
* - must have 'brightness' control file
* - must have 'max_brightness' control file
* - must have 'blink' control file
*
* Assumptions built into code:
* - writing to 'blink' affects 'brightness' control too and vice versa
* ========================================================================= */
#include "sysfs-led-f5121.h"
#include "sysfs-led-util.h"
#include "sysfs-val.h"
#include "plugin-config.h"
#include <stdio.h>
#include <string.h>
#include <glib.h>
/* ========================================================================= *
* PROTOTYPES
* ========================================================================= */
typedef struct
{
const char *max_brightness;
const char *brightness;
const char *blink;
} led_paths_f5121_t;
typedef struct
{
sysfsval_t *cached_max_brightness;
sysfsval_t *cached_brightness;
sysfsval_t *cached_blink;
int control_value;
bool control_blink;
} led_channel_f5121_t;
/* ------------------------------------------------------------------------- *
* ONE_CHANNEL
* ------------------------------------------------------------------------- */
static void led_channel_f5121_init (led_channel_f5121_t *self);
static void led_channel_f5121_close (led_channel_f5121_t *self);
static bool led_channel_f5121_probe (led_channel_f5121_t *self, const led_paths_f5121_t *path);
static void led_channel_f5121_set_value (led_channel_f5121_t *self, int value);
static void led_channel_f5121_set_blink (led_channel_f5121_t *self, int on_ms, int off_ms);
/* ------------------------------------------------------------------------- *
* ALL_CHANNELS
* ------------------------------------------------------------------------- */
static void led_control_f5121_blink_cb (void *data, int on_ms, int off_ms);
static void led_control_f5121_value_cb (void *data, int r, int g, int b);
static void led_control_f5121_close_cb (void *data);
bool led_control_f5121_probe (led_control_t *self);
/* ========================================================================= *
* ONE_CHANNEL
* ========================================================================= */
static void
led_channel_f5121_init(led_channel_f5121_t *self)
{
self->cached_max_brightness = sysfsval_create();
self->cached_brightness = sysfsval_create();
self->cached_blink = sysfsval_create();
self->control_blink = false;
self->control_value = 0;
}
static void
led_channel_f5121_close(led_channel_f5121_t *self)
{
sysfsval_delete(self->cached_max_brightness),
self->cached_max_brightness = 0;
sysfsval_delete(self->cached_brightness),
self->cached_brightness = 0;
sysfsval_delete(self->cached_blink),
self->cached_blink = 0;
}
static bool
led_channel_f5121_probe(led_channel_f5121_t *self,
const led_paths_f5121_t *path)
{
bool ack = false;
/* Probe control files in reverse existance likelihood order.
* Practically all led control directories have 'brightness'
* file, most have 'max_brightness' while only some have 'blink'.
*/
if( !sysfsval_open_rw(self->cached_blink, path->blink) )
goto cleanup;
if( !sysfsval_open_ro(self->cached_max_brightness, path->max_brightness) )
goto cleanup;
/* The 'max_brightness' seems to be dynamic. Make an attempt
* to set it to an artificially high value and assume that kernel
* side will cap the value to the true maximum... */
#if 0 // TODO: make a QUIRK out of this
sysfsval_set(self->cached_max_brightness, 255);
#endif
sysfsval_refresh(self->cached_max_brightness);
if( sysfsval_get(self->cached_max_brightness) <= 0 )
goto cleanup;
if( !sysfsval_open_rw(self->cached_brightness, path->brightness) )
goto cleanup;
ack = true;
cleanup:
/* Always close the max_brightness file */
sysfsval_close(self->cached_max_brightness);
/* On failure close the other files too */
if( !ack ) {
sysfsval_close(self->cached_brightness);
sysfsval_close(self->cached_blink);
}
return ack;
}
static void
led_channel_f5121_set_value(led_channel_f5121_t *self,
int value)
{
value = led_util_scale_value(value,
sysfsval_get(self->cached_max_brightness));
/* Ignore blinking requests while brightness is zero. */
if( value <= 0 )
self->control_blink = false;
/* Logically it probably should be that:
* - writing blink=1 implies brightness=255
* - writing blink=0 implies brightness=0
* - writing brightness=n implies blink=0
*
* However it seems swithing between blinking and non-blinking
* modes can cause hiccups that vary from one device to another
* (stale sysfs values left behind, led stays off when it should
* be lit, ...)
*
* So the logic is arranged that before switching from static
* color to blinking, a brightness=0 is done before writing
* blink=0, and when swithing from blinking to static color, a
* blink=0 is done before writing brightness=0.
*
* Note that upper level state machine logic + caching of the
* assumed sysfs values means that these transitions are done in
* 3 steps (cancel previous mode, reset to black, switch to new
* mode) with pproximately SYSFS_LED_KERNEL_DELAY ms in between
* the steps.
*/
if( self->control_blink ) {
sysfsval_set(self->cached_brightness, 0);
sysfsval_set(self->cached_blink, 1);
}
else {
sysfsval_set(self->cached_blink, 0);
sysfsval_set(self->cached_brightness, value);
}
return;
}
static void
led_channel_f5121_set_blink(led_channel_f5121_t *self,
int on_ms, int off_ms)
{
/* The state machine at upper level adjusts blink setting first
* followed by brighthess setting - in f5121 modifying one will
* affect the other too and must thus be handled at the same
* time -> just cache the requested state. */
self->control_blink = (on_ms && off_ms);
}
/* ========================================================================= *
* ALL_CHANNELS
* ========================================================================= */
#define F5121_CHANNELS 3
static void
led_control_f5121_blink_cb(void *data, int on_ms, int off_ms)
{
led_channel_f5121_t *channel = data;
led_channel_f5121_set_blink(channel + 0, on_ms, off_ms);
led_channel_f5121_set_blink(channel + 1, on_ms, off_ms);
led_channel_f5121_set_blink(channel + 2, on_ms, off_ms);
}
static void
led_control_f5121_value_cb(void *data, int r, int g, int b)
{
led_channel_f5121_t *channel = data;
led_channel_f5121_set_value(channel + 0, r);
led_channel_f5121_set_value(channel + 1, g);
led_channel_f5121_set_value(channel + 2, b);
}
static void
led_control_f5121_close_cb(void *data)
{
led_channel_f5121_t *channel = data;
led_channel_f5121_close(channel + 0);
led_channel_f5121_close(channel + 1);
led_channel_f5121_close(channel + 2);
}
static bool
led_control_f5121_static_probe(led_channel_f5121_t *channel)
{
/** Sysfs control paths for RGB leds */
static const led_paths_f5121_t f5121_paths[][F5121_CHANNELS] =
{
// f5121 (Sony Xperia X)
{
{
.max_brightness = "/sys/class/leds/led:rgb_red/max_brightness",
.brightness = "/sys/class/leds/led:rgb_red/brightness",
.blink = "/sys/class/leds/led:rgb_red/blink",
},
{
.max_brightness = "/sys/class/leds/led:rgb_green/max_brightness",
.brightness = "/sys/class/leds/led:rgb_green/brightness",
.blink = "/sys/class/leds/led:rgb_green/blink",
},
{
.max_brightness = "/sys/class/leds/led:rgb_blue/max_brightness",
.brightness = "/sys/class/leds/led:rgb_blue/brightness",
.blink = "/sys/class/leds/led:rgb_blue/blink",
},
},
{
{
.max_brightness = "/sys/class/leds/red/max_brightness",
.brightness = "/sys/class/leds/red/brightness",
.blink = "/sys/class/leds/red/blink",
},
{
.max_brightness = "/sys/class/leds/green/max_brightness",
.brightness = "/sys/class/leds/green/brightness",
.blink = "/sys/class/leds/green/blink",
},
{
.max_brightness = "/sys/class/leds/blue/max_brightness",
.brightness = "/sys/class/leds/blue/brightness",
.blink = "/sys/class/leds/blue/blink",
},
},
};
bool ack = false;
for( size_t i = 0; i < G_N_ELEMENTS(f5121_paths); ++i ) {
if( led_channel_f5121_probe(&channel[0], &f5121_paths[i][0]) &&
led_channel_f5121_probe(&channel[1], &f5121_paths[i][1]) &&
led_channel_f5121_probe(&channel[2], &f5121_paths[i][2]) ) {
ack = true;
break;
}
}
return ack;
}
static bool
led_control_f5121_dynamic_probe(led_channel_f5121_t *channel)
{
/* See inifiles/60-f5121.ini for example */
static const objconf_t f5121_conf[] =
{
OBJCONF_FILE(led_paths_f5121_t, brightness, Brightness),
OBJCONF_FILE(led_paths_f5121_t, max_brightness, MaxBrightness),
OBJCONF_FILE(led_paths_f5121_t, blink, Blink),
OBJCONF_STOP
};
static const char * const pfix[F5121_CHANNELS] =
{
"Red", "Green", "Blue"
};
bool ack = false;
led_paths_f5121_t paths[F5121_CHANNELS];
memset(paths, 0, sizeof paths);
for( size_t i = 0; i < F5121_CHANNELS; ++i )
objconf_init(f5121_conf, &paths[i]);
for( size_t i = 0; i < F5121_CHANNELS; ++i )
{
if( !objconf_parse(f5121_conf, &paths[i], pfix[i]) )
goto cleanup;
if( !led_channel_f5121_probe(channel+i, &paths[i]) )
goto cleanup;
}
ack = true;
cleanup:
for( size_t i = 0; i < F5121_CHANNELS; ++i )
objconf_quit(f5121_conf, &paths[i]);
return ack;
}
bool
led_control_f5121_probe(led_control_t *self)
{
static led_channel_f5121_t channel[F5121_CHANNELS];
bool ack = false;
led_channel_f5121_init(channel+0);
led_channel_f5121_init(channel+1);
led_channel_f5121_init(channel+2);
self->name = "f5121";
self->data = channel;
self->enable = 0;
self->blink = led_control_f5121_blink_cb;
self->value = led_control_f5121_value_cb;
self->close = led_control_f5121_close_cb;
/* Prefer to use the built-in soft-blinking */
self->can_breathe = false;
if( self->use_config )
ack = led_control_f5121_dynamic_probe(channel);
if( !ack )
ack = led_control_f5121_static_probe(channel);
if( !ack )
led_control_close(self);
return ack;
}