2019-05-29 07:17:59 -07:00
// SPDX-License-Identifier: GPL-2.0-only
2010-04-15 18:46:10 -03:00
/* ir-sony-decoder.c - handle Sony IR Pulse/Space protocol
*
* Copyright ( C ) 2010 by David Härdeman < david @ hardeman . nu >
*/
# include <linux/bitrev.h>
2011-07-03 14:03:12 -04:00
# include <linux/module.h>
2010-11-09 23:09:57 -03:00
# include "rc-core-priv.h"
2010-04-15 18:46:10 -03:00
2020-08-23 19:23:05 +02:00
# define SONY_UNIT 600 /* us */
2010-04-15 18:46:10 -03:00
# define SONY_HEADER_PULSE (4 * SONY_UNIT)
# define SONY_HEADER_SPACE (1 * SONY_UNIT)
# define SONY_BIT_0_PULSE (1 * SONY_UNIT)
# define SONY_BIT_1_PULSE (2 * SONY_UNIT)
# define SONY_BIT_SPACE (1 * SONY_UNIT)
# define SONY_TRAILER_SPACE (10 * SONY_UNIT) /* minimum */
enum sony_state {
STATE_INACTIVE ,
STATE_HEADER_SPACE ,
STATE_BIT_PULSE ,
STATE_BIT_SPACE ,
STATE_FINISHED ,
} ;
/**
* ir_sony_decode ( ) - Decode one Sony pulse or space
2010-10-29 16:08:23 -03:00
* @ dev : the struct rc_dev descriptor of the device
2010-04-15 18:46:10 -03:00
* @ ev : the struct ir_raw_event descriptor of the pulse / space
*
* This function returns - EINVAL if the pulse violates the state machine
*/
2010-10-29 16:08:23 -03:00
static int ir_sony_decode ( struct rc_dev * dev , struct ir_raw_event ev )
2010-04-15 18:46:10 -03:00
{
2010-10-29 16:08:23 -03:00
struct sony_dec * data = & dev - > raw - > sony ;
2017-08-07 16:20:58 -04:00
enum rc_proto protocol ;
2010-04-15 18:46:10 -03:00
u32 scancode ;
u8 device , subdevice , function ;
2010-10-16 19:56:28 -03:00
if ( ! is_timing_event ( ev ) ) {
2022-01-15 11:12:35 +01:00
if ( ev . overflow )
2010-10-16 19:56:28 -03:00
data - > state = STATE_INACTIVE ;
2010-04-15 18:46:10 -03:00
return 0 ;
}
if ( ! geq_margin ( ev . duration , SONY_UNIT , SONY_UNIT / 2 ) )
goto out ;
2018-02-12 07:20:52 -05:00
dev_dbg ( & dev - > dev , " Sony decode started at state %d (%uus %s) \n " ,
2020-08-23 19:23:05 +02:00
data - > state , ev . duration , TO_STR ( ev . pulse ) ) ;
2010-04-15 18:46:10 -03:00
switch ( data - > state ) {
case STATE_INACTIVE :
if ( ! ev . pulse )
break ;
if ( ! eq_margin ( ev . duration , SONY_HEADER_PULSE , SONY_UNIT / 2 ) )
break ;
data - > count = 0 ;
data - > state = STATE_HEADER_SPACE ;
return 0 ;
case STATE_HEADER_SPACE :
if ( ev . pulse )
break ;
if ( ! eq_margin ( ev . duration , SONY_HEADER_SPACE , SONY_UNIT / 2 ) )
break ;
data - > state = STATE_BIT_PULSE ;
return 0 ;
case STATE_BIT_PULSE :
if ( ! ev . pulse )
break ;
2010-06-13 17:29:36 -03:00
data - > bits < < = 1 ;
2010-04-15 18:46:10 -03:00
if ( eq_margin ( ev . duration , SONY_BIT_1_PULSE , SONY_UNIT / 2 ) )
2010-06-13 17:29:36 -03:00
data - > bits | = 1 ;
2010-04-15 18:46:10 -03:00
else if ( ! eq_margin ( ev . duration , SONY_BIT_0_PULSE , SONY_UNIT / 2 ) )
break ;
data - > count + + ;
data - > state = STATE_BIT_SPACE ;
return 0 ;
case STATE_BIT_SPACE :
if ( ev . pulse )
break ;
if ( ! geq_margin ( ev . duration , SONY_BIT_SPACE , SONY_UNIT / 2 ) )
break ;
decrease_duration ( & ev , SONY_BIT_SPACE ) ;
if ( ! geq_margin ( ev . duration , SONY_UNIT , SONY_UNIT / 2 ) ) {
data - > state = STATE_BIT_PULSE ;
return 0 ;
}
data - > state = STATE_FINISHED ;
2020-08-23 17:36:59 -05:00
fallthrough ;
2010-04-15 18:46:10 -03:00
case STATE_FINISHED :
if ( ev . pulse )
break ;
if ( ! geq_margin ( ev . duration , SONY_TRAILER_SPACE , SONY_UNIT / 2 ) )
break ;
switch ( data - > count ) {
case 12 :
2017-08-07 16:20:58 -04:00
if ( ! ( dev - > enabled_protocols & RC_PROTO_BIT_SONY12 ) )
2015-04-28 12:23:56 -03:00
goto finish_state_machine ;
2010-06-13 17:29:36 -03:00
device = bitrev8 ( ( data - > bits < < 3 ) & 0xF8 ) ;
2010-04-15 18:46:10 -03:00
subdevice = 0 ;
2010-06-13 17:29:36 -03:00
function = bitrev8 ( ( data - > bits > > 4 ) & 0xFE ) ;
2017-08-07 16:20:58 -04:00
protocol = RC_PROTO_SONY12 ;
2010-04-15 18:46:10 -03:00
break ;
case 15 :
2017-08-07 16:20:58 -04:00
if ( ! ( dev - > enabled_protocols & RC_PROTO_BIT_SONY15 ) )
2015-04-28 12:23:56 -03:00
goto finish_state_machine ;
2010-06-13 17:29:36 -03:00
device = bitrev8 ( ( data - > bits > > 0 ) & 0xFF ) ;
2010-04-15 18:46:10 -03:00
subdevice = 0 ;
2012-02-20 06:13:54 -03:00
function = bitrev8 ( ( data - > bits > > 7 ) & 0xFE ) ;
2017-08-07 16:20:58 -04:00
protocol = RC_PROTO_SONY15 ;
2010-04-15 18:46:10 -03:00
break ;
case 20 :
2017-08-07 16:20:58 -04:00
if ( ! ( dev - > enabled_protocols & RC_PROTO_BIT_SONY20 ) )
2015-04-28 12:23:56 -03:00
goto finish_state_machine ;
2010-06-13 17:29:36 -03:00
device = bitrev8 ( ( data - > bits > > 5 ) & 0xF8 ) ;
subdevice = bitrev8 ( ( data - > bits > > 0 ) & 0xFF ) ;
function = bitrev8 ( ( data - > bits > > 12 ) & 0xFE ) ;
2017-08-07 16:20:58 -04:00
protocol = RC_PROTO_SONY20 ;
2010-04-15 18:46:10 -03:00
break ;
default :
2018-02-12 07:20:52 -05:00
dev_dbg ( & dev - > dev , " Sony invalid bitcount %u \n " ,
data - > count ) ;
2010-04-15 18:46:10 -03:00
goto out ;
}
scancode = device < < 16 | subdevice < < 8 | function ;
2018-02-12 07:20:52 -05:00
dev_dbg ( & dev - > dev , " Sony(%u) scancode 0x%05x \n " , data - > count ,
scancode ) ;
2014-04-03 20:31:30 -03:00
rc_keydown ( dev , protocol , scancode , 0 ) ;
2015-04-28 12:23:56 -03:00
goto finish_state_machine ;
2010-04-15 18:46:10 -03:00
}
out :
2018-02-12 07:20:52 -05:00
dev_dbg ( & dev - > dev , " Sony decode failed at state %d (%uus %s) \n " ,
2020-08-23 19:23:05 +02:00
data - > state , ev . duration , TO_STR ( ev . pulse ) ) ;
2010-04-15 18:46:10 -03:00
data - > state = STATE_INACTIVE ;
return - EINVAL ;
2015-04-28 12:23:56 -03:00
finish_state_machine :
data - > state = STATE_INACTIVE ;
return 0 ;
2010-04-15 18:46:10 -03:00
}
2016-12-06 18:33:57 -02:00
static const struct ir_raw_timings_pl ir_sony_timings = {
. header_pulse = SONY_HEADER_PULSE ,
. bit_space = SONY_BIT_SPACE ,
. bit_pulse [ 0 ] = SONY_BIT_0_PULSE ,
. bit_pulse [ 1 ] = SONY_BIT_1_PULSE ,
. trailer_space = SONY_TRAILER_SPACE + SONY_BIT_SPACE ,
. msb_first = 0 ,
} ;
/**
* ir_sony_encode ( ) - Encode a scancode as a stream of raw events
*
* @ protocol : protocol to encode
* @ scancode : scancode to encode
* @ events : array of raw ir events to write into
* @ max : maximum size of @ events
*
* Returns : The number of events written .
* - ENOBUFS if there isn ' t enough space in the array to fit the
* encoding . In this case all @ max events will have been written .
*/
2017-08-07 16:20:58 -04:00
static int ir_sony_encode ( enum rc_proto protocol , u32 scancode ,
2016-12-06 18:33:57 -02:00
struct ir_raw_event * events , unsigned int max )
{
struct ir_raw_event * e = events ;
u32 raw , len ;
int ret ;
2017-08-07 16:20:58 -04:00
if ( protocol = = RC_PROTO_SONY12 ) {
2016-12-06 18:33:57 -02:00
raw = ( scancode & 0x7f ) | ( ( scancode & 0x1f0000 ) > > 9 ) ;
len = 12 ;
2017-08-07 16:20:58 -04:00
} else if ( protocol = = RC_PROTO_SONY15 ) {
2016-12-06 18:33:57 -02:00
raw = ( scancode & 0x7f ) | ( ( scancode & 0xff0000 ) > > 9 ) ;
len = 15 ;
} else {
raw = ( scancode & 0x7f ) | ( ( scancode & 0x1f0000 ) > > 9 ) |
( ( scancode & 0xff00 ) < < 4 ) ;
len = 20 ;
}
ret = ir_raw_gen_pl ( & e , max , & ir_sony_timings , len , raw ) ;
if ( ret < 0 )
return ret ;
return e - events ;
}
2010-04-15 18:46:10 -03:00
static struct ir_raw_handler sony_handler = {
2017-08-07 16:20:58 -04:00
. protocols = RC_PROTO_BIT_SONY12 | RC_PROTO_BIT_SONY15 |
RC_PROTO_BIT_SONY20 ,
2010-04-15 18:46:10 -03:00
. decode = ir_sony_decode ,
2016-12-06 18:33:57 -02:00
. encode = ir_sony_encode ,
2017-02-25 06:51:30 -05:00
. carrier = 40000 ,
2018-03-23 16:47:37 -04:00
. min_timeout = SONY_TRAILER_SPACE ,
2010-04-15 18:46:10 -03:00
} ;
static int __init ir_sony_decode_init ( void )
{
ir_raw_handler_register ( & sony_handler ) ;
printk ( KERN_INFO " IR Sony protocol handler initialized \n " ) ;
return 0 ;
}
static void __exit ir_sony_decode_exit ( void )
{
ir_raw_handler_unregister ( & sony_handler ) ;
}
module_init ( ir_sony_decode_init ) ;
module_exit ( ir_sony_decode_exit ) ;
MODULE_LICENSE ( " GPL " ) ;
MODULE_AUTHOR ( " David Härdeman <david@hardeman.nu> " ) ;
MODULE_DESCRIPTION ( " Sony IR protocol decoder " ) ;