1 /* ir-nec-decoder.c - handle NEC IR Pulse/Space protocol
3 * Copyright (C) 2010 by Mauro Carvalho Chehab
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation version 2 of the License.
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
15 #include <linux/bitrev.h>
16 #include <linux/module.h>
17 #include "rc-core-priv.h"
20 #define NEC_UNIT 562500 /* ns */
21 #define NEC_HEADER_PULSE (16 * NEC_UNIT)
22 #define NECX_HEADER_PULSE (8 * NEC_UNIT) /* Less common NEC variant */
23 #define NEC_HEADER_SPACE (8 * NEC_UNIT)
24 #define NEC_REPEAT_SPACE (4 * NEC_UNIT)
25 #define NEC_BIT_PULSE (1 * NEC_UNIT)
26 #define NEC_BIT_0_SPACE (1 * NEC_UNIT)
27 #define NEC_BIT_1_SPACE (3 * NEC_UNIT)
28 #define NEC_TRAILER_PULSE (1 * NEC_UNIT)
29 #define NEC_TRAILER_SPACE (10 * NEC_UNIT) /* even longer in reality */
30 #define NECX_REPEAT_BITS 1
42 * ir_nec_decode() - Decode one NEC pulse or space
43 * @dev: the struct rc_dev descriptor of the device
44 * @duration: the struct ir_raw_event descriptor of the pulse/space
46 * This function returns -EINVAL if the pulse violates the state machine
48 static int ir_nec_decode(struct rc_dev
*dev
, struct ir_raw_event ev
)
50 struct nec_dec
*data
= &dev
->raw
->nec
;
53 u8 address
, not_address
, command
, not_command
;
54 bool send_32bits
= false;
56 if (!is_timing_event(ev
)) {
58 data
->state
= STATE_INACTIVE
;
62 IR_dprintk(2, "NEC decode started at state %d (%uus %s)\n",
63 data
->state
, TO_US(ev
.duration
), TO_STR(ev
.pulse
));
65 switch (data
->state
) {
71 if (eq_margin(ev
.duration
, NEC_HEADER_PULSE
, NEC_UNIT
* 2)) {
72 data
->is_nec_x
= false;
73 data
->necx_repeat
= false;
74 } else if (eq_margin(ev
.duration
, NECX_HEADER_PULSE
, NEC_UNIT
/ 2))
75 data
->is_nec_x
= true;
80 data
->state
= STATE_HEADER_SPACE
;
83 case STATE_HEADER_SPACE
:
87 if (eq_margin(ev
.duration
, NEC_HEADER_SPACE
, NEC_UNIT
)) {
88 data
->state
= STATE_BIT_PULSE
;
90 } else if (eq_margin(ev
.duration
, NEC_REPEAT_SPACE
, NEC_UNIT
/ 2)) {
91 if (!dev
->keypressed
) {
92 IR_dprintk(1, "Discarding last key repeat: event after key up\n");
95 IR_dprintk(1, "Repeat last key\n");
96 data
->state
= STATE_TRAILER_PULSE
;
103 case STATE_BIT_PULSE
:
107 if (!eq_margin(ev
.duration
, NEC_BIT_PULSE
, NEC_UNIT
/ 2))
110 data
->state
= STATE_BIT_SPACE
;
113 case STATE_BIT_SPACE
:
117 if (data
->necx_repeat
&& data
->count
== NECX_REPEAT_BITS
&&
118 geq_margin(ev
.duration
,
119 NEC_TRAILER_SPACE
, NEC_UNIT
/ 2)) {
120 IR_dprintk(1, "Repeat last key\n");
122 data
->state
= STATE_INACTIVE
;
125 } else if (data
->count
> NECX_REPEAT_BITS
)
126 data
->necx_repeat
= false;
129 if (eq_margin(ev
.duration
, NEC_BIT_1_SPACE
, NEC_UNIT
/ 2))
131 else if (!eq_margin(ev
.duration
, NEC_BIT_0_SPACE
, NEC_UNIT
/ 2))
135 if (data
->count
== NEC_NBITS
)
136 data
->state
= STATE_TRAILER_PULSE
;
138 data
->state
= STATE_BIT_PULSE
;
142 case STATE_TRAILER_PULSE
:
146 if (!eq_margin(ev
.duration
, NEC_TRAILER_PULSE
, NEC_UNIT
/ 2))
149 data
->state
= STATE_TRAILER_SPACE
;
152 case STATE_TRAILER_SPACE
:
156 if (!geq_margin(ev
.duration
, NEC_TRAILER_SPACE
, NEC_UNIT
/ 2))
159 address
= bitrev8((data
->bits
>> 24) & 0xff);
160 not_address
= bitrev8((data
->bits
>> 16) & 0xff);
161 command
= bitrev8((data
->bits
>> 8) & 0xff);
162 not_command
= bitrev8((data
->bits
>> 0) & 0xff);
164 if ((command
^ not_command
) != 0xff) {
165 IR_dprintk(1, "NEC checksum error: received 0x%08x\n",
171 /* NEC transport, but modified protocol, used by at
172 * least Apple and TiVo remotes */
173 scancode
= data
->bits
;
174 IR_dprintk(1, "NEC (modified) scancode 0x%08x\n", scancode
);
175 rc_type
= RC_TYPE_NEC32
;
176 } else if ((address
^ not_address
) != 0xff) {
178 scancode
= address
<< 16 |
181 IR_dprintk(1, "NEC (Ext) scancode 0x%06x\n", scancode
);
182 rc_type
= RC_TYPE_NECX
;
185 scancode
= address
<< 8 | command
;
186 IR_dprintk(1, "NEC scancode 0x%04x\n", scancode
);
187 rc_type
= RC_TYPE_NEC
;
191 data
->necx_repeat
= true;
193 rc_keydown(dev
, rc_type
, scancode
, 0);
194 data
->state
= STATE_INACTIVE
;
198 IR_dprintk(1, "NEC decode failed at count %d state %d (%uus %s)\n",
199 data
->count
, data
->state
, TO_US(ev
.duration
), TO_STR(ev
.pulse
));
200 data
->state
= STATE_INACTIVE
;
204 static struct ir_raw_handler nec_handler
= {
205 .protocols
= RC_BIT_NEC
| RC_BIT_NECX
| RC_BIT_NEC32
,
206 .decode
= ir_nec_decode
,
209 static int __init
ir_nec_decode_init(void)
211 ir_raw_handler_register(&nec_handler
);
213 printk(KERN_INFO
"IR NEC protocol handler initialized\n");
217 static void __exit
ir_nec_decode_exit(void)
219 ir_raw_handler_unregister(&nec_handler
);
222 module_init(ir_nec_decode_init
);
223 module_exit(ir_nec_decode_exit
);
225 MODULE_LICENSE("GPL");
226 MODULE_AUTHOR("Mauro Carvalho Chehab");
227 MODULE_AUTHOR("Red Hat Inc. (http://www.redhat.com)");
228 MODULE_DESCRIPTION("NEC IR protocol decoder");