95194f61ecfb8f6ed0eb53924faa212513477b6b
[deb_libcec.git] / include / cectypes.h
1 #pragma once
2 /*
3 * This file is part of the libCEC(R) library.
4 *
5 * libCEC(R) is Copyright (C) 2011-2013 Pulse-Eight Limited. All rights reserved.
6 * libCEC(R) is an original work, containing original code.
7 *
8 * libCEC(R) is a trademark of Pulse-Eight Limited.
9 *
10 * This program is dual-licensed; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
23 *
24 *
25 * Alternatively, you can license this library under a commercial license,
26 * please contact Pulse-Eight Licensing for more information.
27 *
28 * For more information contact:
29 * Pulse-Eight Licensing <license@pulse-eight.com>
30 * http://www.pulse-eight.com/
31 * http://www.pulse-eight.net/
32 */
33
34 #ifndef CECTYPES_H_
35 #define CECTYPES_H_
36
37 #include <stdint.h>
38 #include <string.h>
39
40 #if defined(_WIN32) || defined(_WIN64)
41 #define CEC_CDECL __cdecl
42 #else
43 #define CEC_CDECL
44 #endif
45
46 #if !defined(DECLSPEC)
47 #if defined(_WIN32) || defined(_WIN64)
48 #include <windows.h>
49 #if defined DLL_EXPORT
50 #define DECLSPEC __declspec(dllexport)
51 #else
52 #define DECLSPEC __declspec(dllimport)
53 #endif
54 #else
55 #define DECLSPEC
56 #endif
57 #endif
58
59 #ifdef __cplusplus
60 extern "C" {
61 namespace CEC {
62 #endif
63
64 /*!
65 * default physical address 1.0.0.0, HDMI port 1
66 */
67 #define CEC_DEFAULT_PHYSICAL_ADDRESS 0x1000
68 /*!
69 * default HDMI port to which the adapter is connected, port 1
70 */
71 #define CEC_DEFAULT_HDMI_PORT 1
72 /*!
73 * default logical address of the device to which the adapter is connected, TV
74 */
75 #define CEC_DEFAULT_BASE_DEVICE 0
76
77 /*!
78 * timeout in milliseconds to send a key release event after receiving a key press
79 */
80 #define CEC_BUTTON_TIMEOUT 500
81
82 /*!
83 * don't send the same key twice within this timeout in milliseconds
84 */
85 #define CEC_DOUBLE_TAP_TIMEOUT_MS 250
86
87 /*!
88 * don't query the power state for the same device within this timeout in milliseconds
89 */
90 #define CEC_POWER_STATE_REFRESH_TIME 30000
91
92 /*!
93 * unknown firmware version value
94 */
95 #define CEC_FW_VERSION_UNKNOWN 0xFFFF
96
97 /*!
98 * unknown build date value
99 */
100 #define CEC_FW_BUILD_UNKNOWN 0
101
102 /*!
103 * maximum number of retries when opening a connection
104 */
105 #define CEC_CONNECT_TRIES 3
106
107 /*!
108 * physical address of the TV
109 */
110 #define CEC_PHYSICAL_ADDRESS_TV 0
111
112 /*!
113 * minimum physical address for the adapter
114 */
115 #define CEC_MIN_PHYSICAL_ADDRESS 0x1000
116
117 /*!
118 * maximum physical address for the adapter
119 */
120 #define CEC_MAX_PHYSICAL_ADDRESS 0xFFFE
121
122 /*!
123 * invalid physical address value
124 */
125 #define CEC_INVALID_PHYSICAL_ADDRESS 0xFFFF
126
127 /*!
128 * minimum vendor ID value
129 */
130 #define CEC_MIN_VENDORID 1
131
132 /*!
133 * maximum vendor ID value
134 */
135 #define CEC_MAX_VENDORID 0xFFFFFE
136
137 /*!
138 * invalid vendor ID value
139 */
140 #define CEC_INVALID_VENDORID 0xFFFFFF
141
142 /*!
143 * minimum HDMI port number value
144 */
145 #define CEC_MIN_HDMI_PORTNUMBER 1
146
147 /*!
148 * maximum HDMI port number value
149 */
150 #define CEC_MAX_HDMI_PORTNUMBER 15
151
152 /*!
153 * invalid HDMI port number value
154 */
155 #define CEC_HDMI_PORTNUMBER_NONE 0
156
157 /*!
158 * default value for settings "use tv menu language"
159 */
160 #define CEC_DEFAULT_SETTING_USE_TV_MENU_LANGUAGE 1
161
162 /*!
163 * default value for settings "activate source"
164 */
165 #define CEC_DEFAULT_SETTING_ACTIVATE_SOURCE 1
166
167 /*!
168 * default value for settings "power off on shutdown"
169 */
170 #define CEC_DEFAULT_SETTING_POWER_OFF_SHUTDOWN 1
171
172 /*!
173 * default value for settings "power off when activating the screensaver"
174 */
175 #define CEC_DEFAULT_SETTING_POWER_OFF_SCREENSAVER 1
176
177 /*!
178 * default value for settings "wake up when deactivating the screensaver"
179 */
180 #define CEC_DEFAULT_SETTING_POWER_ON_SCREENSAVER 1
181
182 /*!
183 * default value for settings "power off on standby"
184 */
185 #define CEC_DEFAULT_SETTING_POWER_OFF_ON_STANDBY 1
186
187 /*!
188 * default value for settings "shutdown on standby"
189 */
190 #define CEC_DEFAULT_SETTING_SHUTDOWN_ON_STANDBY 0
191
192 /*!
193 * default value for settings "send inactive source when stopping"
194 */
195 #define CEC_DEFAULT_SETTING_SEND_INACTIVE_SOURCE 1
196
197 /*!
198 * default value for settings "power off devices when going to standby"
199 */
200 #define CEC_DEFAULT_SETTING_POWER_OFF_DEVICES_STANDBY 1
201
202 /*!
203 * default value for settings "device menu language"
204 */
205 #define CEC_DEFAULT_DEVICE_LANGUAGE "eng"
206
207 /*!
208 * default value for settings "autodetect physical address"
209 */
210 #define CEC_DEFAULT_SETTING_AUTODETECT_ADDRESS 0
211
212 /*!
213 * default value for settings "get settings from ROM"
214 */
215 #define CEC_DEFAULT_SETTING_GET_SETTINGS_FROM_ROM 0
216
217 /*!
218 * default value for settings "libCEC CEC version"
219 */
220 #define CEC_DEFAULT_SETTING_CEC_VERSION 0x05
221
222 /*!
223 * wait this amount of milliseconds before retrying to send a failed message
224 */
225 #define CEC_DEFAULT_TRANSMIT_RETRY_WAIT 500
226
227 /*!
228 * transmission fails when not acked within this amount of milliseconds after sending the initial packet
229 */
230 #define CEC_DEFAULT_TRANSMIT_TIMEOUT 1000
231
232 /*!
233 * wait this amount of milliseconds for an ack
234 */
235 #define CEC_DEFAULT_TRANSMIT_WAIT 1000
236
237 /*!
238 * default number of retries
239 */
240 #define CEC_DEFAULT_TRANSMIT_RETRIES 1
241
242 /*!
243 * default connection timeout in milliseconds
244 */
245 #define CEC_DEFAULT_CONNECT_TIMEOUT 10000
246
247 /*!
248 * wait this amount of milliseconds before retrying when failing to connect
249 */
250 #define CEC_DEFAULT_CONNECT_RETRY_WAIT 1000
251
252 /*!
253 * default serial baudrate
254 */
255 #define CEC_SERIAL_DEFAULT_BAUDRATE 38400
256
257 /*!
258 * maximum time to wait when clearing input
259 */
260 #define CEC_CLEAR_INPUT_DEFAULT_WAIT 1000
261
262 /*!
263 * wait this amount of milliseconds before retrying when libCEC failed to make itself the active source
264 */
265 #define CEC_ACTIVE_SOURCE_SWITCH_RETRY_TIME_MS 1000
266
267 /*!
268 * don't forward any power off command to the client application for this amount of milliseconds after sending a power off command
269 */
270 #define CEC_FORWARD_STANDBY_MIN_INTERVAL 10000
271
272 /*!
273 * default timeout in milliseconds for combo keys
274 */
275 #define CEC_DEFAULT_COMBO_TIMEOUT_MS 1000
276
277 /*!
278 * the virtual device path to use for the Raspberry Pi's CEC wire
279 */
280 #define CEC_RPI_VIRTUAL_PATH "Raspberry Pi"
281
282 /*!
283 * the name of the virtual COM port to use for the Raspberry Pi's CEC wire
284 */
285 #define CEC_RPI_VIRTUAL_COM "RPI"
286
287 /*!
288 * the path to use for the TDA995x's CEC wire
289 */
290 #define CEC_TDA995x_PATH "/dev/hdmicec"
291
292 /*!
293 * the name of the virtual COM port to use for the TDA995x's CEC wire
294 */
295 #define CEC_TDA995x_VIRTUAL_COM "CuBox"
296
297 /*!
298 * Mimimum client version
299 */
300 #define CEC_MIN_LIB_VERSION 2
301
302 /*!
303 * libCEC's major version number
304 */
305 #define CEC_LIB_VERSION_MAJOR 2
306
307 /*!
308 * libCEC's major version number as string
309 */
310 #define CEC_LIB_VERSION_MAJOR_STR "2"
311
312 /*!
313 * libCEC's minor version number
314 */
315 #define CEC_LIB_VERSION_MINOR 1
316
317 #define MSGSTART 0xFF
318 #define MSGEND 0xFE
319 #define MSGESC 0xFD
320 #define ESCOFFSET 3
321
322 // defines to make compile time checks for certain features easy
323 #define CEC_FEATURE_CONFIGURABLE_COMBO_KEY 1
324
325 typedef enum cec_abort_reason
326 {
327 CEC_ABORT_REASON_UNRECOGNIZED_OPCODE = 0,//!< CEC_ABORT_REASON_UNRECOGNIZED_OPCODE
328 CEC_ABORT_REASON_NOT_IN_CORRECT_MODE_TO_RESPOND = 1,//!< CEC_ABORT_REASON_NOT_IN_CORRECT_MODE_TO_RESPOND
329 CEC_ABORT_REASON_CANNOT_PROVIDE_SOURCE = 2,//!< CEC_ABORT_REASON_CANNOT_PROVIDE_SOURCE
330 CEC_ABORT_REASON_INVALID_OPERAND = 3,//!< CEC_ABORT_REASON_INVALID_OPERAND
331 CEC_ABORT_REASON_REFUSED = 4 //!< CEC_ABORT_REASON_REFUSED
332 } cec_abort_reason;
333
334 typedef enum cec_analogue_broadcast_type
335 {
336 CEC_ANALOGUE_BROADCAST_TYPE_CABLE = 0x00,
337 CEC_ANALOGUE_BROADCAST_TYPE_SATELLITE = 0x01,
338 CEC_ANALOGUE_BROADCAST_TYPE_TERRESTIAL = 0x02
339 } cec_analogue_broadcast_type;
340
341 typedef enum cec_audio_rate
342 {
343 CEC_AUDIO_RATE_RATE_CONTROL_OFF = 0,
344 CEC_AUDIO_RATE_STANDARD_RATE_100 = 1,
345 CEC_AUDIO_RATE_FAST_RATE_MAX_101 = 2,
346 CEC_AUDIO_RATE_SLOW_RATE_MIN_99 = 3,
347 CEC_AUDIO_RATE_STANDARD_RATE_100_0 = 4,
348 CEC_AUDIO_RATE_FAST_RATE_MAX_100_1 = 5,
349 CEC_AUDIO_RATE_SLOW_RATE_MIN_99_9 = 6
350 } cec_audio_rate;
351
352 typedef enum cec_audio_status
353 {
354 CEC_AUDIO_MUTE_STATUS_MASK = 0x80,
355 CEC_AUDIO_VOLUME_STATUS_MASK = 0x7F,
356 CEC_AUDIO_VOLUME_MIN = 0x00,
357 CEC_AUDIO_VOLUME_MAX = 0x64,
358 CEC_AUDIO_VOLUME_STATUS_UNKNOWN = 0x7F
359 } cec_audio_status;
360
361 typedef enum cec_boolean
362 {
363 CEC_FALSE = 0,
364 CEC_TRUE = 1
365 } cec_boolean;
366
367 typedef enum cec_version
368 {
369 CEC_VERSION_UNKNOWN = 0x00,
370 CEC_VERSION_1_2 = 0x01,
371 CEC_VERSION_1_2A = 0x02,
372 CEC_VERSION_1_3 = 0x03,
373 CEC_VERSION_1_3A = 0x04,
374 CEC_VERSION_1_4 = 0x05
375 } cec_version;
376
377 typedef enum cec_channel_identifier
378 {
379 CEC_CHANNEL_NUMBER_FORMAT_MASK = 0xFC000000,
380 CEC_1_PART_CHANNEL_NUMBER = 0x04000000,
381 CEC_2_PART_CHANNEL_NUMBER = 0x08000000,
382 CEC_MAJOR_CHANNEL_NUMBER_MASK = 0x3FF0000,
383 CEC_MINOR_CHANNEL_NUMBER_MASK = 0xFFFF
384 } cec_channel_identifier;
385
386 typedef enum cec_deck_control_mode
387 {
388 CEC_DECK_CONTROL_MODE_SKIP_FORWARD_WIND = 1,
389 CEC_DECK_CONTROL_MODE_SKIP_REVERSE_REWIND = 2,
390 CEC_DECK_CONTROL_MODE_STOP = 3,
391 CEC_DECK_CONTROL_MODE_EJECT = 4
392 } cec_deck_control_mode;
393
394 typedef enum cec_deck_info
395 {
396 CEC_DECK_INFO_PLAY = 0x11,
397 CEC_DECK_INFO_RECORD = 0x12,
398 CEC_DECK_INFO_PLAY_REVERSE = 0x13,
399 CEC_DECK_INFO_STILL = 0x14,
400 CEC_DECK_INFO_SLOW = 0x15,
401 CEC_DECK_INFO_SLOW_REVERSE = 0x16,
402 CEC_DECK_INFO_FAST_FORWARD = 0x17,
403 CEC_DECK_INFO_FAST_REVERSE = 0x18,
404 CEC_DECK_INFO_NO_MEDIA = 0x19,
405 CEC_DECK_INFO_STOP = 0x1A,
406 CEC_DECK_INFO_SKIP_FORWARD_WIND = 0x1B,
407 CEC_DECK_INFO_SKIP_REVERSE_REWIND = 0x1C,
408 CEC_DECK_INFO_INDEX_SEARCH_FORWARD = 0x1D,
409 CEC_DECK_INFO_INDEX_SEARCH_REVERSE = 0x1E,
410 CEC_DECK_INFO_OTHER_STATUS = 0x1F,
411 CEC_DECK_INFO_OTHER_STATUS_LG = 0x20
412 } cec_deck_info;
413
414 typedef enum cec_device_type
415 {
416 CEC_DEVICE_TYPE_TV = 0,
417 CEC_DEVICE_TYPE_RECORDING_DEVICE = 1,
418 CEC_DEVICE_TYPE_RESERVED = 2,
419 CEC_DEVICE_TYPE_TUNER = 3,
420 CEC_DEVICE_TYPE_PLAYBACK_DEVICE = 4,
421 CEC_DEVICE_TYPE_AUDIO_SYSTEM = 5
422 } cec_device_type;
423
424 typedef enum cec_display_control
425 {
426 CEC_DISPLAY_CONTROL_DISPLAY_FOR_DEFAULT_TIME = 0x00,
427 CEC_DISPLAY_CONTROL_DISPLAY_UNTIL_CLEARED = 0x40,
428 CEC_DISPLAY_CONTROL_CLEAR_PREVIOUS_MESSAGE = 0x80,
429 CEC_DISPLAY_CONTROL_RESERVED_FOR_FUTURE_USE = 0xC0
430 } cec_display_control;
431
432 typedef enum cec_external_source_specifier
433 {
434 CEC_EXTERNAL_SOURCE_SPECIFIER_EXTERNAL_PLUG = 4,
435 CEC_EXTERNAL_SOURCE_SPECIFIER_EXTERNAL_PHYSICAL_ADDRESS = 5
436 } cec_external_source_specifier;
437
438 typedef enum cec_menu_request_type
439 {
440 CEC_MENU_REQUEST_TYPE_ACTIVATE = 0,
441 CEC_MENU_REQUEST_TYPE_DEACTIVATE = 1,
442 CEC_MENU_REQUEST_TYPE_QUERY = 2
443 } cec_menu_request_type;
444
445 typedef enum cec_menu_state
446 {
447 CEC_MENU_STATE_ACTIVATED = 0,
448 CEC_MENU_STATE_DEACTIVATED = 1
449 } cec_menu_state;
450
451 typedef enum cec_play_mode
452 {
453 CEC_PLAY_MODE_PLAY_FORWARD = 0x24,
454 CEC_PLAY_MODE_PLAY_REVERSE = 0x20,
455 CEC_PLAY_MODE_PLAY_STILL = 0x25,
456 CEC_PLAY_MODE_FAST_FORWARD_MIN_SPEED = 0x05,
457 CEC_PLAY_MODE_FAST_FORWARD_MEDIUM_SPEED = 0x06,
458 CEC_PLAY_MODE_FAST_FORWARD_MAX_SPEED = 0x07,
459 CEC_PLAY_MODE_FAST_REVERSE_MIN_SPEED = 0x09,
460 CEC_PLAY_MODE_FAST_REVERSE_MEDIUM_SPEED = 0x0A,
461 CEC_PLAY_MODE_FAST_REVERSE_MAX_SPEED = 0x0B,
462 CEC_PLAY_MODE_SLOW_FORWARD_MIN_SPEED = 0x15,
463 CEC_PLAY_MODE_SLOW_FORWARD_MEDIUM_SPEED = 0x16,
464 CEC_PLAY_MODE_SLOW_FORWARD_MAX_SPEED = 0x17,
465 CEC_PLAY_MODE_SLOW_REVERSE_MIN_SPEED = 0x19,
466 CEC_PLAY_MODE_SLOW_REVERSE_MEDIUM_SPEED = 0x1A,
467 CEC_PLAY_MODE_SLOW_REVERSE_MAX_SPEED = 0x1B
468 } cec_play_mode;
469
470 typedef enum cec_power_status
471 {
472 CEC_POWER_STATUS_ON = 0x00,
473 CEC_POWER_STATUS_STANDBY = 0x01,
474 CEC_POWER_STATUS_IN_TRANSITION_STANDBY_TO_ON = 0x02,
475 CEC_POWER_STATUS_IN_TRANSITION_ON_TO_STANDBY = 0x03,
476 CEC_POWER_STATUS_UNKNOWN = 0x99
477 } cec_power_status;
478
479 typedef enum cec_record_source_type
480 {
481 CEC_RECORD_SOURCE_TYPE_OWN_SOURCE = 1,
482 CEC_RECORD_SOURCE_TYPE_DIGITAL_SERVICE = 2,
483 CEC_RECORD_SOURCE_TYPE_ANALOGUE_SERVICE = 3,
484 CEC_RECORD_SOURCE_TYPE_EXTERNAL_PLUS = 4,
485 CEC_RECORD_SOURCE_TYPE_EXTERNAL_PHYSICAL_ADDRESS = 5
486 } cec_record_source_type;
487
488 typedef enum cec_record_status_info
489 {
490 CEC_RECORD_STATUS_INFO_RECORDING_CURRENTLY_SELECTED_SOURCE = 0x01,
491 CEC_RECORD_STATUS_INFO_RECORDING_DIGITAL_SERVICE = 0x02,
492 CEC_RECORD_STATUS_INFO_RECORDING_ANALOGUE_SERVICE = 0x03,
493 CEC_RECORD_STATUS_INFO_RECORDING_EXTERNAL_INPUT = 0x04,
494 CEC_RECORD_STATUS_INFO_NO_RECORDING_UNABLE_TO_RECORD_DIGITAL_SERVICE = 0x05,
495 CEC_RECORD_STATUS_INFO_NO_RECORDING_UNABLE_TO_RECORD_ANALOGUE_SERVICE = 0x06,
496 CEC_RECORD_STATUS_INFO_NO_RECORDING_UNABLE_TO_SELECT_REQUIRED_SERVICE = 0x07,
497 CEC_RECORD_STATUS_INFO_NO_RECORDING_INVALID_EXTERNAL_PLUG_NUMBER = 0x09,
498 CEC_RECORD_STATUS_INFO_NO_RECORDING_INVALID_EXTERNAL_ADDRESS = 0x0A,
499 CEC_RECORD_STATUS_INFO_NO_RECORDING_CA_SYSTEM_NOT_SUPPORTED = 0x0B,
500 CEC_RECORD_STATUS_INFO_NO_RECORDING_NO_OR_INSUFFICIENT_ENTITLEMENTS = 0x0C,
501 CEC_RECORD_STATUS_INFO_NO_RECORDING_NOT_ALLOWED_TO_COPY_SOURCE = 0x0D,
502 CEC_RECORD_STATUS_INFO_NO_RECORDING_NO_FURTHER_COPIES_ALLOWED = 0x0E,
503 CEC_RECORD_STATUS_INFO_NO_RECORDING_NO_MEDIA = 0x10,
504 CEC_RECORD_STATUS_INFO_NO_RECORDING_PLAYING = 0x11,
505 CEC_RECORD_STATUS_INFO_NO_RECORDING_ALREADY_RECORDING = 0x12,
506 CEC_RECORD_STATUS_INFO_NO_RECORDING_MEDIA_PROTECTED = 0x13,
507 CEC_RECORD_STATUS_INFO_NO_RECORDING_NO_SOURCE_SIGNAL = 0x14,
508 CEC_RECORD_STATUS_INFO_NO_RECORDING_MEDIA_PROBLEM = 0x15,
509 CEC_RECORD_STATUS_INFO_NO_RECORDING_NOT_ENOUGH_SPACE_AVAILABLE = 0x16,
510 CEC_RECORD_STATUS_INFO_NO_RECORDING_PARENTAL_LOCK_ON = 0x17,
511 CEC_RECORD_STATUS_INFO_RECORDING_TERMINATED_NORMALLY = 0x1A,
512 CEC_RECORD_STATUS_INFO_RECORDING_HAS_ALREADY_TERMINATED = 0x1B,
513 CEC_RECORD_STATUS_INFO_NO_RECORDING_OTHER_REASON = 0x1F
514 } cec_record_status_info;
515
516 typedef enum cec_recording_sequence
517 {
518 CEC_RECORDING_SEQUENCE_SUNDAY = 0x01,
519 CEC_RECORDING_SEQUENCE_MONDAY = 0x02,
520 CEC_RECORDING_SEQUENCE_TUESDAY = 0x04,
521 CEC_RECORDING_SEQUENCE_WEDNESDAY = 0x08,
522 CEC_RECORDING_SEQUENCE_THURSDAY = 0x10,
523 CEC_RECORDING_SEQUENCE_FRIDAY = 0x20,
524 CEC_RECORDING_SEQUENCE_SATURDAY = 0x40,
525 CEC_RECORDING_SEQUENCE_ONCE_ONLY = 0x00
526 } cec_recording_sequence;
527
528 typedef enum cec_status_request
529 {
530 CEC_STATUS_REQUEST_ON = 1,
531 CEC_STATUS_REQUEST_OFF = 2,
532 CEC_STATUS_REQUEST_ONCE = 3
533 } cec_status_request;
534
535 typedef enum cec_system_audio_status
536 {
537 CEC_SYSTEM_AUDIO_STATUS_OFF = 0,
538 CEC_SYSTEM_AUDIO_STATUS_ON = 1
539 } cec_system_audio_status;
540
541 typedef enum cec_timer_cleared_status_data
542 {
543 CEC_TIMER_CLEARED_STATUS_DATA_TIMER_NOT_CLEARED_RECORDING = 0x00,
544 CEC_TIMER_CLEARED_STATUS_DATA_TIMER_NOT_CLEARED_NO_MATCHING = 0x01,
545 CEC_TIMER_CLEARED_STATUS_DATA_TIMER_NOT_CLEARED_NO_INF0_AVAILABLE = 0x02,
546 CEC_TIMER_CLEARED_STATUS_DATA_TIMER_CLEARED = 0x80
547 } cec_timer_cleared_status_data;
548
549 typedef enum cec_timer_overlap_warning
550 {
551 CEC_TIMER_OVERLAP_WARNING_NO_OVERLAP = 0,
552 CEC_TIMER_OVERLAP_WARNING_TIMER_BLOCKS_OVERLAP = 1
553 } cec_timer_overlap_warning;
554
555 typedef enum cec_media_info
556 {
557 CEC_MEDIA_INFO_MEDIA_PRESENT_AND_NOT_PROTECTED = 0x00,
558 CEC_MEDIA_INFO_MEDIA_PRESENT_BUT_PROTECTED = 0x01,
559 CEC_MEDIA_INFO_MEDIA_NOT_PRESENT = 0x02,
560 CEC_MEDIA_INFO_FUTURE_USE = 0x03
561 } cec_media_info;
562
563 typedef enum cec_programmed_indicator
564 {
565 CEC_PROGRAMMED_INDICATOR_NOT_PROGRAMMED = 0,
566 CEC_PROGRAMMED_INDICATOR_PROGRAMMED = 1
567 } cec_programmed_indicator;
568
569 typedef enum cec_programmed_info
570 {
571 CEC_PROGRAMMED_INFO_FUTURE_USE = 0x0,
572 CEC_PROGRAMMED_INFO_ENOUGH_SPACE_AVAILABLE_FOR_RECORDING = 0x08,
573 CEC_PROGRAMMED_INFO_NOT_ENOUGH_SPACE_AVAILABLE_FOR_RECORDING = 0x09,
574 CEC_PROGRAMMED_INFO_MAY_NOT_BE_ENOUGH_SPACE_AVAILABLE = 0x0B,
575 CEC_PROGRAMMED_INFO_NO_MEDIA_INFO_AVAILABLE = 0x0A
576 } cec_programmed_info;
577
578 typedef enum cec_not_programmed_error_info
579 {
580 CEC_NOT_PROGRAMMED_ERROR_INFO_FUTURE_USE = 0x0,
581 CEC_NOT_PROGRAMMED_ERROR_INFO_NO_FREE_TIMER_AVAILABLE = 0x01,
582 CEC_NOT_PROGRAMMED_ERROR_INFO_DATE_OUT_OF_RANGE = 0x02,
583 CEC_NOT_PROGRAMMED_ERROR_INFO_RECORDING_SEQUENCE_ERROR = 0x03,
584 CEC_NOT_PROGRAMMED_ERROR_INFO_INVALID_EXTERNAL_PLUG_NUMBER = 0x04,
585 CEC_NOT_PROGRAMMED_ERROR_INFO_INVALID_EXTERNAL_PHYSICAL_ADDRESS = 0x05,
586 CEC_NOT_PROGRAMMED_ERROR_INFO_CA_SYSTEM_NOT_SUPPORTED = 0x06,
587 CEC_NOT_PROGRAMMED_ERROR_INFO_NO_OR_INSUFFICIENT_CA_ENTITLEMENTS = 0x07,
588 CEC_NOT_PROGRAMMED_ERROR_INFO_DOES_NOT_SUPPORT_RESOLUTION = 0x08,
589 CEC_NOT_PROGRAMMED_ERROR_INFO_PARENTAL_LOCK_ON = 0x09,
590 CEC_NOT_PROGRAMMED_ERROR_INFO_CLOCK_FAILURE = 0x0A,
591 CEC_NOT_PROGRAMMED_ERROR_INFO_RESERVED_FOR_FUTURE_USE_START = 0x0B,
592 CEC_NOT_PROGRAMMED_ERROR_INFO_RESERVED_FOR_FUTURE_USE_END = 0x0D,
593 CEC_NOT_PROGRAMMED_ERROR_INFO_DUPLICATE_ALREADY_PROGRAMMED = 0x0E
594 } cec_not_programmed_error_info;
595
596 typedef enum cec_recording_flag
597 {
598 CEC_RECORDING_FLAG_NOT_BEING_USED_FOR_RECORDING = 0,
599 CEC_RECORDING_FLAG_BEING_USED_FOR_RECORDING = 1
600 } cec_recording_flag;
601
602 typedef enum cec_tuner_display_info
603 {
604 CEC_TUNER_DISPLAY_INFO_DISPLAYING_DIGITAL_TUNER = 0,
605 CEC_TUNER_DISPLAY_INFO_NOT_DISPLAYING_TUNER = 1,
606 CEC_TUNER_DISPLAY_INFO_DISPLAYING_ANALOGUE_TUNER = 2
607 } cec_tuner_display_info;
608
609 typedef enum cec_broadcast_system
610 {
611 CEC_BROADCAST_SYSTEM_PAL_B_G = 0,
612 CEC_BROADCAST_SYSTEM_SECAM_L1 = 1,
613 CEC_BROADCAST_SYSTEM_PAL_M = 2,
614 CEC_BROADCAST_SYSTEM_NTSC_M = 3,
615 CEC_BROADCAST_SYSTEM_PAL_I = 4,
616 CEC_BROADCAST_SYSTEM_SECAM_DK = 5,
617 CEC_BROADCAST_SYSTEM_SECAM_B_G = 6,
618 CEC_BROADCAST_SYSTEM_SECAM_L2 = 7,
619 CEC_BROADCAST_SYSTEM_PAL_DK = 8,
620 CEC_BROADCAST_SYSTEM_OTHER_SYSTEM = 30
621 } cec_broadcast_system;
622
623 typedef enum cec_user_control_code
624 {
625 CEC_USER_CONTROL_CODE_SELECT = 0x00,
626 CEC_USER_CONTROL_CODE_UP = 0x01,
627 CEC_USER_CONTROL_CODE_DOWN = 0x02,
628 CEC_USER_CONTROL_CODE_LEFT = 0x03,
629 CEC_USER_CONTROL_CODE_RIGHT = 0x04,
630 CEC_USER_CONTROL_CODE_RIGHT_UP = 0x05,
631 CEC_USER_CONTROL_CODE_RIGHT_DOWN = 0x06,
632 CEC_USER_CONTROL_CODE_LEFT_UP = 0x07,
633 CEC_USER_CONTROL_CODE_LEFT_DOWN = 0x08,
634 CEC_USER_CONTROL_CODE_ROOT_MENU = 0x09,
635 CEC_USER_CONTROL_CODE_SETUP_MENU = 0x0A,
636 CEC_USER_CONTROL_CODE_CONTENTS_MENU = 0x0B,
637 CEC_USER_CONTROL_CODE_FAVORITE_MENU = 0x0C,
638 CEC_USER_CONTROL_CODE_EXIT = 0x0D,
639 CEC_USER_CONTROL_CODE_NUMBER0 = 0x20,
640 CEC_USER_CONTROL_CODE_NUMBER1 = 0x21,
641 CEC_USER_CONTROL_CODE_NUMBER2 = 0x22,
642 CEC_USER_CONTROL_CODE_NUMBER3 = 0x23,
643 CEC_USER_CONTROL_CODE_NUMBER4 = 0x24,
644 CEC_USER_CONTROL_CODE_NUMBER5 = 0x25,
645 CEC_USER_CONTROL_CODE_NUMBER6 = 0x26,
646 CEC_USER_CONTROL_CODE_NUMBER7 = 0x27,
647 CEC_USER_CONTROL_CODE_NUMBER8 = 0x28,
648 CEC_USER_CONTROL_CODE_NUMBER9 = 0x29,
649 CEC_USER_CONTROL_CODE_DOT = 0x2A,
650 CEC_USER_CONTROL_CODE_ENTER = 0x2B,
651 CEC_USER_CONTROL_CODE_CLEAR = 0x2C,
652 CEC_USER_CONTROL_CODE_NEXT_FAVORITE = 0x2F,
653 CEC_USER_CONTROL_CODE_CHANNEL_UP = 0x30,
654 CEC_USER_CONTROL_CODE_CHANNEL_DOWN = 0x31,
655 CEC_USER_CONTROL_CODE_PREVIOUS_CHANNEL = 0x32,
656 CEC_USER_CONTROL_CODE_SOUND_SELECT = 0x33,
657 CEC_USER_CONTROL_CODE_INPUT_SELECT = 0x34,
658 CEC_USER_CONTROL_CODE_DISPLAY_INFORMATION = 0x35,
659 CEC_USER_CONTROL_CODE_HELP = 0x36,
660 CEC_USER_CONTROL_CODE_PAGE_UP = 0x37,
661 CEC_USER_CONTROL_CODE_PAGE_DOWN = 0x38,
662 CEC_USER_CONTROL_CODE_POWER = 0x40,
663 CEC_USER_CONTROL_CODE_VOLUME_UP = 0x41,
664 CEC_USER_CONTROL_CODE_VOLUME_DOWN = 0x42,
665 CEC_USER_CONTROL_CODE_MUTE = 0x43,
666 CEC_USER_CONTROL_CODE_PLAY = 0x44,
667 CEC_USER_CONTROL_CODE_STOP = 0x45,
668 CEC_USER_CONTROL_CODE_PAUSE = 0x46,
669 CEC_USER_CONTROL_CODE_RECORD = 0x47,
670 CEC_USER_CONTROL_CODE_REWIND = 0x48,
671 CEC_USER_CONTROL_CODE_FAST_FORWARD = 0x49,
672 CEC_USER_CONTROL_CODE_EJECT = 0x4A,
673 CEC_USER_CONTROL_CODE_FORWARD = 0x4B,
674 CEC_USER_CONTROL_CODE_BACKWARD = 0x4C,
675 CEC_USER_CONTROL_CODE_STOP_RECORD = 0x4D,
676 CEC_USER_CONTROL_CODE_PAUSE_RECORD = 0x4E,
677 CEC_USER_CONTROL_CODE_ANGLE = 0x50,
678 CEC_USER_CONTROL_CODE_SUB_PICTURE = 0x51,
679 CEC_USER_CONTROL_CODE_VIDEO_ON_DEMAND = 0x52,
680 CEC_USER_CONTROL_CODE_ELECTRONIC_PROGRAM_GUIDE = 0x53,
681 CEC_USER_CONTROL_CODE_TIMER_PROGRAMMING = 0x54,
682 CEC_USER_CONTROL_CODE_INITIAL_CONFIGURATION = 0x55,
683 CEC_USER_CONTROL_CODE_PLAY_FUNCTION = 0x60,
684 CEC_USER_CONTROL_CODE_PAUSE_PLAY_FUNCTION = 0x61,
685 CEC_USER_CONTROL_CODE_RECORD_FUNCTION = 0x62,
686 CEC_USER_CONTROL_CODE_PAUSE_RECORD_FUNCTION = 0x63,
687 CEC_USER_CONTROL_CODE_STOP_FUNCTION = 0x64,
688 CEC_USER_CONTROL_CODE_MUTE_FUNCTION = 0x65,
689 CEC_USER_CONTROL_CODE_RESTORE_VOLUME_FUNCTION = 0x66,
690 CEC_USER_CONTROL_CODE_TUNE_FUNCTION = 0x67,
691 CEC_USER_CONTROL_CODE_SELECT_MEDIA_FUNCTION = 0x68,
692 CEC_USER_CONTROL_CODE_SELECT_AV_INPUT_FUNCTION = 0x69,
693 CEC_USER_CONTROL_CODE_SELECT_AUDIO_INPUT_FUNCTION = 0x6A,
694 CEC_USER_CONTROL_CODE_POWER_TOGGLE_FUNCTION = 0x6B,
695 CEC_USER_CONTROL_CODE_POWER_OFF_FUNCTION = 0x6C,
696 CEC_USER_CONTROL_CODE_POWER_ON_FUNCTION = 0x6D,
697 CEC_USER_CONTROL_CODE_F1_BLUE = 0x71,
698 CEC_USER_CONTROL_CODE_F2_RED = 0X72,
699 CEC_USER_CONTROL_CODE_F3_GREEN = 0x73,
700 CEC_USER_CONTROL_CODE_F4_YELLOW = 0x74,
701 CEC_USER_CONTROL_CODE_F5 = 0x75,
702 CEC_USER_CONTROL_CODE_DATA = 0x76,
703 CEC_USER_CONTROL_CODE_AN_RETURN = 0x91,
704 CEC_USER_CONTROL_CODE_AN_CHANNELS_LIST = 0x96,
705 CEC_USER_CONTROL_CODE_MAX = 0x96,
706 CEC_USER_CONTROL_CODE_UNKNOWN = 0xFF
707 } cec_user_control_code;
708
709 typedef enum cec_logical_address
710 {
711 CECDEVICE_UNKNOWN = -1, //not a valid logical address
712 CECDEVICE_TV = 0,
713 CECDEVICE_RECORDINGDEVICE1 = 1,
714 CECDEVICE_RECORDINGDEVICE2 = 2,
715 CECDEVICE_TUNER1 = 3,
716 CECDEVICE_PLAYBACKDEVICE1 = 4,
717 CECDEVICE_AUDIOSYSTEM = 5,
718 CECDEVICE_TUNER2 = 6,
719 CECDEVICE_TUNER3 = 7,
720 CECDEVICE_PLAYBACKDEVICE2 = 8,
721 CECDEVICE_RECORDINGDEVICE3 = 9,
722 CECDEVICE_TUNER4 = 10,
723 CECDEVICE_PLAYBACKDEVICE3 = 11,
724 CECDEVICE_RESERVED1 = 12,
725 CECDEVICE_RESERVED2 = 13,
726 CECDEVICE_FREEUSE = 14,
727 CECDEVICE_UNREGISTERED = 15,
728 CECDEVICE_BROADCAST = 15
729 } cec_logical_address;
730
731 typedef enum cec_opcode
732 {
733 CEC_OPCODE_ACTIVE_SOURCE = 0x82,
734 CEC_OPCODE_IMAGE_VIEW_ON = 0x04,
735 CEC_OPCODE_TEXT_VIEW_ON = 0x0D,
736 CEC_OPCODE_INACTIVE_SOURCE = 0x9D,
737 CEC_OPCODE_REQUEST_ACTIVE_SOURCE = 0x85,
738 CEC_OPCODE_ROUTING_CHANGE = 0x80,
739 CEC_OPCODE_ROUTING_INFORMATION = 0x81,
740 CEC_OPCODE_SET_STREAM_PATH = 0x86,
741 CEC_OPCODE_STANDBY = 0x36,
742 CEC_OPCODE_RECORD_OFF = 0x0B,
743 CEC_OPCODE_RECORD_ON = 0x09,
744 CEC_OPCODE_RECORD_STATUS = 0x0A,
745 CEC_OPCODE_RECORD_TV_SCREEN = 0x0F,
746 CEC_OPCODE_CLEAR_ANALOGUE_TIMER = 0x33,
747 CEC_OPCODE_CLEAR_DIGITAL_TIMER = 0x99,
748 CEC_OPCODE_CLEAR_EXTERNAL_TIMER = 0xA1,
749 CEC_OPCODE_SET_ANALOGUE_TIMER = 0x34,
750 CEC_OPCODE_SET_DIGITAL_TIMER = 0x97,
751 CEC_OPCODE_SET_EXTERNAL_TIMER = 0xA2,
752 CEC_OPCODE_SET_TIMER_PROGRAM_TITLE = 0x67,
753 CEC_OPCODE_TIMER_CLEARED_STATUS = 0x43,
754 CEC_OPCODE_TIMER_STATUS = 0x35,
755 CEC_OPCODE_CEC_VERSION = 0x9E,
756 CEC_OPCODE_GET_CEC_VERSION = 0x9F,
757 CEC_OPCODE_GIVE_PHYSICAL_ADDRESS = 0x83,
758 CEC_OPCODE_GET_MENU_LANGUAGE = 0x91,
759 CEC_OPCODE_REPORT_PHYSICAL_ADDRESS = 0x84,
760 CEC_OPCODE_SET_MENU_LANGUAGE = 0x32,
761 CEC_OPCODE_DECK_CONTROL = 0x42,
762 CEC_OPCODE_DECK_STATUS = 0x1B,
763 CEC_OPCODE_GIVE_DECK_STATUS = 0x1A,
764 CEC_OPCODE_PLAY = 0x41,
765 CEC_OPCODE_GIVE_TUNER_DEVICE_STATUS = 0x08,
766 CEC_OPCODE_SELECT_ANALOGUE_SERVICE = 0x92,
767 CEC_OPCODE_SELECT_DIGITAL_SERVICE = 0x93,
768 CEC_OPCODE_TUNER_DEVICE_STATUS = 0x07,
769 CEC_OPCODE_TUNER_STEP_DECREMENT = 0x06,
770 CEC_OPCODE_TUNER_STEP_INCREMENT = 0x05,
771 CEC_OPCODE_DEVICE_VENDOR_ID = 0x87,
772 CEC_OPCODE_GIVE_DEVICE_VENDOR_ID = 0x8C,
773 CEC_OPCODE_VENDOR_COMMAND = 0x89,
774 CEC_OPCODE_VENDOR_COMMAND_WITH_ID = 0xA0,
775 CEC_OPCODE_VENDOR_REMOTE_BUTTON_DOWN = 0x8A,
776 CEC_OPCODE_VENDOR_REMOTE_BUTTON_UP = 0x8B,
777 CEC_OPCODE_SET_OSD_STRING = 0x64,
778 CEC_OPCODE_GIVE_OSD_NAME = 0x46,
779 CEC_OPCODE_SET_OSD_NAME = 0x47,
780 CEC_OPCODE_MENU_REQUEST = 0x8D,
781 CEC_OPCODE_MENU_STATUS = 0x8E,
782 CEC_OPCODE_USER_CONTROL_PRESSED = 0x44,
783 CEC_OPCODE_USER_CONTROL_RELEASE = 0x45,
784 CEC_OPCODE_GIVE_DEVICE_POWER_STATUS = 0x8F,
785 CEC_OPCODE_REPORT_POWER_STATUS = 0x90,
786 CEC_OPCODE_FEATURE_ABORT = 0x00,
787 CEC_OPCODE_ABORT = 0xFF,
788 CEC_OPCODE_GIVE_AUDIO_STATUS = 0x71,
789 CEC_OPCODE_GIVE_SYSTEM_AUDIO_MODE_STATUS = 0x7D,
790 CEC_OPCODE_REPORT_AUDIO_STATUS = 0x7A,
791 CEC_OPCODE_SET_SYSTEM_AUDIO_MODE = 0x72,
792 CEC_OPCODE_SYSTEM_AUDIO_MODE_REQUEST = 0x70,
793 CEC_OPCODE_SYSTEM_AUDIO_MODE_STATUS = 0x7E,
794 CEC_OPCODE_SET_AUDIO_RATE = 0x9A,
795
796 /* CEC 1.4 */
797 CEC_OPCODE_START_ARC = 0xC0,
798 CEC_OPCODE_REPORT_ARC_STARTED = 0xC1,
799 CEC_OPCODE_REPORT_ARC_ENDED = 0xC2,
800 CEC_OPCODE_REQUEST_ARC_START = 0xC3,
801 CEC_OPCODE_REQUEST_ARC_END = 0xC4,
802 CEC_OPCODE_END_ARC = 0xC5,
803 CEC_OPCODE_CDC = 0xF8,
804 /* when this opcode is set, no opcode will be sent to the device. this is one of the reserved numbers */
805 CEC_OPCODE_NONE = 0xFD
806 } cec_opcode;
807
808 typedef enum cec_log_level
809 {
810 CEC_LOG_ERROR = 1,
811 CEC_LOG_WARNING = 2,
812 CEC_LOG_NOTICE = 4,
813 CEC_LOG_TRAFFIC = 8,
814 CEC_LOG_DEBUG = 16,
815 CEC_LOG_ALL = 31
816 } cec_log_level;
817
818 typedef enum cec_bus_device_status
819 {
820 CEC_DEVICE_STATUS_UNKNOWN,
821 CEC_DEVICE_STATUS_PRESENT,
822 CEC_DEVICE_STATUS_NOT_PRESENT,
823 CEC_DEVICE_STATUS_HANDLED_BY_LIBCEC
824 } cec_bus_device_status;
825
826 typedef enum cec_vendor_id
827 {
828 CEC_VENDOR_TOSHIBA = 0x000039,
829 CEC_VENDOR_SAMSUNG = 0x0000F0,
830 CEC_VENDOR_DENON = 0x0005CD,
831 CEC_VENDOR_LOEWE = 0x000982,
832 CEC_VENDOR_ONKYO = 0x0009B0,
833 CEC_VENDOR_MEDION = 0x000CB8,
834 CEC_VENDOR_AKAI = 0x0020C7,
835 CEC_VENDOR_AOC = 0x002467,
836 CEC_VENDOR_PANASONIC = 0x008045,
837 CEC_VENDOR_PHILIPS = 0x00903E,
838 CEC_VENDOR_DAEWOO = 0x009053,
839 CEC_VENDOR_YAMAHA = 0x00A0DE,
840 CEC_VENDOR_GRUNDIG = 0x00D0D5,
841 CEC_VENDOR_PIONEER = 0x00E036,
842 CEC_VENDOR_LG = 0x00E091,
843 CEC_VENDOR_SHARP = 0x08001F,
844 CEC_VENDOR_SONY = 0x080046,
845 CEC_VENDOR_BROADCOM = 0x18C086,
846 CEC_VENDOR_VIZIO = 0x6B746D,
847 CEC_VENDOR_BENQ = 0x8065E9,
848 CEC_VENDOR_UNKNOWN = 0
849 } cec_vendor_id;
850
851 typedef enum cec_adapter_type
852 {
853 ADAPTERTYPE_UNKNOWN = 0,
854 ADAPTERTYPE_P8_EXTERNAL = 0x1,
855 ADAPTERTYPE_P8_DAUGHTERBOARD = 0x2,
856 ADAPTERTYPE_RPI = 0x100,
857 ADAPTERTYPE_TDA995x = 0x200
858 } cec_adapter_type;
859
860 typedef struct cec_menu_language
861 {
862 char language[4]; /**< the iso language code. @bug the language code is only 3 chars long, not 4. will be changed in v2.0, because changing it now would break backwards compat */
863 cec_logical_address device; /**< the logical address of the device */
864 } cec_menu_language;
865
866 typedef struct cec_osd_name
867 {
868 char name[14]; /**< the name of the device */
869 cec_logical_address device; /**< the logical address of the device */
870 } cec_osd_name;
871
872 typedef struct cec_log_message
873 {
874 char message[1024]; /**< the actual message */
875 cec_log_level level; /**< log level of the message */
876 int64_t time; /**< the timestamp of this message */
877 } cec_log_message;
878
879 typedef struct cec_keypress
880 {
881 cec_user_control_code keycode; /**< the keycode */
882 unsigned int duration; /**< the duration of the keypress */
883 } cec_keypress;
884
885 typedef struct cec_adapter
886 {
887 char path[1024]; /**< the path to the com port */
888 char comm[1024]; /**< the name of the com port */
889 } cec_adapter;
890
891 typedef struct cec_adapter_descriptor
892 {
893 char strComPath[1024]; /**< the path to the com port */
894 char strComName[1024]; /**< the name of the com port */
895 uint16_t iVendorId;
896 uint16_t iProductId;
897 uint16_t iFirmwareVersion;
898 uint16_t iPhysicalAddress;
899 uint32_t iFirmwareBuildDate;
900 cec_adapter_type adapterType;
901 } cec_adapter_descriptor;
902
903 typedef struct cec_datapacket
904 {
905 uint8_t data[100]; /**< the actual data */
906 uint8_t size; /**< the size of the data */
907
908 #ifdef __cplusplus
909 cec_datapacket &operator =(const struct cec_datapacket &packet)
910 {
911 Clear();
912 for (uint8_t iPtr = 0; iPtr < packet.size; iPtr++)
913 PushBack(packet[iPtr]);
914
915 return *this;
916 }
917
918 bool operator ==(const struct cec_datapacket& packet) const
919 {
920 if (size != packet.size)
921 return false;
922 for (uint8_t iPtr = 0; iPtr < size; iPtr++)
923 if (packet.data[iPtr] != data[iPtr])
924 return false;
925 return true;
926 }
927
928 bool IsEmpty(void) const { return size == 0; } /**< @return True when this packet is empty, false otherwise. */
929 bool IsFull(void) const { return size == 100; } /**< @return True when this packet is false, false otherwise. */
930
931 /*!
932 * @brief Get the byte at the requested position.
933 * @param pos The position.
934 * @return The byte, or 0 when out of bounds.
935 */
936 uint8_t operator[](uint8_t pos) const { return pos < size ? data[pos] : 0; }
937 /*!
938 * @brief Get the byte at the requested position.
939 * @param pos The position.
940 * @return The byte, or 0 when out of bounds.
941 */
942 uint8_t At(uint8_t pos) const { return pos < size ? data[pos] : 0; }
943
944 /*!
945 * @brief Shift the contents of this packet.
946 * @param iShiftBy The number of positions to shift.
947 */
948 void Shift(uint8_t iShiftBy)
949 {
950 if (iShiftBy >= size)
951 {
952 Clear();
953 }
954 else
955 {
956 for (uint8_t iPtr = 0; iPtr < size; iPtr++)
957 data[iPtr] = (iPtr + iShiftBy < size) ? data[iPtr + iShiftBy] : 0;
958 size = (uint8_t) (size - iShiftBy);
959 }
960 }
961
962 /*!
963 * @brief Push a byte to the end of this packet.
964 * @param add The byte to add.
965 */
966 void PushBack(uint8_t add)
967 {
968 if (size < 100)
969 data[size++] = add;
970 }
971
972 /*!
973 * @brief Clear this packet.
974 */
975 void Clear(void)
976 {
977 memset(data, 0, sizeof(data));
978 size = 0;
979 }
980 #endif
981
982 } cec_datapacket;
983
984 typedef struct cec_command
985 {
986 cec_logical_address initiator; /**< the logical address of the initiator of this message */
987 cec_logical_address destination; /**< the logical address of the destination of this message */
988 int8_t ack; /**< 1 when the ACK bit is set, 0 otherwise */
989 int8_t eom; /**< 1 when the EOM bit is set, 0 otherwise */
990 cec_opcode opcode; /**< the opcode of this message */
991 cec_datapacket parameters; /**< the parameters attached to this message */
992 int8_t opcode_set; /**< 1 when an opcode is set, 0 otherwise (POLL message) */
993 int32_t transmit_timeout; /**< the timeout to use in ms */
994
995 #ifdef __cplusplus
996 cec_command(void)
997 {
998 Clear();
999 }
1000
1001 cec_command &operator =(const struct cec_command &command)
1002 {
1003 initiator = command.initiator;
1004 destination = command.destination;
1005 ack = command.ack;
1006 eom = command.eom;
1007 opcode = command.opcode;
1008 opcode_set = command.opcode_set;
1009 transmit_timeout = command.transmit_timeout;
1010 parameters = command.parameters;
1011
1012 return *this;
1013 }
1014
1015 /*!
1016 * @brief Formats a cec_command.
1017 * @param command The command to format.
1018 * @param initiator The logical address of the initiator.
1019 * @param destination The logical addres of the destination.
1020 * @param opcode The opcode of the command.
1021 * @param timeout The transmission timeout.
1022 */
1023 static void Format(cec_command &command, cec_logical_address initiator, cec_logical_address destination, cec_opcode opcode, int32_t timeout = CEC_DEFAULT_TRANSMIT_TIMEOUT)
1024 {
1025 command.Clear();
1026 command.initiator = initiator;
1027 command.destination = destination;
1028 command.transmit_timeout = timeout;
1029 if (opcode != CEC_OPCODE_NONE)
1030 {
1031 command.opcode = opcode;
1032 command.opcode_set = 1;
1033 }
1034 }
1035
1036 /*!
1037 * @brief Push a byte to the back of this command.
1038 * @param data The byte to push.
1039 */
1040 void PushBack(uint8_t data)
1041 {
1042 if (initiator == CECDEVICE_UNKNOWN && destination == CECDEVICE_UNKNOWN)
1043 {
1044 initiator = (cec_logical_address) (data >> 4);
1045 destination = (cec_logical_address) (data & 0xF);
1046 }
1047 else if (!opcode_set)
1048 {
1049 opcode_set = 1;
1050 opcode = (cec_opcode) data;
1051 }
1052 else
1053 parameters.PushBack(data);
1054 }
1055
1056 /*!
1057 * @brief Clear this command, resetting everything to the default values.
1058 */
1059 void Clear(void)
1060 {
1061 initiator = CECDEVICE_UNKNOWN;
1062 destination = CECDEVICE_UNKNOWN;
1063 ack = 0;
1064 eom = 0;
1065 opcode_set = 0;
1066 opcode = CEC_OPCODE_FEATURE_ABORT;
1067 transmit_timeout = CEC_DEFAULT_TRANSMIT_TIMEOUT;
1068 parameters.Clear();
1069 };
1070
1071 static cec_opcode GetResponseOpcode(cec_opcode opcode)
1072 {
1073 switch (opcode)
1074 {
1075 case CEC_OPCODE_REQUEST_ACTIVE_SOURCE:
1076 return CEC_OPCODE_ACTIVE_SOURCE;
1077 case CEC_OPCODE_GET_CEC_VERSION:
1078 return CEC_OPCODE_CEC_VERSION;
1079 case CEC_OPCODE_GIVE_PHYSICAL_ADDRESS:
1080 return CEC_OPCODE_REPORT_PHYSICAL_ADDRESS;
1081 case CEC_OPCODE_GET_MENU_LANGUAGE:
1082 return CEC_OPCODE_SET_MENU_LANGUAGE;
1083 case CEC_OPCODE_GIVE_DECK_STATUS:
1084 return CEC_OPCODE_DECK_STATUS;
1085 case CEC_OPCODE_GIVE_TUNER_DEVICE_STATUS:
1086 return CEC_OPCODE_TUNER_DEVICE_STATUS;
1087 case CEC_OPCODE_GIVE_DEVICE_VENDOR_ID:
1088 return CEC_OPCODE_DEVICE_VENDOR_ID;
1089 case CEC_OPCODE_GIVE_OSD_NAME:
1090 return CEC_OPCODE_SET_OSD_NAME;
1091 case CEC_OPCODE_MENU_REQUEST:
1092 return CEC_OPCODE_MENU_STATUS;
1093 case CEC_OPCODE_GIVE_DEVICE_POWER_STATUS:
1094 return CEC_OPCODE_REPORT_POWER_STATUS;
1095 case CEC_OPCODE_GIVE_AUDIO_STATUS:
1096 return CEC_OPCODE_REPORT_AUDIO_STATUS;
1097 case CEC_OPCODE_GIVE_SYSTEM_AUDIO_MODE_STATUS:
1098 return CEC_OPCODE_SYSTEM_AUDIO_MODE_STATUS;
1099 case CEC_OPCODE_SYSTEM_AUDIO_MODE_REQUEST:
1100 return CEC_OPCODE_SET_SYSTEM_AUDIO_MODE;
1101 default:
1102 break;
1103 }
1104
1105 return CEC_OPCODE_NONE;
1106 }
1107
1108 void PushArray(size_t len, uint8_t *data)
1109 {
1110 for (size_t iPtr = 0; iPtr < len; iPtr++)
1111 PushBack(data[iPtr]);
1112 }
1113 #endif
1114 } cec_command;
1115
1116 typedef struct cec_device_type_list
1117 {
1118 cec_device_type types[5]; /**< the list of device types */
1119
1120 #ifdef __cplusplus
1121 /*!
1122 * @brief Clear this list.
1123 */
1124 void Clear(void)
1125 {
1126 for (unsigned int iPtr = 0; iPtr < 5; iPtr++)
1127 types[iPtr] = CEC_DEVICE_TYPE_RESERVED;
1128 }
1129
1130 /*!
1131 * @brief Add a type to this list.
1132 * @param type The type to add.
1133 */
1134 void Add(const cec_device_type type)
1135 {
1136 for (unsigned int iPtr = 0; iPtr < 5; iPtr++)
1137 {
1138 if (types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
1139 {
1140 types[iPtr] = type;
1141 break;
1142 }
1143 }
1144 }
1145
1146 /*!
1147 * @brief Check whether a type is set in this list.
1148 * @param type The type to check.
1149 * @return True when set, false otherwise.
1150 */
1151 bool IsSet(cec_device_type type)
1152 {
1153 bool bReturn(false);
1154 for (unsigned int iPtr = 0; !bReturn && iPtr < 5; iPtr++)
1155 {
1156 if (types[iPtr] == type)
1157 bReturn = true;
1158 }
1159 return bReturn;
1160 }
1161
1162 /*!
1163 * @return True when this list is empty, false otherwise.
1164 */
1165 bool IsEmpty() const
1166 {
1167 bool bReturn(true);
1168 for (unsigned int iPtr = 0; bReturn && iPtr < 5; iPtr++)
1169 {
1170 if (types[iPtr] != CEC_DEVICE_TYPE_RESERVED)
1171 bReturn = false;
1172 }
1173 return bReturn;
1174 }
1175
1176 /*!
1177 * @brief Get the type at the requested position.
1178 * @param pos The position.
1179 * @return The type, or CEC_DEVICE_TYPE_RESERVED when out of bounds.
1180 */
1181 cec_device_type operator[](uint8_t pos) const { return pos < 5 ? types[pos] : CEC_DEVICE_TYPE_RESERVED; }
1182
1183 bool operator==(const cec_device_type_list &other) const
1184 {
1185 bool bEqual(true);
1186 for (uint8_t iPtr = 0; iPtr < 5; iPtr++)
1187 bEqual &= (types[iPtr] == other[iPtr]);
1188 return bEqual;
1189 }
1190
1191 bool operator!=(const cec_device_type_list &other) const
1192 {
1193 return !(*this == other);
1194 }
1195 #endif
1196 } cec_device_type_list;
1197
1198 typedef struct cec_logical_addresses
1199 {
1200 cec_logical_address primary; /**< the primary logical address to use */
1201 int addresses[16]; /**< the list of addresses */
1202
1203 #ifdef __cplusplus
1204 /*!
1205 * @brief Clear this list.
1206 */
1207 void Clear(void)
1208 {
1209 primary = CECDEVICE_UNREGISTERED;
1210 for (unsigned int iPtr = 0; iPtr < 16; iPtr++)
1211 addresses[iPtr] = 0;
1212 }
1213
1214 /*!
1215 * @return True when empty, false otherwise.
1216 */
1217 bool IsEmpty(void) const
1218 {
1219 return primary == CECDEVICE_UNREGISTERED;
1220 }
1221
1222 /*!
1223 * @brief Calculate the ack-mask for this list, the mask to use when determining whether to send an ack message or not.
1224 * @return The ack-mask.
1225 */
1226 uint16_t AckMask(void) const
1227 {
1228 uint16_t mask = 0;
1229 for (unsigned int iPtr = 0; iPtr < 16; iPtr++)
1230 if (addresses[iPtr] == 1)
1231 mask |= 0x1 << iPtr;
1232 return mask;
1233 }
1234
1235 /*!
1236 * @brief Mark a logical address as 'set'
1237 * @param address The logical address to add to this list.
1238 */
1239 void Set(cec_logical_address address)
1240 {
1241 if (primary == CECDEVICE_UNREGISTERED)
1242 primary = address;
1243
1244 addresses[(int) address] = 1;
1245 }
1246
1247 /*!
1248 * @brief Mark a logical address as 'unset'
1249 * @param address The logical address to remove from this list.
1250 */
1251 void Unset(const cec_logical_address address)
1252 {
1253 if (primary == address)
1254 primary = CECDEVICE_UNREGISTERED;
1255
1256 addresses[(int) address] = 0;
1257 }
1258
1259 /*!
1260 * @brief Check whether an address is set in this list.
1261 * @param address The address to check.
1262 * @return True when set, false otherwise.
1263 */
1264 bool IsSet(cec_logical_address address) const { return addresses[(int) address] == 1; }
1265
1266 /*!
1267 * @brief Check whether an address is set in this list.
1268 * @param pos The address to check.
1269 * @return True when set, false otherwise.
1270 */
1271 bool operator[](uint8_t pos) const { return pos < 16 ? IsSet((cec_logical_address) pos) : false; }
1272
1273 bool operator==(const cec_logical_addresses &other) const
1274 {
1275 bool bEqual(true);
1276 for (uint8_t iPtr = 0; iPtr < 16; iPtr++)
1277 bEqual &= ((addresses[(int)iPtr] == 1) == other[iPtr]);
1278 return bEqual;
1279 }
1280
1281 bool operator!=(const cec_logical_addresses &other) const
1282 {
1283 return !(*this == other);
1284 }
1285 #endif
1286 } cec_logical_addresses;
1287
1288 typedef enum libcec_alert
1289 {
1290 CEC_ALERT_SERVICE_DEVICE,
1291 CEC_ALERT_CONNECTION_LOST,
1292 CEC_ALERT_PERMISSION_ERROR,
1293 CEC_ALERT_PORT_BUSY,
1294 CEC_ALERT_PHYSICAL_ADDRESS_ERROR,
1295 CEC_ALERT_TV_POLL_FAILED
1296 } libcec_alert;
1297
1298 typedef enum libcec_parameter_type
1299 {
1300 CEC_PARAMETER_TYPE_STRING,
1301 CEC_PARAMETER_TYPE_UNKOWN
1302 } libcec_parameter_type;
1303
1304 typedef struct libcec_parameter
1305 {
1306 libcec_parameter_type paramType; /**< the type of this parameter */
1307 void* paramData; /**< the value of this parameter */
1308 } libcec_parameter;
1309
1310 typedef struct libcec_configuration libcec_configuration;
1311
1312 typedef int (CEC_CDECL* CBCecLogMessageType)(void*, const cec_log_message);
1313 typedef int (CEC_CDECL* CBCecKeyPressType)(void*, const cec_keypress);
1314 typedef int (CEC_CDECL* CBCecCommandType)(void*, const cec_command);
1315 typedef int (CEC_CDECL* CBCecConfigurationChangedType)(void*, const libcec_configuration);
1316 typedef int (CEC_CDECL* CBCecAlertType)(void*, const libcec_alert, const libcec_parameter);
1317 typedef int (CEC_CDECL* CBCecMenuStateChangedType)(void*, const cec_menu_state);
1318 typedef void (CEC_CDECL* CBCecSourceActivatedType)(void*, const cec_logical_address, const uint8_t);
1319
1320 typedef struct ICECCallbacks
1321 {
1322 /*!
1323 * @brief Transfer a log message from libCEC to the client.
1324 * @param message The message to transfer.
1325 * @return 1 when ok, 0 otherwise.
1326 */
1327 CBCecLogMessageType CBCecLogMessage;
1328
1329 /*!
1330 * @brief Transfer a keypress from libCEC to the client.
1331 * @param key The keypress to transfer.
1332 * @return 1 when ok, 0 otherwise.
1333 */
1334 CBCecKeyPressType CBCecKeyPress;
1335
1336 /*!
1337 * @brief Transfer a CEC command from libCEC to the client.
1338 * @param command The command to transfer.
1339 * @return 1 when ok, 0 otherwise.
1340 */
1341 CBCecCommandType CBCecCommand;
1342
1343 /*!
1344 * @brief Transfer a changed configuration from libCEC to the client
1345 * @param configuration The configuration to transfer
1346 * @return 1 when ok, 0 otherwise
1347 */
1348 CBCecConfigurationChangedType CBCecConfigurationChanged;
1349
1350 /*!
1351 * @brief Transfer a libcec alert message from libCEC to the client
1352 * @param alert The alert type transfer.
1353 * @param data Misc. additional information.
1354 * @return 1 when ok, 0 otherwise
1355 */
1356 CBCecAlertType CBCecAlert;
1357
1358 /*!
1359 * @brief Transfer a menu state change to the client.
1360 * Transfer a menu state change to the client. If the command returns 1, then the change will be processed by
1361 * the busdevice. If 0, then the state of the busdevice won't be changed, and will always be kept 'activated',
1362 * @warning CEC does not allow the player to suppress the menu state change on the TV, so the menu on the TV will always be displayed, whatever the return value of this method is.
1363 * so keypresses are always routed.
1364 * @param newVal The new value.
1365 * @return 1 when libCEC should use this new value, 0 otherwise.
1366 */
1367 CBCecMenuStateChangedType CBCecMenuStateChanged;
1368
1369 /*!
1370 * @brief Called when a source that's handled by this client is activated.
1371 * @param logicalAddress The address that was just activated.
1372 * @param bActivated 1 when activated, 0 when deactivated.
1373 */
1374 CBCecSourceActivatedType CBCecSourceActivated;
1375
1376 #ifdef __cplusplus
1377 ICECCallbacks(void) { Clear(); }
1378 ~ICECCallbacks(void) { Clear(); };
1379
1380 void Clear(void)
1381 {
1382 CBCecLogMessage = NULL;
1383 CBCecKeyPress = NULL;
1384 CBCecCommand = NULL;
1385 CBCecConfigurationChanged = NULL;
1386 CBCecAlert = NULL;
1387 CBCecMenuStateChanged = NULL;
1388 CBCecSourceActivated = NULL;
1389 }
1390 #endif
1391 } ICECCallbacks;
1392
1393 typedef enum cec_client_version
1394 {
1395 CEC_CLIENT_VERSION_PRE_1_5 = 0,
1396 CEC_CLIENT_VERSION_1_5_0 = 0x1500,
1397 CEC_CLIENT_VERSION_1_5_1 = 0x1501,
1398 CEC_CLIENT_VERSION_1_5_2 = 0x1502,
1399 CEC_CLIENT_VERSION_1_5_3 = 0x1503,
1400 CEC_CLIENT_VERSION_1_6_0 = 0x1600,
1401 CEC_CLIENT_VERSION_1_6_1 = 0x1601,
1402 CEC_CLIENT_VERSION_1_6_2 = 0x1602,
1403 CEC_CLIENT_VERSION_1_6_3 = 0x1603,
1404 CEC_CLIENT_VERSION_1_7_0 = 0x1700,
1405 CEC_CLIENT_VERSION_1_7_1 = 0x1701,
1406 CEC_CLIENT_VERSION_1_7_2 = 0x1702,
1407 CEC_CLIENT_VERSION_1_8_0 = 0x1800,
1408 CEC_CLIENT_VERSION_1_8_1 = 0x1801,
1409 CEC_CLIENT_VERSION_1_8_2 = 0x1802,
1410 CEC_CLIENT_VERSION_1_9_0 = 0x1900,
1411 CEC_CLIENT_VERSION_1_99_0 = 0x1990,
1412 CEC_CLIENT_VERSION_2_0_0 = 0x2000,
1413 CEC_CLIENT_VERSION_2_0_1 = 0x2001,
1414 CEC_CLIENT_VERSION_2_0_2 = 0x2002,
1415 CEC_CLIENT_VERSION_2_0_3 = 0x2003,
1416 CEC_CLIENT_VERSION_2_0_4 = 0x2004,
1417 CEC_CLIENT_VERSION_2_0_5 = 0x2005,
1418 CEC_CLIENT_VERSION_2_1_0 = 0x2100,
1419 CEC_CLIENT_VERSION_2_1_1 = 0x2101,
1420 CEC_CLIENT_VERSION_CURRENT = 0x2101
1421 } cec_client_version;
1422
1423 typedef enum cec_server_version
1424 {
1425 CEC_SERVER_VERSION_PRE_1_5 = 0,
1426 CEC_SERVER_VERSION_1_5_0 = 0x1500,
1427 CEC_SERVER_VERSION_1_5_1 = 0x1501,
1428 CEC_SERVER_VERSION_1_5_2 = 0x1502,
1429 CEC_SERVER_VERSION_1_5_3 = 0x1503,
1430 CEC_SERVER_VERSION_1_6_0 = 0x1600,
1431 CEC_SERVER_VERSION_1_6_1 = 0x1601,
1432 CEC_SERVER_VERSION_1_6_2 = 0x1602,
1433 CEC_SERVER_VERSION_1_6_3 = 0x1603,
1434 CEC_SERVER_VERSION_1_7_0 = 0x1700,
1435 CEC_SERVER_VERSION_1_7_1 = 0x1701,
1436 CEC_SERVER_VERSION_1_7_2 = 0x1702,
1437 CEC_SERVER_VERSION_1_8_0 = 0x1800,
1438 CEC_SERVER_VERSION_1_8_1 = 0x1801,
1439 CEC_SERVER_VERSION_1_8_2 = 0x1802,
1440 CEC_SERVER_VERSION_1_9_0 = 0x1900,
1441 CEC_SERVER_VERSION_1_99_0 = 0x1990,
1442 CEC_SERVER_VERSION_2_0_0 = 0x2000,
1443 CEC_SERVER_VERSION_2_0_1 = 0x2001,
1444 CEC_SERVER_VERSION_2_0_2 = 0x2002,
1445 CEC_SERVER_VERSION_2_0_3 = 0x2003,
1446 CEC_SERVER_VERSION_2_0_4 = 0x2004,
1447 CEC_SERVER_VERSION_2_0_5 = 0x2005,
1448 CEC_SERVER_VERSION_2_1_0 = 0x2100,
1449 CEC_SERVER_VERSION_2_1_1 = 0x2101,
1450 CEC_SERVER_VERSION_CURRENT = 0x2101
1451 } cec_server_version;
1452
1453 struct libcec_configuration
1454 {
1455 uint32_t clientVersion; /*!< the version of the client that is connecting */
1456 char strDeviceName[13]; /*!< the device name to use on the CEC bus */
1457 cec_device_type_list deviceTypes; /*!< the device type(s) to use on the CEC bus for libCEC */
1458 uint8_t bAutodetectAddress; /*!< (read only) set to 1 by libCEC when the physical address was autodetected */
1459 uint16_t iPhysicalAddress; /*!< the physical address of the CEC adapter */
1460 cec_logical_address baseDevice; /*!< the logical address of the device to which the adapter is connected. only used when iPhysicalAddress = 0 or when the adapter doesn't support autodetection */
1461 uint8_t iHDMIPort; /*!< the HDMI port to which the adapter is connected. only used when iPhysicalAddress = 0 or when the adapter doesn't support autodetection */
1462 uint64_t tvVendor; /*!< override the vendor ID of the TV. leave this untouched to autodetect */
1463 cec_logical_addresses wakeDevices; /*!< list of devices to wake when initialising libCEC or when calling PowerOnDevices() without any parameter. */
1464 cec_logical_addresses powerOffDevices; /*!< list of devices to power off when calling StandbyDevices() without any parameter. */
1465
1466 uint32_t serverVersion; /*!< the version number of the server. read-only */
1467
1468 // player specific settings
1469 uint8_t bGetSettingsFromROM; /*!< true to get the settings from the ROM (if set, and a v2 ROM is present), false to use these settings. */
1470 uint8_t bUseTVMenuLanguage; /*!< use the menu language of the TV in the player application */
1471 uint8_t bActivateSource; /*!< make libCEC the active source on the bus when starting the player application */
1472 uint8_t bPowerOffScreensaver; /*!< put devices in standby mode when activating the screensaver */
1473 uint8_t bPowerOnScreensaver; /*!< wake devices when deactivating the screensaver */
1474 uint8_t bPowerOffOnStandby; /*!< put this PC in standby mode when the TV is switched off. only used when bShutdownOnStandby = 0 */
1475 uint8_t bSendInactiveSource; /*!< send an 'inactive source' message when stopping the player. added in 1.5.1 */
1476
1477 void * callbackParam; /*!< the object to pass along with a call of the callback methods. NULL to ignore */
1478 ICECCallbacks * callbacks; /*!< the callback methods to use. set this to NULL when not using callbacks */
1479
1480 cec_logical_addresses logicalAddresses; /*!< (read-only) the current logical addresses. added in 1.5.3 */
1481 uint16_t iFirmwareVersion; /*!< (read-only) the firmware version of the adapter. added in 1.6.0 */
1482 uint8_t bPowerOffDevicesOnStandby; /*!< put devices in standby when the PC/player is put in standby. added in 1.6.0 */
1483 uint8_t bShutdownOnStandby; /*!< shutdown this PC when the TV is switched off. only used when bPowerOffOnStandby = 0. added in 1.6.0 */
1484 char strDeviceLanguage[3]; /*!< the menu language used by the client. 3 character ISO 639-2 country code. see http://http://www.loc.gov/standards/iso639-2/ added in 1.6.2 */
1485 uint32_t iFirmwareBuildDate; /*!< (read-only) the build date of the firmware, in seconds since epoch. if not available, this value will be set to 0. added in 1.6.2 */
1486 uint8_t bMonitorOnly; /*!< won't allocate a CCECClient when starting the connection when set (same as monitor mode). added in 1.6.3 */
1487 cec_version cecVersion; /*!< CEC spec version to use by libCEC. defaults to v1.4. added in 1.8.0 */
1488 cec_adapter_type adapterType; /*!< type of the CEC adapter that we're connected to. added in 1.8.2 */
1489 uint8_t iDoubleTapTimeoutMs; /*!< prevent double taps withing this timeout. defaults to 200ms. added in 2.0.0 */
1490 cec_user_control_code comboKey; /*!< key code that initiates combo keys. defaults to CEC_USER_CONTROL_CODE_F1_BLUE. CEC_USER_CONTROL_CODE_UNKNOWN to disable. added in 2.0.5 */
1491 uint32_t iComboKeyTimeoutMs; /*!< timeout until the combo key is sent as normal keypress */
1492
1493 #ifdef __cplusplus
1494 libcec_configuration(void) { Clear(); }
1495 ~libcec_configuration(void) { Clear(); }
1496
1497 bool operator==(const libcec_configuration &other) const
1498 {
1499 return ( clientVersion == other.clientVersion &&
1500 !strncmp(strDeviceName, other.strDeviceName, 13) &&
1501 deviceTypes == other.deviceTypes &&
1502 bAutodetectAddress == other.bAutodetectAddress &&
1503 iPhysicalAddress == other.iPhysicalAddress &&
1504 baseDevice == other.baseDevice &&
1505 iHDMIPort == other.iHDMIPort &&
1506 tvVendor == other.tvVendor &&
1507 wakeDevices == other.wakeDevices &&
1508 powerOffDevices == other.powerOffDevices &&
1509 serverVersion == other.serverVersion &&
1510 bGetSettingsFromROM == other.bGetSettingsFromROM &&
1511 bUseTVMenuLanguage == other.bUseTVMenuLanguage &&
1512 bActivateSource == other.bActivateSource &&
1513 bPowerOffScreensaver == other.bPowerOffScreensaver &&
1514 bPowerOffOnStandby == other.bPowerOffOnStandby &&
1515 bSendInactiveSource == other.bSendInactiveSource &&
1516 logicalAddresses == other.logicalAddresses &&
1517 iFirmwareVersion == other.iFirmwareVersion &&
1518 bPowerOffDevicesOnStandby == other.bPowerOffDevicesOnStandby &&
1519 bShutdownOnStandby == other.bShutdownOnStandby &&
1520 !strncmp(strDeviceLanguage, other.strDeviceLanguage, 3) &&
1521 iFirmwareBuildDate == other.iFirmwareBuildDate &&
1522 bMonitorOnly == other.bMonitorOnly &&
1523 cecVersion == other.cecVersion &&
1524 adapterType == other.adapterType &&
1525 iDoubleTapTimeoutMs == other.iDoubleTapTimeoutMs &&
1526 (other.clientVersion <= CEC_CLIENT_VERSION_2_0_4 || comboKey == other.comboKey) &&
1527 (other.clientVersion <= CEC_CLIENT_VERSION_2_0_4 || iComboKeyTimeoutMs == other.iComboKeyTimeoutMs) &&
1528 (other.clientVersion < CEC_CLIENT_VERSION_2_1_0 || bPowerOnScreensaver == other.bPowerOnScreensaver));
1529 }
1530
1531 bool operator!=(const libcec_configuration &other) const
1532 {
1533 return !(*this == other);
1534 }
1535
1536 /*!
1537 * @brief Reset this configution struct to the default values.
1538 */
1539 void Clear(void)
1540 {
1541 iPhysicalAddress = CEC_PHYSICAL_ADDRESS_TV;
1542 baseDevice = (cec_logical_address)CEC_DEFAULT_BASE_DEVICE;
1543 iHDMIPort = CEC_DEFAULT_HDMI_PORT;
1544 tvVendor = (uint64_t)CEC_VENDOR_UNKNOWN;
1545 clientVersion = (uint32_t)CEC_CLIENT_VERSION_CURRENT;
1546 serverVersion = (uint32_t)CEC_SERVER_VERSION_CURRENT;
1547 bAutodetectAddress = 0;
1548 bGetSettingsFromROM = CEC_DEFAULT_SETTING_GET_SETTINGS_FROM_ROM;
1549 bUseTVMenuLanguage = CEC_DEFAULT_SETTING_USE_TV_MENU_LANGUAGE;
1550 bActivateSource = CEC_DEFAULT_SETTING_ACTIVATE_SOURCE;
1551 bPowerOffScreensaver = CEC_DEFAULT_SETTING_POWER_OFF_SCREENSAVER;
1552 bPowerOnScreensaver = CEC_DEFAULT_SETTING_POWER_ON_SCREENSAVER;
1553 bPowerOffOnStandby = CEC_DEFAULT_SETTING_POWER_OFF_ON_STANDBY;
1554 bShutdownOnStandby = CEC_DEFAULT_SETTING_SHUTDOWN_ON_STANDBY;
1555 bSendInactiveSource = CEC_DEFAULT_SETTING_SEND_INACTIVE_SOURCE;
1556 iFirmwareVersion = CEC_FW_VERSION_UNKNOWN;
1557 bPowerOffDevicesOnStandby = CEC_DEFAULT_SETTING_POWER_OFF_DEVICES_STANDBY;
1558 memcpy(strDeviceLanguage, CEC_DEFAULT_DEVICE_LANGUAGE, 3);
1559 iFirmwareBuildDate = CEC_FW_BUILD_UNKNOWN;
1560 bMonitorOnly = 0;
1561 cecVersion = (cec_version)CEC_DEFAULT_SETTING_CEC_VERSION;
1562 adapterType = ADAPTERTYPE_UNKNOWN;
1563 iDoubleTapTimeoutMs = CEC_DOUBLE_TAP_TIMEOUT_MS;
1564 comboKey = CEC_USER_CONTROL_CODE_STOP;
1565 iComboKeyTimeoutMs = CEC_DEFAULT_COMBO_TIMEOUT_MS;
1566
1567 memset(strDeviceName, 0, 13);
1568 deviceTypes.Clear();
1569 logicalAddresses.Clear();
1570 wakeDevices.Clear();
1571 powerOffDevices.Clear();
1572
1573 #if CEC_DEFAULT_SETTING_POWER_OFF_SHUTDOWN == 1
1574 powerOffDevices.Set(CECDEVICE_BROADCAST);
1575 #endif
1576 #if CEC_DEFAULT_SETTING_ACTIVATE_SOURCE == 1
1577 wakeDevices.Set(CECDEVICE_TV);
1578 #endif
1579
1580 callbackParam = NULL;
1581 callbacks = NULL;
1582 }
1583 #endif
1584 };
1585
1586 #ifdef __cplusplus
1587 };
1588 };
1589 #endif
1590
1591 #endif /* CECTYPES_H_ */