cec: receive and send full cec_commands, not CCECAdapterMessages in CAdapterCommunica...
[deb_libcec.git] / src / lib / CECProcessor.cpp
1 /*
2 * This file is part of the libCEC(R) library.
3 *
4 * libCEC(R) is Copyright (C) 2011-2012 Pulse-Eight Limited. All rights reserved.
5 * libCEC(R) is an original work, containing original code.
6 *
7 * libCEC(R) is a trademark of Pulse-Eight Limited.
8 *
9 * This program is dual-licensed; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
22 *
23 *
24 * Alternatively, you can license this library under a commercial license,
25 * please contact Pulse-Eight Licensing for more information.
26 *
27 * For more information contact:
28 * Pulse-Eight Licensing <license@pulse-eight.com>
29 * http://www.pulse-eight.com/
30 * http://www.pulse-eight.net/
31 */
32
33 #include "CECProcessor.h"
34
35 #include "adapter/USBCECAdapterCommunication.h"
36 #include "devices/CECBusDevice.h"
37 #include "devices/CECAudioSystem.h"
38 #include "devices/CECPlaybackDevice.h"
39 #include "devices/CECRecordingDevice.h"
40 #include "devices/CECTuner.h"
41 #include "devices/CECTV.h"
42 #include "implementations/CECCommandHandler.h"
43 #include "LibCEC.h"
44 #include "platform/util/timeutils.h"
45
46 using namespace CEC;
47 using namespace std;
48 using namespace PLATFORM;
49
50 CCECProcessor::CCECProcessor(CLibCEC *controller, const char *strDeviceName, cec_logical_address iLogicalAddress /* = CECDEVICE_PLAYBACKDEVICE1 */, uint16_t iPhysicalAddress /* = CEC_DEFAULT_PHYSICAL_ADDRESS*/) :
51 m_bStarted(false),
52 m_bInitialised(false),
53 m_iHDMIPort(CEC_DEFAULT_HDMI_PORT),
54 m_iBaseDevice((cec_logical_address)CEC_DEFAULT_BASE_DEVICE),
55 m_strDeviceName(strDeviceName),
56 m_communication(NULL),
57 m_controller(controller),
58 m_bMonitor(false),
59 m_iStandardLineTimeout(3),
60 m_iRetryLineTimeout(3),
61 m_iLastTransmission(0)
62 {
63 m_logicalAddresses.Clear();
64 m_logicalAddresses.Set(iLogicalAddress);
65 m_types.clear();
66 for (int iPtr = 0; iPtr <= 16; iPtr++)
67 m_busDevices[iPtr] = new CCECBusDevice(this, (cec_logical_address) iPtr, iPtr == iLogicalAddress ? iPhysicalAddress : 0);
68 }
69
70 CCECProcessor::CCECProcessor(CLibCEC *controller, const char *strDeviceName, const cec_device_type_list &types) :
71 m_bStarted(false),
72 m_bInitialised(false),
73 m_iHDMIPort(CEC_DEFAULT_HDMI_PORT),
74 m_iBaseDevice((cec_logical_address)CEC_DEFAULT_BASE_DEVICE),
75 m_strDeviceName(strDeviceName),
76 m_types(types),
77 m_communication(NULL),
78 m_controller(controller),
79 m_bMonitor(false),
80 m_iStandardLineTimeout(3),
81 m_iRetryLineTimeout(3),
82 m_iLastTransmission(0)
83 {
84 m_logicalAddresses.Clear();
85 for (int iPtr = 0; iPtr < 16; iPtr++)
86 {
87 switch(iPtr)
88 {
89 case CECDEVICE_AUDIOSYSTEM:
90 m_busDevices[iPtr] = new CCECAudioSystem(this, (cec_logical_address) iPtr, 0xFFFF);
91 break;
92 case CECDEVICE_PLAYBACKDEVICE1:
93 case CECDEVICE_PLAYBACKDEVICE2:
94 case CECDEVICE_PLAYBACKDEVICE3:
95 m_busDevices[iPtr] = new CCECPlaybackDevice(this, (cec_logical_address) iPtr, 0xFFFF);
96 break;
97 case CECDEVICE_RECORDINGDEVICE1:
98 case CECDEVICE_RECORDINGDEVICE2:
99 case CECDEVICE_RECORDINGDEVICE3:
100 m_busDevices[iPtr] = new CCECRecordingDevice(this, (cec_logical_address) iPtr, 0xFFFF);
101 break;
102 case CECDEVICE_TUNER1:
103 case CECDEVICE_TUNER2:
104 case CECDEVICE_TUNER3:
105 case CECDEVICE_TUNER4:
106 m_busDevices[iPtr] = new CCECTuner(this, (cec_logical_address) iPtr, 0xFFFF);
107 break;
108 case CECDEVICE_TV:
109 m_busDevices[iPtr] = new CCECTV(this, (cec_logical_address) iPtr, 0);
110 break;
111 default:
112 m_busDevices[iPtr] = new CCECBusDevice(this, (cec_logical_address) iPtr, 0xFFFF);
113 break;
114 }
115 }
116 }
117
118 CCECProcessor::~CCECProcessor(void)
119 {
120 m_bStarted = false;
121 m_startCondition.Broadcast();
122 StopThread();
123
124 delete m_communication;
125 m_communication = NULL;
126 m_controller = NULL;
127 for (unsigned int iPtr = 0; iPtr < 16; iPtr++)
128 delete m_busDevices[iPtr];
129 }
130
131 bool CCECProcessor::OpenConnection(const char *strPort, uint16_t iBaudRate, uint32_t iTimeoutMs)
132 {
133 bool bReturn(false);
134 CLockObject lock(m_mutex);
135 if (m_communication)
136 {
137 CLibCEC::AddLog(CEC_LOG_ERROR, "existing connection handler found");
138 return bReturn;
139 }
140
141 m_communication = new CUSBCECAdapterCommunication(this, strPort, iBaudRate);
142
143 /* check for an already opened connection */
144 if (m_communication->IsOpen())
145 {
146 CLibCEC::AddLog(CEC_LOG_ERROR, "connection already opened");
147 return bReturn;
148 }
149
150 uint64_t iNow = GetTimeMs();
151 uint64_t iTarget = iTimeoutMs > 0 ? iNow + iTimeoutMs : iNow + CEC_DEFAULT_TRANSMIT_WAIT;
152 unsigned iConnectTry(0), iPingTry(0), iFwVersionTry(0);
153 bool bConnected(false), bPinged(false);
154
155 /* open a new connection */
156 while (iNow < iTarget && (bConnected = m_communication->Open(iTimeoutMs)) == false)
157 {
158 CLibCEC::AddLog(CEC_LOG_ERROR, "could not open a connection (try %d)", ++iConnectTry);
159 Sleep(500);
160 iNow = GetTimeMs();
161 }
162
163 /* try to ping the adapter */
164 while (bConnected && iNow < iTarget && (bPinged = m_communication->PingAdapter()) == false)
165 {
166 CLibCEC::AddLog(CEC_LOG_ERROR, "the adapter did not respond correctly to a ping (try %d)", ++iPingTry);
167 Sleep(500);
168 iNow = GetTimeMs();
169 }
170
171 /* try to read the firmware version */
172 uint16_t iFirmwareVersion(CEC_FW_VERSION_UNKNOWN);
173 while (bPinged && iNow < iTarget && (iFirmwareVersion = m_communication->GetFirmwareVersion()) == CEC_FW_VERSION_UNKNOWN)
174 {
175 CLibCEC::AddLog(CEC_LOG_ERROR, "the adapter did not respond with a correct firmware version (try %d)", ++iFwVersionTry);
176 Sleep(500);
177 iNow = GetTimeMs();
178 }
179
180 if ((bReturn = iFirmwareVersion != CEC_FW_VERSION_UNKNOWN) == true)
181 CLibCEC::AddLog(CEC_LOG_NOTICE, "connected to the CEC adapter. firmware version = %d", iFirmwareVersion);
182
183 return bReturn;
184 }
185
186 void CCECProcessor::SetInitialised(bool bSetTo /* = true */)
187 {
188 CLockObject lock(m_mutex);
189 m_bInitialised = bSetTo;
190 }
191
192 bool CCECProcessor::Initialise(void)
193 {
194 bool bReturn(false);
195 {
196 CLockObject lock(m_mutex);
197 if (!m_logicalAddresses.IsEmpty())
198 m_logicalAddresses.Clear();
199
200 if (!FindLogicalAddresses())
201 {
202 CLibCEC::AddLog(CEC_LOG_ERROR, "could not detect our logical addresses");
203 return bReturn;
204 }
205
206 /* only set our OSD name for the primary device */
207 m_busDevices[m_logicalAddresses.primary]->m_strDeviceName = m_strDeviceName;
208 }
209
210 /* get the vendor id from the TV, so we are using the correct handler */
211 m_busDevices[CECDEVICE_TV]->RequestVendorId();
212 ReplaceHandlers();
213
214 if ((bReturn = SetHDMIPort(m_iBaseDevice, m_iHDMIPort, true)) == false)
215 CLibCEC::AddLog(CEC_LOG_ERROR, "unable to set HDMI port %d on %s (%x)", m_iHDMIPort, ToString(m_iBaseDevice), (uint8_t)m_iBaseDevice);
216
217 SetInitialised(bReturn);
218
219 return bReturn;
220 }
221
222 bool CCECProcessor::Start(const char *strPort, uint16_t iBaudRate /* = 38400 */, uint32_t iTimeoutMs /* = 10000 */)
223 {
224 bool bReturn(false);
225
226 {
227 CLockObject lock(m_mutex);
228 if (!OpenConnection(strPort, iBaudRate, iTimeoutMs))
229 return bReturn;
230
231 /* create the processor thread */
232 if (!CreateThread() || !m_startCondition.Wait(m_mutex) || !m_bStarted)
233 {
234 CLibCEC::AddLog(CEC_LOG_ERROR, "could not create a processor thread");
235 return bReturn;
236 }
237 }
238
239 if ((bReturn = Initialise()) == false)
240 {
241 CLibCEC::AddLog(CEC_LOG_ERROR, "could not create a processor thread");
242 StopThread(true);
243 }
244 else
245 {
246 CLibCEC::AddLog(CEC_LOG_DEBUG, "processor thread started");
247 }
248
249 return bReturn;
250 }
251
252 bool CCECProcessor::TryLogicalAddress(cec_logical_address address)
253 {
254 if (m_busDevices[address]->TryLogicalAddress())
255 {
256 m_logicalAddresses.Set(address);
257 return true;
258 }
259
260 return false;
261 }
262
263 bool CCECProcessor::FindLogicalAddressRecordingDevice(void)
264 {
265 CLibCEC::AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'recording device'");
266 return TryLogicalAddress(CECDEVICE_RECORDINGDEVICE1) ||
267 TryLogicalAddress(CECDEVICE_RECORDINGDEVICE2) ||
268 TryLogicalAddress(CECDEVICE_RECORDINGDEVICE3);
269 }
270
271 bool CCECProcessor::FindLogicalAddressTuner(void)
272 {
273 CLibCEC::AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'tuner'");
274 return TryLogicalAddress(CECDEVICE_TUNER1) ||
275 TryLogicalAddress(CECDEVICE_TUNER2) ||
276 TryLogicalAddress(CECDEVICE_TUNER3) ||
277 TryLogicalAddress(CECDEVICE_TUNER4);
278 }
279
280 bool CCECProcessor::FindLogicalAddressPlaybackDevice(void)
281 {
282 CLibCEC::AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'playback device'");
283 return TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE1) ||
284 TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE2) ||
285 TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE3);
286 }
287
288 bool CCECProcessor::FindLogicalAddressAudioSystem(void)
289 {
290 CLibCEC::AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'audio'");
291 return TryLogicalAddress(CECDEVICE_AUDIOSYSTEM);
292 }
293
294 bool CCECProcessor::ChangeDeviceType(cec_device_type from, cec_device_type to)
295 {
296 bool bChanged(false);
297
298 CLibCEC::AddLog(CEC_LOG_NOTICE, "changing device type '%s' into '%s'", ToString(from), ToString(to));
299
300 CLockObject lock(m_mutex);
301 CCECBusDevice *previousDevice = GetDeviceByType(from);
302 m_logicalAddresses.primary = CECDEVICE_UNKNOWN;
303
304 for (unsigned int iPtr = 0; iPtr < 5; iPtr++)
305 {
306 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
307 continue;
308
309 if (m_types.types[iPtr] == from)
310 {
311 bChanged = true;
312 m_types.types[iPtr] = to;
313 }
314 else if (m_types.types[iPtr] == to && bChanged)
315 {
316 m_types.types[iPtr] = CEC_DEVICE_TYPE_RESERVED;
317 }
318 }
319
320 if (bChanged)
321 {
322 FindLogicalAddresses();
323
324 CCECBusDevice *newDevice = GetDeviceByType(to);
325 if (previousDevice && newDevice)
326 {
327 newDevice->SetDeviceStatus(CEC_DEVICE_STATUS_HANDLED_BY_LIBCEC);
328 previousDevice->SetDeviceStatus(CEC_DEVICE_STATUS_NOT_PRESENT);
329
330 newDevice->SetCecVersion(previousDevice->GetCecVersion(false));
331 previousDevice->SetCecVersion(CEC_VERSION_UNKNOWN);
332
333 newDevice->SetMenuLanguage(previousDevice->GetMenuLanguage(false));
334 cec_menu_language lang;
335 lang.device = previousDevice->GetLogicalAddress();
336 for (unsigned int iPtr = 0; iPtr < 4; iPtr++)
337 lang.language[iPtr] = '?';
338 lang.language[3] = 0;
339 previousDevice->SetMenuLanguage(lang);
340
341 newDevice->SetMenuState(previousDevice->GetMenuState());
342 previousDevice->SetMenuState(CEC_MENU_STATE_DEACTIVATED);
343
344 newDevice->SetOSDName(previousDevice->GetOSDName(false));
345 previousDevice->SetOSDName(ToString(previousDevice->GetLogicalAddress()));
346
347 newDevice->SetPhysicalAddress(previousDevice->GetPhysicalAddress(false));
348 previousDevice->SetPhysicalAddress(0xFFFF);
349
350 newDevice->SetPowerStatus(previousDevice->GetPowerStatus(false));
351 previousDevice->SetPowerStatus(CEC_POWER_STATUS_UNKNOWN);
352
353 newDevice->SetVendorId(previousDevice->GetVendorId(false));
354 previousDevice->SetVendorId(CEC_VENDOR_UNKNOWN);
355
356 if ((from == CEC_DEVICE_TYPE_PLAYBACK_DEVICE || from == CEC_DEVICE_TYPE_RECORDING_DEVICE) &&
357 (to == CEC_DEVICE_TYPE_PLAYBACK_DEVICE || to == CEC_DEVICE_TYPE_RECORDING_DEVICE))
358 {
359 ((CCECPlaybackDevice *) newDevice)->SetDeckControlMode(((CCECPlaybackDevice *) previousDevice)->GetDeckControlMode());
360 ((CCECPlaybackDevice *) previousDevice)->SetDeckControlMode(CEC_DECK_CONTROL_MODE_STOP);
361
362 ((CCECPlaybackDevice *) newDevice)->SetDeckStatus(((CCECPlaybackDevice *) previousDevice)->GetDeckStatus());
363 ((CCECPlaybackDevice *) previousDevice)->SetDeckStatus(CEC_DECK_INFO_STOP);
364 }
365 }
366 }
367
368 return true;
369 }
370
371 bool CCECProcessor::FindLogicalAddresses(void)
372 {
373 bool bReturn(true);
374 m_logicalAddresses.Clear();
375
376 for (unsigned int iPtr = 0; iPtr < 5; iPtr++)
377 {
378 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
379 continue;
380
381 CLibCEC::AddLog(CEC_LOG_DEBUG, "%s - device %d: type %d", __FUNCTION__, iPtr, m_types.types[iPtr]);
382
383 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_RECORDING_DEVICE)
384 bReturn &= FindLogicalAddressRecordingDevice();
385 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_TUNER)
386 bReturn &= FindLogicalAddressTuner();
387 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_PLAYBACK_DEVICE)
388 bReturn &= FindLogicalAddressPlaybackDevice();
389 if (m_types.types[iPtr] == CEC_DEVICE_TYPE_AUDIO_SYSTEM)
390 bReturn &= FindLogicalAddressAudioSystem();
391 }
392
393 if (bReturn)
394 SetAckMask(m_logicalAddresses.AckMask());
395
396 return bReturn;
397 }
398
399 void CCECProcessor::ReplaceHandlers(void)
400 {
401 for (uint8_t iPtr = 0; iPtr <= CECDEVICE_PLAYBACKDEVICE3; iPtr++)
402 m_busDevices[iPtr]->ReplaceHandler(m_bInitialised);
403 }
404
405 void *CCECProcessor::Process(void)
406 {
407 bool bParseFrame(false);
408 cec_command command;
409 CCECAdapterMessage msg;
410
411 {
412 CLockObject lock(m_mutex);
413 m_bStarted = true;
414 CLibCEC::AddLog(CEC_LOG_DEBUG, "processor thread started");
415 m_startCondition.Signal();
416 }
417
418 while (!IsStopped())
419 {
420 ReplaceHandlers();
421 command.Clear();
422
423 {
424 CLockObject lock(m_mutex);
425 if (m_commandBuffer.Pop(command))
426 bParseFrame = true;
427 else if (m_communication->IsOpen() && m_communication->Read(command, 50))
428 bParseFrame = true;
429 }
430
431 if (bParseFrame)
432 ParseCommand(command);
433 bParseFrame = false;
434
435 Sleep(5);
436
437 m_controller->CheckKeypressTimeout();
438 }
439
440 if (m_communication)
441 m_communication->Close();
442
443 return NULL;
444 }
445
446 bool CCECProcessor::SetActiveSource(cec_device_type type /* = CEC_DEVICE_TYPE_RESERVED */)
447 {
448 bool bReturn(false);
449
450 if (!IsRunning())
451 return bReturn;
452
453 cec_logical_address addr = m_logicalAddresses.primary;
454
455 if (type != CEC_DEVICE_TYPE_RESERVED)
456 {
457 for (uint8_t iPtr = 0; iPtr <= 11; iPtr++)
458 {
459 if (m_logicalAddresses[iPtr] && m_busDevices[iPtr]->m_type == type)
460 {
461 addr = (cec_logical_address) iPtr;
462 break;
463 }
464 }
465 }
466
467 m_busDevices[addr]->SetActiveSource();
468 if (m_busDevices[addr]->GetPhysicalAddress(false) != 0xFFFF)
469 {
470 bReturn = m_busDevices[addr]->TransmitActiveSource();
471
472 if (bReturn)
473 {
474 m_busDevices[addr]->SetMenuState(CEC_MENU_STATE_ACTIVATED);
475 m_busDevices[addr]->TransmitMenuState(CECDEVICE_TV);
476 }
477
478 if (bReturn && (m_busDevices[addr]->GetType() == CEC_DEVICE_TYPE_PLAYBACK_DEVICE ||
479 m_busDevices[addr]->GetType() == CEC_DEVICE_TYPE_RECORDING_DEVICE) &&
480 m_busDevices[addr]->GetHandler()->SendDeckStatusUpdateOnActiveSource())
481 {
482 bReturn = ((CCECPlaybackDevice *)m_busDevices[addr])->TransmitDeckStatus(CECDEVICE_TV);
483 }
484 }
485
486 return bReturn;
487 }
488
489 bool CCECProcessor::SetActiveSource(uint16_t iStreamPath)
490 {
491 bool bReturn(false);
492
493 CCECBusDevice *device = GetDeviceByPhysicalAddress(iStreamPath);
494 if (device)
495 {
496 device->SetActiveSource();
497 bReturn = true;
498 }
499
500 return bReturn;
501 }
502
503 void CCECProcessor::SetStandardLineTimeout(uint8_t iTimeout)
504 {
505 CLockObject lock(m_mutex);
506 m_iStandardLineTimeout = iTimeout;
507 }
508
509 void CCECProcessor::SetRetryLineTimeout(uint8_t iTimeout)
510 {
511 CLockObject lock(m_mutex);
512 m_iRetryLineTimeout = iTimeout;
513 }
514
515 bool CCECProcessor::SetActiveView(void)
516 {
517 return SetActiveSource(m_types.IsEmpty() ? CEC_DEVICE_TYPE_RESERVED : m_types[0]);
518 }
519
520 bool CCECProcessor::SetDeckControlMode(cec_deck_control_mode mode, bool bSendUpdate /* = true */)
521 {
522 bool bReturn(false);
523
524 CCECBusDevice *device = GetDeviceByType(CEC_DEVICE_TYPE_PLAYBACK_DEVICE);
525 if (device)
526 {
527 ((CCECPlaybackDevice *) device)->SetDeckControlMode(mode);
528 if (bSendUpdate)
529 ((CCECPlaybackDevice *) device)->TransmitDeckStatus(CECDEVICE_TV);
530 bReturn = true;
531 }
532
533 return bReturn;
534 }
535
536 bool CCECProcessor::SetDeckInfo(cec_deck_info info, bool bSendUpdate /* = true */)
537 {
538 bool bReturn(false);
539
540 CCECBusDevice *device = GetDeviceByType(CEC_DEVICE_TYPE_PLAYBACK_DEVICE);
541 if (device)
542 {
543 ((CCECPlaybackDevice *) device)->SetDeckStatus(info);
544 if (bSendUpdate)
545 ((CCECPlaybackDevice *) device)->TransmitDeckStatus(CECDEVICE_TV);
546 bReturn = true;
547 }
548
549 return bReturn;
550 }
551
552 bool CCECProcessor::SetHDMIPort(cec_logical_address iBaseDevice, uint8_t iPort, bool bForce /* = false */)
553 {
554 bool bReturn(false);
555 CLockObject lock(m_mutex);
556
557 m_iBaseDevice = iBaseDevice;
558 m_iHDMIPort = iPort;
559 if (!m_bStarted && !bForce)
560 return true;
561
562 CLibCEC::AddLog(CEC_LOG_DEBUG, "setting HDMI port to %d on device %s (%d)", iPort, ToString(iBaseDevice), (int)iBaseDevice);
563
564 uint16_t iPhysicalAddress(0);
565 if (iBaseDevice > CECDEVICE_TV)
566 {
567 lock.Unlock();
568 iPhysicalAddress = m_busDevices[iBaseDevice]->GetPhysicalAddress();
569 lock.Lock();
570 }
571
572 if (iPhysicalAddress < 0xffff)
573 {
574 if (iPhysicalAddress == 0)
575 iPhysicalAddress += 0x1000 * iPort;
576 else if (iPhysicalAddress % 0x1000 == 0)
577 iPhysicalAddress += 0x100 * iPort;
578 else if (iPhysicalAddress % 0x100 == 0)
579 iPhysicalAddress += 0x10 * iPort;
580 else if (iPhysicalAddress % 0x10 == 0)
581 iPhysicalAddress += iPort;
582
583 bReturn = true;
584 }
585
586 if (!bReturn)
587 CLibCEC::AddLog(CEC_LOG_ERROR, "failed to set the physical address");
588 else
589 {
590 lock.Unlock();
591 SetPhysicalAddress(iPhysicalAddress);
592 }
593
594 return bReturn;
595 }
596
597 bool CCECProcessor::PhysicalAddressInUse(uint16_t iPhysicalAddress)
598 {
599 for (unsigned int iPtr = 0; iPtr < 15; iPtr++)
600 {
601 if (m_busDevices[iPtr]->GetPhysicalAddress(false) == iPhysicalAddress)
602 return true;
603 }
604 return false;
605 }
606
607 bool CCECProcessor::TransmitInactiveSource(void)
608 {
609 if (!IsRunning())
610 return false;
611
612 if (!m_logicalAddresses.IsEmpty() && m_busDevices[m_logicalAddresses.primary])
613 return m_busDevices[m_logicalAddresses.primary]->TransmitInactiveSource();
614 return false;
615 }
616
617 void CCECProcessor::LogOutput(const cec_command &data)
618 {
619 CStdString strTx;
620 strTx.Format("<< %02x", ((uint8_t)data.initiator << 4) + (uint8_t)data.destination);
621 if (data.opcode_set)
622 strTx.AppendFormat(":%02x", (uint8_t)data.opcode);
623
624 for (uint8_t iPtr = 0; iPtr < data.parameters.size; iPtr++)
625 strTx.AppendFormat(":%02x", data.parameters[iPtr]);
626 CLibCEC::AddLog(CEC_LOG_TRAFFIC, strTx.c_str());
627 }
628
629 bool CCECProcessor::SetLogicalAddress(cec_logical_address iLogicalAddress)
630 {
631 CLockObject lock(m_mutex);
632 if (m_logicalAddresses.primary != iLogicalAddress)
633 {
634 CLibCEC::AddLog(CEC_LOG_NOTICE, "<< setting primary logical address to %1x", iLogicalAddress);
635 m_logicalAddresses.primary = iLogicalAddress;
636 m_logicalAddresses.Set(iLogicalAddress);
637 return SetAckMask(m_logicalAddresses.AckMask());
638 }
639
640 return true;
641 }
642
643 bool CCECProcessor::SetMenuState(cec_menu_state state, bool bSendUpdate /* = true */)
644 {
645 for (uint8_t iPtr = 0; iPtr < 16; iPtr++)
646 {
647 if (m_logicalAddresses[iPtr])
648 m_busDevices[iPtr]->SetMenuState(state);
649 }
650
651 if (bSendUpdate)
652 m_busDevices[m_logicalAddresses.primary]->TransmitMenuState(CECDEVICE_TV);
653
654 return true;
655 }
656
657 bool CCECProcessor::SetPhysicalAddress(uint16_t iPhysicalAddress, bool bSendUpdate /* = true */)
658 {
659 bool bSendActiveView(false);
660 bool bReturn(false);
661 cec_logical_addresses sendUpdatesTo;
662
663 {
664 CLockObject lock(m_mutex);
665 if (!m_logicalAddresses.IsEmpty())
666 {
667 bool bWasActiveSource(false);
668 for (uint8_t iPtr = 0; iPtr < 15; iPtr++)
669 if (m_logicalAddresses[iPtr])
670 {
671 bWasActiveSource |= m_busDevices[iPtr]->IsActiveSource();
672 m_busDevices[iPtr]->SetInactiveSource();
673 m_busDevices[iPtr]->SetPhysicalAddress(iPhysicalAddress);
674 if (bSendUpdate)
675 sendUpdatesTo.Set((cec_logical_address)iPtr);
676 }
677
678 bSendActiveView = bWasActiveSource && bSendUpdate;
679 bReturn = true;
680 }
681 }
682
683 for (uint8_t iPtr = 0; iPtr < 15; iPtr++)
684 if (sendUpdatesTo[iPtr])
685 m_busDevices[iPtr]->TransmitPhysicalAddress();
686
687 if (bSendActiveView)
688 SetActiveView();
689
690 return bReturn;
691 }
692
693 bool CCECProcessor::SwitchMonitoring(bool bEnable)
694 {
695 CLibCEC::AddLog(CEC_LOG_NOTICE, "== %s monitoring mode ==", bEnable ? "enabling" : "disabling");
696
697 {
698 CLockObject lock(m_mutex);
699 m_bMonitor = bEnable;
700 }
701
702 if (bEnable)
703 return SetAckMask(0);
704 else
705 return SetAckMask(m_logicalAddresses.AckMask());
706 }
707
708 bool CCECProcessor::PollDevice(cec_logical_address iAddress)
709 {
710 if (iAddress != CECDEVICE_UNKNOWN && m_busDevices[iAddress])
711 {
712 return m_logicalAddresses.primary == CECDEVICE_UNKNOWN ?
713 m_busDevices[iAddress]->TransmitPoll(iAddress) :
714 m_busDevices[m_logicalAddresses.primary]->TransmitPoll(iAddress);
715 }
716 return false;
717 }
718
719 uint8_t CCECProcessor::VolumeUp(bool bSendRelease /* = true */)
720 {
721 uint8_t status = 0;
722 if (IsPresentDevice(CECDEVICE_AUDIOSYSTEM))
723 status = ((CCECAudioSystem *)m_busDevices[CECDEVICE_AUDIOSYSTEM])->VolumeUp(bSendRelease);
724
725 return status;
726 }
727
728 uint8_t CCECProcessor::VolumeDown(bool bSendRelease /* = true */)
729 {
730 uint8_t status = 0;
731 if (IsPresentDevice(CECDEVICE_AUDIOSYSTEM))
732 status = ((CCECAudioSystem *)m_busDevices[CECDEVICE_AUDIOSYSTEM])->VolumeDown(bSendRelease);
733
734 return status;
735 }
736
737 uint8_t CCECProcessor::MuteAudio(bool bSendRelease /* = true */)
738 {
739 uint8_t status = 0;
740 if (IsPresentDevice(CECDEVICE_AUDIOSYSTEM))
741 status = ((CCECAudioSystem *)m_busDevices[CECDEVICE_AUDIOSYSTEM])->MuteAudio(bSendRelease);
742
743 return status;
744 }
745
746 CCECBusDevice *CCECProcessor::GetDeviceByPhysicalAddress(uint16_t iPhysicalAddress, bool bRefresh /* = false */) const
747 {
748 if (m_busDevices[m_logicalAddresses.primary]->GetPhysicalAddress(false) == iPhysicalAddress)
749 return m_busDevices[m_logicalAddresses.primary];
750
751 CCECBusDevice *device = NULL;
752 for (unsigned int iPtr = 0; iPtr < 16; iPtr++)
753 {
754 if (m_busDevices[iPtr]->GetPhysicalAddress(bRefresh) == iPhysicalAddress)
755 {
756 device = m_busDevices[iPtr];
757 break;
758 }
759 }
760
761 return device;
762 }
763
764 CCECBusDevice *CCECProcessor::GetDeviceByType(cec_device_type type) const
765 {
766 CCECBusDevice *device = NULL;
767
768 for (uint8_t iPtr = 0; iPtr < 16; iPtr++)
769 {
770 if (m_busDevices[iPtr]->m_type == type && m_logicalAddresses[iPtr])
771 {
772 device = m_busDevices[iPtr];
773 break;
774 }
775 }
776
777 return device;
778 }
779
780 CCECBusDevice *CCECProcessor::GetPrimaryDevice(void) const
781 {
782 CCECBusDevice *device(NULL);
783 cec_logical_address primary = m_logicalAddresses.primary;
784 if (primary != CECDEVICE_UNKNOWN)
785 device = m_busDevices[primary];
786 return device;
787 }
788
789 cec_version CCECProcessor::GetDeviceCecVersion(cec_logical_address iAddress)
790 {
791 return m_busDevices[iAddress]->GetCecVersion();
792 }
793
794 cec_osd_name CCECProcessor::GetDeviceOSDName(cec_logical_address iAddress)
795 {
796 CStdString strOSDName = m_busDevices[iAddress]->GetOSDName();
797 cec_osd_name retVal;
798
799 snprintf(retVal.name, sizeof(retVal.name), "%s", strOSDName.c_str());
800 retVal.device = iAddress;
801
802 return retVal;
803 }
804
805 bool CCECProcessor::GetDeviceMenuLanguage(cec_logical_address iAddress, cec_menu_language *language)
806 {
807 if (m_busDevices[iAddress])
808 {
809 *language = m_busDevices[iAddress]->GetMenuLanguage();
810 return (strcmp(language->language, "???") != 0);
811 }
812 return false;
813 }
814
815 uint64_t CCECProcessor::GetDeviceVendorId(cec_logical_address iAddress)
816 {
817 if (m_busDevices[iAddress])
818 return m_busDevices[iAddress]->GetVendorId();
819 return false;
820 }
821
822 uint16_t CCECProcessor::GetDevicePhysicalAddress(cec_logical_address iAddress)
823 {
824 if (m_busDevices[iAddress])
825 return m_busDevices[iAddress]->GetPhysicalAddress(false);
826 return false;
827 }
828
829 cec_power_status CCECProcessor::GetDevicePowerStatus(cec_logical_address iAddress)
830 {
831 if (m_busDevices[iAddress])
832 return m_busDevices[iAddress]->GetPowerStatus();
833 return CEC_POWER_STATUS_UNKNOWN;
834 }
835
836 cec_logical_address CCECProcessor::GetActiveSource(void)
837 {
838 for (uint8_t iPtr = 0; iPtr <= 11; iPtr++)
839 {
840 if (m_busDevices[iPtr]->IsActiveSource())
841 return (cec_logical_address)iPtr;
842 }
843
844 return CECDEVICE_UNKNOWN;
845 }
846
847 bool CCECProcessor::IsActiveSource(cec_logical_address iAddress)
848 {
849 return m_busDevices[iAddress]->IsActiveSource();
850 }
851
852 bool CCECProcessor::Transmit(const cec_command &data)
853 {
854 cec_adapter_message_state retVal(ADAPTER_MESSAGE_STATE_UNKNOWN);
855 {
856 CLockObject lock(m_mutex);
857 LogOutput(data);
858 m_iLastTransmission = GetTimeMs();
859 if (!m_communication)
860 return false;
861 uint8_t iMaxTries = m_busDevices[data.initiator]->GetHandler()->GetTransmitRetries() + 1;
862 retVal = m_communication->Write(data, iMaxTries, m_iLineTimeout, m_iRetryLineTimeout);
863 }
864
865 /* set to "not present" on failed ack */
866 if (retVal == ADAPTER_MESSAGE_STATE_SENT_NOT_ACKED &&
867 data.destination != CECDEVICE_BROADCAST)
868 m_busDevices[data.destination]->SetDeviceStatus(CEC_DEVICE_STATUS_NOT_PRESENT);
869
870 return retVal == ADAPTER_MESSAGE_STATE_SENT_ACKED;
871 }
872
873 void CCECProcessor::TransmitAbort(cec_logical_address address, cec_opcode opcode, cec_abort_reason reason /* = CEC_ABORT_REASON_UNRECOGNIZED_OPCODE */)
874 {
875 CLibCEC::AddLog(CEC_LOG_DEBUG, "<< transmitting abort message");
876
877 cec_command command;
878 // TODO
879 cec_command::Format(command, m_logicalAddresses.primary, address, CEC_OPCODE_FEATURE_ABORT);
880 command.parameters.PushBack((uint8_t)opcode);
881 command.parameters.PushBack((uint8_t)reason);
882
883 Transmit(command);
884 }
885
886 void CCECProcessor::ParseCommand(cec_command &command)
887 {
888 CStdString dataStr;
889 dataStr.Format(">> %1x%1x:%02x", command.initiator, command.destination, command.opcode);
890 for (uint8_t iPtr = 0; iPtr < command.parameters.size; iPtr++)
891 dataStr.AppendFormat(":%02x", (unsigned int)command.parameters[iPtr]);
892 CLibCEC::AddLog(CEC_LOG_TRAFFIC, dataStr.c_str());
893
894 if (!m_bMonitor && command.initiator >= CECDEVICE_TV && command.initiator <= CECDEVICE_BROADCAST)
895 m_busDevices[(uint8_t)command.initiator]->HandleCommand(command);
896 }
897
898 cec_logical_addresses CCECProcessor::GetActiveDevices(void)
899 {
900 cec_logical_addresses addresses;
901 addresses.Clear();
902 for (unsigned int iPtr = 0; iPtr < 15; iPtr++)
903 {
904 if (m_busDevices[iPtr]->GetStatus() == CEC_DEVICE_STATUS_PRESENT)
905 addresses.Set((cec_logical_address) iPtr);
906 }
907 return addresses;
908 }
909
910 bool CCECProcessor::IsPresentDevice(cec_logical_address address)
911 {
912 return m_busDevices[address]->GetStatus() == CEC_DEVICE_STATUS_PRESENT;
913 }
914
915 bool CCECProcessor::IsPresentDeviceType(cec_device_type type)
916 {
917 for (unsigned int iPtr = 0; iPtr < 15; iPtr++)
918 {
919 if (m_busDevices[iPtr]->GetType() == type && m_busDevices[iPtr]->GetStatus() == CEC_DEVICE_STATUS_PRESENT)
920 return true;
921 }
922
923 return false;
924 }
925
926 uint16_t CCECProcessor::GetPhysicalAddress(void) const
927 {
928 if (!m_logicalAddresses.IsEmpty() && m_busDevices[m_logicalAddresses.primary])
929 return m_busDevices[m_logicalAddresses.primary]->GetPhysicalAddress(false);
930 return false;
931 }
932
933 bool CCECProcessor::SetAckMask(uint16_t iMask)
934 {
935 return m_communication->SetAckMask(iMask);
936 }
937
938 bool CCECProcessor::TransmitKeypress(cec_logical_address iDestination, cec_user_control_code key, bool bWait /* = true */)
939 {
940 return m_busDevices[iDestination]->TransmitKeypress(key, bWait);
941 }
942
943 bool CCECProcessor::TransmitKeyRelease(cec_logical_address iDestination, bool bWait /* = true */)
944 {
945 return m_busDevices[iDestination]->TransmitKeyRelease(bWait);
946 }
947
948 const char *CCECProcessor::ToString(const cec_device_type type)
949 {
950 switch (type)
951 {
952 case CEC_DEVICE_TYPE_AUDIO_SYSTEM:
953 return "audio system";
954 case CEC_DEVICE_TYPE_PLAYBACK_DEVICE:
955 return "playback device";
956 case CEC_DEVICE_TYPE_RECORDING_DEVICE:
957 return "recording device";
958 case CEC_DEVICE_TYPE_RESERVED:
959 return "reserved";
960 case CEC_DEVICE_TYPE_TUNER:
961 return "tuner";
962 case CEC_DEVICE_TYPE_TV:
963 return "TV";
964 default:
965 return "unknown";
966 }
967 }
968
969 const char *CCECProcessor::ToString(const cec_menu_state state)
970 {
971 switch (state)
972 {
973 case CEC_MENU_STATE_ACTIVATED:
974 return "activated";
975 case CEC_MENU_STATE_DEACTIVATED:
976 return "deactivated";
977 default:
978 return "unknown";
979 }
980 }
981
982 const char *CCECProcessor::ToString(const cec_version version)
983 {
984 switch (version)
985 {
986 case CEC_VERSION_1_2:
987 return "1.2";
988 case CEC_VERSION_1_2A:
989 return "1.2a";
990 case CEC_VERSION_1_3:
991 return "1.3";
992 case CEC_VERSION_1_3A:
993 return "1.3a";
994 case CEC_VERSION_1_4:
995 return "1.4";
996 default:
997 return "unknown";
998 }
999 }
1000
1001 const char *CCECProcessor::ToString(const cec_power_status status)
1002 {
1003 switch (status)
1004 {
1005 case CEC_POWER_STATUS_ON:
1006 return "on";
1007 case CEC_POWER_STATUS_STANDBY:
1008 return "standby";
1009 case CEC_POWER_STATUS_IN_TRANSITION_ON_TO_STANDBY:
1010 return "in transition from on to standby";
1011 case CEC_POWER_STATUS_IN_TRANSITION_STANDBY_TO_ON:
1012 return "in transition from standby to on";
1013 default:
1014 return "unknown";
1015 }
1016 }
1017
1018 const char *CCECProcessor::ToString(const cec_logical_address address)
1019 {
1020 switch(address)
1021 {
1022 case CECDEVICE_AUDIOSYSTEM:
1023 return "Audio";
1024 case CECDEVICE_BROADCAST:
1025 return "Broadcast";
1026 case CECDEVICE_FREEUSE:
1027 return "Free use";
1028 case CECDEVICE_PLAYBACKDEVICE1:
1029 return "Playback 1";
1030 case CECDEVICE_PLAYBACKDEVICE2:
1031 return "Playback 2";
1032 case CECDEVICE_PLAYBACKDEVICE3:
1033 return "Playback 3";
1034 case CECDEVICE_RECORDINGDEVICE1:
1035 return "Recorder 1";
1036 case CECDEVICE_RECORDINGDEVICE2:
1037 return "Recorder 2";
1038 case CECDEVICE_RECORDINGDEVICE3:
1039 return "Recorder 3";
1040 case CECDEVICE_RESERVED1:
1041 return "Reserved 1";
1042 case CECDEVICE_RESERVED2:
1043 return "Reserved 2";
1044 case CECDEVICE_TUNER1:
1045 return "Tuner 1";
1046 case CECDEVICE_TUNER2:
1047 return "Tuner 2";
1048 case CECDEVICE_TUNER3:
1049 return "Tuner 3";
1050 case CECDEVICE_TUNER4:
1051 return "Tuner 4";
1052 case CECDEVICE_TV:
1053 return "TV";
1054 default:
1055 return "unknown";
1056 }
1057 }
1058
1059 const char *CCECProcessor::ToString(const cec_deck_control_mode mode)
1060 {
1061 switch (mode)
1062 {
1063 case CEC_DECK_CONTROL_MODE_SKIP_FORWARD_WIND:
1064 return "skip forward wind";
1065 case CEC_DECK_CONTROL_MODE_EJECT:
1066 return "eject";
1067 case CEC_DECK_CONTROL_MODE_SKIP_REVERSE_REWIND:
1068 return "reverse rewind";
1069 case CEC_DECK_CONTROL_MODE_STOP:
1070 return "stop";
1071 default:
1072 return "unknown";
1073 }
1074 }
1075
1076 const char *CCECProcessor::ToString(const cec_deck_info status)
1077 {
1078 switch (status)
1079 {
1080 case CEC_DECK_INFO_PLAY:
1081 return "play";
1082 case CEC_DECK_INFO_RECORD:
1083 return "record";
1084 case CEC_DECK_INFO_PLAY_REVERSE:
1085 return "play reverse";
1086 case CEC_DECK_INFO_STILL:
1087 return "still";
1088 case CEC_DECK_INFO_SLOW:
1089 return "slow";
1090 case CEC_DECK_INFO_SLOW_REVERSE:
1091 return "slow reverse";
1092 case CEC_DECK_INFO_FAST_FORWARD:
1093 return "fast forward";
1094 case CEC_DECK_INFO_FAST_REVERSE:
1095 return "fast reverse";
1096 case CEC_DECK_INFO_NO_MEDIA:
1097 return "no media";
1098 case CEC_DECK_INFO_STOP:
1099 return "stop";
1100 case CEC_DECK_INFO_SKIP_FORWARD_WIND:
1101 return "info skip forward wind";
1102 case CEC_DECK_INFO_SKIP_REVERSE_REWIND:
1103 return "info skip reverse rewind";
1104 case CEC_DECK_INFO_INDEX_SEARCH_FORWARD:
1105 return "info index search forward";
1106 case CEC_DECK_INFO_INDEX_SEARCH_REVERSE:
1107 return "info index search reverse";
1108 case CEC_DECK_INFO_OTHER_STATUS:
1109 return "other";
1110 default:
1111 return "unknown";
1112 }
1113 }
1114
1115 const char *CCECProcessor::ToString(const cec_opcode opcode)
1116 {
1117 switch (opcode)
1118 {
1119 case CEC_OPCODE_ACTIVE_SOURCE:
1120 return "active source";
1121 case CEC_OPCODE_IMAGE_VIEW_ON:
1122 return "image view on";
1123 case CEC_OPCODE_TEXT_VIEW_ON:
1124 return "text view on";
1125 case CEC_OPCODE_INACTIVE_SOURCE:
1126 return "inactive source";
1127 case CEC_OPCODE_REQUEST_ACTIVE_SOURCE:
1128 return "request active source";
1129 case CEC_OPCODE_ROUTING_CHANGE:
1130 return "routing change";
1131 case CEC_OPCODE_ROUTING_INFORMATION:
1132 return "routing information";
1133 case CEC_OPCODE_SET_STREAM_PATH:
1134 return "set stream path";
1135 case CEC_OPCODE_STANDBY:
1136 return "standby";
1137 case CEC_OPCODE_RECORD_OFF:
1138 return "record off";
1139 case CEC_OPCODE_RECORD_ON:
1140 return "record on";
1141 case CEC_OPCODE_RECORD_STATUS:
1142 return "record status";
1143 case CEC_OPCODE_RECORD_TV_SCREEN:
1144 return "record tv screen";
1145 case CEC_OPCODE_CLEAR_ANALOGUE_TIMER:
1146 return "clear analogue timer";
1147 case CEC_OPCODE_CLEAR_DIGITAL_TIMER:
1148 return "clear digital timer";
1149 case CEC_OPCODE_CLEAR_EXTERNAL_TIMER:
1150 return "clear external timer";
1151 case CEC_OPCODE_SET_ANALOGUE_TIMER:
1152 return "set analogue timer";
1153 case CEC_OPCODE_SET_DIGITAL_TIMER:
1154 return "set digital timer";
1155 case CEC_OPCODE_SET_EXTERNAL_TIMER:
1156 return "set external timer";
1157 case CEC_OPCODE_SET_TIMER_PROGRAM_TITLE:
1158 return "set timer program title";
1159 case CEC_OPCODE_TIMER_CLEARED_STATUS:
1160 return "timer cleared status";
1161 case CEC_OPCODE_TIMER_STATUS:
1162 return "timer status";
1163 case CEC_OPCODE_CEC_VERSION:
1164 return "cec version";
1165 case CEC_OPCODE_GET_CEC_VERSION:
1166 return "get cec version";
1167 case CEC_OPCODE_GIVE_PHYSICAL_ADDRESS:
1168 return "give physical address";
1169 case CEC_OPCODE_GET_MENU_LANGUAGE:
1170 return "get menu language";
1171 case CEC_OPCODE_REPORT_PHYSICAL_ADDRESS:
1172 return "report physical address";
1173 case CEC_OPCODE_SET_MENU_LANGUAGE:
1174 return "set menu language";
1175 case CEC_OPCODE_DECK_CONTROL:
1176 return "deck control";
1177 case CEC_OPCODE_DECK_STATUS:
1178 return "deck status";
1179 case CEC_OPCODE_GIVE_DECK_STATUS:
1180 return "give deck status";
1181 case CEC_OPCODE_PLAY:
1182 return "play";
1183 case CEC_OPCODE_GIVE_TUNER_DEVICE_STATUS:
1184 return "give tuner status";
1185 case CEC_OPCODE_SELECT_ANALOGUE_SERVICE:
1186 return "select analogue service";
1187 case CEC_OPCODE_SELECT_DIGITAL_SERVICE:
1188 return "set digital service";
1189 case CEC_OPCODE_TUNER_DEVICE_STATUS:
1190 return "tuner device status";
1191 case CEC_OPCODE_TUNER_STEP_DECREMENT:
1192 return "tuner step decrement";
1193 case CEC_OPCODE_TUNER_STEP_INCREMENT:
1194 return "tuner step increment";
1195 case CEC_OPCODE_DEVICE_VENDOR_ID:
1196 return "device vendor id";
1197 case CEC_OPCODE_GIVE_DEVICE_VENDOR_ID:
1198 return "give device vendor id";
1199 case CEC_OPCODE_VENDOR_COMMAND:
1200 return "vendor command";
1201 case CEC_OPCODE_VENDOR_COMMAND_WITH_ID:
1202 return "vendor command with id";
1203 case CEC_OPCODE_VENDOR_REMOTE_BUTTON_DOWN:
1204 return "vendor remote button down";
1205 case CEC_OPCODE_VENDOR_REMOTE_BUTTON_UP:
1206 return "vendor remote button up";
1207 case CEC_OPCODE_SET_OSD_STRING:
1208 return "set osd string";
1209 case CEC_OPCODE_GIVE_OSD_NAME:
1210 return "give osd name";
1211 case CEC_OPCODE_SET_OSD_NAME:
1212 return "set osd name";
1213 case CEC_OPCODE_MENU_REQUEST:
1214 return "menu request";
1215 case CEC_OPCODE_MENU_STATUS:
1216 return "menu status";
1217 case CEC_OPCODE_USER_CONTROL_PRESSED:
1218 return "user control pressed";
1219 case CEC_OPCODE_USER_CONTROL_RELEASE:
1220 return "user control release";
1221 case CEC_OPCODE_GIVE_DEVICE_POWER_STATUS:
1222 return "give device power status";
1223 case CEC_OPCODE_REPORT_POWER_STATUS:
1224 return "report power status";
1225 case CEC_OPCODE_FEATURE_ABORT:
1226 return "feature abort";
1227 case CEC_OPCODE_ABORT:
1228 return "abort";
1229 case CEC_OPCODE_GIVE_AUDIO_STATUS:
1230 return "give audio status";
1231 case CEC_OPCODE_GIVE_SYSTEM_AUDIO_MODE_STATUS:
1232 return "give audio mode status";
1233 case CEC_OPCODE_REPORT_AUDIO_STATUS:
1234 return "report audio status";
1235 case CEC_OPCODE_SET_SYSTEM_AUDIO_MODE:
1236 return "set system audio mode";
1237 case CEC_OPCODE_SYSTEM_AUDIO_MODE_REQUEST:
1238 return "system audio mode request";
1239 case CEC_OPCODE_SYSTEM_AUDIO_MODE_STATUS:
1240 return "system audio mode status";
1241 case CEC_OPCODE_SET_AUDIO_RATE:
1242 return "set audio rate";
1243 default:
1244 return "UNKNOWN";
1245 }
1246 }
1247
1248 const char *CCECProcessor::ToString(const cec_system_audio_status mode)
1249 {
1250 switch(mode)
1251 {
1252 case CEC_SYSTEM_AUDIO_STATUS_ON:
1253 return "on";
1254 case CEC_SYSTEM_AUDIO_STATUS_OFF:
1255 return "off";
1256 default:
1257 return "unknown";
1258 }
1259 }
1260
1261 const char *CCECProcessor::ToString(const cec_audio_status UNUSED(status))
1262 {
1263 // TODO this is a mask
1264 return "TODO";
1265 }
1266
1267 const char *CCECProcessor::ToString(const cec_vendor_id vendor)
1268 {
1269 switch (vendor)
1270 {
1271 case CEC_VENDOR_SAMSUNG:
1272 return "Samsung";
1273 case CEC_VENDOR_LG:
1274 return "LG";
1275 case CEC_VENDOR_PANASONIC:
1276 return "Panasonic";
1277 case CEC_VENDOR_PIONEER:
1278 return "Pioneer";
1279 case CEC_VENDOR_ONKYO:
1280 return "Onkyo";
1281 case CEC_VENDOR_YAMAHA:
1282 return "Yamaha";
1283 case CEC_VENDOR_PHILIPS:
1284 return "Philips";
1285 case CEC_VENDOR_SONY:
1286 return "Sony";
1287 default:
1288 return "Unknown";
1289 }
1290 }
1291
1292 void *CCECBusScan::Process(void)
1293 {
1294 CCECBusDevice *device(NULL);
1295 uint8_t iCounter(0);
1296
1297 while (!IsStopped())
1298 {
1299 if (++iCounter < 10)
1300 {
1301 Sleep(1000);
1302 continue;
1303 }
1304 for (unsigned int iPtr = 0; iPtr <= 11 && !IsStopped(); iPtr++)
1305 {
1306 device = m_processor->m_busDevices[iPtr];
1307 WaitUntilIdle();
1308 if (device && device->GetStatus(true) == CEC_DEVICE_STATUS_PRESENT)
1309 {
1310 WaitUntilIdle();
1311 if (!IsStopped())
1312 device->GetVendorId();
1313
1314 WaitUntilIdle();
1315 if (!IsStopped())
1316 device->GetPowerStatus(true);
1317 }
1318 }
1319 }
1320
1321 return NULL;
1322 }
1323
1324 void CCECBusScan::WaitUntilIdle(void)
1325 {
1326 if (IsStopped())
1327 return;
1328
1329 int32_t iWaitTime = 3000 - (int32_t)(GetTimeMs() - m_processor->GetLastTransmission());
1330 while (iWaitTime > 0)
1331 {
1332 Sleep(iWaitTime);
1333 iWaitTime = 3000 - (int32_t)(GetTimeMs() - m_processor->GetLastTransmission());
1334 }
1335 }
1336
1337 bool CCECProcessor::StartBootloader(void)
1338 {
1339 return m_communication->StartBootloader();
1340 }
1341
1342 bool CCECProcessor::PingAdapter(void)
1343 {
1344 return m_communication->PingAdapter();
1345 }
1346
1347 void CCECProcessor::HandlePoll(cec_logical_address initiator, cec_logical_address destination)
1348 {
1349 m_busDevices[initiator]->GetHandler()->HandlePoll(initiator, destination);
1350 }
1351
1352 bool CCECProcessor::HandleReceiveFailed(cec_logical_address initiator)
1353 {
1354 return !m_busDevices[initiator]->GetHandler()->HandleReceiveFailed();
1355 }