added a callback for clients that is called when a source is (de)activated, so the...
[deb_libcec.git] / src / lib / CECClient.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 "CECClient.h"
34 #include "CECProcessor.h"
35 #include "LibCEC.h"
36 #include "CECTypeUtils.h"
37 #include "devices/CECPlaybackDevice.h"
38 #include "devices/CECAudioSystem.h"
39 #include "devices/CECTV.h"
40 #include "implementations/CECCommandHandler.h"
41
42 using namespace CEC;
43 using namespace PLATFORM;
44
45 #define LIB_CEC m_processor->GetLib()
46 #define ToString(x) CCECTypeUtils::ToString(x)
47
48 CCECClient::CCECClient(CCECProcessor *processor, const libcec_configuration &configuration) :
49 m_processor(processor),
50 m_bInitialised(false),
51 m_bRegistered(false),
52 m_iCurrentButton(CEC_USER_CONTROL_CODE_UNKNOWN),
53 m_buttontime(0)
54 {
55 // set the initial configuration
56 SetConfiguration(configuration);
57 }
58
59 CCECClient::~CCECClient(void)
60 {
61 // unregister the client
62 if (m_processor && IsRegistered())
63 m_processor->UnregisterClient(this);
64 }
65
66 bool CCECClient::IsInitialised(void)
67 {
68 CLockObject lock(m_mutex);
69 return m_bInitialised && m_processor;
70 }
71
72 void CCECClient::SetInitialised(bool bSetTo)
73 {
74 CLockObject lock(m_mutex);
75 m_bInitialised = bSetTo;
76 }
77
78 bool CCECClient::IsRegistered(void)
79 {
80 CLockObject lock(m_mutex);
81 return m_bRegistered && m_processor;
82 }
83
84 void CCECClient::SetRegistered(bool bSetTo)
85 {
86 CLockObject lock(m_mutex);
87 m_bRegistered = bSetTo;
88 }
89
90 bool CCECClient::OnRegister(void)
91 {
92 // return false if already initialised
93 if (IsInitialised())
94 return true;
95
96 // get all device we control
97 CECDEVICEVEC devices;
98 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
99
100 // return false when no devices were found
101 if (devices.empty())
102 {
103 LIB_CEC->AddLog(CEC_LOG_WARNING, "cannot find the primary device (logical address %x)", GetPrimaryLogicalAdddress());
104 return false;
105 }
106
107 // mark as initialised
108 SetInitialised(true);
109
110 // configure all devices
111 for (CECDEVICEVEC::iterator it = devices.begin(); it != devices.end(); it++)
112 {
113 // only set our OSD name for the primary device
114 if ((*it)->GetLogicalAddress() == GetPrimaryLogicalAdddress())
115 (*it)->SetOSDName(m_configuration.strDeviceName);
116
117 // set the default menu language for devices we control
118 (*it)->SetMenuLanguage(m_configuration.strDeviceLanguage);
119 }
120
121 // set the physical address
122 SetPhysicalAddress(m_configuration);
123
124 // make the primary device the active source if the option is set
125 if (m_configuration.bActivateSource == 1)
126 GetPrimaryDevice()->ActivateSource();
127
128 return true;
129 }
130
131 bool CCECClient::SetHDMIPort(const cec_logical_address iBaseDevice, const uint8_t iPort, bool bForce /* = false */)
132 {
133 bool bReturn(false);
134
135 // limit the HDMI port range to 1-15
136 if (iPort < CEC_MIN_HDMI_PORTNUMBER ||
137 iPort > CEC_MAX_HDMI_PORTNUMBER)
138 return bReturn;
139
140 LIB_CEC->AddLog(CEC_LOG_DEBUG, "setting HDMI port to %d on device %s (%d)", iPort, ToString(iBaseDevice), (int)iBaseDevice);
141
142 // update the configuration
143 {
144 CLockObject lock(m_mutex);
145 m_configuration.baseDevice = iBaseDevice;
146 m_configuration.iHDMIPort = iPort;
147 }
148
149 // don't continue if the connection isn't opened
150 if (!m_processor->CECInitialised() && !bForce)
151 return true;
152
153 // get the PA of the base device
154 uint16_t iPhysicalAddress(CEC_INVALID_PHYSICAL_ADDRESS);
155 CCECBusDevice *baseDevice = m_processor->GetDevice(iBaseDevice);
156 if (baseDevice)
157 iPhysicalAddress = baseDevice->GetPhysicalAddress(GetPrimaryLogicalAdddress());
158
159 // add our port number
160 if (iPhysicalAddress <= CEC_MAX_PHYSICAL_ADDRESS)
161 {
162 if (iPhysicalAddress == 0)
163 iPhysicalAddress += 0x1000 * iPort;
164 else if (iPhysicalAddress % 0x1000 == 0)
165 iPhysicalAddress += 0x100 * iPort;
166 else if (iPhysicalAddress % 0x100 == 0)
167 iPhysicalAddress += 0x10 * iPort;
168 else if (iPhysicalAddress % 0x10 == 0)
169 iPhysicalAddress += iPort;
170
171 bReturn = true;
172 }
173
174 // set the default address when something went wrong
175 if (!bReturn)
176 {
177 LIB_CEC->AddLog(CEC_LOG_WARNING, "failed to set the physical address to %04X, setting it to the default value %04X", iPhysicalAddress, CEC_DEFAULT_PHYSICAL_ADDRESS);
178 iPhysicalAddress = CEC_DEFAULT_PHYSICAL_ADDRESS;
179 }
180
181 // and set the address
182 SetDevicePhysicalAddress(iPhysicalAddress);
183
184 ConfigurationChanged(m_configuration);
185
186 return bReturn;
187 }
188
189 void CCECClient::ResetPhysicalAddress(void)
190 {
191 SetPhysicalAddress(m_configuration);
192 }
193
194 void CCECClient::SetPhysicalAddress(const libcec_configuration &configuration)
195 {
196 bool bPASet(false);
197
198 // override the physical address from configuration.iPhysicalAddress if it's set
199 if (!bPASet && CLibCEC::IsValidPhysicalAddress(configuration.iPhysicalAddress))
200 bPASet = SetPhysicalAddress(configuration.iPhysicalAddress);
201
202 // try to autodetect the address
203 if (!bPASet && m_processor->CECInitialised())
204 {
205 bPASet = AutodetectPhysicalAddress();
206 m_configuration.bAutodetectAddress = bPASet ? 1 : 0;
207 }
208
209 // use the base device + hdmi port settings
210 if (!bPASet)
211 bPASet = SetHDMIPort(configuration.baseDevice, configuration.iHDMIPort);
212
213 // reset to defaults if something went wrong
214 if (!bPASet)
215 {
216 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - resetting HDMI port and base device to defaults", __FUNCTION__);
217 m_configuration.baseDevice = CECDEVICE_UNKNOWN;
218 m_configuration.iHDMIPort = CEC_HDMI_PORTNUMBER_NONE;
219 }
220 }
221
222 bool CCECClient::SetPhysicalAddress(const uint16_t iPhysicalAddress)
223 {
224 // update the configuration
225 {
226 CLockObject lock(m_mutex);
227 if (m_configuration.iPhysicalAddress == iPhysicalAddress)
228 {
229 LIB_CEC->AddLog(CEC_LOG_DEBUG, "physical address unchanged (%04X)", iPhysicalAddress);
230 return true;
231 }
232 else
233 {
234 m_configuration.iPhysicalAddress = iPhysicalAddress;
235 LIB_CEC->AddLog(CEC_LOG_DEBUG, "setting physical address to '%04X'", iPhysicalAddress);
236 }
237 }
238
239 // persist the new configuration
240 m_processor->PersistConfiguration(m_configuration);
241
242 // set the physical address for each device
243 SetDevicePhysicalAddress(iPhysicalAddress);
244
245 // and send back the updated configuration
246 ConfigurationChanged(m_configuration);
247
248 return true;
249 }
250
251 void CCECClient::SetSupportedDeviceTypes(void)
252 {
253 cec_device_type_list types;
254 types.Clear();
255
256 // get the command handler for the tv
257 CCECCommandHandler *tvHandler = m_processor->GetTV()->GetHandler();
258 if (!tvHandler)
259 return;
260
261 // check all device types
262 for (uint8_t iPtr = 0; iPtr < 5; iPtr++)
263 {
264 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
265 continue;
266
267 // get the supported device type. the handler will replace types it doesn't support by one it does support
268 cec_device_type type = tvHandler->GetReplacementDeviceType(m_configuration.deviceTypes.types[iPtr]);
269 if (!types.IsSet(type))
270 types.Add(type);
271 }
272 m_processor->GetTV()->MarkHandlerReady();
273
274 // set the new type list
275 m_configuration.deviceTypes = types;
276 }
277
278 bool CCECClient::AllocateLogicalAddresses(void)
279 {
280 // reset all previous LAs that were set
281 m_configuration.logicalAddresses.Clear();
282
283 // get the supported device types from the command handler of the TV
284 SetSupportedDeviceTypes();
285
286 // display an error if no device types are set
287 if (m_configuration.deviceTypes.IsEmpty())
288 {
289 LIB_CEC->AddLog(CEC_LOG_ERROR, "no device types given");
290 return false;
291 }
292
293 // check each entry of the list
294 for (uint8_t iPtr = 0; iPtr < 5; iPtr++)
295 {
296 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
297 continue;
298
299 // find an LA for this type
300 cec_logical_address address(CECDEVICE_UNKNOWN);
301 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_RECORDING_DEVICE)
302 address = AllocateLogicalAddressRecordingDevice();
303 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_TUNER)
304 address = AllocateLogicalAddressTuner();
305 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_PLAYBACK_DEVICE)
306 address = AllocateLogicalAddressPlaybackDevice();
307 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_AUDIO_SYSTEM)
308 address = AllocateLogicalAddressAudioSystem();
309
310 // display an error if no LA could be allocated
311 if (address == CECDEVICE_UNKNOWN)
312 {
313 LIB_CEC->AddLog(CEC_LOG_ERROR, "%s - failed to allocate device '%d', type '%s'", __FUNCTION__, iPtr, ToString(m_configuration.deviceTypes.types[iPtr]));
314 return false;
315 }
316
317 // display the registered LA
318 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - device '%d', type '%s', LA '%X'", __FUNCTION__, iPtr, ToString(m_configuration.deviceTypes.types[iPtr]), address);
319 m_configuration.logicalAddresses.Set(address);
320 }
321
322 return true;
323 }
324
325 cec_logical_address CCECClient::AllocateLogicalAddressRecordingDevice(void)
326 {
327 cec_logical_address retVal(CECDEVICE_UNKNOWN);
328
329 LIB_CEC->AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'recording device'");
330 if (m_processor->TryLogicalAddress(CECDEVICE_RECORDINGDEVICE1))
331 retVal = CECDEVICE_RECORDINGDEVICE1;
332 else if (m_processor->TryLogicalAddress(CECDEVICE_RECORDINGDEVICE2))
333 retVal = CECDEVICE_RECORDINGDEVICE2;
334 else if (m_processor->TryLogicalAddress(CECDEVICE_RECORDINGDEVICE3))
335 retVal = CECDEVICE_RECORDINGDEVICE3;
336
337 return retVal;
338 }
339
340 cec_logical_address CCECClient::AllocateLogicalAddressTuner(void)
341 {
342 cec_logical_address retVal(CECDEVICE_UNKNOWN);
343
344 LIB_CEC->AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'tuner'");
345 if (m_processor->TryLogicalAddress(CECDEVICE_TUNER1))
346 retVal = CECDEVICE_TUNER1;
347 else if (m_processor->TryLogicalAddress(CECDEVICE_TUNER2))
348 retVal = CECDEVICE_TUNER2;
349 else if (m_processor->TryLogicalAddress(CECDEVICE_TUNER3))
350 retVal = CECDEVICE_TUNER3;
351 else if (m_processor->TryLogicalAddress(CECDEVICE_TUNER4))
352 retVal = CECDEVICE_TUNER4;
353
354 return retVal;
355 }
356
357 cec_logical_address CCECClient::AllocateLogicalAddressPlaybackDevice(void)
358 {
359 cec_logical_address retVal(CECDEVICE_UNKNOWN);
360
361 LIB_CEC->AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'playback device'");
362 if (m_processor->TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE1))
363 retVal = CECDEVICE_PLAYBACKDEVICE1;
364 else if (m_processor->TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE2))
365 retVal = CECDEVICE_PLAYBACKDEVICE2;
366 else if (m_processor->TryLogicalAddress(CECDEVICE_PLAYBACKDEVICE3))
367 retVal = CECDEVICE_PLAYBACKDEVICE3;
368
369 return retVal;
370 }
371
372 cec_logical_address CCECClient::AllocateLogicalAddressAudioSystem(void)
373 {
374 cec_logical_address retVal(CECDEVICE_UNKNOWN);
375
376 LIB_CEC->AddLog(CEC_LOG_DEBUG, "detecting logical address for type 'audiosystem'");
377 if (m_processor->TryLogicalAddress(CECDEVICE_AUDIOSYSTEM))
378 retVal = CECDEVICE_AUDIOSYSTEM;
379
380 return retVal;
381 }
382
383 CCECBusDevice *CCECClient::GetDeviceByType(const cec_device_type type) const
384 {
385 // get all devices that match our logical addresses
386 CECDEVICEVEC devices;
387 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
388
389 // filter the type we need
390 CCECDeviceMap::FilterType(type, devices);
391
392 return devices.empty() ?
393 NULL :
394 *devices.begin();
395 }
396
397 bool CCECClient::ChangeDeviceType(const cec_device_type from, const cec_device_type to)
398 {
399 LIB_CEC->AddLog(CEC_LOG_NOTICE, "changing device type '%s' into '%s'", ToString(from), ToString(to));
400
401 CLockObject lock(m_mutex);
402
403 // get the previous device that was allocated
404 CCECBusDevice *previousDevice = GetDeviceByType(from);
405 if (!previousDevice)
406 return false;
407
408 // change the type in the device type list
409 bool bChanged(false);
410 for (uint8_t iPtr = 0; iPtr < 5; iPtr++)
411 {
412 if (m_configuration.deviceTypes.types[iPtr] == CEC_DEVICE_TYPE_RESERVED)
413 continue;
414
415 if (m_configuration.deviceTypes.types[iPtr] == from)
416 {
417 bChanged = true;
418 m_configuration.deviceTypes.types[iPtr] = to;
419 }
420 else if (m_configuration.deviceTypes.types[iPtr] == to && bChanged)
421 {
422 // ensure that dupes are removed
423 m_configuration.deviceTypes.types[iPtr] = CEC_DEVICE_TYPE_RESERVED;
424 }
425 }
426
427 // re-register the client to set the new ackmask
428 if (!m_processor->RegisterClient(this))
429 return false;
430
431 return true;
432 }
433
434 bool CCECClient::SetLogicalAddress(const cec_logical_address iLogicalAddress)
435 {
436 CLockObject lock(m_mutex);
437 if (GetPrimaryLogicalAdddress() != iLogicalAddress)
438 {
439 {
440 CLockObject lock(m_mutex);
441 LIB_CEC->AddLog(CEC_LOG_NOTICE, "<< setting primary logical address to %1x", iLogicalAddress);
442 m_configuration.logicalAddresses.primary = iLogicalAddress;
443 m_configuration.logicalAddresses.Set(iLogicalAddress);
444 }
445 return m_processor->RegisterClient(this);
446 }
447
448 return true;
449 }
450
451 bool CCECClient::Transmit(const cec_command &data)
452 {
453 return m_processor ? m_processor->Transmit(data) : false;
454 }
455
456 bool CCECClient::SendPowerOnDevices(const cec_logical_address address /* = CECDEVICE_TV */)
457 {
458 // if the broadcast address if set as destination and the client version >=1.5.0, read the wakeDevices setting
459 if (address == CECDEVICE_BROADCAST && m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_0)
460 {
461 CECDEVICEVEC devices;
462 m_processor->GetDevices()->GetWakeDevices(m_configuration, devices);
463 return m_processor->PowerOnDevices(GetPrimaryLogicalAdddress(), devices);
464 }
465
466 return m_processor->PowerOnDevice(GetPrimaryLogicalAdddress(), address);
467 }
468
469 bool CCECClient::SendStandbyDevices(const cec_logical_address address /* = CECDEVICE_BROADCAST */)
470 {
471 // if the broadcast address if set as destination and the client version >=1.5.0, read the standbyDevices setting
472 if (address == CECDEVICE_BROADCAST && m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_0)
473 {
474 CECDEVICEVEC devices;
475 m_processor->GetDevices()->GetPowerOffDevices(m_configuration, devices);
476 return m_processor->StandbyDevices(GetPrimaryLogicalAdddress(), devices);
477 }
478
479 return m_processor->StandbyDevice(GetPrimaryLogicalAdddress(), address);
480 }
481
482 bool CCECClient::SendSetActiveSource(const cec_device_type type /* = CEC_DEVICE_TYPE_RESERVED */)
483 {
484 // get the devices that are controlled by us
485 CECDEVICEVEC devices;
486 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
487
488 // filter out the device that matches the given type
489 if (type != CEC_DEVICE_TYPE_RESERVED)
490 CCECDeviceMap::FilterType(type, devices);
491
492 // no devices left, re-fetch the list of devices that are controlled by us
493 if (devices.empty())
494 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
495
496 if (!devices.empty())
497 {
498 // get the first device from the list
499 CCECBusDevice *device = *devices.begin();
500
501 // and activate it
502 if (!m_processor->CECInitialised())
503 device->MarkAsActiveSource();
504 else if (device->HasValidPhysicalAddress())
505 return device->ActivateSource();
506 }
507
508 return false;
509 }
510
511 CCECPlaybackDevice *CCECClient::GetPlaybackDevice(void)
512 {
513 CCECPlaybackDevice *device(NULL);
514 CECDEVICEVEC devices;
515
516 // get the playback devices
517 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
518 CCECDeviceMap::FilterType(CEC_DEVICE_TYPE_PLAYBACK_DEVICE, devices);
519
520 // no matches, get the recording devices
521 if (devices.empty())
522 {
523 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
524 CCECDeviceMap::FilterType(CEC_DEVICE_TYPE_RECORDING_DEVICE, devices);
525 }
526
527 // get the first device that matches, and cast it to CCECPlaybackDevice
528 if (!devices.empty())
529 device = (*devices.begin())->AsPlaybackDevice();
530
531 return device;
532 }
533
534 cec_logical_address CCECClient::GetPrimaryLogicalAdddress(void)
535 {
536 CLockObject lock(m_mutex);
537 return m_configuration.logicalAddresses.primary;
538 }
539
540 CCECBusDevice *CCECClient::GetPrimaryDevice(void)
541 {
542 return m_processor->GetDevice(GetPrimaryLogicalAdddress());
543 }
544
545 bool CCECClient::SendSetDeckControlMode(const cec_deck_control_mode mode, bool bSendUpdate /* = true */)
546 {
547 // find a playback device that we control
548 CCECPlaybackDevice *device = GetPlaybackDevice();
549 if (device)
550 {
551 // and set the deck control mode if there is a match
552 device->SetDeckControlMode(mode);
553 if (bSendUpdate)
554 return device->TransmitDeckStatus(CECDEVICE_TV);
555 return true;
556 }
557
558 // no match
559 return false;
560 }
561
562 bool CCECClient::SendSetDeckInfo(const cec_deck_info info, bool bSendUpdate /* = true */)
563 {
564 // find a playback device that we control
565 CCECPlaybackDevice *device = GetPlaybackDevice();
566 if (device)
567 {
568 // and set the deck status if there is a match
569 device->SetDeckStatus(info);
570 if (bSendUpdate)
571 return device->AsPlaybackDevice()->TransmitDeckStatus(CECDEVICE_TV);
572 return true;
573 }
574
575 // no match
576 return false;
577 }
578
579 bool CCECClient::SendSetMenuState(const cec_menu_state state, bool bSendUpdate /* = true */)
580 {
581 CECDEVICEVEC devices;
582
583 // set the menu state for all devices that are controlled by us
584 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
585 for (CECDEVICEVEC::iterator it = devices.begin(); it != devices.end(); it++)
586 {
587 (*it)->SetMenuState(state);
588 if (bSendUpdate)
589 (*it)->TransmitMenuState(CECDEVICE_TV);
590 }
591
592 return true;
593 }
594
595 bool CCECClient::SendSetInactiveView(void)
596 {
597 CECDEVICEVEC devices;
598
599 // mark all devices that are controlled by us as inactive source
600 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
601 for (CECDEVICEVEC::iterator it = devices.begin(); it != devices.end(); it++)
602 {
603 if ((*it)->IsActiveSource())
604 {
605 (*it)->MarkAsInactiveSource();
606 return (*it)->TransmitInactiveSource();
607 }
608 }
609
610 return true;
611 }
612
613 bool CCECClient::SendSetOSDString(const cec_logical_address iLogicalAddress, const cec_display_control duration, const char *strMessage)
614 {
615 CCECBusDevice *primary = GetPrimaryDevice();
616 if (primary)
617 return primary->TransmitOSDString(iLogicalAddress, duration, strMessage);
618
619 return false;
620 }
621
622 cec_version CCECClient::GetDeviceCecVersion(const cec_logical_address iAddress)
623 {
624 CCECBusDevice *device = m_processor->GetDevice(iAddress);
625 if (device)
626 return device->GetCecVersion(GetPrimaryLogicalAdddress());
627 return CEC_VERSION_UNKNOWN;
628 }
629
630 bool CCECClient::GetDeviceMenuLanguage(const cec_logical_address iAddress, cec_menu_language &language)
631 {
632 CCECBusDevice *device = m_processor->GetDevice(iAddress);
633 if (device)
634 {
635 language = device->GetMenuLanguage(GetPrimaryLogicalAdddress());
636 return (strcmp(language.language, "???") != 0);
637 }
638 return false;
639 }
640
641 cec_osd_name CCECClient::GetDeviceOSDName(const cec_logical_address iAddress)
642 {
643 cec_osd_name retVal;
644 retVal.device = iAddress;
645 retVal.name[0] = 0;
646
647 CCECBusDevice *device = m_processor->GetDevice(iAddress);
648 if (device)
649 {
650 CStdString strOSDName = device->GetOSDName(GetPrimaryLogicalAdddress());
651 snprintf(retVal.name, sizeof(retVal.name), "%s", strOSDName.c_str());
652 retVal.device = iAddress;
653 }
654
655 return retVal;
656 }
657
658 uint16_t CCECClient::GetDevicePhysicalAddress(const cec_logical_address iAddress)
659 {
660 CCECBusDevice *device = m_processor->GetDevice(iAddress);
661 if (device)
662 return device->GetPhysicalAddress(GetPrimaryLogicalAdddress());
663 return CEC_INVALID_PHYSICAL_ADDRESS;
664 }
665
666 cec_power_status CCECClient::GetDevicePowerStatus(const cec_logical_address iAddress)
667 {
668 CCECBusDevice *device = m_processor->GetDevice(iAddress);
669 if (device)
670 return device->GetPowerStatus(GetPrimaryLogicalAdddress());
671 return CEC_POWER_STATUS_UNKNOWN;
672 }
673
674 uint64_t CCECClient::GetDeviceVendorId(const cec_logical_address iAddress)
675 {
676 CCECBusDevice *device = m_processor->GetDevice(iAddress);
677 if (device)
678 return device->GetVendorId(GetPrimaryLogicalAdddress());
679 return CEC_VENDOR_UNKNOWN;
680 }
681
682 uint8_t CCECClient::SendVolumeUp(bool bSendRelease /* = true */)
683 {
684 CCECBusDevice *device = GetPrimaryDevice();
685 CCECAudioSystem *audio = m_processor->GetAudioSystem();
686
687 return device && audio && audio->IsPresent() ?
688 audio->VolumeUp(device->GetLogicalAddress(), bSendRelease) :
689 (uint8_t)CEC_AUDIO_VOLUME_STATUS_UNKNOWN;
690 }
691
692 uint8_t CCECClient::SendVolumeDown(bool bSendRelease /* = true */)
693 {
694 CCECBusDevice *device = GetPrimaryDevice();
695 CCECAudioSystem *audio = m_processor->GetAudioSystem();
696
697 return device && audio && audio->IsPresent() ?
698 audio->VolumeDown(device->GetLogicalAddress(), bSendRelease) :
699 (uint8_t)CEC_AUDIO_VOLUME_STATUS_UNKNOWN;
700 }
701
702 uint8_t CCECClient::SendMuteAudio(void)
703 {
704 CCECBusDevice *device = GetPrimaryDevice();
705 CCECAudioSystem *audio = m_processor->GetAudioSystem();
706
707 return device && audio && audio->IsPresent() ?
708 audio->MuteAudio(device->GetLogicalAddress()) :
709 (uint8_t)CEC_AUDIO_VOLUME_STATUS_UNKNOWN;
710 }
711
712 bool CCECClient::SendKeypress(const cec_logical_address iDestination, const cec_user_control_code key, bool bWait /* = true */)
713 {
714 CCECBusDevice *dest = m_processor->GetDevice(iDestination);
715
716 return dest ?
717 dest->TransmitKeypress(GetPrimaryLogicalAdddress(), key, bWait) :
718 false;
719 }
720
721 bool CCECClient::SendKeyRelease(const cec_logical_address iDestination, bool bWait /* = true */)
722 {
723 CCECBusDevice *dest = m_processor->GetDevice(iDestination);
724
725 return dest ?
726 dest->TransmitKeyRelease(GetPrimaryLogicalAdddress(), bWait) :
727 false;
728 }
729
730 bool CCECClient::GetCurrentConfiguration(libcec_configuration &configuration)
731 {
732 CLockObject lock(m_mutex);
733
734 // client version 1.5.0
735 snprintf(configuration.strDeviceName, 13, "%s", m_configuration.strDeviceName);
736 configuration.deviceTypes = m_configuration.deviceTypes;
737 configuration.bAutodetectAddress = m_configuration.bAutodetectAddress;
738 configuration.iPhysicalAddress = m_configuration.iPhysicalAddress;
739 configuration.baseDevice = m_configuration.baseDevice;
740 configuration.iHDMIPort = m_configuration.iHDMIPort;
741 configuration.clientVersion = m_configuration.clientVersion;
742 configuration.serverVersion = m_configuration.serverVersion;
743 configuration.tvVendor = m_configuration.tvVendor;
744
745 configuration.bGetSettingsFromROM = m_configuration.bGetSettingsFromROM;
746 configuration.bUseTVMenuLanguage = m_configuration.bUseTVMenuLanguage;
747 configuration.bActivateSource = m_configuration.bActivateSource;
748 configuration.wakeDevices = m_configuration.wakeDevices;
749 configuration.powerOffDevices = m_configuration.powerOffDevices;
750 configuration.bPowerOffScreensaver = m_configuration.bPowerOffScreensaver;
751 configuration.bPowerOffOnStandby = m_configuration.bPowerOffOnStandby;
752
753 // client version 1.5.1
754 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_1)
755 configuration.bSendInactiveSource = m_configuration.bSendInactiveSource;
756
757 // client version 1.5.3
758 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_3)
759 configuration.logicalAddresses = m_configuration.logicalAddresses;
760
761 // client version 1.6.0
762 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_0)
763 {
764 configuration.iFirmwareVersion = m_configuration.iFirmwareVersion;
765 configuration.bPowerOffDevicesOnStandby = m_configuration.bPowerOffDevicesOnStandby;
766 configuration.bShutdownOnStandby = m_configuration.bShutdownOnStandby;
767 }
768
769 // client version 1.6.2
770 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_2)
771 {
772 memcpy(configuration.strDeviceLanguage, m_configuration.strDeviceLanguage, 3);
773 configuration.iFirmwareBuildDate = m_configuration.iFirmwareBuildDate;
774 }
775
776 // client version 1.6.3
777 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_3)
778 {
779 configuration.bMonitorOnly = m_configuration.bMonitorOnly;
780 }
781
782 return true;
783 }
784
785 bool CCECClient::SetConfiguration(const libcec_configuration &configuration)
786 {
787 bool bIsRunning(m_processor && m_processor->CECInitialised());
788 CCECBusDevice *primary = bIsRunning ? GetPrimaryDevice() : NULL;
789 uint16_t iPA = primary ? primary->GetCurrentPhysicalAddress() : CEC_INVALID_PHYSICAL_ADDRESS;
790
791 // update the callbacks
792 if (configuration.callbacks)
793 EnableCallbacks(configuration.callbackParam, configuration.callbacks);
794
795 // update the client version
796 SetClientVersion((cec_client_version)configuration.clientVersion);
797
798 // update the OSD name
799 CStdString strOSDName(configuration.strDeviceName);
800 SetOSDName(strOSDName);
801
802 // update the TV vendor override
803 SetTVVendorOverride((cec_vendor_id)configuration.tvVendor);
804
805 // just copy these
806 {
807 CLockObject lock(m_mutex);
808 m_configuration.bUseTVMenuLanguage = configuration.bUseTVMenuLanguage;
809 m_configuration.bActivateSource = configuration.bActivateSource;
810 m_configuration.bGetSettingsFromROM = configuration.bGetSettingsFromROM;
811 m_configuration.wakeDevices = configuration.wakeDevices;
812 m_configuration.powerOffDevices = configuration.powerOffDevices;
813 m_configuration.bPowerOffScreensaver = configuration.bPowerOffScreensaver;
814 m_configuration.bPowerOffOnStandby = configuration.bPowerOffOnStandby;
815
816 // client version 1.5.1
817 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_1)
818 m_configuration.bSendInactiveSource = configuration.bSendInactiveSource;
819
820 // client version 1.6.0
821 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_0)
822 {
823 m_configuration.bPowerOffDevicesOnStandby = configuration.bPowerOffDevicesOnStandby;
824 m_configuration.bShutdownOnStandby = configuration.bShutdownOnStandby;
825 }
826
827 // client version 1.6.2
828 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_2)
829 {
830 memcpy(m_configuration.strDeviceLanguage, configuration.strDeviceLanguage, 3);
831 }
832
833 // client version 1.6.3
834 if (configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_3)
835 {
836 m_configuration.bMonitorOnly = configuration.bMonitorOnly;
837 }
838
839 // ensure that there is at least 1 device type set
840 if (m_configuration.deviceTypes.IsEmpty())
841 m_configuration.deviceTypes.Add(CEC_DEVICE_TYPE_RECORDING_DEVICE);
842 }
843
844 bool bNeedReinit(false);
845
846 // device types
847 if (SetDeviceTypes(configuration.deviceTypes))
848 {
849 // the device type changed. just copy the rest, and re-register
850 {
851 CLockObject lock(m_mutex);
852 m_configuration.iPhysicalAddress = configuration.iPhysicalAddress;
853 m_configuration.baseDevice = configuration.baseDevice;
854 m_configuration.iHDMIPort = configuration.iHDMIPort;
855 bNeedReinit = true;
856 }
857 }
858 else
859 {
860 // set the physical address
861 SetPhysicalAddress(configuration);
862 }
863
864 m_processor->PersistConfiguration(m_configuration);
865
866 if (!primary)
867 primary = GetPrimaryDevice();
868
869 if (bNeedReinit || !primary || primary->GetCurrentPhysicalAddress() != iPA)
870 {
871 // PA or device type changed
872 m_processor->RegisterClient(this);
873 }
874 else if (primary && configuration.bActivateSource == 1 && bIsRunning && !primary->IsActiveSource())
875 {
876 // activate the source if we're not already the active source
877 primary->ActivateSource();
878 }
879
880 return true;
881 }
882
883 void CCECClient::AddCommand(const cec_command &command)
884 {
885 CLockObject lock(m_mutex);
886
887 LIB_CEC->AddLog(CEC_LOG_NOTICE, ">> %s (%X) -> %s (%X): %s (%2X)", ToString(command.initiator), command.initiator, ToString(command.destination), command.destination, ToString(command.opcode), command.opcode);
888
889 if (m_configuration.callbacks && m_configuration.callbacks->CBCecCommand)
890 m_configuration.callbacks->CBCecCommand(m_configuration.callbackParam, command);
891 else if (!m_commandBuffer.Push(command))
892 LIB_CEC->AddLog(CEC_LOG_WARNING, "command buffer is full");
893 }
894
895 int CCECClient::MenuStateChanged(const cec_menu_state newState)
896 {
897 CLockObject lock(m_mutex);
898
899 LIB_CEC->AddLog(CEC_LOG_NOTICE, ">> %s: %s", ToString(CEC_OPCODE_MENU_REQUEST), ToString(newState));
900
901 if (m_configuration.callbacks &&
902 m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_2 &&
903 m_configuration.callbacks->CBCecMenuStateChanged)
904 return m_configuration.callbacks->CBCecMenuStateChanged(m_configuration.callbackParam, newState);
905
906 return 0;
907 }
908
909 void CCECClient::SourceActivated(const cec_logical_address logicalAddress)
910 {
911 CLockObject lock(m_mutex);
912
913 LIB_CEC->AddLog(CEC_LOG_NOTICE, ">> source activated: %s (%x)", ToString(logicalAddress), logicalAddress);
914
915 if (m_configuration.callbacks &&
916 m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_7_1 &&
917 m_configuration.callbacks->CBCecSourceActivated)
918 m_configuration.callbacks->CBCecSourceActivated(m_configuration.callbackParam, logicalAddress, 1);
919 }
920
921 void CCECClient::SourceDeactivated(const cec_logical_address logicalAddress)
922 {
923 CLockObject lock(m_mutex);
924
925 LIB_CEC->AddLog(CEC_LOG_NOTICE, ">> source deactivated: %s (%x)", ToString(logicalAddress), logicalAddress);
926
927 if (m_configuration.callbacks &&
928 m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_7_1 &&
929 m_configuration.callbacks->CBCecSourceActivated)
930 m_configuration.callbacks->CBCecSourceActivated(m_configuration.callbackParam, logicalAddress, 0);
931 }
932
933 void CCECClient::Alert(const libcec_alert type, const libcec_parameter &param)
934 {
935 CLockObject lock(m_mutex);
936
937 if (m_configuration.callbacks &&
938 m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_6_0 &&
939 m_configuration.callbacks->CBCecAlert)
940 m_configuration.callbacks->CBCecAlert(m_configuration.callbackParam, type, param);
941 }
942
943 void CCECClient::AddLog(const cec_log_message &message)
944 {
945 CLockObject lock(m_logMutex);
946 if (m_configuration.callbacks && m_configuration.callbacks->CBCecLogMessage)
947 m_configuration.callbacks->CBCecLogMessage(m_configuration.callbackParam, message);
948 else
949 m_logBuffer.Push(message);
950 }
951
952 void CCECClient::AddKey(void)
953 {
954 CLockObject lock(m_mutex);
955
956 if (m_iCurrentButton != CEC_USER_CONTROL_CODE_UNKNOWN)
957 {
958 cec_keypress key;
959
960 key.duration = (unsigned int) (GetTimeMs() - m_buttontime);
961 key.keycode = m_iCurrentButton;
962 LIB_CEC->AddLog(CEC_LOG_DEBUG, "key released: %1x", key.keycode);
963
964 if (m_configuration.callbacks && m_configuration.callbacks->CBCecKeyPress)
965 m_configuration.callbacks->CBCecKeyPress(m_configuration.callbackParam, key);
966 else
967 m_keyBuffer.Push(key);
968 m_iCurrentButton = CEC_USER_CONTROL_CODE_UNKNOWN;
969 }
970
971 m_buttontime = 0;
972 }
973
974 void CCECClient::AddKey(const cec_keypress &key)
975 {
976 CLockObject lock(m_mutex);
977
978 LIB_CEC->AddLog(CEC_LOG_DEBUG, "key pressed: %1x", key.keycode);
979
980 if (m_configuration.callbacks && m_configuration.callbacks->CBCecKeyPress)
981 m_configuration.callbacks->CBCecKeyPress(m_configuration.callbackParam, key);
982 else
983 m_keyBuffer.Push(key);
984
985 m_iCurrentButton = key.duration > 0 ? CEC_USER_CONTROL_CODE_UNKNOWN : key.keycode;
986 m_buttontime = key.duration > 0 ? 0 : GetTimeMs();
987 }
988
989 void CCECClient::SetCurrentButton(const cec_user_control_code iButtonCode)
990 {
991 // push a keypress to the buffer with 0 duration and another with the duration set when released
992 cec_keypress key;
993 key.duration = 0;
994 key.keycode = iButtonCode;
995
996 AddKey(key);
997 }
998
999 void CCECClient::CheckKeypressTimeout(void)
1000 {
1001 if (m_iCurrentButton != CEC_USER_CONTROL_CODE_UNKNOWN && GetTimeMs() - m_buttontime > CEC_BUTTON_TIMEOUT)
1002 {
1003 AddKey();
1004 m_iCurrentButton = CEC_USER_CONTROL_CODE_UNKNOWN;
1005 }
1006 }
1007
1008 void CCECClient::ConfigurationChanged(const libcec_configuration &config)
1009 {
1010 CLockObject lock(m_mutex);
1011
1012 if (m_configuration.callbacks &&
1013 m_configuration.clientVersion >= CEC_CLIENT_VERSION_1_5_0 &&
1014 m_configuration.callbacks->CBCecConfigurationChanged &&
1015 m_processor->CECInitialised())
1016 m_configuration.callbacks->CBCecConfigurationChanged(m_configuration.callbackParam, config);
1017 }
1018
1019 bool CCECClient::EnableCallbacks(void *cbParam, ICECCallbacks *callbacks)
1020 {
1021 CLockObject lock(m_mutex);
1022 m_configuration.callbackParam = cbParam;
1023 m_configuration.callbacks = callbacks;
1024 return true;
1025 }
1026
1027 bool CCECClient::PingAdapter(void)
1028 {
1029 return m_processor ? m_processor->PingAdapter() : false;
1030 }
1031
1032 bool CCECClient::GetNextLogMessage(cec_log_message *message)
1033 {
1034 return (m_logBuffer.Pop(*message));
1035 }
1036
1037 bool CCECClient::GetNextKeypress(cec_keypress *key)
1038 {
1039 return m_keyBuffer.Pop(*key);
1040 }
1041
1042 bool CCECClient::GetNextCommand(cec_command *command)
1043 {
1044 return m_commandBuffer.Pop(*command);
1045 }
1046
1047 CStdString CCECClient::GetConnectionInfo(void)
1048 {
1049 CStdString strLog;
1050 strLog.Format("libCEC version = %s, client version = %s, firmware version = %d", ToString((cec_server_version)m_configuration.serverVersion), ToString((cec_client_version)m_configuration.clientVersion), m_configuration.iFirmwareVersion);
1051 if (m_configuration.iFirmwareBuildDate != CEC_FW_BUILD_UNKNOWN)
1052 {
1053 time_t buildTime = (time_t)m_configuration.iFirmwareBuildDate;
1054 strLog.AppendFormat(", firmware build date: %s", asctime(gmtime(&buildTime)));
1055 strLog = strLog.Left((int)strLog.length() - 1); // strip \n added by asctime
1056 strLog.append(" +0000");
1057 }
1058
1059 // log the addresses that are being used
1060 if (!m_configuration.logicalAddresses.IsEmpty())
1061 {
1062 strLog.append(", logical address(es) = ");
1063 CECDEVICEVEC devices;
1064 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
1065 for (CECDEVICEVEC::iterator it = devices.begin(); it != devices.end(); it++)
1066 strLog.AppendFormat("%s (%X) ", (*it)->GetLogicalAddressName(), (*it)->GetLogicalAddress());
1067 }
1068
1069 if (!CLibCEC::IsValidPhysicalAddress(m_configuration.iPhysicalAddress))
1070 strLog.AppendFormat(", base device: %s (%X), HDMI port number: %d", ToString(m_configuration.baseDevice), m_configuration.baseDevice, m_configuration.iHDMIPort);
1071 else
1072 strLog.AppendFormat(", physical address: %04x", m_configuration.iPhysicalAddress);
1073
1074 return strLog;
1075 }
1076
1077 void CCECClient::SetTVVendorOverride(const cec_vendor_id id)
1078 {
1079 {
1080 CLockObject lock(m_mutex);
1081 m_configuration.tvVendor = id;
1082 }
1083
1084 if (id != CEC_VENDOR_UNKNOWN)
1085 {
1086 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - vendor id '%s'", __FUNCTION__, ToString(id));
1087
1088 CCECBusDevice *tv = m_processor ? m_processor->GetTV() : NULL;
1089 if (tv)
1090 tv->SetVendorId((uint64_t)id);
1091 }
1092 }
1093
1094 cec_vendor_id CCECClient::GetTVVendorOverride(void)
1095 {
1096 CLockObject lock(m_mutex);
1097 return (cec_vendor_id)m_configuration.tvVendor;
1098 }
1099
1100 void CCECClient::SetOSDName(const CStdString &strDeviceName)
1101 {
1102 {
1103 CLockObject lock(m_mutex);
1104 snprintf(m_configuration.strDeviceName, 13, "%s", strDeviceName.c_str());
1105 }
1106
1107 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - using OSD name '%s'", __FUNCTION__, strDeviceName.c_str());
1108
1109 CCECBusDevice *primary = GetPrimaryDevice();
1110 if (primary && !primary->GetCurrentOSDName().Equals(strDeviceName))
1111 {
1112 primary->SetOSDName(strDeviceName);
1113 if (m_processor && m_processor->CECInitialised())
1114 primary->TransmitOSDName(CECDEVICE_TV);
1115 }
1116 }
1117
1118 CStdString CCECClient::GetOSDName(void)
1119 {
1120 CLockObject lock(m_mutex);
1121 CStdString strOSDName(m_configuration.strDeviceName);
1122 return strOSDName;
1123 }
1124
1125 void CCECClient::SetWakeDevices(const cec_logical_addresses &addresses)
1126 {
1127 CLockObject lock(m_mutex);
1128 m_configuration.wakeDevices = addresses;
1129 }
1130
1131 cec_logical_addresses CCECClient::GetWakeDevices(void)
1132 {
1133 CLockObject lock(m_mutex);
1134 return m_configuration.wakeDevices;
1135 }
1136
1137 bool CCECClient::AutodetectPhysicalAddress(void)
1138 {
1139 bool bPhysicalAutodetected(false);
1140 uint16_t iPhysicalAddress = m_processor ? m_processor->GetDetectedPhysicalAddress() : CEC_INVALID_PHYSICAL_ADDRESS;
1141
1142 if (CLibCEC::IsValidPhysicalAddress(iPhysicalAddress))
1143 {
1144 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - autodetected physical address '%04X'", __FUNCTION__, iPhysicalAddress);
1145
1146 CLockObject lock(m_mutex);
1147 m_configuration.iPhysicalAddress = iPhysicalAddress;
1148 m_configuration.iHDMIPort = CEC_HDMI_PORTNUMBER_NONE;
1149 m_configuration.baseDevice = CECDEVICE_UNKNOWN;
1150 bPhysicalAutodetected = true;
1151 }
1152
1153 SetDevicePhysicalAddress(iPhysicalAddress);
1154
1155 return bPhysicalAutodetected;
1156 }
1157
1158 void CCECClient::SetClientVersion(const cec_client_version version)
1159 {
1160 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - using client version '%s'", __FUNCTION__, ToString(version));
1161
1162 CLockObject lock(m_mutex);
1163 m_configuration.clientVersion = (uint32_t)version;
1164 }
1165
1166 cec_client_version CCECClient::GetClientVersion(void)
1167 {
1168 CLockObject lock(m_mutex);
1169 return (cec_client_version)m_configuration.clientVersion;
1170 }
1171
1172 bool CCECClient::SetDeviceTypes(const cec_device_type_list &deviceTypes)
1173 {
1174 bool bNeedReinit(false);
1175
1176 {
1177 CLockObject lock(m_mutex);
1178 bNeedReinit = m_processor && m_processor->CECInitialised() &&
1179 (m_configuration.deviceTypes != deviceTypes);
1180 m_configuration.deviceTypes = deviceTypes;
1181 }
1182
1183 if (bNeedReinit)
1184 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - using primary device type '%s'", __FUNCTION__, ToString(deviceTypes[0]));
1185
1186 return bNeedReinit;
1187 }
1188
1189 cec_device_type_list CCECClient::GetDeviceTypes(void)
1190 {
1191 cec_device_type_list retVal;
1192 CLockObject lock(m_mutex);
1193 retVal = m_configuration.deviceTypes;
1194 return retVal;
1195 }
1196
1197 bool CCECClient::SetDevicePhysicalAddress(const uint16_t iPhysicalAddress)
1198 {
1199 if (!CLibCEC::IsValidPhysicalAddress(iPhysicalAddress))
1200 {
1201 LIB_CEC->AddLog(CEC_LOG_DEBUG, "%s - not setting invalid physical address %04x", __FUNCTION__, iPhysicalAddress);
1202 return false;
1203 }
1204
1205 // reconfigure all devices
1206 cec_logical_address reactivateSource(CECDEVICE_UNKNOWN);
1207 CECDEVICEVEC devices;
1208 m_processor->GetDevices()->GetByLogicalAddresses(devices, m_configuration.logicalAddresses);
1209 for (CECDEVICEVEC::iterator it = devices.begin(); it != devices.end(); it++)
1210 {
1211 // if this device was the active source, reactivate it afterwards
1212 if ((*it)->IsActiveSource())
1213 reactivateSource = (*it)->GetLogicalAddress();
1214
1215 // mark the device as inactive source
1216 if (IsInitialised())
1217 (*it)->MarkAsInactiveSource();
1218
1219 // set the new physical address
1220 (*it)->SetPhysicalAddress(iPhysicalAddress);
1221
1222 // and transmit it
1223 if (IsInitialised())
1224 (*it)->TransmitPhysicalAddress();
1225 }
1226
1227 // reactivate the previous active source
1228 if (reactivateSource != CECDEVICE_UNKNOWN &&
1229 m_processor->CECInitialised() &&
1230 IsInitialised())
1231 {
1232 CCECBusDevice *device = m_processor->GetDevice(reactivateSource);
1233 if (device)
1234 device->ActivateSource();
1235 }
1236
1237 return true;
1238 }
1239
1240 bool CCECClient::SwitchMonitoring(bool bEnable)
1241 {
1242 LIB_CEC->AddLog(CEC_LOG_NOTICE, "== %s monitoring mode ==", bEnable ? "enabling" : "disabling");
1243
1244 if (m_processor)
1245 {
1246 if (bEnable)
1247 return m_processor->UnregisterClient(this);
1248 else
1249 {
1250 m_configuration.bMonitorOnly = false;
1251 return m_processor->RegisterClient(this);
1252 }
1253 }
1254
1255 return false;
1256 }
1257
1258 bool CCECClient::PollDevice(const cec_logical_address iAddress)
1259 {
1260 // try to find the primary device
1261 CCECBusDevice *primary = GetPrimaryDevice();
1262 // poll the destination, with the primary as source
1263 if (primary)
1264 return primary->TransmitPoll(iAddress);
1265
1266 return m_processor ? m_processor->PollDevice(iAddress) : false;
1267 }
1268
1269 cec_logical_addresses CCECClient::GetActiveDevices(void)
1270 {
1271 CECDEVICEVEC activeDevices;
1272 if (m_processor)
1273 m_processor->GetDevices()->GetActive(activeDevices);
1274 return CCECDeviceMap::ToLogicalAddresses(activeDevices);
1275 }
1276
1277 bool CCECClient::IsActiveDevice(const cec_logical_address iAddress)
1278 {
1279 cec_logical_addresses activeDevices = GetActiveDevices();
1280 return activeDevices.IsSet(iAddress);
1281 }
1282
1283 bool CCECClient::IsActiveDeviceType(const cec_device_type type)
1284 {
1285 CECDEVICEVEC activeDevices;
1286 if (m_processor)
1287 m_processor->GetDevices()->GetActive(activeDevices);
1288 CCECDeviceMap::FilterType(type, activeDevices);
1289 return !activeDevices.empty();
1290 }
1291
1292 cec_logical_address CCECClient::GetActiveSource(void)
1293 {
1294 return m_processor ? m_processor->GetActiveSource() : CECDEVICE_UNKNOWN;
1295 }
1296
1297 bool CCECClient::IsActiveSource(const cec_logical_address iAddress)
1298 {
1299 return m_processor ? m_processor->IsActiveSource(iAddress) : false;
1300 }
1301
1302 bool CCECClient::SetStreamPath(const cec_logical_address iAddress)
1303 {
1304 uint16_t iPhysicalAddress = GetDevicePhysicalAddress(iAddress);
1305 if (iPhysicalAddress != CEC_INVALID_PHYSICAL_ADDRESS)
1306 return SetStreamPath(iPhysicalAddress);
1307 return false;
1308 }
1309
1310 bool CCECClient::SetStreamPath(const uint16_t iPhysicalAddress)
1311 {
1312 return m_processor ? m_processor->SetStreamPath(iPhysicalAddress) : false;
1313 }
1314
1315 cec_logical_addresses CCECClient::GetLogicalAddresses(void)
1316 {
1317 cec_logical_addresses addresses;
1318 CLockObject lock(m_mutex);
1319 addresses = m_configuration.logicalAddresses;
1320 return addresses;
1321 }
1322
1323 bool CCECClient::CanPersistConfiguration(void)
1324 {
1325 return m_processor ? m_processor->CanPersistConfiguration() : false;
1326 }
1327
1328 bool CCECClient::PersistConfiguration(const libcec_configuration &configuration)
1329 {
1330 return m_processor ? m_processor->PersistConfiguration(configuration) : false;
1331 }
1332
1333 void CCECClient::RescanActiveDevices(void)
1334 {
1335 if (m_processor)
1336 m_processor->RescanActiveDevices();
1337 }
1338
1339 bool CCECClient::IsLibCECActiveSource(void)
1340 {
1341 bool bReturn(false);
1342 if (m_processor)
1343 {
1344 cec_logical_address activeSource = m_processor->GetActiveSource();
1345 CCECBusDevice *device = m_processor->GetDevice(activeSource);
1346 if (device)
1347 bReturn = device->IsHandledByLibCEC();
1348 }
1349 return bReturn;
1350 }