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C++: Make hardware device instances user owned.
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2013-2014 Martin Ling <martin-sigrok@earth.li>
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
20#include "libsigrok/libsigrok.hpp"
21
22#include <sstream>
23#include <cmath>
24
25namespace sigrok
26{
27
28/** Helper function to translate C errors to C++ exceptions. */
29static void check(int result)
30{
31 if (result != SR_OK)
32 throw Error(result);
33}
34
35/** Helper function to obtain valid strings from possibly null input. */
36static const char *valid_string(const char *input)
37{
38 if (input != NULL)
39 return input;
40 else
41 return "";
42}
43
44/** Helper function to convert between map<string, VariantBase> and GHashTable */
45static GHashTable *map_to_hash_variant(map<string, Glib::VariantBase> input)
46{
47 auto output = g_hash_table_new_full(
48 g_str_hash, g_str_equal, g_free, (GDestroyNotify) g_variant_unref);
49 for (auto entry : input)
50 g_hash_table_insert(output,
51 g_strdup(entry.first.c_str()),
52 entry.second.gobj_copy());
53 return output;
54}
55
56Error::Error(int result) : result(result)
57{
58}
59
60const char *Error::what() const throw()
61{
62 return sr_strerror(result);
63}
64
65Error::~Error() throw()
66{
67}
68
69shared_ptr<Context> Context::create()
70{
71 return shared_ptr<Context>(new Context(), Context::Deleter());
72}
73
74Context::Context() :
75 UserOwned(_structure),
76 _session(NULL)
77{
78 check(sr_init(&_structure));
79
80 struct sr_dev_driver **driver_list = sr_driver_list();
81 if (driver_list)
82 for (int i = 0; driver_list[i]; i++)
83 _drivers[driver_list[i]->name] =
84 new Driver(driver_list[i]);
85 const struct sr_input_module **input_list = sr_input_list();
86 if (input_list)
87 for (int i = 0; input_list[i]; i++)
88 _input_formats[sr_input_id_get(input_list[i])] =
89 new InputFormat(input_list[i]);
90 const struct sr_output_module **output_list = sr_output_list();
91 if (output_list)
92 for (int i = 0; output_list[i]; i++)
93 _output_formats[sr_output_id_get(output_list[i])] =
94 new OutputFormat(output_list[i]);
95}
96
97string Context::package_version()
98{
99 return sr_package_version_string_get();
100}
101
102string Context::lib_version()
103{
104 return sr_lib_version_string_get();
105}
106
107map<string, shared_ptr<Driver>> Context::drivers()
108{
109 map<string, shared_ptr<Driver>> result;
110 for (auto entry: _drivers)
111 {
112 auto name = entry.first;
113 auto driver = entry.second;
114 result[name] = driver->get_shared_pointer(this);
115 }
116 return result;
117}
118
119map<string, shared_ptr<InputFormat>> Context::input_formats()
120{
121 map<string, shared_ptr<InputFormat>> result;
122 for (auto entry: _input_formats)
123 {
124 auto name = entry.first;
125 auto input_format = entry.second;
126 result[name] = input_format->get_shared_pointer(this);
127 }
128 return result;
129}
130
131map<string, shared_ptr<OutputFormat>> Context::output_formats()
132{
133 map<string, shared_ptr<OutputFormat>> result;
134 for (auto entry: _output_formats)
135 {
136 auto name = entry.first;
137 auto output_format = entry.second;
138 result[name] = output_format->get_shared_pointer(this);
139 }
140 return result;
141}
142
143Context::~Context()
144{
145 for (auto entry : _drivers)
146 delete entry.second;
147 for (auto entry : _input_formats)
148 delete entry.second;
149 for (auto entry : _output_formats)
150 delete entry.second;
151 check(sr_exit(_structure));
152}
153
154const LogLevel *Context::log_level()
155{
156 return LogLevel::get(sr_log_loglevel_get());
157}
158
159void Context::set_log_level(const LogLevel *level)
160{
161 check(sr_log_loglevel_set(level->id()));
162}
163
164string Context::log_domain()
165{
166 return valid_string(sr_log_logdomain_get());
167}
168
169void Context::set_log_domain(string value)
170{
171 check(sr_log_logdomain_set(value.c_str()));
172}
173
174static int call_log_callback(void *cb_data, int loglevel, const char *format, va_list args)
175{
176 va_list args_copy;
177 va_copy(args_copy, args);
178 int length = vsnprintf(NULL, 0, format, args_copy);
179 va_end(args_copy);
180 char *buf = (char *) g_malloc(length + 1);
181 vsprintf(buf, format, args);
182 string message(buf, length);
183 g_free(buf);
184
185 LogCallbackFunction callback = *((LogCallbackFunction *) cb_data);
186
187 try
188 {
189 callback(LogLevel::get(loglevel), message);
190 }
191 catch (Error e)
192 {
193 return e.result;
194 }
195
196 return SR_OK;
197}
198
199void Context::set_log_callback(LogCallbackFunction callback)
200{
201 _log_callback = callback;
202 check(sr_log_callback_set(call_log_callback, &_log_callback));
203}
204
205void Context::set_log_callback_default()
206{
207 check(sr_log_callback_set_default());
208 _log_callback = nullptr;
209}
210
211shared_ptr<Session> Context::create_session()
212{
213 return shared_ptr<Session>(
214 new Session(shared_from_this()), Session::Deleter());
215}
216
217shared_ptr<Session> Context::load_session(string filename)
218{
219 return shared_ptr<Session>(
220 new Session(shared_from_this(), filename), Session::Deleter());
221}
222
223shared_ptr<Trigger> Context::create_trigger(string name)
224{
225 return shared_ptr<Trigger>(
226 new Trigger(shared_from_this(), name), Trigger::Deleter());
227}
228
229shared_ptr<Input> Context::open_file(string filename)
230{
231 const struct sr_input *input;
232
233 check(sr_input_scan_file(filename.c_str(), &input));
234 return shared_ptr<Input>(
235 new Input(shared_from_this(), input), Input::Deleter());
236}
237
238shared_ptr<Input> Context::open_stream(string header)
239{
240 const struct sr_input *input;
241
242 auto gstr = g_string_new(header.c_str());
243 auto ret = sr_input_scan_buffer(gstr, &input);
244 g_string_free(gstr, true);
245 check(ret);
246 return shared_ptr<Input>(
247 new Input(shared_from_this(), input), Input::Deleter());
248}
249
250Driver::Driver(struct sr_dev_driver *structure) :
251 ParentOwned(structure),
252 Configurable(structure, NULL, NULL),
253 _initialized(false)
254{
255}
256
257Driver::~Driver()
258{
259}
260
261string Driver::name()
262{
263 return valid_string(_structure->name);
264}
265
266string Driver::long_name()
267{
268 return valid_string(_structure->longname);
269}
270
271vector<shared_ptr<HardwareDevice>> Driver::scan(
272 map<const ConfigKey *, Glib::VariantBase> options)
273{
274 /* Initialise the driver if not yet done. */
275 if (!_initialized)
276 {
277 check(sr_driver_init(_parent->_structure, _structure));
278 _initialized = true;
279 }
280
281 /* Translate scan options to GSList of struct sr_config pointers. */
282 GSList *option_list = NULL;
283 for (auto entry : options)
284 {
285 auto key = entry.first;
286 auto value = entry.second;
287 auto config = g_new(struct sr_config, 1);
288 config->key = key->id();
289 config->data = value.gobj();
290 option_list = g_slist_append(option_list, config);
291 }
292
293 /* Run scan. */
294 GSList *device_list = sr_driver_scan(_structure, option_list);
295
296 /* Free option list. */
297 g_slist_free_full(option_list, g_free);
298
299
300 /* Create device objects. */
301 vector<shared_ptr<HardwareDevice>> result;
302 for (GSList *device = device_list; device; device = device->next)
303 {
304 auto sdi = (struct sr_dev_inst *) device->data;
305 result.push_back(shared_ptr<HardwareDevice>(
306 new HardwareDevice(shared_from_this(), sdi),
307 HardwareDevice::Deleter()));
308 }
309
310 /* Free GSList returned from scan. */
311 g_slist_free(device_list);
312
313 return result;
314}
315
316Configurable::Configurable(
317 struct sr_dev_driver *driver,
318 struct sr_dev_inst *sdi,
319 struct sr_channel_group *cg) :
320 config_driver(driver),
321 config_sdi(sdi),
322 config_channel_group(cg)
323{
324}
325
326Configurable::~Configurable()
327{
328}
329
330Glib::VariantBase Configurable::config_get(const ConfigKey *key)
331{
332 GVariant *data;
333 check(sr_config_get(
334 config_driver, config_sdi, config_channel_group,
335 key->id(), &data));
336 return Glib::VariantBase(data);
337}
338
339void Configurable::config_set(const ConfigKey *key, Glib::VariantBase value)
340{
341 check(sr_config_set(
342 config_sdi, config_channel_group,
343 key->id(), value.gobj()));
344}
345
346Glib::VariantContainerBase Configurable::config_list(const ConfigKey *key)
347{
348 GVariant *data;
349 check(sr_config_list(
350 config_driver, config_sdi, config_channel_group,
351 key->id(), &data));
352 return Glib::VariantContainerBase(data);
353}
354
355vector<const ConfigKey *> Configurable::config_keys(const ConfigKey *key)
356{
357 GVariant *gvar_opts;
358 gsize num_opts;
359 const int32_t *opts;
360 vector<const ConfigKey *> result;
361
362 check(sr_config_list(
363 config_driver, config_sdi, config_channel_group,
364 key->id(), &gvar_opts));
365
366 opts = (const int32_t *) g_variant_get_fixed_array(
367 gvar_opts, &num_opts, sizeof(int32_t));
368
369 for (gsize i = 0; i < num_opts; i++)
370 result.push_back(ConfigKey::get(opts[i]));
371
372 g_variant_unref(gvar_opts);
373
374 return result;
375}
376
377bool Configurable::config_check(const ConfigKey *key,
378 const ConfigKey *index_key)
379{
380 GVariant *gvar_opts;
381 gsize num_opts;
382 const int32_t *opts;
383
384 if (sr_config_list(config_driver, config_sdi, config_channel_group,
385 index_key->id(), &gvar_opts) != SR_OK)
386 return false;
387
388 opts = (const int32_t *) g_variant_get_fixed_array(
389 gvar_opts, &num_opts, sizeof(int32_t));
390
391 for (gsize i = 0; i < num_opts; i++)
392 {
393 if (opts[i] == key->id())
394 {
395 g_variant_unref(gvar_opts);
396 return true;
397 }
398 }
399
400 g_variant_unref(gvar_opts);
401
402 return false;
403}
404
405Device::Device(struct sr_dev_inst *structure) :
406 Configurable(structure->driver, structure, NULL),
407 _structure(structure)
408{
409 for (GSList *entry = structure->channels; entry; entry = entry->next)
410 {
411 auto channel = (struct sr_channel *) entry->data;
412 _channels[channel] = new Channel(channel);
413 }
414
415 for (GSList *entry = structure->channel_groups; entry; entry = entry->next)
416 {
417 auto group = (struct sr_channel_group *) entry->data;
418 _channel_groups[group->name] = new ChannelGroup(this, group);
419 }
420}
421
422Device::~Device()
423{
424 for (auto entry : _channels)
425 delete entry.second;
426 for (auto entry : _channel_groups)
427 delete entry.second;
428}
429
430string Device::description()
431{
432 ostringstream s;
433
434 vector<string> parts =
435 {vendor(), model(), version()};
436
437 for (string part : parts)
438 if (part.length() > 0)
439 s << part;
440
441 return s.str();
442}
443
444string Device::vendor()
445{
446 return valid_string(_structure->vendor);
447}
448
449string Device::model()
450{
451 return valid_string(_structure->model);
452}
453
454string Device::version()
455{
456 return valid_string(_structure->version);
457}
458
459vector<shared_ptr<Channel>> Device::channels()
460{
461 vector<shared_ptr<Channel>> result;
462 for (auto channel = _structure->channels; channel; channel = channel->next)
463 result.push_back(
464 _channels[(struct sr_channel *) channel->data]->get_shared_pointer(
465 get_shared_from_this()));
466 return result;
467}
468
469shared_ptr<Channel> Device::get_channel(struct sr_channel *ptr)
470{
471 return _channels[ptr]->get_shared_pointer(get_shared_from_this());
472}
473
474map<string, shared_ptr<ChannelGroup>>
475Device::channel_groups()
476{
477 map<string, shared_ptr<ChannelGroup>> result;
478 for (auto entry: _channel_groups)
479 {
480 auto name = entry.first;
481 auto channel_group = entry.second;
482 result[name] = channel_group->get_shared_pointer(get_shared_from_this());
483 }
484 return result;
485}
486
487void Device::open()
488{
489 check(sr_dev_open(_structure));
490}
491
492void Device::close()
493{
494 check(sr_dev_close(_structure));
495}
496
497HardwareDevice::HardwareDevice(shared_ptr<Driver> driver,
498 struct sr_dev_inst *structure) :
499 UserOwned(structure),
500 Device(structure),
501 _driver(driver)
502{
503}
504
505HardwareDevice::~HardwareDevice()
506{
507}
508
509shared_ptr<Device> HardwareDevice::get_shared_from_this()
510{
511 return static_pointer_cast<Device>(shared_from_this());
512}
513
514shared_ptr<Driver> HardwareDevice::driver()
515{
516 return _driver;
517}
518
519Channel::Channel(struct sr_channel *structure) :
520 ParentOwned(structure),
521 _type(ChannelType::get(_structure->type))
522{
523}
524
525Channel::~Channel()
526{
527}
528
529string Channel::name()
530{
531 return valid_string(_structure->name);
532}
533
534void Channel::set_name(string name)
535{
536 check(sr_dev_channel_name_set(_parent->_structure,
537 _structure->index, name.c_str()));
538}
539
540const ChannelType *Channel::type()
541{
542 return ChannelType::get(_structure->type);
543}
544
545bool Channel::enabled()
546{
547 return _structure->enabled;
548}
549
550void Channel::set_enabled(bool value)
551{
552 check(sr_dev_channel_enable(_parent->_structure, _structure->index, value));
553}
554
555unsigned int Channel::index()
556{
557 return _structure->index;
558}
559
560ChannelGroup::ChannelGroup(Device *device,
561 struct sr_channel_group *structure) :
562 ParentOwned(structure),
563 Configurable(device->_structure->driver, device->_structure, structure)
564{
565 for (GSList *entry = structure->channels; entry; entry = entry->next)
566 _channels.push_back(device->_channels[(struct sr_channel *)entry->data]);
567}
568
569ChannelGroup::~ChannelGroup()
570{
571}
572
573string ChannelGroup::name()
574{
575 return valid_string(_structure->name);
576}
577
578vector<shared_ptr<Channel>> ChannelGroup::channels()
579{
580 vector<shared_ptr<Channel>> result;
581 for (auto channel : _channels)
582 result.push_back(channel->get_shared_pointer(_parent));
583 return result;
584}
585
586Trigger::Trigger(shared_ptr<Context> context, string name) :
587 UserOwned(sr_trigger_new(name.c_str())),
588 _context(context)
589{
590 for (auto stage = _structure->stages; stage; stage = stage->next)
591 _stages.push_back(
592 new TriggerStage((struct sr_trigger_stage *) stage->data));
593}
594
595Trigger::~Trigger()
596{
597 for (auto stage: _stages)
598 delete stage;
599
600 sr_trigger_free(_structure);
601}
602
603string Trigger::name()
604{
605 return _structure->name;
606}
607
608vector<shared_ptr<TriggerStage>> Trigger::stages()
609{
610 vector<shared_ptr<TriggerStage>> result;
611 for (auto stage : _stages)
612 result.push_back(stage->get_shared_pointer(this));
613 return result;
614}
615
616shared_ptr<TriggerStage> Trigger::add_stage()
617{
618 auto stage = new TriggerStage(sr_trigger_stage_add(_structure));
619 _stages.push_back(stage);
620 return stage->get_shared_pointer(this);
621}
622
623TriggerStage::TriggerStage(struct sr_trigger_stage *structure) :
624 ParentOwned(structure)
625{
626}
627
628TriggerStage::~TriggerStage()
629{
630 for (auto match : _matches)
631 delete match;
632}
633
634int TriggerStage::number()
635{
636 return _structure->stage;
637}
638
639vector<shared_ptr<TriggerMatch>> TriggerStage::matches()
640{
641 vector<shared_ptr<TriggerMatch>> result;
642 for (auto match : _matches)
643 result.push_back(match->get_shared_pointer(this));
644 return result;
645}
646
647void TriggerStage::add_match(shared_ptr<Channel> channel,
648 const TriggerMatchType *type, float value)
649{
650 check(sr_trigger_match_add(_structure,
651 channel->_structure, type->id(), value));
652 _matches.push_back(new TriggerMatch(
653 (struct sr_trigger_match *) g_slist_last(
654 _structure->matches)->data, channel));
655}
656
657void TriggerStage::add_match(shared_ptr<Channel> channel,
658 const TriggerMatchType *type)
659{
660 add_match(channel, type, NAN);
661}
662
663TriggerMatch::TriggerMatch(struct sr_trigger_match *structure,
664 shared_ptr<Channel> channel) :
665 ParentOwned(structure),
666 _channel(channel)
667{
668}
669
670TriggerMatch::~TriggerMatch()
671{
672}
673
674shared_ptr<Channel> TriggerMatch::channel()
675{
676 return _channel;
677}
678
679const TriggerMatchType *TriggerMatch::type()
680{
681 return TriggerMatchType::get(_structure->match);
682}
683
684float TriggerMatch::value()
685{
686 return _structure->value;
687}
688
689DatafeedCallbackData::DatafeedCallbackData(Session *session,
690 DatafeedCallbackFunction callback) :
691 _callback(callback),
692 _session(session)
693{
694}
695
696void DatafeedCallbackData::run(const struct sr_dev_inst *sdi,
697 const struct sr_datafeed_packet *pkt)
698{
699 auto device = _session->_devices[sdi];
700 auto packet = shared_ptr<Packet>(new Packet(device, pkt), Packet::Deleter());
701 _callback(device, packet);
702}
703
704SourceCallbackData::SourceCallbackData(shared_ptr<EventSource> source) :
705 _source(source)
706{
707}
708
709bool SourceCallbackData::run(int revents)
710{
711 return _source->_callback((Glib::IOCondition) revents);
712}
713
714shared_ptr<EventSource> EventSource::create(int fd, Glib::IOCondition events,
715 int timeout, SourceCallbackFunction callback)
716{
717 auto result = new EventSource(timeout, callback);
718 result->_type = EventSource::SOURCE_FD;
719 result->_fd = fd;
720 result->_events = events;
721 return shared_ptr<EventSource>(result, EventSource::Deleter());
722}
723
724shared_ptr<EventSource> EventSource::create(Glib::PollFD pollfd, int timeout,
725 SourceCallbackFunction callback)
726{
727 auto result = new EventSource(timeout, callback);
728 result->_type = EventSource::SOURCE_POLLFD;
729 result->_pollfd = pollfd;
730 return shared_ptr<EventSource>(result, EventSource::Deleter());
731}
732
733shared_ptr<EventSource> EventSource::create(Glib::RefPtr<Glib::IOChannel> channel,
734 Glib::IOCondition events, int timeout, SourceCallbackFunction callback)
735{
736 auto result = new EventSource(timeout, callback);
737 result->_type = EventSource::SOURCE_IOCHANNEL;
738 result->_channel = channel;
739 result->_events = events;
740 return shared_ptr<EventSource>(result, EventSource::Deleter());
741}
742
743EventSource::EventSource(int timeout, SourceCallbackFunction callback) :
744 _timeout(timeout),
745 _callback(callback)
746{
747}
748
749EventSource::~EventSource()
750{
751}
752
753SessionDevice::SessionDevice(struct sr_dev_inst *structure) :
754 ParentOwned(structure),
755 Device(structure)
756{
757}
758
759SessionDevice::~SessionDevice()
760{
761}
762
763shared_ptr<Device> SessionDevice::get_shared_from_this()
764{
765 return static_pointer_cast<Device>(shared_from_this());
766}
767
768Session::Session(shared_ptr<Context> context) :
769 UserOwned(_structure),
770 _context(context),
771 _saving(false)
772{
773 check(sr_session_new(&_structure));
774 _context->_session = this;
775}
776
777Session::Session(shared_ptr<Context> context, string filename) :
778 UserOwned(_structure),
779 _context(context),
780 _saving(false)
781{
782 check(sr_session_load(filename.c_str(), &_structure));
783 GSList *dev_list;
784 check(sr_session_dev_list(_structure, &dev_list));
785 for (GSList *dev = dev_list; dev; dev = dev->next)
786 {
787 auto sdi = (struct sr_dev_inst *) dev->data;
788 auto device = new SessionDevice(sdi);
789 _devices[sdi] = shared_ptr<SessionDevice>(device,
790 SessionDevice::Deleter());
791 }
792 _context->_session = this;
793}
794
795Session::~Session()
796{
797 check(sr_session_destroy(_structure));
798
799 for (auto callback : _datafeed_callbacks)
800 delete callback;
801
802 for (auto entry : _source_callbacks)
803 delete entry.second;
804}
805
806void Session::add_device(shared_ptr<Device> device)
807{
808 check(sr_session_dev_add(_structure, device->_structure));
809 _devices[device->_structure] = device;
810}
811
812vector<shared_ptr<Device>> Session::devices()
813{
814 GSList *dev_list;
815 check(sr_session_dev_list(_structure, &dev_list));
816 vector<shared_ptr<Device>> result;
817 for (GSList *dev = dev_list; dev; dev = dev->next)
818 {
819 auto sdi = (struct sr_dev_inst *) dev->data;
820 result.push_back(_devices[sdi]);
821 }
822 return result;
823}
824
825void Session::remove_devices()
826{
827 _devices.clear();
828 check(sr_session_dev_remove_all(_structure));
829}
830
831void Session::start()
832{
833 check(sr_session_start(_structure));
834}
835
836void Session::run()
837{
838 check(sr_session_run(_structure));
839}
840
841void Session::stop()
842{
843 check(sr_session_stop(_structure));
844}
845
846void Session::begin_save(string filename)
847{
848 _saving = true;
849 _save_initialized = false;
850 _save_filename = filename;
851 _save_samplerate = 0;
852}
853
854void Session::append(shared_ptr<Packet> packet)
855{
856 if (!_saving)
857 throw Error(SR_ERR);
858
859 switch (packet->_structure->type)
860 {
861 case SR_DF_META:
862 {
863 auto meta = (const struct sr_datafeed_meta *)
864 packet->_structure->payload;
865
866 for (auto l = meta->config; l; l = l->next)
867 {
868 auto config = (struct sr_config *) l->data;
869 if (config->key == SR_CONF_SAMPLERATE)
870 _save_samplerate = g_variant_get_uint64(config->data);
871 }
872
873 break;
874 }
875 case SR_DF_LOGIC:
876 {
877 if (_save_samplerate == 0)
878 {
879 GVariant *samplerate;
880
881 check(sr_config_get(packet->_device->_structure->driver,
882 packet->_device->_structure, NULL, SR_CONF_SAMPLERATE,
883 &samplerate));
884
885 _save_samplerate = g_variant_get_uint64(samplerate);
886
887 g_variant_unref(samplerate);
888 }
889
890 if (!_save_initialized)
891 {
892 vector<shared_ptr<Channel>> save_channels;
893
894 for (auto channel : packet->_device->channels())
895 if (channel->_structure->enabled &&
896 channel->_structure->type == SR_CHANNEL_LOGIC)
897 save_channels.push_back(channel);
898
899 auto channels = g_new(char *, save_channels.size());
900
901 int i = 0;
902 for (auto channel : save_channels)
903 channels[i++] = channel->_structure->name;
904 channels[i] = NULL;
905
906 int ret = sr_session_save_init(_structure, _save_filename.c_str(),
907 _save_samplerate, channels);
908
909 g_free(channels);
910
911 if (ret != SR_OK)
912 throw Error(ret);
913
914 _save_initialized = true;
915 }
916
917 auto logic = (const struct sr_datafeed_logic *)
918 packet->_structure->payload;
919
920 check(sr_session_append(_structure, _save_filename.c_str(),
921 (uint8_t *) logic->data, logic->unitsize,
922 logic->length / logic->unitsize));
923 }
924 }
925}
926
927void Session::append(void *data, size_t length, unsigned int unit_size)
928{
929 check(sr_session_append(_structure, _save_filename.c_str(),
930 (uint8_t *) data, unit_size, length));
931}
932
933static void datafeed_callback(const struct sr_dev_inst *sdi,
934 const struct sr_datafeed_packet *pkt, void *cb_data)
935{
936 auto callback = static_cast<DatafeedCallbackData *>(cb_data);
937 callback->run(sdi, pkt);
938}
939
940void Session::add_datafeed_callback(DatafeedCallbackFunction callback)
941{
942 auto cb_data = new DatafeedCallbackData(this, callback);
943 check(sr_session_datafeed_callback_add(_structure,
944 datafeed_callback, cb_data));
945 _datafeed_callbacks.push_back(cb_data);
946}
947
948void Session::remove_datafeed_callbacks(void)
949{
950 check(sr_session_datafeed_callback_remove_all(_structure));
951 for (auto callback : _datafeed_callbacks)
952 delete callback;
953 _datafeed_callbacks.clear();
954}
955
956static int source_callback(int fd, int revents, void *cb_data)
957{
958 (void) fd;
959 auto callback = (SourceCallbackData *) cb_data;
960 return callback->run(revents);
961}
962
963void Session::add_source(shared_ptr<EventSource> source)
964{
965 if (_source_callbacks.count(source) == 1)
966 throw Error(SR_ERR_ARG);
967
968 auto cb_data = new SourceCallbackData(source);
969
970 switch (source->_type)
971 {
972 case EventSource::SOURCE_FD:
973 check(sr_session_source_add(_structure, source->_fd, source->_events,
974 source->_timeout, source_callback, cb_data));
975 break;
976 case EventSource::SOURCE_POLLFD:
977 check(sr_session_source_add_pollfd(_structure,
978 source->_pollfd.gobj(), source->_timeout, source_callback,
979 cb_data));
980 break;
981 case EventSource::SOURCE_IOCHANNEL:
982 check(sr_session_source_add_channel(_structure,
983 source->_channel->gobj(), source->_events, source->_timeout,
984 source_callback, cb_data));
985 break;
986 }
987
988 _source_callbacks[source] = cb_data;
989}
990
991void Session::remove_source(shared_ptr<EventSource> source)
992{
993 if (_source_callbacks.count(source) == 0)
994 throw Error(SR_ERR_ARG);
995
996 switch (source->_type)
997 {
998 case EventSource::SOURCE_FD:
999 check(sr_session_source_remove(_structure, source->_fd));
1000 break;
1001 case EventSource::SOURCE_POLLFD:
1002 check(sr_session_source_remove_pollfd(_structure,
1003 source->_pollfd.gobj()));
1004 break;
1005 case EventSource::SOURCE_IOCHANNEL:
1006 check(sr_session_source_remove_channel(_structure,
1007 source->_channel->gobj()));
1008 break;
1009 }
1010
1011 delete _source_callbacks[source];
1012
1013 _source_callbacks.erase(source);
1014}
1015
1016shared_ptr<Trigger> Session::trigger()
1017{
1018 return _trigger;
1019}
1020
1021void Session::set_trigger(shared_ptr<Trigger> trigger)
1022{
1023 check(sr_session_trigger_set(_structure, trigger->_structure));
1024 _trigger = trigger;
1025}
1026
1027Packet::Packet(shared_ptr<Device> device,
1028 const struct sr_datafeed_packet *structure) :
1029 UserOwned(structure),
1030 _device(device)
1031{
1032 switch (structure->type)
1033 {
1034 case SR_DF_HEADER:
1035 _payload = new Header(
1036 static_cast<const struct sr_datafeed_header *>(
1037 structure->payload));
1038 break;
1039 case SR_DF_META:
1040 _payload = new Meta(
1041 static_cast<const struct sr_datafeed_meta *>(
1042 structure->payload));
1043 break;
1044 case SR_DF_LOGIC:
1045 _payload = new Logic(
1046 static_cast<const struct sr_datafeed_logic *>(
1047 structure->payload));
1048 break;
1049 case SR_DF_ANALOG:
1050 _payload = new Analog(
1051 static_cast<const struct sr_datafeed_analog *>(
1052 structure->payload));
1053 break;
1054 default:
1055 _payload = nullptr;
1056 break;
1057 }
1058}
1059
1060Packet::~Packet()
1061{
1062 if (_payload)
1063 delete _payload;
1064}
1065
1066const PacketType *Packet::type()
1067{
1068 return PacketType::get(_structure->type);
1069}
1070
1071shared_ptr<PacketPayload> Packet::payload()
1072{
1073 if (_payload)
1074 return _payload->get_shared_pointer(this);
1075 else
1076 throw Error(SR_ERR_NA);
1077}
1078
1079PacketPayload::PacketPayload()
1080{
1081}
1082
1083PacketPayload::~PacketPayload()
1084{
1085}
1086
1087Header::Header(const struct sr_datafeed_header *structure) :
1088 ParentOwned(structure),
1089 PacketPayload()
1090{
1091}
1092
1093Header::~Header()
1094{
1095}
1096
1097shared_ptr<PacketPayload> Header::get_shared_pointer(Packet *_parent)
1098{
1099 return static_pointer_cast<PacketPayload>(
1100 ParentOwned::get_shared_pointer(_parent));
1101}
1102
1103int Header::feed_version()
1104{
1105 return _structure->feed_version;
1106}
1107
1108Glib::TimeVal Header::start_time()
1109{
1110 return Glib::TimeVal(
1111 _structure->starttime.tv_sec,
1112 _structure->starttime.tv_usec);
1113}
1114
1115Meta::Meta(const struct sr_datafeed_meta *structure) :
1116 ParentOwned(structure),
1117 PacketPayload()
1118{
1119}
1120
1121Meta::~Meta()
1122{
1123}
1124
1125shared_ptr<PacketPayload> Meta::get_shared_pointer(Packet *_parent)
1126{
1127 return static_pointer_cast<PacketPayload>(
1128 ParentOwned::get_shared_pointer(_parent));
1129}
1130
1131map<const ConfigKey *, Glib::VariantBase> Meta::config()
1132{
1133 map<const ConfigKey *, Glib::VariantBase> result;
1134 for (auto l = _structure->config; l; l = l->next)
1135 {
1136 auto config = (struct sr_config *) l->data;
1137 result[ConfigKey::get(config->key)] = Glib::VariantBase(config->data);
1138 }
1139 return result;
1140}
1141
1142Logic::Logic(const struct sr_datafeed_logic *structure) :
1143 ParentOwned(structure),
1144 PacketPayload()
1145{
1146}
1147
1148Logic::~Logic()
1149{
1150}
1151
1152shared_ptr<PacketPayload> Logic::get_shared_pointer(Packet *_parent)
1153{
1154 return static_pointer_cast<PacketPayload>(
1155 ParentOwned::get_shared_pointer(_parent));
1156}
1157
1158void *Logic::data_pointer()
1159{
1160 return _structure->data;
1161}
1162
1163size_t Logic::data_length()
1164{
1165 return _structure->length;
1166}
1167
1168unsigned int Logic::unit_size()
1169{
1170 return _structure->unitsize;
1171}
1172
1173Analog::Analog(const struct sr_datafeed_analog *structure) :
1174 ParentOwned(structure),
1175 PacketPayload()
1176{
1177}
1178
1179Analog::~Analog()
1180{
1181}
1182
1183shared_ptr<PacketPayload> Analog::get_shared_pointer(Packet *_parent)
1184{
1185 return static_pointer_cast<PacketPayload>(
1186 ParentOwned::get_shared_pointer(_parent));
1187}
1188
1189float *Analog::data_pointer()
1190{
1191 return _structure->data;
1192}
1193
1194unsigned int Analog::num_samples()
1195{
1196 return _structure->num_samples;
1197}
1198
1199vector<shared_ptr<Channel>> Analog::channels()
1200{
1201 vector<shared_ptr<Channel>> result;
1202 for (auto l = _structure->channels; l; l = l->next)
1203 result.push_back(_parent->_device->get_channel(
1204 (struct sr_channel *)l->data));
1205 return result;
1206}
1207
1208const Quantity *Analog::mq()
1209{
1210 return Quantity::get(_structure->mq);
1211}
1212
1213const Unit *Analog::unit()
1214{
1215 return Unit::get(_structure->unit);
1216}
1217
1218vector<const QuantityFlag *> Analog::mq_flags()
1219{
1220 return QuantityFlag::flags_from_mask(_structure->mqflags);
1221}
1222
1223InputFormat::InputFormat(const struct sr_input_module *structure) :
1224 ParentOwned(structure)
1225{
1226}
1227
1228InputFormat::~InputFormat()
1229{
1230}
1231
1232string InputFormat::name()
1233{
1234 return valid_string(sr_input_id_get(_structure));
1235}
1236
1237string InputFormat::description()
1238{
1239 return valid_string(sr_input_description_get(_structure));
1240}
1241
1242map<string, shared_ptr<Option>> InputFormat::options()
1243{
1244 const struct sr_option **options = sr_input_options_get(_structure);
1245 auto option_array = shared_ptr<const struct sr_option *>(
1246 options, sr_input_options_free);
1247 map<string, shared_ptr<Option>> result;
1248 for (int i = 0; options[i]; i++)
1249 result[options[i]->id] = shared_ptr<Option>(
1250 new Option(options[i], option_array), Option::Deleter());
1251 return result;
1252}
1253
1254shared_ptr<Input> InputFormat::create_input(
1255 map<string, Glib::VariantBase> options)
1256{
1257 auto input = sr_input_new(_structure, map_to_hash_variant(options));
1258 if (!input)
1259 throw Error(SR_ERR_ARG);
1260 return shared_ptr<Input>(
1261 new Input(_parent->shared_from_this(), input), Input::Deleter());
1262}
1263
1264Input::Input(shared_ptr<Context> context, const struct sr_input *structure) :
1265 UserOwned(structure),
1266 _context(context),
1267 _device(nullptr)
1268{
1269}
1270
1271shared_ptr<InputDevice> Input::device()
1272{
1273 if (!_device)
1274 {
1275 auto sdi = sr_input_dev_inst_get(_structure);
1276 if (!sdi)
1277 throw Error(SR_ERR_NA);
1278 _device = new InputDevice(shared_from_this(), sdi);
1279 }
1280
1281 return _device->get_shared_pointer(shared_from_this());
1282}
1283
1284void Input::send(string data)
1285{
1286 auto gstr = g_string_new(data.c_str());
1287 auto ret = sr_input_send(_structure, gstr);
1288 g_string_free(gstr, false);
1289 check(ret);
1290}
1291
1292Input::~Input()
1293{
1294 if (_device)
1295 delete _device;
1296 check(sr_input_free(_structure));
1297}
1298
1299InputDevice::InputDevice(shared_ptr<Input> input,
1300 struct sr_dev_inst *structure) :
1301 ParentOwned(structure),
1302 Device(structure),
1303 _input(input)
1304{
1305}
1306
1307InputDevice::~InputDevice()
1308{
1309}
1310
1311shared_ptr<Device> InputDevice::get_shared_from_this()
1312{
1313 return static_pointer_cast<Device>(shared_from_this());
1314}
1315
1316Option::Option(const struct sr_option *structure,
1317 shared_ptr<const struct sr_option *> structure_array) :
1318 UserOwned(structure),
1319 _structure_array(structure_array)
1320{
1321}
1322
1323Option::~Option()
1324{
1325}
1326
1327string Option::id()
1328{
1329 return valid_string(_structure->id);
1330}
1331
1332string Option::name()
1333{
1334 return valid_string(_structure->name);
1335}
1336
1337string Option::description()
1338{
1339 return valid_string(_structure->desc);
1340}
1341
1342Glib::VariantBase Option::default_value()
1343{
1344 return Glib::VariantBase(_structure->def, true);
1345}
1346
1347vector<Glib::VariantBase> Option::values()
1348{
1349 vector<Glib::VariantBase> result;
1350 for (auto l = _structure->values; l; l = l->next)
1351 result.push_back(Glib::VariantBase((GVariant *) l->data, true));
1352 return result;
1353}
1354
1355OutputFormat::OutputFormat(const struct sr_output_module *structure) :
1356 ParentOwned(structure)
1357{
1358}
1359
1360OutputFormat::~OutputFormat()
1361{
1362}
1363
1364string OutputFormat::name()
1365{
1366 return valid_string(sr_output_id_get(_structure));
1367}
1368
1369string OutputFormat::description()
1370{
1371 return valid_string(sr_output_description_get(_structure));
1372}
1373
1374map<string, shared_ptr<Option>> OutputFormat::options()
1375{
1376 const struct sr_option **options = sr_output_options_get(_structure);
1377 auto option_array = shared_ptr<const struct sr_option *>(
1378 options, sr_output_options_free);
1379 map<string, shared_ptr<Option>> result;
1380 for (int i = 0; options[i]; i++)
1381 result[options[i]->id] = shared_ptr<Option>(
1382 new Option(options[i], option_array), Option::Deleter());
1383 return result;
1384}
1385
1386shared_ptr<Output> OutputFormat::create_output(
1387 shared_ptr<Device> device, map<string, Glib::VariantBase> options)
1388{
1389 return shared_ptr<Output>(
1390 new Output(shared_from_this(), device, options),
1391 Output::Deleter());
1392}
1393
1394Output::Output(shared_ptr<OutputFormat> format,
1395 shared_ptr<Device> device, map<string, Glib::VariantBase> options) :
1396 UserOwned(sr_output_new(format->_structure,
1397 map_to_hash_variant(options), device->_structure)),
1398 _format(format),
1399 _device(device),
1400 _options(options)
1401{
1402}
1403
1404Output::~Output()
1405{
1406 check(sr_output_free(_structure));
1407}
1408
1409string Output::receive(shared_ptr<Packet> packet)
1410{
1411 GString *out;
1412 check(sr_output_send(_structure, packet->_structure, &out));
1413 if (out)
1414 {
1415 auto result = string(out->str, out->str + out->len);
1416 g_string_free(out, true);
1417 return result;
1418 }
1419 else
1420 {
1421 return string();
1422 }
1423}
1424
1425#include "enums.cpp"
1426
1427}