]> sigrok.org Git - libsigrok.git/blame_incremental - bindings/cxx/classes.cpp
demo: data type nits in the device context (enum, unsigned int)
[libsigrok.git] / bindings / cxx / classes.cpp
... / ...
CommitLineData
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/* Needed for isascii(), as used in the GNU libstdc++ headers */
21/* Needed in strutil.c for POSIX.1-2008 locale functions */
22#ifndef _XOPEN_SOURCE
23#define _XOPEN_SOURCE 700
24#endif
25
26#include <config.h>
27#include <libsigrokcxx/libsigrokcxx.hpp>
28
29#include <sstream>
30#include <cmath>
31
32namespace sigrok
33{
34
35/** Helper function to translate C errors to C++ exceptions. */
36static void check(int result)
37{
38 if (result != SR_OK)
39 throw Error(result);
40}
41
42/** Helper function to obtain valid strings from possibly null input. */
43static inline const char *valid_string(const char *input)
44{
45 return (input) ? input : "";
46}
47
48/** Helper function to convert between map<string, VariantBase> and GHashTable */
49static GHashTable *map_to_hash_variant(const map<string, Glib::VariantBase> &input)
50{
51 auto *const output = g_hash_table_new_full(g_str_hash, g_str_equal, g_free,
52 reinterpret_cast<GDestroyNotify>(&g_variant_unref));
53 for (const auto &entry : input)
54 g_hash_table_insert(output,
55 g_strdup(entry.first.c_str()),
56 entry.second.gobj_copy());
57 return output;
58}
59
60Error::Error(int result) : result(result)
61{
62}
63
64const char *Error::what() const noexcept
65{
66 return sr_strerror(result);
67}
68
69Error::~Error() noexcept
70{
71}
72
73ResourceReader::~ResourceReader()
74{
75}
76
77SR_PRIV int ResourceReader::open_callback(struct sr_resource *res,
78 const char *name, void *cb_data) noexcept
79{
80 try {
81 auto *const reader = static_cast<ResourceReader*>(cb_data);
82 reader->open(res, name);
83 } catch (const Error &err) {
84 return err.result;
85 } catch (...) {
86 return SR_ERR;
87 }
88 return SR_OK;
89}
90
91SR_PRIV int ResourceReader::close_callback(struct sr_resource *res,
92 void *cb_data) noexcept
93{
94 try {
95 auto *const reader = static_cast<ResourceReader*>(cb_data);
96 reader->close(res);
97 } catch (const Error &err) {
98 return err.result;
99 } catch (...) {
100 return SR_ERR;
101 }
102 return SR_OK;
103}
104
105SR_PRIV gssize ResourceReader::read_callback(const struct sr_resource *res,
106 void *buf, size_t count, void *cb_data) noexcept
107{
108 try {
109 auto *const reader = static_cast<ResourceReader*>(cb_data);
110 return reader->read(res, buf, count);
111 } catch (const Error &err) {
112 return err.result;
113 } catch (...) {
114 return SR_ERR;
115 }
116}
117
118shared_ptr<Context> Context::create()
119{
120 return shared_ptr<Context>{new Context{}, default_delete<Context>{}};
121}
122
123Context::Context() :
124 _structure(nullptr),
125 _session(nullptr)
126{
127 check(sr_init(&_structure));
128
129 if (struct sr_dev_driver **driver_list = sr_driver_list(_structure))
130 for (int i = 0; driver_list[i]; i++) {
131 unique_ptr<Driver> driver {new Driver{driver_list[i]}};
132 _drivers.emplace(driver->name(), move(driver));
133 }
134
135 if (const struct sr_input_module **input_list = sr_input_list())
136 for (int i = 0; input_list[i]; i++) {
137 unique_ptr<InputFormat> input {new InputFormat{input_list[i]}};
138 _input_formats.emplace(input->name(), move(input));
139 }
140
141 if (const struct sr_output_module **output_list = sr_output_list())
142 for (int i = 0; output_list[i]; i++) {
143 unique_ptr<OutputFormat> output {new OutputFormat{output_list[i]}};
144 _output_formats.emplace(output->name(), move(output));
145 }
146}
147
148string Context::package_version()
149{
150 return sr_package_version_string_get();
151}
152
153string Context::lib_version()
154{
155 return sr_lib_version_string_get();
156}
157
158map<string, shared_ptr<Driver>> Context::drivers()
159{
160 map<string, shared_ptr<Driver>> result;
161 for (const auto &entry: _drivers) {
162 const auto &name = entry.first;
163 const auto &driver = entry.second;
164 result.emplace(name, driver->share_owned_by(shared_from_this()));
165 }
166 return result;
167}
168
169map<string, shared_ptr<InputFormat>> Context::input_formats()
170{
171 map<string, shared_ptr<InputFormat>> result;
172 for (const auto &entry: _input_formats) {
173 const auto &name = entry.first;
174 const auto &input_format = entry.second;
175 result.emplace(name, input_format->share_owned_by(shared_from_this()));
176 }
177 return result;
178}
179
180map<string, shared_ptr<OutputFormat>> Context::output_formats()
181{
182 map<string, shared_ptr<OutputFormat>> result;
183 for (const auto &entry: _output_formats) {
184 const auto &name = entry.first;
185 const auto &output_format = entry.second;
186 result.emplace(name, output_format->share_owned_by(shared_from_this()));
187 }
188 return result;
189}
190
191Context::~Context()
192{
193 check(sr_exit(_structure));
194}
195
196const LogLevel *Context::log_level() const
197{
198 return LogLevel::get(sr_log_loglevel_get());
199}
200
201void Context::set_log_level(const LogLevel *level)
202{
203 check(sr_log_loglevel_set(level->id()));
204}
205
206static int call_log_callback(void *cb_data, int loglevel,
207 const char *format, va_list args) noexcept
208{
209 const unique_ptr<char, decltype(&g_free)>
210 message {g_strdup_vprintf(format, args), &g_free};
211
212 auto *const callback = static_cast<LogCallbackFunction *>(cb_data);
213
214 try {
215 (*callback)(LogLevel::get(loglevel), message.get());
216 } catch (Error e) {
217 return e.result;
218 }
219
220 return SR_OK;
221}
222
223void Context::set_log_callback(LogCallbackFunction callback)
224{
225 _log_callback = move(callback);
226 check(sr_log_callback_set(call_log_callback, &_log_callback));
227}
228
229void Context::set_log_callback_default()
230{
231 check(sr_log_callback_set_default());
232 _log_callback = nullptr;
233}
234
235void Context::set_resource_reader(ResourceReader *reader)
236{
237 if (reader) {
238 check(sr_resource_set_hooks(_structure,
239 &ResourceReader::open_callback,
240 &ResourceReader::close_callback,
241 &ResourceReader::read_callback, reader));
242 } else {
243 check(sr_resource_set_hooks(_structure,
244 nullptr, nullptr, nullptr, nullptr));
245 }
246}
247
248shared_ptr<Session> Context::create_session()
249{
250 return shared_ptr<Session>{new Session{shared_from_this()},
251 default_delete<Session>{}};
252}
253
254shared_ptr<UserDevice> Context::create_user_device(
255 string vendor, string model, string version)
256{
257 return shared_ptr<UserDevice>{
258 new UserDevice{move(vendor), move(model), move(version)},
259 default_delete<UserDevice>{}};
260}
261
262shared_ptr<Packet> Context::create_header_packet(Glib::TimeVal start_time)
263{
264 auto header = g_new(struct sr_datafeed_header, 1);
265 header->feed_version = 1;
266 header->starttime.tv_sec = start_time.tv_sec;
267 header->starttime.tv_usec = start_time.tv_usec;
268 auto packet = g_new(struct sr_datafeed_packet, 1);
269 packet->type = SR_DF_HEADER;
270 packet->payload = header;
271 return shared_ptr<Packet>{new Packet{nullptr, packet},
272 default_delete<Packet>{}};
273}
274
275shared_ptr<Packet> Context::create_meta_packet(
276 map<const ConfigKey *, Glib::VariantBase> config)
277{
278 auto meta = g_new0(struct sr_datafeed_meta, 1);
279 for (const auto &input : config) {
280 const auto &key = input.first;
281 const auto &value = input.second;
282 auto *const output = g_new(struct sr_config, 1);
283 output->key = key->id();
284 output->data = value.gobj_copy();
285 meta->config = g_slist_append(meta->config, output);
286 }
287 auto packet = g_new(struct sr_datafeed_packet, 1);
288 packet->type = SR_DF_META;
289 packet->payload = meta;
290 return shared_ptr<Packet>{new Packet{nullptr, packet},
291 default_delete<Packet>{}};
292}
293
294shared_ptr<Packet> Context::create_logic_packet(
295 void *data_pointer, size_t data_length, unsigned int unit_size)
296{
297 auto logic = g_new(struct sr_datafeed_logic, 1);
298 logic->length = data_length;
299 logic->unitsize = unit_size;
300 logic->data = data_pointer;
301 auto packet = g_new(struct sr_datafeed_packet, 1);
302 packet->type = SR_DF_LOGIC;
303 packet->payload = logic;
304 return shared_ptr<Packet>{new Packet{nullptr, packet}, default_delete<Packet>{}};
305}
306
307shared_ptr<Packet> Context::create_analog_packet(
308 vector<shared_ptr<Channel> > channels,
309 const float *data_pointer, unsigned int num_samples, const Quantity *mq,
310 const Unit *unit, vector<const QuantityFlag *> mqflags)
311{
312 auto analog = g_new0(struct sr_datafeed_analog, 1);
313 auto meaning = g_new0(struct sr_analog_meaning, 1);
314 auto encoding = g_new0(struct sr_analog_encoding, 1);
315 auto spec = g_new0(struct sr_analog_spec, 1);
316
317 analog->meaning = meaning;
318
319 for (const auto &channel : channels)
320 meaning->channels = g_slist_append(meaning->channels, channel->_structure);
321 meaning->mq = static_cast<sr_mq>(mq->id());
322 meaning->unit = static_cast<sr_unit>(unit->id());
323 meaning->mqflags = static_cast<sr_mqflag>(QuantityFlag::mask_from_flags(move(mqflags)));
324
325 analog->encoding = encoding;
326
327 encoding->unitsize = sizeof(float);
328 encoding->is_signed = TRUE;
329 encoding->is_float = TRUE;
330#ifdef WORDS_BIGENDIAN
331 encoding->is_bigendian = TRUE;
332#else
333 encoding->is_bigendian = FALSE;
334#endif
335 encoding->digits = 0;
336 encoding->is_digits_decimal = FALSE;
337 encoding->scale.p = 1;
338 encoding->scale.q = 1;
339 encoding->offset.p = 0;
340 encoding->offset.q = 1;
341
342 analog->spec = spec;
343
344 spec->spec_digits = 0;
345
346 analog->num_samples = num_samples;
347 analog->data = (float*)data_pointer;
348 auto packet = g_new(struct sr_datafeed_packet, 1);
349 packet->type = SR_DF_ANALOG;
350 packet->payload = analog;
351 return shared_ptr<Packet>{new Packet{nullptr, packet}, default_delete<Packet>{}};
352}
353
354shared_ptr<Session> Context::load_session(string filename)
355{
356 return shared_ptr<Session>{
357 new Session{shared_from_this(), move(filename)},
358 default_delete<Session>{}};
359}
360
361shared_ptr<Trigger> Context::create_trigger(string name)
362{
363 return shared_ptr<Trigger>{
364 new Trigger{shared_from_this(), move(name)},
365 default_delete<Trigger>{}};
366}
367
368shared_ptr<Input> Context::open_file(string filename)
369{
370 const struct sr_input *input;
371
372 check(sr_input_scan_file(filename.c_str(), &input));
373 return shared_ptr<Input>{
374 new Input{shared_from_this(), input},
375 default_delete<Input>{}};
376}
377
378shared_ptr<Input> Context::open_stream(string header)
379{
380 const struct sr_input *input;
381
382 auto gstr = g_string_new(header.c_str());
383 auto ret = sr_input_scan_buffer(gstr, &input);
384 g_string_free(gstr, true);
385 check(ret);
386 return shared_ptr<Input>{
387 new Input{shared_from_this(), input},
388 default_delete<Input>{}};
389}
390
391map<string, string> Context::serials(shared_ptr<Driver> driver) const
392{
393 GSList *serial_list = sr_serial_list(driver ? driver->_structure : nullptr);
394 map<string, string> serials;
395
396 for (GSList *serial = serial_list; serial; serial = serial->next) {
397 auto *const port = static_cast<sr_serial_port *>(serial->data);
398 serials[string(port->name)] = string(port->description);
399 }
400
401 g_slist_free_full(serial_list,
402 reinterpret_cast<GDestroyNotify>(&sr_serial_free));
403 return serials;
404}
405
406Driver::Driver(struct sr_dev_driver *structure) :
407 Configurable(structure, nullptr, nullptr),
408 _structure(structure),
409 _initialized(false)
410{
411}
412
413Driver::~Driver()
414{
415}
416
417string Driver::name() const
418{
419 return valid_string(_structure->name);
420}
421
422string Driver::long_name() const
423{
424 return valid_string(_structure->longname);
425}
426
427set<const ConfigKey *> Driver::scan_options() const
428{
429 GArray *opts = sr_driver_scan_options_list(_structure);
430 set<const ConfigKey *> result;
431 if (opts) {
432 for (guint i = 0; i < opts->len; i++)
433 result.insert(ConfigKey::get(g_array_index(opts, uint32_t, i)));
434 g_array_free(opts, TRUE);
435 }
436 return result;
437}
438
439vector<shared_ptr<HardwareDevice>> Driver::scan(
440 map<const ConfigKey *, Glib::VariantBase> options)
441{
442 /* Initialise the driver if not yet done. */
443 if (!_initialized) {
444 check(sr_driver_init(_parent->_structure, _structure));
445 _initialized = true;
446 }
447
448 /* Translate scan options to GSList of struct sr_config pointers. */
449 GSList *option_list = nullptr;
450 for (const auto &entry : options) {
451 const auto &key = entry.first;
452 const auto &value = entry.second;
453 auto *const config = g_new(struct sr_config, 1);
454 config->key = key->id();
455 config->data = const_cast<GVariant*>(value.gobj());
456 option_list = g_slist_append(option_list, config);
457 }
458
459 /* Run scan. */
460 GSList *device_list = sr_driver_scan(_structure, option_list);
461
462 /* Free option list. */
463 g_slist_free_full(option_list, g_free);
464
465
466 /* Create device objects. */
467 vector<shared_ptr<HardwareDevice>> result;
468 for (GSList *device = device_list; device; device = device->next) {
469 auto *const sdi = static_cast<struct sr_dev_inst *>(device->data);
470 shared_ptr<HardwareDevice> hwdev {
471 new HardwareDevice{shared_from_this(), sdi},
472 default_delete<HardwareDevice>{}};
473 result.push_back(move(hwdev));
474 }
475
476 /* Free GSList returned from scan. */
477 g_slist_free(device_list);
478
479 return result;
480}
481
482Configurable::Configurable(
483 struct sr_dev_driver *driver,
484 struct sr_dev_inst *sdi,
485 struct sr_channel_group *cg) :
486 config_driver(driver),
487 config_sdi(sdi),
488 config_channel_group(cg)
489{
490}
491
492Configurable::~Configurable()
493{
494}
495
496set<const ConfigKey *> Configurable::config_keys() const
497{
498 GArray *opts;
499 set<const ConfigKey *> result;
500
501 opts = sr_dev_options(config_driver, config_sdi, config_channel_group);
502
503 if (opts) {
504 for (guint i = 0; i < opts->len; i++)
505 result.insert(ConfigKey::get(g_array_index(opts, uint32_t, i)));
506 g_array_free(opts, TRUE);
507 }
508
509 return result;
510}
511
512Glib::VariantBase Configurable::config_get(const ConfigKey *key) const
513{
514 GVariant *data;
515 check(sr_config_get(
516 config_driver, config_sdi, config_channel_group,
517 key->id(), &data));
518 return Glib::VariantBase(data);
519}
520
521void Configurable::config_set(const ConfigKey *key, const Glib::VariantBase &value)
522{
523 check(sr_config_set(
524 config_sdi, config_channel_group,
525 key->id(), const_cast<GVariant*>(value.gobj())));
526}
527
528set<const Capability *> Configurable::config_capabilities(const ConfigKey *key) const
529{
530 int caps = sr_dev_config_capabilities_list(config_sdi,
531 config_channel_group, key->id());
532
533 set<const Capability *> result;
534
535 for (auto cap: Capability::values())
536 if (caps & cap->id())
537 result.insert(cap);
538
539 return result;
540}
541
542bool Configurable::config_check(const ConfigKey *key,
543 const Capability *capability) const
544{
545 int caps = sr_dev_config_capabilities_list(config_sdi,
546 config_channel_group, key->id());
547
548 return (caps & capability->id());
549}
550
551Glib::VariantContainerBase Configurable::config_list(const ConfigKey *key) const
552{
553 GVariant *data;
554 check(sr_config_list(
555 config_driver, config_sdi, config_channel_group,
556 key->id(), &data));
557 return Glib::VariantContainerBase(data);
558}
559
560Device::Device(struct sr_dev_inst *structure) :
561 Configurable(sr_dev_inst_driver_get(structure), structure, nullptr),
562 _structure(structure)
563{
564 for (GSList *entry = sr_dev_inst_channels_get(structure); entry; entry = entry->next) {
565 auto *const ch = static_cast<struct sr_channel *>(entry->data);
566 unique_ptr<Channel> channel {new Channel{ch}};
567 _channels.emplace(ch, move(channel));
568 }
569
570 for (GSList *entry = sr_dev_inst_channel_groups_get(structure); entry; entry = entry->next) {
571 auto *const cg = static_cast<struct sr_channel_group *>(entry->data);
572 unique_ptr<ChannelGroup> group {new ChannelGroup{this, cg}};
573 _channel_groups.emplace(group->name(), move(group));
574 }
575}
576
577Device::~Device()
578{
579}
580
581string Device::vendor() const
582{
583 return valid_string(sr_dev_inst_vendor_get(_structure));
584}
585
586string Device::model() const
587{
588 return valid_string(sr_dev_inst_model_get(_structure));
589}
590
591string Device::version() const
592{
593 return valid_string(sr_dev_inst_version_get(_structure));
594}
595
596string Device::serial_number() const
597{
598 return valid_string(sr_dev_inst_sernum_get(_structure));
599}
600
601string Device::connection_id() const
602{
603 return valid_string(sr_dev_inst_connid_get(_structure));
604}
605
606vector<shared_ptr<Channel>> Device::channels()
607{
608 vector<shared_ptr<Channel>> result;
609 for (auto channel = sr_dev_inst_channels_get(_structure); channel; channel = channel->next) {
610 auto *const ch = static_cast<struct sr_channel *>(channel->data);
611 result.push_back(_channels[ch]->share_owned_by(get_shared_from_this()));
612 }
613 return result;
614}
615
616shared_ptr<Channel> Device::get_channel(struct sr_channel *ptr)
617{
618 return _channels[ptr]->share_owned_by(get_shared_from_this());
619}
620
621map<string, shared_ptr<ChannelGroup>>
622Device::channel_groups()
623{
624 map<string, shared_ptr<ChannelGroup>> result;
625 for (const auto &entry: _channel_groups) {
626 const auto &name = entry.first;
627 const auto &channel_group = entry.second;
628 result.emplace(name, channel_group->share_owned_by(get_shared_from_this()));
629 }
630 return result;
631}
632
633void Device::open()
634{
635 check(sr_dev_open(_structure));
636}
637
638void Device::close()
639{
640 check(sr_dev_close(_structure));
641}
642
643HardwareDevice::HardwareDevice(shared_ptr<Driver> driver,
644 struct sr_dev_inst *structure) :
645 Device(structure),
646 _driver(move(driver))
647{
648}
649
650HardwareDevice::~HardwareDevice()
651{
652}
653
654shared_ptr<Device> HardwareDevice::get_shared_from_this()
655{
656 return static_pointer_cast<Device>(shared_from_this());
657}
658
659shared_ptr<Driver> HardwareDevice::driver()
660{
661 return _driver;
662}
663
664UserDevice::UserDevice(string vendor, string model, string version) :
665 Device(sr_dev_inst_user_new(
666 vendor.c_str(), model.c_str(), version.c_str()))
667{
668}
669
670UserDevice::~UserDevice()
671{
672}
673
674shared_ptr<Device> UserDevice::get_shared_from_this()
675{
676 return static_pointer_cast<Device>(shared_from_this());
677}
678
679shared_ptr<Channel> UserDevice::add_channel(unsigned int index,
680 const ChannelType *type, string name)
681{
682 check(sr_dev_inst_channel_add(Device::_structure,
683 index, type->id(), name.c_str()));
684 GSList *const last = g_slist_last(sr_dev_inst_channels_get(Device::_structure));
685 auto *const ch = static_cast<struct sr_channel *>(last->data);
686 unique_ptr<Channel> channel {new Channel{ch}};
687 _channels.emplace(ch, move(channel));
688 return get_channel(ch);
689}
690
691Channel::Channel(struct sr_channel *structure) :
692 _structure(structure),
693 _type(ChannelType::get(_structure->type))
694{
695}
696
697Channel::~Channel()
698{
699}
700
701string Channel::name() const
702{
703 return valid_string(_structure->name);
704}
705
706void Channel::set_name(string name)
707{
708 check(sr_dev_channel_name_set(_structure, name.c_str()));
709}
710
711const ChannelType *Channel::type() const
712{
713 return ChannelType::get(_structure->type);
714}
715
716bool Channel::enabled() const
717{
718 return _structure->enabled;
719}
720
721void Channel::set_enabled(bool value)
722{
723 check(sr_dev_channel_enable(_structure, value));
724}
725
726unsigned int Channel::index() const
727{
728 return _structure->index;
729}
730
731ChannelGroup::ChannelGroup(const Device *device,
732 struct sr_channel_group *structure) :
733 Configurable(sr_dev_inst_driver_get(device->_structure), device->_structure, structure)
734{
735 for (GSList *entry = config_channel_group->channels; entry; entry = entry->next) {
736 auto *const ch = static_cast<struct sr_channel *>(entry->data);
737 /* Note: This relies on Device::_channels to keep the Channel
738 * objects around over the lifetime of the ChannelGroup. */
739 _channels.push_back(device->_channels.find(ch)->second.get());
740 }
741}
742
743ChannelGroup::~ChannelGroup()
744{
745}
746
747string ChannelGroup::name() const
748{
749 return valid_string(config_channel_group->name);
750}
751
752vector<shared_ptr<Channel>> ChannelGroup::channels()
753{
754 vector<shared_ptr<Channel>> result;
755 for (const auto &channel : _channels)
756 result.push_back(channel->share_owned_by(_parent));
757 return result;
758}
759
760Trigger::Trigger(shared_ptr<Context> context, string name) :
761 _structure(sr_trigger_new(name.c_str())),
762 _context(move(context))
763{
764 for (auto *stage = _structure->stages; stage; stage = stage->next) {
765 unique_ptr<TriggerStage> ts {new TriggerStage{
766 static_cast<struct sr_trigger_stage *>(stage->data)}};
767 _stages.push_back(move(ts));
768 }
769}
770
771Trigger::~Trigger()
772{
773 sr_trigger_free(_structure);
774}
775
776string Trigger::name() const
777{
778 return _structure->name;
779}
780
781vector<shared_ptr<TriggerStage>> Trigger::stages()
782{
783 vector<shared_ptr<TriggerStage>> result;
784 for (const auto &stage : _stages)
785 result.push_back(stage->share_owned_by(shared_from_this()));
786 return result;
787}
788
789shared_ptr<TriggerStage> Trigger::add_stage()
790{
791 unique_ptr<TriggerStage> stage {new TriggerStage{sr_trigger_stage_add(_structure)}};
792 _stages.push_back(move(stage));
793 return _stages.back()->share_owned_by(shared_from_this());
794}
795
796TriggerStage::TriggerStage(struct sr_trigger_stage *structure) :
797 _structure(structure)
798{
799}
800
801TriggerStage::~TriggerStage()
802{
803}
804
805int TriggerStage::number() const
806{
807 return _structure->stage;
808}
809
810vector<shared_ptr<TriggerMatch>> TriggerStage::matches()
811{
812 vector<shared_ptr<TriggerMatch>> result;
813 for (const auto &match : _matches)
814 result.push_back(match->share_owned_by(shared_from_this()));
815 return result;
816}
817
818void TriggerStage::add_match(shared_ptr<Channel> channel,
819 const TriggerMatchType *type, float value)
820{
821 check(sr_trigger_match_add(_structure,
822 channel->_structure, type->id(), value));
823 GSList *const last = g_slist_last(_structure->matches);
824 unique_ptr<TriggerMatch> match {new TriggerMatch{
825 static_cast<struct sr_trigger_match *>(last->data),
826 move(channel)}};
827 _matches.push_back(move(match));
828}
829
830void TriggerStage::add_match(shared_ptr<Channel> channel,
831 const TriggerMatchType *type)
832{
833 add_match(move(channel), type, NAN);
834}
835
836TriggerMatch::TriggerMatch(struct sr_trigger_match *structure,
837 shared_ptr<Channel> channel) :
838 _structure(structure),
839 _channel(move(channel))
840{
841}
842
843TriggerMatch::~TriggerMatch()
844{
845}
846
847shared_ptr<Channel> TriggerMatch::channel()
848{
849 return _channel;
850}
851
852const TriggerMatchType *TriggerMatch::type() const
853{
854 return TriggerMatchType::get(_structure->match);
855}
856
857float TriggerMatch::value() const
858{
859 return _structure->value;
860}
861
862DatafeedCallbackData::DatafeedCallbackData(Session *session,
863 DatafeedCallbackFunction callback) :
864 _callback(move(callback)),
865 _session(session)
866{
867}
868
869void DatafeedCallbackData::run(const struct sr_dev_inst *sdi,
870 const struct sr_datafeed_packet *pkt)
871{
872 auto device = _session->get_device(sdi);
873 shared_ptr<Packet> packet {new Packet{device, pkt}, default_delete<Packet>{}};
874 _callback(move(device), move(packet));
875}
876
877SessionDevice::SessionDevice(struct sr_dev_inst *structure) :
878 Device(structure)
879{
880}
881
882SessionDevice::~SessionDevice()
883{
884}
885
886shared_ptr<Device> SessionDevice::get_shared_from_this()
887{
888 return static_pointer_cast<Device>(shared_from_this());
889}
890
891Session::Session(shared_ptr<Context> context) :
892 _structure(nullptr),
893 _context(move(context))
894{
895 check(sr_session_new(_context->_structure, &_structure));
896 _context->_session = this;
897}
898
899Session::Session(shared_ptr<Context> context, string filename) :
900 _structure(nullptr),
901 _context(move(context)),
902 _filename(move(filename))
903{
904 check(sr_session_load(_context->_structure, _filename.c_str(), &_structure));
905 GSList *dev_list;
906 check(sr_session_dev_list(_structure, &dev_list));
907 for (GSList *dev = dev_list; dev; dev = dev->next) {
908 auto *const sdi = static_cast<struct sr_dev_inst *>(dev->data);
909 unique_ptr<SessionDevice> device {new SessionDevice{sdi}};
910 _owned_devices.emplace(sdi, move(device));
911 }
912 _context->_session = this;
913}
914
915Session::~Session()
916{
917 check(sr_session_destroy(_structure));
918}
919
920shared_ptr<Device> Session::get_device(const struct sr_dev_inst *sdi)
921{
922 if (_owned_devices.count(sdi))
923 return static_pointer_cast<Device>(
924 _owned_devices[sdi]->share_owned_by(shared_from_this()));
925 else if (_other_devices.count(sdi))
926 return _other_devices[sdi];
927 else
928 throw Error(SR_ERR_BUG);
929}
930
931void Session::add_device(shared_ptr<Device> device)
932{
933 const auto dev_struct = device->_structure;
934 check(sr_session_dev_add(_structure, dev_struct));
935 _other_devices[dev_struct] = move(device);
936}
937
938vector<shared_ptr<Device>> Session::devices()
939{
940 GSList *dev_list;
941 check(sr_session_dev_list(_structure, &dev_list));
942 vector<shared_ptr<Device>> result;
943 for (GSList *dev = dev_list; dev; dev = dev->next) {
944 auto *const sdi = static_cast<struct sr_dev_inst *>(dev->data);
945 result.push_back(get_device(sdi));
946 }
947 return result;
948}
949
950void Session::remove_devices()
951{
952 _other_devices.clear();
953 check(sr_session_dev_remove_all(_structure));
954}
955
956void Session::start()
957{
958 check(sr_session_start(_structure));
959}
960
961void Session::run()
962{
963 check(sr_session_run(_structure));
964}
965
966void Session::stop()
967{
968 check(sr_session_stop(_structure));
969}
970
971bool Session::is_running() const
972{
973 const int ret = sr_session_is_running(_structure);
974 if (ret < 0)
975 throw Error{ret};
976 return (ret != 0);
977}
978
979static void session_stopped_callback(void *data) noexcept
980{
981 auto *const callback = static_cast<SessionStoppedCallback*>(data);
982 (*callback)();
983}
984
985void Session::set_stopped_callback(SessionStoppedCallback callback)
986{
987 _stopped_callback = move(callback);
988 if (_stopped_callback)
989 check(sr_session_stopped_callback_set(_structure,
990 &session_stopped_callback, &_stopped_callback));
991 else
992 check(sr_session_stopped_callback_set(_structure,
993 nullptr, nullptr));
994}
995
996static void datafeed_callback(const struct sr_dev_inst *sdi,
997 const struct sr_datafeed_packet *pkt, void *cb_data) noexcept
998{
999 auto callback = static_cast<DatafeedCallbackData *>(cb_data);
1000 callback->run(sdi, pkt);
1001}
1002
1003void Session::add_datafeed_callback(DatafeedCallbackFunction callback)
1004{
1005 unique_ptr<DatafeedCallbackData> cb_data
1006 {new DatafeedCallbackData{this, move(callback)}};
1007 check(sr_session_datafeed_callback_add(_structure,
1008 &datafeed_callback, cb_data.get()));
1009 _datafeed_callbacks.push_back(move(cb_data));
1010}
1011
1012void Session::remove_datafeed_callbacks()
1013{
1014 check(sr_session_datafeed_callback_remove_all(_structure));
1015 _datafeed_callbacks.clear();
1016}
1017
1018shared_ptr<Trigger> Session::trigger()
1019{
1020 return _trigger;
1021}
1022
1023void Session::set_trigger(shared_ptr<Trigger> trigger)
1024{
1025 if (!trigger)
1026 // Set NULL trigger, i.e. remove any trigger from the session.
1027 check(sr_session_trigger_set(_structure, nullptr));
1028 else
1029 check(sr_session_trigger_set(_structure, trigger->_structure));
1030 _trigger = move(trigger);
1031}
1032
1033string Session::filename() const
1034{
1035 return _filename;
1036}
1037
1038shared_ptr<Context> Session::context()
1039{
1040 return _context;
1041}
1042
1043Packet::Packet(shared_ptr<Device> device,
1044 const struct sr_datafeed_packet *structure) :
1045 _structure(structure),
1046 _device(move(device))
1047{
1048 switch (structure->type)
1049 {
1050 case SR_DF_HEADER:
1051 _payload.reset(new Header{
1052 static_cast<const struct sr_datafeed_header *>(
1053 structure->payload)});
1054 break;
1055 case SR_DF_META:
1056 _payload.reset(new Meta{
1057 static_cast<const struct sr_datafeed_meta *>(
1058 structure->payload)});
1059 break;
1060 case SR_DF_LOGIC:
1061 _payload.reset(new Logic{
1062 static_cast<const struct sr_datafeed_logic *>(
1063 structure->payload)});
1064 break;
1065 case SR_DF_ANALOG:
1066 _payload.reset(new Analog{
1067 static_cast<const struct sr_datafeed_analog *>(
1068 structure->payload)});
1069 break;
1070 }
1071}
1072
1073Packet::~Packet()
1074{
1075}
1076
1077const PacketType *Packet::type() const
1078{
1079 return PacketType::get(_structure->type);
1080}
1081
1082shared_ptr<PacketPayload> Packet::payload()
1083{
1084 if (_payload)
1085 return _payload->share_owned_by(shared_from_this());
1086 else
1087 throw Error(SR_ERR_NA);
1088}
1089
1090PacketPayload::PacketPayload()
1091{
1092}
1093
1094PacketPayload::~PacketPayload()
1095{
1096}
1097
1098Header::Header(const struct sr_datafeed_header *structure) :
1099 PacketPayload(),
1100 _structure(structure)
1101{
1102}
1103
1104Header::~Header()
1105{
1106}
1107
1108shared_ptr<PacketPayload> Header::share_owned_by(shared_ptr<Packet> _parent)
1109{
1110 return static_pointer_cast<PacketPayload>(
1111 ParentOwned::share_owned_by(_parent));
1112}
1113
1114int Header::feed_version() const
1115{
1116 return _structure->feed_version;
1117}
1118
1119Glib::TimeVal Header::start_time() const
1120{
1121 return Glib::TimeVal(
1122 _structure->starttime.tv_sec,
1123 _structure->starttime.tv_usec);
1124}
1125
1126Meta::Meta(const struct sr_datafeed_meta *structure) :
1127 PacketPayload(),
1128 _structure(structure)
1129{
1130}
1131
1132Meta::~Meta()
1133{
1134}
1135
1136shared_ptr<PacketPayload> Meta::share_owned_by(shared_ptr<Packet> _parent)
1137{
1138 return static_pointer_cast<PacketPayload>(
1139 ParentOwned::share_owned_by(_parent));
1140}
1141
1142map<const ConfigKey *, Glib::VariantBase> Meta::config() const
1143{
1144 map<const ConfigKey *, Glib::VariantBase> result;
1145 for (auto l = _structure->config; l; l = l->next) {
1146 auto *const config = static_cast<struct sr_config *>(l->data);
1147 result[ConfigKey::get(config->key)] = Glib::VariantBase(config->data, true);
1148 }
1149 return result;
1150}
1151
1152Logic::Logic(const struct sr_datafeed_logic *structure) :
1153 PacketPayload(),
1154 _structure(structure)
1155{
1156}
1157
1158Logic::~Logic()
1159{
1160}
1161
1162shared_ptr<PacketPayload> Logic::share_owned_by(shared_ptr<Packet> _parent)
1163{
1164 return static_pointer_cast<PacketPayload>(
1165 ParentOwned::share_owned_by(_parent));
1166}
1167
1168void *Logic::data_pointer()
1169{
1170 return _structure->data;
1171}
1172
1173size_t Logic::data_length() const
1174{
1175 return _structure->length;
1176}
1177
1178unsigned int Logic::unit_size() const
1179{
1180 return _structure->unitsize;
1181}
1182
1183Analog::Analog(const struct sr_datafeed_analog *structure) :
1184 PacketPayload(),
1185 _structure(structure)
1186{
1187}
1188
1189Analog::~Analog()
1190{
1191}
1192
1193shared_ptr<PacketPayload> Analog::share_owned_by(shared_ptr<Packet> _parent)
1194{
1195 return static_pointer_cast<PacketPayload>(
1196 ParentOwned::share_owned_by(_parent));
1197}
1198
1199void *Analog::data_pointer()
1200{
1201 return _structure->data;
1202}
1203
1204void Analog::get_data_as_float(float *dest)
1205{
1206 check(sr_analog_to_float(_structure, dest));
1207}
1208
1209unsigned int Analog::num_samples() const
1210{
1211 return _structure->num_samples;
1212}
1213
1214vector<shared_ptr<Channel>> Analog::channels()
1215{
1216 vector<shared_ptr<Channel>> result;
1217 for (auto l = _structure->meaning->channels; l; l = l->next) {
1218 auto *const ch = static_cast<struct sr_channel *>(l->data);
1219 result.push_back(_parent->_device->get_channel(ch));
1220 }
1221 return result;
1222}
1223
1224unsigned int Analog::unitsize() const
1225{
1226 return _structure->encoding->unitsize;
1227}
1228
1229bool Analog::is_signed() const
1230{
1231 return _structure->encoding->is_signed;
1232}
1233
1234bool Analog::is_float() const
1235{
1236 return _structure->encoding->is_float;
1237}
1238
1239bool Analog::is_bigendian() const
1240{
1241 return _structure->encoding->is_bigendian;
1242}
1243
1244int Analog::digits() const
1245{
1246 return _structure->encoding->digits;
1247}
1248
1249bool Analog::is_digits_decimal() const
1250{
1251 return _structure->encoding->is_digits_decimal;
1252}
1253
1254shared_ptr<Rational> Analog::scale()
1255{
1256 unique_ptr<Rational> scale;
1257 scale.reset(new Rational(&(_structure->encoding->scale)));
1258
1259 if (scale)
1260 return scale->share_owned_by(shared_from_this());
1261 else
1262 throw Error(SR_ERR_NA);
1263}
1264
1265shared_ptr<Rational> Analog::offset()
1266{
1267 unique_ptr<Rational> offset;
1268 offset.reset(new Rational(&(_structure->encoding->offset)));
1269
1270 if (offset)
1271 return offset->share_owned_by(shared_from_this());
1272 else
1273 throw Error(SR_ERR_NA);
1274}
1275
1276const Quantity *Analog::mq() const
1277{
1278 return Quantity::get(_structure->meaning->mq);
1279}
1280
1281const Unit *Analog::unit() const
1282{
1283 return Unit::get(_structure->meaning->unit);
1284}
1285
1286vector<const QuantityFlag *> Analog::mq_flags() const
1287{
1288 return QuantityFlag::flags_from_mask(_structure->meaning->mqflags);
1289}
1290
1291shared_ptr<Logic> Analog::get_logic_via_threshold(float threshold,
1292 uint8_t *data_ptr) const
1293{
1294 auto datafeed = g_new(struct sr_datafeed_logic, 1);
1295 datafeed->length = num_samples();
1296 datafeed->unitsize = 1;
1297
1298 if (data_ptr)
1299 datafeed->data = data_ptr;
1300 else
1301 datafeed->data = g_malloc(datafeed->length);
1302
1303 shared_ptr<Logic> logic =
1304 shared_ptr<Logic>{new Logic{datafeed}, default_delete<Logic>{}};
1305
1306 check(sr_a2l_threshold(_structure, threshold,
1307 (uint8_t*)datafeed->data, datafeed->length));
1308
1309 return logic;
1310}
1311
1312shared_ptr<Logic> Analog::get_logic_via_schmitt_trigger(float lo_thr,
1313 float hi_thr, uint8_t *state, uint8_t *data_ptr) const
1314{
1315 auto datafeed = g_new(struct sr_datafeed_logic, 1);
1316 datafeed->length = num_samples();
1317 datafeed->unitsize = 1;
1318
1319 if (data_ptr)
1320 datafeed->data = data_ptr;
1321 else
1322 datafeed->data = g_malloc(datafeed->length);
1323
1324 shared_ptr<Logic> logic =
1325 shared_ptr<Logic>{new Logic{datafeed}, default_delete<Logic>{}};
1326
1327 check(sr_a2l_schmitt_trigger(_structure, lo_thr, hi_thr, state,
1328 (uint8_t*)datafeed->data, datafeed->length));
1329
1330 return logic;
1331}
1332
1333Rational::Rational(const struct sr_rational *structure) :
1334 _structure(structure)
1335{
1336}
1337
1338Rational::~Rational()
1339{
1340}
1341
1342shared_ptr<Rational> Rational::share_owned_by(shared_ptr<Analog> _parent)
1343{
1344 return static_pointer_cast<Rational>(
1345 ParentOwned::share_owned_by(_parent));
1346}
1347
1348int64_t Rational::numerator() const
1349{
1350 return _structure->p;
1351}
1352
1353uint64_t Rational::denominator() const
1354{
1355 return _structure->q;
1356}
1357
1358float Rational::value() const
1359{
1360 return (float)(_structure->p) / (float)(_structure->q);
1361}
1362
1363InputFormat::InputFormat(const struct sr_input_module *structure) :
1364 _structure(structure)
1365{
1366}
1367
1368InputFormat::~InputFormat()
1369{
1370}
1371
1372string InputFormat::name() const
1373{
1374 return valid_string(sr_input_id_get(_structure));
1375}
1376
1377string InputFormat::description() const
1378{
1379 return valid_string(sr_input_description_get(_structure));
1380}
1381
1382vector<string> InputFormat::extensions() const
1383{
1384 vector<string> exts;
1385 for (const char *const *e = sr_input_extensions_get(_structure);
1386 e && *e; e++)
1387 exts.push_back(*e);
1388 return exts;
1389}
1390
1391map<string, shared_ptr<Option>> InputFormat::options()
1392{
1393 map<string, shared_ptr<Option>> result;
1394
1395 if (const struct sr_option **options = sr_input_options_get(_structure)) {
1396 shared_ptr<const struct sr_option *> option_array
1397 {options, &sr_input_options_free};
1398 for (int i = 0; options[i]; i++) {
1399 shared_ptr<Option> opt {
1400 new Option{options[i], option_array},
1401 default_delete<Option>{}};
1402 result.emplace(opt->id(), move(opt));
1403 }
1404 }
1405 return result;
1406}
1407
1408shared_ptr<Input> InputFormat::create_input(
1409 map<string, Glib::VariantBase> options)
1410{
1411 auto input = sr_input_new(_structure, map_to_hash_variant(options));
1412 if (!input)
1413 throw Error(SR_ERR_ARG);
1414 return shared_ptr<Input>{new Input{_parent, input}, default_delete<Input>{}};
1415}
1416
1417Input::Input(shared_ptr<Context> context, const struct sr_input *structure) :
1418 _structure(structure),
1419 _context(move(context))
1420{
1421}
1422
1423shared_ptr<InputDevice> Input::device()
1424{
1425 if (!_device) {
1426 auto sdi = sr_input_dev_inst_get(_structure);
1427 if (!sdi)
1428 throw Error(SR_ERR_NA);
1429 _device.reset(new InputDevice{shared_from_this(), sdi});
1430 }
1431
1432 return _device->share_owned_by(shared_from_this());
1433}
1434
1435void Input::send(void *data, size_t length)
1436{
1437 auto gstr = g_string_new_len(static_cast<char *>(data), length);
1438 auto ret = sr_input_send(_structure, gstr);
1439 g_string_free(gstr, true);
1440 check(ret);
1441}
1442
1443void Input::end()
1444{
1445 check(sr_input_end(_structure));
1446}
1447
1448void Input::reset()
1449{
1450 check(sr_input_reset(_structure));
1451}
1452
1453Input::~Input()
1454{
1455 sr_input_free(_structure);
1456}
1457
1458InputDevice::InputDevice(shared_ptr<Input> input,
1459 struct sr_dev_inst *structure) :
1460 Device(structure),
1461 _input(move(input))
1462{
1463}
1464
1465InputDevice::~InputDevice()
1466{
1467}
1468
1469shared_ptr<Device> InputDevice::get_shared_from_this()
1470{
1471 return static_pointer_cast<Device>(shared_from_this());
1472}
1473
1474Option::Option(const struct sr_option *structure,
1475 shared_ptr<const struct sr_option *> structure_array) :
1476 _structure(structure),
1477 _structure_array(move(structure_array))
1478{
1479}
1480
1481Option::~Option()
1482{
1483}
1484
1485string Option::id() const
1486{
1487 return valid_string(_structure->id);
1488}
1489
1490string Option::name() const
1491{
1492 return valid_string(_structure->name);
1493}
1494
1495string Option::description() const
1496{
1497 return valid_string(_structure->desc);
1498}
1499
1500Glib::VariantBase Option::default_value() const
1501{
1502 return Glib::VariantBase(_structure->def, true);
1503}
1504
1505vector<Glib::VariantBase> Option::values() const
1506{
1507 vector<Glib::VariantBase> result;
1508 for (auto l = _structure->values; l; l = l->next) {
1509 auto *const var = static_cast<GVariant *>(l->data);
1510 result.push_back(Glib::VariantBase(var, true));
1511 }
1512 return result;
1513}
1514
1515Glib::VariantBase Option::parse_string(string value)
1516{
1517 enum sr_datatype dt;
1518 Glib::VariantBase dflt = default_value();
1519 GVariant *tmpl = dflt.gobj();
1520
1521 if (g_variant_is_of_type(tmpl, G_VARIANT_TYPE_UINT64)) {
1522 dt = SR_T_UINT64;
1523 } else if (g_variant_is_of_type(tmpl, G_VARIANT_TYPE_STRING)) {
1524 dt = SR_T_STRING;
1525 } else if (g_variant_is_of_type(tmpl, G_VARIANT_TYPE_BOOLEAN)) {
1526 dt = SR_T_BOOL;
1527 } else if (g_variant_is_of_type(tmpl, G_VARIANT_TYPE_DOUBLE)) {
1528 dt = SR_T_FLOAT;
1529 } else if (g_variant_is_of_type(tmpl, G_VARIANT_TYPE_INT32)) {
1530 dt = SR_T_INT32;
1531 } else {
1532 throw Error(SR_ERR_BUG);
1533 }
1534 return ConfigKey::parse_string(value, dt);
1535}
1536
1537OutputFormat::OutputFormat(const struct sr_output_module *structure) :
1538 _structure(structure)
1539{
1540}
1541
1542OutputFormat::~OutputFormat()
1543{
1544}
1545
1546string OutputFormat::name() const
1547{
1548 return valid_string(sr_output_id_get(_structure));
1549}
1550
1551string OutputFormat::description() const
1552{
1553 return valid_string(sr_output_description_get(_structure));
1554}
1555
1556vector<string> OutputFormat::extensions() const
1557{
1558 vector<string> exts;
1559 for (const char *const *e = sr_output_extensions_get(_structure);
1560 e && *e; e++)
1561 exts.push_back(*e);
1562 return exts;
1563}
1564
1565map<string, shared_ptr<Option>> OutputFormat::options()
1566{
1567 map<string, shared_ptr<Option>> result;
1568
1569 if (const struct sr_option **options = sr_output_options_get(_structure)) {
1570 shared_ptr<const struct sr_option *> option_array
1571 {options, &sr_output_options_free};
1572 for (int i = 0; options[i]; i++) {
1573 shared_ptr<Option> opt {
1574 new Option{options[i], option_array},
1575 default_delete<Option>{}};
1576 result.emplace(opt->id(), move(opt));
1577 }
1578 }
1579 return result;
1580}
1581
1582shared_ptr<Output> OutputFormat::create_output(
1583 shared_ptr<Device> device, map<string, Glib::VariantBase> options)
1584{
1585 return shared_ptr<Output>{
1586 new Output{shared_from_this(), move(device), move(options)},
1587 default_delete<Output>{}};
1588}
1589
1590shared_ptr<Output> OutputFormat::create_output(string filename,
1591 shared_ptr<Device> device, map<string, Glib::VariantBase> options)
1592{
1593 return shared_ptr<Output>{
1594 new Output{move(filename), shared_from_this(), move(device), move(options)},
1595 default_delete<Output>{}};
1596}
1597
1598bool OutputFormat::test_flag(const OutputFlag *flag) const
1599{
1600 return sr_output_test_flag(_structure, flag->id());
1601}
1602
1603Output::Output(shared_ptr<OutputFormat> format,
1604 shared_ptr<Device> device, map<string, Glib::VariantBase> options) :
1605 _structure(sr_output_new(format->_structure,
1606 map_to_hash_variant(options), device->_structure, nullptr)),
1607 _format(move(format)),
1608 _device(move(device)),
1609 _options(move(options))
1610{
1611}
1612
1613Output::Output(string filename, shared_ptr<OutputFormat> format,
1614 shared_ptr<Device> device, map<string, Glib::VariantBase> options) :
1615 _structure(sr_output_new(format->_structure,
1616 map_to_hash_variant(options), device->_structure, filename.c_str())),
1617 _format(move(format)),
1618 _device(move(device)),
1619 _options(move(options))
1620{
1621}
1622
1623Output::~Output()
1624{
1625 check(sr_output_free(_structure));
1626}
1627
1628string Output::receive(shared_ptr<Packet> packet)
1629{
1630 GString *out;
1631 check(sr_output_send(_structure, packet->_structure, &out));
1632 if (out) {
1633 auto result = string(out->str, out->str + out->len);
1634 g_string_free(out, true);
1635 return result;
1636 } else {
1637 return string();
1638 }
1639}
1640
1641#include <enums.cpp>
1642
1643}