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Session: Fix issue #67 by improving error handling
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1/*
2 * This file is part of the PulseView project.
3 *
4 * Copyright (C) 2012-14 Joel Holdsworth <joel@airwebreathe.org.uk>
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 2 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 <cassert>
21#include <memory>
22#include <mutex>
23#include <stdexcept>
24
25#include <sys/stat.h>
26
27#include <QDebug>
28#include <QDir>
29#include <QFileInfo>
30
31#include "devicemanager.hpp"
32#include "mainwindow.hpp"
33#include "session.hpp"
34#include "util.hpp"
35
36#include "data/analog.hpp"
37#include "data/analogsegment.hpp"
38#include "data/decode/decoder.hpp"
39#include "data/logic.hpp"
40#include "data/logicsegment.hpp"
41#include "data/mathsignal.hpp"
42#include "data/signalbase.hpp"
43
44#include "devices/hardwaredevice.hpp"
45#include "devices/inputfile.hpp"
46#include "devices/sessionfile.hpp"
47
48#include "toolbars/mainbar.hpp"
49
50#include "views/trace/analogsignal.hpp"
51#include "views/trace/decodetrace.hpp"
52#include "views/trace/logicsignal.hpp"
53#include "views/trace/signal.hpp"
54#include "views/trace/view.hpp"
55
56#include <libsigrokcxx/libsigrokcxx.hpp>
57
58#ifdef ENABLE_FLOW
59#include <gstreamermm.h>
60#include <libsigrokflow/libsigrokflow.hpp>
61#endif
62
63#ifdef ENABLE_DECODE
64#include <libsigrokdecode/libsigrokdecode.h>
65#include "data/decodesignal.hpp"
66#endif
67
68using std::bad_alloc;
69using std::dynamic_pointer_cast;
70using std::find_if;
71using std::function;
72using std::list;
73using std::lock_guard;
74using std::make_pair;
75using std::make_shared;
76using std::map;
77using std::max;
78using std::move;
79using std::mutex;
80using std::pair;
81using std::recursive_mutex;
82using std::runtime_error;
83using std::shared_ptr;
84using std::string;
85#ifdef ENABLE_FLOW
86using std::unique_lock;
87#endif
88using std::unique_ptr;
89using std::vector;
90
91using sigrok::Analog;
92using sigrok::Channel;
93using sigrok::ConfigKey;
94using sigrok::DatafeedCallbackFunction;
95using sigrok::Error;
96using sigrok::InputFormat;
97using sigrok::Logic;
98using sigrok::Meta;
99using sigrok::Packet;
100using sigrok::Session;
101
102using Glib::VariantBase;
103
104#ifdef ENABLE_FLOW
105using Gst::Bus;
106using Gst::ElementFactory;
107using Gst::Pipeline;
108#endif
109
110using pv::data::SignalGroup;
111using pv::util::Timestamp;
112using pv::views::trace::Signal;
113using pv::views::trace::AnalogSignal;
114using pv::views::trace::LogicSignal;
115
116namespace pv {
117
118shared_ptr<sigrok::Context> Session::sr_context;
119
120Session::Session(DeviceManager &device_manager, QString name) :
121 shutting_down_(false),
122 device_manager_(device_manager),
123 default_name_(name),
124 name_(name),
125 capture_state_(Stopped),
126 cur_samplerate_(0),
127 data_saved_(true)
128{
129 // Use this name also for the QObject instance
130 setObjectName(name_);
131}
132
133Session::~Session()
134{
135 shutting_down_ = true;
136
137 // Stop and join to the thread
138 stop_capture();
139
140 for (SignalGroup* group : signal_groups_) {
141 group->clear();
142 delete group;
143 }
144}
145
146DeviceManager& Session::device_manager()
147{
148 return device_manager_;
149}
150
151const DeviceManager& Session::device_manager() const
152{
153 return device_manager_;
154}
155
156shared_ptr<sigrok::Session> Session::session() const
157{
158 if (!device_)
159 return shared_ptr<sigrok::Session>();
160 return device_->session();
161}
162
163shared_ptr<devices::Device> Session::device() const
164{
165 return device_;
166}
167
168QString Session::name() const
169{
170 return name_;
171}
172
173void Session::set_name(QString name)
174{
175 if (default_name_.isEmpty())
176 default_name_ = name;
177
178 name_ = name;
179
180 // Use this name also for the QObject instance
181 setObjectName(name_);
182
183 name_changed();
184}
185
186QString Session::save_path() const
187{
188 return save_path_;
189}
190
191void Session::set_save_path(QString path)
192{
193 save_path_ = path;
194}
195
196const vector< shared_ptr<views::ViewBase> > Session::views() const
197{
198 return views_;
199}
200
201shared_ptr<views::ViewBase> Session::main_view() const
202{
203 return main_view_;
204}
205
206void Session::set_main_bar(shared_ptr<pv::toolbars::MainBar> main_bar)
207{
208 main_bar_ = main_bar;
209}
210
211shared_ptr<pv::toolbars::MainBar> Session::main_bar() const
212{
213 return main_bar_;
214}
215
216bool Session::data_saved() const
217{
218 return data_saved_;
219}
220
221void Session::save_setup(QSettings &settings) const
222{
223 int i;
224 int decode_signal_count = 0;
225 int gen_signal_count = 0;
226
227 // Save channels and decoders
228 for (const shared_ptr<data::SignalBase>& base : signalbases_) {
229#ifdef ENABLE_DECODE
230 if (base->is_decode_signal()) {
231 settings.beginGroup("decode_signal" + QString::number(decode_signal_count++));
232 base->save_settings(settings);
233 settings.endGroup();
234 } else
235#endif
236 if (base->is_generated()) {
237 settings.beginGroup("generated_signal" + QString::number(gen_signal_count++));
238 settings.setValue("type", base->type());
239 base->save_settings(settings);
240 settings.endGroup();
241 } else {
242 settings.beginGroup(base->internal_name());
243 base->save_settings(settings);
244 settings.endGroup();
245 }
246 }
247
248 settings.setValue("decode_signals", decode_signal_count);
249 settings.setValue("generated_signals", gen_signal_count);
250
251 // Save view states and their signal settings
252 // Note: main_view must be saved as view0
253 i = 0;
254 settings.beginGroup("view" + QString::number(i++));
255 main_view_->save_settings(settings);
256 settings.endGroup();
257
258 for (const shared_ptr<views::ViewBase>& view : views_) {
259 if (view != main_view_) {
260 settings.beginGroup("view" + QString::number(i++));
261 settings.setValue("type", view->get_type());
262 view->save_settings(settings);
263 settings.endGroup();
264 }
265 }
266
267 settings.setValue("views", i);
268
269 int view_id = 0;
270 i = 0;
271 for (const shared_ptr<views::ViewBase>& vb : views_) {
272 shared_ptr<views::trace::View> tv = dynamic_pointer_cast<views::trace::View>(vb);
273 if (tv) {
274 for (const shared_ptr<views::trace::TimeItem>& time_item : tv->time_items()) {
275
276 const shared_ptr<views::trace::Flag> flag =
277 dynamic_pointer_cast<views::trace::Flag>(time_item);
278 if (flag) {
279 if (!flag->enabled())
280 continue;
281
282 settings.beginGroup("meta_obj" + QString::number(i++));
283 settings.setValue("type", "time_marker");
284 settings.setValue("assoc_view", view_id);
285 GlobalSettings::store_timestamp(settings, "time", flag->time());
286 settings.setValue("text", flag->get_text());
287 settings.endGroup();
288 }
289 }
290
291 if (tv->cursors_shown()) {
292 settings.beginGroup("meta_obj" + QString::number(i++));
293 settings.setValue("type", "selection");
294 settings.setValue("assoc_view", view_id);
295 const shared_ptr<views::trace::CursorPair> cp = tv->cursors();
296 GlobalSettings::store_timestamp(settings, "start_time", cp->first()->time());
297 GlobalSettings::store_timestamp(settings, "end_time", cp->second()->time());
298 settings.endGroup();
299 }
300 }
301
302 view_id++;
303 }
304
305 settings.setValue("meta_objs", i);
306}
307
308void Session::save_settings(QSettings &settings) const
309{
310 map<string, string> dev_info;
311 list<string> key_list;
312
313 if (device_) {
314 shared_ptr<devices::HardwareDevice> hw_device =
315 dynamic_pointer_cast< devices::HardwareDevice >(device_);
316
317 if (hw_device) {
318 settings.setValue("device_type", "hardware");
319 settings.beginGroup("device");
320
321 key_list.emplace_back("vendor");
322 key_list.emplace_back("model");
323 key_list.emplace_back("version");
324 key_list.emplace_back("serial_num");
325 key_list.emplace_back("connection_id");
326
327 dev_info = device_manager_.get_device_info(device_);
328
329 for (string& key : key_list) {
330 if (dev_info.count(key))
331 settings.setValue(QString::fromUtf8(key.c_str()),
332 QString::fromUtf8(dev_info.at(key).c_str()));
333 else
334 settings.remove(QString::fromUtf8(key.c_str()));
335 }
336
337 settings.endGroup();
338 }
339
340 // Having saved the data to srzip overrides the current device. This is
341 // a crappy hack around the fact that saving e.g. an imported file to
342 // srzip would require changing the underlying libsigrok device
343 if (!save_path_.isEmpty()) {
344 QFileInfo fi = QFileInfo(QDir(save_path_), name_);
345 settings.setValue("device_type", "sessionfile");
346 settings.beginGroup("device");
347 settings.setValue("filename", fi.absoluteFilePath());
348 settings.endGroup();
349 } else {
350 shared_ptr<devices::SessionFile> sessionfile_device =
351 dynamic_pointer_cast<devices::SessionFile>(device_);
352
353 if (sessionfile_device) {
354 settings.setValue("device_type", "sessionfile");
355 settings.beginGroup("device");
356 settings.setValue("filename", QString::fromStdString(
357 sessionfile_device->full_name()));
358 settings.endGroup();
359 }
360
361 shared_ptr<devices::InputFile> inputfile_device =
362 dynamic_pointer_cast<devices::InputFile>(device_);
363
364 if (inputfile_device) {
365 settings.setValue("device_type", "inputfile");
366 settings.beginGroup("device");
367 inputfile_device->save_meta_to_settings(settings);
368 settings.endGroup();
369 }
370 }
371
372 save_setup(settings);
373 }
374}
375
376void Session::restore_setup(QSettings &settings)
377{
378 // Restore channels
379 for (shared_ptr<data::SignalBase> base : signalbases_) {
380 settings.beginGroup(base->internal_name());
381 base->restore_settings(settings);
382 settings.endGroup();
383 }
384
385 // Restore generated signals
386 int gen_signal_count = settings.value("generated_signals").toInt();
387
388 for (int i = 0; i < gen_signal_count; i++) {
389 settings.beginGroup("generated_signal" + QString::number(i));
390 SignalBase::ChannelType type = (SignalBase::ChannelType)settings.value("type").toInt();
391 shared_ptr<data::SignalBase> signal;
392
393 if (type == SignalBase::MathChannel)
394 signal = make_shared<data::MathSignal>(*this);
395 else
396 qWarning() << tr("Can't restore generated signal of unknown type %1 (%2)") \
397 .arg((int)type) \
398 .arg(settings.value("name").toString());
399
400 if (signal) {
401 add_generated_signal(signal);
402 signal->restore_settings(settings);
403 }
404
405 settings.endGroup();
406 }
407
408 // Restore decoders
409#ifdef ENABLE_DECODE
410 int decode_signal_count = settings.value("decode_signals").toInt();
411
412 for (int i = 0; i < decode_signal_count; i++) {
413 settings.beginGroup("decode_signal" + QString::number(i));
414 shared_ptr<data::DecodeSignal> signal = add_decode_signal();
415 signal->restore_settings(settings);
416 settings.endGroup();
417 }
418#endif
419
420 // Restore views
421 int views = settings.value("views").toInt();
422
423 for (int i = 0; i < views; i++) {
424 settings.beginGroup("view" + QString::number(i));
425
426 if (i > 0) {
427 views::ViewType type = (views::ViewType)settings.value("type").toInt();
428 add_view(type, this);
429 views_.back()->restore_settings(settings);
430 } else
431 main_view_->restore_settings(settings);
432
433 settings.endGroup();
434 }
435
436 // Restore meta objects like markers and cursors
437 int meta_objs = settings.value("meta_objs").toInt();
438
439 for (int i = 0; i < meta_objs; i++) {
440 settings.beginGroup("meta_obj" + QString::number(i));
441
442 shared_ptr<views::ViewBase> vb;
443 shared_ptr<views::trace::View> tv;
444 if (settings.contains("assoc_view"))
445 vb = views_.at(settings.value("assoc_view").toInt());
446
447 if (vb)
448 tv = dynamic_pointer_cast<views::trace::View>(vb);
449
450 const QString type = settings.value("type").toString();
451
452 if ((type == "time_marker") && tv) {
453 Timestamp ts = GlobalSettings::restore_timestamp(settings, "time");
454 shared_ptr<views::trace::Flag> flag = tv->add_flag(ts);
455 flag->set_text(settings.value("text").toString());
456 }
457
458 if ((type == "selection") && tv) {
459 Timestamp start = GlobalSettings::restore_timestamp(settings, "start_time");
460 Timestamp end = GlobalSettings::restore_timestamp(settings, "end_time");
461 tv->set_cursors(start, end);
462 tv->show_cursors();
463 }
464
465 settings.endGroup();
466 }
467}
468
469void Session::restore_settings(QSettings &settings)
470{
471 shared_ptr<devices::Device> device;
472
473 const QString device_type = settings.value("device_type").toString();
474
475 if (device_type == "hardware") {
476 map<string, string> dev_info;
477 list<string> key_list;
478
479 // Re-select last used device if possible but only if it's not demo
480 settings.beginGroup("device");
481 key_list.emplace_back("vendor");
482 key_list.emplace_back("model");
483 key_list.emplace_back("version");
484 key_list.emplace_back("serial_num");
485 key_list.emplace_back("connection_id");
486
487 for (string key : key_list) {
488 const QString k = QString::fromStdString(key);
489 if (!settings.contains(k))
490 continue;
491
492 const string value = settings.value(k).toString().toStdString();
493 if (!value.empty())
494 dev_info.insert(make_pair(key, value));
495 }
496
497 if (dev_info.count("model") > 0)
498 device = device_manager_.find_device_from_info(dev_info);
499
500 if (device)
501 set_device(device);
502
503 settings.endGroup();
504
505 if (device)
506 restore_setup(settings);
507 }
508
509 QString filename;
510 if ((device_type == "sessionfile") || (device_type == "inputfile")) {
511 if (device_type == "sessionfile") {
512 settings.beginGroup("device");
513 filename = settings.value("filename").toString();
514 settings.endGroup();
515
516 if (QFileInfo(filename).isReadable())
517 device = make_shared<devices::SessionFile>(device_manager_.context(),
518 filename.toStdString());
519 }
520
521 if (device_type == "inputfile") {
522 settings.beginGroup("device");
523 device = make_shared<devices::InputFile>(device_manager_.context(),
524 settings);
525 settings.endGroup();
526 }
527
528
529 if (device) {
530 set_device(device);
531 restore_setup(settings);
532
533 start_capture([](QString infoMessage) {
534 // TODO Emulate noquote()
535 qDebug() << "Session error:" << infoMessage; });
536
537 set_name(QString::fromStdString(
538 dynamic_pointer_cast<devices::File>(device)->display_name(device_manager_)));
539
540 if (!filename.isEmpty()) {
541 // Only set the save path if we load an srzip file
542 if (device_type == "sessionfile")
543 set_save_path(QFileInfo(filename).absolutePath());
544
545 set_name(QFileInfo(filename).fileName());
546 }
547 }
548 }
549}
550
551void Session::select_device(shared_ptr<devices::Device> device)
552{
553 try {
554 if (device)
555 set_device(device);
556 else
557 set_default_device();
558 } catch (const QString &e) {
559 MainWindow::show_session_error(tr("Failed to select device"), e);
560 }
561}
562
563void Session::set_device(shared_ptr<devices::Device> device)
564{
565 assert(device);
566
567 // Ensure we are not capturing before setting the device
568 stop_capture();
569
570 if (device_)
571 device_->close();
572
573 device_.reset();
574
575 // Revert name back to default name (e.g. "Session 1") as the data is gone
576 name_ = default_name_;
577 name_changed();
578
579 // Remove all stored data and reset all views
580 for (shared_ptr<views::ViewBase> view : views_) {
581 view->clear_signalbases();
582#ifdef ENABLE_DECODE
583 view->clear_decode_signals();
584#endif
585 view->reset_view_state();
586 }
587
588 for (SignalGroup* group : signal_groups_) {
589 group->clear();
590 delete group;
591 }
592 signal_groups_.clear();
593
594 for (const shared_ptr<data::SignalData>& d : all_signal_data_)
595 d->clear();
596
597 all_signal_data_.clear();
598 signalbases_.clear();
599 cur_logic_segment_.reset();
600
601 for (auto& entry : cur_analog_segments_) {
602 shared_ptr<sigrok::Channel>(entry.first).reset();
603 shared_ptr<data::AnalogSegment>(entry.second).reset();
604 }
605
606 logic_data_.reset();
607
608 signals_changed();
609
610 device_ = move(device);
611
612 try {
613 device_->open();
614 } catch (const QString &e) {
615 device_.reset();
616 MainWindow::show_session_error(tr("Failed to open device"), e);
617 } catch (const sigrok::Error &e) {
618 device_.reset();
619 MainWindow::show_session_error(tr("Failed to open device"), QString(e.what()));
620 }
621
622 if (device_) {
623 device_->session()->add_datafeed_callback([=]
624 (shared_ptr<sigrok::Device> device, shared_ptr<Packet> packet) {
625 data_feed_in(device, packet);
626 });
627
628 update_signals();
629 }
630
631 device_changed();
632}
633
634void Session::set_default_device()
635{
636 const list< shared_ptr<devices::HardwareDevice> > &devices =
637 device_manager_.devices();
638
639 if (devices.empty())
640 return;
641
642 // Try and find the demo device and select that by default
643 const auto iter = find_if(devices.begin(), devices.end(),
644 [] (const shared_ptr<devices::HardwareDevice> &d) {
645 return d->hardware_device()->driver()->name() == "demo"; });
646 set_device((iter == devices.end()) ? devices.front() : *iter);
647}
648
649bool Session::using_file_device() const
650{
651 shared_ptr<devices::SessionFile> sessionfile_device =
652 dynamic_pointer_cast<devices::SessionFile>(device_);
653
654 shared_ptr<devices::InputFile> inputfile_device =
655 dynamic_pointer_cast<devices::InputFile>(device_);
656
657 return (sessionfile_device || inputfile_device);
658}
659
660/**
661 * Convert generic options to data types that are specific to InputFormat.
662 *
663 * @param[in] user_spec Vector of tokenized words, string format.
664 * @param[in] fmt_opts Input format's options, result of InputFormat::options().
665 *
666 * @return Map of options suitable for InputFormat::create_input().
667 */
668map<string, Glib::VariantBase>
669Session::input_format_options(vector<string> user_spec,
670 map<string, shared_ptr<Option>> fmt_opts)
671{
672 map<string, Glib::VariantBase> result;
673
674 for (auto& entry : user_spec) {
675 /*
676 * Split key=value specs. Accept entries without separator
677 * (for simplified boolean specifications).
678 */
679 string key, val;
680 size_t pos = entry.find("=");
681 if (pos == std::string::npos) {
682 key = entry;
683 val = "";
684 } else {
685 key = entry.substr(0, pos);
686 val = entry.substr(pos + 1);
687 }
688
689 /*
690 * Skip user specifications that are not a member of the
691 * format's set of supported options. Have the text input
692 * spec converted to the required input format specific
693 * data type.
694 */
695 auto found = fmt_opts.find(key);
696 if (found == fmt_opts.end()) {
697 qCritical() << "Supplied input option" << QString::fromStdString(key) <<
698 "is not a valid option for this input module, it will be ignored!";
699 continue;
700 }
701
702 shared_ptr<Option> opt = found->second;
703 result[key] = opt->parse_string(val);
704 }
705
706 return result;
707}
708
709void Session::load_init_file(const string &file_name,
710 const string &format, const string &setup_file_name)
711{
712 shared_ptr<InputFormat> input_format;
713 map<string, Glib::VariantBase> input_opts;
714
715 if (!format.empty()) {
716 const map<string, shared_ptr<InputFormat> > formats =
717 device_manager_.context()->input_formats();
718 auto user_opts = pv::util::split_string(format, ":");
719 string user_name = user_opts.front();
720 user_opts.erase(user_opts.begin());
721 const auto iter = find_if(formats.begin(), formats.end(),
722 [&](const pair<string, shared_ptr<InputFormat> > f) {
723 return f.first == user_name; });
724 if (iter == formats.end()) {
725 MainWindow::show_session_error(tr("Error"),
726 tr("Unexpected input format: %1").arg(QString::fromStdString(format)));
727 return;
728 }
729 input_format = (*iter).second;
730 input_opts = input_format_options(user_opts,
731 input_format->options());
732 }
733
734 load_file(QString::fromStdString(file_name), QString::fromStdString(setup_file_name),
735 input_format, input_opts);
736}
737
738void Session::load_file(QString file_name, QString setup_file_name,
739 shared_ptr<sigrok::InputFormat> format, const map<string, Glib::VariantBase> &options)
740{
741 const QString errorMessage(
742 QString("Failed to load file %1").arg(file_name));
743
744 // In the absence of a caller's format spec, try to auto detect.
745 // Assume "sigrok session file" upon lookup miss.
746 if (!format)
747 format = device_manager_.context()->input_format_match(file_name.toStdString());
748 try {
749 if (format)
750 set_device(shared_ptr<devices::Device>(
751 new devices::InputFile(
752 device_manager_.context(),
753 file_name.toStdString(),
754 format, options)));
755 else
756 set_device(shared_ptr<devices::Device>(
757 new devices::SessionFile(
758 device_manager_.context(),
759 file_name.toStdString())));
760 } catch (Error& e) {
761 MainWindow::show_session_error(tr("Failed to load %1").arg(file_name), e.what());
762 return;
763 }
764
765 if (!device_) {
766 MainWindow::show_session_error(errorMessage, "");
767 return;
768 }
769
770 // Use the input file with .pvs extension if no setup file was given
771 if (setup_file_name.isEmpty()) {
772 setup_file_name = file_name;
773 setup_file_name.truncate(setup_file_name.lastIndexOf('.'));
774 setup_file_name.append(".pvs");
775 }
776
777 if (QFileInfo::exists(setup_file_name) && QFileInfo(setup_file_name).isReadable()) {
778 QSettings settings_storage(setup_file_name, QSettings::IniFormat);
779 restore_setup(settings_storage);
780 }
781
782 main_bar_->update_device_list();
783
784 start_capture([&, errorMessage](QString infoMessage) {
785 Q_EMIT session_error_raised(errorMessage, infoMessage); });
786
787 // Only set save path if we loaded an srzip file
788 if (dynamic_pointer_cast<devices::SessionFile>(device_))
789 set_save_path(QFileInfo(file_name).absolutePath());
790
791 set_name(QFileInfo(file_name).fileName());
792}
793
794Session::capture_state Session::get_capture_state() const
795{
796 lock_guard<mutex> lock(sampling_mutex_);
797 return capture_state_;
798}
799
800void Session::start_capture(function<void (const QString)> error_handler)
801{
802 if (!device_) {
803 error_handler(tr("No active device set, can't start acquisition."));
804 return;
805 }
806
807 stop_capture();
808
809 // Check that at least one channel is enabled
810 const shared_ptr<sigrok::Device> sr_dev = device_->device();
811 if (sr_dev) {
812 const auto channels = sr_dev->channels();
813 if (!any_of(channels.begin(), channels.end(),
814 [](shared_ptr<Channel> channel) {
815 return channel->enabled(); })) {
816 error_handler(tr("No channels enabled."));
817 return;
818 }
819 }
820
821 // Clear signal data
822 for (const shared_ptr<data::SignalData>& d : all_signal_data_)
823 d->clear();
824
825 trigger_list_.clear();
826 segment_sample_count_.clear();
827
828 // Revert name back to default name (e.g. "Session 1") for real devices
829 // as the (possibly saved) data is gone. File devices keep their name.
830 shared_ptr<devices::HardwareDevice> hw_device =
831 dynamic_pointer_cast< devices::HardwareDevice >(device_);
832
833 if (hw_device) {
834 name_ = default_name_;
835 name_changed();
836 }
837
838 acq_start_time_ = Glib::DateTime::create_now_local();
839
840 // Begin the session
841 sampling_thread_ = std::thread(&Session::sample_thread_proc, this, error_handler);
842}
843
844void Session::stop_capture()
845{
846 if (get_capture_state() != Stopped)
847 device_->stop();
848
849 // Check that sampling stopped
850 if (sampling_thread_.joinable())
851 sampling_thread_.join();
852}
853
854void Session::register_view(shared_ptr<views::ViewBase> view)
855{
856 if (views_.empty())
857 main_view_ = view;
858
859 views_.push_back(view);
860
861 // Add all device signals
862 update_signals();
863
864 // Add all other signals
865 vector< shared_ptr<data::SignalBase> > view_signalbases = view->signalbases();
866
867 for (const shared_ptr<data::SignalBase>& signalbase : signalbases_) {
868 const int sb_exists = count_if(
869 view_signalbases.cbegin(), view_signalbases.cend(),
870 [&](const shared_ptr<data::SignalBase> &sb) {
871 return sb == signalbase;
872 });
873
874 // Add the signal to the view if it doesn't have it yet
875 if (!sb_exists)
876 switch (signalbase->type()) {
877 case data::SignalBase::AnalogChannel:
878 case data::SignalBase::LogicChannel:
879 case data::SignalBase::MathChannel:
880 view->add_signalbase(signalbase);
881 break;
882 case data::SignalBase::DecodeChannel:
883#ifdef ENABLE_DECODE
884 view->add_decode_signal(dynamic_pointer_cast<data::DecodeSignal>(signalbase));
885#endif
886 break;
887 }
888 }
889
890 signals_changed();
891}
892
893void Session::deregister_view(shared_ptr<views::ViewBase> view)
894{
895 views_.erase(std::remove_if(views_.begin(), views_.end(),
896 [&](shared_ptr<views::ViewBase> v) { return v == view; }),
897 views_.end());
898
899 if (views_.empty()) {
900 main_view_.reset();
901
902 // Without a view there can be no main bar
903 main_bar_.reset();
904 }
905}
906
907bool Session::has_view(shared_ptr<views::ViewBase> view)
908{
909 for (shared_ptr<views::ViewBase>& v : views_)
910 if (v == view)
911 return true;
912
913 return false;
914}
915
916double Session::get_samplerate() const
917{
918 double samplerate = 0.0;
919
920 for (const shared_ptr<pv::data::SignalData>& d : all_signal_data_) {
921 assert(d);
922 const vector< shared_ptr<pv::data::Segment> > segments =
923 d->segments();
924 for (const shared_ptr<pv::data::Segment>& s : segments)
925 samplerate = max(samplerate, s->samplerate());
926 }
927 // If there is no sample rate given we use samples as unit
928 if (samplerate == 0.0)
929 samplerate = 1.0;
930
931 return samplerate;
932}
933
934Glib::DateTime Session::get_acquisition_start_time() const
935{
936 return acq_start_time_;
937}
938
939uint32_t Session::get_highest_segment_id() const
940{
941 return highest_segment_id_;
942}
943
944uint64_t Session::get_segment_sample_count(uint32_t segment_id) const
945{
946 if (segment_id < segment_sample_count_.size())
947 return segment_sample_count_[segment_id];
948 else
949 return 0;
950}
951
952vector<util::Timestamp> Session::get_triggers(uint32_t segment_id) const
953{
954 vector<util::Timestamp> result;
955
956 for (const pair<uint32_t, util::Timestamp>& entry : trigger_list_)
957 if (entry.first == segment_id)
958 result.push_back(entry.second);
959
960 return result;
961}
962
963const vector< shared_ptr<data::SignalBase> > Session::signalbases() const
964{
965 return signalbases_;
966}
967
968uint32_t Session::get_signal_count(data::SignalBase::ChannelType type) const
969{
970 return count_if(signalbases_.begin(), signalbases_.end(),
971 [&] (shared_ptr<SignalBase> sb) { return sb->type() == type; });
972}
973
974uint32_t Session::get_next_signal_index(data::SignalBase::ChannelType type)
975{
976 next_index_list_[type]++;
977 return next_index_list_[type];
978}
979
980void Session::add_generated_signal(shared_ptr<data::SignalBase> signal)
981{
982 signalbases_.push_back(signal);
983
984 for (shared_ptr<views::ViewBase>& view : views_)
985 view->add_signalbase(signal);
986
987 update_signals();
988}
989
990void Session::remove_generated_signal(shared_ptr<data::SignalBase> signal)
991{
992 if (shutting_down_)
993 return;
994
995 signalbases_.erase(std::remove_if(signalbases_.begin(), signalbases_.end(),
996 [&](shared_ptr<data::SignalBase> s) { return s == signal; }),
997 signalbases_.end());
998
999 for (shared_ptr<views::ViewBase>& view : views_)
1000 view->remove_signalbase(signal);
1001
1002 update_signals();
1003}
1004
1005#ifdef ENABLE_DECODE
1006shared_ptr<data::DecodeSignal> Session::add_decode_signal()
1007{
1008 shared_ptr<data::DecodeSignal> signal;
1009
1010 try {
1011 // Create the decode signal
1012 signal = make_shared<data::DecodeSignal>(*this);
1013
1014 signalbases_.push_back(signal);
1015
1016 // Add the decode signal to all views
1017 for (shared_ptr<views::ViewBase>& view : views_)
1018 view->add_decode_signal(signal);
1019 } catch (runtime_error& e) {
1020 remove_decode_signal(signal);
1021 return nullptr;
1022 }
1023
1024 signals_changed();
1025
1026 return signal;
1027}
1028
1029void Session::remove_decode_signal(shared_ptr<data::DecodeSignal> signal)
1030{
1031 if (shutting_down_)
1032 return;
1033
1034 signalbases_.erase(std::remove_if(signalbases_.begin(), signalbases_.end(),
1035 [&](shared_ptr<data::SignalBase> s) { return s == signal; }),
1036 signalbases_.end());
1037
1038 for (shared_ptr<views::ViewBase>& view : views_)
1039 view->remove_decode_signal(signal);
1040
1041 signals_changed();
1042}
1043#endif
1044
1045bool Session::all_segments_complete(uint32_t segment_id) const
1046{
1047 bool all_complete = true;
1048
1049 for (const shared_ptr<data::SignalBase>& base : signalbases_)
1050 if (!base->segment_is_complete(segment_id))
1051 all_complete = false;
1052
1053 return all_complete;
1054}
1055
1056MetadataObjManager* Session::metadata_obj_manager()
1057{
1058 return &metadata_obj_manager_;
1059}
1060
1061void Session::set_capture_state(capture_state state)
1062{
1063 if (state == capture_state_)
1064 return;
1065
1066 if (state == Running)
1067 acq_time_.restart();
1068 if (state == Stopped)
1069 qDebug("Acquisition took %.2f s", acq_time_.elapsed() / 1000.);
1070
1071 {
1072 lock_guard<mutex> lock(sampling_mutex_);
1073 capture_state_ = state;
1074 }
1075
1076 capture_state_changed(state);
1077}
1078
1079void Session::update_signals()
1080{
1081 if (!device_) {
1082 signalbases_.clear();
1083 logic_data_.reset();
1084 for (shared_ptr<views::ViewBase>& view : views_) {
1085 view->clear_signalbases();
1086#ifdef ENABLE_DECODE
1087 view->clear_decode_signals();
1088#endif
1089 }
1090 return;
1091 }
1092
1093 lock_guard<recursive_mutex> lock(data_mutex_);
1094
1095 const shared_ptr<sigrok::Device> sr_dev = device_->device();
1096 if (!sr_dev) {
1097 signalbases_.clear();
1098 logic_data_.reset();
1099 for (shared_ptr<views::ViewBase>& view : views_) {
1100 view->clear_signalbases();
1101#ifdef ENABLE_DECODE
1102 view->clear_decode_signals();
1103#endif
1104 }
1105 return;
1106 }
1107
1108 // Detect what data types we will receive
1109 auto channels = sr_dev->channels();
1110 unsigned int logic_channel_count = count_if(
1111 channels.begin(), channels.end(),
1112 [] (shared_ptr<Channel> channel) {
1113 return channel->type() == sigrok::ChannelType::LOGIC; });
1114
1115 // Create a common data container for the logic signalbases
1116 {
1117 lock_guard<recursive_mutex> data_lock(data_mutex_);
1118
1119 if (logic_channel_count == 0) {
1120 logic_data_.reset();
1121 } else if (!logic_data_ ||
1122 logic_data_->num_channels() != logic_channel_count) {
1123 logic_data_.reset(new data::Logic(logic_channel_count));
1124 assert(logic_data_);
1125 }
1126 }
1127
1128 // Create signalbases if necessary
1129 for (auto channel : sr_dev->channels()) {
1130
1131 // Try to find the channel in the list of existing signalbases
1132 const auto iter = find_if(signalbases_.cbegin(), signalbases_.cend(),
1133 [&](const shared_ptr<SignalBase> &sb) { return sb->channel() == channel; });
1134
1135 // Not found, let's make a signalbase for it
1136 if (iter == signalbases_.cend()) {
1137 shared_ptr<SignalBase> signalbase;
1138 switch(channel->type()->id()) {
1139 case SR_CHANNEL_LOGIC:
1140 signalbase = make_shared<data::SignalBase>(channel, data::SignalBase::LogicChannel);
1141 signalbases_.push_back(signalbase);
1142
1143 all_signal_data_.insert(logic_data_);
1144 signalbase->set_data(logic_data_);
1145
1146 connect(this, SIGNAL(capture_state_changed(int)),
1147 signalbase.get(), SLOT(on_capture_state_changed(int)));
1148 break;
1149
1150 case SR_CHANNEL_ANALOG:
1151 signalbase = make_shared<data::SignalBase>(channel, data::SignalBase::AnalogChannel);
1152 signalbases_.push_back(signalbase);
1153
1154 shared_ptr<data::Analog> data(new data::Analog());
1155 all_signal_data_.insert(data);
1156 signalbase->set_data(data);
1157
1158 connect(this, SIGNAL(capture_state_changed(int)),
1159 signalbase.get(), SLOT(on_capture_state_changed(int)));
1160 break;
1161 }
1162 }
1163 }
1164
1165 // Create and assign default signal groups if needed
1166 if (signal_groups_.empty()) {
1167 for (auto& entry : sr_dev->channel_groups()) {
1168 const shared_ptr<sigrok::ChannelGroup>& group = entry.second;
1169
1170 if (group->channels().size() <= 1)
1171 continue;
1172
1173 SignalGroup* sg = new SignalGroup(QString::fromStdString(entry.first));
1174 for (const shared_ptr<sigrok::Channel>& channel : group->channels()) {
1175 for (shared_ptr<data::SignalBase> s : signalbases_) {
1176 if (s->channel() == channel) {
1177 sg->append_signal(s);
1178 break;
1179 }
1180 }
1181 }
1182 signal_groups_.emplace_back(sg);
1183 }
1184 }
1185
1186 // Update all views
1187 for (shared_ptr<views::ViewBase>& viewbase : views_) {
1188 vector< shared_ptr<SignalBase> > view_signalbases =
1189 viewbase->signalbases();
1190
1191 // Add all non-decode signalbases that don't yet exist in the view
1192 for (shared_ptr<SignalBase>& session_sb : signalbases_) {
1193 if (session_sb->type() == SignalBase::DecodeChannel)
1194 continue;
1195
1196 const auto iter = find_if(view_signalbases.cbegin(), view_signalbases.cend(),
1197 [&](const shared_ptr<SignalBase> &sb) { return sb == session_sb; });
1198
1199 if (iter == view_signalbases.cend())
1200 viewbase->add_signalbase(session_sb);
1201 }
1202
1203 // Remove all non-decode signalbases that no longer exist
1204 for (shared_ptr<SignalBase>& view_sb : view_signalbases) {
1205 if (view_sb->type() == SignalBase::DecodeChannel)
1206 continue;
1207
1208 const auto iter = find_if(signalbases_.cbegin(), signalbases_.cend(),
1209 [&](const shared_ptr<SignalBase> &sb) { return sb == view_sb; });
1210
1211 if (iter == signalbases_.cend())
1212 viewbase->remove_signalbase(view_sb);
1213 }
1214 }
1215
1216 signals_changed();
1217}
1218
1219shared_ptr<data::SignalBase> Session::signalbase_from_channel(
1220 shared_ptr<sigrok::Channel> channel) const
1221{
1222 for (shared_ptr<data::SignalBase> sig : signalbases_) {
1223 assert(sig);
1224 if (sig->channel() == channel)
1225 return sig;
1226 }
1227 return shared_ptr<data::SignalBase>();
1228}
1229
1230void Session::sample_thread_proc(function<void (const QString)> error_handler)
1231{
1232 assert(error_handler);
1233
1234#ifdef ENABLE_FLOW
1235 pipeline_ = Pipeline::create();
1236
1237 source_ = ElementFactory::create_element("filesrc", "source");
1238 sink_ = RefPtr<AppSink>::cast_dynamic(ElementFactory::create_element("appsink", "sink"));
1239
1240 pipeline_->add(source_)->add(sink_);
1241 source_->link(sink_);
1242
1243 source_->set_property("location", Glib::ustring("/tmp/dummy_binary"));
1244
1245 sink_->set_property("emit-signals", TRUE);
1246 sink_->signal_new_sample().connect(sigc::mem_fun(*this, &Session::on_gst_new_sample));
1247
1248 // Get the bus from the pipeline and add a bus watch to the default main context
1249 RefPtr<Bus> bus = pipeline_->get_bus();
1250 bus->add_watch(sigc::mem_fun(this, &Session::on_gst_bus_message));
1251
1252 // Start pipeline and Wait until it finished processing
1253 pipeline_done_interrupt_ = false;
1254 pipeline_->set_state(Gst::STATE_PLAYING);
1255
1256 unique_lock<mutex> pipeline_done_lock_(pipeline_done_mutex_);
1257 pipeline_done_cond_.wait(pipeline_done_lock_);
1258
1259 // Let the pipeline free all resources
1260 pipeline_->set_state(Gst::STATE_NULL);
1261
1262#else
1263 if (!device_)
1264 return;
1265
1266 try {
1267 cur_samplerate_ = device_->read_config<uint64_t>(ConfigKey::SAMPLERATE);
1268 } catch (Error& e) {
1269 cur_samplerate_ = 0;
1270 }
1271
1272 out_of_memory_ = false;
1273
1274 {
1275 lock_guard<recursive_mutex> lock(data_mutex_);
1276 cur_logic_segment_.reset();
1277 cur_analog_segments_.clear();
1278 for (shared_ptr<data::SignalBase> sb : signalbases_)
1279 sb->clear_sample_data();
1280 }
1281 highest_segment_id_ = -1;
1282 frame_began_ = false;
1283
1284 try {
1285 device_->start();
1286 } catch (Error& e) {
1287 error_handler(e.what());
1288 return;
1289 }
1290
1291 set_capture_state(device_->session()->trigger() ?
1292 AwaitingTrigger : Running);
1293
1294 try {
1295 device_->run();
1296 } catch (Error& e) {
1297 error_handler(e.what());
1298 set_capture_state(Stopped);
1299 return;
1300 } catch (QString& e) {
1301 error_handler(e);
1302 set_capture_state(Stopped);
1303 return;
1304 }
1305
1306 set_capture_state(Stopped);
1307
1308 // Confirm that SR_DF_END was received
1309 if (cur_logic_segment_)
1310 qDebug() << "WARNING: SR_DF_END was not received.";
1311#endif
1312
1313 // Optimize memory usage
1314 free_unused_memory();
1315
1316 // We now have unsaved data unless we just "captured" from a file
1317 shared_ptr<devices::File> file_device =
1318 dynamic_pointer_cast<devices::File>(device_);
1319
1320 if (!file_device)
1321 data_saved_ = false;
1322
1323 if (out_of_memory_)
1324 error_handler(tr("Out of memory, acquisition stopped."));
1325}
1326
1327void Session::free_unused_memory()
1328{
1329 for (const shared_ptr<data::SignalData>& data : all_signal_data_) {
1330 const vector< shared_ptr<data::Segment> > segments = data->segments();
1331
1332 for (const shared_ptr<data::Segment>& segment : segments)
1333 segment->free_unused_memory();
1334 }
1335}
1336
1337void Session::signal_new_segment()
1338{
1339 int new_segment_id = 0;
1340
1341 if ((cur_logic_segment_ != nullptr) || !cur_analog_segments_.empty()) {
1342
1343 // Determine new frame/segment number, assuming that all
1344 // signals have the same number of frames/segments
1345 if (cur_logic_segment_) {
1346 new_segment_id = logic_data_->get_segment_count() - 1;
1347 } else {
1348 shared_ptr<sigrok::Channel> any_channel =
1349 (*cur_analog_segments_.begin()).first;
1350
1351 shared_ptr<data::SignalBase> base = signalbase_from_channel(any_channel);
1352 assert(base);
1353
1354 shared_ptr<data::Analog> data(base->analog_data());
1355 assert(data);
1356
1357 new_segment_id = data->get_segment_count() - 1;
1358 }
1359 }
1360
1361 if (new_segment_id > highest_segment_id_) {
1362 highest_segment_id_ = new_segment_id;
1363 segment_sample_count_.emplace_back(0);
1364 new_segment(highest_segment_id_);
1365 }
1366}
1367
1368void Session::signal_segment_completed()
1369{
1370 int segment_id = 0;
1371
1372 for (const shared_ptr<data::SignalBase>& signalbase : signalbases_) {
1373 // We only care about analog and logic channels, not derived ones
1374 if (signalbase->type() == data::SignalBase::AnalogChannel) {
1375 segment_id = signalbase->analog_data()->get_segment_count() - 1;
1376 break;
1377 }
1378
1379 if (signalbase->type() == data::SignalBase::LogicChannel) {
1380 segment_id = signalbase->logic_data()->get_segment_count() - 1;
1381 break;
1382 }
1383 }
1384
1385 if (segment_id >= 0)
1386 segment_completed(segment_id);
1387}
1388
1389#ifdef ENABLE_FLOW
1390bool Session::on_gst_bus_message(const Glib::RefPtr<Gst::Bus>& bus, const Glib::RefPtr<Gst::Message>& message)
1391{
1392 (void)bus;
1393
1394 if ((message->get_source() == pipeline_) && \
1395 ((message->get_message_type() == Gst::MESSAGE_EOS)))
1396 pipeline_done_cond_.notify_one();
1397
1398 // TODO Also evaluate MESSAGE_STREAM_STATUS to receive error notifications
1399
1400 return true;
1401}
1402
1403Gst::FlowReturn Session::on_gst_new_sample()
1404{
1405 RefPtr<Gst::Sample> sample = sink_->pull_sample();
1406 RefPtr<Gst::Buffer> buf = sample->get_buffer();
1407
1408 for (uint32_t block_id = 0; block_id < buf->n_memory(); block_id++) {
1409 RefPtr<Gst::Memory> buf_mem = buf->get_memory(block_id);
1410 Gst::MapInfo mapinfo;
1411 buf_mem->map(mapinfo, Gst::MAP_READ);
1412
1413 shared_ptr<sigrok::Packet> logic_packet =
1414 sr_context->create_logic_packet(mapinfo.get_data(), buf->get_size(), 1);
1415
1416 try {
1417 feed_in_logic(dynamic_pointer_cast<sigrok::Logic>(logic_packet->payload()));
1418 } catch (bad_alloc&) {
1419 out_of_memory_ = true;
1420 device_->stop();
1421 buf_mem->unmap(mapinfo);
1422 return Gst::FLOW_ERROR;
1423 }
1424
1425 buf_mem->unmap(mapinfo);
1426 }
1427
1428 return Gst::FLOW_OK;
1429}
1430#endif
1431
1432void Session::feed_in_header()
1433{
1434 // Nothing to do here for now
1435}
1436
1437void Session::feed_in_meta(shared_ptr<Meta> meta)
1438{
1439 for (auto& entry : meta->config()) {
1440 switch (entry.first->id()) {
1441 case SR_CONF_SAMPLERATE:
1442 cur_samplerate_ = g_variant_get_uint64(entry.second.gobj());
1443 break;
1444 default:
1445 qDebug() << "Received meta data key" << entry.first->id() << ", ignoring.";
1446 break;
1447 }
1448 }
1449
1450 signals_changed();
1451}
1452
1453void Session::feed_in_trigger()
1454{
1455 // The channel containing most samples should be most accurate
1456 uint64_t sample_count = 0;
1457
1458 {
1459 for (const shared_ptr<pv::data::SignalData>& d : all_signal_data_) {
1460 assert(d);
1461 uint64_t temp_count = 0;
1462
1463 const vector< shared_ptr<pv::data::Segment> > segments =
1464 d->segments();
1465 for (const shared_ptr<pv::data::Segment> &s : segments)
1466 temp_count += s->get_sample_count();
1467
1468 if (temp_count > sample_count)
1469 sample_count = temp_count;
1470 }
1471 }
1472
1473 uint32_t segment_id = 0; // Default segment when no frames are used
1474
1475 // If a frame began, we'd ideally be able to use the highest segment ID for
1476 // the trigger. However, as new segments are only created when logic or
1477 // analog data comes in, this doesn't work if the trigger appears right
1478 // after the beginning of the frame, before any sample data.
1479 // For this reason, we use highest segment ID + 1 if no sample data came in
1480 // yet and the highest segment ID otherwise.
1481 if (frame_began_) {
1482 segment_id = highest_segment_id_;
1483 if (!cur_logic_segment_ && (cur_analog_segments_.size() == 0))
1484 segment_id++;
1485 }
1486
1487 // TODO Create timestamp from segment start time + segment's current sample count
1488 util::Timestamp timestamp = sample_count / get_samplerate();
1489 trigger_list_.emplace_back(segment_id, timestamp);
1490 trigger_event(segment_id, timestamp);
1491}
1492
1493void Session::feed_in_frame_begin()
1494{
1495 frame_began_ = true;
1496}
1497
1498void Session::feed_in_frame_end()
1499{
1500 if (!frame_began_)
1501 return;
1502
1503 {
1504 lock_guard<recursive_mutex> lock(data_mutex_);
1505
1506 if (cur_logic_segment_)
1507 cur_logic_segment_->set_complete();
1508
1509 for (auto& entry : cur_analog_segments_) {
1510 shared_ptr<data::AnalogSegment> segment = entry.second;
1511 segment->set_complete();
1512 }
1513
1514 cur_logic_segment_.reset();
1515 cur_analog_segments_.clear();
1516 }
1517
1518 frame_began_ = false;
1519
1520 signal_segment_completed();
1521}
1522
1523void Session::feed_in_logic(shared_ptr<sigrok::Logic> logic)
1524{
1525 if (logic->data_length() == 0) {
1526 qDebug() << "WARNING: Received logic packet with 0 samples.";
1527 return;
1528 }
1529
1530 if (logic->unit_size() > 8)
1531 throw QString(tr("Can't handle more than 64 logic channels."));
1532
1533 if (!cur_samplerate_)
1534 try {
1535 cur_samplerate_ = device_->read_config<uint64_t>(ConfigKey::SAMPLERATE);
1536 } catch (Error& e) {
1537 // Do nothing
1538 }
1539
1540 lock_guard<recursive_mutex> lock(data_mutex_);
1541
1542 if (!logic_data_) {
1543 // The only reason logic_data_ would not have been created is
1544 // if it was not possible to determine the signals when the
1545 // device was created.
1546 update_signals();
1547 }
1548
1549 if (!cur_logic_segment_) {
1550 // This could be the first packet after a trigger
1551 set_capture_state(Running);
1552
1553 // Create a new data segment
1554 cur_logic_segment_ = make_shared<data::LogicSegment>(
1555 *logic_data_, logic_data_->get_segment_count(),
1556 logic->unit_size(), cur_samplerate_);
1557 logic_data_->push_segment(cur_logic_segment_);
1558
1559 signal_new_segment();
1560 }
1561
1562 cur_logic_segment_->append_payload(logic);
1563
1564 segment_sample_count_[highest_segment_id_] =
1565 max(segment_sample_count_[highest_segment_id_], cur_logic_segment_->get_sample_count());
1566
1567 data_received();
1568}
1569
1570void Session::feed_in_analog(shared_ptr<sigrok::Analog> analog)
1571{
1572 if (analog->num_samples() == 0) {
1573 qDebug() << "WARNING: Received analog packet with 0 samples.";
1574 return;
1575 }
1576
1577 if (!cur_samplerate_)
1578 try {
1579 cur_samplerate_ = device_->read_config<uint64_t>(ConfigKey::SAMPLERATE);
1580 } catch (Error& e) {
1581 // Do nothing
1582 }
1583
1584 lock_guard<recursive_mutex> lock(data_mutex_);
1585
1586 const vector<shared_ptr<Channel>> channels = analog->channels();
1587 bool sweep_beginning = false;
1588
1589 unique_ptr<float[]> data(new float[analog->num_samples() * channels.size()]);
1590 analog->get_data_as_float(data.get());
1591
1592 if (signalbases_.empty())
1593 update_signals();
1594
1595 float *channel_data = data.get();
1596 for (auto& channel : channels) {
1597 shared_ptr<data::AnalogSegment> segment;
1598
1599 // Try to get the segment of the channel
1600 const map< shared_ptr<Channel>, shared_ptr<data::AnalogSegment> >::
1601 iterator iter = cur_analog_segments_.find(channel);
1602 if (iter != cur_analog_segments_.end())
1603 segment = (*iter).second;
1604 else {
1605 // If no segment was found, this means we haven't
1606 // created one yet. i.e. this is the first packet
1607 // in the sweep containing this segment.
1608 sweep_beginning = true;
1609
1610 // Find the analog data associated with the channel
1611 shared_ptr<data::SignalBase> base = signalbase_from_channel(channel);
1612 assert(base);
1613
1614 shared_ptr<data::Analog> data(base->analog_data());
1615 assert(data);
1616
1617 // Create a segment, keep it in the maps of channels
1618 segment = make_shared<data::AnalogSegment>(
1619 *data, data->get_segment_count(), cur_samplerate_);
1620 cur_analog_segments_[channel] = segment;
1621
1622 // Push the segment into the analog data.
1623 data->push_segment(segment);
1624
1625 signal_new_segment();
1626 }
1627
1628 assert(segment);
1629
1630 // Append the samples in the segment
1631 segment->append_interleaved_samples(channel_data++, analog->num_samples(),
1632 channels.size());
1633
1634 segment_sample_count_[highest_segment_id_] =
1635 max(segment_sample_count_[highest_segment_id_], segment->get_sample_count());
1636 }
1637
1638 if (sweep_beginning) {
1639 // This could be the first packet after a trigger
1640 set_capture_state(Running);
1641 }
1642
1643 data_received();
1644}
1645
1646void Session::data_feed_in(shared_ptr<sigrok::Device> device,
1647 shared_ptr<Packet> packet)
1648{
1649 (void)device;
1650
1651 assert(device);
1652 assert(device == device_->device());
1653 assert(packet);
1654
1655 switch (packet->type()->id()) {
1656 case SR_DF_HEADER:
1657 feed_in_header();
1658 break;
1659
1660 case SR_DF_META:
1661 feed_in_meta(dynamic_pointer_cast<Meta>(packet->payload()));
1662 break;
1663
1664 case SR_DF_TRIGGER:
1665 feed_in_trigger();
1666 break;
1667
1668 case SR_DF_LOGIC:
1669 try {
1670 feed_in_logic(dynamic_pointer_cast<Logic>(packet->payload()));
1671 } catch (bad_alloc&) {
1672 out_of_memory_ = true;
1673 device_->stop();
1674 }
1675 break;
1676
1677 case SR_DF_ANALOG:
1678 try {
1679 feed_in_analog(dynamic_pointer_cast<Analog>(packet->payload()));
1680 } catch (bad_alloc&) {
1681 out_of_memory_ = true;
1682 device_->stop();
1683 }
1684 break;
1685
1686 case SR_DF_FRAME_BEGIN:
1687 feed_in_frame_begin();
1688 break;
1689
1690 case SR_DF_FRAME_END:
1691 feed_in_frame_end();
1692 break;
1693
1694 case SR_DF_END:
1695 // Strictly speaking, this is performed when a frame end marker was
1696 // received, so there's no point doing this again. However, not all
1697 // devices use frames, and for those devices, we need to do it here.
1698 {
1699 lock_guard<recursive_mutex> lock(data_mutex_);
1700
1701 if (cur_logic_segment_)
1702 cur_logic_segment_->set_complete();
1703
1704 for (auto& entry : cur_analog_segments_) {
1705 shared_ptr<data::AnalogSegment> segment = entry.second;
1706 segment->set_complete();
1707 }
1708
1709 cur_logic_segment_.reset();
1710 cur_analog_segments_.clear();
1711 }
1712 break;
1713
1714 default:
1715 break;
1716 }
1717}
1718
1719void Session::on_data_saved()
1720{
1721 data_saved_ = true;
1722}
1723
1724#ifdef ENABLE_DECODE
1725void Session::on_new_decoders_selected(vector<const srd_decoder*> decoders)
1726{
1727 assert(decoders.size() > 0);
1728
1729 shared_ptr<data::DecodeSignal> signal = add_decode_signal();
1730
1731 if (signal)
1732 for (unsigned int i = 0; i < decoders.size(); i++) {
1733 const srd_decoder* d = decoders[i];
1734 signal->stack_decoder(d, !(i < decoders.size() - 1));
1735 }
1736}
1737#endif
1738
1739} // namespace pv