]> sigrok.org Git - pulseview.git/blame_incremental - pv/data/signalbase.cpp
Add SignalBase::clear_sample_data() and local samplerate values
[pulseview.git] / pv / data / signalbase.cpp
... / ...
CommitLineData
1/*
2 * This file is part of the PulseView project.
3 *
4 * Copyright (C) 2012 Joel Holdsworth <joel@airwebreathe.org.uk>
5 * Copyright (C) 2016 Soeren Apel <soeren@apelpie.net>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, see <http://www.gnu.org/licenses/>.
19 */
20
21#include "analog.hpp"
22#include "analogsegment.hpp"
23#include "decode/row.hpp"
24#include "logic.hpp"
25#include "logicsegment.hpp"
26#include "signalbase.hpp"
27#include "signaldata.hpp"
28
29#include <QDebug>
30
31#include <pv/binding/decoder.hpp>
32#include <pv/session.hpp>
33
34using std::dynamic_pointer_cast;
35using std::make_shared;
36using std::out_of_range;
37using std::shared_ptr;
38using std::tie;
39using std::unique_lock;
40
41namespace pv {
42namespace data {
43
44const int SignalBase::ColorBGAlpha = 8 * 256 / 100;
45const uint64_t SignalBase::ConversionBlockSize = 4096;
46const uint32_t SignalBase::ConversionDelay = 1000; // 1 second
47
48SignalBase::SignalBase(shared_ptr<sigrok::Channel> channel, ChannelType channel_type) :
49 channel_(channel),
50 channel_type_(channel_type),
51 conversion_type_(NoConversion),
52 min_value_(0),
53 max_value_(0)
54{
55 if (channel_)
56 internal_name_ = QString::fromStdString(channel_->name());
57
58 connect(&delayed_conversion_starter_, SIGNAL(timeout()),
59 this, SLOT(on_delayed_conversion_start()));
60 delayed_conversion_starter_.setSingleShot(true);
61 delayed_conversion_starter_.setInterval(ConversionDelay);
62}
63
64SignalBase::~SignalBase()
65{
66 stop_conversion();
67}
68
69shared_ptr<sigrok::Channel> SignalBase::channel() const
70{
71 return channel_;
72}
73
74QString SignalBase::name() const
75{
76 return (channel_) ? QString::fromStdString(channel_->name()) : name_;
77}
78
79QString SignalBase::internal_name() const
80{
81 return internal_name_;
82}
83
84QString SignalBase::display_name() const
85{
86 if ((name() != internal_name_) && (!internal_name_.isEmpty()))
87 return name() + " (" + internal_name_ + ")";
88 else
89 return name();
90}
91
92void SignalBase::set_name(QString name)
93{
94 if (channel_)
95 channel_->set_name(name.toUtf8().constData());
96
97 name_ = name;
98
99 name_changed(name);
100}
101
102bool SignalBase::enabled() const
103{
104 return (channel_) ? channel_->enabled() : true;
105}
106
107void SignalBase::set_enabled(bool value)
108{
109 if (channel_) {
110 channel_->set_enabled(value);
111 enabled_changed(value);
112 }
113}
114
115SignalBase::ChannelType SignalBase::type() const
116{
117 return channel_type_;
118}
119
120unsigned int SignalBase::index() const
121{
122 return (channel_) ? channel_->index() : 0;
123}
124
125unsigned int SignalBase::logic_bit_index() const
126{
127 if (channel_type_ == LogicChannel)
128 return channel_->index();
129 else
130 return 0;
131}
132
133QColor SignalBase::color() const
134{
135 return color_;
136}
137
138void SignalBase::set_color(QColor color)
139{
140 color_ = color;
141
142 bgcolor_ = color;
143 bgcolor_.setAlpha(ColorBGAlpha);
144
145 color_changed(color);
146}
147
148QColor SignalBase::bgcolor() const
149{
150 return bgcolor_;
151}
152
153void SignalBase::set_data(shared_ptr<pv::data::SignalData> data)
154{
155 if (data_) {
156 disconnect(data.get(), SIGNAL(samples_cleared()),
157 this, SLOT(on_samples_cleared()));
158 disconnect(data.get(), SIGNAL(samples_added(QObject*, uint64_t, uint64_t)),
159 this, SLOT(on_samples_added(QObject*, uint64_t, uint64_t)));
160
161 if (channel_type_ == AnalogChannel) {
162 shared_ptr<Analog> analog = analog_data();
163 assert(analog);
164
165 disconnect(analog.get(), SIGNAL(min_max_changed(float, float)),
166 this, SLOT(on_min_max_changed(float, float)));
167 }
168 }
169
170 data_ = data;
171
172 if (data_) {
173 connect(data.get(), SIGNAL(samples_cleared()),
174 this, SLOT(on_samples_cleared()));
175 connect(data.get(), SIGNAL(samples_added(QObject*, uint64_t, uint64_t)),
176 this, SLOT(on_samples_added(QObject*, uint64_t, uint64_t)));
177
178 if (channel_type_ == AnalogChannel) {
179 shared_ptr<Analog> analog = analog_data();
180 assert(analog);
181
182 connect(analog.get(), SIGNAL(min_max_changed(float, float)),
183 this, SLOT(on_min_max_changed(float, float)));
184 }
185 }
186}
187
188void SignalBase::clear_sample_data()
189{
190 if (analog_data())
191 analog_data()->clear();
192
193 if (logic_data())
194 logic_data()->clear();
195}
196
197shared_ptr<data::Analog> SignalBase::analog_data() const
198{
199 shared_ptr<Analog> result = nullptr;
200
201 if (channel_type_ == AnalogChannel)
202 result = dynamic_pointer_cast<Analog>(data_);
203
204 return result;
205}
206
207shared_ptr<data::Logic> SignalBase::logic_data() const
208{
209 shared_ptr<Logic> result = nullptr;
210
211 if (channel_type_ == LogicChannel)
212 result = dynamic_pointer_cast<Logic>(data_);
213
214 if (((conversion_type_ == A2LConversionByThreshold) ||
215 (conversion_type_ == A2LConversionBySchmittTrigger)))
216 result = dynamic_pointer_cast<Logic>(converted_data_);
217
218 return result;
219}
220
221bool SignalBase::segment_is_complete(uint32_t segment_id) const
222{
223 bool result = true;
224
225 if (channel_type_ == AnalogChannel)
226 {
227 shared_ptr<Analog> data = dynamic_pointer_cast<Analog>(data_);
228 auto segments = data->analog_segments();
229 try {
230 result = segments.at(segment_id)->is_complete();
231 } catch (out_of_range&) {
232 // Do nothing
233 }
234 }
235
236 if (channel_type_ == LogicChannel)
237 {
238 shared_ptr<Logic> data = dynamic_pointer_cast<Logic>(data_);
239 auto segments = data->logic_segments();
240 try {
241 result = segments.at(segment_id)->is_complete();
242 } catch (out_of_range&) {
243 // Do nothing
244 }
245 }
246
247 return result;
248}
249
250bool SignalBase::has_samples() const
251{
252 bool result = false;
253
254 if (channel_type_ == AnalogChannel)
255 {
256 shared_ptr<Analog> data = dynamic_pointer_cast<Analog>(data_);
257 if (data) {
258 auto segments = data->analog_segments();
259 if ((segments.size() > 0) && (segments.front()->get_sample_count() > 0))
260 result = true;
261 }
262 }
263
264 if (channel_type_ == LogicChannel)
265 {
266 shared_ptr<Logic> data = dynamic_pointer_cast<Logic>(data_);
267 if (data) {
268 auto segments = data->logic_segments();
269 if ((segments.size() > 0) && (segments.front()->get_sample_count() > 0))
270 result = true;
271 }
272 }
273
274 return result;
275}
276
277double SignalBase::get_samplerate() const
278{
279 if (channel_type_ == AnalogChannel)
280 {
281 shared_ptr<Analog> data = dynamic_pointer_cast<Analog>(data_);
282 if (data)
283 return data->get_samplerate();
284 }
285
286 if (channel_type_ == LogicChannel)
287 {
288 shared_ptr<Logic> data = dynamic_pointer_cast<Logic>(data_);
289 if (data)
290 return data->get_samplerate();
291 }
292
293 // Default samplerate is 1 Hz
294 return 1.0;
295}
296
297SignalBase::ConversionType SignalBase::get_conversion_type() const
298{
299 return conversion_type_;
300}
301
302void SignalBase::set_conversion_type(ConversionType t)
303{
304 if (conversion_type_ != NoConversion) {
305 stop_conversion();
306
307 // Discard converted data
308 converted_data_.reset();
309 samples_cleared();
310 }
311
312 conversion_type_ = t;
313
314 // Re-create an empty container
315 // so that the signal is recognized as providing logic data
316 // and thus can be assigned to a decoder
317 if (conversion_is_a2l())
318 if (!converted_data_)
319 converted_data_ = make_shared<Logic>(1); // Contains only one channel
320
321 start_conversion();
322
323 conversion_type_changed(t);
324}
325
326map<QString, QVariant> SignalBase::get_conversion_options() const
327{
328 return conversion_options_;
329}
330
331bool SignalBase::set_conversion_option(QString key, QVariant value)
332{
333 QVariant old_value;
334
335 auto key_iter = conversion_options_.find(key);
336 if (key_iter != conversion_options_.end())
337 old_value = key_iter->second;
338
339 conversion_options_[key] = value;
340
341 return (value != old_value);
342}
343
344vector<double> SignalBase::get_conversion_thresholds(const ConversionType t,
345 const bool always_custom) const
346{
347 vector<double> result;
348 ConversionType conv_type = t;
349 ConversionPreset preset;
350
351 // Use currently active conversion if no conversion type was supplied
352 if (conv_type == NoConversion)
353 conv_type = conversion_type_;
354
355 if (always_custom)
356 preset = NoPreset;
357 else
358 preset = get_current_conversion_preset();
359
360 if (conv_type == A2LConversionByThreshold) {
361 double thr = 0;
362
363 if (preset == NoPreset) {
364 auto thr_iter = conversion_options_.find("threshold_value");
365 if (thr_iter != conversion_options_.end())
366 thr = (thr_iter->second).toDouble();
367 }
368
369 if (preset == DynamicPreset)
370 thr = (min_value_ + max_value_) * 0.5; // middle between min and max
371
372 if ((int)preset == 1) thr = 0.9;
373 if ((int)preset == 2) thr = 1.8;
374 if ((int)preset == 3) thr = 2.5;
375 if ((int)preset == 4) thr = 1.5;
376
377 result.push_back(thr);
378 }
379
380 if (conv_type == A2LConversionBySchmittTrigger) {
381 double thr_lo = 0, thr_hi = 0;
382
383 if (preset == NoPreset) {
384 auto thr_lo_iter = conversion_options_.find("threshold_value_low");
385 if (thr_lo_iter != conversion_options_.end())
386 thr_lo = (thr_lo_iter->second).toDouble();
387
388 auto thr_hi_iter = conversion_options_.find("threshold_value_high");
389 if (thr_hi_iter != conversion_options_.end())
390 thr_hi = (thr_hi_iter->second).toDouble();
391 }
392
393 if (preset == DynamicPreset) {
394 const double amplitude = max_value_ - min_value_;
395 const double center = min_value_ + (amplitude / 2);
396 thr_lo = center - (amplitude * 0.15); // 15% margin
397 thr_hi = center + (amplitude * 0.15); // 15% margin
398 }
399
400 if ((int)preset == 1) { thr_lo = 0.3; thr_hi = 1.2; }
401 if ((int)preset == 2) { thr_lo = 0.7; thr_hi = 2.5; }
402 if ((int)preset == 3) { thr_lo = 1.3; thr_hi = 3.7; }
403 if ((int)preset == 4) { thr_lo = 0.8; thr_hi = 2.0; }
404
405 result.push_back(thr_lo);
406 result.push_back(thr_hi);
407 }
408
409 return result;
410}
411
412vector< pair<QString, int> > SignalBase::get_conversion_presets() const
413{
414 vector< pair<QString, int> > presets;
415
416 if (conversion_type_ == A2LConversionByThreshold) {
417 // Source: http://www.interfacebus.com/voltage_threshold.html
418 presets.emplace_back(tr("Signal average"), 0);
419 presets.emplace_back(tr("0.9V (for 1.8V CMOS)"), 1);
420 presets.emplace_back(tr("1.8V (for 3.3V CMOS)"), 2);
421 presets.emplace_back(tr("2.5V (for 5.0V CMOS)"), 3);
422 presets.emplace_back(tr("1.5V (for TTL)"), 4);
423 }
424
425 if (conversion_type_ == A2LConversionBySchmittTrigger) {
426 // Source: http://www.interfacebus.com/voltage_threshold.html
427 presets.emplace_back(tr("Signal average +/- 15%"), 0);
428 presets.emplace_back(tr("0.3V/1.2V (for 1.8V CMOS)"), 1);
429 presets.emplace_back(tr("0.7V/2.5V (for 3.3V CMOS)"), 2);
430 presets.emplace_back(tr("1.3V/3.7V (for 5.0V CMOS)"), 3);
431 presets.emplace_back(tr("0.8V/2.0V (for TTL)"), 4);
432 }
433
434 return presets;
435}
436
437SignalBase::ConversionPreset SignalBase::get_current_conversion_preset() const
438{
439 auto preset = conversion_options_.find("preset");
440 if (preset != conversion_options_.end())
441 return (ConversionPreset)((preset->second).toInt());
442
443 return DynamicPreset;
444}
445
446void SignalBase::set_conversion_preset(ConversionPreset id)
447{
448 conversion_options_["preset"] = (int)id;
449}
450
451#ifdef ENABLE_DECODE
452bool SignalBase::is_decode_signal() const
453{
454 return (channel_type_ == DecodeChannel);
455}
456#endif
457
458void SignalBase::save_settings(QSettings &settings) const
459{
460 settings.setValue("name", name());
461 settings.setValue("enabled", enabled());
462 settings.setValue("color", color().rgba());
463 settings.setValue("conversion_type", (int)conversion_type_);
464
465 settings.setValue("conv_options", (int)(conversion_options_.size()));
466 int i = 0;
467 for (auto& kvp : conversion_options_) {
468 settings.setValue(QString("conv_option%1_key").arg(i), kvp.first);
469 settings.setValue(QString("conv_option%1_value").arg(i), kvp.second);
470 i++;
471 }
472}
473
474void SignalBase::restore_settings(QSettings &settings)
475{
476 if (settings.contains("name"))
477 set_name(settings.value("name").toString());
478
479 if (settings.contains("enabled"))
480 set_enabled(settings.value("enabled").toBool());
481
482 if (settings.contains("color")) {
483 QVariant value = settings.value("color");
484
485 // Workaround for Qt QColor serialization bug on OSX
486 if ((QMetaType::Type)(value.type()) == QMetaType::QColor)
487 set_color(value.value<QColor>());
488 else
489 set_color(QColor::fromRgba(value.value<uint32_t>()));
490
491 // A color with an alpha value of 0 makes the signal marker invisible
492 if (color() == QColor(0, 0, 0, 0))
493 set_color(Qt::gray);
494 }
495
496 if (settings.contains("conversion_type"))
497 set_conversion_type((ConversionType)settings.value("conversion_type").toInt());
498
499 int conv_options = 0;
500 if (settings.contains("conv_options"))
501 conv_options = settings.value("conv_options").toInt();
502
503 if (conv_options)
504 for (int i = 0; i < conv_options; i++) {
505 const QString key_id = QString("conv_option%1_key").arg(i);
506 const QString value_id = QString("conv_option%1_value").arg(i);
507
508 if (settings.contains(key_id) && settings.contains(value_id))
509 conversion_options_[settings.value(key_id).toString()] =
510 settings.value(value_id);
511 }
512}
513
514bool SignalBase::conversion_is_a2l() const
515{
516 return ((channel_type_ == AnalogChannel) &&
517 ((conversion_type_ == A2LConversionByThreshold) ||
518 (conversion_type_ == A2LConversionBySchmittTrigger)));
519}
520
521void SignalBase::convert_single_segment_range(AnalogSegment *asegment,
522 LogicSegment *lsegment, uint64_t start_sample, uint64_t end_sample)
523{
524 if (end_sample > start_sample) {
525 tie(min_value_, max_value_) = asegment->get_min_max();
526
527 // Create sigrok::Analog instance
528 float *asamples = new float[ConversionBlockSize];
529 uint8_t *lsamples = new uint8_t[ConversionBlockSize];
530
531 vector<shared_ptr<sigrok::Channel> > channels;
532 channels.push_back(channel_);
533
534 vector<const sigrok::QuantityFlag*> mq_flags;
535 const sigrok::Quantity * const mq = sigrok::Quantity::VOLTAGE;
536 const sigrok::Unit * const unit = sigrok::Unit::VOLT;
537
538 shared_ptr<sigrok::Packet> packet =
539 Session::sr_context->create_analog_packet(channels,
540 asamples, ConversionBlockSize, mq, unit, mq_flags);
541
542 shared_ptr<sigrok::Analog> analog =
543 dynamic_pointer_cast<sigrok::Analog>(packet->payload());
544
545 // Convert
546 uint64_t i = start_sample;
547
548 if (conversion_type_ == A2LConversionByThreshold) {
549 const double threshold = get_conversion_thresholds()[0];
550
551 // Convert as many sample blocks as we can
552 while ((end_sample - i) > ConversionBlockSize) {
553 asegment->get_samples(i, i + ConversionBlockSize, asamples);
554
555 shared_ptr<sigrok::Logic> logic =
556 analog->get_logic_via_threshold(threshold, lsamples);
557
558 lsegment->append_payload(logic->data_pointer(), logic->data_length());
559 samples_added(lsegment->segment_id(), i, i + ConversionBlockSize);
560 i += ConversionBlockSize;
561 }
562
563 // Re-create sigrok::Analog and convert remaining samples
564 packet = Session::sr_context->create_analog_packet(channels,
565 asamples, end_sample - i, mq, unit, mq_flags);
566
567 analog = dynamic_pointer_cast<sigrok::Analog>(packet->payload());
568
569 asegment->get_samples(i, end_sample, asamples);
570 shared_ptr<sigrok::Logic> logic =
571 analog->get_logic_via_threshold(threshold, lsamples);
572 lsegment->append_payload(logic->data_pointer(), logic->data_length());
573 samples_added(lsegment->segment_id(), i, end_sample);
574 }
575
576 if (conversion_type_ == A2LConversionBySchmittTrigger) {
577 const vector<double> thresholds = get_conversion_thresholds();
578 const double lo_thr = thresholds[0];
579 const double hi_thr = thresholds[1];
580
581 uint8_t state = 0; // TODO Use value of logic sample n-1 instead of 0
582
583 // Convert as many sample blocks as we can
584 while ((end_sample - i) > ConversionBlockSize) {
585 asegment->get_samples(i, i + ConversionBlockSize, asamples);
586
587 shared_ptr<sigrok::Logic> logic =
588 analog->get_logic_via_schmitt_trigger(lo_thr, hi_thr,
589 &state, lsamples);
590
591 lsegment->append_payload(logic->data_pointer(), logic->data_length());
592 samples_added(lsegment->segment_id(), i, i + ConversionBlockSize);
593 i += ConversionBlockSize;
594 }
595
596 // Re-create sigrok::Analog and convert remaining samples
597 packet = Session::sr_context->create_analog_packet(channels,
598 asamples, end_sample - i, mq, unit, mq_flags);
599
600 analog = dynamic_pointer_cast<sigrok::Analog>(packet->payload());
601
602 asegment->get_samples(i, end_sample, asamples);
603 shared_ptr<sigrok::Logic> logic =
604 analog->get_logic_via_schmitt_trigger(lo_thr, hi_thr,
605 &state, lsamples);
606 lsegment->append_payload(logic->data_pointer(), logic->data_length());
607 samples_added(lsegment->segment_id(), i, end_sample);
608 }
609
610 // If acquisition is ongoing, start-/endsample may have changed
611 end_sample = asegment->get_sample_count();
612
613 delete[] lsamples;
614 delete[] asamples;
615 }
616}
617
618void SignalBase::convert_single_segment(AnalogSegment *asegment, LogicSegment *lsegment)
619{
620 uint64_t start_sample, end_sample, old_end_sample;
621 start_sample = end_sample = 0;
622 bool complete_state, old_complete_state;
623
624 start_sample = lsegment->get_sample_count();
625 end_sample = asegment->get_sample_count();
626 complete_state = asegment->is_complete();
627
628 // Don't do anything if the segment is still being filled and the sample count is too small
629 if ((!complete_state) && (end_sample - start_sample < ConversionBlockSize))
630 return;
631
632 do {
633 convert_single_segment_range(asegment, lsegment, start_sample, end_sample);
634
635 old_end_sample = end_sample;
636 old_complete_state = complete_state;
637
638 start_sample = lsegment->get_sample_count();
639 end_sample = asegment->get_sample_count();
640 complete_state = asegment->is_complete();
641
642 // If the segment has been incomplete when we were called and has been
643 // completed in the meanwhile, we convert the remaining samples as well.
644 // Also, if a sufficient number of samples was added in the meanwhile,
645 // we do another round of sample conversion.
646 } while ((complete_state != old_complete_state) ||
647 (end_sample - old_end_sample >= ConversionBlockSize));
648}
649
650void SignalBase::conversion_thread_proc()
651{
652 shared_ptr<Analog> analog_data;
653
654 if (conversion_is_a2l()) {
655 analog_data = dynamic_pointer_cast<Analog>(data_);
656
657 if (analog_data->analog_segments().size() == 0) {
658 unique_lock<mutex> input_lock(conversion_input_mutex_);
659 conversion_input_cond_.wait(input_lock);
660 }
661
662 } else
663 // Currently, we only handle A2L conversions
664 return;
665
666 // If we had to wait for input data, we may have been notified to terminate
667 if (conversion_interrupt_)
668 return;
669
670 uint32_t segment_id = 0;
671
672 AnalogSegment *asegment = analog_data->analog_segments().front().get();
673 assert(asegment);
674
675 const shared_ptr<Logic> logic_data = dynamic_pointer_cast<Logic>(converted_data_);
676 assert(logic_data);
677
678 // Create the initial logic data segment if needed
679 if (logic_data->logic_segments().size() == 0) {
680 shared_ptr<LogicSegment> new_segment =
681 make_shared<LogicSegment>(*logic_data.get(), 0, 1, asegment->samplerate());
682 logic_data->push_segment(new_segment);
683 }
684
685 LogicSegment *lsegment = logic_data->logic_segments().front().get();
686 assert(lsegment);
687
688 do {
689 convert_single_segment(asegment, lsegment);
690
691 // Only advance to next segment if the current input segment is complete
692 if (asegment->is_complete() &&
693 analog_data->analog_segments().size() > logic_data->logic_segments().size()) {
694 // There are more segments to process
695 segment_id++;
696
697 try {
698 asegment = analog_data->analog_segments().at(segment_id).get();
699 } catch (out_of_range&) {
700 qDebug() << "Conversion error for" << name() << ": no analog segment" \
701 << segment_id << ", segments size is" << analog_data->analog_segments().size();
702 return;
703 }
704
705 shared_ptr<LogicSegment> new_segment = make_shared<LogicSegment>(
706 *logic_data.get(), segment_id, 1, asegment->samplerate());
707 logic_data->push_segment(new_segment);
708
709 lsegment = logic_data->logic_segments().back().get();
710 } else {
711 // No more samples/segments to process, wait for data or interrupt
712 if (!conversion_interrupt_) {
713 unique_lock<mutex> input_lock(conversion_input_mutex_);
714 conversion_input_cond_.wait(input_lock);
715 }
716 }
717 } while (!conversion_interrupt_);
718}
719
720void SignalBase::start_conversion(bool delayed_start)
721{
722 if (delayed_start) {
723 delayed_conversion_starter_.start();
724 return;
725 }
726
727 stop_conversion();
728
729 if (converted_data_)
730 converted_data_->clear();
731 samples_cleared();
732
733 conversion_interrupt_ = false;
734 conversion_thread_ = std::thread(
735 &SignalBase::conversion_thread_proc, this);
736}
737
738void SignalBase::stop_conversion()
739{
740 // Stop conversion so we can restart it from the beginning
741 conversion_interrupt_ = true;
742 conversion_input_cond_.notify_one();
743 if (conversion_thread_.joinable())
744 conversion_thread_.join();
745}
746
747void SignalBase::on_samples_cleared()
748{
749 if (converted_data_)
750 converted_data_->clear();
751
752 samples_cleared();
753}
754
755void SignalBase::on_samples_added(QObject* segment, uint64_t start_sample,
756 uint64_t end_sample)
757{
758 if (conversion_type_ != NoConversion) {
759 if (conversion_thread_.joinable()) {
760 // Notify the conversion thread since it's running
761 conversion_input_cond_.notify_one();
762 } else {
763 // Start the conversion thread unless the delay timer is running
764 if (!delayed_conversion_starter_.isActive())
765 start_conversion();
766 }
767 }
768
769 data::Segment* s = qobject_cast<data::Segment*>(segment);
770 samples_added(s->segment_id(), start_sample, end_sample);
771}
772
773void SignalBase::on_min_max_changed(float min, float max)
774{
775 // Restart conversion if one is enabled and uses a calculated threshold
776 if ((conversion_type_ != NoConversion) &&
777 (get_current_conversion_preset() == DynamicPreset))
778 start_conversion(true);
779
780 min_max_changed(min, max);
781}
782
783void SignalBase::on_capture_state_changed(int state)
784{
785 if (state == Session::Running) {
786 // Restart conversion if one is enabled
787 if (conversion_type_ != NoConversion)
788 start_conversion();
789 }
790}
791
792void SignalBase::on_delayed_conversion_start()
793{
794 start_conversion();
795}
796
797} // namespace data
798} // namespace pv