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DecodeSignal: Add binary data callback
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1/*
2 * This file is part of the PulseView project.
3 *
4 * Copyright (C) 2017 Soeren Apel <soeren@apelpie.net>
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 <cstring>
21#include <forward_list>
22#include <limits>
23
24#include <QDebug>
25
26#include "logic.hpp"
27#include "logicsegment.hpp"
28#include "decodesignal.hpp"
29#include "signaldata.hpp"
30
31#include <pv/binding/decoder.hpp>
32#include <pv/data/decode/decoder.hpp>
33#include <pv/data/decode/row.hpp>
34#include <pv/globalsettings.hpp>
35#include <pv/session.hpp>
36
37using std::forward_list;
38using std::lock_guard;
39using std::make_pair;
40using std::make_shared;
41using std::min;
42using std::out_of_range;
43using std::shared_ptr;
44using std::unique_lock;
45using pv::data::decode::Annotation;
46using pv::data::decode::Decoder;
47using pv::data::decode::Row;
48
49namespace pv {
50namespace data {
51
52const double DecodeSignal::DecodeMargin = 1.0;
53const double DecodeSignal::DecodeThreshold = 0.2;
54const int64_t DecodeSignal::DecodeChunkLength = 256 * 1024;
55
56
57DecodeSignal::DecodeSignal(pv::Session &session) :
58 SignalBase(nullptr, SignalBase::DecodeChannel),
59 session_(session),
60 srd_session_(nullptr),
61 logic_mux_data_invalid_(false),
62 stack_config_changed_(true),
63 current_segment_id_(0)
64{
65 connect(&session_, SIGNAL(capture_state_changed(int)),
66 this, SLOT(on_capture_state_changed(int)));
67}
68
69DecodeSignal::~DecodeSignal()
70{
71 reset_decode(true);
72}
73
74const vector< shared_ptr<Decoder> >& DecodeSignal::decoder_stack() const
75{
76 return stack_;
77}
78
79void DecodeSignal::stack_decoder(const srd_decoder *decoder)
80{
81 assert(decoder);
82
83 // Set name if this decoder is the first in the list or the name is unchanged
84 const srd_decoder* prev_dec =
85 stack_.empty() ? nullptr : stack_.back()->decoder();
86 const QString prev_dec_name =
87 prev_dec ? QString::fromUtf8(prev_dec->name) : QString();
88
89 if ((stack_.empty()) || ((stack_.size() > 0) && (name() == prev_dec_name)))
90 set_name(QString::fromUtf8(decoder->name));
91
92 const shared_ptr<Decoder> dec = make_shared<decode::Decoder>(decoder);
93 stack_.push_back(dec);
94
95 // Include the newly created decode channels in the channel lists
96 update_channel_list();
97
98 stack_config_changed_ = true;
99 auto_assign_signals(dec);
100 commit_decoder_channels();
101 begin_decode();
102}
103
104void DecodeSignal::remove_decoder(int index)
105{
106 assert(index >= 0);
107 assert(index < (int)stack_.size());
108
109 // Find the decoder in the stack
110 auto iter = stack_.begin();
111 for (int i = 0; i < index; i++, iter++)
112 assert(iter != stack_.end());
113
114 // Delete the element
115 stack_.erase(iter);
116
117 // Update channels and decoded data
118 stack_config_changed_ = true;
119 update_channel_list();
120 begin_decode();
121}
122
123bool DecodeSignal::toggle_decoder_visibility(int index)
124{
125 auto iter = stack_.cbegin();
126 for (int i = 0; i < index; i++, iter++)
127 assert(iter != stack_.end());
128
129 shared_ptr<Decoder> dec = *iter;
130
131 // Toggle decoder visibility
132 bool state = false;
133 if (dec) {
134 state = !dec->shown();
135 dec->show(state);
136 }
137
138 return state;
139}
140
141void DecodeSignal::reset_decode(bool shutting_down)
142{
143 if (stack_config_changed_ || shutting_down)
144 stop_srd_session();
145 else
146 terminate_srd_session();
147
148 if (decode_thread_.joinable()) {
149 decode_interrupt_ = true;
150 decode_input_cond_.notify_one();
151 decode_thread_.join();
152 }
153
154 if (logic_mux_thread_.joinable()) {
155 logic_mux_interrupt_ = true;
156 logic_mux_cond_.notify_one();
157 logic_mux_thread_.join();
158 }
159
160 resume_decode(); // Make sure the decode thread isn't blocked by pausing
161
162 class_rows_.clear();
163 current_segment_id_ = 0;
164 segments_.clear();
165
166 logic_mux_data_.reset();
167 logic_mux_data_invalid_ = true;
168
169 if (!error_message_.isEmpty()) {
170 error_message_ = QString();
171 // TODO Emulate noquote()
172 qDebug().nospace() << name() << ": Error cleared";
173 }
174
175 decode_reset();
176}
177
178void DecodeSignal::begin_decode()
179{
180 if (decode_thread_.joinable()) {
181 decode_interrupt_ = true;
182 decode_input_cond_.notify_one();
183 decode_thread_.join();
184 }
185
186 if (logic_mux_thread_.joinable()) {
187 logic_mux_interrupt_ = true;
188 logic_mux_cond_.notify_one();
189 logic_mux_thread_.join();
190 }
191
192 reset_decode();
193
194 if (stack_.size() == 0) {
195 set_error_message(tr("No decoders"));
196 return;
197 }
198
199 assert(channels_.size() > 0);
200
201 if (get_assigned_signal_count() == 0) {
202 set_error_message(tr("There are no channels assigned to this decoder"));
203 return;
204 }
205
206 // Make sure that all assigned channels still provide logic data
207 // (can happen when a converted signal was assigned but the
208 // conversion removed in the meanwhile)
209 for (data::DecodeChannel& ch : channels_)
210 if (ch.assigned_signal && !(ch.assigned_signal->logic_data() != nullptr))
211 ch.assigned_signal = nullptr;
212
213 // Check that all decoders have the required channels
214 for (const shared_ptr<decode::Decoder>& dec : stack_)
215 if (!dec->have_required_channels()) {
216 set_error_message(tr("One or more required channels "
217 "have not been specified"));
218 return;
219 }
220
221 // Map out all the annotation classes
222 int row_index = 0;
223 for (const shared_ptr<decode::Decoder>& dec : stack_) {
224 assert(dec);
225 const srd_decoder *const decc = dec->decoder();
226 assert(dec->decoder());
227
228 for (const GSList *l = decc->annotation_rows; l; l = l->next) {
229 const srd_decoder_annotation_row *const ann_row =
230 (srd_decoder_annotation_row *)l->data;
231 assert(ann_row);
232
233 const Row row(row_index++, decc, ann_row);
234
235 for (const GSList *ll = ann_row->ann_classes;
236 ll; ll = ll->next)
237 class_rows_[make_pair(decc,
238 GPOINTER_TO_INT(ll->data))] = row;
239 }
240 }
241
242 // Free the logic data and its segment(s) if it needs to be updated
243 if (logic_mux_data_invalid_)
244 logic_mux_data_.reset();
245
246 if (!logic_mux_data_) {
247 const uint32_t ch_count = get_assigned_signal_count();
248 logic_mux_unit_size_ = (ch_count + 7) / 8;
249 logic_mux_data_ = make_shared<Logic>(ch_count);
250 }
251
252 // Receive notifications when new sample data is available
253 connect_input_notifiers();
254
255 if (get_input_segment_count() == 0) {
256 set_error_message(tr("No input data"));
257 return;
258 }
259
260 // Make sure the logic output data is complete and up-to-date
261 logic_mux_interrupt_ = false;
262 logic_mux_thread_ = std::thread(&DecodeSignal::logic_mux_proc, this);
263
264 // Decode the muxed logic data
265 decode_interrupt_ = false;
266 decode_thread_ = std::thread(&DecodeSignal::decode_proc, this);
267}
268
269void DecodeSignal::pause_decode()
270{
271 decode_paused_ = true;
272}
273
274void DecodeSignal::resume_decode()
275{
276 // Manual unlocking is done before notifying, to avoid waking up the
277 // waiting thread only to block again (see notify_one for details)
278 decode_pause_mutex_.unlock();
279 decode_pause_cond_.notify_one();
280 decode_paused_ = false;
281}
282
283bool DecodeSignal::is_paused() const
284{
285 return decode_paused_;
286}
287
288QString DecodeSignal::error_message() const
289{
290 lock_guard<mutex> lock(output_mutex_);
291 return error_message_;
292}
293
294const vector<data::DecodeChannel> DecodeSignal::get_channels() const
295{
296 return channels_;
297}
298
299void DecodeSignal::auto_assign_signals(const shared_ptr<Decoder> dec)
300{
301 bool new_assignment = false;
302
303 // Try to auto-select channels that don't have signals assigned yet
304 for (data::DecodeChannel& ch : channels_) {
305 // If a decoder is given, auto-assign only its channels
306 if (dec && (ch.decoder_ != dec))
307 continue;
308
309 if (ch.assigned_signal)
310 continue;
311
312 QString ch_name = ch.name.toLower();
313 ch_name = ch_name.replace(QRegExp("[-_.]"), " ");
314
315 shared_ptr<data::SignalBase> match;
316 for (const shared_ptr<data::SignalBase>& s : session_.signalbases()) {
317 if (!s->enabled())
318 continue;
319
320 QString s_name = s->name().toLower();
321 s_name = s_name.replace(QRegExp("[-_.]"), " ");
322
323 if (s->logic_data() &&
324 ((ch_name.contains(s_name)) || (s_name.contains(ch_name)))) {
325 if (!match)
326 match = s;
327 else {
328 // Only replace an existing match if it matches more characters
329 int old_unmatched = ch_name.length() - match->name().length();
330 int new_unmatched = ch_name.length() - s->name().length();
331 if (abs(new_unmatched) < abs(old_unmatched))
332 match = s;
333 }
334 }
335 }
336
337 if (match) {
338 ch.assigned_signal = match.get();
339 new_assignment = true;
340 }
341 }
342
343 if (new_assignment) {
344 logic_mux_data_invalid_ = true;
345 stack_config_changed_ = true;
346 commit_decoder_channels();
347 channels_updated();
348 }
349}
350
351void DecodeSignal::assign_signal(const uint16_t channel_id, const SignalBase *signal)
352{
353 for (data::DecodeChannel& ch : channels_)
354 if (ch.id == channel_id) {
355 ch.assigned_signal = signal;
356 logic_mux_data_invalid_ = true;
357 }
358
359 stack_config_changed_ = true;
360 commit_decoder_channels();
361 channels_updated();
362 begin_decode();
363}
364
365int DecodeSignal::get_assigned_signal_count() const
366{
367 // Count all channels that have a signal assigned to them
368 return count_if(channels_.begin(), channels_.end(),
369 [](data::DecodeChannel ch) { return ch.assigned_signal; });
370}
371
372void DecodeSignal::set_initial_pin_state(const uint16_t channel_id, const int init_state)
373{
374 for (data::DecodeChannel& ch : channels_)
375 if (ch.id == channel_id)
376 ch.initial_pin_state = init_state;
377
378 stack_config_changed_ = true;
379 channels_updated();
380 begin_decode();
381}
382
383double DecodeSignal::samplerate() const
384{
385 double result = 0;
386
387 // TODO For now, we simply return the first samplerate that we have
388 if (segments_.size() > 0)
389 result = segments_.front().samplerate;
390
391 return result;
392}
393
394const pv::util::Timestamp DecodeSignal::start_time() const
395{
396 pv::util::Timestamp result;
397
398 // TODO For now, we simply return the first start time that we have
399 if (segments_.size() > 0)
400 result = segments_.front().start_time;
401
402 return result;
403}
404
405int64_t DecodeSignal::get_working_sample_count(uint32_t segment_id) const
406{
407 // The working sample count is the highest sample number for
408 // which all used signals have data available, so go through all
409 // channels and use the lowest overall sample count of the segment
410
411 int64_t count = std::numeric_limits<int64_t>::max();
412 bool no_signals_assigned = true;
413
414 for (const data::DecodeChannel& ch : channels_)
415 if (ch.assigned_signal) {
416 no_signals_assigned = false;
417
418 const shared_ptr<Logic> logic_data = ch.assigned_signal->logic_data();
419 if (!logic_data || logic_data->logic_segments().empty())
420 return 0;
421
422 try {
423 const shared_ptr<LogicSegment> segment = logic_data->logic_segments().at(segment_id);
424 count = min(count, (int64_t)segment->get_sample_count());
425 } catch (out_of_range&) {
426 return 0;
427 }
428 }
429
430 return (no_signals_assigned ? 0 : count);
431}
432
433int64_t DecodeSignal::get_decoded_sample_count(uint32_t segment_id,
434 bool include_processing) const
435{
436 lock_guard<mutex> decode_lock(output_mutex_);
437
438 int64_t result = 0;
439
440 try {
441 const DecodeSegment *segment = &(segments_.at(segment_id));
442 if (include_processing)
443 result = segment->samples_decoded_incl;
444 else
445 result = segment->samples_decoded_excl;
446 } catch (out_of_range&) {
447 // Do nothing
448 }
449
450 return result;
451}
452
453vector<Row> DecodeSignal::get_rows(bool visible_only) const
454{
455 lock_guard<mutex> lock(output_mutex_);
456
457 vector<Row> rows;
458
459 for (const shared_ptr<decode::Decoder>& dec : stack_) {
460 assert(dec);
461 if (visible_only && !dec->shown())
462 continue;
463
464 const srd_decoder *const decc = dec->decoder();
465 assert(dec->decoder());
466
467 int row_index = 0;
468 // Add a row for the decoder if it doesn't have a row list
469 if (!decc->annotation_rows)
470 rows.emplace_back(row_index++, decc);
471
472 // Add the decoder rows
473 for (const GSList *l = decc->annotation_rows; l; l = l->next) {
474 const srd_decoder_annotation_row *const ann_row =
475 (srd_decoder_annotation_row *)l->data;
476 assert(ann_row);
477 rows.emplace_back(row_index++, decc, ann_row);
478 }
479 }
480
481 return rows;
482}
483
484void DecodeSignal::get_annotation_subset(
485 vector<pv::data::decode::Annotation> &dest,
486 const decode::Row &row, uint32_t segment_id, uint64_t start_sample,
487 uint64_t end_sample) const
488{
489 lock_guard<mutex> lock(output_mutex_);
490
491 try {
492 const DecodeSegment *segment = &(segments_.at(segment_id));
493 const map<const decode::Row, decode::RowData> *rows =
494 &(segment->annotation_rows);
495
496 const auto iter = rows->find(row);
497 if (iter != rows->end())
498 (*iter).second.get_annotation_subset(dest,
499 start_sample, end_sample);
500 } catch (out_of_range&) {
501 // Do nothing
502 }
503}
504
505void DecodeSignal::get_annotation_subset(
506 vector<pv::data::decode::Annotation> &dest,
507 uint32_t segment_id, uint64_t start_sample, uint64_t end_sample) const
508{
509 // Note: We put all vectors and lists on the heap, not the stack
510
511 const vector<Row> rows = get_rows(true);
512
513 // Use forward_lists for faster merging
514 forward_list<Annotation> *all_ann_list = new forward_list<Annotation>();
515
516 for (const Row& row : rows) {
517 vector<Annotation> *ann_vector = new vector<Annotation>();
518 get_annotation_subset(*ann_vector, row, segment_id, start_sample, end_sample);
519
520 forward_list<Annotation> *ann_list =
521 new forward_list<Annotation>(ann_vector->begin(), ann_vector->end());
522 delete ann_vector;
523
524 all_ann_list->merge(*ann_list);
525 delete ann_list;
526 }
527
528 move(all_ann_list->begin(), all_ann_list->end(), back_inserter(dest));
529 delete all_ann_list;
530}
531
532uint32_t DecodeSignal::get_binary_data_chunk_count(uint32_t segment_id) const
533{
534 uint32_t count = 0;
535
536 try {
537 const DecodeSegment *segment = &(segments_.at(segment_id));
538 count = segment->binary_data.size();
539 } catch (out_of_range&) {
540 // Do nothing
541 }
542
543 return count;
544}
545
546void DecodeSignal::get_binary_data_chunk(uint32_t segment_id, uint32_t chunk_id,
547 const vector<uint8_t> **dest, uint64_t *size)
548{
549 try {
550 const DecodeSegment *segment = &(segments_.at(segment_id));
551 if (dest)
552 *dest = &(segment->binary_data.at(chunk_id).data);
553 if (size)
554 *size = segment->binary_data.at(chunk_id).data.size();
555 } catch (out_of_range&) {
556 // Do nothing
557 }
558}
559
560void DecodeSignal::get_binary_data_chunks_merged(uint32_t segment_id,
561 uint64_t start_sample, uint64_t end_sample, vector<uint8_t> *dest) const
562{
563 assert(dest != nullptr);
564
565 try {
566 const DecodeSegment *segment = &(segments_.at(segment_id));
567
568 // Determine overall size before copying to resize dest vector only once
569 uint64_t size = 0;
570 for (const DecodeBinaryData& d : segment->binary_data)
571 if ((d.sample >= start_sample) && (d.sample < end_sample))
572 size += d.data.size();
573 dest->reserve(size);
574
575 uint64_t index = 0;
576 for (const DecodeBinaryData& d : segment->binary_data)
577 if ((d.sample >= start_sample) && (d.sample < end_sample)) {
578 memcpy(dest->data() + index, d.data.data(), d.data.size());
579 index += d.data.size();
580 }
581 } catch (out_of_range&) {
582 // Do nothing
583 }
584}
585
586
587void DecodeSignal::save_settings(QSettings &settings) const
588{
589 SignalBase::save_settings(settings);
590
591 settings.setValue("decoders", (int)(stack_.size()));
592
593 // Save decoder stack
594 int decoder_idx = 0;
595 for (const shared_ptr<decode::Decoder>& decoder : stack_) {
596 settings.beginGroup("decoder" + QString::number(decoder_idx++));
597
598 settings.setValue("id", decoder->decoder()->id);
599 settings.setValue("shown", decoder->shown());
600
601 // Save decoder options
602 const map<string, GVariant*>& options = decoder->options();
603
604 settings.setValue("options", (int)options.size());
605
606 // Note: decode::Decoder::options() returns only the options
607 // that differ from the default. See binding::Decoder::getter()
608 int i = 0;
609 for (auto& option : options) {
610 settings.beginGroup("option" + QString::number(i));
611 settings.setValue("name", QString::fromStdString(option.first));
612 GlobalSettings::store_gvariant(settings, option.second);
613 settings.endGroup();
614 i++;
615 }
616
617 settings.endGroup();
618 }
619
620 // Save channel mapping
621 settings.setValue("channels", (int)channels_.size());
622
623 for (unsigned int channel_id = 0; channel_id < channels_.size(); channel_id++) {
624 auto channel = find_if(channels_.begin(), channels_.end(),
625 [&](data::DecodeChannel ch) { return ch.id == channel_id; });
626
627 if (channel == channels_.end()) {
628 qDebug() << "ERROR: Gap in channel index:" << channel_id;
629 continue;
630 }
631
632 settings.beginGroup("channel" + QString::number(channel_id));
633
634 settings.setValue("name", channel->name); // Useful for debugging
635 settings.setValue("initial_pin_state", channel->initial_pin_state);
636
637 if (channel->assigned_signal)
638 settings.setValue("assigned_signal_name", channel->assigned_signal->name());
639
640 settings.endGroup();
641 }
642}
643
644void DecodeSignal::restore_settings(QSettings &settings)
645{
646 SignalBase::restore_settings(settings);
647
648 // Restore decoder stack
649 GSList *dec_list = g_slist_copy((GSList*)srd_decoder_list());
650
651 int decoders = settings.value("decoders").toInt();
652
653 for (int decoder_idx = 0; decoder_idx < decoders; decoder_idx++) {
654 settings.beginGroup("decoder" + QString::number(decoder_idx));
655
656 QString id = settings.value("id").toString();
657
658 for (GSList *entry = dec_list; entry; entry = entry->next) {
659 const srd_decoder *dec = (srd_decoder*)entry->data;
660 if (!dec)
661 continue;
662
663 if (QString::fromUtf8(dec->id) == id) {
664 shared_ptr<decode::Decoder> decoder =
665 make_shared<decode::Decoder>(dec);
666
667 stack_.push_back(decoder);
668 decoder->show(settings.value("shown", true).toBool());
669
670 // Restore decoder options that differ from their default
671 int options = settings.value("options").toInt();
672
673 for (int i = 0; i < options; i++) {
674 settings.beginGroup("option" + QString::number(i));
675 QString name = settings.value("name").toString();
676 GVariant *value = GlobalSettings::restore_gvariant(settings);
677 decoder->set_option(name.toUtf8(), value);
678 settings.endGroup();
679 }
680
681 // Include the newly created decode channels in the channel lists
682 update_channel_list();
683 break;
684 }
685 }
686
687 settings.endGroup();
688 channels_updated();
689 }
690
691 // Restore channel mapping
692 unsigned int channels = settings.value("channels").toInt();
693
694 const unordered_set< shared_ptr<data::SignalBase> > signalbases =
695 session_.signalbases();
696
697 for (unsigned int channel_id = 0; channel_id < channels; channel_id++) {
698 auto channel = find_if(channels_.begin(), channels_.end(),
699 [&](data::DecodeChannel ch) { return ch.id == channel_id; });
700
701 if (channel == channels_.end()) {
702 qDebug() << "ERROR: Non-existant channel index:" << channel_id;
703 continue;
704 }
705
706 settings.beginGroup("channel" + QString::number(channel_id));
707
708 QString assigned_signal_name = settings.value("assigned_signal_name").toString();
709
710 for (const shared_ptr<data::SignalBase>& signal : signalbases)
711 if (signal->name() == assigned_signal_name)
712 channel->assigned_signal = signal.get();
713
714 channel->initial_pin_state = settings.value("initial_pin_state").toInt();
715
716 settings.endGroup();
717 }
718
719 // Update the internal structures
720 stack_config_changed_ = true;
721 update_channel_list();
722 commit_decoder_channels();
723
724 begin_decode();
725}
726
727void DecodeSignal::set_error_message(QString msg)
728{
729 error_message_ = msg;
730 // TODO Emulate noquote()
731 qDebug().nospace() << name() << ": " << msg;
732}
733
734uint32_t DecodeSignal::get_input_segment_count() const
735{
736 uint64_t count = std::numeric_limits<uint64_t>::max();
737 bool no_signals_assigned = true;
738
739 for (const data::DecodeChannel& ch : channels_)
740 if (ch.assigned_signal) {
741 no_signals_assigned = false;
742
743 const shared_ptr<Logic> logic_data = ch.assigned_signal->logic_data();
744 if (!logic_data || logic_data->logic_segments().empty())
745 return 0;
746
747 // Find the min value of all segment counts
748 if ((uint64_t)(logic_data->logic_segments().size()) < count)
749 count = logic_data->logic_segments().size();
750 }
751
752 return (no_signals_assigned ? 0 : count);
753}
754
755uint32_t DecodeSignal::get_input_samplerate(uint32_t segment_id) const
756{
757 double samplerate = 0;
758
759 for (const data::DecodeChannel& ch : channels_)
760 if (ch.assigned_signal) {
761 const shared_ptr<Logic> logic_data = ch.assigned_signal->logic_data();
762 if (!logic_data || logic_data->logic_segments().empty())
763 continue;
764
765 try {
766 const shared_ptr<LogicSegment> segment = logic_data->logic_segments().at(segment_id);
767 samplerate = segment->samplerate();
768 } catch (out_of_range&) {
769 // Do nothing
770 }
771 break;
772 }
773
774 return samplerate;
775}
776
777void DecodeSignal::update_channel_list()
778{
779 vector<data::DecodeChannel> prev_channels = channels_;
780 channels_.clear();
781
782 uint16_t id = 0;
783
784 // Copy existing entries, create new as needed
785 for (shared_ptr<Decoder>& decoder : stack_) {
786 const srd_decoder* srd_d = decoder->decoder();
787 const GSList *l;
788
789 // Mandatory channels
790 for (l = srd_d->channels; l; l = l->next) {
791 const struct srd_channel *const pdch = (struct srd_channel *)l->data;
792 bool ch_added = false;
793
794 // Copy but update ID if this channel was in the list before
795 for (data::DecodeChannel& ch : prev_channels)
796 if (ch.pdch_ == pdch) {
797 ch.id = id++;
798 channels_.push_back(ch);
799 ch_added = true;
800 break;
801 }
802
803 if (!ch_added) {
804 // Create new entry without a mapped signal
805 data::DecodeChannel ch = {id++, 0, false, nullptr,
806 QString::fromUtf8(pdch->name), QString::fromUtf8(pdch->desc),
807 SRD_INITIAL_PIN_SAME_AS_SAMPLE0, decoder, pdch};
808 channels_.push_back(ch);
809 }
810 }
811
812 // Optional channels
813 for (l = srd_d->opt_channels; l; l = l->next) {
814 const struct srd_channel *const pdch = (struct srd_channel *)l->data;
815 bool ch_added = false;
816
817 // Copy but update ID if this channel was in the list before
818 for (data::DecodeChannel& ch : prev_channels)
819 if (ch.pdch_ == pdch) {
820 ch.id = id++;
821 channels_.push_back(ch);
822 ch_added = true;
823 break;
824 }
825
826 if (!ch_added) {
827 // Create new entry without a mapped signal
828 data::DecodeChannel ch = {id++, 0, true, nullptr,
829 QString::fromUtf8(pdch->name), QString::fromUtf8(pdch->desc),
830 SRD_INITIAL_PIN_SAME_AS_SAMPLE0, decoder, pdch};
831 channels_.push_back(ch);
832 }
833 }
834 }
835
836 // Invalidate the logic output data if the channel assignment changed
837 if (prev_channels.size() != channels_.size()) {
838 // The number of channels changed, there's definitely a difference
839 logic_mux_data_invalid_ = true;
840 } else {
841 // Same number but assignment may still differ, so compare all channels
842 for (size_t i = 0; i < channels_.size(); i++) {
843 const data::DecodeChannel& p_ch = prev_channels[i];
844 const data::DecodeChannel& ch = channels_[i];
845
846 if ((p_ch.pdch_ != ch.pdch_) ||
847 (p_ch.assigned_signal != ch.assigned_signal)) {
848 logic_mux_data_invalid_ = true;
849 break;
850 }
851 }
852
853 }
854
855 channels_updated();
856}
857
858void DecodeSignal::commit_decoder_channels()
859{
860 // Submit channel list to every decoder, containing only the relevant channels
861 for (shared_ptr<decode::Decoder> dec : stack_) {
862 vector<data::DecodeChannel*> channel_list;
863
864 for (data::DecodeChannel& ch : channels_)
865 if (ch.decoder_ == dec)
866 channel_list.push_back(&ch);
867
868 dec->set_channels(channel_list);
869 }
870
871 // Channel bit IDs must be in sync with the channel's apperance in channels_
872 int id = 0;
873 for (data::DecodeChannel& ch : channels_)
874 if (ch.assigned_signal)
875 ch.bit_id = id++;
876}
877
878void DecodeSignal::mux_logic_samples(uint32_t segment_id, const int64_t start, const int64_t end)
879{
880 // Enforce end to be greater than start
881 if (end <= start)
882 return;
883
884 // Fetch the channel segments and their data
885 vector<shared_ptr<LogicSegment> > segments;
886 vector<const uint8_t*> signal_data;
887 vector<uint8_t> signal_in_bytepos;
888 vector<uint8_t> signal_in_bitpos;
889
890 for (data::DecodeChannel& ch : channels_)
891 if (ch.assigned_signal) {
892 const shared_ptr<Logic> logic_data = ch.assigned_signal->logic_data();
893
894 shared_ptr<LogicSegment> segment;
895 try {
896 segment = logic_data->logic_segments().at(segment_id);
897 } catch (out_of_range&) {
898 qDebug() << "Muxer error for" << name() << ":" << ch.assigned_signal->name() \
899 << "has no logic segment" << segment_id;
900 return;
901 }
902 segments.push_back(segment);
903
904 uint8_t* data = new uint8_t[(end - start) * segment->unit_size()];
905 segment->get_samples(start, end, data);
906 signal_data.push_back(data);
907
908 const int bitpos = ch.assigned_signal->logic_bit_index();
909 signal_in_bytepos.push_back(bitpos / 8);
910 signal_in_bitpos.push_back(bitpos % 8);
911 }
912
913
914 shared_ptr<LogicSegment> output_segment;
915 try {
916 output_segment = logic_mux_data_->logic_segments().at(segment_id);
917 } catch (out_of_range&) {
918 qDebug() << "Muxer error for" << name() << ": no logic mux segment" \
919 << segment_id << "in mux_logic_samples(), mux segments size is" \
920 << logic_mux_data_->logic_segments().size();
921 return;
922 }
923
924 // Perform the muxing of signal data into the output data
925 uint8_t* output = new uint8_t[(end - start) * output_segment->unit_size()];
926 unsigned int signal_count = signal_data.size();
927
928 for (int64_t sample_cnt = 0; !logic_mux_interrupt_ && (sample_cnt < (end - start));
929 sample_cnt++) {
930
931 int bitpos = 0;
932 uint8_t bytepos = 0;
933
934 const int out_sample_pos = sample_cnt * output_segment->unit_size();
935 for (unsigned int i = 0; i < output_segment->unit_size(); i++)
936 output[out_sample_pos + i] = 0;
937
938 for (unsigned int i = 0; i < signal_count; i++) {
939 const int in_sample_pos = sample_cnt * segments[i]->unit_size();
940 const uint8_t in_sample = 1 &
941 ((signal_data[i][in_sample_pos + signal_in_bytepos[i]]) >> (signal_in_bitpos[i]));
942
943 const uint8_t out_sample = output[out_sample_pos + bytepos];
944
945 output[out_sample_pos + bytepos] = out_sample | (in_sample << bitpos);
946
947 bitpos++;
948 if (bitpos > 7) {
949 bitpos = 0;
950 bytepos++;
951 }
952 }
953 }
954
955 output_segment->append_payload(output, (end - start) * output_segment->unit_size());
956 delete[] output;
957
958 for (const uint8_t* data : signal_data)
959 delete[] data;
960}
961
962void DecodeSignal::logic_mux_proc()
963{
964 uint32_t segment_id = 0;
965
966 assert(logic_mux_data_);
967
968 // Create initial logic mux segment
969 shared_ptr<LogicSegment> output_segment =
970 make_shared<LogicSegment>(*logic_mux_data_, segment_id,
971 logic_mux_unit_size_, 0);
972 logic_mux_data_->push_segment(output_segment);
973
974 output_segment->set_samplerate(get_input_samplerate(0));
975
976 do {
977 const uint64_t input_sample_count = get_working_sample_count(segment_id);
978 const uint64_t output_sample_count = output_segment->get_sample_count();
979
980 const uint64_t samples_to_process =
981 (input_sample_count > output_sample_count) ?
982 (input_sample_count - output_sample_count) : 0;
983
984 // Process the samples if necessary...
985 if (samples_to_process > 0) {
986 const uint64_t unit_size = output_segment->unit_size();
987 const uint64_t chunk_sample_count = DecodeChunkLength / unit_size;
988
989 uint64_t processed_samples = 0;
990 do {
991 const uint64_t start_sample = output_sample_count + processed_samples;
992 const uint64_t sample_count =
993 min(samples_to_process - processed_samples, chunk_sample_count);
994
995 mux_logic_samples(segment_id, start_sample, start_sample + sample_count);
996 processed_samples += sample_count;
997
998 // ...and process the newly muxed logic data
999 decode_input_cond_.notify_one();
1000 } while (!logic_mux_interrupt_ && (processed_samples < samples_to_process));
1001 }
1002
1003 if (samples_to_process == 0) {
1004 // TODO Optimize this by caching the input segment count and only
1005 // querying it when the cached value was reached
1006 if (segment_id < get_input_segment_count() - 1) {
1007 // Process next segment
1008 segment_id++;
1009
1010 output_segment =
1011 make_shared<LogicSegment>(*logic_mux_data_, segment_id,
1012 logic_mux_unit_size_, 0);
1013 logic_mux_data_->push_segment(output_segment);
1014
1015 output_segment->set_samplerate(get_input_samplerate(segment_id));
1016
1017 } else {
1018 // All segments have been processed
1019 logic_mux_data_invalid_ = false;
1020
1021 // Wait for more input
1022 unique_lock<mutex> logic_mux_lock(logic_mux_mutex_);
1023 logic_mux_cond_.wait(logic_mux_lock);
1024 }
1025 }
1026
1027 } while (!logic_mux_interrupt_);
1028}
1029
1030void DecodeSignal::decode_data(
1031 const int64_t abs_start_samplenum, const int64_t sample_count,
1032 const shared_ptr<LogicSegment> input_segment)
1033{
1034 const int64_t unit_size = input_segment->unit_size();
1035 const int64_t chunk_sample_count = DecodeChunkLength / unit_size;
1036
1037 for (int64_t i = abs_start_samplenum;
1038 error_message_.isEmpty() && !decode_interrupt_ &&
1039 (i < (abs_start_samplenum + sample_count));
1040 i += chunk_sample_count) {
1041
1042 const int64_t chunk_end = min(i + chunk_sample_count,
1043 abs_start_samplenum + sample_count);
1044
1045 {
1046 lock_guard<mutex> lock(output_mutex_);
1047 // Update the sample count showing the samples including currently processed ones
1048 segments_.at(current_segment_id_).samples_decoded_incl = chunk_end;
1049 }
1050
1051 int64_t data_size = (chunk_end - i) * unit_size;
1052 uint8_t* chunk = new uint8_t[data_size];
1053 input_segment->get_samples(i, chunk_end, chunk);
1054
1055 if (srd_session_send(srd_session_, i, chunk_end, chunk,
1056 data_size, unit_size) != SRD_OK)
1057 set_error_message(tr("Decoder reported an error"));
1058
1059 delete[] chunk;
1060
1061 {
1062 lock_guard<mutex> lock(output_mutex_);
1063 // Now that all samples are processed, the exclusive sample count catches up
1064 segments_.at(current_segment_id_).samples_decoded_excl = chunk_end;
1065 }
1066
1067 // Notify the frontend that we processed some data and
1068 // possibly have new annotations as well
1069 new_annotations();
1070
1071 if (decode_paused_) {
1072 unique_lock<mutex> pause_wait_lock(decode_pause_mutex_);
1073 decode_pause_cond_.wait(pause_wait_lock);
1074 }
1075 }
1076}
1077
1078void DecodeSignal::decode_proc()
1079{
1080 current_segment_id_ = 0;
1081
1082 // If there is no input data available yet, wait until it is or we're interrupted
1083 if (logic_mux_data_->logic_segments().size() == 0) {
1084 unique_lock<mutex> input_wait_lock(input_mutex_);
1085 decode_input_cond_.wait(input_wait_lock);
1086 }
1087
1088 if (decode_interrupt_)
1089 return;
1090
1091 shared_ptr<LogicSegment> input_segment = logic_mux_data_->logic_segments().front();
1092 assert(input_segment);
1093
1094 // Create the initial segment and set its sample rate so that we can pass it to SRD
1095 create_decode_segment();
1096 segments_.at(current_segment_id_).samplerate = input_segment->samplerate();
1097 segments_.at(current_segment_id_).start_time = input_segment->start_time();
1098
1099 start_srd_session();
1100
1101 uint64_t sample_count = 0;
1102 uint64_t abs_start_samplenum = 0;
1103 do {
1104 // Keep processing new samples until we exhaust the input data
1105 do {
1106 lock_guard<mutex> input_lock(input_mutex_);
1107 sample_count = input_segment->get_sample_count() - abs_start_samplenum;
1108
1109 if (sample_count > 0) {
1110 decode_data(abs_start_samplenum, sample_count, input_segment);
1111 abs_start_samplenum += sample_count;
1112 }
1113 } while (error_message_.isEmpty() && (sample_count > 0) && !decode_interrupt_);
1114
1115 if (error_message_.isEmpty() && !decode_interrupt_ && sample_count == 0) {
1116 if (current_segment_id_ < logic_mux_data_->logic_segments().size() - 1) {
1117 // Process next segment
1118 current_segment_id_++;
1119
1120 try {
1121 input_segment = logic_mux_data_->logic_segments().at(current_segment_id_);
1122 } catch (out_of_range&) {
1123 qDebug() << "Decode error for" << name() << ": no logic mux segment" \
1124 << current_segment_id_ << "in decode_proc(), mux segments size is" \
1125 << logic_mux_data_->logic_segments().size();
1126 return;
1127 }
1128 abs_start_samplenum = 0;
1129
1130 // Create the next segment and set its metadata
1131 create_decode_segment();
1132 segments_.at(current_segment_id_).samplerate = input_segment->samplerate();
1133 segments_.at(current_segment_id_).start_time = input_segment->start_time();
1134
1135 // Reset decoder state but keep the decoder stack intact
1136 terminate_srd_session();
1137 } else {
1138 // All segments have been processed
1139 decode_finished();
1140
1141 // Wait for new input data or an interrupt was requested
1142 unique_lock<mutex> input_wait_lock(input_mutex_);
1143 decode_input_cond_.wait(input_wait_lock);
1144 }
1145 }
1146 } while (error_message_.isEmpty() && !decode_interrupt_);
1147
1148 // Potentially reap decoders when the application no longer is
1149 // interested in their (pending) results.
1150 if (decode_interrupt_)
1151 terminate_srd_session();
1152}
1153
1154void DecodeSignal::start_srd_session()
1155{
1156 // If there were stack changes, the session has been destroyed by now, so if
1157 // it hasn't been destroyed, we can just reset and re-use it
1158 if (srd_session_) {
1159 // When a decoder stack was created before, re-use it
1160 // for the next stream of input data, after terminating
1161 // potentially still executing operations, and resetting
1162 // internal state. Skip the rather expensive (teardown
1163 // and) construction of another decoder stack.
1164
1165 // TODO Reduce redundancy, use a common code path for
1166 // the meta/start sequence?
1167 terminate_srd_session();
1168
1169 // Metadata is cleared also, so re-set it
1170 uint64_t samplerate = 0;
1171 if (segments_.size() > 0)
1172 samplerate = segments_.at(current_segment_id_).samplerate;
1173 if (samplerate)
1174 srd_session_metadata_set(srd_session_, SRD_CONF_SAMPLERATE,
1175 g_variant_new_uint64(samplerate));
1176 for (const shared_ptr<decode::Decoder>& dec : stack_)
1177 dec->apply_all_options();
1178 srd_session_start(srd_session_);
1179
1180 return;
1181 }
1182
1183 // Create the session
1184 srd_session_new(&srd_session_);
1185 assert(srd_session_);
1186
1187 // Create the decoders
1188 srd_decoder_inst *prev_di = nullptr;
1189 for (const shared_ptr<decode::Decoder>& dec : stack_) {
1190 srd_decoder_inst *const di = dec->create_decoder_inst(srd_session_);
1191
1192 if (!di) {
1193 set_error_message(tr("Failed to create decoder instance"));
1194 srd_session_destroy(srd_session_);
1195 srd_session_ = nullptr;
1196 return;
1197 }
1198
1199 if (prev_di)
1200 srd_inst_stack(srd_session_, prev_di, di);
1201
1202 prev_di = di;
1203 }
1204
1205 // Start the session
1206 if (segments_.size() > 0)
1207 srd_session_metadata_set(srd_session_, SRD_CONF_SAMPLERATE,
1208 g_variant_new_uint64(segments_.at(current_segment_id_).samplerate));
1209
1210 srd_pd_output_callback_add(srd_session_, SRD_OUTPUT_ANN,
1211 DecodeSignal::annotation_callback, this);
1212
1213 srd_pd_output_callback_add(srd_session_, SRD_OUTPUT_BINARY,
1214 DecodeSignal::binary_callback, this);
1215
1216 srd_session_start(srd_session_);
1217
1218 // We just recreated the srd session, so all stack changes are applied now
1219 stack_config_changed_ = false;
1220}
1221
1222void DecodeSignal::terminate_srd_session()
1223{
1224 // Call the "terminate and reset" routine for the decoder stack
1225 // (if available). This does not harm those stacks which already
1226 // have completed their operation, and reduces response time for
1227 // those stacks which still are processing data while the
1228 // application no longer wants them to.
1229 if (srd_session_) {
1230 srd_session_terminate_reset(srd_session_);
1231
1232 // Metadata is cleared also, so re-set it
1233 uint64_t samplerate = 0;
1234 if (segments_.size() > 0)
1235 samplerate = segments_.at(current_segment_id_).samplerate;
1236 if (samplerate)
1237 srd_session_metadata_set(srd_session_, SRD_CONF_SAMPLERATE,
1238 g_variant_new_uint64(samplerate));
1239 for (const shared_ptr<decode::Decoder>& dec : stack_)
1240 dec->apply_all_options();
1241 }
1242}
1243
1244void DecodeSignal::stop_srd_session()
1245{
1246 if (srd_session_) {
1247 // Destroy the session
1248 srd_session_destroy(srd_session_);
1249 srd_session_ = nullptr;
1250
1251 // Mark the decoder instances as non-existant since they were deleted
1252 for (const shared_ptr<decode::Decoder>& dec : stack_)
1253 dec->invalidate_decoder_inst();
1254 }
1255}
1256
1257void DecodeSignal::connect_input_notifiers()
1258{
1259 // Disconnect the notification slot from the previous set of signals
1260 disconnect(this, SLOT(on_data_cleared()));
1261 disconnect(this, SLOT(on_data_received()));
1262
1263 // Connect the currently used signals to our slot
1264 for (data::DecodeChannel& ch : channels_) {
1265 if (!ch.assigned_signal)
1266 continue;
1267
1268 const data::SignalBase *signal = ch.assigned_signal;
1269 connect(signal, SIGNAL(samples_cleared()),
1270 this, SLOT(on_data_cleared()));
1271 connect(signal, SIGNAL(samples_added(uint64_t, uint64_t, uint64_t)),
1272 this, SLOT(on_data_received()));
1273 }
1274}
1275
1276void DecodeSignal::create_decode_segment()
1277{
1278 // Create annotation segment
1279 segments_.emplace_back(DecodeSegment());
1280
1281 // Add annotation classes
1282 for (const shared_ptr<decode::Decoder>& dec : stack_) {
1283 assert(dec);
1284 const srd_decoder *const decc = dec->decoder();
1285 assert(dec->decoder());
1286
1287 int row_index = 0;
1288 // Add a row for the decoder if it doesn't have a row list
1289 if (!decc->annotation_rows)
1290 (segments_.back().annotation_rows)[Row(row_index++, decc)] =
1291 decode::RowData();
1292
1293 // Add the decoder rows
1294 for (const GSList *l = decc->annotation_rows; l; l = l->next) {
1295 const srd_decoder_annotation_row *const ann_row =
1296 (srd_decoder_annotation_row *)l->data;
1297 assert(ann_row);
1298
1299 const Row row(row_index++, decc, ann_row);
1300
1301 // Add a new empty row data object
1302 (segments_.back().annotation_rows)[row] =
1303 decode::RowData();
1304 }
1305 }
1306}
1307
1308void DecodeSignal::annotation_callback(srd_proto_data *pdata, void *decode_signal)
1309{
1310 assert(pdata);
1311 assert(decode_signal);
1312
1313 DecodeSignal *const ds = (DecodeSignal*)decode_signal;
1314 assert(ds);
1315
1316 if (ds->decode_interrupt_)
1317 return;
1318
1319 lock_guard<mutex> lock(ds->output_mutex_);
1320
1321 // Get the decoder and the annotation data
1322 assert(pdata->pdo);
1323 assert(pdata->pdo->di);
1324 const srd_decoder *const decc = pdata->pdo->di->decoder;
1325 assert(decc);
1326
1327 const srd_proto_data_annotation *const pda = (const srd_proto_data_annotation*)pdata->data;
1328 assert(pda);
1329
1330 // Find the row
1331 auto row_iter = ds->segments_.at(ds->current_segment_id_).annotation_rows.end();
1332
1333 // Try finding a better row match than the default by looking up the sub-row of this class
1334 const auto format = pda->ann_class;
1335 const auto r = ds->class_rows_.find(make_pair(decc, format));
1336 if (r != ds->class_rows_.end())
1337 row_iter = ds->segments_.at(ds->current_segment_id_).annotation_rows.find((*r).second);
1338 else {
1339 // Failing that, use the decoder as a key
1340 row_iter = ds->segments_.at(ds->current_segment_id_).annotation_rows.find(Row(0, decc));
1341 }
1342
1343 if (row_iter == ds->segments_.at(ds->current_segment_id_).annotation_rows.end()) {
1344 qDebug() << "Unexpected annotation: decoder = " << decc <<
1345 ", format = " << format;
1346 assert(false);
1347 return;
1348 }
1349
1350 // Add the annotation
1351 (*row_iter).second.emplace_annotation(pdata, &((*row_iter).first));
1352}
1353
1354void DecodeSignal::binary_callback(srd_proto_data *pdata, void *decode_signal)
1355{
1356 assert(pdata);
1357 assert(decode_signal);
1358
1359 DecodeSignal *const ds = (DecodeSignal*)decode_signal;
1360 assert(ds);
1361
1362 if (ds->decode_interrupt_)
1363 return;
1364
1365 const srd_proto_data_binary *const pdb = (const srd_proto_data_binary*)pdata->data;
1366 assert(pdb);
1367
1368 DecodeSegment* segment = &(ds->segments_.at(ds->current_segment_id_));
1369
1370 segment->binary_data.emplace_back();
1371 DecodeBinaryData* bin_data = &(segment->binary_data.back());
1372
1373 bin_data->sample = pdata->start_sample;
1374 bin_data->data.reserve(pdb->size);
1375 memcpy(bin_data->data.data(), pdb->data, pdb->size);
1376
1377 ds->new_binary_data(ds->current_segment_id_);
1378}
1379
1380void DecodeSignal::on_capture_state_changed(int state)
1381{
1382 // If a new acquisition was started, we need to start decoding from scratch
1383 if (state == Session::Running) {
1384 logic_mux_data_invalid_ = true;
1385 begin_decode();
1386 }
1387}
1388
1389void DecodeSignal::on_data_cleared()
1390{
1391 reset_decode();
1392}
1393
1394void DecodeSignal::on_data_received()
1395{
1396 // If we detected a lack of input data when trying to start decoding,
1397 // we have set an error message. Only try again if we now have data
1398 // to work with
1399 if ((!error_message_.isEmpty()) && (get_input_segment_count() == 0))
1400 return;
1401
1402 if (!logic_mux_thread_.joinable())
1403 begin_decode();
1404 else
1405 logic_mux_cond_.notify_one();
1406}
1407
1408} // namespace data
1409} // namespace pv