]> sigrok.org Git - pulseview.git/blame_incremental - pv/views/trace/logicsignal.cpp
Make "fill logic signal high areas" feature more robust
[pulseview.git] / pv / views / trace / logicsignal.cpp
... / ...
CommitLineData
1/*
2 * This file is part of the PulseView project.
3 *
4 * Copyright (C) 2012 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 <extdef.h>
21
22#include <cassert>
23#include <cmath>
24
25#include <algorithm>
26
27#include <QApplication>
28#include <QFormLayout>
29#include <QToolBar>
30
31#include "logicsignal.hpp"
32#include "view.hpp"
33
34#include <pv/data/logic.hpp>
35#include <pv/data/logicsegment.hpp>
36#include <pv/data/signalbase.hpp>
37#include <pv/devicemanager.hpp>
38#include <pv/devices/device.hpp>
39#include <pv/globalsettings.hpp>
40#include <pv/session.hpp>
41
42#include <libsigrokcxx/libsigrokcxx.hpp>
43
44using std::deque;
45using std::max;
46using std::make_pair;
47using std::min;
48using std::none_of;
49using std::out_of_range;
50using std::pair;
51using std::shared_ptr;
52using std::vector;
53
54using sigrok::ConfigKey;
55using sigrok::Capability;
56using sigrok::Trigger;
57using sigrok::TriggerMatch;
58using sigrok::TriggerMatchType;
59
60using pv::data::LogicSegment;
61
62namespace pv {
63namespace views {
64namespace trace {
65
66const float LogicSignal::Oversampling = 2.0f;
67
68const QColor LogicSignal::EdgeColor(0x80, 0x80, 0x80);
69const QColor LogicSignal::HighColor(0x00, 0xC0, 0x00);
70const QColor LogicSignal::LowColor(0xC0, 0x00, 0x00);
71const QColor LogicSignal::SamplingPointColor(0x77, 0x77, 0x77);
72
73const QColor LogicSignal::SignalColors[10] = {
74 QColor(0x16, 0x19, 0x1A), // Black
75 QColor(0x8F, 0x52, 0x02), // Brown
76 QColor(0xCC, 0x00, 0x00), // Red
77 QColor(0xF5, 0x79, 0x00), // Orange
78 QColor(0xED, 0xD4, 0x00), // Yellow
79 QColor(0x73, 0xD2, 0x16), // Green
80 QColor(0x34, 0x65, 0xA4), // Blue
81 QColor(0x75, 0x50, 0x7B), // Violet
82 QColor(0x88, 0x8A, 0x85), // Grey
83 QColor(0xEE, 0xEE, 0xEC), // White
84};
85
86QColor LogicSignal::TriggerMarkerBackgroundColor = QColor(0xED, 0xD4, 0x00);
87const int LogicSignal::TriggerMarkerPadding = 2;
88const char* LogicSignal::TriggerMarkerIcons[8] = {
89 nullptr,
90 ":/icons/trigger-marker-low.svg",
91 ":/icons/trigger-marker-high.svg",
92 ":/icons/trigger-marker-rising.svg",
93 ":/icons/trigger-marker-falling.svg",
94 ":/icons/trigger-marker-change.svg",
95 nullptr,
96 nullptr
97};
98
99QCache<QString, const QIcon> LogicSignal::icon_cache_;
100QCache<QString, const QPixmap> LogicSignal::pixmap_cache_;
101
102LogicSignal::LogicSignal(
103 pv::Session &session,
104 shared_ptr<devices::Device> device,
105 shared_ptr<data::SignalBase> base) :
106 Signal(session, base),
107 device_(device),
108 trigger_types_(get_trigger_types()),
109 trigger_none_(nullptr),
110 trigger_rising_(nullptr),
111 trigger_high_(nullptr),
112 trigger_falling_(nullptr),
113 trigger_low_(nullptr),
114 trigger_change_(nullptr)
115{
116 shared_ptr<Trigger> trigger;
117
118 base_->set_color(SignalColors[base->index() % countof(SignalColors)]);
119
120 GlobalSettings gs;
121 signal_height_ = gs.value(GlobalSettings::Key_View_DefaultLogicHeight).toInt();
122
123 /* Populate this channel's trigger setting with whatever we
124 * find in the current session trigger, if anything. */
125 trigger_match_ = nullptr;
126 if ((trigger = session_.session()->trigger()))
127 for (auto stage : trigger->stages())
128 for (auto match : stage->matches())
129 if (match->channel() == base_->channel())
130 trigger_match_ = match->type();
131}
132
133shared_ptr<pv::data::SignalData> LogicSignal::data() const
134{
135 return base_->logic_data();
136}
137
138shared_ptr<pv::data::Logic> LogicSignal::logic_data() const
139{
140 return base_->logic_data();
141}
142
143void LogicSignal::save_settings(QSettings &settings) const
144{
145 settings.setValue("trace_height", signal_height_);
146}
147
148void LogicSignal::restore_settings(QSettings &settings)
149{
150 if (settings.contains("trace_height")) {
151 const int old_height = signal_height_;
152 signal_height_ = settings.value("trace_height").toInt();
153
154 if ((signal_height_ != old_height) && owner_) {
155 // Call order is important, otherwise the lazy event handler won't work
156 owner_->extents_changed(false, true);
157 owner_->row_item_appearance_changed(false, true);
158 }
159 }
160}
161
162pair<int, int> LogicSignal::v_extents() const
163{
164 const int signal_margin =
165 QFontMetrics(QApplication::font()).height() / 2;
166 return make_pair(-signal_height_ - signal_margin, signal_margin);
167}
168
169void LogicSignal::paint_mid(QPainter &p, ViewItemPaintParams &pp)
170{
171 QLineF *line;
172
173 vector< pair<int64_t, bool> > edges;
174
175 assert(base_);
176 assert(owner_);
177
178 const int y = get_visual_y();
179
180 if (!base_->enabled())
181 return;
182
183 const float low_offset = y + 0.5f;
184 const float high_offset = low_offset - signal_height_;
185
186 shared_ptr<LogicSegment> segment = get_logic_segment_to_paint();
187 if (!segment || (segment->get_sample_count() == 0))
188 return;
189
190 double samplerate = segment->samplerate();
191
192 // Show sample rate as 1Hz when it is unknown
193 if (samplerate == 0.0)
194 samplerate = 1.0;
195
196 const double pixels_offset = pp.pixels_offset();
197 const pv::util::Timestamp& start_time = segment->start_time();
198 const int64_t last_sample = (int64_t)segment->get_sample_count() - 1;
199 const double samples_per_pixel = samplerate * pp.scale();
200 const double pixels_per_sample = 1 / samples_per_pixel;
201 const pv::util::Timestamp start = samplerate * (pp.offset() - start_time);
202 const pv::util::Timestamp end = start + samples_per_pixel * pp.width();
203
204 const int64_t start_sample = min(max(floor(start).convert_to<int64_t>(),
205 (int64_t)0), last_sample);
206 const uint64_t end_sample = min(max(ceil(end).convert_to<int64_t>(),
207 (int64_t)0), last_sample);
208
209 segment->get_subsampled_edges(edges, start_sample, end_sample,
210 samples_per_pixel / Oversampling, base_->index());
211 assert(edges.size() >= 2);
212
213 const float first_sample_x =
214 pp.left() + (edges.front().first / samples_per_pixel - pixels_offset);
215 const float last_sample_x =
216 pp.left() + (edges.back().first / samples_per_pixel - pixels_offset);
217
218 // Check whether we need to paint the sampling points
219 GlobalSettings settings;
220 const bool show_sampling_points =
221 settings.value(GlobalSettings::Key_View_ShowSamplingPoints).toBool() &&
222 (samples_per_pixel < 0.25);
223
224 vector<QRectF> sampling_points;
225 float sampling_point_x = first_sample_x;
226 int64_t sampling_point_sample = start_sample;
227 const int w = 2;
228
229 if (show_sampling_points)
230 sampling_points.reserve(end_sample - start_sample + 1);
231
232 // Check whether we need to fill the high areas
233 const bool fill_high_areas =
234 settings.value(GlobalSettings::Key_View_FillSignalHighAreas).toBool();
235 vector<QRectF> high_rects;
236 float rising_edge_x;
237 bool rising_edge_seen = false;
238
239 // Paint the edges
240 const unsigned int edge_count = edges.size() - 2;
241 QLineF *const edge_lines = new QLineF[edge_count];
242 line = edge_lines;
243
244 if (edges.front().second) {
245 // Beginning of trace is high
246 rising_edge_x = first_sample_x;
247 rising_edge_seen = true;
248 }
249
250 for (auto i = edges.cbegin() + 1; i != edges.cend() - 1; i++) {
251 // Note: multiple edges occupying a single pixel are represented by an edge
252 // with undefined logic level. This means that only the first falling edge
253 // after a rising edge corresponds to said rising edge - and vice versa. If
254 // more edges with the same logic level follow, they denote multiple edges.
255
256 const float x = pp.left() + ((*i).first / samples_per_pixel - pixels_offset);
257 *line++ = QLineF(x, high_offset, x, low_offset);
258
259 if (fill_high_areas) {
260 // Any edge terminates a high area
261 const int width = x - rising_edge_x;
262 if (rising_edge_seen && (width > 0)) {
263 high_rects.emplace_back(rising_edge_x, high_offset,
264 width, signal_height_);
265 rising_edge_seen = false;
266 }
267
268 // Only rising edges start high areas
269 if ((*i).second) {
270 rising_edge_x = x;
271 rising_edge_seen = true;
272 }
273 }
274
275 if (show_sampling_points)
276 while (sampling_point_sample < (*i).first) {
277 const float y = (*i).second ? low_offset : high_offset;
278 sampling_points.emplace_back(
279 QRectF(sampling_point_x - (w / 2), y - (w / 2), w, w));
280 sampling_point_sample++;
281 sampling_point_x += pixels_per_sample;
282 };
283 }
284
285 // Calculate the sample points from the last edge to the end of the trace
286 if (show_sampling_points)
287 while ((uint64_t)sampling_point_sample <= end_sample) {
288 // Signal changed after the last edge, so the level is inverted
289 const float y = (edges.cend() - 1)->second ? high_offset : low_offset;
290 sampling_points.emplace_back(
291 QRectF(sampling_point_x - (w / 2), y - (w / 2), w, w));
292 sampling_point_sample++;
293 sampling_point_x += pixels_per_sample;
294 };
295
296 if (fill_high_areas) {
297 // Add last high rectangle if the signal is still high at the end of the trace
298 if (rising_edge_seen && (edges.cend() - 1)->second)
299 high_rects.emplace_back(rising_edge_x, high_offset,
300 last_sample_x - rising_edge_x, signal_height_);
301
302 const QColor fill_color = QColor::fromRgba(settings.value(
303 GlobalSettings::Key_View_FillSignalHighAreaColor).value<uint32_t>());
304 p.setPen(fill_color);
305 p.setBrush(fill_color);
306 p.drawRects((const QRectF*)(high_rects.data()), high_rects.size());
307 }
308
309 p.setPen(EdgeColor);
310 p.drawLines(edge_lines, edge_count);
311 delete[] edge_lines;
312
313 // Paint the caps
314 const unsigned int max_cap_line_count = edges.size();
315 QLineF *const cap_lines = new QLineF[max_cap_line_count];
316
317 p.setPen(HighColor);
318 paint_caps(p, cap_lines, edges, true, samples_per_pixel,
319 pixels_offset, pp.left(), high_offset);
320 p.setPen(LowColor);
321 paint_caps(p, cap_lines, edges, false, samples_per_pixel,
322 pixels_offset, pp.left(), low_offset);
323
324 delete[] cap_lines;
325
326 // Paint the sampling points
327 if (show_sampling_points) {
328 p.setPen(SamplingPointColor);
329 p.drawRects(sampling_points.data(), sampling_points.size());
330 }
331}
332
333void LogicSignal::paint_fore(QPainter &p, ViewItemPaintParams &pp)
334{
335 if (base_->enabled()) {
336 if (trigger_match_) {
337 // Draw the trigger marker
338 const int y = get_visual_y();
339
340 for (int32_t type_id : trigger_types_) {
341 const TriggerMatchType *const type =
342 TriggerMatchType::get(type_id);
343 if (trigger_match_ != type || type_id < 0 ||
344 (size_t)type_id >= countof(TriggerMarkerIcons) ||
345 !TriggerMarkerIcons[type_id])
346 continue;
347
348 const QPixmap *const pixmap = get_pixmap(
349 TriggerMarkerIcons[type_id]);
350 if (!pixmap)
351 continue;
352
353 const float pad = TriggerMarkerPadding - 0.5f;
354 const QSize size = pixmap->size();
355 const QPoint point(
356 pp.right() - size.width() - pad * 2,
357 y - (signal_height_ + size.height()) / 2);
358
359 p.setPen(QPen(TriggerMarkerBackgroundColor.darker()));
360 p.setBrush(TriggerMarkerBackgroundColor);
361 p.drawRoundedRect(QRectF(point, size).adjusted(
362 -pad, -pad, pad, pad), pad, pad);
363 p.drawPixmap(point, *pixmap);
364
365 break;
366 }
367 }
368
369 if (show_hover_marker_)
370 paint_hover_marker(p);
371 }
372}
373
374vector<LogicSegment::EdgePair> LogicSignal::get_nearest_level_changes(uint64_t sample_pos)
375{
376 assert(base_);
377 assert(owner_);
378
379 if (sample_pos == 0)
380 return vector<LogicSegment::EdgePair>();
381
382 shared_ptr<LogicSegment> segment = get_logic_segment_to_paint();
383 if (!segment || (segment->get_sample_count() == 0))
384 return vector<LogicSegment::EdgePair>();
385
386 const View *view = owner_->view();
387 assert(view);
388 const double samples_per_pixel = base_->get_samplerate() * view->scale();
389
390 vector<LogicSegment::EdgePair> edges;
391
392 segment->get_surrounding_edges(edges, sample_pos,
393 samples_per_pixel / Oversampling, base_->index());
394
395 if (edges.empty())
396 return vector<LogicSegment::EdgePair>();
397
398 return edges;
399}
400
401void LogicSignal::paint_caps(QPainter &p, QLineF *const lines,
402 vector< pair<int64_t, bool> > &edges, bool level,
403 double samples_per_pixel, double pixels_offset, float x_offset,
404 float y_offset)
405{
406 QLineF *line = lines;
407
408 for (auto i = edges.begin(); i != (edges.end() - 1); i++)
409 if ((*i).second == level) {
410 *line++ = QLineF(
411 ((*i).first / samples_per_pixel -
412 pixels_offset) + x_offset, y_offset,
413 ((*(i+1)).first / samples_per_pixel -
414 pixels_offset) + x_offset, y_offset);
415 }
416
417 p.drawLines(lines, line - lines);
418}
419
420shared_ptr<pv::data::LogicSegment> LogicSignal::get_logic_segment_to_paint() const
421{
422 shared_ptr<pv::data::LogicSegment> segment;
423
424 const deque< shared_ptr<pv::data::LogicSegment> > &segments =
425 base_->logic_data()->logic_segments();
426
427 if (!segments.empty()) {
428 if (segment_display_mode_ == ShowLastSegmentOnly) {
429 segment = segments.back();
430 }
431
432 if ((segment_display_mode_ == ShowSingleSegmentOnly) ||
433 (segment_display_mode_ == ShowLastCompleteSegmentOnly)) {
434 try {
435 segment = segments.at(current_segment_);
436 } catch (out_of_range&) {
437 qDebug() << "Current logic segment out of range for signal" << base_->name() << ":" << current_segment_;
438 }
439 }
440 }
441
442 return segment;
443}
444
445void LogicSignal::init_trigger_actions(QWidget *parent)
446{
447 trigger_none_ = new QAction(*get_icon(":/icons/trigger-none.svg"),
448 tr("No trigger"), parent);
449 trigger_none_->setCheckable(true);
450 connect(trigger_none_, SIGNAL(triggered()), this, SLOT(on_trigger()));
451
452 trigger_rising_ = new QAction(*get_icon(":/icons/trigger-rising.svg"),
453 tr("Trigger on rising edge"), parent);
454 trigger_rising_->setCheckable(true);
455 connect(trigger_rising_, SIGNAL(triggered()), this, SLOT(on_trigger()));
456
457 trigger_high_ = new QAction(*get_icon(":/icons/trigger-high.svg"),
458 tr("Trigger on high level"), parent);
459 trigger_high_->setCheckable(true);
460 connect(trigger_high_, SIGNAL(triggered()), this, SLOT(on_trigger()));
461
462 trigger_falling_ = new QAction(*get_icon(":/icons/trigger-falling.svg"),
463 tr("Trigger on falling edge"), parent);
464 trigger_falling_->setCheckable(true);
465 connect(trigger_falling_, SIGNAL(triggered()), this, SLOT(on_trigger()));
466
467 trigger_low_ = new QAction(*get_icon(":/icons/trigger-low.svg"),
468 tr("Trigger on low level"), parent);
469 trigger_low_->setCheckable(true);
470 connect(trigger_low_, SIGNAL(triggered()), this, SLOT(on_trigger()));
471
472 trigger_change_ = new QAction(*get_icon(":/icons/trigger-change.svg"),
473 tr("Trigger on rising or falling edge"), parent);
474 trigger_change_->setCheckable(true);
475 connect(trigger_change_, SIGNAL(triggered()), this, SLOT(on_trigger()));
476}
477
478const vector<int32_t> LogicSignal::get_trigger_types() const
479{
480 // We may not be associated with a device
481 if (!device_)
482 return vector<int32_t>();
483
484 const auto sr_dev = device_->device();
485 if (sr_dev->config_check(ConfigKey::TRIGGER_MATCH, Capability::LIST)) {
486 const Glib::VariantContainerBase gvar =
487 sr_dev->config_list(ConfigKey::TRIGGER_MATCH);
488
489 vector<int32_t> ttypes;
490
491 for (unsigned int i = 0; i < gvar.get_n_children(); i++) {
492 Glib::VariantBase tmp_vb;
493 gvar.get_child(tmp_vb, i);
494
495 Glib::Variant<int32_t> tmp_v =
496 Glib::VariantBase::cast_dynamic< Glib::Variant<int32_t> >(tmp_vb);
497
498 ttypes.push_back(tmp_v.get());
499 }
500
501 return ttypes;
502 } else {
503 return vector<int32_t>();
504 }
505}
506
507QAction* LogicSignal::action_from_trigger_type(const TriggerMatchType *type)
508{
509 QAction *action;
510
511 action = trigger_none_;
512 if (type) {
513 switch (type->id()) {
514 case SR_TRIGGER_ZERO:
515 action = trigger_low_;
516 break;
517 case SR_TRIGGER_ONE:
518 action = trigger_high_;
519 break;
520 case SR_TRIGGER_RISING:
521 action = trigger_rising_;
522 break;
523 case SR_TRIGGER_FALLING:
524 action = trigger_falling_;
525 break;
526 case SR_TRIGGER_EDGE:
527 action = trigger_change_;
528 break;
529 default:
530 assert(false);
531 }
532 }
533
534 return action;
535}
536
537const TriggerMatchType *LogicSignal::trigger_type_from_action(QAction *action)
538{
539 if (action == trigger_low_)
540 return TriggerMatchType::ZERO;
541 else if (action == trigger_high_)
542 return TriggerMatchType::ONE;
543 else if (action == trigger_rising_)
544 return TriggerMatchType::RISING;
545 else if (action == trigger_falling_)
546 return TriggerMatchType::FALLING;
547 else if (action == trigger_change_)
548 return TriggerMatchType::EDGE;
549 else
550 return nullptr;
551}
552
553void LogicSignal::populate_popup_form(QWidget *parent, QFormLayout *form)
554{
555 Signal::populate_popup_form(parent, form);
556
557 signal_height_sb_ = new QSpinBox(parent);
558 signal_height_sb_->setRange(5, 1000);
559 signal_height_sb_->setSingleStep(5);
560 signal_height_sb_->setSuffix(tr(" pixels"));
561 signal_height_sb_->setValue(signal_height_);
562 connect(signal_height_sb_, SIGNAL(valueChanged(int)),
563 this, SLOT(on_signal_height_changed(int)));
564 form->addRow(tr("Trace height"), signal_height_sb_);
565
566 // Trigger settings
567 const vector<int32_t> trig_types = get_trigger_types();
568
569 if (!trig_types.empty()) {
570 trigger_bar_ = new QToolBar(parent);
571 init_trigger_actions(trigger_bar_);
572 trigger_bar_->addAction(trigger_none_);
573 trigger_none_->setChecked(!trigger_match_);
574
575 for (auto type_id : trig_types) {
576 const TriggerMatchType *const type =
577 TriggerMatchType::get(type_id);
578 QAction *const action = action_from_trigger_type(type);
579 trigger_bar_->addAction(action);
580 action->setChecked(trigger_match_ == type);
581 }
582
583 // Only allow triggers to be changed when we're stopped
584 if (session_.get_capture_state() != Session::Stopped)
585 for (QAction* action : trigger_bar_->findChildren<QAction*>())
586 action->setEnabled(false);
587
588 form->addRow(tr("Trigger"), trigger_bar_);
589 }
590}
591
592void LogicSignal::modify_trigger()
593{
594 auto trigger = session_.session()->trigger();
595 auto new_trigger = session_.device_manager().context()->create_trigger("pulseview");
596
597 if (trigger) {
598 for (auto stage : trigger->stages()) {
599 const auto &matches = stage->matches();
600 if (none_of(matches.begin(), matches.end(),
601 [&](shared_ptr<TriggerMatch> match) {
602 return match->channel() != base_->channel(); }))
603 continue;
604
605 auto new_stage = new_trigger->add_stage();
606 for (auto match : stage->matches()) {
607 if (match->channel() == base_->channel())
608 continue;
609 new_stage->add_match(match->channel(), match->type());
610 }
611 }
612 }
613
614 if (trigger_match_) {
615 // Until we can let the user decide how to group trigger matches
616 // into stages, put all of the matches into a single stage --
617 // most devices only support a single trigger stage.
618 if (new_trigger->stages().empty())
619 new_trigger->add_stage();
620
621 new_trigger->stages().back()->add_match(base_->channel(),
622 trigger_match_);
623 }
624
625 session_.session()->set_trigger(
626 new_trigger->stages().empty() ? nullptr : new_trigger);
627
628 if (owner_)
629 owner_->row_item_appearance_changed(false, true);
630}
631
632const QIcon* LogicSignal::get_icon(const char *path)
633{
634 if (!icon_cache_.contains(path)) {
635 const QIcon *icon = new QIcon(path);
636 icon_cache_.insert(path, icon);
637 }
638
639 return icon_cache_.take(path);
640}
641
642const QPixmap* LogicSignal::get_pixmap(const char *path)
643{
644 if (!pixmap_cache_.contains(path)) {
645 const QPixmap *pixmap = new QPixmap(path);
646 pixmap_cache_.insert(path, pixmap);
647 }
648
649 return pixmap_cache_.take(path);
650}
651
652void LogicSignal::on_trigger()
653{
654 QAction *action;
655
656 action_from_trigger_type(trigger_match_)->setChecked(false);
657
658 action = (QAction *)sender();
659 action->setChecked(true);
660 trigger_match_ = trigger_type_from_action(action);
661
662 modify_trigger();
663}
664
665void LogicSignal::on_signal_height_changed(int height)
666{
667 signal_height_ = height;
668
669 if (owner_) {
670 // Call order is important, otherwise the lazy event handler won't work
671 owner_->extents_changed(false, true);
672 owner_->row_item_appearance_changed(false, true);
673 }
674}
675
676} // namespace trace
677} // namespace views
678} // namespace pv