]> sigrok.org Git - pulseview.git/blame_incremental - pv/views/trace/view.cpp
Fix view setting restoration
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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#ifdef ENABLE_DECODE
21#include <libsigrokdecode/libsigrokdecode.h>
22#endif
23
24#include <extdef.h>
25
26#include <algorithm>
27#include <cassert>
28#include <climits>
29#include <cmath>
30#include <iostream>
31#include <iterator>
32
33#include <QApplication>
34#include <QDebug>
35#include <QEvent>
36#include <QFontMetrics>
37#include <QMenu>
38#include <QMouseEvent>
39#include <QScrollBar>
40#include <QVBoxLayout>
41
42#include <libsigrokcxx/libsigrokcxx.hpp>
43
44#include "analogsignal.hpp"
45#include "header.hpp"
46#include "logicsignal.hpp"
47#include "ruler.hpp"
48#include "signal.hpp"
49#include "tracegroup.hpp"
50#include "triggermarker.hpp"
51#include "view.hpp"
52#include "viewport.hpp"
53
54#include "pv/metadata_obj.hpp"
55#include "pv/data/logic.hpp"
56#include "pv/data/logicsegment.hpp"
57#include "pv/data/signalbase.hpp"
58#include "pv/devices/device.hpp"
59#include "pv/globalsettings.hpp"
60#include "pv/session.hpp"
61#include "pv/util.hpp"
62
63#ifdef ENABLE_DECODE
64#include "decodetrace.hpp"
65#endif
66
67using pv::data::SignalBase;
68using pv::data::SignalData;
69using pv::data::Segment;
70using pv::util::TimeUnit;
71using pv::util::Timestamp;
72
73using std::back_inserter;
74using std::copy_if;
75using std::count_if;
76using std::inserter;
77using std::lock_guard;
78using std::max;
79using std::make_pair;
80using std::make_shared;
81using std::min;
82using std::numeric_limits;
83using std::pair;
84using std::set;
85using std::set_difference;
86using std::shared_ptr;
87using std::vector;
88
89namespace pv {
90namespace views {
91namespace trace {
92
93const Timestamp View::MaxScale("1e9");
94const Timestamp View::MinScale("1e-12");
95
96const int View::MaxScrollValue = INT_MAX / 2;
97
98/* Area at the top and bottom of the view that can't be scrolled out of sight */
99const int View::ViewScrollMargin = 50;
100
101const int View::ScaleUnits[3] = {1, 2, 5};
102
103CustomScrollArea::CustomScrollArea(QWidget *parent) :
104 QAbstractScrollArea(parent)
105{
106}
107
108bool CustomScrollArea::viewportEvent(QEvent *event)
109{
110 switch (event->type()) {
111 case QEvent::Paint:
112 case QEvent::MouseButtonPress:
113 case QEvent::MouseButtonRelease:
114 case QEvent::MouseButtonDblClick:
115 case QEvent::MouseMove:
116 case QEvent::Wheel:
117 case QEvent::TouchBegin:
118 case QEvent::TouchUpdate:
119 case QEvent::TouchEnd:
120 return false;
121 default:
122 return QAbstractScrollArea::viewportEvent(event);
123 }
124}
125
126View::View(Session &session, bool is_main_view, QMainWindow *parent) :
127 ViewBase(session, is_main_view, parent),
128
129 // Note: Place defaults in View::reset_view_state(), not here
130 splitter_(new QSplitter()),
131 header_was_shrunk_(false), // The splitter remains unchanged after a reset, so this goes here
132 sticky_scrolling_(false), // Default setting is set in MainWindow::setup_ui()
133 scroll_needs_defaults_(true)
134{
135 QVBoxLayout *root_layout = new QVBoxLayout(this);
136 root_layout->setContentsMargins(0, 0, 0, 0);
137 root_layout->addWidget(splitter_);
138
139 viewport_ = new Viewport(*this);
140 scrollarea_ = new CustomScrollArea(splitter_);
141 scrollarea_->setViewport(viewport_);
142 scrollarea_->setFrameShape(QFrame::NoFrame);
143
144 ruler_ = new Ruler(*this);
145
146 header_ = new Header(*this);
147 header_->setMinimumWidth(10); // So that the arrow tips show at least
148
149 // We put the header into a simple layout so that we can add the top margin,
150 // allowing us to make it line up with the bottom of the ruler
151 QWidget *header_container = new QWidget();
152 header_container->setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Expanding);
153 QVBoxLayout *header_layout = new QVBoxLayout(header_container);
154 header_layout->setContentsMargins(0, ruler_->sizeHint().height(), 0, 0);
155 header_layout->addWidget(header_);
156
157 // To let the ruler and scrollarea be on the same split pane, we need a layout
158 QWidget *trace_container = new QWidget();
159 trace_container->setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Expanding);
160 QVBoxLayout *trace_layout = new QVBoxLayout(trace_container);
161 trace_layout->setSpacing(0); // We don't want space between the ruler and scrollarea
162 trace_layout->setContentsMargins(0, 0, 0, 0);
163 trace_layout->addWidget(ruler_);
164 trace_layout->addWidget(scrollarea_);
165
166 splitter_->addWidget(header_container);
167 splitter_->addWidget(trace_container);
168 splitter_->setHandleWidth(1); // Don't show a visible rubber band
169 splitter_->setCollapsible(0, false); // Prevent the header from collapsing
170 splitter_->setCollapsible(1, false); // Prevent the traces from collapsing
171 splitter_->setStretchFactor(0, 0); // Prevent the panes from being resized
172 splitter_->setStretchFactor(1, 1); // when the entire view is resized
173 splitter_->setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Expanding);
174
175 viewport_->installEventFilter(this);
176 ruler_->installEventFilter(this);
177 header_->installEventFilter(this);
178
179 // Set up settings and event handlers
180 GlobalSettings settings;
181 colored_bg_ = settings.value(GlobalSettings::Key_View_ColoredBG).toBool();
182 snap_distance_ = settings.value(GlobalSettings::Key_View_SnapDistance).toInt();
183
184 GlobalSettings::add_change_handler(this);
185
186 // Set up metadata objects and event handlers
187 if (is_main_view) {
188 session_.metadata_obj_manager()->create_object(MetadataObjMainViewRange);
189 session_.metadata_obj_manager()->create_object(MetadataObjMousePos);
190 }
191
192 // Set up UI event handlers
193 connect(scrollarea_->horizontalScrollBar(), SIGNAL(valueChanged(int)),
194 this, SLOT(h_scroll_value_changed(int)));
195 connect(scrollarea_->verticalScrollBar(), SIGNAL(valueChanged(int)),
196 this, SLOT(v_scroll_value_changed()));
197
198 connect(header_, SIGNAL(selection_changed()),
199 ruler_, SLOT(clear_selection()));
200 connect(ruler_, SIGNAL(selection_changed()),
201 header_, SLOT(clear_selection()));
202
203 connect(header_, SIGNAL(selection_changed()),
204 this, SIGNAL(selection_changed()));
205 connect(ruler_, SIGNAL(selection_changed()),
206 this, SIGNAL(selection_changed()));
207
208 connect(splitter_, SIGNAL(splitterMoved(int, int)),
209 this, SLOT(on_splitter_moved()));
210
211 connect(&lazy_event_handler_, SIGNAL(timeout()),
212 this, SLOT(process_sticky_events()));
213 lazy_event_handler_.setSingleShot(true);
214 lazy_event_handler_.setInterval(1000 / ViewBase::MaxViewAutoUpdateRate);
215
216 // Set up local keyboard shortcuts
217 zoom_in_shortcut_ = new QShortcut(QKeySequence(Qt::Key_Plus), this,
218 SLOT(on_zoom_in_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
219 zoom_in_shortcut_->setAutoRepeat(false);
220
221 zoom_out_shortcut_ = new QShortcut(QKeySequence(Qt::Key_Minus), this,
222 SLOT(on_zoom_out_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
223 zoom_out_shortcut_->setAutoRepeat(false);
224
225 zoom_in_shortcut_2_ = new QShortcut(QKeySequence(Qt::Key_Up), this,
226 SLOT(on_zoom_in_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
227 zoom_out_shortcut_2_ = new QShortcut(QKeySequence(Qt::Key_Down), this,
228 SLOT(on_zoom_out_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
229
230 home_shortcut_ = new QShortcut(QKeySequence(Qt::Key_Home), this,
231 SLOT(on_scroll_to_start_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
232 home_shortcut_->setAutoRepeat(false);
233
234 end_shortcut_ = new QShortcut(QKeySequence(Qt::Key_End), this,
235 SLOT(on_scroll_to_end_shortcut_triggered()), nullptr, Qt::WidgetWithChildrenShortcut);
236 end_shortcut_->setAutoRepeat(false);
237
238 grab_ruler_left_shortcut_ = new QShortcut(QKeySequence(Qt::Key_1), this,
239 nullptr, nullptr, Qt::WidgetWithChildrenShortcut);
240 connect(grab_ruler_left_shortcut_, &QShortcut::activated,
241 this, [=]{on_grab_ruler(1);});
242 grab_ruler_left_shortcut_->setAutoRepeat(false);
243
244 grab_ruler_right_shortcut_ = new QShortcut(QKeySequence(Qt::Key_2), this,
245 nullptr, nullptr, Qt::WidgetWithChildrenShortcut);
246 connect(grab_ruler_right_shortcut_, &QShortcut::activated,
247 this, [=]{on_grab_ruler(2);});
248 grab_ruler_right_shortcut_->setAutoRepeat(false);
249
250 cancel_grab_shortcut_ = new QShortcut(QKeySequence(Qt::Key_Escape), this,
251 nullptr, nullptr, Qt::WidgetWithChildrenShortcut);
252 connect(cancel_grab_shortcut_, &QShortcut::activated,
253 this, [=]{grabbed_widget_ = nullptr;});
254 cancel_grab_shortcut_->setAutoRepeat(false);
255
256 // Trigger the initial event manually. The default device has signals
257 // which were created before this object came into being
258 signals_changed();
259
260 // Make sure the transparent widgets are on the top
261 ruler_->raise();
262 header_->raise();
263
264 reset_view_state();
265}
266
267View::~View()
268{
269 GlobalSettings::remove_change_handler(this);
270}
271
272ViewType View::get_type() const
273{
274 return ViewTypeTrace;
275}
276
277void View::reset_view_state()
278{
279 ViewBase::reset_view_state();
280
281 segment_display_mode_ = Trace::ShowLastSegmentOnly;
282 segment_selectable_ = false;
283 scale_ = 1e-3;
284 offset_ = 0;
285 ruler_offset_ = 0;
286 zero_offset_ = 0;
287 custom_zero_offset_set_ = false;
288 updating_scroll_ = false;
289 restoring_state_ = false;
290 always_zoom_to_fit_ = false;
291 tick_period_ = 0;
292 tick_prefix_ = pv::util::SIPrefix::yocto;
293 tick_precision_ = 0;
294 time_unit_ = util::TimeUnit::Time;
295 show_cursors_ = false;
296 cursors_ = make_shared<CursorPair>(*this);
297 next_flag_text_ = 'A';
298 trigger_markers_.clear();
299 hover_widget_ = nullptr;
300 grabbed_widget_ = nullptr;
301 hover_point_ = QPoint(-1, -1);
302 scroll_needs_defaults_ = true;
303 scale_at_acq_start_ = 0;
304 offset_at_acq_start_ = 0;
305
306 show_cursors_ = false;
307 cursor_state_changed(show_cursors_);
308 flags_.clear();
309
310 // Update the zoom state
311 calculate_tick_spacing();
312
313 // Make sure the standard bar's segment selector is in sync
314 set_segment_display_mode(segment_display_mode_);
315
316 scrollarea_->verticalScrollBar()->setRange(-100000000, 100000000);
317}
318
319Session& View::session()
320{
321 return session_;
322}
323
324const Session& View::session() const
325{
326 return session_;
327}
328
329vector< shared_ptr<Signal> > View::signals() const
330{
331 return signals_;
332}
333
334shared_ptr<Signal> View::get_signal_by_signalbase(shared_ptr<data::SignalBase> base) const
335{
336 shared_ptr<Signal> ret_val;
337
338 for (const shared_ptr<Signal>& s : signals_)
339 if (s->base() == base) {
340 ret_val = s;
341 break;
342 }
343
344 return ret_val;
345}
346
347void View::clear_signalbases()
348{
349 ViewBase::clear_signalbases();
350 signals_.clear();
351}
352
353void View::add_signalbase(const shared_ptr<data::SignalBase> signalbase)
354{
355 ViewBase::add_signalbase(signalbase);
356
357 shared_ptr<Signal> signal;
358
359 switch (signalbase->type()) {
360 case SignalBase::LogicChannel:
361 signal = shared_ptr<Signal>(new LogicSignal(session_, session_.device(), signalbase));
362 break;
363
364 case SignalBase::AnalogChannel:
365 signal = shared_ptr<Signal>(new AnalogSignal(session_, signalbase));
366 break;
367
368 default:
369 qDebug() << "Unknown signalbase type:" << signalbase->type();
370 assert(false);
371 break;
372 }
373
374 signals_.push_back(signal);
375
376 signal->set_segment_display_mode(segment_display_mode_);
377 signal->set_current_segment(current_segment_);
378
379 // Secondary views use the signal's settings in the main view
380 if (!is_main_view()) {
381 shared_ptr<View> main_tv = dynamic_pointer_cast<View>(session_.main_view());
382 shared_ptr<Signal> main_signal = main_tv->get_signal_by_signalbase(signalbase);
383 if (main_signal)
384 signal->restore_settings(main_signal->save_settings());
385 }
386
387 connect(signal->base().get(), SIGNAL(name_changed(const QString&)),
388 this, SLOT(on_signal_name_changed()));
389}
390
391void View::remove_signalbase(const shared_ptr<data::SignalBase> signalbase)
392{
393 ViewBase::remove_signalbase(signalbase);
394
395 shared_ptr<Signal> signal = get_signal_by_signalbase(signalbase);
396
397 if (signal)
398 remove_trace(signal);
399}
400
401#ifdef ENABLE_DECODE
402void View::clear_decode_signals()
403{
404 ViewBase::clear_decode_signals();
405 decode_traces_.clear();
406}
407
408void View::add_decode_signal(shared_ptr<data::DecodeSignal> signal)
409{
410 ViewBase::add_decode_signal(signal);
411
412 shared_ptr<DecodeTrace> d(
413 new DecodeTrace(session_, signal, decode_traces_.size()));
414 decode_traces_.push_back(d);
415
416 d->set_segment_display_mode(segment_display_mode_);
417 d->set_current_segment(current_segment_);
418
419 connect(signal.get(), SIGNAL(name_changed(const QString&)),
420 this, SLOT(on_signal_name_changed()));
421}
422
423void View::remove_decode_signal(shared_ptr<data::DecodeSignal> signal)
424{
425 for (auto i = decode_traces_.begin(); i != decode_traces_.end(); i++)
426 if ((*i)->base() == signal) {
427 decode_traces_.erase(i);
428 break;
429 }
430
431 ViewBase::remove_decode_signal(signal);
432}
433#endif
434
435void View::remove_trace(shared_ptr<Trace> trace)
436{
437 TraceTreeItemOwner *const owner = trace->owner();
438 assert(owner);
439 owner->remove_child_item(trace);
440
441 for (auto i = signals_.begin(); i != signals_.end(); i++)
442 if ((*i) == trace) {
443 signals_.erase(i);
444 break;
445 }
446
447 if (!header_was_shrunk_)
448 resize_header_to_fit();
449
450 update_layout();
451
452 header_->update();
453 viewport_->update();
454}
455
456shared_ptr<Signal> View::get_signal_under_mouse_cursor() const
457{
458 return signal_under_mouse_cursor_;
459}
460
461View* View::view()
462{
463 return this;
464}
465
466const View* View::view() const
467{
468 return this;
469}
470
471Viewport* View::viewport()
472{
473 return viewport_;
474}
475
476const Viewport* View::viewport() const
477{
478 return viewport_;
479}
480
481QAbstractScrollArea* View::scrollarea() const
482{
483 return scrollarea_;
484}
485
486const Ruler* View::ruler() const
487{
488 return ruler_;
489}
490
491void View::save_settings(QSettings &settings) const
492{
493 settings.setValue("scale", scale_);
494 settings.setValue("v_offset",
495 scrollarea_->verticalScrollBar()->sliderPosition());
496
497 settings.setValue("splitter_state", splitter_->saveState());
498 settings.setValue("segment_display_mode", segment_display_mode_);
499
500 GlobalSettings::store_timestamp(settings, "offset", offset_);
501
502 if (custom_zero_offset_set_)
503 GlobalSettings::store_timestamp(settings, "zero_offset", -zero_offset_);
504 else
505 settings.remove("zero_offset");
506
507 for (const shared_ptr<Signal>& signal : signals_) {
508 settings.beginGroup(signal->base()->internal_name());
509 signal->save_settings(settings);
510 settings.endGroup();
511 }
512}
513
514void View::restore_settings(QSettings &settings)
515{
516 // Note: It is assumed that this function is only called once,
517 // immediately after restoring a previous session.
518
519 if (settings.contains("scale"))
520 set_scale(settings.value("scale").toDouble());
521
522 if (settings.contains("offset")) {
523 // This also updates ruler_offset_
524 set_offset(GlobalSettings::restore_timestamp(settings, "offset"));
525 }
526
527 if (settings.contains("zero_offset"))
528 set_zero_position(GlobalSettings::restore_timestamp(settings, "zero_offset"));
529
530 if (settings.contains("splitter_state"))
531 splitter_->restoreState(settings.value("splitter_state").toByteArray());
532
533 if (settings.contains("segment_display_mode"))
534 set_segment_display_mode(
535 (Trace::SegmentDisplayMode)(settings.value("segment_display_mode").toInt()));
536
537 for (shared_ptr<Signal> signal : signals_) {
538 settings.beginGroup(signal->base()->internal_name());
539 signal->restore_settings(settings);
540 settings.endGroup();
541 }
542
543 if (settings.contains("v_offset")) {
544 // Note: see eventFilter() for additional information
545 saved_v_offset_ = settings.value("v_offset").toInt();
546 scroll_needs_defaults_ = false;
547 }
548
549 restoring_state_ = true;
550
551 // Update the ruler so that it uses the new scale
552 calculate_tick_spacing();
553}
554
555vector< shared_ptr<TimeItem> > View::time_items() const
556{
557 const vector<shared_ptr<Flag>> f(flags());
558 vector<shared_ptr<TimeItem>> items(f.begin(), f.end());
559
560 if (cursors_) {
561 items.push_back(cursors_);
562 items.push_back(cursors_->first());
563 items.push_back(cursors_->second());
564 }
565
566 for (auto& trigger_marker : trigger_markers_)
567 items.push_back(trigger_marker);
568
569 return items;
570}
571
572double View::scale() const
573{
574 return scale_;
575}
576
577void View::set_scale(double scale)
578{
579 if (scale_ != scale) {
580 scale_ = scale;
581 scale_changed();
582 }
583}
584
585void View::set_offset(const pv::util::Timestamp& offset, bool force_update)
586{
587 if ((offset_ != offset) || force_update) {
588 offset_ = offset;
589 ruler_offset_ = offset_ + zero_offset_;
590
591 const int w = viewport_->width();
592 if (w > 0) {
593 const double samplerate = session_.get_samplerate();
594 // Note: sample_num = time * samplerate
595 // Note: samples_per_pixel = samplerate * scale
596 int64_t start_sample = (offset_ * samplerate).convert_to<int64_t>();
597 int64_t end_sample = (offset_ * samplerate).convert_to<int64_t>() +
598 (w * session_.get_samplerate() * scale_);
599
600 MetadataObject* md_obj =
601 session_.metadata_obj_manager()->find_object_by_type(MetadataObjMainViewRange);
602 md_obj->set_value(MetadataValueStartSample, QVariant((qlonglong)start_sample));
603 md_obj->set_value(MetadataValueEndSample, QVariant((qlonglong)end_sample));
604 }
605
606 offset_changed();
607 }
608}
609
610const Timestamp& View::offset() const
611{
612 return offset_;
613}
614
615const Timestamp& View::ruler_offset() const
616{
617 return ruler_offset_;
618}
619
620void View::set_zero_position(const pv::util::Timestamp& position)
621{
622 zero_offset_ = -position;
623 custom_zero_offset_set_ = true;
624
625 // Force an immediate update of the offsets
626 set_offset(offset_, true);
627 ruler_->update();
628}
629
630void View::reset_zero_position()
631{
632 zero_offset_ = 0;
633
634 // When enabled, the first trigger for this segment is used as the zero position
635 GlobalSettings settings;
636 bool trigger_is_zero_time = settings.value(GlobalSettings::Key_View_TriggerIsZeroTime).toBool();
637
638 if (trigger_is_zero_time) {
639 vector<util::Timestamp> triggers = session_.get_triggers(current_segment_);
640
641 if (triggers.size() > 0)
642 zero_offset_ = triggers.front();
643 }
644
645 custom_zero_offset_set_ = false;
646
647 // Force an immediate update of the offsets
648 set_offset(offset_, true);
649 ruler_->update();
650}
651
652pv::util::Timestamp View::zero_offset() const
653{
654 return zero_offset_;
655}
656
657int View::owner_visual_v_offset() const
658{
659 return -scrollarea_->verticalScrollBar()->sliderPosition();
660}
661
662void View::set_v_offset(int offset)
663{
664 scrollarea_->verticalScrollBar()->setSliderPosition(offset);
665 header_->update();
666 viewport_->update();
667}
668
669void View::set_h_offset(int offset)
670{
671 scrollarea_->horizontalScrollBar()->setSliderPosition(offset);
672 header_->update();
673 viewport_->update();
674}
675
676int View::get_h_scrollbar_maximum() const
677{
678 return scrollarea_->horizontalScrollBar()->maximum();
679}
680
681unsigned int View::depth() const
682{
683 return 0;
684}
685
686uint32_t View::current_segment() const
687{
688 return current_segment_;
689}
690
691pv::util::SIPrefix View::tick_prefix() const
692{
693 return tick_prefix_;
694}
695
696void View::set_tick_prefix(pv::util::SIPrefix tick_prefix)
697{
698 if (tick_prefix_ != tick_prefix) {
699 tick_prefix_ = tick_prefix;
700 tick_prefix_changed();
701 }
702}
703
704unsigned int View::tick_precision() const
705{
706 return tick_precision_;
707}
708
709void View::set_tick_precision(unsigned tick_precision)
710{
711 if (tick_precision_ != tick_precision) {
712 tick_precision_ = tick_precision;
713 tick_precision_changed();
714 }
715}
716
717const pv::util::Timestamp& View::tick_period() const
718{
719 return tick_period_;
720}
721
722unsigned int View::minor_tick_count() const
723{
724 return minor_tick_count_;
725}
726
727void View::set_tick_period(const pv::util::Timestamp& tick_period)
728{
729 if (tick_period_ != tick_period) {
730 tick_period_ = tick_period;
731 tick_period_changed();
732 }
733}
734
735TimeUnit View::time_unit() const
736{
737 return time_unit_;
738}
739
740void View::set_time_unit(pv::util::TimeUnit time_unit)
741{
742 if (time_unit_ != time_unit) {
743 time_unit_ = time_unit;
744 time_unit_changed();
745 }
746}
747
748void View::set_current_segment(uint32_t segment_id)
749{
750 current_segment_ = segment_id;
751
752 for (const shared_ptr<Signal>& signal : signals_)
753 signal->set_current_segment(current_segment_);
754#ifdef ENABLE_DECODE
755 for (shared_ptr<DecodeTrace>& dt : decode_traces_)
756 dt->set_current_segment(current_segment_);
757#endif
758
759 vector<util::Timestamp> triggers = session_.get_triggers(current_segment_);
760
761 trigger_markers_.clear();
762 for (util::Timestamp timestamp : triggers)
763 trigger_markers_.push_back(make_shared<TriggerMarker>(*this, timestamp));
764
765 if (!custom_zero_offset_set_)
766 reset_zero_position();
767
768 viewport_->update();
769
770 segment_changed(segment_id);
771}
772
773bool View::segment_is_selectable() const
774{
775 return segment_selectable_;
776}
777
778Trace::SegmentDisplayMode View::segment_display_mode() const
779{
780 return segment_display_mode_;
781}
782
783void View::set_segment_display_mode(Trace::SegmentDisplayMode mode)
784{
785 segment_display_mode_ = mode;
786
787 for (const shared_ptr<Signal>& signal : signals_)
788 signal->set_segment_display_mode(mode);
789
790 uint32_t last_segment = session_.get_segment_count() - 1;
791
792 switch (mode) {
793 case Trace::ShowLastSegmentOnly:
794 if (current_segment_ != last_segment)
795 set_current_segment(last_segment);
796 break;
797
798 case Trace::ShowLastCompleteSegmentOnly:
799 // Do nothing if we only have one segment so far
800 if (last_segment > 0) {
801 // If the last segment isn't complete, the previous one must be
802 uint32_t segment_id =
803 (session_.all_segments_complete(last_segment)) ?
804 last_segment : last_segment - 1;
805
806 if (current_segment_ != segment_id)
807 set_current_segment(segment_id);
808 }
809 break;
810
811 case Trace::ShowSingleSegmentOnly:
812 case Trace::ShowAllSegments:
813 case Trace::ShowAccumulatedIntensity:
814 default:
815 // Current segment remains as-is
816 break;
817 }
818
819 segment_selectable_ = true;
820
821 if ((mode == Trace::ShowAllSegments) || (mode == Trace::ShowAccumulatedIntensity))
822 segment_selectable_ = false;
823
824 viewport_->update();
825
826 segment_display_mode_changed((int)mode, segment_selectable_);
827}
828
829void View::zoom(double steps)
830{
831 zoom(steps, viewport_->width() / 2);
832}
833
834void View::zoom(double steps, int offset)
835{
836 set_zoom(scale_ * pow(3.0 / 2.0, -steps), offset);
837}
838
839void View::zoom_fit(bool gui_state)
840{
841 // Act as one-shot when stopped, toggle along with the GUI otherwise
842 if (session_.get_capture_state() == Session::Stopped) {
843 always_zoom_to_fit_ = false;
844 always_zoom_to_fit_changed(false);
845 } else {
846 always_zoom_to_fit_ = gui_state;
847 always_zoom_to_fit_changed(gui_state);
848 }
849
850 const pair<Timestamp, Timestamp> extents = get_time_extents();
851 const Timestamp delta = extents.second - extents.first;
852 if (delta < Timestamp("1e-12"))
853 return;
854
855 assert(viewport_);
856 const int w = viewport_->width();
857 if (w <= 0)
858 return;
859
860 const Timestamp scale = max(min(delta / w, MaxScale), MinScale);
861 set_scale_offset(scale.convert_to<double>(), extents.first);
862}
863
864void View::focus_on_range(uint64_t start_sample, uint64_t end_sample)
865{
866 assert(viewport_);
867 const int w = viewport_->width();
868 if (w <= 0)
869 return;
870
871 const double samplerate = session_.get_samplerate();
872
873 const uint64_t sample_delta = (end_sample - start_sample);
874
875 // Note: We add 20% margin on the left and 5% on the right
876 const Timestamp delta = (sample_delta * 1.25) / samplerate;
877
878 const Timestamp scale = max(min(delta / w, MaxScale), MinScale);
879 const Timestamp offset = (start_sample - sample_delta * 0.20) / samplerate;
880
881 set_scale_offset(scale.convert_to<double>(), offset);
882}
883
884void View::set_scale_offset(double scale, const Timestamp& offset)
885{
886 // Disable sticky scrolling / always zoom to fit when acquisition runs
887 // and user drags the viewport
888 if ((scale_ == scale) && (offset_ != offset) &&
889 (session_.get_capture_state() == Session::Running)) {
890
891 if (sticky_scrolling_) {
892 sticky_scrolling_ = false;
893 sticky_scrolling_changed(false);
894 }
895
896 if (always_zoom_to_fit_) {
897 always_zoom_to_fit_ = false;
898 always_zoom_to_fit_changed(false);
899 }
900 }
901
902 set_scale(scale);
903 set_offset(offset);
904
905 calculate_tick_spacing();
906
907 update_scroll();
908 ruler_->update();
909 viewport_->update();
910}
911
912vector< shared_ptr<SignalData> > View::get_visible_data() const
913{
914 // Make a set of all the visible data objects
915 vector< shared_ptr<SignalData> > visible_data;
916 for (const shared_ptr<Signal>& sig : signals_)
917 if (sig->enabled())
918 visible_data.push_back(sig->data());
919
920 return visible_data;
921}
922
923pair<Timestamp, Timestamp> View::get_time_extents() const
924{
925 boost::optional<Timestamp> left_time, right_time;
926
927 vector< shared_ptr<SignalData> > data;
928 if (signals_.size() == 0)
929 return make_pair(0, 0);
930
931 data.push_back(signals_.front()->data());
932
933 for (const shared_ptr<SignalData>& d : data) {
934 const vector< shared_ptr<Segment> > segments = d->segments();
935 for (const shared_ptr<Segment>& s : segments) {
936 double samplerate = s->samplerate();
937 samplerate = (samplerate <= 0.0) ? 1.0 : samplerate;
938
939 const Timestamp start_time = s->start_time();
940 left_time = left_time ?
941 min(*left_time, start_time) :
942 start_time;
943 right_time = right_time ?
944 max(*right_time, start_time + d->max_sample_count() / samplerate) :
945 start_time + d->max_sample_count() / samplerate;
946 }
947 }
948
949 if (!left_time || !right_time)
950 return make_pair(0, 0);
951
952 assert(*left_time <= *right_time);
953 return make_pair(*left_time, *right_time);
954}
955
956bool View::colored_bg() const
957{
958 return colored_bg_;
959}
960
961bool View::cursors_shown() const
962{
963 return show_cursors_;
964}
965
966void View::show_cursors(bool show)
967{
968 if (show_cursors_ != show) {
969 show_cursors_ = show;
970
971 cursor_state_changed(show);
972 ruler_->update();
973 viewport_->update();
974 }
975}
976
977void View::set_cursors(pv::util::Timestamp& first, pv::util::Timestamp& second)
978{
979 assert(cursors_);
980
981 cursors_->first()->set_time(first);
982 cursors_->second()->set_time(second);
983
984 ruler_->update();
985 viewport_->update();
986}
987
988void View::center_cursors()
989{
990 assert(cursors_);
991
992 const double time_width = scale_ * viewport_->width();
993 cursors_->first()->set_time(offset_ + time_width * 0.4);
994 cursors_->second()->set_time(offset_ + time_width * 0.6);
995
996 ruler_->update();
997 viewport_->update();
998}
999
1000shared_ptr<CursorPair> View::cursors() const
1001{
1002 return cursors_;
1003}
1004
1005shared_ptr<Flag> View::add_flag(const Timestamp& time)
1006{
1007 shared_ptr<Flag> flag =
1008 make_shared<Flag>(*this, time, QString("%1").arg(next_flag_text_));
1009 flags_.push_back(flag);
1010
1011 next_flag_text_ = (next_flag_text_ >= 'Z') ? 'A' :
1012 (next_flag_text_ + 1);
1013
1014 time_item_appearance_changed(true, true);
1015 return flag;
1016}
1017
1018void View::remove_flag(shared_ptr<Flag> flag)
1019{
1020 flags_.remove(flag);
1021 time_item_appearance_changed(true, true);
1022}
1023
1024vector< shared_ptr<Flag> > View::flags() const
1025{
1026 vector< shared_ptr<Flag> > flags(flags_.begin(), flags_.end());
1027 stable_sort(flags.begin(), flags.end(),
1028 [](const shared_ptr<Flag> &a, const shared_ptr<Flag> &b) {
1029 return a->time() < b->time();
1030 });
1031
1032 return flags;
1033}
1034
1035const QPoint& View::hover_point() const
1036{
1037 return hover_point_;
1038}
1039
1040const QWidget* View::hover_widget() const
1041{
1042 return hover_widget_;
1043}
1044
1045int64_t View::get_nearest_level_change(const QPoint &p)
1046{
1047 // Is snapping disabled?
1048 if (snap_distance_ == 0)
1049 return -1;
1050
1051 struct entry_t {
1052 entry_t(shared_ptr<Signal> s) :
1053 signal(s), delta(numeric_limits<int64_t>::max()), sample(-1), is_dense(false) {}
1054 shared_ptr<Signal> signal;
1055 int64_t delta;
1056 int64_t sample;
1057 bool is_dense;
1058 };
1059
1060 vector<entry_t> list;
1061
1062 // Create list of signals to consider
1063 if (signal_under_mouse_cursor_)
1064 list.emplace_back(signal_under_mouse_cursor_);
1065 else
1066 for (shared_ptr<Signal> s : signals_) {
1067 if (!s->enabled())
1068 continue;
1069
1070 list.emplace_back(s);
1071 }
1072
1073 // Get data for listed signals
1074 for (entry_t &e : list) {
1075 // Calculate sample number from cursor position
1076 const double samples_per_pixel = e.signal->base()->get_samplerate() * scale();
1077 const int64_t x_offset = offset().convert_to<double>() / scale();
1078 const int64_t sample_num = max(((x_offset + p.x()) * samples_per_pixel), 0.0);
1079
1080 vector<data::LogicSegment::EdgePair> edges =
1081 e.signal->get_nearest_level_changes(sample_num);
1082
1083 if (edges.empty())
1084 continue;
1085
1086 // Check first edge
1087 const int64_t first_sample_delta = abs(sample_num - edges.front().first);
1088 const int64_t first_delta = first_sample_delta / samples_per_pixel;
1089 e.delta = first_delta;
1090 e.sample = edges.front().first;
1091
1092 // Check second edge if available
1093 if (edges.size() == 2) {
1094 // Note: -1 because this is usually the right edge and sample points are left-aligned
1095 const int64_t second_sample_delta = abs(sample_num - edges.back().first - 1);
1096 const int64_t second_delta = second_sample_delta / samples_per_pixel;
1097
1098 // If both edges are too close, we mark this signal as being dense
1099 if ((first_delta + second_delta) <= snap_distance_)
1100 e.is_dense = true;
1101
1102 if (second_delta < first_delta) {
1103 e.delta = second_delta;
1104 e.sample = edges.back().first;
1105 }
1106 }
1107 }
1108
1109 // Look for the best match: non-dense first, then dense
1110 entry_t *match = nullptr;
1111
1112 for (entry_t &e : list) {
1113 if (e.delta > snap_distance_ || e.is_dense)
1114 continue;
1115
1116 if (match) {
1117 if (e.delta < match->delta)
1118 match = &e;
1119 } else
1120 match = &e;
1121 }
1122
1123 if (!match) {
1124 for (entry_t &e : list) {
1125 if (!e.is_dense)
1126 continue;
1127
1128 if (match) {
1129 if (e.delta < match->delta)
1130 match = &e;
1131 } else
1132 match = &e;
1133 }
1134 }
1135
1136 if (match) {
1137 // Somewhat ugly hack to make TimeItem::drag_by() work
1138 signal_under_mouse_cursor_ = match->signal;
1139
1140 return match->sample;
1141 }
1142
1143 return -1;
1144}
1145
1146void View::restack_all_trace_tree_items()
1147{
1148 // Make a list of owners that is sorted from deepest first
1149 const vector<shared_ptr<TraceTreeItem>> items(
1150 list_by_type<TraceTreeItem>());
1151 set< TraceTreeItemOwner* > owners;
1152 for (const auto &r : items)
1153 owners.insert(r->owner());
1154 vector< TraceTreeItemOwner* > sorted_owners(owners.begin(), owners.end());
1155 sort(sorted_owners.begin(), sorted_owners.end(),
1156 [](const TraceTreeItemOwner* a, const TraceTreeItemOwner *b) {
1157 return a->depth() > b->depth(); });
1158
1159 // Restack the items recursively
1160 for (auto &o : sorted_owners)
1161 o->restack_items();
1162
1163 // Animate the items to their destination
1164 for (const auto &i : items)
1165 i->animate_to_layout_v_offset();
1166}
1167
1168int View::header_width() const
1169{
1170 return header_->extended_size_hint().width();
1171}
1172
1173void View::on_setting_changed(const QString &key, const QVariant &value)
1174{
1175 GlobalSettings settings;
1176
1177 if (key == GlobalSettings::Key_View_ColoredBG) {
1178 colored_bg_ = settings.value(GlobalSettings::Key_View_ColoredBG).toBool();
1179 viewport_->update();
1180 }
1181
1182 if ((key == GlobalSettings::Key_View_ShowSamplingPoints) ||
1183 (key == GlobalSettings::Key_View_ShowAnalogMinorGrid))
1184 viewport_->update();
1185
1186 if (key == GlobalSettings::Key_View_TriggerIsZeroTime)
1187 on_settingViewTriggerIsZeroTime_changed(value);
1188
1189 if (key == GlobalSettings::Key_View_SnapDistance)
1190 snap_distance_ = settings.value(GlobalSettings::Key_View_SnapDistance).toInt();
1191}
1192
1193void View::trigger_event(int segment_id, util::Timestamp location)
1194{
1195 // TODO This doesn't work if we're showing multiple segments at once
1196 if ((uint32_t)segment_id != current_segment_)
1197 return;
1198
1199 if (!custom_zero_offset_set_)
1200 reset_zero_position();
1201
1202 trigger_markers_.push_back(make_shared<TriggerMarker>(*this, location));
1203}
1204
1205void View::get_scroll_layout(double &length, Timestamp &offset) const
1206{
1207 const pair<Timestamp, Timestamp> extents = get_time_extents();
1208 length = ((extents.second - extents.first) / scale_).convert_to<double>();
1209 offset = offset_ / scale_;
1210}
1211
1212void View::set_zoom(double scale, int offset)
1213{
1214 // Reset the "always zoom to fit" feature as the user changed the zoom
1215 always_zoom_to_fit_ = false;
1216 always_zoom_to_fit_changed(false);
1217
1218 const Timestamp cursor_offset = offset_ + scale_ * offset;
1219 const Timestamp new_scale = max(min(Timestamp(scale), MaxScale), MinScale);
1220 const Timestamp new_offset = cursor_offset - new_scale * offset;
1221 set_scale_offset(new_scale.convert_to<double>(), new_offset);
1222}
1223
1224void View::calculate_tick_spacing()
1225{
1226 const double SpacingIncrement = 10.0f;
1227 const double MinValueSpacing = 40.0f;
1228
1229 // Figure out the highest numeric value visible on a label
1230 const QSize areaSize = viewport_->size();
1231 const Timestamp max_time = max(fabs(offset_),
1232 fabs(offset_ + scale_ * areaSize.width()));
1233
1234 double min_width = SpacingIncrement;
1235 double label_width, tick_period_width;
1236
1237 QFontMetrics m(QApplication::font());
1238
1239 // Copies of the member variables with the same name, used in the calculation
1240 // and written back afterwards, so that we don't emit signals all the time
1241 // during the calculation.
1242 pv::util::Timestamp tick_period = tick_period_;
1243 pv::util::SIPrefix tick_prefix = tick_prefix_;
1244 unsigned tick_precision = tick_precision_;
1245
1246 do {
1247 const double min_period = scale_ * min_width;
1248
1249 const int order = (int)floorf(log10f(min_period));
1250 const pv::util::Timestamp order_decimal =
1251 pow(pv::util::Timestamp(10), order);
1252
1253 // Allow for a margin of error so that a scale unit of 1 can be used.
1254 // Otherwise, for a SU of 1 the tick period will almost always be below
1255 // the min_period by a small amount - and thus skipped in favor of 2.
1256 // Note: margin assumes that SU[0] and SU[1] contain the smallest values
1257 double tp_margin = (ScaleUnits[0] + ScaleUnits[1]) / 2.0;
1258 double tp_with_margin;
1259 unsigned int unit = 0;
1260
1261 do {
1262 tp_with_margin = order_decimal.convert_to<double>() *
1263 (ScaleUnits[unit++] + tp_margin);
1264 } while (tp_with_margin < min_period && unit < countof(ScaleUnits));
1265
1266 minor_tick_count_ = (unit == 2) ? 4 : 5;
1267 tick_period = order_decimal * ScaleUnits[unit - 1];
1268 tick_prefix = static_cast<pv::util::SIPrefix>(
1269 (order - pv::util::exponent(pv::util::SIPrefix::yocto)) / 3);
1270
1271 // Precision is the number of fractional digits required, not
1272 // taking the prefix into account (and it must never be negative)
1273 tick_precision = max(ceil(log10(1 / tick_period)).convert_to<int>(), 0);
1274
1275 tick_period_width = (tick_period / scale_).convert_to<double>();
1276
1277 const QString label_text = Ruler::format_time_with_distance(
1278 tick_period, max_time, tick_prefix, time_unit_, tick_precision);
1279
1280 label_width = m.boundingRect(0, 0, INT_MAX, INT_MAX,
1281 Qt::AlignLeft | Qt::AlignTop, label_text).width() +
1282 MinValueSpacing;
1283
1284 min_width += SpacingIncrement;
1285 } while (tick_period_width < label_width);
1286
1287 set_tick_period(tick_period);
1288 set_tick_prefix(tick_prefix);
1289 set_tick_precision(tick_precision);
1290}
1291
1292void View::adjust_top_margin()
1293{
1294 assert(viewport_);
1295
1296 const QSize areaSize = viewport_->size();
1297
1298 const pair<int, int> extents = v_extents();
1299 const int top_margin = owner_visual_v_offset() + extents.first;
1300 const int trace_bottom = owner_visual_v_offset() + extents.first + extents.second;
1301
1302 // Do we have empty space at the top while the last trace goes out of screen?
1303 if ((top_margin > 0) && (trace_bottom > areaSize.height())) {
1304 const int trace_height = extents.second - extents.first;
1305
1306 // Center everything vertically if there is enough space
1307 if (areaSize.height() >= trace_height)
1308 set_v_offset(extents.first -
1309 ((areaSize.height() - trace_height) / 2));
1310 else
1311 // Remove the top margin to make as many traces fit on screen as possible
1312 set_v_offset(extents.first);
1313 }
1314}
1315
1316void View::update_scroll()
1317{
1318 assert(viewport_);
1319 QScrollBar *hscrollbar = scrollarea_->horizontalScrollBar();
1320 QScrollBar *vscrollbar = scrollarea_->verticalScrollBar();
1321
1322 const QSize areaSize = viewport_->size();
1323
1324 // Set the horizontal scroll bar
1325 double length = 0;
1326 Timestamp offset;
1327 get_scroll_layout(length, offset);
1328 length = max(length - areaSize.width(), 0.0);
1329
1330 int major_tick_distance = (tick_period_ / scale_).convert_to<int>();
1331
1332 hscrollbar->setPageStep(areaSize.width() / 2);
1333 hscrollbar->setSingleStep(major_tick_distance);
1334
1335 updating_scroll_ = true;
1336
1337 if (length < MaxScrollValue) {
1338 hscrollbar->setRange(0, length);
1339 hscrollbar->setSliderPosition(offset.convert_to<double>());
1340 } else {
1341 hscrollbar->setRange(0, MaxScrollValue);
1342 hscrollbar->setSliderPosition(
1343 (offset_ * MaxScrollValue / (scale_ * length)).convert_to<double>());
1344 }
1345
1346 updating_scroll_ = false;
1347
1348 // Set the vertical scrollbar
1349 vscrollbar->setPageStep(areaSize.height());
1350 vscrollbar->setSingleStep(areaSize.height() / 8);
1351
1352 const pair<int, int> extents = v_extents();
1353
1354 // Don't change the scrollbar range if there are no traces
1355 if (extents.first != extents.second) {
1356 int top_margin = ViewScrollMargin;
1357 int btm_margin = ViewScrollMargin;
1358
1359 vscrollbar->setRange(extents.first - areaSize.height() + top_margin,
1360 extents.second - btm_margin);
1361 }
1362
1363 if (scroll_needs_defaults_) {
1364 set_scroll_default();
1365 scroll_needs_defaults_ = false;
1366 }
1367}
1368
1369void View::reset_scroll()
1370{
1371 scrollarea_->verticalScrollBar()->setRange(0, 0);
1372}
1373
1374void View::set_scroll_default()
1375{
1376 assert(viewport_);
1377
1378 const QSize areaSize = viewport_->size();
1379
1380 const pair<int, int> extents = v_extents();
1381 const int trace_height = extents.second - extents.first;
1382
1383 // Do all traces fit in the view?
1384 if (areaSize.height() >= trace_height)
1385 // Center all traces vertically
1386 set_v_offset(extents.first -
1387 ((areaSize.height() - trace_height) / 2));
1388 else
1389 // Put the first trace at the top, letting the bottom ones overflow
1390 set_v_offset(extents.first);
1391}
1392
1393void View::determine_if_header_was_shrunk()
1394{
1395 const int header_pane_width =
1396 splitter_->sizes().front(); // clazy:exclude=detaching-temporary
1397
1398 // Allow for a slight margin of error so that we also accept
1399 // slight differences when e.g. a label name change increased
1400 // the overall width
1401 header_was_shrunk_ = (header_pane_width < (header_width() - 10));
1402}
1403
1404void View::resize_header_to_fit()
1405{
1406 // Setting the maximum width of the header widget doesn't work as
1407 // expected because the splitter would allow the user to make the
1408 // pane wider than that, creating empty space as a result.
1409 // To make this work, we stricly enforce the maximum width by
1410 // expanding the header unless the user shrunk it on purpose.
1411 // As we're then setting the width of the header pane, we set the
1412 // splitter to the maximum allowed position.
1413
1414 int splitter_area_width = 0;
1415 for (int w : splitter_->sizes()) // clazy:exclude=range-loop
1416 splitter_area_width += w;
1417
1418 // Make sure the header has enough horizontal space to show all labels fully
1419 QList<int> pane_sizes;
1420 pane_sizes.push_back(header_->extended_size_hint().width());
1421 pane_sizes.push_back(splitter_area_width - header_->extended_size_hint().width());
1422 splitter_->setSizes(pane_sizes);
1423}
1424
1425void View::update_layout()
1426{
1427 update_scroll();
1428}
1429
1430TraceTreeItemOwner* View::find_prevalent_trace_group(
1431 const shared_ptr<sigrok::ChannelGroup> &group,
1432 const map<shared_ptr<data::SignalBase>, shared_ptr<Signal> > &signal_map)
1433{
1434 assert(group);
1435
1436 set<TraceTreeItemOwner*> owners;
1437 vector<TraceTreeItemOwner*> owner_list;
1438
1439 // Make a set and a list of all the owners
1440 for (const auto& channel : group->channels()) {
1441 for (auto& entry : signal_map) {
1442 if (entry.first->channel() == channel) {
1443 TraceTreeItemOwner *const o = (entry.second)->owner();
1444 owner_list.push_back(o);
1445 owners.insert(o);
1446 }
1447 }
1448 }
1449
1450 // Iterate through the list of owners, and find the most prevalent
1451 size_t max_prevalence = 0;
1452 TraceTreeItemOwner *prevalent_owner = nullptr;
1453 for (TraceTreeItemOwner *owner : owners) {
1454 const size_t prevalence = count_if(
1455 owner_list.begin(), owner_list.end(),
1456 [&](TraceTreeItemOwner *o) { return o == owner; });
1457 if (prevalence > max_prevalence) {
1458 max_prevalence = prevalence;
1459 prevalent_owner = owner;
1460 }
1461 }
1462
1463 return prevalent_owner;
1464}
1465
1466vector< shared_ptr<Trace> > View::extract_new_traces_for_channels(
1467 const vector< shared_ptr<sigrok::Channel> > &channels,
1468 const map<shared_ptr<data::SignalBase>, shared_ptr<Signal> > &signal_map,
1469 set< shared_ptr<Trace> > &add_list)
1470{
1471 vector< shared_ptr<Trace> > filtered_traces;
1472
1473 for (const auto& channel : channels) {
1474 for (auto& entry : signal_map) {
1475 if (entry.first->channel() == channel) {
1476 shared_ptr<Trace> trace = entry.second;
1477 const auto list_iter = add_list.find(trace);
1478 if (list_iter == add_list.end())
1479 continue;
1480
1481 filtered_traces.push_back(trace);
1482 add_list.erase(list_iter);
1483 }
1484 }
1485 }
1486
1487 return filtered_traces;
1488}
1489
1490void View::determine_time_unit()
1491{
1492 // Check whether we know the sample rate and hence can use time as the unit
1493 if (time_unit_ == util::TimeUnit::Samples) {
1494 // Check all signals but...
1495 for (const shared_ptr<Signal>& signal : signals_) {
1496 const shared_ptr<SignalData> data = signal->data();
1497
1498 // ...only check first segment of each
1499 const vector< shared_ptr<Segment> > segments = data->segments();
1500 if (!segments.empty())
1501 if (segments[0]->samplerate()) {
1502 set_time_unit(util::TimeUnit::Time);
1503 break;
1504 }
1505 }
1506 }
1507}
1508
1509bool View::eventFilter(QObject *object, QEvent *event)
1510{
1511 const QEvent::Type type = event->type();
1512
1513 if (type == QEvent::MouseMove) {
1514
1515 if (object)
1516 hover_widget_ = qobject_cast<QWidget*>(object);
1517
1518 const QMouseEvent *const mouse_event = (QMouseEvent*)event;
1519 if (object == viewport_)
1520 hover_point_ = mouse_event->pos();
1521 else if (object == ruler_)
1522 hover_point_ = mouse_event->pos();
1523 else if (object == header_)
1524 hover_point_ = QPoint(0, mouse_event->y());
1525 else
1526 hover_point_ = QPoint(-1, -1);
1527
1528 update_hover_point();
1529
1530 if (grabbed_widget_) {
1531 int64_t nearest = get_nearest_level_change(hover_point_);
1532 pv::util::Timestamp mouse_time = offset_ + hover_point_.x() * scale_;
1533
1534 if (nearest == -1) {
1535 grabbed_widget_->set_time(mouse_time);
1536 } else {
1537 grabbed_widget_->set_time(nearest / get_signal_under_mouse_cursor()->base()->get_samplerate());
1538 }
1539 }
1540
1541 } else if (type == QEvent::MouseButtonPress) {
1542 grabbed_widget_ = nullptr;
1543
1544 const QMouseEvent *const mouse_event = (QMouseEvent*)event;
1545 if ((object == viewport_) && (mouse_event->button() & Qt::LeftButton)) {
1546 // Send event to all trace tree items
1547 const vector<shared_ptr<TraceTreeItem>> trace_tree_items(
1548 list_by_type<TraceTreeItem>());
1549 for (const shared_ptr<TraceTreeItem>& r : trace_tree_items)
1550 r->mouse_left_press_event(mouse_event);
1551 }
1552 } else if (type == QEvent::Leave) {
1553 hover_point_ = QPoint(-1, -1);
1554 update_hover_point();
1555 } else if (type == QEvent::Show) {
1556
1557 // This is somewhat of a hack, unfortunately. We cannot use
1558 // set_v_offset() from within restore_settings() as the view
1559 // at that point is neither visible nor properly sized.
1560 // This is the least intrusive workaround I could come up
1561 // with: set the vertical offset (or scroll defaults) when
1562 // the view is shown, which happens after all widgets were
1563 // resized to their final sizes.
1564 update_layout();
1565
1566 if (restoring_state_)
1567 determine_if_header_was_shrunk();
1568 else
1569 resize_header_to_fit();
1570
1571 if (scroll_needs_defaults_) {
1572 set_scroll_default();
1573 scroll_needs_defaults_ = false;
1574 }
1575
1576 if (restoring_state_)
1577 set_v_offset(saved_v_offset_);
1578 }
1579
1580 return QObject::eventFilter(object, event);
1581}
1582
1583void View::contextMenuEvent(QContextMenuEvent *event)
1584{
1585 QPoint pos = event->pos() - QPoint(0, ruler_->sizeHint().height());
1586
1587 const shared_ptr<ViewItem> r = viewport_->get_mouse_over_item(pos);
1588 if (!r)
1589 return;
1590
1591 QMenu *menu = r->create_view_context_menu(this, pos);
1592 if (menu)
1593 menu->popup(event->globalPos());
1594}
1595
1596void View::resizeEvent(QResizeEvent* event)
1597{
1598 // Only adjust the top margin if we shrunk vertically
1599 if (event->size().height() < event->oldSize().height())
1600 adjust_top_margin();
1601
1602 update_layout();
1603}
1604
1605void View::update_hover_point()
1606{
1607 // Determine signal that the mouse cursor is hovering over
1608 signal_under_mouse_cursor_.reset();
1609 if (hover_widget_ == this) {
1610 for (const shared_ptr<Signal>& s : signals_) {
1611 const pair<int, int> extents = s->v_extents();
1612 const int top = s->get_visual_y() + extents.first;
1613 const int btm = s->get_visual_y() + extents.second;
1614 if ((hover_point_.y() >= top) && (hover_point_.y() <= btm)
1615 && s->base()->enabled())
1616 signal_under_mouse_cursor_ = s;
1617 }
1618 }
1619
1620 // Update all trace tree items
1621 const vector<shared_ptr<TraceTreeItem>> trace_tree_items(
1622 list_by_type<TraceTreeItem>());
1623 for (const shared_ptr<TraceTreeItem>& r : trace_tree_items)
1624 r->hover_point_changed(hover_point_);
1625
1626 // Notify this view's listeners
1627 hover_point_changed(hover_widget_, hover_point_);
1628
1629 // Hover point is -1 when invalid and 0 for the header
1630 if (hover_point_.x() > 0) {
1631 // Notify global listeners
1632 pv::util::Timestamp mouse_time = offset_ + hover_point_.x() * scale_;
1633 int64_t sample_num = (mouse_time * session_.get_samplerate()).convert_to<int64_t>();
1634
1635 MetadataObject* md_obj =
1636 session_.metadata_obj_manager()->find_object_by_type(MetadataObjMousePos);
1637 md_obj->set_value(MetadataValueStartSample, QVariant((qlonglong)sample_num));
1638 }
1639}
1640
1641void View::row_item_appearance_changed(bool label, bool content)
1642{
1643 if (label)
1644 header_->update();
1645 if (content)
1646 viewport_->update();
1647}
1648
1649void View::time_item_appearance_changed(bool label, bool content)
1650{
1651 if (label) {
1652 ruler_->update();
1653
1654 // Make sure the header pane width is updated, too
1655 update_layout();
1656 }
1657
1658 if (content)
1659 viewport_->update();
1660}
1661
1662void View::extents_changed(bool horz, bool vert)
1663{
1664 sticky_events_ |=
1665 (horz ? TraceTreeItemHExtentsChanged : 0) |
1666 (vert ? TraceTreeItemVExtentsChanged : 0);
1667
1668 if (!lazy_event_handler_.isActive())
1669 lazy_event_handler_.start();
1670}
1671
1672void View::on_signal_name_changed()
1673{
1674 if (!header_was_shrunk_)
1675 resize_header_to_fit();
1676}
1677
1678void View::on_splitter_moved()
1679{
1680 // The header can only shrink when the splitter is moved manually
1681 determine_if_header_was_shrunk();
1682
1683 if (!header_was_shrunk_)
1684 resize_header_to_fit();
1685}
1686
1687void View::on_zoom_in_shortcut_triggered()
1688{
1689 zoom(1);
1690}
1691
1692void View::on_zoom_out_shortcut_triggered()
1693{
1694 zoom(-1);
1695}
1696
1697void View::on_scroll_to_start_shortcut_triggered()
1698{
1699 set_h_offset(0);
1700}
1701
1702void View::on_scroll_to_end_shortcut_triggered()
1703{
1704 set_h_offset(get_h_scrollbar_maximum());
1705}
1706
1707void View::h_scroll_value_changed(int value)
1708{
1709 if (updating_scroll_)
1710 return;
1711
1712 // Disable sticky scrolling when user moves the horizontal scroll bar
1713 // during a running acquisition
1714 if (sticky_scrolling_ && (session_.get_capture_state() == Session::Running)) {
1715 sticky_scrolling_ = false;
1716 sticky_scrolling_changed(false);
1717 }
1718
1719 const int range = scrollarea_->horizontalScrollBar()->maximum();
1720 if (range < MaxScrollValue)
1721 set_offset(scale_ * value);
1722 else {
1723 double length = 0;
1724 Timestamp offset;
1725 get_scroll_layout(length, offset);
1726 set_offset(scale_ * length * value / MaxScrollValue);
1727 }
1728
1729 ruler_->update();
1730 viewport_->update();
1731}
1732
1733void View::v_scroll_value_changed()
1734{
1735 header_->update();
1736 viewport_->update();
1737}
1738
1739void View::on_grab_ruler(int ruler_id)
1740{
1741 if (!cursors_shown()) {
1742 center_cursors();
1743 show_cursors();
1744 }
1745
1746 // Release the grabbed widget if its trigger hotkey was pressed twice
1747 if (ruler_id == 1)
1748 grabbed_widget_ = (grabbed_widget_ == cursors_->first().get()) ?
1749 nullptr : cursors_->first().get();
1750 else
1751 grabbed_widget_ = (grabbed_widget_ == cursors_->second().get()) ?
1752 nullptr : cursors_->second().get();
1753
1754 if (grabbed_widget_)
1755 grabbed_widget_->set_time(ruler_->get_absolute_time_from_x_pos(
1756 mapFromGlobal(QCursor::pos()).x() - header_width()));
1757}
1758
1759void View::signals_changed()
1760{
1761 using sigrok::Channel;
1762
1763 lock_guard<mutex> lock(signal_mutex_);
1764
1765 vector< shared_ptr<Channel> > channels;
1766 shared_ptr<sigrok::Device> sr_dev;
1767 bool signals_added_or_removed = false;
1768
1769 // Do we need to set the vertical scrollbar to its default position later?
1770 // We do if there are no traces, i.e. the scroll bar has no range set
1771 bool reset_scrollbar =
1772 (scrollarea_->verticalScrollBar()->minimum() ==
1773 scrollarea_->verticalScrollBar()->maximum());
1774
1775 if (!session_.device()) {
1776 reset_scroll();
1777 signals_.clear();
1778 } else {
1779 sr_dev = session_.device()->device();
1780 assert(sr_dev);
1781 channels = sr_dev->channels();
1782 }
1783
1784 vector< shared_ptr<TraceTreeItem> > new_top_level_items;
1785
1786 // Make a list of traces that are being added, and a list of traces
1787 // that are being removed. The set_difference() algorithms require
1788 // both sets to be in the exact same order, which means that PD signals
1789 // must always be last as they interrupt the sort order otherwise
1790 const vector<shared_ptr<Trace>> prev_trace_list = list_by_type<Trace>();
1791 const set<shared_ptr<Trace>> prev_traces(
1792 prev_trace_list.begin(), prev_trace_list.end());
1793
1794 set< shared_ptr<Trace> > traces(signals_.begin(), signals_.end());
1795
1796#ifdef ENABLE_DECODE
1797 traces.insert(decode_traces_.begin(), decode_traces_.end());
1798#endif
1799 set< shared_ptr<Trace> > add_traces;
1800 set_difference(traces.begin(), traces.end(),
1801 prev_traces.begin(), prev_traces.end(),
1802 inserter(add_traces, add_traces.begin()));
1803
1804 set< shared_ptr<Trace> > remove_traces;
1805 set_difference(prev_traces.begin(), prev_traces.end(),
1806 traces.begin(), traces.end(),
1807 inserter(remove_traces, remove_traces.begin()));
1808
1809 // Make a look-up table of sigrok Channels to pulseview Signals
1810 map<shared_ptr<data::SignalBase>, shared_ptr<Signal> > signal_map;
1811 for (const shared_ptr<Signal>& sig : signals_)
1812 signal_map[sig->base()] = sig;
1813
1814 // Populate channel groups
1815 if (sr_dev)
1816 for (auto& entry : sr_dev->channel_groups()) {
1817 const shared_ptr<sigrok::ChannelGroup> &group = entry.second;
1818
1819 if (group->channels().size() <= 1)
1820 continue;
1821
1822 // Find best trace group to add to
1823 TraceTreeItemOwner *owner = find_prevalent_trace_group(
1824 group, signal_map);
1825
1826 // If there is no trace group, create one
1827 shared_ptr<TraceGroup> new_trace_group;
1828 if (!owner) {
1829 new_trace_group.reset(new TraceGroup());
1830 owner = new_trace_group.get();
1831 }
1832
1833 // Extract traces for the trace group, removing them from
1834 // the add list
1835 const vector< shared_ptr<Trace> > new_traces_in_group =
1836 extract_new_traces_for_channels(group->channels(),
1837 signal_map, add_traces);
1838
1839 // Add the traces to the group
1840 const pair<int, int> prev_v_extents = owner->v_extents();
1841 int offset = prev_v_extents.second - prev_v_extents.first;
1842 for (const shared_ptr<Trace>& trace : new_traces_in_group) {
1843 assert(trace);
1844 owner->add_child_item(trace);
1845
1846 const pair<int, int> extents = trace->v_extents();
1847 if (trace->enabled())
1848 offset += -extents.first;
1849 trace->force_to_v_offset(offset);
1850 if (trace->enabled())
1851 offset += extents.second;
1852 }
1853
1854 if (new_trace_group) {
1855 // Assign proper vertical offsets to each channel in the group
1856 new_trace_group->restack_items();
1857
1858 // If this is a new group, enqueue it in the new top level
1859 // items list
1860 if (!new_traces_in_group.empty())
1861 new_top_level_items.push_back(new_trace_group);
1862 }
1863 }
1864
1865 // Enqueue the remaining logic channels in a group
1866 vector< shared_ptr<Channel> > logic_channels;
1867 copy_if(channels.begin(), channels.end(), back_inserter(logic_channels),
1868 [](const shared_ptr<Channel>& c) {
1869 return c->type() == sigrok::ChannelType::LOGIC; });
1870
1871 const vector< shared_ptr<Trace> > non_grouped_logic_signals =
1872 extract_new_traces_for_channels(logic_channels, signal_map, add_traces);
1873
1874 if (non_grouped_logic_signals.size() > 0) {
1875 const shared_ptr<TraceGroup> non_grouped_trace_group(
1876 make_shared<TraceGroup>());
1877 for (const shared_ptr<Trace>& trace : non_grouped_logic_signals)
1878 non_grouped_trace_group->add_child_item(trace);
1879
1880 non_grouped_trace_group->restack_items();
1881 new_top_level_items.push_back(non_grouped_trace_group);
1882 }
1883
1884 // Enqueue the remaining channels as free ungrouped traces
1885 const vector< shared_ptr<Trace> > new_top_level_signals =
1886 extract_new_traces_for_channels(channels, signal_map, add_traces);
1887 new_top_level_items.insert(new_top_level_items.end(),
1888 new_top_level_signals.begin(), new_top_level_signals.end());
1889
1890 // Enqueue any remaining traces i.e. decode traces
1891 new_top_level_items.insert(new_top_level_items.end(),
1892 add_traces.begin(), add_traces.end());
1893
1894 // Remove any removed traces
1895 for (const shared_ptr<Trace>& trace : remove_traces) {
1896 TraceTreeItemOwner *const owner = trace->owner();
1897 assert(owner);
1898 owner->remove_child_item(trace);
1899 signals_added_or_removed = true;
1900 }
1901
1902 // Remove any empty trace groups
1903 for (shared_ptr<TraceGroup> group : list_by_type<TraceGroup>())
1904 if (group->child_items().size() == 0) {
1905 remove_child_item(group);
1906 group.reset();
1907 }
1908
1909 // Add and position the pending top levels items
1910 int offset = v_extents().second;
1911 for (shared_ptr<TraceTreeItem> item : new_top_level_items) {
1912 // items may already have gained an owner when they were added to a group above
1913 if (item->owner())
1914 continue;
1915
1916 add_child_item(item);
1917
1918 // Position the item after the last item or at the top if there is none
1919 const pair<int, int> extents = item->v_extents();
1920
1921 if (item->enabled())
1922 offset += -extents.first;
1923
1924 item->force_to_v_offset(offset);
1925
1926 if (item->enabled())
1927 offset += extents.second;
1928 signals_added_or_removed = true;
1929 }
1930
1931
1932 if (signals_added_or_removed && !header_was_shrunk_)
1933 resize_header_to_fit();
1934
1935 update_layout();
1936
1937 header_->update();
1938 viewport_->update();
1939
1940 if (reset_scrollbar)
1941 set_scroll_default();
1942}
1943
1944void View::capture_state_updated(int state)
1945{
1946 GlobalSettings settings;
1947
1948 if (state == Session::Running) {
1949 set_time_unit(util::TimeUnit::Samples);
1950
1951 trigger_markers_.clear();
1952 if (!custom_zero_offset_set_)
1953 set_zero_position(0);
1954
1955 scale_at_acq_start_ = scale_;
1956 offset_at_acq_start_ = offset_;
1957
1958 // Activate "always zoom to fit" if the setting is enabled and we're
1959 // the main view of this session (other trace views may be used for
1960 // zooming and we don't want to mess them up)
1961 bool state = settings.value(GlobalSettings::Key_View_ZoomToFitDuringAcq).toBool();
1962 if (is_main_view_ && state && !restoring_state_) {
1963 always_zoom_to_fit_ = true;
1964 always_zoom_to_fit_changed(always_zoom_to_fit_);
1965 }
1966
1967 // Enable sticky scrolling if the setting is enabled
1968 sticky_scrolling_ = !restoring_state_ &&
1969 settings.value(GlobalSettings::Key_View_StickyScrolling).toBool();
1970
1971 // Reset all traces to segment 0
1972 current_segment_ = 0;
1973 set_current_segment(current_segment_);
1974 }
1975
1976 if (state == Session::Stopped) {
1977 // After acquisition has stopped we need to re-calculate the ticks once
1978 // as it's otherwise done when the user pans or zooms, which is too late
1979 calculate_tick_spacing();
1980
1981 // Reset "always zoom to fit", the acquisition has stopped
1982 if (always_zoom_to_fit_) {
1983 // Perform a final zoom-to-fit before disabling
1984 zoom_fit(always_zoom_to_fit_);
1985 always_zoom_to_fit_ = false;
1986 always_zoom_to_fit_changed(always_zoom_to_fit_);
1987 }
1988
1989 bool zoom_to_fit_after_acq =
1990 settings.value(GlobalSettings::Key_View_ZoomToFitAfterAcq).toBool();
1991
1992 // Only perform zoom-to-fit if the user hasn't altered the viewport and
1993 // we didn't restore settings in the meanwhile
1994 if (zoom_to_fit_after_acq &&
1995 !restoring_state_ &&
1996 (scale_ == scale_at_acq_start_) &&
1997 (sticky_scrolling_ || (offset_ == offset_at_acq_start_))) {
1998 zoom_fit(false); // We're stopped, so the GUI state doesn't matter
1999 }
2000
2001 restoring_state_ = false;
2002 }
2003}
2004
2005void View::on_new_segment(int new_segment_id)
2006{
2007 on_segment_changed(new_segment_id);
2008}
2009
2010void View::on_segment_completed(int segment_id)
2011{
2012 on_segment_changed(segment_id);
2013}
2014
2015void View::on_segment_changed(int segment)
2016{
2017 switch (segment_display_mode_) {
2018 case Trace::ShowLastSegmentOnly:
2019 case Trace::ShowSingleSegmentOnly:
2020 set_current_segment(segment);
2021 break;
2022
2023 case Trace::ShowLastCompleteSegmentOnly:
2024 // Only update if all segments are complete
2025 if (session_.all_segments_complete(segment))
2026 set_current_segment(segment);
2027 break;
2028
2029 case Trace::ShowAllSegments:
2030 case Trace::ShowAccumulatedIntensity:
2031 default:
2032 break;
2033 }
2034}
2035
2036void View::on_settingViewTriggerIsZeroTime_changed(const QVariant new_value)
2037{
2038 (void)new_value;
2039
2040 if (!custom_zero_offset_set_)
2041 reset_zero_position();
2042}
2043
2044void View::perform_delayed_view_update()
2045{
2046 if (always_zoom_to_fit_) {
2047 zoom_fit(true);
2048 } else if (sticky_scrolling_) {
2049 // Make right side of the view sticky
2050 double length = 0;
2051 Timestamp offset;
2052 get_scroll_layout(length, offset);
2053
2054 const QSize areaSize = viewport_->size();
2055 length = max(length - areaSize.width(), 0.0);
2056
2057 set_offset(scale_ * length);
2058 }
2059
2060 determine_time_unit();
2061 update_scroll();
2062 ruler_->update();
2063 viewport_->update();
2064}
2065
2066void View::process_sticky_events()
2067{
2068 if (sticky_events_ & TraceTreeItemHExtentsChanged)
2069 update_layout();
2070 if (sticky_events_ & TraceTreeItemVExtentsChanged) {
2071 restack_all_trace_tree_items();
2072 update_scroll();
2073 }
2074
2075 // Clear the sticky events
2076 sticky_events_ = 0;
2077}
2078
2079} // namespace trace
2080} // namespace views
2081} // namespace pv