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Introduce pv::data::SignalBase
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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, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19 */
20
21#include <extdef.h>
22
23#include <cassert>
24#include <cmath>
25#include <cstdlib>
26#include <limits>
27
28#include <QApplication>
29#include <QComboBox>
30#include <QFormLayout>
31#include <QGridLayout>
32#include <QLabel>
33#include <QSpinBox>
34#include <QString>
35
36#include "analogsignal.hpp"
37#include "pv/data/analog.hpp"
38#include "pv/data/analogsegment.hpp"
39#include "pv/data/signalbase.hpp"
40#include "pv/view/view.hpp"
41
42#include <libsigrokcxx/libsigrokcxx.hpp>
43
44using std::max;
45using std::make_pair;
46using std::min;
47using std::shared_ptr;
48using std::deque;
49
50namespace pv {
51namespace view {
52
53const QColor AnalogSignal::SignalColours[4] = {
54 QColor(0xC4, 0xA0, 0x00), // Yellow
55 QColor(0x87, 0x20, 0x7A), // Magenta
56 QColor(0x20, 0x4A, 0x87), // Blue
57 QColor(0x4E, 0x9A, 0x06) // Green
58};
59
60const QColor AnalogSignal::GridMajorColor = QColor(0, 0, 0, 40*256/100);
61const QColor AnalogSignal::GridMinorColor = QColor(0, 0, 0, 20*256/100);
62
63const float AnalogSignal::EnvelopeThreshold = 256.0f;
64
65const int AnalogSignal::MaximumVDivs = 10;
66const int AnalogSignal::MinScaleIndex = -6;
67const int AnalogSignal::MaxScaleIndex = 7;
68
69const int AnalogSignal::InfoTextMarginRight = 20;
70const int AnalogSignal::InfoTextMarginBottom = 5;
71
72AnalogSignal::AnalogSignal(
73 pv::Session &session,
74 shared_ptr<data::SignalBase> channel,
75 shared_ptr<data::Analog> data) :
76 Signal(session, channel),
77 data_(data),
78 scale_index_(4), // 20 per div
79 scale_index_drag_offset_(0),
80 div_height_(3 * QFontMetrics(QApplication::font()).height()),
81 vdivs_(1),
82 resolution_(0)
83{
84 channel_->set_colour(SignalColours[channel_->index() % countof(SignalColours)]);
85 update_scale();
86}
87
88shared_ptr<pv::data::SignalData> AnalogSignal::data() const
89{
90 return data_;
91}
92
93shared_ptr<pv::data::Analog> AnalogSignal::analog_data() const
94{
95 return data_;
96}
97
98std::pair<int, int> AnalogSignal::v_extents() const
99{
100 const int h = vdivs_ * div_height_;
101 return make_pair(-h, h);
102}
103
104int AnalogSignal::scale_handle_offset() const
105{
106 const int h = vdivs_ * div_height_;
107
108 return ((scale_index_drag_offset_ - scale_index_) *
109 h / 4) - h / 2;
110}
111
112void AnalogSignal::scale_handle_dragged(int offset)
113{
114 const int h = vdivs_ * div_height_;
115
116 scale_index_ = scale_index_drag_offset_ -
117 (offset + h / 2) / (h / 4);
118
119 update_scale();
120}
121
122void AnalogSignal::scale_handle_drag_release()
123{
124 scale_index_drag_offset_ = scale_index_;
125 update_scale();
126}
127
128void AnalogSignal::paint_back(QPainter &p, const ViewItemPaintParams &pp)
129{
130 if (channel_->enabled()) {
131 Trace::paint_back(p, pp);
132 paint_axis(p, pp, get_visual_y());
133 }
134}
135
136void AnalogSignal::paint_mid(QPainter &p, const ViewItemPaintParams &pp)
137{
138 assert(data_);
139 assert(owner_);
140
141 const int y = get_visual_y();
142
143 if (!channel_->enabled())
144 return;
145
146 paint_grid(p, y, pp.left(), pp.right());
147
148 const deque< shared_ptr<pv::data::AnalogSegment> > &segments =
149 data_->analog_segments();
150 if (segments.empty())
151 return;
152
153 const shared_ptr<pv::data::AnalogSegment> &segment =
154 segments.front();
155
156 const double pixels_offset = pp.pixels_offset();
157 const double samplerate = max(1.0, segment->samplerate());
158 const pv::util::Timestamp& start_time = segment->start_time();
159 const int64_t last_sample = segment->get_sample_count() - 1;
160 const double samples_per_pixel = samplerate * pp.scale();
161 const pv::util::Timestamp start = samplerate * (pp.offset() - start_time);
162 const pv::util::Timestamp end = start + samples_per_pixel * pp.width();
163
164 const int64_t start_sample = min(max(floor(start).convert_to<int64_t>(),
165 (int64_t)0), last_sample);
166 const int64_t end_sample = min(max((ceil(end) + 1).convert_to<int64_t>(),
167 (int64_t)0), last_sample);
168
169 if (samples_per_pixel < EnvelopeThreshold)
170 paint_trace(p, segment, y, pp.left(),
171 start_sample, end_sample,
172 pixels_offset, samples_per_pixel);
173 else
174 paint_envelope(p, segment, y, pp.left(),
175 start_sample, end_sample,
176 pixels_offset, samples_per_pixel);
177}
178
179void AnalogSignal::paint_fore(QPainter &p, const ViewItemPaintParams &pp)
180{
181 if (!enabled())
182 return;
183
184 const int y = get_visual_y();
185
186 // Show the info section on the right side of the trace
187 const QString infotext = QString("%1 V/div").arg(resolution_);
188
189 p.setPen(channel_->colour());
190 p.setFont(QApplication::font());
191
192 const QRectF bounding_rect = QRectF(pp.left(),
193 y + v_extents().first,
194 pp.width() - InfoTextMarginRight,
195 v_extents().second - v_extents().first - InfoTextMarginBottom);
196
197 p.drawText(bounding_rect, Qt::AlignRight | Qt::AlignBottom, infotext);
198}
199
200void AnalogSignal::paint_grid(QPainter &p, int y, int left, int right)
201{
202 p.setRenderHint(QPainter::Antialiasing, false);
203
204 p.setPen(QPen(GridMajorColor, 1, Qt::DashLine));
205 for (int i = 1; i <= vdivs_; i++) {
206 const float dy = i * div_height_;
207 p.drawLine(QLineF(left, y - dy, right, y - dy));
208 p.drawLine(QLineF(left, y + dy, right, y + dy));
209 }
210
211 p.setPen(QPen(GridMinorColor, 1, Qt::DashLine));
212 for (int i = 0; i < vdivs_; i++) {
213 const float dy = i * div_height_;
214 const float dy25 = dy + (0.25 * div_height_);
215 const float dy50 = dy + (0.50 * div_height_);
216 const float dy75 = dy + (0.75 * div_height_);
217 p.drawLine(QLineF(left, y - dy25, right, y - dy25));
218 p.drawLine(QLineF(left, y + dy25, right, y + dy25));
219 p.drawLine(QLineF(left, y - dy50, right, y - dy50));
220 p.drawLine(QLineF(left, y + dy50, right, y + dy50));
221 p.drawLine(QLineF(left, y - dy75, right, y - dy75));
222 p.drawLine(QLineF(left, y + dy75, right, y + dy75));
223 }
224
225 p.setRenderHint(QPainter::Antialiasing, true);
226}
227
228void AnalogSignal::paint_trace(QPainter &p,
229 const shared_ptr<pv::data::AnalogSegment> &segment,
230 int y, int left, const int64_t start, const int64_t end,
231 const double pixels_offset, const double samples_per_pixel)
232{
233 const int64_t sample_count = end - start;
234
235 const float *const samples = segment->get_samples(start, end);
236 assert(samples);
237
238 p.setPen(channel_->colour());
239
240 QPointF *points = new QPointF[sample_count];
241 QPointF *point = points;
242
243 for (int64_t sample = start; sample != end; sample++) {
244 const float x = (sample / samples_per_pixel -
245 pixels_offset) + left;
246 *point++ = QPointF(x,
247 y - samples[sample - start] * scale_);
248 }
249
250 p.drawPolyline(points, point - points);
251
252 delete[] samples;
253 delete[] points;
254}
255
256void AnalogSignal::paint_envelope(QPainter &p,
257 const shared_ptr<pv::data::AnalogSegment> &segment,
258 int y, int left, const int64_t start, const int64_t end,
259 const double pixels_offset, const double samples_per_pixel)
260{
261 using pv::data::AnalogSegment;
262
263 AnalogSegment::EnvelopeSection e;
264 segment->get_envelope_section(e, start, end, samples_per_pixel);
265
266 if (e.length < 2)
267 return;
268
269 p.setPen(QPen(Qt::NoPen));
270 p.setBrush(channel_->colour());
271
272 QRectF *const rects = new QRectF[e.length];
273 QRectF *rect = rects;
274
275 for (uint64_t sample = 0; sample < e.length-1; sample++) {
276 const float x = ((e.scale * sample + e.start) /
277 samples_per_pixel - pixels_offset) + left;
278 const AnalogSegment::EnvelopeSample *const s =
279 e.samples + sample;
280
281 // We overlap this sample with the next so that vertical
282 // gaps do not appear during steep rising or falling edges
283 const float b = y - max(s->max, (s+1)->min) * scale_;
284 const float t = y - min(s->min, (s+1)->max) * scale_;
285
286 float h = b - t;
287 if (h >= 0.0f && h <= 1.0f)
288 h = 1.0f;
289 if (h <= 0.0f && h >= -1.0f)
290 h = -1.0f;
291
292 *rect++ = QRectF(x, t, 1.0f, h);
293 }
294
295 p.drawRects(rects, e.length);
296
297 delete[] rects;
298 delete[] e.samples;
299}
300
301float AnalogSignal::get_resolution(int scale_index)
302{
303 const float seq[] = {1.0f, 2.0f, 5.0f};
304
305 const int offset = std::numeric_limits<int>::max() / (2 * countof(seq));
306 const std::div_t d = std::div(
307 (int)(scale_index + countof(seq) * offset),
308 countof(seq));
309
310 return powf(10.0f, d.quot - offset) * seq[d.rem];
311}
312
313void AnalogSignal::update_scale()
314{
315 resolution_ = get_resolution(scale_index_);
316 scale_ = div_height_ / resolution_;
317}
318
319void AnalogSignal::populate_popup_form(QWidget *parent, QFormLayout *form)
320{
321 // Add the standard options
322 Signal::populate_popup_form(parent, form);
323
324 QFormLayout *const layout = new QFormLayout;
325
326 // Add the number of vdivs
327 QSpinBox *vdiv_sb = new QSpinBox(parent);
328 vdiv_sb->setRange(1, MaximumVDivs);
329 vdiv_sb->setValue(vdivs_);
330 connect(vdiv_sb, SIGNAL(valueChanged(int)),
331 this, SLOT(on_vdivs_changed(int)));
332 layout->addRow(tr("Number of vertical divs"), vdiv_sb);
333
334 // Add the vertical resolution
335 resolution_cb_ = new QComboBox(parent);
336
337 for (int i = MinScaleIndex; i < MaxScaleIndex; i++) {
338 const QString label = QString("%1").arg(get_resolution(i));
339 resolution_cb_->insertItem(0, label, QVariant(i));
340 }
341
342 const int cur_idx = resolution_cb_->findData(QVariant(scale_index_));
343 resolution_cb_->setCurrentIndex(cur_idx);
344
345 connect(resolution_cb_, SIGNAL(currentIndexChanged(int)),
346 this, SLOT(on_resolution_changed(int)));
347
348 QGridLayout *const vdiv_layout = new QGridLayout;
349 QLabel *const vdiv_unit = new QLabel(tr("V/div"));
350 vdiv_layout->addWidget(resolution_cb_, 0, 0);
351 vdiv_layout->addWidget(vdiv_unit, 0, 1);
352
353 layout->addRow(tr("Vertical resolution"), vdiv_layout);
354
355 form->addRow(layout);
356}
357
358void AnalogSignal::on_vdivs_changed(int vdivs)
359{
360 vdivs_ = vdivs;
361
362 if (owner_) {
363 // Call order is important, otherwise the lazy event handler won't work
364 owner_->extents_changed(false, true);
365 owner_->row_item_appearance_changed(false, true);
366 }
367}
368
369void AnalogSignal::on_resolution_changed(int index)
370{
371 scale_index_ = resolution_cb_->itemData(index).toInt();
372 update_scale();
373
374 if (owner_)
375 owner_->row_item_appearance_changed(false, true);
376}
377
378} // namespace view
379} // namespace pv