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DecodeSignal: Update thread handling to match previous changes
[pulseview.git] / pv / data / signalbase.cpp
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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 * Copyright (C) 2016 Soeren Apel <soeren@apelpie.net>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
efdec55a 18 * along with this program; if not, see <http://www.gnu.org/licenses/>.
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19 */
20
cbd2a2de 21#include "analog.hpp"
12ea3616 22#include "analogsegment.hpp"
aca9aa83 23#include "decode/row.hpp"
cbd2a2de 24#include "logic.hpp"
12ea3616 25#include "logicsegment.hpp"
bf0edd2b 26#include "signalbase.hpp"
cbd2a2de 27#include "signaldata.hpp"
bb7dd726 28
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29#include <QDebug>
30
516b0c41 31#include <extdef.h>
aca9aa83 32#include <pv/session.hpp>
516b0c41 33#include <pv/binding/decoder.hpp>
bf0edd2b 34
cbd2a2de 35using std::dynamic_pointer_cast;
12ea3616 36using std::make_shared;
63253d72 37using std::out_of_range;
bf0edd2b 38using std::shared_ptr;
12ea3616 39using std::tie;
27a3f09b 40using std::unique_lock;
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41
42namespace pv {
43namespace data {
44
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45const QColor SignalBase::AnalogSignalColors[8] =
46{
47 QColor(0xC4, 0xA0, 0x00), // Yellow HSV: 49 / 100 / 77
48 QColor(0x87, 0x20, 0x7A), // Magenta HSV: 308 / 70 / 53
49 QColor(0x20, 0x4A, 0x87), // Blue HSV: 216 / 76 / 53
50 QColor(0x4E, 0x9A, 0x06), // Green HSV: 91 / 96 / 60
51 QColor(0xBF, 0x6E, 0x00), // Orange HSV: 35 / 100 / 75
52 QColor(0x5E, 0x20, 0x80), // Purple HSV: 280 / 75 / 50
53 QColor(0x20, 0x80, 0x7A), // Turqoise HSV: 177 / 75 / 50
54 QColor(0x80, 0x20, 0x24) // Red HSV: 358 / 75 / 50
55};
56
57const QColor SignalBase::LogicSignalColors[10] =
58{
59 QColor(0x16, 0x19, 0x1A), // Black
60 QColor(0x8F, 0x52, 0x02), // Brown
61 QColor(0xCC, 0x00, 0x00), // Red
62 QColor(0xF5, 0x79, 0x00), // Orange
63 QColor(0xED, 0xD4, 0x00), // Yellow
64 QColor(0x73, 0xD2, 0x16), // Green
65 QColor(0x34, 0x65, 0xA4), // Blue
66 QColor(0x75, 0x50, 0x7B), // Violet
67 QColor(0x88, 0x8A, 0x85), // Grey
68 QColor(0xEE, 0xEE, 0xEC), // White
69};
70
71
641574bc 72const int SignalBase::ColorBGAlpha = 8 * 256 / 100;
bcaf0334 73const uint64_t SignalBase::ConversionBlockSize = 4096;
932bc246 74const uint32_t SignalBase::ConversionDelay = 1000; // 1 second
bf0edd2b 75
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76
77SignalGroup::SignalGroup(const QString& name)
78{
79 name_ = name;
80}
81
82void SignalGroup::append_signal(shared_ptr<SignalBase> signal)
83{
84 if (!signal)
85 return;
86
87 signals_.push_back(signal);
88 signal->set_group(this);
89}
90
91void SignalGroup::remove_signal(shared_ptr<SignalBase> signal)
92{
93 if (!signal)
94 return;
95
96 signals_.erase(std::remove_if(signals_.begin(), signals_.end(),
97 [&](shared_ptr<SignalBase> s) { return s == signal; }),
98 signals_.end());
99}
100
101deque<shared_ptr<SignalBase>> SignalGroup::signals() const
102{
103 return signals_;
104}
105
106void SignalGroup::clear()
107{
108 for (shared_ptr<SignalBase> sb : signals_)
109 sb->set_group(nullptr);
110
111 signals_.clear();
112}
113
114const QString SignalGroup::name() const
115{
116 return name_;
117}
118
119
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120SignalBase::SignalBase(shared_ptr<sigrok::Channel> channel, ChannelType channel_type) :
121 channel_(channel),
12ea3616 122 channel_type_(channel_type),
554af71b 123 group_(nullptr),
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124 conversion_type_(NoConversion),
125 min_value_(0),
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126 max_value_(0),
127 error_message_("")
bf0edd2b 128{
999869aa 129 if (channel_) {
050b5a6c 130 internal_name_ = QString::fromStdString(channel_->name());
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131 index_ = channel_->index();
132 }
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133
134 connect(&delayed_conversion_starter_, SIGNAL(timeout()),
135 this, SLOT(on_delayed_conversion_start()));
136 delayed_conversion_starter_.setSingleShot(true);
137 delayed_conversion_starter_.setInterval(ConversionDelay);
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138
139 // Only logic and analog SR channels can have their colors auto-set
140 // because for them, we have an index that can be used
141 if (channel_type == LogicChannel)
142 set_color(LogicSignalColors[index() % countof(LogicSignalColors)]);
143 else if (channel_type == AnalogChannel)
144 set_color(AnalogSignalColors[index() % countof(AnalogSignalColors)]);
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145}
146
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147SignalBase::~SignalBase()
148{
27a3f09b 149 stop_conversion();
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150}
151
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152shared_ptr<sigrok::Channel> SignalBase::channel() const
153{
154 return channel_;
155}
156
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157bool SignalBase::is_generated() const
158{
159 // Only signals associated with a device have a corresponding sigrok channel
160 return channel_ == nullptr;
161}
162
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163bool SignalBase::enabled() const
164{
165 return (channel_) ? channel_->enabled() : true;
166}
167
168void SignalBase::set_enabled(bool value)
169{
170 if (channel_) {
171 channel_->set_enabled(value);
172 enabled_changed(value);
173 }
174}
175
472a80c5 176SignalBase::ChannelType SignalBase::type() const
bf0edd2b 177{
472a80c5 178 return channel_type_;
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179}
180
181unsigned int SignalBase::index() const
182{
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183 return index_;
184}
185
186void SignalBase::set_index(unsigned int index)
187{
188 index_ = index;
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189}
190
191unsigned int SignalBase::logic_bit_index() const
192{
193 if (channel_type_ == LogicChannel)
999869aa 194 return index_;
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195 else
196 return 0;
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197}
198
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199void SignalBase::set_group(SignalGroup* group)
200{
201 group_ = group;
202}
203
204SignalGroup* SignalBase::group() const
205{
206 return group_;
207}
208
209QString SignalBase::name() const
210{
211 return (channel_) ? QString::fromStdString(channel_->name()) : name_;
212}
213
214QString SignalBase::internal_name() const
215{
216 return internal_name_;
217}
218
219void SignalBase::set_internal_name(QString internal_name)
220{
221 internal_name_ = internal_name;
222}
223
224QString SignalBase::display_name() const
225{
226 if ((name() != internal_name_) && (!internal_name_.isEmpty()))
227 return name() + " (" + internal_name_ + ")";
228 else
229 return name();
230}
231
232void SignalBase::set_name(QString name)
233{
234 if (channel_)
235 channel_->set_name(name.toUtf8().constData());
236
237 name_ = name;
238
239 name_changed(name);
240}
241
641574bc 242QColor SignalBase::color() const
bf0edd2b 243{
641574bc 244 return color_;
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245}
246
641574bc 247void SignalBase::set_color(QColor color)
bf0edd2b 248{
641574bc 249 color_ = color;
bf0edd2b 250
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251 bgcolor_ = color;
252 bgcolor_.setAlpha(ColorBGAlpha);
bf0edd2b 253
641574bc 254 color_changed(color);
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255}
256
641574bc 257QColor SignalBase::bgcolor() const
bf0edd2b 258{
641574bc 259 return bgcolor_;
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260}
261
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262QString SignalBase::get_error_message() const
263{
264 return error_message_;
265}
266
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267void SignalBase::set_data(shared_ptr<pv::data::SignalData> data)
268{
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269 if (data_) {
270 disconnect(data.get(), SIGNAL(samples_cleared()),
12ea3616 271 this, SLOT(on_samples_cleared()));
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272 disconnect(data.get(), SIGNAL(samples_added(shared_ptr<Segment>, uint64_t, uint64_t)),
273 this, SLOT(on_samples_added(shared_ptr<Segment>, uint64_t, uint64_t)));
8e15445c 274
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275 shared_ptr<Analog> analog = analog_data();
276 if (analog)
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277 disconnect(analog.get(), SIGNAL(min_max_changed(float, float)),
278 this, SLOT(on_min_max_changed(float, float)));
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279 }
280
cbd2a2de 281 data_ = data;
12ea3616 282
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283 if (data_) {
284 connect(data.get(), SIGNAL(samples_cleared()),
12ea3616 285 this, SLOT(on_samples_cleared()));
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286 connect(data.get(), SIGNAL(samples_added(SharedPtrToSegment, uint64_t, uint64_t)),
287 this, SLOT(on_samples_added(SharedPtrToSegment, uint64_t, uint64_t)));
8e15445c 288
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289 shared_ptr<Analog> analog = analog_data();
290 if (analog)
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291 connect(analog.get(), SIGNAL(min_max_changed(float, float)),
292 this, SLOT(on_min_max_changed(float, float)));
12ea3616 293 }
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294}
295
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296void SignalBase::clear_sample_data()
297{
298 if (analog_data())
299 analog_data()->clear();
300
301 if (logic_data())
302 logic_data()->clear();
303}
304
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305shared_ptr<data::Analog> SignalBase::analog_data() const
306{
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307 if (!data_)
308 return nullptr;
309
4b018bf1 310 return dynamic_pointer_cast<Analog>(data_);
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311}
312
313shared_ptr<data::Logic> SignalBase::logic_data() const
314{
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315 if (!data_)
316 return nullptr;
317
4b018bf1 318 shared_ptr<Logic> result = dynamic_pointer_cast<Logic>(data_);
12ea3616 319
b9cdbe03 320 if (((conversion_type_ == A2LConversionByThreshold) ||
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321 (conversion_type_ == A2LConversionBySchmittTrigger)))
322 result = dynamic_pointer_cast<Logic>(converted_data_);
323
324 return result;
325}
326
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327bool SignalBase::segment_is_complete(uint32_t segment_id) const
328{
329 bool result = true;
330
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331 shared_ptr<Analog> adata = analog_data();
332 if (adata)
558ad6ce 333 {
4b018bf1 334 auto segments = adata->analog_segments();
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335 try {
336 result = segments.at(segment_id)->is_complete();
30677c13 337 } catch (out_of_range&) {
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338 // Do nothing
339 }
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340 } else {
341 shared_ptr<Logic> ldata = logic_data();
342 if (ldata) {
343 shared_ptr<Logic> data = dynamic_pointer_cast<Logic>(data_);
344 auto segments = data->logic_segments();
345 try {
346 result = segments.at(segment_id)->is_complete();
347 } catch (out_of_range&) {
348 // Do nothing
349 }
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350 }
351 }
352
353 return result;
354}
355
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356bool SignalBase::has_samples() const
357{
358 bool result = false;
359
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360 shared_ptr<Analog> adata = analog_data();
361 if (adata)
d13d95b3 362 {
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363 auto segments = adata->analog_segments();
364 if ((segments.size() > 0) && (segments.front()->get_sample_count() > 0))
365 result = true;
366 } else {
367 shared_ptr<Logic> ldata = logic_data();
368 if (ldata) {
369 auto segments = ldata->logic_segments();
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370 if ((segments.size() > 0) && (segments.front()->get_sample_count() > 0))
371 result = true;
372 }
373 }
374
375 return result;
376}
377
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378double SignalBase::get_samplerate() const
379{
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380 shared_ptr<Analog> adata = analog_data();
381 if (adata)
382 return adata->get_samplerate();
383 else {
384 shared_ptr<Logic> ldata = logic_data();
385 if (ldata)
386 return ldata->get_samplerate();
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387 }
388
389 // Default samplerate is 1 Hz
390 return 1.0;
391}
392
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393SignalBase::ConversionType SignalBase::get_conversion_type() const
394{
395 return conversion_type_;
396}
397
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398void SignalBase::set_conversion_type(ConversionType t)
399{
400 if (conversion_type_ != NoConversion) {
27a3f09b 401 stop_conversion();
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402
403 // Discard converted data
404 converted_data_.reset();
1b56c646 405 samples_cleared();
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406 }
407
408 conversion_type_ = t;
409
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410 // Re-create an empty container
411 // so that the signal is recognized as providing logic data
412 // and thus can be assigned to a decoder
413 if (conversion_is_a2l())
414 if (!converted_data_)
415 converted_data_ = make_shared<Logic>(1); // Contains only one channel
416
27a3f09b 417 start_conversion();
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418
419 conversion_type_changed(t);
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420}
421
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422map<QString, QVariant> SignalBase::get_conversion_options() const
423{
424 return conversion_options_;
425}
426
427bool SignalBase::set_conversion_option(QString key, QVariant value)
428{
429 QVariant old_value;
430
431 auto key_iter = conversion_options_.find(key);
432 if (key_iter != conversion_options_.end())
433 old_value = key_iter->second;
434
435 conversion_options_[key] = value;
436
437 return (value != old_value);
438}
439
440vector<double> SignalBase::get_conversion_thresholds(const ConversionType t,
441 const bool always_custom) const
442{
443 vector<double> result;
444 ConversionType conv_type = t;
f0f9c856 445 ConversionPreset preset;
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446
447 // Use currently active conversion if no conversion type was supplied
448 if (conv_type == NoConversion)
449 conv_type = conversion_type_;
450
451 if (always_custom)
f0f9c856 452 preset = NoPreset;
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453 else
454 preset = get_current_conversion_preset();
455
b9cdbe03 456 if (conv_type == A2LConversionByThreshold) {
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457 double thr = 0;
458
f0f9c856 459 if (preset == NoPreset) {
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460 auto thr_iter = conversion_options_.find("threshold_value");
461 if (thr_iter != conversion_options_.end())
462 thr = (thr_iter->second).toDouble();
463 }
464
f0f9c856 465 if (preset == DynamicPreset)
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466 thr = (min_value_ + max_value_) * 0.5; // middle between min and max
467
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468 if ((int)preset == 1) thr = 0.9;
469 if ((int)preset == 2) thr = 1.8;
470 if ((int)preset == 3) thr = 2.5;
471 if ((int)preset == 4) thr = 1.5;
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472
473 result.push_back(thr);
474 }
475
476 if (conv_type == A2LConversionBySchmittTrigger) {
477 double thr_lo = 0, thr_hi = 0;
478
f0f9c856 479 if (preset == NoPreset) {
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480 auto thr_lo_iter = conversion_options_.find("threshold_value_low");
481 if (thr_lo_iter != conversion_options_.end())
482 thr_lo = (thr_lo_iter->second).toDouble();
483
484 auto thr_hi_iter = conversion_options_.find("threshold_value_high");
485 if (thr_hi_iter != conversion_options_.end())
486 thr_hi = (thr_hi_iter->second).toDouble();
487 }
488
f0f9c856 489 if (preset == DynamicPreset) {
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490 const double amplitude = max_value_ - min_value_;
491 const double center = min_value_ + (amplitude / 2);
492 thr_lo = center - (amplitude * 0.15); // 15% margin
493 thr_hi = center + (amplitude * 0.15); // 15% margin
494 }
495
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496 if ((int)preset == 1) { thr_lo = 0.3; thr_hi = 1.2; }
497 if ((int)preset == 2) { thr_lo = 0.7; thr_hi = 2.5; }
498 if ((int)preset == 3) { thr_lo = 1.3; thr_hi = 3.7; }
499 if ((int)preset == 4) { thr_lo = 0.8; thr_hi = 2.0; }
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500
501 result.push_back(thr_lo);
502 result.push_back(thr_hi);
503 }
504
505 return result;
506}
507
508vector< pair<QString, int> > SignalBase::get_conversion_presets() const
509{
510 vector< pair<QString, int> > presets;
511
b9cdbe03 512 if (conversion_type_ == A2LConversionByThreshold) {
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513 // Source: http://www.interfacebus.com/voltage_threshold.html
514 presets.emplace_back(tr("Signal average"), 0);
515 presets.emplace_back(tr("0.9V (for 1.8V CMOS)"), 1);
516 presets.emplace_back(tr("1.8V (for 3.3V CMOS)"), 2);
517 presets.emplace_back(tr("2.5V (for 5.0V CMOS)"), 3);
518 presets.emplace_back(tr("1.5V (for TTL)"), 4);
519 }
520
521 if (conversion_type_ == A2LConversionBySchmittTrigger) {
522 // Source: http://www.interfacebus.com/voltage_threshold.html
523 presets.emplace_back(tr("Signal average +/- 15%"), 0);
524 presets.emplace_back(tr("0.3V/1.2V (for 1.8V CMOS)"), 1);
525 presets.emplace_back(tr("0.7V/2.5V (for 3.3V CMOS)"), 2);
526 presets.emplace_back(tr("1.3V/3.7V (for 5.0V CMOS)"), 3);
527 presets.emplace_back(tr("0.8V/2.0V (for TTL)"), 4);
528 }
529
530 return presets;
531}
532
f0f9c856 533SignalBase::ConversionPreset SignalBase::get_current_conversion_preset() const
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534{
535 auto preset = conversion_options_.find("preset");
536 if (preset != conversion_options_.end())
f0f9c856 537 return (ConversionPreset)((preset->second).toInt());
52c900ac 538
753c8f08 539 return DynamicPreset;
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540}
541
f0f9c856 542void SignalBase::set_conversion_preset(ConversionPreset id)
52c900ac 543{
f0f9c856 544 conversion_options_["preset"] = (int)id;
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545}
546
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547#ifdef ENABLE_DECODE
548bool SignalBase::is_decode_signal() const
549{
47747218 550 return (channel_type_ == DecodeChannel);
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551}
552#endif
cbd2a2de 553
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554void SignalBase::save_settings(QSettings &settings) const
555{
556 settings.setValue("name", name());
557 settings.setValue("enabled", enabled());
6c892c63 558 settings.setValue("color", color().rgba());
12ea3616 559 settings.setValue("conversion_type", (int)conversion_type_);
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560
561 settings.setValue("conv_options", (int)(conversion_options_.size()));
562 int i = 0;
f4ab4b5c 563 for (auto& kvp : conversion_options_) {
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564 settings.setValue(QString("conv_option%1_key").arg(i), kvp.first);
565 settings.setValue(QString("conv_option%1_value").arg(i), kvp.second);
566 i++;
567 }
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568}
569
570void SignalBase::restore_settings(QSettings &settings)
571{
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572 if (settings.contains("name"))
573 set_name(settings.value("name").toString());
52c900ac 574
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575 if (settings.contains("enabled"))
576 set_enabled(settings.value("enabled").toBool());
577
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578 if (settings.contains("color")) {
579 QVariant value = settings.value("color");
580
581 // Workaround for Qt QColor serialization bug on OSX
e590fc9c 582 if ((QMetaType::Type)(value.type()) == QMetaType::QColor)
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583 set_color(value.value<QColor>());
584 else
585 set_color(QColor::fromRgba(value.value<uint32_t>()));
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586
587 // A color with an alpha value of 0 makes the signal marker invisible
588 if (color() == QColor(0, 0, 0, 0))
589 set_color(Qt::gray);
6c892c63 590 }
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591
592 if (settings.contains("conversion_type"))
593 set_conversion_type((ConversionType)settings.value("conversion_type").toInt());
594
595 int conv_options = 0;
596 if (settings.contains("conv_options"))
597 conv_options = settings.value("conv_options").toInt();
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598
599 if (conv_options)
600 for (int i = 0; i < conv_options; i++) {
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601 const QString key_id = QString("conv_option%1_key").arg(i);
602 const QString value_id = QString("conv_option%1_value").arg(i);
603
604 if (settings.contains(key_id) && settings.contains(value_id))
605 conversion_options_[settings.value(key_id).toString()] =
606 settings.value(value_id);
52c900ac 607 }
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608}
609
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610bool SignalBase::conversion_is_a2l() const
611{
4b018bf1 612 return (((conversion_type_ == A2LConversionByThreshold) ||
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613 (conversion_type_ == A2LConversionBySchmittTrigger)));
614}
615
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616void SignalBase::convert_single_segment_range(shared_ptr<AnalogSegment> asegment,
617 shared_ptr<LogicSegment> lsegment, uint64_t start_sample, uint64_t end_sample)
12ea3616 618{
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619 if (end_sample > start_sample) {
620 tie(min_value_, max_value_) = asegment->get_min_max();
27a3f09b 621
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622 // Create sigrok::Analog instance
623 float *asamples = new float[ConversionBlockSize];
27ff2925 624 assert(asamples);
63253d72 625 uint8_t *lsamples = new uint8_t[ConversionBlockSize];
27ff2925 626 assert(lsamples);
27a3f09b 627
63253d72 628 vector<shared_ptr<sigrok::Channel> > channels;
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629 if (channel_)
630 channels.push_back(channel_);
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631
632 vector<const sigrok::QuantityFlag*> mq_flags;
633 const sigrok::Quantity * const mq = sigrok::Quantity::VOLTAGE;
634 const sigrok::Unit * const unit = sigrok::Unit::VOLT;
635
636 shared_ptr<sigrok::Packet> packet =
637 Session::sr_context->create_analog_packet(channels,
638 asamples, ConversionBlockSize, mq, unit, mq_flags);
639
640 shared_ptr<sigrok::Analog> analog =
641 dynamic_pointer_cast<sigrok::Analog>(packet->payload());
12ea3616 642
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643 // Convert
644 uint64_t i = start_sample;
12ea3616 645
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646 if (conversion_type_ == A2LConversionByThreshold) {
647 const double threshold = get_conversion_thresholds()[0];
12ea3616 648
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649 // Convert as many sample blocks as we can
650 while ((end_sample - i) > ConversionBlockSize) {
651 asegment->get_samples(i, i + ConversionBlockSize, asamples);
27a3f09b 652
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653 shared_ptr<sigrok::Logic> logic =
654 analog->get_logic_via_threshold(threshold, lsamples);
419ec4e1 655
63253d72 656 lsegment->append_payload(logic->data_pointer(), logic->data_length());
7f894d95 657 samples_added(lsegment->segment_id(), i, i + ConversionBlockSize);
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658 i += ConversionBlockSize;
659 }
419ec4e1 660
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661 // Re-create sigrok::Analog and convert remaining samples
662 packet = Session::sr_context->create_analog_packet(channels,
663 asamples, end_sample - i, mq, unit, mq_flags);
419ec4e1 664
63253d72 665 analog = dynamic_pointer_cast<sigrok::Analog>(packet->payload());
27a3f09b 666
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667 asegment->get_samples(i, end_sample, asamples);
668 shared_ptr<sigrok::Logic> logic =
669 analog->get_logic_via_threshold(threshold, lsamples);
670 lsegment->append_payload(logic->data_pointer(), logic->data_length());
7f894d95 671 samples_added(lsegment->segment_id(), i, end_sample);
63253d72 672 }
27a3f09b 673
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674 if (conversion_type_ == A2LConversionBySchmittTrigger) {
675 const vector<double> thresholds = get_conversion_thresholds();
676 const double lo_thr = thresholds[0];
677 const double hi_thr = thresholds[1];
27a3f09b 678
63253d72 679 uint8_t state = 0; // TODO Use value of logic sample n-1 instead of 0
419ec4e1 680
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681 // Convert as many sample blocks as we can
682 while ((end_sample - i) > ConversionBlockSize) {
683 asegment->get_samples(i, i + ConversionBlockSize, asamples);
419ec4e1 684
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685 shared_ptr<sigrok::Logic> logic =
686 analog->get_logic_via_schmitt_trigger(lo_thr, hi_thr,
687 &state, lsamples);
419ec4e1 688
63253d72 689 lsegment->append_payload(logic->data_pointer(), logic->data_length());
7f894d95 690 samples_added(lsegment->segment_id(), i, i + ConversionBlockSize);
144e72c9 691
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692 i += ConversionBlockSize;
693 }
419ec4e1 694
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695 // Re-create sigrok::Analog and convert remaining samples
696 packet = Session::sr_context->create_analog_packet(channels,
697 asamples, end_sample - i, mq, unit, mq_flags);
419ec4e1 698
63253d72 699 analog = dynamic_pointer_cast<sigrok::Analog>(packet->payload());
27a3f09b 700
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701 asegment->get_samples(i, end_sample, asamples);
702 shared_ptr<sigrok::Logic> logic =
703 analog->get_logic_via_schmitt_trigger(lo_thr, hi_thr,
704 &state, lsamples);
705 lsegment->append_payload(logic->data_pointer(), logic->data_length());
7f894d95 706 samples_added(lsegment->segment_id(), i, end_sample);
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707 }
708
709 // If acquisition is ongoing, start-/endsample may have changed
710 end_sample = asegment->get_sample_count();
711
712 delete[] lsamples;
713 delete[] asamples;
714 }
715}
52c900ac 716
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717void SignalBase::convert_single_segment(shared_ptr<AnalogSegment> asegment,
718 shared_ptr<LogicSegment> lsegment)
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719{
720 uint64_t start_sample, end_sample, old_end_sample;
721 start_sample = end_sample = 0;
722 bool complete_state, old_complete_state;
723
724 start_sample = lsegment->get_sample_count();
725 end_sample = asegment->get_sample_count();
726 complete_state = asegment->is_complete();
727
728 // Don't do anything if the segment is still being filled and the sample count is too small
729 if ((!complete_state) && (end_sample - start_sample < ConversionBlockSize))
730 return;
731
732 do {
733 convert_single_segment_range(asegment, lsegment, start_sample, end_sample);
734
735 old_end_sample = end_sample;
736 old_complete_state = complete_state;
737
738 start_sample = lsegment->get_sample_count();
739 end_sample = asegment->get_sample_count();
740 complete_state = asegment->is_complete();
741
742 // If the segment has been incomplete when we were called and has been
743 // completed in the meanwhile, we convert the remaining samples as well.
744 // Also, if a sufficient number of samples was added in the meanwhile,
745 // we do another round of sample conversion.
746 } while ((complete_state != old_complete_state) ||
747 (end_sample - old_end_sample >= ConversionBlockSize));
748}
749
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750void SignalBase::conversion_thread_proc()
751{
752 shared_ptr<Analog> analog_data;
27a3f09b 753
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754 if (conversion_is_a2l()) {
755 analog_data = dynamic_pointer_cast<Analog>(data_);
419ec4e1 756
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757 if (analog_data->analog_segments().size() == 0) {
758 unique_lock<mutex> input_lock(conversion_input_mutex_);
759 conversion_input_cond_.wait(input_lock);
760 }
419ec4e1 761
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762 } else
763 // Currently, we only handle A2L conversions
764 return;
419ec4e1 765
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766 // If we had to wait for input data, we may have been notified to terminate
767 if (conversion_interrupt_)
768 return;
769
63253d72 770 uint32_t segment_id = 0;
27a3f09b 771
eb8f22c0 772 shared_ptr<AnalogSegment> asegment = analog_data->analog_segments().front();
63253d72 773 assert(asegment);
419ec4e1 774
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775 const shared_ptr<Logic> logic_data = dynamic_pointer_cast<Logic>(converted_data_);
776 assert(logic_data);
419ec4e1 777
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778 // Create the initial logic data segment if needed
779 if (logic_data->logic_segments().size() == 0) {
780 shared_ptr<LogicSegment> new_segment =
85a70280 781 make_shared<LogicSegment>(*logic_data.get(), 0, 1, asegment->samplerate());
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782 logic_data->push_segment(new_segment);
783 }
27a3f09b 784
eb8f22c0 785 shared_ptr<LogicSegment> lsegment = logic_data->logic_segments().front();
63253d72 786 assert(lsegment);
b82243f7 787
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788 do {
789 convert_single_segment(asegment, lsegment);
790
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791 // Only advance to next segment if the current input segment is complete
792 if (asegment->is_complete() &&
793 analog_data->analog_segments().size() > logic_data->logic_segments().size()) {
144e72c9 794
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795 // There are more segments to process
796 segment_id++;
797
798 try {
eb8f22c0 799 asegment = analog_data->analog_segments().at(segment_id);
30677c13 800 } catch (out_of_range&) {
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801 qDebug() << "Conversion error for" << name() << ": no analog segment" \
802 << segment_id << ", segments size is" << analog_data->analog_segments().size();
803 return;
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804 }
805
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806 shared_ptr<LogicSegment> new_segment = make_shared<LogicSegment>(
807 *logic_data.get(), segment_id, 1, asegment->samplerate());
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808 logic_data->push_segment(new_segment);
809
eb8f22c0 810 lsegment = logic_data->logic_segments().back();
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811 }
812
813 // No more samples/segments to process, wait for data or interrupt
814 if (!conversion_interrupt_) {
815 unique_lock<mutex> input_lock(conversion_input_mutex_);
816 conversion_input_cond_.wait(input_lock);
12ea3616 817 }
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818 } while (!conversion_interrupt_);
819}
12ea3616 820
932bc246 821void SignalBase::start_conversion(bool delayed_start)
27a3f09b 822{
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823 if (delayed_start) {
824 delayed_conversion_starter_.start();
825 return;
826 }
827
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828 stop_conversion();
829
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830 if (converted_data_)
831 converted_data_->clear();
144e72c9 832
8d3c0f7a 833 samples_cleared();
52c900ac 834
63253d72 835 conversion_interrupt_ = false;
144e72c9 836 conversion_thread_ = std::thread(&SignalBase::conversion_thread_proc, this);
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837}
838
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839void SignalBase::set_error_message(QString msg)
840{
841 error_message_ = msg;
842 // TODO Emulate noquote()
843 qDebug().nospace() << name() << ": " << msg;
844
845 error_message_changed(msg);
846}
847
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848void SignalBase::stop_conversion()
849{
850 // Stop conversion so we can restart it from the beginning
851 conversion_interrupt_ = true;
852 conversion_input_cond_.notify_one();
853 if (conversion_thread_.joinable())
854 conversion_thread_.join();
855}
856
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857void SignalBase::on_samples_cleared()
858{
859 if (converted_data_)
860 converted_data_->clear();
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861
862 samples_cleared();
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863}
864
720f4762 865void SignalBase::on_samples_added(SharedPtrToSegment segment, uint64_t start_sample,
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866 uint64_t end_sample)
867{
12ea3616 868 if (conversion_type_ != NoConversion) {
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869 if (conversion_thread_.joinable()) {
870 // Notify the conversion thread since it's running
871 conversion_input_cond_.notify_one();
872 } else {
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873 // Start the conversion thread unless the delay timer is running
874 if (!delayed_conversion_starter_.isActive())
875 start_conversion();
27a3f09b 876 }
12ea3616 877 }
eae3bbbb 878
1f3033cb 879 samples_added(segment->segment_id(), start_sample, end_sample);
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880}
881
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882void SignalBase::on_min_max_changed(float min, float max)
883{
f0f9c856 884 // Restart conversion if one is enabled and uses a calculated threshold
8e15445c 885 if ((conversion_type_ != NoConversion) &&
f0f9c856 886 (get_current_conversion_preset() == DynamicPreset))
932bc246 887 start_conversion(true);
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888
889 min_max_changed(min, max);
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890}
891
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892void SignalBase::on_capture_state_changed(int state)
893{
27a3f09b 894 if (state == Session::Running) {
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895 // Restart conversion if one is enabled
896 if (conversion_type_ != NoConversion)
27a3f09b 897 start_conversion();
12ea3616 898 }
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899}
900
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901void SignalBase::on_delayed_conversion_start()
902{
903 start_conversion();
904}
905
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906} // namespace data
907} // namespace pv