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1/*
2 * This file is part of the PulseView project.
3 *
4 * Copyright (C) 2012-14 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#ifdef ENABLE_DECODE
22#include <libsigrokdecode/libsigrokdecode.h>
23#endif
24
25#include "session.hpp"
26
27#include "devicemanager.hpp"
28
29#include "data/analog.hpp"
30#include "data/analogsegment.hpp"
31#include "data/decoderstack.hpp"
32#include "data/logic.hpp"
33#include "data/logicsegment.hpp"
34#include "data/decode/decoder.hpp"
35
36#include "devices/hardwaredevice.hpp"
37#include "devices/sessionfile.hpp"
38
39#include "view/analogsignal.hpp"
40#include "view/decodetrace.hpp"
41#include "view/logicsignal.hpp"
42
43#include <cassert>
44#include <mutex>
45#include <stdexcept>
46
47#include <sys/stat.h>
48
49#include <QDebug>
50
51#include <libsigrokcxx/libsigrokcxx.hpp>
52
53using boost::shared_lock;
54using boost::shared_mutex;
55using boost::unique_lock;
56
57using std::dynamic_pointer_cast;
58using std::function;
59using std::lock_guard;
60using std::list;
61using std::map;
62using std::mutex;
63using std::recursive_mutex;
64using std::set;
65using std::shared_ptr;
66using std::string;
67using std::unordered_set;
68using std::vector;
69
70using sigrok::Analog;
71using sigrok::Channel;
72using sigrok::ChannelType;
73using sigrok::ConfigKey;
74using sigrok::DatafeedCallbackFunction;
75using sigrok::Error;
76using sigrok::Header;
77using sigrok::Logic;
78using sigrok::Meta;
79using sigrok::Packet;
80using sigrok::PacketPayload;
81using sigrok::Session;
82using sigrok::SessionDevice;
83
84using Glib::VariantBase;
85using Glib::Variant;
86
87namespace pv {
88Session::Session(DeviceManager &device_manager) :
89 device_manager_(device_manager),
90 capture_state_(Stopped),
91 cur_samplerate_(0)
92{
93}
94
95Session::~Session()
96{
97 // Stop and join to the thread
98 stop_capture();
99}
100
101DeviceManager& Session::device_manager()
102{
103 return device_manager_;
104}
105
106const DeviceManager& Session::device_manager() const
107{
108 return device_manager_;
109}
110
111shared_ptr<sigrok::Session> Session::session() const
112{
113 if (!device_)
114 return shared_ptr<sigrok::Session>();
115 return device_->session();
116}
117
118shared_ptr<devices::Device> Session::device() const
119{
120 return device_;
121}
122
123void Session::set_device(shared_ptr<devices::Device> device)
124{
125 assert(device);
126
127 // Ensure we are not capturing before setting the device
128 stop_capture();
129
130 device_ = std::move(device);
131 device_->create();
132 device_->session()->add_datafeed_callback([=]
133 (shared_ptr<sigrok::Device> device, shared_ptr<Packet> packet) {
134 data_feed_in(device, packet);
135 });
136 update_signals();
137
138 decode_traces_.clear();
139
140 device_selected();
141}
142
143void Session::set_default_device()
144{
145 const list< shared_ptr<devices::HardwareDevice> > &devices =
146 device_manager_.devices();
147
148 if (devices.empty())
149 return;
150
151 // Try and find the demo device and select that by default
152 const auto iter = std::find_if(devices.begin(), devices.end(),
153 [] (const shared_ptr<devices::HardwareDevice> &d) {
154 return d->hardware_device()->driver()->name() ==
155 "demo"; });
156 set_device((iter == devices.end()) ? devices.front() : *iter);
157}
158
159Session::capture_state Session::get_capture_state() const
160{
161 lock_guard<mutex> lock(sampling_mutex_);
162 return capture_state_;
163}
164
165void Session::start_capture(function<void (const QString)> error_handler)
166{
167 stop_capture();
168
169 // Check that at least one channel is enabled
170 assert(device_);
171 const shared_ptr<sigrok::Device> sr_dev = device_->device();
172 if (sr_dev) {
173 const auto channels = sr_dev->channels();
174 if (!std::any_of(channels.begin(), channels.end(),
175 [](shared_ptr<Channel> channel) {
176 return channel->enabled(); })) {
177 error_handler(tr("No channels enabled."));
178 return;
179 }
180 }
181
182 // Clear signal data
183 for (const shared_ptr<data::SignalData> d : get_data())
184 d->clear();
185
186 // Begin the session
187 sampling_thread_ = std::thread(
188 &Session::sample_thread_proc, this, device_,
189 error_handler);
190}
191
192void Session::stop_capture()
193{
194 if (get_capture_state() != Stopped)
195 device_->stop();
196
197 // Check that sampling stopped
198 if (sampling_thread_.joinable())
199 sampling_thread_.join();
200}
201
202set< shared_ptr<data::SignalData> > Session::get_data() const
203{
204 shared_lock<shared_mutex> lock(signals_mutex_);
205 set< shared_ptr<data::SignalData> > data;
206 for (const shared_ptr<view::Signal> sig : signals_) {
207 assert(sig);
208 data.insert(sig->data());
209 }
210
211 return data;
212}
213
214boost::shared_mutex& Session::signals_mutex() const
215{
216 return signals_mutex_;
217}
218
219const unordered_set< shared_ptr<view::Signal> >& Session::signals() const
220{
221 return signals_;
222}
223
224#ifdef ENABLE_DECODE
225bool Session::add_decoder(srd_decoder *const dec)
226{
227 map<const srd_channel*, shared_ptr<view::LogicSignal> > channels;
228 shared_ptr<data::DecoderStack> decoder_stack;
229
230 try
231 {
232 lock_guard<boost::shared_mutex> lock(signals_mutex_);
233
234 // Create the decoder
235 decoder_stack = shared_ptr<data::DecoderStack>(
236 new data::DecoderStack(*this, dec));
237
238 // Make a list of all the channels
239 std::vector<const srd_channel*> all_channels;
240 for (const GSList *i = dec->channels; i; i = i->next)
241 all_channels.push_back((const srd_channel*)i->data);
242 for (const GSList *i = dec->opt_channels; i; i = i->next)
243 all_channels.push_back((const srd_channel*)i->data);
244
245 // Auto select the initial channels
246 for (const srd_channel *pdch : all_channels)
247 for (shared_ptr<view::Signal> s : signals_)
248 {
249 shared_ptr<view::LogicSignal> l =
250 dynamic_pointer_cast<view::LogicSignal>(s);
251 if (l && QString::fromUtf8(pdch->name).
252 toLower().contains(
253 l->name().toLower()))
254 channels[pdch] = l;
255 }
256
257 assert(decoder_stack);
258 assert(!decoder_stack->stack().empty());
259 assert(decoder_stack->stack().front());
260 decoder_stack->stack().front()->set_channels(channels);
261
262 // Create the decode signal
263 shared_ptr<view::DecodeTrace> d(
264 new view::DecodeTrace(*this, decoder_stack,
265 decode_traces_.size()));
266 decode_traces_.push_back(d);
267 }
268 catch(std::runtime_error e)
269 {
270 return false;
271 }
272
273 signals_changed();
274
275 // Do an initial decode
276 decoder_stack->begin_decode();
277
278 return true;
279}
280
281vector< shared_ptr<view::DecodeTrace> > Session::get_decode_signals() const
282{
283 shared_lock<shared_mutex> lock(signals_mutex_);
284 return decode_traces_;
285}
286
287void Session::remove_decode_signal(view::DecodeTrace *signal)
288{
289 for (auto i = decode_traces_.begin(); i != decode_traces_.end(); i++)
290 if ((*i).get() == signal)
291 {
292 decode_traces_.erase(i);
293 signals_changed();
294 return;
295 }
296}
297#endif
298
299void Session::set_capture_state(capture_state state)
300{
301 lock_guard<mutex> lock(sampling_mutex_);
302 const bool changed = capture_state_ != state;
303 capture_state_ = state;
304 if (changed)
305 capture_state_changed(state);
306}
307
308void Session::update_signals()
309{
310 assert(device_);
311
312 lock_guard<recursive_mutex> lock(data_mutex_);
313
314 const shared_ptr<sigrok::Device> sr_dev = device_->device();
315 if (!sr_dev) {
316 signals_.clear();
317 logic_data_.reset();
318 return;
319 }
320
321 // Detect what data types we will receive
322 auto channels = sr_dev->channels();
323 unsigned int logic_channel_count = std::count_if(
324 channels.begin(), channels.end(),
325 [] (shared_ptr<Channel> channel) {
326 return channel->type() == ChannelType::LOGIC; });
327
328 // Create data containers for the logic data segments
329 {
330 lock_guard<recursive_mutex> data_lock(data_mutex_);
331
332 if (logic_channel_count == 0) {
333 logic_data_.reset();
334 } else if (!logic_data_ ||
335 logic_data_->num_channels() != logic_channel_count) {
336 logic_data_.reset(new data::Logic(
337 logic_channel_count));
338 assert(logic_data_);
339 }
340 }
341
342 // Make the Signals list
343 {
344 unique_lock<shared_mutex> lock(signals_mutex_);
345
346 unordered_set< shared_ptr<view::Signal> > prev_sigs(signals_);
347 signals_.clear();
348
349 for (auto channel : sr_dev->channels()) {
350 shared_ptr<view::Signal> signal;
351
352 // Find the channel in the old signals
353 const auto iter = std::find_if(
354 prev_sigs.cbegin(), prev_sigs.cend(),
355 [&](const shared_ptr<view::Signal> &s) {
356 return s->channel() == channel;
357 });
358 if (iter != prev_sigs.end()) {
359 // Copy the signal from the old set to the new
360 signal = *iter;
361 auto logic_signal = dynamic_pointer_cast<
362 view::LogicSignal>(signal);
363 if (logic_signal)
364 logic_signal->set_logic_data(
365 logic_data_);
366 } else {
367 // Create a new signal
368 switch(channel->type()->id()) {
369 case SR_CHANNEL_LOGIC:
370 signal = shared_ptr<view::Signal>(
371 new view::LogicSignal(*this,
372 device_, channel,
373 logic_data_));
374 break;
375
376 case SR_CHANNEL_ANALOG:
377 {
378 shared_ptr<data::Analog> data(
379 new data::Analog());
380 signal = shared_ptr<view::Signal>(
381 new view::AnalogSignal(
382 *this, channel, data));
383 break;
384 }
385
386 default:
387 assert(0);
388 break;
389 }
390 }
391
392 assert(signal);
393 signals_.insert(signal);
394 }
395 }
396
397 signals_changed();
398}
399
400shared_ptr<view::Signal> Session::signal_from_channel(
401 shared_ptr<Channel> channel) const
402{
403 lock_guard<boost::shared_mutex> lock(signals_mutex_);
404 for (shared_ptr<view::Signal> sig : signals_) {
405 assert(sig);
406 if (sig->channel() == channel)
407 return sig;
408 }
409 return shared_ptr<view::Signal>();
410}
411
412void Session::sample_thread_proc(shared_ptr<devices::Device> device,
413 function<void (const QString)> error_handler)
414{
415 assert(device);
416 assert(error_handler);
417
418 (void)device;
419
420 cur_samplerate_ = device_->read_config<uint64_t>(ConfigKey::SAMPLERATE);
421
422 out_of_memory_ = false;
423
424 try {
425 device_->start();
426 } catch(Error e) {
427 error_handler(e.what());
428 return;
429 }
430
431 set_capture_state(device_->session()->trigger() ?
432 AwaitingTrigger : Running);
433
434 device_->run();
435 set_capture_state(Stopped);
436
437 // Confirm that SR_DF_END was received
438 if (cur_logic_segment_)
439 {
440 qDebug("SR_DF_END was not received.");
441 assert(0);
442 }
443
444 if (out_of_memory_)
445 error_handler(tr("Out of memory, acquisition stopped."));
446}
447
448void Session::feed_in_header()
449{
450 cur_samplerate_ = device_->read_config<uint64_t>(ConfigKey::SAMPLERATE);
451}
452
453void Session::feed_in_meta(shared_ptr<Meta> meta)
454{
455 for (auto entry : meta->config()) {
456 switch (entry.first->id()) {
457 case SR_CONF_SAMPLERATE:
458 /// @todo handle samplerate changes
459 break;
460 default:
461 // Unknown metadata is not an error.
462 break;
463 }
464 }
465
466 signals_changed();
467}
468
469void Session::feed_in_frame_begin()
470{
471 if (cur_logic_segment_ || !cur_analog_segments_.empty())
472 frame_began();
473}
474
475void Session::feed_in_logic(shared_ptr<Logic> logic)
476{
477 lock_guard<recursive_mutex> lock(data_mutex_);
478
479 const size_t sample_count = logic->data_length() / logic->unit_size();
480
481 if (!logic_data_)
482 {
483 // The only reason logic_data_ would not have been created is
484 // if it was not possible to determine the signals when the
485 // device was created.
486 update_signals();
487 }
488
489 if (!cur_logic_segment_)
490 {
491 // This could be the first packet after a trigger
492 set_capture_state(Running);
493
494 // Create a new data segment
495 cur_logic_segment_ = shared_ptr<data::LogicSegment>(
496 new data::LogicSegment(
497 logic, cur_samplerate_, sample_count));
498 logic_data_->push_segment(cur_logic_segment_);
499
500 // @todo Putting this here means that only listeners querying
501 // for logic will be notified. Currently the only user of
502 // frame_began is DecoderStack, but in future we need to signal
503 // this after both analog and logic sweeps have begun.
504 frame_began();
505 }
506 else
507 {
508 // Append to the existing data segment
509 cur_logic_segment_->append_payload(logic);
510 }
511
512 data_received();
513}
514
515void Session::feed_in_analog(shared_ptr<Analog> analog)
516{
517 lock_guard<recursive_mutex> lock(data_mutex_);
518
519 const vector<shared_ptr<Channel>> channels = analog->channels();
520 const unsigned int channel_count = channels.size();
521 const size_t sample_count = analog->num_samples() / channel_count;
522 const float *data = analog->data_pointer();
523 bool sweep_beginning = false;
524
525 for (auto channel : channels)
526 {
527 shared_ptr<data::AnalogSegment> segment;
528
529 // Try to get the segment of the channel
530 const map< shared_ptr<Channel>, shared_ptr<data::AnalogSegment> >::
531 iterator iter = cur_analog_segments_.find(channel);
532 if (iter != cur_analog_segments_.end())
533 segment = (*iter).second;
534 else
535 {
536 // If no segment was found, this means we havn't
537 // created one yet. i.e. this is the first packet
538 // in the sweep containing this segment.
539 sweep_beginning = true;
540
541 // Create a segment, keep it in the maps of channels
542 segment = shared_ptr<data::AnalogSegment>(
543 new data::AnalogSegment(
544 cur_samplerate_, sample_count));
545 cur_analog_segments_[channel] = segment;
546
547 // Find the analog data associated with the channel
548 shared_ptr<view::AnalogSignal> sig =
549 dynamic_pointer_cast<view::AnalogSignal>(
550 signal_from_channel(channel));
551 assert(sig);
552
553 shared_ptr<data::Analog> data(sig->analog_data());
554 assert(data);
555
556 // Push the segment into the analog data.
557 data->push_segment(segment);
558 }
559
560 assert(segment);
561
562 // Append the samples in the segment
563 segment->append_interleaved_samples(data++, sample_count,
564 channel_count);
565 }
566
567 if (sweep_beginning) {
568 // This could be the first packet after a trigger
569 set_capture_state(Running);
570 }
571
572 data_received();
573}
574
575void Session::data_feed_in(shared_ptr<sigrok::Device> device,
576 shared_ptr<Packet> packet)
577{
578 (void)device;
579
580 assert(device);
581 assert(device == device_->device());
582 assert(packet);
583
584 switch (packet->type()->id()) {
585 case SR_DF_HEADER:
586 feed_in_header();
587 break;
588
589 case SR_DF_META:
590 feed_in_meta(dynamic_pointer_cast<Meta>(packet->payload()));
591 break;
592
593 case SR_DF_FRAME_BEGIN:
594 feed_in_frame_begin();
595 break;
596
597 case SR_DF_LOGIC:
598 try {
599 feed_in_logic(dynamic_pointer_cast<Logic>(packet->payload()));
600 } catch (std::bad_alloc) {
601 out_of_memory_ = true;
602 device_->stop();
603 }
604 break;
605
606 case SR_DF_ANALOG:
607 try {
608 feed_in_analog(dynamic_pointer_cast<Analog>(packet->payload()));
609 } catch (std::bad_alloc) {
610 out_of_memory_ = true;
611 device_->stop();
612 }
613 break;
614
615 case SR_DF_END:
616 {
617 {
618 lock_guard<recursive_mutex> lock(data_mutex_);
619 cur_logic_segment_.reset();
620 cur_analog_segments_.clear();
621 }
622 frame_ended();
623 break;
624 }
625 default:
626 break;
627 }
628}
629
630} // namespace pv