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1 /*
2  * This file is part of the PulseView project.
3  *
4  * Copyright (C) 2014 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 <cassert>
22
23 #ifdef _WIN32
24 // Windows: Avoid boost/thread namespace pollution (which includes windows.h).
25 #define NOGDI
26 #define NORESOURCE
27 #endif
28 #include <boost/thread/locks.hpp>
29 #include <boost/thread/shared_mutex.hpp>
30
31 #include "storesession.hpp"
32
33 #include <pv/devicemanager.hpp>
34 #include <pv/session.hpp>
35 #include <pv/data/logic.hpp>
36 #include <pv/data/logicsegment.hpp>
37 #include <pv/devices/device.hpp>
38 #include <pv/view/signal.hpp>
39
40 #include <libsigrokcxx/libsigrokcxx.hpp>
41
42 using boost::shared_lock;
43 using boost::shared_mutex;
44
45 using std::deque;
46 using std::dynamic_pointer_cast;
47 using std::ios_base;
48 using std::lock_guard;
49 using std::make_pair;
50 using std::map;
51 using std::min;
52 using std::mutex;
53 using std::pair;
54 using std::set;
55 using std::shared_ptr;
56 using std::string;
57 using std::thread;
58 using std::unordered_set;
59 using std::vector;
60
61 using Glib::VariantBase;
62
63 using sigrok::ConfigKey;
64 using sigrok::Error;
65 using sigrok::OutputFormat;
66 using sigrok::OutputFlag;
67
68 namespace pv {
69
70 const size_t StoreSession::BlockSize = 1024 * 1024;
71
72 StoreSession::StoreSession(const std::string &file_name,
73         const shared_ptr<OutputFormat> &output_format,
74         const map<string, VariantBase> &options,
75         const std::pair<uint64_t, uint64_t> sample_range,
76         const Session &session) :
77         file_name_(file_name),
78         output_format_(output_format),
79         options_(options),
80         sample_range_(sample_range),
81         session_(session),
82         interrupt_(false),
83         units_stored_(0),
84         unit_count_(0)
85 {
86 }
87
88 StoreSession::~StoreSession()
89 {
90         wait();
91 }
92
93 pair<int, int> StoreSession::progress() const
94 {
95         return make_pair(units_stored_.load(), unit_count_.load());
96 }
97
98 const QString& StoreSession::error() const
99 {
100         lock_guard<mutex> lock(mutex_);
101         return error_;
102 }
103
104 bool StoreSession::start()
105 {
106         const unordered_set< shared_ptr<view::Signal> > sigs(session_.signals());
107
108         // Add enabled channels to the data set
109         set< shared_ptr<data::SignalData> > data_set;
110
111         for (shared_ptr<view::Signal> signal : sigs)
112                 if (signal->enabled())
113                         data_set.insert(signal->data());
114
115         // Check we have logic data
116         if (data_set.empty() || sigs.empty()) {
117                 error_ = tr("No data to save.");
118                 return false;
119         }
120
121         if (data_set.size() > 1) {
122                 error_ = tr("PulseView currently only has support for "
123                         "storing a single data stream.");
124                 return false;
125         }
126
127         // Get the logic data
128         shared_ptr<data::Logic> data;
129         if (!(data = dynamic_pointer_cast<data::Logic>(*data_set.begin()))) {
130                 error_ = tr("PulseView currently only has support for "
131                         "storing logic data.");
132                 return false;
133         }
134
135         // Get the segment
136         const deque< shared_ptr<data::LogicSegment> > &segments =
137                 data->logic_segments();
138
139         if (segments.empty()) {
140                 error_ = tr("No segments to save.");
141                 return false;
142         }
143
144         const shared_ptr<data::LogicSegment> segment(segments.front());
145         assert(segment);
146
147         // Check whether the user wants to export a certain sample range
148         if (sample_range_.first == sample_range_.second) {
149                 start_sample_ = 0;
150                 sample_count_ = segment->get_sample_count();
151         } else {
152                 start_sample_ = std::min(sample_range_.first, sample_range_.second);
153                 sample_count_ = std::abs(sample_range_.second - sample_range_.first);
154         }
155
156         // Begin storing
157         try {
158                 const auto context = session_.device_manager().context();
159                 auto device = session_.device()->device();
160
161                 map<string, Glib::VariantBase> options = options_;
162
163                 if (!output_format_->test_flag(OutputFlag::INTERNAL_IO_HANDLING))
164                         output_stream_.open(file_name_, ios_base::binary |
165                                         ios_base::trunc | ios_base::out);
166
167                 output_ = output_format_->create_output(file_name_, device, options);
168                 auto meta = context->create_meta_packet(
169                         {{ConfigKey::SAMPLERATE, Glib::Variant<guint64>::create(
170                                 segment->samplerate())}});
171                 output_->receive(meta);
172         } catch (Error error) {
173                 error_ = tr("Error while saving.");
174                 return false;
175         }
176
177         thread_ = std::thread(&StoreSession::store_proc, this, segment);
178         return true;
179 }
180
181 void StoreSession::wait()
182 {
183         if (thread_.joinable())
184                 thread_.join();
185 }
186
187 void StoreSession::cancel()
188 {
189         interrupt_ = true;
190 }
191
192 void StoreSession::store_proc(shared_ptr<data::LogicSegment> segment)
193 {
194         assert(segment);
195
196         unsigned progress_scale = 0;
197
198         /// TODO: Wrap this in a std::unique_ptr when we transition to C++11
199         uint8_t *const data = new uint8_t[BlockSize];
200         assert(data);
201
202         const int unit_size = segment->unit_size();
203         assert(unit_size != 0);
204
205         // Qt needs the progress values to fit inside an int. If they would
206         // not, scale the current and max values down until they do.
207         while ((sample_count_ >> progress_scale) > INT_MAX)
208                 progress_scale ++;
209
210         unit_count_ = sample_count_ >> progress_scale;
211
212         const unsigned int samples_per_block = BlockSize / unit_size;
213
214         while (!interrupt_ && sample_count_)
215         {
216                 progress_updated();
217
218                 const uint64_t packet_len =
219                         std::min((uint64_t)samples_per_block, sample_count_);
220
221                 segment->get_samples(data, start_sample_, start_sample_ + packet_len);
222
223                 size_t length = packet_len * unit_size;
224
225                 try {
226                         const auto context = session_.device_manager().context();
227                         auto logic = context->create_logic_packet(data, length, unit_size);
228                         const string data = output_->receive(logic);
229                         if (output_stream_.is_open())
230                                 output_stream_ << data;
231                 } catch (Error error) {
232                         error_ = tr("Error while saving.");
233                         break;
234                 }
235
236                 sample_count_ -= packet_len;
237                 start_sample_ += packet_len;
238                 units_stored_ = unit_count_ - (sample_count_ >> progress_scale);
239         }
240
241         // Zeroing the progress variables indicates completion
242         units_stored_ = unit_count_ = 0;
243
244         progress_updated();
245
246         output_.reset();
247         output_stream_.close();
248
249         delete[] data;
250 }
251
252 } // pv