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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 <math.h>
24
25 #include "logicsignal.h"
26 #include "view.h"
27
28 #include "pv/sigsession.h"
29 #include "pv/data/logic.h"
30 #include "pv/data/logicsnapshot.h"
31
32 using namespace boost;
33 using namespace std;
34
35 namespace pv {
36 namespace view {
37
38 const float LogicSignal::Oversampling = 2.0f;
39
40 const QColor LogicSignal::EdgeColour(0x80, 0x80, 0x80);
41 const QColor LogicSignal::HighColour(0x00, 0xC0, 0x00);
42 const QColor LogicSignal::LowColour(0xC0, 0x00, 0x00);
43
44 const QColor LogicSignal::SignalColours[10] = {
45         QColor(0x16, 0x19, 0x1A),       // Black
46         QColor(0x8F, 0x52, 0x02),       // Brown
47         QColor(0xCC, 0x00, 0x00),       // Red
48         QColor(0xF5, 0x79, 0x00),       // Orange
49         QColor(0xED, 0xD4, 0x00),       // Yellow
50         QColor(0x73, 0xD2, 0x16),       // Green
51         QColor(0x34, 0x65, 0xA4),       // Blue
52         QColor(0x75, 0x50, 0x7B),       // Violet
53         QColor(0x88, 0x8A, 0x85),       // Grey
54         QColor(0xEE, 0xEE, 0xEC),       // White
55 };
56
57 LogicSignal::LogicSignal(pv::SigSession &session, const sr_probe *const probe,
58         shared_ptr<data::Logic> data) :
59         Signal(session, probe),
60         _data(data),
61         _separator(this),
62         _icon_trigger_none(":/icons/trigger-none.svg"),
63         _trigger_none(_icon_trigger_none, tr("No trigger"), this),
64         _icon_trigger_rising(":/icons/trigger-rising.svg"),
65         _trigger_rising(_icon_trigger_rising,
66                 tr("Trigger on rising edge"), this),
67         _icon_trigger_high(":/icons/trigger-high.svg"),
68         _trigger_high(_icon_trigger_high,
69                 tr("Trigger on high level"), this),
70         _icon_trigger_falling(":/icons/trigger-falling.svg"),
71         _trigger_falling(_icon_trigger_falling,
72                 tr("Trigger on falling edge"), this),
73         _icon_trigger_low(":/icons/trigger-low.svg"),
74         _trigger_low(_icon_trigger_low,
75                 tr("Trigger on low level"), this),
76         _icon_trigger_change(":/icons/trigger-change.svg"),
77         _trigger_change(_icon_trigger_change,
78                 tr("Trigger on rising or falling edge"), this)
79 {
80         _colour = SignalColours[probe->index % countof(SignalColours)];
81
82         _separator.setSeparator(true);
83
84         _trigger_none.setCheckable(true);
85         connect(&_trigger_none, SIGNAL(triggered()),
86                 this, SLOT(on_trigger_none()));
87
88         _trigger_rising.setCheckable(true);
89         connect(&_trigger_rising, SIGNAL(triggered()),
90                 this, SLOT(on_trigger_rising()));
91
92         _trigger_high.setCheckable(true);
93         connect(&_trigger_high, SIGNAL(triggered()),
94                 this, SLOT(on_trigger_high()));
95
96         _trigger_falling.setCheckable(true);
97         connect(&_trigger_falling, SIGNAL(triggered()),
98                 this, SLOT(on_trigger_falling()));
99
100         _trigger_low.setCheckable(true);
101         connect(&_trigger_low, SIGNAL(triggered()),
102                 this, SLOT(on_trigger_low()));
103
104         _trigger_change.setCheckable(true);
105         connect(&_trigger_change, SIGNAL(triggered()),
106                 this, SLOT(on_trigger_change()));
107 }
108
109 LogicSignal::~LogicSignal()
110 {
111 }
112
113 const list<QAction*> LogicSignal::get_context_bar_actions()
114 {
115         GVariant *gvar;
116         list<QAction*> actions;
117
118         actions.push_back(&_name_action);
119
120         // Add the trigger actions
121         const sr_dev_inst *const sdi = _session.get_device();
122         if (sr_config_list(sdi->driver, SR_CONF_TRIGGER_TYPE,
123                 &gvar, sdi) == SR_OK) {
124                 const char *const trig_types =
125                         g_variant_get_string(gvar, NULL);
126
127                 if (trig_types && trig_types[0] != '\0') {
128                         actions.push_back(&_separator);
129
130                         actions.push_back(&_trigger_none);
131
132                         add_trigger_action(trig_types, 'r',
133                                 &_trigger_rising, actions);
134                         add_trigger_action(trig_types, '1',
135                                 &_trigger_high, actions);
136                         add_trigger_action(trig_types, 'f',
137                                 &_trigger_falling, actions);
138                         add_trigger_action(trig_types, '0',
139                                 &_trigger_low, actions);
140                         add_trigger_action(trig_types, 'c',
141                                 &_trigger_change, actions);
142                 
143                         update_trigger_actions();
144                 }
145
146                 g_variant_unref(gvar);
147         }
148
149         return actions;
150 }
151
152 void LogicSignal::paint(QPainter &p, int y, int left, int right,
153                 double scale, double offset)
154 {
155         using pv::view::View;
156
157         QLineF *line;
158
159         vector< pair<int64_t, bool> > edges;
160
161         assert(_probe);
162         assert(scale > 0);
163         assert(_data);
164         assert(right >= left);
165
166         if (!_probe->enabled)
167                 return;
168
169         paint_axis(p, y, left, right);
170
171         const float high_offset = y - View::SignalHeight + 0.5f;
172         const float low_offset = y + 0.5f;
173
174         const deque< shared_ptr<pv::data::LogicSnapshot> > &snapshots =
175                 _data->get_snapshots();
176         if (snapshots.empty())
177                 return;
178
179         const shared_ptr<pv::data::LogicSnapshot> &snapshot =
180                 snapshots.front();
181
182         double samplerate = _data->get_samplerate();
183
184         // Show sample rate as 1Hz when it is unknown
185         if (samplerate == 0.0)
186                 samplerate = 1.0;
187
188         const double pixels_offset = offset / scale;
189         const double start_time = _data->get_start_time();
190         const int64_t last_sample = snapshot->get_sample_count() - 1;
191         const double samples_per_pixel = samplerate * scale;
192         const double start = samplerate * (offset - start_time);
193         const double end = start + samples_per_pixel * (right - left);
194
195         snapshot->get_subsampled_edges(edges,
196                 min(max((int64_t)floor(start), (int64_t)0), last_sample),
197                 min(max((int64_t)ceil(end), (int64_t)0), last_sample),
198                 samples_per_pixel / Oversampling, _probe->index);
199         assert(edges.size() >= 2);
200
201         // Paint the edges
202         const unsigned int edge_count = edges.size() - 2;
203         QLineF *const edge_lines = new QLineF[edge_count];
204         line = edge_lines;
205
206         for (vector<pv::data::LogicSnapshot::EdgePair>::const_iterator i =
207                         edges.begin() + 1;
208                 i != edges.end() - 1; i++) {
209                 const float x = ((*i).first / samples_per_pixel -
210                         pixels_offset) + left;
211                 *line++ = QLineF(x, high_offset, x, low_offset);
212         }
213
214         p.setPen(EdgeColour);
215         p.drawLines(edge_lines, edge_count);
216         delete[] edge_lines;
217
218         // Paint the caps
219         const unsigned int max_cap_line_count = (edges.size() - 1);
220         QLineF *const cap_lines = new QLineF[max_cap_line_count];
221
222         p.setPen(HighColour);
223         paint_caps(p, cap_lines, edges, true, samples_per_pixel,
224                 pixels_offset, left, high_offset);
225         p.setPen(LowColour);
226         paint_caps(p, cap_lines, edges, false, samples_per_pixel,
227                 pixels_offset, left, low_offset);
228
229         delete[] cap_lines;
230 }
231
232 void LogicSignal::paint_caps(QPainter &p, QLineF *const lines,
233         vector< pair<int64_t, bool> > &edges, bool level,
234         double samples_per_pixel, double pixels_offset, float x_offset,
235         float y_offset)
236 {
237         QLineF *line = lines;
238
239         for (vector<pv::data::LogicSnapshot::EdgePair>::const_iterator i =
240                 edges.begin(); i != (edges.end() - 1); i++)
241                 if ((*i).second == level) {
242                         *line++ = QLineF(
243                                 ((*i).first / samples_per_pixel -
244                                         pixels_offset) + x_offset, y_offset,
245                                 ((*(i+1)).first / samples_per_pixel -
246                                         pixels_offset) + x_offset, y_offset);
247                 }
248
249         p.drawLines(lines, line - lines);
250 }
251
252 void LogicSignal::add_trigger_action(const char *trig_types, char type,
253         QAction *action, list<QAction*> &actions)
254 {
255         while(*trig_types)
256                 if(*trig_types++ == type) {
257                         actions.push_back(action);
258                         break;
259                 }
260 }
261
262 void LogicSignal::update_trigger_actions()
263 {
264         const char cur_trigger = _probe->trigger ?
265                 _probe->trigger[0] : '\0';
266         _trigger_none.setChecked(cur_trigger == '\0');
267         _trigger_rising.setChecked(cur_trigger == 'r');
268         _trigger_high.setChecked(cur_trigger == '1');
269         _trigger_falling.setChecked(cur_trigger == 'f');
270         _trigger_low.setChecked(cur_trigger == '0');
271         _trigger_change.setChecked(cur_trigger == 'c');
272 }
273
274 void LogicSignal::set_trigger(char type)
275 {
276         const char trigger_type_string[2] = {type, 0};
277         const char *const trigger_string =
278                 (type != 0) ? trigger_type_string : NULL;
279
280         const sr_dev_inst *const sdi = _session.get_device();
281         const int probe_count = g_slist_length(sdi->probes);
282         assert(probe_count > 0);
283
284         assert(_probe && _probe->index < probe_count);
285
286         for (int i = 0; i < probe_count; i++) {
287                 sr_dev_trigger_set(sdi, i, (i == _probe->index) ?
288                         trigger_string : NULL);
289         }
290
291         update_trigger_actions();
292 }
293
294 void LogicSignal::on_trigger_none()
295 {
296         set_trigger('\0');      
297 }
298
299 void LogicSignal::on_trigger_rising()
300 {
301         set_trigger('r');       
302 }
303
304 void LogicSignal::on_trigger_high()
305 {
306         set_trigger('1');       
307 }
308
309 void LogicSignal::on_trigger_falling()
310 {
311         set_trigger('f');       
312 }
313
314 void LogicSignal::on_trigger_low()
315 {
316         set_trigger('0');       
317 }
318
319 void LogicSignal::on_trigger_change()
320 {
321         set_trigger('c');       
322 }
323
324 } // namespace view
325 } // namespace pv