Imported Debian patch 0.8.0.4-1
[psensor-pkg-ubuntu.git] / src / ui_sensorpref.c
1 /*
2  * Copyright (C) 2010-2013 jeanfi@gmail.com
3  *
4  * This program is free software; you can redistribute it and/or
5  * modify it under the terms of the GNU General Public License as
6  * published by the Free Software Foundation; either version 2 of the
7  * License, or (at your option) any later version.
8  *
9  * This program is distributed in the hope that it will be useful, but
10  * WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
12  * General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, write to the Free Software
16  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
17  * 02110-1301 USA
18  */
19 #include <stdlib.h>
20
21 #include <gtk/gtk.h>
22
23 #include "cfg.h"
24 #include "ui_pref.h"
25 #include "ui_sensorlist.h"
26 #include "ui_sensorpref.h"
27 #include "ui_color.h"
28
29 #if defined(HAVE_APPINDICATOR) || defined(HAVE_APPINDICATOR_029)
30 #include "ui_appindicator.h"
31 #endif
32
33 enum {
34         COL_NAME = 0,
35         COL_SENSOR_PREF
36 };
37
38 struct sensor_pref {
39         struct psensor *sensor;
40         char *name;
41         int enabled;
42         struct color *color;
43         int alarm_enabled;
44         int alarm_high_threshold;
45         int alarm_low_threshold;
46         unsigned int appindicator_enabled;
47 };
48
49 struct cb_data {
50         struct ui_psensor *ui;
51         GtkBuilder *builder;
52 };
53
54 static struct sensor_pref *
55 sensor_pref_new(struct psensor *s, struct config *cfg)
56 {
57         struct sensor_pref *p;
58
59         p = malloc(sizeof(struct sensor_pref));
60
61         p->sensor = s;
62         p->name = strdup(s->name);
63         p->enabled = s->graph_enabled;
64         p->alarm_enabled = s->alarm_enabled;
65         p->color = color_dup(s->color);
66
67         if (cfg->temperature_unit == CELCIUS) {
68                 p->alarm_high_threshold = s->alarm_high_threshold;
69                 p->alarm_low_threshold = s->alarm_low_threshold;
70         } else {
71                 p->alarm_high_threshold
72                         = celcius_to_fahrenheit(s->alarm_high_threshold);
73                 p->alarm_low_threshold
74                         = celcius_to_fahrenheit(s->alarm_low_threshold);
75         }
76
77         p->appindicator_enabled = s->appindicator_enabled;
78
79         return p;
80 }
81
82 static void sensor_pref_free(struct sensor_pref *p)
83 {
84         if (!p)
85                 return ;
86
87         free(p->name);
88         free(p->color);
89
90         free(p);
91 }
92
93 static struct sensor_pref *get_selected_sensor_pref(GtkTreeView *tree)
94 {
95         GtkTreeModel *model;
96         GtkTreeIter iter;
97         struct sensor_pref *pref;
98         GtkTreeSelection *selection;
99
100         selection = gtk_tree_view_get_selection(tree);
101
102         pref = NULL;
103         if (gtk_tree_selection_get_selected(selection, &model, &iter))
104                 gtk_tree_model_get(model, &iter, COL_SENSOR_PREF, &pref, -1);
105
106         return pref;
107 }
108
109 static void on_name_changed(GtkEntry *entry, gpointer data)
110 {
111         struct sensor_pref *p;
112         const char *str;
113
114         str = gtk_entry_get_text(entry);
115
116         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
117
118         if (p && strcmp(p->name, str)) {
119                 free(p->name);
120                 p->name = strdup(str);
121         }
122 }
123
124 static void on_drawed_toggled(GtkToggleButton *btn, gpointer data)
125 {
126         struct sensor_pref *p;
127
128         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
129
130         if (p)
131                 p->enabled = gtk_toggle_button_get_active(btn);
132 }
133
134 static void on_alarm_toggled(GtkToggleButton *btn, gpointer data)
135 {
136         struct sensor_pref *p;
137
138         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
139
140         if (p)
141                 p->alarm_enabled = gtk_toggle_button_get_active(btn);
142 }
143
144 static void on_appindicator_toggled(GtkToggleButton *btn, gpointer data)
145 {
146         struct sensor_pref *p;
147
148         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
149
150         if (p)
151                 p->appindicator_enabled = gtk_toggle_button_get_active(btn);
152 }
153
154 static void on_color_set(GtkColorButton *widget, gpointer data)
155 {
156         struct sensor_pref *p;
157         GdkColor color;
158
159         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
160
161         if (p) {
162                 gtk_color_button_get_color(widget, &color);
163                 color_set(p->color, color.red, color.green, color.blue);
164         }
165 }
166
167 static void on_alarm_high_threshold_changed(GtkSpinButton *btn, gpointer data)
168 {
169         struct sensor_pref *p;
170
171         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
172
173         if (p)
174                 p->alarm_high_threshold = gtk_spin_button_get_value(btn);
175 }
176
177 static void on_alarm_low_threshold_changed(GtkSpinButton *btn, gpointer data)
178 {
179         struct sensor_pref *p;
180
181         p = get_selected_sensor_pref(GTK_TREE_VIEW(data));
182
183         if (p)
184                 p->alarm_low_threshold = gtk_spin_button_get_value(btn);
185 }
186
187 static void connect_signals(GtkBuilder *builder, GtkTreeView *tree)
188 {
189         g_signal_connect(gtk_builder_get_object(builder, "sensor_name"),
190                          "changed", G_CALLBACK(on_name_changed), tree);
191
192         g_signal_connect(gtk_builder_get_object(builder, "sensor_draw"),
193                          "toggled", G_CALLBACK(on_drawed_toggled), tree);
194
195         g_signal_connect(gtk_builder_get_object(builder, "sensor_color"),
196                          "color-set", G_CALLBACK(on_color_set), tree);
197
198         g_signal_connect(gtk_builder_get_object(builder, "sensor_alarm"),
199                          "toggled", G_CALLBACK(on_alarm_toggled), tree);
200
201         g_signal_connect(gtk_builder_get_object(builder,
202                                                 "sensor_alarm_high_threshold"),
203                          "value-changed",
204                          G_CALLBACK(on_alarm_high_threshold_changed),
205                          tree);
206
207         g_signal_connect(gtk_builder_get_object(builder,
208                                                 "sensor_alarm_low_threshold"),
209                          "value-changed",
210                          G_CALLBACK(on_alarm_low_threshold_changed),
211                          tree);
212
213         g_signal_connect(gtk_builder_get_object(builder,
214                                                 "indicator_checkbox"),
215                          "toggled",
216                          G_CALLBACK(on_appindicator_toggled),
217                          tree);
218 }
219
220 static void
221 update_pref(struct sensor_pref *p, struct config *cfg, GtkBuilder *builder)
222 {
223         GtkLabel *w_id, *w_type, *w_high_threshold_unit, *w_low_threshold_unit,
224                 *w_chipname;
225         GtkEntry *w_name;
226         GtkToggleButton *w_draw, *w_alarm, *w_appindicator_enabled;
227         GtkColorButton *w_color;
228         GtkSpinButton *w_high_threshold, *w_low_threshold;
229         GdkColor *color;
230         struct psensor *s;
231         int use_celcius;
232
233         s = p->sensor;
234
235         w_id = GTK_LABEL(gtk_builder_get_object(builder, "sensor_id"));
236         gtk_label_set_text(w_id, s->id);
237
238         w_type = GTK_LABEL(gtk_builder_get_object(builder, "sensor_type"));
239         gtk_label_set_text(w_type, psensor_type_to_str(s->type));
240
241         w_name = GTK_ENTRY(gtk_builder_get_object(builder, "sensor_name"));
242         gtk_entry_set_text(w_name, p->name);
243
244         w_chipname = GTK_LABEL(gtk_builder_get_object(builder, "chip_name"));
245         if (s->chip)
246                 gtk_label_set_text(w_chipname, s->chip);
247         else
248                 gtk_label_set_text(w_chipname, _("Unknown"));
249
250         w_draw = GTK_TOGGLE_BUTTON(gtk_builder_get_object(builder,
251                                                           "sensor_draw"));
252         gtk_toggle_button_set_active(w_draw, p->enabled);
253
254         color = color_to_gdkcolor(p->color);
255         w_color = GTK_COLOR_BUTTON(gtk_builder_get_object(builder,
256                                                           "sensor_color"));
257         gtk_color_button_set_color(w_color, color);
258
259         w_alarm = GTK_TOGGLE_BUTTON(gtk_builder_get_object(builder,
260                                                            "sensor_alarm"));
261         w_high_threshold = GTK_SPIN_BUTTON(gtk_builder_get_object
262                                           (builder,
263                                            "sensor_alarm_high_threshold"));
264         w_low_threshold = GTK_SPIN_BUTTON(gtk_builder_get_object
265                                          (builder,
266                                           "sensor_alarm_low_threshold"));
267
268         w_high_threshold_unit = GTK_LABEL(gtk_builder_get_object
269                                          (builder,
270                                           "sensor_alarm_high_threshold_unit"));
271         w_low_threshold_unit = GTK_LABEL(gtk_builder_get_object
272                                         (builder,
273                                          "sensor_alarm_low_threshold_unit"));
274
275         use_celcius = cfg->temperature_unit == CELCIUS ? 1 : 0;
276         gtk_label_set_text(w_high_threshold_unit,
277                            psensor_type_to_unit_str(s->type,
278                                                     use_celcius));
279         gtk_label_set_text(w_low_threshold_unit,
280                            psensor_type_to_unit_str(s->type,
281                                                     use_celcius));
282
283         w_appindicator_enabled = GTK_TOGGLE_BUTTON
284                 (gtk_builder_get_object(builder, "indicator_checkbox"));
285
286         if (is_temp_type(s->type) || is_fan_type(s->type)) {
287                 gtk_toggle_button_set_active(w_alarm, p->alarm_enabled);
288                 gtk_spin_button_set_value(w_high_threshold,
289                                           p->alarm_high_threshold);
290                 gtk_spin_button_set_value(w_low_threshold,
291                                           p->alarm_low_threshold);
292                 gtk_widget_set_sensitive(GTK_WIDGET(w_alarm), TRUE);
293                 gtk_widget_set_sensitive(GTK_WIDGET(w_high_threshold), TRUE);
294                 gtk_widget_set_sensitive(GTK_WIDGET(w_low_threshold), TRUE);
295         } else {
296                 gtk_toggle_button_set_active(w_alarm, 0);
297                 gtk_spin_button_set_value(w_high_threshold, 0);
298                 gtk_spin_button_set_value(w_low_threshold, 0);
299                 gtk_widget_set_sensitive(GTK_WIDGET(w_alarm), FALSE);
300                 gtk_widget_set_sensitive(GTK_WIDGET(w_high_threshold), FALSE);
301                 gtk_widget_set_sensitive(GTK_WIDGET(w_low_threshold), FALSE);
302         }
303
304         gtk_toggle_button_set_active(w_appindicator_enabled,
305                                      p->appindicator_enabled);
306 }
307
308 static void on_changed(GtkTreeSelection *selection, gpointer data)
309 {
310         struct cb_data *cbdata = data;
311         struct ui_psensor *ui = cbdata->ui;
312         struct sensor_pref *p;
313         GtkTreeView *tree;
314
315         tree = GTK_TREE_VIEW(gtk_builder_get_object(cbdata->builder,
316                                                     "sensors_list"));
317         p = get_selected_sensor_pref(tree);
318         update_pref(p, ui->config, cbdata->builder);
319 }
320
321 static void
322 select_sensor(struct psensor *s, struct psensor **sensors, GtkTreeView *tree)
323 {
324         struct psensor **s_cur;
325         int i;
326         GtkTreePath *p;
327
328         p = NULL;
329         for (s_cur = sensors, i = 0; *s_cur; s_cur++, i++)
330                 if (s == *s_cur) {
331                         p = gtk_tree_path_new_from_indices(i, -1);
332                         break;
333                 }
334
335         if (p) {
336                 GtkTreeSelection *s = gtk_tree_view_get_selection(tree);
337
338                 gtk_tree_selection_select_path(s, p);
339                 gtk_tree_path_free(p);
340         }
341 }
342
343 static void apply_pref(struct sensor_pref *p, int pos, struct config *cfg)
344 {
345         struct psensor *s;
346
347         s = p->sensor;
348
349         if (strcmp(p->name, s->name)) {
350                 free(s->name);
351                 s->name = strdup(p->name);
352                 config_set_sensor_name(s->id, s->name);
353         }
354
355         if (s->graph_enabled != p->enabled) {
356                 s->graph_enabled = p->enabled;
357                 config_set_sensor_enabled(s->id, s->graph_enabled);
358         }
359
360         if (is_temp_type(s->type) && cfg->temperature_unit == FAHRENHEIT) {
361                 s->alarm_high_threshold
362                         = fahrenheit_to_celcius(p->alarm_high_threshold);
363                 s->alarm_low_threshold
364                         = fahrenheit_to_celcius(p->alarm_low_threshold);
365         } else {
366                 s->alarm_high_threshold = p->alarm_high_threshold;
367                 s->alarm_low_threshold = p->alarm_low_threshold;
368         }
369
370         config_set_sensor_alarm_high_threshold(s->id, s->alarm_high_threshold);
371         config_set_sensor_alarm_low_threshold(s->id, s->alarm_low_threshold);
372
373         if (s->alarm_enabled != p->alarm_enabled) {
374                 s->alarm_enabled = p->alarm_enabled;
375                 config_set_sensor_alarm_enabled(s->id, s->alarm_enabled);
376         }
377
378         color_set(s->color, p->color->red, p->color->green, p->color->blue);
379         config_set_sensor_color(s->id, s->color);
380
381         if (s->appindicator_enabled != p->appindicator_enabled) {
382                 s->appindicator_enabled = p->appindicator_enabled;
383                 config_set_appindicator_enabled(s->id, s->appindicator_enabled);
384         }
385
386         config_set_sensor_position(s->id, pos);
387 }
388
389 static void apply_prefs(GtkTreeModel *model, struct config *cfg)
390 {
391         gboolean valid;
392         struct sensor_pref *spref;
393         GtkTreeIter iter;
394         int i;
395
396         valid = gtk_tree_model_get_iter_first(model, &iter);
397         i = 0;
398         while (valid) {
399                 gtk_tree_model_get(model, &iter, COL_SENSOR_PREF, &spref, -1);
400                 apply_pref(spref, i, cfg);
401                 valid = gtk_tree_model_iter_next(model, &iter);
402                 i++;
403         }
404 }
405
406 void ui_sensorpref_dialog_run(struct psensor *sensor, struct ui_psensor *ui)
407 {
408         GtkDialog *diag;
409         gint result;
410         guint ok;
411         GtkBuilder *builder;
412         GError *error;
413         GtkTreeView *w_sensors_list;
414         GtkListStore *store;
415         struct psensor **s_cur, *s, **ordered_sensors;
416         GtkTreeSelection *selection;
417         struct cb_data cbdata;
418         GtkTreeIter iter;
419         struct sensor_pref *spref;
420         gboolean valid;
421         GtkTreeModel *model;
422
423         cbdata.ui = ui;
424
425         builder = gtk_builder_new();
426         cbdata.builder = builder;
427
428         error = NULL;
429         ok = gtk_builder_add_from_file
430                 (builder,
431                  PACKAGE_DATA_DIR G_DIR_SEPARATOR_S "sensor-edit.glade",
432                  &error);
433
434         if (!ok) {
435                 log_printf(LOG_ERR, error->message);
436                 g_error_free(error);
437                 return ;
438         }
439
440         w_sensors_list
441                 = GTK_TREE_VIEW(gtk_builder_get_object(builder,
442                                                        "sensors_list"));
443         connect_signals(builder, w_sensors_list);
444
445         store = GTK_LIST_STORE(gtk_builder_get_object(builder,
446                                                       "sensors_liststore"));
447
448         ordered_sensors = ui_get_sensors_ordered_by_position(ui);
449         for (s_cur = ordered_sensors; *s_cur; s_cur++) {
450                 s = *s_cur;
451                 gtk_list_store_append(store, &iter);
452
453                 spref = sensor_pref_new(s, ui->config);
454                 gtk_list_store_set(store, &iter,
455                                    COL_NAME, s->name,
456                                    COL_SENSOR_PREF, spref,
457                                    -1);
458
459                 if (s == sensor)
460                         update_pref(spref, ui->config, builder);
461         }
462
463         selection = gtk_tree_view_get_selection(w_sensors_list);
464         g_signal_connect(selection, "changed", G_CALLBACK(on_changed), &cbdata);
465         select_sensor(sensor, ordered_sensors, w_sensors_list);
466
467         free(ordered_sensors);
468
469         diag = GTK_DIALOG(gtk_builder_get_object(builder, "dialog1"));
470         result = gtk_dialog_run(diag);
471
472         model = gtk_tree_view_get_model(w_sensors_list);
473
474         if (result == GTK_RESPONSE_ACCEPT) {
475                 apply_prefs(model, ui->config);
476                 ui_sensorlist_update(ui, 1);
477 #if defined(HAVE_APPINDICATOR) || defined(HAVE_APPINDICATOR_029)
478                 ui_appindicator_update_menu(ui);
479 #endif
480         }
481
482         valid = gtk_tree_model_get_iter_first(model, &iter);
483         while (valid) {
484                 gtk_tree_model_get(model, &iter, COL_SENSOR_PREF, &spref, -1);
485                 sensor_pref_free(spref);
486                 valid = gtk_tree_model_iter_next(model, &iter);
487         }
488
489         g_object_unref(G_OBJECT(builder));
490
491         gtk_widget_destroy(GTK_WIDGET(diag));
492 }