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[ext/subsurface.git] / divelist.c
1 /* divelist.c */
2 /* this creates the UI for the dive list -
3  * controlled through the following interfaces:
4  *
5  * void flush_divelist(struct dive *dive)
6  * GtkWidget dive_list_create(void)
7  * void dive_list_update_dives(void)
8  * void update_dive_list_units(void)
9  * void set_divelist_font(const char *font)
10  * void mark_divelist_changed(int changed)
11  * int unsaved_changes()
12  */
13 #include <stdio.h>
14 #include <stdlib.h>
15 #include <string.h>
16 #include <time.h>
17 #include <math.h>
18
19 #include "divelist.h"
20 #include "dive.h"
21 #include "display.h"
22 #include "display-gtk.h"
23
24 struct DiveList {
25         GtkWidget    *tree_view;
26         GtkWidget    *container_widget;
27         GtkListStore *model;
28         GtkTreeViewColumn *nr, *date, *stars, *depth, *duration, *location;
29         GtkTreeViewColumn *temperature, *cylinder, *nitrox, *sac, *otu;
30         int changed;
31 };
32
33 static struct DiveList dive_list;
34
35 /*
36  * The dive list has the dive data in both string format (for showing)
37  * and in "raw" format (for sorting purposes)
38  */
39 enum {
40         DIVE_INDEX = 0,
41         DIVE_NR,                /* int: dive->nr */
42         DIVE_DATE,              /* time_t: dive->when */
43         DIVE_RATING,            /* int: 0-5 stars */
44         DIVE_DEPTH,             /* int: dive->maxdepth in mm */
45         DIVE_DURATION,          /* int: in seconds */
46         DIVE_TEMPERATURE,       /* int: in mkelvin */
47         DIVE_CYLINDER,
48         DIVE_NITROX,            /* int: dummy */
49         DIVE_SAC,               /* int: in ml/min */
50         DIVE_OTU,               /* int: in OTUs */
51         DIVE_LOCATION,          /* "2nd Cathedral, Lanai" */
52         DIVELIST_COLUMNS
53 };
54
55 static GList *selected_dives;
56
57 static void selection_cb(GtkTreeSelection *selection, GtkTreeModel *model)
58 {
59         GtkTreeIter iter;
60         GValue value = {0, };
61         GtkTreePath *path;
62
63         int nr_selected = gtk_tree_selection_count_selected_rows(selection);
64
65         if (selected_dives) {
66                 g_list_foreach (selected_dives, (GFunc) gtk_tree_path_free, NULL);
67                 g_list_free (selected_dives);
68         }
69         selected_dives = gtk_tree_selection_get_selected_rows(selection, NULL);
70
71         switch (nr_selected) {
72         case 0: /* keep showing the last selected dive */
73                 return;
74         case 1: 
75                 /* just pick that dive as selected */
76                 path = g_list_nth_data(selected_dives, 0);
77                 if (gtk_tree_model_get_iter(model, &iter, path)) {
78                         gtk_tree_model_get_value(model, &iter, DIVE_INDEX, &value);
79                         selected_dive = g_value_get_int(&value);
80                         repaint_dive();
81                 }
82                 return;
83         default: /* multiple selections - what now? At this point I
84                   * don't want to change the selected dive unless
85                   * there is exactly one dive selected; not sure this
86                   * is the most intuitive solution.
87                   * I do however want to keep around which dives have
88                   * been selected */
89                 return;
90         }
91 }
92
93 const char *star_strings[] = {
94         ZERO_STARS,
95         ONE_STARS,
96         TWO_STARS,
97         THREE_STARS,
98         FOUR_STARS,
99         FIVE_STARS
100 };
101
102 static void star_data_func(GtkTreeViewColumn *col,
103                            GtkCellRenderer *renderer,
104                            GtkTreeModel *model,
105                            GtkTreeIter *iter,
106                            gpointer data)
107 {
108         int nr_stars;
109         char buffer[40];
110
111         gtk_tree_model_get(model, iter, DIVE_RATING, &nr_stars, -1);
112         if (nr_stars < 0 || nr_stars > 5)
113                 nr_stars = 0;
114         snprintf(buffer, sizeof(buffer), "%s", star_strings[nr_stars]);
115         g_object_set(renderer, "text", buffer, NULL);
116 }
117
118 static void date_data_func(GtkTreeViewColumn *col,
119                            GtkCellRenderer *renderer,
120                            GtkTreeModel *model,
121                            GtkTreeIter *iter,
122                            gpointer data)
123 {
124         int val;
125         struct tm *tm;
126         time_t when;
127         char buffer[40];
128
129         gtk_tree_model_get(model, iter, DIVE_DATE, &val, -1);
130
131         /* 2038 problem */
132         when = val;
133
134         tm = gmtime(&when);
135         snprintf(buffer, sizeof(buffer),
136                 "%s, %s %d, %d %02d:%02d",
137                 weekday(tm->tm_wday),
138                 monthname(tm->tm_mon),
139                 tm->tm_mday, tm->tm_year + 1900,
140                 tm->tm_hour, tm->tm_min);
141         g_object_set(renderer, "text", buffer, NULL);
142 }
143
144 static void depth_data_func(GtkTreeViewColumn *col,
145                             GtkCellRenderer *renderer,
146                             GtkTreeModel *model,
147                             GtkTreeIter *iter,
148                             gpointer data)
149 {
150         int depth, integer, frac, len;
151         char buffer[40];
152
153         gtk_tree_model_get(model, iter, DIVE_DEPTH, &depth, -1);
154
155         switch (output_units.length) {
156         case METERS:
157                 /* To tenths of meters */
158                 depth = (depth + 49) / 100;
159                 integer = depth / 10;
160                 frac = depth % 10;
161                 if (integer < 20)
162                         break;
163                 if (frac >= 5)
164                         integer++;
165                 frac = -1;
166                 break;
167         case FEET:
168                 integer = mm_to_feet(depth) + 0.5;
169                 frac = -1;
170                 break;
171         default:
172                 return;
173         }
174         len = snprintf(buffer, sizeof(buffer), "%d", integer);
175         if (frac >= 0)
176                 len += snprintf(buffer+len, sizeof(buffer)-len, ".%d", frac);
177
178         g_object_set(renderer, "text", buffer, NULL);
179 }
180
181 static void duration_data_func(GtkTreeViewColumn *col,
182                                GtkCellRenderer *renderer,
183                                GtkTreeModel *model,
184                                GtkTreeIter *iter,
185                                gpointer data)
186 {
187         unsigned int sec;
188         char buffer[16];
189
190         gtk_tree_model_get(model, iter, DIVE_DURATION, &sec, -1);
191         snprintf(buffer, sizeof(buffer), "%d:%02d", sec / 60, sec % 60);
192
193         g_object_set(renderer, "text", buffer, NULL);
194 }
195
196 static void temperature_data_func(GtkTreeViewColumn *col,
197                                   GtkCellRenderer *renderer,
198                                   GtkTreeModel *model,
199                                   GtkTreeIter *iter,
200                                   gpointer data)
201 {
202         int value;
203         char buffer[80];
204
205         gtk_tree_model_get(model, iter, DIVE_TEMPERATURE, &value, -1);
206
207         *buffer = 0;
208         if (value) {
209                 double deg;
210                 switch (output_units.temperature) {
211                 case CELSIUS:
212                         deg = mkelvin_to_C(value);
213                         break;
214                 case FAHRENHEIT:
215                         deg = mkelvin_to_F(value);
216                         break;
217                 default:
218                         return;
219                 }
220                 snprintf(buffer, sizeof(buffer), "%.1f", deg);
221         }
222
223         g_object_set(renderer, "text", buffer, NULL);
224 }
225
226 /*
227  * Get "maximal" dive gas for a dive.
228  * Rules:
229  *  - Trimix trumps nitrox (highest He wins, O2 breaks ties)
230  *  - Nitrox trumps air (even if hypoxic)
231  * These are the same rules as the inter-dive sorting rules.
232  */
233 static void get_dive_gas(struct dive *dive, int *o2, int *he, int *o2low)
234 {
235         int i;
236         int maxo2 = -1, maxhe = -1, mino2 = 1000;
237
238         for (i = 0; i < MAX_CYLINDERS; i++) {
239                 cylinder_t *cyl = dive->cylinder + i;
240                 struct gasmix *mix = &cyl->gasmix;
241                 int o2 = mix->o2.permille;
242                 int he = mix->he.permille;
243
244                 if (cylinder_none(cyl))
245                         continue;
246                 if (!o2)
247                         o2 = 209;
248                 if (o2 < mino2)
249                         mino2 = o2;
250                 if (he > maxhe)
251                         goto newmax;
252                 if (he < maxhe)
253                         continue;
254                 if (o2 <= maxo2)
255                         continue;
256 newmax:
257                 maxhe = he;
258                 maxo2 = o2;
259         }
260         /* All air? Show/sort as "air"/zero */
261         if (!maxhe && maxo2 == 209 && mino2 == maxo2)
262                 maxo2 = mino2 = 0;
263         *o2 = maxo2;
264         *he = maxhe;
265         *o2low = mino2;
266 }
267
268 static gint nitrox_sort_func(GtkTreeModel *model,
269         GtkTreeIter *iter_a,
270         GtkTreeIter *iter_b,
271         gpointer user_data)
272 {
273         int index_a, index_b;
274         struct dive *a, *b;
275         int a_o2, b_o2;
276         int a_he, b_he;
277         int a_o2low, b_o2low;
278
279         gtk_tree_model_get(model, iter_a, DIVE_INDEX, &index_a, -1);
280         gtk_tree_model_get(model, iter_b, DIVE_INDEX, &index_b, -1);
281         a = get_dive(index_a);
282         b = get_dive(index_b);
283         get_dive_gas(a, &a_o2, &a_he, &a_o2low);
284         get_dive_gas(b, &b_o2, &b_he, &b_o2low);
285
286         /* Sort by Helium first, O2 second */
287         if (a_he == b_he) {
288                 if (a_o2 == b_o2)
289                         return a_o2low - b_o2low;
290                 return a_o2 - b_o2;
291         }
292         return a_he - b_he;
293 }
294
295 #define UTF8_ELLIPSIS "\xE2\x80\xA6"
296
297 static void nitrox_data_func(GtkTreeViewColumn *col,
298                              GtkCellRenderer *renderer,
299                              GtkTreeModel *model,
300                              GtkTreeIter *iter,
301                              gpointer data)
302 {
303         int index, o2, he, o2low;
304         char buffer[80];
305         struct dive *dive;
306
307         gtk_tree_model_get(model, iter, DIVE_INDEX, &index, -1);
308         dive = get_dive(index);
309         get_dive_gas(dive, &o2, &he, &o2low);
310         o2 = (o2 + 5) / 10;
311         he = (he + 5) / 10;
312         o2low = (o2low + 5) / 10;
313
314         if (he)
315                 snprintf(buffer, sizeof(buffer), "%d/%d", o2, he);
316         else if (o2)
317                 if (o2 == o2low)
318                         snprintf(buffer, sizeof(buffer), "%d", o2);
319                 else
320                         snprintf(buffer, sizeof(buffer), "%d" UTF8_ELLIPSIS "%d", o2low, o2);
321         else
322                 strcpy(buffer, "air");
323
324         g_object_set(renderer, "text", buffer, NULL);
325 }
326
327 /* Render the SAC data (integer value of "ml / min") */
328 static void sac_data_func(GtkTreeViewColumn *col,
329                           GtkCellRenderer *renderer,
330                           GtkTreeModel *model,
331                           GtkTreeIter *iter,
332                           gpointer data)
333 {
334         int value;
335         const char *fmt;
336         char buffer[16];
337         double sac;
338
339         gtk_tree_model_get(model, iter, DIVE_SAC, &value, -1);
340
341         if (!value) {
342                 g_object_set(renderer, "text", "", NULL);
343                 return;
344         }
345
346         sac = value / 1000.0;
347         switch (output_units.volume) {
348         case LITER:
349                 fmt = "%4.1f";
350                 break;
351         case CUFT:
352                 fmt = "%4.2f";
353                 sac = ml_to_cuft(sac * 1000);
354                 break;
355         }
356         snprintf(buffer, sizeof(buffer), fmt, sac);
357
358         g_object_set(renderer, "text", buffer, NULL);
359 }
360
361 /* Render the OTU data (integer value of "OTU") */
362 static void otu_data_func(GtkTreeViewColumn *col,
363                           GtkCellRenderer *renderer,
364                           GtkTreeModel *model,
365                           GtkTreeIter *iter,
366                           gpointer data)
367 {
368         int value;
369         char buffer[16];
370
371         gtk_tree_model_get(model, iter, DIVE_OTU, &value, -1);
372
373         if (!value) {
374                 g_object_set(renderer, "text", "", NULL);
375                 return;
376         }
377
378         snprintf(buffer, sizeof(buffer), "%d", value);
379
380         g_object_set(renderer, "text", buffer, NULL);
381 }
382
383 /* calculate OTU for a dive */
384 static int calculate_otu(struct dive *dive)
385 {
386         int i;
387         double otu = 0.0;
388
389         for (i = 1; i < dive->samples; i++) {
390                 int t;
391                 double po2;
392                 struct sample *sample = dive->sample + i;
393                 struct sample *psample = sample - 1;
394                 t = sample->time.seconds - psample->time.seconds;
395                 po2 = dive->cylinder[sample->cylinderindex].gasmix.o2.permille / 1000.0 *
396                         (sample->depth.mm + 10000) / 10000.0;
397                 if (po2 >= 0.5)
398                         otu += pow(po2 - 0.5, 0.83) * t / 30.0;
399         }
400         return otu + 0.5;
401 }
402 /*
403  * Return air usage (in liters).
404  */
405 static double calculate_airuse(struct dive *dive)
406 {
407         double airuse = 0;
408         int i;
409
410         for (i = 0; i < MAX_CYLINDERS; i++) {
411                 pressure_t start, end;
412                 cylinder_t *cyl = dive->cylinder + i;
413                 int size = cyl->type.size.mliter;
414                 double kilo_atm;
415
416                 if (!size)
417                         continue;
418
419                 start = cyl->start.mbar ? cyl->start : cyl->sample_start;
420                 end = cyl->end.mbar ? cyl->end : cyl->sample_end;
421                 kilo_atm = (to_ATM(start) - to_ATM(end)) / 1000.0;
422
423                 /* Liters of air at 1 atm == milliliters at 1k atm*/
424                 airuse += kilo_atm * size;
425         }
426         return airuse;
427 }
428
429 static int calculate_sac(struct dive *dive)
430 {
431         double airuse, pressure, sac;
432         int duration, i;
433
434         airuse = calculate_airuse(dive);
435         if (!airuse)
436                 return 0;
437         if (!dive->duration.seconds)
438                 return 0;
439
440         /* find and eliminate long surface intervals */
441         duration = dive->duration.seconds;
442         for (i = 0; i < dive->samples; i++) {
443                 if (dive->sample[i].depth.mm < 100) { /* less than 10cm */
444                         int end = i + 1;
445                         while (end < dive->samples && dive->sample[end].depth.mm < 100)
446                                 end++;
447                         /* we only want the actual surface time during a dive */
448                         if (end < dive->samples) {
449                                 end--;
450                                 duration -= dive->sample[end].time.seconds -
451                                                 dive->sample[i].time.seconds;
452                                 i = end + 1;
453                         }
454                 }
455         }
456         /* Mean pressure in atm: 1 atm per 10m */
457         pressure = 1 + (dive->meandepth.mm / 10000.0);
458         sac = airuse / pressure * 60 / duration;
459
460         /* milliliters per minute.. */
461         return sac * 1000;
462 }
463
464 void update_cylinder_related_info(struct dive *dive)
465 {
466         if (dive != NULL) {
467                 dive->sac = calculate_sac(dive);
468                 dive->otu = calculate_otu(dive);
469         }
470 }
471
472 static void get_string(char **str, const char *s)
473 {
474         int len;
475         char *n;
476
477         if (!s)
478                 s = "";
479         len = strlen(s);
480         if (len > 60)
481                 len = 60;
482         n = malloc(len+1);
483         memcpy(n, s, len);
484         n[len] = 0;
485         *str = n;
486 }
487
488 static void get_location(struct dive *dive, char **str)
489 {
490         get_string(str, dive->location);
491 }
492
493 static void get_cylinder(struct dive *dive, char **str)
494 {
495         get_string(str, dive->cylinder[0].type.description);
496 }
497
498 /*
499  * Set up anything that could have changed due to editing
500  * of dive information
501  */
502 static void fill_one_dive(struct dive *dive,
503                           GtkTreeModel *model,
504                           GtkTreeIter *iter)
505 {
506         char *location, *cylinder;
507
508         get_cylinder(dive, &cylinder);
509         get_location(dive, &location);
510
511         gtk_list_store_set(GTK_LIST_STORE(model), iter,
512                 DIVE_NR, dive->number,
513                 DIVE_LOCATION, location,
514                 DIVE_CYLINDER, cylinder,
515                 DIVE_RATING, dive->rating,
516                 DIVE_SAC, dive->sac,
517                 DIVE_OTU, dive->otu,
518                 -1);
519 }
520
521 static gboolean set_one_dive(GtkTreeModel *model,
522                              GtkTreePath *path,
523                              GtkTreeIter *iter,
524                              gpointer data)
525 {
526         GValue value = {0, };
527         struct dive *dive;
528
529         /* Get the dive number */
530         gtk_tree_model_get_value(model, iter, DIVE_INDEX, &value);
531         dive = get_dive(g_value_get_int(&value));
532         if (!dive)
533                 return TRUE;
534         if (data && dive != data)
535                 return FALSE;
536
537         fill_one_dive(dive, model, iter);
538         return dive == data;
539 }
540
541 void flush_divelist(struct dive *dive)
542 {
543         GtkTreeModel *model = GTK_TREE_MODEL(dive_list.model);
544
545         gtk_tree_model_foreach(model, set_one_dive, dive);
546 }
547
548 void set_divelist_font(const char *font)
549 {
550         PangoFontDescription *font_desc = pango_font_description_from_string(font);
551         gtk_widget_modify_font(dive_list.tree_view, font_desc);
552         pango_font_description_free(font_desc);
553 }
554
555 void update_dive_list_units(void)
556 {
557         const char *unit;
558         GtkTreeModel *model = GTK_TREE_MODEL(dive_list.model);
559
560         (void) get_depth_units(0, NULL, &unit);
561         gtk_tree_view_column_set_title(dive_list.depth, unit);
562
563         (void) get_temp_units(0, &unit);
564         gtk_tree_view_column_set_title(dive_list.temperature, unit);
565
566         gtk_tree_model_foreach(model, set_one_dive, NULL);
567 }
568
569 void update_dive_list_col_visibility(void)
570 {
571         gtk_tree_view_column_set_visible(dive_list.cylinder, visible_cols.cylinder);
572         gtk_tree_view_column_set_visible(dive_list.temperature, visible_cols.temperature);
573         gtk_tree_view_column_set_visible(dive_list.nitrox, visible_cols.nitrox);
574         gtk_tree_view_column_set_visible(dive_list.sac, visible_cols.sac);
575         gtk_tree_view_column_set_visible(dive_list.otu, visible_cols.otu);
576         return;
577 }
578
579 static void fill_dive_list(void)
580 {
581         int i;
582         GtkTreeIter iter;
583         GtkListStore *store;
584
585         store = GTK_LIST_STORE(dive_list.model);
586
587         i = dive_table.nr;
588         while (--i >= 0) {
589                 struct dive *dive = dive_table.dives[i];
590
591                 update_cylinder_related_info(dive);
592                 gtk_list_store_append(store, &iter);
593                 gtk_list_store_set(store, &iter,
594                         DIVE_INDEX, i,
595                         DIVE_NR, dive->number,
596                         DIVE_DATE, dive->when,
597                         DIVE_DEPTH, dive->maxdepth,
598                         DIVE_DURATION, dive->duration.seconds,
599                         DIVE_LOCATION, "location",
600                         DIVE_TEMPERATURE, dive->watertemp.mkelvin,
601                         DIVE_SAC, 0,
602                         -1);
603         }
604
605         update_dive_list_units();
606         if (gtk_tree_model_get_iter_first(GTK_TREE_MODEL(dive_list.model), &iter)) {
607                 GtkTreeSelection *selection;
608                 selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
609                 gtk_tree_selection_select_iter(selection, &iter);
610         }
611 }
612
613 void dive_list_update_dives(void)
614 {
615         gtk_list_store_clear(GTK_LIST_STORE(dive_list.model));
616         fill_dive_list();
617         repaint_dive();
618 }
619
620 static struct divelist_column {
621         const char *header;
622         data_func_t data;
623         sort_func_t sort;
624         unsigned int flags;
625         int *visible;
626 } column[] = {
627         [DIVE_NR] = { "#", NULL, NULL, ALIGN_RIGHT | UNSORTABLE },
628         [DIVE_DATE] = { "Date", date_data_func, NULL, ALIGN_LEFT },
629         [DIVE_RATING] = { UTF8_BLACKSTAR, star_data_func, NULL, ALIGN_LEFT },
630         [DIVE_DEPTH] = { "ft", depth_data_func, NULL, ALIGN_RIGHT },
631         [DIVE_DURATION] = { "min", duration_data_func, NULL, ALIGN_RIGHT },
632         [DIVE_TEMPERATURE] = { UTF8_DEGREE "F", temperature_data_func, NULL, ALIGN_RIGHT, &visible_cols.temperature },
633         [DIVE_CYLINDER] = { "Cyl", NULL, NULL, 0, &visible_cols.cylinder },
634         [DIVE_NITROX] = { "O" UTF8_SUBSCRIPT_2 "%", nitrox_data_func, nitrox_sort_func, 0, &visible_cols.nitrox },
635         [DIVE_SAC] = { "SAC", sac_data_func, NULL, 0, &visible_cols.sac },
636         [DIVE_OTU] = { "OTU", otu_data_func, NULL, 0, &visible_cols.otu },
637         [DIVE_LOCATION] = { "Location", NULL, NULL, ALIGN_LEFT },
638 };
639
640
641 static GtkTreeViewColumn *divelist_column(struct DiveList *dl, struct divelist_column *col)
642 {
643         int index = col - &column[0];
644         const char *title = col->header;
645         data_func_t data_func = col->data;
646         sort_func_t sort_func = col->sort;
647         unsigned int flags = col->flags;
648         int *visible = col->visible;
649         GtkWidget *tree_view = dl->tree_view;
650         GtkListStore *model = dl->model;
651         GtkTreeViewColumn *ret;
652
653         if (visible && !*visible)
654                 flags |= INVISIBLE;
655         ret = tree_view_column(tree_view, index, title, data_func, flags);
656         if (sort_func)
657                 gtk_tree_sortable_set_sort_func(GTK_TREE_SORTABLE(model), index, sort_func, NULL, NULL);
658         return ret;
659 }
660
661 /*
662  * This is some crazy crap. The only way to get default focus seems
663  * to be to grab focus as the widget is being shown the first time.
664  */
665 static void realize_cb(GtkWidget *tree_view, gpointer userdata)
666 {
667         gtk_widget_grab_focus(tree_view);
668 }
669
670 static void row_activated_cb(GtkTreeView *tree_view,
671                         GtkTreePath *path,
672                         GtkTreeViewColumn *column,
673                         GtkTreeModel *model)
674 {
675         int index;
676         GtkTreeIter iter;
677
678         if (!gtk_tree_model_get_iter(model, &iter, path))
679                 return;
680         gtk_tree_model_get(model, &iter, DIVE_INDEX, &index, -1);
681         edit_dive_info(get_dive(index));
682 }
683
684 GtkWidget *dive_list_create(void)
685 {
686         GtkTreeSelection  *selection;
687
688         dive_list.model = gtk_list_store_new(DIVELIST_COLUMNS,
689                                 G_TYPE_INT,                     /* index */
690                                 G_TYPE_INT,                     /* nr */
691                                 G_TYPE_INT,                     /* Date */
692                                 G_TYPE_INT,                     /* Star rating */
693                                 G_TYPE_INT,                     /* Depth */
694                                 G_TYPE_INT,                     /* Duration */
695                                 G_TYPE_INT,                     /* Temperature */
696                                 G_TYPE_STRING,                  /* Cylinder */
697                                 G_TYPE_INT,                     /* Nitrox */
698                                 G_TYPE_INT,                     /* SAC */
699                                 G_TYPE_INT,                     /* OTU */
700                                 G_TYPE_STRING                   /* Location */
701                                 );
702         dive_list.tree_view = gtk_tree_view_new_with_model(GTK_TREE_MODEL(dive_list.model));
703         set_divelist_font(divelist_font);
704
705         selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
706
707         gtk_tree_selection_set_mode(GTK_TREE_SELECTION(selection), GTK_SELECTION_MULTIPLE);
708         gtk_widget_set_size_request(dive_list.tree_view, 200, 200);
709
710         dive_list.nr = divelist_column(&dive_list, column + DIVE_NR);
711         dive_list.date = divelist_column(&dive_list, column + DIVE_DATE);
712         dive_list.stars = divelist_column(&dive_list, column + DIVE_RATING);
713         dive_list.depth = divelist_column(&dive_list, column + DIVE_DEPTH);
714         dive_list.duration = divelist_column(&dive_list, column + DIVE_DURATION);
715         dive_list.temperature = divelist_column(&dive_list, column + DIVE_TEMPERATURE);
716         dive_list.cylinder = divelist_column(&dive_list, column + DIVE_CYLINDER);
717         dive_list.nitrox = divelist_column(&dive_list, column + DIVE_NITROX);
718         dive_list.sac = divelist_column(&dive_list, column + DIVE_SAC);
719         dive_list.otu = divelist_column(&dive_list, column + DIVE_OTU);
720         dive_list.location = divelist_column(&dive_list, column + DIVE_LOCATION);
721
722         fill_dive_list();
723
724         g_object_set(G_OBJECT(dive_list.tree_view), "headers-visible", TRUE,
725                                           "search-column", DIVE_LOCATION,
726                                           "rules-hint", TRUE,
727                                           NULL);
728
729         g_signal_connect_after(dive_list.tree_view, "realize", G_CALLBACK(realize_cb), NULL);
730         g_signal_connect(dive_list.tree_view, "row-activated", G_CALLBACK(row_activated_cb), dive_list.model);
731         g_signal_connect(selection, "changed", G_CALLBACK(selection_cb), dive_list.model);
732
733         dive_list.container_widget = gtk_scrolled_window_new(NULL, NULL);
734         gtk_scrolled_window_set_policy(GTK_SCROLLED_WINDOW(dive_list.container_widget),
735                                GTK_POLICY_AUTOMATIC, GTK_POLICY_AUTOMATIC);
736         gtk_container_add(GTK_CONTAINER(dive_list.container_widget), dive_list.tree_view);
737
738         dive_list.changed = 0;
739
740         return dive_list.container_widget;
741 }
742
743 void mark_divelist_changed(int changed)
744 {
745         dive_list.changed = changed;
746 }
747
748 int unsaved_changes()
749 {
750         return dive_list.changed;
751 }