subsurface/divelist.c
Miika Turkia 42ea5e3510 .DLD generation for uploading to divelogs.de
This generates a .DLD file of selected dives to be uploaded to
divelogs.de. The actual upload functionality along with sensible user
interface is still to be implemented. However, the resulting file from
this patch is tested to work (as far as I can tell) using upload API of
divelogs.de.

Signed-off-by: Miika Turkia <miika.turkia@gmail.com>
Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
2013-03-10 09:29:12 -07:00

2880 lines
76 KiB
C

/* divelist.c */
/* this creates the UI for the dive list -
* controlled through the following interfaces:
*
* void flush_divelist(struct dive *dive)
* GtkWidget dive_list_create(void)
* void dive_list_update_dives(void)
* void update_dive_list_units(void)
* void set_divelist_font(const char *font)
* void mark_divelist_changed(int changed)
* int unsaved_changes()
*/
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
#include <math.h>
#include <glib/gi18n.h>
#include <assert.h>
#ifdef LIBZIP
#include <zip.h>
#endif
#ifdef XSLT
#include <libxslt/transform.h>
#endif
#include "divelist.h"
#include "dive.h"
#include "display.h"
#include "display-gtk.h"
#include <gdk-pixbuf/gdk-pixdata.h>
#include "satellite.h"
struct DiveList {
GtkWidget *tree_view;
GtkWidget *container_widget;
GtkTreeStore *model, *listmodel, *treemodel;
GtkTreeViewColumn *nr, *date, *stars, *depth, *duration, *location;
GtkTreeViewColumn *temperature, *cylinder, *totalweight, *suit, *nitrox, *sac, *otu, *maxcns;
int changed;
};
static struct DiveList dive_list;
#define MODEL(_dl) GTK_TREE_MODEL((_dl).model)
#define TREEMODEL(_dl) GTK_TREE_MODEL((_dl).treemodel)
#define LISTMODEL(_dl) GTK_TREE_MODEL((_dl).listmodel)
#define STORE(_dl) GTK_TREE_STORE((_dl).model)
#define TREESTORE(_dl) GTK_TREE_STORE((_dl).treemodel)
#define LISTSTORE(_dl) GTK_TREE_STORE((_dl).listmodel)
dive_trip_t *dive_trip_list;
gboolean autogroup = FALSE;
static gboolean in_set_cursor = FALSE;
static gboolean set_selected(GtkTreeModel *model, GtkTreePath *path,
GtkTreeIter *iter, gpointer data);
/*
* The dive list has the dive data in both string format (for showing)
* and in "raw" format (for sorting purposes)
*/
enum {
DIVE_INDEX = 0,
DIVE_NR, /* int: dive->nr */
DIVE_DATE, /* timestamp_t: dive->when */
DIVE_RATING, /* int: 0-5 stars */
DIVE_DEPTH, /* int: dive->maxdepth in mm */
DIVE_DURATION, /* int: in seconds */
DIVE_TEMPERATURE, /* int: in mkelvin */
DIVE_TOTALWEIGHT, /* int: in grams */
DIVE_SUIT, /* "wet, 3mm" */
DIVE_CYLINDER,
DIVE_NITROX, /* int: dummy */
DIVE_SAC, /* int: in ml/min */
DIVE_OTU, /* int: in OTUs */
DIVE_MAXCNS, /* int: in % */
DIVE_LOCATION, /* "2nd Cathedral, Lanai" */
DIVE_LOC_ICON, /* pixbuf for gps icon */
DIVELIST_COLUMNS
};
static void merge_dive_into_trip_above_cb(GtkWidget *menuitem, GtkTreePath *path);
#ifdef DEBUG_MODEL
static gboolean dump_model_entry(GtkTreeModel *model, GtkTreePath *path,
GtkTreeIter *iter, gpointer data)
{
char *location;
int idx, nr, duration;
struct dive *dive;
timestamp_t when;
struct tm tm;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_NR, &nr, DIVE_DATE, &when,
DIVE_DURATION, &duration, DIVE_LOCATION, &location, -1);
utc_mkdate(when, &tm);
printf("iter %x:%x entry #%d : nr %d @ %04d-%02d-%02d %02d:%02d:%02d duration %d location %s ",
iter->stamp, iter->user_data, idx, nr,
tm.tm_year+1900, tm.tm_mon+1, tm.tm_mday,
tm.tm_hour, tm.tm_min, tm.tm_sec,
duration, location);
dive = get_dive(idx);
if (dive)
printf("tripflag %d\n", dive->tripflag);
else
printf("without matching dive\n");
free(location);
return FALSE;
}
static void dump_model(GtkListStore *store)
{
gtk_tree_model_foreach(GTK_TREE_MODEL(store), dump_model_entry, NULL);
printf("\n---\n\n");
}
#endif
#if DEBUG_SELECTION_TRACKING
void dump_selection(void)
{
int i;
struct dive *dive;
printf("currently selected are %u dives:", amount_selected);
for_each_dive(i, dive) {
if (dive->selected)
printf(" %d", i);
}
printf("\n");
}
#endif
/* when subsurface starts we want to have the last dive selected. So we simply
walk to the first leaf (and skip the summary entries - which have negative
DIVE_INDEX) */
static void first_leaf(GtkTreeModel *model, GtkTreeIter *iter, int *diveidx)
{
GtkTreeIter parent;
GtkTreePath *tpath;
while (*diveidx < 0) {
memcpy(&parent, iter, sizeof(parent));
tpath = gtk_tree_model_get_path(model, &parent);
if (!gtk_tree_model_iter_children(model, iter, &parent)) {
/* we should never have a parent without child */
gtk_tree_path_free(tpath);
return;
}
if (!gtk_tree_view_row_expanded(GTK_TREE_VIEW(dive_list.tree_view), tpath))
gtk_tree_view_expand_row(GTK_TREE_VIEW(dive_list.tree_view), tpath, FALSE);
gtk_tree_path_free(tpath);
gtk_tree_model_get(model, iter, DIVE_INDEX, diveidx, -1);
}
}
static struct dive *dive_from_path(GtkTreePath *path)
{
GtkTreeIter iter;
int idx;
if (gtk_tree_model_get_iter(MODEL(dive_list), &iter, path)) {
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
return get_dive(idx);
} else {
return NULL;
}
}
static dive_trip_t *find_trip_by_idx(int idx)
{
dive_trip_t *trip = dive_trip_list;
if (idx >= 0)
return NULL;
idx = -idx;
while (trip) {
if (trip->index == idx)
return trip;
trip = trip->next;
}
return NULL;
}
static int get_path_index(GtkTreePath *path)
{
GtkTreeIter iter;
int idx;
gtk_tree_model_get_iter(MODEL(dive_list), &iter, path);
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
return idx;
}
/* make sure that if we expand a summary row that is selected, the children show
up as selected, too */
static void row_expanded_cb(GtkTreeView *tree_view, GtkTreeIter *iter, GtkTreePath *path, gpointer data)
{
GtkTreeIter child;
GtkTreeModel *model = MODEL(dive_list);
GtkTreeSelection *selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
dive_trip_t *trip;
trip = find_trip_by_idx(get_path_index(path));
if (!trip)
return;
trip->expanded = 1;
if (!gtk_tree_model_iter_children(model, &child, iter))
return;
do {
int idx;
struct dive *dive;
gtk_tree_model_get(model, &child, DIVE_INDEX, &idx, -1);
dive = get_dive(idx);
if (dive->selected)
gtk_tree_selection_select_iter(selection, &child);
else
gtk_tree_selection_unselect_iter(selection, &child);
} while (gtk_tree_model_iter_next(model, &child));
}
static int trip_has_selected_dives(dive_trip_t *trip)
{
struct dive *dive;
for (dive = trip->dives; dive; dive = dive->next) {
if (dive->selected)
return 1;
}
return 0;
}
/* Make sure that if we collapse a summary row with any selected children, the row
shows up as selected too */
static void row_collapsed_cb(GtkTreeView *tree_view, GtkTreeIter *iter, GtkTreePath *path, gpointer data)
{
dive_trip_t *trip;
GtkTreeSelection *selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
trip = find_trip_by_idx(get_path_index(path));
if (!trip)
return;
trip->expanded = 0;
if (trip_has_selected_dives(trip)) {
gtk_tree_selection_select_iter(selection, iter);
trip->selected = 1;
}
}
const char *star_strings[] = {
ZERO_STARS,
ONE_STARS,
TWO_STARS,
THREE_STARS,
FOUR_STARS,
FIVE_STARS
};
static void star_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int nr_stars, idx;
char buffer[40];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_RATING, &nr_stars, -1);
if (idx < 0) {
*buffer = '\0';
} else {
if (nr_stars < 0 || nr_stars > 5)
nr_stars = 0;
snprintf(buffer, sizeof(buffer), "%s", star_strings[nr_stars]);
}
g_object_set(renderer, "text", buffer, NULL);
}
static void date_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int idx, nr;
struct tm tm;
timestamp_t when;
/* this should be enought for most languages. if not increase the value. */
char buffer[256];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_DATE, &when, -1);
nr = gtk_tree_model_iter_n_children(model, iter);
utc_mkdate(when, &tm);
if (idx < 0) {
snprintf(buffer, sizeof(buffer),
/*++GETTEXT 60 char buffer weekday, monthname, day of month, year, nr dives */
ngettext("Trip %1$s, %2$s %3$d, %4$d (%5$d dive)",
"Trip %1$s, %2$s %3$d, %4$d (%5$d dives)", nr),
weekday(tm.tm_wday),
monthname(tm.tm_mon),
tm.tm_mday, tm.tm_year + 1900,
nr);
} else {
snprintf(buffer, sizeof(buffer),
/*++GETTEXT 60 char buffer weekday, monthname, day of month, year, hour:min */
_("%1$s, %2$s %3$d, %4$d %5$02d:%6$02d"),
weekday(tm.tm_wday),
monthname(tm.tm_mon),
tm.tm_mday, tm.tm_year + 1900,
tm.tm_hour, tm.tm_min);
}
g_object_set(renderer, "text", buffer, NULL);
}
static void depth_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int depth, integer, frac, len, idx;
char buffer[40];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_DEPTH, &depth, -1);
if (idx < 0) {
*buffer = '\0';
} else {
switch (prefs.units.length) {
case METERS:
/* To tenths of meters */
depth = (depth + 49) / 100;
integer = depth / 10;
frac = depth % 10;
if (integer < 20)
break;
if (frac >= 5)
integer++;
frac = -1;
break;
case FEET:
integer = mm_to_feet(depth) + 0.5;
frac = -1;
break;
default:
return;
}
len = snprintf(buffer, sizeof(buffer), "%d", integer);
if (frac >= 0)
len += snprintf(buffer+len, sizeof(buffer)-len, ".%d", frac);
}
g_object_set(renderer, "text", buffer, NULL);
}
static void duration_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
unsigned int sec;
int idx;
char buffer[40];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_DURATION, &sec, -1);
if (idx < 0)
*buffer = '\0';
else
snprintf(buffer, sizeof(buffer), "%d:%02d", sec / 60, sec % 60);
g_object_set(renderer, "text", buffer, NULL);
}
static void temperature_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int value, idx;
char buffer[80];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_TEMPERATURE, &value, -1);
*buffer = 0;
if (idx >= 0 && value) {
double deg;
switch (prefs.units.temperature) {
case CELSIUS:
deg = mkelvin_to_C(value);
break;
case FAHRENHEIT:
deg = mkelvin_to_F(value);
break;
default:
return;
}
snprintf(buffer, sizeof(buffer), "%.1f", deg);
}
g_object_set(renderer, "text", buffer, NULL);
}
static void gpsicon_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int idx;
GdkPixbuf *icon;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_LOC_ICON, &icon, -1);
g_object_set(renderer, "pixbuf", icon, NULL);
}
static void nr_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int idx, nr;
char buffer[40];
struct dive *dive;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_NR, &nr, -1);
if (idx < 0) {
*buffer = '\0';
} else {
/* make dives that are not in trips stand out */
dive = get_dive(idx);
if (!DIVE_IN_TRIP(dive))
snprintf(buffer, sizeof(buffer), "<b>%d</b>", nr);
else
snprintf(buffer, sizeof(buffer), "%d", nr);
}
g_object_set(renderer, "markup", buffer, NULL);
}
/*
* Get "maximal" dive gas for a dive.
* Rules:
* - Trimix trumps nitrox (highest He wins, O2 breaks ties)
* - Nitrox trumps air (even if hypoxic)
* These are the same rules as the inter-dive sorting rules.
*/
static void get_dive_gas(struct dive *dive, int *o2_p, int *he_p, int *o2low_p)
{
int i;
int maxo2 = -1, maxhe = -1, mino2 = 1000;
for (i = 0; i < MAX_CYLINDERS; i++) {
cylinder_t *cyl = dive->cylinder + i;
struct gasmix *mix = &cyl->gasmix;
int o2 = mix->o2.permille;
int he = mix->he.permille;
if (cylinder_none(cyl))
continue;
if (!o2)
o2 = O2_IN_AIR;
if (o2 < mino2)
mino2 = o2;
if (he > maxhe)
goto newmax;
if (he < maxhe)
continue;
if (o2 <= maxo2)
continue;
newmax:
maxhe = he;
maxo2 = o2;
}
/* All air? Show/sort as "air"/zero */
if (!maxhe && maxo2 == O2_IN_AIR && mino2 == maxo2)
maxo2 = mino2 = 0;
*o2_p = maxo2;
*he_p = maxhe;
*o2low_p = mino2;
}
int total_weight(struct dive *dive)
{
int i, total_grams = 0;
if (dive)
for (i=0; i< MAX_WEIGHTSYSTEMS; i++)
total_grams += dive->weightsystem[i].weight.grams;
return total_grams;
}
static void weight_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int indx, decimals;
double value;
char buffer[80];
struct dive *dive;
gtk_tree_model_get(model, iter, DIVE_INDEX, &indx, -1);
dive = get_dive(indx);
value = get_weight_units(total_weight(dive), &decimals, NULL);
if (value == 0.0)
*buffer = '\0';
else
snprintf(buffer, sizeof(buffer), "%.*f", decimals, value);
g_object_set(renderer, "text", buffer, NULL);
}
static gint nitrox_sort_func(GtkTreeModel *model,
GtkTreeIter *iter_a,
GtkTreeIter *iter_b,
gpointer user_data)
{
int index_a, index_b;
struct dive *a, *b;
int a_o2, b_o2;
int a_he, b_he;
int a_o2low, b_o2low;
gtk_tree_model_get(model, iter_a, DIVE_INDEX, &index_a, -1);
gtk_tree_model_get(model, iter_b, DIVE_INDEX, &index_b, -1);
a = get_dive(index_a);
b = get_dive(index_b);
get_dive_gas(a, &a_o2, &a_he, &a_o2low);
get_dive_gas(b, &b_o2, &b_he, &b_o2low);
/* Sort by Helium first, O2 second */
if (a_he == b_he) {
if (a_o2 == b_o2)
return a_o2low - b_o2low;
return a_o2 - b_o2;
}
return a_he - b_he;
}
#define UTF8_ELLIPSIS "\xE2\x80\xA6"
static void nitrox_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int idx, o2, he, o2low;
char buffer[80];
struct dive *dive;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
*buffer = '\0';
goto exit;
}
dive = get_dive(idx);
get_dive_gas(dive, &o2, &he, &o2low);
o2 = (o2 + 5) / 10;
he = (he + 5) / 10;
o2low = (o2low + 5) / 10;
if (he)
snprintf(buffer, sizeof(buffer), "%d/%d", o2, he);
else if (o2)
if (o2 == o2low)
snprintf(buffer, sizeof(buffer), "%d", o2);
else
snprintf(buffer, sizeof(buffer), "%d" UTF8_ELLIPSIS "%d", o2low, o2);
else
strcpy(buffer, _("air"));
exit:
g_object_set(renderer, "text", buffer, NULL);
}
/* Render the SAC data (integer value of "ml / min") */
static void sac_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int value, idx;
const char *fmt;
char buffer[16];
double sac;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_SAC, &value, -1);
if (idx < 0 || !value) {
*buffer = '\0';
goto exit;
}
sac = value / 1000.0;
switch (prefs.units.volume) {
case LITER:
fmt = "%4.1f";
break;
case CUFT:
fmt = "%4.2f";
sac = ml_to_cuft(sac * 1000);
break;
}
snprintf(buffer, sizeof(buffer), fmt, sac);
exit:
g_object_set(renderer, "text", buffer, NULL);
}
/* Render the OTU data (integer value of "OTU") */
static void otu_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int value, idx;
char buffer[16];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_OTU, &value, -1);
if (idx < 0 || !value)
*buffer = '\0';
else
snprintf(buffer, sizeof(buffer), "%d", value);
g_object_set(renderer, "text", buffer, NULL);
}
/* Render the CNS data (in full %) */
static void cns_data_func(GtkTreeViewColumn *col,
GtkCellRenderer *renderer,
GtkTreeModel *model,
GtkTreeIter *iter,
gpointer data)
{
int value, idx;
char buffer[16];
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, DIVE_MAXCNS, &value, -1);
if (idx < 0 || !value)
*buffer = '\0';
else
snprintf(buffer, sizeof(buffer), "%d%%", value);
g_object_set(renderer, "text", buffer, NULL);
}
static int active_o2(struct dive *dive, struct divecomputer *dc, duration_t time)
{
int o2permille = dive->cylinder[0].gasmix.o2.permille;
struct event *event = dc->events;
if (!o2permille)
o2permille = O2_IN_AIR;
for (event = dc->events; event; event = event->next) {
if (event->time.seconds > time.seconds)
break;
if (strcmp(event->name, "gaschange"))
continue;
o2permille = 10*(event->value & 0xffff);
}
return o2permille;
}
/* calculate OTU for a dive - this only takes the first diveomputer into account */
static int calculate_otu(struct dive *dive)
{
int i;
double otu = 0.0;
struct divecomputer *dc = &dive->dc;
for (i = 1; i < dc->samples; i++) {
int t;
int po2;
struct sample *sample = dc->sample + i;
struct sample *psample = sample - 1;
t = sample->time.seconds - psample->time.seconds;
if (sample->po2) {
po2 = sample->po2;
} else {
int o2 = active_o2(dive, dc, sample->time);
po2 = o2 / 1000.0 * depth_to_mbar(sample->depth.mm, dive);
}
if (po2 >= 500)
otu += pow((po2 - 500) / 1000.0, 0.83) * t / 30.0;
}
return otu + 0.5;
}
/*
* Return air usage (in liters).
*/
static double calculate_airuse(struct dive *dive)
{
int airuse = 0;
int i;
for (i = 0; i < MAX_CYLINDERS; i++) {
pressure_t start, end;
cylinder_t *cyl = dive->cylinder + i;
start = cyl->start.mbar ? cyl->start : cyl->sample_start;
end = cyl->end.mbar ? cyl->end : cyl->sample_end;
airuse += gas_volume(cyl, start) - gas_volume(cyl, end);
}
return airuse / 1000.0;
}
/* this only uses the first divecomputer to calculate the SAC rate */
static int calculate_sac(struct dive *dive)
{
struct divecomputer *dc = &dive->dc;
double airuse, pressure, sac;
int duration, meandepth;
airuse = calculate_airuse(dive);
if (!airuse)
return 0;
duration = dc->duration.seconds;
if (!duration)
return 0;
meandepth = dc->meandepth.mm;
if (!meandepth)
return 0;
/* Mean pressure in ATM (SAC calculations are in atm*l/min) */
pressure = (double) depth_to_mbar(meandepth, dive) / SURFACE_PRESSURE;
sac = airuse / pressure * 60 / duration;
/* milliliters per minute.. */
return sac * 1000;
}
/* for now we do this based on the first divecomputer */
static void add_dive_to_deco(struct dive *dive)
{
struct divecomputer *dc = &dive->dc;
int i;
if (!dc)
return;
for (i = 1; i < dc->samples; i++) {
struct sample *psample = dc->sample + i - 1;
struct sample *sample = dc->sample + i;
int t0 = psample->time.seconds;
int t1 = sample->time.seconds;
int j;
for (j = t0; j < t1; j++) {
int depth = interpolate(psample->depth.mm, sample->depth.mm, j - t0, t1 - t0);
(void) add_segment(depth_to_mbar(depth, dive) / 1000.0,
&dive->cylinder[sample->sensor].gasmix, 1, sample->po2, dive);
}
}
}
static int get_divenr(struct dive *dive)
{
int divenr = -1;
while (++divenr < dive_table.nr && get_dive(divenr) != dive)
;
return divenr;
}
static struct gasmix air = { .o2.permille = O2_IN_AIR };
/* take into account previous dives until there is a 48h gap between dives */
double init_decompression(struct dive *dive)
{
int i, divenr = -1;
unsigned int surface_time;
timestamp_t when, lasttime = 0;
gboolean deco_init = FALSE;
double tissue_tolerance, surface_pressure;
if (!dive)
return 0.0;
divenr = get_divenr(dive);
when = dive->when;
i = divenr;
while (i && --i) {
struct dive* pdive = get_dive(i);
/* we don't want to mix dives from different trips as we keep looking
* for how far back we need to go */
if (dive->divetrip && pdive->divetrip != dive->divetrip)
continue;
if (!pdive || pdive->when > when || pdive->when + pdive->duration.seconds + 48 * 60 * 60 < when)
break;
when = pdive->when;
lasttime = when + pdive->duration.seconds;
}
while (++i < divenr) {
struct dive* pdive = get_dive(i);
/* again skip dives from different trips */
if (dive->divetrip && dive->divetrip != pdive->divetrip)
continue;
surface_pressure = get_surface_pressure_in_mbar(pdive, TRUE) / 1000.0;
if (!deco_init) {
clear_deco(surface_pressure);
deco_init = TRUE;
#if DECO_CALC_DEBUG & 2
dump_tissues();
#endif
}
add_dive_to_deco(pdive);
#if DECO_CALC_DEBUG & 2
printf("added dive #%d\n", pdive->number);
dump_tissues();
#endif
if (pdive->when > lasttime) {
surface_time = pdive->when - lasttime;
lasttime = pdive->when + pdive->duration.seconds;
tissue_tolerance = add_segment(surface_pressure, &air, surface_time, 0, dive);
#if DECO_CALC_DEBUG & 2
printf("after surface intervall of %d:%02u\n", FRACTION(surface_time,60));
dump_tissues();
#endif
}
}
/* add the final surface time */
if (lasttime && dive->when > lasttime) {
surface_time = dive->when - lasttime;
surface_pressure = get_surface_pressure_in_mbar(dive, TRUE) / 1000.0;
tissue_tolerance = add_segment(surface_pressure, &air, surface_time, 0, dive);
#if DECO_CALC_DEBUG & 2
printf("after surface intervall of %d:%02u\n", FRACTION(surface_time,60));
dump_tissues();
#endif
}
if (!deco_init) {
double surface_pressure = get_surface_pressure_in_mbar(dive, TRUE) / 1000.0;
clear_deco(surface_pressure);
#if DECO_CALC_DEBUG & 2
printf("no previous dive\n");
dump_tissues();
#endif
}
return tissue_tolerance;
}
void update_cylinder_related_info(struct dive *dive)
{
if (dive != NULL) {
dive->sac = calculate_sac(dive);
dive->otu = calculate_otu(dive);
}
}
static void get_string(char **str, const char *s)
{
int len;
char *n;
if (!s)
s = "";
len = g_utf8_strlen(s, -1);
if (len > 60)
len = 60;
n = malloc(len * sizeof(gunichar) + 1);
g_utf8_strncpy(n, s, len);
*str = n;
}
static void get_location(struct dive *dive, char **str)
{
get_string(str, dive->location);
}
static void get_cylinder(struct dive *dive, char **str)
{
get_string(str, dive->cylinder[0].type.description);
}
static void get_suit(struct dive *dive, char **str)
{
get_string(str, dive->suit);
}
GdkPixbuf *get_gps_icon(void)
{
return gdk_pixbuf_from_pixdata(&satellite_pixbuf, TRUE, NULL);
}
static GdkPixbuf *get_gps_icon_for_dive(struct dive *dive)
{
if (dive_has_gps_location(dive))
return get_gps_icon();
else
return NULL;
}
/*
* Set up anything that could have changed due to editing
* of dive information; we need to do this for both models,
* so we simply call set_one_dive again with the non-current model
*/
/* forward declaration for recursion */
static gboolean set_one_dive(GtkTreeModel *model,
GtkTreePath *path,
GtkTreeIter *iter,
gpointer data);
static void fill_one_dive(struct dive *dive,
GtkTreeModel *model,
GtkTreeIter *iter)
{
char *location, *cylinder, *suit;
GtkTreeModel *othermodel;
GdkPixbuf *icon;
get_cylinder(dive, &cylinder);
get_location(dive, &location);
get_suit(dive, &suit);
icon = get_gps_icon_for_dive(dive);
gtk_tree_store_set(GTK_TREE_STORE(model), iter,
DIVE_NR, dive->number,
DIVE_LOCATION, location,
DIVE_LOC_ICON, icon,
DIVE_CYLINDER, cylinder,
DIVE_RATING, dive->rating,
DIVE_SAC, dive->sac,
DIVE_OTU, dive->otu,
DIVE_MAXCNS, dive->maxcns,
DIVE_TOTALWEIGHT, total_weight(dive),
DIVE_SUIT, suit,
-1);
if (icon)
g_object_unref(icon);
free(location);
free(cylinder);
free(suit);
if (model == TREEMODEL(dive_list))
othermodel = LISTMODEL(dive_list);
else
othermodel = TREEMODEL(dive_list);
if (othermodel != MODEL(dive_list))
/* recursive call */
gtk_tree_model_foreach(othermodel, set_one_dive, dive);
}
static gboolean set_one_dive(GtkTreeModel *model,
GtkTreePath *path,
GtkTreeIter *iter,
gpointer data)
{
int idx;
struct dive *dive;
/* Get the dive number */
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx < 0)
return FALSE;
dive = get_dive(idx);
if (!dive)
return TRUE;
if (data && dive != data)
return FALSE;
fill_one_dive(dive, model, iter);
return dive == data;
}
void flush_divelist(struct dive *dive)
{
GtkTreeModel *model = MODEL(dive_list);
gtk_tree_model_foreach(model, set_one_dive, dive);
}
void set_divelist_font(const char *font)
{
PangoFontDescription *font_desc = pango_font_description_from_string(font);
gtk_widget_modify_font(dive_list.tree_view, font_desc);
pango_font_description_free(font_desc);
}
void update_dive_list_units(void)
{
const char *unit;
GtkTreeModel *model = MODEL(dive_list);
(void) get_depth_units(0, NULL, &unit);
gtk_tree_view_column_set_title(dive_list.depth, unit);
(void) get_temp_units(0, &unit);
gtk_tree_view_column_set_title(dive_list.temperature, unit);
(void) get_weight_units(0, NULL, &unit);
gtk_tree_view_column_set_title(dive_list.totalweight, unit);
gtk_tree_model_foreach(model, set_one_dive, NULL);
}
void update_dive_list_col_visibility(void)
{
gtk_tree_view_column_set_visible(dive_list.cylinder, prefs.visible_cols.cylinder);
gtk_tree_view_column_set_visible(dive_list.temperature, prefs.visible_cols.temperature);
gtk_tree_view_column_set_visible(dive_list.totalweight, prefs.visible_cols.totalweight);
gtk_tree_view_column_set_visible(dive_list.suit, prefs.visible_cols.suit);
gtk_tree_view_column_set_visible(dive_list.nitrox, prefs.visible_cols.nitrox);
gtk_tree_view_column_set_visible(dive_list.sac, prefs.visible_cols.sac);
gtk_tree_view_column_set_visible(dive_list.otu, prefs.visible_cols.otu);
gtk_tree_view_column_set_visible(dive_list.maxcns, prefs.visible_cols.maxcns);
return;
}
/*
* helper functions for dive_trip handling
*/
#ifdef DEBUG_TRIP
static void dump_trip_list(void)
{
dive_trip_t *trip;
int i=0;
timestamp_t last_time = 0;
for (trip = dive_trip_list; trip; trip = trip->next) {
struct tm tm;
utc_mkdate(trip->when, &tm);
if (trip->when < last_time)
printf("\n\ndive_trip_list OUT OF ORDER!!!\n\n\n");
printf("%s trip %d to \"%s\" on %04u-%02u-%02u %02u:%02u:%02u (%d dives - %p)\n",
trip->autogen ? "autogen " : "",
++i, trip->location,
tm.tm_year + 1900, tm.tm_mon+1, tm.tm_mday, tm.tm_hour, tm.tm_min, tm.tm_sec,
trip->nrdives, trip);
last_time = trip->when;
}
printf("-----\n");
}
#endif
/* this finds the last trip that at or before the time given */
static dive_trip_t *find_matching_trip(timestamp_t when)
{
dive_trip_t *trip = dive_trip_list;
if (!trip || trip->when > when) {
#ifdef DEBUG_TRIP
printf("no matching trip\n");
#endif
return NULL;
}
while (trip->next && trip->next->when <= when)
trip = trip->next;
#ifdef DEBUG_TRIP
{
struct tm tm;
utc_mkdate(trip->when, &tm);
printf("found trip %p @ %04d-%02d-%02d %02d:%02d:%02d\n",
trip,
tm.tm_year+1900, tm.tm_mon+1, tm.tm_mday,
tm.tm_hour, tm.tm_min, tm.tm_sec);
}
#endif
return trip;
}
/* insert the trip into the dive_trip_list - but ensure you don't have
* two trips for the same date; but if you have, make sure you don't
* keep the one with less information */
void insert_trip(dive_trip_t **dive_trip_p)
{
dive_trip_t *dive_trip = *dive_trip_p;
dive_trip_t **p = &dive_trip_list;
dive_trip_t *trip;
struct dive *divep;
/* Walk the dive trip list looking for the right location.. */
while ((trip = *p) != NULL && trip->when < dive_trip->when)
p = &trip->next;
if (trip && trip->when == dive_trip->when) {
if (! trip->location)
trip->location = dive_trip->location;
if (! trip->notes)
trip->notes = dive_trip->notes;
divep = dive_trip->dives;
while (divep) {
add_dive_to_trip(divep, trip);
divep = divep->next;
}
*dive_trip_p = trip;
} else {
dive_trip->next = trip;
*p = dive_trip;
}
#ifdef DEBUG_TRIP
dump_trip_list();
#endif
}
static void delete_trip(dive_trip_t *trip)
{
dive_trip_t **p, *tmp;
assert(!trip->dives);
/* Remove the trip from the list of trips */
p = &dive_trip_list;
while ((tmp = *p) != NULL) {
if (tmp == trip) {
*p = trip->next;
break;
}
p = &tmp->next;
}
/* .. and free it */
if (trip->location)
free(trip->location);
if (trip->notes)
free(trip->notes);
free(trip);
}
static void find_new_trip_start_time(dive_trip_t *trip)
{
struct dive *dive = trip->dives;
timestamp_t when = dive->when;
while ((dive = dive->next) != NULL) {
if (dive->when < when)
when = dive->when;
}
trip->when = when;
}
static void remove_dive_from_trip(struct dive *dive)
{
struct dive *next, **pprev;
dive_trip_t *trip = dive->divetrip;
if (!trip)
return;
/* Remove the dive from the trip's list of dives */
next = dive->next;
pprev = dive->pprev;
*pprev = next;
if (next)
next->pprev = pprev;
dive->divetrip = NULL;
dive->tripflag = NO_TRIP;
assert(trip->nrdives > 0);
if (!--trip->nrdives)
delete_trip(trip);
else if (trip->when == dive->when)
find_new_trip_start_time(trip);
}
void add_dive_to_trip(struct dive *dive, dive_trip_t *trip)
{
if (dive->divetrip == trip)
return;
assert(trip->when);
remove_dive_from_trip(dive);
trip->nrdives++;
dive->divetrip = trip;
dive->tripflag = ASSIGNED_TRIP;
/* Add it to the trip's list of dives*/
dive->next = trip->dives;
if (dive->next)
dive->next->pprev = &dive->next;
trip->dives = dive;
dive->pprev = &trip->dives;
if (dive->when && trip->when > dive->when)
trip->when = dive->when;
}
static dive_trip_t *create_and_hookup_trip_from_dive(struct dive *dive)
{
dive_trip_t *dive_trip = calloc(sizeof(dive_trip_t),1);
dive_trip->when = dive->when;
if (dive->location)
dive_trip->location = strdup(dive->location);
insert_trip(&dive_trip);
dive->tripflag = IN_TRIP;
add_dive_to_trip(dive, dive_trip);
return dive_trip;
}
/*
* Walk the dives from the oldest dive, and see if we can autogroup them
*/
static void autogroup_dives(void)
{
int i;
struct dive *dive, *lastdive = NULL;
for_each_dive(i, dive) {
dive_trip_t *trip;
if (dive->divetrip) {
lastdive = dive;
continue;
}
if (!DIVE_NEEDS_TRIP(dive)) {
lastdive = NULL;
continue;
}
/* Do we have a trip we can combine this into? */
if (lastdive && dive->when < lastdive->when + TRIP_THRESHOLD) {
dive_trip_t *trip = lastdive->divetrip;
add_dive_to_trip(dive, trip);
if (dive->location && !trip->location)
trip->location = strdup(dive->location);
lastdive = dive;
continue;
}
lastdive = dive;
trip = create_and_hookup_trip_from_dive(dive);
trip->autogen = 1;
}
#ifdef DEBUG_TRIP
dump_trip_list();
#endif
}
static void clear_trip_indexes(void)
{
dive_trip_t *trip;
for (trip = dive_trip_list; trip != NULL; trip = trip->next)
trip->index = 0;
}
/* Select the iter asked for, and set the keyboard focus on it */
static void go_to_iter(GtkTreeSelection *selection, GtkTreeIter *iter);
static void fill_dive_list(void)
{
int i, trip_index = 0;
GtkTreeIter iter, parent_iter, lookup, *parent_ptr = NULL;
GtkTreeStore *liststore, *treestore;
GdkPixbuf *icon;
/* Do we need to create any dive groups automatically? */
if (autogroup)
autogroup_dives();
treestore = TREESTORE(dive_list);
liststore = LISTSTORE(dive_list);
clear_trip_indexes();
i = dive_table.nr;
while (--i >= 0) {
struct dive *dive = get_dive(i);
dive_trip_t *trip = dive->divetrip;
if (!trip) {
parent_ptr = NULL;
} else if (!trip->index) {
trip->index = ++trip_index;
/* Create new trip entry */
gtk_tree_store_append(treestore, &parent_iter, NULL);
parent_ptr = &parent_iter;
/* a duration of 0 (and negative index) identifies a group */
gtk_tree_store_set(treestore, parent_ptr,
DIVE_INDEX, -trip_index,
DIVE_DATE, trip->when,
DIVE_LOCATION, trip->location,
DIVE_DURATION, 0,
-1);
} else {
int idx, ok;
GtkTreeModel *model = TREEMODEL(dive_list);
parent_ptr = NULL;
ok = gtk_tree_model_get_iter_first(model, &lookup);
while (ok) {
gtk_tree_model_get(model, &lookup, DIVE_INDEX, &idx, -1);
if (idx == -trip->index) {
parent_ptr = &lookup;
break;
}
ok = gtk_tree_model_iter_next(model, &lookup);
}
}
/* store dive */
update_cylinder_related_info(dive);
gtk_tree_store_append(treestore, &iter, parent_ptr);
icon = get_gps_icon_for_dive(dive);
gtk_tree_store_set(treestore, &iter,
DIVE_INDEX, i,
DIVE_NR, dive->number,
DIVE_DATE, dive->when,
DIVE_DEPTH, dive->maxdepth,
DIVE_DURATION, dive->duration.seconds,
DIVE_LOCATION, dive->location,
DIVE_LOC_ICON, icon,
DIVE_RATING, dive->rating,
DIVE_TEMPERATURE, dive->watertemp.mkelvin,
DIVE_SAC, 0,
-1);
if (icon)
g_object_unref(icon);
gtk_tree_store_append(liststore, &iter, NULL);
gtk_tree_store_set(liststore, &iter,
DIVE_INDEX, i,
DIVE_NR, dive->number,
DIVE_DATE, dive->when,
DIVE_DEPTH, dive->maxdepth,
DIVE_DURATION, dive->duration.seconds,
DIVE_LOCATION, dive->location,
DIVE_LOC_ICON, icon,
DIVE_RATING, dive->rating,
DIVE_TEMPERATURE, dive->watertemp.mkelvin,
DIVE_TOTALWEIGHT, 0,
DIVE_SUIT, dive->suit,
DIVE_SAC, 0,
-1);
}
update_dive_list_units();
if (amount_selected == 0 && gtk_tree_model_get_iter_first(MODEL(dive_list), &iter)) {
GtkTreeSelection *selection;
/* select the last dive (and make sure it's an actual dive that is selected) */
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &selected_dive, -1);
first_leaf(MODEL(dive_list), &iter, &selected_dive);
selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
go_to_iter(selection, &iter);
}
}
static void restore_tree_state(void);
void dive_list_update_dives(void)
{
dive_table.preexisting = dive_table.nr;
gtk_tree_store_clear(TREESTORE(dive_list));
gtk_tree_store_clear(LISTSTORE(dive_list));
fill_dive_list();
restore_tree_state();
repaint_dive();
}
static gint dive_nr_sort(GtkTreeModel *model,
GtkTreeIter *iter_a,
GtkTreeIter *iter_b,
gpointer user_data)
{
int idx_a, idx_b;
timestamp_t when_a, when_b;
struct dive *a, *b;
dive_trip_t *tripa = NULL, *tripb = NULL;
gtk_tree_model_get(model, iter_a, DIVE_INDEX, &idx_a, DIVE_DATE, &when_a, -1);
gtk_tree_model_get(model, iter_b, DIVE_INDEX, &idx_b, DIVE_DATE, &when_b, -1);
if (idx_a < 0) {
a = NULL;
tripa = find_trip_by_idx(idx_a);
} else {
a = get_dive(idx_a);
if (a)
tripa = a->divetrip;
}
if (idx_b < 0) {
b = NULL;
tripb = find_trip_by_idx(idx_b);
} else {
b = get_dive(idx_b);
if (b)
tripb = b->divetrip;
}
/*
* Compare dive dates within the same trip (or when there
* are no trips involved at all). But if we have two
* different trips use the trip dates for comparison
*/
if (tripa != tripb) {
if (tripa)
when_a = tripa->when;
if (tripb)
when_b = tripb->when;
}
return when_a - when_b;
}
static struct divelist_column {
const char *header;
data_func_t data;
sort_func_t sort;
unsigned int flags;
int *visible;
} dl_column[] = {
[DIVE_NR] = { "#", nr_data_func, dive_nr_sort, ALIGN_RIGHT },
[DIVE_DATE] = { N_("Date"), date_data_func, NULL, ALIGN_LEFT },
[DIVE_RATING] = { UTF8_BLACKSTAR, star_data_func, NULL, ALIGN_LEFT },
[DIVE_DEPTH] = { N_("ft"), depth_data_func, NULL, ALIGN_RIGHT },
[DIVE_DURATION] = { N_("min"), duration_data_func, NULL, ALIGN_RIGHT },
[DIVE_TEMPERATURE] = { UTF8_DEGREE "F", temperature_data_func, NULL, ALIGN_RIGHT, &prefs.visible_cols.temperature },
[DIVE_TOTALWEIGHT] = { N_("lbs"), weight_data_func, NULL, ALIGN_RIGHT, &prefs.visible_cols.totalweight },
[DIVE_SUIT] = { N_("Suit"), NULL, NULL, ALIGN_LEFT, &prefs.visible_cols.suit },
[DIVE_CYLINDER] = { N_("Cyl"), NULL, NULL, 0, &prefs.visible_cols.cylinder },
[DIVE_NITROX] = { "O" UTF8_SUBSCRIPT_2 "%", nitrox_data_func, nitrox_sort_func, 0, &prefs.visible_cols.nitrox },
[DIVE_SAC] = { N_("SAC"), sac_data_func, NULL, 0, &prefs.visible_cols.sac },
[DIVE_OTU] = { N_("OTU"), otu_data_func, NULL, 0, &prefs.visible_cols.otu },
[DIVE_MAXCNS] = { N_("maxCNS"), cns_data_func, NULL, 0, &prefs.visible_cols.maxcns },
[DIVE_LOCATION] = { N_("Location"), NULL, NULL, ALIGN_LEFT },
};
static GtkTreeViewColumn *divelist_column(struct DiveList *dl, struct divelist_column *col)
{
int index = col - &dl_column[0];
const char *title = _(col->header);
data_func_t data_func = col->data;
sort_func_t sort_func = col->sort;
unsigned int flags = col->flags;
int *visible = col->visible;
GtkWidget *tree_view = dl->tree_view;
GtkTreeStore *treemodel = dl->treemodel;
GtkTreeStore *listmodel = dl->listmodel;
GtkTreeViewColumn *ret;
if (visible && !*visible)
flags |= INVISIBLE;
ret = tree_view_column(tree_view, index, title, data_func, flags);
if (sort_func) {
/* the sort functions are needed in the corresponding models */
if (index == DIVE_NR)
gtk_tree_sortable_set_sort_func(GTK_TREE_SORTABLE(treemodel), index, sort_func, NULL, NULL);
else
gtk_tree_sortable_set_sort_func(GTK_TREE_SORTABLE(listmodel), index, sort_func, NULL, NULL);
}
return ret;
}
/*
* This is some crazy crap. The only way to get default focus seems
* to be to grab focus as the widget is being shown the first time.
*/
static void realize_cb(GtkWidget *tree_view, gpointer userdata)
{
gtk_widget_grab_focus(tree_view);
}
/*
* Double-clicking on a group entry will expand a collapsed group
* and vice versa.
*/
static void collapse_expand(GtkTreeView *tree_view, GtkTreePath *path)
{
if (!gtk_tree_view_row_expanded(tree_view, path))
gtk_tree_view_expand_row(tree_view, path, FALSE);
else
gtk_tree_view_collapse_row(tree_view, path);
}
/* Double-click on a dive list */
static void row_activated_cb(GtkTreeView *tree_view,
GtkTreePath *path,
GtkTreeViewColumn *column,
gpointer userdata)
{
int index;
GtkTreeIter iter;
if (!gtk_tree_model_get_iter(MODEL(dive_list), &iter, path))
return;
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &index, -1);
/* a negative index is special for the "group by date" entries */
if (index < 0) {
collapse_expand(tree_view, path);
return;
}
edit_dive_info(get_dive(index), FALSE);
}
void add_dive_cb(GtkWidget *menuitem, gpointer data)
{
struct dive *dive;
dive = alloc_dive();
if (add_new_dive(dive)) {
record_dive(dive);
report_dives(TRUE, FALSE);
return;
}
free(dive);
}
static void edit_trip_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int idx;
GtkTreeIter iter;
dive_trip_t *dive_trip;
gtk_tree_model_get_iter(MODEL(dive_list), &iter, path);
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
dive_trip = find_trip_by_idx(idx);
if (edit_trip(dive_trip))
gtk_tree_store_set(STORE(dive_list), &iter, DIVE_LOCATION, dive_trip->location, -1);
}
static void edit_selected_dives_cb(GtkWidget *menuitem, gpointer data)
{
edit_multi_dive_info(NULL);
}
static void edit_dive_from_path_cb(GtkWidget *menuitem, GtkTreePath *path)
{
struct dive *dive = dive_from_path(path);
edit_multi_dive_info(dive);
}
static void edit_dive_when_cb(GtkWidget *menuitem, struct dive *dive)
{
GtkWidget *dialog, *cal, *h, *m, *timehbox;
timestamp_t when;
guint yval, mval, dval;
int success;
struct tm tm;
if (!dive)
return;
when = dive->when;
utc_mkdate(when, &tm);
dialog = create_date_time_widget(&tm, &cal, &h, &m, &timehbox);
gtk_widget_show_all(dialog);
success = gtk_dialog_run(GTK_DIALOG(dialog)) == GTK_RESPONSE_ACCEPT;
if (!success) {
gtk_widget_destroy(dialog);
return;
}
memset(&tm, 0, sizeof(tm));
gtk_calendar_get_date(GTK_CALENDAR(cal), &yval, &mval, &dval);
tm.tm_year = yval;
tm.tm_mon = mval;
tm.tm_mday = dval;
tm.tm_hour = gtk_spin_button_get_value(GTK_SPIN_BUTTON(h));
tm.tm_min = gtk_spin_button_get_value(GTK_SPIN_BUTTON(m));
gtk_widget_destroy(dialog);
when = utc_mktime(&tm);
if (dive->when != when) {
/* if this is the only dive in the trip, just change the trip time */
if (dive->divetrip && dive->divetrip->nrdives == 1)
dive->divetrip->when = when;
/* if this is suddenly before the start of the trip, remove it from the trip */
else if (dive->divetrip && dive->divetrip->when > when)
remove_dive_from_trip(dive);
else if (find_matching_trip(when) != dive->divetrip)
remove_dive_from_trip(dive);
dive->when = when;
mark_divelist_changed(TRUE);
report_dives(FALSE, FALSE);
dive_list_update_dives();
}
}
#if HAVE_OSM_GPS_MAP
static void show_gps_location_cb(GtkWidget *menuitem, struct dive *dive)
{
show_gps_location(dive, NULL);
}
#endif
gboolean icon_click_cb(GtkWidget *w, GdkEventButton *event, gpointer data)
{
#if HAVE_OSM_GPS_MAP
GtkTreePath *path = NULL;
GtkTreeIter iter;
GtkTreeViewColumn *col;
int idx;
struct dive *dive;
/* left click ? */
if (event->button == 1 &&
gtk_tree_view_get_path_at_pos(GTK_TREE_VIEW(dive_list.tree_view), event->x, event->y, &path, &col, NULL, NULL)) {
/* is it the icon column ? (we passed the correct column in when registering the callback) */
if (col == data) {
gtk_tree_model_get_iter(MODEL(dive_list), &iter, path);
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
dive = get_dive(idx);
if (dive && dive_has_gps_location(dive))
show_gps_location(dive, NULL);
}
if (path)
gtk_tree_path_free(path);
}
#endif
/* keep processing the click */
return FALSE;
}
static void save_as_cb(GtkWidget *menuitem, struct dive *dive)
{
GtkWidget *dialog;
char *filename = NULL;
dialog = gtk_file_chooser_dialog_new(_("Save File As"),
GTK_WINDOW(main_window),
GTK_FILE_CHOOSER_ACTION_SAVE,
GTK_STOCK_CANCEL, GTK_RESPONSE_CANCEL,
GTK_STOCK_SAVE, GTK_RESPONSE_ACCEPT,
NULL);
gtk_file_chooser_set_do_overwrite_confirmation(GTK_FILE_CHOOSER(dialog), TRUE);
if (gtk_dialog_run(GTK_DIALOG(dialog)) == GTK_RESPONSE_ACCEPT) {
filename = gtk_file_chooser_get_filename(GTK_FILE_CHOOSER(dialog));
}
gtk_widget_destroy(dialog);
if (filename){
save_dives_logic(filename, TRUE);
g_free(filename);
}
}
static void expand_all_cb(GtkWidget *menuitem, GtkTreeView *tree_view)
{
gtk_tree_view_expand_all(tree_view);
}
static void collapse_all_cb(GtkWidget *menuitem, GtkTreeView *tree_view)
{
gtk_tree_view_collapse_all(tree_view);
}
/* Move a top-level dive into the trip above it */
static void merge_dive_into_trip_above_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int idx;
struct dive *dive;
dive_trip_t *trip;
idx = get_path_index(path);
dive = get_dive(idx);
/* Needs to be a dive, and at the top level */
if (!dive || dive->divetrip)
return;
/* Find the "trip above". */
for (;;) {
if (!gtk_tree_path_prev(path))
return;
idx = get_path_index(path);
trip = find_trip_by_idx(idx);
if (trip)
break;
}
add_dive_to_trip(dive, trip);
if (dive->selected) {
for_each_dive(idx, dive) {
if (!dive->selected)
continue;
add_dive_to_trip(dive, trip);
}
}
trip->expanded = 1;
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
static void insert_trip_before_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int idx;
struct dive *dive;
dive_trip_t *trip;
idx = get_path_index(path);
dive = get_dive(idx);
if (!dive)
return;
trip = create_and_hookup_trip_from_dive(dive);
if (dive->selected) {
for_each_dive(idx, dive) {
if (!dive->selected)
continue;
add_dive_to_trip(dive, trip);
}
}
trip->expanded = 1;
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
static void remove_from_trip_cb(GtkWidget *menuitem, GtkTreePath *path)
{
struct dive *dive;
int idx;
idx = get_path_index(path);
if (idx < 0)
return;
dive = get_dive(idx);
if (dive->selected) {
/* remove all the selected dives */
for_each_dive(idx, dive) {
if (!dive->selected)
continue;
remove_dive_from_trip(dive);
}
} else {
/* just remove the dive the mouse pointer is on */
remove_dive_from_trip(dive);
}
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
static void remove_trip(GtkTreePath *trippath)
{
int idx, i;
dive_trip_t *trip;
struct dive *dive;
idx = get_path_index(trippath);
trip = find_trip_by_idx(idx);
if (!trip)
return;
for_each_dive(i, dive) {
if (dive->divetrip != trip)
continue;
remove_dive_from_trip(dive);
}
dive_list_update_dives();
#ifdef DEBUG_TRIP
dump_trip_list();
#endif
}
static void remove_trip_cb(GtkWidget *menuitem, GtkTreePath *trippath)
{
int success;
GtkWidget *dialog;
dialog = gtk_dialog_new_with_buttons(_("Remove Trip"),
GTK_WINDOW(main_window),
GTK_DIALOG_DESTROY_WITH_PARENT,
GTK_STOCK_OK, GTK_RESPONSE_ACCEPT,
GTK_STOCK_CANCEL, GTK_RESPONSE_REJECT,
NULL);
gtk_widget_show_all(dialog);
success = gtk_dialog_run(GTK_DIALOG(dialog)) == GTK_RESPONSE_ACCEPT;
gtk_widget_destroy(dialog);
if (!success)
return;
remove_trip(trippath);
mark_divelist_changed(TRUE);
}
static void merge_trips_cb(GtkWidget *menuitem, GtkTreePath *trippath)
{
GtkTreePath *prevpath;
GtkTreeIter thistripiter, prevtripiter;
GtkTreeModel *tm = MODEL(dive_list);
dive_trip_t *thistrip, *prevtrip;
timestamp_t when;
/* this only gets called when we are on a trip and there is another trip right before */
prevpath = gtk_tree_path_copy(trippath);
gtk_tree_path_prev(prevpath);
gtk_tree_model_get_iter(tm, &thistripiter, trippath);
gtk_tree_model_get(tm, &thistripiter, DIVE_DATE, &when, -1);
thistrip = find_matching_trip(when);
gtk_tree_model_get_iter(tm, &prevtripiter, prevpath);
gtk_tree_model_get(tm, &prevtripiter, DIVE_DATE, &when, -1);
prevtrip = find_matching_trip(when);
/* move dives from trip */
assert(thistrip != prevtrip);
while (thistrip->dives)
add_dive_to_trip(thistrip->dives, prevtrip);
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
/* this implements the mechanics of removing the dive from the table,
* but doesn't deal with updating dive trips, etc */
void delete_single_dive(int idx)
{
int i;
struct dive *dive = get_dive(idx);
if (!dive)
return; /* this should never happen */
remove_dive_from_trip(dive);
for (i = idx; i < dive_table.nr - 1; i++)
dive_table.dives[i] = dive_table.dives[i+1];
dive_table.dives[--dive_table.nr] = NULL;
if (dive->selected)
amount_selected--;
/* free all allocations */
free(dive->dc.sample);
if (dive->location)
free((void *)dive->location);
if (dive->notes)
free((void *)dive->notes);
if (dive->divemaster)
free((void *)dive->divemaster);
if (dive->buddy)
free((void *)dive->buddy);
if (dive->suit)
free((void *)dive->suit);
free(dive);
}
void add_single_dive(int idx, struct dive *dive)
{
int i;
dive_table.nr++;
if (dive->selected)
amount_selected++;
for (i = idx; i < dive_table.nr ; i++) {
struct dive *tmp = dive_table.dives[i];
dive_table.dives[i] = dive;
dive = tmp;
}
}
static gboolean restore_node_state(GtkTreeModel *model, GtkTreePath *path, GtkTreeIter *iter, gpointer data)
{
int idx;
struct dive *dive;
dive_trip_t *trip;
GtkTreeView *tree_view = GTK_TREE_VIEW(dive_list.tree_view);
GtkTreeSelection *selection = gtk_tree_view_get_selection(tree_view);
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
trip = find_trip_by_idx(idx);
if (trip && trip->expanded)
gtk_tree_view_expand_row(tree_view, path, FALSE);
if (trip && trip->selected)
gtk_tree_selection_select_iter(selection, iter);
} else {
dive = get_dive(idx);
if (dive && dive->selected)
gtk_tree_selection_select_iter(selection, iter);
}
/* continue foreach */
return FALSE;
}
/* restore expanded and selected state */
static void restore_tree_state(void)
{
gtk_tree_model_foreach(MODEL(dive_list), restore_node_state, NULL);
}
/* called when multiple dives are selected and one of these is right-clicked for delete */
static void delete_selected_dives_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int i;
struct dive *dive;
int success;
GtkWidget *dialog;
char *dialog_title;
if (!amount_selected)
return;
if (amount_selected == 1)
dialog_title = _("Delete dive");
else
dialog_title = _("Delete dives");
dialog = gtk_dialog_new_with_buttons(dialog_title,
GTK_WINDOW(main_window),
GTK_DIALOG_DESTROY_WITH_PARENT,
GTK_STOCK_OK, GTK_RESPONSE_ACCEPT,
GTK_STOCK_CANCEL, GTK_RESPONSE_REJECT,
NULL);
gtk_widget_show_all(dialog);
success = gtk_dialog_run(GTK_DIALOG(dialog)) == GTK_RESPONSE_ACCEPT;
gtk_widget_destroy(dialog);
if (!success)
return;
/* walk the dive list in chronological order */
for (i = 0; i < dive_table.nr; i++) {
dive = get_dive(i);
if (!dive)
continue;
if (!dive->selected)
continue;
/* now remove the dive from the table and free it. also move the iterator back,
* so that we don't skip a dive */
delete_single_dive(i);
i--;
}
dive_list_update_dives();
/* if no dives are selected at this point clear the display widgets */
if (!amount_selected) {
selected_dive = 0;
process_selected_dives();
clear_stats_widgets();
clear_equipment_widgets();
show_dive_info(NULL);
}
mark_divelist_changed(TRUE);
}
/* this gets called with path pointing to a dive, either in the top level
* or as part of a trip */
static void delete_dive_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int idx;
GtkTreeIter iter;
int success;
GtkWidget *dialog;
dialog = gtk_dialog_new_with_buttons(_("Delete dive"),
GTK_WINDOW(main_window),
GTK_DIALOG_DESTROY_WITH_PARENT,
GTK_STOCK_OK, GTK_RESPONSE_ACCEPT,
GTK_STOCK_CANCEL, GTK_RESPONSE_REJECT,
NULL);
gtk_widget_show_all(dialog);
success = gtk_dialog_run(GTK_DIALOG(dialog)) == GTK_RESPONSE_ACCEPT;
gtk_widget_destroy(dialog);
if (!success)
return;
if (!gtk_tree_model_get_iter(MODEL(dive_list), &iter, path))
return;
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
delete_single_dive(idx);
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
#if defined(LIBZIP) && defined(XSLT)
static void export_selected_dives_cb(GtkWidget *menuitem, GtkTreePath *path)
{
int i;
struct dive *dive;
FILE *f;
char filename[PATH_MAX], *tempfile, *template;
size_t streamsize;
char *membuf;
xmlDoc *doc;
xsltStylesheetPtr xslt = NULL;
xmlDoc *transformed;
struct zip_source *s[dive_table.nr];
struct zip *zip;
/*
* Creating a temporary .DLD file to be eventually uploaded to
* divelogs.de. I wonder if this could be done in-memory.
*/
template = strdup("/tmp/export.DLD-XXXXXX");
tempfile = mktemp(template);
zip = zip_open(tempfile, ZIP_CREATE, NULL);
if (!zip)
return;
if (!amount_selected)
return;
/* walk the dive list in chronological order */
for (i = 0; i < dive_table.nr; i++) {
dive = get_dive(i);
if (!dive)
continue;
if (!dive->selected)
continue;
/*
* Saving the dive is done into a memory buffer
*/
f = open_memstream(&membuf, &streamsize);
if (!f)
return;
save_dive(f, dive);
fclose(f);
/*
* Parse the memory buffer into XML document and
* transform it to divelogs.de format, finally dumping
* the XML into a character buffer.
*/
doc = xmlReadMemory(membuf, strlen(membuf), "divelog", NULL, 0);
if (!doc)
continue;
xslt = get_stylesheet("divelogs-export.xslt");
transformed = xsltApplyStylesheet(xslt, doc, NULL);
xsltFreeStylesheet(xslt);
xmlDocDumpMemory(transformed, (xmlChar **) &membuf, (int *)&streamsize);
xmlFreeDoc(doc);
xmlFreeDoc(transformed);
/*
* Save the XML document into a zip file.
*/
snprintf(filename, PATH_MAX, "%d.xml", i + 1);
if ((s[i]=zip_source_buffer(zip, membuf, streamsize, 0)) == NULL || zip_add(zip, filename, s[i]) == -1)
fprintf(stderr, "failed to include dive %d\n", i);
}
zip_close(zip);
/*
* divelogs.de upload functionality should get rid of this
* message and use proper dialog to inform user of the success
* or failure of the upload
*/
fprintf(stderr, "Created .DLD file %s\n", tempfile);
free(template);
}
#endif
static void merge_dive_index(int i, struct dive *a)
{
struct dive *b = get_dive(i+1);
struct dive *res;
res = merge_dives(a, b, b->when - a->when, FALSE);
if (!res)
return;
add_single_dive(i, res);
delete_single_dive(i+1);
delete_single_dive(i+1);
dive_list_update_dives();
mark_divelist_changed(TRUE);
}
static void merge_dives_cb(GtkWidget *menuitem, void *unused)
{
int i;
struct dive *dive;
for_each_dive(i, dive) {
if (dive->selected) {
merge_dive_index(i, dive);
return;
}
}
}
/* Called if there are exactly two selected dives and the dive at idx is one of them */
static void add_dive_merge_label(int idx, GtkMenuShell *menu)
{
struct dive *a, *b;
GtkWidget *menuitem;
/* The other selected dive must be next to it.. */
a = get_dive(idx);
b = get_dive(idx+1);
if (!b || !b->selected) {
b = a;
a = get_dive(idx-1);
if (!a || !a->selected)
return;
}
/* .. and they had better be in the same dive trip */
if (a->divetrip != b->divetrip)
return;
/* .. and if the surface interval is excessive, you must be kidding us */
if (b->when > a->when + a->duration.seconds + 30*60)
return;
/* If so, we can add a "merge dive" menu entry */
menuitem = gtk_menu_item_new_with_label(_("Merge dives"));
g_signal_connect(menuitem, "activate", G_CALLBACK(merge_dives_cb), NULL);
gtk_menu_shell_append(menu, menuitem);
}
static void popup_divelist_menu(GtkTreeView *tree_view, GtkTreeModel *model, int button, GdkEventButton *event)
{
GtkWidget *menu, *menuitem, *image;
char editplurallabel[] = N_("Edit dives");
char editsinglelabel[] = N_("Edit dive");
char *editlabel;
char deleteplurallabel[] = N_("Delete dives");
char deletesinglelabel[] = N_("Delete dive");
char *deletelabel;
#if defined(LIBZIP) && defined(XSLT)
char exportlabel[] = N_("Export dive(s)");
#endif
GtkTreePath *path, *prevpath, *nextpath;
GtkTreeIter iter, previter, nextiter;
int idx, previdx, nextidx;
struct dive *dive;
if (!event || !gtk_tree_view_get_path_at_pos(tree_view, event->x, event->y, &path, NULL, NULL, NULL))
return;
gtk_tree_model_get_iter(MODEL(dive_list), &iter, path);
gtk_tree_model_get(MODEL(dive_list), &iter, DIVE_INDEX, &idx, -1);
menu = gtk_menu_new();
menuitem = gtk_image_menu_item_new_with_label(_("Add dive"));
image = gtk_image_new_from_stock(GTK_STOCK_ADD, GTK_ICON_SIZE_MENU);
gtk_image_menu_item_set_image(GTK_IMAGE_MENU_ITEM(menuitem), image);
g_signal_connect(menuitem, "activate", G_CALLBACK(add_dive_cb), NULL);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
if (idx < 0) {
/* mouse pointer is on a trip summary entry */
menuitem = gtk_menu_item_new_with_label(_("Edit Trip Summary"));
g_signal_connect(menuitem, "activate", G_CALLBACK(edit_trip_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
prevpath = gtk_tree_path_copy(path);
if (gtk_tree_path_prev(prevpath) &&
gtk_tree_model_get_iter(MODEL(dive_list), &previter, prevpath)) {
gtk_tree_model_get(MODEL(dive_list), &previter, DIVE_INDEX, &previdx, -1);
if (previdx < 0) {
menuitem = gtk_menu_item_new_with_label(_("Merge trip with trip above"));
g_signal_connect(menuitem, "activate", G_CALLBACK(merge_trips_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
}
nextpath = gtk_tree_path_copy(path);
gtk_tree_path_next(nextpath);
if (gtk_tree_model_get_iter(MODEL(dive_list), &nextiter, nextpath)) {
gtk_tree_model_get(MODEL(dive_list), &nextiter, DIVE_INDEX, &nextidx, -1);
if (nextidx < 0) {
menuitem = gtk_menu_item_new_with_label(_("Merge trip with trip below"));
g_signal_connect(menuitem, "activate", G_CALLBACK(merge_trips_cb), nextpath);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
}
menuitem = gtk_menu_item_new_with_label(_("Remove Trip"));
g_signal_connect(menuitem, "activate", G_CALLBACK(remove_trip_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
} else {
dive = get_dive(idx);
/* if we right click on selected dive(s), edit or delete those */
if (dive->selected) {
if (amount_selected == 1) {
deletelabel = _(deletesinglelabel);
editlabel = _(editsinglelabel);
menuitem = gtk_menu_item_new_with_label(_("Edit dive date/time"));
g_signal_connect(menuitem, "activate", G_CALLBACK(edit_dive_when_cb), dive);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
} else {
deletelabel = _(deleteplurallabel);
editlabel = _(editplurallabel);
}
menuitem = gtk_menu_item_new_with_label(_("Save as"));
g_signal_connect(menuitem, "activate", G_CALLBACK(save_as_cb), dive);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
menuitem = gtk_menu_item_new_with_label(deletelabel);
g_signal_connect(menuitem, "activate", G_CALLBACK(delete_selected_dives_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
#if defined(LIBZIP) && defined(XSLT)
menuitem = gtk_menu_item_new_with_label(exportlabel);
g_signal_connect(menuitem, "activate", G_CALLBACK(export_selected_dives_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
#endif
menuitem = gtk_menu_item_new_with_label(editlabel);
g_signal_connect(menuitem, "activate", G_CALLBACK(edit_selected_dives_cb), NULL);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
/* Two contiguous selected dives? */
if (amount_selected == 2)
add_dive_merge_label(idx, GTK_MENU_SHELL(menu));
} else {
menuitem = gtk_menu_item_new_with_label(_("Edit dive date/time"));
g_signal_connect(menuitem, "activate", G_CALLBACK(edit_dive_when_cb), dive);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
deletelabel = _(deletesinglelabel);
menuitem = gtk_menu_item_new_with_label(deletelabel);
g_signal_connect(menuitem, "activate", G_CALLBACK(delete_dive_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
editlabel = _(editsinglelabel);
menuitem = gtk_menu_item_new_with_label(editlabel);
g_signal_connect(menuitem, "activate", G_CALLBACK(edit_dive_from_path_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
#if HAVE_OSM_GPS_MAP
/* Only offer to show on map if it has a location. */
if (dive_has_gps_location(dive)) {
menuitem = gtk_menu_item_new_with_label(_("Show in map"));
g_signal_connect(menuitem, "activate", G_CALLBACK(show_gps_location_cb), dive);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
#endif
/* only offer trip editing options when we are displaying the tree model */
if (dive_list.model == dive_list.treemodel) {
int depth = gtk_tree_path_get_depth(path);
int *indices = gtk_tree_path_get_indices(path);
/* top level dive or child dive that is not the first child */
if (depth == 1 || indices[1] > 0) {
menuitem = gtk_menu_item_new_with_label(_("Create new trip above"));
g_signal_connect(menuitem, "activate", G_CALLBACK(insert_trip_before_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
prevpath = gtk_tree_path_copy(path);
/* top level dive with a trip right before it */
if (depth == 1 &&
gtk_tree_path_prev(prevpath) &&
gtk_tree_model_get_iter(MODEL(dive_list), &previter, prevpath) &&
gtk_tree_model_iter_n_children(model, &previter)) {
menuitem = gtk_menu_item_new_with_label(_("Add to trip above"));
g_signal_connect(menuitem, "activate", G_CALLBACK(merge_dive_into_trip_above_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
if (DIVE_IN_TRIP(dive)) {
if (dive->selected && amount_selected > 1)
menuitem = gtk_menu_item_new_with_label(_("Remove selected dives from trip"));
else
menuitem = gtk_menu_item_new_with_label(_("Remove dive from trip"));
g_signal_connect(menuitem, "activate", G_CALLBACK(remove_from_trip_cb), path);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
}
}
}
menuitem = gtk_menu_item_new_with_label(_("Expand all"));
g_signal_connect(menuitem, "activate", G_CALLBACK(expand_all_cb), tree_view);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
menuitem = gtk_menu_item_new_with_label(_("Collapse all"));
g_signal_connect(menuitem, "activate", G_CALLBACK(collapse_all_cb), tree_view);
gtk_menu_shell_append(GTK_MENU_SHELL(menu), menuitem);
gtk_widget_show_all(menu);
gtk_menu_popup(GTK_MENU(menu), NULL, NULL, NULL, NULL,
button, gtk_get_current_event_time());
}
static void popup_menu_cb(GtkTreeView *tree_view, gpointer userdata)
{
popup_divelist_menu(tree_view, MODEL(dive_list), 0, NULL);
}
static gboolean button_press_cb(GtkWidget *treeview, GdkEventButton *event, gpointer userdata)
{
/* Right-click? Bring up the menu */
if (event->type == GDK_BUTTON_PRESS && event->button == 3) {
popup_divelist_menu(GTK_TREE_VIEW(treeview), MODEL(dive_list), 3, event);
return TRUE;
}
return FALSE;
}
/* make sure 'path' is shown in the divelist widget; since set_cursor changes the
* selection to be only 'path' we need to let our selection handling callbacks know
* that we didn't really mean this */
static void scroll_to_path(GtkTreePath *path)
{
GtkTreeSelection *selection;
gtk_tree_view_expand_to_path(GTK_TREE_VIEW(dive_list.tree_view), path);
gtk_tree_view_scroll_to_cell(GTK_TREE_VIEW(dive_list.tree_view), path, NULL, FALSE, 0, 0);
in_set_cursor = TRUE;
gtk_tree_view_set_cursor(GTK_TREE_VIEW(dive_list.tree_view), path, NULL, FALSE);
in_set_cursor = FALSE;
selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
gtk_tree_model_foreach(MODEL(dive_list), set_selected, selection);
}
/* we need to have a temporary copy of the selected dives while
switching model as the selection_cb function keeps getting called
when gtk_tree_selection_select_path is called. We also need to
keep copies of the sort order so we can restore that as well after
switching models. */
static gboolean second_call = FALSE;
static GtkSortType sortorder[] = { [0 ... DIVELIST_COLUMNS - 1] = GTK_SORT_DESCENDING, };
static int lastcol = DIVE_NR;
/* Check if this dive was selected previously and select it again in the new model;
* This is used after we switch models to maintain consistent selections.
* We always return FALSE to iterate through all dives */
static gboolean set_selected(GtkTreeModel *model, GtkTreePath *path,
GtkTreeIter *iter, gpointer data)
{
GtkTreeSelection *selection = GTK_TREE_SELECTION(data);
int idx, selected;
struct dive *dive;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
/* this is a trip - restore its state */
dive_trip_t *trip = find_trip_by_idx(idx);
if (trip && trip->expanded)
gtk_tree_view_expand_to_path(GTK_TREE_VIEW(dive_list.tree_view), path);
if (trip && trip->selected)
gtk_tree_selection_select_path(selection, path);
} else {
dive = get_dive(idx);
selected = dive && dive->selected;
if (selected) {
gtk_tree_view_expand_to_path(GTK_TREE_VIEW(dive_list.tree_view), path);
gtk_tree_selection_select_path(selection, path);
}
}
return FALSE;
}
static gboolean scroll_to_this(GtkTreeModel *model, GtkTreePath *path,
GtkTreeIter *iter, gpointer data)
{
int idx;
struct dive *dive;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
dive = get_dive(idx);
if (dive == current_dive) {
scroll_to_path(path);
return TRUE;
}
return FALSE;
}
static void scroll_to_current(GtkTreeModel *model)
{
if (current_dive)
gtk_tree_model_foreach(model, scroll_to_this, current_dive);
}
static void update_column_and_order(int colid)
{
/* Careful: the index into treecolumns is off by one as we don't have a
tree_view column for DIVE_INDEX */
GtkTreeViewColumn **treecolumns = &dive_list.nr;
/* this will trigger a second call into sort_column_change_cb,
so make sure we don't start an infinite recursion... */
second_call = TRUE;
gtk_tree_sortable_set_sort_column_id(GTK_TREE_SORTABLE(dive_list.model), colid, sortorder[colid]);
gtk_tree_view_column_set_sort_order(treecolumns[colid - 1], sortorder[colid]);
second_call = FALSE;
scroll_to_current(GTK_TREE_MODEL(dive_list.model));
}
/* If the sort column is nr (default), show the tree model.
For every other sort column only show the list model.
If the model changed, inform the new model of the chosen sort column and make
sure the same dives are still selected.
The challenge with this function is that once we change the model
we also need to change the sort column again (as it was changed in
the other model) and that causes this function to be called
recursively - so we need to catch that.
*/
static void sort_column_change_cb(GtkTreeSortable *treeview, gpointer data)
{
int colid;
GtkSortType order;
GtkTreeStore *currentmodel = dive_list.model;
gtk_widget_grab_focus(dive_list.tree_view);
if (second_call)
return;
gtk_tree_sortable_get_sort_column_id(treeview, &colid, &order);
if (colid == lastcol) {
/* we just changed sort order */
sortorder[colid] = order;
return;
} else {
lastcol = colid;
}
if (colid == DIVE_NR)
dive_list.model = dive_list.treemodel;
else
dive_list.model = dive_list.listmodel;
if (dive_list.model != currentmodel) {
GtkTreeSelection *selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
gtk_tree_view_set_model(GTK_TREE_VIEW(dive_list.tree_view), MODEL(dive_list));
update_column_and_order(colid);
gtk_tree_model_foreach(MODEL(dive_list), set_selected, selection);
} else {
if (order != sortorder[colid]) {
update_column_and_order(colid);
}
}
}
static void select_dive(int idx)
{
struct dive *dive = get_dive(idx);
if (dive && !dive->selected) {
dive->selected = 1;
amount_selected++;
selected_dive = idx;
}
}
static void deselect_dive(int idx)
{
struct dive *dive = get_dive(idx);
if (dive && dive->selected) {
dive->selected = 0;
amount_selected--;
if (selected_dive == idx && amount_selected > 0) {
/* pick a different dive as selected */
while (--selected_dive >= 0) {
dive = get_dive(selected_dive);
if (dive && dive->selected)
return;
}
selected_dive = idx;
while (++selected_dive < dive_table.nr) {
dive = get_dive(selected_dive);
if (dive && dive->selected)
return;
}
}
if (amount_selected == 0)
selected_dive = -1;
}
}
static gboolean modify_selection_cb(GtkTreeSelection *selection, GtkTreeModel *model,
GtkTreePath *path, gboolean was_selected, gpointer userdata)
{
int idx;
GtkTreeIter iter;
if (!was_selected || in_set_cursor)
return TRUE;
gtk_tree_model_get_iter(model, &iter, path);
gtk_tree_model_get(model, &iter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
int i;
struct dive *dive;
dive_trip_t *trip = find_trip_by_idx(idx);
if (!trip)
return TRUE;
trip->selected = 0;
/* If this is expanded, let the gtk selection happen for each dive under it */
if (gtk_tree_view_row_expanded(GTK_TREE_VIEW(dive_list.tree_view), path))
return TRUE;
/* Otherwise, consider each dive under it deselected */
for_each_dive(i, dive) {
if (dive->divetrip == trip)
deselect_dive(i);
}
} else {
deselect_dive(idx);
}
return TRUE;
}
/* This gets called for each selected entry after a selection has changed */
static void entry_selected(GtkTreeModel *model, GtkTreePath *path, GtkTreeIter *iter, gpointer data)
{
int idx;
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
int i;
struct dive *dive;
dive_trip_t *trip = find_trip_by_idx(idx);
if (!trip)
return;
trip->selected = 1;
/* If this is expanded, let the gtk selection happen for each dive under it */
if (gtk_tree_view_row_expanded(GTK_TREE_VIEW(dive_list.tree_view), path)) {
trip->fixup = 1;
return;
}
/* Otherwise, consider each dive under it selected */
for_each_dive(i, dive) {
if (dive->divetrip == trip)
select_dive(i);
}
trip->fixup = 0;
} else {
select_dive(idx);
}
}
static void update_gtk_selection(GtkTreeSelection *selection, GtkTreeModel *model)
{
GtkTreeIter iter;
if (!gtk_tree_model_get_iter_first(model, &iter))
return;
do {
GtkTreeIter child;
if (!gtk_tree_model_iter_children(model, &child, &iter))
continue;
do {
int idx;
struct dive *dive;
dive_trip_t *trip;
gtk_tree_model_get(model, &child, DIVE_INDEX, &idx, -1);
dive = get_dive(idx);
if (!dive || !dive->selected)
break;
trip = dive->divetrip;
if (!trip)
break;
gtk_tree_selection_select_iter(selection, &child);
} while (gtk_tree_model_iter_next(model, &child));
} while (gtk_tree_model_iter_next(model, &iter));
}
/* this is called when gtk thinks that the selection has changed */
static void selection_cb(GtkTreeSelection *selection, GtkTreeModel *model)
{
int i, fixup;
struct dive *dive;
gtk_tree_selection_selected_foreach(selection, entry_selected, model);
/*
* Go through all the dives, if there is a trip that is selected but no
* dives under it are selected, force-select all the dives
*/
/* First, clear "fixup" for any trip that has selected dives */
for_each_dive(i, dive) {
dive_trip_t *trip = dive->divetrip;
if (!trip || !trip->fixup)
continue;
if (dive->selected || !trip->selected)
trip->fixup = 0;
}
/*
* Ok, not fixup is only set for trips that are selected
* but have no selected dives in them. Select all dives
* for such trips.
*/
fixup = 0;
for_each_dive(i, dive) {
dive_trip_t *trip = dive->divetrip;
if (!trip || !trip->fixup)
continue;
fixup = 1;
select_dive(i);
}
/*
* Ok, we did a forced selection of dives, now we need to update the gtk
* view of what is selected too..
*/
if (fixup)
update_gtk_selection(selection, model);
#if DEBUG_SELECTION_TRACKING
dump_selection();
#endif
process_selected_dives();
repaint_dive();
}
GtkWidget *dive_list_create(void)
{
GtkTreeSelection *selection;
dive_list.listmodel = gtk_tree_store_new(DIVELIST_COLUMNS,
G_TYPE_INT, /* index */
G_TYPE_INT, /* nr */
G_TYPE_INT64, /* Date */
G_TYPE_INT, /* Star rating */
G_TYPE_INT, /* Depth */
G_TYPE_INT, /* Duration */
G_TYPE_INT, /* Temperature */
G_TYPE_INT, /* Total weight */
G_TYPE_STRING, /* Suit */
G_TYPE_STRING, /* Cylinder */
G_TYPE_INT, /* Nitrox */
G_TYPE_INT, /* SAC */
G_TYPE_INT, /* OTU */
G_TYPE_INT, /* MAXCNS */
G_TYPE_STRING, /* Location */
GDK_TYPE_PIXBUF /* GPS icon */
);
dive_list.treemodel = gtk_tree_store_new(DIVELIST_COLUMNS,
G_TYPE_INT, /* index */
G_TYPE_INT, /* nr */
G_TYPE_INT64, /* Date */
G_TYPE_INT, /* Star rating */
G_TYPE_INT, /* Depth */
G_TYPE_INT, /* Duration */
G_TYPE_INT, /* Temperature */
G_TYPE_INT, /* Total weight */
G_TYPE_STRING, /* Suit */
G_TYPE_STRING, /* Cylinder */
G_TYPE_INT, /* Nitrox */
G_TYPE_INT, /* SAC */
G_TYPE_INT, /* OTU */
G_TYPE_INT, /* MAXCNS */
G_TYPE_STRING, /* Location */
GDK_TYPE_PIXBUF /* GPS icon */
);
dive_list.model = dive_list.treemodel;
dive_list.tree_view = gtk_tree_view_new_with_model(TREEMODEL(dive_list));
set_divelist_font(prefs.divelist_font);
selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
gtk_tree_selection_set_mode(GTK_TREE_SELECTION(selection), GTK_SELECTION_MULTIPLE);
gtk_widget_set_size_request(dive_list.tree_view, 200, 200);
/* check if utf8 stars are available as a default OS feature */
if (!subsurface_os_feature_available(UTF8_FONT_WITH_STARS))
dl_column[3].header = "*";
dive_list.nr = divelist_column(&dive_list, dl_column + DIVE_NR);
dive_list.date = divelist_column(&dive_list, dl_column + DIVE_DATE);
dive_list.stars = divelist_column(&dive_list, dl_column + DIVE_RATING);
dive_list.depth = divelist_column(&dive_list, dl_column + DIVE_DEPTH);
dive_list.duration = divelist_column(&dive_list, dl_column + DIVE_DURATION);
dive_list.temperature = divelist_column(&dive_list, dl_column + DIVE_TEMPERATURE);
dive_list.totalweight = divelist_column(&dive_list, dl_column + DIVE_TOTALWEIGHT);
dive_list.suit = divelist_column(&dive_list, dl_column + DIVE_SUIT);
dive_list.cylinder = divelist_column(&dive_list, dl_column + DIVE_CYLINDER);
dive_list.nitrox = divelist_column(&dive_list, dl_column + DIVE_NITROX);
dive_list.sac = divelist_column(&dive_list, dl_column + DIVE_SAC);
dive_list.otu = divelist_column(&dive_list, dl_column + DIVE_OTU);
dive_list.maxcns = divelist_column(&dive_list, dl_column + DIVE_MAXCNS);
dive_list.location = divelist_column(&dive_list, dl_column + DIVE_LOCATION);
gtk_tree_view_column_set_sort_indicator(dive_list.nr, TRUE);
gtk_tree_view_column_set_sort_order(dive_list.nr, GTK_SORT_DESCENDING);
/* now add the GPS icon to the location column */
tree_view_column_add_pixbuf(dive_list.tree_view, gpsicon_data_func, dive_list.location);
fill_dive_list();
g_object_set(G_OBJECT(dive_list.tree_view), "headers-visible", TRUE,
"search-column", DIVE_LOCATION,
"rules-hint", TRUE,
NULL);
g_signal_connect_after(dive_list.tree_view, "realize", G_CALLBACK(realize_cb), NULL);
g_signal_connect(dive_list.tree_view, "row-activated", G_CALLBACK(row_activated_cb), NULL);
g_signal_connect(dive_list.tree_view, "row-expanded", G_CALLBACK(row_expanded_cb), NULL);
g_signal_connect(dive_list.tree_view, "row-collapsed", G_CALLBACK(row_collapsed_cb), NULL);
g_signal_connect(dive_list.tree_view, "button-press-event", G_CALLBACK(button_press_cb), NULL);
g_signal_connect(dive_list.tree_view, "popup-menu", G_CALLBACK(popup_menu_cb), NULL);
g_signal_connect(selection, "changed", G_CALLBACK(selection_cb), dive_list.model);
g_signal_connect(dive_list.listmodel, "sort-column-changed", G_CALLBACK(sort_column_change_cb), NULL);
g_signal_connect(dive_list.treemodel, "sort-column-changed", G_CALLBACK(sort_column_change_cb), NULL);
gtk_tree_selection_set_select_function(selection, modify_selection_cb, NULL, NULL);
dive_list.container_widget = gtk_scrolled_window_new(NULL, NULL);
gtk_scrolled_window_set_policy(GTK_SCROLLED_WINDOW(dive_list.container_widget),
GTK_POLICY_AUTOMATIC, GTK_POLICY_AUTOMATIC);
gtk_container_add(GTK_CONTAINER(dive_list.container_widget), dive_list.tree_view);
dive_list.changed = 0;
return dive_list.container_widget;
}
void dive_list_destroy(void)
{
gtk_widget_destroy(dive_list.tree_view);
g_object_unref(dive_list.treemodel);
g_object_unref(dive_list.listmodel);
}
void mark_divelist_changed(int changed)
{
dive_list.changed = changed;
}
int unsaved_changes()
{
return dive_list.changed;
}
void remove_autogen_trips()
{
int i;
struct dive *dive;
for_each_dive(i, dive) {
dive_trip_t *trip = dive->divetrip;
if (trip && trip->autogen)
remove_dive_from_trip(dive);
}
}
struct iteridx {
int idx;
GtkTreeIter *iter;
};
static gboolean iter_has_idx(GtkTreeModel *model, GtkTreePath *path,
GtkTreeIter *iter, gpointer _data)
{
struct iteridx *iteridx = _data;
int idx;
/* Get the dive number */
gtk_tree_model_get(model, iter, DIVE_INDEX, &idx, -1);
if (idx == iteridx->idx) {
iteridx->iter = gtk_tree_iter_copy(iter);
return TRUE; /* end foreach */
}
return FALSE;
}
static GtkTreeIter *get_iter_from_idx(int idx)
{
struct iteridx iteridx = {idx, };
gtk_tree_model_foreach(MODEL(dive_list), iter_has_idx, &iteridx);
return iteridx.iter;
}
static void scroll_to_selected(GtkTreeIter *iter)
{
GtkTreePath *treepath;
treepath = gtk_tree_model_get_path(MODEL(dive_list), iter);
scroll_to_path(treepath);
gtk_tree_path_free(treepath);
}
static void go_to_iter(GtkTreeSelection *selection, GtkTreeIter *iter)
{
gtk_tree_selection_unselect_all(selection);
gtk_tree_selection_select_iter(selection, iter);
scroll_to_selected(iter);
}
void show_and_select_dive(struct dive *dive)
{
GtkTreeSelection *selection;
GtkTreeIter *iter;
struct dive *odive;
int i, divenr;
divenr = get_divenr(dive);
if (divenr < 0)
/* we failed to find the dive */
return;
iter = get_iter_from_idx(divenr);
selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
for_each_dive(i, odive)
odive->selected = FALSE;
amount_selected = 1;
selected_dive = divenr;
dive->selected = TRUE;
go_to_iter(selection, iter);
gtk_tree_iter_free(iter);
}
void select_next_dive(void)
{
GtkTreeIter *nextiter, *parent = NULL;
GtkTreeIter *iter = get_iter_from_idx(selected_dive);
GtkTreeSelection *selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
int idx;
if (!iter)
return;
nextiter = gtk_tree_iter_copy(iter);
if (!gtk_tree_model_iter_next(MODEL(dive_list), nextiter)) {
if (!gtk_tree_model_iter_parent(MODEL(dive_list), nextiter, iter)) {
/* we're at the last top level node */
goto free_iter;
}
if (!gtk_tree_model_iter_next(MODEL(dive_list), nextiter)) {
/* last trip */
goto free_iter;
}
}
gtk_tree_model_get(MODEL(dive_list), nextiter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
/* need the first child */
parent = gtk_tree_iter_copy(nextiter);
if (! gtk_tree_model_iter_children(MODEL(dive_list), nextiter, parent))
goto free_iter;
}
go_to_iter(selection, nextiter);
free_iter:
if (nextiter)
gtk_tree_iter_free(nextiter);
if (parent)
gtk_tree_iter_free(parent);
gtk_tree_iter_free(iter);
}
void select_prev_dive(void)
{
GtkTreeIter previter, *parent = NULL;
GtkTreeIter *iter = get_iter_from_idx(selected_dive);
GtkTreeSelection *selection = gtk_tree_view_get_selection(GTK_TREE_VIEW(dive_list.tree_view));
GtkTreePath *treepath;
int idx;
if (!iter)
return;
treepath = gtk_tree_model_get_path(MODEL(dive_list), iter);
if (!gtk_tree_path_prev(treepath)) {
if (!gtk_tree_model_iter_parent(MODEL(dive_list), &previter, iter))
/* we're at the last top level node */
goto free_iter;
gtk_tree_path_free(treepath);
treepath = gtk_tree_model_get_path(MODEL(dive_list), &previter);
if (!gtk_tree_path_prev(treepath))
/* first trip */
goto free_iter;
if (!gtk_tree_model_get_iter(MODEL(dive_list), &previter, treepath))
goto free_iter;
}
if (!gtk_tree_model_get_iter(MODEL(dive_list), &previter, treepath))
goto free_iter;
gtk_tree_model_get(MODEL(dive_list), &previter, DIVE_INDEX, &idx, -1);
if (idx < 0) {
/* need the last child */
parent = gtk_tree_iter_copy(&previter);
if (! gtk_tree_model_iter_nth_child(MODEL(dive_list), &previter, parent,
gtk_tree_model_iter_n_children(MODEL(dive_list), parent) - 1))
goto free_iter;
}
go_to_iter(selection, &previter);
free_iter:
gtk_tree_path_free(treepath);
if (parent)
gtk_tree_iter_free(parent);
gtk_tree_iter_free(iter);
}