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a1ac99d5ed
The old code was wild: For the yearly statistics it would allocate one entry per dive in the log. Of course, it would also leak C-style strings. Convert the whole thing to somewhat idiomatic C++. Somewhat wasted work, because I'd like to convert the whole thing to the new statistics code. But let's finish the conversion to C++ first. Signed-off-by: Berthold Stoeger <bstoeger@mail.tuwien.ac.at>
256 lines
7.2 KiB
C++
256 lines
7.2 KiB
C++
// SPDX-License-Identifier: GPL-2.0
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#include "qt-models/yearlystatisticsmodel.h"
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#include "core/qthelper.h"
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#include "core/metrics.h"
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#include "core/statistics.h"
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#include "core/string-format.h"
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#include "core/dive.h" // For NUM_DIVEMODE
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class YearStatisticsItem : public TreeItem {
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Q_DECLARE_TR_FUNCTIONS(YearStatisticsItem)
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public:
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enum {
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YEAR,
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DIVES,
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TOTAL_TIME,
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AVERAGE_TIME,
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SHORTEST_TIME,
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LONGEST_TIME,
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AVG_DEPTH,
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AVG_MAX_DEPTH,
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MIN_DEPTH,
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MAX_DEPTH,
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AVG_SAC,
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MIN_SAC,
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MAX_SAC,
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AVG_TEMP,
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MIN_TEMP,
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MAX_TEMP,
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COLUMNS
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};
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QVariant data(int column, int role) const;
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YearStatisticsItem(const stats_t &interval);
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private:
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stats_t stats_interval;
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};
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YearStatisticsItem::YearStatisticsItem(const stats_t &interval) : stats_interval(interval)
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{
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}
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QVariant YearStatisticsItem::data(int column, int role) const
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{
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if (role == Qt::FontRole) {
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QFont font = defaultModelFont();
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font.setBold(stats_interval.is_year);
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return font;
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} else if (role != Qt::DisplayRole) {
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return QVariant();
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}
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switch (column) {
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case YEAR:
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if (stats_interval.is_trip) {
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return QString::fromStdString(stats_interval.location);
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} else {
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return stats_interval.period;
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}
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case DIVES:
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return stats_interval.selection_size;
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case TOTAL_TIME:
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return get_dive_duration_string(stats_interval.total_time.seconds, tr("h"), tr("min"), tr("sec"), " ");
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case AVERAGE_TIME:
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return formatMinutes(stats_interval.total_time.seconds / stats_interval.selection_size);
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case SHORTEST_TIME:
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return formatMinutes(stats_interval.shortest_time.seconds);
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case LONGEST_TIME:
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return formatMinutes(stats_interval.longest_time.seconds);
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case AVG_DEPTH:
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return get_depth_string(stats_interval.avg_depth);
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case AVG_MAX_DEPTH:
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if (stats_interval.selection_size)
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return get_depth_string(stats_interval.combined_max_depth.mm / stats_interval.selection_size);
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break;
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case MIN_DEPTH:
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return get_depth_string(stats_interval.min_depth);
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case MAX_DEPTH:
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return get_depth_string(stats_interval.max_depth);
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case AVG_SAC:
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return get_volume_string(stats_interval.avg_sac);
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case MIN_SAC:
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return get_volume_string(stats_interval.min_sac);
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case MAX_SAC:
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return get_volume_string(stats_interval.max_sac);
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case AVG_TEMP:
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if (stats_interval.combined_temp.mkelvin && stats_interval.combined_count) {
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temperature_t avg_temp;
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avg_temp.mkelvin = stats_interval.combined_temp.mkelvin / stats_interval.combined_count;
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return get_temperature_string(avg_temp);
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}
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break;
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case MIN_TEMP:
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if (stats_interval.min_temp.mkelvin)
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return get_temperature_string(stats_interval.min_temp);
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break;
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case MAX_TEMP:
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if (stats_interval.max_temp.mkelvin)
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return get_temperature_string(stats_interval.max_temp);
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break;
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}
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return QVariant();
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}
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YearlyStatisticsModel::YearlyStatisticsModel(QObject *parent) : TreeModel(parent)
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{
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columns = COLUMNS;
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update_yearly_stats();
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}
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QVariant YearlyStatisticsModel::headerData(int section, Qt::Orientation orientation, int role) const
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{
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QVariant val;
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if (role == Qt::FontRole)
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val = defaultModelFont();
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if (role == Qt::DisplayRole && orientation == Qt::Horizontal) {
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switch (section) {
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case YEAR:
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val = tr("Year \n > Month / Trip");
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break;
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case DIVES:
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val = tr("#");
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break;
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case TOTAL_TIME:
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val = tr("Duration \n Total");
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break;
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case AVERAGE_TIME:
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val = tr("\nAverage");
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break;
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case SHORTEST_TIME:
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val = tr("\nShortest");
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break;
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case LONGEST_TIME:
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val = tr("\nLongest");
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break;
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case AVG_DEPTH:
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val = QString(tr("Depth (%1)\n Average")).arg(get_depth_unit());
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break;
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case AVG_MAX_DEPTH:
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val = tr("\nAverage maximum");
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break;
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case MIN_DEPTH:
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val = tr("\nMinimum");
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break;
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case MAX_DEPTH:
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val = tr("\nMaximum");
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break;
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case AVG_SAC:
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val = QString(tr("SAC (%1)\n Average")).arg(get_volume_unit());
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break;
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case MIN_SAC:
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val = tr("\nMinimum");
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break;
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case MAX_SAC:
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val = tr("\nMaximum");
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break;
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case AVG_TEMP:
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val = QString(tr("Temp. (%1)\n Average").arg(get_temp_unit()));
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break;
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case MIN_TEMP:
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val = tr("\nMinimum");
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break;
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case MAX_TEMP:
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val = tr("\nMaximum");
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break;
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}
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}
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return val;
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}
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void YearlyStatisticsModel::update_yearly_stats()
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{
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QString label;
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temperature_t t_range_min,t_range_max;
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stats_summary stats = calculate_stats_summary(false);
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int month = 0;
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for (const auto &s: stats.stats_yearly) {
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YearStatisticsItem *item = new YearStatisticsItem(s);
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size_t combined_months = 0;
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while (combined_months < s.selection_size) {
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combined_months += stats.stats_monthly[month].selection_size;
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YearStatisticsItem *iChild = new YearStatisticsItem(stats.stats_monthly[month]);
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item->children.append(iChild);
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iChild->parent = item;
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month++;
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}
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rootItem->children.append(item);
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item->parent = rootItem.get();
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}
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if (stats.stats_by_trip[0].is_trip == true) {
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YearStatisticsItem *item = new YearStatisticsItem(stats.stats_by_trip[0]);
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for (auto it = std::next(stats.stats_by_trip.begin()); it != stats.stats_by_trip.end(); ++it) {
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YearStatisticsItem *iChild = new YearStatisticsItem(*it);
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item->children.append(iChild);
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iChild->parent = item;
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}
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rootItem->children.append(item);
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item->parent = rootItem.get();
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}
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/* Show the statistic sorted by dive type */
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if (stats.stats_by_type[0].selection_size) {
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YearStatisticsItem *item = new YearStatisticsItem(stats.stats_by_type[0]);
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for (auto it = std::next(stats.stats_by_type.begin()); it != stats.stats_by_type.end(); ++it) {
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if (it->selection_size == 0)
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continue;
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YearStatisticsItem *iChild = new YearStatisticsItem(*it);
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item->children.append(iChild);
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iChild->parent = item;
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}
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rootItem->children.append(item);
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item->parent = rootItem.get();
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}
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/* Show the statistic sorted by dive depth */
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if (stats.stats_by_depth[0].selection_size) {
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YearStatisticsItem *item = new YearStatisticsItem(stats.stats_by_depth[0]);
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int i = 0;
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for (auto it = std::next(stats.stats_by_depth.begin()); it != stats.stats_by_depth.end(); ++it) {
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if (it->selection_size) {
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QString label = QString(tr("%1 - %2")).arg(get_depth_string(i * (STATS_DEPTH_BUCKET * 1000), true, false),
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get_depth_string((i + 1) * (STATS_DEPTH_BUCKET * 1000), true, false));
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it->location = label.toStdString();
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YearStatisticsItem *iChild = new YearStatisticsItem(*it);
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item->children.append(iChild);
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iChild->parent = item;
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}
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i++;
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}
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rootItem->children.append(item);
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item->parent = rootItem.get();
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}
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/* Show the statistic sorted by dive temperature */
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if (stats.stats_by_temp[0].selection_size) {
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YearStatisticsItem *item = new YearStatisticsItem(stats.stats_by_temp[0]);
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int i = 0;
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for (auto it = std::next(stats.stats_by_temp.begin()); it != stats.stats_by_temp.end(); ++it) {
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if (it->selection_size) {
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t_range_min.mkelvin = C_to_mkelvin(i * STATS_TEMP_BUCKET);
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t_range_max.mkelvin = C_to_mkelvin((i + 1) * STATS_TEMP_BUCKET);
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label = QString(tr("%1 - %2")).arg(get_temperature_string(t_range_min, true),
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get_temperature_string(t_range_max, true));
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it->location = label.toStdString();
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YearStatisticsItem *iChild = new YearStatisticsItem(*it);
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item->children.append(iChild);
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iChild->parent = item;
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}
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i++;
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}
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rootItem->children.append(item);
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item->parent = rootItem.get();
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}
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}
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