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7713c7e607
Calculating dive.when + dive.duration doesn't always give the correct endtime of a dive especially when a dive has surface interval(s) in the middle. Using the helper function dive_endtime() fixes this issue. Signed-off-by: Stefan Fuchs <sfuchs@gmx.de>
102 lines
3.2 KiB
C++
102 lines
3.2 KiB
C++
// SPDX-License-Identifier: GPL-2.0
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#include "TabDiveInformation.h"
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#include "ui_TabDiveInformation.h"
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#include "../tagwidget.h"
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#include <core/helpers.h>
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#include <core/statistics.h>
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#include <core/display.h>
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#include <core/dive.h>
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TabDiveInformation::TabDiveInformation(QWidget *parent) : TabBase(parent), ui(new Ui::TabDiveInformation())
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{
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ui->setupUi(this);
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}
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TabDiveInformation::~TabDiveInformation()
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{
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delete ui;
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}
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void TabDiveInformation::clear()
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{
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ui->sacText->clear();
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ui->otuText->clear();
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ui->maxcnsText->clear();
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ui->oxygenHeliumText->clear();
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ui->gasUsedText->clear();
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ui->dateText->clear();
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ui->diveTimeText->clear();
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ui->surfaceIntervalText->clear();
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ui->maximumDepthText->clear();
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ui->averageDepthText->clear();
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ui->waterTemperatureText->clear();
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ui->airTemperatureText->clear();
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ui->airPressureText->clear();
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ui->salinityText->clear();
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}
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void TabDiveInformation::updateData()
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{
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clear();
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ui->maxcnsText->setText(QString("%1\%").arg(displayed_dive.maxcns));
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ui->otuText->setText(QString("%1").arg(displayed_dive.otu));
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ui->maximumDepthText->setText(get_depth_string(displayed_dive.maxdepth, true));
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ui->averageDepthText->setText(get_depth_string(displayed_dive.meandepth, true));
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ui->dateText->setText(get_short_dive_date_string(displayed_dive.when));
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ui->waterTemperatureText->setText(get_temperature_string(displayed_dive.watertemp, true));
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ui->airTemperatureText->setText(get_temperature_string(displayed_dive.airtemp, true));
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volume_t gases[MAX_CYLINDERS] = {};
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get_gas_used(&displayed_dive, gases);
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QString volumes;
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int mean[MAX_CYLINDERS], duration[MAX_CYLINDERS];
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per_cylinder_mean_depth(&displayed_dive, select_dc(&displayed_dive), mean, duration);
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volume_t sac;
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QString gaslist, SACs, separator;
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gaslist = ""; SACs = ""; volumes = ""; separator = "";
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for (int i = 0; i < MAX_CYLINDERS; i++) {
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if (!is_cylinder_used(&displayed_dive, i))
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continue;
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gaslist.append(separator); volumes.append(separator); SACs.append(separator);
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separator = "\n";
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gaslist.append(gasname(&displayed_dive.cylinder[i].gasmix));
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if (!gases[i].mliter)
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continue;
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volumes.append(get_volume_string(gases[i], true));
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if (duration[i]) {
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sac.mliter = lrint(gases[i].mliter / (depth_to_atm(mean[i], &displayed_dive) * duration[i] / 60));
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SACs.append(get_volume_string(sac, true).append(tr("/min")));
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}
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}
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ui->gasUsedText->setText(volumes);
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ui->oxygenHeliumText->setText(gaslist);
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ui->diveTimeText->setText(get_dive_duration_string(displayed_dive.duration.seconds, tr("h"), tr("min"), tr("sec"),
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" ", displayed_dive.dc.divemode == FREEDIVE));
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struct dive *prevd;
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process_all_dives(&displayed_dive, &prevd);
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if (prevd)
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ui->surfaceIntervalText->setText(get_dive_surfint_string(displayed_dive.when - (dive_endtime(prevd)), tr("d"), tr("h"), tr("min")));
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else
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ui->surfaceIntervalText->clear();
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ui->sacText->setText( mean[0] ? SACs : QString());
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if (displayed_dive.surface_pressure.mbar) /* this is ALWAYS displayed in mbar */
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ui->airPressureText->setText(QString("%1mbar").arg(displayed_dive.surface_pressure.mbar));
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else
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ui->airPressureText->clear();
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if (displayed_dive.salinity)
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ui->salinityText->setText(QString("%1g/l").arg(displayed_dive.salinity / 10.0));
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else
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ui->salinityText->clear();
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}
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