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37794e2e23
The selection logic was a bit random: some places would return NULL if the dive computer index was out of range, others would return the primary dive computer, and actually moving between dive computers would just blindly increment and decrement the number. This always selects the primary computer if the index is out of bounds, and makes sure we stay in bound when switching beteen dive computers (but switching between dives can then turn an in-bound number into an out-of-bounds one) Fixes #464 Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
190 lines
4.2 KiB
C++
190 lines
4.2 KiB
C++
#include "diveplotdatamodel.h"
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#include "dive.h"
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#include "display.h"
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#include "profile.h"
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#include "graphicsview-common.h"
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#include "dive.h"
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#include "display.h"
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#include "divelist.h"
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#include <QDebug>
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DivePlotDataModel::DivePlotDataModel(QObject *parent) : QAbstractTableModel(parent), diveId(0)
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{
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memset(&pInfo, 0, sizeof(pInfo));
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}
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int DivePlotDataModel::columnCount(const QModelIndex &parent) const
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{
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return COLUMNS;
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}
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QVariant DivePlotDataModel::data(const QModelIndex &index, int role) const
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{
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if ((!index.isValid()) || (index.row() >= pInfo.nr))
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return QVariant();
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plot_data item = pInfo.entry[index.row()];
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if (role == Qt::DisplayRole) {
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switch (index.column()) {
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case DEPTH:
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return item.depth;
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case TIME:
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return item.sec;
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case PRESSURE:
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return item.pressure[0];
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case TEMPERATURE:
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return item.temperature;
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case COLOR:
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return item.velocity;
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case USERENTERED:
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return false;
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case CYLINDERINDEX:
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return item.cylinderindex;
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case SENSOR_PRESSURE:
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return item.pressure[0];
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case INTERPOLATED_PRESSURE:
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return item.pressure[1];
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case CEILING:
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return item.ceiling;
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case SAC:
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return item.sac;
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case PN2:
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return item.pn2;
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case PHE:
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return item.phe;
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case PO2:
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return item.po2;
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case HEARTBEAT:
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return item.heartbeat;
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}
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}
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if (role == Qt::DisplayRole && index.column() >= TISSUE_1 && index.column() <= TISSUE_16) {
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return item.ceilings[index.column() - TISSUE_1];
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}
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if (role == Qt::BackgroundRole) {
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switch (index.column()) {
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case COLOR:
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return getColor((color_indice_t)(VELOCITY_COLORS_START_IDX + item.velocity));
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}
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}
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return QVariant();
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}
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const plot_info &DivePlotDataModel::data() const
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{
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return pInfo;
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}
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int DivePlotDataModel::rowCount(const QModelIndex &parent) const
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{
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return pInfo.nr;
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}
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QVariant DivePlotDataModel::headerData(int section, Qt::Orientation orientation, int role) const
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{
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if (orientation != Qt::Horizontal)
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return QVariant();
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if (role != Qt::DisplayRole)
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return QVariant();
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switch (section) {
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case DEPTH:
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return tr("Depth");
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case TIME:
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return tr("Time");
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case PRESSURE:
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return tr("Pressure");
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case TEMPERATURE:
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return tr("Temperature");
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case COLOR:
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return tr("Color");
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case USERENTERED:
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return tr("User Entered");
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case CYLINDERINDEX:
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return tr("Cylinder Index");
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case SENSOR_PRESSURE:
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return tr("Pressure S");
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case INTERPOLATED_PRESSURE:
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return tr("Pressure I");
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case CEILING:
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return tr("Ceiling");
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case SAC:
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return tr("SAC");
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case PN2:
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return tr("PN2");
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case PHE:
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return tr("PHE");
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case PO2:
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return tr("PO2");
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}
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if (role == Qt::DisplayRole && section >= TISSUE_1 && section <= TISSUE_16) {
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return QString("Ceiling: %1").arg(section - TISSUE_1);
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}
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return QVariant();
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}
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void DivePlotDataModel::clear()
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{
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if (rowCount() != 0) {
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beginRemoveRows(QModelIndex(), 0, rowCount() - 1);
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pInfo.nr = 0;
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diveId = -1;
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dcNr = -1;
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endRemoveRows();
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}
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}
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void DivePlotDataModel::setDive(dive *d, const plot_info &info)
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{
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clear();
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Q_ASSERT(d != NULL);
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diveId = d->id;
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dcNr = dc_number;
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pInfo = info;
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beginInsertRows(QModelIndex(), 0, pInfo.nr - 1);
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endInsertRows();
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}
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int DivePlotDataModel::id() const
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{
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return diveId;
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}
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int DivePlotDataModel::dcShown() const
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{
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return dcNr;
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}
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#define MAX_PPGAS_FUNC(GAS, GASFUNC) \
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double DivePlotDataModel::GASFUNC() \
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{ \
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double ret = -1; \
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for (int i = 0, count = rowCount(); i < count; i++) { \
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if (pInfo.entry[i].GAS > ret) \
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ret = pInfo.entry[i].GAS; \
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} \
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return ret; \
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}
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MAX_PPGAS_FUNC(phe, pheMax);
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MAX_PPGAS_FUNC(pn2, pn2Max);
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MAX_PPGAS_FUNC(po2, po2Max);
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void DivePlotDataModel::emitDataChanged()
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{
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emit dataChanged(QModelIndex(), QModelIndex());
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}
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void DivePlotDataModel::calculateDecompression()
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{
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struct dive *d = getDiveById(id());
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if (!d)
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return;
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struct divecomputer *dc = select_dc(d);
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init_decompression(d);
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calculate_deco_information(d, dc, &pInfo, false);
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dataChanged(index(0, CEILING), index(pInfo.nr - 1, TISSUE_16));
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}
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