js8call/JS8_Main/StationList.cpp
rruchte 97e4a07bc4 Addresses #193
- Enables custom descriptions for frequencies
- Handle unreadable/unwritable frequencies file
- Add delete key shortcut to frequencies and scheduled frequency change tables
2026-02-23 23:25:06 -05:00

586 lines
18 KiB
C++

/**
* @file StationList.cpp
* @brief Implementation of StationList class
*/
#include "StationList.h"
#include "DriftingDateTime.h"
#include "FrequencyList.h"
#include "JS8_Include/pimpl_impl.h"
#include "JS8_Main/Bands.h"
#include "Radio.h"
#include <QAbstractTableModel>
#include <QByteArray>
#include <QDataStream>
#include <QDebug>
#include <QDebugStateSaver>
#include <QMetaType>
#include <QMimeData>
#include <QObject>
#include <QString>
#include <QStringList>
#include <QTimeZone>
#include <QVector>
#include <algorithm>
#include <cmath>
#include <utility>
#if !defined(QT_NO_DEBUG_STREAM)
QDebug operator<<(QDebug debug, StationList::Station const &station) {
QDebugStateSaver saver{debug};
debug.nospace() << "Station(" << station.band_name_ << ", "
<< station.frequency_ << ", " << station.switch_at_ << ", "
<< station.switch_until_ << ", " << station.description_
<< ')';
return debug;
}
#endif
QDataStream &operator<<(QDataStream &os, StationList::Station const &station) {
return os << station.band_name_ << station.frequency_ << station.switch_at_
<< station.switch_until_ << station.description_;
}
QDataStream &operator>>(QDataStream &is, StationList::Station &station) {
is >> station.band_name_ >> station.frequency_ >> station.switch_at_ >>
station.switch_until_ >> station.description_;
// Set the timezones to UTC. Will be local time when read from the saved
// configuration
station.switch_at_.setTimeZone(QTimeZone::utc());
station.switch_until_.setTimeZone(QTimeZone::utc());
// Convert to UTC. This is necessary because the TimeSpec needs to be
// Qt::UTC
station.switch_at_ = station.switch_at_.toUTC();
station.switch_until_ = station.switch_until_.toUTC();
return is;
}
class StationList::impl final : public QAbstractTableModel {
public:
impl(Bands const *bands, Stations stations, QObject *parent)
: QAbstractTableModel{parent}, bands_{bands}, stations_{stations} {}
Stations station_list(Stations);
QModelIndex add(Station);
FrequencyDelta offset(Frequency) const;
// Implement the QAbstractTableModel interface.
int rowCount(QModelIndex const &parent = QModelIndex{}) const override;
int columnCount(QModelIndex const &parent = QModelIndex{}) const override;
Qt::ItemFlags flags(QModelIndex const & = QModelIndex{}) const override;
QVariant data(QModelIndex const &, int role) const override;
QVariant headerData(int section, Qt::Orientation,
int = Qt::DisplayRole) const override;
bool setData(QModelIndex const &, QVariant const &value,
int role = Qt::EditRole) override;
bool removeRows(int row, int count,
QModelIndex const &parent = QModelIndex{}) override;
bool insertRows(int row, int count,
QModelIndex const &parent = QModelIndex{}) override;
Qt::DropActions supportedDropActions() const override;
QStringList mimeTypes() const override;
QMimeData *mimeData(QModelIndexList const &) const override;
bool dropMimeData(QMimeData const *, Qt::DropAction, int row, int column,
QModelIndex const &parent) override;
// Helper method for band validation.
QModelIndex first_matching_band(QString const &band_name) const {
// find first exact match in bands
auto matches = bands_->match(bands_->index(0, 0), Qt::DisplayRole,
band_name, 1, Qt::MatchExactly);
return matches.isEmpty() ? QModelIndex{} : matches.first();
}
static int constexpr num_columns{5};
static auto constexpr mime_type = "application/wsjt.antenna-descriptions";
Bands const *bands_;
Stations stations_;
};
StationList::StationList(Bands const *bands, QObject *parent)
: StationList{bands, {}, parent} {}
StationList::StationList(Bands const *bands, Stations stations, QObject *parent)
: QSortFilterProxyModel{parent}, m_{bands, stations, parent} {
setSourceModel(&*m_);
setSortRole(SortRole);
}
StationList::~StationList() {}
auto StationList::station_list(Stations stations) -> Stations {
return m_->station_list(stations);
}
auto StationList::station_list() const -> Stations const & {
return m_->stations_;
}
QModelIndex StationList::add(Station s) { return mapFromSource(m_->add(s)); }
bool StationList::remove(Station s) {
auto row = m_->stations_.indexOf(s);
if (0 > row) {
return false;
}
return removeRow(row);
}
namespace {
bool row_is_higher(QModelIndex const &lhs, QModelIndex const &rhs) {
return lhs.row() > rhs.row();
}
} // namespace
bool StationList::removeDisjointRows(QModelIndexList rows) {
bool result{true};
// We must work with source model indexes because we don't want row
// removes to invalidate model indexes we haven't yet processed. We
// achieve that by processing them in decending row order.
for (int r = 0; r < rows.size(); ++r) {
rows[r] = mapToSource(rows[r]);
}
// reverse sort by row
std::sort(rows.begin(), rows.end(), row_is_higher);
Q_FOREACH (auto index, rows) {
if (result && !m_->removeRow(index.row())) {
result = false;
}
}
return result;
}
auto StationList::impl::station_list(Stations stations) -> Stations {
beginResetModel();
std::swap(stations_, stations);
endResetModel();
return stations;
}
QModelIndex StationList::impl::add(Station s) {
// Any band that isn't in the list may be added
if (!stations_.contains(s)) {
auto row = stations_.size();
beginInsertRows(QModelIndex{}, row, row);
stations_.append(s);
endInsertRows();
return index(row, 0);
}
return QModelIndex{};
}
#if 0
auto StationList::impl::offset (Frequency f) const -> FrequencyDelta
{
// Lookup band for frequency
auto const& band = bands_->find (f);
if (!band.isEmpty ())
{
// Lookup station for band
for (int i = 0; i < stations_.size (); ++i)
{
if (stations_[i].band_name_ == band)
{
return stations_[i].frequency_;
}
}
}
return 0; // no offset
}
#endif
int StationList::impl::rowCount(QModelIndex const &parent) const {
return parent.isValid() ? 0 : stations_.size();
}
int StationList::impl::columnCount(QModelIndex const &parent) const {
return parent.isValid() ? 0 : num_columns;
}
Qt::ItemFlags StationList::impl::flags(QModelIndex const &index) const {
auto result = QAbstractTableModel::flags(index);
auto row = index.row();
auto column = index.column();
if (index.isValid() && row < stations_.size() && column < num_columns) {
if (band_column == column) {
result |= Qt::ItemIsDragEnabled | Qt::ItemIsDropEnabled;
} else if (description_column == column) {
result |= Qt::ItemIsEditable | Qt::ItemIsDragEnabled |
Qt::ItemIsDropEnabled;
} else {
result |= Qt::ItemIsEditable | Qt::ItemIsDropEnabled;
}
} else {
result |= Qt::ItemIsDropEnabled;
}
return result;
}
QVariant StationList::impl::data(QModelIndex const &index, int role) const {
QVariant item;
auto row = index.row();
auto column = index.column();
if (index.isValid() && row < stations_.size()) {
switch (column) {
case band_column:
switch (role) {
case SortRole: {
// Lookup band.
auto band_index =
first_matching_band(stations_.at(row).band_name_);
// Use the sort role value of the band.
item = band_index.data(Bands::SortRole);
} break;
case Qt::DisplayRole:
case Qt::EditRole:
case Qt::AccessibleTextRole:
item = stations_.at(row).band_name_;
break;
case Qt::ToolTipRole:
case Qt::AccessibleDescriptionRole:
item = tr("Band name");
break;
case Qt::TextAlignmentRole:
item = Qt::AlignCenter;
break;
}
break;
case frequency_column: {
auto frequency_offset = stations_.at(row).frequency_;
switch (role) {
case SortRole:
case Qt::EditRole:
case Qt::AccessibleTextRole:
item = frequency_offset;
break;
case Qt::DisplayRole:
item = Radio::pretty_frequency_MHz_string(frequency_offset) +
" MHz";
break;
case Qt::ToolTipRole:
case Qt::AccessibleDescriptionRole:
item = tr("Frequency");
break;
case Qt::TextAlignmentRole:
item = static_cast<Qt::Alignment::Int>(Qt::AlignRight |
Qt::AlignVCenter);
break;
}
} break;
case switch_at_column:
switch (role) {
case SortRole:
case Qt::EditRole:
case Qt::DisplayRole:
case Qt::AccessibleTextRole:
item = stations_.at(row).switch_at_.time().toString("hh:mm");
break;
case Qt::ToolTipRole:
case Qt::AccessibleDescriptionRole:
item = tr("Switch at this time");
break;
case Qt::TextAlignmentRole:
item = Qt::AlignCenter;
break;
}
break;
case switch_until_column:
switch (role) {
case SortRole:
case Qt::EditRole:
case Qt::DisplayRole:
case Qt::AccessibleTextRole:
item = stations_.at(row).switch_until_.time().toString("hh:mm");
break;
case Qt::ToolTipRole:
case Qt::AccessibleDescriptionRole:
item = tr("Switch until this time\nFrequency will not return "
"at end time.\nEnter a new line to return to "
"original or other frequency.");
break;
case Qt::TextAlignmentRole:
item = Qt::AlignCenter;
break;
}
break;
case description_column:
switch (role) {
case SortRole:
case Qt::EditRole:
case Qt::DisplayRole:
case Qt::AccessibleTextRole:
item = stations_.at(row).description_;
break;
case Qt::ToolTipRole:
case Qt::AccessibleDescriptionRole:
item = tr("Antenna description");
break;
case Qt::TextAlignmentRole:
item = static_cast<Qt::Alignment::Int>(Qt::AlignLeft |
Qt::AlignVCenter);
break;
}
break;
}
}
return item;
}
QVariant StationList::impl::headerData(int section, Qt::Orientation orientation,
int role) const {
QVariant header;
if (Qt::DisplayRole == role && Qt::Horizontal == orientation) {
switch (section) {
case band_column:
header = tr("Band");
break;
case frequency_column:
header = tr("Freq. (MHz)");
break;
case switch_at_column:
header = tr("Switch at (UTC)");
break;
case switch_until_column:
header = tr("Until (UTC)");
break;
case description_column:
header = tr("Description");
break;
}
} else {
header = QAbstractTableModel::headerData(section, orientation, role);
}
return header;
}
bool StationList::impl::setData(QModelIndex const &model_index,
QVariant const &value, int role) {
bool changed{false};
auto row = model_index.row();
auto size = stations_.size();
if (model_index.isValid() && Qt::EditRole == role && row < size) {
QVector<int> roles;
roles << role;
switch (model_index.column()) {
case band_column: {
// Check if band name is valid.
auto band_index = first_matching_band(value.toString());
if (band_index.isValid()) {
stations_[row].band_name_ = band_index.data().toString();
Q_EMIT dataChanged(model_index, model_index, roles);
changed = true;
}
} break;
case frequency_column: {
if (value.canConvert<Frequency>()) {
Frequency offset{qvariant_cast<Radio::Frequency>(value)};
if (offset == 0) {
Frequency l;
Frequency h;
if (bands_->findFreq(stations_[row].band_name_, &l, &h)) {
offset = l;
}
}
if (offset != stations_[row].frequency_) {
stations_[row].frequency_ = offset;
Q_EMIT dataChanged(model_index, model_index, roles);
auto band = bands_->find(offset);
if (band != stations_[row].band_name_) {
stations_[row].band_name_ = band;
auto band_index = model_index.model()->index(
row, band_column, model_index);
Q_EMIT dataChanged(band_index, band_index, roles);
}
changed = true;
}
}
} break;
case switch_at_column: {
QString s = value.toString();
if (s.length() < 5) {
s = QString("0").repeated(5 - s.length()) + s;
}
auto t = QTime::fromString(s);
auto at = QDateTime(QDate(2000, 1, 1), t, QTimeZone::utc());
auto until = stations_[row].switch_until_;
stations_[row].switch_at_ = at;
stations_[row].switch_until_ = until;
Q_EMIT dataChanged(model_index, model_index, roles);
auto switch_until_index = model_index.model()->index(
row, switch_until_column, model_index);
Q_EMIT dataChanged(switch_until_index, switch_until_index, roles);
changed = true;
break;
}
case switch_until_column: {
QString s = value.toString();
if (s.length() < 5) {
s = QString("0").repeated(5 - s.length()) + s;
}
auto t = QTime::fromString(s);
auto until = QDateTime(QDate(2000, 1, 1), t, QTimeZone::utc());
auto at = stations_[row].switch_at_;
stations_[row].switch_at_ = at;
stations_[row].switch_until_ = until;
Q_EMIT dataChanged(model_index, model_index, roles);
auto switch_at_index =
model_index.model()->index(row, switch_at_column, model_index);
Q_EMIT dataChanged(switch_at_index, switch_at_index, roles);
changed = true;
break;
}
case description_column:
stations_[row].description_ = value.toString();
Q_EMIT dataChanged(model_index, model_index, roles);
changed = true;
break;
}
}
return changed;
}
bool StationList::impl::removeRows(int row, int count,
QModelIndex const &parent) {
if (0 < count && (row + count) <= rowCount(parent)) {
beginRemoveRows(parent, row, row + count - 1);
for (auto r = 0; r < count; ++r) {
stations_.removeAt(row);
}
endRemoveRows();
return true;
}
return false;
}
bool StationList::impl::insertRows(int row, int count,
QModelIndex const &parent) {
if (0 < count) {
beginInsertRows(parent, row, row + count - 1);
for (auto r = 0; r < count; ++r) {
stations_.insert(row, Station());
}
endInsertRows();
return true;
}
return false;
}
Qt::DropActions StationList::impl::supportedDropActions() const {
return Qt::CopyAction | Qt::MoveAction;
}
QStringList StationList::impl::mimeTypes() const {
QStringList types;
types << mime_type;
types << "application/wsjt.Frequencies";
return types;
}
QMimeData *StationList::impl::mimeData(QModelIndexList const &items) const {
QMimeData *mime_data = new QMimeData{};
QByteArray encoded_data;
QDataStream stream{&encoded_data, QIODevice::WriteOnly};
Q_FOREACH (auto const &item, items) {
if (item.isValid()) {
stream << QString{data(item, Qt::DisplayRole).toString()};
}
}
mime_data->setData(mime_type, encoded_data);
return mime_data;
}
bool StationList::impl::dropMimeData(QMimeData const *data,
Qt::DropAction action, int /* row */,
int /* column */,
QModelIndex const &parent) {
if (Qt::IgnoreAction == action) {
return true;
}
if (parent.isValid() && description_column == parent.column() &&
data->hasFormat(mime_type)) {
QByteArray encoded_data{data->data(mime_type)};
QDataStream stream{&encoded_data, QIODevice::ReadOnly};
auto dest_index = parent;
while (!stream.atEnd()) {
QString text;
stream >> text;
setData(dest_index, text);
dest_index =
index(dest_index.row() + 1, dest_index.column(), QModelIndex{});
}
return true;
} else if (data->hasFormat("application/wsjt.Frequencies")) {
QByteArray encoded_data{data->data("application/wsjt.Frequencies")};
QDataStream stream{&encoded_data, QIODevice::ReadOnly};
while (!stream.atEnd()) {
FrequencyList_v3::Item item;
stream >> item;
auto const &band = bands_->find(item.frequency_);
if (stations_.cend() ==
std::find_if(stations_.cbegin(), stations_.cend(),
[&band](Station const &s) {
return s.band_name_ == band;
})) {
// not found so add it
add(Station{band, 0, DriftingDateTime::currentDateTimeUtc(),
DriftingDateTime::currentDateTimeUtc(), QString{}});
}
}
return true;
}
return false;
}