565 lines
19 KiB
C++
565 lines
19 KiB
C++
#include "demonstrationWidget.h"
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inline void DemonstrationWidget::TableInformation::clear() {
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for (size_t *value :
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{&m_maxCollision, &m_numberOfSuccesses, &m_numberOfFailures}) {
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*value = 0;
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}
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for (double *value : {&m_lastCoefficient, &m_maxCoefficient}) {
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*value = 0;
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}
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for (auto *series : {m_pSeriesNumberOfCollisions}) {
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series->removePoints(0, series->count());
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}
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m_pSeriesNumberOfCollisions->append(0, 0);
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m_lastCoord = {0, 0};
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m_lastValue = {'\0', '\0', '\0', '\0', '\0'};
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m_lastInsertion = false;
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}
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DemonstrationWidget::DemonstrationWidget(QWidget *pWidget)
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: QWidget(pWidget),
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m_pChartCollisionsView(new QChartView(new QChart, this)),
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m_pStandardModel(nullptr), m_stop(false), m_pFunction(nullptr),
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m_complicatedFunction(nullptr), m_pAlgorithm(nullptr),
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m_alphabetPower(endChar - firstChar + 1), m_pTable(nullptr),
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m_tableInformation(new QLineSeries(m_pChartCollisionsView->chart())) {
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setupUi(dynamic_cast<QWidget *>(this));
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m_tableView->horizontalHeader()->setSectionResizeMode(
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QHeaderView::ResizeToContents);
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QGridLayout *gridLayout = new QGridLayout;
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/*
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* Сhart
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*/
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auto *axisX = new QValueAxis();
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auto *axisY = new QValueAxis();
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axisX->setTickCount(20);
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axisY->setTickCount(10);
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axisX->setRange(1, 2);
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axisY->setRange(0, 1);
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QChart *chartCollision = m_pChartCollisionsView->chart();
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chartCollision->setTitle("Graph of collision changes");
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chartCollision->legend()->hide();
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chartCollision->addAxis(axisX, Qt::AlignBottom);
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chartCollision->addAxis(axisY, Qt::AlignLeft);
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chartCollision->addSeries(m_tableInformation.m_pSeriesNumberOfCollisions);
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m_tableInformation.m_pSeriesNumberOfCollisions->attachAxis(axisX);
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m_tableInformation.m_pSeriesNumberOfCollisions->attachAxis(axisY);
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/*
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* View(-s)
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*/
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m_pChartCollisionsView->installEventFilter(this);
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m_pChartCollisionsView->setRubberBand(QChartView::RectangleRubberBand);
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m_pChartCollisionsView->setRenderHint(QPainter::Antialiasing);
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m_pChartCollisionsView->setMinimumHeight(m_tableView->minimumHeight());
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m_pChartCollisionsView->setMinimumWidth(m_tableView->minimumWidth());
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/*
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* Splitter
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*/
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QSplitter *splitter = new QSplitter(Qt::Vertical);
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splitter->addWidget(m_tableView);
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splitter->addWidget(m_pChartCollisionsView);
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gridLayout->addWidget(splitter, 0, 0, 1, 1);
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gridLayout->addWidget(m_rightScrollArea, 0, 1, 1, 1);
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gridLayout->addWidget(m_frmProgressBar, 1, 0, 1, 2);
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setLayout(gridLayout);
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/*
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* Validator and HTML theory
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*/
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m_leFrom->setValidator(new LatinValidator(m_leFrom));
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m_leInsert->setValidator(new LatinValidator(m_leInsert));
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/*
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* Signal & slots
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*/
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connect(m_pbReset, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedReset);
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connect(m_pbApply, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedApply);
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connect(m_pbStatistics, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedStatistics);
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connect(m_pbMakeItems, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedMakeItems);
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connect(m_pbInsert, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedInsert);
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connect(m_pbFindFree, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedFindFree);
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connect(m_pbStop, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedStop);
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connect(m_pbFocus, &QPushButton::clicked, this,
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&DemonstrationWidget::slotClickedFocus);
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connect(m_rbFNV1a32bit, &QRadioButton::toggled, this,
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&DemonstrationWidget::slotUpdateAdditionalInputData);
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connect(m_rbPseudorandomProbing, &QRadioButton::toggled, this,
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&DemonstrationWidget::slotUpdateAdditionalInputData);
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connect(m_rbDoubleHashing, &QRadioButton::toggled, this,
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&DemonstrationWidget::slotUpdateAdditionalInputData);
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connect(m_rbChains, &QRadioButton::toggled, this,
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&DemonstrationWidget::slotUpdateAdditionalInputData);
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/*
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* GUI
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*/
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m_frmProgressBar->hide();
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m_frmFirstInputData->hide();
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m_frmSecondInputData->hide();
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m_gbInputData->hide();
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}
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/*
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* Inserting elements
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*/
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void DemonstrationWidget::successfulInsertion(const table_type *,
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const value_type &value,
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std::pair<size_t, size_t> index,
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size_t numberOfCollisions) {
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m_tableInformation.m_lastCoord = index;
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m_tableInformation.m_lastValue = value;
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m_tableInformation.m_lastInsertion = true;
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++m_tableInformation.m_numberOfSuccesses;
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m_tableInformation.m_lastCollision = numberOfCollisions;
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m_tableInformation.m_maxCollision = {numberOfCollisions >
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m_tableInformation.m_maxCollision
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? numberOfCollisions
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: m_tableInformation.m_maxCollision};
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m_tableInformation.m_lastCollision = numberOfCollisions;
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if (numberOfCollisions > m_tableInformation.m_maxCollision) {
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m_tableInformation.m_maxCollision = numberOfCollisions;
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}
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m_tableInformation.m_pSeriesNumberOfCollisions->append(
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m_tableInformation.m_numberOfSuccesses, numberOfCollisions);
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QModelIndex modelIndex = m_pStandardModel->index(index.first, index.second);
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if (getCurrentTableType() == TableType::Chain) {
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updateColumns(index.first);
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} else {
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m_pStandardModel->setData(modelIndex, QVariant(toQString(value)));
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}
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}
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void DemonstrationWidget::unsuccessfulInsertion(const table_type *,
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const value_type &value) {
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m_tableInformation.m_lastValue = value;
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m_tableInformation.m_lastInsertion = false;
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++m_tableInformation.m_numberOfFailures;
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}
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inline void DemonstrationWidget::updateColumns(size_t rowIndex) {
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using namespace BusinessLogic::Hash::Table;
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auto tableRow =
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dynamic_cast<BusinessLogic::Hash::Table::Chains *>(m_pTable.get())
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->row(rowIndex);
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size_t modelColumnCount = m_pStandardModel->columnCount();
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size_t tableColumnCount = tableRow.size();
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if (modelColumnCount < tableColumnCount) {
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m_pStandardModel->insertColumns(
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modelColumnCount,
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std::max(tableColumnCount - modelColumnCount,
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static_cast<size_t>(std::ceil(
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std::sqrt(m_tableInformation.m_lastCoefficient)))));
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}
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QModelIndex modelIndex;
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auto iterator = tableRow.begin();
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for (size_t i = 0, size = tableRow.size(); i < size; ++i, ++iterator) {
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modelIndex = m_pStandardModel->index(rowIndex, i);
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m_pStandardModel->setData(modelIndex, QVariant(toQString(*iterator)));
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}
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}
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inline void DemonstrationWidget::updateCharts() {
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m_pChartCollisionsView->chart()
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->axes(Qt::Horizontal)
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.front()
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->setRange(1, m_tableInformation.m_numberOfSuccesses);
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m_pChartCollisionsView->chart()
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->axes(Qt::Vertical)
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.front()
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->setRange(0, m_tableInformation.m_maxCollision);
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m_pChartCollisionsView->chart()->resetMatrix();
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}
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inline void DemonstrationWidget::updateTableView() {
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m_tableView->scrollTo(
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m_pStandardModel->index(m_tableInformation.m_lastCoord.first,
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m_tableInformation.m_lastCoord.second),
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QAbstractItemView::PositionAtCenter);
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m_tableView->repaint();
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}
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inline DemonstrationWidget::value_type &
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DemonstrationWidget::next(value_type &value) const {
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auto rbegin = value.rbegin();
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auto rend = value.rend();
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for (; rbegin != rend; ++rbegin) {
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if (*rbegin >= firstChar && *rbegin < endChar) {
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++(*rbegin);
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return value;
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} else if (*rbegin == '\0') {
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*rbegin = firstChar;
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return value;
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} else {
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*rbegin = firstChar;
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}
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}
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value = toStdArray(std::string(4, '\0') + firstChar);
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return value;
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}
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inline bool DemonstrationWidget::checkBeforeInsertion(bool tableTypeIsChain) {
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size_t quantityOfInserts = m_sbQuantity->value();
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if (tableTypeIsChain &&
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(m_pTable->numberOfBuckets() + quantityOfInserts) / m_pTable->size() >
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10) {
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outputMessage(
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"Prohibit insertion when allocating more than 10 elements per chain",
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"red");
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return false;
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}
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return true;
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}
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inline void DemonstrationWidget::slotClickedMakeItems() {
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using namespace BusinessLogic::Convert;
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bool tableTypeIsChain = getCurrentTableType() == TableType::Chain;
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if (not checkBeforeInsertion(tableTypeIsChain)) {
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return;
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}
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/*
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* Preparing
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*/
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if (tableTypeIsChain && m_pStandardModel->columnCount() == 0) {
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m_pStandardModel->insertColumns(0, m_sbQuantity->value() /
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m_sbBucketQuantity->value());
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}
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m_frmProgressBar->setVisible(true);
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m_progressBar->setValue(0);
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/*
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* For other thread
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*/
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setEnabledInsertingProcess(false);
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m_frmProgressBar->setVisible(true);
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auto differenceNumberOfSuccesses = m_tableInformation.m_numberOfSuccesses;
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auto differenceNumberOfFailures = m_tableInformation.m_numberOfFailures;
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int value;
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value_type currentString = toStdArray(m_leFrom->text().toStdString());
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for (size_t progress = 0, target = m_sbQuantity->value(); progress < target;
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++progress) {
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m_pTable->insert(currentString);
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next(currentString);
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if (m_stop) {
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m_stop = false;
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break;
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}
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value = static_cast<int>(
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progress * static_cast<double>(m_progressBar->maximum()) / target);
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if (value > m_progressBar->value()) {
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m_progressBar->setValue(value);
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}
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QApplication::processEvents();
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}
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updateCharts();
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updateTableView();
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m_frmProgressBar->setVisible(false);
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setEnabledInsertingProcess(true);
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/*
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* Output message
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*/
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differenceNumberOfSuccesses =
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m_tableInformation.m_numberOfSuccesses - differenceNumberOfSuccesses;
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differenceNumberOfFailures =
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m_tableInformation.m_numberOfFailures - differenceNumberOfFailures;
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m_lblOutputMessages->setText(
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getColorTextHTML(
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QString("Successful inserts: %1").arg(differenceNumberOfSuccesses),
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"green") +
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"<br>" +
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getColorTextHTML(QString("Failed inserts : %1")
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.arg(differenceNumberOfFailures),
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"red"));
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}
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inline void DemonstrationWidget::slotClickedInsert() {
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bool tableTypeIsChain = getCurrentTableType() == TableType::Chain;
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if (not checkBeforeInsertion(tableTypeIsChain)) {
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return;
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}
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m_pTable->insert(toStdArray(m_leInsert->text().toStdString()));
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outputMessage(m_tableInformation.m_lastInsertion ? "Inserting is successful"
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: "The insertion has failed",
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m_tableInformation.m_lastInsertion ? "green" : "red");
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}
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/*
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* Other logic
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*/
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inline auto DemonstrationWidget::getCurrentFactory() const {
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using namespace BusinessLogic::Hash;
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std::unique_ptr<const Factory::Abstract> factory;
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bool functionTypeIsFamily =
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getCurrentFunctionType() == RelationshipType::Family;
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if (getCurrentAlgorythmType() == RelationshipType::One) {
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factory = std::make_unique<Factory::One>(
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functionTypeIsFamily
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? m_complicatedFunction // The complicated function must be prepared
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: std::dynamic_pointer_cast<Function::One::Creator>(m_pFunction),
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std::dynamic_pointer_cast<Algorithm::One::Creator>(m_pAlgorithm));
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} else if (functionTypeIsFamily) {
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factory = std::make_unique<Factory::Family>(
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std::dynamic_pointer_cast<Function::Family::Creator>(m_pFunction),
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std::dynamic_pointer_cast<Algorithm::Family::Creator>(m_pAlgorithm));
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} else {
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std::invalid_argument("function type not defined");
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}
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return factory;
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}
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inline void DemonstrationWidget::updateFunctionCreator() {
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using namespace BusinessLogic::Hash::Function;
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if (m_rbEquivalent->isChecked()) {
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m_pFunction = std::make_shared<Equivalent::Creator>();
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} else if (m_rbStandart->isChecked()) {
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m_pFunction = std::make_shared<Standart::Creator>();
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} else { // m_rbFNV1a32bit->isChecked()
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m_pFunction = std::make_shared<FNV1a::Creator>();
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}
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}
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inline void DemonstrationWidget::updateAlgorithmCreator() {
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using namespace BusinessLogic::Hash::Algorithm;
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if (m_rbLinearProbing->isChecked()) {
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m_pAlgorithm = std::make_shared<LinearProbing::Creator>();
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} else if (m_rbQuadraticProbing->isChecked()) {
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m_pAlgorithm = std::make_shared<QuadraticProbing::Creator>();
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} else if (m_rbPseudorandomProbing->isChecked()) {
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m_pAlgorithm = std::make_shared<PseudorandomProbing::Creator>(
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m_sbFirstInputData->value());
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} else { // m_rbDoubleHashing->isChecked()
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m_pAlgorithm = std::make_shared<DoubleHashing::Creator>(
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m_sbFirstInputData->value(), m_sbSecondInputData->value());
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}
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}
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inline void DemonstrationWidget::deleteModel() {
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auto stringListModel = m_tableView->selectionModel();
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m_tableView->setModel(nullptr);
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if (stringListModel not_eq nullptr) {
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delete stringListModel;
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}
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}
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/*
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* Table GUI
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*/
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inline void DemonstrationWidget::slotUpdateAdditionalInputData() {
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bool predicate = {getCurrentFunctionType() == RelationshipType::Family};
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m_gbInputData->setVisible(predicate);
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m_frmFirstInputData->setVisible(predicate);
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if (getCurrentTableType() == TableType::Chain) {
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m_rbStandart->setEnabled(true);
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m_rbEquivalent->setEnabled(true);
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m_frmSecondInputData->setVisible(false);
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} else {
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bool algorythmIsFamily =
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getCurrentAlgorythmType() == RelationshipType::Family;
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m_rbEquivalent->setDisabled(algorythmIsFamily);
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m_rbStandart->setDisabled(algorythmIsFamily);
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m_frmSecondInputData->setVisible(algorythmIsFamily);
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if (algorythmIsFamily) {
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m_rbFNV1a32bit->setChecked(true);
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repaint();
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m_frmSecondInputData->setVisible(m_rbDoubleHashing->isChecked());
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}
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}
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}
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inline void DemonstrationWidget::slotClickedApply() {
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using namespace BusinessLogic::Hash;
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using namespace BusinessLogic::Hash::Function::Pattern;
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if (m_rbDoubleHashing->isChecked() &&
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m_sbFirstInputData->value() == m_sbSecondInputData->value()) {
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outputMessage("Hash function coefficients should not match", "red");
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return;
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}
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updateFunctionCreator();
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updateAlgorithmCreator();
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bool tableTypeIsChain = getCurrentTableType() == TableType::Chain;
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bool functionTypeIsFamily =
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getCurrentFunctionType() == RelationshipType::Family;
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if (functionTypeIsFamily && (tableTypeIsChain || getCurrentAlgorythmType() ==
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RelationshipType::One)) {
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m_complicatedFunction = std::make_shared<FamilyToOne::Creator>(
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std::dynamic_pointer_cast<Function::Family::Creator>(m_pFunction),
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m_sbFirstInputData->value());
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}
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size_t bucketQuantity = m_sbBucketQuantity->value();
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try {
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if (tableTypeIsChain) {
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m_pTable = std::make_unique<Table::Chains>(
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bucketQuantity,
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functionTypeIsFamily
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? *m_complicatedFunction
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: *std::dynamic_pointer_cast<Function::One::Creator>(m_pFunction),
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m_alphabetPower);
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} else {
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auto factory = getCurrentFactory();
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m_pTable = std::make_unique<Table::OpenAddressing>(
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bucketQuantity, *factory, m_alphabetPower);
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}
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} catch (const std::bad_alloc &err) {
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outputMessage("Not enough RAM", "red");
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return;
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}
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setEnabledCreateHashTable(false);
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m_pbFocus->setEnabled(true);
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m_pTable->signTheObject(this);
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/*
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* A descendant will notify an ancestor of his own destruction when using
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* delete
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*/
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deleteModel();
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m_pStandardModel =
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new QStandardItemModel(bucketQuantity, (tableTypeIsChain ? 0 : 1), this);
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m_tableView->setModel(m_pStandardModel);
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m_lblOutputMessages->setText(
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getColorTextHTML("The model was created", "green"));
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}
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inline void DemonstrationWidget::slotClickedStatistics() {
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m_tableInformation.m_lastCoefficient =
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m_pTable->simpleUniformHashingCoefficient();
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QMessageBox::information(
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nullptr, "Statistics",
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QString("Maximum number of collisions:\t%1\n")
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.arg(m_tableInformation.m_maxCollision) +
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QString("Number of successful inserts:\t\t%1\n")
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.arg(m_tableInformation.m_numberOfSuccesses) +
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QString("Number of failed inserts:\t\t%1\n")
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.arg(m_tableInformation.m_numberOfFailures) +
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QString("Simple uniform hashing coefficient:\t%1\n")
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.arg(m_tableInformation.m_lastCoefficient));
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}
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inline void DemonstrationWidget::slotClickedFindFree() {
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QString result;
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if (m_pTable->numberOfBuckets() == 0) {
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result = firstChar;
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} else {
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value_type currentString = m_tableInformation.m_lastValue;
|
||
while (m_pTable->isExist(next(currentString)))
|
||
continue;
|
||
result = toQString(currentString);
|
||
}
|
||
|
||
m_leFrom->setText(result);
|
||
m_leInsert->setText(result);
|
||
}
|
||
|
||
inline void DemonstrationWidget::slotClickedStop() {
|
||
m_stop = true;
|
||
setEnabledInsertingProcess(true);
|
||
}
|
||
|
||
inline void DemonstrationWidget::slotClickedFocus() { updateCharts(); }
|
||
|
||
/*
|
||
* Base GUI
|
||
*/
|
||
|
||
inline void DemonstrationWidget::slotClickedReset() {
|
||
setEnabledCreateHashTable(true);
|
||
m_pbFocus->setDisabled(true);
|
||
|
||
m_complicatedFunction.reset();
|
||
m_pTable.release();
|
||
m_tableInformation.clear();
|
||
resetAxes();
|
||
deleteModel();
|
||
|
||
outputMessage("The model has been deleted", "green");
|
||
}
|
||
|
||
inline QString
|
||
DemonstrationWidget::getColorTextHTML(const QString &text,
|
||
const char *const color) const {
|
||
return QString(m_fontBeginColorHTML).arg(color) + text + m_fontEndHTML;
|
||
}
|
||
|
||
inline void DemonstrationWidget::outputMessage(const QString &text,
|
||
const char *const color) {
|
||
m_lblOutputMessages->setText(getColorTextHTML(text, color));
|
||
}
|
||
|
||
inline void DemonstrationWidget::setEnabledCreateHashTable(bool flag) {
|
||
for (QWidget *widget : std::initializer_list<QWidget *>{
|
||
m_pbApply, m_sbBucketQuantity, m_gbResolutionOfCollisions,
|
||
m_gbFunction, m_gbInputData}) {
|
||
widget->setEnabled(flag);
|
||
}
|
||
|
||
if (getCurrentTableType() not_eq TableType::Chain) {
|
||
m_gbAlgorithm->setEnabled(flag);
|
||
}
|
||
m_gbLoadTable->setDisabled(flag);
|
||
m_pbStatistics->setDisabled(flag);
|
||
}
|
||
|
||
inline void DemonstrationWidget::setEnabledInsertingProcess(bool flag) {
|
||
for (QWidget *widget : std::initializer_list<QWidget *>{
|
||
m_leFrom, m_sbQuantity, m_pbMakeItems, m_leInsert, m_pbInsert,
|
||
m_pbReset, m_pbStatistics, m_pbFindFree}) {
|
||
widget->setEnabled(flag);
|
||
}
|
||
m_pbStop->setDisabled(flag);
|
||
}
|