mirror of
https://github.com/UpsilonNumworks/Upsilon.git
synced 2026-01-19 00:37:25 +01:00
303 lines
11 KiB
C++
303 lines
11 KiB
C++
#include "calculation_controller.h"
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#include "../constant.h"
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#include "../apps_container.h"
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#include "../../poincare/src/layout/char_layout.h"
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#include "../../poincare/src/layout/horizontal_layout.h"
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#include "../../poincare/src/layout/vertical_offset_layout.h"
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#include <poincare.h>
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#include <assert.h>
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using namespace Poincare;
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using namespace Shared;
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namespace Regression {
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CalculationController::CalculationController(Responder * parentResponder, ButtonRowController * header, Store * store) :
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TabTableController(parentResponder, this),
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ButtonRowDelegate(header, nullptr),
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m_titleCells{},
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m_r2TitleCell(nullptr),
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m_columnTitleCells{},
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m_doubleCalculationCells{},
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m_calculationCells{},
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m_hideableCell(nullptr),
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m_store(store)
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{
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m_r2Layout = new HorizontalLayout(new CharLayout('r', KDText::FontSize::Small), new VerticalOffsetLayout(new CharLayout('2', KDText::FontSize::Small), VerticalOffsetLayout::Type::Superscript, false), false);
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}
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CalculationController::~CalculationController() {
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if (m_r2Layout) {
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delete m_r2Layout;
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m_r2Layout = nullptr;
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}
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}
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const char * CalculationController::title() {
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return I18n::translate(I18n::Message::StatTab);
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}
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bool CalculationController::handleEvent(Ion::Events::Event event) {
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if (event == Ion::Events::Up) {
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selectableTableView()->deselectTable();
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app()->setFirstResponder(tabController());
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return true;
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}
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return false;
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}
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void CalculationController::didBecomeFirstResponder() {
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if (selectedRow() == -1) {
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selectCellAtLocation(1, 0);
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} else {
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selectCellAtLocation(selectedColumn(), selectedRow());
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}
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TabTableController::didBecomeFirstResponder();
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}
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void CalculationController::tableViewDidChangeSelection(SelectableTableView * t, int previousSelectedCellX, int previousSelectedCellY) {
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/* To prevent selecting cell with no content (top left corner of the table),
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* as soon as the selected cell is the top left corner, we either reselect
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* the previous cell or select the tab controller depending on from which cell
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* the selection comes. This trick does not create an endless loop as the
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* previous cell cannot be the top left corner cell if it also is the
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* selected one. */
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if (t->selectedRow() == 0 && t->selectedColumn() == 0) {
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if (previousSelectedCellX == 0 && previousSelectedCellY == 1) {
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selectableTableView()->deselectTable();
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app()->setFirstResponder(tabController());
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} else {
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t->selectCellAtLocation(0, 1);
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}
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}
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if (t->selectedColumn() > 0 && t->selectedRow() >= 0 && t->selectedRow() <= k_totalNumberOfDoubleBufferRows) {
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EvenOddDoubleBufferTextCellWithSeparator * myCell = (EvenOddDoubleBufferTextCellWithSeparator *)t->selectedCell();
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bool firstSubCellSelected = true;
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if (previousSelectedCellX > 0 && previousSelectedCellY >= 0 && previousSelectedCellY <= k_totalNumberOfDoubleBufferRows) {
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EvenOddDoubleBufferTextCellWithSeparator * myPreviousCell = (EvenOddDoubleBufferTextCellWithSeparator *)t->cellAtLocation(previousSelectedCellX, previousSelectedCellY);
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firstSubCellSelected = myPreviousCell->firstTextSelected();
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}
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myCell->selectFirstText(firstSubCellSelected);
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}
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}
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bool CalculationController::isEmpty() const {
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if (m_store->numberOfPairs() == 0) {
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return true;
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}
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return false;
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}
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I18n::Message CalculationController::emptyMessage() {
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return I18n::Message::NoValueToCompute;
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}
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Responder * CalculationController::defaultController() {
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return tabController();
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}
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int CalculationController::numberOfRows() {
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return k_totalNumberOfRows;
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}
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int CalculationController::numberOfColumns() {
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return 1 + m_store->numberOfNonEmptySeries();
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}
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void CalculationController::willDisplayCellAtLocation(HighlightCell * cell, int i, int j) {
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if (i == 0 && j == 0) {
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return;
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}
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EvenOddCell * myCell = (EvenOddCell *)cell;
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myCell->setEven(j%2 == 0);
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myCell->setHighlighted(i == selectedColumn() && j == selectedRow());
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// Calculation title
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if (i == 0) {
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if (j == numberOfRows()-1) {
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EvenOddExpressionCellWithMargin * myCell = (EvenOddExpressionCellWithMargin *)cell;
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myCell->setExpressionLayout(m_r2Layout);
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return;
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}
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MarginEvenOddMessageTextCell * myCell = (MarginEvenOddMessageTextCell *)cell;
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myCell->setAlignment(1.0f, 0.5f);
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I18n::Message titles[k_totalNumberOfRows-1] = {I18n::Message::Mean, I18n::Message::Sum, I18n::Message::SquareSum, I18n::Message::StandardDeviation, I18n::Message::Deviation, I18n::Message::NumberOfDots, I18n::Message::Covariance, I18n::Message::Sxy, I18n::Message::Regression, I18n::Message::A, I18n::Message::B, I18n::Message::R, I18n::Message::Default};
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myCell->setMessage(titles[j-1]);
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return;
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}
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int seriesNumber = m_store->indexOfKthNonEmptySeries(i - 1);
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assert(i >= 0 && seriesNumber < DoublePairStore::k_numberOfSeries);
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// Coordinate and series title
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if (j == 0 && i > 0) {
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ColumnTitleCell * myCell = (ColumnTitleCell *)cell;
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char buffer[] = {'X', static_cast<char>('1' + seriesNumber), 0};
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myCell->setFirstText(buffer);
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buffer[0] = 'Y';
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myCell->setSecondText(buffer);
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myCell->setColor(Palette::DataColor[seriesNumber]);
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return;
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}
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// Calculation cell
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if (i > 0 && j > 0 && j <= k_totalNumberOfDoubleBufferRows) {
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ArgCalculPointer calculationMethods[k_totalNumberOfDoubleBufferRows] = {&Store::meanOfColumn, &Store::sumOfColumn, &Store::squaredValueSumOfColumn, &Store::standardDeviationOfColumn, &Store::varianceOfColumn};
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double calculation1 = (m_store->*calculationMethods[j-1])(seriesNumber, 0);
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double calculation2 = (m_store->*calculationMethods[j-1])(seriesNumber, 1);
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EvenOddDoubleBufferTextCellWithSeparator * myCell = (EvenOddDoubleBufferTextCellWithSeparator *)cell;
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char buffer[PrintFloat::bufferSizeForFloatsWithPrecision(Constant::LargeNumberOfSignificantDigits)];
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PrintFloat::convertFloatToText<double>(calculation1, buffer, PrintFloat::bufferSizeForFloatsWithPrecision(Constant::LargeNumberOfSignificantDigits), Constant::LargeNumberOfSignificantDigits);
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myCell->setFirstText(buffer);
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PrintFloat::convertFloatToText<double>(calculation2, buffer, PrintFloat::bufferSizeForFloatsWithPrecision(Constant::LargeNumberOfSignificantDigits), Constant::LargeNumberOfSignificantDigits);
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myCell->setSecondText(buffer);
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return;
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}
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if (i > 0 && j == 9) {
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SeparatorEvenOddBufferTextCell * myCell = (SeparatorEvenOddBufferTextCell *)cell;
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myCell->setText("ax+b");
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return;
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}
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if (i > 0 && j > k_totalNumberOfDoubleBufferRows) {
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assert(j != 9);
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CalculPointer calculationMethods[k_totalNumberOfRows-k_totalNumberOfDoubleBufferRows] = {&Store::doubleCastedNumberOfPairsOfSeries, &Store::covariance, &Store::columnProductSum, nullptr, &Store::slope, &Store::yIntercept, &Store::correlationCoefficient, &Store::squaredCorrelationCoefficient};
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double calculation = (m_store->*calculationMethods[j-k_totalNumberOfDoubleBufferRows-1])(seriesNumber);
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SeparatorEvenOddBufferTextCell * myCell = (SeparatorEvenOddBufferTextCell *)cell;
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char buffer[PrintFloat::bufferSizeForFloatsWithPrecision(Constant::LargeNumberOfSignificantDigits)];
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PrintFloat::convertFloatToText<double>(calculation, buffer, PrintFloat::bufferSizeForFloatsWithPrecision(Constant::LargeNumberOfSignificantDigits), Constant::LargeNumberOfSignificantDigits);
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myCell->setText(buffer);
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return;
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}
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}
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KDCoordinate CalculationController::columnWidth(int i) {
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return k_cellWidth;
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}
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KDCoordinate CalculationController::rowHeight(int j) {
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return k_cellHeight;
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}
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HighlightCell * CalculationController::reusableCell(int index, int type) {
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if (type == k_standardCalculationTitleCellType) {
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assert(index >= 0 && index < k_maxNumberOfDisplayableRows);
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assert(m_titleCells[index] != nullptr);
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return m_titleCells[index];
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}
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if (type == k_r2CellType) {
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assert(index == 0);
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return m_r2TitleCell;
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}
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if (type == k_columnTitleCellType) {
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assert(index >= 0 && index < Store::k_numberOfSeries);
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return m_columnTitleCells[index];
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}
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if (type == k_doubleBufferCalculationCellType) {
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assert(index >= 0 && index < k_numberOfDoubleCalculationCells);
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assert(m_doubleCalculationCells[index] != nullptr);
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return m_doubleCalculationCells[index];
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}
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if (type == k_hideableCellType) {
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return m_hideableCell;
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}
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assert(index >= 0 && index < k_numberOfCalculationCells);
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assert(m_calculationCells[index] != nullptr);
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return m_calculationCells[index];
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}
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int CalculationController::reusableCellCount(int type) {
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if (type == k_standardCalculationTitleCellType) {
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return k_maxNumberOfDisplayableRows;
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}
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if (type == k_r2CellType) {
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return 1;
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}
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if (type == k_columnTitleCellType) {
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return Store::k_numberOfSeries;
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}
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if (type == k_doubleBufferCalculationCellType) {
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return k_numberOfDoubleCalculationCells;
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}
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if (type == k_hideableCellType) {
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return 1;
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}
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assert(type == k_standardCalculationCellType);
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return k_numberOfCalculationCells;
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}
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int CalculationController::typeAtLocation(int i, int j) {
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if (i == 0 && j == 0) {
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return k_hideableCellType;
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}
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if (i == 0 && j == k_totalNumberOfRows-1) {
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return k_r2CellType;
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}
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if (i == 0) {
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return k_standardCalculationTitleCellType;
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}
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if (j == 0) {
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return k_columnTitleCellType;
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}
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if (j > 0 && j <= k_totalNumberOfDoubleBufferRows) {
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return k_doubleBufferCalculationCellType;
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}
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return k_standardCalculationCellType;
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}
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Responder * CalculationController::tabController() const {
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return (parentResponder()->parentResponder()->parentResponder());
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}
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View * CalculationController::loadView() {
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SelectableTableView * tableView = new SelectableTableView(this, this, this, this);
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tableView->setVerticalCellOverlap(0);
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tableView->setBackgroundColor(Palette::WallScreenDark);
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tableView->setMargins(k_margin, k_scrollBarMargin, k_scrollBarMargin, k_margin);
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m_r2TitleCell = new EvenOddExpressionCellWithMargin(1.0f, 0.5f);
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for (int i = 0; i < Store::k_numberOfSeries; i++) {
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m_columnTitleCells[i] = new ColumnTitleCell(tableView);
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}
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for (int i = 0; i < k_maxNumberOfDisplayableRows; i++) {
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m_titleCells[i] = new MarginEvenOddMessageTextCell(KDText::FontSize::Small);
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}
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for (int i = 0; i < k_numberOfDoubleCalculationCells; i++) {
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m_doubleCalculationCells[i] = new EvenOddDoubleBufferTextCellWithSeparator();
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m_doubleCalculationCells[i]->setTextColor(Palette::GreyDark);
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m_doubleCalculationCells[i]->setParentResponder(tableView);
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}
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for (int i = 0; i < k_numberOfCalculationCells;i++) {
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m_calculationCells[i] = new SeparatorEvenOddBufferTextCell(KDText::FontSize::Small);
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m_calculationCells[i]->setTextColor(Palette::GreyDark);
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}
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m_hideableCell = new HideableEvenOddCell();
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m_hideableCell->setHide(true);
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return tableView;
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}
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void CalculationController::unloadView(View * view) {
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delete m_r2TitleCell;
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m_r2TitleCell = nullptr;
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for (int i = 0; i < Store::k_numberOfSeries; i++) {
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delete m_columnTitleCells[i];
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m_columnTitleCells[i] = nullptr;
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}
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for (int i = 0; i < k_numberOfDoubleCalculationCells; i++) {
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delete m_doubleCalculationCells[i];
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m_doubleCalculationCells[i] = nullptr;
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}
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for (int i = 0; i < k_numberOfCalculationCells;i++) {
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delete m_calculationCells[i];
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m_calculationCells[i] = nullptr;
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}
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for (int i = 0; i < k_maxNumberOfDisplayableRows; i++) {
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delete m_titleCells[i];
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m_titleCells[i] = nullptr;
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}
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delete m_hideableCell;
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m_hideableCell = nullptr;
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TabTableController::unloadView(view);
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}
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}
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