mirror of
https://github.com/UpsilonNumworks/Upsilon.git
synced 2026-01-19 16:57:31 +01:00
181 lines
7.1 KiB
C++
181 lines
7.1 KiB
C++
#include "toolbox_controller.h"
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#include "toolbox_node.h"
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#include <assert.h>
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/* TODO: find a shorter way to initiate tree models
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* We create one model tree: each node keeps the label of the row it refers to
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* and the text which would be edited by clicking on the row. When the node is a
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* subtree, the edited text is set at nullptr. */
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const ToolboxNode calculChildren[4] = {ToolboxNode("diff(,)", "Nombre derive"), ToolboxNode("int(,,)", "Integrale"), ToolboxNode("sum(,,)", "Somme"), ToolboxNode("product(,,)", "Produit")};
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const ToolboxNode complexChildren[5] = {ToolboxNode("abs()", "Module"), ToolboxNode("arg()", "Argument"), ToolboxNode("re()", "Partie reelle"), ToolboxNode("im()", "Partie imaginaire"), ToolboxNode("conj()", "Conjugue")};
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const ToolboxNode probabilityChildren[4] = {ToolboxNode("binomial()", "Combinaison"), ToolboxNode("permute(,)", "Arrangement"), ToolboxNode("random(,)", "Nombre aleatoire"), ToolboxNode("gamma()", "Fonction gamma")};
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const ToolboxNode arithmeticChildren[4] = {ToolboxNode("gcd()", "PGCD"), ToolboxNode("lcm()", "PPCM"), ToolboxNode("rem()", "Reste division euclidienne"), ToolboxNode("quo()","Quotien division euclidienne")};
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const ToolboxNode matricesChildren[5] = {ToolboxNode("inverse()", "Inverse"), ToolboxNode("det()", "Determinant"), ToolboxNode("transpose()", "Transposee"), ToolboxNode("trace()", "Trace"), ToolboxNode("dim()", "Taille")};
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const ToolboxNode listesChildren[5] = {ToolboxNode("sort<()", "Tri croissant"), ToolboxNode("sort>()", "Tri decroissant"), ToolboxNode("max()", "Maximum"), ToolboxNode("min()", "Minimum"), ToolboxNode("dim()", "Taille")};
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const ToolboxNode approximationChildren[4] = {ToolboxNode("floor()", "Partie entiere"), ToolboxNode("frac()", "Partie fractionnaire"), ToolboxNode("ceil()", "Plafond"), ToolboxNode("round(,)", "Arrondi")};
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const ToolboxNode trigonometryChildren[6] = {ToolboxNode("cosh()", "cosh"), ToolboxNode("sinh()", "sinh"), ToolboxNode("tanh()", "tanh"), ToolboxNode("acosh()", "acosh"), ToolboxNode("asinh()", "asinh"), ToolboxNode("atanh()", "atanh")};
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const ToolboxNode menu[11] = {ToolboxNode("abs()", "Valeur absolue"), ToolboxNode("root(,)", "Racine k-ieme"), ToolboxNode("log(,)", "Logarithme base a"),
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ToolboxNode("Calcul", nullptr, calculChildren, 4), ToolboxNode("Nombre complexe", nullptr, complexChildren, 5),
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ToolboxNode("Probabilite", nullptr, probabilityChildren, 4), ToolboxNode("Arithmetique", nullptr, arithmeticChildren, 4),
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ToolboxNode("Matrice", nullptr, matricesChildren, 5), ToolboxNode("Liste", nullptr, listesChildren, 5),
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ToolboxNode("Approximation", nullptr, approximationChildren, 4), ToolboxNode("Trigonometrie", nullptr, trigonometryChildren, 6)};
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const ToolboxNode toolboxModel = ToolboxNode("Toolbox", nullptr, menu, 11);
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/* State */
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ToolboxController::Stack::State::State(int selectedRow, KDCoordinate verticalScroll) :
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m_selectedRow(selectedRow),
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m_verticalScroll(verticalScroll)
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{
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}
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int ToolboxController::Stack::State::selectedRow() {
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return m_selectedRow;
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}
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KDCoordinate ToolboxController::Stack::State::verticalScroll() {
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return m_verticalScroll;
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}
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bool ToolboxController::Stack::State::isNull(){
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if (m_selectedRow == -1) {
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return true;
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}
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return false;
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}
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/* Stack */
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void ToolboxController::Stack::push(int selectedRow, KDCoordinate verticalScroll) {
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int i = 0;
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while (!m_statesStack[i].isNull() && i < k_maxModelTreeDepth) {
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i++;
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}
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assert(m_statesStack[i].isNull());
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m_statesStack[i] = State(selectedRow, verticalScroll);
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}
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ToolboxController::Stack::State * ToolboxController::Stack::stateAtIndex(int index) {
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return &m_statesStack[index];
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}
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int ToolboxController::Stack::depth() {
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int depth = 0;
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for (int i = 0; i < k_maxModelTreeDepth; i++) {
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depth += (!m_statesStack[i].isNull());
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}
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return depth;
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}
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void ToolboxController::Stack::pop() {
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int stackDepth = depth();
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if (stackDepth == 0) {
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return;
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}
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m_statesStack[stackDepth-1] = State();
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}
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void ToolboxController::Stack::resetStack() {
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for (int i = 0; i < k_maxModelTreeDepth; i++) {
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m_statesStack[i] = State();
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}
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}
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/* ToolboxController */
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ToolboxController::ToolboxController() :
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StackViewController(nullptr, &m_listViewController, true, KDColorWhite, Palette::PurpleBright, Palette::PurpleDark),
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m_listViewController(NodeListViewController(this))
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{
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}
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const char * ToolboxController::title() const {
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return "ToolboxController";
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}
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bool ToolboxController::handleEvent(Ion::Events::Event event) {
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if (event == Ion::Events::Back) {
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return returnToPreviousMenu();
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}
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if (event == Ion::Events::OK) {
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int selectedRow = m_listViewController.selectedRow();
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Node * selectedNode = (Node *)m_listViewController.nodeModel()->children(selectedRow);
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if (selectedNode->numberOfChildren() == 0) {
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return selectLeaf(selectedNode);
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}
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return selectSubMenu(selectedNode);
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}
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return false;
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}
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void ToolboxController::didBecomeFirstResponder() {
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m_listViewController.setNodeModel(rootModel());
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StackViewController::didBecomeFirstResponder();
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m_stack.resetStack();
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m_listViewController.setFirstSelectedRow(0);
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app()->setFirstResponder(&m_listViewController);
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}
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void ToolboxController::setTextFieldCaller(TextField * textField) {
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m_textFieldCaller = textField;
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}
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Node * ToolboxController::rootModel() {
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return (Node *)&toolboxModel;
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}
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bool ToolboxController::selectLeaf(Node * selectedNode){
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m_listViewController.deselectTable();
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ToolboxNode * node = (ToolboxNode *)selectedNode;
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const char * editedText = node->label();
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if (!m_textFieldCaller->isEditing()) {
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m_textFieldCaller->setEditing(true);
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}
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m_textFieldCaller->insertTextAtLocation(editedText, m_textFieldCaller->cursorLocation());
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int cursorDelta = 0;
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int editedTextLength = strlen(editedText);
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for (int i = 0; i < editedTextLength; i++) {
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if (editedText[i] == '(') {
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cursorDelta = i + 1;
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break;
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}
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}
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m_textFieldCaller->setCursorLocation(m_textFieldCaller->cursorLocation()+cursorDelta);
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app()->dismissModalViewController();
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return true;
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}
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bool ToolboxController::returnToPreviousMenu() {
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m_listViewController.deselectTable();
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int depth = m_stack.depth();
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if (depth == 0) {
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app()->dismissModalViewController();
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return true;
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}
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int index = 0;
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Node * parentNode = rootModel();
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Stack::State * previousState = m_stack.stateAtIndex(index++);;
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while (depth-- > 1) {
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parentNode = (Node *)parentNode->children(previousState->selectedRow());
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previousState = m_stack.stateAtIndex(index++);
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}
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m_listViewController.deselectTable();
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m_listViewController.setNodeModel(parentNode);
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m_listViewController.setFirstSelectedRow(previousState->selectedRow());
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m_listViewController.setVerticalScroll(previousState->verticalScroll());
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m_stack.pop();
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app()->setFirstResponder(&m_listViewController);
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return true;
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}
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bool ToolboxController::selectSubMenu(Node * selectedNode) {
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m_stack.push(m_listViewController.selectedRow(), m_listViewController.verticalScroll());
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m_listViewController.deselectTable();
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m_listViewController.setNodeModel(selectedNode);
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m_listViewController.setFirstSelectedRow(0);
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app()->setFirstResponder(&m_listViewController);
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return true;
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}
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