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assignment
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assignment
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README.md
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README.md
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# Advent of Code 2022 - Assignment8 javascript
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## Description
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This problem is all about walking through a grid. In this solution, we look through an entire column and row until we find a node with height <= height.
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# Advent of Code 2022 - Assignment5 javascript
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This repository contains answers to the assignments of Advent of Coding 2022
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## References
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- https://www.w3schools.com/jsref/jsref_charat.asp
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- https://stackabuse.com/javascript-check-if-variable-is-a-number/
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- https://www.w3schools.com/jsref/jsref_abs.asp
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- https://www.w3schools.com/jsref/jsref_includes.asp
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- https://stackoverflow.com/questions/10261986/how-to-detect-string-which-contains-only-spaces
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- https://www.w3schools.com/jsref/jsref_indexof.asp
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- https://stackoverflow.com/questions/8073673/how-can-i-add-new-array-elements-at-the-beginning-of-an-array-in-javascript
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- https://stackoverflow.com/questions/966225/how-can-i-create-a-two-dimensional-array-in-javascript
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- https://www.w3schools.com/jsref/jsref_ceil.asp
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- https://stackoverflow.com/questions/30561056/console-log-a-multi-dimensional-array
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- https://teamtreehouse.com/community/removing-more-than-1-element-using-pop-and-shift-method
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- https://stackoverflow.com/questions/14723848/push-multiple-elements-to-array
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@@ -8,8 +8,8 @@
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<body>
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<p>Assignment:</p>
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<textarea rows="15" cols="50" id="assignment"></textarea>
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<input type="checkbox" id="algorithm" />
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<label for="algorithm">Highest scenic score?</label>
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<input type="checkbox" id="algorithm"/>
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<label for="algorithm">All containers at once?</label>
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<p>Answer:</p>
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<div id="answer">Provide input first</div>
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213
script.js
213
script.js
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const ASSIGNMENT = 'assignment';
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const ANSWER = 'answer';
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const ALGORITHM_CHECKBOX = 'algorithm';
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const CONTAINER_NULL_CHARACTER=0;
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const INSTRUCTION_FROM='from';
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const INSTRUCTION_MOVE='move';
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const INSTRUCTION_TO='to';
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const NEWLINE_CHARACTER = '\n';
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/**
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* Main function
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*/
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window.onload = function () {
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document.getElementById(ASSIGNMENT).addEventListener("input", calculateAnswer);
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document.getElementById(ALGORITHM_CHECKBOX).addEventListener("click", calculateAnswer);
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window.onload = function() {
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document.getElementById(ASSIGNMENT).addEventListener("input", calculateAnswer);
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document.getElementById(ALGORITHM_CHECKBOX).addEventListener("click", calculateAnswer);
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}
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/**
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@@ -18,8 +22,8 @@ window.onload = function () {
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function calculateAnswer(event) {
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console.info("Calculating answer for input...");
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let assignment = document.getElementById(ASSIGNMENT).value;
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let getHighestScenicScore = document.getElementById(ALGORITHM_CHECKBOX).checked;
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let answer = algorithm(assignment, getHighestScenicScore);
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let allAtOnce = document.getElementById(ALGORITHM_CHECKBOX).checked;
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let answer = algorithm(assignment, allAtOnce);
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document.getElementById(ANSWER).innerText = answer;
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}
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@@ -27,108 +31,137 @@ function calculateAnswer(event) {
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/**
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* Calculate the answer to assignment.
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* @param assignment the input from the assignment.
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* @param allAtOnce should all containers be moved at once.
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* @return string the answer
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*/
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function algorithm(assignment, getHighestScenicScore) {
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let lines = assignment.trim().split(NEWLINE_CHARACTER);
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console.info("Linecount:" + lines.length);
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function algorithm(assignment, allAtOnce) {
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let lines = assignment.split(NEWLINE_CHARACTER);
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let containerPlan = Array.from({length:(lines[0].length+1)/4}, () => [])
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console.info("Linecount:" + lines.length);
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let visibleTreeCount = 0;
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let highestScenicScore = 0;
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let parsec = true;
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for(let i=0; i<lines.length; i++) {
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if(parsec) {
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for (let i = 0; i < lines.length; i++) {
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let row = lines[i].trim();
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// Parse containers
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let containerLine = lines[i];
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for (let j = 0; j < row.length; j++) {
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if (i <= 0 || i >= lines.length - 1 || j <= 0 || j >= row.length - 1) { // Edge node
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//console.debug("Edge node found.");
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visibleTreeCount++;
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continue;
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}
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// Skip numbers
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if(containerLine[1] == '1') {
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parsec = false;
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i+=1;
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console.table(containerPlan);
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continue;
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}
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let height = parseInt(lines[i].charAt(j));
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if (!walkRowVisible(height, j, row) && !walkColumnVisible(height, i, j, lines)) {
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console.log("Found invisible tree, height:" + height + ", i:" + i + ", j:" + j);
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visibleTreeCount--;
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}
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let containers = parseContainers(containerLine);
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if(containers == -1) {
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// invalid containerline
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// TODO: error
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console.error("Container parse failure.");
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continue;
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}
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if (getHighestScenicScore) {
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let scenicScore = walkRowCount(height, j, row) * walkColumnCount(height, i, j, lines);
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if (scenicScore > highestScenicScore) {
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console.debug("Found new highest scenic score: " + scenicScore);
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highestScenicScore = scenicScore;
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// Add containers
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//console.debug(containers);
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for(let j=0; j<containers.length; j++) {
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let container = containers[j];
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//console.debug(container);
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if(container != CONTAINER_NULL_CHARACTER) {
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//console.debug(j);
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//console.debug(containerPlan);
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containerPlan[j].push(container);
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}
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}
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//console.table(containerPlan);
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} else {
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// Parse instructions
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let instructionLine = lines[i];
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let instruction = parseInstruction(instructionLine);
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console.debug(instruction);
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if(instruction == -1) {
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// invalid instructionline
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// TODO: error
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console.error("Instruction parse failure.");
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continue;
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}
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// Execute instruction
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let movecount=0;
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if(allAtOnce) {
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while(instruction.move > 0) {
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let container = containerPlan[instruction.from].shift();
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containerPlan[instruction.to].unshift(container);
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instruction.move--;
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movecount++;
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}
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console.debug("moved:" + movecount);
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} else {
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let splicedContainers = containerPlan[instruction.from].splice(0, instruction.move);
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containerPlan[instruction.to].unshift(...splicedContainers);
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}
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//console.table(containerPlan);
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}
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}
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// Tree is on edge.
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visibleTreeCount++;
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}
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}
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if (getHighestScenicScore) {
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return "Highest scenic score: " + highestScenicScore;
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}
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let result="";
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for(let k=0; k<containerPlan.length; k++) {
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result += containerPlan[k][0];
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}
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return "Amount of visible trees in the grid: " + visibleTreeCount;
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return "Top containers on the stack are: " + result;
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}
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function walkColumnCount(height, index, rowIndex, column) {
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return walkCount(height, index, column, false, rowIndex);
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function parseInstruction(instructionLine) {
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let instruction={
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move:0,
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from:0,
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to:0,
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}
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instructionLine.replace(/\s/g, ''); // Remove whitespace
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let fromIndex = instructionLine.indexOf(INSTRUCTION_FROM);
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let moveIndex = instructionLine.indexOf(INSTRUCTION_MOVE);
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let toIndex = instructionLine.indexOf(INSTRUCTION_TO);
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// Validate
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if(fromIndex < 0 || moveIndex < 0 || toIndex < 0) {
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// Error
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return -1;
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}
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// TODO validate check for numbers after indices.
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// Parse
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instruction.move = parseInt(instructionLine.substring(moveIndex + INSTRUCTION_MOVE.length + 1, fromIndex));
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instruction.from = parseInt(instructionLine.substring(fromIndex + INSTRUCTION_FROM.length + 1, toIndex)) -1;
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instruction.to = parseInt(instructionLine.substring(toIndex + INSTRUCTION_TO.length + 1)) -1;
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return instruction;
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}
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function walkRowCount(height, index, row) {
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return walkCount(height, index, row, true, -1);
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}
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function parseContainers(containerLine) {
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let containerLineLength = (containerLine.length+1);
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//console.debug("Parse ContainerLine, length: " + containerLineLength);
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function walkColumnVisible(height, index, rowIndex, column) {
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return walkVisible(height, index, column, false, rowIndex);
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}
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if(!containerLine.includes('[') || !containerLine.includes(']') || containerLineLength % 4 != 0) {
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return -1;
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}
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function walkRowVisible(height, index, row) {
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return walkVisible(height, index, row, true, -1);
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}
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let containers = [];
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for(let i=0; i<containerLineLength; i+=4) {
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let containerLineSubString = containerLine.substring(i, i+4).trim();
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let character = containerLineSubString[1];
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if(containerLineSubString[0] != '[' || containerLineSubString[2] != ']') {
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// Warning invalid container format
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// TODO: warning
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}
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function walkCount(height, index, line, isRow, rowIndex) {
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let visibleLeftCount = __walkHelper(height, index, line, isRow, -1, rowIndex, 0);
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let visibleRightCount = __walkHelper(height, index, line, isRow, 1, rowIndex, 0);
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containers.push((!character)? CONTAINER_NULL_CHARACTER: character);
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}
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//console.debug(containers);
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return visibleLeftCount * visibleRightCount;
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}
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function walkVisible(height, index, line, isRow, rowIndex) {
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let visibleLeft = __walkHelper(height, index, line, isRow, -1, rowIndex);
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let visibleRight = __walkHelper(height, index, line, isRow, 1, rowIndex);
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return visibleLeft || visibleRight;
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}
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function __walkHelper(height, index, line, isRow, direction, rowIndex, count) {
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if (direction == 0) {
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console.error("Invalid direction 0 in __walkhelper");
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return -1;
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}
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direction = direction / Math.abs(direction);
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// Edge reached
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if ((direction < 0 && index <= 0) || (direction > 0 && index >= line.length - 1)) {
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return (count == undefined) ? true : count;
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}
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let nextIndex = index + direction;
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let nextHeightCharacter = (isRow) ? line.charAt(nextIndex) : line[nextIndex].trim().charAt(rowIndex);
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let nextHeight = parseInt(nextHeightCharacter);
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if (isNaN(height) || isNaN(nextHeightCharacter)) {
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console.error("Invalid height found, height:" + height + ", nextHeight: " + nextHeightCharacter);
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return -1;
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}
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if (height <= nextHeight) {
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if (count == undefined)
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return false;
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return count + 1;
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}
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return __walkHelper(height, nextIndex, line, isRow, direction, rowIndex, (count !=undefined)? count + 1 : undefined);
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return containers;
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}
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