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3f4220de81
* preorder, inorder, postorder -> pre-order, in-order, post-order * Bug fixes * Bug fixes * Update what_is_dsa.md * Sync zh and zh-hant versions * Sync zh and zh-hant versions. * Update performance_evaluation.md and time_complexity.md * Add @khoaxuantu to the landing page. * Sync zh and zh-hant versions * Add @ khoaxuantu to the landing page of zh-hant and en versions.
121 lines
3.4 KiB
JavaScript
121 lines
3.4 KiB
JavaScript
/**
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* File: min_path_sum.js
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* Created Time: 2023-08-23
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* Author: Gaofer Chou (gaofer-chou@qq.com)
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*/
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/* 最小路徑和:暴力搜尋 */
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function minPathSumDFS(grid, i, j) {
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// 若為左上角單元格,則終止搜尋
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if (i === 0 && j === 0) {
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return grid[0][0];
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}
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// 若行列索引越界,則返回 +∞ 代價
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if (i < 0 || j < 0) {
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return Infinity;
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}
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// 計算從左上角到 (i-1, j) 和 (i, j-1) 的最小路徑代價
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const up = minPathSumDFS(grid, i - 1, j);
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const left = minPathSumDFS(grid, i, j - 1);
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// 返回從左上角到 (i, j) 的最小路徑代價
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return Math.min(left, up) + grid[i][j];
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}
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/* 最小路徑和:記憶化搜尋 */
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function minPathSumDFSMem(grid, mem, i, j) {
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// 若為左上角單元格,則終止搜尋
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if (i === 0 && j === 0) {
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return grid[0][0];
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}
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// 若行列索引越界,則返回 +∞ 代價
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if (i < 0 || j < 0) {
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return Infinity;
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}
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// 若已有記錄,則直接返回
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if (mem[i][j] !== -1) {
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return mem[i][j];
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}
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// 左邊和上邊單元格的最小路徑代價
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const up = minPathSumDFSMem(grid, mem, i - 1, j);
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const left = minPathSumDFSMem(grid, mem, i, j - 1);
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// 記錄並返回左上角到 (i, j) 的最小路徑代價
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mem[i][j] = Math.min(left, up) + grid[i][j];
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return mem[i][j];
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}
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/* 最小路徑和:動態規劃 */
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function minPathSumDP(grid) {
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const n = grid.length,
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m = grid[0].length;
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// 初始化 dp 表
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const dp = Array.from({ length: n }, () =>
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Array.from({ length: m }, () => 0)
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);
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dp[0][0] = grid[0][0];
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// 狀態轉移:首行
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for (let j = 1; j < m; j++) {
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dp[0][j] = dp[0][j - 1] + grid[0][j];
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}
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// 狀態轉移:首列
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for (let i = 1; i < n; i++) {
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dp[i][0] = dp[i - 1][0] + grid[i][0];
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}
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// 狀態轉移:其餘行和列
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for (let i = 1; i < n; i++) {
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for (let j = 1; j < m; j++) {
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dp[i][j] = Math.min(dp[i][j - 1], dp[i - 1][j]) + grid[i][j];
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}
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}
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return dp[n - 1][m - 1];
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}
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/* 最小路徑和:空間最佳化後的動態規劃 */
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function minPathSumDPComp(grid) {
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const n = grid.length,
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m = grid[0].length;
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// 初始化 dp 表
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const dp = new Array(m);
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// 狀態轉移:首行
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dp[0] = grid[0][0];
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for (let j = 1; j < m; j++) {
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dp[j] = dp[j - 1] + grid[0][j];
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}
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// 狀態轉移:其餘行
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for (let i = 1; i < n; i++) {
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// 狀態轉移:首列
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dp[0] = dp[0] + grid[i][0];
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// 狀態轉移:其餘列
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for (let j = 1; j < m; j++) {
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dp[j] = Math.min(dp[j - 1], dp[j]) + grid[i][j];
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}
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}
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return dp[m - 1];
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}
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/* Driver Code */
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const grid = [
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[1, 3, 1, 5],
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[2, 2, 4, 2],
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[5, 3, 2, 1],
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[4, 3, 5, 2],
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];
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const n = grid.length,
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m = grid[0].length;
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// 暴力搜尋
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let res = minPathSumDFS(grid, n - 1, m - 1);
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console.log(`從左上角到右下角的最小路徑和為 ${res}`);
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// 記憶化搜尋
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const mem = Array.from({ length: n }, () =>
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Array.from({ length: m }, () => -1)
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);
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res = minPathSumDFSMem(grid, mem, n - 1, m - 1);
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console.log(`從左上角到右下角的最小路徑和為 ${res}`);
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// 動態規劃
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res = minPathSumDP(grid);
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console.log(`從左上角到右下角的最小路徑和為 ${res}`);
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// 空間最佳化後的動態規劃
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res = minPathSumDPComp(grid);
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console.log(`從左上角到右下角的最小路徑和為 ${res}`);
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