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	* update zig array list chapter * update not need change codes. * fix some pr issues and update time space chapter
		
			
				
	
	
		
			143 lines
		
	
	
		
			3.6 KiB
		
	
	
	
		
			Zig
		
	
	
	
	
	
			
		
		
	
	
			143 lines
		
	
	
		
			3.6 KiB
		
	
	
	
		
			Zig
		
	
	
	
	
	
// File: space_complexity.zig
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// Created Time: 2023-01-07
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// Author: codingonion (coderonion@gmail.com), CreatorMetaSky (creator_meta_sky@163.com)
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const std = @import("std");
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const utils = @import("utils");
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const ListNode = utils.ListNode;
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const TreeNode = utils.TreeNode;
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// 函数
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fn function() i32 {
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    // 执行某些操作
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    return 0;
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}
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// 常数阶
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fn constant(n: i32) void {
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    // 常量、变量、对象占用 O(1) 空间
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    const a: i32 = 0;
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    const b: i32 = 0;
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    const nums = [_]i32{0} ** 10000;
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    const node = ListNode(i32){ .val = 0 };
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    var i: i32 = 0;
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    // 循环中的变量占用 O(1) 空间
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    while (i < n) : (i += 1) {
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        const c: i32 = 0;
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        _ = c;
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    }
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    // 循环中的函数占用 O(1) 空间
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    i = 0;
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    while (i < n) : (i += 1) {
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        _ = function();
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    }
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    _ = a;
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    _ = b;
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    _ = nums;
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    _ = node;
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}
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// 线性阶
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fn linear(comptime n: i32) !void {
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    // 长度为 n 的数组占用 O(n) 空间
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    const nums = [_]i32{0} ** n;
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    // 长度为 n 的列表占用 O(n) 空间
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    var nodes = std.ArrayList(i32).init(std.heap.page_allocator);
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    defer nodes.deinit();
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    var i: i32 = 0;
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    while (i < n) : (i += 1) {
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        try nodes.append(i);
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    }
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    // 长度为 n 的哈希表占用 O(n) 空间
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    var map = std.AutoArrayHashMap(i32, []const u8).init(std.heap.page_allocator);
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    defer map.deinit();
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    var j: i32 = 0;
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    while (j < n) : (j += 1) {
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        const string = try std.fmt.allocPrint(std.heap.page_allocator, "{d}", .{j});
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        defer std.heap.page_allocator.free(string);
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        try map.put(i, string);
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    }
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    _ = nums;
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}
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// 线性阶(递归实现)
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fn linearRecur(comptime n: i32) void {
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    std.debug.print("递归 n = {}\n", .{n});
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    if (n == 1) return;
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    linearRecur(n - 1);
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}
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// 平方阶
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fn quadratic(n: i32) !void {
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    // 二维列表占用 O(n^2) 空间
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    var nodes = std.ArrayList(std.ArrayList(i32)).init(std.heap.page_allocator);
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    defer nodes.deinit();
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    var i: i32 = 0;
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    while (i < n) : (i += 1) {
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        var tmp = std.ArrayList(i32).init(std.heap.page_allocator);
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        defer tmp.deinit();
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        var j: i32 = 0;
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        while (j < n) : (j += 1) {
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            try tmp.append(0);
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        }
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        try nodes.append(tmp);
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    }
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}
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// 平方阶(递归实现)
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fn quadraticRecur(comptime n: i32) i32 {
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    if (n <= 0) return 0;
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    const nums = [_]i32{0} ** n;
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    std.debug.print("递归 n = {} 中的 nums 长度 = {}\n", .{ n, nums.len });
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    return quadraticRecur(n - 1);
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}
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// 指数阶(建立满二叉树)
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fn buildTree(allocator: std.mem.Allocator, n: i32) !?*TreeNode(i32) {
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    if (n == 0) return null;
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    const root = try allocator.create(TreeNode(i32));
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    root.init(0);
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    root.left = try buildTree(allocator, n - 1);
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    root.right = try buildTree(allocator, n - 1);
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    return root;
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}
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// 释放树的内存
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fn freeTree(allocator: std.mem.Allocator, root: ?*const TreeNode(i32)) void {
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    if (root == null) return;
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    freeTree(allocator, root.?.left);
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    freeTree(allocator, root.?.right);
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    allocator.destroy(root.?);
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}
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// Driver Code
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pub fn run() !void {
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    var gpa = std.heap.DebugAllocator(.{}){};
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    defer _ = gpa.deinit();
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    const allocator = gpa.allocator();
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    const n: i32 = 5;
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    // 常数阶
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    constant(n);
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    // 线性阶
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    try linear(n);
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    linearRecur(n);
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    // 平方阶
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    try quadratic(n);
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    _ = quadraticRecur(n);
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    // 指数阶
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    const root = try buildTree(allocator, n);
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    defer freeTree(allocator, root);
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    std.debug.print("{}\n", .{utils.fmt.tree(i32, root)});
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    std.debug.print("\n", .{});
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}
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pub fn main() !void {
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    try run();
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}
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test "space_complexity" {
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    try run();
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}
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