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	* First commit * Update mkdocs.yml * Translate all the docs to traditional Chinese * Translate the code files. * Translate the docker file * Fix mkdocs.yml * Translate all the figures from SC to TC * 二叉搜尋樹 -> 二元搜尋樹 * Update terminology. * Update terminology * 构造函数/构造方法 -> 建構子 异或 -> 互斥或 * 擴充套件 -> 擴展 * constant - 常量 - 常數 * 類 -> 類別 * AVL -> AVL 樹 * 數組 -> 陣列 * 係統 -> 系統 斐波那契數列 -> 費波那契數列 運算元量 -> 運算量 引數 -> 參數 * 聯絡 -> 關聯 * 麵試 -> 面試 * 面向物件 -> 物件導向 歸併排序 -> 合併排序 范式 -> 範式 * Fix 算法 -> 演算法 * 錶示 -> 表示 反碼 -> 一補數 補碼 -> 二補數 列列尾部 -> 佇列尾部 區域性性 -> 區域性 一摞 -> 一疊 * Synchronize with main branch * 賬號 -> 帳號 推匯 -> 推導 * Sync with main branch * First commit * Update mkdocs.yml * Translate all the docs to traditional Chinese * Translate the code files. * Translate the docker file * Fix mkdocs.yml * Translate all the figures from SC to TC * 二叉搜尋樹 -> 二元搜尋樹 * Update terminology * 构造函数/构造方法 -> 建構子 异或 -> 互斥或 * 擴充套件 -> 擴展 * constant - 常量 - 常數 * 類 -> 類別 * AVL -> AVL 樹 * 數組 -> 陣列 * 係統 -> 系統 斐波那契數列 -> 費波那契數列 運算元量 -> 運算量 引數 -> 參數 * 聯絡 -> 關聯 * 麵試 -> 面試 * 面向物件 -> 物件導向 歸併排序 -> 合併排序 范式 -> 範式 * Fix 算法 -> 演算法 * 錶示 -> 表示 反碼 -> 一補數 補碼 -> 二補數 列列尾部 -> 佇列尾部 區域性性 -> 區域性 一摞 -> 一疊 * Synchronize with main branch * 賬號 -> 帳號 推匯 -> 推導 * Sync with main branch * Update terminology.md * 操作数量(num. of operations)-> 操作數量 * 字首和->前綴和 * Update figures * 歸 -> 迴 記憶體洩漏 -> 記憶體流失 * Fix the bug of the file filter * 支援 -> 支持 Add zh-Hant/README.md * Add the zh-Hant chapter covers. Bug fixes. * 外掛 -> 擴充功能 * Add the landing page for zh-Hant version * Unify the font of the chapter covers for the zh, en, and zh-Hant version * Move zh-Hant/ to zh-hant/ * Translate terminology.md to traditional Chinese
		
			
				
	
	
		
			173 lines
		
	
	
		
			4.2 KiB
		
	
	
	
		
			Swift
		
	
	
	
	
	
			
		
		
	
	
			173 lines
		
	
	
		
			4.2 KiB
		
	
	
	
		
			Swift
		
	
	
	
	
	
/**
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 * File: time_complexity.swift
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 * Created Time: 2022-12-26
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 * Author: nuomi1 (nuomi1@qq.com)
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 */
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/* 常數階 */
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func constant(n: Int) -> Int {
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    var count = 0
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    let size = 100_000
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    for _ in 0 ..< size {
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        count += 1
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    }
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    return count
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}
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/* 線性階 */
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func linear(n: Int) -> Int {
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    var count = 0
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    for _ in 0 ..< n {
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        count += 1
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    }
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    return count
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}
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/* 線性階(走訪陣列) */
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func arrayTraversal(nums: [Int]) -> Int {
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    var count = 0
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    // 迴圈次數與陣列長度成正比
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    for _ in nums {
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        count += 1
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    }
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    return count
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}
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/* 平方階 */
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func quadratic(n: Int) -> Int {
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    var count = 0
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    // 迴圈次數與資料大小 n 成平方關係
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    for _ in 0 ..< n {
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        for _ in 0 ..< n {
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            count += 1
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        }
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    }
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    return count
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}
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/* 平方階(泡沫排序) */
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func bubbleSort(nums: inout [Int]) -> Int {
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    var count = 0 // 計數器
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    // 外迴圈:未排序區間為 [0, i]
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    for i in nums.indices.dropFirst().reversed() {
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        // 內迴圈:將未排序區間 [0, i] 中的最大元素交換至該區間的最右端
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        for j in 0 ..< i {
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            if nums[j] > nums[j + 1] {
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                // 交換 nums[j] 與 nums[j + 1]
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                let tmp = nums[j]
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                nums[j] = nums[j + 1]
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                nums[j + 1] = tmp
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                count += 3 // 元素交換包含 3 個單元操作
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            }
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        }
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    }
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    return count
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}
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/* 指數階(迴圈實現) */
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func exponential(n: Int) -> Int {
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    var count = 0
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    var base = 1
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    // 細胞每輪一分為二,形成數列 1, 2, 4, 8, ..., 2^(n-1)
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    for _ in 0 ..< n {
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        for _ in 0 ..< base {
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            count += 1
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        }
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        base *= 2
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    }
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    // count = 1 + 2 + 4 + 8 + .. + 2^(n-1) = 2^n - 1
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    return count
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}
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/* 指數階(遞迴實現) */
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func expRecur(n: Int) -> Int {
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    if n == 1 {
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        return 1
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    }
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    return expRecur(n: n - 1) + expRecur(n: n - 1) + 1
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}
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/* 對數階(迴圈實現) */
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func logarithmic(n: Int) -> Int {
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    var count = 0
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    var n = n
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    while n > 1 {
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        n = n / 2
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        count += 1
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    }
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    return count
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}
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/* 對數階(遞迴實現) */
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func logRecur(n: Int) -> Int {
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    if n <= 1 {
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        return 0
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    }
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    return logRecur(n: n / 2) + 1
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}
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/* 線性對數階 */
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func linearLogRecur(n: Int) -> Int {
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    if n <= 1 {
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        return 1
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    }
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    var count = linearLogRecur(n: n / 2) + linearLogRecur(n: n / 2)
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    for _ in stride(from: 0, to: n, by: 1) {
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        count += 1
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    }
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    return count
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}
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/* 階乘階(遞迴實現) */
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func factorialRecur(n: Int) -> Int {
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    if n == 0 {
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        return 1
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    }
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    var count = 0
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    // 從 1 個分裂出 n 個
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    for _ in 0 ..< n {
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        count += factorialRecur(n: n - 1)
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    }
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    return count
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}
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@main
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enum TimeComplexity {
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    /* Driver Code */
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    static func main() {
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        // 可以修改 n 執行,體會一下各種複雜度的操作數量變化趨勢
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        let n = 8
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        print("輸入資料大小 n = \(n)")
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        var count = constant(n: n)
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        print("常數階的操作數量 = \(count)")
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        count = linear(n: n)
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        print("線性階的操作數量 = \(count)")
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        count = arrayTraversal(nums: Array(repeating: 0, count: n))
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        print("線性階(走訪陣列)的操作數量 = \(count)")
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        count = quadratic(n: n)
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        print("平方階的操作數量 = \(count)")
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        var nums = Array(stride(from: n, to: 0, by: -1)) // [n,n-1,...,2,1]
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        count = bubbleSort(nums: &nums)
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        print("平方階(泡沫排序)的操作數量 = \(count)")
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        count = exponential(n: n)
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        print("指數階(迴圈實現)的操作數量 = \(count)")
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        count = expRecur(n: n)
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        print("指數階(遞迴實現)的操作數量 = \(count)")
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        count = logarithmic(n: n)
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        print("對數階(迴圈實現)的操作數量 = \(count)")
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        count = logRecur(n: n)
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        print("對數階(遞迴實現)的操作數量 = \(count)")
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        count = linearLogRecur(n: n)
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        print("線性對數階(遞迴實現)的操作數量 = \(count)")
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        count = factorialRecur(n: n)
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        print("階乘階(遞迴實現)的操作數量 = \(count)")
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    }
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}
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