[Swift]LeetCode38. 报数 | Count and Say
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➤微信公众号:山青咏芝(shanqingyongzhi)
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The count-and-say sequence is the sequence of integers with the first five terms as following:
1. 1 2. 11 3. 21 4. 1211 5. 111221
1
is read off as "one 1"
or 11
.11
is read off as "two 1s"
or 21
.21
is read off as "one 2
, then one 1"
or 1211
.
Given an integer n where 1 ≤ n ≤ 30, generate the nth term of the count-and-say sequence.
Note: Each term of the sequence of integers will be represented as a string.
Example 1:
Input: 1 Output: "1"
Example 2:
Input: 4 Output: "1211"
报数序列是指一个整照其中的整数的顺序进数序列,按行报数,得到下一个数。其前五项如下:
1. 1 2. 11 3. 21 4. 1211 5. 111221
1
被读作 "one 1"
("一个一"
) , 即 11
。11
被读作 "two 1s"
("两个一"
), 即 21
。21
被读作 "one 2"
, "one 1"
("一个二"
, "一个一"
) , 即 1211
。
给定一个正整数 n(1 ≤ n ≤ 30),输出报数序列的第 n 项。
注意:整数顺序将表示为一个字符串。
示例 1:
输入: 1 输出: "1"
示例 2:
输入: 4 输出: "1211"
12ms
1 class Solution { 2 func countAndSay(_ n: Int) -> String { 3 let ans=["","1","11","21","1211","111221","312211","13112221","1113213211","31131211131221","13211311123113112211","11131221133112132113212221","3113112221232112111312211312113211","1321132132111213122112311311222113111221131221","11131221131211131231121113112221121321132132211331222113112211","311311222113111231131112132112311321322112111312211312111322212311322113212221","132113213221133112132113311211131221121321131211132221123113112221131112311332111213211322211312113211","11131221131211132221232112111312212321123113112221121113122113111231133221121321132132211331121321231231121113122113322113111221131221","31131122211311123113321112131221123113112211121312211213211321322112311311222113311213212322211211131221131211132221232112111312111213111213211231131122212322211331222113112211","1321132132211331121321231231121113112221121321132122311211131122211211131221131211132221121321132132212321121113121112133221123113112221131112311332111213122112311311123112111331121113122112132113213211121332212311322113212221","11131221131211132221232112111312111213111213211231132132211211131221131211221321123113213221123113112221131112311332211211131221131211132211121312211231131112311211232221121321132132211331121321231231121113112221121321133112132112312321123113112221121113122113121113123112112322111213211322211312113211","311311222113111231133211121312211231131112311211133112111312211213211312111322211231131122211311122122111312211213211312111322211213211321322113311213212322211231131122211311123113223112111311222112132113311213211221121332211211131221131211132221232112111312111213111213211231132132211211131221232112111312211213111213122112132113213221123113112221131112311311121321122112132231121113122113322113111221131221","132113213221133112132123123112111311222112132113311213211231232112311311222112111312211311123113322112132113213221133122112231131122211211131221131112311332211211131221131211132221232112111312111213322112132113213221133112132113221321123113213221121113122123211211131221222112112322211231131122211311123113321112131221123113111231121113311211131221121321131211132221123113112211121312211231131122211211133112111311222112111312211312111322211213211321322113311213211331121113122122211211132213211231131122212322211331222113112211","111312211312111322212321121113121112131112132112311321322112111312212321121113122112131112131221121321132132211231131122211331121321232221121113122113121113222123112221221321132132211231131122211331121321232221123113112221131112311332111213122112311311123112112322211211131221131211132221232112111312211322111312211213211312111322211231131122111213122112311311221132211221121332211213211321322113311213212312311211131122211213211331121321123123211231131122211211131221131112311332211213211321223112111311222112132113213221123123211231132132211231131122211311123113322112111312211312111322212321121113122123211231131122113221123113221113122112132113213211121332212311322113212221","3113112221131112311332111213122112311311123112111331121113122112132113121113222112311311221112131221123113112221121113311211131122211211131221131211132221121321132132212321121113121112133221123113112221131112311332111213213211221113122113121113222112132113213221232112111312111213322112132113213221133112132123123112111311222112132113311213211221121332211231131122211311123113321112131221123113112221132231131122211211131221131112311332211213211321223112111311222112132113212221132221222112112322211211131221131211132221232112111312111213111213211231132132211211131221232112111312211213111213122112132113213221123113112221133112132123222112111312211312112213211231132132211211131221131211132221121311121312211213211312111322211213211321322113311213212322211231131122211311123113321112131221123113112211121312211213211321222113222112132113223113112221121113122113121113123112112322111213211322211312113211","13211321322113311213212312311211131122211213211331121321123123211231131122211211131221131112311332211213211321223112111311222112132113213221123123211231132132211231131122211311123113322112111312211312111322111213122112311311123112112322211213211321322113311213212312311211131211131221223113112221131112311332211211131221131211132211121312211231131112311211232221121113122113121113222123211211131211121311121321123113213221121113122123211211131221222112112322211213211321322113311213212312311211131122211213211321322113221321132132211231131122211331121321232221121113122113121122132112311321322112111312211312113221133211322112211213322112311311222113111231133211121312211231131112311211133112111312211213211312111322211231131122111213122112311311222112111331121113112221121113122113121113222112132113213221232112111312111213322112311311222113111221221113122112132113121113222112311311222113111231133221121113311211131122211211131221131112311332211211131221131211132221232112111312111213322112132113213221133112132123123112111311222112132113212231121113112221121113122113121132211332211211131221132213211321322112311311222113111231131112132112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4 return ans[n] 5 } 6 }
16ms
1 class Solution { 2 func countAndSay(_ n: Int) -> String { 3 var num = "1" 4 if n == 1 { 5 return "1" 6 } 7 for _ in 1..<n { 8 var newStr = String() 9 let arrayOfStr = Array(num) 10 var count = 1 11 for i in 0..<arrayOfStr.count { 12 if i == arrayOfStr.count - 1 { 13 newStr += "\(count)\(arrayOfStr[i])" 14 } else { 15 if arrayOfStr[i] == arrayOfStr[i + 1] { 16 count += 1 17 } else { 18 newStr += "\(count)\(arrayOfStr[i])" 19 count = 1 20 } 21 } 22 } 23 num = newStr 24 } 25 return num 26 } 27 }
16ms
1 class Solution { 2 func countAndSay(_ n: Int) -> String { 3 if (n == 1 || n > 30){ 4 return "1" 5 } 6 var resultString:String = "" 7 let ReadStr = countAndSay(n-1) 8 var characterArray = [Character](ReadStr) 9 var repeatTime = 1 10 for i in 0..<characterArray.count { 11 if i == 0 { 12 if characterArray.count == 1 { 13 resultString.append(String(repeatTime) + String(characterArray[i])) 14 repeatTime = 1 15 } 16 continue 17 } 18 if characterArray[i] == characterArray[i - 1] { 19 repeatTime = repeatTime + 1 20 } else { 21 resultString.append(String(repeatTime) + String(characterArray[i - 1])) 22 repeatTime = 1 23 } 24 25 if i == characterArray.count - 1 { 26 resultString.append(String(repeatTime) + String(characterArray[i])) 27 } 28 } 29 return resultString 30 } 31 }
20ms
1 class Solution { 2 func countAndSay(_ n: Int) -> String { 3 guard n > 0 else{ 4 return "" 5 } 6 7 var result = "1" 8 for _ in 1..<n{ 9 let resultCharArray = [Character](result) 10 var count = 1 11 var current = "" 12 for i in 1..<resultCharArray.count{ 13 if resultCharArray[i] == resultCharArray[i - 1]{ 14 count += 1 15 }else{ 16 current.append("\(count)") 17 current.append(resultCharArray[i - 1]) 18 count = 1 19 } 20 } 21 current.append(count == 0 ? "" : "\(count)") 22 current.append(resultCharArray.last!) 23 result = current 24 } 25 return result 26 } 27 }
24ms
1 class Solution { 2 func countAndSay(input: String) -> String { 3 var lastChar: Character? 4 var count = 0 5 var result: String = "" 6 7 input.forEach { (char) in 8 if let myLastChar = lastChar { 9 if char != myLastChar { 10 result = result + String(count) + String(myLastChar) 11 lastChar = char 12 count = 1 13 } else { 14 count += 1 15 } 16 } else { 17 lastChar = char 18 count = 1 19 } 20 } 21 22 if let lastChar = lastChar { 23 result = result + String(count) + String(lastChar) 24 } 25 26 return result 27 } 28 29 func countAndSay(_ n: Int) -> String { 30 var result = "1" 31 (1..<n).forEach { (_) in 32 result = countAndSay(input: result) 33 } 34 35 return result 36 } 37 }
24ms
1 class Solution { 2 func countAndSay(_ n: Int) -> String { 3 var resultArray:[Int] = [1] 4 var tempArray:[Int] = [] 5 var result = "" 6 for i in 0..<(n - 1) { 7 var count = 0 //重复数字的计数 8 var number = -1 9 var index = 0 10 let length = resultArray.count 11 while index < length { 12 number = resultArray[index] 13 for j in index..<length { 14 if resultArray[j] == number { 15 count += 1 16 continue 17 } 18 break 19 } 20 tempArray.append(count) 21 tempArray.append(number) 22 index = index + count 23 count = 0 24 } 25 resultArray = tempArray 26 tempArray.removeAll() 27 } 28 for i in resultArray { 29 result = result + "\(i)" 30 } 31 return result 32 } 33 }
40ms
1 /* 2 理解题意: 3 n=1时输出字符串1; 4 n=2时,数上次字符串中的数值个数,因为上次字符串有1个1,所以输出11; 5 n=3时,由于上次字符是11,有2个1,所以输出21; 6 n=4时,由于上次字符串是21,有1个2和1个1,所以输出1211。 7 依次类推 8 */ 9 10 import Foundation 11 12 class Solution { 13 func say(_ say: String) -> String { 14 15 var chars = Array(say) 16 var count = 1 17 var tmpSay = "" 18 19 for i in 0..<chars.count { 20 if i < chars.count - 1 && chars[i] == chars[i+1]{ 21 count = count + 1 22 }else{ 23 tmpSay.append("\(count)") 24 tmpSay.append("\(chars[i])") 25 count = 1 26 } 27 } 28 return tmpSay 29 } 30 func countAndSay(_ n: Int) -> String { 31 if n == 1 { 32 return "1" 33 } 34 var sayStr = countAndSay(1) 35 36 for _ in 1..<n { 37 sayStr = say(sayStr) 38 } 39 40 return sayStr 41 } 42 }