{ "data": { "question": { "questionId": "1575", "questionFrontendId": "1465", "categoryTitle": "Algorithms", "boundTopicId": 266092, "title": "Maximum Area of a Piece of Cake After Horizontal and Vertical Cuts", "titleSlug": "maximum-area-of-a-piece-of-cake-after-horizontal-and-vertical-cuts", "content": "

You are given a rectangular cake of size h x w and two arrays of integers horizontalCuts and verticalCuts where:

\n\n\n\n

Return the maximum area of a piece of cake after you cut at each horizontal and vertical position provided in the arrays horizontalCuts and verticalCuts. Since the answer can be a large number, return this modulo 109 + 7.

\n\n

 

\n

Example 1:

\n\"\"\n
\nInput: h = 5, w = 4, horizontalCuts = [1,2,4], verticalCuts = [1,3]\nOutput: 4 \nExplanation: The figure above represents the given rectangular cake. Red lines are the horizontal and vertical cuts. After you cut the cake, the green piece of cake has the maximum area.\n
\n\n

Example 2:

\n\"\"\n
\nInput: h = 5, w = 4, horizontalCuts = [3,1], verticalCuts = [1]\nOutput: 6\nExplanation: The figure above represents the given rectangular cake. Red lines are the horizontal and vertical cuts. After you cut the cake, the green and yellow pieces of cake have the maximum area.\n
\n\n

Example 3:

\n\n
\nInput: h = 5, w = 4, horizontalCuts = [3], verticalCuts = [3]\nOutput: 9\n
\n\n

 

\n

Constraints:

\n\n\n", "translatedTitle": "切割后面积最大的蛋糕", "translatedContent": "

矩形蛋糕的高度为 h 且宽度为 w,给你两个整数数组 horizontalCutsverticalCuts,其中:

\n\n\n\n

请你按数组 horizontalCuts verticalCuts 中提供的水平和竖直位置切割后,请你找出 面积最大 的那份蛋糕,并返回其 面积 。由于答案可能是一个很大的数字,因此需要将结果  109 + 7 取余 后返回。

\n\n

 

\n\n

示例 1:

\n\n

\"\"

\n\n
\n输入:h = 5, w = 4, horizontalCuts = [1,2,4], verticalCuts = [1,3]\n输出:4 \n解释:上图所示的矩阵蛋糕中,红色线表示水平和竖直方向上的切口。切割蛋糕后,绿色的那份蛋糕面积最大。\n
\n\n

示例 2:

\n\n

\"\"

\n\n
\n输入:h = 5, w = 4, horizontalCuts = [3,1], verticalCuts = [1]\n输出:6\n解释:上图所示的矩阵蛋糕中,红色线表示水平和竖直方向上的切口。切割蛋糕后,绿色和黄色的两份蛋糕面积最大。
\n\n

示例 3:

\n\n
\n输入:h = 5, w = 4, horizontalCuts = [3], verticalCuts = [3]\n输出:9\n
\n\n

 

\n\n

提示:

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"排序", "__typename": "TopicTagNode" } ], "companyTagStats": null, "codeSnippets": [ { "lang": "C++", "langSlug": "cpp", "code": "class Solution {\npublic:\n int maxArea(int h, int w, vector& horizontalCuts, vector& verticalCuts) {\n \n }\n};", "__typename": "CodeSnippetNode" }, { "lang": "Java", "langSlug": "java", "code": "class Solution {\n public int maxArea(int h, int w, int[] horizontalCuts, int[] verticalCuts) {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Python3", "langSlug": "python3", "code": "class Solution:\n def maxArea(self, h: int, w: int, horizontalCuts: List[int], verticalCuts: List[int]) -> int:\n ", "__typename": "CodeSnippetNode" }, { "lang": "Python", "langSlug": "python", "code": "class Solution(object):\n def maxArea(self, h, w, horizontalCuts, verticalCuts):\n \"\"\"\n :type h: int\n :type w: int\n :type horizontalCuts: List[int]\n :type verticalCuts: List[int]\n :rtype: int\n \"\"\"\n ", "__typename": "CodeSnippetNode" }, { "lang": "JavaScript", 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int {\n \n}", "__typename": "CodeSnippetNode" }, { "lang": "Kotlin", "langSlug": "kotlin", "code": "class Solution {\n fun maxArea(h: Int, w: Int, horizontalCuts: IntArray, verticalCuts: IntArray): Int {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Swift", "langSlug": "swift", "code": "class Solution {\n func maxArea(_ h: Int, _ w: Int, _ horizontalCuts: [Int], _ verticalCuts: [Int]) -> Int {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Rust", "langSlug": "rust", "code": "impl Solution {\n pub fn max_area(h: i32, w: i32, horizontal_cuts: Vec, vertical_cuts: Vec) -> i32 {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Ruby", "langSlug": "ruby", "code": "# @param {Integer} h\n# @param {Integer} w\n# @param {Integer[]} horizontal_cuts\n# @param {Integer[]} vertical_cuts\n# @return {Integer}\ndef max_area(h, w, horizontal_cuts, vertical_cuts)\n \nend", "__typename": "CodeSnippetNode" }, { "lang": "PHP", "langSlug": "php", "code": "class Solution {\n\n /**\n * @param Integer $h\n * @param Integer $w\n * @param Integer[] $horizontalCuts\n * @param Integer[] $verticalCuts\n * @return Integer\n */\n function maxArea($h, $w, $horizontalCuts, $verticalCuts) {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Dart", "langSlug": "dart", "code": "class Solution {\n int maxArea(int h, int w, List horizontalCuts, List verticalCuts) {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Scala", "langSlug": "scala", "code": "object Solution {\n def maxArea(h: Int, w: Int, horizontalCuts: Array[Int], verticalCuts: Array[Int]): Int = {\n \n }\n}", "__typename": "CodeSnippetNode" }, { "lang": "Elixir", "langSlug": "elixir", "code": "defmodule Solution do\n @spec max_area(h :: integer, w :: integer, horizontal_cuts :: [integer], vertical_cuts :: [integer]) :: integer\n def max_area(h, w, horizontal_cuts, vertical_cuts) do\n \n end\nend", "__typename": "CodeSnippetNode" }, { "lang": "Erlang", "langSlug": "erlang", "code": "-spec max_area(H :: integer(), W :: integer(), HorizontalCuts :: [integer()], VerticalCuts :: [integer()]) -> integer().\nmax_area(H, W, HorizontalCuts, VerticalCuts) ->\n .", "__typename": "CodeSnippetNode" }, { "lang": "Racket", "langSlug": "racket", "code": "(define/contract (max-area h w horizontalCuts verticalCuts)\n (-> exact-integer? exact-integer? (listof exact-integer?) (listof exact-integer?) exact-integer?)\n )", "__typename": "CodeSnippetNode" }, { "lang": "Cangjie", "langSlug": "cangjie", "code": "class Solution {\n func maxArea(h: Int64, w: Int64, horizontalCuts: Array, verticalCuts: Array): Int64 {\n\n }\n}", "__typename": "CodeSnippetNode" } ], "stats": "{\"totalAccepted\": \"31.4K\", \"totalSubmission\": \"73.2K\", \"totalAcceptedRaw\": 31442, \"totalSubmissionRaw\": 73210, \"acRate\": \"42.9%\"}", "hints": [ "Sort the arrays, then compute the maximum difference between two consecutive elements for horizontal cuts and vertical cuts.", "The answer is the product of these maximum values in horizontal cuts and vertical cuts." ], "solution": null, "status": null, "sampleTestCase": "5\n4\n[1,2,4]\n[1,3]", "metaData": "{\n \"name\": \"maxArea\",\n \"params\": [\n {\n \"name\": \"h\",\n \"type\": \"integer\"\n },\n {\n \"type\": \"integer\",\n \"name\": \"w\"\n },\n {\n \"type\": \"integer[]\",\n \"name\": \"horizontalCuts\"\n },\n {\n \"type\": \"integer[]\",\n \"name\": \"verticalCuts\"\n }\n ],\n \"return\": {\n \"type\": \"integer\"\n }\n}", "judgerAvailable": true, "judgeType": "large", "mysqlSchemas": [], "enableRunCode": true, "envInfo": "{\"cpp\":[\"C++\",\"

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