{ "data": { "question": { "questionId": "1238", "questionFrontendId": "1138", "categoryTitle": "Algorithms", "boundTopicId": 16761, "title": "Alphabet Board Path", "titleSlug": "alphabet-board-path", "content": "

On an alphabet board, we start at position (0, 0), corresponding to character board[0][0].

\r\n\r\n

Here, board = ["abcde", "fghij", "klmno", "pqrst", "uvwxy", "z"], as shown in the diagram below.

\r\n\r\n

\"\"

\r\n\r\n

We may make the following moves:

\r\n\r\n\r\n\r\n

(Here, the only positions that exist on the board are positions with letters on them.)

\r\n\r\n

Return a sequence of moves that makes our answer equal to target in the minimum number of moves.  You may return any path that does so.

\r\n\r\n

 

\r\n

Example 1:

\r\n
Input: target = \"leet\"\r\nOutput: \"DDR!UURRR!!DDD!\"\r\n

Example 2:

\r\n
Input: target = \"code\"\r\nOutput: \"RR!DDRR!UUL!R!\"\r\n
\r\n

 

\r\n

Constraints:

\r\n\r\n", "translatedTitle": "字母板上的路径", "translatedContent": "

我们从一块字母板上的位置 (0, 0) 出发,该坐标对应的字符为 board[0][0]

\n\n

在本题里,字母板为board = [\"abcde\", \"fghij\", \"klmno\", \"pqrst\", \"uvwxy\", \"z\"],如下所示。

\n\n

\"\"

\n\n

我们可以按下面的指令规则行动:

\n\n\n\n

(注意,字母板上只存在有字母的位置。)

\n\n

返回指令序列,用最小的行动次数让答案和目标 target 相同。你可以返回任何达成目标的路径。

\n\n

 

\n\n

示例 1:

\n\n
\n输入:target = \"leet\"\n输出:\"DDR!UURRR!!DDD!\"\n
\n\n

示例 2:

\n\n
\n输入:target = \"code\"\n输出:\"RR!DDRR!UUL!R!\"\n
\n\n

 

\n\n

提示:

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string?)\n )", "__typename": "CodeSnippetNode" }, { "lang": "Erlang", "langSlug": "erlang", "code": "-spec alphabet_board_path(Target :: unicode:unicode_binary()) -> unicode:unicode_binary().\nalphabet_board_path(Target) ->\n .", "__typename": "CodeSnippetNode" }, { "lang": "Elixir", "langSlug": "elixir", "code": "defmodule Solution do\n @spec alphabet_board_path(target :: String.t) :: String.t\n def alphabet_board_path(target) do\n \n end\nend", "__typename": "CodeSnippetNode" }, { "lang": "Cangjie", "langSlug": "cangjie", "code": "class Solution {\n func alphabetBoardPath(target: String): String {\n\n }\n}", "__typename": "CodeSnippetNode" } ], "stats": "{\"totalAccepted\": \"27.4K\", \"totalSubmission\": \"53K\", \"totalAcceptedRaw\": 27400, \"totalSubmissionRaw\": 52993, \"acRate\": \"51.7%\"}", "hints": [ "Create a hashmap from letter to position on the board.", "Now for each letter, try moving there in steps, where at each step you check if it is inside the boundaries of the board." ], "solution": null, "status": null, "sampleTestCase": "\"leet\"", "metaData": "{\n \"name\": \"alphabetBoardPath\",\n \"params\": [\n {\n \"name\": \"target\",\n \"type\": \"string\"\n }\n ],\n \"return\": {\n \"type\": \"string\"\n }\n}", "judgerAvailable": true, "judgeType": "large", "mysqlSchemas": [], "enableRunCode": true, "envInfo": "{\"cpp\":[\"C++\",\"

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