We have seen the RPN can be solved with haskell in previous examples, now we will see how we can do use monad to solve it.
With monad, you might not gain more in terms of just solving hte problem, but you will get more like logging ability or, graceful failure or somehting else.
So, here is a example of how you can leverage the use of Monad to give more context information on the solution.
import Data.List solveRPN :: String -> Double solveRPN = head . foldl foldingFunction [] . words
as before this is what we have for the main body of the solution,
foldingFunction :: [Double] -> String -> [Double] foldingFunction (x:y:ys) "*" = (x * y):ys foldingFunction (x:y:ys) "+" = (x + y):ys foldingFunction (x:y:ys) "-" = (y - x):ys foldingFunction xs numberString = read numberString:xs
now, we are looking to add graceful failure to the function, and we might change the signature to something like this:
foldingFunction :: [Double] -> String -> Maybe [Double]
so we will return Just a new stack if success, otherwise we will return Nothing.
we nees some assiisting functions. like the readMaybe,
readMaybe :: (Read a) => String -> Maybe a readMaybe st = case reads st of [(x,"")] -> Just x _ -> Nothing
to test that with the interactive console..
ghci> readMaybe "1" :: Maybe Int Just 1 ghci> readMaybe "GO TO HELL" :: Maybe Int Nothing
so with that , readMaybe can return failure on some input that it is not valid. now, we can rewrite the code ..
foldingFunction :: [Double] -> String -> Maybe [Double] foldingFunction (x:y:ys) "*" = return ((x * y):ys) foldingFunction (x:y:ys) "+" = return ((x + y):ys) foldingFunction (x:y:ys) "-" = return ((y - x):ys) foldingFunction xs numberString = liftM (:xs) (readMaybe numberString)
and we will ignore those succeess cases and we will only show the failure case. here is what we might get for a invalid ..
ghci> foldingFunction [] "1" Just [1.0] ghci> foldingFunction [] "1 wawawawa" Nothing
so with this, we will wrap it up and here is waht we can get ..
import Data.List solveRPN :: String -> Maybe Double solveRPN st = do [result] <- foldM foldingFunction [] (words st) return result
so instead of normal foldl, we do a foldM, so we will give a shot...
ghci> solveRPN "1 2 * 4 +" Just 6.0 ghci> solveRPN "1 2 * 4 + 5 *" Just 30.0 ghci> solveRPN "1 2 * 4" Nothing ghci> solveRPN "1 8 wharglbllargh" Nothing
Now that we have seen that we can solve some problems with monad , like the above we used that to solve the reverseRPN problem, now let's see how ew can compose monadic functions,
first let's review some function composition.
ghci> let f = (+1) . (*100) ghci> f 4 401 ghci> let g = (\x -> return (x+1)) <=< (\x -> return (x*100)) ghci> Just 4 >>= g Just 401
so you can see that instead of just . function composition, we use the >=> , but instead of id as the starting accumulator, and the . notatin, we uses "return" and "<=<" insteads. so
ghci> let f = foldr (.) id [(+1),(*100),(+1)] ghci> f 1 201
can be translated to somethng else.
so let's divert to something else, rember that we have solved some problem like moveKnight questions.
in3 start = return start >>= moveKnight >>= moveKnight >>= moveKnight
and we can check that if we can reach to some position in three moves
canReachIn3 :: KnightPos -> KnightPos -> Bool canReachIn3 start end = end `elem` in3 start
with monad, we can know not just three, but any numbers of moves, let's make it more general , here is the code.
import Data.List inMany :: Int -> KnightPos -> [KnightPos] inMany x start = return start >>= foldr (<=<) return (replicate x moveKnight)
as we know that we have return instead of "id"..
and we can make it more general , here is what we will get.
canReachIn :: Int -> KnightPos -> KnightPos -> Bool canReachIn x start end = end `elem` inMany x start
相关推荐
Atom-ide-haskell-hoogle 是一个专门为 Atom 编辑器设计的插件,它整合了 Haskell 的 Hoogle 工具,以提供强大的代码提示和搜索功能。Atom 是一款由 GitHub 开发的开源文本编辑器,它利用现代 web 技术如 HTML、CSS ...
在 Emacs 中,`haskell-mode` 是一个专门为了提升 Haskell 开发体验而设计的模式。 `haskell-mode` 提供了多种增强功能,旨在帮助 Haskell 开发者更高效地编写、调试和理解代码。这个模式包括以下关键特性: 1. **...
在数据可视化领域,`haskell-chart`库提供了一种高效且灵活的方式来创建2D图表,这对于数据分析、科学计算以及教学等场景非常有用。这个库是开源的,意味着任何人都可以查看其源代码,学习并贡献改进。 `haskell-...
**哈斯克尔编程语言与Atom-Haskell-GHC-Mod** 哈斯克尔(Haskell)是一种纯函数式编程语言,以其优雅的语法、强静态类型系统和编译时优化而受到程序员的喜爱。它鼓励使用不可变数据和惰性求值,这使得哈斯克尔在...
Get Programming with HASKELL-2018-英文版
Haskell-Data-Analysis-Cookbook, Haskell数据分析 cookbook的附带源代码 Haskell-Data-Analysis-Cookbook这是 Haskell数据分析 cookbook的附带源代码。最新的源代码可以在GitHub上获得: ...
Atom-Haskell-Debug是针对Haskell开发者的一个强大工具,它允许你在流行的Atom文本编辑器中集成一个图形化的Haskell调试器。这个工具基于GHCi(Glasgow Haskell Compiler Interface),GHCi是Haskell的交互式环境,...
从1.0.0开始,haskell-ghc-mod提供haskell-completion-backend服务。 注意:在1.0.0之前,提供了ide-backend服务。 它已被废弃以支持ide-haskell的UPI。 您可以在找到描述 执照 版权所有:copyright:2015 Atom-...
haskell-ghc-mod原子包 该软件包主要用作后端。 Haskell ghc-mod打开通往ghc-modi的管道,并查询类型,信息并检查错误。 安装与配置 请参考官方文档站点 服务中心API 从1.0.0版本开始,haskell-ghc-mod提供...
Haskell Monads小书 :warning: 初稿! –请仔细阅读 1. do块 2.解释嵌套的Lambda和绑定 =<<作为序列运算符 2C 。 a- a -> M b背后的直觉 2D合成do块 2E 。 嵌套do块 3.实现Monad和封装 3A 。 新型和副...
用于 haskell-relational-record 的 MySQL 驱动程序 这个项目被合并到 。 准备 $ git clone git@github.com:khibino/haskell-relational-record.git $ git clone git@github.com:bos/hdbc-mysql.git $ git clone ...
【标题】:“Atom-atom-haskell-scry,扩散系数.zip” 涉及的主要知识点是 Atom 编辑器与 Haskell 语言的集成以及 SCRY 工具的使用。 【描述】:“Atom-atom-haskell-scry.zip”的描述指出,这个压缩包包含了一个名...
Atom-ide-haskell-repl是针对Atom文本编辑器的一个扩展插件,专为Haskell编程语言提供集成的GHCi(Glasgow Haskell Compiler Interface)交互式环境,即REPL(Read-Eval-Print Loop)。这个插件允许开发者在Atom编辑...
在Haskell的世界里,开发环境的配置至关重要,而`haskell-dev-tools`就是一个方便的元项目,它专门设计用于简化Haskell开发工具的安装和升级过程。这个项目扮演了一个集合和自动化工具的角色,使得开发者无需手动...
Haskell-dap是一个开源项目,它实现了调试适应性协议(Debug Adapter Protocol,简称DAP)的接口,使得Haskell开发者可以充分利用这个协议进行程序调试。DAP是一个通用的、跨平台的协议,允许IDEs(集成开发环境)和...
你可以在找到 haskell-brainfuck用法图书馆 import HaskBF.Evalimport qualified Data.ByteString.Lazy as BSimport Control.Monad.Statemain = do -- The following will evaluate the file using stdin and ...
《Programming in Haskell》第二版是Graham Hutton撰写的一本关于Haskell编程语言的经典教材。这本书深入浅出地介绍了函数式编程的概念,并专注于Haskell这一纯函数式编程语言的细节和应用。对于想要理解函数式编程...
### 函数式编程:Haskell到Java的转换 #### 概述 本文旨在探讨函数式编程语言Haskell如何被编译或转换为Java语言。Haskell作为一种纯函数式编程语言,以其强大的类型系统、惰性求值机制以及高度抽象的能力在学术界...
"haskell-tools"就是这样一个项目,它专注于为Haskell开发者提供一系列实用的辅助工具,以优化他们的开发流程。 ### 1. GHC:Glasgow Haskell Compiler GHC是Haskell的主要编译器,也是haskell-tools的重要组成...
Atom-ide-haskell-cabal.zip,Cabal backend provider for ide-haskellIDE Haskell Cabal套餐,atom是一个用web技术构建的开源文本编辑器。