FunctionalJ | Functional programming in Java | Functional Programming library

 by   NawaMan Java Version: v0.5.8.0 License: MIT

kandi X-RAY | FunctionalJ Summary

kandi X-RAY | FunctionalJ Summary

FunctionalJ is a Java library typically used in Programming Style, Functional Programming, Gradle, Maven applications. FunctionalJ has no bugs, it has no vulnerabilities, it has build file available, it has a Permissive License and it has low support. You can download it from GitHub, Maven.

FunctionalJ is a library for writing functional style code in Java. It aims be a practical expansion to functional programming added in Java 8. FunctionalJ is a pure Java library with all code written in Java so its usages will be just like other Java library. No additional build steps or tools are required outside of adding dependencies.
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              FunctionalJ has a low active ecosystem.
              It has 40 star(s) with 6 fork(s). There are 3 watchers for this library.
              OutlinedDot
              It had no major release in the last 12 months.
              There are 1 open issues and 0 have been closed. On average issues are closed in 584 days. There are no pull requests.
              It has a neutral sentiment in the developer community.
              The latest version of FunctionalJ is v0.5.8.0

            kandi-Quality Quality

              FunctionalJ has no bugs reported.

            kandi-Security Security

              FunctionalJ has no vulnerabilities reported, and its dependent libraries have no vulnerabilities reported.

            kandi-License License

              FunctionalJ is licensed under the MIT License. This license is Permissive.
              Permissive licenses have the least restrictions, and you can use them in most projects.

            kandi-Reuse Reuse

              FunctionalJ releases are available to install and integrate.
              Deployable package is available in Maven.
              Build file is available. You can build the component from source.
              Installation instructions, examples and code snippets are available.

            Top functions reviewed by kandi - BETA

            kandi has reviewed FunctionalJ and discovered the below as its top functions. This is intended to give you an instant insight into FunctionalJ implemented functionality, and help decide if they suit your requirements.
            • Apply function to both input and output
            • Passes the result to the output
            • Stream the data to the output
            • Passes the result to the output stream
            • Applies this function to the output
            • Stream data to the output stream
            • Consumes this output stream to all functions
            • Pipe to the output
            • Performs this function to the given output stream
            • Puts this function into the output stream
            • Provides the output of this function
            • Consumes this buffer to produce data
            • Consumes this output stream
            • A convenience method to apply to all the processors
            • Applies this function to the output stream
            • Consumes this buffer to the output
            • Applies the given function to this function
            • Passes the data to the output
            • Use this method to pipe data to the output
            • Apply the function to the output
            • Passes the results to the given function
            • Pass the result to the wrapped exception
            • Change handler change listener
            • Segments the stream
            • Creates a stream of sub - streams
            • Change map by checker
            • Change map function
            • Change each element of map
            • Take value until condition is true
            • Constructs a stream which takes values from the stream until the first value is met
            • Segments the stream starting at the given end condition
            Get all kandi verified functions for this library.

            FunctionalJ Key Features

            No Key Features are available at this moment for FunctionalJ.

            FunctionalJ Examples and Code Snippets

            No Code Snippets are available at this moment for FunctionalJ.

            Community Discussions

            QUESTION

            How do purely functional languages handle index-based algorithms?
            Asked 2022-Apr-05 at 12:51

            I have been trying to learn about functional programming, but I still struggle with thinking like a functional programmer. One such hangup is how one would implement index-heavy operations which rely strongly on loops/order-of-execution.

            For example, consider the following Java code:

            ...

            ANSWER

            Answered 2022-Mar-07 at 21:17

            This is not an index-heavy operation, in fact you can do this with a one-liner with scanl1 :: (a -> a -> a) -> [a] -> [a]:

            Source https://stackoverflow.com/questions/71387267

            QUESTION

            Haskell comparing two lists' lengths but one of them is infinite?
            Asked 2022-Mar-22 at 20:54

            I want to write a function that checks if the first list is longer than the second list and one of them can be infinite. However I can't find a working solution.

            ...

            ANSWER

            Answered 2022-Mar-22 at 20:54

            Plain old natural numbers will not do the trick, because you can't calculate the natural number length of an infinite list in finite time. However, lazy natural numbers can do it.

            Source https://stackoverflow.com/questions/71565429

            QUESTION

            Why is `forever` in Haskell implemented this way?
            Asked 2022-Feb-05 at 20:34

            Haskell provides a convenient function forever that repeats a monadic effect indefinitely. It can be defined as follows:

            ...

            ANSWER

            Answered 2022-Feb-05 at 20:34

            The execution engine starts off with a pointer to your loop, and lazily expands it as it needs to find out what IO action to execute next. With your definition of forever, here's what a few iterations of the loop like like in terms of "objects stored in memory":

            Source https://stackoverflow.com/questions/70990108

            QUESTION

            Memoize multi-dimensional recursive solutions in haskell
            Asked 2022-Jan-13 at 14:28

            I was solving a recursive problem in haskell, although I could get the solution I would like to cache outputs of sub problems since has over lapping sub-problem property.

            The question is, given a grid of dimension n*m, and an integer k, how many ways are there to reach the gird (n, m) from (1, 1) with not more than k change of direction?

            Here is the code without of memoization

            ...

            ANSWER

            Answered 2021-Dec-16 at 16:23

            In Haskell these kinds of things aren't the most trivial ones, indeed. You would really like to have some in-place mutations going on to save up on memory and time, so I don't see any better way than equipping the frightening ST monad.

            This could be done over various data structures, arrays, vectors, repa tensors. I chose HashTable from hashtables because it is the simplest to use and is performant enough to make sense in my example.

            First of all, introduction:

            Source https://stackoverflow.com/questions/70376569

            QUESTION

            Why is my Haskell function argument required to be of type Bool?
            Asked 2021-Nov-30 at 09:42

            I have a function in Haskell that is defined as follows:

            ...

            ANSWER

            Answered 2021-Nov-30 at 09:42

            Haskell values have types. Each value has a type. One type. It can't be two different types at the same time.

            Thus, since x is returned as the result of if's consequent, the type of the whole if ... then ... else ... expression is the same as x's type.

            An if expression has a type. Thus both its consequent and alternative expression must have that same type, since either of them can be returned, depending on the value of the test. Thus both must have the same type.

            Since x is also used in the test, it must be Bool. Then so must be y.

            Source https://stackoverflow.com/questions/70053894

            QUESTION

            Vector of functions in APL
            Asked 2021-Nov-30 at 09:31

            What is the syntax for a vector (array) of functions in APL?

            I have tried the following but these are interpreted as a 3-train and a 2-train, respectively:

            ...

            ANSWER

            Answered 2021-Nov-28 at 23:26

            Dyalog APL does not officially support function arrays, you can awkwardly emulate them by creating an array of namespaces with identically named functions.

            Source https://stackoverflow.com/questions/70148229

            QUESTION

            What's the theoretical loophole that allows F# (or any functional language) to apply a function mulitple times on the same input
            Asked 2021-Nov-17 at 06:29

            In F# if I write

            ...

            ANSWER

            Answered 2021-Nov-17 at 01:24

            To expand on the answer given in the comments, the first p is an immutable value, while the second p is a function. If you refer to an immutable value multiple times, then (obviously) its value doesn't change over time. But if you invoke a function multiple times, it executes each time, even if the arguments are the same each time.

            Note that this is true even for pure functional languages, such as Haskell. If you want to avoid this execution cost, there's a specific technique called memoization that can be used to return cached results when the same inputs occur again. However, memoization has its own costs, and I'm not aware of any mainstream functional language that automatically memoizes all function calls.

            Source https://stackoverflow.com/questions/69997578

            QUESTION

            Is Control.Monad.Reader.withReader actually Data.Functor.Contravariant.contramap?
            Asked 2021-Nov-03 at 06:39

            I'm working trough the book Haskell in depth and I noticed following code example:

            ...

            ANSWER

            Answered 2021-Nov-03 at 06:39

            Reader's type parameters aren't in the right order for that to be contramap for it. A Contravariant functor always needs to be contravariant in its last type parameter, but Reader is contravariant in its first type parameter. But you can do this:

            Source https://stackoverflow.com/questions/69817514

            QUESTION

            Confused about evaluation of lazy sequences
            Asked 2021-Oct-20 at 15:49

            I am experimenting with clojure's lazy sequences. In order to see when the evaluation of an item would occur, I created a function called square that prints the result before returning it. I then apply this function to a vector using map.

            ...

            ANSWER

            Answered 2021-Oct-20 at 15:49

            Laziness isn't all-or-nothing, but some implementations of seq operate on 'chunks' of the input sequence (see here for an explanation). This is the case for vector which you can test for with chunked-seq?:

            Source https://stackoverflow.com/questions/69648554

            QUESTION

            What is the relation between syntax sugar, laziness and list elements accessed by index in Haskell?
            Asked 2021-Aug-30 at 04:46

            Haskell lists are constructed by a sequence of calls to cons, after desugaring syntax:

            ...

            ANSWER

            Answered 2021-Aug-30 at 04:46

            Lists in Haskell are special in syntax, but not fundamentally.

            Fundamentally, Haskell list is defined like this:

            Source https://stackoverflow.com/questions/68978811

            Community Discussions, Code Snippets contain sources that include Stack Exchange Network

            Vulnerabilities

            No vulnerabilities reported

            Install FunctionalJ

            This project is developed as a gradle project on Eclipse so you can just clone and import it to your Eclipse. Although, never tried, but I think it should be easy to import into IntelliJ. Simply run gradle clean build to build the project (or use the build-in gradle wrapper). This project is build with Java 8 and make heavy use of Lombok val for type inference.

            Support

            Feel free to join in. Report problems, suggest solutions, suggest more functionalities, making pull requests ... anything is appreciated (please do it in issues tracking page or email me directly). If this is useful to you and want to buy me a coffee or lunch or help with my kids college fund ... that would be great :-p.
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