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I'm seeking for a language that operates on programs, written in that very language. That is a language whose programs are the primary (possibly the only) objects of that language.

Something like self-program transformation language, made solely with this point of view in mind.

Motivation is the following:

Having a program P1 meant to compute Real -> Real I want to have a program P2 which would take P1 and transform it to a symbolical derivative (or an antiderivative) of P1. Obviously P2 might fail to do a proper work on most of the inputs.

One might view it as a pattern matching against lambdas. But a very convenient pattern matching.

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What languages does your research suggest? What languages have you found that don't quite fit the bill, and why? –  Marcin Apr 9 '12 at 9:23
    
@Marcin I've tried pure, but it's representation for reflection is clumsy. For example if-then-else and guards are represented distinctly. –  Yrogirg Apr 9 '12 at 9:39
    
So, update your answer accordingly. –  Marcin Apr 9 '12 at 9:42

2 Answers 2

lisp/scheme/racket. or are you looking for something else?

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I think C# Expression Trees (or F# quotations) could be used for this. They are by far not the primary (or the only) objects of those languages but I they should let you do this nicely.

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