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reflection - How do I retrieve the names of function parameters in matlab?

Aside from parsing the function file, is there a way to get the names of the input and output arguments to a function in matlab?

For example, given the following function file:

divide.m

function [value, remain] = divide(left, right)
     value = floor(left / right);
     remain = left / right - value;
end

From outside the function, I want to get an array of output arguments, here: ['value', 'remain'], and similarly for the input arguments: ['left', 'right'].

Is there an easy way to do this in matlab? Matlab usually seems to support reflection pretty well.

EDIT Background:

The aim of this is to present the function parameters in a window for the user to enter. I'm writing a kind of signal processing program, and functions to perform operations on these signals are stored in a subfolder. I already have a list and the names of each function from which the user can select, but some functions require additional arguments (e.g. a smooth function might take window size as a parameter).

At the moment, I can add a new function to the subfolder which the program will find, and the user can select it to perform an operation. What I'm missing is for the user to specify the input and output parameters, and here I've hit the hurdle here in that I can't find the names of the functions.

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MATLAB offers a way to get information about class metadata (using the meta package), however this is only available for OOP classes not regular functions.

One trick is to write a class definition on the fly, which contain the source of the function you would like to process, and let MATLAB deal with the parsing of the source code (which can be tricky as you'd imagine: function definition line spans multiple lines, comments before the actual definition, etc...)

So the temporary file created in your case would look like:

classdef SomeTempClassName
    methods
        function [value, remain] = divide(left, right)
            %# ...
        end
    end
end

which can be then passed to meta.class.fromName to parse for metadata...


Here is a quick-and-dirty implementation of this hack:

function [inputNames,outputNames] = getArgNames(functionFile)
    %# get some random file name
    fname = tempname;
    [~,fname] = fileparts(fname);

    %# read input function content as string
    str = fileread(which(functionFile));

    %# build a class containing that function source, and write it to file
    fid = fopen([fname '.m'], 'w');
    fprintf(fid, 'classdef %s; methods;
 %s
 end; end', fname, str);
    fclose(fid);

    %# terminating function definition with an end statement is not
    %# always required, but now becomes required with classdef
    missingEndErrMsg = 'An END might be missing, possibly matching CLASSDEF.';
    c = checkcode([fname '.m']);     %# run mlint code analyzer on file
    if ismember(missingEndErrMsg,{c.message})
        % append "end" keyword to class file
        str = fileread([fname '.m']);
        fid = fopen([fname '.m'], 'w');
        fprintf(fid, '%s 
 end', str);
        fclose(fid);
    end

    %# refresh path to force MATLAB to detect new class
    rehash

    %# introspection (deal with cases of nested/sub-function)
    m = meta.class.fromName(fname);
    idx = find(ismember({m.MethodList.Name},functionFile));
    inputNames = m.MethodList(idx).InputNames;
    outputNames = m.MethodList(idx).OutputNames;

    %# delete temp file when done
    delete([fname '.m'])
end

and simply run as:

>> [in,out] = getArgNames('divide')
in = 
    'left'
    'right'
out = 
    'value'
    'remain'

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