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In Python we have lru_cache as a function wrapper. Add it to your function and the function will only be evaluated once per different input argument.

Example (from Python docs):

def fib(n):
    if n < 2:
        return n
    return fib(n-1) + fib(n-2)

>>> [fib(n) for n in range(16)]
[0, 1, 1, 2, 3, 5, 8, 13, 21, 34, 55, 89, 144, 233, 377, 610]

>>> fib.cache_info()
CacheInfo(hits=28, misses=16, maxsize=None, currsize=16)

I wonder whether a similar thing exists in Matlab? At the moment I am using cache files, like so:

function result = fib(n):
% FIB example like the Python example. Don't implement it like that!
cachefile = ['fib_', n, '.mat'];
catch e
    if n < 2
        result = n;
        result = fib(n-1) + fib(n-2);
    save(cachefile, 'result');

The problem I have with doing it this way, is that if I change my function, I need to delete the cachefile.

Is there a way to do this with Matlab realising when I changed the function and the cache has become invalidated?

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I would use a container.Map stored in a persistent variable. – Daniel Jan 31 '14 at 13:17
If you can write stuff to a cache, it should not be too hard to include the date the file was last edited. Once you notice that this is different, clear it. I suppose this will only be worthwile for quite expensive functions, otherwise just consider storing the output in a grid or so during the session. – Dennis Jaheruddin Jan 31 '14 at 13:34
@DennisJaheruddin, this looks nice but fails to recognize changes of the function. – Unapiedra Jan 31 '14 at 15:06
@Daniel: a container.Map will also not recognize changes of my function. (Let's assume I change fib to be fib(n) = fib(n-1) + 2*fib(n-2)) – Unapiedra Jan 31 '14 at 15:08
@Unapiedra: A persistent variable is cleared if a function is updated. – Daniel Jan 31 '14 at 15:57
up vote 1 down vote accepted

I've created something like this for my own personal use: a CACHE class. (I haven't documented the code yet though.) It appears to be more flexible than Python's lru_cache (I wasn't aware of that, thanks) in that it has several methods for adjusting exactly what gets cached (to save memory) and how the comparisons are made. It could still use some refinement (@Daniel's suggestion to use the containers.Map class is a good one – though it would limit compatibility with old Matlab versions). The code is on GitHub so you're welcome to fork and improve it.

Here is a basic example of how it can be used:

function Output1 = CacheDemo(Input1,Input2)

persistent DEMO_CACHE

if isempty(DEMO_CACHE)
    % Initialize cache object on first run
    CACHE_SIZE = 10; % Number of input/output patterns to cache
    CACHE_IDX = 1;
    % Check if input pattern corresponds something stored in cache
    % If not, return next available CACHE_IDX
    CACHE_IDX = DEMO_CACHE.IN([],Input1,Input2);
    if ~isempty(CACHE_IDX) && DEMO_CACHE.OUT(CACHE_IDX) > 0
        [~,Output1] = DEMO_CACHE.OUT(CACHE_IDX);

% Perform computation
Output1 = rand(Input1,Input2);

% Save output to cache CACHE_IDX

I created this class to cache the results from time-consuming stochastic simulations and have since used it to good effect in a few other places. If there is interest, I might be willing to spend some time documenting the code sooner as opposed to later. It would be nice if there was a way to limit memory use as well (a big consideration in my own applications), but getting the size of arbitrary Matlab datatypes is not trivial. I like your idea of caching to a file, which might be a good idea for larger data. Also, it might be nice to create a "lite" version that does what Python's lru_cache does.

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