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I have the following snippet:

import qualified Data.Vector as V
import qualified Data.ByteString.Lazy as BL
import System.Environment
import Data.Word
import qualified Data.List.Stream as S

histogram ::  [Word8] -> V.Vector Int
histogram c = V.accum (+) (V.replicate 256 0) $ S.zip (map fromIntegral c) (S.repeat 1)

mkHistogram file = do
  hist <- (histogram . BL.unpack) `fmap` BL.readFile file
  print hist

I see it like this: Nothing is done until printing. When printing the thunks are unwinded by first unpacking, then mapping fromIntegral one Word8 at a time. Each of these word8's are zipped with 1, again one value at a time. This tuples are then taken by the accumulator function which updates the array, one tuple/Word8 at a time. Then we move to the next thunk and repeat until no more content left.

This would allow for creating histograms in constant memory, but alas this is not happening, but instead it crashes with stack overflow. If I try to profile it, I see it running to the end, but taking memory a lot (300-500 Mb for a 2.5 Mb file). Memory is obtained linearly until the end until it can be released, forming a "nice" triangular graph.

Where did my reasoning go wrong and what steps should I take to make this run in constant memory?

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This might help repos.mornfall.net/mdarcs/contrib/darcs-errors.hlint –  kramthegram Mar 11 '11 at 15:23
    
You use fmap. <$> is much more cool. –  Hai Mar 12 '11 at 15:44
    
@Hai but requires an additional import and is harder to type. But I agree on the coolness factor :P –  Masse Apr 14 '11 at 7:05
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1 Answer

up vote 12 down vote accepted

I believe the problem is that Data.Vector is not strict in its elements. So although your reasoning is right, when accumulating the histogram your thunks looks like:

<1+(1+(1+0)) (1+(1+0)) 0 0 (1+(1+(1+(1+0)))) ... >

Rather than

<3 2 0 0 4 ...>

And only when you print are those sums computed. I don't see a strict accum function in the docs (shame), and there isn't any place to hook in a seq. One way out of this predicament may be to use Data.Vector.Unboxed instead, since unboxed types are unlifted aka strict. Maybe you could request a strict accum function with your example as a use case.

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3  
Argh, luqui beat me to it. By my tests, simply changing to using Data.Vector.Unboxed allows this code to run in constant memory. I was using the Prelude definitions of zip and repeat instead of Data.List.Stream, but I don't think that makes any difference in this case. –  John L Mar 11 '11 at 16:30
    
@John, thanks for testing. It was just a guess. –  luqui Mar 11 '11 at 16:34
    
Great, this helped. I was suspecting that it would be because accum (or somewhere near it) wasn't strict, but wasn't sure how to check it. –  Masse Mar 11 '11 at 20:40
1  
@Masse - the stack overflow error your received was a big clue. Stack overflows commonly result from the construction of a large thunk, e.g. something isn't strict enough, and arithmetic is a common culprit. –  John L Mar 12 '11 at 11:21
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