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Asked: May 10, 20262026-05-10T21:39:46+00:00 2026-05-10T21:39:46+00:00

I understand how Map is easily parallelizable – each computer/CPU can just operate on

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I understand how Map is easily parallelizable – each computer/CPU can just operate on a small portion of the array.

Is Reduce/foldl parallelizable? It seems like each computation depends on the previous one. Is it just parallelizable for certain types of functions?

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  1. 2026-05-10T21:39:47+00:00Added an answer on May 10, 2026 at 9:39 pm

    If your reduction underlying operation is associative*, you can play with the order of operations and locality. Therefore you often have a tree-like structure in the ‘gather’ phase, so you can do it in several passes in logarithmic time:

    a  +  b  +  c  +  d  \   /       \   /  (a+b)       (c+d)      \       /    ((a+b)+(c+d)) 

    instead of (((a+b)+c)+d)

    If your operation is commutative, further optimization are possible as you can gather in different order (it may be important for data alignment when those operations are vector operations for example)

    [*] your real desired mathematical operations, not those on effective types like floats of course.

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