Is there a faster way to implement a FIFO (queue) ?
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Hi, I was wondering if somebody could comment on my use of array indexing. I have a recursive function which uses some initial conditions passed in. I use it in the following manner.
ic = [x_i ic(1:end-1)];
ic is a long vector. x_i is a double.
This line seems to be taking a lot of execution time, about 50% of the total time Matlab spends in this function (using Profiler). The rest of the code is set of vectorized computations; I believe they are as fast as they can be.
I made one small adjustment and it made it a bit faster.
ic(2:end) = ic(1:end-1);
ic(1) = x_i;
This improved the execution time and these two lines take 40% of the total execution time of the function.
Could anybody suggest any better way of implementing this FIFO array.
Thanks for your time and comments.
1 commentaire
Brian Harris
le 12 Avr 2022
Modifié(e) : Brian Harris
le 12 Avr 2022
See this answer: Fast FIFO Array. The circleshift one (which is really just to realign the last answer) is fast because its just a moving pointer "ic=mod(i,Nmax+i)" so doens't move anything. Its really just a circular buffer.
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Bruno Luong
le 12 Avr 2022
Modifié(e) : Bruno Luong
le 12 Avr 2022
If you don't need to retreive the whole FIFO in order, but read and write element by element, then the best way is NOT rearrange the FIFO buffer
FIFO=nan(1,1000);
n = length(FIFO);
nbreadwrte = 1e6;
% Use index to mark place of the oldest element
tic
for i=1:nbreadwrte
% readcell
oldout = FIFO(mod(i-1,n)+1);
newin = rand(1);
% write, recent MATLAB do inplace change of internal data
FIFO(mod(i-1,n)+1) = newin;
end
toc
tic
for i=1:nbreadwrte
% readcell
oldout = FIFO(1);
newin = rand(1);
% write
FIFO = [newin FIFO(1:end-1)];
end
toc
for i=1:nbreadwrte
% readcell
oldout = FIFO(1);
newin = rand(1);
% write
FIFO(2:end) = FIFO(1:end-1);
FIFO(1) = newin;
end
toc
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