Mercurial > hg > trimatlab
diff mt_get_transmat_at.m @ 0:be936975f254
Initial check in.
author | samer |
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date | Wed, 01 Feb 2012 14:06:37 +0000 |
parents | |
children | ffd7efa3e5c0 |
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--- /dev/null Thu Jan 01 00:00:00 1970 +0000 +++ b/mt_get_transmat_at.m Wed Feb 01 14:06:37 2012 +0000 @@ -0,0 +1,37 @@ +% mt_get_transmat_at - Get transition matrix near given point in information space. +% +% mt_get_transmat_at :: +% mt_system ~'Melody Triangle system structure', +% natural ~'voice Id (1 or greater)', +% K:natural ~'size of transition matrix', +% real ~'X-coordinate', +% real ~'Y-coordinate' +% -> [[K,K]] ~'transition matrix', +% [[1,3]] ~'information coordinates'. +% +% The selected transition matrix will be shown using mt_show_transmat, +% and it's information coordinates printed in the title of the main scatter plot. + +function [T,I]=mt_get_transmat_at(Sys,Id,K,X,Y) + normpos = Sys.map([X;Y])'; + target = normpos *log(K); + tmats = Sys.transmats{K}; + info = Sys.info{K}; + L = size(info,1); + + % distance from target + d2 = sum((info(:,1:2) - repmat(target,L,1)).^2,2); + Mask = d2<=max(min(d2)*2,0.01); + + M = find(Mask); +% J = M(argmax(info(M,3))); + J = M(1+floor(length(M)*rand)); + T = tmats(:,:,J); + I = info(J,:); + %Mask=2*int16(Mask); Mask(J)=1; + %set(Sys.hScat{K},'CDATA',Mask); % scatc(info,Mask,16); rotate3d on; + figure(Sys.fig); title(sprintf('info: %.2f, %.2f, %.2f',I(1),I(2),I(3))); + %figure(50); title(sprintf('pos: %.2f, %.2f',normpos(1), normpos(2))); + %fprintf('normpos: %.2f, %.2f',normpos(1), normpos(2)); + mt_show_transmat(Id,T); +end