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1 function [overlap, normoverlap] = rectintSparse(A,B)
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2 %
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3 % A(i,:) = [x y w h]
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4 % B(j,:) = [x y w h]
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5 % overlap(i,j) = area of intersection
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6 % normoverla(i,j)
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7 %
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8 % Same as built-in rectint, but uses less memory.
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9 % Use rectintSparseC for a faster version.
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10 %
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11
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12 leftA = A(:,1);
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13 bottomA = A(:,2);
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14 rightA = leftA + A(:,3);
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15 topA = bottomA + A(:,4);
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16
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17 leftB = B(:,1)';
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18 bottomB = B(:,2)';
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19 rightB = leftB + B(:,3)';
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20 topB = bottomB + B(:,4)';
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21
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22 numRectA = size(A,1);
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23 numRectB = size(B,1);
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24
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25 %out = rectintSparseLoopC(leftA, rightA, topA, bottomA, leftB, rightB, topB, bottomB);
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26
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27 nnz = ceil(0.2*numRectA*numRectB); % guess of number of non-zeroes
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28 overlap = sparse([], [], [], numRectA, numRectB, nnz);
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29 normoverlap = sparse([], [], [], numRectA, numRectB, nnz);
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30 for j=1:numRectB
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31 for i=1:numRectA
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32 tmp = (max(0, min(rightA(i), rightB(j)) - max(leftA(i), leftB(j)) ) ) .* ...
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33 (max(0, min(topA(i), topB(j)) - max(bottomA(i), bottomB(j)) ) );
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34 if tmp>0
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35 overlap(i,j) = tmp;
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36 areaA = (rightA(i)-leftA(i))*(topA(i)-bottomA(i));
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37 areaB = (rightB(j)-leftB(j))*(topB(j)-bottomB(j));
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38 normoverlap(i,j) = min(tmp/areaA, tmp/areaB);
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39 end
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40 %fprintf('j=%d, i=%d, overlap=%5.3f, norm=%5.3f\n',...
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41 % j, i, overlap(i,j), normoverlap(i,j));
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42 end
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43 end
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44
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45
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46 if 0
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47 N = size(bboxDense01,2); % 1000;
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48 rect = bboxToRect(bboxDense01)';
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49 A = rect(1:2,:);
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50 B = rect(1:N,:);
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51
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52 tic; out1 = rectint(A, B); toc
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53 tic; out2 = rectintSparse(A, B); toc
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54 tic; out3 = rectintSparseC(A, B); toc
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55 tic; out4 = rectintC(A, B); toc
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56 assert(approxeq(out1, out2))
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57 assert(approxeq(out1, full(out3)))
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58 assert(approxeq(out1, out4))
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59 end
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