1 |
gforget |
1.1 |
function r = nanmin(p,varargin) |
2 |
gforget |
1.4 |
% NANMIN(p,varargin) |
3 |
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% |
4 |
gforget |
1.2 |
%overloaded gcmfaces nanmin function : |
5 |
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% 1) if single gcmfaces argument, then returns the global nanmin over all faces |
6 |
gforget |
1.3 |
% 2) if two gcmfaces arguments, then returns the nanmin of the two at each point |
7 |
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% 3) otherwise calls double nanmin function for each face, passing over the other arguments |
8 |
gforget |
1.1 |
|
9 |
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if nargin==1; |
10 |
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tmp1=[]; |
11 |
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for iFace=1:p.nFaces; |
12 |
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iF=num2str(iFace); |
13 |
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eval(['tmp1=[tmp1;p.f' iF '(:)];']); |
14 |
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end; |
15 |
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r=nanmin(tmp1); |
16 |
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return; |
17 |
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end; |
18 |
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|
19 |
gforget |
1.3 |
if isa(varargin{1},'gcmfaces'); |
20 |
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r=p; |
21 |
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for iFace=1:r.nFaces; |
22 |
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iF=num2str(iFace); |
23 |
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eval(['r.f' iF '=nanmin(p.f' iF ',varargin{1}.f' iF ');']); |
24 |
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end; |
25 |
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return; |
26 |
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end; |
27 |
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|
28 |
gforget |
1.4 |
if varargin{2}>0; |
29 |
|
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r=p; |
30 |
|
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for iFace=1:r.nFaces; |
31 |
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iF=num2str(iFace); |
32 |
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eval(['r.f' iF '=nanmin(p.f' iF ',varargin{:});']); |
33 |
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end; |
34 |
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else; |
35 |
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tmp1=convert2gcmfaces(p); |
36 |
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[n1,n2,n3,n4]=size(tmp1); |
37 |
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tmp1=reshape(tmp1,n1*n2,n3,n4); |
38 |
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r=nanmin(tmp1,[],1); |
39 |
gforget |
1.1 |
end; |
40 |
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41 |
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