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function []=struct2nctiles(dirModel,fileOut,structIn,tileSize); |
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%process2nctiles(dirModel); |
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%object : convert MITgcm binary output to netcdf files (tiled) |
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%inputs : dirModel is the MITgcm run directory |
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% It is expected to contain binaries in |
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% 'diags/STATE/', 'diags/TRSP/', etc. as well |
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% as the 'available_diagnostics.log' text file. |
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% fileModel the file name base e.g. 'state_2d_set1' |
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% By default : all variables in e.g. 'state_2d_set1*' |
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% files will be processed, and writen individually to |
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% nctiles (tiled netcdf) that will be located in 'nctiles/' |
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% structIn is a structure containing descr, defs and vars |
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% (see prep2nctiles.m for an example) |
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% tileSize (optional) is e.g. [90 90] (by default tiles=faces) |
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%output : (netcdf files) |
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|
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gcmfaces_global; |
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|
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%directory names |
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filReadme=[dirModel 'README']; |
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dirOut=[dirModel 'tmp_nctiles/']; |
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if ~isdir(dirOut); mkdir(dirOut); end; |
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|
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%set list of variables to process |
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listFlds={structIn(:).defs.fldName}; |
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listDefs=listFlds; |
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|
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%determine map of tile indices (by default tiles=faces) |
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if isempty(whos('tileSize')); |
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tileNo=mygrid.XC; |
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for ff=1:mygrid.nFaces; tileNo{ff}(:)=ff; end; |
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else; |
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tileNo=gcmfaces_loc_tile(tileSize(1),tileSize(2)); |
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end; |
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|
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%get description of estimate from README |
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[rdm]=read_readme(filReadme); |
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disp(rdm'); |
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|
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%add structIn.descr to the beginning of rdm... |
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disp(structIn.descr'); |
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descr=structIn.descr{1}; |
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for ii=2:length(structIn.descr); |
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descr=[descr ' ' structIn.descr{ii}]; |
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end; |
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|
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%set output directory/file name |
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myFile=[dirOut fileOut];%first instance is for subdirectory name |
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if ~isdir(myFile); mkdir(myFile); end; |
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myFile=[myFile filesep fileOut];%second instance is for file name base |
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|
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%create netcdf file using write2nctiles |
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doCreate=1; |
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|
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%sort by number of dimensions |
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ndimDiag=NaN*ones(1,length(listFlds)); |
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for ii=1:length(listFlds); |
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nameDiag=listFlds{ii}; |
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myDiag=getfield(structIn.vars,nameDiag); |
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if isa(myDiag,'gcmfaces'); |
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ndimDiag(ii)=length(size(myDiag{1})); |
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else; |
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ndimDiag(ii)=sum(size(myDiag)~=1); |
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end; |
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end; |
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[ndimDiag,ii]=sort(ndimDiag,'descend'); |
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listFlds={listFlds{ii}}; |
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|
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%write first field |
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nameDiag=listFlds{1}; myDiag=getfield(structIn.vars,nameDiag); jj=find(strcmp(listDefs,nameDiag)); |
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dimlist=write2nctiles(myFile,myDiag,doCreate,{'tileNo',tileNo},{'fldName',nameDiag},... |
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{'units',structIn.defs(jj).units},{'longName',structIn.defs(jj).longName},... |
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{'descr',descr},{'rdm',rdm}); |
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|
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%determine relevant dimensions |
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for ff=1:length(dimlist); |
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dim.threeD{ff}=dimlist{ff}; |
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dim.twoD{ff}={dimlist{ff}{end-1:end}}; |
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dim.oneD{ff}={dimlist{ff}{1}}; |
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end; |
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|
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%prepare to add fields |
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doCreate=0; |
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|
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%now add the other fields |
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for ii=2:length(listFlds); |
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nameDiag=listFlds{ii}; |
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myDiag=getfield(structIn.vars,nameDiag); |
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jj=find(strcmp(listDefs,nameDiag)); |
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if ndimDiag(ii)==1; tmpDim=dim.oneD; |
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elseif ndimDiag(ii)==2; tmpDim=dim.twoD; |
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elseif ndimDiag(ii)==3; tmpDim=dim.threeD; |
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end; |
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write2nctiles(myFile,myDiag',doCreate,{'tileNo',tileNo},... |
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{'fldName',nameDiag},{'units',structIn.defs(jj).units},... |
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{'longName',structIn.defs(jj).longName},{'dimIn',tmpDim}); |
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end; |
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|
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function [meta]=read_meta(fileName); |
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|
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%read meta file |
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tmp1=dir([fileName '*.meta']); tmp1=tmp1(1).name; |
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tmp2=strfind(fileName,filesep); |
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if ~isempty(tmp2); tmp2=tmp2(end); else; tmp2=0; end; |
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tmp1=[fileName(1:tmp2) tmp1]; fid=fopen(tmp1); |
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while 1; |
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tline = fgetl(fid); |
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if ~ischar(tline), break, end |
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if isempty(whos('tmp3')); tmp3=tline; else; tmp3=[tmp3 ' ' tline]; end; |
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end |
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fclose(fid); |
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|
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%add meta variables to workspace |
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eval(tmp3); |
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|
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%reformat to meta structure |
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meta.dataprec=dataprec; |
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meta.nDims=nDims; |
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meta.nFlds=nFlds; |
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meta.nrecords=nrecords; |
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meta.fldList=fldList; |
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meta.dimList=dimList; |
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if ~isempty(who('timeInterval')); meta.timeInterval=timeInterval; end; |
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if ~isempty(who('timeStepNumber')); meta.timeStepNumber=timeStepNumber; end; |
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|
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%% |
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|
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function [rdm]=read_readme(filReadme); |
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|
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gcmfaces_global; |
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|
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rdm=[]; |
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|
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fid=fopen(filReadme,'rt'); |
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while ~feof(fid); |
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nn=length(rdm); |
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rdm{nn+1} = fgetl(fid); |
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end; |
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fclose(fid); |
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|
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%% |