[8] | 1 | %'nc2struct': transform a netcdf file in a corresponding matlab structure
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| 2 | % it reads all the global attributes and all variables, or a selected list.
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| 3 | % The corresponding dimensions and variable attributes are then extracted
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| 4 | %----------------------------------------------------------------------
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[56] | 5 | % function [Data,var_detect,ichoice]=nc2struct(nc,varargin)
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[8] | 6 | %
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| 7 | % OUTPUT:
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| 8 | % Data: structure containing all the information of the netcdf file (or netcdf object)
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[140] | 9 | % with (optional)fields:
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| 10 | % .ListGlobalAttribute: cell listing the names of the global attributes
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[55] | 11 | % .Att_1,Att_2... : values of the global attributes
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| 12 | % .ListVarName: list of variable names to select (cell array of char strings {'VarName1', 'VarName2',...} )
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| 13 | % .VarDimName: list of dimension names for each element of .ListVarName (cell array of string cells)
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| 14 | % .Var1, .Var2....: variables (Matlab arrays) with names listed in .ListVarName
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[693] | 15 | % .ListDimName=list of dimension (added information, not requested for field description)
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| 16 | % .DimValue= vlalues of dimensions (added information, not requested for field description)
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| 17 | % .VarType= integers giving the type of variable as coded by netcdf= 2 for char, =4 for single,=( for double
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[534] | 18 | % .Txt: error message
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[140] | 19 | % var_detect: vector with same length as the cell array ListVarName, = 1 for each detected variable and 0 else.
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| 20 | % var_detect=[] in the absence of input cell array
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| 21 | % ichoice: index of the selected line in the case of multiple choice
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| 22 | % (cell array of varible names with multiple lines) , =[] by default
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[8] | 23 | %INPUT:
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[140] | 24 | % nc: name of a netcdf file (char string) or netcdf object
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| 25 | % additional arguments:
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[648] | 26 | % -no additional arguments: all the variables of the netcdf file are read.
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[140] | 27 | % -a cell array, ListVarName, made of char strings {'VarName1', 'VarName2',...} )
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[648] | 28 | % if ListVarName=[] or {}, no variable value is read (only global attributes and list of variables and dimensions)
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[140] | 29 | % if ListVarName is absent, or = '*', ALL the variables of the netcdf file are read.
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| 30 | % if ListVarName is a cell array with n lines, the set of variables will be sought by order of priority
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| 31 | % in the list, while output names will be set by the first line
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[56] | 32 | % - the string 'ListGlobalAttribute' followed by a list of attribute names: reads only these attributes (fast reading)
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[648] | 33 | % - the string 'TimeVarName', a string (the variable considered as
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| 34 | % time), an integer (the selected time index), the cell of other
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| 35 | % input variables limited to the input time index (considered as the last index of arrays)
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| 36 | % - the string 'TimeDimName', a string (the dimension considered as time), an integer (the selected time index), the cell of other
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| 37 | % input variables limited to the input time index (considered as the last index of arrays)
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| 38 |
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[8] | 39 | %AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
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| 40 | % Copyright Joel Sommeria, 2008, LEGI / CNRS-UJF-INPG, sommeria@coriolis-legi.org.
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| 41 | %AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
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| 42 | % This file is part of the toolbox UVMAT.
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| 43 | %
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| 44 | % UVMAT is free software; you can redistribute it and/or modify
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| 45 | % it under the terms of the GNU General Public License as published by
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| 46 | % the Free Software Foundation; either version 2 of the License, or
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| 47 | % (at your option) any later version.
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| 48 | %
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| 49 | % UVMAT is distributed in the hope that it will be useful,
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| 50 | % but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 51 | % MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 52 | % GNU General Public License (file UVMAT/COPYING.txt) for more details.
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| 53 | %AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
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| 54 |
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| 55 | function [Data,var_detect,ichoice]=nc2struct(nc,varargin)
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[56] | 56 |
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[55] | 57 | if isempty(varargin)
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[56] | 58 | varargin{1}='*';
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[8] | 59 | end
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| 60 | hhh=which('netcdf.open');% look for built-in matlab netcdf library
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| 61 |
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| 62 | if ~isequal(hhh,'')
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[140] | 63 | %% default output
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| 64 | Data=[];%default
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| 65 | var_detect=[];%default
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[8] | 66 | ichoice=[];%default
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[140] | 67 |
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| 68 | %% open the netcdf file for reading
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[8] | 69 | if ischar(nc)
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| 70 | if exist(nc,'file')
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[150] | 71 | try
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[8] | 72 | nc=netcdf.open(nc,'NC_NOWRITE');
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| 73 | testfile=1;
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[227] | 74 | catch ME
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| 75 | Data.Txt=['ERROR opening ' nc ': ' ME.message];
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[150] | 76 | return
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| 77 | end
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[8] | 78 | else
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| 79 | Data.Txt=['ERROR:file ' nc ' does not exist'];
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| 80 | return
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| 81 | end
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| 82 | else
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| 83 | testfile=0;
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| 84 | end
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[140] | 85 |
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[227] | 86 | %% short reading option for global attributes only, if the first argument is 'ListGlobalAttribute'
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[56] | 87 | if isequal(varargin{1},'ListGlobalAttribute')
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| 88 | for ilist=2:numel(varargin)
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[227] | 89 | valuestr=[];%default
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[45] | 90 | try
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[56] | 91 | valuestr = netcdf.getAtt(nc,netcdf.getConstant('NC_GLOBAL'),varargin{ilist});
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[227] | 92 | catch ME
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[45] | 93 | end
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[56] | 94 | eval(['Data.' varargin{ilist} '=valuestr;'])
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[8] | 95 | end
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| 96 | netcdf.close(nc)
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| 97 | return
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| 98 | end
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[648] | 99 |
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| 100 | %% time variable or dimension
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| 101 | input_index=1;
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| 102 | if isequal(varargin{1},'TimeVarName')
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| 103 | TimeVarName=varargin{2};
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| 104 | TimeVarIndex=varargin{3};
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| 105 | input_index=4;
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| 106 | elseif isequal(varargin{1},'TimeDimName')
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| 107 | TimeDimName=varargin{2};
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| 108 | TimeVarIndex=varargin{3};
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| 109 | input_index=4;
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| 110 | end
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[8] | 111 |
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[140] | 112 | %% full reading: get the nbre of dimensions, variables, global attributes
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[648] | 113 | ListVarName=varargin{input_index};
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[140] | 114 | [ndims,nvars,ngatts]=netcdf.inq(nc);%nbre of dimensions, variables, global attributes, in the netcdf file
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[8] | 115 |
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[140] | 116 | %% -------- read all global attributes (constants)-----------
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[8] | 117 | Data.ListGlobalAttribute={};%default
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[527] | 118 | att_key=cell(1,ngatts);%default
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[8] | 119 | for iatt=1:ngatts
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| 120 | keystr= netcdf.inqAttName(nc,netcdf.getConstant('NC_GLOBAL'),iatt-1);
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[227] | 121 | valuestr = netcdf.getAtt(nc,netcdf.getConstant('NC_GLOBAL'),keystr);
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| 122 | keystr=regexprep(keystr,{'\','/','\.','-',' '},{'','','','',''});%remove '\','.' or '-' if exists
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| 123 | if strcmp(keystr(1),'_')
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| 124 | keystr(1)=[];
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| 125 | end
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| 126 | try
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[236] | 127 | if ischar(valuestr) %& length(valuestr)<200 & double(valuestr)<=122 & double(valuestr)>=48 %usual characters
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[227] | 128 | eval(['Data.' keystr '=''' valuestr ''';'])
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[8] | 129 | elseif isnumeric(valuestr)
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| 130 | eval(['Data.' keystr '=valuestr;'])
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[227] | 131 | else
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| 132 | eval(['Data.' keystr '='';'])
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[8] | 133 | end
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[227] | 134 | att_key{iatt}=keystr;
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| 135 | catch ME
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| 136 | att_key{iatt}=['attr_' num2str(iatt)];
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[527] | 137 | Data.(att_key{iatt})=[];
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[8] | 138 | end
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| 139 | end
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| 140 | Data.ListGlobalAttribute=att_key;
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| 141 |
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[140] | 142 | %% -------- read dimension names-----------
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[527] | 143 | ListDimNameNetcdf=cell(1,ndims);
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| 144 | dim_value=zeros(1,ndims);
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[140] | 145 | for idim=1:ndims %loop on the dimensions of the netcdf file
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| 146 | [ListDimNameNetcdf{idim},dim_value(idim)] = netcdf.inqDim(nc,idim-1);%get name and value of each dimension
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[8] | 147 | end
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[140] | 148 | if ~isempty(ListDimNameNetcdf)
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| 149 | flag_used=zeros(1,ndims);%initialize the flag indicating the selected dimensions in the list (0=unused)
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[8] | 150 | end
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[648] | 151 | if isequal(varargin{1},'TimeDimName')% time dimension introduced
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| 152 | TimeDimIndex=find(strcmp(varargin{2},ListDimNameNetcdf));
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| 153 | if isempty(TimeDimIndex)
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| 154 | Data.Txt=['requested time dimension ' varargin{2} ' not found'];
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| 155 | return
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| 156 | end
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| 157 | if dim_value(TimeDimIndex)<varargin{3}
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| 158 | Data.Txt=['requested time index ' num2str(varargin{3}) ' exceeds matrix dimension'];
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| 159 | return
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| 160 | end
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| 161 | end
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[8] | 162 |
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[140] | 163 | %% -------- read names of variables -----------
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[527] | 164 | ListVarNameNetcdf=cell(1,nvars); %default
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| 165 | dimids=cell(1,nvars);
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| 166 | nbatt=zeros(1,nvars);
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[140] | 167 | for ncvar=1:nvars %loop on the variables of the netcdf file
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| 168 | %get name, type, dimensions and attribute numbers of each variable
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[693] | 169 | [ListVarNameNetcdf{ncvar},xtype(ncvar),dimids{ncvar},nbatt(ncvar)] = netcdf.inqVar(nc,ncvar-1);
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[8] | 170 | end
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| 171 | testmulti=0;
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[140] | 172 | if isequal(ListVarName,'*')||isempty(ListVarName)
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| 173 | var_index=1:nvars; %all the variables are selected in the netcdf file
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| 174 | Data.ListVarName=ListVarNameNetcdf;
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| 175 | else %select input variables, if requested by the input ListVarName
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[517] | 176 | ind_remove=[];
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[527] | 177 | check_keep=ones(1,size(ListVarName,2));
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| 178 | for ivar=1:size(ListVarName,2) % check redondancy of variable names
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| 179 | if ~isempty(find(strcmp(ListVarName{1,ivar},ListVarName(1:ivar-1)), 1))
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| 180 | check_keep(ivar)=0;% the variable #ivar is already in the list
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[517] | 181 | end
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| 182 | end
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[527] | 183 | ListVarName=ListVarName(:,logical(check_keep));
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[8] | 184 | sizvar=size(ListVarName);
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[140] | 185 | testmulti=(sizvar(1)>1);%test for multiple choice of variable ranked by order of priority
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[8] | 186 | var_index=zeros(1,sizvar(2));%default
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[140] | 187 | if testmulti %multiple choice of variable ranked by order of priority
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[8] | 188 | for iline=1:sizvar(1)
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[140] | 189 | search_index=find(strcmp(ListVarName{iline,1},ListVarNameNetcdf),1);%look for the first variable name in the list of netcdf variables
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| 190 | if ~isempty(search_index)
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| 191 | break % go to the next line
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[8] | 192 | end
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| 193 | end
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[140] | 194 | ichoice=iline-1;%selected line number in the list of input names of variables
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| 195 | else
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| 196 | iline=1;
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[8] | 197 | end
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[140] | 198 | for ivar=1:sizvar(2)
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| 199 | search_index=find(strcmp(ListVarName{iline,ivar},ListVarNameNetcdf),1);%look for the variable name in the list of netcdf file
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| 200 | if ~isempty(search_index)
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| 201 | var_index(ivar)=search_index;%index of the netcdf list corresponding to the input list index ivar
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[8] | 202 | end
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| 203 | end
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[140] | 204 | var_detect=(var_index~=0);%=1 for detected variables
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| 205 | list_index=find(var_index);% indices in the input list corresponding to a detected variable
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| 206 | var_index=var_index(list_index);% netcdf variable indices corresponding to the output list of read variable
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| 207 | Data.ListVarName=ListVarName(1,list_index);%the first line of ListVarName sets the output names of the variables
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[8] | 208 | end
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[140] | 209 |
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| 210 | %% get the dimensions and attributes associated to variables
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[648] | 211 | var_dim=cell(size(var_index));% initiate list of dimensions for variables
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[140] | 212 | for ivar=1:length(var_index)
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| 213 | var_dim{ivar}=dimids{var_index(ivar)}+1; %netcdf dimension indices used by the variable #ivar
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| 214 | Data.VarDimName{ivar}=ListDimNameNetcdf(var_dim{ivar});
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| 215 | flag_used(var_dim{ivar})=ones(size(var_dim{ivar}));%flag_used =1 for the indices of used dimensions
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[8] | 216 | for iatt=1:nbatt(var_index(ivar))
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| 217 | attname = netcdf.inqAttName(nc,var_index(ivar)-1,iatt-1);
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| 218 | valuestr= netcdf.getAtt(nc,var_index(ivar)-1,attname);
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[227] | 219 | attname=regexprep(attname,{'\','/','\.','-',' '},{'','','','',''});%remove '\','.' or '-' if exists
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| 220 | if strcmp(attname(1),'_')
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| 221 | attname(1)=[];
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| 222 | end
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| 223 | try
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[693] | 224 | if isempty(valuestr)
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| 225 | Data.VarAttribute{ivar}.(attname)=valuestr;
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[8] | 226 | end
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[227] | 227 | catch ME
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| 228 | display(attname)
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| 229 | display(valuestr)
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| 230 | display(ME.message)
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[693] | 231 | Data.VarAttribute{ivar}.(['atrr_' num2str(iatt)])='not read';
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[227] | 232 | end
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[8] | 233 | end
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| 234 | end
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[648] | 235 |
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[8] | 236 |
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[140] | 237 | %% select the dimensions used for the set of input variables
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| 238 | if ~isempty(var_index)
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| 239 | dim_index=find(flag_used);%list of netcdf dimensions indices corresponding to used dimensions
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[421] | 240 | Data.ListDimName=ListDimNameNetcdf(dim_index);
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| 241 | Data.DimValue=dim_value(dim_index);
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[8] | 242 | end
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[140] | 243 |
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| 244 | %% get the values of the input variables
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[8] | 245 | if ~isempty(ListVarName)
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[140] | 246 | for ivar=1:length(var_index)
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[8] | 247 | VarName=Data.ListVarName{ivar};
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[140] | 248 | VarName=regexprep(VarName,'-',''); %suppress '-' if it exists in the netcdf variable name
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[648] | 249 | CheckSub=0;
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| 250 | if input_index==4% if a dimension is selected as time
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| 251 | if var_dim{ivar}(end)==TimeDimIndex% if the last dim of the variable is the time
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| 252 | slice_length=prod(var_dim{ivar}(1:end-1));
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[693] | 253 | Data.(VarName)=double(netcdf.getVar(nc,var_index(ivar)-1,TimeIndex*slice_length,slice_length)); %read the variable data
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[648] | 254 | CheckSub=1;
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| 255 | end
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| 256 | end
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| 257 | if ~CheckSub
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[693] | 258 | Data.(VarName)=netcdf.getVar(nc,var_index(ivar)-1); %read the whole variable data
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| 259 | if xtype(var_index(ivar))==5
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| 260 | Data.(VarName)=double(Data.(VarName)); %transform to double for single pecision
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| 261 | end
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[648] | 262 | end
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[8] | 263 | end
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| 264 | end
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[693] | 265 | Data.VarType=xtype(var_index);
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[140] | 266 |
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| 267 | %% -------- close fle-----------
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[8] | 268 | if testfile==1
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| 269 | netcdf.close(nc)
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| 270 | end
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[140] | 271 |
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| 272 | %% old netcdf library
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[8] | 273 | else
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| 274 | [Data,var_detect,ichoice]=nc2struct_toolbox(nc,varargin);
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| 275 | end |
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