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340 lines
11 KiB
Matlab
340 lines
11 KiB
Matlab
% Call function without arguments for a detailed explanation of its use
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% Filename: $RCSfile: cbfread.m,v $
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%
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% $Revision: 1.2 $ $Date: 2011/05/09 13:03:07 $
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% $Author: $
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% $Tag: $
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%
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% Description:
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% Macro for reading Crystallographic Binary File (CBF) files written by the
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% Pilatus detector control program camserver.
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%
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% Note:
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% Compile the C-program cbf_uncompress using mex (see header of
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% cbf_uncompress.c) to use it for uncompression instead of the slower
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% Matlab code.
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% Currently this routine supports only the subset of CBF features needed to
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% read the Pilatus detector data.
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% Call without arguments for a brief help text.
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%
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% Dependencies:
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% - image_read_set_default
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% - fopen_until_exists
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% - get_hdr_val
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% - compiling cbf_uncompress.c increases speed but is not mandatory
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%
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%
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% history:
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%
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% May 9th 2008: 1st version
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%*-----------------------------------------------------------------------*
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%| |
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%| Except where otherwise noted, this work is licensed under a |
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%| Creative Commons Attribution-NonCommercial-ShareAlike 4.0 |
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%| International (CC BY-NC-SA 4.0) license. |
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%| |
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%| Copyright (c) 2017 by Paul Scherrer Institute (http://www.psi.ch) |
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%| |
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%| Author: CXS group, PSI |
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%*-----------------------------------------------------------------------*
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% You may use this code with the following provisions:
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%
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% If the code is fully or partially redistributed, or rewritten in another
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% computing language this notice should be included in the redistribution.
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%
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% If this code, or subfunctions or parts of it, is used for research in a
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% publication or if it is fully or partially rewritten for another
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% computing language the authors and institution should be acknowledged
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% in written form in the publication: “Data processing was carried out
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% using the “cSAXS matlab package” developed by the CXS group,
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% Paul Scherrer Institut, Switzerland.”
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% Variations on the latter text can be incorporated upon discussion with
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% the CXS group if needed to more specifically reflect the use of the package
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% for the published work.
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%
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% A publication that focuses on describing features, or parameters, that
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% are already existing in the code should be first discussed with the
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% authors.
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%
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% This code and subroutines are part of a continuous development, they
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% are provided “as they are” without guarantees or liability on part
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% of PSI or the authors. It is the user responsibility to ensure its
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% proper use and the correctness of the results.
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function [frame,vararg_remain] = cbfread(filename,varargin)
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import io.*
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import io.CBF.*
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import utils.char_to_cellstr
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import utils.fopen_until_exists
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import utils.get_hdr_val
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% 0: no debug information
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% 1: some feedback
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% 2: a lot of information
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debug_level = 0;
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% initialize return argument
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frame = struct('header',[], 'data',[]);
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% check minimum number of input arguments
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if (nargin < 1)
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image_read_sub_help(mfilename,'cbf');
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error('At least the filename has to be specified as input parameter.');
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end
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% accept cell array with name/value pairs as well
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no_of_in_arg = nargin;
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if (nargin == 2)
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if (isempty(varargin))
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% ignore empty cell array
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no_of_in_arg = no_of_in_arg -1;
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else
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if (iscell(varargin{1}))
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% use a filled one given as first and only variable parameter
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varargin = varargin{1};
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no_of_in_arg = 1 + length(varargin);
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end
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end
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end
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% check number of input arguments
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if (rem(no_of_in_arg,2) ~= 1)
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error('The optional parameters have to be specified as ''name'',value pairs');
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end
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% set default values for the variable input arguments and parse the named
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% parameters:
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vararg = cell(0,0);
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for ind = 1:2:length(varargin)
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name = varargin{ind};
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value = varargin{ind+1};
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switch name
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otherwise
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% pass further arguments on to fopen_until_exists
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vararg{end+1} = name;
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vararg{end+1} = value;
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end
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end
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% expected maximum length for the text header
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max_header_length = 4096;
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% end of header signature
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eoh_signature = char([ 12 26 4 213 ]);
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% CBF file signature
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cbf_signature = '###CBF: VERSION';
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% Calling an external C routine for uncompressing the data did save about
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% 30% time on a specific machine.
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% The C-routine is used if a compiled version of it exists.
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% See the header of cbf_uncompress.c for information on how to compile the
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% C file using mex in Matlab.
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c_routine = exist('+io/+CBF/cbf_uncompress.mexa64', 'file') || ...
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~isempty(which('cbf_uncompress')) ; % faster than which('cbf_uncompress')
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% try to open the data file
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if (debug_level >= 1)
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fprintf('Opening %s.\n',filename);
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end
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[fid,vararg_remain] = fopen_until_exists(filename,vararg);
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if (fid < 0)
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return;
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end
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% read all data at once
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[fdat,fcount] = fread(fid,'uint8=>uint8');
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% close input data file
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fclose(fid);
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if (debug_level >= 2)
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fprintf('%d data bytes read\n',fcount);
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end
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% search for end of header signature within the expected maximum length of
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% a header
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end_of_header_pos = ...
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strfind( fdat(1:min(max_header_length,length(fdat)))',...
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eoh_signature );
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if (length(end_of_header_pos) < 1)
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cbf_error(filename,'no header end signature found');
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return;
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end
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if (debug_level >= 2)
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fprintf('Header length is %d bytes.\n',end_of_header_pos -1);
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end
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% return the complete header as lines of a cell array
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frame.header = char_to_cellstr( char(fdat(1:(end_of_header_pos-1))') );
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% check for CBF signature
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if (~strncmp(cbf_signature,frame.header{1},length(cbf_signature)))
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cbf_error(filename,[ 'CBF signature ''' cbf_signature ...
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''' not found in first line ''' frame.header{1} '''' ]);
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end
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% extract the mandatory information for decompression from the header
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no_of_bin_bytes = get_hdr_val(frame.header,'X-Binary-Size:','%f',1);
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dim1 = get_hdr_val(frame.header,'X-Binary-Size-Fastest-Dimension:','%f',1);
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dim2 = get_hdr_val(frame.header,'X-Binary-Size-Second-Dimension:','%f',1);
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el_type = get_hdr_val(frame.header,'X-Binary-Element-Type: "','%[^"]',1);
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switch (el_type)
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case 'signed 32-bit integer'
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bytes_per_pixel = 4;
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otherwise
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cbf_error(filename,[ 'unknown element type ' el_type ]);
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end
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compr_type = get_hdr_val(frame.header,'conversions="','%[^"]',1);
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switch (compr_type)
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case 'x-CBF_BYTE_OFFSET'
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compression_type = 1;
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case 'x-CBF_NONE'
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compression_type = 2;
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otherwise
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cbf_error(filename,[ 'unknown compression type ' compr_type ]);
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end
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if (debug_level >= 2)
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fprintf('Frame dimensions are %d x %d.\n',dim2,dim1);
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end
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% uncompress the binary data
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[frame.data] = ...
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extract_frame(fdat((end_of_header_pos+length(eoh_signature)):end),...
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dim1,dim2,no_of_bin_bytes,compression_type,...
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filename,...
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c_routine,debug_level);
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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function [] = cbf_error(filename,text)
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fprintf('cbfread of %s:\n %s\n',filename,text);
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return;
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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function [frame] = ...
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extract_frame(dat_in,...
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dim1,dim2,no_of_in_bytes,compression_type,...
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filename,...
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c_routine,debug_level)
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import io.*
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import io.CBF.*
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import utils.char_to_cellstr
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import utils.fopen_until_exists
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import utils.get_hdr_val
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% uncompressed data are copied directly
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if (compression_type == 2)
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% initialize return array
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frame = zeros(dim1,dim2);
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% copy uncompressed data
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for (ind_out = 1:(dim1*dim2))
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ind_in = ind_out *4 -3;
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frame(ind_out) = double(dat_in(ind_in)) + ...
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256 * double(dat_in(ind_in+1)) + ...
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65536 * double(dat_in(ind_in+2)) + ...
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16777216 * double(dat_in(ind_in+3));
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end
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return;
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end
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if (c_routine)
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if (debug_level >= 2)
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fprintf('C routine called.\n');
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end
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[frame] = ...
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cbf_uncompress(dat_in,dim1,dim2,no_of_in_bytes,compression_type);
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return;
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end
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if (debug_level >= 2)
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fprintf('Matlab routine called.\n');
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end
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% initialize return array
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frame = zeros(dim1,dim2);
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% only byte-offset compression is supported
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if (compression_type ~= 1)
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cbf_error(filename,...
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['extract_frame does not support compression type no. ' ...
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num2str(compression_type)]);
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end
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% In byte-offset compression the difference to the previous pixel value is
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% stored as a byte, 16-bit integer or 32-bit integer, depending on its
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% size.
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% The sizes above one byte are indicated by the escape sequence -1 in the
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% previous data format, i.e, a 32-bit integer is preceded by the sequence %
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% 0x80 (too large for a byte)
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% 0x8000 (too large for a 16-bit integer).
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ind_out = 1;
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ind_in = 1;
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val_curr = 0;
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val_diff = 0;
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while (ind_in <= no_of_in_bytes)
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val_diff = double(dat_in(ind_in));
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ind_in = ind_in +1;
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if (val_diff ~= 128)
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% if not escaped as -128 (0x80=128) use the current byte as
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% difference, with manual complement to emulate the sign
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if (val_diff >= 128)
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val_diff = val_diff - 256;
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end
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else
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% otherwise check for 16-bit integer value
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if ((dat_in(ind_in) ~= 0) || (dat_in(ind_in+1) ~= 128))
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% if not escaped as -32768 (0x8000) use the current 16-bit integer
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% as difference
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val_diff = double(dat_in(ind_in)) + ...
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256 * double(dat_in(ind_in+1));
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% manual complement to emulate the sign
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if (val_diff >= 32768)
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val_diff = val_diff - 65536;
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end
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ind_in = ind_in +2;
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else
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ind_in = ind_in +2;
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% if everything else failed use the current 32-bit value as
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% difference
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val_diff = double(dat_in(ind_in)) + ...
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256 * double(dat_in(ind_in+1)) + ...
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65536 * double(dat_in(ind_in+2)) + ...
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16777216 * double(dat_in(ind_in+3));
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% manual complement to emulate the sign
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if (val_diff >= 2147483648)
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val_diff = val_diff - 4294967296;
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end
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ind_in = ind_in +4;
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end
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end
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val_curr = val_curr + val_diff;
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frame(ind_out) = val_curr;
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ind_out = ind_out +1;
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end
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if (ind_out-1 ~= dim1*dim2)
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cbf_error(filename,[ 'mismatch between ' num2str(ind_out-1) ...
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' bytes after decompression with ' num2str(dim1*dim2) ...
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' expected ones' ]);
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end
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% if (~original_orientation)
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% frame.data = frame.data(end:-1:1,end:-1:1)';
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% end
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