1 | %VERBOSE class definition
|
---|
2 | %
|
---|
3 | % Available verbosity levels:
|
---|
4 | % mprocessor : model processing
|
---|
5 | % module : modules
|
---|
6 | % solution : solution sequence
|
---|
7 | % solver : solver info (extensive)
|
---|
8 | % convergence : convergence criteria
|
---|
9 | % control : control method
|
---|
10 | % qmu : sensitivity analysis
|
---|
11 | %
|
---|
12 | % Usage:
|
---|
13 | % verbose=verbose();
|
---|
14 | % verbose=verbose(3);
|
---|
15 | % verbose=verbose('001100');
|
---|
16 | % verbose=verbose('module',true,'solver',false);
|
---|
17 |
|
---|
18 | %WARNING: some parts of this file are Synchronized with src/c/shared/Numerics/Verbosity.h
|
---|
19 | % Do not modify these sections. See src/c/shared/Numerics/README for more info
|
---|
20 |
|
---|
21 | classdef verbose
|
---|
22 | properties (SetAccess=public)
|
---|
23 | % {{{1
|
---|
24 | %BEGINFIELDS
|
---|
25 | mprocessor = false;
|
---|
26 | module = false;
|
---|
27 | solution = false;
|
---|
28 | solver = false;
|
---|
29 | convergence = false;
|
---|
30 | control = false;
|
---|
31 | qmu = false;
|
---|
32 | %ENDFIELDS
|
---|
33 | % }}}
|
---|
34 | end
|
---|
35 | %}}}
|
---|
36 | methods
|
---|
37 | function verbose=verbose(varargin) % {{{1
|
---|
38 |
|
---|
39 | if nargin==1,
|
---|
40 |
|
---|
41 | binary=varargin{1};
|
---|
42 | if ischar(binary),
|
---|
43 | if strcmpi(binary,'all'),
|
---|
44 | binary=2^11-1; %all ones
|
---|
45 | verbose=BinaryToVerbose(verbose,binary);
|
---|
46 | verbose.solver=false; %Do not use by default
|
---|
47 | else
|
---|
48 | binary=bin2dec(binary);
|
---|
49 | verbose=BinaryToVerbose(verbose,binary);
|
---|
50 | end
|
---|
51 | end
|
---|
52 | else
|
---|
53 |
|
---|
54 | options=pairoptions(varargin{:});
|
---|
55 | for i=1:size(options.list,1),
|
---|
56 | fieldname=options.list{i,1};
|
---|
57 | fieldvalue=options.list{i,2};
|
---|
58 | if ismember(fieldname,properties('verbose')),
|
---|
59 | if islogical(fieldvalue) | isnumeric(fieldvalue),
|
---|
60 | verbose.(fieldname)=logical(fieldvalue);
|
---|
61 | else
|
---|
62 | error('verbose supported field values are logicals only (true or false)');
|
---|
63 | end
|
---|
64 | else
|
---|
65 | disp(['''' fieldname ''' is not a property of verbose verbose']);
|
---|
66 | end
|
---|
67 | end
|
---|
68 |
|
---|
69 | end
|
---|
70 | end
|
---|
71 | %}}}
|
---|
72 | function binary=VerboseToBinary(verbose) % {{{1
|
---|
73 |
|
---|
74 | %BEGINVERB2BIN
|
---|
75 | binary=0;
|
---|
76 | if (verbose.mprocessor), binary=bitor(binary,1); end
|
---|
77 | if (verbose.module), binary=bitor(binary,2); end
|
---|
78 | if (verbose.solution), binary=bitor(binary,4); end
|
---|
79 | if (verbose.solver), binary=bitor(binary,8); end
|
---|
80 | if (verbose.convergence), binary=bitor(binary,16); end
|
---|
81 | if (verbose.control), binary=bitor(binary,32); end
|
---|
82 | if (verbose.qmu), binary=bitor(binary,64); end
|
---|
83 | %ENDVERB2BIN
|
---|
84 |
|
---|
85 | end
|
---|
86 | %}}}
|
---|
87 | function verbose=BinaryToVerbose(verbose,binary) % {{{1
|
---|
88 |
|
---|
89 | %BEGINBIN2VERB
|
---|
90 | if bitand(binary,1), verbose.mprocessor=true; else verbose.mprocessor=false; end
|
---|
91 | if bitand(binary,2), verbose.module=true; else verbose.module=false; end
|
---|
92 | if bitand(binary,4), verbose.solution=true; else verbose.solution=false; end
|
---|
93 | if bitand(binary,8), verbose.solver=true; else verbose.solver=false; end
|
---|
94 | if bitand(binary,16), verbose.convergence=true; else verbose.convergence=false; end
|
---|
95 | if bitand(binary,32), verbose.control=true; else verbose.control=false; end
|
---|
96 | if bitand(binary,64), verbose.qmu=true; else verbose.qmu=false; end
|
---|
97 | %ENDBIN2VERB
|
---|
98 |
|
---|
99 | end
|
---|
100 | %}}}
|
---|
101 | function checkconsistency(obj,md,solution,analyses) % {{{
|
---|
102 |
|
---|
103 | end % }}}
|
---|
104 | function disp(verbose) % {{{1
|
---|
105 |
|
---|
106 | %BEGINDISP
|
---|
107 | disp(sprintf('class ''%s'' = ',class(verbose)));
|
---|
108 | disp(sprintf(' %15s : %s','mprocessor',mat2str(verbose.mprocessor)));
|
---|
109 | disp(sprintf(' %15s : %s','module',mat2str(verbose.module)));
|
---|
110 | disp(sprintf(' %15s : %s','solution',mat2str(verbose.solution)));
|
---|
111 | disp(sprintf(' %15s : %s','solver',mat2str(verbose.solver)));
|
---|
112 | disp(sprintf(' %15s : %s','convergence',mat2str(verbose.convergence)));
|
---|
113 | disp(sprintf(' %15s : %s','control',mat2str(verbose.control)));
|
---|
114 | disp(sprintf(' %15s : %s','qmu',mat2str(verbose.qmu)));
|
---|
115 | %ENDDISP
|
---|
116 |
|
---|
117 | end
|
---|
118 | %}}}
|
---|
119 | function marshall(obj,fid) % {{{
|
---|
120 | WriteData(fid,'data',VerboseToBinary(obj),'enum',VerboseEnum,'format','Integer');
|
---|
121 | end % }}}
|
---|
122 | end
|
---|
123 | end
|
---|