dynare/matlab/print_expectations.m

351 lines
14 KiB
Matlab

function print_expectations(eqname, expectationmodelname, expectationmodelkind, withcalibration)
% Prints the exansion of the VAR_EXPECTATION or PAC_EXPECTATION term in files.
%
% INPUTS
% - eqname [string] Name of the equation.
% - epxpectationmodelname [string] Name of the expectation model.
% - expectationmodelkind [string] Kind of the expectation model.
% - withcalibration [logical] Prints calibration if true.
%
% OUTPUTS
% None
%
% REMARKS
% The routine creates two text files
%
% - {expectationmodelname}-parameters.inc which contains the declaration of the parameters specific to the expectation model kind term.
% - {expectationmodelname}-expression.inc which contains the expanded version of the expectation model kind term.
%
% These routines are saved under the {modfilename}/model/{expectationmodelkind} subfolder, and can be
% used after in another mod file (ie included with the macro directive @#include).
%
% The variable expectationmodelkind can take two values 'var' or 'pac'.
% Copyright (C) 2018-2019 Dynare Team
%
% This file is part of Dynare.
%
% Dynare is free software: you can redistribute it and/or modify
% it under the terms of the GNU General Public License as published by
% the Free Software Foundation, either version 3 of the License, or
% (at your option) any later version.
%
% Dynare is distributed in the hope that it will be useful,
% but WITHOUT ANY WARRANTY; without even the implied warranty of
% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
% GNU General Public License for more details.
%
% You should have received a copy of the GNU General Public License
% along with Dynare. If not, see <http://www.gnu.org/licenses/>.
global M_
if nargin<4 || isempty(withcalibration)
withcalibration = true;
end
% Check that the first input is a row character array.
if ~isrow(eqname)==1 || ~ischar(eqname)
error('First input argument must be a row character array.')
end
% Check that the second input is a row character array.
if ~isrow(expectationmodelname)==1 || ~ischar(expectationmodelname)
error('Second input argument must be a row character array.')
end
% Check that the third input is a row character array.
if ~isrow(expectationmodelkind)==1 || ~ischar(expectationmodelkind)
error('Third input argument must be a row character array.')
end
% Check that the value of the second input is correct.
if ~ismember(expectationmodelkind, {'var', 'pac'})
error('Wrong value for the second input argument.')
end
% Check that the model exists.
switch expectationmodelkind
case 'var'
if ~isfield(M_.var_expectation, expectationmodelname)
error('VAR_EXPECTATION_MODEL %s is not defined.', expectationmodelname)
else
expectationmodelfield = 'var_expectation';
end
case 'pac'
if ~isfield(M_.pac, expectationmodelname)
error('PAC_EXPECTATION_MODEL %s is not defined.', expectationmodelname)
else
expectationmodelfield = 'pac';
end
otherwise
end
if isequal(expectationmodelkind, 'pac')
% Get the equation tag (in M_.pac.(pacmodl).equations)
eqtag = M_.pac.(expectationmodelname).tag_map{strcmp(M_.pac.(expectationmodelname).tag_map(:,1), eqname),2};
end
% Get the expectation model description
expectationmodel = M_.(expectationmodelfield).(expectationmodelname);
% Get the name of the associated VAR model and test its existence.
if ~isfield(M_.(expectationmodel.auxiliary_model_type), expectationmodel.auxiliary_model_name)
switch expectationmodelkind
case 'var'
error('Unknown VAR/TREND_COMPONENT model (%s) in VAR_EXPECTATION_MODEL (%s)!', expectationmodel.auxiliary_model_name, expectationmodelname)
case 'pac'
error('Unknown VAR/TREND_COMPONENT model (%s) in PAC_EXPECTATION_MODEL (%s)!', expectationmodel.auxiliary_model_name, expectationmodelname)
otherwise
end
end
auxmodel = M_.(expectationmodel.auxiliary_model_type).(expectationmodel.auxiliary_model_name);
%
% First print the list of parameters appearing in the VAR_EXPECTATION/PAC_EXPECTATION term.
%
if ~exist(sprintf('%s/model/%s', M_.fname, [expectationmodelkind '-expectations']), 'dir')
mkdir(sprintf('%s/model/%s', M_.fname, [expectationmodelkind '-expectations']))
end
if isequal(expectationmodelkind, 'pac')
filename = sprintf('%s/model/%s/%s-%s-parameters.inc', M_.fname, [expectationmodelkind '-expectations'], eqtag, expectationmodelname);
else
filename = sprintf('%s/model/%s/%s-parameters.inc', M_.fname, [expectationmodelkind '-expectations'], expectationmodelname);
end
fid = fopen(filename, 'w');
fprintf(fid, '// This file has been generated by dynare (%s).\n\n', datestr(now));
switch expectationmodelkind
case 'var'
parameter_declaration = 'parameters';
for i=1:length(expectationmodel.param_indices)
parameter_declaration = sprintf('%s %s', parameter_declaration, M_.param_names{expectationmodel.param_indices(i)});
end
fprintf(fid, '%s;\n\n', parameter_declaration);
if withcalibration
for i=1:length(expectationmodel.param_indices)
fprintf(fid, '%s = %s;\n', M_.param_names{expectationmodel.param_indices(i)}, num2str(M_.params(expectationmodel.param_indices(i)), 16));
end
end
case 'pac'
if ~isempty(expectationmodel.equations.(eqtag).h0_param_indices)
parameter_declaration = 'parameters';
for i=1:length(expectationmodel.equations.(eqtag).h0_param_indices)
parameter_declaration = sprintf('%s %s', parameter_declaration, M_.param_names{expectationmodel.equations.(eqtag).h0_param_indices(i)});
end
fprintf(fid, '%s;\n\n', parameter_declaration);
if withcalibration
for i=1:length(expectationmodel.equations.(eqtag).h0_param_indices)
fprintf(fid, '%s = %s;\n', M_.param_names{expectationmodel.equations.(eqtag).h0_param_indices(i)}, num2str(M_.params(expectationmodel.equations.(eqtag).h0_param_indices(i)), 16));
end
end
end
if ~isempty(expectationmodel.equations.(eqtag).h1_param_indices)
parameter_declaration = 'parameters';
for i=1:length(expectationmodel.equations.(eqtag).h1_param_indices)
parameter_declaration = sprintf('%s %s', parameter_declaration, M_.param_names{expectationmodel.equations.(eqtag).h1_param_indices(i)});
end
fprintf(fid, '%s;\n\n', parameter_declaration);
if withcalibration
for i=1:length(expectationmodel.equations.(eqtag).h1_param_indices)
fprintf(fid, '%s = %s;\n', M_.param_names{expectationmodel.equations.(eqtag).h1_param_indices(i)}, num2str(M_.params(expectationmodel.equations.(eqtag).h1_param_indices(i)), 16));
end
end
end
if isfield(expectationmodel, 'growth_neutrality_param_index')
fprintf(fid, '\n');
fprintf(fid, 'parameters %s;\n\n', M_.param_names{expectationmodel.growth_neutrality_param_index});
if withcalibration
fprintf(fid, '%s = %s;\n', M_.param_names{expectationmodel.growth_neutrality_param_index}, num2str(M_.params(expectationmodel.growth_neutrality_param_index), 16));
end
growth_correction = true;
else
growth_correction = false;
end
otherwise
end
fclose(fid);
skipline()
fprintf('Parameters declarations and calibrations are saved in %s.\n', filename);
%
% Second print the expanded VAR_EXPECTATION/PAC_EXPECTATION term.
%
if isequal(expectationmodelkind, 'pac')
filename = sprintf('%s/model/%s/%s-%s-expression.inc', M_.fname, [expectationmodelkind '-expectations'], eqtag, expectationmodelname);
else
filename = sprintf('%s/model/%s/%s-expression.inc', M_.fname, [expectationmodelkind '-expectations'], expectationmodelname);
end
fid = fopen(filename, 'w');
fprintf(fid, '// This file has been generated by dynare (%s).\n', datestr(now));
switch expectationmodelkind
case 'var'
expression = write_expectations(eqname, expectationmodelname, expectationmodelkind, true);
case 'pac'
[expression, growthneutralitycorrection] = write_expectations(eqname, expectationmodelname, expectationmodelkind, true);
end
fprintf(fid, '%s', expression);
fclose(fid);
fprintf('Expectation unrolled expression is saved in %s.\n', filename);
%
% Second bis print the PAC growth neutrality correction term (if any).
%
if isequal(expectationmodelkind, 'pac') && growth_correction
filename = sprintf('%s/model/%s/%s-%s-growth-neutrality-correction.inc', M_.fname, [expectationmodelkind '-expectations'], eqtag, expectationmodelname);
fid = fopen(filename, 'w');
fprintf(fid, '// This file has been generated by dynare (%s).\n', datestr(now));
fprintf(fid, '%s', growthneutralitycorrection);
fclose(fid);
fprintf('Growth neutrality correction is saved in %s.\n', filename);
end
%
% Third print a routine for evaluating VAR_EXPECTATION/PAC_EXPECTATION term (returns a dseries object).
%
kind = [expectationmodelkind '_expectations'];
mkdir(sprintf('+%s/+%s/+%s', M_.fname, kind, expectationmodelname));
if isequal(expectationmodelkind, 'pac')
filename = sprintf('+%s/+%s/+%s/%s_evaluate.m', M_.fname, kind, expectationmodelname, eqtag);
else
filename = sprintf('+%s/+%s/+%s/evaluate.m', M_.fname, kind, expectationmodelname);
end
fid = fopen(filename, 'w');
if isequal(expectationmodelkind, 'pac')
fprintf(fid, 'function ds = %s_evaluate(dbase)\n\n', eqtag);
else
fprintf(fid, 'function ds = evaluate(dbase)\n\n');
end
if isequal(expectationmodelkind, 'pac')
fprintf(fid, '%% Evaluates %s term (%s in %s).\n', kind, expectationmodelname, eqname);
else
fprintf(fid, '%% Evaluates %s term (%s).\n', kind, expectationmodelname);
end
fprintf(fid, '%%\n');
fprintf(fid, '%% INPUTS\n');
fprintf(fid, '%% - dbase [dseries] databse containing all the variables appearing in the auxiliary model for the expectation.\n');
fprintf(fid, '%%\n');
fprintf(fid, '%% OUTPUTS\n');
fprintf(fid, '%% - ds [dseries] the expectation term .\n');
fprintf(fid, '%%\n');
fprintf(fid, '%% REMARKS\n');
fprintf(fid, '%% The name of the appended variable in dbase is the declared name for the (PAC/VAR) expectation model.\n\n');
fprintf(fid, '%% This file has been generated by dynare (%s).\n\n', datestr(now));
fprintf(fid, 'ds = dseries();\n\n');
id = 0;
maxlag = max(auxmodel.max_lag);
if isequal(expectationmodel.auxiliary_model_type, 'trend_component')
% Need to add a lag since the error correction equations are rewritten in levels.
maxlag = maxlag+1;
end
for i=1:maxlag
for j=1:length(auxmodel.list_of_variables_in_companion_var)
id = id+1;
variable = auxmodel.list_of_variables_in_companion_var{j};
transformations = {};
ida = get_aux_variable_id(variable);
op = 0;
while ida
op = op+1;
if isequal(M_.aux_vars(ida).type, 8)
transformations(op) = {'diff'};
variable = M_.endo_names{M_.aux_vars(ida).orig_index};
ida = get_aux_variable_id(variable);
elseif isequal(M_.aux_vars(ida).type, 10)
transformations(op) = {M_.aux_vars(ida).unary_op};
variable = M_.endo_names{M_.aux_vars(ida).orig_index};
ida = get_aux_variable_id(variable);
else
error('This case is not implemented.')
end
end
switch expectationmodelkind
case 'var'
parameter = M_.params(expectationmodel.param_indices(id));
case 'pac'
parameter = 0;
if ~isempty(expectationmodel.equations.(eqtag).h0_param_indices)
parameter = M_.params(expectationmodel.equations.(eqtag).h0_param_indices(id));
end
if ~isempty(expectationmodel.equations.(eqtag).h1_param_indices)
if ~parameter
parameter = M_.params(expectationmodel.equations.(eqtag).h1_param_indices(id));
else
parameter = parameter+M_.params(expectationmodel.equations.(eqtag).h1_param_indices(id));
end
end
otherwise
end
switch expectationmodelkind
case 'var'
if i>1
variable = sprintf('dbase.%s(-%d)', variable, i-1);
else
variable = sprintf('dbase.%s', variable);
end
case 'pac'
variable = sprintf('dbase.%s(-%d)', variable, i);
otherwise
end
if ~isempty(transformations)
for k=length(transformations):-1:1
variable = sprintf('%s.%s()', variable, transformations{k});
end
end
if isequal(id, 1)
if isequal(expectationmodelkind, 'pac') && growth_correction
pgrowth = M_.params(expectationmodel.growth_neutrality_param_index);
vgrowth = expectationmodel.growth_str;
switch expectationmodel.growth_type
case 'parameter'
vgrowth = M_.params(strcmp(vgrowth, M_.param_names));
otherwise
vgrowth = regexprep(vgrowth, '\<(?!diff\>)\<(?!log\>)\<(?!\d\>)\w+', 'dbase.$0');
end
if parameter>=0
switch expectationmodel.growth_type
case 'parameter'
expression = sprintf('%s*%s+%s*%s', num2str(pgrowth, '%1.16f'), num2str(vgrowth, '%1.16f'), num2str(parameter, '%1.16f'), variable);
otherwise
expression = sprintf('%s*%s+%s*%s', num2str(pgrowth, '%1.16f'), vgrowth, num2str(parameter, '%1.16f'), variable);
end
else
switch expectationmodel.growth_type
case 'parameter'
expression = sprintf('%s*%s-%s*%s', num2str(pgrowth, '%1.16f'), num2str(vgrowth, '%1.16f'), num2str(-parameter, '%1.16f'), variable);
otherwise
expression = sprintf('%s*%s-%s*%s', num2str(pgrowth, '%1.16f'), vgrowth, num2str(-parameter, '%1.16f'), variable);
end
end
else
expression = sprintf('%s*%s', num2str(parameter, '%1.16f'), variable);
end
else
if parameter>=0
expression = sprintf('%s + %s*%s', expression, num2str(parameter, '%1.16f'), variable);
else
expression = sprintf('%s - %s*%s', expression, num2str(-parameter, '%1.16f'), variable);
end
end
end
end
fprintf(fid, 'ds.%s = %s;', expectationmodelname, expression);
fclose(fid);
fprintf('Expectation dseries expression is saved in %s.\n', filename);
skipline();