function o = ydiff_(o) % --*-- Unitary tests --*-- % Computes yearly differences. % % INPUTS % - o [dseries] % % OUTPUTS % - o [dseries] % Copyright (C) 2012-2017 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 . switch frequency(o) case 1 o.data(2:end,:) = o.data(2:end,:)-o.data(1:end-1,:); o.data(1,:) = NaN; case 4 o.data(5:end,:) = o.data(5:end,:)-o.data(1:end-4,:); o.data(1:4,:) = NaN; case 12 o.data(13:end,:) = o.data(13:end,:)-o.data(1:end-12,:); o.data(1:12,:) = NaN; case 52 o.data(53:end,:) = o.data(53:end,:)-o.data(1:end-52,:); o.data(1:52,:) = NaN; otherwise error(['dseries::ydiff: object ' inputname(1) ' has unknown frequency']); end for i = 1:vobs(o) if isempty(o.ops{i}) o.ops(i) = {['ydiff(' o.name{i} ')']}; else o.ops(i) = {['ydiff(' o.ops{i} ')']}; end end %@test:1 %$ try %$ data = transpose(1:100); %$ ts = dseries(data,'1950Q1',{'A1'},{'A_1'}); %$ ts.ydiff_; %$ t(1) = true; %$ catch %$ t(1) = false; %$ end %$ %$ %$ if t(1) %$ DATA = NaN(4,ts.vobs); %$ DATA = [DATA; 4*ones(ts.nobs-4,ts.vobs)]; %$ t(2) = dassert(ts.data,DATA); %$ t(3) = dassert(ts.ops{1},['ydiff(A1)']); %$ end %$ %$ T = all(t); %@eof:1 %@test:2 %$ try %$ data = transpose(1:100); %$ ts = dseries(data,'1950M1',{'A1'},{'A_1'}); %$ ts.ydiff_; %$ t(1) = true; %$ catch %$ t(1) = false; %$ end %$ %$ %$ if t(1) %$ DATA = NaN(12,ts.vobs); %$ DATA = [DATA; 12*ones(ts.nobs-12,ts.vobs)]; %$ t(2) = dassert(ts.data,DATA); %$ t(3) = dassert(ts.ops{1},['ydiff(A1)']); %$ end %$ %$ T = all(t); %@eof:2 %@test:3 %$ try %$ data = transpose(1:100); %$ ts = dseries(data,'1950W1',{'A1'},{'A_1'}); %$ ts.ydiff_; %$ t(1) = true; %$ catch %$ t(1) = false; %$ end %$ %$ if t(1) %$ DATA = NaN(52,ts.vobs); %$ DATA = [DATA; 52*ones(ts.nobs-52,ts.vobs)]; %$ t(2) = dassert(ts.data,DATA); %$ t(3) = dassert(ts.ops{1},['ydiff(A1)']); %$ end %$ %$ T = all(t); %@eof:3 %@test:4 %$ try %$ data = transpose(1:100); %$ ts = dseries(data,'1950Y',{'A1'},{'A_1'}); %$ ts.ydiff_; %$ t(1) = true; %$ catch %$ t(1) = false; %$ end %$ %$ %$ if t(1) %$ DATA = NaN(1,ts.vobs); %$ DATA = [DATA; ones(ts.nobs-1,ts.vobs)]; %$ t(2) = dassert(ts.data,DATA); %$ t(3) = dassert(ts.ops{1},['ydiff(A1)']); %$ end %$ %$ T = all(t); %@eof:4