3 % Validation
function for Stiff Assembling P1 functions.
5 % The Stiff Matrix, `\Stiff`, is given by
6 % ``\Stiff_{i,j}=\int_\DOMH \DOT{\GRAD\FoncBase_i(\q)}{\GRAD\FoncBase_j(\q)}d\q,\ \forall (i,j)\in\ENS{1}{\nq}^2``
7 % where `\FoncBase_i` are `P_1`-Lagrange basis functions.
8 % This Matrix is computed by functions StiffAssemblingP1{Version} where {Version} is one of
9 %
'base',
'OptV0',
'OptV1' and
'OptV2'.
10 % - Test 1: compute Stiff Matrix using previous functions and give errors and cputimes
11 % - Test 2: compute ``\int_\DOM \DOT{\GRAD u(\q)}{\GRAD v(\q)}d\q \approx \DOT{\Stiff \vecb{U}}{\vecb{V}}``
12 % where `\vecb{U}_i=u(\q^i)` and `\vecb{V}_i=v(\q^i)`. Use fonctions `u` and `v` defined in #
valid_FEMmatrices.
13 % - Test 3: retrieve order 2 of `P_1`-Lagrange integration
14 % ``|\int_\DOM \DOT{\GRAD u}{\GRAD v} -\DOT{\GRAD \Pi_h(u)}{\GRAD \Pi_h(v)}d\DOM| \leq C h^2``
19 % @author Francois Cuvelier @date 2012-11-26
21 disp('*******************************************')
22 disp('* Stiff Assembling P1 validations *')
23 disp('*******************************************')
28 disp(
'-----------------------------------------')
29 disp(' Test 1: Matrices errors and CPU times ')
30 disp('-----------------------------------------')
37 Test1.error(1)=norm(Mbase-MOptV0,Inf);
38 Test1.name{1}=
'StiffAssemblingP1OptV0';
39 fprintf(
' Error P1base vs OptV0 : %e\n',Test1.error(1))
43 Test1.error(2)=norm(Mbase-MOptV1,Inf);
44 Test1.name{2}=
'StiffAssemblingP1OptV1';
45 fprintf(
' Error P1base vs OptV1 : %e\n',Test1.error(2))
49 Test1.error(3)=norm(Mbase-MOptV2,Inf);
50 Test1.name{3}=
'StiffAssemblingP1OptV2';
51 fprintf(
' Error P1base vs OptV2 : %e\n',Test1.error(3))
53 fprintf(
' CPU times base (ref) : %3.4f (s)\n',T(1))
54 fprintf(
' CPU times OptV0 : %3.4f (s) - Speed Up X%3.3f\n',T(2),T(1)/T(2))
55 fprintf(
' CPU times OptV1 : %3.4f (s) - Speed Up X%3.3f\n',T(3),T(1)/T(3))
56 fprintf(
' CPU times OptV2 : %3.4f (s) - Speed Up X%3.3f\n',T(4),T(1)/T(4))
62 disp('-----------------------------------------------------')
63 disp(' Test 2: Validations by integration on [0,1]x[0,1] ')
64 disp('-----------------------------------------------------')
67 U=Test(kk).u(Th.q(1,:),Th.q(2,:));
68 V=Test(kk).v(Th.q(1,:),Th.q(2,:));
69 Test(kk).error=abs(Test(kk).Stiff-U*M*V');
70 fprintf(' functions %d : u(x,y)=%s, v(x,y)=%s,\n -> Stiff error=%e\n',kk,Test(kk).cu,Test(kk).cv,Test(kk).error);
75 disp('--------------------------------')
76 disp(' Test 3: Validations by order ')
77 disp('--------------------------------')
85 fprintf(' Matrix size : %d\n',Th.nq);
90 U=u(Th.q(1,:),Th.q(2,:));
91 V=v(Th.q(1,:),Th.q(2,:));
92 Error(k)=abs(ExSol-U*M*V');
94 fprintf(' Error : %e\n',Error(k));
97 loglog(h,Error,'+-k',h,h*1.1*Error(1)/h(1),'-.k',h,1.1*Error(1)*(h/h(1)).^2,'k:')
98 legend('Error','O(h)','O(h^2)')
100 title('Test 3 : Stiff Matrix')
104 function checkTest1(Test)
105 I=find(Test.error>1e-14);
107 disp('------------------------')
108 disp(' Test 1 (results): OK')
109 disp('------------------------')
111 disp('----------------------------')
112 disp(' Test 1 (results): FAILED')
113 disp('----------------------------')
117 function checkTest2(Test)
121 if (Test(k).degree<=1)
122 if (Test(k).error>1e-12)
128 disp('------------------------')
129 disp(' Test 2 (results): OK')
130 disp('------------------------')
132 disp('----------------------------')
133 disp(' Test 2 (results): FAILED')
134 disp('----------------------------')
138 function checkTest3(h,error)
140 P=polyfit(log(h),log(error),1);
142 disp('------------------------')
143 disp(' Test 3 (results): OK')
144 fprintf(' -> found numerical order %f. Must be 2\n',P(1))
145 disp('------------------------')
147 disp('----------------------------')
148 disp(' Test 3 (results): FAILED')
149 fprintf(' -> found numerical order %f. Must be 2\n',P(1))
150 disp('----------------------------')