Go to the documentation of this file.00001
00002
00003
00004 #include "include.h"
00005
00006 #include "newmat.h"
00007
00008 #include "tmt.h"
00009
00010 #ifdef use_namespace
00011 using namespace NEWMAT;
00012 #endif
00013
00014
00015
00016
00017
00018 void trymat7()
00019 {
00020
00021 Tracer et("Seventh test of Matrix package");
00022 Tracer::PrintTrace();
00023
00024 int i,j;
00025
00026
00027 DiagonalMatrix D(6);
00028 UpperTriangularMatrix U(6);
00029 for (i=1;i<=6;i++) { for (j=i;j<=6;j++) U(i,j)=i*i*j-50; D(i,i)=i*i+i-10; }
00030 LowerTriangularMatrix L=(U*3.0).t();
00031 SymmetricMatrix S(6);
00032 for (i=1;i<=6;i++) for (j=i;j<=6;j++) S(i,j)=i*i+2.0+j;
00033 Matrix MD=D; Matrix ML=L; Matrix MU=U;
00034 Matrix MS=S;
00035 Matrix M(6,6);
00036 for (i=1;i<=6;i++) for (j=1;j<=6;j++) M(i,j)=i*j+i*i-10.0;
00037 {
00038 Tracer et1("Stage 1");
00039 Print(Matrix((S-M)-(MS-M)));
00040 Print(Matrix((-M-S)+(MS+M)));
00041 Print(Matrix((U-M)-(MU-M)));
00042 }
00043 {
00044 Tracer et1("Stage 2");
00045 Print(Matrix((L-M)+(M-ML)));
00046 Print(Matrix((D-M)+(M-MD)));
00047 Print(Matrix((D-S)+(MS-MD)));
00048 Print(Matrix((D-L)+(ML-MD)));
00049 }
00050
00051 { M=MU.t(); }
00052 LowerTriangularMatrix LY=D.i()*U.t();
00053 {
00054 Tracer et1("Stage 3");
00055 MS=D*LY-M; Clean(MS,0.00000001); Print(MS);
00056 L=U.t();
00057 LY=D.i()*L; MS=D*LY-M; Clean(MS,0.00000001); Print(MS);
00058 }
00059 {
00060 Tracer et1("Stage 4");
00061 UpperTriangularMatrix UT(11);
00062 int i, j;
00063 for (i=1;i<=11;i++) for (j=i;j<=11;j++) UT(i,j)=i*i+j*3;
00064 GenericMatrix GM; Matrix X;
00065 UpperBandMatrix UB(11,3); UB.Inject(UT); UT = UB;
00066 UpperBandMatrix UB2 = UB / 8;
00067 GM = UB2-UT/8; X = GM; Print(X);
00068 SymmetricBandMatrix SB(11,4); SB << (UB + UB.t());
00069 X = SB - UT - UT.t(); Print(X);
00070 BandMatrix B = UB + UB.t()*2;
00071 DiagonalMatrix D; D << B;
00072 X.ReSize(1,1); X(1,1) = Trace(B)-Sum(D); Print(X);
00073 X = SB + 5; Matrix X1=X; X = SP(UB,X); Matrix X2 =UB;
00074 X1 = (X1.AsDiagonal() * X2.AsDiagonal()).AsRow()-X.AsColumn().t();
00075 Print(X1);
00076 X1=SB.t(); X2 = B.t(); X = SB.i() * B - X1.i() * X2.t();
00077 Clean(X,0.00000001); Print(X);
00078 X = SB.i(); X = X * B - X1.i() * X2.t();
00079 Clean(X,0.00000001); Print(X);
00080 D = 1; X = SB.i() * SB - D; Clean(X,0.00000001); Print(X);
00081 ColumnVector CV(11);
00082 CV << 2 << 6 <<3 << 8 << -4 << 17.5 << 2 << 1 << -2 << 5 << 3.75;
00083 D << 2 << 6 <<3 << 8 << -4 << 17.5 << 2 << 1 << -2 << 5 << 3.75;
00084 X = CV.AsDiagonal(); X = X-D; Print(X);
00085 SymmetricBandMatrix SB1(11,7); SB1 = 5;
00086 SymmetricBandMatrix SB2 = SB1 + D;
00087 X.ReSize(11,11); X=0;
00088 for (i=1;i<=11;i++) for (j=1;j<=11;j++)
00089 {
00090 if (abs(i-j)<=7) X(i,j)=5;
00091 if (i==j) X(i,j)+=CV(i);
00092 }
00093 SymmetricMatrix SM; SM.ReSize(11);
00094 SM=SB; SB = SB+SB2; X1 = SM+X-SB; Print(X1);
00095 SB2=0; X2=SB2; X1=SB; Print(X2);
00096 for (i=1;i<=11;i++) SB2.Column(i)<<SB.Column(i);
00097 X1=X1-SB2; Print(X1);
00098 X = SB; SB2.ReSize(11,4); SB2 = SB*5; SB2 = SB + SB2;
00099 X1 = X*6 - SB2; Print(X1);
00100 X1 = SP(SB,SB2/3); X1=X1-SP(X,X*2); Print(X1);
00101 X1 = SP(SB2/6,X*2); X1=X1-SP(X*2,X); Print(X1);
00102 }
00103
00104 {
00105
00106 Tracer et("Stage 5");
00107 ColumnVector Test(10); Test = 0.0;
00108 int i;
00109 SimpleIntArray A(100);
00110 for (i = 0; i < 100; i++) A[i] = i*i+1;
00111 SimpleIntArray B(100), C(50), D(0);
00112 D.ReSize(150);
00113 B = A; A.ReSize(50, true); C = A; A.ReSize(150, true); D = A;
00114 for (i = 0; i < 100; i++) if (B[i] != i*i+1) Test(1)=1;
00115 for (i = 0; i < 50; i++) if (C[i] != i*i+1) Test(2)=1;
00116 for (i = 0; i < 50; i++) if (D[i] != i*i+1) Test(3)=1;
00117 A.ReSize(75); A = A.Size();
00118 for (i = 0; i < 75; i++) if (A[i] != 75) Test(4)=1;
00119 A.ReSize(25); A = A.Size();
00120 for (i = 0; i < 25; i++) if (A[i] != 25) Test(5)=1;
00121 A.ReSize(25); A = 23;
00122 for (i = 0; i < 25; i++) if (A[i] != 23) Test(6)=1;
00123 A.ReSize(0); A.ReSize(15); A = A.Size();
00124 for (i = 0; i < 15; i++) if (A[i] != 15) Test(7)=1;
00125 const SimpleIntArray E = B;
00126 for (i = 0; i < 100; i++) if (E[i] != i*i+1) Test(8)=1;
00127 Print(Test);
00128 }
00129
00130
00131
00132 }