source: Sophya/trunk/Eval/JET/tjet.cc@ 2814

Last change on this file since 2814 was 2798, checked in by ansari, 20 years ago

Adaptation aux modifs 2004-2005 de SOPHYA , compil pour PBG4 - Reza 3 Juin 2005

File size: 7.0 KB
Line 
1#include "machdefs.h"
2
3#include <math.h>
4#include <iostream>
5#include <fstream>
6
7#include "tarrinit.h"
8#include "array.h"
9
10#include "pexceptions.h"
11#include "srandgen.h"
12
13#include "sophyainit.h"
14#include "ctimer.h"
15#include "timing.h"
16
17#include "smtx.h"
18
19//--------------------------------------------------------
20// Test d'expression template sur tableaux
21// Reza - Avril 2003
22//--------------------------------------------------------
23
24//------- Le code de smtx.cc
25
26#include "smtx.cc"
27
28//-------
29// ------------------------------------------------
30// programme de test template expressions
31// ------------------------------------------------
32
33int main(int narg, char* arg[])
34{
35
36 SophyaInit();
37 InitTim(); // Initializing the CPU timer
38
39 if (narg < 3) {
40 cout << "\n te/ TemplateExpression Test - missing arguments\n"
41 << " Usage: te NLoop NRow NCol \n" << endl;
42 return 1;
43 }
44 int N = 10;
45 int nrow = 2;
46 int ncol = 2;
47
48 N = atoi(arg[1]);
49
50 nrow = atoi(arg[2]);
51 ncol = atoi(arg[3]);
52
53 cout << " te/ TemplateExpression Test - NLoop = " << N
54 << " NRow=" << nrow << " NCol= " << ncol
55 << " Size=nr*nc= " << nrow*ncol << endl;
56
57 try {
58 cout << " ---- Verification operation ------ " << endl;
59 SimpleMatrix<int_4> mx1(4,6);
60 mx1 = 3;
61 mx1 *= 2;
62 cout << " mx1=3; mx1*=2; : " << endl;
63 cout << mx1 << endl;
64 SimpleMatrix<int_4> mx2(4,6);
65 mx2.Init(1,1);
66 SimpleMatrix<int_4> mx3(4,6), mx4;
67 mx3.Init(1000,100);
68 mx4 = mx3+mx2*2 ;
69 cout << " mx2, mx3, mx4=mx3+2mx2 " << endl;
70 cout << mx2 << endl << mx3 << endl << mx4 << endl;
71
72 cout << ">> Test with SimpleMatrix<T>/JET " << endl;
73 PrtTim(" (0) -- ");
74
75 int i,j,k;
76 {
77 SimpleMatrix<r_8> m1(nrow, ncol);
78 SimpleMatrix<r_8> m2(nrow, ncol);
79 SimpleMatrix<r_8> m3(nrow, ncol);
80 SimpleMatrix<r_8> m4(nrow, ncol);
81 SimpleMatrix<r_8> m5(nrow, ncol);
82 for(k=0; k<N; k++) {
83 double xxr = frand01();
84 double yyr = 2.*frand01();
85 for(i=0; i<nrow; i++)
86 for(j=0; j<ncol; j++) {
87 m1(i,j) = k*300+10.*i+j+xxr;
88 m2(i,j) = k*550+20.*i+2.*j+yyr;
89 m3(i,j) = k*860.+40.*i+7.*j+yyr*3.14;
90 }
91 }
92
93 cout << " (1) Element access done ---" << endl;
94 PrtTim(" (1) -- ");
95 // Calcul m1*c1 + m2*c2 + m3*c3;
96 for(k=0; k<N; k++) {
97 double c1 = frand01() + 1.2;
98 double c2 = frand01() + 3.5;
99 double c3 = frand01() + 6.7;
100 m5 = m1; m5.MulCst(c1);
101 m4 = m2; m4.MulCst(c2);
102 m5.AddElt(m4);
103 m4 = m3; m3.MulCst(c2);
104 m5.AddElt(m4);
105 }
106 cout << " (2) Add/MulElt/Cst m1*c1 + m2*c2 + m3*c3 done ---" << endl;
107 PrtTim(" (2) -- ");
108
109 for(k=0; k<N; k++) {
110 double c1 = frand01() + 1.2;
111 double c2 = frand01() + 3.5;
112 double c3 = frand01() + 6.7;
113 m5 = m1*c1+m2*c2+m3*c3;
114 }
115 cout << " (3) JET: m1*c1 + m2*c2 + m3*c3 done ---" << endl;
116 PrtTim(" (3) -- ");
117 // Calcul m1*c1 + m1*(m2+c2) + m2*c3;
118 for(k=0; k<N; k++) {
119 double c1 = frand01() + 1.2;
120 double c2 = frand01() + 3.5;
121 double c3 = frand01() + 6.7;
122 m3 = m1; m3.MulCst(c1);
123 m4 = m2; m4.AddCst(c2); m4.MulElt(m1);
124 m5 = m2; m5.MulCst(c3);
125 m5.AddElt(m3); m5.AddElt(m4);
126 }
127 cout << " (4) Add/MulElt/Cst m1*c1 + m1*(m2+c2) + m2*c3 done ---" << endl;
128 PrtTim(" (4) --");
129
130 for(k=0; k<N; k++) {
131 double c1 = frand01() + 1.2;
132 double c2 = frand01() + 3.5;
133 double c3 = frand01() + 6.7;
134 // m4 = SMExprAdd< r_8, SMExprMtx<r_8>, SMExprMtx<r_8> >( SMExprMtx<r_8>(m1), SMExprMtx<r_8> (m2) );
135 // Calcul m1*c1 + m1*(m2+c2) + m2*c3;
136 m5 = m1*c1 + m1*(m2+c2) + m2*c3;
137 }
138 cout << " (5) JET: m5 = m1*c1 + m1*(m2+c2) + m2*c3 ---" << endl;
139 PrtTim(" (5) -- ");
140
141 for(k=0; k<N; k++) {
142 double c1 = frand01() + 1.2;
143 double c2 = frand01() + 3.5;
144 double c3 = frand01() + 6.7;
145 // Calcul m1*c1 + m1*(m2+c2) + m2*c3;
146 m5 = m1*c1 + m2 + c2*Sin(c3*m3+m1);
147 }
148 cout << " (6) JET: m5 = m1*c1 + m2 + c2*Sin(c3*m3+m1) ---" << endl;
149 PrtTim(" (6) -- ");
150
151 }
152
153
154 // Test avec les TArray / TMatrix
155 {
156 cout << " >>>>> test with SOPHYA::TArray / TMatrix " << endl;
157 TMatrix<r_8> m1(nrow, ncol);
158 TMatrix<r_8> m2(nrow, ncol);
159 TMatrix<r_8> m3(nrow, ncol);
160 TMatrix<r_8> m4(nrow, ncol);
161 TMatrix<r_8> m5(nrow, ncol);
162 for(k=0; k<N; k++) {
163 double xxr = frand01();
164 double yyr = 2.*frand01();
165 for(i=0; i<nrow; i++)
166 for(j=0; j<ncol; j++) {
167 m1(i,j) = k*300+10.*i+j+xxr;
168 m2(i,j) = k*550+20.*i+2.*j+yyr;
169 m3(i,j) = k*860.+40.*i+7.*j+yyr*3.14;
170 }
171 }
172 cout << " (21) Element access done ---" << endl;
173 PrtTim(" (21) -- ");
174 // Calcul m1*c1 + m2*c2 + m3*c3;
175 for(k=0; k<N; k++) {
176 double c1 = frand01() + 1.2;
177 double c2 = frand01() + 3.5;
178 double c3 = frand01() + 6.7;
179 /* Changement interface SOPHYA : 2004-2005
180 m5 = m1; m5.Mul(c1);
181 m4 = m2; m4.Mul(c2);
182 m5.AddElt(m4);
183 m4 = m3; m3.Mul(c3);
184 m5.AddElt(m4);
185 */
186 m1.MulCst(c1, m5);
187 m2.MulCst(c2, m4);
188 m5.AddElt(m4, m5);
189 m3.MulCst(c3,m4);
190 m4.AddElt(m5,m4);
191 }
192 cout << " (22) Add/MulElt/Cst m1*c1 + m2*c2 + m3*c3 done ---" << endl;
193 PrtTim(" (22) -- ");
194
195 for(k=0; k<N; k++) {
196 double c1 = frand01() + 1.2;
197 double c2 = frand01() + 3.5;
198 double c3 = frand01() + 6.7;
199 m5 = m1*c1+m2*c2+m3*c3;
200 }
201 cout << " (23) m1*c1 + m2*c2 + m3*c3 done ---" << endl;
202 PrtTim(" (23) -- ");
203
204 for(k=0; k<N; k++) {
205 double c1 = frand01() + 1.2;
206 double c2 = frand01() + 3.5;
207 double c3 = frand01() + 6.7;
208 m5 = m1*c1 + m2 + c2*Sin(c3*m3+m1);
209 }
210 cout << " (26) m5 = m1*c1 + m2 + c2*Sin(c3*m3+m1) ---" << endl;
211 PrtTim(" (26) -- ");
212
213 }
214
215 // Test avec des double * x;
216 {
217 cout << " >>>>> test with r_8 * p = new double[size] " << endl;
218 r_8 * m1 = new r_8[nrow*ncol];
219 r_8 * m2 = new r_8[nrow*ncol];
220 r_8 * m3 = new r_8[nrow*ncol];
221 r_8 * m5 = new r_8[nrow*ncol];
222 for(k=0; k<N; k++) {
223 double xxr = frand01();
224 double yyr = 2.*frand01();
225 for(i=0; i<nrow*ncol; i++) {
226 m1[i] = k*300+10.*i+j+xxr;
227 m2[i] = k*550+20.*i+2.*j+yyr;
228 m3[i] = k*860.+40.*i+7.*j+yyr*3.14;
229 }
230 }
231 cout << " (31) p[i] Element access done ---" << endl;
232 PrtTim(" (31) -- ");
233 // Calcul m1*c1 + m2*c2 + m3*c3;
234 for(k=0; k<N; k++) {
235 double c1 = frand01() + 1.2;
236 double c2 = frand01() + 3.5;
237 double c3 = frand01() + 6.7;
238 for(i=0; i<nrow*ncol; i++)
239 m5[i] = c1*m1[i]+c2*m2[i]+c3*m3[i];
240 }
241 cout << " (32) p[i] m1*c1 + m2*c2 + m3*c3 done ---" << endl;
242 PrtTim(" (32) -- ");
243
244 delete[] m1;
245 delete[] m2;
246 delete[] m3;
247 delete[] m5;
248 }
249 }
250 catch (PThrowable exc) {
251 cerr << " te/catched Exception " << exc.Msg() << endl;
252 }
253 catch (...) {
254 cerr << " te/catched unknown (...) exception " << endl;
255 }
256
257 cout << "\n --------------------------------------------------------" << endl;
258 PrtTim("--- End of te ---");
259 cout << " ---- END of te/TemplateExpression programme ------ " << endl;
260 return 0;
261}
262
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