1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
|
/*
* Scilab ( http://www.scilab.org/ ) - This file is part of Scilab
* Copyright (C) 2008 - INRIA - Arnaud TORSET
*
* This file must be used under the terms of the CeCILL.
* This source file is licensed as described in the file COPYING, which
* you should have received as part of this distribution. The terms
* are also available at
* http://www.cecill.info/licences/Licence_CeCILL_V2-en.txt
*
*/
#include <stdlib.h>
#ifndef WITHOUT_LAPACK
#include "lapack.h"
#else
#include "division.h"
#endif
#include "determ.h"
#include "multiplication.h"
#include "subtraction.h"
#include "addition.h"
doubleComplex zdeterma(doubleComplex * in, int size){
#ifndef WITHOUT_LAPACK
doubleComplex tmp1,tmp2,out;
int i=0,info=0;
doubleComplex *inCopy;
int* vectPivot;
switch(size){
case 2 : out = zdiffs(zmuls(in[0],in[3]),zmuls(in[1],in[2]));
break;
case 3 : /*regle de Sarrus*/
out=DoubleComplex(0,0);
/*Addition Part*/
tmp1 = zmuls(in[0],in[4]);
tmp2 = zmuls(tmp1,in[8]);
out = zadds(out,tmp2);
tmp1 = zmuls(in[1],in[5]);
tmp2 = zmuls(tmp1,in[6]);
out = zadds(out,tmp2);
tmp1 = zmuls(in[2],in[3]);
tmp2 = zmuls(tmp1,in[7]);
out = zadds(out,tmp2);
/*Subtraction Part*/
tmp1 = zmuls(in[0],in[5]);
tmp2 = zmuls(tmp1,in[7]);
out = zdiffs(out,tmp2);
tmp1 = zmuls(in[1],in[3]);
tmp2 = zmuls(tmp1,in[8]);
out = zdiffs(out,tmp2);
tmp1 = zmuls(in[2],in[4]);
tmp2 = zmuls(tmp1,in[6]);
out = zdiffs(out,tmp2);
break;
default :
/*Allocate inCopy and Copy in in inCopy*/
inCopy=(doubleComplex*)malloc((unsigned int)(size*size)*sizeof(doubleComplex));
for (i=0;i<size*size;i++) inCopy[i]=in[i];
/*Calculation of determinant*/
vectPivot = (int*)malloc((unsigned int)size*sizeof(int));
zgetrf_ ( &size, &size, inCopy, &size, vectPivot, &info);
out=DoubleComplex(1,0);
for (i=0;i<size;i++){
if (vectPivot[i]!=i+1) out=DoubleComplex(-zreals(out),-zimags(out));
out=zmuls(inCopy[i*(size+1)],out);
}
free(vectPivot);
free(inCopy);
break;
}
#else
int i=0,j=0,k=0;
doubleComplex *inCopy;
doubleComplex tmp1,tmp2;
doubleComplex pivot;
doubleComplex out;
switch(size){
case 2 : out = zdiffs(zmuls(in[0],in[3]),zmuls(in[1],in[2]));
break;
case 3 : /*regle de Sarrus*/
out=DoubleComplex(0,0);
/*Addition Part*/
tmp1 = zmuls(in[0],in[4]);
tmp2 = zmuls(tmp1,in[8]);
out = zadds(out,tmp2);
tmp1 = zmuls(in[1],in[5]);
tmp2 = zmuls(tmp1,in[6]);
out = zadds(out,tmp2);
tmp1 = zmuls(in[2],in[3]);
tmp2 = zmuls(tmp1,in[7]);
out = zadds(out,tmp2);
/*Subtraction Part*/
tmp1 = zmuls(in[0],in[5]);
tmp2 = zmuls(tmp1,in[7]);
out = zdiffs(out,tmp2);
tmp1 = zmuls(in[1],in[3]);
tmp2 = zmuls(tmp1,in[8]);
out = zdiffs(out,tmp2);
tmp1 = zmuls(in[2],in[4]);
tmp2 = zmuls(tmp1,in[6]);
out = zdiffs(out,tmp2);
break;
default :
/*Copy the input matrix*/
inCopy=malloc((unsigned int)(size*size)*sizeof(doubleComplex));
for (i=0;i<size*size;i++) inCopy[i]=in[i];
for (i=0;i<size;i++){
for (j=i+1;j<size;j++){
pivot = zrdivs(inCopy[i*size+j],inCopy[i*size+i]);
for (k=0;k<size-i;k++){
inCopy[i*size+j+k*size]=zdiffs(inCopy[i*size+j+k*size],zmuls(pivot,inCopy[i*size+i+k*size]));
}
}
}
out=DoubleComplex(1,0);
for (i=0;i<size;i++){
out = zmuls(out,inCopy[i*size+i]);
}
free(inCopy);
break;
}
#endif
return out;
}
|