File: sla_syrpvgrw

package info (click to toggle)
ruby-lapack 1.8.2-1
  • links: PTS, VCS
  • area: main
  • in suites: bookworm, forky, sid, trixie
  • size: 28,572 kB
  • sloc: ansic: 191,612; ruby: 3,937; makefile: 6
file content (101 lines) | stat: -rw-r--r-- 2,973 bytes parent folder | download | duplicates (5)
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
--- 
:name: sla_syrpvgrw
:md5sum: 2520bed9e6244f2db3d5b849f49a59d2
:category: :function
:type: real
:arguments: 
- uplo: 
    :type: char
    :intent: input
- n: 
    :type: integer
    :intent: input
- info: 
    :type: integer
    :intent: input
- a: 
    :type: real
    :intent: input
    :dims: 
    - lda
    - n
- lda: 
    :type: integer
    :intent: input
- af: 
    :type: real
    :intent: input
    :dims: 
    - ldaf
    - n
- ldaf: 
    :type: integer
    :intent: input
- ipiv: 
    :type: integer
    :intent: input
    :dims: 
    - n
- work: 
    :type: real
    :intent: input
    :dims: 
    - 2*n
:substitutions: {}

:fortran_help: "      REAL FUNCTION SLA_SYRPVGRW( UPLO, N, INFO, A, LDA, AF, LDAF, IPIV, WORK )\n\n\
  *  Purpose\n\
  *  =======\n\
  * \n\
  *  SLA_SYRPVGRW computes the reciprocal pivot growth factor\n\
  *  norm(A)/norm(U). The \"max absolute element\" norm is used. If this is\n\
  *  much less than 1, the stability of the LU factorization of the\n\
  *  (equilibrated) matrix A could be poor. This also means that the\n\
  *  solution X, estimated condition numbers, and error bounds could be\n\
  *  unreliable.\n\
  *\n\n\
  *  Arguments\n\
  *  =========\n\
  *\n\
  *     UPLO    (input) CHARACTER*1\n\
  *       = 'U':  Upper triangle of A is stored;\n\
  *       = 'L':  Lower triangle of A is stored.\n\
  *\n\
  *     N       (input) INTEGER\n\
  *     The number of linear equations, i.e., the order of the\n\
  *     matrix A.  N >= 0.\n\
  *\n\
  *     INFO    (input) INTEGER\n\
  *     The value of INFO returned from SSYTRF, .i.e., the pivot in\n\
  *     column INFO is exactly 0.\n\
  *\n\
  *     NCOLS   (input) INTEGER\n\
  *     The number of columns of the matrix A. NCOLS >= 0.\n\
  *\n\
  *     A       (input) REAL array, dimension (LDA,N)\n\
  *     On entry, the N-by-N matrix A.\n\
  *\n\
  *     LDA     (input) INTEGER\n\
  *     The leading dimension of the array A.  LDA >= max(1,N).\n\
  *\n\
  *     AF      (input) REAL array, dimension (LDAF,N)\n\
  *     The block diagonal matrix D and the multipliers used to\n\
  *     obtain the factor U or L as computed by SSYTRF.\n\
  *\n\
  *     LDAF    (input) INTEGER\n\
  *     The leading dimension of the array AF.  LDAF >= max(1,N).\n\
  *\n\
  *     IPIV    (input) INTEGER array, dimension (N)\n\
  *     Details of the interchanges and the block structure of D\n\
  *     as determined by SSYTRF.\n\
  *\n\
  *     WORK    (input) REAL array, dimension (2*N)\n\
  *\n\n\
  *  =====================================================================\n\
  *\n\
  *     .. Local Scalars ..\n      INTEGER            NCOLS, I, J, K, KP\n      REAL               AMAX, UMAX, RPVGRW, TMP\n      LOGICAL            UPPER\n\
  *     ..\n\
  *     .. Intrinsic Functions ..\n      INTRINSIC          ABS, MAX, MIN\n\
  *     ..\n\
  *     .. External Functions ..\n      EXTERNAL           LSAME, SLASET\n      LOGICAL            LSAME\n\
  *     ..\n"