File: GB_spec_kron.m

package info (click to toggle)
suitesparse 1%3A7.11.0%2Bdfsg-2
  • links: PTS, VCS
  • area: main
  • in suites: forky, sid
  • size: 258,172 kB
  • sloc: ansic: 1,153,566; cpp: 48,145; makefile: 4,997; fortran: 2,087; java: 1,826; sh: 1,113; ruby: 725; python: 676; asm: 371; sed: 166; awk: 44
file content (84 lines) | stat: -rw-r--r-- 2,766 bytes parent folder | download | duplicates (2)
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
function C = GB_spec_kron (C, Mask, accum, mult, A, B, descriptor)
%GB_SPEC_KRON a mimic of GrB_kronecker
%
% Usage:
% C = GB_spec_kron (C, Mask, accum, mult, A, B, descriptor)
%
% Computes C<Mask> = accum(C,T), in GraphBLAS notation, where T = kron(A,B),
% kron(A',B), kron(A,B') or kron(A',B')

% SuiteSparse:GraphBLAS, Timothy A. Davis, (c) 2017-2025, All Rights Reserved.
% SPDX-License-Identifier: Apache-2.0

%-------------------------------------------------------------------------------
% get inputs
%-------------------------------------------------------------------------------

if (nargout > 1 || nargin ~= 7)
    error ('usage: C = GB_spec_kron (C, Mask, accum, mult, A, B, descriptor)') ;
end

C = GB_spec_matrix (C) ;
A = GB_spec_matrix (A) ;
B = GB_spec_matrix (B) ;
[mult_op xyclass ztype xtype ytype] = GB_spec_operator (mult, C.class) ;
[C_replace Mask_comp Atrans Btrans Mask_struct] = ...
    GB_spec_descriptor (descriptor) ;
Mask = GB_spec_getmask (Mask, Mask_struct) ;

%-------------------------------------------------------------------------------
% do the work via a clean *.m interpretation of the entire GraphBLAS spec
%-------------------------------------------------------------------------------

% apply the descriptor to A
if (Atrans)
    A.matrix = A.matrix.' ;
    A.pattern = A.pattern' ;
end

% apply the descriptor to B
if (Btrans)
    B.matrix = B.matrix.' ;
    B.pattern = B.pattern' ;
end

% T = A.*B, with typecasting
[anrows, ancols] = size (A.matrix) ;
[bnrows, bncols] = size (B.matrix) ;
cnrows = anrows * bnrows ;
cncols = ancols * bncols ;
T.matrix  = GB_spec_zeros ([cnrows cncols], ztype) ;
T.pattern = false (cnrows, cncols) ;

% first cast the inputs into the x,y types of the operator
A1 = GB_mex_cast (A.matrix, xtype) ;
B1 = GB_mex_cast (B.matrix, ytype) ;

for ja = 1:ancols
    for ia = 1:anrows
        if (A.pattern (ia,ja))
            for jb = 1:bncols
                for ib = 1:bnrows
                    if (B.pattern (ib,jb))
                        i = (ia-1) * bnrows + ib ;
                        j = (ja-1) * bncols + jb ;
                        if (GB_spec_is_positional (mult))
                            z = GB_spec_binop_positional (mult_op,ia,ja,ib,jb) ;
                        else
                            z = GB_spec_op (mult, A1 (ia,ja), B1 (ib,jb)) ;
                        end
                        T.matrix (i,j) = z ;
                        T.pattern (i,j) = true ;
                    end
                end
            end
        end
    end
end

assert (isequal (ztype, GB_spec_type (T.matrix))) ;
T.class = ztype ;

% C<Mask> = accum (C,T): apply the accum, then Mask, and return the result
C = GB_spec_accum_mask (C, Mask, accum, T, C_replace, Mask_comp, 0) ;