1*bf2c3715SXin Li // This file is part of Eigen, a lightweight C++ template library
2*bf2c3715SXin Li // for linear algebra.
3*bf2c3715SXin Li //
4*bf2c3715SXin Li // Copyright (C) 2009-2010 Gael Guennebaud <[email protected]>
5*bf2c3715SXin Li //
6*bf2c3715SXin Li // This Source Code Form is subject to the terms of the Mozilla
7*bf2c3715SXin Li // Public License v. 2.0. If a copy of the MPL was not distributed
8*bf2c3715SXin Li // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
9*bf2c3715SXin Li #include <iostream>
10*bf2c3715SXin Li #include "common.h"
11*bf2c3715SXin Li
EIGEN_BLAS_FUNC(gemm)12*bf2c3715SXin Li int EIGEN_BLAS_FUNC(gemm)(const char *opa, const char *opb, const int *m, const int *n, const int *k, const RealScalar *palpha,
13*bf2c3715SXin Li const RealScalar *pa, const int *lda, const RealScalar *pb, const int *ldb, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
14*bf2c3715SXin Li {
15*bf2c3715SXin Li // std::cerr << "in gemm " << *opa << " " << *opb << " " << *m << " " << *n << " " << *k << " " << *lda << " " << *ldb << " " << *ldc << " " << *palpha << " " << *pbeta << "\n";
16*bf2c3715SXin Li typedef void (*functype)(DenseIndex, DenseIndex, DenseIndex, const Scalar *, DenseIndex, const Scalar *, DenseIndex, Scalar *, DenseIndex, DenseIndex, Scalar, internal::level3_blocking<Scalar,Scalar>&, Eigen::internal::GemmParallelInfo<DenseIndex>*);
17*bf2c3715SXin Li static const functype func[12] = {
18*bf2c3715SXin Li // array index: NOTR | (NOTR << 2)
19*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,ColMajor,false,Scalar,ColMajor,false,ColMajor,1>::run),
20*bf2c3715SXin Li // array index: TR | (NOTR << 2)
21*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,false,Scalar,ColMajor,false,ColMajor,1>::run),
22*bf2c3715SXin Li // array index: ADJ | (NOTR << 2)
23*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,ColMajor,false,ColMajor,1>::run),
24*bf2c3715SXin Li 0,
25*bf2c3715SXin Li // array index: NOTR | (TR << 2)
26*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,false,ColMajor,1>::run),
27*bf2c3715SXin Li // array index: TR | (TR << 2)
28*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,false,Scalar,RowMajor,false,ColMajor,1>::run),
29*bf2c3715SXin Li // array index: ADJ | (TR << 2)
30*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,RowMajor,false,ColMajor,1>::run),
31*bf2c3715SXin Li 0,
32*bf2c3715SXin Li // array index: NOTR | (ADJ << 2)
33*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,Conj, ColMajor,1>::run),
34*bf2c3715SXin Li // array index: TR | (ADJ << 2)
35*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,false,Scalar,RowMajor,Conj, ColMajor,1>::run),
36*bf2c3715SXin Li // array index: ADJ | (ADJ << 2)
37*bf2c3715SXin Li (internal::general_matrix_matrix_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,RowMajor,Conj, ColMajor,1>::run),
38*bf2c3715SXin Li 0
39*bf2c3715SXin Li };
40*bf2c3715SXin Li
41*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
42*bf2c3715SXin Li const Scalar* b = reinterpret_cast<const Scalar*>(pb);
43*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
44*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
45*bf2c3715SXin Li Scalar beta = *reinterpret_cast<const Scalar*>(pbeta);
46*bf2c3715SXin Li
47*bf2c3715SXin Li int info = 0;
48*bf2c3715SXin Li if(OP(*opa)==INVALID) info = 1;
49*bf2c3715SXin Li else if(OP(*opb)==INVALID) info = 2;
50*bf2c3715SXin Li else if(*m<0) info = 3;
51*bf2c3715SXin Li else if(*n<0) info = 4;
52*bf2c3715SXin Li else if(*k<0) info = 5;
53*bf2c3715SXin Li else if(*lda<std::max(1,(OP(*opa)==NOTR)?*m:*k)) info = 8;
54*bf2c3715SXin Li else if(*ldb<std::max(1,(OP(*opb)==NOTR)?*k:*n)) info = 10;
55*bf2c3715SXin Li else if(*ldc<std::max(1,*m)) info = 13;
56*bf2c3715SXin Li if(info)
57*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"GEMM ",&info,6);
58*bf2c3715SXin Li
59*bf2c3715SXin Li if (*m == 0 || *n == 0)
60*bf2c3715SXin Li return 0;
61*bf2c3715SXin Li
62*bf2c3715SXin Li if(beta!=Scalar(1))
63*bf2c3715SXin Li {
64*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *m, *n, *ldc).setZero();
65*bf2c3715SXin Li else matrix(c, *m, *n, *ldc) *= beta;
66*bf2c3715SXin Li }
67*bf2c3715SXin Li
68*bf2c3715SXin Li if(*k == 0)
69*bf2c3715SXin Li return 0;
70*bf2c3715SXin Li
71*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic> blocking(*m,*n,*k,1,true);
72*bf2c3715SXin Li
73*bf2c3715SXin Li int code = OP(*opa) | (OP(*opb) << 2);
74*bf2c3715SXin Li func[code](*m, *n, *k, a, *lda, b, *ldb, c, 1, *ldc, alpha, blocking, 0);
75*bf2c3715SXin Li return 0;
76*bf2c3715SXin Li }
77*bf2c3715SXin Li
EIGEN_BLAS_FUNC(trsm)78*bf2c3715SXin Li int EIGEN_BLAS_FUNC(trsm)(const char *side, const char *uplo, const char *opa, const char *diag, const int *m, const int *n,
79*bf2c3715SXin Li const RealScalar *palpha, const RealScalar *pa, const int *lda, RealScalar *pb, const int *ldb)
80*bf2c3715SXin Li {
81*bf2c3715SXin Li // std::cerr << "in trsm " << *side << " " << *uplo << " " << *opa << " " << *diag << " " << *m << "," << *n << " " << *palpha << " " << *lda << " " << *ldb<< "\n";
82*bf2c3715SXin Li typedef void (*functype)(DenseIndex, DenseIndex, const Scalar *, DenseIndex, Scalar *, DenseIndex, DenseIndex, internal::level3_blocking<Scalar,Scalar>&);
83*bf2c3715SXin Li static const functype func[32] = {
84*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
85*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|0, false,ColMajor,ColMajor,1>::run),
86*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
87*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|0, false,RowMajor,ColMajor,1>::run),
88*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
89*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|0, Conj, RowMajor,ColMajor,1>::run),\
90*bf2c3715SXin Li 0,
91*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
92*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|0, false,ColMajor,ColMajor,1>::run),
93*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
94*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|0, false,RowMajor,ColMajor,1>::run),
95*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
96*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|0, Conj, RowMajor,ColMajor,1>::run),
97*bf2c3715SXin Li 0,
98*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
99*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|0, false,ColMajor,ColMajor,1>::run),
100*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
101*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|0, false,RowMajor,ColMajor,1>::run),
102*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
103*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|0, Conj, RowMajor,ColMajor,1>::run),
104*bf2c3715SXin Li 0,
105*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
106*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|0, false,ColMajor,ColMajor,1>::run),
107*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
108*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|0, false,RowMajor,ColMajor,1>::run),
109*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
110*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|0, Conj, RowMajor,ColMajor,1>::run),
111*bf2c3715SXin Li 0,
112*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (UP << 3) | (UNIT << 4)
113*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|UnitDiag,false,ColMajor,ColMajor,1>::run),
114*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (UP << 3) | (UNIT << 4)
115*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|UnitDiag,false,RowMajor,ColMajor,1>::run),
116*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (UP << 3) | (UNIT << 4)
117*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|UnitDiag,Conj, RowMajor,ColMajor,1>::run),
118*bf2c3715SXin Li 0,
119*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
120*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|UnitDiag,false,ColMajor,ColMajor,1>::run),
121*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
122*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|UnitDiag,false,RowMajor,ColMajor,1>::run),
123*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
124*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|UnitDiag,Conj, RowMajor,ColMajor,1>::run),
125*bf2c3715SXin Li 0,
126*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (LO << 3) | (UNIT << 4)
127*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Lower|UnitDiag,false,ColMajor,ColMajor,1>::run),
128*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (LO << 3) | (UNIT << 4)
129*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|UnitDiag,false,RowMajor,ColMajor,1>::run),
130*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (LO << 3) | (UNIT << 4)
131*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheLeft, Upper|UnitDiag,Conj, RowMajor,ColMajor,1>::run),
132*bf2c3715SXin Li 0,
133*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
134*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Lower|UnitDiag,false,ColMajor,ColMajor,1>::run),
135*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
136*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|UnitDiag,false,RowMajor,ColMajor,1>::run),
137*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
138*bf2c3715SXin Li (internal::triangular_solve_matrix<Scalar,DenseIndex,OnTheRight,Upper|UnitDiag,Conj, RowMajor,ColMajor,1>::run),
139*bf2c3715SXin Li 0
140*bf2c3715SXin Li };
141*bf2c3715SXin Li
142*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
143*bf2c3715SXin Li Scalar* b = reinterpret_cast<Scalar*>(pb);
144*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
145*bf2c3715SXin Li
146*bf2c3715SXin Li int info = 0;
147*bf2c3715SXin Li if(SIDE(*side)==INVALID) info = 1;
148*bf2c3715SXin Li else if(UPLO(*uplo)==INVALID) info = 2;
149*bf2c3715SXin Li else if(OP(*opa)==INVALID) info = 3;
150*bf2c3715SXin Li else if(DIAG(*diag)==INVALID) info = 4;
151*bf2c3715SXin Li else if(*m<0) info = 5;
152*bf2c3715SXin Li else if(*n<0) info = 6;
153*bf2c3715SXin Li else if(*lda<std::max(1,(SIDE(*side)==LEFT)?*m:*n)) info = 9;
154*bf2c3715SXin Li else if(*ldb<std::max(1,*m)) info = 11;
155*bf2c3715SXin Li if(info)
156*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"TRSM ",&info,6);
157*bf2c3715SXin Li
158*bf2c3715SXin Li if(*m==0 || *n==0)
159*bf2c3715SXin Li return 0;
160*bf2c3715SXin Li
161*bf2c3715SXin Li int code = OP(*opa) | (SIDE(*side) << 2) | (UPLO(*uplo) << 3) | (DIAG(*diag) << 4);
162*bf2c3715SXin Li
163*bf2c3715SXin Li if(SIDE(*side)==LEFT)
164*bf2c3715SXin Li {
165*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic,4> blocking(*m,*n,*m,1,false);
166*bf2c3715SXin Li func[code](*m, *n, a, *lda, b, 1, *ldb, blocking);
167*bf2c3715SXin Li }
168*bf2c3715SXin Li else
169*bf2c3715SXin Li {
170*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic,4> blocking(*m,*n,*n,1,false);
171*bf2c3715SXin Li func[code](*n, *m, a, *lda, b, 1, *ldb, blocking);
172*bf2c3715SXin Li }
173*bf2c3715SXin Li
174*bf2c3715SXin Li if(alpha!=Scalar(1))
175*bf2c3715SXin Li matrix(b,*m,*n,*ldb) *= alpha;
176*bf2c3715SXin Li
177*bf2c3715SXin Li return 0;
178*bf2c3715SXin Li }
179*bf2c3715SXin Li
180*bf2c3715SXin Li
181*bf2c3715SXin Li // b = alpha*op(a)*b for side = 'L'or'l'
182*bf2c3715SXin Li // b = alpha*b*op(a) for side = 'R'or'r'
EIGEN_BLAS_FUNC(trmm)183*bf2c3715SXin Li int EIGEN_BLAS_FUNC(trmm)(const char *side, const char *uplo, const char *opa, const char *diag, const int *m, const int *n,
184*bf2c3715SXin Li const RealScalar *palpha, const RealScalar *pa, const int *lda, RealScalar *pb, const int *ldb)
185*bf2c3715SXin Li {
186*bf2c3715SXin Li // std::cerr << "in trmm " << *side << " " << *uplo << " " << *opa << " " << *diag << " " << *m << " " << *n << " " << *lda << " " << *ldb << " " << *palpha << "\n";
187*bf2c3715SXin Li typedef void (*functype)(DenseIndex, DenseIndex, DenseIndex, const Scalar *, DenseIndex, const Scalar *, DenseIndex, Scalar *, DenseIndex, DenseIndex, const Scalar&, internal::level3_blocking<Scalar,Scalar>&);
188*bf2c3715SXin Li static const functype func[32] = {
189*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
190*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, true, ColMajor,false,ColMajor,false,ColMajor,1>::run),
191*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
192*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, true, RowMajor,false,ColMajor,false,ColMajor,1>::run),
193*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (UP << 3) | (NUNIT << 4)
194*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, true, RowMajor,Conj, ColMajor,false,ColMajor,1>::run),
195*bf2c3715SXin Li 0,
196*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
197*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, false,ColMajor,false,ColMajor,false,ColMajor,1>::run),
198*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
199*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, false,ColMajor,false,RowMajor,false,ColMajor,1>::run),
200*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (UP << 3) | (NUNIT << 4)
201*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, false,ColMajor,false,RowMajor,Conj, ColMajor,1>::run),
202*bf2c3715SXin Li 0,
203*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
204*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, true, ColMajor,false,ColMajor,false,ColMajor,1>::run),
205*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
206*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, true, RowMajor,false,ColMajor,false,ColMajor,1>::run),
207*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (LO << 3) | (NUNIT << 4)
208*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, true, RowMajor,Conj, ColMajor,false,ColMajor,1>::run),
209*bf2c3715SXin Li 0,
210*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
211*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|0, false,ColMajor,false,ColMajor,false,ColMajor,1>::run),
212*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
213*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, false,ColMajor,false,RowMajor,false,ColMajor,1>::run),
214*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (LO << 3) | (NUNIT << 4)
215*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|0, false,ColMajor,false,RowMajor,Conj, ColMajor,1>::run),
216*bf2c3715SXin Li 0,
217*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (UP << 3) | (UNIT << 4)
218*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,true, ColMajor,false,ColMajor,false,ColMajor,1>::run),
219*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (UP << 3) | (UNIT << 4)
220*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,true, RowMajor,false,ColMajor,false,ColMajor,1>::run),
221*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (UP << 3) | (UNIT << 4)
222*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,true, RowMajor,Conj, ColMajor,false,ColMajor,1>::run),
223*bf2c3715SXin Li 0,
224*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
225*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,false,ColMajor,false,ColMajor,false,ColMajor,1>::run),
226*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
227*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,false,ColMajor,false,RowMajor,false,ColMajor,1>::run),
228*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (UP << 3) | (UNIT << 4)
229*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,false,ColMajor,false,RowMajor,Conj, ColMajor,1>::run),
230*bf2c3715SXin Li 0,
231*bf2c3715SXin Li // array index: NOTR | (LEFT << 2) | (LO << 3) | (UNIT << 4)
232*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,true, ColMajor,false,ColMajor,false,ColMajor,1>::run),
233*bf2c3715SXin Li // array index: TR | (LEFT << 2) | (LO << 3) | (UNIT << 4)
234*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,true, RowMajor,false,ColMajor,false,ColMajor,1>::run),
235*bf2c3715SXin Li // array index: ADJ | (LEFT << 2) | (LO << 3) | (UNIT << 4)
236*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,true, RowMajor,Conj, ColMajor,false,ColMajor,1>::run),
237*bf2c3715SXin Li 0,
238*bf2c3715SXin Li // array index: NOTR | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
239*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Lower|UnitDiag,false,ColMajor,false,ColMajor,false,ColMajor,1>::run),
240*bf2c3715SXin Li // array index: TR | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
241*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,false,ColMajor,false,RowMajor,false,ColMajor,1>::run),
242*bf2c3715SXin Li // array index: ADJ | (RIGHT << 2) | (LO << 3) | (UNIT << 4)
243*bf2c3715SXin Li (internal::product_triangular_matrix_matrix<Scalar,DenseIndex,Upper|UnitDiag,false,ColMajor,false,RowMajor,Conj, ColMajor,1>::run),
244*bf2c3715SXin Li 0
245*bf2c3715SXin Li };
246*bf2c3715SXin Li
247*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
248*bf2c3715SXin Li Scalar* b = reinterpret_cast<Scalar*>(pb);
249*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
250*bf2c3715SXin Li
251*bf2c3715SXin Li int info = 0;
252*bf2c3715SXin Li if(SIDE(*side)==INVALID) info = 1;
253*bf2c3715SXin Li else if(UPLO(*uplo)==INVALID) info = 2;
254*bf2c3715SXin Li else if(OP(*opa)==INVALID) info = 3;
255*bf2c3715SXin Li else if(DIAG(*diag)==INVALID) info = 4;
256*bf2c3715SXin Li else if(*m<0) info = 5;
257*bf2c3715SXin Li else if(*n<0) info = 6;
258*bf2c3715SXin Li else if(*lda<std::max(1,(SIDE(*side)==LEFT)?*m:*n)) info = 9;
259*bf2c3715SXin Li else if(*ldb<std::max(1,*m)) info = 11;
260*bf2c3715SXin Li if(info)
261*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"TRMM ",&info,6);
262*bf2c3715SXin Li
263*bf2c3715SXin Li int code = OP(*opa) | (SIDE(*side) << 2) | (UPLO(*uplo) << 3) | (DIAG(*diag) << 4);
264*bf2c3715SXin Li
265*bf2c3715SXin Li if(*m==0 || *n==0)
266*bf2c3715SXin Li return 1;
267*bf2c3715SXin Li
268*bf2c3715SXin Li // FIXME find a way to avoid this copy
269*bf2c3715SXin Li Matrix<Scalar,Dynamic,Dynamic,ColMajor> tmp = matrix(b,*m,*n,*ldb);
270*bf2c3715SXin Li matrix(b,*m,*n,*ldb).setZero();
271*bf2c3715SXin Li
272*bf2c3715SXin Li if(SIDE(*side)==LEFT)
273*bf2c3715SXin Li {
274*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic,4> blocking(*m,*n,*m,1,false);
275*bf2c3715SXin Li func[code](*m, *n, *m, a, *lda, tmp.data(), tmp.outerStride(), b, 1, *ldb, alpha, blocking);
276*bf2c3715SXin Li }
277*bf2c3715SXin Li else
278*bf2c3715SXin Li {
279*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic,4> blocking(*m,*n,*n,1,false);
280*bf2c3715SXin Li func[code](*m, *n, *n, tmp.data(), tmp.outerStride(), a, *lda, b, 1, *ldb, alpha, blocking);
281*bf2c3715SXin Li }
282*bf2c3715SXin Li return 1;
283*bf2c3715SXin Li }
284*bf2c3715SXin Li
285*bf2c3715SXin Li // c = alpha*a*b + beta*c for side = 'L'or'l'
286*bf2c3715SXin Li // c = alpha*b*a + beta*c for side = 'R'or'r
EIGEN_BLAS_FUNC(symm)287*bf2c3715SXin Li int EIGEN_BLAS_FUNC(symm)(const char *side, const char *uplo, const int *m, const int *n, const RealScalar *palpha,
288*bf2c3715SXin Li const RealScalar *pa, const int *lda, const RealScalar *pb, const int *ldb, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
289*bf2c3715SXin Li {
290*bf2c3715SXin Li // std::cerr << "in symm " << *side << " " << *uplo << " " << *m << "x" << *n << " lda:" << *lda << " ldb:" << *ldb << " ldc:" << *ldc << " alpha:" << *palpha << " beta:" << *pbeta << "\n";
291*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
292*bf2c3715SXin Li const Scalar* b = reinterpret_cast<const Scalar*>(pb);
293*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
294*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
295*bf2c3715SXin Li Scalar beta = *reinterpret_cast<const Scalar*>(pbeta);
296*bf2c3715SXin Li
297*bf2c3715SXin Li int info = 0;
298*bf2c3715SXin Li if(SIDE(*side)==INVALID) info = 1;
299*bf2c3715SXin Li else if(UPLO(*uplo)==INVALID) info = 2;
300*bf2c3715SXin Li else if(*m<0) info = 3;
301*bf2c3715SXin Li else if(*n<0) info = 4;
302*bf2c3715SXin Li else if(*lda<std::max(1,(SIDE(*side)==LEFT)?*m:*n)) info = 7;
303*bf2c3715SXin Li else if(*ldb<std::max(1,*m)) info = 9;
304*bf2c3715SXin Li else if(*ldc<std::max(1,*m)) info = 12;
305*bf2c3715SXin Li if(info)
306*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"SYMM ",&info,6);
307*bf2c3715SXin Li
308*bf2c3715SXin Li if(beta!=Scalar(1))
309*bf2c3715SXin Li {
310*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *m, *n, *ldc).setZero();
311*bf2c3715SXin Li else matrix(c, *m, *n, *ldc) *= beta;
312*bf2c3715SXin Li }
313*bf2c3715SXin Li
314*bf2c3715SXin Li if(*m==0 || *n==0)
315*bf2c3715SXin Li {
316*bf2c3715SXin Li return 1;
317*bf2c3715SXin Li }
318*bf2c3715SXin Li
319*bf2c3715SXin Li int size = (SIDE(*side)==LEFT) ? (*m) : (*n);
320*bf2c3715SXin Li #if ISCOMPLEX
321*bf2c3715SXin Li // FIXME add support for symmetric complex matrix
322*bf2c3715SXin Li Matrix<Scalar,Dynamic,Dynamic,ColMajor> matA(size,size);
323*bf2c3715SXin Li if(UPLO(*uplo)==UP)
324*bf2c3715SXin Li {
325*bf2c3715SXin Li matA.triangularView<Upper>() = matrix(a,size,size,*lda);
326*bf2c3715SXin Li matA.triangularView<Lower>() = matrix(a,size,size,*lda).transpose();
327*bf2c3715SXin Li }
328*bf2c3715SXin Li else if(UPLO(*uplo)==LO)
329*bf2c3715SXin Li {
330*bf2c3715SXin Li matA.triangularView<Lower>() = matrix(a,size,size,*lda);
331*bf2c3715SXin Li matA.triangularView<Upper>() = matrix(a,size,size,*lda).transpose();
332*bf2c3715SXin Li }
333*bf2c3715SXin Li if(SIDE(*side)==LEFT)
334*bf2c3715SXin Li matrix(c, *m, *n, *ldc) += alpha * matA * matrix(b, *m, *n, *ldb);
335*bf2c3715SXin Li else if(SIDE(*side)==RIGHT)
336*bf2c3715SXin Li matrix(c, *m, *n, *ldc) += alpha * matrix(b, *m, *n, *ldb) * matA;
337*bf2c3715SXin Li #else
338*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic> blocking(*m,*n,size,1,false);
339*bf2c3715SXin Li
340*bf2c3715SXin Li if(SIDE(*side)==LEFT)
341*bf2c3715SXin Li if(UPLO(*uplo)==UP) internal::product_selfadjoint_matrix<Scalar, DenseIndex, RowMajor,true,false, ColMajor,false,false, ColMajor,1>::run(*m, *n, a, *lda, b, *ldb, c, 1, *ldc, alpha, blocking);
342*bf2c3715SXin Li else if(UPLO(*uplo)==LO) internal::product_selfadjoint_matrix<Scalar, DenseIndex, ColMajor,true,false, ColMajor,false,false, ColMajor,1>::run(*m, *n, a, *lda, b, *ldb, c, 1, *ldc, alpha, blocking);
343*bf2c3715SXin Li else return 0;
344*bf2c3715SXin Li else if(SIDE(*side)==RIGHT)
345*bf2c3715SXin Li if(UPLO(*uplo)==UP) internal::product_selfadjoint_matrix<Scalar, DenseIndex, ColMajor,false,false, RowMajor,true,false, ColMajor,1>::run(*m, *n, b, *ldb, a, *lda, c, 1, *ldc, alpha, blocking);
346*bf2c3715SXin Li else if(UPLO(*uplo)==LO) internal::product_selfadjoint_matrix<Scalar, DenseIndex, ColMajor,false,false, ColMajor,true,false, ColMajor,1>::run(*m, *n, b, *ldb, a, *lda, c, 1, *ldc, alpha, blocking);
347*bf2c3715SXin Li else return 0;
348*bf2c3715SXin Li else
349*bf2c3715SXin Li return 0;
350*bf2c3715SXin Li #endif
351*bf2c3715SXin Li
352*bf2c3715SXin Li return 0;
353*bf2c3715SXin Li }
354*bf2c3715SXin Li
355*bf2c3715SXin Li // c = alpha*a*a' + beta*c for op = 'N'or'n'
356*bf2c3715SXin Li // c = alpha*a'*a + beta*c for op = 'T'or't','C'or'c'
EIGEN_BLAS_FUNC(syrk)357*bf2c3715SXin Li int EIGEN_BLAS_FUNC(syrk)(const char *uplo, const char *op, const int *n, const int *k,
358*bf2c3715SXin Li const RealScalar *palpha, const RealScalar *pa, const int *lda, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
359*bf2c3715SXin Li {
360*bf2c3715SXin Li // std::cerr << "in syrk " << *uplo << " " << *op << " " << *n << " " << *k << " " << *palpha << " " << *lda << " " << *pbeta << " " << *ldc << "\n";
361*bf2c3715SXin Li #if !ISCOMPLEX
362*bf2c3715SXin Li typedef void (*functype)(DenseIndex, DenseIndex, const Scalar *, DenseIndex, const Scalar *, DenseIndex, Scalar *, DenseIndex, DenseIndex, const Scalar&, internal::level3_blocking<Scalar,Scalar>&);
363*bf2c3715SXin Li static const functype func[8] = {
364*bf2c3715SXin Li // array index: NOTR | (UP << 2)
365*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,ColMajor,Conj, 1, Upper>::run),
366*bf2c3715SXin Li // array index: TR | (UP << 2)
367*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,false,Scalar,ColMajor,ColMajor,Conj, 1, Upper>::run),
368*bf2c3715SXin Li // array index: ADJ | (UP << 2)
369*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,ColMajor,ColMajor,false,1, Upper>::run),
370*bf2c3715SXin Li 0,
371*bf2c3715SXin Li // array index: NOTR | (LO << 2)
372*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,ColMajor,Conj, 1, Lower>::run),
373*bf2c3715SXin Li // array index: TR | (LO << 2)
374*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,false,Scalar,ColMajor,ColMajor,Conj, 1, Lower>::run),
375*bf2c3715SXin Li // array index: ADJ | (LO << 2)
376*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,ColMajor,ColMajor,false,1, Lower>::run),
377*bf2c3715SXin Li 0
378*bf2c3715SXin Li };
379*bf2c3715SXin Li #endif
380*bf2c3715SXin Li
381*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
382*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
383*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
384*bf2c3715SXin Li Scalar beta = *reinterpret_cast<const Scalar*>(pbeta);
385*bf2c3715SXin Li
386*bf2c3715SXin Li int info = 0;
387*bf2c3715SXin Li if(UPLO(*uplo)==INVALID) info = 1;
388*bf2c3715SXin Li else if(OP(*op)==INVALID || (ISCOMPLEX && OP(*op)==ADJ) ) info = 2;
389*bf2c3715SXin Li else if(*n<0) info = 3;
390*bf2c3715SXin Li else if(*k<0) info = 4;
391*bf2c3715SXin Li else if(*lda<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 7;
392*bf2c3715SXin Li else if(*ldc<std::max(1,*n)) info = 10;
393*bf2c3715SXin Li if(info)
394*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"SYRK ",&info,6);
395*bf2c3715SXin Li
396*bf2c3715SXin Li if(beta!=Scalar(1))
397*bf2c3715SXin Li {
398*bf2c3715SXin Li if(UPLO(*uplo)==UP)
399*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Upper>().setZero();
400*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<Upper>() *= beta;
401*bf2c3715SXin Li else
402*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Lower>().setZero();
403*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<Lower>() *= beta;
404*bf2c3715SXin Li }
405*bf2c3715SXin Li
406*bf2c3715SXin Li if(*n==0 || *k==0)
407*bf2c3715SXin Li return 0;
408*bf2c3715SXin Li
409*bf2c3715SXin Li #if ISCOMPLEX
410*bf2c3715SXin Li // FIXME add support for symmetric complex matrix
411*bf2c3715SXin Li if(UPLO(*uplo)==UP)
412*bf2c3715SXin Li {
413*bf2c3715SXin Li if(OP(*op)==NOTR)
414*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>() += alpha * matrix(a,*n,*k,*lda) * matrix(a,*n,*k,*lda).transpose();
415*bf2c3715SXin Li else
416*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>() += alpha * matrix(a,*k,*n,*lda).transpose() * matrix(a,*k,*n,*lda);
417*bf2c3715SXin Li }
418*bf2c3715SXin Li else
419*bf2c3715SXin Li {
420*bf2c3715SXin Li if(OP(*op)==NOTR)
421*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>() += alpha * matrix(a,*n,*k,*lda) * matrix(a,*n,*k,*lda).transpose();
422*bf2c3715SXin Li else
423*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>() += alpha * matrix(a,*k,*n,*lda).transpose() * matrix(a,*k,*n,*lda);
424*bf2c3715SXin Li }
425*bf2c3715SXin Li #else
426*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic> blocking(*n,*n,*k,1,false);
427*bf2c3715SXin Li
428*bf2c3715SXin Li int code = OP(*op) | (UPLO(*uplo) << 2);
429*bf2c3715SXin Li func[code](*n, *k, a, *lda, a, *lda, c, 1, *ldc, alpha, blocking);
430*bf2c3715SXin Li #endif
431*bf2c3715SXin Li
432*bf2c3715SXin Li return 0;
433*bf2c3715SXin Li }
434*bf2c3715SXin Li
435*bf2c3715SXin Li // c = alpha*a*b' + alpha*b*a' + beta*c for op = 'N'or'n'
436*bf2c3715SXin Li // c = alpha*a'*b + alpha*b'*a + beta*c for op = 'T'or't'
EIGEN_BLAS_FUNC(syr2k)437*bf2c3715SXin Li int EIGEN_BLAS_FUNC(syr2k)(const char *uplo, const char *op, const int *n, const int *k, const RealScalar *palpha,
438*bf2c3715SXin Li const RealScalar *pa, const int *lda, const RealScalar *pb, const int *ldb, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
439*bf2c3715SXin Li {
440*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
441*bf2c3715SXin Li const Scalar* b = reinterpret_cast<const Scalar*>(pb);
442*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
443*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
444*bf2c3715SXin Li Scalar beta = *reinterpret_cast<const Scalar*>(pbeta);
445*bf2c3715SXin Li
446*bf2c3715SXin Li // std::cerr << "in syr2k " << *uplo << " " << *op << " " << *n << " " << *k << " " << alpha << " " << *lda << " " << *ldb << " " << beta << " " << *ldc << "\n";
447*bf2c3715SXin Li
448*bf2c3715SXin Li int info = 0;
449*bf2c3715SXin Li if(UPLO(*uplo)==INVALID) info = 1;
450*bf2c3715SXin Li else if(OP(*op)==INVALID || (ISCOMPLEX && OP(*op)==ADJ) ) info = 2;
451*bf2c3715SXin Li else if(*n<0) info = 3;
452*bf2c3715SXin Li else if(*k<0) info = 4;
453*bf2c3715SXin Li else if(*lda<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 7;
454*bf2c3715SXin Li else if(*ldb<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 9;
455*bf2c3715SXin Li else if(*ldc<std::max(1,*n)) info = 12;
456*bf2c3715SXin Li if(info)
457*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"SYR2K",&info,6);
458*bf2c3715SXin Li
459*bf2c3715SXin Li if(beta!=Scalar(1))
460*bf2c3715SXin Li {
461*bf2c3715SXin Li if(UPLO(*uplo)==UP)
462*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Upper>().setZero();
463*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<Upper>() *= beta;
464*bf2c3715SXin Li else
465*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Lower>().setZero();
466*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<Lower>() *= beta;
467*bf2c3715SXin Li }
468*bf2c3715SXin Li
469*bf2c3715SXin Li if(*k==0)
470*bf2c3715SXin Li return 1;
471*bf2c3715SXin Li
472*bf2c3715SXin Li if(OP(*op)==NOTR)
473*bf2c3715SXin Li {
474*bf2c3715SXin Li if(UPLO(*uplo)==UP)
475*bf2c3715SXin Li {
476*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>()
477*bf2c3715SXin Li += alpha *matrix(a, *n, *k, *lda)*matrix(b, *n, *k, *ldb).transpose()
478*bf2c3715SXin Li + alpha*matrix(b, *n, *k, *ldb)*matrix(a, *n, *k, *lda).transpose();
479*bf2c3715SXin Li }
480*bf2c3715SXin Li else if(UPLO(*uplo)==LO)
481*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>()
482*bf2c3715SXin Li += alpha*matrix(a, *n, *k, *lda)*matrix(b, *n, *k, *ldb).transpose()
483*bf2c3715SXin Li + alpha*matrix(b, *n, *k, *ldb)*matrix(a, *n, *k, *lda).transpose();
484*bf2c3715SXin Li }
485*bf2c3715SXin Li else if(OP(*op)==TR || OP(*op)==ADJ)
486*bf2c3715SXin Li {
487*bf2c3715SXin Li if(UPLO(*uplo)==UP)
488*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>()
489*bf2c3715SXin Li += alpha*matrix(a, *k, *n, *lda).transpose()*matrix(b, *k, *n, *ldb)
490*bf2c3715SXin Li + alpha*matrix(b, *k, *n, *ldb).transpose()*matrix(a, *k, *n, *lda);
491*bf2c3715SXin Li else if(UPLO(*uplo)==LO)
492*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>()
493*bf2c3715SXin Li += alpha*matrix(a, *k, *n, *lda).transpose()*matrix(b, *k, *n, *ldb)
494*bf2c3715SXin Li + alpha*matrix(b, *k, *n, *ldb).transpose()*matrix(a, *k, *n, *lda);
495*bf2c3715SXin Li }
496*bf2c3715SXin Li
497*bf2c3715SXin Li return 0;
498*bf2c3715SXin Li }
499*bf2c3715SXin Li
500*bf2c3715SXin Li
501*bf2c3715SXin Li #if ISCOMPLEX
502*bf2c3715SXin Li
503*bf2c3715SXin Li // c = alpha*a*b + beta*c for side = 'L'or'l'
504*bf2c3715SXin Li // c = alpha*b*a + beta*c for side = 'R'or'r
EIGEN_BLAS_FUNC(hemm)505*bf2c3715SXin Li int EIGEN_BLAS_FUNC(hemm)(const char *side, const char *uplo, const int *m, const int *n, const RealScalar *palpha,
506*bf2c3715SXin Li const RealScalar *pa, const int *lda, const RealScalar *pb, const int *ldb, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
507*bf2c3715SXin Li {
508*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
509*bf2c3715SXin Li const Scalar* b = reinterpret_cast<const Scalar*>(pb);
510*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
511*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
512*bf2c3715SXin Li Scalar beta = *reinterpret_cast<const Scalar*>(pbeta);
513*bf2c3715SXin Li
514*bf2c3715SXin Li // std::cerr << "in hemm " << *side << " " << *uplo << " " << *m << " " << *n << " " << alpha << " " << *lda << " " << beta << " " << *ldc << "\n";
515*bf2c3715SXin Li
516*bf2c3715SXin Li int info = 0;
517*bf2c3715SXin Li if(SIDE(*side)==INVALID) info = 1;
518*bf2c3715SXin Li else if(UPLO(*uplo)==INVALID) info = 2;
519*bf2c3715SXin Li else if(*m<0) info = 3;
520*bf2c3715SXin Li else if(*n<0) info = 4;
521*bf2c3715SXin Li else if(*lda<std::max(1,(SIDE(*side)==LEFT)?*m:*n)) info = 7;
522*bf2c3715SXin Li else if(*ldb<std::max(1,*m)) info = 9;
523*bf2c3715SXin Li else if(*ldc<std::max(1,*m)) info = 12;
524*bf2c3715SXin Li if(info)
525*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"HEMM ",&info,6);
526*bf2c3715SXin Li
527*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *m, *n, *ldc).setZero();
528*bf2c3715SXin Li else if(beta!=Scalar(1)) matrix(c, *m, *n, *ldc) *= beta;
529*bf2c3715SXin Li
530*bf2c3715SXin Li if(*m==0 || *n==0)
531*bf2c3715SXin Li {
532*bf2c3715SXin Li return 1;
533*bf2c3715SXin Li }
534*bf2c3715SXin Li
535*bf2c3715SXin Li int size = (SIDE(*side)==LEFT) ? (*m) : (*n);
536*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic> blocking(*m,*n,size,1,false);
537*bf2c3715SXin Li
538*bf2c3715SXin Li if(SIDE(*side)==LEFT)
539*bf2c3715SXin Li {
540*bf2c3715SXin Li if(UPLO(*uplo)==UP) internal::product_selfadjoint_matrix<Scalar,DenseIndex,RowMajor,true,Conj, ColMajor,false,false, ColMajor, 1>
541*bf2c3715SXin Li ::run(*m, *n, a, *lda, b, *ldb, c, 1, *ldc, alpha, blocking);
542*bf2c3715SXin Li else if(UPLO(*uplo)==LO) internal::product_selfadjoint_matrix<Scalar,DenseIndex,ColMajor,true,false, ColMajor,false,false, ColMajor,1>
543*bf2c3715SXin Li ::run(*m, *n, a, *lda, b, *ldb, c, 1, *ldc, alpha, blocking);
544*bf2c3715SXin Li else return 0;
545*bf2c3715SXin Li }
546*bf2c3715SXin Li else if(SIDE(*side)==RIGHT)
547*bf2c3715SXin Li {
548*bf2c3715SXin Li if(UPLO(*uplo)==UP) matrix(c,*m,*n,*ldc) += alpha * matrix(b,*m,*n,*ldb) * matrix(a,*n,*n,*lda).selfadjointView<Upper>();/*internal::product_selfadjoint_matrix<Scalar,DenseIndex,ColMajor,false,false, RowMajor,true,Conj, ColMajor, 1>
549*bf2c3715SXin Li ::run(*m, *n, b, *ldb, a, *lda, c, 1, *ldc, alpha, blocking);*/
550*bf2c3715SXin Li else if(UPLO(*uplo)==LO) internal::product_selfadjoint_matrix<Scalar,DenseIndex,ColMajor,false,false, ColMajor,true,false, ColMajor,1>
551*bf2c3715SXin Li ::run(*m, *n, b, *ldb, a, *lda, c, 1, *ldc, alpha, blocking);
552*bf2c3715SXin Li else return 0;
553*bf2c3715SXin Li }
554*bf2c3715SXin Li else
555*bf2c3715SXin Li {
556*bf2c3715SXin Li return 0;
557*bf2c3715SXin Li }
558*bf2c3715SXin Li
559*bf2c3715SXin Li return 0;
560*bf2c3715SXin Li }
561*bf2c3715SXin Li
562*bf2c3715SXin Li // c = alpha*a*conj(a') + beta*c for op = 'N'or'n'
563*bf2c3715SXin Li // c = alpha*conj(a')*a + beta*c for op = 'C'or'c'
EIGEN_BLAS_FUNC(herk)564*bf2c3715SXin Li int EIGEN_BLAS_FUNC(herk)(const char *uplo, const char *op, const int *n, const int *k,
565*bf2c3715SXin Li const RealScalar *palpha, const RealScalar *pa, const int *lda, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
566*bf2c3715SXin Li {
567*bf2c3715SXin Li // std::cerr << "in herk " << *uplo << " " << *op << " " << *n << " " << *k << " " << *palpha << " " << *lda << " " << *pbeta << " " << *ldc << "\n";
568*bf2c3715SXin Li
569*bf2c3715SXin Li typedef void (*functype)(DenseIndex, DenseIndex, const Scalar *, DenseIndex, const Scalar *, DenseIndex, Scalar *, DenseIndex, DenseIndex, const Scalar&, internal::level3_blocking<Scalar,Scalar>&);
570*bf2c3715SXin Li static const functype func[8] = {
571*bf2c3715SXin Li // array index: NOTR | (UP << 2)
572*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,Conj, ColMajor,1,Upper>::run),
573*bf2c3715SXin Li 0,
574*bf2c3715SXin Li // array index: ADJ | (UP << 2)
575*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,ColMajor,false,ColMajor,1,Upper>::run),
576*bf2c3715SXin Li 0,
577*bf2c3715SXin Li // array index: NOTR | (LO << 2)
578*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,ColMajor,false,Scalar,RowMajor,Conj, ColMajor,1,Lower>::run),
579*bf2c3715SXin Li 0,
580*bf2c3715SXin Li // array index: ADJ | (LO << 2)
581*bf2c3715SXin Li (internal::general_matrix_matrix_triangular_product<DenseIndex,Scalar,RowMajor,Conj, Scalar,ColMajor,false,ColMajor,1,Lower>::run),
582*bf2c3715SXin Li 0
583*bf2c3715SXin Li };
584*bf2c3715SXin Li
585*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
586*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
587*bf2c3715SXin Li RealScalar alpha = *palpha;
588*bf2c3715SXin Li RealScalar beta = *pbeta;
589*bf2c3715SXin Li
590*bf2c3715SXin Li // std::cerr << "in herk " << *uplo << " " << *op << " " << *n << " " << *k << " " << alpha << " " << *lda << " " << beta << " " << *ldc << "\n";
591*bf2c3715SXin Li
592*bf2c3715SXin Li int info = 0;
593*bf2c3715SXin Li if(UPLO(*uplo)==INVALID) info = 1;
594*bf2c3715SXin Li else if((OP(*op)==INVALID) || (OP(*op)==TR)) info = 2;
595*bf2c3715SXin Li else if(*n<0) info = 3;
596*bf2c3715SXin Li else if(*k<0) info = 4;
597*bf2c3715SXin Li else if(*lda<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 7;
598*bf2c3715SXin Li else if(*ldc<std::max(1,*n)) info = 10;
599*bf2c3715SXin Li if(info)
600*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"HERK ",&info,6);
601*bf2c3715SXin Li
602*bf2c3715SXin Li int code = OP(*op) | (UPLO(*uplo) << 2);
603*bf2c3715SXin Li
604*bf2c3715SXin Li if(beta!=RealScalar(1))
605*bf2c3715SXin Li {
606*bf2c3715SXin Li if(UPLO(*uplo)==UP)
607*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Upper>().setZero();
608*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<StrictlyUpper>() *= beta;
609*bf2c3715SXin Li else
610*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Lower>().setZero();
611*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<StrictlyLower>() *= beta;
612*bf2c3715SXin Li
613*bf2c3715SXin Li if(beta!=Scalar(0))
614*bf2c3715SXin Li {
615*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().real() *= beta;
616*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().imag().setZero();
617*bf2c3715SXin Li }
618*bf2c3715SXin Li }
619*bf2c3715SXin Li
620*bf2c3715SXin Li if(*k>0 && alpha!=RealScalar(0))
621*bf2c3715SXin Li {
622*bf2c3715SXin Li internal::gemm_blocking_space<ColMajor,Scalar,Scalar,Dynamic,Dynamic,Dynamic> blocking(*n,*n,*k,1,false);
623*bf2c3715SXin Li func[code](*n, *k, a, *lda, a, *lda, c, 1, *ldc, alpha, blocking);
624*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().imag().setZero();
625*bf2c3715SXin Li }
626*bf2c3715SXin Li return 0;
627*bf2c3715SXin Li }
628*bf2c3715SXin Li
629*bf2c3715SXin Li // c = alpha*a*conj(b') + conj(alpha)*b*conj(a') + beta*c, for op = 'N'or'n'
630*bf2c3715SXin Li // c = alpha*conj(a')*b + conj(alpha)*conj(b')*a + beta*c, for op = 'C'or'c'
EIGEN_BLAS_FUNC(her2k)631*bf2c3715SXin Li int EIGEN_BLAS_FUNC(her2k)(const char *uplo, const char *op, const int *n, const int *k,
632*bf2c3715SXin Li const RealScalar *palpha, const RealScalar *pa, const int *lda, const RealScalar *pb, const int *ldb, const RealScalar *pbeta, RealScalar *pc, const int *ldc)
633*bf2c3715SXin Li {
634*bf2c3715SXin Li const Scalar* a = reinterpret_cast<const Scalar*>(pa);
635*bf2c3715SXin Li const Scalar* b = reinterpret_cast<const Scalar*>(pb);
636*bf2c3715SXin Li Scalar* c = reinterpret_cast<Scalar*>(pc);
637*bf2c3715SXin Li Scalar alpha = *reinterpret_cast<const Scalar*>(palpha);
638*bf2c3715SXin Li RealScalar beta = *pbeta;
639*bf2c3715SXin Li
640*bf2c3715SXin Li // std::cerr << "in her2k " << *uplo << " " << *op << " " << *n << " " << *k << " " << alpha << " " << *lda << " " << *ldb << " " << beta << " " << *ldc << "\n";
641*bf2c3715SXin Li
642*bf2c3715SXin Li int info = 0;
643*bf2c3715SXin Li if(UPLO(*uplo)==INVALID) info = 1;
644*bf2c3715SXin Li else if((OP(*op)==INVALID) || (OP(*op)==TR)) info = 2;
645*bf2c3715SXin Li else if(*n<0) info = 3;
646*bf2c3715SXin Li else if(*k<0) info = 4;
647*bf2c3715SXin Li else if(*lda<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 7;
648*bf2c3715SXin Li else if(*ldb<std::max(1,(OP(*op)==NOTR)?*n:*k)) info = 9;
649*bf2c3715SXin Li else if(*ldc<std::max(1,*n)) info = 12;
650*bf2c3715SXin Li if(info)
651*bf2c3715SXin Li return xerbla_(SCALAR_SUFFIX_UP"HER2K",&info,6);
652*bf2c3715SXin Li
653*bf2c3715SXin Li if(beta!=RealScalar(1))
654*bf2c3715SXin Li {
655*bf2c3715SXin Li if(UPLO(*uplo)==UP)
656*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Upper>().setZero();
657*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<StrictlyUpper>() *= beta;
658*bf2c3715SXin Li else
659*bf2c3715SXin Li if(beta==Scalar(0)) matrix(c, *n, *n, *ldc).triangularView<Lower>().setZero();
660*bf2c3715SXin Li else matrix(c, *n, *n, *ldc).triangularView<StrictlyLower>() *= beta;
661*bf2c3715SXin Li
662*bf2c3715SXin Li if(beta!=Scalar(0))
663*bf2c3715SXin Li {
664*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().real() *= beta;
665*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().imag().setZero();
666*bf2c3715SXin Li }
667*bf2c3715SXin Li }
668*bf2c3715SXin Li else if(*k>0 && alpha!=Scalar(0))
669*bf2c3715SXin Li matrix(c, *n, *n, *ldc).diagonal().imag().setZero();
670*bf2c3715SXin Li
671*bf2c3715SXin Li if(*k==0)
672*bf2c3715SXin Li return 1;
673*bf2c3715SXin Li
674*bf2c3715SXin Li if(OP(*op)==NOTR)
675*bf2c3715SXin Li {
676*bf2c3715SXin Li if(UPLO(*uplo)==UP)
677*bf2c3715SXin Li {
678*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>()
679*bf2c3715SXin Li += alpha *matrix(a, *n, *k, *lda)*matrix(b, *n, *k, *ldb).adjoint()
680*bf2c3715SXin Li + numext::conj(alpha)*matrix(b, *n, *k, *ldb)*matrix(a, *n, *k, *lda).adjoint();
681*bf2c3715SXin Li }
682*bf2c3715SXin Li else if(UPLO(*uplo)==LO)
683*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>()
684*bf2c3715SXin Li += alpha*matrix(a, *n, *k, *lda)*matrix(b, *n, *k, *ldb).adjoint()
685*bf2c3715SXin Li + numext::conj(alpha)*matrix(b, *n, *k, *ldb)*matrix(a, *n, *k, *lda).adjoint();
686*bf2c3715SXin Li }
687*bf2c3715SXin Li else if(OP(*op)==ADJ)
688*bf2c3715SXin Li {
689*bf2c3715SXin Li if(UPLO(*uplo)==UP)
690*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Upper>()
691*bf2c3715SXin Li += alpha*matrix(a, *k, *n, *lda).adjoint()*matrix(b, *k, *n, *ldb)
692*bf2c3715SXin Li + numext::conj(alpha)*matrix(b, *k, *n, *ldb).adjoint()*matrix(a, *k, *n, *lda);
693*bf2c3715SXin Li else if(UPLO(*uplo)==LO)
694*bf2c3715SXin Li matrix(c, *n, *n, *ldc).triangularView<Lower>()
695*bf2c3715SXin Li += alpha*matrix(a, *k, *n, *lda).adjoint()*matrix(b, *k, *n, *ldb)
696*bf2c3715SXin Li + numext::conj(alpha)*matrix(b, *k, *n, *ldb).adjoint()*matrix(a, *k, *n, *lda);
697*bf2c3715SXin Li }
698*bf2c3715SXin Li
699*bf2c3715SXin Li return 1;
700*bf2c3715SXin Li }
701*bf2c3715SXin Li
702*bf2c3715SXin Li #endif // ISCOMPLEX
703