MyraMath
zhsy2kLower


Source: tests/dense/syr2k3.cpp

1 // ========================================================================= //
2 // This file is part of MyraMath, copyright (c) 2014-2019 by Ryan A Chilton //
3 // and distributed by MyraCore, LLC. See LICENSE.txt for license terms. //
4 // ========================================================================= //
5 
11 // Containers.
13 #include <myramath/dense/Matrix.h>
16 
17 // Algorithms.
19 #include <myramath/dense/gemm.h>
20 #include <myramath/dense/syr2k.h>
25 #include <myramath/dense/tril.h>
26 #include <myramath/dense/triu.h>
27 
28 // Reporting.
29 #include <tests/myratest.h>
30 
31 using namespace myra;
32 
33 namespace {
34 
35 template<class Number> void test(int I, int J, typename ReflectPrecision<Number>::type tolerance)
36  {
37  // Useful typedef.
38  typedef typename ReflectPrecision<Number>::type Precision;
39  myra::out() << typestring<Number>() << std::endl;
40  // Make random nonsquare matrix A and B.
41  auto A = Matrix<Number>::random(I,J);
42  auto B = Matrix<Number>::random(I,J);
43  // Compare syr2k(A,'N') to gemm(A,'N',B,'T')+gemm(B,'N',A,'T')
44  {
45  LowerMatrix<Number> C1(gemm(A,'N',B,'T')+gemm(B,'N',A,'T'));
46  LowerMatrix<Number> C2 = syr2k(A,B,'N');
47  Precision error = frobenius(C2-C1);
48  myra::out() << " |syr2k('N')-gemm('N','T')| = " << error << std::endl;
49  REQUIRE(error < tolerance);
50  }
51  // Compare syr2k(A,'T') to gemm(A,'T',B,'N')+gemm(B,'T',A,'N')
52  {
53  LowerMatrix<Number> C1(gemm(A,'T',B,'N')+gemm(B,'T',A,'N'));
54  LowerMatrix<Number> C2 = syr2k(A,B,'T');
55  Precision error = frobenius(C2-C1);
56  myra::out() << " |syr2k('T')-gemm('T','N')| = " << error << std::endl;
57  REQUIRE(error < tolerance);
58  }
59  // Compare syr2k(A,'H') to gemm(A,'H',B,'C')+gemm(B,'H',A,'C')
60  {
61  LowerMatrix<Number> C1(gemm(A,'H',B,'C')+gemm(B,'H',A,'C'));
62  LowerMatrix<Number> C2 = syr2k(A,B,'H');
63  Precision error = frobenius(C2-C1);
64  myra::out() << " |syr2k('H')-gemm('H','C')| = " << error << std::endl;
65  REQUIRE(error < tolerance);
66  }
67  // Compare syr2k(A,'C') to gemm(A,'C',B,'H')+gemm(B,'C',A,'H')
68  {
69  LowerMatrix<Number> C1(gemm(A,'C',B,'H')+gemm(B,'C',A,'H'));
70  LowerMatrix<Number> C2 = syr2k(A,B,'C');
71  Precision error = frobenius(C2-C1);
72  myra::out() << " |syr2k('C')-gemm('C','H')| = " << error << std::endl;
73  REQUIRE(error < tolerance);
74  }
75  }
76 
77 } // namespace
78 
79 ADD_TEST("ssyr2kLower","[dense][blas]")
80  { test<NumberS>(57,24,1.0e-4f); }
81 
82 ADD_TEST("dsyr2kLower","[dense][blas]")
83  { test<NumberD>(57,24,1.0e-8); }
84 
85 ADD_TEST("csyr2kLower","[dense][blas]")
86  { test<NumberC>(57,24,1.0e-4f); }
87 
88 ADD_TEST("zhsy2kLower","[dense][blas]")
89  { test<NumberZ>(57,24,1.0e-8); }
90 
Returns a conjugated copy of a Matrix or Vector. Or, conjugate one inplace.
Routines for computing Frobenius norms of various algebraic containers.
static Matrix< Number > random(int I, int J)
Generates a random Matrix of specified size.
Definition: Matrix.cpp:353
Range construct for a lower triangular matrix stored in rectangular packed format.
Definition: syntax.dox:1
Specialized container for a lower triangular matrix, O(N^2/2) storage. Used by symmetry exploiting ma...
Returns a transposed copy of a Matrix. The inplace version only works on a square operand...
Returns the lower triangle of a dense Matrix.
Returns the upper triangle of a dense Matrix.
Various utility functions/classes related to scalar Number types.
Routines for symmetric rank-2k updates, a specialized form of Matrix*Matrix multiplication.
General purpose dense matrix container, O(i*j) storage.
Reflects Precision trait for a Number, scalar Number types should specialize it.
Definition: Number.h:33
Returns a hermitian copy of a Matrix. The inplace version only works on a square operand.
Simplistic random number functions.
Stores a lower triangular matrix in rectangular packed format.
Definition: conjugate.h:22
Variety of routines all for dense Matrix*Matrix multiplies. Delegates to the BLAS.


Results: [PASS]

std::complex<double>
|syr2k('N')-gemm('N','T')| = 4.61977e-14
|syr2k('T')-gemm('T','N')| = 2.98808e-14
|syr2k('H')-gemm('H','C')| = 2.98808e-14
|syr2k('C')-gemm('C','H')| = 4.61977e-14


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