OpenBLAS/utest/test_extensions/test_zimatcopy.c

823 lines
22 KiB
C

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#include "utest/openblas_utest.h"
#include "common.h"
#define DATASIZE 100
struct DATA_ZIMATCOPY {
double a_test[DATASIZE * DATASIZE * 2];
double a_verify[DATASIZE * DATASIZE * 2];
};
#ifdef BUILD_COMPLEX16
static struct DATA_ZIMATCOPY data_zimatcopy;
/**
* Comapare results computed by zimatcopy and reference func
*
* param api specifies tested api (C or Fortran)
* param order specifies row or column major order
* param trans specifies op(A), the transposition operation
* applied to the matrix A
* param rows specifies number of rows of A
* param cols specifies number of columns of A
* param alpha specifies scaling factor for matrix A
* param lda_src - leading dimension of the matrix A
* param lda_dst - leading dimension of output matrix A
* return norm of difference between openblas and reference func
*/
static double check_zimatcopy(char api, char order, char trans, blasint rows, blasint cols, double *alpha,
blasint lda_src, blasint lda_dst)
{
blasint m, n;
blasint rows_out, cols_out;
enum CBLAS_ORDER corder;
enum CBLAS_TRANSPOSE ctrans;
int conj = -1;
if (order == 'C') {
n = rows; m = cols;
}
else {
m = rows; n = cols;
}
if(trans == 'T' || trans == 'C') {
rows_out = n; cols_out = m*2;
if (trans == 'C')
conj = 1;
}
else {
rows_out = m; cols_out = n*2;
if (trans == 'R')
conj = 1;
}
drand_generate(data_zimatcopy.a_test, lda_src*m*2);
if (trans == 'T' || trans == 'C') {
ztranspose(m, n, alpha, data_zimatcopy.a_test, lda_src, data_zimatcopy.a_verify, lda_dst, conj);
}
else {
zcopy(m, n, alpha, data_zimatcopy.a_test, lda_src, data_zimatcopy.a_verify, lda_dst, conj);
}
if (api == 'F') {
BLASFUNC(zimatcopy)(&order, &trans, &rows, &cols, alpha, data_zimatcopy.a_test,
&lda_src, &lda_dst);
}
#ifndef NO_CBLAS
else {
if (order == 'C') corder = CblasColMajor;
if (order == 'R') corder = CblasRowMajor;
if (trans == 'T') ctrans = CblasTrans;
if (trans == 'N') ctrans = CblasNoTrans;
if (trans == 'C') ctrans = CblasConjTrans;
if (trans == 'R') ctrans = CblasConjNoTrans;
cblas_zimatcopy(corder, ctrans, rows, cols, alpha, data_zimatcopy.a_test,
lda_src, lda_dst);
}
#endif
// Find the differences between output matrix computed by zimatcopy and reference func
return dmatrix_difference(data_zimatcopy.a_test, data_zimatcopy.a_verify, cols_out, rows_out, lda_dst*2);
}
/**
* Check if error function was called with expected function name
* and param info
*
* param order specifies row or column major order
* param trans specifies op(A), the transposition operation
* applied to the matrix A
* param rows specifies number of rows of A
* param cols specifies number of columns of A
* param lda_src - leading dimension of the matrix A
* param lda_dst - leading dimension of output matrix A
* param expected_info - expected invalid parameter number
* return TRUE if everything is ok, otherwise FALSE
*/
static int check_badargs(char order, char trans, blasint rows, blasint cols,
blasint lda_src, blasint lda_dst, int expected_info)
{
double alpha[] = {1.0, 1.0};
set_xerbla("ZIMATCOPY", expected_info);
BLASFUNC(zimatcopy)(&order, &trans, &rows, &cols, alpha, data_zimatcopy.a_test,
&lda_src, &lda_dst);
return check_error();
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition
* Square matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, colmajor_trans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'T';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy only
* Square matrix
* alpha_r = -3.0, alpha_i = 1.0
*/
CTEST(zimatcopy, colmajor_notrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'N';
double alpha[] = {-3.0, 1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy and conjugate
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, colmajor_conj_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'R';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition and conjugate
* alpha_r = 2.0, alpha_i = 1.0
*/
CTEST(zimatcopy, colmajor_conjtrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'C';
double alpha[] = {2.0, 1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition
* Rectangular matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, colmajor_trans_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 100, lda_dst = 50;
char order = 'C';
char trans = 'T';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy only
* Rectangular matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, colmajor_notrans_col_100_row_50)
{
blasint m = 50, n = 100;
blasint lda_src = 50, lda_dst = 50;
char order = 'C';
char trans = 'N';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition and conjugate
* Rectangular matrix
* alpha_r = 1.0, alpha_i = 1.0
*/
CTEST(zimatcopy, colmajor_conjtrans_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 100, lda_dst = 50;
char order = 'C';
char trans = 'C';
double alpha[] = {1.0, 1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy and conjugate
* Rectangular matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, colmajor_conj_col_100_row_50)
{
blasint m = 50, n = 100;
blasint lda_src = 50, lda_dst = 50;
char order = 'C';
char trans = 'R';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Transposition
* Square matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, rowmajor_trans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'T';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Copy only
* Square matrix
* alpha_r = 2.0, alpha_i = 3.0
*/
CTEST(zimatcopy, rowmajor_notrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'N';
double alpha[] = {2.0, 3.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy and conjugate
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, rowmajor_conj_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'R';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition and conjugate
* alpha_r = 2.0, alpha_i = 1.0
*/
CTEST(zimatcopy, rowmajor_conjtrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'C';
double alpha[] = {2.0, 1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Copy only
* Rectangular matrix
* alpha_r = 2.0, alpha_i = 1.0
*/
CTEST(zimatcopy, rowmajor_notrans_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 50, lda_dst = 50;
char order = 'R';
char trans = 'N';
double alpha[] = {2.0, 1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Transposition
* Rectangular matrix
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, rowmajor_trans_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 50, lda_dst = 100;
char order = 'R';
char trans = 'T';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Copy and conjugate
* alpha_r = 1.5, alpha_i = -1.0
*/
CTEST(zimatcopy, rowmajor_conj_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 50, lda_dst = 50;
char order = 'R';
char trans = 'R';
double alpha[] = {1.5, -1.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* Fortran API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Transposition and conjugate
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, rowmajor_conjtrans_col_50_row_100)
{
blasint m = 100, n = 50;
blasint lda_src = 50, lda_dst = 100;
char order = 'R';
char trans = 'C';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('F', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
#ifndef NO_CBLAS
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition
* Square matrix
* alpha_r = 3.0, alpha_i = 2.0
*/
CTEST(zimatcopy, c_api_colmajor_trans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'T';
double alpha[] = {3.0, 2.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy only
* Square matrix
* alpha_r = 3.0, alpha_i = 1.5
*/
CTEST(zimatcopy, c_api_colmajor_notrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'N';
double alpha[] = {3.0, 1.5};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Transposition
* Square matrix
* alpha_r = 3.0, alpha_i = 1.0
*/
CTEST(zimatcopy, c_api_rowmajor_trans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'T';
double alpha[] = {3.0, 1.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Copy and conjugate
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, c_api_colmajor_conj_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'R';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Column Major
* Transposition and conjugate
* alpha_r = 2.0, alpha_i = 1.0
*/
CTEST(zimatcopy, c_api_colmajor_conjtrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'C';
double alpha[] = {2.0, 1.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Copy only
* Square matrix
* alpha_r = 1.0, alpha_i = 1.0
*/
CTEST(zimatcopy, c_api_rowmajor_notrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'N';
double alpha[] = {1.0, 1.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Copy and conjugate
* alpha_r = 1.5, alpha_i = -1.0
*/
CTEST(zimatcopy, c_api_rowmajor_conj_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'R';
double alpha[] = {1.5, -1.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
/**
* C API specific test
* Test zimatcopy by comparing it against reference
* with the following options:
*
* Row Major
* Transposition and conjugate
* alpha_r = 1.0, alpha_i = 2.0
*/
CTEST(zimatcopy, c_api_rowmajor_conjtrans_col_100_row_100)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'R';
char trans = 'C';
double alpha[] = {1.0, 2.0};
double norm = check_zimatcopy('C', order, trans, m, n, alpha, lda_src, lda_dst);
ASSERT_DBL_NEAR_TOL(0.0, norm, DOUBLE_EPS);
}
#endif
/**
* Test error function for an invalid param order.
* Must be column (C) or row major (R).
*/
CTEST(zimatcopy, xerbla_invalid_order)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'O';
char trans = 'T';
int expected_info = 1;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param trans.
* Must be trans (T/C) or no-trans (N/R).
*/
CTEST(zimatcopy, xerbla_invalid_trans)
{
blasint m = 100, n = 100;
blasint lda_src = 100, lda_dst = 100;
char order = 'C';
char trans = 'O';
int expected_info = 2;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_src.
* If matrices are stored using row major layout,
* lda_src must be at least n.
*/
CTEST(zimatcopy, xerbla_rowmajor_invalid_lda)
{
blasint m = 50, n = 100;
blasint lda_src = 50, lda_dst = 100;
char order = 'R';
char trans = 'T';
int expected_info = 7;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_src.
* If matrices are stored using column major layout,
* lda_src must be at least m.
*/
CTEST(zimatcopy, xerbla_colmajor_invalid_lda)
{
blasint m = 100, n = 50;
blasint lda_src = 50, lda_dst = 100;
char order = 'C';
char trans = 'T';
int expected_info = 7;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_dst.
* If matrices are stored using row major layout and
* there is no transposition, lda_dst must be at least n.
*/
CTEST(zimatcopy, xerbla_rowmajor_notrans_invalid_ldb)
{
blasint m = 50, n = 100;
blasint lda_src = 100, lda_dst = 50;
char order = 'R';
char trans = 'N';
int expected_info = 9;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_dst.
* If matrices are stored using row major layout and
* there is transposition, lda_dst must be at least m.
*/
CTEST(zimatcopy, xerbla_rowmajor_trans_invalid_ldb)
{
blasint m = 100, n = 50;
blasint lda_src = 100, lda_dst = 50;
char order = 'R';
char trans = 'T';
int expected_info = 9;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_dst.
* If matrices are stored using column major layout and
* there is no transposition, lda_dst must be at least m.
*/
CTEST(zimatcopy, xerbla_colmajor_notrans_invalid_ldb)
{
blasint m = 100, n = 50;
blasint lda_src = 100, lda_dst = 50;
char order = 'C';
char trans = 'N';
int expected_info = 9;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
/**
* Test error function for an invalid param lda_dst.
* If matrices are stored using column major layout and
* there is transposition, lda_dst must be at least n.
*/
CTEST(zimatcopy, xerbla_colmajor_trans_invalid_ldb)
{
blasint m = 50, n = 100;
blasint lda_src = 100, lda_dst = 50;
char order = 'C';
char trans = 'T';
int expected_info = 9;
int passed = check_badargs(order, trans, m, n, lda_src, lda_dst, expected_info);
ASSERT_EQUAL(TRUE, passed);
}
#endif