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* Revert "restore bli_extern_defs exporting for now" This reverts commit 09fb07c350b2acee17645e8e9e1b8d829c73dca8. * Remove symbols not intended to be public * No need of def file anymore * Fix whitespace * No need of configure option * Remove export macro from definitions * Remove blas export macro from definitions
401 lines
8.1 KiB
C
401 lines
8.1 KiB
C
/*
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BLIS
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An object-based framework for developing high-performance BLAS-like
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libraries.
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Copyright (C) 2014, The University of Texas at Austin
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are
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met:
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- Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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- Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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- Neither the name(s) of the copyright holder(s) nor the names of its
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contributors may be used to endorse or promote products derived
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from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "blis.h"
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//
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// Define object-based check functions.
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//
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x, \
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obj_t* asum \
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) \
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{ \
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bli_utilv_xa_check( x, asum ); \
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}
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GENFRONT( asumv )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x \
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) \
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{ \
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bli_utilm_mkhst_check( x ); \
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}
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GENFRONT( mkherm )
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GENFRONT( mksymm )
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GENFRONT( mktrim )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x, \
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obj_t* norm \
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) \
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{ \
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bli_utilv_norm_check( x, norm ); \
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}
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GENFRONT( norm1v )
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GENFRONT( normfv )
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GENFRONT( normiv )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x, \
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obj_t* norm \
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) \
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{ \
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bli_utilm_norm_check( x, norm ); \
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}
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GENFRONT( norm1m )
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GENFRONT( normfm )
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GENFRONT( normim )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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FILE* file, \
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char* s1, \
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obj_t* x, \
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char* format, \
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char* s2 \
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) \
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{ \
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bli_utilm_fprint_check( file, s1, x, format, s2 ); \
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}
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GENFRONT( fprintv )
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GENFRONT( fprintm )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x \
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) \
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{ \
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bli_utilm_rand_check( x ); \
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}
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GENFRONT( randv )
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GENFRONT( randnv )
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GENFRONT( randm )
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GENFRONT( randnm )
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#undef GENFRONT
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#define GENFRONT( opname ) \
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\
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void PASTEMAC(opname,_check) \
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( \
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obj_t* x, \
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obj_t* scale, \
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obj_t* sumsq \
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) \
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{ \
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bli_utilv_sumsqv_check( x, scale, sumsq ); \
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}
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GENFRONT( sumsqv )
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// -----------------------------------------------------------------------------
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void bli_utilv_xa_check
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(
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obj_t* x,
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obj_t* asum
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_floating_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( asum );
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bli_check_error_code( e_val );
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// Check object dimensions.
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e_val = bli_check_vector_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_scalar_object( asum );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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e_val = bli_check_object_buffer( asum );
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bli_check_error_code( e_val );
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}
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void bli_utilm_mkhst_check
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(
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obj_t* a
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_floating_object( a );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( a );
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bli_check_error_code( e_val );
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// Check object dimensions.
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e_val = bli_check_matrix_object( a );
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bli_check_error_code( e_val );
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e_val = bli_check_square_object( a );
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bli_check_error_code( e_val );
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e_val = bli_check_object_diag_offset_equals( a, 0 );
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bli_check_error_code( e_val );
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// Check matrix storage.
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e_val = bli_check_upper_or_lower_object( a );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( a );
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bli_check_error_code( e_val );
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}
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void bli_utilv_norm_check
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(
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obj_t* x,
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obj_t* norm
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_floating_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_noninteger_object( norm );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( norm );
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bli_check_error_code( e_val );
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e_val = bli_check_object_real_proj_of( x, norm );
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bli_check_error_code( e_val );
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// Check object dimensions.
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e_val = bli_check_vector_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_scalar_object( norm );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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e_val = bli_check_object_buffer( norm );
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bli_check_error_code( e_val );
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}
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void bli_utilm_norm_check
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(
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obj_t* x,
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obj_t* norm
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_floating_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_noninteger_object( norm );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( norm );
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bli_check_error_code( e_val );
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e_val = bli_check_object_real_proj_of( x, norm );
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bli_check_error_code( e_val );
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// Check object dimensions.
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e_val = bli_check_matrix_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_scalar_object( norm );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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e_val = bli_check_object_buffer( norm );
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bli_check_error_code( e_val );
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}
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void bli_utilm_fprint_check
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(
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FILE* file,
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char* s1,
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obj_t* x,
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char* format,
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char* s2
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)
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{
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err_t e_val;
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// Check argument pointers.
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e_val = bli_check_null_pointer( file );
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bli_check_error_code( e_val );
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e_val = bli_check_null_pointer( s1 );
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bli_check_error_code( e_val );
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e_val = bli_check_null_pointer( s2 );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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}
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void bli_utilm_rand_check
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(
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obj_t* x
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_noninteger_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( x );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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}
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void bli_utilv_sumsqv_check
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(
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obj_t* x,
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obj_t* scale,
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obj_t* sumsq
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)
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{
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err_t e_val;
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// Check object datatypes.
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e_val = bli_check_floating_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( scale );
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bli_check_error_code( e_val );
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e_val = bli_check_nonconstant_object( sumsq );
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bli_check_error_code( e_val );
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// Check object dimensions.
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e_val = bli_check_vector_object( x );
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bli_check_error_code( e_val );
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e_val = bli_check_scalar_object( scale );
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bli_check_error_code( e_val );
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e_val = bli_check_scalar_object( sumsq );
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bli_check_error_code( e_val );
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// Check object buffers (for non-NULLness).
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e_val = bli_check_object_buffer( x );
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bli_check_error_code( e_val );
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e_val = bli_check_object_buffer( scale );
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bli_check_error_code( e_val );
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e_val = bli_check_object_buffer( sumsq );
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bli_check_error_code( e_val );
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}
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