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RTOpPack: Extra C/C++ Code for Vector Reduction/Transformation Operators
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00001 /* 00002 // @HEADER 00003 // *********************************************************************** 00004 // 00005 // Moocho: Multi-functional Object-Oriented arCHitecture for Optimization 00006 // Copyright (2003) Sandia Corporation 00007 // 00008 // Under terms of Contract DE-AC04-94AL85000, there is a non-exclusive 00009 // license for use of this work by or on behalf of the U.S. Government. 00010 // 00011 // Redistribution and use in source and binary forms, with or without 00012 // modification, are permitted provided that the following conditions are 00013 // met: 00014 // 00015 // 1. Redistributions of source code must retain the above copyright 00016 // notice, this list of conditions and the following disclaimer. 00017 // 00018 // 2. Redistributions in binary form must reproduce the above copyright 00019 // notice, this list of conditions and the following disclaimer in the 00020 // documentation and/or other materials provided with the distribution. 00021 // 00022 // 3. Neither the name of the Corporation nor the names of the 00023 // contributors may be used to endorse or promote products derived from 00024 // this software without specific prior written permission. 00025 // 00026 // THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY 00027 // EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 00028 // IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 00029 // PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE 00030 // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 00031 // EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 00032 // PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 00033 // PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 00034 // LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 00035 // NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 00036 // SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 00037 // 00038 // Questions? Contact Roscoe A. Bartlett (rabartl@sandia.gov) 00039 // 00040 // *********************************************************************** 00041 // @HEADER 00042 */ 00043 00044 /* ///////////////////////////////////////////// */ 00045 /* RTOp_ROp_max.c */ 00046 00047 /* */ 00048 /* Note: This file was created automatically by 'new_rtop.pl' */ 00049 /* on 7/15/2002 at 17:33 */ 00050 /* */ 00051 00052 #define max(a,b) ( (a) > (b) ? (a) : (b) ) 00053 #define min(a,b) ( (a) < (b) ? (a) : (b) ) 00054 00055 #include "RTOp_ROp_max.h" 00056 #include "RTOp_obj_null_vtbl.h" /* vtbl for operator object instance data */ 00057 #include "RTOp_reduct_max_value.h" 00058 00059 00060 /* Implementation functions for RTOp_RTOp */ 00061 00062 static int RTOp_ROp_max_apply_op( 00063 const struct RTOp_RTOp_vtbl_t* vtbl, const void* obj_data 00064 , const int num_vecs, const struct RTOp_SubVector vecs[] 00065 , const int num_targ_vecs, const struct RTOp_MutableSubVector targ_vecs[] 00066 , RTOp_ReductTarget reduct_obj ) 00067 { 00068 /* */ 00069 /* Declare local variables */ 00070 /* */ 00071 00072 /* Access to the reduction object data */ 00073 RTOp_value_type *max_ele = (RTOp_value_type*)reduct_obj; 00074 /* Vector data */ 00075 RTOp_index_type sub_dim; 00076 /* v0 */ 00077 const RTOp_value_type *v0_val; 00078 ptrdiff_t v0_val_s; 00079 00080 /* Automatic temporary variables */ 00081 register RTOp_index_type k; 00082 /* Temporary element-wise reduction object */ 00083 RTOp_value_type max_ele_ith; 00084 00085 /* */ 00086 /* Validate the input */ 00087 /* */ 00088 if( num_vecs != 1 || ( num_vecs && vecs == NULL ) ) 00089 return RTOp_ERR_INVALID_NUM_VECS; 00090 if( num_targ_vecs != 0 || ( num_targ_vecs && targ_vecs == NULL ) ) 00091 return RTOp_ERR_INVALID_NUM_TARG_VECS; 00092 assert(reduct_obj); 00093 00094 00095 /* */ 00096 /* Get pointers to data */ 00097 /* */ 00098 sub_dim = vecs[0].sub_dim; 00099 /* v0 */ 00100 v0_val = vecs[0].values; 00101 v0_val_s = vecs[0].values_stride; 00102 00103 00104 /* */ 00105 /* Apply the operator: */ 00106 /* */ 00107 for( k = 0; k < sub_dim; ++k, v0_val += v0_val_s ) 00108 { 00109 /* Element-wise reduction */ 00110 max_ele_ith = (*v0_val); 00111 /* Reduction of intermediates */ 00112 (*max_ele) = max( (*max_ele), max_ele_ith ); 00113 } 00114 00115 return 0; /* success? */ 00116 } 00117 00118 static int RTOp_ROp_max_reduct_obj_reinit( 00119 const struct RTOp_RTOp_vtbl_t* vtbl, const void* obj_data 00120 ,RTOp_ReductTarget reduct_obj 00121 ) 00122 { 00123 RTOp_value_type *max_ele = (RTOp_value_type*)reduct_obj; 00124 *max_ele = -1e+50; 00125 return 0; 00126 } 00127 00128 /* Virtual function table */ 00129 const struct RTOp_RTOp_vtbl_t RTOp_ROp_max_vtbl = 00130 { 00131 &RTOp_obj_null_vtbl 00132 ,&RTOp_obj_value_vtbl 00133 ,"ROp_max" 00134 ,RTOp_ROp_max_reduct_obj_reinit 00135 ,RTOp_ROp_max_apply_op 00136 ,RTOp_reduct_max_value 00137 ,RTOp_get_reduct_max_value_op 00138 }; 00139 00140 /* Class specific functions */ 00141 00142 int RTOp_ROp_max_construct( struct RTOp_RTOp* op ) 00143 { 00144 #ifdef RTOp_DEBUG 00145 assert(op); 00146 #endif 00147 op->obj_data = NULL; 00148 op->vtbl = &RTOp_ROp_max_vtbl; 00149 op->vtbl->obj_data_vtbl->obj_create(NULL,NULL,&op->obj_data); 00150 return 0; 00151 } 00152 00153 int RTOp_ROp_max_destroy( struct RTOp_RTOp* op ) 00154 { 00155 op->vtbl->obj_data_vtbl->obj_free(NULL,NULL,&op->obj_data); 00156 op->obj_data = NULL; 00157 op->vtbl = NULL; 00158 return 0; 00159 } 00160 00161 00162 RTOp_value_type RTOp_ROp_max_val(RTOp_ReductTarget reduct_obj) 00163 { 00164 return *((RTOp_value_type*)reduct_obj); 00165 } 00166
1.7.6.1