/* Copyright (C) 2014 Statoil ASA, Norway. The file 'ecl_sum_vector.c' is part of ERT - Ensemble based Reservoir Tool. ERT is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. ERT is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License at for more details. */ #include #include #include #include #include #include #include #include #include #define ECL_SUM_VECTOR_TYPE_ID 8768778 struct ecl_sum_vector_struct { UTIL_TYPE_ID_DECLARATION; int_vector_type * node_index_list; bool_vector_type * is_rate_list; stringlist_type * key_list; const ecl_sum_type * ecl_sum; }; void ecl_sum_vector_free( ecl_sum_vector_type * ecl_sum_vector ){ int_vector_free(ecl_sum_vector->node_index_list); bool_vector_free(ecl_sum_vector->is_rate_list); stringlist_free(ecl_sum_vector->key_list); free(ecl_sum_vector); } UTIL_IS_INSTANCE_FUNCTION( ecl_sum_vector , ECL_SUM_VECTOR_TYPE_ID ) static void ecl_sum_vector_add_node(ecl_sum_vector_type * vector, const smspec_node_type * node, const char * key ) { int params_index = smspec_node_get_params_index( node ); bool is_rate_key = smspec_node_is_rate( node); int_vector_append(vector->node_index_list, params_index); bool_vector_append(vector->is_rate_list, is_rate_key); stringlist_append_copy( vector->key_list, key ); } ecl_sum_vector_type * ecl_sum_vector_alloc(const ecl_sum_type * ecl_sum, bool add_keywords) { ecl_sum_vector_type * ecl_sum_vector = (ecl_sum_vector_type*)util_malloc( sizeof * ecl_sum_vector ); UTIL_TYPE_ID_INIT( ecl_sum_vector , ECL_SUM_VECTOR_TYPE_ID); ecl_sum_vector->ecl_sum = ecl_sum; ecl_sum_vector->node_index_list = int_vector_alloc(0,0); ecl_sum_vector->is_rate_list = bool_vector_alloc(0,false); ecl_sum_vector->key_list = stringlist_alloc_new( ); if (add_keywords) { const ecl_smspec_type * smspec = ecl_sum_get_smspec(ecl_sum); for (int i=0; i < ecl_smspec_num_nodes(smspec); i++) { const smspec_node_type * node = ecl_smspec_iget_node( smspec , i ); if (!smspec_node_is_valid(node)) continue; const char * key = smspec_node_get_gen_key1(node); /* The TIME keyword is special case handled to not be included; that is to match the same special casing in the key matching function. */ if (!util_string_equal(key, "TIME")) ecl_sum_vector_add_node( ecl_sum_vector, node, key); } } return ecl_sum_vector; } static void ecl_sum_vector_add_invalid_key(ecl_sum_vector_type * vector, const char * key) { int_vector_append(vector->node_index_list, -1); bool_vector_append(vector->is_rate_list, false); stringlist_append_copy(vector->key_list, key); } /* This function will allocate a keyword vector for the keys in the @ecl_sum argument passed in, it will contain all the same keys as in the input argument @src_vector. If the @src_vector contains keys which are not present in @ecl_sum an entry marked as *invalid* will be added. The whole point about this function is to ensure that calls to: ecl_sum_fwrite_interp_csv_line( ) will result in nicely aligned output even if the different summary cases do not have the exact same keys. */ ecl_sum_vector_type * ecl_sum_vector_alloc_layout_copy(const ecl_sum_vector_type * src_vector, const ecl_sum_type * ecl_sum) { ecl_sum_vector_type * new_vector = ecl_sum_vector_alloc(ecl_sum, false); for (int i=0; i < stringlist_get_size(src_vector->key_list); i++) { const char * key = stringlist_iget(src_vector->key_list, i); if (ecl_sum_has_general_var(ecl_sum, key)) ecl_sum_vector_add_key(new_vector, key); else ecl_sum_vector_add_invalid_key(new_vector, key); } return new_vector; } bool ecl_sum_vector_add_key( ecl_sum_vector_type * ecl_sum_vector, const char * key){ if (ecl_sum_has_general_var( ecl_sum_vector->ecl_sum , key)) { const smspec_node_type * node = ecl_sum_get_general_var_node( ecl_sum_vector->ecl_sum , key ); ecl_sum_vector_add_node(ecl_sum_vector, node, key); return true; } else return false; } void ecl_sum_vector_add_keys( ecl_sum_vector_type * ecl_sum_vector, const char * pattern){ stringlist_type * keylist = ecl_sum_alloc_matching_general_var_list(ecl_sum_vector->ecl_sum , pattern); int num_keywords = stringlist_get_size(keylist); int i; for(i = 0; i < num_keywords ;i++){ const char * key = stringlist_iget(keylist, i); const smspec_node_type * node = ecl_sum_get_general_var_node( ecl_sum_vector->ecl_sum , key ); ecl_sum_vector_add_node(ecl_sum_vector, node, key); } stringlist_free(keylist); } int ecl_sum_vector_get_size(const ecl_sum_vector_type * ecl_sum_vector){ return int_vector_size(ecl_sum_vector->node_index_list); } bool ecl_sum_vector_iget_is_rate(const ecl_sum_vector_type * ecl_sum_vector, int index){ return bool_vector_iget(ecl_sum_vector->is_rate_list, index); } bool ecl_sum_vector_iget_valid(const ecl_sum_vector_type * ecl_sum_vector, int index) { return (int_vector_iget(ecl_sum_vector->node_index_list, index) >= 0); } int ecl_sum_vector_iget_param_index(const ecl_sum_vector_type * ecl_sum_vector, int index){ return int_vector_iget(ecl_sum_vector->node_index_list, index); } const char* ecl_sum_vector_iget_key(const ecl_sum_vector_type * ecl_sum_vector, int index){ return stringlist_iget( ecl_sum_vector->key_list , index); }