470 lines
19 KiB
C
470 lines
19 KiB
C
/*%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%
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% $Date: 2010-06-30 17:05:24 +0200 (Wed, 30 Jun 2010) $
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% $Revision: 1 $
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%
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% This file is part of YAP & ProbLog
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% http://www.dcc.fc.up.pt/~vsc/Yap/index.html
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% http://dtai.cs.kuleuven.be/problog
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%
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% ProbLog was developed at Katholieke Universiteit Leuven &
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% University of Porto
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%
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% Copyright 2010 Katholieke Universiteit Leuven & University of Porto
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%
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% Main authors of this file: Mantadelis Theofrastos, Ricardo Rocha
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%
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%
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% Artistic License 2.0
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%
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% Copyright (c) 2000-2006, The Perl Foundation.
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%
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% Everyone is permitted to copy and distribute verbatim copies of this
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% license document, but changing it is not allowed. Preamble
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%
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% This license establishes the terms under which a given free software
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% Package may be copied, modified, distributed, and/or
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% redistributed. The intent is that the Copyright Holder maintains some
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% artistic control over the development of that Package while still
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% keeping the Package available as open source and free software.
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%
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% You are always permitted to make arrangements wholly outside of this
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% license directly with the Copyright Holder of a given Package. If the
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%
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% Permission for Use and Modification Without Distribution
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%*/
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#include <stdlib.h>
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/* -------------------------- */
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/* Local Procedures */
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/* -------------------------- */
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static void simplification_reduction(TrEntry trie);
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static TrNode depth_reduction(TrEntry trie, TrNode depth_node, YAP_Int opt_level);
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static TrNode breadth_reduction(TrEntry trie, TrNode breadth_node, YAP_Int opt_level);
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static inline int compare_label_nodes(TrData data1, TrData data2);
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static inline void move_after(TrData data_source, TrData data_dest);
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static inline void move_last_data_after(TrData moveto_data);
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static inline void set_depth_breadth_reduction_current_data(TrData data);
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/* -------------------------- */
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/* Local Variables */
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/* -------------------------- */
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static TrData CURRENT_DEPTH_BREADTH_DATA;
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/* -------------------------- */
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/* API */
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/* -------------------------- */
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YAP_Term trie_depth_breadth(TrEntry trie, TrEntry db_trie, YAP_Int opt_level, YAP_Int start_counter, YAP_Int *end_counter) {
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TrNode depth_node, breadth_node, nested_trie;
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core_set_label_counter(start_counter);
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CURRENT_TRIE = db_trie;
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core_set_trie_db_return_term(YAP_MkAtomTerm(YAP_LookupAtom("false")));
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core_initialize_depth_breadth_trie(TrEntry_trie(db_trie), &depth_node, &breadth_node);
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set_depth_breadth_reduction_current_data(NULL);
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/* We only need to simplify the trie once! */
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/* This can be a 10% overhead for sld cases :-( */
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// printf("simplification\n"); trie_print(trie);
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if (TrNode_child(TrEntry_trie(trie)))
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simplification_reduction(trie);
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while (TrNode_child(TrEntry_trie(trie))) {
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// printf("depth\n"); trie_print(trie);
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nested_trie = depth_reduction(trie, depth_node, opt_level);
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if (nested_trie) {
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set_depth_breadth_reduction_current_data(get_data_from_trie_node(nested_trie));
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core_finalize_depth_breadth_trie(depth_node, breadth_node);
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*end_counter = core_get_label_counter();
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return YAP_MkApplTerm((YAP_Functor)(~ApplTag & TrNode_entry(TrNode_parent(nested_trie))), 1, &TrNode_entry(nested_trie));
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}
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// printf("breadth\n"); trie_print(trie);
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nested_trie = breadth_reduction(trie, breadth_node, opt_level);
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if (nested_trie) {
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set_depth_breadth_reduction_current_data(get_data_from_trie_node(nested_trie));
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core_finalize_depth_breadth_trie(depth_node, breadth_node);
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*end_counter = core_get_label_counter();
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return YAP_MkApplTerm((YAP_Functor)(~ApplTag & TrNode_entry(TrNode_parent(nested_trie))), 1, &TrNode_entry(nested_trie));
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}
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}
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core_finalize_depth_breadth_trie(depth_node, breadth_node);
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*end_counter = core_get_label_counter();
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return core_get_trie_db_return_term();
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}
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YAP_Int trie_get_db_opt_level_count(YAP_Int opt_level) {
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return core_db_trie_get_optimization_level_count(opt_level);
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}
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TrData trie_get_depth_breadth_reduction_current_data(void) {
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return CURRENT_DEPTH_BREADTH_DATA;
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}
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void trie_replace_nested_trie(TrEntry trie, YAP_Int nested_trie_id, YAP_Term new_term) {
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CURRENT_TRIE = trie;
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core_depth_breadth_trie_replace_nested_trie(TrNode_child(TrEntry_trie(trie)), nested_trie_id, new_term, &trie_data_construct, &trie_data_destruct);
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return;
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}
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YAP_Int trie_get_db_opt_min_prefix(void) {
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return core_get_trie_db_opt_min_prefix();
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}
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void trie_set_db_opt_min_prefix(YAP_Int min_prefix) {
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core_set_trie_db_opt_min_prefix(min_prefix);
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return;
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}
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/* -------------------------- */
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/* Local Procedures */
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/* -------------------------- */
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static inline
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void set_depth_breadth_reduction_current_data(TrData data) {
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CURRENT_DEPTH_BREADTH_DATA = data;
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return;
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}
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static
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void simplification_reduction(TrEntry trie) {
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TrNode node;
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TrData stop_data, new_data, data = NULL;
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stop_data = TrData_previous(TrEntry_first_data(trie));
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data = TrEntry_traverse_data(trie) = TrEntry_last_data(trie);
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while ((data != stop_data) && (data != NULL)) {
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node = core_simplification_reduction(TRIE_ENGINE, TrData_leaf(data), &trie_data_destruct);
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if (node) {
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new_trie_data(new_data, trie, node);
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PUT_DATA_IN_LEAF_TRIE_NODE(node, new_data);
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}
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if (data == TrEntry_traverse_data(trie)) {
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data = TrData_previous(data);
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TrEntry_traverse_data(trie) = data;
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} else
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data = TrEntry_traverse_data(trie);
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}
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}
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static
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TrNode depth_reduction(TrEntry trie, TrNode depth_node, YAP_Int opt_level) {
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TrNode node;
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TrData stop_data, new_data, data = NULL;
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stop_data = TrData_previous(TrEntry_first_data(trie));
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data = TrEntry_traverse_data(trie) = TrEntry_last_data(trie);
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while (data != stop_data) {
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node = core_depth_reduction(TRIE_ENGINE, TrData_leaf(data), depth_node, opt_level, &trie_data_construct, &trie_data_destruct, &trie_data_copy, &trie_data_order_correction);
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if (node && IS_FUNCTOR_NODE(TrNode_parent(node)) && (strcmp(YAP_AtomName(YAP_NameOfFunctor((YAP_Functor)(~ApplTag & TrNode_entry(TrNode_parent(node))))), NESTED_TRIE_TERM) == 0)) {
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//nested trie stop procedure return nested trie node
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return node;
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}
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if (node) {
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new_trie_data(new_data, trie, node);
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PUT_DATA_IN_LEAF_TRIE_NODE(node, new_data);
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}
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if (data == TrEntry_traverse_data(trie)) {
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data = TrData_previous(data);
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TrEntry_traverse_data(trie) = data;
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} else
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data = TrEntry_traverse_data(trie);
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}
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return NULL;
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}
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static
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TrNode breadth_reduction(TrEntry trie, TrNode breadth_node, YAP_Int opt_level) {
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TrNode node;
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TrData stop_data, new_data, data = NULL;
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stop_data = TrData_previous(TrEntry_first_data(trie));
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data = TrEntry_traverse_data(trie) = TrEntry_last_data(trie);
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while ((data != stop_data) && (data != NULL)) {
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node = core_breadth_reduction(TRIE_ENGINE, TrData_leaf(data), breadth_node, opt_level, &trie_data_construct, &trie_data_destruct, &trie_data_copy, &trie_data_order_correction);
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if (node && IS_FUNCTOR_NODE(TrNode_parent(node)) && (strcmp(YAP_AtomName(YAP_NameOfFunctor((YAP_Functor)(~ApplTag & TrNode_entry(TrNode_parent(node))))), NESTED_TRIE_TERM) == 0)) {
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//nested trie stop procedure return nested trie node
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return node;
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}
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if (node) {
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new_trie_data(new_data, trie, node);
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PUT_DATA_IN_LEAF_TRIE_NODE(node, new_data);
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}
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if (data == TrEntry_traverse_data(trie)) {
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data = TrData_previous(data);
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TrEntry_traverse_data(trie) = data;
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} else
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data = TrEntry_traverse_data(trie);
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}
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return NULL;
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}
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static inline
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void move_last_data_after(TrData moveto_data) {
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TrEntry trie = CURRENT_TRIE;
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TrData last_data = TrEntry_last_data(trie);
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TrEntry_last_data(trie) = TrData_previous(last_data);
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TrData_next(TrData_previous(last_data)) = TrData_next(last_data);
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if (moveto_data == TrData_previous(TrEntry_first_data(trie))) {
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TrData_next(last_data) = TrEntry_first_data(trie);
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TrEntry_first_data(trie) = last_data;
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} else {
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TrData_next(last_data) = TrData_next(moveto_data);
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TrData_next(moveto_data) = last_data;
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}
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TrData_previous(last_data) = moveto_data;
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TrData_previous(TrData_next(last_data)) = last_data;
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return;
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}
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static inline
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void move_after(TrData data_source, TrData data_dest) {
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TrEntry trie = CURRENT_TRIE;
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if (data_source == TrEntry_first_data(trie))
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TrEntry_first_data(trie) = TrData_next(data_source);
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else
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TrData_next(TrData_previous(data_source)) = TrData_next(data_source);
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if (data_source == TrEntry_last_data(trie))
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TrEntry_last_data(trie) = TrData_previous(data_source);
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else
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TrData_previous(TrData_next(data_source)) = TrData_previous(data_source);
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if (data_dest == TrData_previous(TrEntry_first_data(trie))) {
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TrData_next(data_source) = TrEntry_first_data(trie);
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TrData_previous(TrEntry_first_data(trie)) = data_source;
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TrEntry_first_data(trie) = data_source;
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} else {
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TrData_next(data_source) = TrData_next(data_dest);
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if (data_dest == TrEntry_last_data(trie))
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TrEntry_last_data(trie) = data_source;
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else
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TrData_previous(TrData_next(data_dest)) = data_source;
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TrData_next(data_dest) = data_source;
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}
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TrData_previous(data_source) = data_dest;
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return;
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}
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void trie_data_order_correction(void) {
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TrEntry trie = CURRENT_TRIE;
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TrData inserted_data = TrEntry_last_data(trie);
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TrData moved_data = TrData_previous(inserted_data);
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TrData moveto_data = TrData_previous(moved_data);
|
|
|
|
while((moveto_data != TrData_previous(TrEntry_first_data(trie))) && (compare_label_nodes(moveto_data, inserted_data) == 1)) {
|
|
if (compare_label_nodes(moveto_data, moved_data) == 2)
|
|
moved_data = moveto_data;
|
|
moveto_data = TrData_previous(moveto_data);
|
|
}
|
|
move_last_data_after(moveto_data);
|
|
|
|
do {
|
|
moveto_data = TrData_next(inserted_data);
|
|
while(compare_label_nodes(moveto_data, moved_data) == 2)
|
|
moveto_data = TrData_next(moveto_data);
|
|
inserted_data = moved_data;
|
|
moved_data = TrData_next(moved_data);
|
|
if (moved_data != moveto_data)
|
|
move_after(inserted_data, TrData_previous(moveto_data));
|
|
} while(moved_data);
|
|
return;
|
|
}
|
|
|
|
|
|
static inline
|
|
int compare_label_nodes(TrData data1, TrData data2) {
|
|
YAP_Term t1 = TrNode_entry(TrData_leaf(data1)), t2 = TrNode_entry(TrData_leaf(data2));
|
|
YAP_Int i1 = atol(YAP_AtomName(YAP_AtomOfTerm(t1)) + 1), i2 = atol(YAP_AtomName(YAP_AtomOfTerm(t2)) + 1);
|
|
if (i1 == i2) return 0;
|
|
if (i1 > i2) return 1;
|
|
return 2;
|
|
}
|