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280 lines
11 KiB
280 lines
11 KiB
/**
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* \file
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*
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* \author Georg Hopp
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*
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* \copyright
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* Copyright © 2012 Georg Hopp
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef __TR_TREE_MACROS_H__
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#define __TR_TREE_MACROS_H__
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#include "trbase.h"
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#define TR_TREE_RIGHT(node) (NULL!=(node)?(node)->right:NULL)
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#define TR_TREE_LEFT(node) (NULL!=(node)?(node)->left:NULL)
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#define TR_TREE_PARENT(node) (NULL!=(node)?(node)->parent:NULL)
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#define TR_TREE_CHILD(node) \
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(NULL==TR_TREE_RIGHT((node))?TR_TREE_LEFT((node)):TR_TREE_RIGHT((node)))
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#define TR_TREE_SIBLING(node) \
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(NULL!=TR_TREE_PARENT((node))? \
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((node)==TR_TREE_PARENT((node))->left? \
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TR_TREE_PARENT((node))->right: \
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TR_TREE_PARENT((node))->left): \
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NULL)
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#define TR_TREE_GRANDPARENT(node) (TR_TREE_PARENT((node))->parent)
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#define TR_TREE_UNCLE(node) \
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((node)->parent == (node)->parent->parent->left \
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? (node)->parent->parent->right \
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: (node)->parent->parent->left)
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#define TR_TREE_REPLACE_NODE(root, node1, node2) \
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if (NULL != (node1)->parent) { \
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if ((node1) == (node1)->parent->left) { \
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(node1)->parent->left = (node2); \
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} else { \
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(node1)->parent->right = (node2); \
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} \
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} else { \
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*(root) = (node2); \
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} \
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if (NULL != (node2)) { \
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(node2)->parent = (node1)->parent; \
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}
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#define TR_TREE_ROT_RCLD_right(node) ((node)->left)
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#define TR_TREE_ROT_RCLD_left(node) ((node)->right)
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#define TR_TREE_ROTATE(lr, root, node) \
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if (NULL != (node)) { \
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void * stPar = node->parent; \
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void * relCld = TR_TREE_ROT_RCLD_##lr(node); \
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void * relCCld = TR_TREE_ROT_RCLD_##lr(node)->lr; \
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void * nLeft_p = &TR_TREE_ROT_RCLD_##lr(node); \
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if (NULL != relCCld) { \
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TR_TREE_ROT_RCLD_##lr(node)->lr->parent = node; \
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} \
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TR_TREE_ROT_RCLD_##lr(node)->lr = node; \
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if (NULL != node->parent) { \
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if (node->parent->left == node) { \
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node->parent->left = relCld; \
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} else { \
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node->parent->right = relCld; \
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} \
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} else { \
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*(root) = relCld; \
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} \
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node->parent = relCld; \
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TR_TREE_ROT_RCLD_##lr(node)->parent = stPar; \
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*(void**)nLeft_p = relCCld; \
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}
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typedef enum {rbBlack=1, rbRed=2} TR_rbColor;
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#define TR_TREE_NODE_BLACK(node) \
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(NULL == (node) || rbBlack == (node)->color)
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#define TR_TREE_NODE_RED(node) \
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(NULL == (node) || rbRed == (node)->color)
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#define TR_TREE_NODE_STRICT_BLACK(node) \
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(NULL != (node) && rbBlack == (node)->color)
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#define TR_TREE_NODE_STRICT_RED(node) \
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(NULL != (node) && rbRed == (node)->color)
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#define TR_TREE_INORDER_SUCC(node, succ) \
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succ = (node)->right; \
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while (NULL != succ->left) { \
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succ = succ->left; \
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}
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/*
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* Find data in a tree.
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* Attention: This will change node, so normally you need to copy
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* it before using this macro.
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* Also be aware that found needs to be a valid lvalue and an integer.
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*/
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#define TR_TREE_FIND(node, search, found, comp) \
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(found) = -1; \
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if ((node)) { \
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while(1) { \
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(found) = (comp)((node)->data, (search)); \
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if (0 != (found)) { \
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if (! ((node)->left || (node)->right)) { \
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break; \
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} \
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if (0 < (found)) { \
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(node) = (node)->left; \
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} else { \
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(node) = (node)->right; \
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} \
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} else { \
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break; \
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} \
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} \
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}
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#define TR_TREE_BALANCE_DELETE_CASE1(node) \
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if (NULL == TR_TREE_PARENT((node))) { \
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break; \
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}
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#define TR_TREE_BALANCE_DELETE_CASE2(root, node, sibling) \
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if (NULL != (sibling) && rbRed == (sibling)->color) { \
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(node)->parent->color = rbRed; \
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(sibling)->color = rbBlack; \
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if (NULL != (node)->parent->right \
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&& (node) != (node)->parent->right) { \
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TR_TREE_ROTATE(left, (root), (node)->parent); \
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} else { \
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TR_TREE_ROTATE(right, (root), (node)->parent); \
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} \
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(sibling) = TR_TREE_SIBLING((node)); \
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}
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#define TR_TREE_BALANCE_DELETE_CASE34(root, node, sibling) \
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if (NULL == (sibling) \
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|| (rbBlack == (sibling)->color \
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&& TR_TREE_NODE_BLACK((sibling)->left) \
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&& TR_TREE_NODE_BLACK((sibling)->right))) { \
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if (NULL != (sibling)) { \
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(sibling)->color = rbRed; \
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} \
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if (rbBlack == (node)->parent->color) { \
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(node) = (node)->parent; \
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continue; \
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} else { \
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(node)->parent->color = rbBlack; \
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break; \
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} \
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}
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/*
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* this if statement is trivial,
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* due to case 2 (even though case 2 changed the sibling to a
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* sibling's child,
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* the sibling's child can't be red, since no red parent can
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* have a red child).
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*
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* the following statements just force the red to be on the
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* left of the left of the parent,
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* or right of the right, so case 6 will rotate correctly.
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*/
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#define TR_TREE_BALANCE_DELETE_CASE5(root, node, sibling) \
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if (NULL != (sibling) && rbBlack == (sibling)->color) { \
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if ((node) == (node)->parent->left \
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&& TR_TREE_NODE_BLACK((sibling)->right) \
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&& TR_TREE_NODE_STRICT_RED((sibling)->left)) { \
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(sibling)->color = rbRed; \
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(sibling)->left->color = rbBlack; \
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TR_TREE_ROTATE(right, (root), (sibling)); \
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} else if ((node) == (node)->parent->right \
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&& TR_TREE_NODE_BLACK((sibling)->left) \
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&& TR_TREE_NODE_STRICT_RED((sibling)->right)) { \
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(sibling)->color = rbRed; \
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(sibling)->right->color = rbBlack; \
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TR_TREE_ROTATE(left, (root), (sibling)); \
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} \
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(sibling) = TR_TREE_SIBLING((node)); \
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}
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#define TR_TREE_BALANCE_DELETE_CASE6(root, node, sibling) \
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if (NULL != (sibling)) { \
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(sibling)->color = (node)->parent->color; \
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} \
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if (NULL != (node) && NULL != (node)->parent) { \
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(node)->parent->color = rbBlack; \
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if (NULL != (node)->parent->right \
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&& (node) != (node)->parent->right) { \
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if (NULL != (sibling)->right) { \
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(sibling)->right->color = rbBlack; \
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} \
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TR_TREE_ROTATE(left, (root), (node)->parent); \
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} else { \
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if (NULL != (sibling)->left) { \
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(sibling)->left->color = rbBlack; \
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} \
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TR_TREE_ROTATE(right, (root), (node)->parent); \
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} \
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}
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#define TR_TREE_BALANCE_DELETE(root, node, sibling) \
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while(1) { \
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TR_TREE_BALANCE_DELETE_CASE1((node)) \
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TR_TREE_BALANCE_DELETE_CASE2((root), (node), (sibling)) \
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TR_TREE_BALANCE_DELETE_CASE34((root), (node), (sibling)) \
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TR_TREE_BALANCE_DELETE_CASE5((root), (node), (sibling)) \
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TR_TREE_BALANCE_DELETE_CASE6((root), (node), (sibling)) \
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break; \
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}
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#define TR_TREE_BALANCE_INSERT_CASE1(node) \
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if (NULL == TR_TREE_PARENT((node))) { \
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(node)->color = rbBlack; \
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break; \
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}
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#define TR_TREE_BALANCE_INSERT_CASE2(node) \
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if (rbBlack == (node)->parent->color) { \
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break; \
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}
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#define TR_TREE_BALANCE_INSERT_CASE3(node) \
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if (NULL != TR_TREE_UNCLE(node) \
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&& rbRed == TR_TREE_UNCLE(node)->color) { \
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(node)->parent->color = rbBlack; \
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TR_TREE_UNCLE(node)->color = rbBlack; \
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(node)->parent->parent->color = rbRed; \
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(node) = (node)->parent->parent; \
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continue; \
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}
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#define TR_TREE_BALANCE_INSERT_CASE4(root, node) \
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if ((node) == (node)->parent->right \
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&& (node)->parent == (node)->parent->parent->left) { \
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TR_TREE_ROTATE(left, (root), (node)->parent); \
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(node) = (node)->left; \
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} else if ((node) == (node)->parent->left \
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&& (node)->parent == (node)->parent->parent->right) { \
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TR_TREE_ROTATE(right, (root), (node)->parent); \
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(node) = (node)->right; \
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}
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#define TR_TREE_BALANCE_INSERT_CASE5(root, node) \
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(node)->parent->color = rbBlack; \
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(node)->parent->parent->color = rbRed; \
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if ((node) == (node)->parent->left) { \
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TR_TREE_ROTATE(right, (root), (node)->parent->parent); \
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} else { \
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TR_TREE_ROTATE(left, (root), (node)->parent->parent); \
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}
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#define TR_TREE_BALANCE_INSERT(root, node) \
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while (1) { \
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TR_TREE_BALANCE_INSERT_CASE1((node)) \
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TR_TREE_BALANCE_INSERT_CASE2((node)) \
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TR_TREE_BALANCE_INSERT_CASE3((node)) \
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TR_TREE_BALANCE_INSERT_CASE4((root), (node)) \
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TR_TREE_BALANCE_INSERT_CASE5((root), (node)) \
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break; \
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}
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#endif // __TR_TREE_MACROS_H__
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// vim: set ts=4 sw=4:
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