2bae9358d7
FossilOrigin-Name: c53d95729c009f8f80a7d63847cef7668ff73f8af0523ab65f7734696f85399c
565 lines
8.8 KiB
C
565 lines
8.8 KiB
C
/*
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This file is part of libcapwap.
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libcapwap 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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libcapwap 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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You should have received a copy of the GNU General Public License
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along with Foobar. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include "avltree.h"
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/*
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struct avlnode{
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void * data;
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struct avlnode * left;
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struct avlnode * right;
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int bal;
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};
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struct avltree{
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struct avlnode * root;
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int (*cmp)(const void*,const void*);
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void(*del)(void*);
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int count;
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};
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*/
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struct avltree * avltree_create(int (*cmp)(const void*,const void*),void(*del)(void*))
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{
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struct avltree * t = malloc(sizeof(struct avltree));
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if (!t)
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return 0;
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t->root=0;
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t->count=0;
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t->cmp=cmp;
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t->del=del;
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return t;
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}
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struct avlnode * avlnode_create(void * data)
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{
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struct avlnode * n = malloc(sizeof(struct avlnode));
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if(!n)
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return 0;
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n->left=n->right=0;
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n->bal=0;
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n->data = data;
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return n;
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}
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int avltree_insert0(struct avltree *t, struct avlnode ** parent, void ** data)
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{
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// struct avlnode * rn;
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struct avlnode *tmp;
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struct avlnode * n = *parent;
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int rc=t->cmp(*data,n->data);
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int bal;
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if (rc==0){
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*data=n->data;
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return 2;
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}
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if (rc<0){
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if (n->left)
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{
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bal = avltree_insert0(t,&n->left,data);
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if (bal>1)
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return bal;
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printf("Left ret bal %i\n",bal);
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n->bal -=bal;
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if (n->bal==0)
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return 0;
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if (n->bal==-2){
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if (n->left->bal==-1){
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n->bal=0;
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n->left->bal=0;
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*parent=n->left;
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tmp=n->left->right;
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n->left->right=n;
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n->left=tmp;
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// printf("Left rot a\n");
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// print_tree(t->root);
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return 0;
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}
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if (n->left->bal==1){
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printf("BUMBUMBUM\n");
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print_tree(t->root);
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// n->bal=0;
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// n->left->bal=0;
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*parent=n->left->right;
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if ((*parent)->bal==1) {
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n->bal=0;
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n->left->bal=-1;
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}
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else{
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n->bal=1;
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n->left->bal=0;
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}
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(*parent)->bal=0;
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n->left->right=(*parent)->left;
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(*parent)->left=n->left;
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tmp = (*parent)->right;
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(*parent)->right=n;
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n->left=tmp;
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printf("Left rot b\n");
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// print_tree(t->root);
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return 0;
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}
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print_tree(t->root);
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printf("!!!!left bal = %i\n",n->left->bal);
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exit(0);
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}
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return bal;
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}
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/* n->left is 0 */
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n->left=avlnode_create(*data);
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if (!n->left)
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return 3;
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t->count++;
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if(n->right==0){
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n->bal=-1;
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return 1;
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}
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n->bal=0;
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return 0;
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}
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else{
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if (n->right){
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bal = avltree_insert0(t,&n->right,data);
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if(bal>1)
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return bal;
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printf("Right ret bal %i\n",bal);
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n->bal+=bal;
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if (n->bal==0)
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return 0;
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if (n->bal==2){
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if (n->right->bal==1){
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n->bal=0;
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n->right->bal=0;
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*parent=n->right;
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tmp=n->right->left;
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n->right->left=n;
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n->right=tmp;
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// printf("Right rot a\n");
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// print_tree(t->root);
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return 0;
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}
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else {
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printf("Right rot b before\n");
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// print_tree(t->root);
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n->bal=0;
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n->right->bal=0;
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*parent=n->right->left;
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(*parent)->bal=0;
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n->right->left=(*parent)->right;
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(*parent)->right=n->right;
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tmp = (*parent)->left;
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(*parent)->left=n;
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n->right=tmp;
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// printf("Right rot b\n");
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// print_tree(t->root);
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return 0;
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}
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}
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return bal;
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}
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/* n->right is 0 */
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n->right=avlnode_create(*data);
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if (!n->right)
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return 3;
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t->count++;
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if(n->left==0){
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n->bal=1;
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return 1;
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}
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n->bal=0;
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return 0;
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}
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}
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void * avltree_insert(struct avltree *t, void * data)
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{
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if (t->root==0){
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t->root = avlnode_create(data);
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return t->root->data;
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}
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void * d = data;
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int rc = avltree_insert0(t,&t->root,&d);
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if (rc>3)
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return 0;
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return d;
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// printf("RC %i\n",rc);
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}
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static int rotate_r(struct avlnode *n, struct avlnode **parent)
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{
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if (n->bal!=-2)
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return 0;
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struct avlnode * tmp;
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if (n->bal==-1){
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n->bal=0;
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n->left->bal=0;
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*parent=n->left;
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tmp=n->left->right;
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n->left->right=n;
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n->left=tmp;
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return 1;
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}
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else /* if (n->left->bal==1)*/ {
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n->bal=0;
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n->left->bal=0;
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*parent=n->left->right;
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n->left->right=(*parent)->left;
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(*parent)->left=n->left;
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tmp = (*parent)->right;
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(*parent)->right=n;
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n->left=tmp;
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return 1;
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}
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}
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static int rotate_l(struct avlnode *n, struct avlnode **parent)
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{
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if (n->bal!=2)
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return 0;
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struct avlnode * tmp;
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if (n->right->bal==1){
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n->bal=0;
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n->right->bal=0;
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*parent=n->right;
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tmp=n->right->left;
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n->right->left=n;
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n->right=tmp;
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return 1;
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}
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else { /* n->bal musst be -1 */
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n->bal=0;
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n->right->bal=0;
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*parent=n->right->left;
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n->right->left=(*parent)->right;
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(*parent)->right=n->right;
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tmp = (*parent)->left;
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(*parent)->left=n;
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n->right=tmp;
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return 1;
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}
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}
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/*
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* Delete the node withe the highest value
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* returns the rebalancing factor
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*/
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static int avltree_delete_hi(struct avlnode **parent, void **data)
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{
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struct avlnode * n = *parent;
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if(n->right!=0){
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int bal = avltree_delete_hi(&n->right,data);
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n->bal-=bal;
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if (rotate_r(n,parent))
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return 0;
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return bal;
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}
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*parent=n->left;
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*data = n->data;
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if (n->left){
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free(n);
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return 0;
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}
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free(n);
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return 1;
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}
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static int avltree_delete_lo(struct avlnode **parent, void **data)
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{
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struct avlnode * n = *parent;
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if(n->left!=0){
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int bal = avltree_delete_lo(&n->left,data);
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n->bal+=bal;
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if (rotate_l(n,parent))
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return 0;
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return bal;
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}
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*parent=n->right;
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*data = n->data;
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if (n->right){
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free(n);
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return 0;
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}
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free(n);
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return 1;
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}
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int avltree_delete0(struct avltree *t, struct avlnode **parent, void **data)
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{
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struct avlnode * n = *parent;
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int rc;
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rc =t->cmp(*data,n->data);
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if (rc==0){
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if (n->right == 0 && n->left ==0){
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printf("My case a!\n");
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*parent=0;
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return 1;
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}
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if (n->right && n->left==0){
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printf("My case b!\n");
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*parent=n->right;
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return 1;
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}
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if (n->left && n->right==0){
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printf("My case c!\n");
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*parent=n->left;
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return 1;
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}
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}
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int bal;
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if (rc<0){
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if (n->left)
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{
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bal = avltree_delete0(t,&n->left,data);
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printf("Ballla = %i\n",bal);
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n->bal+=bal;
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if (!rotate_l(n,parent))
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return bal;
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return bal;
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}
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}
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else {
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if (n->right){
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printf("Bolla\n");
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bal = avltree_delete0(t,&n->right,data);
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n->bal-=bal;
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if (!rotate_r(n,parent))
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return bal;
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return bal;
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}
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}
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return 0;
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}
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void * avltree_delete(struct avltree *t, void *data)
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{
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void *d = data;
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printf("deletelel %p\n",d);
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avltree_delete0(t,&t->root,&d);
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return 0;
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}
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static int cmp(const void *k1,const void *k2)
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{
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int x1 = *((int*)k1);
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int x2 = *((int*)k2);
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return x1-x2;
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}
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int data[]={10,37,60,10,5,35,36,26,3,11,18};
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//int data[]={10,37,60,10,5,35,19,26,3,11,18};
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//int data[]={0,11,14,33,37,20};
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//int data[]={1,2,3,4,5,6,7,8,9,10,11,12,13,14,15};
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//int data[]={1,4,3,7,5,6,7,8,9,10};
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//int data[]={11,4,5,6,3,4,3,2,1,0};
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//int data[]={20,16,10,11,5,4,3,2,1,0};
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struct avlnode * ar[10000];
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int tpw = 100;
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void print_tree0(struct avlnode * n,int d,int l,int r)
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{
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int pos = l+(r-l)/2;
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ar[d*tpw+pos]=n;
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if (n->right)
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print_tree0(n->right,d+1,l+(r-l)/2,r);
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if(n->left)
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print_tree0(n->left,d+1,l,r-(r-l)/2);
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}
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void print_tree(struct avlnode * n )
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{
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int y;
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int i=0;
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for(i=0; i<10000; i++)
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ar[i]=0;
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if (n==0){
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printf("Empty Tree\n");
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return 0;
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}
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print_tree0(n,0,0,tpw);
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for (i=0; i<10; i++) {
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for (y=0; y<tpw; y++){
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struct avlnode *r=ar[tpw*i+y];
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if(r){
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printf("%i(%i)",*(int*)(r->data),r->bal);
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}
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else{
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printf(".");
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}
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}
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printf("\n");
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}
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}
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void walk(struct avlnode *n)
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{
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if (n == 0)
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return;
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walk(n->left);
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int x = *((int*)(n->data));
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printf("VAL: %i\n",x);
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walk(n->right);
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// x = *((int*)(n->data));
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// printf("VALR: %i\n",x);
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}
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#include <time.h>
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int main()
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{
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struct avltree *t = avltree_create(cmp,0);
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printf("T: %p\n",t);
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srand(time(NULL));
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int i=0;
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for (i=0; i<7; i++)
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{
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int r = rand()%0x3f; // % 0xiff;
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r = data[7-i];
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int * dr = malloc(sizeof(int));
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*dr = r;
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printf("Insert %i\n",*dr);
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void * d = avltree_insert(t,dr);
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printf("After insert %i\n",r);
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print_tree(t->root);
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if (d!=dr){
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// printf("exists\n");
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}
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}
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print_tree(t->root);
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walk(t->root);
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void * da;
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// avltree_delete(t,&data[4]);
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avltree_delete_hi(&t->root,&da);
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// printf("after del\n");
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// print_tree(t->root);
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// avltree_delete(t,&data[7]);
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avltree_delete_lo(&t->root,&da);
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// printf("after del\n");
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// print_tree(t->root);
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// avltree_delete(t,&data[5]);
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avltree_delete_lo(&t->root,&da);
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// printf("after del\n");
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// print_tree(t->root);
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return 0;
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}
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