2021-12-02 16:09:43 +00:00
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#include "bintree.hpp"
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#include "stack.hpp"
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#include <iostream>
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#include <string>
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2021-12-03 07:33:31 +00:00
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#include <time.h>
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#include <cmath>
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2021-12-02 16:09:43 +00:00
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class BST : binTree<int>
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{
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private:
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binNodeArray(int) p;
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public:
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2021-12-03 07:33:31 +00:00
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~BST()
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{
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}
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2021-12-02 16:09:43 +00:00
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BST(int num)
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{
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srand(time(NULL));
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int temp = rand() % 1440;
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_root->data = temp;
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_root->pos = "root";
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std::cout << _root->pos;
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printf("-%02d:%02d \n", temp / 60, temp % 60);
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for (int i = 0; i < num - 1; i++)
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{
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temp = rand() % 1440;
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p = root();
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std::string position;
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while (temp != -1)
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{
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if (temp < (p->data))
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{
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if (hasLC(p))
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{
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p = p->lc;
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position.append("0");
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}
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else
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{
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position.append("0");
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addLC(p, temp);
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p->lc->pos = position;
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std::cout << position;
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printf("-%02d:%02d \n", temp / 60, temp % 60);
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temp = -1;
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}
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}
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else if (temp > (p->data))
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{
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if (hasRC(p))
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{
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p = p->rc;
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position.append("1");
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}
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else
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{
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position.append("1");
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addRC(p, temp);
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p->rc->pos = position;
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std::cout << position;
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printf("-%02d:%02d \n", temp / 60, temp % 60);
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temp = -1;
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}
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}
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else
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{
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i--;
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temp = -1;
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}
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}
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}
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}
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bool searchPath(binNodeArray(int) root, binNodeArray(int) target, Stack<binNodeArray(int)> *s)
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{
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if (root == NULL)
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return false;
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s->push(root);
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if (root->data == target->data)
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return true;
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bool flag = false;
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//先去左子树找
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if (root->lc != NULL)
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flag = searchPath(root->lc, target, s);
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//左子树找不到并且右子树不为空的情况下才去找
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if (!flag && root->rc != NULL)
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flag = searchPath(root->rc, target, s);
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//左右都找不到,弹出栈顶元素
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if (!flag)
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s->pop();
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return flag;
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}
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2021-12-03 07:33:31 +00:00
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//层次遍历
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void trav_level()
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{
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Queue<binNodeArray(int)> q;
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int depth = 0;
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int old_depth = 0;
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q.enqueue(root());
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while (!q.empty())
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{
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binNodeArray(int) node = q.dequeue();
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old_depth = depth;
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depth = node->pos.size();
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if (old_depth != depth)
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printf("\n");
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// std::cout << node->pos;
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printf("%02d:%02d ", node->data / 60, node->data % 60);
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if (hasLC(node))
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q.enqueue(node->lc);
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if (hasRC(node))
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q.enqueue(node->rc);
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}
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}
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void search_best(int target)
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{
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Queue<binNodeArray(int)> q;
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int minus = 1440;
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binNodeArray(int) target_p;
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q.enqueue(root());
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while (!q.empty())
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{
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binNodeArray(int) node = q.dequeue();
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if(minus>abs(target-node->data))
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{
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minus = abs(target - node->data);
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target_p = node;
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}
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if (hasLC(node))
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q.enqueue(node->lc);
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if (hasRC(node))
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q.enqueue(node->rc);
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}
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std::cout << target_p->pos;
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printf("-%02d:%02d \n", target_p->data / 60, target_p->data % 60);
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}
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//先序遍历
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void trav_pre()
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{
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pre(root());
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}
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//后序遍历
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void trav_post()
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{
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post(root());
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}
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//中序遍历
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void trav_in()
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{
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in(root());
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}
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protected:
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void pre(binNodeArray(int) node)
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{
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if (!node)
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return;
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std::cout << node->pos;
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printf("-%02d:%02d \n", node->data / 60, node->data % 60);
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pre(node->lc);
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pre(node->rc);
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}
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void post(binNodeArray(int) node)
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{
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if (!node)
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return;
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pre(node->lc);
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pre(node->rc);
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std::cout << node->pos;
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printf("-%02d:%02d \n", node->data / 60, node->data % 60);
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}
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void in(binNodeArray(int) node)
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{
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if (!node)
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return;
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pre(node->lc);
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std::cout << node->pos;
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printf("-%02d:%02d \n", node->data / 60, node->data % 60);
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pre(node->rc);
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}
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public:
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int height()
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{
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Queue<binNodeArray(int)> q;
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q.enqueue(root());
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int depth;
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while (!q.empty())
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{
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binNodeArray(int) node = q.dequeue();
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depth = node->pos.size();
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if (hasLC(node))
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q.enqueue(node->lc);
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if (hasRC(node))
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q.enqueue(node->rc);
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}
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return depth;
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}
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2021-12-02 16:09:43 +00:00
|
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};
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