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 | #include<iostream>#include<queue>
 using namespace std;
 int allCount,counter=0;
 class BtreeNode{
 public:
 char data;
 
 BtreeNode *leftChild,*rightChild;
 int size;
 BtreeNode(){leftChild=rightChild=nullptr;size=0;}
 BtreeNode(char& theData,BtreeNode* left=nullptr,BtreeNode*right=nullptr){
 data=theData;
 leftChild=left;
 rightChild=right;
 size=1;
 }
 };
 int height(BtreeNode *node){
 if(node == nullptr) return 0;
 int hl=height(node->leftChild);
 int hr=height(node->rightChild);
 if(hl>hr) {
 return++hl;
 }
 else {
 return ++hr;
 }
 }
 
 void preOrder(BtreeNode* node){
 if(node != nullptr){
 if(counter != allCount - 1) cout << node->data << ",";
 else cout << node->data << endl;
 counter++;
 preOrder(node->leftChild);
 preOrder(node->rightChild);
 }
 }
 void inOrder(BtreeNode* node){
 if(node != nullptr){
 inOrder(node->leftChild);
 if(counter != allCount - 1) cout << node->data << ",";
 else cout << node->data << endl;
 counter++;
 inOrder(node->rightChild);
 }
 }
 void postOrder(BtreeNode* node){
 if(node != nullptr){
 postOrder(node->leftChild);
 postOrder(node->rightChild);
 if(counter != allCount - 1) cout << node->data << ",";
 else cout << node->data << endl;
 counter++;
 }
 }
 void levelOrder(BtreeNode* node){
 queue<BtreeNode*> queue;
 while(node != nullptr){
 if(counter != allCount - 1) cout << node->data << ",";
 else cout << node->data << endl;
 counter++;
 if(node->leftChild != nullptr){
 queue.push(node->leftChild);
 }
 if(node->rightChild != nullptr){
 queue.push(node->rightChild);
 }
 if(queue.empty()){
 break;
 }
 node=queue.front();
 queue.pop();
 
 }
 }
 
 void set(BtreeNode *current, int i, string s){
 if((2*i+1)<=s.length()){
 current->leftChild=new BtreeNode(s[2 * i - 1]);
 set(current->leftChild, 2 * i, s);
 current->rightChild=new BtreeNode(s[2 * i]);
 set(current->rightChild, 2 * i + 1, s);
 current->size+=(current->leftChild->size + current->rightChild->size);
 return;
 }
 else if(2*i==s.length()){
 current->leftChild=new BtreeNode(s[2 * i - 1]);
 current->size+=current->leftChild->size;
 return;
 }
 else if(2*i>s.length()) return;
 }
 BtreeNode* rebuild(char preOrder[],char inOrder[],int pStart,int pEnd,int iStart,int iEnd){
 BtreeNode* tree=new BtreeNode(preOrder[pStart]);
 if(pStart==pEnd&&iStart==iEnd){
 return tree;
 }
 int root=0;
 
 for(root=iStart;root<=iEnd;root++){
 if(preOrder[pStart]==inOrder[root]) {
 break;
 }
 }
 
 
 int leftLength=root-iStart;
 int rightLength=iEnd-root;
 
 if(leftLength>0){
 tree->leftChild=rebuild(preOrder,inOrder,pStart+1,pStart+leftLength,iStart,root-1);
 
 }
 
 if(rightLength>0){
 tree->rightChild=rebuild(preOrder,inOrder,pStart+leftLength+1,pEnd,root+1,iEnd);
 
 }
 return tree;
 }
 int main(){
 cout<<"Input1"<<endl;
 string s1,s2,s3,ss;
 cin>>s1;
 cout<<"Output1"<<endl;
 BtreeNode *r1=new BtreeNode(s1[0]);
 set(r1,1,s1);
 allCount=s1.length();
 
 preOrder(r1);counter=0;
 inOrder(r1);counter=0;
 postOrder(r1);counter=0;
 cout<<r1->size<<endl;
 cout<<height(r1)<<endl;
 cout<<"Input2"<<endl;
 cin>>s2>>s3;
 
 char char1[s2.length()]; s2.copy(char1, s2.length(), 0);
 char char2[s3.length()]; s3.copy(char2, s3.length(), 0);
 cout<<"Output2"<<endl;
 BtreeNode *r2=rebuild(char1, char2, 0, s2.length() - 1, 0, s3.length() - 1);
 allCount=s2.length();
 postOrder(r2);counter=0;
 levelOrder(r2);
 cout<<"End"<<endl;
 return 0;
 }
 
 
 |