实验三 类和对象Ⅱ

vector_int.hpp源码:
#ifndef VECTOR_INT_HPP #define VECTOR_INT_HPP #include<iostream> #include<cassert> using namespace std; class Vector_int { private: int size; int *p; public: Vector_int(int n); Vector_int(int n,int value); Vector_int(const Vector_int &a); int &at(int index); void print()const; ~Vector_int(); }; Vector_int::Vector_int(int n):size(n) { cout << "dynamic create array..." << endl; p = new int[n]; for(auto i=0;i<size;i++) p[i]=0; } Vector_int::Vector_int(int n,int value):size(n) { cout << "dynamic create array and value..." << endl; p = new int[n]; for(auto i=0;i<size;i++) p[i]=value; } Vector_int::Vector_int(const Vector_int&a):size(a.size) { cout << "copy constructor called..." << endl; p = new int[size]; for(auto i=0;i<size;i++) p[i]=a.p[i]; } int &Vector_int::at(int index) { assert(index >= 0 && index < size); return p[index]; } void Vector_int::print()const { for(auto i=0;i<size;i++) cout<<p[i]<<","; cout<<"\b "<<endl; } Vector_int::~Vector_int() { cout << "deleting..." << endl; delete[] p; } #endif
task4.cpp测试码:
#include<iostream> #include "vector_int.hpp" int main() { using namespace std; int n; cin>>n; Vector_int x(n); x.print(); Vector_int x2(n,6); x2.print(); Vector_int y(x); y.print(); y.at(0)=999; y.print(); cout<<endl; x.at(0)=1; //检测是否实现了深复制 x.print(); y.print(); }
运行结果:


Matrix.hpp源码:
#ifndef MATRIX_H #define MATRIX_H #include <iostream> #include <cassert> using namespace std; class Matrix { public: Matrix(int n); // 构造函数,构造一个n*n的矩阵 Matrix(int n, int m); // 构造函数,构造一个n*m的矩阵 Matrix(const Matrix &X); // 复制构造函数,使用已有的矩阵X构造 ~Matrix(); //析构函数 void set(const double *pvalue); // 用pvalue指向的连续内存块数据为矩阵赋值 void set(int i, int j, int value); //设置矩阵第i行第j列元素值为value double &at(int i, int j); //返回矩阵第i行第j列元素的引用 double at(int i, int j) const; // 返回矩阵第i行第j列元素的值 int get_lines() const; //返回矩阵行数 int get_cols() const; //返回矩列数 void print() const; // 按行打印输出矩阵 private: int lines; // 矩阵行数 int cols; // 矩阵列数 double *p; // 指向存放矩阵数据的内存块的首地址 }; Matrix::Matrix(int n) { lines=cols=n; p = new double[n*n]; } Matrix::Matrix(int n,int m) { lines=n; cols=m; p = new double[n*m]; } Matrix::Matrix(const Matrix &X):lines(X.lines),cols(X.cols) { int sum=X.lines*X.cols; p = new double[sum]; for(int i=0;i<sum;i++) p[i]=X.p[i]; } Matrix::~Matrix() { delete[] p; } void Matrix::set(const double *pvalue) { for(auto i=0;i<lines*cols;i++) p[i]=pvalue[i]; } void Matrix::set(int i, int j, int value) { p[i*cols+j]=value; } double &Matrix::at(int i,int j) { int k=i*cols+j; assert(k>=0&&k<lines*cols); return p[k]; } double Matrix::at(int i, int j) const { return p[i*cols+j]; } int Matrix::get_lines()const { return lines; } int Matrix::get_cols()const { return cols; } void Matrix::print()const { for(int i=0;i<lines*cols;i++) { cout<<p[i]<<", "; if((i+1)%cols==0) cout<<"\b\b "<<endl; } } #endif
task5.cpp测试码:
#include <iostream> #include "matrix.hpp" int main() { using namespace std; double x[] = {1, 2, 3, 4, 5, 6}; Matrix m1(3, 2); // 创建一个3×2的矩阵 m1.set(x); // 用一维数组x的值按行为矩阵m1赋值 m1.print(); // 打印矩阵m1的值 cout << "the first line is: " << endl; cout << m1.at(0, 0) << " " << m1.at(0, 1) << endl; cout << endl; Matrix m2(2, 3); m2.set(x); m2.print(); cout << "the first line is: " << endl; cout << m2.at(0, 0) << " " << m2.at(0, 1) << " " << m2.at(0, 2) << endl; cout << endl; Matrix m3(m2); m3.set(0, 0, 999); m3.print(); }
运行结果:


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