实验5
#任务1
##代码
###publisher.hpp
1 #pragma once 2 3 #include <string> 4 5 // 发行/出版物类:Publisher (抽象类) 6 class Publisher { 7 public: 8 Publisher(const std::string &name_ = ""); // 构造函数 9 virtual ~Publisher() = default; 10 11 public: 12 virtual void publish() const = 0; // 纯虚函数,作为接口继承 13 virtual void use() const = 0; // 纯虚函数,作为接口继承 14 15 protected: 16 std::string name; // 发行/出版物名称 17 }; 18 19 // 图书类: Book 20 class Book: public Publisher { 21 public: 22 Book(const std::string &name_ = "", const std::string &author_ = ""); // 构造函数 23 24 public: 25 void publish() const override; // 接口 26 void use() const override; // 接口 27 28 private: 29 std::string author; // 作者 30 }; 31 32 // 电影类: Film 33 class Film: public Publisher { 34 public: 35 Film(const std::string &name_ = "", const std::string &director_ = ""); // 构造函数 36 37 public: 38 void publish() const override; // 接口 39 void use() const override; // 接口 40 41 private: 42 std::string director; // 导演 43 }; 44 45 46 // 音乐类:Music 47 class Music: public Publisher { 48 public: 49 Music(const std::string &name_ = "", const std::string &artist_ = ""); 50 51 public: 52 void publish() const override; // 接口 53 void use() const override; // 接口 54 55 private: 56 std::string artist; // 音乐艺术家名称 57 };
###publisher.cpp
1 #include <iostream> 2 #include <string> 3 #include "publisher.hpp" 4 5 // Publisher类:实现 6 Publisher::Publisher(const std::string &name_): name {name_} { 7 } 8 9 10 // Book类: 实现 11 Book::Book(const std::string &name_ , const std::string &author_ ): Publisher{name_}, author{author_} { 12 } 13 14 void Book::publish() const { 15 std::cout << "Publishing book《" << name << "》 by " << author << '\n'; 16 } 17 18 void Book::use() const { 19 std::cout << "Reading book 《" << name << "》 by " << author << '\n'; 20 } 21 22 23 // Film类:实现 24 Film::Film(const std::string &name_, const std::string &director_):Publisher{name_},director{director_} { 25 } 26 27 void Film::publish() const { 28 std::cout << "Publishing film <" << name << "> directed by " << director << '\n'; 29 } 30 31 void Film::use() const { 32 std::cout << "Watching film <" << name << "> directed by " << director << '\n'; 33 } 34 35 36 // Music类:实现 37 Music::Music(const std::string &name_, const std::string &artist_): Publisher{name_}, artist{artist_} { 38 } 39 40 void Music::publish() const { 41 std::cout << "Publishing music <" << name << "> by " << artist << '\n'; 42 } 43 44 void Music::use() const { 45 std::cout << "Listening to music <" << name << "> by " << artist << '\n'; 46 }
###task1.cpp
1 #include <memory> 2 #include <iostream> 3 #include <vector> 4 #include "publisher.hpp" 5 6 void test1() { 7 std::vector<Publisher *> v; 8 9 v.push_back(new Book("Harry Potter", "J.K. Rowling")); 10 v.push_back(new Film("The Godfather", "Francis Ford Coppola")); 11 v.push_back(new Music("Blowing in the wind", "Bob Dylan")); 12 13 for(Publisher *ptr: v) { 14 ptr->publish(); 15 ptr->use(); 16 std::cout << '\n'; 17 delete ptr; 18 } 19 } 20 21 /*void test2() { 22 std::vector<std::unique_ptr<Publisher>> v; 23 24 v.push_back(std::make_unique<Book>("Harry Potter", "J.K. Rowling")); 25 v.push_back(std::make_unique<Film>("The Godfather", "Francis Ford Coppola")); 26 v.push_back(std::make_unique<Music>("Blowing in the wind", "Bob Dylan")); 27 28 for(const auto &ptr: v) { 29 ptr->publish(); 30 ptr->use(); 31 std::cout << '\n'; 32 } 33 }*/ 34 35 void test3() { 36 Book book("A Philosophy of Software Design", "John Ousterhout"); 37 book.publish(); 38 book.use(); 39 } 40 41 int main() { 42 std::cout << "运行时多态:纯虚函数、抽象类\n"; 43 44 std::cout << "\n测试1: 使用原始指针\n"; 45 test1(); 46 47 //std::cout << "\n测试2: 使用智能指针\n"; 48 //test2(); 49 50 std::cout << "\n测试3: 直接使用类\n"; 51 test3(); 52 }
##运行结果

##问题
###问题1
(1)virtual ~Publisher() = default;
virtual是虚函数定义
(2)不通过
Publisher是抽象类
###问题2
(1)Publish和use
public:
void publish() const override;
void use() const override;
(2)[Error] prototype for 'void Film::publish()' does not match any in class 'Film'
###问题3
(1)指向Publisher类型的指针
(2)Book,Film,Music
(3)Publisher 是抽象类,只会销毁基类指针而不会销毁派生类指针
#任务2
##代码
###book.hpp
1 #pragma once 2 #include <string> 3 4 // 图书描述信息类Book: 声明 5 class Book { 6 public: 7 Book(const std::string &name_, 8 const std::string &author_, 9 const std::string &translator_, 10 const std::string &isbn_, 11 double price_); 12 13 friend std::ostream& operator<<(std::ostream &out, const Book &book); 14 15 private: 16 std::string name; // 书名 17 std::string author; // 作者 18 std::string translator; // 译者 19 std::string isbn; // isbn号 20 double price; // 定价 21 };
###book.cpp
#include <iomanip> #include <iostream> #include <string> #include "book.hpp" // 图书描述信息类Book: 实现 Book::Book(const std::string &name_, const std::string &author_, const std::string &translator_, const std::string &isbn_, double price_):name{name_}, author{author_}, translator{translator_}, isbn{isbn_}, price{price_} { } // 运算符<<重载实现 std::ostream& operator<<(std::ostream &out, const Book &book) { using std::left; using std::setw; out << left; out << setw(15) << "书名:" << book.name << '\n' << setw(15) << "作者:" << book.author << '\n' << setw(15) << "译者:" << book.translator << '\n' << setw(15) << "ISBN:" << book.isbn << '\n' << setw(15) << "定价:" << book.price; return out; }
###booksale.hpp
1 #pragma once 2 3 #include <string> 4 #include "book.hpp" 5 6 // 图书销售记录类BookSales:声明 7 class BookSale { 8 public: 9 BookSale(const Book &rb_, double sales_price_, int sales_amount_); 10 int get_amount() const; // 返回销售数量 11 double get_revenue() const; // 返回营收 12 13 friend std::ostream& operator<<(std::ostream &out, const BookSale &item); 14 15 private: 16 Book rb; 17 double sales_price; // 售价 18 int sales_amount; // 销售数量 19 };
###booksale.cpp
1 #include <iomanip> 2 #include <iostream> 3 #include <string> 4 #include "booksale.hpp" 5 6 // 图书销售记录类BookSales:实现 7 BookSale::BookSale(const Book &rb_, 8 double sales_price_, 9 int sales_amount_): rb{rb_}, sales_price{sales_price_}, sales_amount{sales_amount_} { 10 } 11 12 int BookSale::get_amount() const { 13 return sales_amount; 14 } 15 16 double BookSale::get_revenue() const { 17 return sales_amount * sales_price; 18 } 19 20 // 运算符<<重载实现 21 std::ostream& operator<<(std::ostream &out, const BookSale &item) { 22 using std::left; 23 using std::setw; 24 25 out << left; 26 out << item.rb << '\n' 27 << setw(15) << "售价:" << item.sales_price << '\n' 28 << setw(15) << "销售数量:" << item.sales_amount << '\n' 29 << setw(15) << "营收:" << item.get_revenue(); 30 31 return out; 32 }
###task2.cpp
1 #include <algorithm> 2 #include <iomanip> 3 #include <iostream> 4 #include <string> 5 #include <vector> 6 #include "booksale.hpp" 7 8 // 按图书销售数量比较 9 bool compare_by_amount(const BookSale &x1, const BookSale &x2) { 10 return x1.get_amount() > x2.get_amount(); 11 } 12 13 void test() { 14 using std::cin; 15 using std::cout; 16 using std::getline; 17 using std::sort; 18 using std::string; 19 using std::vector; 20 using std::ws; 21 22 vector<BookSale> sales_records; // 图书销售记录表 23 24 int books_number; 25 cout << "录入图书数量: "; 26 cin >> books_number; 27 28 cout << "录入图书销售记录\n"; 29 for(int i = 0; i < books_number; ++i) { 30 string name, author, translator, isbn; 31 double price; 32 cout << string(20, '-') << "第" << i+1 << "本图书信息录入" << string(20, '-') << '\n'; 33 cout << "录入书名: "; getline(cin>>ws, name); 34 cout << "录入作者: "; getline(cin>>ws, author); 35 cout << "录入译者: "; getline(cin>>ws, translator); 36 cout << "录入isbn: "; getline(cin>>ws, isbn); 37 cout << "录入定价: "; cin >> price; 38 39 Book book(name, author, translator, isbn, price); 40 41 double sales_price; 42 int sales_amount; 43 44 cout << "录入售价: "; cin >> sales_price; 45 cout << "录入销售数量: "; cin >> sales_amount; 46 47 BookSale record(book, sales_price, sales_amount); 48 sales_records.push_back(record); 49 } 50 51 // 按销售册数排序 52 sort(sales_records.begin(), sales_records.end(), compare_by_amount); 53 54 // 按销售册数降序输出图书销售信息 55 cout << string(20, '=') << "图书销售统计" << string(20, '=') << '\n'; 56 for(auto &record: sales_records) { 57 cout << record << '\n'; 58 cout << string(40, '-') << '\n'; 59 } 60 } 61 62 int main() { 63 test(); 64 }
##运行结果

##问题
###问题1
(1)2处。const Book和const BookSale类型
(2)out << item.rb << '\n';
cout << record << '\n';
###问题2
(1)
用sort(sales_records.begin(), sales_records.end(), compare_by_amount);实现
其中bool compare_by_amount(const BookSale &x1, const BookSale &x2) {
return x1.get_amount() > x2.get_amount();
#任务4
##代码
###pet.hpp
1 #pragma once 2 3 #include<string> 4 5 class MachinePet{ 6 protected: 7 std::string nickname; 8 public: 9 MachinePet(const std::string &nickname_); 10 virtual ~MachinePet() = default; 11 public: 12 virtual std::string get_nickname() const = 0; 13 virtual std::string talk() const = 0; 14 15 }; 16 17 class PetCat: public MachinePet{ 18 public: 19 PetCat(const std::string &nickname_); 20 ~PetCat() = default; 21 public: 22 std::string get_nickname() const override; 23 std::string talk() const override; 24 }; 25 26 class PetDog: public MachinePet{ 27 public: 28 PetDog(const std::string &nickname_); 29 ~PetDog() = default; 30 public: 31 std::string get_nickname() const override; 32 std::string talk() const override; 33 };
###pet.cpp
1 #include <iostream> 2 #include <string> 3 #include "pet.hpp" 4 5 MachinePet::MachinePet(const std::string &nickname_): nickname {nickname_} { 6 } 7 8 PetCat::PetCat(const std::string &nickname_): MachinePet {nickname_} { 9 } 10 11 PetDog::PetDog(const std::string &nickname_): MachinePet {nickname_} { 12 } 13 std::string PetCat::get_nickname() const { 14 return nickname ; 15 } 16 std::string PetCat::talk() const { 17 return "miao wu~"; 18 } 19 20 std::string PetDog::get_nickname() const { 21 return nickname ; 22 } 23 std::string PetDog::talk() const { 24 return "wang wang~"; 25 }
###task4.cpp
1 #include <iostream> 2 #include <memory> 3 #include <vector> 4 #include "pet.hpp" 5 6 void test1() { 7 std::vector<MachinePet *> pets; 8 9 pets.push_back(new PetCat("miku")); 10 pets.push_back(new PetDog("da huang")); 11 12 for(MachinePet *ptr: pets) { 13 std::cout << ptr->get_nickname() << " says " << ptr->talk() << '\n'; 14 delete ptr; // 须手动释放资源 15 } 16 } 17 18 void test2() { 19 std::vector<std::unique_ptr<MachinePet>> pets; 20 21 pets.push_back(std::unique_ptr<MachinePet>(new PetCat("miku"))); 22 pets.push_back(std::unique_ptr<MachinePet>(new PetDog("da huang"))); 23 24 for(auto const &ptr: pets) 25 std::cout << ptr->get_nickname() << " says " << ptr->talk() << '\n'; 26 } 27 28 void test3() { 29 // MachinePet pet("little cutie"); // 编译报错:无法定义抽象类对象 30 31 const PetCat cat("miku"); 32 std::cout << cat.get_nickname() << " says " << cat.talk() << '\n'; 33 34 const PetDog dog("da huang"); 35 std::cout << dog.get_nickname() << " says " << dog.talk() << '\n'; 36 } 37 38 int main() { 39 std::cout << "测试1: 使用原始指针\n"; 40 test1(); 41 42 std::cout << "\n测试2: 使用智能指针\n"; 43 test2(); 44 45 std::cout << "\n测试3: 直接使用类\n"; 46 test3(); 47 }
##运行结果

#任务5
##代码
###Complex.hpp
1 #pragma once 2 #include <iostream> 3 4 template<typename T> 5 class Complex; 6 7 template<typename T> 8 Complex<T> operator+(const Complex<T> &c1, const Complex<T> &c2); 9 10 template<typename T> 11 bool operator==(const Complex<T> &c1, const Complex<T> &c2); 12 13 template<typename T> 14 std::istream& operator>>(std::istream &in, Complex<T> &c); 15 16 template<typename T> 17 std::ostream& operator<<(std::ostream &out, const Complex<T> &c); 18 19 20 template<typename T> 21 class Complex { 22 public: 23 Complex(T real_ = 0, T imag_ = 0); 24 Complex& operator+=(const Complex &c); 25 T get_real() const; 26 T get_imag() const; 27 28 friend Complex<T> operator+ <T>(const Complex<T> &c1, const Complex<T> &c2); 29 friend bool operator== <T>(const Complex<T> &c1, const Complex<T> &c2); 30 friend std::istream& operator>> <T>(std::istream &in, Complex<T> &c); 31 friend std::ostream& operator<< <T>(std::ostream &out, const Complex<T> &c); 32 33 private: 34 T real, imag; 35 }; 36 37 38 template<typename T> 39 Complex<T>::Complex(T real_, T imag_) : real{real_}, imag{imag_} {} 40 41 template<typename T> 42 Complex<T>& Complex<T>::operator+=(const Complex<T> &c) { 43 real += c.real; 44 imag += c.imag; 45 return *this; 46 } 47 48 template<typename T> 49 T Complex<T>::get_real() const { 50 return real; 51 } 52 53 template<typename T> 54 T Complex<T>::get_imag() const { 55 return imag; 56 } 57 58 59 template<typename T> 60 Complex<T> operator+(const Complex<T> &c1, const Complex<T> &c2) { 61 return Complex<T>(c1.real + c2.real, c1.imag + c2.imag); 62 } 63 64 template<typename T> 65 bool operator==(const Complex<T> &c1, const Complex<T> &c2) { 66 return (c1.real == c2.real) && (c1.imag == c2.imag); 67 } 68 69 template<typename T> 70 std::istream& operator>>(std::istream &in, Complex<T> &c) { 71 in >> c.real >> c.imag; 72 return in; 73 } 74 75 template<typename T> 76 std::ostream& operator<<(std::ostream &out, const Complex<T> &c) { 77 if (c.imag >= 0) 78 out << c.real << " + " << c.imag << 'i'; 79 else 80 out << c.real << " - " << -c.imag << 'i'; 81 return out; 82 }
###task5.cpp
1 #include <iostream> 2 #include "Complex.hpp" 3 4 void test1() { 5 using std::cout; 6 using std::boolalpha; 7 8 Complex<int> c1(2, -5), c2(c1); 9 10 cout << "c1 = " << c1 << '\n'; 11 cout << "c2 = " << c2 << '\n'; 12 cout << "c1 + c2 = " << c1 + c2 << '\n'; 13 14 c1 += c2; 15 cout << "c1 = " << c1 << '\n'; 16 cout << boolalpha << (c1 == c2) << '\n'; 17 } 18 19 void test2() { 20 using std::cin; 21 using std::cout; 22 23 Complex<double> c1, c2; 24 cout << "Enter c1 and c2: "; 25 cin >> c1 >> c2; 26 cout << "c1 = " << c1 << '\n'; 27 cout << "c2 = " << c2 << '\n'; 28 29 const Complex<double> c3(c1); 30 cout << "c3.real = " << c3.get_real() << '\n'; 31 cout << "c3.imag = " << c3.get_imag() << '\n'; 32 } 33 34 int main() { 35 std::cout << "自定义类模板Complex测试1: \n"; 36 test1(); 37 38 std::cout << "\n自定义类模板Complex测试2: \n"; 39 test2(); 40 }
##运行结果


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