部分特製化的類別樣板 (C++)
可以部分特製化類別樣板,並產生的類別仍然是一種範本。 部分特製化可讓部分特定類型的情況下,例如自訂的樣板程式碼:
範本提供多個型別,而且只有某些需要特殊化。 結果是在其餘的型別參數化的範本。
範本都只能有一個的型別,但特製化所需的資料指標、 成員或函式指標型別指標參考。 特製化本身仍然是指,或參考型別上的範本。
範例
// partial_specialization_of_class_templates.cpp
template <class T> struct PTS {
enum {
IsPointer = 0,
IsPointerToDataMember = 0
};
};
template <class T> struct PTS<T*> {
enum {
IsPointer = 1,
IsPointerToDataMember = 0
};
};
template <class T, class U> struct PTS<T U::*> {
enum {
IsPointer = 0,
IsPointerToDataMember = 1
};
};
struct S{};
extern "C" int printf_s(const char*,...);
int main() {
S s, *pS;
int S::*ptm;
printf_s("PTS<S>::IsPointer == %d PTS<S>::IsPointerToDataMember == %d\n",
PTS<S>::IsPointer, PTS<S>:: IsPointerToDataMember);
printf_s("PTS<S*>::IsPointer == %d PTS<S*>::IsPointerToDataMember ==%d\n"
, PTS<S*>::IsPointer, PTS<S*>:: IsPointerToDataMember);
printf_s("PTS<int S::*>::IsPointer == %d PTS"
"<int S::*>::IsPointerToDataMember == %d\n",
PTS<int S::*>::IsPointer, PTS<int S::*>::
IsPointerToDataMember);
}
如果您有可接受任何類型的範本集合類別 t,您可以建立可接受任何指標型別部分特製化 T *。 下列程式碼會示範集合類別樣板Bag和部分特製化的集合對取值指標型別,才能將它們複製到陣列的指標型別。 然後的集合會儲存所指的值。 使用原始範本,自行指標便會儲存在集合中,將資料保留在刪除或修改變得更加容易。 在集合中的這個特殊的滑鼠游標版本,程式碼來檢查是否有 null 指標在add方法會加入。
// partial_specialization_of_class_templates2.cpp
// compile with: /EHsc
#include <iostream>
using namespace std;
// Original template collection class.
template <class T> class Bag {
T* elem;
int size;
int max_size;
public:
Bag() : elem(0), size(0), max_size(1) {}
void add(T t) {
T* tmp;
if (size + 1 >= max_size) {
max_size *= 2;
tmp = new T [max_size];
for (int i = 0; i < size; i++)
tmp[i] = elem[i];
tmp[size++] = t;
delete[] elem;
elem = tmp;
}
else
elem[size++] = t;
}
void print() {
for (int i = 0; i < size; i++)
cout << elem[i] << " ";
cout << endl;
}
};
// Template partial specialization for pointer types.
// The collection has been modified to check for NULL
// and store types pointed to.
template <class T> class Bag<T*> {
T* elem;
int size;
int max_size;
public:
Bag() : elem(0), size(0), max_size(1) {}
void add(T* t) {
T* tmp;
if (t == NULL) { // Check for NULL
cout << "Null pointer!" << endl;
return;
}
if (size + 1 >= max_size) {
max_size *= 2;
tmp = new T [max_size];
for (int i = 0; i < size; i++)
tmp[i] = elem[i];
tmp[size++] = *t; // Dereference
delete[] elem;
elem = tmp;
}
else
elem[size++] = *t; // Dereference
}
void print() {
for (int i = 0; i < size; i++)
cout << elem[i] << " ";
cout << endl;
}
};
int main() {
Bag<int> xi;
Bag<char> xc;
Bag<int*> xp; // Uses partial specialization for pointer types.
xi.add(10);
xi.add(9);
xi.add(8);
xi.print();
xc.add('a');
xc.add('b');
xc.add('c');
xc.print();
int i = 3, j = 87, *p = new int[2];
*p = 8;
*(p + 1) = 100;
xp.add(&i);
xp.add(&j);
xp.add(p);
xp.add(p + 1);
p = NULL;
xp.add(p);
xp.print();
}
下列範例會定義範本,讓其中一個型別進行特製化類別,以取得任何兩種類型的配對,並再定義部分特製化樣板類別的int。 特製化定義額外的排序方法,實作簡單的反昇排序依據的整數。
// partial_specialization_of_class_templates3.cpp
// compile with: /EHsc
#include <iostream>
using namespace std;
template <class Key, class Value> class Dictionary {
Key* keys;
Value* values;
int size;
int max_size;
public:
Dictionary(int initial_size) : size(0) {
max_size = 1;
while (initial_size >= max_size)
max_size *= 2;
keys = new Key[max_size];
values = new Value[max_size];
}
void add(Key key, Value value) {
Key* tmpKey;
Value* tmpVal;
if (size + 1 >= max_size) {
max_size *= 2;
tmpKey = new Key [max_size];
tmpVal = new Value [max_size];
for (int i = 0; i < size; i++) {
tmpKey[i] = keys[i];
tmpVal[i] = values[i];
}
tmpKey[size] = key;
tmpVal[size] = value;
delete[] keys;
delete[] values;
keys = tmpKey;
values = tmpVal;
}
else {
keys[size] = key;
values[size] = value;
}
size++;
}
void print() {
for (int i = 0; i < size; i++)
cout << "{" << keys[i] << ", " << values[i] << "}" << endl;
}
};
// Template partial specialization: Key is specified to be int.
template <class Value> class Dictionary<int, Value> {
int* keys;
Value* values;
int size;
int max_size;
public:
Dictionary(int initial_size) : size(0) {
max_size = 1;
while (initial_size >= max_size)
max_size *= 2;
keys = new int[max_size];
values = new Value[max_size];
}
void add(int key, Value value) {
int* tmpKey;
Value* tmpVal;
if (size + 1 >= max_size) {
max_size *= 2;
tmpKey = new int [max_size];
tmpVal = new Value [max_size];
for (int i = 0; i < size; i++) {
tmpKey[i] = keys[i];
tmpVal[i] = values[i];
}
tmpKey[size] = key;
tmpVal[size] = value;
delete[] keys;
delete[] values;
keys = tmpKey;
values = tmpVal;
}
else {
keys[size] = key;
values[size] = value;
}
size++;
}
void sort() {
// Sort method is defined.
int smallest = 0;
for (int i = 0; i < size - 1; i++) {
for (int j = i; j < size; j++) {
if (keys[j] < keys[smallest])
smallest = j;
}
swap(keys[i], keys[smallest]);
swap(values[i], values[smallest]);
}
}
void print() {
for (int i = 0; i < size; i++)
cout << "{" << keys[i] << ", " << values[i] << "}" << endl;
}
};
int main() {
Dictionary<char*, char*>* dict = new Dictionary<char*, char*>(10);
dict->print();
dict->add("apple", "fruit");
dict->add("banana", "fruit");
dict->add("dog", "animal");
dict->print();
Dictionary<int, char*>* dict_specialized = new Dictionary<int, char*>(10);
dict_specialized->print();
dict_specialized->add(100, "apple");
dict_specialized->add(101, "banana");
dict_specialized->add(103, "dog");
dict_specialized->add(89, "cat");
dict_specialized->print();
dict_specialized->sort();
cout << endl << "Sorted list:" << endl;
dict_specialized->print();
}