#include <iostream>
const int StackSize = 100; // 可以根据实际需要调整栈的大小
class BothStack {
private:
int data[StackSize]; // 动态数组存放栈元素
int top1, top2; // 两个栈顶指针,分别指向栈1和栈2的栈顶元素
public:
BothStack() : top1(-1), top2(StackSize) {} // 构造函数,初始化栈顶指针
// 入栈操作,将元素x入栈
bool Push(int x, int stackNumber) {
if (stackNumber == 1 && top1 < StackSize - 1) { // 奇数栈
data[++top1] = x;
} else if (stackNumber == 2 && top2 > -1) { // 偶数栈
data[--top2] = x;
} else {
return false; // 栈满
}
return true;
}
// 出栈操作,将栈顶元素弹出
int Pop(int stackNumber) {
if (stackNumber == 1 && top1 >= 0) { // 奇数栈
return data[top1--];
} else if (stackNumber == 2 && top2 < StackSize) { // 偶数栈
return data[top2++];
} else {
return -1; // 栈空
}
}
// 判断栈是否为空
bool IsEmpty(int stackNumber) {
if (stackNumber == 1) {
return top1 == -1;
} else if (stackNumber == 2) {
return top2 == StackSize;
}
return true; // 非法输入
}
};
int main() {
BothStack bothStack;
int nums[] = {1, 4, 6, 3, 5, 8, 9, 2, 3, 1, 5};
int n = sizeof(nums) / sizeof(nums[0]);
for (int i = 0; i < n; ++i) {
if (nums[i] % 2 == 0) {
bothStack.Push(nums[i], 2); // 偶数入栈2
} else {
bothStack.Push(nums[i], 1); // 奇数入栈1
}
}
std::cout << "栈1输出(奇数):";
while (!bothStack.IsEmpty(1)) {
std::cout << bothStack.Pop(1) << " ";
}
std::cout << std::endl;
std::cout << "栈2输出(偶数):";
while (!bothStack.IsEmpty(2)) {
std::cout << bothStack.Pop(2) << " ";
}
std::cout << std::endl;
return 0;
}