//用STL list来表示一叠牌,list每个节点是一个数组栈。 STL list用起来还是用点不方便,自己写一个代码就有点乱了。 AC:0.345s
#include <cstdio>
#include <cmath>
#include <iostream>
#include <list>
struct piles
{
int size; //牌个数
char cards[60][3]; //牌
};
using namespace std;
list<piles> l;
//测试用的打印
void print()
{
printf("%d:\n", l.size());
for(list<piles>::iterator ite = l.begin();
ite != l.end(); ite++) {
int len = (*ite).size;
for(int i=len-1; i>=0; i--) {
printf("%c%c ", (*ite).cards[i][0], (*ite).cards[i][1]);
}
printf("\n");
}
printf("\n");
}
//前移i位,貌似STL不带前移
list<piles>::iterator prev(list<piles>::iterator ite, int i)
{
while(i--) {
ite--;
}
return ite;
}
//牌从ite移动到pre中
void mov(list<piles>::iterator ite, list<piles>::iterator pre)
{
int ite_top = (*ite).size - 1;
int pre_top = (*pre).size - 1;
(*pre).size++;
(*ite).size--;
(*pre).cards[pre_top+1][0] = (*ite).cards[ite_top][0];
(*pre).cards[pre_top+1][1] = (*ite).cards[ite_top][1];
if((*ite).size == 0) l.erase(ite);
//rint();
}
//牌匹配
bool match(list<piles>::iterator ite, list<piles>::iterator pre)
{
int ite_top = (*ite).size - 1;
int pre_top = (*pre).size - 1;
if((*ite).cards[ite_top][0] == (*pre).cards[pre_top][0]
||(*ite).cards[ite_top][1] == (*pre).cards[pre_top][1])
{
return true;
} else {
return false;
}
}
int main ()
{
#ifndef ONLINE_JUDGE
freopen("in.txt", "r", stdin);
//freopen("out.txt", "w", stdout);
#endif
piles p;
while(scanf("%s", p.cards[0])==1
&& p.cards[0][0]!='#')
{
l.clear();
p.size = 1;
l.push_back(p);
for(int i=1; i<52; i++) {
scanf("%s", p.cards[0]);
l.push_back(p);
}
//print();
list<piles>::iterator ite, pre;
ite = l.begin();
int c;//记录当前是第几堆
for(ite++, c=2; ite != l.end(); ) {
if(c-3>=1) pre = prev(ite, 3);
if(c-3>=1 && match(ite, pre)) {
mov(ite, pre);
ite = pre;
c -= 3;
continue;
} else if(c-1>=1) {
pre = prev(ite, 1);
if(match(ite, pre)) {
mov(ite, pre);
ite = pre;
c-=1;
continue;
}
}
ite++,c++;
}
//print();
int size = l.size();
if(size == 1) printf("1 pile remaining:");
else printf("%d piles remaining:", size);
for(ite=l.begin(); ite != l.end(); ite++) {
printf(" %d", (*ite).size);
}
printf("\n");
}
return 0;
}