結果
| 問題 | No.3756 Udon Network |
| ユーザー |
|
| 提出日時 | 2026-10-09 20:20:17 |
| 言語 | C++23 (gcc 15.3.0 + boost 1.92.0 + ACL) |
| 結果 |
WA
不安定
|
| 実行時間 | - |
| コード長 | 20,973 bytes |
| 記録 | |
| コンパイル時間 | 3,306 ms |
| コンパイル使用メモリ | 368,484 KB |
| 実行使用メモリ | 107,288 KB |
| 最終ジャッジ日時 | 2026-10-09 20:20:42 |
| 合計ジャッジ時間 | 17,806 ms |
|
ジャッジサーバーID (参考情報) |
judge4_0 / judge3_0 |
(要ログイン)
| サブタスク | 配点 | 結果 |
|---|---|---|
| Example | 0 % | AC * 5 WA * 3 |
| Subtask $1$ | 2 % | AC * 9 WA * 6 |
| Subtask $2$ | 4 % | AC * 9 WA * 13 |
| Subtask $3$ | 8 % | AC * 3 WA * 6 |
| Subtask $4$ | 16 % | AC * 2 WA * 8 |
| Subtask $5$ | 32 % | AC * 2 WA * 8 |
| Subtask $6$ | 38 % | AC * 22 WA * 31 |
| 合計 | 4 * 0% = 0 点 |
コンパイルメッセージ
hashmap/hashmap-base.hpp:15:7: warning: 'template<class _Category, class _Tp, class _Distance, class _Pointer, class _Reference> struct std::iterator' is deprecated [-Wdeprecated-declarations]
In file included from /home/linuxbrew/.linuxbrew/Cellar/gcc@15/15.3.0/include/c++/15/bits/stl_algobase.h:65,
from /home/linuxbrew/.linuxbrew/Cellar/gcc@15/15.3.0/include/c++/15/algorithm:62,
from /home/linuxbrew/.linuxbrew/Cellar/gcc@15/15.3.0/include/c++/15/x86_64-pc-linux-gnu/bits/stdc++.h:53,
from main.cpp:1:
/home/linuxbrew/.linuxbrew/Cellar/gcc@15/15.3.0/include/c++/15/bits/stl_iterator_base_types.h:129:34: note: declared here
129 | struct _GLIBCXX17_DEPRECATED iterator
| ^~~~~~~~
hashmap/hashmap-base.hpp:17:7: warning: 'template<class _Category, class _Tp, class _Distance, class _Pointer, class _Reference> struct std::iterator' is deprecated [-Wdeprecated-declarations]
/home/linuxbrew/.linuxbrew/Cellar/gcc@15/15.3.0/include/c++/15/bits/stl_iterator_base_types.h:129:34: note: declared here
129 | struct _GLIBCXX17_DEPRECATED iterator
| ^~~~~~~~
ソースコード
#include <bits/stdc++.h>
using namespace std;
#define all(...) std::begin(__VA_ARGS__), std::end(__VA_ARGS__)
#define rall(...) std::rbegin(__VA_ARGS__), std::rend(__VA_ARGS__)
#define OVERLOAD_REP(_1, _2, _3, _4, name, ...) name
#define REP1(n) for(ll i=0;i<(n);i++)
#define REP2(i, n) for (ll i=0;i<(n);i++)
#define REP3(i, a, n) for (ll i=a;i<(n);i++)
#define REP4(i, a, b, n) for(ll i=a;i<(n);i+=b)
#define rep(...) OVERLOAD_REP(__VA_ARGS__, REP4, REP3, REP2, REP1)(__VA_ARGS__)
#define OVERLOAD_RREP(_1, _2, _3, _4, name, ...) name
#define RREP1(n) for(ll i=(n)-1;i>=0;i--)
#define RREP2(i, n) for(ll i=(n)-1;i>=0;i--)
#define RREP3(i, a, n) for(ll i=(n)-1;i>=(a);i--)
#define RREP4(i, a, b, n) for(ll i=(n)-1;i>=(a);i-=(b))
#define rrep(...) OVERLOAD_RREP(__VA_ARGS__, RREP4, RREP3, RREP2, RREP1)(__VA_ARGS__)
#define uniq(a) sort(all(a));a.erase(unique(all(a)),end(a))
#define len(n) (long long)(n).size()
using ll = long long;
using ld = long double;
using ull = unsigned long long;
using vi = vector<int>;
using vvi = vector<vi>;
using vvvi = vector<vvi>;
using vll = vector<ll>;
using vvll = vector<vll>;
using vvvll = vector<vvll>;
using vs = vector<string>;
using vvs = vector<vs>;
using vvvs = vector<vvs>;
using vld = vector<ld>;
using vvld = vector<vld>;
using vvvld = vector<vvld>;
using vc = vector<char>;
using vvc = vector<vc>;
using vvvc = vector<vvc>;
using pll = pair<ll,ll>;
using vpll = vector<pll>;
using vvpll = vector<vpll>;
ll intpow(ll a,ll b){
ll ans = 1;
while (b){
if (b & 1){
ans *= a;
}
a *= a;
b /= 2;
}
return ans;
}
ll modpow(ll a,ll b,ll c){
ll ans = 1;
while (b){
if (b & 1){
ans *= a;
ans %= c;
}
a *= a;
a %= c;
b /= 2;
}
return ans;
}
template <typename T>
inline T floor(T a, T b) {
T q = a / b;
T r = a % b;
if (r != 0 && ((r < 0) != (b < 0))) q--;
return q;
}
template <typename T>
inline T ceil(T a, T b) {
T q = a / b;
T r = a % b;
if (r != 0 && ((r < 0) == (b < 0))) q++;
return q;
}
template <typename T>
inline T bmod(T a, T b) {
T r = a % b;
if (r < 0) r += std::abs(b);
return r;
}
template <class K, class V>
vector<vector<pair<K,V>>> group_by_first(vector<pair<K,V>> vec) {
sort(vec.begin(), vec.end(), [](auto& a, auto& b) {
if (a.first != b.first) return a.first < b.first;
return a.second < b.second;
});
vector<vector<pair<K,V>>> res;
for (auto& p : vec) {
if (res.empty() || res.back().back().first != p.first) {
res.push_back({});
}
res.back().push_back(p);
}
return res;
}
template<class... T>
void input(T&... a){
(cin >> ... >> a);
}
#define INT(...) int __VA_ARGS__; input(__VA_ARGS__)
#define LL(...) ll __VA_ARGS__; input(__VA_ARGS__)
#define ULL(...) ull __VA_ARGS__; input(__VA_ARGS__)
#define LD(...) ld __VA_ARGS__; input(__VA_ARGS__)
#define STR(...) string __VA_ARGS__; input(__VA_ARGS__)
#define CHA(...) char __VA_ARGS__; input(__VA_ARGS__)
#define VLL(name,length) vll name(length);rep(i,length){cin >> name[i];}
#define VVLL(name,h,w) vvll name(h,vll(w));rep(i,h)rep(j,w){cin >> name[i][j];}
#define VVVLL(name,a,b,c) vvvll name(a,vvll(b,vll(c)));rep(i,a)rep(j,b)rep(k,c){cin >> name[i][j][k];}
#define VI(name,length) vi name(length);rep(i,length){cin >> name[i];}
#define VVI(name,h,w) vvi name(h,vi(w));rep(i,h)rep(j,w){cin >> name[i][j];}
#define VVVI(name,a,b,c) vvvi name(a,vvll(b,vi(c)));rep(i,a)rep(j,b)rep(k,c){cin >> name[i][j][k];}
#define VLD(name,length) vld name(length);rep(i,length){cin >> name[i];}
#define VVLD(name,h,w) vvld name(h,vld(w));rep(i,h)rep(j,w){cin >> name[i][j];}
#define VVVLD(name,a,b,c) vvvld name(a,vvld(b,vld(c)));rep(i,a)rep(j,b)rep(k,c){cin >> name[i][j][k];}
#define VC(name,length) vc name(length);rep(i,length){cin >> name[i];}
#define VVC(name,h,w) vvc name(h,vc(w));rep(i,h)rep(j,w){cin >> name[i][j];}
#define VVVC(name,a,b,c) vvvc name(a,vvc(b,vc(c)));rep(i,a)rep(j,b)rep(k,c){cin >> name[i][j][k];}
#define VS(name,length) vs name(length);rep(i,length){cin >> name[i];}
#define VVS(name,h,w) vvs name(h,vs(w));rep(i,h)rep(j,w){cin >> name[i][j];}
#define VVVS(name,a,b,c) vvvs name(a,vvs(b,vs(c)));rep(i,a)rep(j,b)rep(k,c){cin >> name[i][j][k];}
#define PLL(name) pll name;cin>>name.first>>name.second;
#define VPLL(name,length) vpll name(length);rep(i,length){cin>>name[i].first>>name[i].second;}
void print(){cout << "\n";}
template <typename T1, typename T2>
std::ostream& operator<<(std::ostream& os, const std::pair<T1, T2>& p) {
os << "(" << p.first << ", " << p.second << ")";
return os;
}
template <typename T>
std::ostream& operator<<(std::ostream& os, const std::vector<T>& vec) {
os << "[";
for (size_t i = 0; i < vec.size(); ++i) {
os << vec[i];
if (i + 1 < vec.size()) os << ", ";
}
os << "]";
return os;
}
template <typename T1, typename T2>
std::ostream& operator<<(std::ostream& os, const std::vector<std::pair<T1, T2>>& a) {
os << "[";
for (size_t j = 0; j < a.size(); ++j) {
os << "(" << a[j].first << ", " << a[j].second << ")";
if (j + 1 < a.size()) os << ", ";
}
os << "]";
return os;
}
template <typename T1, typename T2>
std::ostream& operator<<(std::ostream& os, const std::vector<std::vector<std::pair<T1, T2>>>& mat) {
os << "[";
for (size_t i = 0; i < mat.size(); ++i) {
os << "[";
for (size_t j = 0; j < mat[i].size(); ++j) {
os << "(" << mat[i][j].first << ", " << mat[i][j].second << ")";
if (j + 1 < mat[i].size()) os << ", ";
}
os << "]";
if (i + 1 < mat.size()) os << ", ";
}
os << "]";
return os;
}
template <typename T>
std::ostream& operator<<(std::ostream& os, const std::set<T>& s) {
os << "{";
bool first = true;
for (const auto& x : s) {
if (!first) os << ", ";
os << x;
first = false;
}
os << "}";
return os;
}
template <typename K, typename V>
std::ostream& operator<<(std::ostream& os, const std::map<K, V>& m) {
os << "{";
bool first = true;
for (const auto& [key, val] : m) {
if (!first) os << ", ";
os << key << ": " << val;
first = false;
}
os << "}";
return os;
}
template <typename T, typename Container, typename Compare>
std::ostream& operator<<(std::ostream& os, std::priority_queue<T, Container, Compare> pq) {
os << "[";
bool first = true;
while (!pq.empty()) {
if (!first) os << ", ";
os << pq.top();
pq.pop();
first = false;
}
os << "]";
return os;
}
template<class T, class... Ts>
void print(const T& a, const Ts&... b){cout << a;(cout << ... << (cout << ' ', b));cout << '\n';}
#ifdef LOCAL
void debug() { std::cerr << "\n"; }
template<class T, class... Ts>
void debug(const T& a, const Ts&... b) {
std::cerr << a;
(std::cerr << ... << (std::cerr << ' ', b));
std::cerr << '\n';
}
void debug_space() {}
template<class T, class... Ts>
void debug_space(const T& a, const Ts&... b) {
std::cerr << a;
(std::cerr << ... << (std::cerr << ' ', b));
}
#else
#define debug(...) (void)0
#endif
void write(){cout << "\n";}
template<class T, class... Ts>
void write(const T& a, const Ts&... b){cout << a;(cout << ... << (cout << ' ', b));cout << '\n';}
void write(vll x){rep(i,len(x)){cout << x[i];if(i!=len(x)-1){cout << " ";}else{cout << '\n';}}}
void write(vvll x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j];if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
void write(vi x){rep(i,len(x)){cout << x[i];if(i!=len(x)-1){cout << " ";}else{cout << '\n';}}}
void write(vvi x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j];if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
void write(vvvi x){rep(i,len(x))rep(j,len(x[i]))rep(k,len(x[i][j])){cout << x[i][j][k];if(k!=len(x[i][j])-1){cout << " ";}else if(j!=len(x[i])-1){cout << " | ";}else{cout << '\n';}}}
void write(vld x){rep(i,len(x)){cout << x[i];if(i!=len(x)-1){cout << " ";}else{cout << '\n';}}}
void write(vvld x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j];if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
void write(vvvld x){rep(i,len(x))rep(j,len(x[i]))rep(k,len(x[i][j])){cout << x[i][j][k];if(k!=len(x[i][j])-1){cout << " ";}else if(j!=len(x[i])-1){cout << " | ";}else{cout << '\n';}}}
void write(vc x){rep(i,len(x)){cout << x[i];if(i!=len(x)-1){cout << " ";}else{cout << '\n';}}}
void write(vvc x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j];if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
void write(vvvc x){rep(i,len(x))rep(j,len(x[i]))rep(k,len(x[i][j])){cout << x[i][j][k];if(k!=len(x[i][j])-1){cout << " ";}else if(j!=len(x[i])-1){cout << " | ";}else{cout << '\n';}}}
void write(vs x){rep(i,len(x)){cout << x[i];if(i!=len(x)-1){cout << " ";}else{cout << '\n';}}}
void write(vvs x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j];if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
void write(vvvs x){rep(i,len(x))rep(j,len(x[i]))rep(k,len(x[i][j])){cout << x[i][j][k];if(k!=len(x[i][j])-1){cout << " ";}else if(j!=len(x[i])-1){cout << " | ";}else{cout << '\n';}}}
void write(pll x){cout << x.first << ' ' << x.second << '\n';}
void write(vpll x){rep(i,len(x)){cout << x[i].first << ' ' << x[i].second << '\n';}}
void write(vvpll x){rep(i,len(x))rep(j,len(x[i])){cout << x[i][j].first << ' ' << x[i][j].second;if(j!=len(x[i])-1){cout << " ";}else{cout << '\n';}}}
template <typename T>
T sum(const std::vector<T>& v) {
return std::accumulate(v.begin(), v.end(), T(0));
}
template<class Set>
auto le(const Set &s, const typename Set::value_type &x,
const typename Set::value_type &ngval = typename Set::value_type(-1)) {
auto it = s.upper_bound(x);
if (it == s.begin()) return ngval;
return *prev(it);
}
template<class Set>
auto lt(const Set &s, const typename Set::value_type &x,
const typename Set::value_type &ngval = typename Set::value_type(-1)) {
auto it = s.lower_bound(x);
if (it == s.begin()) return ngval;
return *prev(it);
}
template<class Set>
auto ge(const Set &s, const typename Set::value_type &x,
const typename Set::value_type &ngval = typename Set::value_type(-1)) {
auto it = s.lower_bound(x);
if (it == s.end()) return ngval;
return *it;
}
template<class Set>
auto gt(const Set &s, const typename Set::value_type &x,
const typename Set::value_type &ngval = typename Set::value_type(-1)) {
auto it = s.upper_bound(x);
if (it == s.end()) return ngval;
return *it;
}
template<class T> bool chmin(T& a, const T& b){ if(a > b){ a = b; return 1; } return 0; }
template<class T> bool chmax(T& a, const T& b){ if(a < b){ a = b; return 1; } return 0; }
template<class T, class U> bool chmin(T& a, const U& b){ if(a > T(b)){ a = b; return 1; } return 0; }
template<class T, class U> bool chmax(T& a, const U& b){ if(a < T(b)){ a = b; return 1; } return 0; }
#include <atcoder/dsu>
#line 2 "hashmap/hashset.hpp"
#line 2 "hashmap/hashmap-base.hpp"
#include <cstdint>
using namespace std;
namespace HashMapImpl {
using u32 = uint32_t;
using u64 = uint64_t;
template <typename Key, typename Data>
struct HashMapBase;
template <typename Key, typename Data>
struct itrB
: iterator<bidirectional_iterator_tag, Data, ptrdiff_t, Data*, Data&> {
using base =
iterator<bidirectional_iterator_tag, Data, ptrdiff_t, Data*, Data&>;
using ptr = typename base::pointer;
using ref = typename base::reference;
u32 i;
HashMapBase<Key, Data>* p;
explicit constexpr itrB() : i(0), p(nullptr) {}
explicit constexpr itrB(u32 _i, HashMapBase<Key, Data>* _p) : i(_i), p(_p) {}
explicit constexpr itrB(u32 _i, const HashMapBase<Key, Data>* _p)
: i(_i), p(const_cast<HashMapBase<Key, Data>*>(_p)) {}
friend void swap(itrB& l, itrB& r) { swap(l.i, r.i), swap(l.p, r.p); }
friend bool operator==(const itrB& l, const itrB& r) { return l.i == r.i; }
friend bool operator!=(const itrB& l, const itrB& r) { return l.i != r.i; }
const ref operator*() const {
return const_cast<const HashMapBase<Key, Data>*>(p)->data[i];
}
ref operator*() { return p->data[i]; }
ptr operator->() const { return &(p->data[i]); }
itrB& operator++() {
assert(i != p->cap && "itr::operator++()");
do {
i++;
if (i == p->cap) break;
if (p->occupied_flag[i] && !p->deleted_flag[i]) break;
} while (true);
return (*this);
}
itrB operator++(int) {
itrB it(*this);
++(*this);
return it;
}
itrB& operator--() {
do {
i--;
if (p->occupied_flag[i] && !p->deleted_flag[i]) break;
assert(i != 0 && "itr::operator--()");
} while (true);
return (*this);
}
itrB operator--(int) {
itrB it(*this);
--(*this);
return it;
}
};
template <typename Key, typename Data>
struct HashMapBase {
using u32 = uint32_t;
using u64 = uint64_t;
using iterator = itrB<Key, Data>;
using itr = iterator;
protected:
template <typename K>
inline u64 randomized(const K& key) const {
return u64(key) ^ r;
}
template <typename K,
enable_if_t<is_same<K, Key>::value, nullptr_t> = nullptr,
enable_if_t<is_integral<K>::value, nullptr_t> = nullptr>
inline u32 inner_hash(const K& key) const {
return (randomized(key) * 11995408973635179863ULL) >> shift;
}
template <
typename K, enable_if_t<is_same<K, Key>::value, nullptr_t> = nullptr,
enable_if_t<is_integral<decltype(K::first)>::value, nullptr_t> = nullptr,
enable_if_t<is_integral<decltype(K::second)>::value, nullptr_t> = nullptr>
inline u32 inner_hash(const K& key) const {
u64 a = randomized(key.first), b = randomized(key.second);
a *= 11995408973635179863ULL;
b *= 10150724397891781847ULL;
return (a + b) >> shift;
}
template <typename K,
enable_if_t<is_same<K, Key>::value, nullptr_t> = nullptr,
enable_if_t<is_integral<typename K::value_type>::value, nullptr_t> =
nullptr>
inline u32 inner_hash(const K& key) const {
static constexpr u64 mod = (1LL << 61) - 1;
static constexpr u64 base = 950699498548472943ULL;
u64 res = 0;
for (auto& elem : key) {
__uint128_t x = __uint128_t(res) * base + (randomized(elem) & mod);
res = (x & mod) + (x >> 61);
}
__uint128_t x = __uint128_t(res) * base;
res = (x & mod) + (x >> 61);
if (res >= mod) res -= mod;
return res >> (shift - 3);
}
template <typename D = Data,
enable_if_t<is_same<D, Key>::value, nullptr_t> = nullptr>
inline u32 hash(const D& dat) const {
return inner_hash(dat);
}
template <
typename D = Data,
enable_if_t<is_same<decltype(D::first), Key>::value, nullptr_t> = nullptr>
inline u32 hash(const D& dat) const {
return inner_hash(dat.first);
}
template <typename D = Data,
enable_if_t<is_same<D, Key>::value, nullptr_t> = nullptr>
inline Key data_to_key(const D& dat) const {
return dat;
}
template <
typename D = Data,
enable_if_t<is_same<decltype(D::first), Key>::value, nullptr_t> = nullptr>
inline Key data_to_key(const D& dat) const {
return dat.first;
}
void reallocate(u32 ncap) {
vector<Data> ndata(ncap);
vector<bool> nf(ncap);
shift = 64 - __lg(ncap);
for (u32 i = 0; i < cap; i++) {
if (occupied_flag[i] && !deleted_flag[i]) {
u32 h = hash(data[i]);
while (nf[h]) h = (h + 1) & (ncap - 1);
ndata[h] = move(data[i]);
nf[h] = true;
}
}
data.swap(ndata);
occupied_flag.swap(nf);
cap = ncap;
occupied = s;
deleted_flag.resize(cap);
fill(std::begin(deleted_flag), std::end(deleted_flag), false);
}
inline bool extend_rate(u32 x) const { return x * 2 >= cap; }
inline bool shrink_rate(u32 x) const {
return HASHMAP_DEFAULT_SIZE < cap && x * 10 <= cap;
}
inline void extend() { reallocate(cap << 1); }
inline void shrink() { reallocate(cap >> 1); }
public:
u32 cap, s, occupied;
vector<Data> data;
vector<bool> occupied_flag, deleted_flag;
u32 shift;
static u64 r;
static constexpr uint32_t HASHMAP_DEFAULT_SIZE = 4;
explicit HashMapBase()
: cap(HASHMAP_DEFAULT_SIZE),
s(0),
occupied(0),
data(cap),
occupied_flag(cap),
deleted_flag(cap),
shift(64 - __lg(cap)) {}
itr begin() const {
u32 h = 0;
while (h != cap) {
if (occupied_flag[h] && !deleted_flag[h]) break;
h++;
}
return itr(h, this);
}
itr end() const { return itr(this->cap, this); }
friend itr begin(const HashMapBase& h) { return h.begin(); }
friend itr end(const HashMapBase& h) { return h.end(); }
itr find(const Key& key) const {
u32 h = inner_hash(key);
while (true) {
if (occupied_flag[h] == false) return this->end();
if (data_to_key(data[h]) == key) {
if (deleted_flag[h] == true) return this->end();
return itr(h, this);
}
h = (h + 1) & (cap - 1);
}
}
bool contain(const Key& key) const { return find(key) != this->end(); }
itr insert(const Data& d) {
u32 h = hash(d);
while (true) {
if (occupied_flag[h] == false) {
if (extend_rate(occupied + 1)) {
extend();
h = hash(d);
continue;
}
data[h] = d;
occupied_flag[h] = true;
++occupied, ++s;
return itr(h, this);
}
if (data_to_key(data[h]) == data_to_key(d)) {
if (deleted_flag[h] == true) {
data[h] = d;
deleted_flag[h] = false;
++s;
}
return itr(h, this);
}
h = (h + 1) & (cap - 1);
}
}
// tips for speed up :
// if return value is unnecessary, make argument_2 false.
itr erase(itr it, bool get_next = true) {
if (it == this->end()) return this->end();
s--;
if (!get_next) {
this->deleted_flag[it.i] = true;
if (shrink_rate(s)) shrink();
return this->end();
}
itr nxt = it;
nxt++;
this->deleted_flag[it.i] = true;
if (shrink_rate(s)) {
Data d = data[nxt.i];
shrink();
it = find(data_to_key(d));
}
return nxt;
}
itr erase(const Key& key) { return erase(find(key)); }
int count(const Key& key) { return find(key) == end() ? 0 : 1; }
bool empty() const { return s == 0; }
int size() const { return s; }
void clear() {
fill(std::begin(occupied_flag), std::end(occupied_flag), false);
fill(std::begin(deleted_flag), std::end(deleted_flag), false);
s = occupied = 0;
}
void reserve(int n) {
if (n <= 0) return;
n = 1 << min(23, __lg(n) + 2);
if (cap < u32(n)) reallocate(n);
}
};
template <typename Key, typename Data>
uint64_t HashMapBase<Key, Data>::r =
chrono::duration_cast<chrono::nanoseconds>(
chrono::high_resolution_clock::now().time_since_epoch())
.count();
} // namespace HashMapImpl
/**
* @brief Hash Map(base) (ハッシュマップ・基底クラス)
*/
#line 4 "hashmap/hashset.hpp"
template <typename Key>
struct HashSet : HashMapImpl::HashMapBase<Key, Key> {
using HashMapImpl::HashMapBase<Key, Key>::HashMapBase;
};
/*
* @brief ハッシュセット(集合)
* @docs docs/hashmap/hashset.md
**/
int main(){
ios::sync_with_stdio(false);
std::cin.tie(nullptr);
LL(n,m,q);
VLL(a,n);
rep(i,n){
a[i]--;
}
vector<tuple<ll,ll,ll>> edge;
rep(i,m){
LL(u,v,x);
u--;v--;
edge.emplace_back(x,u,v);
}
vpll b;
rep(i,q){
LL(s,c);
s--;
b.emplace_back(s,c);
}
vll l(q,-1),r(q,1LL<<30);
vector<priority_queue<pll,vpll,greater<pll>>> query(n);
rep(i,q){
query[b[i].first].emplace(b[i].second,i);
}
vector<HashSet<ll>> se(n);
rep(i,n){
se[i].insert(a[i]);
}
atcoder::dsu uf(n);
vll ans(q,1LL<<60);
sort(all(edge));
for(auto [x,u,v]:edge){
if(uf.same(u,v)){continue;}
u = uf.leader(u);
v = uf.leader(v);
if(len(se[u]) > len(se[v])){
swap(u,v);
}
for(auto z:se[u]){
se[v].insert(z);
}
if(len(query[u]) > len(query[v])){
swap(query[u],query[v]);
}
while(!query[u].empty()){
query[v].emplace(query[u].top());
query[u].pop();
}
uf.merge(u,v);
ll idx = v;
if(uf.leader(v) != v){
swap(se[u],se[v]);
swap(query[u],query[v]);
idx = u;
}
debug(x,u,v,query[0],len(se[idx]));
while(!query[idx].empty() && query[idx].top().first <= len(se[idx])){
ans[query[idx].top().second] = x;
query[idx].pop();
}
}
rep(i,q){
if(ans[i] == (1LL<<60)){
ans[i] = -1;
}
print(ans[i]);
}
}