結果

問題 No.1502 Many Simple Additions
コンテスト
ユーザー ryoku
提出日時 2026-08-08 06:17:07
言語 C++23(gcc16)
(gcc 16.1.0 + boost 1.90.0)
コンパイル:
g++-16 -O2 -lm -std=c++23 -Wuninitialized -DONLINE_JUDGE -o a.out _filename_
実行:
./a.out
結果
WA  
実行時間 -
コード長 30,203 bytes
記録
記録タグの例:
初AC ショートコード 純ショートコード 純主流ショートコード 最速実行時間
コンパイル時間 3,591 ms
コンパイル使用メモリ 323,972 KB
実行使用メモリ 14,076 KB
最終ジャッジ日時 2026-08-08 06:17:14
合計ジャッジ時間 6,964 ms
ジャッジサーバーID
(参考情報)
judge2_0 / judge3_1
このコードへのチャレンジ
(要ログイン)
ファイルパターン 結果
sample AC * 5
other AC * 32 WA * 7
権限があれば一括ダウンロードができます

ソースコード

diff #
raw source code

#line 1 "lib/template.hpp"
#ifdef TEMPLATE
#else
#define TEMPLATE
# pragma GCC optimize("O3")
using namespace std;
#include <iostream>
#include <iomanip>
#include <cstdio>
#include <string>
#include <cstring>
#include <vector>
#include <list>
#include <queue>
#include <stack>
#include <deque>
#include <set>
#include <map>
#include <unordered_set>
#include <unordered_map>
#include <algorithm>
#include <numeric>
#include <cmath>
#include <climits>
#include <cassert>
#include <functional>
#include <iterator>
#include <utility>
#include <complex>
#include <bitset>
#include <chrono>
#include <random>
#include <limits>
#include <optional>
#include <variant>
#include <any>

#include <array>
#include <bit>
#include <compare>
#include <concepts>
#include <numbers>
#include <ranges>
#include <span>
#include <string_view>
#include <tuple>
#include <type_traits>
#include <version>
using uint=unsigned;
using ll=long long;
using ull=unsigned long long;
using ld=long double;
using pii=pair<int,int>;
using pll=pair<ll,ll>;
using i128=__int128;
using u128=unsigned __int128;
template<class T>using vc=vector<T>;
template<class T>using vvc=vc<vc<T>>;
template<class T>using vvvc=vvc<vc<T>>;
template<class T>using smpq=priority_queue<T,vector<T>,greater<T>>;
template<class T>using bipq=priority_queue<T>;
#define rep(i,n) for(ll i=0;i<(ll)(n);i++)
#define REP(i,j,n) for(ll i=(j);i<(ll)(n);i++)
#define DREP(i,n,m) for(ll i=(n);i>=(m);i--)
#define drep(i,n) for(ll i=((n)-1);i>=0;i--)
#define rall(x) x.rbegin(),x.rend()
#define mp make_pair
#define pb push_back
#define fi first
#define se second
#define is insert
#define bg begin()
#define ed end()
#define all(x) x.begin(),x.end()
void scan(int&a) { cin >> a; }
void scan(ll&a) { cin >> a; }
void scan(string&a) { cin >> a; }
void scan(char&a) { cin >> a; }
void scan(uint&a) { cin >> a; }
void scan(ull&a) { cin >> a; }
void scan(bool&a) { cin >> a; }
void scan(ld&a){ cin>> a;}
template<class T> void scan(vector<T>&a) { for(auto&x:a) scan(x); }
void read() {}
template<class Head, class... Tail> void read(Head&head, Tail&... tail) { scan(head); read(tail...); }
#define INT(...) int __VA_ARGS__; read(__VA_ARGS__);
#define LL(...) ll __VA_ARGS__; read(__VA_ARGS__);
#define ULL(...) ull __VA_ARGS__; read(__VA_ARGS__);
#define STR(...) string __VA_ARGS__; read(__VA_ARGS__);
#define VC(type, name, ...) vector<type> name(__VA_ARGS__); read(name);
#define VVC(type, name, size, ...) vector<vector<type>> name(size, vector<type>(__VA_ARGS__)); read(name);
template<class T>void print(T a) { cout << a; }
template<class T> void print(vector<T>a) { for(int i=0;i<(int)a.size();i++){if(i)cout<<" ";print(a[i]);}cout<<endl;}
void PRT() { cout <<endl; return ; }
template<class T> void PRT(T a) { print(a); cout <<endl; return; }
template<class Head, class... Tail> void PRT(Head head, Tail ... tail) { print(head); cout << " "; PRT(tail...); return; }
template<class T,class F>
bool chmin(T &x, F y){
    if(x>y){
        x=y;
        return true;
    }
    return false;
}
template<class T, class F>
bool chmax(T &x, F y){
    if(x<y){
        x=y;
        return true;
    }
    return false;
}
template <typename T>
T floor(T a, T b) {
  return a / b - (a % b && (a ^ b) < 0);
}
template <typename T>
T ceil(T x, T y) {
  return floor(x + y - 1, y);
}
template <typename T>
T bmod(T x, T y) {
  return x - y * floor(x, y);
}
template <typename T>
pair<T, T> divmod(T x, T y) {
  T q = floor(x, y);
  return {q, x - q * y};
}
void YesNo(bool b){
    cout<<(b?"Yes":"No")<<endl;
}
void YESNO(bool b){
    cout<<(b?"YES":"NO")<<endl;
}
void AliceBob(bool b){
    cout<<(b?"Alice":"Bob")<<endl;
}
void TakahashiAoki(bool b){
    cout<<(b?"Takahashi":"Aoki")<<endl;
}
void Yes(){
    cout<<"Yes"<<endl;
}
void No(){
    cout<<"No"<<endl;
}
vc<int>stovi(const string&s,const string&S){
    vc<int>v(s.size());
    rep(i,s.size()){
        auto t=S.find(s[i]);
        assert(t!=string::npos);
        v[i]=t;
    }
    return v;
}
template<class T=ll>
T isqrt(T x){
    T F=sqrtl(x);
    while((F+1)*(F+1)<=x)F++;
    while(F*F>x)F--;
    return F;
}
template<class T>
vvc<T>trans(const vvc<T>&a){
    assert(a.size()&&a[0].size());
    vvc<T>b(a[0].size(),vc<T>(a.size()));
    rep(i,a.size())rep(j,a[0].size()){
        b[j][i]=a[i][j];
    }
    return b;
}
template<class T>
vc<string>trans(const vc<string>&a){
    assert(a.size()&&a[0].size());
    vc<string>b(a[0].size(),string(a.size(),0));
    rep(i,a.size())rep(j,a[0].size()){
        b[j][i]=a[i][j];
    }
    return b;
}
template<class T>
int popcount(T n){
    return __builtin_popcountll(n);
}
template<class T,class L=ll>
L sum(vc<T>&a){
    return accumulate(all(a),L(0));
}
template<class T>
vc<T>subset(T S){
    vc<T>ans;
    for(T x=S;x>0;x=(x-1)&S)ans.pb(x);
    ans.pb(0);
    return ans;
}
template<class T>
T max(vc<T>&a){
    return *max_element(all(a));
}
template<class T>
T min(vc<T>&a){
    return *min_element(all(a));
}
#ifndef COMPRESSER_STRUCT
#define COMPRESSER_STRUCT
template<class T>
struct Compresser{
    vc<T>x;
    Compresser(int n=0){x.reserve(n);}
    Compresser(const vc<T>&xs){
        x=xs;
    }
    void push(T p){built=false;x.pb(p);}
    bool built=false;
    void build(){
        if(!chmax(built,1))return;
        sort(all(x));
        x.erase(unique(all(x)),x.end());
    }
    int find(T v){
        build();
        auto itr=lower_bound(all(x),v)-x.begin();
        if(itr==x.size()||x[itr]!=v)return -1;
        return itr;
    }
    int find_next(T v){
        build();
        return lower_bound(all(x),v)-x.begin();
    }
    int size(){
        build();
        return x.size();
    }
    T operator[](int i)const{
        assert(0<=i&&i<x.size());
        return x[i];
    }
};
#endif
template<class T,class L=ll>
vc<L> presum(vc<T> &a){
    vc<L> ret(a.size()+1);
    rep(i,a.size())ret[i+1]=ret[i]+a[i];
    return ret;
}
template<class T, class F>
vc<T> &operator+=(vc<T> &a,F b){
    for (auto&v:a)v += b;
    return a;
}
template<class T, class F>
vc<T> &operator-=(vc<T>&a,F b){
    for (auto&v:a)v-=b;
    return a;
}
template<class T, class F>
vc<T> &operator*=(vc<T>&a,F b){
    for (auto&v:a)v*=b;
    return a;
}
template<class T=ll>
constexpr T POW(T a,T b){
    T res=1;
    while(b){
        if(b&1)res*=a;
        a*=a;
        b/=2;
    }
    return res;
}
constexpr ll ten(ll a){
    return POW<ll>(10,a);
}
template<typename T>constexpr T inf=numeric_limits<T>::max()/2-1;
template<class T>
int tbit(T x){
    using U=make_unsigned_t<T>;
    U y=(U)x;
    return y?(int)bit_width(y)-1:-1;
}
template<class T>
int lbit(T x){
    using U=make_unsigned_t<T>;
    U y=(U)x;
    return y?(int)countr_zero(y):-1;
}
template<class T>
int tbit(T x,int p){
    using U=make_unsigned_t<T>;
    constexpr int W=numeric_limits<U>::digits;
    U y=(U)x;
    if(p<0)return -1;
    if(p>=W-1)return tbit(y);
    return tbit(y&((U(1)<<(p+1))-1));
}
template<class T>
int lbit(T x,int p){
    using U=make_unsigned_t<T>;
    constexpr int W=numeric_limits<U>::digits;
    U y=(U)x;
    if(p<0)return lbit(y);
    if(p>=W)return -1;
    return lbit(y&(~U(0)<<p));
}
istream& operator>>(istream&is,i128&x){
    string s;is>>s;
    x=0;
    int i=0,neg=0;
    if(s[0]=='-')neg=1,i=1;
    for(;i<(int)s.size();i++)x=x*10+s[i]-'0';
    if(neg)x=-x;
    return is;
}
ostream& operator<<(ostream&os,i128 x){
    if(x==0)return os<<0;
    if(x<0)os<<"-";
    using u128=__uint128_t;
    u128 y=x<0?-(u128)x:(u128)x;
    string s;
    while(y)s.pb('0'+y%10),y/=10;
    reverse(all(s));
    return os<<s;
}
#define dbg(...) 1111

#ifdef LOCAL
#undef dbg

template<class T,class U>
ostream& operator<<(ostream&os,const pair<T,U>&p){
    return os<<"("<<p.fi<<", "<<p.se<<")";
}
template<class T,size_t N>
ostream& operator<<(ostream&os,const array<T,N>&a){
    os<<"[";
    rep(i,N){
        if(i)os<<", ";
        os<<a[i];
    }
    return os<<"]";
}
template<class T>
ostream& operator<<(ostream&os,const vc<T>&a){
    os<<"[";
    rep(i,a.size()){
        if(i)os<<", ";
        os<<a[i];
    }
    return os<<"]";
}
template<class T>
ostream& operator<<(ostream&os,const deque<T>&a){
    os<<"[";
    rep(i,a.size()){
        if(i)os<<", ";
        os<<a[i];
    }
    return os<<"]";
}
template<class T>
ostream& operator<<(ostream&os,const set<T>&s){
    os<<"{";
    bool f=0;
    for(auto&x:s){
        if(f)os<<", ";
        f=1;
        os<<x;
    }
    return os<<"}";
}
template<class T>
ostream& operator<<(ostream&os,const multiset<T>&s){
    os<<"{";
    bool f=0;
    for(auto&x:s){
        if(f)os<<", ";
        f=1;
        os<<x;
    }
    return os<<"}";
}
template<class T>
ostream& operator<<(ostream&os,const unordered_set<T>&s){
    os<<"{";
    bool f=0;
    for(auto&x:s){
        if(f)os<<", ";
        f=1;
        os<<x;
    }
    return os<<"}";
}
template<class T,class U>
ostream& operator<<(ostream&os,const map<T,U>&m){
    os<<"{";
    bool f=0;
    for(auto&x:m){
        if(f)os<<", ";
        f=1;
        os<<x;
    }
    return os<<"}";
}
template<class T,class U>
ostream& operator<<(ostream&os,const unordered_map<T,U>&m){
    os<<"{";
    bool f=0;
    for(auto&x:m){
        if(f)os<<", ";
        f=1;
        os<<x;
    }
    return os<<"}";
}
template<class T>
ostream& operator<<(ostream&os,queue<T>q){
    vc<T>a;
    while(q.size())a.pb(q.front()),q.pop();
    return os<<a;
}
template<class T>
ostream& operator<<(ostream&os,stack<T>s){
    vc<T>a;
    while(s.size())a.pb(s.top()),s.pop();
    return os<<a;
}
template<class T,class C,class F>
ostream& operator<<(ostream&os,priority_queue<T,C,F>q){
    vc<T>a;
    while(q.size())a.pb(q.top()),q.pop();
    return os<<a;
}

void debug_out(){cout<<endl;}
template<class T,class... Ts>
void debug_out(const T&x,const Ts&...xs){
    cout<<x;
    if constexpr(sizeof...(xs))cout<<" ",debug_out(xs...);
    else cout<<endl;
}
#define dbg(...) cout<<"["<<#__VA_ARGS__<<"] = ",debug_out(__VA_ARGS__)
#endif

struct TemplateSetup{
    TemplateSetup(){
        #ifdef LOCAL
        freopen("input.txt","r",stdin);
        freopen("output.txt","w",stdout);
        
        #endif
        cin.tie(0)->sync_with_stdio(0);
        #ifdef LOCAL
        cout<<fixed<<setprecision(6);
        dbg("==============="s);
        #else
        cout<<fixed<<setprecision(20);
        #endif
    }
};
inline TemplateSetup template_setup;

#endif
#line 2 "lib/graph/base.hpp"
#include<type_traits>
struct Unweighted{
    Unweighted()=default;
    Unweighted(int){}
    operator int()const{return 1;}
};
template<class T=Unweighted>
struct Edge{
    int from,to,id;
    [[no_unique_address]] T cost;
    #ifdef LOCAL
    friend ostream&operator<<(ostream&os,const Edge&e){
        return os<<"{from:"<<e.from<<",to:"<<e.to<<",id:"<<e.id<<",cost:"<<e.cost<<"}";
    }
    #endif
};
template<class T,class=void>struct IsEdge:false_type{};
template<class T>struct IsEdge<T,void_t<decltype(declval<T>().from),decltype(declval<T>().to),decltype(declval<T>().id),decltype(declval<T>().cost)>>:true_type{};
struct EmptyStorage{};
template<bool is_directed,class T=Unweighted>
struct StaticGraph{
    constexpr static bool directed(){return is_directed;}
    using Edge=conditional_t<IsEdge<T>::value,T,::Edge<T>>;
    using cost_t=decltype(declval<Edge>().cost);
private:
    int n,m,added=0;
    mutable bool csr_built=false;
    [[no_unique_address]] mutable conditional_t<is_directed,bool,EmptyStorage> inv_built{};
    vc<Edge>_all_edges;
    mutable vc<int>csr_start;
    mutable vc<Edge>csr_edge;
    [[no_unique_address]] mutable conditional_t<is_directed,vc<int>,EmptyStorage>inv_start;
    [[no_unique_address]] mutable conditional_t<is_directed,vc<Edge>,EmptyStorage>inv_edge;
public:
    StaticGraph(int n):n(n),m(-1){assert(n>=0);csr_start.resize(n+1);}
    StaticGraph(int n,int m):n(n),m(m){assert(n>=0&&m>=0);csr_start.resize(n+1);_all_edges.reserve(m);}
    void resize(int size){
        assert(n<=size);
        assert(!csr_built);
        n=size;
        csr_start.resize(n+1);
    }
    void add_edge(const Edge&e){
        assert(0<=e.from&&e.from<n&&0<=e.to&&e.to<n);
        assert(m==-1||added<m);
        _all_edges.push_back(e);
        csr_built=false;
        if constexpr(is_directed)inv_built=false;
        if(++added==m)build();
    }
    void add_edge(int a,int b,cost_t cost=1,int id=-1){
        assert(0<=a&&a<n&&0<=b&&b<n);
        assert(m==-1||added<m);
        if(id==-1)id=(int)_all_edges.size();
        _all_edges.push_back({a,b,id,cost});
        csr_built=false;
        if constexpr(is_directed)inv_built=false;
        if(++added==m)build();
    }
    template<int substract=0>
    void input(int edge_count){
        assert(edge_count>=0);
        rep(i,edge_count){
            INT(a,b);
            a-=substract;
            b-=substract;
            add_edge(a,b);
        }
    }
    void build()const{
        if(csr_built)return;
        csr_built=true;
        csr_start.assign(n+1,0);
        for(auto&e:_all_edges){
            csr_start[e.from]++;
            if constexpr(!is_directed)csr_start[e.to]++;
        }
        rep(i,n)csr_start[i+1]+=csr_start[i];
        csr_edge.resize(csr_start[n]);
        for(auto it=_all_edges.rbegin();it!=_all_edges.rend();++it){
            auto&e=*it;
            csr_edge[--csr_start[e.from]]=e;
            if constexpr(!is_directed)csr_edge[--csr_start[e.to]]={e.to,e.from,e.id,e.cost};
        }
    }
    void build_inv()const{
        if constexpr(!is_directed){
            build();
            return;
        }else{
            if(inv_built)return;
            inv_built=true;
            inv_start.assign(n+1,0);
            for(auto&e:_all_edges){
                inv_start[e.to]++;
            }
            rep(i,n)inv_start[i+1]+=inv_start[i];
            inv_edge.resize(inv_start[n]);
            for(auto it=_all_edges.rbegin();it!=_all_edges.rend();++it){
                auto&e=*it;
                inv_edge[--inv_start[e.to]]={e.to,e.from,e.id,e.cost};
            }
        }
    }
    const vc<Edge>&all_edges()const{return _all_edges;}
    int edge_size()const{return (int)_all_edges.size();}
    Edge get_edge(int id)const{
        assert(0<=id&&id<edge_size());
        return _all_edges[id];
    }
    int out_deg(int u)const{assert(0<=u&&u<n);build();return csr_start[u+1]-csr_start[u];}
    int in_deg(int u)const{
        assert(0<=u&&u<n);
        if constexpr(!is_directed){
            return out_deg(u);
        }else{
            build_inv();
            return inv_start[u+1]-inv_start[u];
        }
    }
    int deg(int u)const{return out_deg(u);}
    template<class E>
    struct Span{
        E*l; E* r;
        E*begin()const{return l;}
        E*end()const{return r;}
        int size()const{return r-l;}
        E&back()const{return r[-1];}
        E&operator[](int i){return l[i];}
        const E&operator[](int i)const{return l[i];}
    };
    auto operator[](int u){
        assert(0<=u&&u<n);build();
        return Span<Edge>{csr_edge.data()+csr_start[u],csr_edge.data()+csr_start[u+1]};
    }
    auto operator[](int u)const{
        assert(0<=u&&u<n);build();
        return Span<const Edge>{csr_edge.data()+csr_start[u],csr_edge.data()+csr_start[u+1]};
    }
    auto inv(int u){
        assert(0<=u&&u<n);
        if constexpr(!is_directed){
            return (*this)[u];
        }else{
            build_inv();
            return Span<Edge>{inv_edge.data()+inv_start[u],inv_edge.data()+inv_start[u+1]};
        }
    }
    auto inv(int u)const{
        assert(0<=u&&u<n);
        if constexpr(!is_directed){
            return (*this)[u];
        }else{
            build_inv();
            return Span<const Edge>{inv_edge.data()+inv_start[u],inv_edge.data()+inv_start[u+1]};
        }
    }
    int size()const{return n;}
    template<class F>vvc<F>adj()const{
        vvc<F>res(n,vc<F>(n));
        for(auto&e:all_edges()){
            res[e.from][e.to]=e.cost;
            if(directed()==false)res[e.to][e.from]=e.cost;
        }
        return res;
    }
    void clear(){
        added=0;
        csr_built=false;
        if constexpr(is_directed)inv_built=false;
        _all_edges.clear();_all_edges.shrink_to_fit();
        csr_start.assign(n+1,0);csr_start.shrink_to_fit();
        csr_edge.clear();csr_edge.shrink_to_fit();
        if constexpr(is_directed){
            inv_start.clear();inv_start.shrink_to_fit();
            inv_edge.clear();inv_edge.shrink_to_fit();
        }
    }
    template<class F>
    void sort(int i,F f){
        assert(0<=i&&i<n);
        build();
        sort(csr_edge.begin()+csr_start[i],csr_edge.begin()+csr_start[i+1],f);
    }
    template<class F>
    void sort_inv(int i,F f){
        assert(0<=i&&i<n);
        if constexpr(!is_directed){
            build();
            sort(csr_edge.begin()+csr_start[i],csr_edge.begin()+csr_start[i+1],f);
            return;
        }
        build_inv();
        sort(inv_edge.begin()+inv_start[i],inv_edge.begin()+inv_start[i+1],f);
    }
    template<class F>
    StaticGraph<is_directed,T>extract(F f)const{
        StaticGraph<is_directed,T>res(n);
        for(auto&e:_all_edges)if(f(e))res.add_edge(e);
        return res;
    }
    template<class F>
    StaticGraph<1,T>reorder(F f)const{
        StaticGraph<1,T>res(n);
        for(auto&e:_all_edges){
            if(f(e))res.add_edge(e);
            else res.add_edge({e.to,e.from,e.id,e.cost});
        }
        return res;
    }
};
#line 2 "lib/math/barrett.hpp"
struct Barrett{
    using u64=uint64_t;
    using u32=uint32_t;
    using i128=__int128_t;
    u64 m;
    int mod;
    void set(int mod_){
        assert(mod_>0);
        mod=mod_;
        m=(i128(1)<<64)/mod;
    }
    unsigned reduce(uint64_t x){
        assert(mod>0);
        x-=(((i128)x*m)>>64)*mod;
        return x<mod?x:x-mod;
    }
};
#line 3 "lib/math/dynamic-mod-int.hpp"
template<int id>
struct DynamicModInt{
    using u32=uint32_t;
    using u64=uint64_t;
    u32 val;
    DynamicModInt():val(0){}
    DynamicModInt(ll x){
        ll v=x%get_mod();
        if(v<0)v+=get_mod();
        val=v;
    }
    static DynamicModInt raw(int v){
        assert(v>=0);
        DynamicModInt mi;
        mi.val=v;
        return mi;
    }
    DynamicModInt &operator+=(const DynamicModInt&m){
        if((val+=m.val)>=get_mod())val-=get_mod();
        return *this;
    }
    DynamicModInt &operator-=(const DynamicModInt&m){
        if((val+=(get_mod()-m.val))>=get_mod())val-=get_mod();
        return *this;
    }
    DynamicModInt &operator*=(const DynamicModInt&m){
        val=rem(u64(val)*m.val);
        return *this;
    }
    DynamicModInt &operator/=(const DynamicModInt&m){
        val=rem(u64(val)*m.inv().val);
        return *this;
    }
    DynamicModInt operator-() const{
        return DynamicModInt(val?get_mod()-val:0);
    }
    DynamicModInt operator+() const {
        return *this;
    }
    friend DynamicModInt operator+(DynamicModInt lhs, const DynamicModInt& rhs){
        return lhs+=rhs;
    }
    friend DynamicModInt operator-(DynamicModInt lhs, const DynamicModInt& rhs){
        return lhs-=rhs;
    }
    friend DynamicModInt operator*(DynamicModInt lhs, const DynamicModInt& rhs){
        return lhs*=rhs;
    }
    friend DynamicModInt operator/(DynamicModInt lhs,const DynamicModInt&rhs){
        return lhs/=rhs;
    }
    bool operator==(const DynamicModInt&p) const{
        return p.val==val;
    }
    bool operator!=(const DynamicModInt&p) const{
        return p.val!=val;
    }
    DynamicModInt pow(int64_t n) const{
        DynamicModInt res(1),mul(val);
        while(n){
            if(n%2)res*=mul;
            mul*=mul;
            n/=2;
        }
        return res;
    }

    friend ostream&operator<<(ostream&os,const DynamicModInt&p){
        os<<p.val;
        return os;
    }
    friend istream&operator>>(istream&is,DynamicModInt&p){
        int64_t x;
        is>>x;
        p=DynamicModInt(x);
        return is;
    }
    DynamicModInt inv()const{
        int64_t a=val,b=get_mod(),u=1,v=0,t;
        #ifdef LOCAL
        assert(gcd(a,b)==1);
        #endif
        while(b>0){
            t=a/b;
            swap(a-=t*b,b);
            swap(u-=t*v,v);
        }
        return DynamicModInt(u);
    }
    inline static u32 rem(u64 x){return BarrettReduction().reduce(x);}
    static inline int &get_mod(){
        static int mod=0;
        return mod;
    }
    static void set_mod(int md){
        assert(0<md&&md<=(1ll<<31)-1);
        get_mod()=md;
        BarrettReduction().set(md);
    }
    static inline Barrett&BarrettReduction(){
        static Barrett b;
        return b;
    }
};

#line 3 "lib/math/mod.hpp"
template<class,class=void>
struct BinomHasGetMod:false_type{};
template<class mint>
struct BinomHasGetMod<mint,void_t<decltype(mint::get_mod())>>:true_type{};
template<class mint>
struct Binom{
private:
    static vector<mint>&fact_table(){static vector<mint>v={1};return v;}
    static vector<mint>&invfact_table(){static vector<mint>v={1};return v;}
    static vector<mint>&invs_table(){static vector<mint>v={0};return v;}
    static int&built_mod(){static int mod=-1;return mod;}
public:
    static void build(int n){
        auto&_fact=fact_table();
        auto&_invfact=invfact_table();
        auto&_invs=invs_table();
        if constexpr(BinomHasGetMod<mint>::value){
            auto mod=mint::get_mod();
            if(built_mod()!=mod){
                _fact={1};
                _invfact={1};
                _invs={0};
                built_mod()=mod;
            }
        }
        if(n<(int)_fact.size())return;
        int old=_fact.size();
        _fact.resize(n+1);
        _invfact.resize(n+1);
        _invs.resize(n+1);
        if constexpr(BinomHasGetMod<mint>::value){
            auto mod=mint::get_mod();
            for(int i=old;i<=n;i++){
                _fact[i]=_fact[i-1]*i;
                if(i==1)_invs[i]=1;
                else _invs[i]=-_invs[mod%i]*(mod/i);
                _invfact[i]=_invfact[i-1]*_invs[i];
            }
        }else{
            for(int i=old;i<=n;i++){
                _fact[i]=_fact[i-1]*i;
                _invs[i]=mint(1)/i;
                _invfact[i]=_invfact[i-1]*_invs[i];
            }
        }
    }
    static mint fact(int i){
        assert(i>=0);
        build(i);
        return fact_table()[i];
    }
    static mint invfact(int i){
        assert(i>=0);
        build(i);
        return invfact_table()[i];
    }
    static mint inv(int i){
        assert(i>0);
        build(i);
        return invs_table()[i];
    }
    static mint C(int a,int b){//aCb
        if(a<0||b<0||a-b<0)return mint(0);
        build(a);
        auto&_fact=fact_table();
        auto&_invfact=invfact_table();
        return _fact[a]*_invfact[b]*_invfact[a-b];
    }
    static mint iC(int a,int b){//1/aCb
        if(a<0||b<0||a-b<0)return mint(0);
        build(a);
        auto&_fact=fact_table();
        auto&_invfact=invfact_table();
        return _fact[b]*_fact[a-b]*_invfact[a];
    }
    static mint P(int a,int b){
        if(a<b||b<0)return 0;
        build(a);
        auto&_fact=fact_table();
        auto&_invfact=invfact_table();
        return _fact[a]*_invfact[a-b];
    }
    static mint H(int a,int b){
        return C(a+b-1,b);
    }

};
template< typename T >
T extgcd(T a, T b, T &x, T &y) {
  T d = a;
  if(b != 0) {
    d = extgcd(b, a % b, y, x);
    y -= (a / b) * x;
  } else {
    x = 1;
    y = 0;
  }
  return d;
}
template<class T>
pair<T,T> inv(T x,T m){
    T a1,a2;
    T res=extgcd<ll>(x,m,a1,a2);
    T md=m/res;
    a1=(a1%md+md)%md;
    return {a1,md};
}
template<class T>
pair<T,T> mod_solve(T a,T b,T m){//return x s.t. ax=b mod m
    a%=m,b%=m;if(a<0)a+=m;if(b<0)b+=m;
    T g=gcd(gcd(a,b),m);
    a/=g,b/=g,m/=g;
    if(gcd(a,m)>1)return {-1,-1};
    return {(inv<ll>(a,m).first*b)%m,inv<ll>(a,m).second};
}
//https://nyaannyaan.github.io/library/modulo/mod-sqrt.hpp.html
int64_t mod_sqrt(const int64_t &a, const int64_t &p) {
  assert(0 <= a && a < p);
  if (a < 2) return a;
  using Mint = DynamicModInt<409075245>;
  Mint::set_mod(p);
  if (Mint(a).pow((p - 1) >> 1) != 1) return -1;
  Mint b = 1, one = 1;
  while (b.pow((p - 1) >> 1) == 1) b += one;
  int64_t m = p - 1, e = 0;
  while (m % 2 == 0) m >>= 1, e += 1;
  Mint x = Mint(a).pow((m - 1) >> 1);
  Mint y = Mint(a) * x * x;
  x *= a;
  Mint z = Mint(b).pow(m);
  while (y != 1) {
    int64_t j = 0;
    Mint t = y;
    while (t != one) {
      j += 1;
      t *= t;
    }
    z = z.pow(int64_t(1) << (e - j - 1));
    x *= z;
    z *= z;
    y *= z;
    e = j;
  }
  return x.val;
}
#line 3 "lib/math/static-mod-int.hpp"
template<uint32_t mod>
struct StaticModInt{
    static_assert(0<mod&&mod<=(1u<<31)-1);
    using u32=uint32_t;
    using u64=uint64_t;
    u32 val;
    StaticModInt():val(0){}
    StaticModInt(ll x){
        ll v=x%mod;
        if(v<0)v+=mod;
        val=v;
    }
    constexpr static uint32_t get_mod(){
        return mod;
    }
    static StaticModInt raw(int v){
        assert(v>=0);
        StaticModInt mi;
        mi.val=v;
        return mi;
    }
    StaticModInt &operator+=(const StaticModInt&m){
        if((val+=m.val)>=mod)val-=mod;
        return *this;
    }
    StaticModInt &operator-=(const StaticModInt&m){
        if((val+=(mod-m.val))>=mod)val-=mod;
        return *this;
    }
    StaticModInt &operator*=(const StaticModInt&m){
        val=u64(val)*m.val%mod;
        return *this;
    }
    StaticModInt &operator/=(const StaticModInt&m){
        val=u64(val)*m.inv().val%mod;
        return *this;
    }
    StaticModInt operator-() const{
        return StaticModInt(mod-val);
    }
    StaticModInt operator+() const {
        return *this;
    }
    friend StaticModInt operator+(StaticModInt lhs, const StaticModInt& rhs){
        return lhs+=rhs;
    }
    friend StaticModInt operator-(StaticModInt lhs, const StaticModInt& rhs){
        return lhs-=rhs;
    }
    friend StaticModInt operator*(StaticModInt lhs, const StaticModInt& rhs){
        return lhs*=rhs;
    }
    friend StaticModInt operator/(StaticModInt lhs,const StaticModInt&rhs){
        return lhs/=rhs;
    }
    bool operator==(const StaticModInt&p) const{
        return p.val==val;
    }
    bool operator!=(const StaticModInt&p) const{
        return p.val!=val;
    }
    StaticModInt pow(int64_t n) const{
        StaticModInt res(1),mul(val);
        while(n){
            if(n%2)res*=mul;
            mul*=mul;
            n/=2;
        }
        return res;
    }

    friend ostream&operator<<(ostream&os,const StaticModInt&p){
        os<<p.val;
        return os;
    }
    friend istream&operator>>(istream&is,StaticModInt&p){
        int64_t x;
        is>>x;
        p=StaticModInt(x);
        return is;
    }
    StaticModInt inv()const{
        int64_t a=val,b=mod,u=1,v=0,t;
        #ifdef LOCAL
        assert(gcd(a,b)==1);
        #endif
        while(b>0){
            t=a/b;
            swap(a-=t*b,b);
            swap(u-=t*v,v);
        }
        return StaticModInt(u);
    }
};
#line 4 "A/main.cpp"
using mint=StaticModInt<ten(9)+7>;
void solve(){
    LL(n,m,k);
    --k;
    StaticGraph<0,ll>g(n);
    rep(i,m){
        LL(x,y,z);--x,--y;
        z-=2;
        if(z<0)return PRT(0);
        g.add_edge(x,y,z);
    }
    vc<array<ll,3>>way(n,{-1,-1,-1});
    mint dp0=1,dp1=0;
    rep(i,n){
        if(way[i][0]>=0)continue;
        way[i]={i,1,0};
        queue<int>que;que.push(i);
        ll done=-1;
        vc<int>active;
        while(que.size()){
            ll v;
            active.pb(v=que.front());
            auto [p,q,r]=way[que.front()];que.pop();
            dbg(v,p,q,r);
            for(auto&e:g[v]){
                if(way[e.to][0]<0){
                    way[e.to]={p,q*-1,e.cost-r};
                    que.push(e.to);
                }else{
                    if(way[e.to][1]==-q){
                        dbg(323232);
                        if(way[e.to][2]!=e.cost-r){
                            return PRT(0);
                        }
                    }else{
                        
                        ll v=(way[e.to][2]-(e.cost-r))*-q;
                        dbg(v);
                        if(v<0||v%2)return PRT(0);
                        dbg(v,done);
                        if(done>=0&&done!=v)return PRT(0);
                        done=v;
                    }
                }
            }
        }
        dbg(i);
        auto check=[&](ll done)->pll{
            ll ok=1;
            ll hask=0;
            for(auto&x:active){
                ok&=way[x][1]*done+way[x][2]<=k;
                hask|=way[x][1]*done+way[x][2]==k;
            }
            return{ok,hask};
        };
        dbg(done);
        if(done>=0){
            auto[ok,hask]=check(done);
            if(hask){
                dp1+=dp0,dp0=0;
            }else{
                continue;
            }
        }else{
            rep(i,n)dbg(way[i]);
            ll l=-inf<ll>,r=inf<ll>;
            for(auto&x:active){
                if(way[x][1]==1){
                    chmin(r,-way[x][2]+k);
                    chmax(l,-way[x][2]);
                }else{
                    chmax(l,-k+way[x][2]);
                    chmin(r,way[x][2]);
                }
            }
            dbg(l,r);
            mint ndp0,ndp1;
            //[l+1,r-1]
            if(l+1<=r-1){
                ndp1+=dp1*(r-1-(l+1)+1);
                ndp0+=dp0*(r-1-(l+1)+1);
            }
            //l
            rep(t,1){
                
                auto[ok,hask]=check(l);
                if(ok==0)continue;
                if(hask){
                    ndp1+=dp0+dp1;
                }else{
                    ndp1+=dp1,ndp0+=dp0;
                }
            }
            if(l!=r)rep(t,1){
                
                auto[ok,hask]=check(r);
                if(ok==0)continue;
                if(hask){
                    ndp1+=dp0+dp1;
                }else{
                    ndp1+=dp1,ndp0+=dp0;
                }
            }
            dp0=move(ndp0),dp1=move(ndp1);
        }
    }
    PRT(dp1);
}
signed main(){
    int t=1;
    // cin >> t;
    while(t--)solve();
}
0