#include #include using namespace std; namespace my{ #define eb emplace_back #define LL(...) ll __VA_ARGS__;lin(__VA_ARGS__) #define RDVL(T,n,...) vec__VA_ARGS__;resizes({n},__VA_ARGS__);lin(__VA_ARGS__) #define VL(n,...) RDVL(ll,n,__VA_ARGS__) #define jo(a,b) a##b #define FO_IMPL(n,c) for(ll jo(_i,c)=n;jo(_i,c)-->0;) #define FO(n) FO_IMPL(n,__COUNTER__) #define FOR(i,...) for(auto[i,i##stop,i##step]=range(0,__VA_ARGS__);i=i##stop;i+=i##step) #define fe(a,e,...) for(auto&&__VA_OPT__([)e __VA_OPT__(,__VA_ARGS__]):a) #define bit_sizeof(T) ll(sizeof(T)*CHAR_BIT) #define schrodinger(p,c) (p?c:remove_cvref_t{}) #define base_operator(op,type) auto operator op(const type&v)const{auto copy=*this;return copy op##=v;} #define single_testcase void solve();}int main(){my::io();my::solve();}namespace my{ #define use_ml998244353 using ml=atcoder::modint998244353 auto&operator>>(istream&i,atcoder::modint998244353&x){int t;i>>t;x=t;return i;} auto&operator<<(ostream&o,const atcoder::modint998244353&x){return o<<(int)x.val();} void io(){cin.tie(nullptr)->sync_with_stdio(0);cout<=0);decltype(x)r=e;for(;n;x*=x,n>>=1)if(n&1)r*=x;return r;} constexpr auto pow(auto x,auto n){return pow(x,n,1);} constexpr auto at2(auto x,auto i){return x>>i&1;} templatestruct pair{ A a;B b; pair()=default; pair(A a,B b):a(a),b(b){} pair(const std::pair&p):a(p.first),b(p.second){} auto operator<=>(const pair&)const=default; pair operator+(const pair&p)const{return{a+p.a,b+p.b};} friend istream&operator>>(istream&i,pair&p){return i>>p.a>>p.b;} friend ostream&operator<<(ostream&o,const pair&p){return o<struct queue:std::queue{ queue(const initializer_list&a={}){fe(a,e)this->emplace(e);} queue(const vector&a){fe(a,e)this->emplace(e);} ll size()const{return std::queue::size();} T pop(){T r=this->front();std::queue::pop();return r;} T sum()const{T r{};fe(*this,e)r+=e;return r;} friend ostream&operator<<(ostream&o,queue q){while(q.size())o<0,space);return o;} }; templateusing pack_back_t=tuple_element_t>; templateconcept vectorial=is_base_of_v::value_type>,remove_cvref_t>; templateconstexpr int rank(){if constexpr(vectorial)return rank()+1;else return 0;} templatestruct core_t_helper{using core_t=T;}; templatestruct core_t_helper{using core_t=typename core_t_helper::core_t;}; templateusing core_t=core_t_helper::core_t; templateistream&operator>>(istream&i,vector&v){fe(v,e)i>>e;return i;} templateostream&operator<<(ostream&o,const vector&v){ll n=v.size();fo(i,n)o<?newline:space);return o;} templatestruct vec; templatestruct hvec_helper{using type=vec::type>;}; templatestruct hvec_helper<0,T>{using type=T;}; templateusing hvec=typename hvec_helper::type; templatestruct vec:vector{ static constexpr int R=rank>(); using C=core_t; using vector::vector; vec(const vector&v){vector::operator=(v);} vec(const auto&...a)requires(sizeof...(a)>=3){resizes(a...);} void resizes(const auto&...a){*this=make(a...);} static auto make(ll n,const auto&...a){if constexpr(sizeof...(a)==1)return vec(n,array{a...}[0]);else return vec(n,make(a...));} vec&operator^=(const vec&u){this->insert(this->end(),u.begin(),u.end());return*this;} vec&operator+=(const vec&u){vec&v=*this;assert(v.size()==u.size());fo(i,v.size())v[i]+=u[i];return v;} vec&operator-=(const vec&u){vec&v=*this;assert(v.size()==u.size());fo(i,v.size())v[i]-=u[i];return v;} vec&operator+=(const C&c){fe(*this,e)e+=c;return*this;} vec&operator*=(const C&c){fe(*this,e)e*=c;return*this;} base_operator(^,vec) base_operator(+,vec) base_operator(-,vec) base_operator(+,C); base_operator(*,C); vec&operator++(){fe(*this,e)++e;return*this;} vec&operator--(){fe(*this,e)--e;return*this;} ll size()const{return vector::size();} auto scan(const auto&f)const{ pairr{}; fe(*this,e)if constexpr(!vectorial)r.b?f(r.a,e),r:r={e,1};else if(auto s=e.scan(f);s.b)r.b?f(r.a,s.a),r:r=s; return r; } auto sum()const{return scan([](auto&a,const auto&b){a+=b;}).a;} }; templaterequires(sizeof...(A)>=2)vec(const A&...a)->vec>>; vec(ll)->vec; templatevoid resizes(const array::R+1>&s,A&...a){(apply([&](const auto&...b){a.resizes(b...); },s),...);} void lin(auto&...a){(cin>>...>>a);} void pp(const auto&...a){ll n=sizeof...(a);((cout<0,space)),...);cout<struct msb_first_binary_trie{ struct node{ arraychild; vecaccept; index_t elem_count=0; node()=default; }; vecdata; msb_first_binary_trie(const vec&a={}):data(1){fo(i,a.size())emplace(a[i],i);} ll size()const{return data[0].elem_count;} ll size(ll i)const{return i?data[i].elem_count:0;} bool is_branching(ll i)const{return data[i].child[0]&&data[i].child[1];} void emplace(T a,index_t id=-1){ auto cu=0; of(k,B){ auto x=at2(a,k); if(!data[cu].child[x]){ data[cu].child[x]=data.size(); data.eb(); } cu=data[cu].child[x]; data[cu].elem_count++; } data[cu].accept.eb(id); } }; single_testcase void solve(){ LL(N); VL(N,a); constexpr ll B=bit_sizeof(uint32_t); msb_first_binary_triembt(a); queue>q{{0,0}}; use_ml998244353; vecis_branching(B+1); while(q.size()){ auto[cu,d]=q.pop(); is_branching[d]|=mbt.is_branching(cu); fo(x,2)if(mbt.data[cu].child[x])q.emplace(mbt.data[cu].child[x],d+1); } pp(ml(2).pow(is_branching.sum())); }}