#line 1 "verify/ds/segtree/persistent_dynamic_lazy_segtree.test.cpp"
#define PROBLEM "https://judge.yosupo.jp/problem/aplusb"
#line 1 "ds/segtree/persistent_dynamic_lazy_segtree.hpp"
#include<cassert>
#include<concepts>
#include<cstddef>
#include<limits>
#include<memory>
#include<numeric>
#include<type_traits>
#include<utility>
#include<vector>#line 1 "acted_monoid/concept.hpp"
#line 5 "acted_monoid/concept.hpp"
namespacem1une{namespaceacted_monoid{// Concept defining the requirements for an Acted Monoid.template<typenameAM>conceptIsActedMonoid=requires(typenameAM::value_typea,typenameAM::value_typeb,typenameAM::operator_typef,typenameAM::operator_typeg){// 1. Value MonoidtypenameAM::value_type;{AM::id()}->std::same_as<typenameAM::value_type>;{AM::op(a,b)}->std::same_as<typenameAM::value_type>;// 2. Operator MonoidtypenameAM::operator_type;{AM::op_id()}->std::same_as<typenameAM::operator_type>;{AM::op_comp(f,g)}->std::same_as<typenameAM::operator_type>;// Composition order: f(g(x))// 3. Mapping: Operator x Value -> Value{AM::mapping(f,a)}->std::same_as<typenameAM::value_type>;};// Concept for acted monoids whose value monoid is a commutative group.// The value operation must obey commutativity and inverse laws.template<typenameAM>conceptIsCommutativeActedGroup=IsActedMonoid<AM>&&requires(typenameAM::value_typea){{AM::inv(a)}->std::same_as<typenameAM::value_type>;};}// namespace acted_monoid}// namespace m1une#line 1 "ds/segtree/dynamic_segtree_common.hpp"
#line 11 "ds/segtree/dynamic_segtree_common.hpp"
namespacem1une{namespaceds{namespacedetail{template<std::integralIndex>usingdynamic_size_type=std::make_unsigned_t<Index>;template<std::integralIndex>constexprdynamic_size_type<Index>dynamic_distance(Indexleft,Indexright){returnstatic_cast<dynamic_size_type<Index>>(right)-static_cast<dynamic_size_type<Index>>(left);}template<classMonoid,classSize>typenameMonoid::value_typemonoid_repeat(typenameMonoid::value_typevalue,Sizecount){typenameMonoid::value_typeresult=Monoid::id();while(count!=0){if(count&1)result=Monoid::op(result,value);count>>=1;if(count!=0)value=Monoid::op(value,value);}returnresult;}template<classActedMonoid>typenameActedMonoid::value_typedynamic_mapping(consttypenameActedMonoid::operator_type&f,consttypenameActedMonoid::value_type&value){usingF=typenameActedMonoid::operator_type;usingT=typenameActedMonoid::value_type;ifconstexpr(requires(Fg,Tx,longlongord){ActedMonoid::mapping(g,x,ord);}){returnActedMonoid::mapping(f,value,0);}else{returnActedMonoid::mapping(f,value);}}template<classActedMonoid,classSize>typenameActedMonoid::operator_typedynamic_shift(consttypenameActedMonoid::operator_type&f,Sizeoffset){usingF=typenameActedMonoid::operator_type;ifconstexpr(requires(Fg,longlongord){ActedMonoid::op_shift(g,ord);}){assert(offset<=static_cast<Size>(std::numeric_limits<longlong>::max()));returnActedMonoid::op_shift(f,static_cast<longlong>(offset));}else{returnf;}}template<classMonoid,std::integralIndex>classUniformMonoidDomain{public:usingT=typenameMonoid::value_type;usingsize_type=dynamic_size_type<Index>;private:structLevel{size_typesmall_length;Tsmall_value;Tlarge_value;};Index_left;Index_right;T_initial_value;std::vector<Level>_levels;public:UniformMonoidDomain(Indexleft,Indexright,Tinitial_value):_left(left),_right(right),_initial_value(std::move(initial_value)){assert(left<=right);size_typen=size();constexprintdigits=std::numeric_limits<size_type>::digits;_levels.reserve(digits+1);for(intdepth=0;depth<=digits;depth++){size_typesmall=depth==digits?0:n>>depth;size_typelarge=small;if(depth!=0){boolhas_remainder;if(depth==digits){has_remainder=n!=0;}else{size_typemask=(size_type(1)<<depth)-1;has_remainder=(n&mask)!=0;}if(has_remainder)large++;}_levels.push_back(Level{small,monoid_repeat<Monoid>(_initial_value,small),monoid_repeat<Monoid>(_initial_value,large),});}}Indexleft_bound()const{return_left;}Indexright_bound()const{return_right;}size_typesize()const{returndynamic_distance(_left,_right);}boolempty()const{return_left==_right;}constT&initial_value()const{return_initial_value;}constT&default_product(intdepth,Indexleft,Indexright)const{assert(0<=depth&&depth<int(_levels.size()));constLevel&level=_levels[depth];size_typelength=dynamic_distance(left,right);if(length==level.small_length)returnlevel.small_value;assert(length==level.small_length+1);returnlevel.large_value;}};}// namespace detail}// namespace ds}// namespace m1une#line 1 "ds/segtree/persistent_node_pool.hpp"
#line 9 "ds/segtree/persistent_node_pool.hpp"
namespacem1une{namespaceds{namespacedetail{// Node must have integer `left`, `right`, and `references` members.template<classNode>structPersistentNodePool{std::vector<Node>nodes;intfirst_free=0;std::size_tlive_nodes=0;private:voidrelease_zero(intnode){intleft=nodes[node].left;intright=nodes[node].right;nodes[node]=Node();nodes[node].left=first_free;first_free=node;--live_nodes;if(left&&--nodes[left].references==0)release_zero(left);if(right&&--nodes[right].references==0)release_zero(right);}public:PersistentNodePool(){nodes.emplace_back();}voidreserve(std::size_tcapacity){nodes.reserve(capacity+1);}Node&operator[](intnode){returnnodes[node];}constNode&operator[](intnode)const{returnnodes[node];}voidretain(intnode){if(node)++nodes[node].references;}voidrelease(intnode){if(!node)return;assert(nodes[node].references>0);if(--nodes[node].references==0)release_zero(node);}template<class...Args>intemplace(Args&&...args){intresult;if(!first_free){assert(nodes.size()<std::size_t(std::numeric_limits<int>::max()));nodes.emplace_back(std::forward<Args>(args)...);result=int(nodes.size())-1;}else{result=first_free;first_free=nodes[result].left;nodes[result]=Node(std::forward<Args>(args)...);}Node&node=nodes[result];node.references=0;retain(node.left);retain(node.right);++live_nodes;returnresult;}intclone(intnode){assert(node);Nodecopy=nodes[node];returnemplace(std::move(copy));}boolunique(intnode)const{return!node||nodes[node].references==1;}// Returns node itself when it has one owner, otherwise an unowned clone.// The caller must attach a returned clone with replace() before it can be// released or exposed as a root.intclone_if_shared(intnode){if(unique(node))returnnode;returnclone(node);}voidreplace(int&edge,intnode){if(edge==node)return;retain(node);intold=edge;edge=node;release(old);}std::size_tsize()const{returnlive_nodes;}};}// namespace detail}// namespace ds}// namespace m1une#line 17 "ds/segtree/persistent_dynamic_lazy_segtree.hpp"
namespacem1une{namespaceds{// A persistent sparse lazy segment tree over an integral half-open interval.template<m1une::acted_monoid::IsActedMonoidActedMonoid,std::integralIndex=longlong>requires(!std::same_as<std::remove_cv_t<Index>,bool>)structPersistentDynamicLazySegtree{usingT=typenameActedMonoid::value_type;usingF=typenameActedMonoid::operator_type;usingindex_type=Index;usingsize_type=detail::dynamic_size_type<Index>;private:structNode{Tval;Flazy;intleft;intright;intreferences;boolhas_lazy;Node():val(ActedMonoid::id()),lazy(ActedMonoid::op_id()),left(0),right(0),references(0),has_lazy(false){}explicitNode(Tvalue):val(std::move(value)),lazy(ActedMonoid::op_id()),left(0),right(0),references(0),has_lazy(false){}};structConfig{detail::UniformMonoidDomain<ActedMonoid,Index>domain;Config(Indexleft,Indexright,Tinitial_value):domain(left,right,std::move(initial_value)){}};std::shared_ptr<constConfig>_config;usingPool=detail::PersistentNodePool<Node>;std::shared_ptr<Pool>_pool;int_root;PersistentDynamicLazySegtree(std::shared_ptr<constConfig>config,std::shared_ptr<Pool>pool,introot):_config(std::move(config)),_pool(std::move(pool)),_root(root){_pool->retain(_root);}intnew_node(Indexleft,Indexright,intdepth)const{return_pool->emplace(_config->domain.default_product(depth,left,right));}intclone_or_new(intt,Indexleft,Indexright,intdepth,boolcopy_on_write=false)const{if(!t)returnnew_node(left,right,depth);returncopy_on_write?_pool->clone_if_shared(t):_pool->clone(t);}constT&value(intt,Indexleft,Indexright,intdepth)const{if(t)return(*_pool)[t].val;return_config->domain.default_product(depth,left,right);}voidall_apply_to_node(intt,Indexleft,Indexright,constF&f)const{Node&node=(*_pool)[t];node.val=detail::dynamic_mapping<ActedMonoid>(f,node.val);if(std::midpoint(left,right)!=left){node.lazy=ActedMonoid::op_comp(f,node.lazy);node.has_lazy=true;}}intall_apply_clone(intt,Indexleft,Indexright,intdepth,constF&f,boolcopy_on_write=false)const{intresult=clone_or_new(t,left,right,depth,copy_on_write);all_apply_to_node(result,left,right,f);returnresult;}voidpush(intt,Indexleft,Indexright,intdepth,boolcopy_on_write=false)const{if(!(*_pool)[t].has_lazy)return;Indexmiddle=std::midpoint(left,right);if(middle==left)return;Flazy=(*_pool)[t].lazy;intleft_child=all_apply_clone((*_pool)[t].left,left,middle,depth+1,lazy,copy_on_write);intright_child=all_apply_clone((*_pool)[t].right,middle,right,depth+1,detail::dynamic_shift<ActedMonoid>(lazy,detail::dynamic_distance(left,middle)),copy_on_write);Node&node=(*_pool)[t];_pool->replace(node.left,left_child);_pool->replace(node.right,right_child);node.lazy=ActedMonoid::op_id();node.has_lazy=false;}voidupdate(intt,Indexleft,Indexright,intdepth)const{Indexmiddle=std::midpoint(left,right);Node&node=(*_pool)[t];node.val=ActedMonoid::op(value(node.left,left,middle,depth+1),value(node.right,middle,right,depth+1));}intset_node(intt,Indexleft,Indexright,intdepth,Indexp,Tx,boolcopy_on_write=false)const{t=clone_or_new(t,left,right,depth,copy_on_write);Indexmiddle=std::midpoint(left,right);if(middle==left){Node&node=(*_pool)[t];node.val=std::move(x);node.lazy=ActedMonoid::op_id();node.has_lazy=false;returnt;}push(t,left,right,depth,copy_on_write);if(p<middle){intchild=set_node((*_pool)[t].left,left,middle,depth+1,p,std::move(x),copy_on_write);_pool->replace((*_pool)[t].left,child);}else{intchild=set_node((*_pool)[t].right,middle,right,depth+1,p,std::move(x),copy_on_write);_pool->replace((*_pool)[t].right,child);}update(t,left,right,depth);returnt;}intapply_node(intt,Indexleft,Indexright,intdepth,Indexquery_left,Indexquery_right,constF&f,boolcopy_on_write=false)const{if(query_right<=left||right<=query_left)returnt;if(query_left<=left&&right<=query_right){returnall_apply_clone(t,left,right,depth,detail::dynamic_shift<ActedMonoid>(f,detail::dynamic_distance(query_left,left)),copy_on_write);}t=clone_or_new(t,left,right,depth,copy_on_write);push(t,left,right,depth,copy_on_write);Indexmiddle=std::midpoint(left,right);intleft_child=apply_node((*_pool)[t].left,left,middle,depth+1,query_left,query_right,f,copy_on_write);intright_child=apply_node((*_pool)[t].right,middle,right,depth+1,query_left,query_right,f,copy_on_write);_pool->replace((*_pool)[t].left,left_child);_pool->replace((*_pool)[t].right,right_child);update(t,left,right,depth);returnt;}Fcompose_for_child(constF&inherited,intt,size_typeoffset)const{Fshifted=detail::dynamic_shift<ActedMonoid>(inherited,offset);if(!t||!(*_pool)[t].has_lazy)returnshifted;returnActedMonoid::op_comp(shifted,detail::dynamic_shift<ActedMonoid>((*_pool)[t].lazy,offset));}Tprod_node(intt,Indexleft,Indexright,intdepth,Indexquery_left,Indexquery_right,constF&inherited)const{if(query_right<=left||right<=query_left)returnActedMonoid::id();if(query_left<=left&&right<=query_right){returndetail::dynamic_mapping<ActedMonoid>(inherited,value(t,left,right,depth));}Indexmiddle=std::midpoint(left,right);returnActedMonoid::op(prod_node(t?(*_pool)[t].left:0,left,middle,depth+1,query_left,query_right,compose_for_child(inherited,t,0)),prod_node(t?(*_pool)[t].right:0,middle,right,depth+1,query_left,query_right,compose_for_child(inherited,t,detail::dynamic_distance(left,middle))));}template<classG>Indexmax_right_node(intt,Indexleft,Indexright,intdepth,Indexquery_left,T&product,constF&inherited,G&predicate)const{if(right<=query_left)returnright;if(query_left<=left){Tnext=ActedMonoid::op(product,detail::dynamic_mapping<ActedMonoid>(inherited,value(t,left,right,depth)));if(predicate(next)){product=std::move(next);returnright;}Indexmiddle=std::midpoint(left,right);if(middle==left)returnleft;}Indexmiddle=std::midpoint(left,right);Indexresult=max_right_node(t?(*_pool)[t].left:0,left,middle,depth+1,query_left,product,compose_for_child(inherited,t,0),predicate);if(result<middle)returnresult;returnmax_right_node(t?(*_pool)[t].right:0,middle,right,depth+1,query_left,product,compose_for_child(inherited,t,detail::dynamic_distance(left,middle)),predicate);}template<classG>Indexmin_left_node(intt,Indexleft,Indexright,intdepth,Indexquery_right,T&product,constF&inherited,G&predicate)const{if(query_right<=left)returnleft;if(right<=query_right){Tnext=ActedMonoid::op(detail::dynamic_mapping<ActedMonoid>(inherited,value(t,left,right,depth)),product);if(predicate(next)){product=std::move(next);returnleft;}Indexmiddle=std::midpoint(left,right);if(middle==left)returnright;}Indexmiddle=std::midpoint(left,right);Indexresult=min_left_node(t?(*_pool)[t].right:0,middle,right,depth+1,query_right,product,compose_for_child(inherited,t,detail::dynamic_distance(left,middle)),predicate);if(middle<result)returnresult;returnmin_left_node(t?(*_pool)[t].left:0,left,middle,depth+1,query_right,product,compose_for_child(inherited,t,0),predicate);}public:PersistentDynamicLazySegtree():PersistentDynamicLazySegtree(Index(0),Index(0),ActedMonoid::id()){}explicitPersistentDynamicLazySegtree(Indexn):PersistentDynamicLazySegtree(Index(0),n,ActedMonoid::id()){ifconstexpr(std::signed_integral<Index>)assert(Index(0)<=n);}PersistentDynamicLazySegtree(Indexleft,Indexright):PersistentDynamicLazySegtree(left,right,ActedMonoid::id()){}PersistentDynamicLazySegtree(Indexleft,Indexright,Tinitial_value):_config(std::make_shared<Config>(left,right,std::move(initial_value))),_pool(std::make_shared<Pool>()),_root(0){}PersistentDynamicLazySegtree(constPersistentDynamicLazySegtree&other):_config(other._config),_pool(other._pool),_root(other._root){if(_pool)_pool->retain(_root);}PersistentDynamicLazySegtree(PersistentDynamicLazySegtree&&other)noexcept:_config(std::move(other._config)),_pool(std::move(other._pool)),_root(other._root){other._root=0;}PersistentDynamicLazySegtree&operator=(constPersistentDynamicLazySegtree&other){if(this==&other)return*this;if(other._pool)other._pool->retain(other._root);if(_pool)_pool->release(_root);_config=other._config;_pool=other._pool;_root=other._root;return*this;}PersistentDynamicLazySegtree&operator=(PersistentDynamicLazySegtree&&other)noexcept{if(this==&other)return*this;if(_pool)_pool->release(_root);_config=std::move(other._config);_pool=std::move(other._pool);_root=other._root;other._root=0;return*this;}~PersistentDynamicLazySegtree(){if(_pool)_pool->release(_root);}size_typesize()const{return_config->domain.size();}boolempty()const{return_config->domain.empty();}Indexleft_bound()const{return_config->domain.left_bound();}Indexright_bound()const{return_config->domain.right_bound();}constT&initial_value()const{return_config->domain.initial_value();}voidreserve(std::size_tnode_capacity)const{assert(node_capacity<std::numeric_limits<std::size_t>::max());_pool->reserve(node_capacity);}std::size_tnode_count()const{return_pool->size();}voidrelease(){if(_pool)_pool->release(_root);_pool=std::make_shared<Pool>();_root=0;}PersistentDynamicLazySegtreeset(Indexp,Tx)const{assert(left_bound()<=p&&p<right_bound());returnPersistentDynamicLazySegtree(_config,_pool,set_node(_root,left_bound(),right_bound(),0,p,std::move(x)));}voidset_inplace(Indexp,Tx){assert(left_bound()<=p&&p<right_bound());introot=set_node(_root,left_bound(),right_bound(),0,p,std::move(x),true);_pool->replace(_root,root);}Tget(Indexp)const{assert(left_bound()<=p&&p<right_bound());returnprod(p,p+1);}Toperator[](Indexp)const{returnget(p);}Tprod(Indexleft,Indexright)const{assert(left_bound()<=left&&left<=right&&right<=right_bound());if(left==right)returnActedMonoid::id();returnprod_node(_root,left_bound(),right_bound(),0,left,right,ActedMonoid::op_id());}Tall_prod()const{returnvalue(_root,left_bound(),right_bound(),0);}PersistentDynamicLazySegtreeapply(Indexp,constF&f)const{assert(left_bound()<=p&&p<right_bound());returnapply(p,p+1,f);}PersistentDynamicLazySegtreeapply(Indexleft,Indexright,constF&f)const{assert(left_bound()<=left&&left<=right&&right<=right_bound());if(left==right)return*this;returnPersistentDynamicLazySegtree(_config,_pool,apply_node(_root,left_bound(),right_bound(),0,left,right,f));}voidapply_inplace(Indexp,constF&f){assert(left_bound()<=p&&p<right_bound());apply_inplace(p,p+1,f);}voidapply_inplace(Indexleft,Indexright,constF&f){assert(left_bound()<=left&&left<=right&&right<=right_bound());if(left==right)return;introot=apply_node(_root,left_bound(),right_bound(),0,left,right,f,true);_pool->replace(_root,root);}template<classG>Indexmax_right(Indexleft,Gpredicate)const{assert(left_bound()<=left&&left<=right_bound());assert(predicate(ActedMonoid::id()));if(left==right_bound())returnright_bound();Tproduct=ActedMonoid::id();returnmax_right_node(_root,left_bound(),right_bound(),0,left,product,ActedMonoid::op_id(),predicate);}template<classG>Indexmin_left(Indexright,Gpredicate)const{assert(left_bound()<=right&&right<=right_bound());assert(predicate(ActedMonoid::id()));if(right==left_bound())returnleft_bound();Tproduct=ActedMonoid::id();returnmin_left_node(_root,left_bound(),right_bound(),0,right,product,ActedMonoid::op_id(),predicate);}};}// namespace ds}// namespace m1une#line 4 "verify/ds/segtree/persistent_dynamic_lazy_segtree.test.cpp"
#line 1 "utilities/fast_io.hpp"
#include<algorithm>
#include<array>
#include<cerrno>
#include<charconv>
#line 9 "utilities/fast_io.hpp"
#include<cstdio>
#include<cstdlib>
#include<cstdint>
#include<cstring>
#include<iterator>
#include<string>
#include<sys/stat.h>
#line 18 "utilities/fast_io.hpp"
#include<unistd.h>
#line 20 "utilities/fast_io.hpp"
namespacem1une{namespaceutilities{structFastOutput;namespaceinternal{// Shared with the convenience helpers in template.hpp.inlineFastOutput*standard_output_instance=nullptr;// Detect std::begin(x), std::end(x).template<classT,class=void>structis_range:std::false_type{};template<classT>structis_range<T,std::void_t<decltype(std::begin(std::declval<T&>())),decltype(std::end(std::declval<T&>()))>>:std::true_type{};template<classT>inlineconstexprboolis_range_v=is_range<T>::value;template<classT>usingrange_reference_t=decltype(*std::begin(std::declval<T&>()));template<classT>usingrange_value_t=std::remove_cv_t<std::remove_reference_t<range_reference_t<T>>>;template<classT,class=void>structrange_stored_value{usingtype=range_value_t<T>;};template<classT>structrange_stored_value<T,std::void_t<typenamestd::remove_cv_t<std::remove_reference_t<T>>::value_type>>{usingtype=typenamestd::remove_cv_t<std::remove_reference_t<T>>::value_type;};template<classT>usingrange_stored_value_t=typenamerange_stored_value<T>::type;// Treat strings and C strings as scalar output objects, not as ranges.template<classT>structis_char_array:std::false_type{};template<classT,std::size_tN>structis_char_array<T[N]>:std::bool_constant<std::is_same_v<std::remove_cv_t<T>,char>>{};template<classT>structis_string_like:std::bool_constant<std::is_same_v<std::decay_t<T>,std::string>||std::is_same_v<std::decay_t<T>,constchar*>||std::is_same_v<std::decay_t<T>,char*>||is_char_array<std::remove_reference_t<T>>::value>{};template<classT>inlineconstexprboolis_string_like_v=is_string_like<T>::value;// ModInt-like type: x.val() is printable, and x can be assigned from long long.template<classT,class=void>structhas_val_method:std::false_type{};template<classT>structhas_val_method<T,std::void_t<decltype(std::declval<constT&>().val())>>:std::true_type{};template<classT>inlineconstexprboolhas_val_method_v=has_val_method<T>::value;template<classT,class=void>structhas_static_mod_raw:std::false_type{};template<classT>structhas_static_mod_raw<T,std::void_t<decltype(T::mod()),decltype(T::raw(std::declval<uint32_t>()))>>:std::true_type{};template<classT>inlineconstexprboolhas_static_mod_raw_v=has_static_mod_raw<T>::value;// libstdc++ before GCC 16 does not classify __int128 as an integral type in// strict ISO modes such as -std=c++23. Keep the fast-I/O interface independent// of that implementation detail.template<classT>inlineconstexprboolis_integral_v=std::is_integral_v<T>||std::is_same_v<std::remove_cv_t<T>,__int128_t>||std::is_same_v<std::remove_cv_t<T>,__uint128_t>;template<classT>inlineconstexprboolis_signed_v=std::is_signed_v<T>||std::is_same_v<std::remove_cv_t<T>,__int128_t>;template<classT>structmake_unsigned{usingtype=std::make_unsigned_t<T>;};template<>structmake_unsigned<__int128_t>{usingtype=__uint128_t;};template<>structmake_unsigned<__uint128_t>{usingtype=__uint128_t;};template<classT>usingmake_unsigned_t=typenamemake_unsigned<std::remove_cv_t<T>>::type;}// namespace internalstructFastInput{staticconstexprintbuffer_size=1<<20;private:std::FILE*_stream;char_buffer[buffer_size];int_position;int_length;int_file_descriptor;bool_streaming;boolrefill(){_position=0;if(_streaming){ssize_tlength;do{length=::read(_file_descriptor,_buffer,buffer_size);}while(length<0&&errno==EINTR);if(length<=0){_length=0;returnfalse;}_length=int(length);}else{_length=int(std::fread(_buffer,1,buffer_size,_stream));}return_length!=0;}template<classT>boolread_integer_from_stream(T&value){if(!skip_spaces())returnfalse;intc=read_char_raw();boolnegative=false;if(c=='-'){negative=true;c=read_char_raw();}ifconstexpr(internal::is_signed_v<T>){Tresult=0;while('0'<=c&&c<='9'){result=negative?result*10-(c-'0'):result*10+(c-'0');c=read_char_raw();}value=result;}else{Tresult=0;while('0'<=c&&c<='9'){result=result*10+T(c-'0');c=read_char_raw();}value=negative?T(0)-result:result;}returntrue;}boolprepare_number(){if(_length-_position>=64)returntrue;constintremaining=_length-_position;if(remaining>0)std::memmove(_buffer,_buffer+_position,remaining);constintadded=int(std::fread(_buffer+remaining,1,buffer_size-remaining,_stream));_position=0;_length=remaining+added;if(_length<buffer_size)_buffer[_length]='\0';return_length!=0;}public:explicitFastInput(std::FILE*stream=stdin):_stream(stream),_position(0),_length(0),_file_descriptor(::fileno(stream)),_streaming([&]{structstatstatus;return_file_descriptor>=0&&::fstat(_file_descriptor,&status)==0&&!S_ISREG(status.st_mode);}()){}FastInput(constFastInput&)=delete;FastInput&operator=(constFastInput&)=delete;intread_char_raw(){if(_position==_length&&!refill())returnEOF;return_buffer[_position++];}boolskip_spaces(){intc=read_char_raw();while(c!=EOF&&c<=' ')c=read_char_raw();if(c==EOF)returnfalse;--_position;returntrue;}boolread(char&value){if(!skip_spaces())returnfalse;value=char(read_char_raw());returntrue;}boolread(std::string&value){if(!skip_spaces())returnfalse;value.clear();while(true){constintbegin=_position;while(_position<_length&&static_cast<unsignedchar>(_buffer[_position])>' '){++_position;}value.append(_buffer+begin,_position-begin);if(_position<_length){++_position;returntrue;}if(!refill())returntrue;}}boolread(bool&value){intx;if(!read(x))returnfalse;value=x!=0;returntrue;}template<classT>std::enable_if_t<internal::is_integral_v<T>&&!std::is_same_v<std::remove_cv_t<T>,bool>&&!std::is_same_v<std::remove_cv_t<T>,char>,bool>read(T&value){if(_streaming)returnread_integer_from_stream(value);if(!prepare_number())returnfalse;intc=static_cast<unsignedchar>(_buffer[_position++]);while(c<=' ')c=static_cast<unsignedchar>(_buffer[_position++]);boolnegative=false;if(c=='-'){negative=true;c=static_cast<unsignedchar>(_buffer[_position++]);}ifconstexpr(internal::is_signed_v<T>){Tresult=0;while('0'<=c&&c<='9'){constintfirst=c-'0';constintsecond=static_cast<unsignedchar>(_buffer[_position])-'0';if(0<=second&&second<=9){result=negative?result*100-(first*10+second):result*100+(first*10+second);++_position;}else{result=negative?result*10-first:result*10+first;}c=static_cast<unsignedchar>(_buffer[_position++]);}value=result;}else{Tresult=0;while('0'<=c&&c<='9'){constunsignedfirst=unsigned(c-'0');constintsecond=static_cast<unsignedchar>(_buffer[_position])-'0';if(0<=second&&second<=9){result=result*100+T(first*10+unsigned(second));++_position;}else{result=result*10+T(first);}c=static_cast<unsignedchar>(_buffer[_position++]);}value=negative?T(0)-result:result;}if(_position>_length)_position=_length;returntrue;}template<classT>std::enable_if_t<std::is_floating_point_v<T>,bool>read(T&value){if(!skip_spaces())returnfalse;intc=read_char_raw();boolnegative=false;if(c=='-'||c=='+'){negative=c=='-';c=read_char_raw();}longdoubleresult=0;while('0'<=c&&c<='9'){result=result*10+(c-'0');c=read_char_raw();}if(c=='.'){longdoubleplace=0.1L;c=read_char_raw();while('0'<=c&&c<='9'){result+=(c-'0')*place;place*=0.1L;c=read_char_raw();}}if(c=='e'||c=='E'){c=read_char_raw();boolexponent_negative=false;if(c=='-'||c=='+'){exponent_negative=c=='-';c=read_char_raw();}intexponent=0;while('0'<=c&&c<='9'){exponent=exponent*10+(c-'0');c=read_char_raw();}longdoublescale=1;longdoublepower=10;while(exponent>0){if(exponent&1)scale*=power;power*=power;exponent>>=1;}result=exponent_negative?result/scale:result*scale;}value=static_cast<T>(negative?-result:result);returntrue;}template<classT>std::enable_if_t<internal::has_val_method_v<T>&&!internal::is_integral_v<T>&&!internal::is_range_v<T>,bool>read(T&value){longlongx;if(!read(x))returnfalse;ifconstexpr(internal::has_static_mod_raw_v<T>){if(x>=0&&uint64_t(x)<uint64_t(T::mod())){value=T::raw(uint32_t(x));}else{value=T(x);}}else{value=T(x);}returntrue;}template<classFirst,classSecond>boolread(std::pair<First,Second>&value){if(!read(value.first))returnfalse;returnread(value.second);}template<classRange>std::enable_if_t<internal::is_range_v<Range>&&!internal::is_string_like_v<Range>,bool>read(Range&range){usingStoredValue=internal::range_stored_value_t<Range>;constexprboolnested=internal::is_range_v<StoredValue>&&!internal::is_string_like_v<StoredValue>;for(auto&&value:range){ifconstexpr(std::is_same_v<StoredValue,bool>&&!nested){boolx;if(!read(x))returnfalse;value=x;}else{if(!read(value))returnfalse;}}returntrue;}template<classFirst,classSecond,class...Rest>boolread(First&first,Second&second,Rest&...rest){if(!read(first))returnfalse;returnread(second,rest...);}template<classT>FastInput&operator>>(T&value){if(!read(value))std::abort();return*this;}};structFastOutput{staticconstexprintbuffer_size=1<<20;private:inlinestaticconstautodigit_quads=[]{std::array<char,40000>result{};for(inti=0;i<10000;i++){intvalue=i;for(intj=3;j>=0;j--){result[4*i+j]=char('0'+value%10);value/=10;}}returnresult;}();std::FILE*_stream;char_buffer[buffer_size];int_position;int_precision;std::chars_format_float_format;char_range_separator;std::string*_capture=nullptr;template<classT>std::stringformat_cell(constT&value){std::stringresult;structCaptureGuard{std::string*⌖std::string*previous;~CaptureGuard(){target=previous;}}guard{_capture,_capture};_capture=&result;write(value);returnresult;}template<classMatrix>voidwrite_aligned_matrix(constMatrix&matrix){std::vector<std::vector<std::string>>rows;std::vector<std::size_t>widths;for(constauto&row:matrix){auto&cells=rows.emplace_back();std::size_tcolumn=0;for(constauto&value:row){cells.push_back(format_cell(value));if(column==widths.size())widths.push_back(0);widths[column]=std::max(widths[column],cells.back().size());++column;}}boolfirst=true;for(constauto&row:rows){if(!first)write_char('\n');first=false;for(std::size_tcolumn=0;column<row.size();++column){if(column!=0)write_char(_range_separator);for(std::size_tpadding=row[column].size();padding<widths[column];++padding){write_char(' ');}write(row[column]);}}}public:explicitFastOutput(std::FILE*stream=stdout):_stream(stream),_position(0),_precision(6),_float_format(std::chars_format::general),_range_separator(' '){if(_stream==stdout&&internal::standard_output_instance==nullptr){internal::standard_output_instance=this;}}FastOutput(constFastOutput&)=delete;FastOutput&operator=(constFastOutput&)=delete;~FastOutput(){flush();if(internal::standard_output_instance==this){internal::standard_output_instance=nullptr;}}voidflush(){if(_position!=0){std::fwrite(_buffer,1,_position,_stream);_position=0;}std::fflush(_stream);}voidwrite_char(charc){if(_capture!=nullptr){_capture->push_back(c);return;}if(_position==buffer_size)flush();_buffer[_position++]=c;}voidwrite(constchar*s){while(*s!='\0')write_char(*s++);}voidwrite(conststd::string&s){if(_capture!=nullptr){_capture->append(s);return;}std::size_tposition=0;while(position<s.size()){if(_position==buffer_size)flush();conststd::size_tcopied=std::min<std::size_t>(buffer_size-_position,s.size()-position);std::memcpy(_buffer+_position,s.data()+position,copied);_position+=int(copied);position+=copied;}}voidwrite(charc){write_char(c);}voidwrite(boolvalue){write_char(value?'1':'0');}template<classT>std::enable_if_t<std::is_floating_point_v<T>>write(Tvalue){chardigits[128];auto[end,error]=std::to_chars(digits,digits+sizeof(digits),value,_float_format,_precision);if(error!=std::errc())std::abort();for(constchar*pointer=digits;pointer!=end;pointer++){write_char(*pointer);}}template<classT>std::enable_if_t<internal::is_integral_v<T>&&!std::is_same_v<std::remove_cv_t<T>,bool>&&!std::is_same_v<std::remove_cv_t<T>,char>>write(Tvalue){usingRaw=std::remove_cv_t<T>;usingUnsigned=internal::make_unsigned_t<Raw>;Unsignedmagnitude;ifconstexpr(internal::is_signed_v<Raw>){if(value<0){write_char('-');magnitude=Unsigned(0)-Unsigned(value);}else{magnitude=Unsigned(value);}}else{magnitude=value;}if(magnitude==0){write_char('0');return;}unsignedchunks[16];intcount=0;while(magnitude>=10000){constUnsignedquotient=magnitude/10000;chunks[count++]=unsigned(magnitude-quotient*10000);magnitude=quotient;}if(_capture==nullptr&&_position>buffer_size-64)flush();charcaptured[64];char*constbegin=_capture!=nullptr?captured:_buffer+_position;char*destination=begin;constunsignedleading=unsigned(magnitude);constchar*first=digit_quads.data()+4*leading;intskip=leading<10?3:leading<100?2:leading<1000?1:0;for(;skip<4;skip++)*destination++=first[skip];while(count--){constchar*digits=digit_quads.data()+4*chunks[count];std::memcpy(destination,digits,4);destination+=4;}if(_capture!=nullptr){_capture->append(begin,destination-begin);}else{_position+=int(destination-begin);}}template<classT>std::enable_if_t<internal::has_val_method_v<T>&&!internal::is_integral_v<T>&&!internal::is_range_v<T>>write(constT&value){write(value.val());}template<classFirst,classSecond>voidwrite(conststd::pair<First,Second>&value){write(value.first);write_char(' ');write(value.second);}template<classRange>std::enable_if_t<internal::is_range_v<Range>&&!internal::is_string_like_v<Range>>write(constRange&range){usingStoredValue=internal::range_stored_value_t<constRange>;constexprboolnested=internal::is_range_v<StoredValue>&&!internal::is_string_like_v<StoredValue>;boolfirst=true;for(constauto&value:range){if(!first)write_char(nested?'\n':_range_separator);first=false;ifconstexpr(std::is_same_v<StoredValue,bool>&&!nested){write(static_cast<bool>(value));}else{write(value);}}}template<classFirst,class...Rest>voidprint(constFirst&first,constRest&...rest){write(first);((write_char(' '),write(rest)),...);}voidprintln(){write_char('\n');}voidset_precision(intprecision){_precision=precision;}voidset_fixed(intprecision=6){_float_format=std::chars_format::fixed;_precision=precision;}voidset_general(intprecision=6){_float_format=std::chars_format::general;_precision=precision;}voidset_range_separator(charseparator){_range_separator=separator;}template<classMatrix>voidwrite_aligned(constMatrix&matrix){usingRow=internal::range_stored_value_t<constMatrix>;usingCell=internal::range_stored_value_t<constRow>;static_assert(internal::is_range_v<Row>&&!internal::is_string_like_v<Row>,"write_aligned requires a two-dimensional range");static_assert(!internal::is_range_v<Cell>||internal::is_string_like_v<Cell>,"write_aligned requires scalar cells");write_aligned_matrix(matrix);}template<classMatrix>voidprintln_aligned(constMatrix&matrix){write_aligned(matrix);write_char('\n');}template<class...Args>voidprintln(constArgs&...args){print(args...);write_char('\n');}template<classT>FastOutput&operator<<(constT&value){write(value);return*this;}};}// namespace utilities}// namespace m1une#line 10 "verify/ds/segtree/persistent_dynamic_lazy_segtree.test.cpp"
#line 1 "acted_monoid/range_add_range_sum.hpp"
namespacem1une{namespaceacted_monoid{template<typenameT>structRangeAddRangeSumNode{Tsum;longlongsize;};template<typenameT>structRangeAddRangeSum{usingvalue_type=RangeAddRangeSumNode<T>;usingoperator_type=T;staticconstexprboolcommutative=true;staticconstexprbooloperator_commutative=true;// Value Monoid (Sum)staticconstexprvalue_typeid(){return{T(0),0};}staticconstexprvalue_typeop(constvalue_type&a,constvalue_type&b){return{a.sum+b.sum,a.size+b.size};}staticconstexprvalue_typeinv(constvalue_type&x){return{-x.sum,-x.size};}// Operator Monoid (Add)staticconstexproperator_typeop_id(){return0;}staticconstexproperator_typeop_comp(constoperator_type&f,constoperator_type&g){returnf+g;}// Mapping (sum + f * size)staticconstexprvalue_typemapping(constoperator_type&f,constvalue_type&x){return{x.sum+f*x.size,x.size};}// Helper for initializing a leaf nodestaticconstexprvalue_typemake(constT&val){return{val,1};}};}// namespace acted_monoid}// namespace m1une#line 1 "acted_monoid/range_affine_range_sum.hpp"
#line 5 "acted_monoid/range_affine_range_sum.hpp"
namespacem1une{namespaceacted_monoid{template<typenameT>structRangeAffineRangeSumNode{Tsum;intsize;};// Designed to accept Modint or similar types as Ttemplate<typenameT>structRangeAffineRangeSum{usingvalue_type=RangeAffineRangeSumNode<T>;usingoperator_type=std::pair<T,T>;// {a, b} for ax + bstaticconstexprboolcommutative=true;staticconstexprbooloperator_commutative=false;// Value Monoidstaticconstexprvalue_typeid(){return{T(0),0};}staticconstexprvalue_typeop(constvalue_type&a,constvalue_type&b){return{a.sum+b.sum,a.size+b.size};}staticconstexprintsize(constvalue_type&value){returnvalue.size;}// Operator Monoid (Affine Composition)// f(x) = a1*x + b1, g(x) = a2*x + b2// f(g(x)) = a1*(a2*x + b2) + b1 = (a1*a2)*x + (a1*b2 + b1)staticconstexproperator_typeop_id(){return{T(1),T(0)};}staticconstexproperator_typeop_comp(constoperator_type&f,constoperator_type&g){return{f.first*g.first,f.first*g.second+f.second};}// Mapping// \sum (a*x_i + b) = a * \sum x_i + b * sizestaticconstexprvalue_typemapping(constoperator_type&f,constvalue_type&x){return{f.first*x.sum+f.second*T(x.size),x.size};}// Helper for initializing a leaf nodestaticconstexprvalue_typemake(constT&val){return{val,1};}};}// namespace acted_monoid}// namespace m1une#line 1 "acted_monoid/range_ap_add_range_sum.hpp"
#line 5 "acted_monoid/range_ap_add_range_sum.hpp"
namespacem1une{namespaceacted_monoid{template<typenameT>structRangeApAddRangeSumNode{Tsum;longlongsize;Tord_sum;};template<typenameT>structRangeApAddRangeSum{usingvalue_type=RangeApAddRangeSumNode<T>;usingoperator_type=std::pair<T,T>;// {a, b} for adding a * i + bstaticconstexprboolcommutative=false;staticconstexprbooloperator_commutative=true;// Value Monoid (Sum)staticconstexprvalue_typeid(){return{T(0),0,T(0)};}staticconstexprvalue_typeop(constvalue_type&a,constvalue_type&b){return{a.sum+b.sum,a.size+b.size,a.ord_sum+b.ord_sum+T(a.size)*T(b.size)};}// Operator Monoid (Add)staticconstexproperator_typeop_id(){return{T(0),T(0)};}staticconstexproperator_typeop_comp(constoperator_type&f,constoperator_type&g){return{f.first+g.first,f.second+g.second};}staticconstexprvalue_typemapping(constoperator_type&f,constvalue_type&x){returnmapping(f,x,0);}staticconstexprvalue_typemapping(constoperator_type&f,constvalue_type&x,longlongord){return{x.sum+f.first*(x.ord_sum+T(ord)*T(x.size))+f.second*T(x.size),x.size,x.ord_sum};}staticconstexproperator_typeop_shift(constoperator_type&f,longlongord){return{f.first,f.second+f.first*T(ord)};}staticconstexproperator_typeop_reverse(constoperator_type&f,longlongsize){return{-f.first,f.second+f.first*T(size-1)};}staticconstexprvalue_typemake(constT&val){return{val,1,T(0)};}};}// namespace acted_monoid}// namespace m1une#line 1 "math/modint.hpp"
#line 6 "math/modint.hpp"
#include<iostream>
#line 9 "math/modint.hpp"
namespacem1une{namespacemath{template<uint32_tModulus>structModInt{static_assert(0<Modulus,"Modulus must be positive");private:uint32_t_v;public:staticconstexpruint32_tmod(){returnModulus;}staticconstexprModIntraw(uint32_tv)noexcept{ModIntx;x._v=v;returnx;}constexprModInt()noexcept:_v(0){}template<classInteger,std::enable_if_t<std::is_integral_v<Integer>,int>=0>constexprModInt(Integerv)noexcept{ifconstexpr(std::is_signed_v<Integer>){int64_tx=static_cast<int64_t>(v)%static_cast<int64_t>(Modulus);if(x<0)x+=Modulus;_v=static_cast<uint32_t>(x);}else{_v=static_cast<uint32_t>(static_cast<uint64_t>(v)%Modulus);}}constexpruint32_tval()constnoexcept{return_v;}constexprModInt&operator++()noexcept{_v++;if(_v==Modulus)_v=0;return*this;}constexprModInt&operator--()noexcept{if(_v==0)_v=Modulus;_v--;return*this;}constexprModIntoperator++(int)noexcept{ModIntres=*this;++*this;returnres;}constexprModIntoperator--(int)noexcept{ModIntres=*this;--*this;returnres;}constexprModInt&operator+=(constModInt&rhs)noexcept{_v+=rhs._v;if(_v>=Modulus)_v-=Modulus;return*this;}constexprModInt&operator-=(constModInt&rhs)noexcept{_v-=rhs._v;if(_v>=Modulus)_v+=Modulus;return*this;}constexprModInt&operator*=(constModInt&rhs)noexcept{uint64_tz=_v;z*=rhs._v;_v=static_cast<uint32_t>(z%Modulus);return*this;}constexprModInt&operator/=(constModInt&rhs)noexcept{return*this*=rhs.inv();}constexprModIntoperator+(constModInt&rhs)constnoexcept{returnModInt(*this)+=rhs;}constexprModIntoperator-(constModInt&rhs)constnoexcept{returnModInt(*this)-=rhs;}constexprModIntoperator*(constModInt&rhs)constnoexcept{returnModInt(*this)*=rhs;}constexprModIntoperator/(constModInt&rhs)constnoexcept{returnModInt(*this)/=rhs;}constexprbooloperator==(constModInt&rhs)constnoexcept{return_v==rhs._v;}constexprbooloperator!=(constModInt&rhs)constnoexcept{return_v!=rhs._v;}constexprModIntpow(longlongn)constnoexcept{ModIntres=raw(1%Modulus);ModIntx=n<0?inv():*this;uint64_texponent=n<0?uint64_t(-(n+1))+1:uint64_t(n);while(exponent>0){if(exponent&1)res*=x;x*=x;exponent>>=1;}returnres;}constexprModIntinv()constnoexcept{int64_ta=_v,b=Modulus,u=1,v=0;while(b){int64_tt=a/b;a-=t*b;std::swap(a,b);u-=t*v;std::swap(u,v);}assert(a==1);u%=Modulus;if(u<0)u+=Modulus;returnraw(static_cast<uint32_t>(u));}friendstd::ostream&operator<<(std::ostream&os,constModInt&rhs){returnos<<rhs._v;}friendstd::istream&operator>>(std::istream&is,ModInt&rhs){longlongv;is>>v;rhs=ModInt(v);returnis;}};usingmodint998244353=ModInt<998244353>;usingmodint1000000007=ModInt<1000000007>;template<intId=0>structDynamicModInt{private:uint32_t_v;inlinestaticuint32_t_mod=1;public:staticuint32_tmod()noexcept{return_mod;}staticvoidset_mod(uint32_tmodulus)noexcept{assert(modulus>0);assert(modulus<=uint32_t(1)<<31);_mod=modulus;}staticDynamicModIntraw(uint32_tv)noexcept{assert(v<_mod);DynamicModIntx;x._v=v;returnx;}DynamicModInt()noexcept:_v(0){}template<classInteger,std::enable_if_t<std::is_integral_v<Integer>,int>=0>DynamicModInt(Integerv)noexcept{ifconstexpr(std::is_signed_v<Integer>){int64_tx=static_cast<int64_t>(v)%static_cast<int64_t>(_mod);if(x<0)x+=_mod;_v=static_cast<uint32_t>(x);}else{_v=static_cast<uint32_t>(static_cast<uint64_t>(v)%_mod);}}uint32_tval()constnoexcept{return_v;}DynamicModInt&operator++()noexcept{_v++;if(_v==_mod)_v=0;return*this;}DynamicModInt&operator--()noexcept{if(_v==0)_v=_mod;_v--;return*this;}DynamicModIntoperator++(int)noexcept{DynamicModIntresult=*this;++*this;returnresult;}DynamicModIntoperator--(int)noexcept{DynamicModIntresult=*this;--*this;returnresult;}DynamicModInt&operator+=(constDynamicModInt&rhs)noexcept{_v+=rhs._v;if(_v>=_mod)_v-=_mod;return*this;}DynamicModInt&operator-=(constDynamicModInt&rhs)noexcept{_v-=rhs._v;if(_v>=_mod)_v+=_mod;return*this;}DynamicModInt&operator*=(constDynamicModInt&rhs)noexcept{_v=static_cast<uint32_t>(uint64_t(_v)*rhs._v%_mod);return*this;}DynamicModInt&operator/=(constDynamicModInt&rhs)noexcept{return*this*=rhs.inv();}DynamicModIntoperator+(constDynamicModInt&rhs)constnoexcept{returnDynamicModInt(*this)+=rhs;}DynamicModIntoperator-(constDynamicModInt&rhs)constnoexcept{returnDynamicModInt(*this)-=rhs;}DynamicModIntoperator*(constDynamicModInt&rhs)constnoexcept{returnDynamicModInt(*this)*=rhs;}DynamicModIntoperator/(constDynamicModInt&rhs)constnoexcept{returnDynamicModInt(*this)/=rhs;}booloperator==(constDynamicModInt&rhs)constnoexcept{return_v==rhs._v;}booloperator!=(constDynamicModInt&rhs)constnoexcept{return_v!=rhs._v;}DynamicModIntpow(longlongexponent)constnoexcept{DynamicModIntresult=raw(1%_mod);DynamicModIntbase=exponent<0?inv():*this;uint64_tmagnitude=exponent<0?uint64_t(-(exponent+1))+1:uint64_t(exponent);while(magnitude>0){if(magnitude&1)result*=base;base*=base;magnitude>>=1;}returnresult;}DynamicModIntinv()constnoexcept{int64_ta=_v,b=_mod,u=1,v=0;while(b){int64_tquotient=a/b;a-=quotient*b;std::swap(a,b);u-=quotient*v;std::swap(u,v);}assert(a==1);u%=_mod;if(u<0)u+=_mod;returnraw(static_cast<uint32_t>(u));}friendstd::ostream&operator<<(std::ostream&os,constDynamicModInt&rhs){returnos<<rhs._v;}friendstd::istream&operator>>(std::istream&is,DynamicModInt&rhs){longlongvalue;is>>value;rhs=DynamicModInt(value);returnis;}};}// namespace math}// namespace m1une#line 15 "verify/ds/segtree/persistent_dynamic_lazy_segtree.test.cpp"
namespace{voidtest_versions(){usingAM=m1une::acted_monoid::RangeAddRangeSum<longlong>;usingSeg=m1une::ds::PersistentDynamicLazySegtree<AM,int>;Segbase(-30,40,AM::make(0));base.reserve(20000);Segfirst=base.apply(-10,20,3);Segsecond=first.set(0,AM::make(100));Segbranch=base.apply(5,15,7);assert(base.all_prod().sum==0);assert(first.all_prod().sum==90);assert(second.all_prod().sum==187);assert(branch.all_prod().sum==70);assert(first.get(0).sum==3);assert(second.get(0).sum==100);assert(branch.get(0).sum==0);assert(second.max_right(-30,[](constAM::value_type&x){returnx.sum<=20;})==-4);assert(second.min_left(40,[](constAM::value_type&x){returnx.sum<=20;})==14);assert(base.node_count()==branch.node_count());std::size_tlive=base.node_count();second.release();assert(base.node_count()<live);assert(second.all_prod().sum==0);assert(first.get(0).sum==3);first.release();branch.release();assert(base.node_count()==0);}voidtest_arithmetic_progression(){usingAM=m1une::acted_monoid::RangeApAddRangeSum<longlong>;usingSeg=m1une::ds::PersistentDynamicLazySegtree<AM,int>;Segbase(-20,21,AM::make(0));AM::operator_typef;f.first=3;f.second=2;Segnext=base.apply(-7,8,f);assert(base.all_prod().sum==0);for(intp=-7;p<8;p++){assert(next.get(p).sum==3LL*(p+7)+2);}}voidtest_randomized(){usingAM=m1une::acted_monoid::RangeAddRangeSum<longlong>;usingSeg=m1une::ds::PersistentDynamicLazySegtree<AM,int>;constexprintleft=-17;constexprintright=24;std::vector<Seg>versions;versions.emplace_back(left,right,AM::make(0));std::vector<std::vector<longlong>>expected(1,std::vector<longlong>(right-left));std::uint64_tstate=5;autorandom=[&state](){state^=state<<7;state^=state>>9;returnstate;};for(intstep=0;step<800;step++){std::size_tfrom=std::size_t(random()%versions.size());std::vector<longlong>next=expected[from];intl=left+int(random()%(next.size()+1));intr=left+int(random()%(next.size()+1));if(r<l)std::swap(l,r);Segtree=versions[from];if(random()&1){longlongx=static_cast<longlong>(random()%10);tree=tree.apply(l,r,x);for(intp=l;p<r;p++)next[std::size_t(p-left)]+=x;}else{intp=left+int(random()%next.size());longlongx=static_cast<longlong>(random()%30);tree=tree.set(p,AM::make(x));next[std::size_t(p-left)]=x;}versions.push_back(tree);expected.push_back(next);std::size_tcheck=std::size_t(random()%versions.size());intql=left+int(random()%(next.size()+1));intqr=left+int(random()%(next.size()+1));if(qr<ql)std::swap(ql,qr);[[maybe_unused]]longlongsum=0;for(intp=ql;p<qr;p++)sum+=expected[check][std::size_t(p-left)];assert(versions[check].prod(ql,qr).sum==sum);}}voidtest_affine_order(){usingmint=m1une::math::modint998244353;usingAM=m1une::acted_monoid::RangeAffineRangeSum<mint>;usingSeg=m1une::ds::PersistentDynamicLazySegtree<AM,int>;Segbase(0,20,AM::make(1));AM::operator_typefirst;first.first=mint(2);first.second=mint(3);Segversion1=base.apply(2,18,first);AM::operator_typesecond;second.first=mint(5);second.second=mint(7);Segversion2=version1.apply(8,14,second);assert(base.get(10).sum==mint(1));assert(version1.get(10).sum==mint(5));assert(version2.get(10).sum==mint(32));assert(version2.get(4).sum==mint(5));}}// namespaceintmain(){m1une::utilities::FastInputfast_input;m1une::utilities::FastOutputfast_output;test_versions();test_arithmetic_progression();test_randomized();test_affine_order();longlonga,b;fast_input>>a>>b;fast_output<<a+b<<'\n';}