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522 lines
15 KiB
C++
522 lines
15 KiB
C++
// state_machine.hpp
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// Copyright (c) 2005-2018 Ben Hanson (http://www.benhanson.net/)
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file licence_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#ifndef LEXERTL_STATE_MACHINE_HPP
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#define LEXERTL_STATE_MACHINE_HPP
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// memcmp()
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#include <cstring>
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#include "internals.hpp"
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#include <map>
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#include "observer_ptr.hpp"
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#include <set>
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#include "sm_traits.hpp"
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#include "string_token.hpp"
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namespace lexertl
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{
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template<typename char_type, typename id_ty = uint16_t>
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class basic_state_machine
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{
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public:
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using id_type = id_ty;
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using traits =
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basic_sm_traits<char_type, id_type,
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(sizeof(char_type) > 1), true, true>;
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using internals = detail::basic_internals<id_type>;
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// If you get a compile error here you have
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// failed to define an unsigned id type.
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static_assert(std::is_unsigned<id_type>::value, "Your id type is signed");
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basic_state_machine() :
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_internals()
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{
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}
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void clear()
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{
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_internals.clear();
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}
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internals &data()
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{
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return _internals;
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}
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const internals &data() const
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{
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return _internals;
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}
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bool empty() const
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{
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return _internals.empty();
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}
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id_type eoi() const
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{
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return _internals._eoi;
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}
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void minimise()
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{
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const id_type dfas_ = static_cast<id_type>(_internals._dfa.size());
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for (id_type i_ = 0; i_ < dfas_; ++i_)
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{
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const id_type dfa_alphabet_ = _internals._dfa_alphabet[i_];
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id_type_vector &dfa_ = _internals._dfa[i_];
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if (dfa_alphabet_ != 0)
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{
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std::size_t size_ = 0;
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do
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{
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size_ = dfa_.size();
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minimise_dfa(dfa_alphabet_, dfa_, size_);
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} while (dfa_.size() != size_);
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}
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}
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}
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static id_type npos()
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{
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return static_cast<id_type>(~0);
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}
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static id_type skip()
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{
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return static_cast<id_type>(~1);
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}
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void swap(basic_state_machine &rhs_)
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{
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_internals.swap(rhs_._internals);
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}
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private:
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using id_type_vector = typename internals::id_type_vector;
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using index_set = std::set<id_type>;
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internals _internals;
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void minimise_dfa(const id_type dfa_alphabet_,
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id_type_vector &dfa_, std::size_t size_)
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{
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observer_ptr<const id_type> first_ = &dfa_.front();
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observer_ptr<const id_type> end_ = first_ + size_;
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id_type index_ = 1;
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id_type new_index_ = 1;
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id_type_vector lookup_(size_ / dfa_alphabet_, npos());
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observer_ptr<id_type> lookup_ptr_ = &lookup_.front();
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index_set index_set_;
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const id_type bol_index_ = dfa_.front();
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*lookup_ptr_ = 0;
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// Only one 'jam' state, so skip it.
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first_ += dfa_alphabet_;
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for (; first_ < end_; first_ += dfa_alphabet_, ++index_)
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{
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observer_ptr<const id_type> second_ = first_ + dfa_alphabet_;
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for (id_type curr_index_ = index_ + 1; second_ < end_;
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++curr_index_, second_ += dfa_alphabet_)
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{
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if (index_set_.find(curr_index_) != index_set_.end())
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{
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continue;
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}
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// Some systems have memcmp in namespace std.
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using namespace std;
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if (memcmp(first_, second_, sizeof(id_type) *
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dfa_alphabet_) == 0)
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{
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index_set_.insert(curr_index_);
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lookup_ptr_[curr_index_] = new_index_;
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}
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}
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if (lookup_ptr_[index_] == npos())
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{
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lookup_ptr_[index_] = new_index_;
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++new_index_;
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}
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}
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if (!index_set_.empty())
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{
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observer_ptr<const id_type> front_ = &dfa_.front();
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id_type_vector new_dfa_(front_, front_ + dfa_alphabet_);
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auto set_end_ = index_set_.cend();
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observer_ptr<const id_type> ptr_ = front_ + dfa_alphabet_;
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observer_ptr<id_type> new_ptr_ = nullptr;
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new_dfa_.resize(size_ - index_set_.size() * dfa_alphabet_, 0);
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new_ptr_ = &new_dfa_.front() + dfa_alphabet_;
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size_ /= dfa_alphabet_;
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if (bol_index_)
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{
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new_dfa_.front() = lookup_ptr_[bol_index_];
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}
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for (index_ = 1; index_ < size_; ++index_)
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{
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if (index_set_.find(index_) != set_end_)
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{
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ptr_ += dfa_alphabet_;
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continue;
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}
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new_ptr_[end_state_index] = ptr_[end_state_index];
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new_ptr_[id_index] = ptr_[id_index];
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new_ptr_[user_id_index] = ptr_[user_id_index];
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new_ptr_[push_dfa_index] = ptr_[push_dfa_index];
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new_ptr_[next_dfa_index] = ptr_[next_dfa_index];
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new_ptr_[eol_index] = lookup_ptr_[ptr_[eol_index]];
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new_ptr_ += transitions_index;
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ptr_ += transitions_index;
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for (id_type i_ = transitions_index; i_ < dfa_alphabet_; ++i_)
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{
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*new_ptr_++ = lookup_ptr_[*ptr_++];
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}
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}
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dfa_.swap(new_dfa_);
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}
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}
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};
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using state_machine = basic_state_machine<char>;
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using wstate_machine = basic_state_machine<wchar_t>;
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using u32state_machine = basic_state_machine<char32_t>;
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template<typename char_type, typename id_ty = uint16_t,
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bool is_dfa = true>
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struct basic_char_state_machine
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{
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using id_type = id_ty;
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using traits = basic_sm_traits<char_type, id_type, false, false, is_dfa>;
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using internals = detail::basic_internals<id_type>;
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using id_type_vector = typename internals::id_type_vector;
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struct state
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{
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using string_token = basic_string_token<char_type>;
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using id_type_string_token_map = std::map<id_type, string_token>;
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using id_type_string_token_pair = std::pair<id_type, string_token>;
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enum push_pop_dfa {neither, push_dfa, pop_dfa};
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bool _end_state;
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push_pop_dfa _push_pop_dfa;
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id_type _id;
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id_type _user_id;
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id_type _push_dfa;
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id_type _next_dfa;
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id_type _eol_index;
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id_type_string_token_map _transitions;
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state() :
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_end_state(false),
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_push_pop_dfa(neither),
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_id(0),
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_user_id(traits::npos()),
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_push_dfa(traits::npos()),
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_next_dfa(0),
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_eol_index(traits::npos()),
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_transitions()
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{
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}
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bool operator ==(const state rhs_) const
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{
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return _end_state == rhs_._end_state &&
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_push_pop_dfa == rhs_._push_pop_dfa &&
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_id == rhs_._id &&
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_user_id == rhs_._user_id &&
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_push_dfa == rhs_._push_dfa &&
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_next_dfa == rhs_._next_dfa &&
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_eol_index == rhs_._eol_index &&
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_transitions == rhs_._transitions;
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}
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};
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using string_token = typename state::string_token;
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using state_vector = std::vector<state>;
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using string_token_vector = std::vector<string_token>;
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using id_type_string_token_pair =
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typename state::id_type_string_token_pair;
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struct dfa
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{
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id_type _bol_index;
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state_vector _states;
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dfa(const std::size_t size_) :
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_bol_index(traits::npos()),
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_states(state_vector(size_))
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{
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}
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std::size_t size() const
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{
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return _states.size();
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}
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void swap(dfa &rhs_)
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{
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std::swap(_bol_index, rhs_._bol_index);
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_states.swap(rhs_._states);
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}
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};
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static_assert(std::is_move_assignable<dfa>::value &&
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std::is_move_constructible<dfa>::value, "dfa is not movable.");
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using dfa_vector = std::vector<dfa>;
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static_assert(std::is_unsigned<id_type>::value, "Your id type is signed");
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dfa_vector _sm_vector;
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basic_char_state_machine() :
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_sm_vector()
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{
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}
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void append(const string_token_vector &token_vector_,
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const internals &internals_, const id_type dfa_index_)
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{
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const std::size_t dfa_alphabet_ = internals_._dfa_alphabet[dfa_index_];
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const std::size_t alphabet_ = dfa_alphabet_ - transitions_index;
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const id_type_vector &source_dfa_ = internals_._dfa[dfa_index_];
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observer_ptr<const id_type> ptr_ = &source_dfa_.front();
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const std::size_t size_ = (source_dfa_.size() - dfa_alphabet_) /
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dfa_alphabet_;
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typename state::id_type_string_token_map::iterator trans_iter_;
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_sm_vector.push_back(dfa(size_));
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dfa &dest_dfa_ = _sm_vector.back();
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if (*ptr_)
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{
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dest_dfa_._bol_index = *ptr_ - 1;
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}
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ptr_ += dfa_alphabet_;
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for (id_type i_ = 0; i_ < size_; ++i_)
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{
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state &state_ = dest_dfa_._states[i_];
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state_._end_state = ptr_[end_state_index] != 0;
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if (ptr_[push_dfa_index] != npos())
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{
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state_._push_pop_dfa = state::push_dfa;
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}
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else if (ptr_[end_state_index] & pop_dfa_bit)
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{
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state_._push_pop_dfa = state::pop_dfa;
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}
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state_._id = ptr_[id_index];
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state_._user_id = ptr_[user_id_index];
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state_._push_dfa = ptr_[push_dfa_index];
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state_._next_dfa = ptr_[next_dfa_index];
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if (ptr_[eol_index])
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{
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state_._eol_index = ptr_[eol_index] - 1;
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}
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ptr_ += transitions_index;
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for (id_type col_index_ = 0; col_index_ < alphabet_;
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++col_index_, ++ptr_)
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{
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const id_type next_ = *ptr_;
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if (next_ > 0)
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{
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trans_iter_ = state_._transitions.find(next_ - 1);
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if (trans_iter_ == state_._transitions.end())
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{
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trans_iter_ = state_._transitions.insert
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(id_type_string_token_pair(static_cast<id_type>
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(next_ - 1), token_vector_[col_index_])).first;
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}
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else
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{
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trans_iter_->second.insert(token_vector_[col_index_]);
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}
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}
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}
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}
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}
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void clear()
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{
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_sm_vector.clear();
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}
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bool empty() const
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{
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return _sm_vector.empty();
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}
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void minimise()
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{
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const id_type dfas_ = static_cast<id_type>(_sm_vector.size());
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for (id_type i_ = 0; i_ < dfas_; ++i_)
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{
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observer_ptr<dfa> dfa_ = &_sm_vector[i_];
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if (dfa_->size() > 0)
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{
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std::size_t size_ = 0;
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do
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{
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size_ = dfa_->size();
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minimise_dfa(*dfa_, size_);
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} while (dfa_->size() != size_);
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}
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}
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}
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static id_type npos()
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{
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return traits::npos();
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}
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id_type size() const
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{
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return static_cast<id_type>(_sm_vector.size());
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}
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static id_type skip()
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{
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return ~static_cast<id_type>(1);
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}
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void swap(basic_char_state_machine &csm_)
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{
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_sm_vector.swap(csm_._sm_vector);
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}
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private:
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using index_set = std::set<id_type>;
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void minimise_dfa(dfa &dfa_, std::size_t size_)
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{
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observer_ptr<const state> first_ = &dfa_._states.front();
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observer_ptr<const state> end_ = first_ + size_;
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id_type index_ = 0;
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id_type new_index_ = 0;
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id_type_vector lookup_(size_, npos());
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observer_ptr<id_type> lookup_ptr_ = &lookup_.front();
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index_set index_set_;
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for (; first_ != end_; ++first_, ++index_)
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{
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observer_ptr<const state> second_ = first_ + 1;
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for (id_type curr_index_ = index_ + 1; second_ != end_;
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++curr_index_, ++second_)
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{
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if (index_set_.find(curr_index_) != index_set_.end())
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{
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continue;
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}
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if (*first_ == *second_)
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{
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index_set_.insert(curr_index_);
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lookup_ptr_[curr_index_] = new_index_;
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}
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}
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if (lookup_ptr_[index_] == npos())
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{
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lookup_ptr_[index_] = new_index_;
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++new_index_;
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}
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}
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if (!index_set_.empty())
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{
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observer_ptr<const state> front_ = &dfa_._states.front();
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dfa new_dfa_(new_index_);
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auto set_end_ = index_set_.cend();
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observer_ptr<const state> ptr_ = front_;
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observer_ptr<state> new_ptr_ = &new_dfa_._states.front();
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if (dfa_._bol_index != npos())
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{
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new_dfa_._bol_index = lookup_ptr_[dfa_._bol_index];
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}
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for (index_ = 0; index_ < size_; ++index_)
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{
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if (index_set_.find(index_) != set_end_)
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{
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++ptr_;
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continue;
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}
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new_ptr_->_end_state = ptr_->_end_state;
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new_ptr_->_id = ptr_->_end_state;
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new_ptr_->_user_id = ptr_->_user_id;
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new_ptr_->_next_dfa = ptr_->_next_dfa;
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if (ptr_->_eol_index != npos())
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{
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new_ptr_->_eol_index = lookup_ptr_[ptr_->_eol_index];
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}
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auto iter_ = ptr_->_transitions.cbegin();
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auto end_ = ptr_->_transitions.cend();
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typename state::id_type_string_token_map::iterator find_;
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for (; iter_ != end_; ++iter_)
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{
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find_ = new_ptr_->_transitions.find
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(lookup_ptr_[iter_->first]);
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if (find_ == new_ptr_->_transitions.end())
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{
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new_ptr_->_transitions.insert
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(id_type_string_token_pair
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(lookup_ptr_[iter_->first], iter_->second));
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}
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else
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{
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find_->second.insert(iter_->second);
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}
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}
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++ptr_;
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++new_ptr_;
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}
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dfa_.swap(new_dfa_);
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}
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}
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};
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using char_state_machine = basic_char_state_machine<char>;
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using wchar_state_machine = basic_char_state_machine<wchar_t>;
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using u32char_state_machine = basic_char_state_machine<char32_t>;
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}
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#endif
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