e4b2238b33
Change-Id: I83bf5513c2a1f90ba5a59e93c473306864b27d94
262 lines
6.5 KiB
C++
262 lines
6.5 KiB
C++
/* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
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/*
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* Copyright (c) 2014-2018, Regents of the University of California,
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* Arizona Board of Regents,
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* Colorado State University,
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* University Pierre & Marie Curie, Sorbonne University,
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* Washington University in St. Louis,
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* Beijing Institute of Technology,
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* The University of Memphis.
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*
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* This file is part of NFD (Named Data Networking Forwarding Daemon).
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* See AUTHORS.md for complete list of NFD authors and contributors.
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*
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* NFD is free software: you can redistribute it and/or modify it under the terms
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* of the GNU General Public License as published by the Free Software Foundation,
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* either version 3 of the License, or (at your option) any later version.
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*
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* NFD is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* NFD, e.g., in COPYING.md file. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "name-tree-iterator.hpp"
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#include "name-tree.hpp"
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#include "core/logger.hpp"
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#include <boost/range/concepts.hpp>
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#include <ndn-cxx/util/concepts.hpp>
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namespace nfd {
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namespace name_tree {
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NDN_CXX_ASSERT_FORWARD_ITERATOR(Iterator);
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BOOST_CONCEPT_ASSERT((boost::ForwardRangeConcept<Range>));
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NFD_LOG_INIT(NameTreeIterator);
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Iterator::Iterator()
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: m_entry(nullptr)
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, m_ref(nullptr)
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, m_state(0)
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{
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}
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Iterator::Iterator(shared_ptr<EnumerationImpl> impl, const Entry* ref)
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: m_impl(std::move(impl))
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, m_entry(nullptr)
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, m_ref(ref)
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, m_state(0)
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{
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m_impl->advance(*this);
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NFD_LOG_TRACE("initialized " << *this);
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}
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Iterator&
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Iterator::operator++()
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{
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BOOST_ASSERT(m_impl != nullptr);
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m_impl->advance(*this);
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NFD_LOG_TRACE("advanced " << *this);
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return *this;
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}
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Iterator
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Iterator::operator++(int)
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{
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Iterator copy = *this;
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this->operator++();
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return copy;
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}
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bool
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Iterator::operator==(const Iterator& other) const
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{
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return m_entry == other.m_entry;
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}
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std::ostream&
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operator<<(std::ostream& os, const Iterator& i)
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{
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if (i.m_impl == nullptr) {
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return os << "end";
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}
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if (i.m_entry == nullptr) {
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return os << "uninitialized";
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}
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os << "entry=" << i.m_entry->getName();
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if (i.m_ref == nullptr) {
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os << " ref=null";
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}
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else {
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os << " ref=" << i.m_ref->getName();
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}
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os << " state=" << i.m_state;
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return os;
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}
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EnumerationImpl::EnumerationImpl(const NameTree& nt)
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: nt(nt)
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, ht(nt.m_ht)
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{
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}
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FullEnumerationImpl::FullEnumerationImpl(const NameTree& nt, const EntrySelector& pred)
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: EnumerationImpl(nt)
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, m_pred(pred)
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{
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}
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void
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FullEnumerationImpl::advance(Iterator& i)
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{
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// find first entry
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if (i.m_entry == nullptr) {
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for (size_t bucket = 0; bucket < ht.getNBuckets(); ++bucket) {
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const Node* node = ht.getBucket(bucket);
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if (node != nullptr) {
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i.m_entry = &node->entry;
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break;
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}
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}
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if (i.m_entry == nullptr) { // empty enumerable
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i = Iterator();
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return;
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}
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if (m_pred(*i.m_entry)) { // visit first entry
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return;
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}
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}
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// process entries in same bucket
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for (const Node* node = getNode(*i.m_entry)->next; node != nullptr; node = node->next) {
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if (m_pred(node->entry)) {
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i.m_entry = &node->entry;
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return;
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}
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}
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// process other buckets
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size_t currentBucket = ht.computeBucketIndex(getNode(*i.m_entry)->hash);
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for (size_t bucket = currentBucket + 1; bucket < ht.getNBuckets(); ++bucket) {
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for (const Node* node = ht.getBucket(bucket); node != nullptr; node = node->next) {
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if (m_pred(node->entry)) {
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i.m_entry = &node->entry;
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return;
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}
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}
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}
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// reach the end
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i = Iterator();
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}
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PartialEnumerationImpl::PartialEnumerationImpl(const NameTree& nt, const EntrySubTreeSelector& pred)
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: EnumerationImpl(nt)
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, m_pred(pred)
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{
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}
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void
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PartialEnumerationImpl::advance(Iterator& i)
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{
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bool wantSelf = false;
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bool wantChildren = false;
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// initialize: start from root
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if (i.m_entry == nullptr) {
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if (i.m_ref == nullptr) { // root does not exist
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i = Iterator();
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return;
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}
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i.m_entry = i.m_ref;
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std::tie(wantSelf, wantChildren) = m_pred(*i.m_entry);
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if (wantSelf) { // visit root
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i.m_state = wantChildren;
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return;
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}
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}
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else {
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wantChildren = static_cast<bool>(i.m_state);
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}
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BOOST_ASSERT(i.m_ref != nullptr);
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// pre-order traversal
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while (i.m_entry != i.m_ref || (wantChildren && i.m_entry->hasChildren())) {
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if (wantChildren && i.m_entry->hasChildren()) { // process children of m_entry
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i.m_entry = i.m_entry->getChildren().front();
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std::tie(wantSelf, wantChildren) = m_pred(*i.m_entry);
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if (wantSelf) { // visit first child
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i.m_state = wantChildren;
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return;
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}
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// first child rejected, let while loop process other children (siblings of new m_entry)
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}
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else { // process siblings of m_entry
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const Entry* parent = i.m_entry->getParent();
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const std::vector<Entry*>& siblings = parent->getChildren();
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auto sibling = std::find(siblings.begin(), siblings.end(), i.m_entry);
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BOOST_ASSERT(sibling != siblings.end());
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while (++sibling != siblings.end()) {
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i.m_entry = *sibling;
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std::tie(wantSelf, wantChildren) = m_pred(*i.m_entry);
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if (wantSelf) { // visit sibling
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i.m_state = wantChildren;
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return;
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}
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if (wantChildren) {
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break; // let outer while loop process children of m_entry
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}
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// process next sibling
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}
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if (sibling == siblings.end()) { // no more sibling
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i.m_entry = parent;
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wantChildren = false;
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}
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}
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}
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// reach the end
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i = Iterator();
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}
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PrefixMatchImpl::PrefixMatchImpl(const NameTree& nt, const EntrySelector& pred)
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: EnumerationImpl(nt)
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, m_pred(pred)
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{
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}
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void
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PrefixMatchImpl::advance(Iterator& i)
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{
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if (i.m_entry == nullptr) {
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if (i.m_ref == nullptr) { // empty enumerable
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i = Iterator();
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return;
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}
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i.m_entry = i.m_ref;
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if (m_pred(*i.m_entry)) { // visit starting node
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return;
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}
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}
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// traverse up the tree
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while ((i.m_entry = i.m_entry->getParent()) != nullptr) {
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if (m_pred(*i.m_entry)) {
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return;
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}
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}
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// reach the end
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i = Iterator();
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}
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} // namespace name_tree
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} // namespace nfd
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