2cae8cacf0
Refs: #4922 Change-Id: I2243dbb87c63f9cbaf7d7051d7a0d4bca2f9fdb5
241 lines
7.1 KiB
C++
241 lines
7.1 KiB
C++
/* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
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/*
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* Copyright (c) 2014-2019, 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.hpp"
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#include "common/logger.hpp"
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#include <boost/concept/assert.hpp>
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#include <boost/concept_check.hpp>
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#include <type_traits>
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namespace nfd {
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namespace name_tree {
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NFD_LOG_INIT(NameTree);
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NameTree::NameTree(size_t nBuckets)
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: m_ht(HashtableOptions(nBuckets))
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{
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}
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Entry&
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NameTree::lookup(const Name& name, size_t prefixLen)
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{
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NFD_LOG_TRACE("lookup(" << name << ", " << prefixLen << ')');
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BOOST_ASSERT(prefixLen <= name.size());
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BOOST_ASSERT(prefixLen <= getMaxDepth());
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HashSequence hashes = computeHashes(name, prefixLen);
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const Node* node = nullptr;
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Entry* parent = nullptr;
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for (size_t i = 0; i <= prefixLen; ++i) {
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bool isNew = false;
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std::tie(node, isNew) = m_ht.insert(name, i, hashes);
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if (isNew && parent != nullptr) {
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node->entry.setParent(*parent);
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}
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parent = &node->entry;
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}
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return node->entry;
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}
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Entry&
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NameTree::lookup(const fib::Entry& fibEntry)
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{
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NFD_LOG_TRACE("lookup(FIB " << fibEntry.getPrefix() << ')');
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Entry* nte = this->getEntry(fibEntry);
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if (nte == nullptr) {
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// special case: Fib::s_emptyEntry is unattached
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BOOST_ASSERT(fibEntry.getPrefix().empty());
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return this->lookup(fibEntry.getPrefix());
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}
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BOOST_ASSERT(nte->getFibEntry() == &fibEntry);
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return *nte;
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}
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Entry&
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NameTree::lookup(const pit::Entry& pitEntry)
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{
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const Name& name = pitEntry.getName();
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NFD_LOG_TRACE("lookup(PIT " << name << ')');
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bool hasDigest = name.size() > 0 && name[-1].isImplicitSha256Digest();
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if (hasDigest && name.size() <= getMaxDepth()) {
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return this->lookup(name);
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}
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Entry* nte = this->getEntry(pitEntry);
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BOOST_ASSERT(nte != nullptr);
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BOOST_ASSERT(std::count_if(nte->getPitEntries().begin(), nte->getPitEntries().end(),
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[&pitEntry] (const auto& pitEntry1) {
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return pitEntry1.get() == &pitEntry;
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}) == 1);
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return *nte;
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}
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Entry&
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NameTree::lookup(const measurements::Entry& measurementsEntry)
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{
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NFD_LOG_TRACE("lookup(M " << measurementsEntry.getName() << ')');
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Entry* nte = this->getEntry(measurementsEntry);
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BOOST_ASSERT(nte != nullptr);
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BOOST_ASSERT(nte->getMeasurementsEntry() == &measurementsEntry);
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return *nte;
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}
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Entry&
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NameTree::lookup(const strategy_choice::Entry& strategyChoiceEntry)
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{
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NFD_LOG_TRACE("lookup(SC " << strategyChoiceEntry.getPrefix() << ')');
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Entry* nte = this->getEntry(strategyChoiceEntry);
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BOOST_ASSERT(nte != nullptr);
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BOOST_ASSERT(nte->getStrategyChoiceEntry() == &strategyChoiceEntry);
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return *nte;
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}
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size_t
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NameTree::eraseIfEmpty(Entry* entry, bool canEraseAncestors)
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{
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BOOST_ASSERT(entry != nullptr);
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size_t nErased = 0;
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for (Entry* parent = nullptr; entry != nullptr && entry->isEmpty(); entry = parent) {
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parent = entry->getParent();
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if (parent != nullptr) {
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entry->unsetParent();
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}
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m_ht.erase(getNode(*entry));
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++nErased;
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if (!canEraseAncestors) {
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break;
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}
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}
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if (nErased == 0) {
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NFD_LOG_TRACE("not-erase " << entry->getName());
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}
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return nErased;
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}
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Entry*
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NameTree::findExactMatch(const Name& name, size_t prefixLen) const
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{
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prefixLen = std::min(name.size(), prefixLen);
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if (prefixLen > getMaxDepth()) {
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return nullptr;
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}
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const Node* node = m_ht.find(name, prefixLen);
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return node == nullptr ? nullptr : &node->entry;
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}
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Entry*
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NameTree::findLongestPrefixMatch(const Name& name, const EntrySelector& entrySelector) const
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{
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size_t depth = std::min(name.size(), getMaxDepth());
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HashSequence hashes = computeHashes(name, depth);
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for (ssize_t i = depth; i >= 0; --i) {
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const Node* node = m_ht.find(name, i, hashes);
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if (node != nullptr && entrySelector(node->entry)) {
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return &node->entry;
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}
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}
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return nullptr;
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}
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Entry*
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NameTree::findLongestPrefixMatch(const Entry& entry1, const EntrySelector& entrySelector) const
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{
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Entry* entry = const_cast<Entry*>(&entry1);
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while (entry != nullptr) {
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if (entrySelector(*entry)) {
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return entry;
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}
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entry = entry->getParent();
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}
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return nullptr;
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}
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Entry*
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NameTree::findLongestPrefixMatch(const pit::Entry& pitEntry, const EntrySelector& entrySelector) const
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{
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const Entry* nte = this->getEntry(pitEntry);
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BOOST_ASSERT(nte != nullptr);
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const Name& name = pitEntry.getName();
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size_t depth = std::min(name.size(), getMaxDepth());
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if (nte->getName().size() < pitEntry.getName().size()) {
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// PIT entry name either exceeds depth limit or ends with an implicit digest: go deeper
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for (size_t i = nte->getName().size() + 1; i <= depth; ++i) {
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const Entry* exact = this->findExactMatch(name, i);
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if (exact == nullptr) {
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break;
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}
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nte = exact;
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}
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}
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return this->findLongestPrefixMatch(*nte, entrySelector);
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}
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boost::iterator_range<NameTree::const_iterator>
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NameTree::findAllMatches(const Name& name, const EntrySelector& entrySelector) const
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{
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// As we are using Name Prefix Hash Table, and the current LPM() is
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// implemented as starting from full name, and reduce the number of
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// components by 1 each time, we could use it here.
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// For trie-like design, it could be more efficient by walking down the
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// trie from the root node.
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Entry* entry = this->findLongestPrefixMatch(name, entrySelector);
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return {Iterator(make_shared<PrefixMatchImpl>(*this, entrySelector), entry), end()};
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}
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boost::iterator_range<NameTree::const_iterator>
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NameTree::fullEnumerate(const EntrySelector& entrySelector) const
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{
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return {Iterator(make_shared<FullEnumerationImpl>(*this, entrySelector), nullptr), end()};
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}
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boost::iterator_range<NameTree::const_iterator>
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NameTree::partialEnumerate(const Name& prefix,
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const EntrySubTreeSelector& entrySubTreeSelector) const
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{
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Entry* entry = this->findExactMatch(prefix);
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return {Iterator(make_shared<PartialEnumerationImpl>(*this, entrySubTreeSelector), entry), end()};
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}
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} // namespace name_tree
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} // namespace nfd
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