19779d861e
Refs: #4834 Change-Id: If2455e1830f310beea434ffb455d960e11c4c2ed
167 lines
5.7 KiB
C++
167 lines
5.7 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 "dead-nonce-list.hpp"
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#include "core/city-hash.hpp"
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#include "core/logger.hpp"
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namespace nfd {
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NFD_LOG_INIT(DeadNonceList);
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const time::nanoseconds DeadNonceList::DEFAULT_LIFETIME = 6_s;
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const time::nanoseconds DeadNonceList::MIN_LIFETIME = 1_ms;
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const size_t DeadNonceList::INITIAL_CAPACITY = (1 << 7);
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const size_t DeadNonceList::MIN_CAPACITY = (1 << 3);
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const size_t DeadNonceList::MAX_CAPACITY = (1 << 24);
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const DeadNonceList::Entry DeadNonceList::MARK = 0;
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const size_t DeadNonceList::EXPECTED_MARK_COUNT = 5;
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const double DeadNonceList::CAPACITY_UP = 1.2;
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const double DeadNonceList::CAPACITY_DOWN = 0.9;
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const size_t DeadNonceList::EVICT_LIMIT = (1 << 6);
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DeadNonceList::DeadNonceList(const time::nanoseconds& lifetime)
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: m_lifetime(lifetime)
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, m_queue(m_index.get<0>())
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, m_ht(m_index.get<1>())
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, m_capacity(INITIAL_CAPACITY)
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, m_markInterval(m_lifetime / EXPECTED_MARK_COUNT)
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, m_adjustCapacityInterval(m_lifetime)
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{
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if (m_lifetime < MIN_LIFETIME) {
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NDN_THROW(std::invalid_argument("lifetime is less than MIN_LIFETIME"));
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}
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for (size_t i = 0; i < EXPECTED_MARK_COUNT; ++i) {
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m_queue.push_back(MARK);
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}
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m_markEvent = scheduler::schedule(m_markInterval, [this] { mark(); });
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m_adjustCapacityEvent = scheduler::schedule(m_adjustCapacityInterval, [this] { adjustCapacity(); });
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}
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DeadNonceList::~DeadNonceList()
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{
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scheduler::cancel(m_markEvent);
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scheduler::cancel(m_adjustCapacityEvent);
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BOOST_ASSERT_MSG(DEFAULT_LIFETIME >= MIN_LIFETIME, "DEFAULT_LIFETIME is too small");
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static_assert(INITIAL_CAPACITY >= MIN_CAPACITY, "INITIAL_CAPACITY is too small");
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static_assert(INITIAL_CAPACITY <= MAX_CAPACITY, "INITIAL_CAPACITY is too large");
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BOOST_ASSERT_MSG(static_cast<size_t>(MIN_CAPACITY * CAPACITY_UP) > MIN_CAPACITY,
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"CAPACITY_UP must be able to increase from MIN_CAPACITY");
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BOOST_ASSERT_MSG(static_cast<size_t>(MAX_CAPACITY * CAPACITY_DOWN) < MAX_CAPACITY,
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"CAPACITY_DOWN must be able to decrease from MAX_CAPACITY");
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BOOST_ASSERT_MSG(CAPACITY_UP > 1.0, "CAPACITY_UP must adjust up");
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BOOST_ASSERT_MSG(CAPACITY_DOWN < 1.0, "CAPACITY_DOWN must adjust down");
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static_assert(EVICT_LIMIT >= 1, "EVICT_LIMIT must be at least 1");
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}
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size_t
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DeadNonceList::size() const
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{
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return m_queue.size() - this->countMarks();
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}
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bool
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DeadNonceList::has(const Name& name, uint32_t nonce) const
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{
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Entry entry = DeadNonceList::makeEntry(name, nonce);
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return m_ht.find(entry) != m_ht.end();
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}
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void
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DeadNonceList::add(const Name& name, uint32_t nonce)
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{
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Entry entry = DeadNonceList::makeEntry(name, nonce);
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m_queue.push_back(entry);
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this->evictEntries();
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}
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DeadNonceList::Entry
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DeadNonceList::makeEntry(const Name& name, uint32_t nonce)
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{
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Block nameWire = name.wireEncode();
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return CityHash64WithSeed(reinterpret_cast<const char*>(nameWire.wire()), nameWire.size(),
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static_cast<uint64_t>(nonce));
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}
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size_t
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DeadNonceList::countMarks() const
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{
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return m_ht.count(MARK);
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}
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void
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DeadNonceList::mark()
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{
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m_queue.push_back(MARK);
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size_t nMarks = this->countMarks();
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m_actualMarkCounts.insert(nMarks);
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NFD_LOG_TRACE("mark nMarks=" << nMarks);
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m_markEvent = scheduler::schedule(m_markInterval, [this] { mark(); });
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}
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void
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DeadNonceList::adjustCapacity()
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{
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auto equalRange = m_actualMarkCounts.equal_range(EXPECTED_MARK_COUNT);
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if (equalRange.second == m_actualMarkCounts.begin()) {
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// all counts are above expected count, adjust down
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m_capacity = std::max(MIN_CAPACITY,
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static_cast<size_t>(m_capacity * CAPACITY_DOWN));
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NFD_LOG_TRACE("adjustCapacity DOWN capacity=" << m_capacity);
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}
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else if (equalRange.first == m_actualMarkCounts.end()) {
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// all counts are below expected count, adjust up
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m_capacity = std::min(MAX_CAPACITY,
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static_cast<size_t>(m_capacity * CAPACITY_UP));
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NFD_LOG_TRACE("adjustCapacity UP capacity=" << m_capacity);
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}
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m_actualMarkCounts.clear();
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this->evictEntries();
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m_adjustCapacityEvent = scheduler::schedule(m_adjustCapacityInterval, [this] { adjustCapacity(); });
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}
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void
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DeadNonceList::evictEntries()
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{
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ssize_t nOverCapacity = m_queue.size() - m_capacity;
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if (nOverCapacity <= 0) // not over capacity
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return;
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for (ssize_t nEvict = std::min<ssize_t>(nOverCapacity, EVICT_LIMIT); nEvict > 0; --nEvict) {
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m_queue.erase(m_queue.begin());
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}
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BOOST_ASSERT(m_queue.size() >= m_capacity);
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}
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} // namespace nfd
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