2023-03-28 05:36:28 -05:00
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/*
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Copyright (C) 2023 Srivats P.
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This file is part of "Ostinato"
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This is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>
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*/
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#include "streamtiming.h"
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#include "timestamp.h"
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2023-03-31 06:25:03 -05:00
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#include <QCoreApplication>
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2023-03-29 06:43:12 -05:00
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StreamTiming::StreamTiming()
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: QObject(nullptr) // FIXME: parent
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{
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// This class must be part of the main thread so that timers can work
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Q_ASSERT(this->thread() == QCoreApplication::instance()->thread());
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2023-03-28 05:36:28 -05:00
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timer_ = new QTimer(this);
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connect(timer_, &QTimer::timeout, this, &StreamTiming::processRecords);
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timer_->setInterval(3000);
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timer_->start();
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2023-03-28 05:36:28 -05:00
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gcTimer_ = new QTimer(this);
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connect(gcTimer_, &QTimer::timeout, this, &StreamTiming::deleteStaleRecords);
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gcTimer_->setInterval(30000);
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gcTimer_->start();
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}
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bool StreamTiming::recordTxTime(uint portId, uint guid, uint ttagId,
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const struct timespec ×tamp)
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{
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TxRxKey key = makeKey(guid, ttagId);
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TtagData value = { .timeStamp = timestamp, .portId = portId};
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QMutexLocker locker(&txHashLock_);
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txHash_.insert(key, value);
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return true;
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}
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bool StreamTiming::recordRxTime(uint portId, uint guid, uint ttagId,
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const struct timespec ×tamp)
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{
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TxRxKey key = makeKey(guid, ttagId);
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TtagData value = { .timeStamp = timestamp, .portId = portId};
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QMutexLocker locker(&rxHashLock_);
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rxHash_.insert(key, value);
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return true;
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}
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bool StreamTiming::recordTxTime(uint portId, uint guid, uint ttagId,
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const struct timeval ×tamp)
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{
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struct timespec ts;
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ts.tv_sec = timestamp.tv_sec;
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ts.tv_nsec = timestamp.tv_usec*1000;
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return recordTxTime(portId, guid, ttagId, ts);
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}
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bool StreamTiming::recordRxTime(uint portId, uint guid, uint ttagId,
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const struct timeval ×tamp)
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{
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struct timespec ts;
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ts.tv_sec = timestamp.tv_sec;
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ts.tv_nsec = timestamp.tv_usec*1000;
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return recordRxTime(portId, guid, ttagId, ts);
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}
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quint64 StreamTiming::delay(uint portId, uint guid)
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{
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Q_ASSERT(guid <= SignProtocol::kMaxGuid);
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2023-04-03 02:28:58 -05:00
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// Process anything pending first
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processRecords();
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QMutexLocker locker(&timingLock_);
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if (!timing_.contains(portId))
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return 0;
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Timing t = timing_.value(portId)->value(guid);
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if (t.countDelays == 0)
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return 0;
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qDebug("XXXX [%u/%u] %lldns", portId, guid,
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timespecToNsecs(t.sumDelays)/t.countDelays);
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return timespecToNsecs(t.sumDelays)/t.countDelays;
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}
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void StreamTiming::clear(uint portId, uint guid)
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{
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// XXX: We need to clear only the final timing hash; rx/tx hashes
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// are cleared by StreamTiming itself as part of processRecords and
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// deleteStaleRecords respectively
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QMutexLocker locker(&timingLock_);
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if (!timing_.contains(portId))
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return;
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PortTiming *portTiming = timing_.value(portId);
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if (!portTiming)
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return;
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if (guid == SignProtocol::kInvalidGuid)
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portTiming->clear(); // remove ALL guids
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else
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portTiming->remove(guid);
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}
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int StreamTiming::processRecords()
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{
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// FIXME: yield after a certain count of records or time?
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int count = 0;
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QMutexLocker txLocker(&txHashLock_);
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QMutexLocker rxLocker(&rxHashLock_);
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QMutexLocker timingLocker(&timingLock_);
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auto i = rxHash_.begin();
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while (i != rxHash_.end()) {
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if (txHash_.contains(i.key())) {
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struct timespec txTime = txHash_.take(i.key()).timeStamp;
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struct timespec rxTime = i.value().timeStamp;
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struct timespec diff;
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timespecsub(&rxTime, &txTime, &diff);
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uint guid = i.key() >> 8;
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uint portId = i.value().portId;
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if (!timing_.contains(portId))
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timing_.insert(portId, new PortTiming);
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PortTiming *portTiming = timing_.value(portId);
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Timing &guidTiming = (*portTiming)[guid];
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timespecadd(&guidTiming.sumDelays, &diff, &guidTiming.sumDelays);
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guidTiming.countDelays++;
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count++;
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2023-04-24 06:35:40 -05:00
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qDebug("XXXXX [%u/%u/%u] diff %ld.%09ld (%ld.%09ld - %ld.%09ld)",
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i.value().portId, guid, i.key() & 0xFF,
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diff.tv_sec, diff.tv_nsec,
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rxTime.tv_sec, rxTime.tv_nsec,
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txTime.tv_sec, txTime.tv_nsec);
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qDebug("XXXXX %d:[%u/%u] total %ld.%09ld count %u",
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count, i.value().portId, guid,
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guidTiming.sumDelays.tv_sec, guidTiming.sumDelays.tv_nsec,
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guidTiming.countDelays);
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}
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i = rxHash_.erase(i);
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}
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Q_ASSERT(rxHash_.isEmpty());
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// FIXME: when to stop timer?
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return count;
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}
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int StreamTiming::deleteStaleRecords()
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{
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// FIXME: yield after a certain count of records or time?
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// FIXME: Can we compare 'now' below with libpcap provided timestamp?
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// Are their sources same or synced?
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int count = 0;
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struct timespec now;
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clock_gettime(CLOCK_MONOTONIC, &now);
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// XXX: processRecords() iterates and deletes all rx records irrespective
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// of whether it found a matching tx record. So for garbage collection we
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// only need to look at (and delete) tx records
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QMutexLocker locker(&txHashLock_);
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auto i = txHash_.begin();
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while (i != txHash_.end()) {
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struct timespec txTime = i.value().timeStamp;
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struct timespec diff;
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timespecsub(&now, &txTime, &diff);
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qDebug("XXXX gc diff %ld", diff.tv_sec);
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if (diff.tv_sec > 30) {
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i = txHash_.erase(i);
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count++;
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qDebug("XXXX -%d", count);
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} else {
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i++;
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}
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}
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// FIXME: when to stop gc timer?
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qDebug("XXXX garbage collected %d stale tx timing records", count);
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return count;
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}
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StreamTiming* StreamTiming::instance()
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{
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static StreamTiming *instance{nullptr};
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if (!instance)
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instance = new StreamTiming();
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return instance;
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}
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