As part of recent decisions regarding namespace naming conventions, all namespaces will be changed to snake case. ::Stats became ::statistics. "statistics" was chosen over "stats" to avoid generating conflicts with the already existing variables (there are way too many "stats" in the codebase), which would make this patch even more disturbing for the users. Change-Id: If877b12d7dac356f86e3b3d941bf7558a4fd8719 Signed-off-by: Daniel R. Carvalho <odanrc@yahoo.com.br> Reviewed-on: https://gem5-review.googlesource.com/c/public/gem5/+/45421 Reviewed-by: Jason Lowe-Power <power.jg@gmail.com> Maintainer: Jason Lowe-Power <power.jg@gmail.com> Tested-by: kokoro <noreply+kokoro@google.com>
568 lines
18 KiB
C++
568 lines
18 KiB
C++
/*
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* Copyright (c) 2012-2013, 2015, 2018-2019 ARM Limited
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* Copyright (c) 2016 Google Inc.
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* Copyright (c) 2017, Centre National de la Recherche Scientifique
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* All rights reserved.
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*
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* The license below extends only to copyright in the software and shall
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* not be construed as granting a license to any other intellectual
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* property including but not limited to intellectual property relating
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* to a hardware implementation of the functionality of the software
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* licensed hereunder. You may use the software subject to the license
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* terms below provided that you ensure that this notice is replicated
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* unmodified and in its entirety in all distributions of the software,
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* modified or unmodified, in source code or in binary form.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "mem/comm_monitor.hh"
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#include "base/trace.hh"
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#include "debug/CommMonitor.hh"
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#include "sim/stats.hh"
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CommMonitor::CommMonitor(const Params ¶ms)
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: SimObject(params),
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memSidePort(name() + "-mem_side_port", *this),
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cpuSidePort(name() + "-cpu_side_port", *this),
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samplePeriodicEvent([this]{ samplePeriodic(); }, name()),
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samplePeriodTicks(params.sample_period),
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samplePeriod(params.sample_period / sim_clock::as_float::s),
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stats(this, params)
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{
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DPRINTF(CommMonitor,
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"Created monitor %s with sample period %d ticks (%f ms)\n",
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name(), samplePeriodTicks, samplePeriod * 1E3);
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}
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void
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CommMonitor::init()
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{
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// make sure both sides of the monitor are connected
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if (!cpuSidePort.isConnected() || !memSidePort.isConnected())
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fatal("Communication monitor is not connected on both sides.\n");
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}
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void
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CommMonitor::regProbePoints()
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{
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ppPktReq.reset(new probing::Packet(getProbeManager(), "PktRequest"));
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ppPktResp.reset(new probing::Packet(getProbeManager(), "PktResponse"));
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}
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Port &
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CommMonitor::getPort(const std::string &if_name, PortID idx)
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{
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if (if_name == "mem_side_port") {
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return memSidePort;
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} else if (if_name == "cpu_side_port") {
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return cpuSidePort;
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} else {
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return SimObject::getPort(if_name, idx);
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}
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}
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void
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CommMonitor::recvFunctional(PacketPtr pkt)
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{
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memSidePort.sendFunctional(pkt);
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}
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void
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CommMonitor::recvFunctionalSnoop(PacketPtr pkt)
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{
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cpuSidePort.sendFunctionalSnoop(pkt);
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}
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CommMonitor::MonitorStats::MonitorStats(statistics::Group *parent,
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const CommMonitorParams ¶ms)
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: statistics::Group(parent),
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disableBurstLengthHists(params.disable_burst_length_hists),
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ADD_STAT(readBurstLengthHist, statistics::units::Byte::get(),
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"Histogram of burst lengths of transmitted packets"),
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ADD_STAT(writeBurstLengthHist, statistics::units::Byte::get(),
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"Histogram of burst lengths of transmitted packets"),
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disableBandwidthHists(params.disable_bandwidth_hists),
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readBytes(0),
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ADD_STAT(readBandwidthHist, statistics::units::Rate<
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statistics::units::Byte, statistics::units::Second>::get(),
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"Histogram of read bandwidth per sample period"),
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ADD_STAT(totalReadBytes, statistics::units::Byte::get(),
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"Number of bytes read"),
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ADD_STAT(averageReadBandwidth, statistics::units::Rate<
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statistics::units::Byte, statistics::units::Second>::get(),
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"Average read bandwidth",
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totalReadBytes / simSeconds),
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writtenBytes(0),
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ADD_STAT(writeBandwidthHist, statistics::units::Rate<
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statistics::units::Byte, statistics::units::Second>::get(),
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"Histogram of write bandwidth"),
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ADD_STAT(totalWrittenBytes, statistics::units::Rate<
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statistics::units::Byte, statistics::units::Second>::get(),
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"Number of bytes written"),
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ADD_STAT(averageWriteBandwidth, statistics::units::Rate<
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statistics::units::Byte, statistics::units::Second>::get(),
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"Average write bandwidth",
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totalWrittenBytes / simSeconds),
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disableLatencyHists(params.disable_latency_hists),
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ADD_STAT(readLatencyHist, statistics::units::Tick::get(),
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"Read request-response latency"),
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ADD_STAT(writeLatencyHist, statistics::units::Tick::get(),
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"Write request-response latency"),
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disableITTDists(params.disable_itt_dists),
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ADD_STAT(ittReadRead, statistics::units::Tick::get(),
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"Read-to-read inter transaction time"),
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ADD_STAT(ittWriteWrite, statistics::units::Tick::get(),
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"Write-to-write inter transaction time"),
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ADD_STAT(ittReqReq, statistics::units::Tick::get(),
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"Request-to-request inter transaction time"),
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timeOfLastRead(0), timeOfLastWrite(0), timeOfLastReq(0),
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disableOutstandingHists(params.disable_outstanding_hists),
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ADD_STAT(outstandingReadsHist, statistics::units::Count::get(),
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"Outstanding read transactions"),
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outstandingReadReqs(0),
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ADD_STAT(outstandingWritesHist, statistics::units::Count::get(),
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"Outstanding write transactions"),
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outstandingWriteReqs(0),
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disableTransactionHists(params.disable_transaction_hists),
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ADD_STAT(readTransHist, statistics::units::Count::get(),
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"Histogram of read transactions per sample period"),
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readTrans(0),
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ADD_STAT(writeTransHist, statistics::units::Count::get(),
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"Histogram of write transactions per sample period"),
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writeTrans(0),
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disableAddrDists(params.disable_addr_dists),
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readAddrMask(params.read_addr_mask),
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writeAddrMask(params.write_addr_mask),
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ADD_STAT(readAddrDist, statistics::units::Count::get(),
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"Read address distribution"),
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ADD_STAT(writeAddrDist, statistics::units::Count::get(),
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"Write address distribution")
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{
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using namespace statistics;
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readBurstLengthHist
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.init(params.burst_length_bins)
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.flags(disableBurstLengthHists ? nozero : pdf);
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writeBurstLengthHist
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.init(params.burst_length_bins)
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.flags(disableBurstLengthHists ? nozero : pdf);
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// Stats based on received responses
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readBandwidthHist
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.init(params.bandwidth_bins)
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.flags(disableBandwidthHists ? nozero : pdf);
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averageReadBandwidth
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.flags(disableBandwidthHists ? nozero : pdf);
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totalReadBytes
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.flags(disableBandwidthHists ? nozero : pdf);
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// Stats based on successfully sent requests
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writeBandwidthHist
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.init(params.bandwidth_bins)
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.flags(disableBandwidthHists ? (pdf | nozero) : pdf);
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averageWriteBandwidth
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.flags(disableBandwidthHists ? nozero : pdf);
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totalWrittenBytes
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.flags(disableBandwidthHists ? nozero : pdf);
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readLatencyHist
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.init(params.latency_bins)
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.flags(disableLatencyHists ? nozero : pdf);
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writeLatencyHist
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.init(params.latency_bins)
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.flags(disableLatencyHists ? nozero : pdf);
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ittReadRead
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.init(1, params.itt_max_bin, params.itt_max_bin /
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params.itt_bins)
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.flags(disableITTDists ? nozero : pdf);
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ittWriteWrite
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.init(1, params.itt_max_bin, params.itt_max_bin /
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params.itt_bins)
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.flags(disableITTDists ? nozero : pdf);
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ittReqReq
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.init(1, params.itt_max_bin, params.itt_max_bin /
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params.itt_bins)
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.flags(disableITTDists ? nozero : pdf);
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outstandingReadsHist
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.init(params.outstanding_bins)
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.flags(disableOutstandingHists ? nozero : pdf);
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outstandingWritesHist
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.init(params.outstanding_bins)
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.flags(disableOutstandingHists ? nozero : pdf);
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readTransHist
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.init(params.transaction_bins)
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.flags(disableTransactionHists ? nozero : pdf);
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writeTransHist
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.init(params.transaction_bins)
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.flags(disableTransactionHists ? nozero : pdf);
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readAddrDist
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.init(0)
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.flags(disableAddrDists ? nozero : pdf);
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writeAddrDist
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.init(0)
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.flags(disableAddrDists ? nozero : pdf);
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}
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void
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CommMonitor::MonitorStats::updateReqStats(
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const probing::PacketInfo& pkt_info, bool is_atomic,
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bool expects_response)
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{
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if (pkt_info.cmd.isRead()) {
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// Increment number of observed read transactions
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if (!disableTransactionHists)
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++readTrans;
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// Get sample of burst length
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if (!disableBurstLengthHists)
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readBurstLengthHist.sample(pkt_info.size);
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// Sample the masked address
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if (!disableAddrDists)
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readAddrDist.sample(pkt_info.addr & readAddrMask);
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if (!disableITTDists) {
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// Sample value of read-read inter transaction time
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if (timeOfLastRead != 0)
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ittReadRead.sample(curTick() - timeOfLastRead);
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timeOfLastRead = curTick();
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// Sample value of req-req inter transaction time
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if (timeOfLastReq != 0)
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ittReqReq.sample(curTick() - timeOfLastReq);
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timeOfLastReq = curTick();
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}
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if (!is_atomic && !disableOutstandingHists && expects_response)
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++outstandingReadReqs;
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} else if (pkt_info.cmd.isWrite()) {
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// Same as for reads
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if (!disableTransactionHists)
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++writeTrans;
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if (!disableBurstLengthHists)
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writeBurstLengthHist.sample(pkt_info.size);
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// Update the bandwidth stats on the request
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if (!disableBandwidthHists) {
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writtenBytes += pkt_info.size;
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totalWrittenBytes += pkt_info.size;
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}
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// Sample the masked write address
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if (!disableAddrDists)
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writeAddrDist.sample(pkt_info.addr & writeAddrMask);
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if (!disableITTDists) {
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// Sample value of write-to-write inter transaction time
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if (timeOfLastWrite != 0)
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ittWriteWrite.sample(curTick() - timeOfLastWrite);
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timeOfLastWrite = curTick();
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// Sample value of req-to-req inter transaction time
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if (timeOfLastReq != 0)
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ittReqReq.sample(curTick() - timeOfLastReq);
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timeOfLastReq = curTick();
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}
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if (!is_atomic && !disableOutstandingHists && expects_response)
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++outstandingWriteReqs;
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}
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}
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void
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CommMonitor::MonitorStats::updateRespStats(
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const probing::PacketInfo& pkt_info, Tick latency, bool is_atomic)
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{
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if (pkt_info.cmd.isRead()) {
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// Decrement number of outstanding read requests
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if (!is_atomic && !disableOutstandingHists) {
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assert(outstandingReadReqs != 0);
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--outstandingReadReqs;
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}
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if (!disableLatencyHists)
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readLatencyHist.sample(latency);
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// Update the bandwidth stats based on responses for reads
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if (!disableBandwidthHists) {
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readBytes += pkt_info.size;
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totalReadBytes += pkt_info.size;
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}
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} else if (pkt_info.cmd.isWrite()) {
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// Decrement number of outstanding write requests
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if (!is_atomic && !disableOutstandingHists) {
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assert(outstandingWriteReqs != 0);
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--outstandingWriteReqs;
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}
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if (!disableLatencyHists)
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writeLatencyHist.sample(latency);
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}
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}
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Tick
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CommMonitor::recvAtomic(PacketPtr pkt)
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{
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const bool expects_response(pkt->needsResponse() &&
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!pkt->cacheResponding());
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probing::PacketInfo req_pkt_info(pkt);
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ppPktReq->notify(req_pkt_info);
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const Tick delay(memSidePort.sendAtomic(pkt));
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stats.updateReqStats(req_pkt_info, true, expects_response);
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if (expects_response)
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stats.updateRespStats(req_pkt_info, delay, true);
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// Some packets, such as WritebackDirty, don't need response.
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assert(pkt->isResponse() || !expects_response);
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probing::PacketInfo resp_pkt_info(pkt);
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ppPktResp->notify(resp_pkt_info);
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return delay;
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}
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Tick
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CommMonitor::recvAtomicSnoop(PacketPtr pkt)
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{
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return cpuSidePort.sendAtomicSnoop(pkt);
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}
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bool
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CommMonitor::recvTimingReq(PacketPtr pkt)
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{
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// should always see a request
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assert(pkt->isRequest());
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// Store relevant fields of packet, because packet may be modified
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// or even deleted when sendTiming() is called.
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const probing::PacketInfo pkt_info(pkt);
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const bool expects_response(pkt->needsResponse() &&
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!pkt->cacheResponding());
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// If a cache miss is served by a cache, a monitor near the memory
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// would see a request which needs a response, but this response
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// would not come back from the memory. Therefore we additionally
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// have to check the cacheResponding flag
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if (expects_response && !stats.disableLatencyHists) {
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pkt->pushSenderState(new CommMonitorSenderState(curTick()));
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}
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// Attempt to send the packet
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bool successful = memSidePort.sendTimingReq(pkt);
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// If not successful, restore the sender state
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if (!successful && expects_response && !stats.disableLatencyHists) {
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delete pkt->popSenderState();
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}
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if (successful) {
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ppPktReq->notify(pkt_info);
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}
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if (successful) {
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DPRINTF(CommMonitor, "Forwarded %s request\n", pkt->isRead() ? "read" :
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pkt->isWrite() ? "write" : "non read/write");
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stats.updateReqStats(pkt_info, false, expects_response);
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}
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return successful;
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}
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bool
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CommMonitor::recvTimingResp(PacketPtr pkt)
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{
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// should always see responses
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assert(pkt->isResponse());
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// Store relevant fields of packet, because packet may be modified
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// or even deleted when sendTiming() is called.
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const probing::PacketInfo pkt_info(pkt);
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Tick latency = 0;
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CommMonitorSenderState* received_state =
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dynamic_cast<CommMonitorSenderState*>(pkt->senderState);
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if (!stats.disableLatencyHists) {
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// Restore initial sender state
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if (received_state == NULL)
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panic("Monitor got a response without monitor sender state\n");
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// Restore the sate
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pkt->senderState = received_state->predecessor;
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}
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// Attempt to send the packet
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bool successful = cpuSidePort.sendTimingResp(pkt);
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if (!stats.disableLatencyHists) {
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// If packet successfully send, sample value of latency,
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// afterwards delete sender state, otherwise restore state
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if (successful) {
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latency = curTick() - received_state->transmitTime;
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DPRINTF(CommMonitor, "Latency: %d\n", latency);
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delete received_state;
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} else {
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// Don't delete anything and let the packet look like we
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// did not touch it
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pkt->senderState = received_state;
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}
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}
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if (successful) {
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ppPktResp->notify(pkt_info);
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DPRINTF(CommMonitor, "Received %s response\n", pkt->isRead() ? "read" :
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pkt->isWrite() ? "write" : "non read/write");
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stats.updateRespStats(pkt_info, latency, false);
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}
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return successful;
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}
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void
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CommMonitor::recvTimingSnoopReq(PacketPtr pkt)
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{
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cpuSidePort.sendTimingSnoopReq(pkt);
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}
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bool
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CommMonitor::recvTimingSnoopResp(PacketPtr pkt)
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{
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return memSidePort.sendTimingSnoopResp(pkt);
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}
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void
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CommMonitor::recvRetrySnoopResp()
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{
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cpuSidePort.sendRetrySnoopResp();
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}
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bool
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CommMonitor::isSnooping() const
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{
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// check if the connected request port is snooping
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return cpuSidePort.isSnooping();
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}
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AddrRangeList
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CommMonitor::getAddrRanges() const
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{
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// get the address ranges of the connected CPU-side port
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return memSidePort.getAddrRanges();
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}
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void
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CommMonitor::recvReqRetry()
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{
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cpuSidePort.sendRetryReq();
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}
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void
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CommMonitor::recvRespRetry()
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{
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memSidePort.sendRetryResp();
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}
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bool
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CommMonitor::tryTiming(PacketPtr pkt)
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{
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return memSidePort.tryTiming(pkt);
|
|
}
|
|
|
|
void
|
|
CommMonitor::recvRangeChange()
|
|
{
|
|
cpuSidePort.sendRangeChange();
|
|
}
|
|
|
|
void
|
|
CommMonitor::samplePeriodic()
|
|
{
|
|
// the periodic stats update runs on the granularity of sample
|
|
// periods, but in combination with this there may also be a
|
|
// external resets and dumps of the stats (through schedStatEvent)
|
|
// causing the stats themselves to capture less than a sample
|
|
// period
|
|
|
|
// only capture if we have not reset the stats during the last
|
|
// sample period
|
|
if (simTicks.value() >= samplePeriodTicks) {
|
|
if (!stats.disableTransactionHists) {
|
|
stats.readTransHist.sample(stats.readTrans);
|
|
stats.writeTransHist.sample(stats.writeTrans);
|
|
}
|
|
|
|
if (!stats.disableBandwidthHists) {
|
|
stats.readBandwidthHist.sample(stats.readBytes / samplePeriod);
|
|
stats.writeBandwidthHist.sample(stats.writtenBytes / samplePeriod);
|
|
}
|
|
|
|
if (!stats.disableOutstandingHists) {
|
|
stats.outstandingReadsHist.sample(stats.outstandingReadReqs);
|
|
stats.outstandingWritesHist.sample(stats.outstandingWriteReqs);
|
|
}
|
|
}
|
|
|
|
// reset the sampled values
|
|
stats.readTrans = 0;
|
|
stats.writeTrans = 0;
|
|
|
|
stats.readBytes = 0;
|
|
stats.writtenBytes = 0;
|
|
|
|
schedule(samplePeriodicEvent, curTick() + samplePeriodTicks);
|
|
}
|
|
|
|
void
|
|
CommMonitor::startup()
|
|
{
|
|
schedule(samplePeriodicEvent, curTick() + samplePeriodTicks);
|
|
}
|