Throttle.cc revision 9863
16145Snate@binkert.org/*
26145Snate@binkert.org * Copyright (c) 1999-2008 Mark D. Hill and David A. Wood
36145Snate@binkert.org * All rights reserved.
46145Snate@binkert.org *
56145Snate@binkert.org * Redistribution and use in source and binary forms, with or without
66145Snate@binkert.org * modification, are permitted provided that the following conditions are
76145Snate@binkert.org * met: redistributions of source code must retain the above copyright
86145Snate@binkert.org * notice, this list of conditions and the following disclaimer;
96145Snate@binkert.org * redistributions in binary form must reproduce the above copyright
106145Snate@binkert.org * notice, this list of conditions and the following disclaimer in the
116145Snate@binkert.org * documentation and/or other materials provided with the distribution;
126145Snate@binkert.org * neither the name of the copyright holders nor the names of its
136145Snate@binkert.org * contributors may be used to endorse or promote products derived from
146145Snate@binkert.org * this software without specific prior written permission.
156145Snate@binkert.org *
166145Snate@binkert.org * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
176145Snate@binkert.org * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
186145Snate@binkert.org * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
196145Snate@binkert.org * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
206145Snate@binkert.org * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
216145Snate@binkert.org * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
226145Snate@binkert.org * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
236145Snate@binkert.org * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
246145Snate@binkert.org * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
256145Snate@binkert.org * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
266145Snate@binkert.org * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
276145Snate@binkert.org */
286145Snate@binkert.org
297832Snate@binkert.org#include <cassert>
307832Snate@binkert.org
318645Snilay@cs.wisc.edu#include "base/cast.hh"
327054Snate@binkert.org#include "base/cprintf.hh"
338232Snate@binkert.org#include "debug/RubyNetwork.hh"
346154Snate@binkert.org#include "mem/ruby/buffers/MessageBuffer.hh"
358229Snate@binkert.org#include "mem/ruby/network/simple/Throttle.hh"
366154Snate@binkert.org#include "mem/ruby/network/Network.hh"
377054Snate@binkert.org#include "mem/ruby/slicc_interface/NetworkMessage.hh"
386154Snate@binkert.org#include "mem/ruby/system/System.hh"
396145Snate@binkert.org
407055Snate@binkert.orgusing namespace std;
417055Snate@binkert.org
426145Snate@binkert.orgconst int HIGH_RANGE = 256;
436145Snate@binkert.orgconst int ADJUST_INTERVAL = 50000;
446145Snate@binkert.orgconst int MESSAGE_SIZE_MULTIPLIER = 1000;
456145Snate@binkert.org//const int BROADCAST_SCALING = 4; // Have a 16p system act like a 64p systems
466145Snate@binkert.orgconst int BROADCAST_SCALING = 1;
476145Snate@binkert.orgconst int PRIORITY_SWITCH_LIMIT = 128;
486145Snate@binkert.org
496145Snate@binkert.orgstatic int network_message_to_size(NetworkMessage* net_msg_ptr);
506145Snate@binkert.org
519499Snilay@cs.wisc.eduThrottle::Throttle(int sID, NodeID node, Cycles link_latency,
529230Snilay@cs.wisc.edu                   int link_bandwidth_multiplier, int endpoint_bandwidth,
539465Snilay@cs.wisc.edu                   ClockedObject *em)
549230Snilay@cs.wisc.edu    : Consumer(em)
556145Snate@binkert.org{
568259SBrad.Beckmann@amd.com    init(node, link_latency, link_bandwidth_multiplier, endpoint_bandwidth);
577054Snate@binkert.org    m_sID = sID;
586145Snate@binkert.org}
596145Snate@binkert.org
609499Snilay@cs.wisc.eduThrottle::Throttle(NodeID node, Cycles link_latency,
619230Snilay@cs.wisc.edu                   int link_bandwidth_multiplier, int endpoint_bandwidth,
629465Snilay@cs.wisc.edu                   ClockedObject *em)
639230Snilay@cs.wisc.edu    : Consumer(em)
646145Snate@binkert.org{
658259SBrad.Beckmann@amd.com    init(node, link_latency, link_bandwidth_multiplier, endpoint_bandwidth);
667054Snate@binkert.org    m_sID = 0;
676145Snate@binkert.org}
686145Snate@binkert.org
697054Snate@binkert.orgvoid
709499Snilay@cs.wisc.eduThrottle::init(NodeID node, Cycles link_latency,
719499Snilay@cs.wisc.edu               int link_bandwidth_multiplier, int endpoint_bandwidth)
726145Snate@binkert.org{
737054Snate@binkert.org    m_node = node;
747054Snate@binkert.org    m_vnets = 0;
756145Snate@binkert.org
767832Snate@binkert.org    assert(link_bandwidth_multiplier > 0);
777054Snate@binkert.org    m_link_bandwidth_multiplier = link_bandwidth_multiplier;
787054Snate@binkert.org    m_link_latency = link_latency;
798259SBrad.Beckmann@amd.com    m_endpoint_bandwidth = endpoint_bandwidth;
806145Snate@binkert.org
817054Snate@binkert.org    m_wakeups_wo_switch = 0;
826145Snate@binkert.org
839863Snilay@cs.wisc.edu    m_msg_counts.resize(MessageSizeType_NUM);
849863Snilay@cs.wisc.edu    m_msg_bytes.resize(MessageSizeType_NUM);
859863Snilay@cs.wisc.edu
869863Snilay@cs.wisc.edu    m_link_utilization_proxy = 0;
876145Snate@binkert.org}
886145Snate@binkert.org
897054Snate@binkert.orgvoid
907454Snate@binkert.orgThrottle::addLinks(const std::vector<MessageBuffer*>& in_vec,
919508Snilay@cs.wisc.edu    const std::vector<MessageBuffer*>& out_vec)
926145Snate@binkert.org{
937054Snate@binkert.org    assert(in_vec.size() == out_vec.size());
947054Snate@binkert.org    for (int i=0; i<in_vec.size(); i++) {
959508Snilay@cs.wisc.edu        addVirtualNetwork(in_vec[i], out_vec[i]);
967054Snate@binkert.org    }
976145Snate@binkert.org}
986145Snate@binkert.org
997054Snate@binkert.orgvoid
1009508Snilay@cs.wisc.eduThrottle::addVirtualNetwork(MessageBuffer* in_ptr, MessageBuffer* out_ptr)
1016145Snate@binkert.org{
1027454Snate@binkert.org    m_units_remaining.push_back(0);
1037454Snate@binkert.org    m_in.push_back(in_ptr);
1047454Snate@binkert.org    m_out.push_back(out_ptr);
1056145Snate@binkert.org
1067054Snate@binkert.org    // Set consumer and description
1077054Snate@binkert.org    m_in[m_vnets]->setConsumer(this);
1089465Snilay@cs.wisc.edu
1098608Snilay@cs.wisc.edu    string desc = "[Queue to Throttle " + to_string(m_sID) + " " +
1108608Snilay@cs.wisc.edu        to_string(m_node) + "]";
1117054Snate@binkert.org    m_in[m_vnets]->setDescription(desc);
1127054Snate@binkert.org    m_vnets++;
1136145Snate@binkert.org}
1146145Snate@binkert.org
1157054Snate@binkert.orgvoid
1167054Snate@binkert.orgThrottle::wakeup()
1176145Snate@binkert.org{
1187054Snate@binkert.org    // Limits the number of message sent to a limited number of bytes/cycle.
1197054Snate@binkert.org    assert(getLinkBandwidth() > 0);
1207054Snate@binkert.org    int bw_remaining = getLinkBandwidth();
1216145Snate@binkert.org
1227054Snate@binkert.org    // Give the highest numbered link priority most of the time
1237054Snate@binkert.org    m_wakeups_wo_switch++;
1247054Snate@binkert.org    int highest_prio_vnet = m_vnets-1;
1257054Snate@binkert.org    int lowest_prio_vnet = 0;
1267054Snate@binkert.org    int counter = 1;
1277054Snate@binkert.org    bool schedule_wakeup = false;
1286145Snate@binkert.org
1297054Snate@binkert.org    // invert priorities to avoid starvation seen in the component network
1307054Snate@binkert.org    if (m_wakeups_wo_switch > PRIORITY_SWITCH_LIMIT) {
1317054Snate@binkert.org        m_wakeups_wo_switch = 0;
1327054Snate@binkert.org        highest_prio_vnet = 0;
1337054Snate@binkert.org        lowest_prio_vnet = m_vnets-1;
1347054Snate@binkert.org        counter = -1;
1356145Snate@binkert.org    }
1366145Snate@binkert.org
1377054Snate@binkert.org    for (int vnet = highest_prio_vnet;
1387054Snate@binkert.org         (vnet * counter) >= (counter * lowest_prio_vnet);
1397054Snate@binkert.org         vnet -= counter) {
1407054Snate@binkert.org
1417054Snate@binkert.org        assert(m_out[vnet] != NULL);
1427054Snate@binkert.org        assert(m_in[vnet] != NULL);
1437054Snate@binkert.org        assert(m_units_remaining[vnet] >= 0);
1447054Snate@binkert.org
1457054Snate@binkert.org        while (bw_remaining > 0 &&
1467054Snate@binkert.org            (m_in[vnet]->isReady() || m_units_remaining[vnet] > 0) &&
1477054Snate@binkert.org            m_out[vnet]->areNSlotsAvailable(1)) {
1487054Snate@binkert.org
1497054Snate@binkert.org            // See if we are done transferring the previous message on
1507054Snate@binkert.org            // this virtual network
1517054Snate@binkert.org            if (m_units_remaining[vnet] == 0 && m_in[vnet]->isReady()) {
1527054Snate@binkert.org                // Find the size of the message we are moving
1537054Snate@binkert.org                MsgPtr msg_ptr = m_in[vnet]->peekMsgPtr();
1547054Snate@binkert.org                NetworkMessage* net_msg_ptr =
1557453Snate@binkert.org                    safe_cast<NetworkMessage*>(msg_ptr.get());
1567054Snate@binkert.org                m_units_remaining[vnet] +=
1577054Snate@binkert.org                    network_message_to_size(net_msg_ptr);
1587054Snate@binkert.org
1597780Snilay@cs.wisc.edu                DPRINTF(RubyNetwork, "throttle: %d my bw %d bw spent "
1607780Snilay@cs.wisc.edu                        "enqueueing net msg %d time: %lld.\n",
1617054Snate@binkert.org                        m_node, getLinkBandwidth(), m_units_remaining[vnet],
1629508Snilay@cs.wisc.edu                        g_system_ptr->curCycle());
1637054Snate@binkert.org
1647054Snate@binkert.org                // Move the message
1657054Snate@binkert.org                m_out[vnet]->enqueue(m_in[vnet]->peekMsgPtr(), m_link_latency);
1667054Snate@binkert.org                m_in[vnet]->pop();
1677054Snate@binkert.org
1687054Snate@binkert.org                // Count the message
1699863Snilay@cs.wisc.edu                m_msg_counts[net_msg_ptr->getMessageSize()][vnet]++;
1707054Snate@binkert.org
1717780Snilay@cs.wisc.edu                DPRINTF(RubyNetwork, "%s\n", *m_out[vnet]);
1727054Snate@binkert.org            }
1737054Snate@binkert.org
1747054Snate@binkert.org            // Calculate the amount of bandwidth we spent on this message
1757054Snate@binkert.org            int diff = m_units_remaining[vnet] - bw_remaining;
1767054Snate@binkert.org            m_units_remaining[vnet] = max(0, diff);
1777054Snate@binkert.org            bw_remaining = max(0, -diff);
1787054Snate@binkert.org        }
1797054Snate@binkert.org
1807054Snate@binkert.org        if (bw_remaining > 0 &&
1817054Snate@binkert.org            (m_in[vnet]->isReady() || m_units_remaining[vnet] > 0) &&
1827054Snate@binkert.org            !m_out[vnet]->areNSlotsAvailable(1)) {
1837780Snilay@cs.wisc.edu            DPRINTF(RubyNetwork, "vnet: %d", vnet);
1847054Snate@binkert.org            // schedule me to wakeup again because I'm waiting for my
1857054Snate@binkert.org            // output queue to become available
1867054Snate@binkert.org            schedule_wakeup = true;
1877054Snate@binkert.org        }
1886145Snate@binkert.org    }
1896145Snate@binkert.org
1907054Snate@binkert.org    // We should only wake up when we use the bandwidth
1917054Snate@binkert.org    // This is only mostly true
1927054Snate@binkert.org    // assert(bw_remaining != getLinkBandwidth());
1936145Snate@binkert.org
1947054Snate@binkert.org    // Record that we used some or all of the link bandwidth this cycle
1957054Snate@binkert.org    double ratio = 1.0 - (double(bw_remaining) / double(getLinkBandwidth()));
1966145Snate@binkert.org
1977054Snate@binkert.org    // If ratio = 0, we used no bandwidth, if ratio = 1, we used all
1989863Snilay@cs.wisc.edu    m_link_utilization_proxy += ratio;
1997054Snate@binkert.org
2007054Snate@binkert.org    if (bw_remaining > 0 && !schedule_wakeup) {
2017054Snate@binkert.org        // We have extra bandwidth and our output buffer was
2027054Snate@binkert.org        // available, so we must not have anything else to do until
2037054Snate@binkert.org        // another message arrives.
2047780Snilay@cs.wisc.edu        DPRINTF(RubyNetwork, "%s not scheduled again\n", *this);
2057054Snate@binkert.org    } else {
2067780Snilay@cs.wisc.edu        DPRINTF(RubyNetwork, "%s scheduled again\n", *this);
2077054Snate@binkert.org
2087054Snate@binkert.org        // We are out of bandwidth for this cycle, so wakeup next
2097054Snate@binkert.org        // cycle and continue
2109499Snilay@cs.wisc.edu        scheduleEvent(Cycles(1));
2117054Snate@binkert.org    }
2126145Snate@binkert.org}
2136145Snate@binkert.org
2147054Snate@binkert.orgvoid
2159863Snilay@cs.wisc.eduThrottle::regStats(string parent)
2166145Snate@binkert.org{
2179863Snilay@cs.wisc.edu    m_link_utilization
2189863Snilay@cs.wisc.edu        .name(parent + csprintf(".throttle%i", m_node) + ".link_utilization");
2199863Snilay@cs.wisc.edu
2209863Snilay@cs.wisc.edu    for (MessageSizeType type = MessageSizeType_FIRST;
2219863Snilay@cs.wisc.edu         type < MessageSizeType_NUM; ++type) {
2229863Snilay@cs.wisc.edu        m_msg_counts[(unsigned int)type]
2239863Snilay@cs.wisc.edu            .init(m_vnets)
2249863Snilay@cs.wisc.edu            .name(parent + csprintf(".throttle%i", m_node) + ".msg_count." +
2259863Snilay@cs.wisc.edu                    MessageSizeType_to_string(type))
2269863Snilay@cs.wisc.edu            .flags(Stats::nozero)
2279863Snilay@cs.wisc.edu            ;
2289863Snilay@cs.wisc.edu        m_msg_bytes[(unsigned int) type]
2299863Snilay@cs.wisc.edu            .name(parent + csprintf(".throttle%i", m_node) + ".msg_bytes." +
2309863Snilay@cs.wisc.edu                    MessageSizeType_to_string(type))
2319863Snilay@cs.wisc.edu            .flags(Stats::nozero)
2329863Snilay@cs.wisc.edu            ;
2339863Snilay@cs.wisc.edu
2349863Snilay@cs.wisc.edu        m_msg_bytes[(unsigned int) type] = m_msg_counts[type] * Stats::constant(
2359863Snilay@cs.wisc.edu                Network::MessageSizeType_to_int(type));
2369863Snilay@cs.wisc.edu    }
2376145Snate@binkert.org}
2386145Snate@binkert.org
2397054Snate@binkert.orgvoid
2407054Snate@binkert.orgThrottle::clearStats()
2416145Snate@binkert.org{
2429863Snilay@cs.wisc.edu    m_link_utilization_proxy = 0;
2436145Snate@binkert.org}
2446145Snate@binkert.org
2459863Snilay@cs.wisc.eduvoid
2469863Snilay@cs.wisc.eduThrottle::collateStats()
2476145Snate@binkert.org{
2489863Snilay@cs.wisc.edu    m_link_utilization = 100.0 * m_link_utilization_proxy
2499863Snilay@cs.wisc.edu        / (double(g_system_ptr->curCycle() - g_ruby_start));
2506145Snate@binkert.org}
2516145Snate@binkert.org
2527054Snate@binkert.orgvoid
2537054Snate@binkert.orgThrottle::print(ostream& out) const
2546145Snate@binkert.org{
2558054Sksewell@umich.edu    ccprintf(out,  "[%i bw: %i]", m_node, getLinkBandwidth());
2566145Snate@binkert.org}
2576145Snate@binkert.org
2587054Snate@binkert.orgint
2597054Snate@binkert.orgnetwork_message_to_size(NetworkMessage* net_msg_ptr)
2607054Snate@binkert.org{
2617054Snate@binkert.org    assert(net_msg_ptr != NULL);
2626145Snate@binkert.org
2639275Snilay@cs.wisc.edu    int size = Network::MessageSizeType_to_int(net_msg_ptr->getMessageSize());
2647054Snate@binkert.org    size *=  MESSAGE_SIZE_MULTIPLIER;
2656145Snate@binkert.org
2667054Snate@binkert.org    // Artificially increase the size of broadcast messages
2677054Snate@binkert.org    if (BROADCAST_SCALING > 1 && net_msg_ptr->getDestination().isBroadcast())
2687054Snate@binkert.org        size *= BROADCAST_SCALING;
2697054Snate@binkert.org
2707054Snate@binkert.org    return size;
2716145Snate@binkert.org}
272