base.cc revision 13416
12810SN/A/*
212724Snikos.nikoleris@arm.com * Copyright (c) 2012-2013, 2018 ARM Limited
38856Sandreas.hansson@arm.com * All rights reserved.
48856Sandreas.hansson@arm.com *
58856Sandreas.hansson@arm.com * The license below extends only to copyright in the software and shall
68856Sandreas.hansson@arm.com * not be construed as granting a license to any other intellectual
78856Sandreas.hansson@arm.com * property including but not limited to intellectual property relating
88856Sandreas.hansson@arm.com * to a hardware implementation of the functionality of the software
98856Sandreas.hansson@arm.com * licensed hereunder.  You may use the software subject to the license
108856Sandreas.hansson@arm.com * terms below provided that you ensure that this notice is replicated
118856Sandreas.hansson@arm.com * unmodified and in its entirety in all distributions of the software,
128856Sandreas.hansson@arm.com * modified or unmodified, in source code or in binary form.
138856Sandreas.hansson@arm.com *
142810SN/A * Copyright (c) 2003-2005 The Regents of The University of Michigan
152810SN/A * All rights reserved.
162810SN/A *
172810SN/A * Redistribution and use in source and binary forms, with or without
182810SN/A * modification, are permitted provided that the following conditions are
192810SN/A * met: redistributions of source code must retain the above copyright
202810SN/A * notice, this list of conditions and the following disclaimer;
212810SN/A * redistributions in binary form must reproduce the above copyright
222810SN/A * notice, this list of conditions and the following disclaimer in the
232810SN/A * documentation and/or other materials provided with the distribution;
242810SN/A * neither the name of the copyright holders nor the names of its
252810SN/A * contributors may be used to endorse or promote products derived from
262810SN/A * this software without specific prior written permission.
272810SN/A *
282810SN/A * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
292810SN/A * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
302810SN/A * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
312810SN/A * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
322810SN/A * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
332810SN/A * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
342810SN/A * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
352810SN/A * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
362810SN/A * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
372810SN/A * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
382810SN/A * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
392810SN/A *
402810SN/A * Authors: Erik Hallnor
4112724Snikos.nikoleris@arm.com *          Nikos Nikoleris
422810SN/A */
432810SN/A
442810SN/A/**
452810SN/A * @file
462810SN/A * Definition of BaseCache functions.
472810SN/A */
482810SN/A
4911486Snikos.nikoleris@arm.com#include "mem/cache/base.hh"
5011486Snikos.nikoleris@arm.com
5112724Snikos.nikoleris@arm.com#include "base/compiler.hh"
5212724Snikos.nikoleris@arm.com#include "base/logging.hh"
538232Snate@binkert.org#include "debug/Cache.hh"
5412724Snikos.nikoleris@arm.com#include "debug/CachePort.hh"
5513222Sodanrc@yahoo.com.br#include "debug/CacheRepl.hh"
5612724Snikos.nikoleris@arm.com#include "debug/CacheVerbose.hh"
5711486Snikos.nikoleris@arm.com#include "mem/cache/mshr.hh"
5812724Snikos.nikoleris@arm.com#include "mem/cache/prefetch/base.hh"
5912724Snikos.nikoleris@arm.com#include "mem/cache/queue_entry.hh"
6012724Snikos.nikoleris@arm.com#include "params/BaseCache.hh"
6113352Snikos.nikoleris@arm.com#include "params/WriteAllocator.hh"
6212724Snikos.nikoleris@arm.com#include "sim/core.hh"
6312724Snikos.nikoleris@arm.com
6412724Snikos.nikoleris@arm.comclass BaseMasterPort;
6512724Snikos.nikoleris@arm.comclass BaseSlavePort;
662810SN/A
672810SN/Ausing namespace std;
682810SN/A
698856Sandreas.hansson@arm.comBaseCache::CacheSlavePort::CacheSlavePort(const std::string &_name,
708856Sandreas.hansson@arm.com                                          BaseCache *_cache,
718856Sandreas.hansson@arm.com                                          const std::string &_label)
728922Swilliam.wang@arm.com    : QueuedSlavePort(_name, _cache, queue), queue(*_cache, *this, _label),
7312084Sspwilson2@wisc.edu      blocked(false), mustSendRetry(false),
7412084Sspwilson2@wisc.edu      sendRetryEvent([this]{ processSendRetry(); }, _name)
758856Sandreas.hansson@arm.com{
768856Sandreas.hansson@arm.com}
774475SN/A
7811053Sandreas.hansson@arm.comBaseCache::BaseCache(const BaseCacheParams *p, unsigned blk_size)
795034SN/A    : MemObject(p),
8012724Snikos.nikoleris@arm.com      cpuSidePort (p->name + ".cpu_side", this, "CpuSidePort"),
8112724Snikos.nikoleris@arm.com      memSidePort(p->name + ".mem_side", this, "MemSidePort"),
8211377Sandreas.hansson@arm.com      mshrQueue("MSHRs", p->mshrs, 0, p->demand_mshr_reserve), // see below
8311377Sandreas.hansson@arm.com      writeBuffer("write buffer", p->write_buffers, p->mshrs), // see below
8412724Snikos.nikoleris@arm.com      tags(p->tags),
8512724Snikos.nikoleris@arm.com      prefetcher(p->prefetcher),
8613352Snikos.nikoleris@arm.com      writeAllocator(p->write_allocator),
8712724Snikos.nikoleris@arm.com      writebackClean(p->writeback_clean),
8812724Snikos.nikoleris@arm.com      tempBlockWriteback(nullptr),
8912724Snikos.nikoleris@arm.com      writebackTempBlockAtomicEvent([this]{ writebackTempBlockAtomic(); },
9012724Snikos.nikoleris@arm.com                                    name(), false,
9112724Snikos.nikoleris@arm.com                                    EventBase::Delayed_Writeback_Pri),
9211053Sandreas.hansson@arm.com      blkSize(blk_size),
9311722Ssophiane.senni@gmail.com      lookupLatency(p->tag_latency),
9411722Ssophiane.senni@gmail.com      dataLatency(p->data_latency),
9511722Ssophiane.senni@gmail.com      forwardLatency(p->tag_latency),
9611722Ssophiane.senni@gmail.com      fillLatency(p->data_latency),
979263Smrinmoy.ghosh@arm.com      responseLatency(p->response_latency),
985034SN/A      numTarget(p->tgts_per_mshr),
9911331Sandreas.hansson@arm.com      forwardSnoops(true),
10012724Snikos.nikoleris@arm.com      clusivity(p->clusivity),
10110884Sandreas.hansson@arm.com      isReadOnly(p->is_read_only),
1024626SN/A      blocked(0),
10310360Sandreas.hansson@arm.com      order(0),
10411484Snikos.nikoleris@arm.com      noTargetMSHR(nullptr),
1055034SN/A      missCount(p->max_miss_count),
1068883SAli.Saidi@ARM.com      addrRanges(p->addr_ranges.begin(), p->addr_ranges.end()),
1078833Sdam.sunwoo@arm.com      system(p->system)
1084458SN/A{
10911377Sandreas.hansson@arm.com    // the MSHR queue has no reserve entries as we check the MSHR
11011377Sandreas.hansson@arm.com    // queue on every single allocation, whereas the write queue has
11111377Sandreas.hansson@arm.com    // as many reserve entries as we have MSHRs, since every MSHR may
11211377Sandreas.hansson@arm.com    // eventually require a writeback, and we do not check the write
11311377Sandreas.hansson@arm.com    // buffer before committing to an MSHR
11411377Sandreas.hansson@arm.com
11511331Sandreas.hansson@arm.com    // forward snoops is overridden in init() once we can query
11611331Sandreas.hansson@arm.com    // whether the connected master is actually snooping or not
11712724Snikos.nikoleris@arm.com
11812843Srmk35@cl.cam.ac.uk    tempBlock = new TempCacheBlk(blkSize);
11912724Snikos.nikoleris@arm.com
12013378Sgabeblack@google.com    tags->tagsInit(this);
12112724Snikos.nikoleris@arm.com    if (prefetcher)
12212724Snikos.nikoleris@arm.com        prefetcher->setCache(this);
12312724Snikos.nikoleris@arm.com}
12412724Snikos.nikoleris@arm.com
12512724Snikos.nikoleris@arm.comBaseCache::~BaseCache()
12612724Snikos.nikoleris@arm.com{
12712724Snikos.nikoleris@arm.com    delete tempBlock;
1282810SN/A}
1292810SN/A
1303013SN/Avoid
1318856Sandreas.hansson@arm.comBaseCache::CacheSlavePort::setBlocked()
1322810SN/A{
1333013SN/A    assert(!blocked);
13410714Sandreas.hansson@arm.com    DPRINTF(CachePort, "Port is blocking new requests\n");
1352810SN/A    blocked = true;
1369614Srene.dejong@arm.com    // if we already scheduled a retry in this cycle, but it has not yet
1379614Srene.dejong@arm.com    // happened, cancel it
1389614Srene.dejong@arm.com    if (sendRetryEvent.scheduled()) {
13910345SCurtis.Dunham@arm.com        owner.deschedule(sendRetryEvent);
14010714Sandreas.hansson@arm.com        DPRINTF(CachePort, "Port descheduled retry\n");
14110345SCurtis.Dunham@arm.com        mustSendRetry = true;
1429614Srene.dejong@arm.com    }
1432810SN/A}
1442810SN/A
1452810SN/Avoid
1468856Sandreas.hansson@arm.comBaseCache::CacheSlavePort::clearBlocked()
1472810SN/A{
1483013SN/A    assert(blocked);
14910714Sandreas.hansson@arm.com    DPRINTF(CachePort, "Port is accepting new requests\n");
1503013SN/A    blocked = false;
1518856Sandreas.hansson@arm.com    if (mustSendRetry) {
15210714Sandreas.hansson@arm.com        // @TODO: need to find a better time (next cycle?)
1538922Swilliam.wang@arm.com        owner.schedule(sendRetryEvent, curTick() + 1);
1542897SN/A    }
1552810SN/A}
1562810SN/A
15710344Sandreas.hansson@arm.comvoid
15810344Sandreas.hansson@arm.comBaseCache::CacheSlavePort::processSendRetry()
15910344Sandreas.hansson@arm.com{
16010714Sandreas.hansson@arm.com    DPRINTF(CachePort, "Port is sending retry\n");
16110344Sandreas.hansson@arm.com
16210344Sandreas.hansson@arm.com    // reset the flag and call retry
16310344Sandreas.hansson@arm.com    mustSendRetry = false;
16410713Sandreas.hansson@arm.com    sendRetryReq();
16510344Sandreas.hansson@arm.com}
1662844SN/A
16712730Sodanrc@yahoo.com.brAddr
16812730Sodanrc@yahoo.com.brBaseCache::regenerateBlkAddr(CacheBlk* blk)
16912730Sodanrc@yahoo.com.br{
17012730Sodanrc@yahoo.com.br    if (blk != tempBlock) {
17112730Sodanrc@yahoo.com.br        return tags->regenerateBlkAddr(blk);
17212730Sodanrc@yahoo.com.br    } else {
17312730Sodanrc@yahoo.com.br        return tempBlock->getAddr();
17412730Sodanrc@yahoo.com.br    }
17512730Sodanrc@yahoo.com.br}
17612730Sodanrc@yahoo.com.br
1772810SN/Avoid
1782858SN/ABaseCache::init()
1792858SN/A{
18012724Snikos.nikoleris@arm.com    if (!cpuSidePort.isConnected() || !memSidePort.isConnected())
1818922Swilliam.wang@arm.com        fatal("Cache ports on %s are not connected\n", name());
18212724Snikos.nikoleris@arm.com    cpuSidePort.sendRangeChange();
18312724Snikos.nikoleris@arm.com    forwardSnoops = cpuSidePort.isSnooping();
1842858SN/A}
1852858SN/A
1869294Sandreas.hansson@arm.comBaseMasterPort &
1879294Sandreas.hansson@arm.comBaseCache::getMasterPort(const std::string &if_name, PortID idx)
1888922Swilliam.wang@arm.com{
1898922Swilliam.wang@arm.com    if (if_name == "mem_side") {
19012724Snikos.nikoleris@arm.com        return memSidePort;
1918922Swilliam.wang@arm.com    }  else {
1928922Swilliam.wang@arm.com        return MemObject::getMasterPort(if_name, idx);
1938922Swilliam.wang@arm.com    }
1948922Swilliam.wang@arm.com}
1958922Swilliam.wang@arm.com
1969294Sandreas.hansson@arm.comBaseSlavePort &
1979294Sandreas.hansson@arm.comBaseCache::getSlavePort(const std::string &if_name, PortID idx)
1988922Swilliam.wang@arm.com{
1998922Swilliam.wang@arm.com    if (if_name == "cpu_side") {
20012724Snikos.nikoleris@arm.com        return cpuSidePort;
2018922Swilliam.wang@arm.com    } else {
2028922Swilliam.wang@arm.com        return MemObject::getSlavePort(if_name, idx);
2038922Swilliam.wang@arm.com    }
2048922Swilliam.wang@arm.com}
2054628SN/A
20610821Sandreas.hansson@arm.combool
20710821Sandreas.hansson@arm.comBaseCache::inRange(Addr addr) const
20810821Sandreas.hansson@arm.com{
20910821Sandreas.hansson@arm.com    for (const auto& r : addrRanges) {
21010821Sandreas.hansson@arm.com        if (r.contains(addr)) {
21110821Sandreas.hansson@arm.com            return true;
21210821Sandreas.hansson@arm.com       }
21310821Sandreas.hansson@arm.com    }
21410821Sandreas.hansson@arm.com    return false;
21510821Sandreas.hansson@arm.com}
21610821Sandreas.hansson@arm.com
2172858SN/Avoid
21812724Snikos.nikoleris@arm.comBaseCache::handleTimingReqHit(PacketPtr pkt, CacheBlk *blk, Tick request_time)
21912724Snikos.nikoleris@arm.com{
22012724Snikos.nikoleris@arm.com    if (pkt->needsResponse()) {
22112724Snikos.nikoleris@arm.com        pkt->makeTimingResponse();
22212724Snikos.nikoleris@arm.com        // @todo: Make someone pay for this
22312724Snikos.nikoleris@arm.com        pkt->headerDelay = pkt->payloadDelay = 0;
22412724Snikos.nikoleris@arm.com
22512724Snikos.nikoleris@arm.com        // In this case we are considering request_time that takes
22612724Snikos.nikoleris@arm.com        // into account the delay of the xbar, if any, and just
22712724Snikos.nikoleris@arm.com        // lat, neglecting responseLatency, modelling hit latency
22812724Snikos.nikoleris@arm.com        // just as lookupLatency or or the value of lat overriden
22912724Snikos.nikoleris@arm.com        // by access(), that calls accessBlock() function.
23012724Snikos.nikoleris@arm.com        cpuSidePort.schedTimingResp(pkt, request_time, true);
23112724Snikos.nikoleris@arm.com    } else {
23212724Snikos.nikoleris@arm.com        DPRINTF(Cache, "%s satisfied %s, no response needed\n", __func__,
23312724Snikos.nikoleris@arm.com                pkt->print());
23412724Snikos.nikoleris@arm.com
23512724Snikos.nikoleris@arm.com        // queue the packet for deletion, as the sending cache is
23612724Snikos.nikoleris@arm.com        // still relying on it; if the block is found in access(),
23712724Snikos.nikoleris@arm.com        // CleanEvict and Writeback messages will be deleted
23812724Snikos.nikoleris@arm.com        // here as well
23912724Snikos.nikoleris@arm.com        pendingDelete.reset(pkt);
24012724Snikos.nikoleris@arm.com    }
24112724Snikos.nikoleris@arm.com}
24212724Snikos.nikoleris@arm.com
24312724Snikos.nikoleris@arm.comvoid
24412724Snikos.nikoleris@arm.comBaseCache::handleTimingReqMiss(PacketPtr pkt, MSHR *mshr, CacheBlk *blk,
24512724Snikos.nikoleris@arm.com                               Tick forward_time, Tick request_time)
24612724Snikos.nikoleris@arm.com{
24713352Snikos.nikoleris@arm.com    if (writeAllocator &&
24813352Snikos.nikoleris@arm.com        pkt && pkt->isWrite() && !pkt->req->isUncacheable()) {
24913352Snikos.nikoleris@arm.com        writeAllocator->updateMode(pkt->getAddr(), pkt->getSize(),
25013352Snikos.nikoleris@arm.com                                   pkt->getBlockAddr(blkSize));
25113352Snikos.nikoleris@arm.com    }
25213352Snikos.nikoleris@arm.com
25312724Snikos.nikoleris@arm.com    if (mshr) {
25412724Snikos.nikoleris@arm.com        /// MSHR hit
25512724Snikos.nikoleris@arm.com        /// @note writebacks will be checked in getNextMSHR()
25612724Snikos.nikoleris@arm.com        /// for any conflicting requests to the same block
25712724Snikos.nikoleris@arm.com
25812724Snikos.nikoleris@arm.com        //@todo remove hw_pf here
25912724Snikos.nikoleris@arm.com
26012724Snikos.nikoleris@arm.com        // Coalesce unless it was a software prefetch (see above).
26112724Snikos.nikoleris@arm.com        if (pkt) {
26212724Snikos.nikoleris@arm.com            assert(!pkt->isWriteback());
26312724Snikos.nikoleris@arm.com            // CleanEvicts corresponding to blocks which have
26412724Snikos.nikoleris@arm.com            // outstanding requests in MSHRs are simply sunk here
26512724Snikos.nikoleris@arm.com            if (pkt->cmd == MemCmd::CleanEvict) {
26612724Snikos.nikoleris@arm.com                pendingDelete.reset(pkt);
26712724Snikos.nikoleris@arm.com            } else if (pkt->cmd == MemCmd::WriteClean) {
26812724Snikos.nikoleris@arm.com                // A WriteClean should never coalesce with any
26912724Snikos.nikoleris@arm.com                // outstanding cache maintenance requests.
27012724Snikos.nikoleris@arm.com
27112724Snikos.nikoleris@arm.com                // We use forward_time here because there is an
27212724Snikos.nikoleris@arm.com                // uncached memory write, forwarded to WriteBuffer.
27312724Snikos.nikoleris@arm.com                allocateWriteBuffer(pkt, forward_time);
27412724Snikos.nikoleris@arm.com            } else {
27512724Snikos.nikoleris@arm.com                DPRINTF(Cache, "%s coalescing MSHR for %s\n", __func__,
27612724Snikos.nikoleris@arm.com                        pkt->print());
27712724Snikos.nikoleris@arm.com
27812724Snikos.nikoleris@arm.com                assert(pkt->req->masterId() < system->maxMasters());
27912724Snikos.nikoleris@arm.com                mshr_hits[pkt->cmdToIndex()][pkt->req->masterId()]++;
28012724Snikos.nikoleris@arm.com
28112724Snikos.nikoleris@arm.com                // We use forward_time here because it is the same
28212724Snikos.nikoleris@arm.com                // considering new targets. We have multiple
28312724Snikos.nikoleris@arm.com                // requests for the same address here. It
28412724Snikos.nikoleris@arm.com                // specifies the latency to allocate an internal
28512724Snikos.nikoleris@arm.com                // buffer and to schedule an event to the queued
28612724Snikos.nikoleris@arm.com                // port and also takes into account the additional
28712724Snikos.nikoleris@arm.com                // delay of the xbar.
28812724Snikos.nikoleris@arm.com                mshr->allocateTarget(pkt, forward_time, order++,
28912724Snikos.nikoleris@arm.com                                     allocOnFill(pkt->cmd));
29012724Snikos.nikoleris@arm.com                if (mshr->getNumTargets() == numTarget) {
29112724Snikos.nikoleris@arm.com                    noTargetMSHR = mshr;
29212724Snikos.nikoleris@arm.com                    setBlocked(Blocked_NoTargets);
29312724Snikos.nikoleris@arm.com                    // need to be careful with this... if this mshr isn't
29412724Snikos.nikoleris@arm.com                    // ready yet (i.e. time > curTick()), we don't want to
29512724Snikos.nikoleris@arm.com                    // move it ahead of mshrs that are ready
29612724Snikos.nikoleris@arm.com                    // mshrQueue.moveToFront(mshr);
29712724Snikos.nikoleris@arm.com                }
29812724Snikos.nikoleris@arm.com            }
29912724Snikos.nikoleris@arm.com        }
30012724Snikos.nikoleris@arm.com    } else {
30112724Snikos.nikoleris@arm.com        // no MSHR
30212724Snikos.nikoleris@arm.com        assert(pkt->req->masterId() < system->maxMasters());
30312724Snikos.nikoleris@arm.com        mshr_misses[pkt->cmdToIndex()][pkt->req->masterId()]++;
30412724Snikos.nikoleris@arm.com
30512724Snikos.nikoleris@arm.com        if (pkt->isEviction() || pkt->cmd == MemCmd::WriteClean) {
30612724Snikos.nikoleris@arm.com            // We use forward_time here because there is an
30712724Snikos.nikoleris@arm.com            // writeback or writeclean, forwarded to WriteBuffer.
30812724Snikos.nikoleris@arm.com            allocateWriteBuffer(pkt, forward_time);
30912724Snikos.nikoleris@arm.com        } else {
31012724Snikos.nikoleris@arm.com            if (blk && blk->isValid()) {
31112724Snikos.nikoleris@arm.com                // If we have a write miss to a valid block, we
31212724Snikos.nikoleris@arm.com                // need to mark the block non-readable.  Otherwise
31312724Snikos.nikoleris@arm.com                // if we allow reads while there's an outstanding
31412724Snikos.nikoleris@arm.com                // write miss, the read could return stale data
31512724Snikos.nikoleris@arm.com                // out of the cache block... a more aggressive
31612724Snikos.nikoleris@arm.com                // system could detect the overlap (if any) and
31712724Snikos.nikoleris@arm.com                // forward data out of the MSHRs, but we don't do
31812724Snikos.nikoleris@arm.com                // that yet.  Note that we do need to leave the
31912724Snikos.nikoleris@arm.com                // block valid so that it stays in the cache, in
32012724Snikos.nikoleris@arm.com                // case we get an upgrade response (and hence no
32112724Snikos.nikoleris@arm.com                // new data) when the write miss completes.
32212724Snikos.nikoleris@arm.com                // As long as CPUs do proper store/load forwarding
32312724Snikos.nikoleris@arm.com                // internally, and have a sufficiently weak memory
32412724Snikos.nikoleris@arm.com                // model, this is probably unnecessary, but at some
32512724Snikos.nikoleris@arm.com                // point it must have seemed like we needed it...
32612724Snikos.nikoleris@arm.com                assert((pkt->needsWritable() && !blk->isWritable()) ||
32712724Snikos.nikoleris@arm.com                       pkt->req->isCacheMaintenance());
32812724Snikos.nikoleris@arm.com                blk->status &= ~BlkReadable;
32912724Snikos.nikoleris@arm.com            }
33012724Snikos.nikoleris@arm.com            // Here we are using forward_time, modelling the latency of
33112724Snikos.nikoleris@arm.com            // a miss (outbound) just as forwardLatency, neglecting the
33212724Snikos.nikoleris@arm.com            // lookupLatency component.
33312724Snikos.nikoleris@arm.com            allocateMissBuffer(pkt, forward_time);
33412724Snikos.nikoleris@arm.com        }
33512724Snikos.nikoleris@arm.com    }
33612724Snikos.nikoleris@arm.com}
33712724Snikos.nikoleris@arm.com
33812724Snikos.nikoleris@arm.comvoid
33912724Snikos.nikoleris@arm.comBaseCache::recvTimingReq(PacketPtr pkt)
34012724Snikos.nikoleris@arm.com{
34112724Snikos.nikoleris@arm.com    // anything that is merely forwarded pays for the forward latency and
34212724Snikos.nikoleris@arm.com    // the delay provided by the crossbar
34312724Snikos.nikoleris@arm.com    Tick forward_time = clockEdge(forwardLatency) + pkt->headerDelay;
34412724Snikos.nikoleris@arm.com
34512724Snikos.nikoleris@arm.com    // We use lookupLatency here because it is used to specify the latency
34612724Snikos.nikoleris@arm.com    // to access.
34712724Snikos.nikoleris@arm.com    Cycles lat = lookupLatency;
34812724Snikos.nikoleris@arm.com    CacheBlk *blk = nullptr;
34912724Snikos.nikoleris@arm.com    bool satisfied = false;
35012724Snikos.nikoleris@arm.com    {
35112724Snikos.nikoleris@arm.com        PacketList writebacks;
35212724Snikos.nikoleris@arm.com        // Note that lat is passed by reference here. The function
35312724Snikos.nikoleris@arm.com        // access() calls accessBlock() which can modify lat value.
35412724Snikos.nikoleris@arm.com        satisfied = access(pkt, blk, lat, writebacks);
35512724Snikos.nikoleris@arm.com
35612724Snikos.nikoleris@arm.com        // copy writebacks to write buffer here to ensure they logically
35712820Srmk35@cl.cam.ac.uk        // precede anything happening below
35812724Snikos.nikoleris@arm.com        doWritebacks(writebacks, forward_time);
35912724Snikos.nikoleris@arm.com    }
36012724Snikos.nikoleris@arm.com
36112724Snikos.nikoleris@arm.com    // Here we charge the headerDelay that takes into account the latencies
36212724Snikos.nikoleris@arm.com    // of the bus, if the packet comes from it.
36312724Snikos.nikoleris@arm.com    // The latency charged it is just lat that is the value of lookupLatency
36412724Snikos.nikoleris@arm.com    // modified by access() function, or if not just lookupLatency.
36512724Snikos.nikoleris@arm.com    // In case of a hit we are neglecting response latency.
36612724Snikos.nikoleris@arm.com    // In case of a miss we are neglecting forward latency.
36712724Snikos.nikoleris@arm.com    Tick request_time = clockEdge(lat) + pkt->headerDelay;
36812724Snikos.nikoleris@arm.com    // Here we reset the timing of the packet.
36912724Snikos.nikoleris@arm.com    pkt->headerDelay = pkt->payloadDelay = 0;
37012724Snikos.nikoleris@arm.com
37112724Snikos.nikoleris@arm.com    if (satisfied) {
37213416Sjavier.bueno@metempsy.com        // notify before anything else as later handleTimingReqHit might turn
37313416Sjavier.bueno@metempsy.com        // the packet in a response
37413416Sjavier.bueno@metempsy.com        ppHit->notify(pkt);
37512724Snikos.nikoleris@arm.com
37613416Sjavier.bueno@metempsy.com        if (prefetcher && blk && blk->wasPrefetched()) {
37713416Sjavier.bueno@metempsy.com            blk->status &= ~BlkHWPrefetched;
37812724Snikos.nikoleris@arm.com        }
37912724Snikos.nikoleris@arm.com
38012724Snikos.nikoleris@arm.com        handleTimingReqHit(pkt, blk, request_time);
38112724Snikos.nikoleris@arm.com    } else {
38212724Snikos.nikoleris@arm.com        handleTimingReqMiss(pkt, blk, forward_time, request_time);
38312724Snikos.nikoleris@arm.com
38413416Sjavier.bueno@metempsy.com        ppMiss->notify(pkt);
38512724Snikos.nikoleris@arm.com    }
38612724Snikos.nikoleris@arm.com
38713416Sjavier.bueno@metempsy.com    if (prefetcher) {
38813416Sjavier.bueno@metempsy.com        // track time of availability of next prefetch, if any
38913416Sjavier.bueno@metempsy.com        Tick next_pf_time = prefetcher->nextPrefetchReadyTime();
39013416Sjavier.bueno@metempsy.com        if (next_pf_time != MaxTick) {
39113416Sjavier.bueno@metempsy.com            schedMemSideSendEvent(next_pf_time);
39213416Sjavier.bueno@metempsy.com        }
39312724Snikos.nikoleris@arm.com    }
39412724Snikos.nikoleris@arm.com}
39512724Snikos.nikoleris@arm.com
39612724Snikos.nikoleris@arm.comvoid
39712724Snikos.nikoleris@arm.comBaseCache::handleUncacheableWriteResp(PacketPtr pkt)
39812724Snikos.nikoleris@arm.com{
39912724Snikos.nikoleris@arm.com    Tick completion_time = clockEdge(responseLatency) +
40012724Snikos.nikoleris@arm.com        pkt->headerDelay + pkt->payloadDelay;
40112724Snikos.nikoleris@arm.com
40212724Snikos.nikoleris@arm.com    // Reset the bus additional time as it is now accounted for
40312724Snikos.nikoleris@arm.com    pkt->headerDelay = pkt->payloadDelay = 0;
40412724Snikos.nikoleris@arm.com
40512724Snikos.nikoleris@arm.com    cpuSidePort.schedTimingResp(pkt, completion_time, true);
40612724Snikos.nikoleris@arm.com}
40712724Snikos.nikoleris@arm.com
40812724Snikos.nikoleris@arm.comvoid
40912724Snikos.nikoleris@arm.comBaseCache::recvTimingResp(PacketPtr pkt)
41012724Snikos.nikoleris@arm.com{
41112724Snikos.nikoleris@arm.com    assert(pkt->isResponse());
41212724Snikos.nikoleris@arm.com
41312724Snikos.nikoleris@arm.com    // all header delay should be paid for by the crossbar, unless
41412724Snikos.nikoleris@arm.com    // this is a prefetch response from above
41512724Snikos.nikoleris@arm.com    panic_if(pkt->headerDelay != 0 && pkt->cmd != MemCmd::HardPFResp,
41612724Snikos.nikoleris@arm.com             "%s saw a non-zero packet delay\n", name());
41712724Snikos.nikoleris@arm.com
41812724Snikos.nikoleris@arm.com    const bool is_error = pkt->isError();
41912724Snikos.nikoleris@arm.com
42012724Snikos.nikoleris@arm.com    if (is_error) {
42112724Snikos.nikoleris@arm.com        DPRINTF(Cache, "%s: Cache received %s with error\n", __func__,
42212724Snikos.nikoleris@arm.com                pkt->print());
42312724Snikos.nikoleris@arm.com    }
42412724Snikos.nikoleris@arm.com
42512724Snikos.nikoleris@arm.com    DPRINTF(Cache, "%s: Handling response %s\n", __func__,
42612724Snikos.nikoleris@arm.com            pkt->print());
42712724Snikos.nikoleris@arm.com
42812724Snikos.nikoleris@arm.com    // if this is a write, we should be looking at an uncacheable
42912724Snikos.nikoleris@arm.com    // write
43012724Snikos.nikoleris@arm.com    if (pkt->isWrite()) {
43112724Snikos.nikoleris@arm.com        assert(pkt->req->isUncacheable());
43212724Snikos.nikoleris@arm.com        handleUncacheableWriteResp(pkt);
43312724Snikos.nikoleris@arm.com        return;
43412724Snikos.nikoleris@arm.com    }
43512724Snikos.nikoleris@arm.com
43612724Snikos.nikoleris@arm.com    // we have dealt with any (uncacheable) writes above, from here on
43712724Snikos.nikoleris@arm.com    // we know we are dealing with an MSHR due to a miss or a prefetch
43812724Snikos.nikoleris@arm.com    MSHR *mshr = dynamic_cast<MSHR*>(pkt->popSenderState());
43912724Snikos.nikoleris@arm.com    assert(mshr);
44012724Snikos.nikoleris@arm.com
44112724Snikos.nikoleris@arm.com    if (mshr == noTargetMSHR) {
44212724Snikos.nikoleris@arm.com        // we always clear at least one target
44312724Snikos.nikoleris@arm.com        clearBlocked(Blocked_NoTargets);
44412724Snikos.nikoleris@arm.com        noTargetMSHR = nullptr;
44512724Snikos.nikoleris@arm.com    }
44612724Snikos.nikoleris@arm.com
44712724Snikos.nikoleris@arm.com    // Initial target is used just for stats
44812724Snikos.nikoleris@arm.com    MSHR::Target *initial_tgt = mshr->getTarget();
44912724Snikos.nikoleris@arm.com    int stats_cmd_idx = initial_tgt->pkt->cmdToIndex();
45012724Snikos.nikoleris@arm.com    Tick miss_latency = curTick() - initial_tgt->recvTime;
45112724Snikos.nikoleris@arm.com
45212724Snikos.nikoleris@arm.com    if (pkt->req->isUncacheable()) {
45312724Snikos.nikoleris@arm.com        assert(pkt->req->masterId() < system->maxMasters());
45412724Snikos.nikoleris@arm.com        mshr_uncacheable_lat[stats_cmd_idx][pkt->req->masterId()] +=
45512724Snikos.nikoleris@arm.com            miss_latency;
45612724Snikos.nikoleris@arm.com    } else {
45712724Snikos.nikoleris@arm.com        assert(pkt->req->masterId() < system->maxMasters());
45812724Snikos.nikoleris@arm.com        mshr_miss_latency[stats_cmd_idx][pkt->req->masterId()] +=
45912724Snikos.nikoleris@arm.com            miss_latency;
46012724Snikos.nikoleris@arm.com    }
46112724Snikos.nikoleris@arm.com
46212724Snikos.nikoleris@arm.com    PacketList writebacks;
46312724Snikos.nikoleris@arm.com
46412724Snikos.nikoleris@arm.com    bool is_fill = !mshr->isForward &&
46513350Snikos.nikoleris@arm.com        (pkt->isRead() || pkt->cmd == MemCmd::UpgradeResp ||
46613350Snikos.nikoleris@arm.com         mshr->wasWholeLineWrite);
46713350Snikos.nikoleris@arm.com
46813350Snikos.nikoleris@arm.com    // make sure that if the mshr was due to a whole line write then
46913350Snikos.nikoleris@arm.com    // the response is an invalidation
47013350Snikos.nikoleris@arm.com    assert(!mshr->wasWholeLineWrite || pkt->isInvalidate());
47112724Snikos.nikoleris@arm.com
47212724Snikos.nikoleris@arm.com    CacheBlk *blk = tags->findBlock(pkt->getAddr(), pkt->isSecure());
47312724Snikos.nikoleris@arm.com
47412724Snikos.nikoleris@arm.com    if (is_fill && !is_error) {
47512724Snikos.nikoleris@arm.com        DPRINTF(Cache, "Block for addr %#llx being updated in Cache\n",
47612724Snikos.nikoleris@arm.com                pkt->getAddr());
47712724Snikos.nikoleris@arm.com
47813352Snikos.nikoleris@arm.com        const bool allocate = (writeAllocator && mshr->wasWholeLineWrite) ?
47913352Snikos.nikoleris@arm.com            writeAllocator->allocate() : mshr->allocOnFill();
48013352Snikos.nikoleris@arm.com        blk = handleFill(pkt, blk, writebacks, allocate);
48112724Snikos.nikoleris@arm.com        assert(blk != nullptr);
48212724Snikos.nikoleris@arm.com    }
48312724Snikos.nikoleris@arm.com
48412724Snikos.nikoleris@arm.com    if (blk && blk->isValid() && pkt->isClean() && !pkt->isInvalidate()) {
48512724Snikos.nikoleris@arm.com        // The block was marked not readable while there was a pending
48612724Snikos.nikoleris@arm.com        // cache maintenance operation, restore its flag.
48712724Snikos.nikoleris@arm.com        blk->status |= BlkReadable;
48812794Snikos.nikoleris@arm.com
48912794Snikos.nikoleris@arm.com        // This was a cache clean operation (without invalidate)
49012794Snikos.nikoleris@arm.com        // and we have a copy of the block already. Since there
49112794Snikos.nikoleris@arm.com        // is no invalidation, we can promote targets that don't
49212794Snikos.nikoleris@arm.com        // require a writable copy
49312794Snikos.nikoleris@arm.com        mshr->promoteReadable();
49412724Snikos.nikoleris@arm.com    }
49512724Snikos.nikoleris@arm.com
49612724Snikos.nikoleris@arm.com    if (blk && blk->isWritable() && !pkt->req->isCacheInvalidate()) {
49712724Snikos.nikoleris@arm.com        // If at this point the referenced block is writable and the
49812724Snikos.nikoleris@arm.com        // response is not a cache invalidate, we promote targets that
49912724Snikos.nikoleris@arm.com        // were deferred as we couldn't guarrantee a writable copy
50012724Snikos.nikoleris@arm.com        mshr->promoteWritable();
50112724Snikos.nikoleris@arm.com    }
50212724Snikos.nikoleris@arm.com
50312724Snikos.nikoleris@arm.com    serviceMSHRTargets(mshr, pkt, blk, writebacks);
50412724Snikos.nikoleris@arm.com
50512724Snikos.nikoleris@arm.com    if (mshr->promoteDeferredTargets()) {
50612724Snikos.nikoleris@arm.com        // avoid later read getting stale data while write miss is
50712724Snikos.nikoleris@arm.com        // outstanding.. see comment in timingAccess()
50812724Snikos.nikoleris@arm.com        if (blk) {
50912724Snikos.nikoleris@arm.com            blk->status &= ~BlkReadable;
51012724Snikos.nikoleris@arm.com        }
51112724Snikos.nikoleris@arm.com        mshrQueue.markPending(mshr);
51212724Snikos.nikoleris@arm.com        schedMemSideSendEvent(clockEdge() + pkt->payloadDelay);
51312724Snikos.nikoleris@arm.com    } else {
51412724Snikos.nikoleris@arm.com        // while we deallocate an mshr from the queue we still have to
51512724Snikos.nikoleris@arm.com        // check the isFull condition before and after as we might
51612724Snikos.nikoleris@arm.com        // have been using the reserved entries already
51712724Snikos.nikoleris@arm.com        const bool was_full = mshrQueue.isFull();
51812724Snikos.nikoleris@arm.com        mshrQueue.deallocate(mshr);
51912724Snikos.nikoleris@arm.com        if (was_full && !mshrQueue.isFull()) {
52012724Snikos.nikoleris@arm.com            clearBlocked(Blocked_NoMSHRs);
52112724Snikos.nikoleris@arm.com        }
52212724Snikos.nikoleris@arm.com
52312724Snikos.nikoleris@arm.com        // Request the bus for a prefetch if this deallocation freed enough
52412724Snikos.nikoleris@arm.com        // MSHRs for a prefetch to take place
52512724Snikos.nikoleris@arm.com        if (prefetcher && mshrQueue.canPrefetch()) {
52612724Snikos.nikoleris@arm.com            Tick next_pf_time = std::max(prefetcher->nextPrefetchReadyTime(),
52712724Snikos.nikoleris@arm.com                                         clockEdge());
52812724Snikos.nikoleris@arm.com            if (next_pf_time != MaxTick)
52912724Snikos.nikoleris@arm.com                schedMemSideSendEvent(next_pf_time);
53012724Snikos.nikoleris@arm.com        }
53112724Snikos.nikoleris@arm.com    }
53212724Snikos.nikoleris@arm.com
53312724Snikos.nikoleris@arm.com    // if we used temp block, check to see if its valid and then clear it out
53412724Snikos.nikoleris@arm.com    if (blk == tempBlock && tempBlock->isValid()) {
53512724Snikos.nikoleris@arm.com        evictBlock(blk, writebacks);
53612724Snikos.nikoleris@arm.com    }
53712724Snikos.nikoleris@arm.com
53812724Snikos.nikoleris@arm.com    const Tick forward_time = clockEdge(forwardLatency) + pkt->headerDelay;
53912724Snikos.nikoleris@arm.com    // copy writebacks to write buffer
54012724Snikos.nikoleris@arm.com    doWritebacks(writebacks, forward_time);
54112724Snikos.nikoleris@arm.com
54212724Snikos.nikoleris@arm.com    DPRINTF(CacheVerbose, "%s: Leaving with %s\n", __func__, pkt->print());
54312724Snikos.nikoleris@arm.com    delete pkt;
54412724Snikos.nikoleris@arm.com}
54512724Snikos.nikoleris@arm.com
54612724Snikos.nikoleris@arm.com
54712724Snikos.nikoleris@arm.comTick
54812724Snikos.nikoleris@arm.comBaseCache::recvAtomic(PacketPtr pkt)
54912724Snikos.nikoleris@arm.com{
55012724Snikos.nikoleris@arm.com    // should assert here that there are no outstanding MSHRs or
55112724Snikos.nikoleris@arm.com    // writebacks... that would mean that someone used an atomic
55212724Snikos.nikoleris@arm.com    // access in timing mode
55312724Snikos.nikoleris@arm.com
55413412Snikos.nikoleris@arm.com    // We use lookupLatency here because it is used to specify the latency
55513412Snikos.nikoleris@arm.com    // to access.
55613412Snikos.nikoleris@arm.com    Cycles lat = lookupLatency;
55713412Snikos.nikoleris@arm.com
55812724Snikos.nikoleris@arm.com    CacheBlk *blk = nullptr;
55912724Snikos.nikoleris@arm.com    PacketList writebacks;
56012724Snikos.nikoleris@arm.com    bool satisfied = access(pkt, blk, lat, writebacks);
56112724Snikos.nikoleris@arm.com
56212724Snikos.nikoleris@arm.com    if (pkt->isClean() && blk && blk->isDirty()) {
56312724Snikos.nikoleris@arm.com        // A cache clean opearation is looking for a dirty
56412724Snikos.nikoleris@arm.com        // block. If a dirty block is encountered a WriteClean
56512724Snikos.nikoleris@arm.com        // will update any copies to the path to the memory
56612724Snikos.nikoleris@arm.com        // until the point of reference.
56712724Snikos.nikoleris@arm.com        DPRINTF(CacheVerbose, "%s: packet %s found block: %s\n",
56812724Snikos.nikoleris@arm.com                __func__, pkt->print(), blk->print());
56912724Snikos.nikoleris@arm.com        PacketPtr wb_pkt = writecleanBlk(blk, pkt->req->getDest(), pkt->id);
57012724Snikos.nikoleris@arm.com        writebacks.push_back(wb_pkt);
57112724Snikos.nikoleris@arm.com        pkt->setSatisfied();
57212724Snikos.nikoleris@arm.com    }
57312724Snikos.nikoleris@arm.com
57412724Snikos.nikoleris@arm.com    // handle writebacks resulting from the access here to ensure they
57512820Srmk35@cl.cam.ac.uk    // logically precede anything happening below
57612724Snikos.nikoleris@arm.com    doWritebacksAtomic(writebacks);
57712724Snikos.nikoleris@arm.com    assert(writebacks.empty());
57812724Snikos.nikoleris@arm.com
57912724Snikos.nikoleris@arm.com    if (!satisfied) {
58012724Snikos.nikoleris@arm.com        lat += handleAtomicReqMiss(pkt, blk, writebacks);
58112724Snikos.nikoleris@arm.com    }
58212724Snikos.nikoleris@arm.com
58312724Snikos.nikoleris@arm.com    // Note that we don't invoke the prefetcher at all in atomic mode.
58412724Snikos.nikoleris@arm.com    // It's not clear how to do it properly, particularly for
58512724Snikos.nikoleris@arm.com    // prefetchers that aggressively generate prefetch candidates and
58612724Snikos.nikoleris@arm.com    // rely on bandwidth contention to throttle them; these will tend
58712724Snikos.nikoleris@arm.com    // to pollute the cache in atomic mode since there is no bandwidth
58812724Snikos.nikoleris@arm.com    // contention.  If we ever do want to enable prefetching in atomic
58912724Snikos.nikoleris@arm.com    // mode, though, this is the place to do it... see timingAccess()
59012724Snikos.nikoleris@arm.com    // for an example (though we'd want to issue the prefetch(es)
59112724Snikos.nikoleris@arm.com    // immediately rather than calling requestMemSideBus() as we do
59212724Snikos.nikoleris@arm.com    // there).
59312724Snikos.nikoleris@arm.com
59412724Snikos.nikoleris@arm.com    // do any writebacks resulting from the response handling
59512724Snikos.nikoleris@arm.com    doWritebacksAtomic(writebacks);
59612724Snikos.nikoleris@arm.com
59712724Snikos.nikoleris@arm.com    // if we used temp block, check to see if its valid and if so
59812724Snikos.nikoleris@arm.com    // clear it out, but only do so after the call to recvAtomic is
59912724Snikos.nikoleris@arm.com    // finished so that any downstream observers (such as a snoop
60012724Snikos.nikoleris@arm.com    // filter), first see the fill, and only then see the eviction
60112724Snikos.nikoleris@arm.com    if (blk == tempBlock && tempBlock->isValid()) {
60212724Snikos.nikoleris@arm.com        // the atomic CPU calls recvAtomic for fetch and load/store
60312724Snikos.nikoleris@arm.com        // sequentuially, and we may already have a tempBlock
60412724Snikos.nikoleris@arm.com        // writeback from the fetch that we have not yet sent
60512724Snikos.nikoleris@arm.com        if (tempBlockWriteback) {
60612724Snikos.nikoleris@arm.com            // if that is the case, write the prevoius one back, and
60712724Snikos.nikoleris@arm.com            // do not schedule any new event
60812724Snikos.nikoleris@arm.com            writebackTempBlockAtomic();
60912724Snikos.nikoleris@arm.com        } else {
61012724Snikos.nikoleris@arm.com            // the writeback/clean eviction happens after the call to
61112724Snikos.nikoleris@arm.com            // recvAtomic has finished (but before any successive
61212724Snikos.nikoleris@arm.com            // calls), so that the response handling from the fill is
61312724Snikos.nikoleris@arm.com            // allowed to happen first
61412724Snikos.nikoleris@arm.com            schedule(writebackTempBlockAtomicEvent, curTick());
61512724Snikos.nikoleris@arm.com        }
61612724Snikos.nikoleris@arm.com
61712724Snikos.nikoleris@arm.com        tempBlockWriteback = evictBlock(blk);
61812724Snikos.nikoleris@arm.com    }
61912724Snikos.nikoleris@arm.com
62012724Snikos.nikoleris@arm.com    if (pkt->needsResponse()) {
62112724Snikos.nikoleris@arm.com        pkt->makeAtomicResponse();
62212724Snikos.nikoleris@arm.com    }
62312724Snikos.nikoleris@arm.com
62412724Snikos.nikoleris@arm.com    return lat * clockPeriod();
62512724Snikos.nikoleris@arm.com}
62612724Snikos.nikoleris@arm.com
62712724Snikos.nikoleris@arm.comvoid
62812724Snikos.nikoleris@arm.comBaseCache::functionalAccess(PacketPtr pkt, bool from_cpu_side)
62912724Snikos.nikoleris@arm.com{
63012724Snikos.nikoleris@arm.com    Addr blk_addr = pkt->getBlockAddr(blkSize);
63112724Snikos.nikoleris@arm.com    bool is_secure = pkt->isSecure();
63212724Snikos.nikoleris@arm.com    CacheBlk *blk = tags->findBlock(pkt->getAddr(), is_secure);
63312724Snikos.nikoleris@arm.com    MSHR *mshr = mshrQueue.findMatch(blk_addr, is_secure);
63412724Snikos.nikoleris@arm.com
63512724Snikos.nikoleris@arm.com    pkt->pushLabel(name());
63612724Snikos.nikoleris@arm.com
63712724Snikos.nikoleris@arm.com    CacheBlkPrintWrapper cbpw(blk);
63812724Snikos.nikoleris@arm.com
63912724Snikos.nikoleris@arm.com    // Note that just because an L2/L3 has valid data doesn't mean an
64012724Snikos.nikoleris@arm.com    // L1 doesn't have a more up-to-date modified copy that still
64112724Snikos.nikoleris@arm.com    // needs to be found.  As a result we always update the request if
64212724Snikos.nikoleris@arm.com    // we have it, but only declare it satisfied if we are the owner.
64312724Snikos.nikoleris@arm.com
64412724Snikos.nikoleris@arm.com    // see if we have data at all (owned or otherwise)
64512724Snikos.nikoleris@arm.com    bool have_data = blk && blk->isValid()
64612823Srmk35@cl.cam.ac.uk        && pkt->trySatisfyFunctional(&cbpw, blk_addr, is_secure, blkSize,
64712823Srmk35@cl.cam.ac.uk                                     blk->data);
64812724Snikos.nikoleris@arm.com
64912724Snikos.nikoleris@arm.com    // data we have is dirty if marked as such or if we have an
65012724Snikos.nikoleris@arm.com    // in-service MSHR that is pending a modified line
65112724Snikos.nikoleris@arm.com    bool have_dirty =
65212724Snikos.nikoleris@arm.com        have_data && (blk->isDirty() ||
65312724Snikos.nikoleris@arm.com                      (mshr && mshr->inService && mshr->isPendingModified()));
65412724Snikos.nikoleris@arm.com
65512724Snikos.nikoleris@arm.com    bool done = have_dirty ||
65612823Srmk35@cl.cam.ac.uk        cpuSidePort.trySatisfyFunctional(pkt) ||
65712823Srmk35@cl.cam.ac.uk        mshrQueue.trySatisfyFunctional(pkt, blk_addr) ||
65812823Srmk35@cl.cam.ac.uk        writeBuffer.trySatisfyFunctional(pkt, blk_addr) ||
65912823Srmk35@cl.cam.ac.uk        memSidePort.trySatisfyFunctional(pkt);
66012724Snikos.nikoleris@arm.com
66112724Snikos.nikoleris@arm.com    DPRINTF(CacheVerbose, "%s: %s %s%s%s\n", __func__,  pkt->print(),
66212724Snikos.nikoleris@arm.com            (blk && blk->isValid()) ? "valid " : "",
66312724Snikos.nikoleris@arm.com            have_data ? "data " : "", done ? "done " : "");
66412724Snikos.nikoleris@arm.com
66512724Snikos.nikoleris@arm.com    // We're leaving the cache, so pop cache->name() label
66612724Snikos.nikoleris@arm.com    pkt->popLabel();
66712724Snikos.nikoleris@arm.com
66812724Snikos.nikoleris@arm.com    if (done) {
66912724Snikos.nikoleris@arm.com        pkt->makeResponse();
67012724Snikos.nikoleris@arm.com    } else {
67112724Snikos.nikoleris@arm.com        // if it came as a request from the CPU side then make sure it
67212724Snikos.nikoleris@arm.com        // continues towards the memory side
67312724Snikos.nikoleris@arm.com        if (from_cpu_side) {
67412724Snikos.nikoleris@arm.com            memSidePort.sendFunctional(pkt);
67512724Snikos.nikoleris@arm.com        } else if (cpuSidePort.isSnooping()) {
67612724Snikos.nikoleris@arm.com            // if it came from the memory side, it must be a snoop request
67712724Snikos.nikoleris@arm.com            // and we should only forward it if we are forwarding snoops
67812724Snikos.nikoleris@arm.com            cpuSidePort.sendFunctionalSnoop(pkt);
67912724Snikos.nikoleris@arm.com        }
68012724Snikos.nikoleris@arm.com    }
68112724Snikos.nikoleris@arm.com}
68212724Snikos.nikoleris@arm.com
68312724Snikos.nikoleris@arm.com
68412724Snikos.nikoleris@arm.comvoid
68512724Snikos.nikoleris@arm.comBaseCache::cmpAndSwap(CacheBlk *blk, PacketPtr pkt)
68612724Snikos.nikoleris@arm.com{
68712724Snikos.nikoleris@arm.com    assert(pkt->isRequest());
68812724Snikos.nikoleris@arm.com
68912724Snikos.nikoleris@arm.com    uint64_t overwrite_val;
69012724Snikos.nikoleris@arm.com    bool overwrite_mem;
69112724Snikos.nikoleris@arm.com    uint64_t condition_val64;
69212724Snikos.nikoleris@arm.com    uint32_t condition_val32;
69312724Snikos.nikoleris@arm.com
69412724Snikos.nikoleris@arm.com    int offset = pkt->getOffset(blkSize);
69512724Snikos.nikoleris@arm.com    uint8_t *blk_data = blk->data + offset;
69612724Snikos.nikoleris@arm.com
69712724Snikos.nikoleris@arm.com    assert(sizeof(uint64_t) >= pkt->getSize());
69812724Snikos.nikoleris@arm.com
69912724Snikos.nikoleris@arm.com    overwrite_mem = true;
70012724Snikos.nikoleris@arm.com    // keep a copy of our possible write value, and copy what is at the
70112724Snikos.nikoleris@arm.com    // memory address into the packet
70212724Snikos.nikoleris@arm.com    pkt->writeData((uint8_t *)&overwrite_val);
70312724Snikos.nikoleris@arm.com    pkt->setData(blk_data);
70412724Snikos.nikoleris@arm.com
70512724Snikos.nikoleris@arm.com    if (pkt->req->isCondSwap()) {
70612724Snikos.nikoleris@arm.com        if (pkt->getSize() == sizeof(uint64_t)) {
70712724Snikos.nikoleris@arm.com            condition_val64 = pkt->req->getExtraData();
70812724Snikos.nikoleris@arm.com            overwrite_mem = !std::memcmp(&condition_val64, blk_data,
70912724Snikos.nikoleris@arm.com                                         sizeof(uint64_t));
71012724Snikos.nikoleris@arm.com        } else if (pkt->getSize() == sizeof(uint32_t)) {
71112724Snikos.nikoleris@arm.com            condition_val32 = (uint32_t)pkt->req->getExtraData();
71212724Snikos.nikoleris@arm.com            overwrite_mem = !std::memcmp(&condition_val32, blk_data,
71312724Snikos.nikoleris@arm.com                                         sizeof(uint32_t));
71412724Snikos.nikoleris@arm.com        } else
71512724Snikos.nikoleris@arm.com            panic("Invalid size for conditional read/write\n");
71612724Snikos.nikoleris@arm.com    }
71712724Snikos.nikoleris@arm.com
71812724Snikos.nikoleris@arm.com    if (overwrite_mem) {
71912724Snikos.nikoleris@arm.com        std::memcpy(blk_data, &overwrite_val, pkt->getSize());
72012724Snikos.nikoleris@arm.com        blk->status |= BlkDirty;
72112724Snikos.nikoleris@arm.com    }
72212724Snikos.nikoleris@arm.com}
72312724Snikos.nikoleris@arm.com
72412724Snikos.nikoleris@arm.comQueueEntry*
72512724Snikos.nikoleris@arm.comBaseCache::getNextQueueEntry()
72612724Snikos.nikoleris@arm.com{
72712724Snikos.nikoleris@arm.com    // Check both MSHR queue and write buffer for potential requests,
72812724Snikos.nikoleris@arm.com    // note that null does not mean there is no request, it could
72912724Snikos.nikoleris@arm.com    // simply be that it is not ready
73012724Snikos.nikoleris@arm.com    MSHR *miss_mshr  = mshrQueue.getNext();
73112724Snikos.nikoleris@arm.com    WriteQueueEntry *wq_entry = writeBuffer.getNext();
73212724Snikos.nikoleris@arm.com
73312724Snikos.nikoleris@arm.com    // If we got a write buffer request ready, first priority is a
73412724Snikos.nikoleris@arm.com    // full write buffer, otherwise we favour the miss requests
73512724Snikos.nikoleris@arm.com    if (wq_entry && (writeBuffer.isFull() || !miss_mshr)) {
73612724Snikos.nikoleris@arm.com        // need to search MSHR queue for conflicting earlier miss.
73712724Snikos.nikoleris@arm.com        MSHR *conflict_mshr =
73812724Snikos.nikoleris@arm.com            mshrQueue.findPending(wq_entry->blkAddr,
73912724Snikos.nikoleris@arm.com                                  wq_entry->isSecure);
74012724Snikos.nikoleris@arm.com
74112724Snikos.nikoleris@arm.com        if (conflict_mshr && conflict_mshr->order < wq_entry->order) {
74212724Snikos.nikoleris@arm.com            // Service misses in order until conflict is cleared.
74312724Snikos.nikoleris@arm.com            return conflict_mshr;
74412724Snikos.nikoleris@arm.com
74512724Snikos.nikoleris@arm.com            // @todo Note that we ignore the ready time of the conflict here
74612724Snikos.nikoleris@arm.com        }
74712724Snikos.nikoleris@arm.com
74812724Snikos.nikoleris@arm.com        // No conflicts; issue write
74912724Snikos.nikoleris@arm.com        return wq_entry;
75012724Snikos.nikoleris@arm.com    } else if (miss_mshr) {
75112724Snikos.nikoleris@arm.com        // need to check for conflicting earlier writeback
75212724Snikos.nikoleris@arm.com        WriteQueueEntry *conflict_mshr =
75312724Snikos.nikoleris@arm.com            writeBuffer.findPending(miss_mshr->blkAddr,
75412724Snikos.nikoleris@arm.com                                    miss_mshr->isSecure);
75512724Snikos.nikoleris@arm.com        if (conflict_mshr) {
75612724Snikos.nikoleris@arm.com            // not sure why we don't check order here... it was in the
75712724Snikos.nikoleris@arm.com            // original code but commented out.
75812724Snikos.nikoleris@arm.com
75912724Snikos.nikoleris@arm.com            // The only way this happens is if we are
76012724Snikos.nikoleris@arm.com            // doing a write and we didn't have permissions
76112724Snikos.nikoleris@arm.com            // then subsequently saw a writeback (owned got evicted)
76212724Snikos.nikoleris@arm.com            // We need to make sure to perform the writeback first
76312724Snikos.nikoleris@arm.com            // To preserve the dirty data, then we can issue the write
76412724Snikos.nikoleris@arm.com
76512724Snikos.nikoleris@arm.com            // should we return wq_entry here instead?  I.e. do we
76612724Snikos.nikoleris@arm.com            // have to flush writes in order?  I don't think so... not
76712724Snikos.nikoleris@arm.com            // for Alpha anyway.  Maybe for x86?
76812724Snikos.nikoleris@arm.com            return conflict_mshr;
76912724Snikos.nikoleris@arm.com
77012724Snikos.nikoleris@arm.com            // @todo Note that we ignore the ready time of the conflict here
77112724Snikos.nikoleris@arm.com        }
77212724Snikos.nikoleris@arm.com
77312724Snikos.nikoleris@arm.com        // No conflicts; issue read
77412724Snikos.nikoleris@arm.com        return miss_mshr;
77512724Snikos.nikoleris@arm.com    }
77612724Snikos.nikoleris@arm.com
77712724Snikos.nikoleris@arm.com    // fall through... no pending requests.  Try a prefetch.
77812724Snikos.nikoleris@arm.com    assert(!miss_mshr && !wq_entry);
77912724Snikos.nikoleris@arm.com    if (prefetcher && mshrQueue.canPrefetch()) {
78012724Snikos.nikoleris@arm.com        // If we have a miss queue slot, we can try a prefetch
78112724Snikos.nikoleris@arm.com        PacketPtr pkt = prefetcher->getPacket();
78212724Snikos.nikoleris@arm.com        if (pkt) {
78312724Snikos.nikoleris@arm.com            Addr pf_addr = pkt->getBlockAddr(blkSize);
78412724Snikos.nikoleris@arm.com            if (!tags->findBlock(pf_addr, pkt->isSecure()) &&
78512724Snikos.nikoleris@arm.com                !mshrQueue.findMatch(pf_addr, pkt->isSecure()) &&
78612724Snikos.nikoleris@arm.com                !writeBuffer.findMatch(pf_addr, pkt->isSecure())) {
78712724Snikos.nikoleris@arm.com                // Update statistic on number of prefetches issued
78812724Snikos.nikoleris@arm.com                // (hwpf_mshr_misses)
78912724Snikos.nikoleris@arm.com                assert(pkt->req->masterId() < system->maxMasters());
79012724Snikos.nikoleris@arm.com                mshr_misses[pkt->cmdToIndex()][pkt->req->masterId()]++;
79112724Snikos.nikoleris@arm.com
79212724Snikos.nikoleris@arm.com                // allocate an MSHR and return it, note
79312724Snikos.nikoleris@arm.com                // that we send the packet straight away, so do not
79412724Snikos.nikoleris@arm.com                // schedule the send
79512724Snikos.nikoleris@arm.com                return allocateMissBuffer(pkt, curTick(), false);
79612724Snikos.nikoleris@arm.com            } else {
79712724Snikos.nikoleris@arm.com                // free the request and packet
79812724Snikos.nikoleris@arm.com                delete pkt;
79912724Snikos.nikoleris@arm.com            }
80012724Snikos.nikoleris@arm.com        }
80112724Snikos.nikoleris@arm.com    }
80212724Snikos.nikoleris@arm.com
80312724Snikos.nikoleris@arm.com    return nullptr;
80412724Snikos.nikoleris@arm.com}
80512724Snikos.nikoleris@arm.com
80612724Snikos.nikoleris@arm.comvoid
80712724Snikos.nikoleris@arm.comBaseCache::satisfyRequest(PacketPtr pkt, CacheBlk *blk, bool, bool)
80812724Snikos.nikoleris@arm.com{
80912724Snikos.nikoleris@arm.com    assert(pkt->isRequest());
81012724Snikos.nikoleris@arm.com
81112724Snikos.nikoleris@arm.com    assert(blk && blk->isValid());
81212724Snikos.nikoleris@arm.com    // Occasionally this is not true... if we are a lower-level cache
81312724Snikos.nikoleris@arm.com    // satisfying a string of Read and ReadEx requests from
81412724Snikos.nikoleris@arm.com    // upper-level caches, a Read will mark the block as shared but we
81512724Snikos.nikoleris@arm.com    // can satisfy a following ReadEx anyway since we can rely on the
81612724Snikos.nikoleris@arm.com    // Read requester(s) to have buffered the ReadEx snoop and to
81712724Snikos.nikoleris@arm.com    // invalidate their blocks after receiving them.
81812724Snikos.nikoleris@arm.com    // assert(!pkt->needsWritable() || blk->isWritable());
81912724Snikos.nikoleris@arm.com    assert(pkt->getOffset(blkSize) + pkt->getSize() <= blkSize);
82012724Snikos.nikoleris@arm.com
82112724Snikos.nikoleris@arm.com    // Check RMW operations first since both isRead() and
82212724Snikos.nikoleris@arm.com    // isWrite() will be true for them
82312724Snikos.nikoleris@arm.com    if (pkt->cmd == MemCmd::SwapReq) {
82412766Sqtt2@cornell.edu        if (pkt->isAtomicOp()) {
82512766Sqtt2@cornell.edu            // extract data from cache and save it into the data field in
82612766Sqtt2@cornell.edu            // the packet as a return value from this atomic op
82712766Sqtt2@cornell.edu            int offset = tags->extractBlkOffset(pkt->getAddr());
82812766Sqtt2@cornell.edu            uint8_t *blk_data = blk->data + offset;
82913377Sodanrc@yahoo.com.br            pkt->setData(blk_data);
83012766Sqtt2@cornell.edu
83112766Sqtt2@cornell.edu            // execute AMO operation
83212766Sqtt2@cornell.edu            (*(pkt->getAtomicOp()))(blk_data);
83312766Sqtt2@cornell.edu
83412766Sqtt2@cornell.edu            // set block status to dirty
83512766Sqtt2@cornell.edu            blk->status |= BlkDirty;
83612766Sqtt2@cornell.edu        } else {
83712766Sqtt2@cornell.edu            cmpAndSwap(blk, pkt);
83812766Sqtt2@cornell.edu        }
83912724Snikos.nikoleris@arm.com    } else if (pkt->isWrite()) {
84012724Snikos.nikoleris@arm.com        // we have the block in a writable state and can go ahead,
84112724Snikos.nikoleris@arm.com        // note that the line may be also be considered writable in
84212724Snikos.nikoleris@arm.com        // downstream caches along the path to memory, but always
84312724Snikos.nikoleris@arm.com        // Exclusive, and never Modified
84412724Snikos.nikoleris@arm.com        assert(blk->isWritable());
84512724Snikos.nikoleris@arm.com        // Write or WriteLine at the first cache with block in writable state
84612724Snikos.nikoleris@arm.com        if (blk->checkWrite(pkt)) {
84712724Snikos.nikoleris@arm.com            pkt->writeDataToBlock(blk->data, blkSize);
84812724Snikos.nikoleris@arm.com        }
84912724Snikos.nikoleris@arm.com        // Always mark the line as dirty (and thus transition to the
85012724Snikos.nikoleris@arm.com        // Modified state) even if we are a failed StoreCond so we
85112724Snikos.nikoleris@arm.com        // supply data to any snoops that have appended themselves to
85212724Snikos.nikoleris@arm.com        // this cache before knowing the store will fail.
85312724Snikos.nikoleris@arm.com        blk->status |= BlkDirty;
85412724Snikos.nikoleris@arm.com        DPRINTF(CacheVerbose, "%s for %s (write)\n", __func__, pkt->print());
85512724Snikos.nikoleris@arm.com    } else if (pkt->isRead()) {
85612724Snikos.nikoleris@arm.com        if (pkt->isLLSC()) {
85712724Snikos.nikoleris@arm.com            blk->trackLoadLocked(pkt);
85812724Snikos.nikoleris@arm.com        }
85912724Snikos.nikoleris@arm.com
86012724Snikos.nikoleris@arm.com        // all read responses have a data payload
86112724Snikos.nikoleris@arm.com        assert(pkt->hasRespData());
86212724Snikos.nikoleris@arm.com        pkt->setDataFromBlock(blk->data, blkSize);
86312724Snikos.nikoleris@arm.com    } else if (pkt->isUpgrade()) {
86412724Snikos.nikoleris@arm.com        // sanity check
86512724Snikos.nikoleris@arm.com        assert(!pkt->hasSharers());
86612724Snikos.nikoleris@arm.com
86712724Snikos.nikoleris@arm.com        if (blk->isDirty()) {
86812724Snikos.nikoleris@arm.com            // we were in the Owned state, and a cache above us that
86912724Snikos.nikoleris@arm.com            // has the line in Shared state needs to be made aware
87012724Snikos.nikoleris@arm.com            // that the data it already has is in fact dirty
87112724Snikos.nikoleris@arm.com            pkt->setCacheResponding();
87212724Snikos.nikoleris@arm.com            blk->status &= ~BlkDirty;
87312724Snikos.nikoleris@arm.com        }
87412794Snikos.nikoleris@arm.com    } else if (pkt->isClean()) {
87512794Snikos.nikoleris@arm.com        blk->status &= ~BlkDirty;
87612724Snikos.nikoleris@arm.com    } else {
87712724Snikos.nikoleris@arm.com        assert(pkt->isInvalidate());
87812724Snikos.nikoleris@arm.com        invalidateBlock(blk);
87912724Snikos.nikoleris@arm.com        DPRINTF(CacheVerbose, "%s for %s (invalidation)\n", __func__,
88012724Snikos.nikoleris@arm.com                pkt->print());
88112724Snikos.nikoleris@arm.com    }
88212724Snikos.nikoleris@arm.com}
88312724Snikos.nikoleris@arm.com
88412724Snikos.nikoleris@arm.com/////////////////////////////////////////////////////
88512724Snikos.nikoleris@arm.com//
88612724Snikos.nikoleris@arm.com// Access path: requests coming in from the CPU side
88712724Snikos.nikoleris@arm.com//
88812724Snikos.nikoleris@arm.com/////////////////////////////////////////////////////
88912724Snikos.nikoleris@arm.com
89012724Snikos.nikoleris@arm.combool
89112724Snikos.nikoleris@arm.comBaseCache::access(PacketPtr pkt, CacheBlk *&blk, Cycles &lat,
89212724Snikos.nikoleris@arm.com                  PacketList &writebacks)
89312724Snikos.nikoleris@arm.com{
89412724Snikos.nikoleris@arm.com    // sanity check
89512724Snikos.nikoleris@arm.com    assert(pkt->isRequest());
89612724Snikos.nikoleris@arm.com
89712724Snikos.nikoleris@arm.com    chatty_assert(!(isReadOnly && pkt->isWrite()),
89812724Snikos.nikoleris@arm.com                  "Should never see a write in a read-only cache %s\n",
89912724Snikos.nikoleris@arm.com                  name());
90012724Snikos.nikoleris@arm.com
90112724Snikos.nikoleris@arm.com    // Here lat is the value passed as parameter to accessBlock() function
90212724Snikos.nikoleris@arm.com    // that can modify its value.
90312724Snikos.nikoleris@arm.com    blk = tags->accessBlock(pkt->getAddr(), pkt->isSecure(), lat);
90412724Snikos.nikoleris@arm.com
90512724Snikos.nikoleris@arm.com    DPRINTF(Cache, "%s for %s %s\n", __func__, pkt->print(),
90612724Snikos.nikoleris@arm.com            blk ? "hit " + blk->print() : "miss");
90712724Snikos.nikoleris@arm.com
90812724Snikos.nikoleris@arm.com    if (pkt->req->isCacheMaintenance()) {
90912724Snikos.nikoleris@arm.com        // A cache maintenance operation is always forwarded to the
91012724Snikos.nikoleris@arm.com        // memory below even if the block is found in dirty state.
91112724Snikos.nikoleris@arm.com
91212724Snikos.nikoleris@arm.com        // We defer any changes to the state of the block until we
91312724Snikos.nikoleris@arm.com        // create and mark as in service the mshr for the downstream
91412724Snikos.nikoleris@arm.com        // packet.
91512724Snikos.nikoleris@arm.com        return false;
91612724Snikos.nikoleris@arm.com    }
91712724Snikos.nikoleris@arm.com
91812724Snikos.nikoleris@arm.com    if (pkt->isEviction()) {
91912724Snikos.nikoleris@arm.com        // We check for presence of block in above caches before issuing
92012724Snikos.nikoleris@arm.com        // Writeback or CleanEvict to write buffer. Therefore the only
92112724Snikos.nikoleris@arm.com        // possible cases can be of a CleanEvict packet coming from above
92212724Snikos.nikoleris@arm.com        // encountering a Writeback generated in this cache peer cache and
92312724Snikos.nikoleris@arm.com        // waiting in the write buffer. Cases of upper level peer caches
92412724Snikos.nikoleris@arm.com        // generating CleanEvict and Writeback or simply CleanEvict and
92512724Snikos.nikoleris@arm.com        // CleanEvict almost simultaneously will be caught by snoops sent out
92612724Snikos.nikoleris@arm.com        // by crossbar.
92712724Snikos.nikoleris@arm.com        WriteQueueEntry *wb_entry = writeBuffer.findMatch(pkt->getAddr(),
92812724Snikos.nikoleris@arm.com                                                          pkt->isSecure());
92912724Snikos.nikoleris@arm.com        if (wb_entry) {
93012724Snikos.nikoleris@arm.com            assert(wb_entry->getNumTargets() == 1);
93112724Snikos.nikoleris@arm.com            PacketPtr wbPkt = wb_entry->getTarget()->pkt;
93212724Snikos.nikoleris@arm.com            assert(wbPkt->isWriteback());
93312724Snikos.nikoleris@arm.com
93412724Snikos.nikoleris@arm.com            if (pkt->isCleanEviction()) {
93512724Snikos.nikoleris@arm.com                // The CleanEvict and WritebackClean snoops into other
93612724Snikos.nikoleris@arm.com                // peer caches of the same level while traversing the
93712724Snikos.nikoleris@arm.com                // crossbar. If a copy of the block is found, the
93812724Snikos.nikoleris@arm.com                // packet is deleted in the crossbar. Hence, none of
93912724Snikos.nikoleris@arm.com                // the other upper level caches connected to this
94012724Snikos.nikoleris@arm.com                // cache have the block, so we can clear the
94112724Snikos.nikoleris@arm.com                // BLOCK_CACHED flag in the Writeback if set and
94212724Snikos.nikoleris@arm.com                // discard the CleanEvict by returning true.
94312724Snikos.nikoleris@arm.com                wbPkt->clearBlockCached();
94412724Snikos.nikoleris@arm.com                return true;
94512724Snikos.nikoleris@arm.com            } else {
94612724Snikos.nikoleris@arm.com                assert(pkt->cmd == MemCmd::WritebackDirty);
94712724Snikos.nikoleris@arm.com                // Dirty writeback from above trumps our clean
94812724Snikos.nikoleris@arm.com                // writeback... discard here
94912724Snikos.nikoleris@arm.com                // Note: markInService will remove entry from writeback buffer.
95012724Snikos.nikoleris@arm.com                markInService(wb_entry);
95112724Snikos.nikoleris@arm.com                delete wbPkt;
95212724Snikos.nikoleris@arm.com            }
95312724Snikos.nikoleris@arm.com        }
95412724Snikos.nikoleris@arm.com    }
95512724Snikos.nikoleris@arm.com
95612724Snikos.nikoleris@arm.com    // Writeback handling is special case.  We can write the block into
95712724Snikos.nikoleris@arm.com    // the cache without having a writeable copy (or any copy at all).
95812724Snikos.nikoleris@arm.com    if (pkt->isWriteback()) {
95912724Snikos.nikoleris@arm.com        assert(blkSize == pkt->getSize());
96012724Snikos.nikoleris@arm.com
96112724Snikos.nikoleris@arm.com        // we could get a clean writeback while we are having
96212724Snikos.nikoleris@arm.com        // outstanding accesses to a block, do the simple thing for
96312724Snikos.nikoleris@arm.com        // now and drop the clean writeback so that we do not upset
96412724Snikos.nikoleris@arm.com        // any ordering/decisions about ownership already taken
96512724Snikos.nikoleris@arm.com        if (pkt->cmd == MemCmd::WritebackClean &&
96612724Snikos.nikoleris@arm.com            mshrQueue.findMatch(pkt->getAddr(), pkt->isSecure())) {
96712724Snikos.nikoleris@arm.com            DPRINTF(Cache, "Clean writeback %#llx to block with MSHR, "
96812724Snikos.nikoleris@arm.com                    "dropping\n", pkt->getAddr());
96912724Snikos.nikoleris@arm.com            return true;
97012724Snikos.nikoleris@arm.com        }
97112724Snikos.nikoleris@arm.com
97212724Snikos.nikoleris@arm.com        if (!blk) {
97312724Snikos.nikoleris@arm.com            // need to do a replacement
97412754Sodanrc@yahoo.com.br            blk = allocateBlock(pkt, writebacks);
97512724Snikos.nikoleris@arm.com            if (!blk) {
97612724Snikos.nikoleris@arm.com                // no replaceable block available: give up, fwd to next level.
97712724Snikos.nikoleris@arm.com                incMissCount(pkt);
97812724Snikos.nikoleris@arm.com                return false;
97912724Snikos.nikoleris@arm.com            }
98012724Snikos.nikoleris@arm.com
98112724Snikos.nikoleris@arm.com            blk->status |= (BlkValid | BlkReadable);
98212724Snikos.nikoleris@arm.com        }
98312724Snikos.nikoleris@arm.com        // only mark the block dirty if we got a writeback command,
98412724Snikos.nikoleris@arm.com        // and leave it as is for a clean writeback
98512724Snikos.nikoleris@arm.com        if (pkt->cmd == MemCmd::WritebackDirty) {
98612724Snikos.nikoleris@arm.com            // TODO: the coherent cache can assert(!blk->isDirty());
98712724Snikos.nikoleris@arm.com            blk->status |= BlkDirty;
98812724Snikos.nikoleris@arm.com        }
98912724Snikos.nikoleris@arm.com        // if the packet does not have sharers, it is passing
99012724Snikos.nikoleris@arm.com        // writable, and we got the writeback in Modified or Exclusive
99112724Snikos.nikoleris@arm.com        // state, if not we are in the Owned or Shared state
99212724Snikos.nikoleris@arm.com        if (!pkt->hasSharers()) {
99312724Snikos.nikoleris@arm.com            blk->status |= BlkWritable;
99412724Snikos.nikoleris@arm.com        }
99512724Snikos.nikoleris@arm.com        // nothing else to do; writeback doesn't expect response
99612724Snikos.nikoleris@arm.com        assert(!pkt->needsResponse());
99712724Snikos.nikoleris@arm.com        pkt->writeDataToBlock(blk->data, blkSize);
99812724Snikos.nikoleris@arm.com        DPRINTF(Cache, "%s new state is %s\n", __func__, blk->print());
99912724Snikos.nikoleris@arm.com        incHitCount(pkt);
100012724Snikos.nikoleris@arm.com        // populate the time when the block will be ready to access.
100112724Snikos.nikoleris@arm.com        blk->whenReady = clockEdge(fillLatency) + pkt->headerDelay +
100212724Snikos.nikoleris@arm.com            pkt->payloadDelay;
100312724Snikos.nikoleris@arm.com        return true;
100412724Snikos.nikoleris@arm.com    } else if (pkt->cmd == MemCmd::CleanEvict) {
100512724Snikos.nikoleris@arm.com        if (blk) {
100612724Snikos.nikoleris@arm.com            // Found the block in the tags, need to stop CleanEvict from
100712724Snikos.nikoleris@arm.com            // propagating further down the hierarchy. Returning true will
100812724Snikos.nikoleris@arm.com            // treat the CleanEvict like a satisfied write request and delete
100912724Snikos.nikoleris@arm.com            // it.
101012724Snikos.nikoleris@arm.com            return true;
101112724Snikos.nikoleris@arm.com        }
101212724Snikos.nikoleris@arm.com        // We didn't find the block here, propagate the CleanEvict further
101312724Snikos.nikoleris@arm.com        // down the memory hierarchy. Returning false will treat the CleanEvict
101412724Snikos.nikoleris@arm.com        // like a Writeback which could not find a replaceable block so has to
101512724Snikos.nikoleris@arm.com        // go to next level.
101612724Snikos.nikoleris@arm.com        return false;
101712724Snikos.nikoleris@arm.com    } else if (pkt->cmd == MemCmd::WriteClean) {
101812724Snikos.nikoleris@arm.com        // WriteClean handling is a special case. We can allocate a
101912724Snikos.nikoleris@arm.com        // block directly if it doesn't exist and we can update the
102012724Snikos.nikoleris@arm.com        // block immediately. The WriteClean transfers the ownership
102112724Snikos.nikoleris@arm.com        // of the block as well.
102212724Snikos.nikoleris@arm.com        assert(blkSize == pkt->getSize());
102312724Snikos.nikoleris@arm.com
102412724Snikos.nikoleris@arm.com        if (!blk) {
102512724Snikos.nikoleris@arm.com            if (pkt->writeThrough()) {
102612724Snikos.nikoleris@arm.com                // if this is a write through packet, we don't try to
102712724Snikos.nikoleris@arm.com                // allocate if the block is not present
102812724Snikos.nikoleris@arm.com                return false;
102912724Snikos.nikoleris@arm.com            } else {
103012724Snikos.nikoleris@arm.com                // a writeback that misses needs to allocate a new block
103112754Sodanrc@yahoo.com.br                blk = allocateBlock(pkt, writebacks);
103212724Snikos.nikoleris@arm.com                if (!blk) {
103312724Snikos.nikoleris@arm.com                    // no replaceable block available: give up, fwd to
103412724Snikos.nikoleris@arm.com                    // next level.
103512724Snikos.nikoleris@arm.com                    incMissCount(pkt);
103612724Snikos.nikoleris@arm.com                    return false;
103712724Snikos.nikoleris@arm.com                }
103812724Snikos.nikoleris@arm.com
103912724Snikos.nikoleris@arm.com                blk->status |= (BlkValid | BlkReadable);
104012724Snikos.nikoleris@arm.com            }
104112724Snikos.nikoleris@arm.com        }
104212724Snikos.nikoleris@arm.com
104312724Snikos.nikoleris@arm.com        // at this point either this is a writeback or a write-through
104412724Snikos.nikoleris@arm.com        // write clean operation and the block is already in this
104512724Snikos.nikoleris@arm.com        // cache, we need to update the data and the block flags
104612724Snikos.nikoleris@arm.com        assert(blk);
104712724Snikos.nikoleris@arm.com        // TODO: the coherent cache can assert(!blk->isDirty());
104812724Snikos.nikoleris@arm.com        if (!pkt->writeThrough()) {
104912724Snikos.nikoleris@arm.com            blk->status |= BlkDirty;
105012724Snikos.nikoleris@arm.com        }
105112724Snikos.nikoleris@arm.com        // nothing else to do; writeback doesn't expect response
105212724Snikos.nikoleris@arm.com        assert(!pkt->needsResponse());
105312724Snikos.nikoleris@arm.com        pkt->writeDataToBlock(blk->data, blkSize);
105412724Snikos.nikoleris@arm.com        DPRINTF(Cache, "%s new state is %s\n", __func__, blk->print());
105512724Snikos.nikoleris@arm.com
105612724Snikos.nikoleris@arm.com        incHitCount(pkt);
105712724Snikos.nikoleris@arm.com        // populate the time when the block will be ready to access.
105812724Snikos.nikoleris@arm.com        blk->whenReady = clockEdge(fillLatency) + pkt->headerDelay +
105912724Snikos.nikoleris@arm.com            pkt->payloadDelay;
106012724Snikos.nikoleris@arm.com        // if this a write-through packet it will be sent to cache
106112724Snikos.nikoleris@arm.com        // below
106212724Snikos.nikoleris@arm.com        return !pkt->writeThrough();
106312724Snikos.nikoleris@arm.com    } else if (blk && (pkt->needsWritable() ? blk->isWritable() :
106412724Snikos.nikoleris@arm.com                       blk->isReadable())) {
106512724Snikos.nikoleris@arm.com        // OK to satisfy access
106612724Snikos.nikoleris@arm.com        incHitCount(pkt);
106712724Snikos.nikoleris@arm.com        satisfyRequest(pkt, blk);
106812724Snikos.nikoleris@arm.com        maintainClusivity(pkt->fromCache(), blk);
106912724Snikos.nikoleris@arm.com
107012724Snikos.nikoleris@arm.com        return true;
107112724Snikos.nikoleris@arm.com    }
107212724Snikos.nikoleris@arm.com
107312724Snikos.nikoleris@arm.com    // Can't satisfy access normally... either no block (blk == nullptr)
107412724Snikos.nikoleris@arm.com    // or have block but need writable
107512724Snikos.nikoleris@arm.com
107612724Snikos.nikoleris@arm.com    incMissCount(pkt);
107712724Snikos.nikoleris@arm.com
107812724Snikos.nikoleris@arm.com    if (!blk && pkt->isLLSC() && pkt->isWrite()) {
107912724Snikos.nikoleris@arm.com        // complete miss on store conditional... just give up now
108012724Snikos.nikoleris@arm.com        pkt->req->setExtraData(0);
108112724Snikos.nikoleris@arm.com        return true;
108212724Snikos.nikoleris@arm.com    }
108312724Snikos.nikoleris@arm.com
108412724Snikos.nikoleris@arm.com    return false;
108512724Snikos.nikoleris@arm.com}
108612724Snikos.nikoleris@arm.com
108712724Snikos.nikoleris@arm.comvoid
108812724Snikos.nikoleris@arm.comBaseCache::maintainClusivity(bool from_cache, CacheBlk *blk)
108912724Snikos.nikoleris@arm.com{
109012724Snikos.nikoleris@arm.com    if (from_cache && blk && blk->isValid() && !blk->isDirty() &&
109112724Snikos.nikoleris@arm.com        clusivity == Enums::mostly_excl) {
109212724Snikos.nikoleris@arm.com        // if we have responded to a cache, and our block is still
109312724Snikos.nikoleris@arm.com        // valid, but not dirty, and this cache is mostly exclusive
109412724Snikos.nikoleris@arm.com        // with respect to the cache above, drop the block
109512724Snikos.nikoleris@arm.com        invalidateBlock(blk);
109612724Snikos.nikoleris@arm.com    }
109712724Snikos.nikoleris@arm.com}
109812724Snikos.nikoleris@arm.com
109912724Snikos.nikoleris@arm.comCacheBlk*
110012724Snikos.nikoleris@arm.comBaseCache::handleFill(PacketPtr pkt, CacheBlk *blk, PacketList &writebacks,
110112724Snikos.nikoleris@arm.com                      bool allocate)
110212724Snikos.nikoleris@arm.com{
110313350Snikos.nikoleris@arm.com    assert(pkt->isResponse());
110412724Snikos.nikoleris@arm.com    Addr addr = pkt->getAddr();
110512724Snikos.nikoleris@arm.com    bool is_secure = pkt->isSecure();
110612724Snikos.nikoleris@arm.com#if TRACING_ON
110712724Snikos.nikoleris@arm.com    CacheBlk::State old_state = blk ? blk->status : 0;
110812724Snikos.nikoleris@arm.com#endif
110912724Snikos.nikoleris@arm.com
111012724Snikos.nikoleris@arm.com    // When handling a fill, we should have no writes to this line.
111112724Snikos.nikoleris@arm.com    assert(addr == pkt->getBlockAddr(blkSize));
111212724Snikos.nikoleris@arm.com    assert(!writeBuffer.findMatch(addr, is_secure));
111312724Snikos.nikoleris@arm.com
111412724Snikos.nikoleris@arm.com    if (!blk) {
111512724Snikos.nikoleris@arm.com        // better have read new data...
111613350Snikos.nikoleris@arm.com        assert(pkt->hasData() || pkt->cmd == MemCmd::InvalidateResp);
111712724Snikos.nikoleris@arm.com
111812724Snikos.nikoleris@arm.com        // need to do a replacement if allocating, otherwise we stick
111912724Snikos.nikoleris@arm.com        // with the temporary storage
112012754Sodanrc@yahoo.com.br        blk = allocate ? allocateBlock(pkt, writebacks) : nullptr;
112112724Snikos.nikoleris@arm.com
112212724Snikos.nikoleris@arm.com        if (!blk) {
112312724Snikos.nikoleris@arm.com            // No replaceable block or a mostly exclusive
112412724Snikos.nikoleris@arm.com            // cache... just use temporary storage to complete the
112512724Snikos.nikoleris@arm.com            // current request and then get rid of it
112612724Snikos.nikoleris@arm.com            assert(!tempBlock->isValid());
112712724Snikos.nikoleris@arm.com            blk = tempBlock;
112812730Sodanrc@yahoo.com.br            tempBlock->insert(addr, is_secure);
112912724Snikos.nikoleris@arm.com            DPRINTF(Cache, "using temp block for %#llx (%s)\n", addr,
113012724Snikos.nikoleris@arm.com                    is_secure ? "s" : "ns");
113112724Snikos.nikoleris@arm.com        }
113212724Snikos.nikoleris@arm.com
113312724Snikos.nikoleris@arm.com        // we should never be overwriting a valid block
113412724Snikos.nikoleris@arm.com        assert(!blk->isValid());
113512724Snikos.nikoleris@arm.com    } else {
113612724Snikos.nikoleris@arm.com        // existing block... probably an upgrade
113712747Sodanrc@yahoo.com.br        assert(regenerateBlkAddr(blk) == addr);
113812729Sodanrc@yahoo.com.br        assert(blk->isSecure() == is_secure);
113912724Snikos.nikoleris@arm.com        // either we're getting new data or the block should already be valid
114012724Snikos.nikoleris@arm.com        assert(pkt->hasData() || blk->isValid());
114112724Snikos.nikoleris@arm.com        // don't clear block status... if block is already dirty we
114212724Snikos.nikoleris@arm.com        // don't want to lose that
114312724Snikos.nikoleris@arm.com    }
114412724Snikos.nikoleris@arm.com
114512724Snikos.nikoleris@arm.com    blk->status |= BlkValid | BlkReadable;
114612724Snikos.nikoleris@arm.com
114712724Snikos.nikoleris@arm.com    // sanity check for whole-line writes, which should always be
114812724Snikos.nikoleris@arm.com    // marked as writable as part of the fill, and then later marked
114912724Snikos.nikoleris@arm.com    // dirty as part of satisfyRequest
115013350Snikos.nikoleris@arm.com    if (pkt->cmd == MemCmd::InvalidateResp) {
115112724Snikos.nikoleris@arm.com        assert(!pkt->hasSharers());
115212724Snikos.nikoleris@arm.com    }
115312724Snikos.nikoleris@arm.com
115412724Snikos.nikoleris@arm.com    // here we deal with setting the appropriate state of the line,
115512724Snikos.nikoleris@arm.com    // and we start by looking at the hasSharers flag, and ignore the
115612724Snikos.nikoleris@arm.com    // cacheResponding flag (normally signalling dirty data) if the
115712724Snikos.nikoleris@arm.com    // packet has sharers, thus the line is never allocated as Owned
115812724Snikos.nikoleris@arm.com    // (dirty but not writable), and always ends up being either
115912724Snikos.nikoleris@arm.com    // Shared, Exclusive or Modified, see Packet::setCacheResponding
116012724Snikos.nikoleris@arm.com    // for more details
116112724Snikos.nikoleris@arm.com    if (!pkt->hasSharers()) {
116212724Snikos.nikoleris@arm.com        // we could get a writable line from memory (rather than a
116312724Snikos.nikoleris@arm.com        // cache) even in a read-only cache, note that we set this bit
116412724Snikos.nikoleris@arm.com        // even for a read-only cache, possibly revisit this decision
116512724Snikos.nikoleris@arm.com        blk->status |= BlkWritable;
116612724Snikos.nikoleris@arm.com
116712724Snikos.nikoleris@arm.com        // check if we got this via cache-to-cache transfer (i.e., from a
116812724Snikos.nikoleris@arm.com        // cache that had the block in Modified or Owned state)
116912724Snikos.nikoleris@arm.com        if (pkt->cacheResponding()) {
117012724Snikos.nikoleris@arm.com            // we got the block in Modified state, and invalidated the
117112724Snikos.nikoleris@arm.com            // owners copy
117212724Snikos.nikoleris@arm.com            blk->status |= BlkDirty;
117312724Snikos.nikoleris@arm.com
117412724Snikos.nikoleris@arm.com            chatty_assert(!isReadOnly, "Should never see dirty snoop response "
117512724Snikos.nikoleris@arm.com                          "in read-only cache %s\n", name());
117612724Snikos.nikoleris@arm.com        }
117712724Snikos.nikoleris@arm.com    }
117812724Snikos.nikoleris@arm.com
117912724Snikos.nikoleris@arm.com    DPRINTF(Cache, "Block addr %#llx (%s) moving from state %x to %s\n",
118012724Snikos.nikoleris@arm.com            addr, is_secure ? "s" : "ns", old_state, blk->print());
118112724Snikos.nikoleris@arm.com
118212724Snikos.nikoleris@arm.com    // if we got new data, copy it in (checking for a read response
118312724Snikos.nikoleris@arm.com    // and a response that has data is the same in the end)
118412724Snikos.nikoleris@arm.com    if (pkt->isRead()) {
118512724Snikos.nikoleris@arm.com        // sanity checks
118612724Snikos.nikoleris@arm.com        assert(pkt->hasData());
118712724Snikos.nikoleris@arm.com        assert(pkt->getSize() == blkSize);
118812724Snikos.nikoleris@arm.com
118912724Snikos.nikoleris@arm.com        pkt->writeDataToBlock(blk->data, blkSize);
119012724Snikos.nikoleris@arm.com    }
119112724Snikos.nikoleris@arm.com    // We pay for fillLatency here.
119212724Snikos.nikoleris@arm.com    blk->whenReady = clockEdge() + fillLatency * clockPeriod() +
119312724Snikos.nikoleris@arm.com        pkt->payloadDelay;
119412724Snikos.nikoleris@arm.com
119512724Snikos.nikoleris@arm.com    return blk;
119612724Snikos.nikoleris@arm.com}
119712724Snikos.nikoleris@arm.com
119812724Snikos.nikoleris@arm.comCacheBlk*
119912754Sodanrc@yahoo.com.brBaseCache::allocateBlock(const PacketPtr pkt, PacketList &writebacks)
120012724Snikos.nikoleris@arm.com{
120112754Sodanrc@yahoo.com.br    // Get address
120212754Sodanrc@yahoo.com.br    const Addr addr = pkt->getAddr();
120312754Sodanrc@yahoo.com.br
120412754Sodanrc@yahoo.com.br    // Get secure bit
120512754Sodanrc@yahoo.com.br    const bool is_secure = pkt->isSecure();
120612754Sodanrc@yahoo.com.br
120712724Snikos.nikoleris@arm.com    // Find replacement victim
120812744Sodanrc@yahoo.com.br    std::vector<CacheBlk*> evict_blks;
120912746Sodanrc@yahoo.com.br    CacheBlk *victim = tags->findVictim(addr, is_secure, evict_blks);
121012724Snikos.nikoleris@arm.com
121112724Snikos.nikoleris@arm.com    // It is valid to return nullptr if there is no victim
121212744Sodanrc@yahoo.com.br    if (!victim)
121312724Snikos.nikoleris@arm.com        return nullptr;
121412724Snikos.nikoleris@arm.com
121513222Sodanrc@yahoo.com.br    // Print victim block's information
121613222Sodanrc@yahoo.com.br    DPRINTF(CacheRepl, "Replacement victim: %s\n", victim->print());
121713222Sodanrc@yahoo.com.br
121812744Sodanrc@yahoo.com.br    // Check for transient state allocations. If any of the entries listed
121912744Sodanrc@yahoo.com.br    // for eviction has a transient state, the allocation fails
122012744Sodanrc@yahoo.com.br    for (const auto& blk : evict_blks) {
122112744Sodanrc@yahoo.com.br        if (blk->isValid()) {
122212744Sodanrc@yahoo.com.br            Addr repl_addr = regenerateBlkAddr(blk);
122312744Sodanrc@yahoo.com.br            MSHR *repl_mshr = mshrQueue.findMatch(repl_addr, blk->isSecure());
122412744Sodanrc@yahoo.com.br            if (repl_mshr) {
122512744Sodanrc@yahoo.com.br                // must be an outstanding upgrade or clean request
122612744Sodanrc@yahoo.com.br                // on a block we're about to replace...
122712744Sodanrc@yahoo.com.br                assert((!blk->isWritable() && repl_mshr->needsWritable()) ||
122812744Sodanrc@yahoo.com.br                       repl_mshr->isCleaning());
122912724Snikos.nikoleris@arm.com
123012744Sodanrc@yahoo.com.br                // too hard to replace block with transient state
123112744Sodanrc@yahoo.com.br                // allocation failed, block not inserted
123212744Sodanrc@yahoo.com.br                return nullptr;
123312744Sodanrc@yahoo.com.br            }
123412744Sodanrc@yahoo.com.br        }
123512744Sodanrc@yahoo.com.br    }
123612744Sodanrc@yahoo.com.br
123712744Sodanrc@yahoo.com.br    // The victim will be replaced by a new entry, so increase the replacement
123812744Sodanrc@yahoo.com.br    // counter if a valid block is being replaced
123912744Sodanrc@yahoo.com.br    if (victim->isValid()) {
124012744Sodanrc@yahoo.com.br        DPRINTF(Cache, "replacement: replacing %#llx (%s) with %#llx "
124112744Sodanrc@yahoo.com.br                "(%s): %s\n", regenerateBlkAddr(victim),
124212744Sodanrc@yahoo.com.br                victim->isSecure() ? "s" : "ns",
124312744Sodanrc@yahoo.com.br                addr, is_secure ? "s" : "ns",
124412744Sodanrc@yahoo.com.br                victim->isDirty() ? "writeback" : "clean");
124512744Sodanrc@yahoo.com.br
124612744Sodanrc@yahoo.com.br        replacements++;
124712744Sodanrc@yahoo.com.br    }
124812744Sodanrc@yahoo.com.br
124912744Sodanrc@yahoo.com.br    // Evict valid blocks associated to this victim block
125012744Sodanrc@yahoo.com.br    for (const auto& blk : evict_blks) {
125112744Sodanrc@yahoo.com.br        if (blk->isValid()) {
125212724Snikos.nikoleris@arm.com            if (blk->wasPrefetched()) {
125312724Snikos.nikoleris@arm.com                unusedPrefetches++;
125412724Snikos.nikoleris@arm.com            }
125512744Sodanrc@yahoo.com.br
125612724Snikos.nikoleris@arm.com            evictBlock(blk, writebacks);
125712724Snikos.nikoleris@arm.com        }
125812724Snikos.nikoleris@arm.com    }
125912724Snikos.nikoleris@arm.com
126012754Sodanrc@yahoo.com.br    // Insert new block at victimized entry
126113215Sodanrc@yahoo.com.br    tags->insertBlock(addr, is_secure, pkt->req->masterId(),
126213215Sodanrc@yahoo.com.br                      pkt->req->taskId(), victim);
126312754Sodanrc@yahoo.com.br
126412744Sodanrc@yahoo.com.br    return victim;
126512724Snikos.nikoleris@arm.com}
126612724Snikos.nikoleris@arm.com
126712724Snikos.nikoleris@arm.comvoid
126812724Snikos.nikoleris@arm.comBaseCache::invalidateBlock(CacheBlk *blk)
126912724Snikos.nikoleris@arm.com{
127013376Sodanrc@yahoo.com.br    // If handling a block present in the Tags, let it do its invalidation
127113376Sodanrc@yahoo.com.br    // process, which will update stats and invalidate the block itself
127213376Sodanrc@yahoo.com.br    if (blk != tempBlock) {
127312724Snikos.nikoleris@arm.com        tags->invalidate(blk);
127413376Sodanrc@yahoo.com.br    } else {
127513376Sodanrc@yahoo.com.br        tempBlock->invalidate();
127613376Sodanrc@yahoo.com.br    }
127712724Snikos.nikoleris@arm.com}
127812724Snikos.nikoleris@arm.com
127913358Sodanrc@yahoo.com.brvoid
128013358Sodanrc@yahoo.com.brBaseCache::evictBlock(CacheBlk *blk, PacketList &writebacks)
128113358Sodanrc@yahoo.com.br{
128213358Sodanrc@yahoo.com.br    PacketPtr pkt = evictBlock(blk);
128313358Sodanrc@yahoo.com.br    if (pkt) {
128413358Sodanrc@yahoo.com.br        writebacks.push_back(pkt);
128513358Sodanrc@yahoo.com.br    }
128613358Sodanrc@yahoo.com.br}
128713358Sodanrc@yahoo.com.br
128812724Snikos.nikoleris@arm.comPacketPtr
128912724Snikos.nikoleris@arm.comBaseCache::writebackBlk(CacheBlk *blk)
129012724Snikos.nikoleris@arm.com{
129112724Snikos.nikoleris@arm.com    chatty_assert(!isReadOnly || writebackClean,
129212724Snikos.nikoleris@arm.com                  "Writeback from read-only cache");
129312724Snikos.nikoleris@arm.com    assert(blk && blk->isValid() && (blk->isDirty() || writebackClean));
129412724Snikos.nikoleris@arm.com
129512724Snikos.nikoleris@arm.com    writebacks[Request::wbMasterId]++;
129612724Snikos.nikoleris@arm.com
129712749Sgiacomo.travaglini@arm.com    RequestPtr req = std::make_shared<Request>(
129812749Sgiacomo.travaglini@arm.com        regenerateBlkAddr(blk), blkSize, 0, Request::wbMasterId);
129912749Sgiacomo.travaglini@arm.com
130012724Snikos.nikoleris@arm.com    if (blk->isSecure())
130112724Snikos.nikoleris@arm.com        req->setFlags(Request::SECURE);
130212724Snikos.nikoleris@arm.com
130312724Snikos.nikoleris@arm.com    req->taskId(blk->task_id);
130412724Snikos.nikoleris@arm.com
130512724Snikos.nikoleris@arm.com    PacketPtr pkt =
130612724Snikos.nikoleris@arm.com        new Packet(req, blk->isDirty() ?
130712724Snikos.nikoleris@arm.com                   MemCmd::WritebackDirty : MemCmd::WritebackClean);
130812724Snikos.nikoleris@arm.com
130912724Snikos.nikoleris@arm.com    DPRINTF(Cache, "Create Writeback %s writable: %d, dirty: %d\n",
131012724Snikos.nikoleris@arm.com            pkt->print(), blk->isWritable(), blk->isDirty());
131112724Snikos.nikoleris@arm.com
131212724Snikos.nikoleris@arm.com    if (blk->isWritable()) {
131312724Snikos.nikoleris@arm.com        // not asserting shared means we pass the block in modified
131412724Snikos.nikoleris@arm.com        // state, mark our own block non-writeable
131512724Snikos.nikoleris@arm.com        blk->status &= ~BlkWritable;
131612724Snikos.nikoleris@arm.com    } else {
131712724Snikos.nikoleris@arm.com        // we are in the Owned state, tell the receiver
131812724Snikos.nikoleris@arm.com        pkt->setHasSharers();
131912724Snikos.nikoleris@arm.com    }
132012724Snikos.nikoleris@arm.com
132112724Snikos.nikoleris@arm.com    // make sure the block is not marked dirty
132212724Snikos.nikoleris@arm.com    blk->status &= ~BlkDirty;
132312724Snikos.nikoleris@arm.com
132412724Snikos.nikoleris@arm.com    pkt->allocate();
132512724Snikos.nikoleris@arm.com    pkt->setDataFromBlock(blk->data, blkSize);
132612724Snikos.nikoleris@arm.com
132712724Snikos.nikoleris@arm.com    return pkt;
132812724Snikos.nikoleris@arm.com}
132912724Snikos.nikoleris@arm.com
133012724Snikos.nikoleris@arm.comPacketPtr
133112724Snikos.nikoleris@arm.comBaseCache::writecleanBlk(CacheBlk *blk, Request::Flags dest, PacketId id)
133212724Snikos.nikoleris@arm.com{
133312749Sgiacomo.travaglini@arm.com    RequestPtr req = std::make_shared<Request>(
133412749Sgiacomo.travaglini@arm.com        regenerateBlkAddr(blk), blkSize, 0, Request::wbMasterId);
133512749Sgiacomo.travaglini@arm.com
133612724Snikos.nikoleris@arm.com    if (blk->isSecure()) {
133712724Snikos.nikoleris@arm.com        req->setFlags(Request::SECURE);
133812724Snikos.nikoleris@arm.com    }
133912724Snikos.nikoleris@arm.com    req->taskId(blk->task_id);
134012724Snikos.nikoleris@arm.com
134112724Snikos.nikoleris@arm.com    PacketPtr pkt = new Packet(req, MemCmd::WriteClean, blkSize, id);
134212724Snikos.nikoleris@arm.com
134312724Snikos.nikoleris@arm.com    if (dest) {
134412724Snikos.nikoleris@arm.com        req->setFlags(dest);
134512724Snikos.nikoleris@arm.com        pkt->setWriteThrough();
134612724Snikos.nikoleris@arm.com    }
134712724Snikos.nikoleris@arm.com
134812724Snikos.nikoleris@arm.com    DPRINTF(Cache, "Create %s writable: %d, dirty: %d\n", pkt->print(),
134912724Snikos.nikoleris@arm.com            blk->isWritable(), blk->isDirty());
135012724Snikos.nikoleris@arm.com
135112724Snikos.nikoleris@arm.com    if (blk->isWritable()) {
135212724Snikos.nikoleris@arm.com        // not asserting shared means we pass the block in modified
135312724Snikos.nikoleris@arm.com        // state, mark our own block non-writeable
135412724Snikos.nikoleris@arm.com        blk->status &= ~BlkWritable;
135512724Snikos.nikoleris@arm.com    } else {
135612724Snikos.nikoleris@arm.com        // we are in the Owned state, tell the receiver
135712724Snikos.nikoleris@arm.com        pkt->setHasSharers();
135812724Snikos.nikoleris@arm.com    }
135912724Snikos.nikoleris@arm.com
136012724Snikos.nikoleris@arm.com    // make sure the block is not marked dirty
136112724Snikos.nikoleris@arm.com    blk->status &= ~BlkDirty;
136212724Snikos.nikoleris@arm.com
136312724Snikos.nikoleris@arm.com    pkt->allocate();
136412724Snikos.nikoleris@arm.com    pkt->setDataFromBlock(blk->data, blkSize);
136512724Snikos.nikoleris@arm.com
136612724Snikos.nikoleris@arm.com    return pkt;
136712724Snikos.nikoleris@arm.com}
136812724Snikos.nikoleris@arm.com
136912724Snikos.nikoleris@arm.com
137012724Snikos.nikoleris@arm.comvoid
137112724Snikos.nikoleris@arm.comBaseCache::memWriteback()
137212724Snikos.nikoleris@arm.com{
137312728Snikos.nikoleris@arm.com    tags->forEachBlk([this](CacheBlk &blk) { writebackVisitor(blk); });
137412724Snikos.nikoleris@arm.com}
137512724Snikos.nikoleris@arm.com
137612724Snikos.nikoleris@arm.comvoid
137712724Snikos.nikoleris@arm.comBaseCache::memInvalidate()
137812724Snikos.nikoleris@arm.com{
137912728Snikos.nikoleris@arm.com    tags->forEachBlk([this](CacheBlk &blk) { invalidateVisitor(blk); });
138012724Snikos.nikoleris@arm.com}
138112724Snikos.nikoleris@arm.com
138212724Snikos.nikoleris@arm.combool
138312724Snikos.nikoleris@arm.comBaseCache::isDirty() const
138412724Snikos.nikoleris@arm.com{
138512728Snikos.nikoleris@arm.com    return tags->anyBlk([](CacheBlk &blk) { return blk.isDirty(); });
138612724Snikos.nikoleris@arm.com}
138712724Snikos.nikoleris@arm.com
138813416Sjavier.bueno@metempsy.combool
138913416Sjavier.bueno@metempsy.comBaseCache::coalesce() const
139013416Sjavier.bueno@metempsy.com{
139113416Sjavier.bueno@metempsy.com    return writeAllocator && writeAllocator->coalesce();
139213416Sjavier.bueno@metempsy.com}
139313416Sjavier.bueno@metempsy.com
139412728Snikos.nikoleris@arm.comvoid
139512724Snikos.nikoleris@arm.comBaseCache::writebackVisitor(CacheBlk &blk)
139612724Snikos.nikoleris@arm.com{
139712724Snikos.nikoleris@arm.com    if (blk.isDirty()) {
139812724Snikos.nikoleris@arm.com        assert(blk.isValid());
139912724Snikos.nikoleris@arm.com
140012749Sgiacomo.travaglini@arm.com        RequestPtr request = std::make_shared<Request>(
140112749Sgiacomo.travaglini@arm.com            regenerateBlkAddr(&blk), blkSize, 0, Request::funcMasterId);
140212749Sgiacomo.travaglini@arm.com
140312749Sgiacomo.travaglini@arm.com        request->taskId(blk.task_id);
140412724Snikos.nikoleris@arm.com        if (blk.isSecure()) {
140512749Sgiacomo.travaglini@arm.com            request->setFlags(Request::SECURE);
140612724Snikos.nikoleris@arm.com        }
140712724Snikos.nikoleris@arm.com
140812749Sgiacomo.travaglini@arm.com        Packet packet(request, MemCmd::WriteReq);
140912724Snikos.nikoleris@arm.com        packet.dataStatic(blk.data);
141012724Snikos.nikoleris@arm.com
141112724Snikos.nikoleris@arm.com        memSidePort.sendFunctional(&packet);
141212724Snikos.nikoleris@arm.com
141312724Snikos.nikoleris@arm.com        blk.status &= ~BlkDirty;
141412724Snikos.nikoleris@arm.com    }
141512724Snikos.nikoleris@arm.com}
141612724Snikos.nikoleris@arm.com
141712728Snikos.nikoleris@arm.comvoid
141812724Snikos.nikoleris@arm.comBaseCache::invalidateVisitor(CacheBlk &blk)
141912724Snikos.nikoleris@arm.com{
142012724Snikos.nikoleris@arm.com    if (blk.isDirty())
142112724Snikos.nikoleris@arm.com        warn_once("Invalidating dirty cache lines. " \
142212724Snikos.nikoleris@arm.com                  "Expect things to break.\n");
142312724Snikos.nikoleris@arm.com
142412724Snikos.nikoleris@arm.com    if (blk.isValid()) {
142512724Snikos.nikoleris@arm.com        assert(!blk.isDirty());
142612724Snikos.nikoleris@arm.com        invalidateBlock(&blk);
142712724Snikos.nikoleris@arm.com    }
142812724Snikos.nikoleris@arm.com}
142912724Snikos.nikoleris@arm.com
143012724Snikos.nikoleris@arm.comTick
143112724Snikos.nikoleris@arm.comBaseCache::nextQueueReadyTime() const
143212724Snikos.nikoleris@arm.com{
143312724Snikos.nikoleris@arm.com    Tick nextReady = std::min(mshrQueue.nextReadyTime(),
143412724Snikos.nikoleris@arm.com                              writeBuffer.nextReadyTime());
143512724Snikos.nikoleris@arm.com
143612724Snikos.nikoleris@arm.com    // Don't signal prefetch ready time if no MSHRs available
143712724Snikos.nikoleris@arm.com    // Will signal once enoguh MSHRs are deallocated
143812724Snikos.nikoleris@arm.com    if (prefetcher && mshrQueue.canPrefetch()) {
143912724Snikos.nikoleris@arm.com        nextReady = std::min(nextReady,
144012724Snikos.nikoleris@arm.com                             prefetcher->nextPrefetchReadyTime());
144112724Snikos.nikoleris@arm.com    }
144212724Snikos.nikoleris@arm.com
144312724Snikos.nikoleris@arm.com    return nextReady;
144412724Snikos.nikoleris@arm.com}
144512724Snikos.nikoleris@arm.com
144612724Snikos.nikoleris@arm.com
144712724Snikos.nikoleris@arm.combool
144812724Snikos.nikoleris@arm.comBaseCache::sendMSHRQueuePacket(MSHR* mshr)
144912724Snikos.nikoleris@arm.com{
145012724Snikos.nikoleris@arm.com    assert(mshr);
145112724Snikos.nikoleris@arm.com
145212724Snikos.nikoleris@arm.com    // use request from 1st target
145312724Snikos.nikoleris@arm.com    PacketPtr tgt_pkt = mshr->getTarget()->pkt;
145412724Snikos.nikoleris@arm.com
145512724Snikos.nikoleris@arm.com    DPRINTF(Cache, "%s: MSHR %s\n", __func__, tgt_pkt->print());
145612724Snikos.nikoleris@arm.com
145713352Snikos.nikoleris@arm.com    // if the cache is in write coalescing mode or (additionally) in
145813352Snikos.nikoleris@arm.com    // no allocation mode, and we have a write packet with an MSHR
145913352Snikos.nikoleris@arm.com    // that is not a whole-line write (due to incompatible flags etc),
146013352Snikos.nikoleris@arm.com    // then reset the write mode
146113352Snikos.nikoleris@arm.com    if (writeAllocator && writeAllocator->coalesce() && tgt_pkt->isWrite()) {
146213352Snikos.nikoleris@arm.com        if (!mshr->isWholeLineWrite()) {
146313352Snikos.nikoleris@arm.com            // if we are currently write coalescing, hold on the
146413352Snikos.nikoleris@arm.com            // MSHR as many cycles extra as we need to completely
146513352Snikos.nikoleris@arm.com            // write a cache line
146613352Snikos.nikoleris@arm.com            if (writeAllocator->delay(mshr->blkAddr)) {
146713352Snikos.nikoleris@arm.com                Tick delay = blkSize / tgt_pkt->getSize() * clockPeriod();
146813352Snikos.nikoleris@arm.com                DPRINTF(CacheVerbose, "Delaying pkt %s %llu ticks to allow "
146913352Snikos.nikoleris@arm.com                        "for write coalescing\n", tgt_pkt->print(), delay);
147013352Snikos.nikoleris@arm.com                mshrQueue.delay(mshr, delay);
147113352Snikos.nikoleris@arm.com                return false;
147213352Snikos.nikoleris@arm.com            } else {
147313352Snikos.nikoleris@arm.com                writeAllocator->reset();
147413352Snikos.nikoleris@arm.com            }
147513352Snikos.nikoleris@arm.com        } else {
147613352Snikos.nikoleris@arm.com            writeAllocator->resetDelay(mshr->blkAddr);
147713352Snikos.nikoleris@arm.com        }
147813352Snikos.nikoleris@arm.com    }
147913352Snikos.nikoleris@arm.com
148012724Snikos.nikoleris@arm.com    CacheBlk *blk = tags->findBlock(mshr->blkAddr, mshr->isSecure);
148112724Snikos.nikoleris@arm.com
148212724Snikos.nikoleris@arm.com    // either a prefetch that is not present upstream, or a normal
148312724Snikos.nikoleris@arm.com    // MSHR request, proceed to get the packet to send downstream
148413350Snikos.nikoleris@arm.com    PacketPtr pkt = createMissPacket(tgt_pkt, blk, mshr->needsWritable(),
148513350Snikos.nikoleris@arm.com                                     mshr->isWholeLineWrite());
148612724Snikos.nikoleris@arm.com
148712724Snikos.nikoleris@arm.com    mshr->isForward = (pkt == nullptr);
148812724Snikos.nikoleris@arm.com
148912724Snikos.nikoleris@arm.com    if (mshr->isForward) {
149012724Snikos.nikoleris@arm.com        // not a cache block request, but a response is expected
149112724Snikos.nikoleris@arm.com        // make copy of current packet to forward, keep current
149212724Snikos.nikoleris@arm.com        // copy for response handling
149312724Snikos.nikoleris@arm.com        pkt = new Packet(tgt_pkt, false, true);
149412724Snikos.nikoleris@arm.com        assert(!pkt->isWrite());
149512724Snikos.nikoleris@arm.com    }
149612724Snikos.nikoleris@arm.com
149712724Snikos.nikoleris@arm.com    // play it safe and append (rather than set) the sender state,
149812724Snikos.nikoleris@arm.com    // as forwarded packets may already have existing state
149912724Snikos.nikoleris@arm.com    pkt->pushSenderState(mshr);
150012724Snikos.nikoleris@arm.com
150112724Snikos.nikoleris@arm.com    if (pkt->isClean() && blk && blk->isDirty()) {
150212724Snikos.nikoleris@arm.com        // A cache clean opearation is looking for a dirty block. Mark
150312724Snikos.nikoleris@arm.com        // the packet so that the destination xbar can determine that
150412724Snikos.nikoleris@arm.com        // there will be a follow-up write packet as well.
150512724Snikos.nikoleris@arm.com        pkt->setSatisfied();
150612724Snikos.nikoleris@arm.com    }
150712724Snikos.nikoleris@arm.com
150812724Snikos.nikoleris@arm.com    if (!memSidePort.sendTimingReq(pkt)) {
150912724Snikos.nikoleris@arm.com        // we are awaiting a retry, but we
151012724Snikos.nikoleris@arm.com        // delete the packet and will be creating a new packet
151112724Snikos.nikoleris@arm.com        // when we get the opportunity
151212724Snikos.nikoleris@arm.com        delete pkt;
151312724Snikos.nikoleris@arm.com
151412724Snikos.nikoleris@arm.com        // note that we have now masked any requestBus and
151512724Snikos.nikoleris@arm.com        // schedSendEvent (we will wait for a retry before
151612724Snikos.nikoleris@arm.com        // doing anything), and this is so even if we do not
151712724Snikos.nikoleris@arm.com        // care about this packet and might override it before
151812724Snikos.nikoleris@arm.com        // it gets retried
151912724Snikos.nikoleris@arm.com        return true;
152012724Snikos.nikoleris@arm.com    } else {
152112724Snikos.nikoleris@arm.com        // As part of the call to sendTimingReq the packet is
152212724Snikos.nikoleris@arm.com        // forwarded to all neighbouring caches (and any caches
152312724Snikos.nikoleris@arm.com        // above them) as a snoop. Thus at this point we know if
152412724Snikos.nikoleris@arm.com        // any of the neighbouring caches are responding, and if
152512724Snikos.nikoleris@arm.com        // so, we know it is dirty, and we can determine if it is
152612724Snikos.nikoleris@arm.com        // being passed as Modified, making our MSHR the ordering
152712724Snikos.nikoleris@arm.com        // point
152812724Snikos.nikoleris@arm.com        bool pending_modified_resp = !pkt->hasSharers() &&
152912724Snikos.nikoleris@arm.com            pkt->cacheResponding();
153012724Snikos.nikoleris@arm.com        markInService(mshr, pending_modified_resp);
153112724Snikos.nikoleris@arm.com
153212724Snikos.nikoleris@arm.com        if (pkt->isClean() && blk && blk->isDirty()) {
153312724Snikos.nikoleris@arm.com            // A cache clean opearation is looking for a dirty
153412724Snikos.nikoleris@arm.com            // block. If a dirty block is encountered a WriteClean
153512724Snikos.nikoleris@arm.com            // will update any copies to the path to the memory
153612724Snikos.nikoleris@arm.com            // until the point of reference.
153712724Snikos.nikoleris@arm.com            DPRINTF(CacheVerbose, "%s: packet %s found block: %s\n",
153812724Snikos.nikoleris@arm.com                    __func__, pkt->print(), blk->print());
153912724Snikos.nikoleris@arm.com            PacketPtr wb_pkt = writecleanBlk(blk, pkt->req->getDest(),
154012724Snikos.nikoleris@arm.com                                             pkt->id);
154112724Snikos.nikoleris@arm.com            PacketList writebacks;
154212724Snikos.nikoleris@arm.com            writebacks.push_back(wb_pkt);
154312724Snikos.nikoleris@arm.com            doWritebacks(writebacks, 0);
154412724Snikos.nikoleris@arm.com        }
154512724Snikos.nikoleris@arm.com
154612724Snikos.nikoleris@arm.com        return false;
154712724Snikos.nikoleris@arm.com    }
154812724Snikos.nikoleris@arm.com}
154912724Snikos.nikoleris@arm.com
155012724Snikos.nikoleris@arm.combool
155112724Snikos.nikoleris@arm.comBaseCache::sendWriteQueuePacket(WriteQueueEntry* wq_entry)
155212724Snikos.nikoleris@arm.com{
155312724Snikos.nikoleris@arm.com    assert(wq_entry);
155412724Snikos.nikoleris@arm.com
155512724Snikos.nikoleris@arm.com    // always a single target for write queue entries
155612724Snikos.nikoleris@arm.com    PacketPtr tgt_pkt = wq_entry->getTarget()->pkt;
155712724Snikos.nikoleris@arm.com
155812724Snikos.nikoleris@arm.com    DPRINTF(Cache, "%s: write %s\n", __func__, tgt_pkt->print());
155912724Snikos.nikoleris@arm.com
156012724Snikos.nikoleris@arm.com    // forward as is, both for evictions and uncacheable writes
156112724Snikos.nikoleris@arm.com    if (!memSidePort.sendTimingReq(tgt_pkt)) {
156212724Snikos.nikoleris@arm.com        // note that we have now masked any requestBus and
156312724Snikos.nikoleris@arm.com        // schedSendEvent (we will wait for a retry before
156412724Snikos.nikoleris@arm.com        // doing anything), and this is so even if we do not
156512724Snikos.nikoleris@arm.com        // care about this packet and might override it before
156612724Snikos.nikoleris@arm.com        // it gets retried
156712724Snikos.nikoleris@arm.com        return true;
156812724Snikos.nikoleris@arm.com    } else {
156912724Snikos.nikoleris@arm.com        markInService(wq_entry);
157012724Snikos.nikoleris@arm.com        return false;
157112724Snikos.nikoleris@arm.com    }
157212724Snikos.nikoleris@arm.com}
157312724Snikos.nikoleris@arm.com
157412724Snikos.nikoleris@arm.comvoid
157512724Snikos.nikoleris@arm.comBaseCache::serialize(CheckpointOut &cp) const
157612724Snikos.nikoleris@arm.com{
157712724Snikos.nikoleris@arm.com    bool dirty(isDirty());
157812724Snikos.nikoleris@arm.com
157912724Snikos.nikoleris@arm.com    if (dirty) {
158012724Snikos.nikoleris@arm.com        warn("*** The cache still contains dirty data. ***\n");
158112724Snikos.nikoleris@arm.com        warn("    Make sure to drain the system using the correct flags.\n");
158212724Snikos.nikoleris@arm.com        warn("    This checkpoint will not restore correctly " \
158312724Snikos.nikoleris@arm.com             "and dirty data in the cache will be lost!\n");
158412724Snikos.nikoleris@arm.com    }
158512724Snikos.nikoleris@arm.com
158612724Snikos.nikoleris@arm.com    // Since we don't checkpoint the data in the cache, any dirty data
158712724Snikos.nikoleris@arm.com    // will be lost when restoring from a checkpoint of a system that
158812724Snikos.nikoleris@arm.com    // wasn't drained properly. Flag the checkpoint as invalid if the
158912724Snikos.nikoleris@arm.com    // cache contains dirty data.
159012724Snikos.nikoleris@arm.com    bool bad_checkpoint(dirty);
159112724Snikos.nikoleris@arm.com    SERIALIZE_SCALAR(bad_checkpoint);
159212724Snikos.nikoleris@arm.com}
159312724Snikos.nikoleris@arm.com
159412724Snikos.nikoleris@arm.comvoid
159512724Snikos.nikoleris@arm.comBaseCache::unserialize(CheckpointIn &cp)
159612724Snikos.nikoleris@arm.com{
159712724Snikos.nikoleris@arm.com    bool bad_checkpoint;
159812724Snikos.nikoleris@arm.com    UNSERIALIZE_SCALAR(bad_checkpoint);
159912724Snikos.nikoleris@arm.com    if (bad_checkpoint) {
160012724Snikos.nikoleris@arm.com        fatal("Restoring from checkpoints with dirty caches is not "
160112724Snikos.nikoleris@arm.com              "supported in the classic memory system. Please remove any "
160212724Snikos.nikoleris@arm.com              "caches or drain them properly before taking checkpoints.\n");
160312724Snikos.nikoleris@arm.com    }
160412724Snikos.nikoleris@arm.com}
160512724Snikos.nikoleris@arm.com
160612724Snikos.nikoleris@arm.comvoid
16072810SN/ABaseCache::regStats()
16082810SN/A{
160911522Sstephan.diestelhorst@arm.com    MemObject::regStats();
161011522Sstephan.diestelhorst@arm.com
16112810SN/A    using namespace Stats;
16122810SN/A
16132810SN/A    // Hit statistics
16144022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
16154022SN/A        MemCmd cmd(access_idx);
16164022SN/A        const string &cstr = cmd.toString();
16172810SN/A
16182810SN/A        hits[access_idx]
16198833Sdam.sunwoo@arm.com            .init(system->maxMasters())
16202810SN/A            .name(name() + "." + cstr + "_hits")
16212810SN/A            .desc("number of " + cstr + " hits")
16222810SN/A            .flags(total | nozero | nonan)
16232810SN/A            ;
16248833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
16258833Sdam.sunwoo@arm.com            hits[access_idx].subname(i, system->getMasterName(i));
16268833Sdam.sunwoo@arm.com        }
16272810SN/A    }
16282810SN/A
16294871SN/A// These macros make it easier to sum the right subset of commands and
16304871SN/A// to change the subset of commands that are considered "demand" vs
16314871SN/A// "non-demand"
16324871SN/A#define SUM_DEMAND(s) \
163311455Sandreas.hansson@arm.com    (s[MemCmd::ReadReq] + s[MemCmd::WriteReq] + s[MemCmd::WriteLineReq] + \
163410885Sandreas.hansson@arm.com     s[MemCmd::ReadExReq] + s[MemCmd::ReadCleanReq] + s[MemCmd::ReadSharedReq])
16354871SN/A
16364871SN/A// should writebacks be included here?  prior code was inconsistent...
16374871SN/A#define SUM_NON_DEMAND(s) \
163813367Syuetsu.kodama@riken.jp    (s[MemCmd::SoftPFReq] + s[MemCmd::HardPFReq] + s[MemCmd::SoftPFExReq])
16394871SN/A
16402810SN/A    demandHits
16412810SN/A        .name(name() + ".demand_hits")
16422810SN/A        .desc("number of demand (read+write) hits")
16438833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
16442810SN/A        ;
16454871SN/A    demandHits = SUM_DEMAND(hits);
16468833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
16478833Sdam.sunwoo@arm.com        demandHits.subname(i, system->getMasterName(i));
16488833Sdam.sunwoo@arm.com    }
16492810SN/A
16502810SN/A    overallHits
16512810SN/A        .name(name() + ".overall_hits")
16522810SN/A        .desc("number of overall hits")
16538833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
16542810SN/A        ;
16554871SN/A    overallHits = demandHits + SUM_NON_DEMAND(hits);
16568833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
16578833Sdam.sunwoo@arm.com        overallHits.subname(i, system->getMasterName(i));
16588833Sdam.sunwoo@arm.com    }
16592810SN/A
16602810SN/A    // Miss statistics
16614022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
16624022SN/A        MemCmd cmd(access_idx);
16634022SN/A        const string &cstr = cmd.toString();
16642810SN/A
16652810SN/A        misses[access_idx]
16668833Sdam.sunwoo@arm.com            .init(system->maxMasters())
16672810SN/A            .name(name() + "." + cstr + "_misses")
16682810SN/A            .desc("number of " + cstr + " misses")
16692810SN/A            .flags(total | nozero | nonan)
16702810SN/A            ;
16718833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
16728833Sdam.sunwoo@arm.com            misses[access_idx].subname(i, system->getMasterName(i));
16738833Sdam.sunwoo@arm.com        }
16742810SN/A    }
16752810SN/A
16762810SN/A    demandMisses
16772810SN/A        .name(name() + ".demand_misses")
16782810SN/A        .desc("number of demand (read+write) misses")
16798833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
16802810SN/A        ;
16814871SN/A    demandMisses = SUM_DEMAND(misses);
16828833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
16838833Sdam.sunwoo@arm.com        demandMisses.subname(i, system->getMasterName(i));
16848833Sdam.sunwoo@arm.com    }
16852810SN/A
16862810SN/A    overallMisses
16872810SN/A        .name(name() + ".overall_misses")
16882810SN/A        .desc("number of overall misses")
16898833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
16902810SN/A        ;
16914871SN/A    overallMisses = demandMisses + SUM_NON_DEMAND(misses);
16928833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
16938833Sdam.sunwoo@arm.com        overallMisses.subname(i, system->getMasterName(i));
16948833Sdam.sunwoo@arm.com    }
16952810SN/A
16962810SN/A    // Miss latency statistics
16974022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
16984022SN/A        MemCmd cmd(access_idx);
16994022SN/A        const string &cstr = cmd.toString();
17002810SN/A
17012810SN/A        missLatency[access_idx]
17028833Sdam.sunwoo@arm.com            .init(system->maxMasters())
17032810SN/A            .name(name() + "." + cstr + "_miss_latency")
17042810SN/A            .desc("number of " + cstr + " miss cycles")
17052810SN/A            .flags(total | nozero | nonan)
17062810SN/A            ;
17078833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
17088833Sdam.sunwoo@arm.com            missLatency[access_idx].subname(i, system->getMasterName(i));
17098833Sdam.sunwoo@arm.com        }
17102810SN/A    }
17112810SN/A
17122810SN/A    demandMissLatency
17132810SN/A        .name(name() + ".demand_miss_latency")
17142810SN/A        .desc("number of demand (read+write) miss cycles")
17158833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
17162810SN/A        ;
17174871SN/A    demandMissLatency = SUM_DEMAND(missLatency);
17188833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
17198833Sdam.sunwoo@arm.com        demandMissLatency.subname(i, system->getMasterName(i));
17208833Sdam.sunwoo@arm.com    }
17212810SN/A
17222810SN/A    overallMissLatency
17232810SN/A        .name(name() + ".overall_miss_latency")
17242810SN/A        .desc("number of overall miss cycles")
17258833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
17262810SN/A        ;
17274871SN/A    overallMissLatency = demandMissLatency + SUM_NON_DEMAND(missLatency);
17288833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
17298833Sdam.sunwoo@arm.com        overallMissLatency.subname(i, system->getMasterName(i));
17308833Sdam.sunwoo@arm.com    }
17312810SN/A
17322810SN/A    // access formulas
17334022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
17344022SN/A        MemCmd cmd(access_idx);
17354022SN/A        const string &cstr = cmd.toString();
17362810SN/A
17372810SN/A        accesses[access_idx]
17382810SN/A            .name(name() + "." + cstr + "_accesses")
17392810SN/A            .desc("number of " + cstr + " accesses(hits+misses)")
17402810SN/A            .flags(total | nozero | nonan)
17412810SN/A            ;
17428833Sdam.sunwoo@arm.com        accesses[access_idx] = hits[access_idx] + misses[access_idx];
17432810SN/A
17448833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
17458833Sdam.sunwoo@arm.com            accesses[access_idx].subname(i, system->getMasterName(i));
17468833Sdam.sunwoo@arm.com        }
17472810SN/A    }
17482810SN/A
17492810SN/A    demandAccesses
17502810SN/A        .name(name() + ".demand_accesses")
17512810SN/A        .desc("number of demand (read+write) accesses")
17528833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
17532810SN/A        ;
17542810SN/A    demandAccesses = demandHits + demandMisses;
17558833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
17568833Sdam.sunwoo@arm.com        demandAccesses.subname(i, system->getMasterName(i));
17578833Sdam.sunwoo@arm.com    }
17582810SN/A
17592810SN/A    overallAccesses
17602810SN/A        .name(name() + ".overall_accesses")
17612810SN/A        .desc("number of overall (read+write) accesses")
17628833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
17632810SN/A        ;
17642810SN/A    overallAccesses = overallHits + overallMisses;
17658833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
17668833Sdam.sunwoo@arm.com        overallAccesses.subname(i, system->getMasterName(i));
17678833Sdam.sunwoo@arm.com    }
17682810SN/A
17692810SN/A    // miss rate formulas
17704022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
17714022SN/A        MemCmd cmd(access_idx);
17724022SN/A        const string &cstr = cmd.toString();
17732810SN/A
17742810SN/A        missRate[access_idx]
17752810SN/A            .name(name() + "." + cstr + "_miss_rate")
17762810SN/A            .desc("miss rate for " + cstr + " accesses")
17772810SN/A            .flags(total | nozero | nonan)
17782810SN/A            ;
17798833Sdam.sunwoo@arm.com        missRate[access_idx] = misses[access_idx] / accesses[access_idx];
17802810SN/A
17818833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
17828833Sdam.sunwoo@arm.com            missRate[access_idx].subname(i, system->getMasterName(i));
17838833Sdam.sunwoo@arm.com        }
17842810SN/A    }
17852810SN/A
17862810SN/A    demandMissRate
17872810SN/A        .name(name() + ".demand_miss_rate")
17882810SN/A        .desc("miss rate for demand accesses")
17898833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
17902810SN/A        ;
17912810SN/A    demandMissRate = demandMisses / demandAccesses;
17928833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
17938833Sdam.sunwoo@arm.com        demandMissRate.subname(i, system->getMasterName(i));
17948833Sdam.sunwoo@arm.com    }
17952810SN/A
17962810SN/A    overallMissRate
17972810SN/A        .name(name() + ".overall_miss_rate")
17982810SN/A        .desc("miss rate for overall accesses")
17998833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
18002810SN/A        ;
18012810SN/A    overallMissRate = overallMisses / overallAccesses;
18028833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
18038833Sdam.sunwoo@arm.com        overallMissRate.subname(i, system->getMasterName(i));
18048833Sdam.sunwoo@arm.com    }
18052810SN/A
18062810SN/A    // miss latency formulas
18074022SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
18084022SN/A        MemCmd cmd(access_idx);
18094022SN/A        const string &cstr = cmd.toString();
18102810SN/A
18112810SN/A        avgMissLatency[access_idx]
18122810SN/A            .name(name() + "." + cstr + "_avg_miss_latency")
18132810SN/A            .desc("average " + cstr + " miss latency")
18142810SN/A            .flags(total | nozero | nonan)
18152810SN/A            ;
18162810SN/A        avgMissLatency[access_idx] =
18172810SN/A            missLatency[access_idx] / misses[access_idx];
18188833Sdam.sunwoo@arm.com
18198833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
18208833Sdam.sunwoo@arm.com            avgMissLatency[access_idx].subname(i, system->getMasterName(i));
18218833Sdam.sunwoo@arm.com        }
18222810SN/A    }
18232810SN/A
18242810SN/A    demandAvgMissLatency
18252810SN/A        .name(name() + ".demand_avg_miss_latency")
18262810SN/A        .desc("average overall miss latency")
18278833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
18282810SN/A        ;
18292810SN/A    demandAvgMissLatency = demandMissLatency / demandMisses;
18308833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
18318833Sdam.sunwoo@arm.com        demandAvgMissLatency.subname(i, system->getMasterName(i));
18328833Sdam.sunwoo@arm.com    }
18332810SN/A
18342810SN/A    overallAvgMissLatency
18352810SN/A        .name(name() + ".overall_avg_miss_latency")
18362810SN/A        .desc("average overall miss latency")
18378833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
18382810SN/A        ;
18392810SN/A    overallAvgMissLatency = overallMissLatency / overallMisses;
18408833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
18418833Sdam.sunwoo@arm.com        overallAvgMissLatency.subname(i, system->getMasterName(i));
18428833Sdam.sunwoo@arm.com    }
18432810SN/A
18442810SN/A    blocked_cycles.init(NUM_BLOCKED_CAUSES);
18452810SN/A    blocked_cycles
18462810SN/A        .name(name() + ".blocked_cycles")
18472810SN/A        .desc("number of cycles access was blocked")
18482810SN/A        .subname(Blocked_NoMSHRs, "no_mshrs")
18492810SN/A        .subname(Blocked_NoTargets, "no_targets")
18502810SN/A        ;
18512810SN/A
18522810SN/A
18532810SN/A    blocked_causes.init(NUM_BLOCKED_CAUSES);
18542810SN/A    blocked_causes
18552810SN/A        .name(name() + ".blocked")
18562810SN/A        .desc("number of cycles access was blocked")
18572810SN/A        .subname(Blocked_NoMSHRs, "no_mshrs")
18582810SN/A        .subname(Blocked_NoTargets, "no_targets")
18592810SN/A        ;
18602810SN/A
18612810SN/A    avg_blocked
18622810SN/A        .name(name() + ".avg_blocked_cycles")
18632810SN/A        .desc("average number of cycles each access was blocked")
18642810SN/A        .subname(Blocked_NoMSHRs, "no_mshrs")
18652810SN/A        .subname(Blocked_NoTargets, "no_targets")
18662810SN/A        ;
18672810SN/A
18682810SN/A    avg_blocked = blocked_cycles / blocked_causes;
18692810SN/A
187011436SRekai.GonzalezAlberquilla@arm.com    unusedPrefetches
187111436SRekai.GonzalezAlberquilla@arm.com        .name(name() + ".unused_prefetches")
187211436SRekai.GonzalezAlberquilla@arm.com        .desc("number of HardPF blocks evicted w/o reference")
187311436SRekai.GonzalezAlberquilla@arm.com        .flags(nozero)
187411436SRekai.GonzalezAlberquilla@arm.com        ;
187511436SRekai.GonzalezAlberquilla@arm.com
18764626SN/A    writebacks
18778833Sdam.sunwoo@arm.com        .init(system->maxMasters())
18784626SN/A        .name(name() + ".writebacks")
18794626SN/A        .desc("number of writebacks")
18808833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
18814626SN/A        ;
18828833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
18838833Sdam.sunwoo@arm.com        writebacks.subname(i, system->getMasterName(i));
18848833Sdam.sunwoo@arm.com    }
18854626SN/A
18864626SN/A    // MSHR statistics
18874626SN/A    // MSHR hit statistics
18884626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
18894626SN/A        MemCmd cmd(access_idx);
18904626SN/A        const string &cstr = cmd.toString();
18914626SN/A
18924626SN/A        mshr_hits[access_idx]
18938833Sdam.sunwoo@arm.com            .init(system->maxMasters())
18944626SN/A            .name(name() + "." + cstr + "_mshr_hits")
18954626SN/A            .desc("number of " + cstr + " MSHR hits")
18964626SN/A            .flags(total | nozero | nonan)
18974626SN/A            ;
18988833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
18998833Sdam.sunwoo@arm.com            mshr_hits[access_idx].subname(i, system->getMasterName(i));
19008833Sdam.sunwoo@arm.com        }
19014626SN/A    }
19024626SN/A
19034626SN/A    demandMshrHits
19044626SN/A        .name(name() + ".demand_mshr_hits")
19054626SN/A        .desc("number of demand (read+write) MSHR hits")
19068833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19074626SN/A        ;
19084871SN/A    demandMshrHits = SUM_DEMAND(mshr_hits);
19098833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19108833Sdam.sunwoo@arm.com        demandMshrHits.subname(i, system->getMasterName(i));
19118833Sdam.sunwoo@arm.com    }
19124626SN/A
19134626SN/A    overallMshrHits
19144626SN/A        .name(name() + ".overall_mshr_hits")
19154626SN/A        .desc("number of overall MSHR hits")
19168833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19174626SN/A        ;
19184871SN/A    overallMshrHits = demandMshrHits + SUM_NON_DEMAND(mshr_hits);
19198833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19208833Sdam.sunwoo@arm.com        overallMshrHits.subname(i, system->getMasterName(i));
19218833Sdam.sunwoo@arm.com    }
19224626SN/A
19234626SN/A    // MSHR miss statistics
19244626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
19254626SN/A        MemCmd cmd(access_idx);
19264626SN/A        const string &cstr = cmd.toString();
19274626SN/A
19284626SN/A        mshr_misses[access_idx]
19298833Sdam.sunwoo@arm.com            .init(system->maxMasters())
19304626SN/A            .name(name() + "." + cstr + "_mshr_misses")
19314626SN/A            .desc("number of " + cstr + " MSHR misses")
19324626SN/A            .flags(total | nozero | nonan)
19334626SN/A            ;
19348833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
19358833Sdam.sunwoo@arm.com            mshr_misses[access_idx].subname(i, system->getMasterName(i));
19368833Sdam.sunwoo@arm.com        }
19374626SN/A    }
19384626SN/A
19394626SN/A    demandMshrMisses
19404626SN/A        .name(name() + ".demand_mshr_misses")
19414626SN/A        .desc("number of demand (read+write) MSHR misses")
19428833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19434626SN/A        ;
19444871SN/A    demandMshrMisses = SUM_DEMAND(mshr_misses);
19458833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19468833Sdam.sunwoo@arm.com        demandMshrMisses.subname(i, system->getMasterName(i));
19478833Sdam.sunwoo@arm.com    }
19484626SN/A
19494626SN/A    overallMshrMisses
19504626SN/A        .name(name() + ".overall_mshr_misses")
19514626SN/A        .desc("number of overall MSHR misses")
19528833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19534626SN/A        ;
19544871SN/A    overallMshrMisses = demandMshrMisses + SUM_NON_DEMAND(mshr_misses);
19558833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19568833Sdam.sunwoo@arm.com        overallMshrMisses.subname(i, system->getMasterName(i));
19578833Sdam.sunwoo@arm.com    }
19584626SN/A
19594626SN/A    // MSHR miss latency statistics
19604626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
19614626SN/A        MemCmd cmd(access_idx);
19624626SN/A        const string &cstr = cmd.toString();
19634626SN/A
19644626SN/A        mshr_miss_latency[access_idx]
19658833Sdam.sunwoo@arm.com            .init(system->maxMasters())
19664626SN/A            .name(name() + "." + cstr + "_mshr_miss_latency")
19674626SN/A            .desc("number of " + cstr + " MSHR miss cycles")
19684626SN/A            .flags(total | nozero | nonan)
19694626SN/A            ;
19708833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
19718833Sdam.sunwoo@arm.com            mshr_miss_latency[access_idx].subname(i, system->getMasterName(i));
19728833Sdam.sunwoo@arm.com        }
19734626SN/A    }
19744626SN/A
19754626SN/A    demandMshrMissLatency
19764626SN/A        .name(name() + ".demand_mshr_miss_latency")
19774626SN/A        .desc("number of demand (read+write) MSHR miss cycles")
19788833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19794626SN/A        ;
19804871SN/A    demandMshrMissLatency = SUM_DEMAND(mshr_miss_latency);
19818833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19828833Sdam.sunwoo@arm.com        demandMshrMissLatency.subname(i, system->getMasterName(i));
19838833Sdam.sunwoo@arm.com    }
19844626SN/A
19854626SN/A    overallMshrMissLatency
19864626SN/A        .name(name() + ".overall_mshr_miss_latency")
19874626SN/A        .desc("number of overall MSHR miss cycles")
19888833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
19894626SN/A        ;
19904871SN/A    overallMshrMissLatency =
19914871SN/A        demandMshrMissLatency + SUM_NON_DEMAND(mshr_miss_latency);
19928833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
19938833Sdam.sunwoo@arm.com        overallMshrMissLatency.subname(i, system->getMasterName(i));
19948833Sdam.sunwoo@arm.com    }
19954626SN/A
19964626SN/A    // MSHR uncacheable statistics
19974626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
19984626SN/A        MemCmd cmd(access_idx);
19994626SN/A        const string &cstr = cmd.toString();
20004626SN/A
20014626SN/A        mshr_uncacheable[access_idx]
20028833Sdam.sunwoo@arm.com            .init(system->maxMasters())
20034626SN/A            .name(name() + "." + cstr + "_mshr_uncacheable")
20044626SN/A            .desc("number of " + cstr + " MSHR uncacheable")
20054626SN/A            .flags(total | nozero | nonan)
20064626SN/A            ;
20078833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
20088833Sdam.sunwoo@arm.com            mshr_uncacheable[access_idx].subname(i, system->getMasterName(i));
20098833Sdam.sunwoo@arm.com        }
20104626SN/A    }
20114626SN/A
20124626SN/A    overallMshrUncacheable
20134626SN/A        .name(name() + ".overall_mshr_uncacheable_misses")
20144626SN/A        .desc("number of overall MSHR uncacheable misses")
20158833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
20164626SN/A        ;
20174871SN/A    overallMshrUncacheable =
20184871SN/A        SUM_DEMAND(mshr_uncacheable) + SUM_NON_DEMAND(mshr_uncacheable);
20198833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
20208833Sdam.sunwoo@arm.com        overallMshrUncacheable.subname(i, system->getMasterName(i));
20218833Sdam.sunwoo@arm.com    }
20224626SN/A
20234626SN/A    // MSHR miss latency statistics
20244626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
20254626SN/A        MemCmd cmd(access_idx);
20264626SN/A        const string &cstr = cmd.toString();
20274626SN/A
20284626SN/A        mshr_uncacheable_lat[access_idx]
20298833Sdam.sunwoo@arm.com            .init(system->maxMasters())
20304626SN/A            .name(name() + "." + cstr + "_mshr_uncacheable_latency")
20314626SN/A            .desc("number of " + cstr + " MSHR uncacheable cycles")
20324626SN/A            .flags(total | nozero | nonan)
20334626SN/A            ;
20348833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
203511483Snikos.nikoleris@arm.com            mshr_uncacheable_lat[access_idx].subname(
203611483Snikos.nikoleris@arm.com                i, system->getMasterName(i));
20378833Sdam.sunwoo@arm.com        }
20384626SN/A    }
20394626SN/A
20404626SN/A    overallMshrUncacheableLatency
20414626SN/A        .name(name() + ".overall_mshr_uncacheable_latency")
20424626SN/A        .desc("number of overall MSHR uncacheable cycles")
20438833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
20444626SN/A        ;
20454871SN/A    overallMshrUncacheableLatency =
20464871SN/A        SUM_DEMAND(mshr_uncacheable_lat) +
20474871SN/A        SUM_NON_DEMAND(mshr_uncacheable_lat);
20488833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
20498833Sdam.sunwoo@arm.com        overallMshrUncacheableLatency.subname(i, system->getMasterName(i));
20508833Sdam.sunwoo@arm.com    }
20514626SN/A
20524626SN/A#if 0
20534626SN/A    // MSHR access formulas
20544626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
20554626SN/A        MemCmd cmd(access_idx);
20564626SN/A        const string &cstr = cmd.toString();
20574626SN/A
20584626SN/A        mshrAccesses[access_idx]
20594626SN/A            .name(name() + "." + cstr + "_mshr_accesses")
20604626SN/A            .desc("number of " + cstr + " mshr accesses(hits+misses)")
20614626SN/A            .flags(total | nozero | nonan)
20624626SN/A            ;
20634626SN/A        mshrAccesses[access_idx] =
20644626SN/A            mshr_hits[access_idx] + mshr_misses[access_idx]
20654626SN/A            + mshr_uncacheable[access_idx];
20664626SN/A    }
20674626SN/A
20684626SN/A    demandMshrAccesses
20694626SN/A        .name(name() + ".demand_mshr_accesses")
20704626SN/A        .desc("number of demand (read+write) mshr accesses")
20714626SN/A        .flags(total | nozero | nonan)
20724626SN/A        ;
20734626SN/A    demandMshrAccesses = demandMshrHits + demandMshrMisses;
20744626SN/A
20754626SN/A    overallMshrAccesses
20764626SN/A        .name(name() + ".overall_mshr_accesses")
20774626SN/A        .desc("number of overall (read+write) mshr accesses")
20784626SN/A        .flags(total | nozero | nonan)
20794626SN/A        ;
20804626SN/A    overallMshrAccesses = overallMshrHits + overallMshrMisses
20814626SN/A        + overallMshrUncacheable;
20824626SN/A#endif
20834626SN/A
20844626SN/A    // MSHR miss rate formulas
20854626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
20864626SN/A        MemCmd cmd(access_idx);
20874626SN/A        const string &cstr = cmd.toString();
20884626SN/A
20894626SN/A        mshrMissRate[access_idx]
20904626SN/A            .name(name() + "." + cstr + "_mshr_miss_rate")
20914626SN/A            .desc("mshr miss rate for " + cstr + " accesses")
20924626SN/A            .flags(total | nozero | nonan)
20934626SN/A            ;
20944626SN/A        mshrMissRate[access_idx] =
20954626SN/A            mshr_misses[access_idx] / accesses[access_idx];
20968833Sdam.sunwoo@arm.com
20978833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
20988833Sdam.sunwoo@arm.com            mshrMissRate[access_idx].subname(i, system->getMasterName(i));
20998833Sdam.sunwoo@arm.com        }
21004626SN/A    }
21014626SN/A
21024626SN/A    demandMshrMissRate
21034626SN/A        .name(name() + ".demand_mshr_miss_rate")
21044626SN/A        .desc("mshr miss rate for demand accesses")
21058833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
21064626SN/A        ;
21074626SN/A    demandMshrMissRate = demandMshrMisses / demandAccesses;
21088833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
21098833Sdam.sunwoo@arm.com        demandMshrMissRate.subname(i, system->getMasterName(i));
21108833Sdam.sunwoo@arm.com    }
21114626SN/A
21124626SN/A    overallMshrMissRate
21134626SN/A        .name(name() + ".overall_mshr_miss_rate")
21144626SN/A        .desc("mshr miss rate for overall accesses")
21158833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
21164626SN/A        ;
21174626SN/A    overallMshrMissRate = overallMshrMisses / overallAccesses;
21188833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
21198833Sdam.sunwoo@arm.com        overallMshrMissRate.subname(i, system->getMasterName(i));
21208833Sdam.sunwoo@arm.com    }
21214626SN/A
21224626SN/A    // mshrMiss latency formulas
21234626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
21244626SN/A        MemCmd cmd(access_idx);
21254626SN/A        const string &cstr = cmd.toString();
21264626SN/A
21274626SN/A        avgMshrMissLatency[access_idx]
21284626SN/A            .name(name() + "." + cstr + "_avg_mshr_miss_latency")
21294626SN/A            .desc("average " + cstr + " mshr miss latency")
21304626SN/A            .flags(total | nozero | nonan)
21314626SN/A            ;
21324626SN/A        avgMshrMissLatency[access_idx] =
21334626SN/A            mshr_miss_latency[access_idx] / mshr_misses[access_idx];
21348833Sdam.sunwoo@arm.com
21358833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
213611483Snikos.nikoleris@arm.com            avgMshrMissLatency[access_idx].subname(
213711483Snikos.nikoleris@arm.com                i, system->getMasterName(i));
21388833Sdam.sunwoo@arm.com        }
21394626SN/A    }
21404626SN/A
21414626SN/A    demandAvgMshrMissLatency
21424626SN/A        .name(name() + ".demand_avg_mshr_miss_latency")
21434626SN/A        .desc("average overall mshr miss latency")
21448833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
21454626SN/A        ;
21464626SN/A    demandAvgMshrMissLatency = demandMshrMissLatency / demandMshrMisses;
21478833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
21488833Sdam.sunwoo@arm.com        demandAvgMshrMissLatency.subname(i, system->getMasterName(i));
21498833Sdam.sunwoo@arm.com    }
21504626SN/A
21514626SN/A    overallAvgMshrMissLatency
21524626SN/A        .name(name() + ".overall_avg_mshr_miss_latency")
21534626SN/A        .desc("average overall mshr miss latency")
21548833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
21554626SN/A        ;
21564626SN/A    overallAvgMshrMissLatency = overallMshrMissLatency / overallMshrMisses;
21578833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
21588833Sdam.sunwoo@arm.com        overallAvgMshrMissLatency.subname(i, system->getMasterName(i));
21598833Sdam.sunwoo@arm.com    }
21604626SN/A
21614626SN/A    // mshrUncacheable latency formulas
21624626SN/A    for (int access_idx = 0; access_idx < MemCmd::NUM_MEM_CMDS; ++access_idx) {
21634626SN/A        MemCmd cmd(access_idx);
21644626SN/A        const string &cstr = cmd.toString();
21654626SN/A
21664626SN/A        avgMshrUncacheableLatency[access_idx]
21674626SN/A            .name(name() + "." + cstr + "_avg_mshr_uncacheable_latency")
21684626SN/A            .desc("average " + cstr + " mshr uncacheable latency")
21694626SN/A            .flags(total | nozero | nonan)
21704626SN/A            ;
21714626SN/A        avgMshrUncacheableLatency[access_idx] =
21724626SN/A            mshr_uncacheable_lat[access_idx] / mshr_uncacheable[access_idx];
21738833Sdam.sunwoo@arm.com
21748833Sdam.sunwoo@arm.com        for (int i = 0; i < system->maxMasters(); i++) {
217511483Snikos.nikoleris@arm.com            avgMshrUncacheableLatency[access_idx].subname(
217611483Snikos.nikoleris@arm.com                i, system->getMasterName(i));
21778833Sdam.sunwoo@arm.com        }
21784626SN/A    }
21794626SN/A
21804626SN/A    overallAvgMshrUncacheableLatency
21814626SN/A        .name(name() + ".overall_avg_mshr_uncacheable_latency")
21824626SN/A        .desc("average overall mshr uncacheable latency")
21838833Sdam.sunwoo@arm.com        .flags(total | nozero | nonan)
21844626SN/A        ;
218511483Snikos.nikoleris@arm.com    overallAvgMshrUncacheableLatency =
218611483Snikos.nikoleris@arm.com        overallMshrUncacheableLatency / overallMshrUncacheable;
21878833Sdam.sunwoo@arm.com    for (int i = 0; i < system->maxMasters(); i++) {
21888833Sdam.sunwoo@arm.com        overallAvgMshrUncacheableLatency.subname(i, system->getMasterName(i));
21898833Sdam.sunwoo@arm.com    }
21904626SN/A
219112702Snikos.nikoleris@arm.com    replacements
219212702Snikos.nikoleris@arm.com        .name(name() + ".replacements")
219312702Snikos.nikoleris@arm.com        .desc("number of replacements")
219412702Snikos.nikoleris@arm.com        ;
21952810SN/A}
219612724Snikos.nikoleris@arm.com
219713416Sjavier.bueno@metempsy.comvoid
219813416Sjavier.bueno@metempsy.comBaseCache::regProbePoints()
219913416Sjavier.bueno@metempsy.com{
220013416Sjavier.bueno@metempsy.com    ppHit = new ProbePointArg<PacketPtr>(this->getProbeManager(), "Hit");
220113416Sjavier.bueno@metempsy.com    ppMiss = new ProbePointArg<PacketPtr>(this->getProbeManager(), "Miss");
220213416Sjavier.bueno@metempsy.com}
220313416Sjavier.bueno@metempsy.com
220412724Snikos.nikoleris@arm.com///////////////
220512724Snikos.nikoleris@arm.com//
220612724Snikos.nikoleris@arm.com// CpuSidePort
220712724Snikos.nikoleris@arm.com//
220812724Snikos.nikoleris@arm.com///////////////
220912724Snikos.nikoleris@arm.combool
221012724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::recvTimingSnoopResp(PacketPtr pkt)
221112724Snikos.nikoleris@arm.com{
221212725Snikos.nikoleris@arm.com    // Snoops shouldn't happen when bypassing caches
221312725Snikos.nikoleris@arm.com    assert(!cache->system->bypassCaches());
221412725Snikos.nikoleris@arm.com
221512725Snikos.nikoleris@arm.com    assert(pkt->isResponse());
221612725Snikos.nikoleris@arm.com
221712724Snikos.nikoleris@arm.com    // Express snoop responses from master to slave, e.g., from L1 to L2
221812724Snikos.nikoleris@arm.com    cache->recvTimingSnoopResp(pkt);
221912724Snikos.nikoleris@arm.com    return true;
222012724Snikos.nikoleris@arm.com}
222112724Snikos.nikoleris@arm.com
222212724Snikos.nikoleris@arm.com
222312724Snikos.nikoleris@arm.combool
222412724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::tryTiming(PacketPtr pkt)
222512724Snikos.nikoleris@arm.com{
222612725Snikos.nikoleris@arm.com    if (cache->system->bypassCaches() || pkt->isExpressSnoop()) {
222712724Snikos.nikoleris@arm.com        // always let express snoop packets through even if blocked
222812724Snikos.nikoleris@arm.com        return true;
222912724Snikos.nikoleris@arm.com    } else if (blocked || mustSendRetry) {
223012724Snikos.nikoleris@arm.com        // either already committed to send a retry, or blocked
223112724Snikos.nikoleris@arm.com        mustSendRetry = true;
223212724Snikos.nikoleris@arm.com        return false;
223312724Snikos.nikoleris@arm.com    }
223412724Snikos.nikoleris@arm.com    mustSendRetry = false;
223512724Snikos.nikoleris@arm.com    return true;
223612724Snikos.nikoleris@arm.com}
223712724Snikos.nikoleris@arm.com
223812724Snikos.nikoleris@arm.combool
223912724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::recvTimingReq(PacketPtr pkt)
224012724Snikos.nikoleris@arm.com{
224112725Snikos.nikoleris@arm.com    assert(pkt->isRequest());
224212725Snikos.nikoleris@arm.com
224312725Snikos.nikoleris@arm.com    if (cache->system->bypassCaches()) {
224412725Snikos.nikoleris@arm.com        // Just forward the packet if caches are disabled.
224512725Snikos.nikoleris@arm.com        // @todo This should really enqueue the packet rather
224612725Snikos.nikoleris@arm.com        bool M5_VAR_USED success = cache->memSidePort.sendTimingReq(pkt);
224712725Snikos.nikoleris@arm.com        assert(success);
224812725Snikos.nikoleris@arm.com        return true;
224912725Snikos.nikoleris@arm.com    } else if (tryTiming(pkt)) {
225012724Snikos.nikoleris@arm.com        cache->recvTimingReq(pkt);
225112724Snikos.nikoleris@arm.com        return true;
225212724Snikos.nikoleris@arm.com    }
225312724Snikos.nikoleris@arm.com    return false;
225412724Snikos.nikoleris@arm.com}
225512724Snikos.nikoleris@arm.com
225612724Snikos.nikoleris@arm.comTick
225712724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::recvAtomic(PacketPtr pkt)
225812724Snikos.nikoleris@arm.com{
225912725Snikos.nikoleris@arm.com    if (cache->system->bypassCaches()) {
226012725Snikos.nikoleris@arm.com        // Forward the request if the system is in cache bypass mode.
226112725Snikos.nikoleris@arm.com        return cache->memSidePort.sendAtomic(pkt);
226212725Snikos.nikoleris@arm.com    } else {
226312725Snikos.nikoleris@arm.com        return cache->recvAtomic(pkt);
226412725Snikos.nikoleris@arm.com    }
226512724Snikos.nikoleris@arm.com}
226612724Snikos.nikoleris@arm.com
226712724Snikos.nikoleris@arm.comvoid
226812724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::recvFunctional(PacketPtr pkt)
226912724Snikos.nikoleris@arm.com{
227012725Snikos.nikoleris@arm.com    if (cache->system->bypassCaches()) {
227112725Snikos.nikoleris@arm.com        // The cache should be flushed if we are in cache bypass mode,
227212725Snikos.nikoleris@arm.com        // so we don't need to check if we need to update anything.
227312725Snikos.nikoleris@arm.com        cache->memSidePort.sendFunctional(pkt);
227412725Snikos.nikoleris@arm.com        return;
227512725Snikos.nikoleris@arm.com    }
227612725Snikos.nikoleris@arm.com
227712724Snikos.nikoleris@arm.com    // functional request
227812724Snikos.nikoleris@arm.com    cache->functionalAccess(pkt, true);
227912724Snikos.nikoleris@arm.com}
228012724Snikos.nikoleris@arm.com
228112724Snikos.nikoleris@arm.comAddrRangeList
228212724Snikos.nikoleris@arm.comBaseCache::CpuSidePort::getAddrRanges() const
228312724Snikos.nikoleris@arm.com{
228412724Snikos.nikoleris@arm.com    return cache->getAddrRanges();
228512724Snikos.nikoleris@arm.com}
228612724Snikos.nikoleris@arm.com
228712724Snikos.nikoleris@arm.com
228812724Snikos.nikoleris@arm.comBaseCache::
228912724Snikos.nikoleris@arm.comCpuSidePort::CpuSidePort(const std::string &_name, BaseCache *_cache,
229012724Snikos.nikoleris@arm.com                         const std::string &_label)
229112724Snikos.nikoleris@arm.com    : CacheSlavePort(_name, _cache, _label), cache(_cache)
229212724Snikos.nikoleris@arm.com{
229312724Snikos.nikoleris@arm.com}
229412724Snikos.nikoleris@arm.com
229512724Snikos.nikoleris@arm.com///////////////
229612724Snikos.nikoleris@arm.com//
229712724Snikos.nikoleris@arm.com// MemSidePort
229812724Snikos.nikoleris@arm.com//
229912724Snikos.nikoleris@arm.com///////////////
230012724Snikos.nikoleris@arm.combool
230112724Snikos.nikoleris@arm.comBaseCache::MemSidePort::recvTimingResp(PacketPtr pkt)
230212724Snikos.nikoleris@arm.com{
230312724Snikos.nikoleris@arm.com    cache->recvTimingResp(pkt);
230412724Snikos.nikoleris@arm.com    return true;
230512724Snikos.nikoleris@arm.com}
230612724Snikos.nikoleris@arm.com
230712724Snikos.nikoleris@arm.com// Express snooping requests to memside port
230812724Snikos.nikoleris@arm.comvoid
230912724Snikos.nikoleris@arm.comBaseCache::MemSidePort::recvTimingSnoopReq(PacketPtr pkt)
231012724Snikos.nikoleris@arm.com{
231112725Snikos.nikoleris@arm.com    // Snoops shouldn't happen when bypassing caches
231212725Snikos.nikoleris@arm.com    assert(!cache->system->bypassCaches());
231312725Snikos.nikoleris@arm.com
231412724Snikos.nikoleris@arm.com    // handle snooping requests
231512724Snikos.nikoleris@arm.com    cache->recvTimingSnoopReq(pkt);
231612724Snikos.nikoleris@arm.com}
231712724Snikos.nikoleris@arm.com
231812724Snikos.nikoleris@arm.comTick
231912724Snikos.nikoleris@arm.comBaseCache::MemSidePort::recvAtomicSnoop(PacketPtr pkt)
232012724Snikos.nikoleris@arm.com{
232112725Snikos.nikoleris@arm.com    // Snoops shouldn't happen when bypassing caches
232212725Snikos.nikoleris@arm.com    assert(!cache->system->bypassCaches());
232312725Snikos.nikoleris@arm.com
232412724Snikos.nikoleris@arm.com    return cache->recvAtomicSnoop(pkt);
232512724Snikos.nikoleris@arm.com}
232612724Snikos.nikoleris@arm.com
232712724Snikos.nikoleris@arm.comvoid
232812724Snikos.nikoleris@arm.comBaseCache::MemSidePort::recvFunctionalSnoop(PacketPtr pkt)
232912724Snikos.nikoleris@arm.com{
233012725Snikos.nikoleris@arm.com    // Snoops shouldn't happen when bypassing caches
233112725Snikos.nikoleris@arm.com    assert(!cache->system->bypassCaches());
233212725Snikos.nikoleris@arm.com
233312724Snikos.nikoleris@arm.com    // functional snoop (note that in contrast to atomic we don't have
233412724Snikos.nikoleris@arm.com    // a specific functionalSnoop method, as they have the same
233512724Snikos.nikoleris@arm.com    // behaviour regardless)
233612724Snikos.nikoleris@arm.com    cache->functionalAccess(pkt, false);
233712724Snikos.nikoleris@arm.com}
233812724Snikos.nikoleris@arm.com
233912724Snikos.nikoleris@arm.comvoid
234012724Snikos.nikoleris@arm.comBaseCache::CacheReqPacketQueue::sendDeferredPacket()
234112724Snikos.nikoleris@arm.com{
234212724Snikos.nikoleris@arm.com    // sanity check
234312724Snikos.nikoleris@arm.com    assert(!waitingOnRetry);
234412724Snikos.nikoleris@arm.com
234512724Snikos.nikoleris@arm.com    // there should never be any deferred request packets in the
234612724Snikos.nikoleris@arm.com    // queue, instead we resly on the cache to provide the packets
234712724Snikos.nikoleris@arm.com    // from the MSHR queue or write queue
234812724Snikos.nikoleris@arm.com    assert(deferredPacketReadyTime() == MaxTick);
234912724Snikos.nikoleris@arm.com
235012724Snikos.nikoleris@arm.com    // check for request packets (requests & writebacks)
235112724Snikos.nikoleris@arm.com    QueueEntry* entry = cache.getNextQueueEntry();
235212724Snikos.nikoleris@arm.com
235312724Snikos.nikoleris@arm.com    if (!entry) {
235412724Snikos.nikoleris@arm.com        // can happen if e.g. we attempt a writeback and fail, but
235512724Snikos.nikoleris@arm.com        // before the retry, the writeback is eliminated because
235612724Snikos.nikoleris@arm.com        // we snoop another cache's ReadEx.
235712724Snikos.nikoleris@arm.com    } else {
235812724Snikos.nikoleris@arm.com        // let our snoop responses go first if there are responses to
235912724Snikos.nikoleris@arm.com        // the same addresses
236012724Snikos.nikoleris@arm.com        if (checkConflictingSnoop(entry->blkAddr)) {
236112724Snikos.nikoleris@arm.com            return;
236212724Snikos.nikoleris@arm.com        }
236312724Snikos.nikoleris@arm.com        waitingOnRetry = entry->sendPacket(cache);
236412724Snikos.nikoleris@arm.com    }
236512724Snikos.nikoleris@arm.com
236612724Snikos.nikoleris@arm.com    // if we succeeded and are not waiting for a retry, schedule the
236712724Snikos.nikoleris@arm.com    // next send considering when the next queue is ready, note that
236812724Snikos.nikoleris@arm.com    // snoop responses have their own packet queue and thus schedule
236912724Snikos.nikoleris@arm.com    // their own events
237012724Snikos.nikoleris@arm.com    if (!waitingOnRetry) {
237112724Snikos.nikoleris@arm.com        schedSendEvent(cache.nextQueueReadyTime());
237212724Snikos.nikoleris@arm.com    }
237312724Snikos.nikoleris@arm.com}
237412724Snikos.nikoleris@arm.com
237512724Snikos.nikoleris@arm.comBaseCache::MemSidePort::MemSidePort(const std::string &_name,
237612724Snikos.nikoleris@arm.com                                    BaseCache *_cache,
237712724Snikos.nikoleris@arm.com                                    const std::string &_label)
237812724Snikos.nikoleris@arm.com    : CacheMasterPort(_name, _cache, _reqQueue, _snoopRespQueue),
237912724Snikos.nikoleris@arm.com      _reqQueue(*_cache, *this, _snoopRespQueue, _label),
238012724Snikos.nikoleris@arm.com      _snoopRespQueue(*_cache, *this, _label), cache(_cache)
238112724Snikos.nikoleris@arm.com{
238212724Snikos.nikoleris@arm.com}
238313352Snikos.nikoleris@arm.com
238413352Snikos.nikoleris@arm.comvoid
238513352Snikos.nikoleris@arm.comWriteAllocator::updateMode(Addr write_addr, unsigned write_size,
238613352Snikos.nikoleris@arm.com                           Addr blk_addr)
238713352Snikos.nikoleris@arm.com{
238813352Snikos.nikoleris@arm.com    // check if we are continuing where the last write ended
238913352Snikos.nikoleris@arm.com    if (nextAddr == write_addr) {
239013352Snikos.nikoleris@arm.com        delayCtr[blk_addr] = delayThreshold;
239113352Snikos.nikoleris@arm.com        // stop if we have already saturated
239213352Snikos.nikoleris@arm.com        if (mode != WriteMode::NO_ALLOCATE) {
239313352Snikos.nikoleris@arm.com            byteCount += write_size;
239413352Snikos.nikoleris@arm.com            // switch to streaming mode if we have passed the lower
239513352Snikos.nikoleris@arm.com            // threshold
239613352Snikos.nikoleris@arm.com            if (mode == WriteMode::ALLOCATE &&
239713352Snikos.nikoleris@arm.com                byteCount > coalesceLimit) {
239813352Snikos.nikoleris@arm.com                mode = WriteMode::COALESCE;
239913352Snikos.nikoleris@arm.com                DPRINTF(Cache, "Switched to write coalescing\n");
240013352Snikos.nikoleris@arm.com            } else if (mode == WriteMode::COALESCE &&
240113352Snikos.nikoleris@arm.com                       byteCount > noAllocateLimit) {
240213352Snikos.nikoleris@arm.com                // and continue and switch to non-allocating mode if we
240313352Snikos.nikoleris@arm.com                // pass the upper threshold
240413352Snikos.nikoleris@arm.com                mode = WriteMode::NO_ALLOCATE;
240513352Snikos.nikoleris@arm.com                DPRINTF(Cache, "Switched to write-no-allocate\n");
240613352Snikos.nikoleris@arm.com            }
240713352Snikos.nikoleris@arm.com        }
240813352Snikos.nikoleris@arm.com    } else {
240913352Snikos.nikoleris@arm.com        // we did not see a write matching the previous one, start
241013352Snikos.nikoleris@arm.com        // over again
241113352Snikos.nikoleris@arm.com        byteCount = write_size;
241213352Snikos.nikoleris@arm.com        mode = WriteMode::ALLOCATE;
241313352Snikos.nikoleris@arm.com        resetDelay(blk_addr);
241413352Snikos.nikoleris@arm.com    }
241513352Snikos.nikoleris@arm.com    nextAddr = write_addr + write_size;
241613352Snikos.nikoleris@arm.com}
241713352Snikos.nikoleris@arm.com
241813352Snikos.nikoleris@arm.comWriteAllocator*
241913352Snikos.nikoleris@arm.comWriteAllocatorParams::create()
242013352Snikos.nikoleris@arm.com{
242113352Snikos.nikoleris@arm.com    return new WriteAllocator(this);
242213352Snikos.nikoleris@arm.com}
2423