mshr.cc revision 10503:94d58056729f
1/*
2 * Copyright (c) 2012-2013 ARM Limited
3 * All rights reserved.
4 *
5 * The license below extends only to copyright in the software and shall
6 * not be construed as granting a license to any other intellectual
7 * property including but not limited to intellectual property relating
8 * to a hardware implementation of the functionality of the software
9 * licensed hereunder.  You may use the software subject to the license
10 * terms below provided that you ensure that this notice is replicated
11 * unmodified and in its entirety in all distributions of the software,
12 * modified or unmodified, in source code or in binary form.
13 *
14 * Copyright (c) 2002-2005 The Regents of The University of Michigan
15 * Copyright (c) 2010 Advanced Micro Devices, Inc.
16 * All rights reserved.
17 *
18 * Redistribution and use in source and binary forms, with or without
19 * modification, are permitted provided that the following conditions are
20 * met: redistributions of source code must retain the above copyright
21 * notice, this list of conditions and the following disclaimer;
22 * redistributions in binary form must reproduce the above copyright
23 * notice, this list of conditions and the following disclaimer in the
24 * documentation and/or other materials provided with the distribution;
25 * neither the name of the copyright holders nor the names of its
26 * contributors may be used to endorse or promote products derived from
27 * this software without specific prior written permission.
28 *
29 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
30 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
31 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
32 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
33 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
34 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
35 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
36 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
37 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
38 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
39 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
40 *
41 * Authors: Erik Hallnor
42 *          Dave Greene
43 */
44
45/**
46 * @file
47 * Miss Status and Handling Register (MSHR) definitions.
48 */
49
50#include <algorithm>
51#include <cassert>
52#include <string>
53#include <vector>
54
55#include "base/misc.hh"
56#include "base/types.hh"
57#include "debug/Cache.hh"
58#include "mem/cache/cache.hh"
59#include "mem/cache/mshr.hh"
60#include "sim/core.hh"
61
62using namespace std;
63
64MSHR::MSHR() : readyTime(0), _isUncacheable(false), downstreamPending(false),
65               pendingDirty(false), pendingClean(false),
66               postInvalidate(false), postDowngrade(false),
67               _isObsolete(false), queue(NULL), order(0), addr(0),
68               size(0), isSecure(false), inService(false),
69               isForward(false), threadNum(InvalidThreadID), data(NULL)
70{
71}
72
73
74MSHR::TargetList::TargetList()
75    : needsExclusive(false), hasUpgrade(false)
76{}
77
78
79inline void
80MSHR::TargetList::add(PacketPtr pkt, Tick readyTime,
81                      Counter order, Target::Source source, bool markPending)
82{
83    if (source != Target::FromSnoop) {
84        if (pkt->needsExclusive()) {
85            needsExclusive = true;
86        }
87
88        // StoreCondReq is effectively an upgrade if it's in an MSHR
89        // since it would have been failed already if we didn't have a
90        // read-only copy
91        if (pkt->isUpgrade() || pkt->cmd == MemCmd::StoreCondReq) {
92            hasUpgrade = true;
93        }
94    }
95
96    if (markPending) {
97        // Iterate over the SenderState stack and see if we find
98        // an MSHR entry. If we do, set the downstreamPending
99        // flag. Otherwise, do nothing.
100        MSHR *mshr = pkt->findNextSenderState<MSHR>();
101        if (mshr != NULL) {
102            assert(!mshr->downstreamPending);
103            mshr->downstreamPending = true;
104        }
105    }
106
107    push_back(Target(pkt, readyTime, order, source, markPending));
108}
109
110
111static void
112replaceUpgrade(PacketPtr pkt)
113{
114    if (pkt->cmd == MemCmd::UpgradeReq) {
115        pkt->cmd = MemCmd::ReadExReq;
116        DPRINTF(Cache, "Replacing UpgradeReq with ReadExReq\n");
117    } else if (pkt->cmd == MemCmd::SCUpgradeReq) {
118        pkt->cmd = MemCmd::SCUpgradeFailReq;
119        DPRINTF(Cache, "Replacing SCUpgradeReq with SCUpgradeFailReq\n");
120    } else if (pkt->cmd == MemCmd::StoreCondReq) {
121        pkt->cmd = MemCmd::StoreCondFailReq;
122        DPRINTF(Cache, "Replacing StoreCondReq with StoreCondFailReq\n");
123    }
124}
125
126
127void
128MSHR::TargetList::replaceUpgrades()
129{
130    if (!hasUpgrade)
131        return;
132
133    Iterator end_i = end();
134    for (Iterator i = begin(); i != end_i; ++i) {
135        replaceUpgrade(i->pkt);
136    }
137
138    hasUpgrade = false;
139}
140
141
142void
143MSHR::TargetList::clearDownstreamPending()
144{
145    Iterator end_i = end();
146    for (Iterator i = begin(); i != end_i; ++i) {
147        if (i->markedPending) {
148            // Iterate over the SenderState stack and see if we find
149            // an MSHR entry. If we find one, clear the
150            // downstreamPending flag by calling
151            // clearDownstreamPending(). This recursively clears the
152            // downstreamPending flag in all caches this packet has
153            // passed through.
154            MSHR *mshr = i->pkt->findNextSenderState<MSHR>();
155            if (mshr != NULL) {
156                mshr->clearDownstreamPending();
157            }
158        }
159    }
160}
161
162
163bool
164MSHR::TargetList::checkFunctional(PacketPtr pkt)
165{
166    Iterator end_i = end();
167    for (Iterator i = begin(); i != end_i; ++i) {
168        if (pkt->checkFunctional(i->pkt)) {
169            return true;
170        }
171    }
172
173    return false;
174}
175
176
177void
178MSHR::TargetList::
179print(std::ostream &os, int verbosity, const std::string &prefix) const
180{
181    ConstIterator end_i = end();
182    for (ConstIterator i = begin(); i != end_i; ++i) {
183        const char *s;
184        switch (i->source) {
185          case Target::FromCPU:
186            s = "FromCPU";
187            break;
188          case Target::FromSnoop:
189            s = "FromSnoop";
190            break;
191          case Target::FromPrefetcher:
192            s = "FromPrefetcher";
193            break;
194          default:
195            s = "";
196            break;
197        }
198        ccprintf(os, "%s%s: ", prefix, s);
199        i->pkt->print(os, verbosity, "");
200    }
201}
202
203
204void
205MSHR::allocate(Addr _addr, int _size, PacketPtr target, Tick whenReady,
206               Counter _order)
207{
208    addr = _addr;
209    size = _size;
210    isSecure = target->isSecure();
211    readyTime = whenReady;
212    order = _order;
213    assert(target);
214    isForward = false;
215    _isUncacheable = target->req->isUncacheable();
216    inService = false;
217    pendingClean = (target->cmd == MemCmd::WriteInvalidateReq);
218    downstreamPending = false;
219    _isObsolete = false;
220    threadNum = 0;
221    assert(targets.isReset());
222    // Don't know of a case where we would allocate a new MSHR for a
223    // snoop (mem-side request), so set source according to request here
224    Target::Source source = (target->cmd == MemCmd::HardPFReq) ?
225        Target::FromPrefetcher : Target::FromCPU;
226    targets.add(target, whenReady, _order, source, true);
227    assert(deferredTargets.isReset());
228    data = NULL;
229}
230
231
232void
233MSHR::clearDownstreamPending()
234{
235    assert(downstreamPending);
236    downstreamPending = false;
237    // recursively clear flag on any MSHRs we will be forwarding
238    // responses to
239    targets.clearDownstreamPending();
240}
241
242bool
243MSHR::markInService(PacketPtr pkt)
244{
245    assert(!inService);
246    if (isForwardNoResponse()) {
247        // we just forwarded the request packet & don't expect a
248        // response, so get rid of it
249        assert(getNumTargets() == 1);
250        popTarget();
251        return true;
252    }
253
254    assert(pkt != NULL);
255    inService = true;
256    pendingDirty = ((targets.needsExclusive &&
257                     (pkt->cmd != MemCmd::WriteInvalidateReq)) ||
258                    (!pkt->sharedAsserted() && pkt->memInhibitAsserted()));
259    postInvalidate = postDowngrade = false;
260
261    if (!downstreamPending) {
262        // let upstream caches know that the request has made it to a
263        // level where it's going to get a response
264        targets.clearDownstreamPending();
265    }
266    return false;
267}
268
269
270void
271MSHR::deallocate()
272{
273    assert(targets.empty());
274    targets.resetFlags();
275    assert(deferredTargets.isReset());
276    inService = false;
277}
278
279/*
280 * Adds a target to an MSHR
281 */
282void
283MSHR::allocateTarget(PacketPtr pkt, Tick whenReady, Counter _order)
284{
285    // if there's a request already in service for this MSHR, we will
286    // have to defer the new target until after the response if any of
287    // the following are true:
288    // - there are other targets already deferred
289    // - there's a pending invalidate to be applied after the response
290    //   comes back (but before this target is processed)
291    // - this target requires an exclusive block and either we're not
292    //   getting an exclusive block back or we have already snooped
293    //   another read request that will downgrade our exclusive block
294    //   to shared
295
296    // assume we'd never issue a prefetch when we've got an
297    // outstanding miss
298    assert(pkt->cmd != MemCmd::HardPFReq);
299
300    if (inService &&
301        (!deferredTargets.empty() || hasPostInvalidate() ||
302         (pkt->needsExclusive() &&
303          (!isPendingDirty() || hasPostDowngrade() || isForward)))) {
304        // need to put on deferred list
305        if (hasPostInvalidate())
306            replaceUpgrade(pkt);
307        deferredTargets.add(pkt, whenReady, _order, Target::FromCPU, true);
308    } else {
309        // No request outstanding, or still OK to append to
310        // outstanding request: append to regular target list.  Only
311        // mark pending if current request hasn't been issued yet
312        // (isn't in service).
313        targets.add(pkt, whenReady, _order, Target::FromCPU, !inService);
314    }
315}
316
317bool
318MSHR::handleSnoop(PacketPtr pkt, Counter _order)
319{
320    DPRINTF(Cache, "%s for %s address %x size %d\n", __func__,
321            pkt->cmdString(), pkt->getAddr(), pkt->getSize());
322    if (!inService || (pkt->isExpressSnoop() && downstreamPending)) {
323        // Request has not been issued yet, or it's been issued
324        // locally but is buffered unissued at some downstream cache
325        // which is forwarding us this snoop.  Either way, the packet
326        // we're snooping logically precedes this MSHR's request, so
327        // the snoop has no impact on the MSHR, but must be processed
328        // in the standard way by the cache.  The only exception is
329        // that if we're an L2+ cache buffering an UpgradeReq from a
330        // higher-level cache, and the snoop is invalidating, then our
331        // buffered upgrades must be converted to read exclusives,
332        // since the upper-level cache no longer has a valid copy.
333        // That is, even though the upper-level cache got out on its
334        // local bus first, some other invalidating transaction
335        // reached the global bus before the upgrade did.
336        if (pkt->needsExclusive()) {
337            targets.replaceUpgrades();
338            deferredTargets.replaceUpgrades();
339        }
340
341        return false;
342    }
343
344    // From here on down, the request issued by this MSHR logically
345    // precedes the request we're snooping.
346    if (pkt->needsExclusive()) {
347        // snooped request still precedes the re-request we'll have to
348        // issue for deferred targets, if any...
349        deferredTargets.replaceUpgrades();
350    }
351
352    if (hasPostInvalidate()) {
353        // a prior snoop has already appended an invalidation, so
354        // logically we don't have the block anymore; no need for
355        // further snooping.
356        return true;
357    }
358
359    if (isPendingDirty() || pkt->isInvalidate()) {
360        // We need to save and replay the packet in two cases:
361        // 1. We're awaiting an exclusive copy, so ownership is pending,
362        //    and we need to respond after we receive data.
363        // 2. It's an invalidation (e.g., UpgradeReq), and we need
364        //    to forward the snoop up the hierarchy after the current
365        //    transaction completes.
366
367        // Actual target device (typ. a memory) will delete the
368        // packet on reception, so we need to save a copy here.
369        PacketPtr cp_pkt = new Packet(pkt, true);
370        targets.add(cp_pkt, curTick(), _order, Target::FromSnoop,
371                     downstreamPending && targets.needsExclusive);
372
373        // WriteInvalidates must writeback and should not be inhibited on
374        // account of its snoops discovering MSHRs wanting exclusive access
375        // to what it wrote.  We don't want to push this check higher,
376        // however, because we want to be sure to add an invalidating
377        // Target::FromSnoop, above.
378        if (isPendingDirty() && (pkt->cmd != MemCmd::WriteInvalidateReq)) {
379            pkt->assertMemInhibit();
380            pkt->setSupplyExclusive();
381        }
382
383        if (pkt->needsExclusive()) {
384            // This transaction will take away our pending copy
385            postInvalidate = true;
386
387            // Do not defer (i.e. return true) the snoop if the block is
388            // going to be clean once the MSHR completes, as the data is
389            // ready now.
390            if (isPendingClean()) {
391                return false;
392            }
393        }
394    }
395
396    if (!pkt->needsExclusive()) {
397        // This transaction will get a read-shared copy, downgrading
398        // our copy if we had an exclusive one
399        postDowngrade = true;
400        pkt->assertShared();
401    }
402
403    return true;
404}
405
406
407bool
408MSHR::promoteDeferredTargets()
409{
410    assert(targets.empty());
411    if (deferredTargets.empty()) {
412        return false;
413    }
414
415    // swap targets & deferredTargets lists
416    std::swap(targets, deferredTargets);
417
418    // clear deferredTargets flags
419    deferredTargets.resetFlags();
420
421    order = targets.front().order;
422    readyTime = std::max(curTick(), targets.front().readyTime);
423
424    return true;
425}
426
427
428void
429MSHR::handleFill(Packet *pkt, CacheBlk *blk)
430{
431    if (!pkt->sharedAsserted()
432        && !(hasPostInvalidate() || hasPostDowngrade())
433        && deferredTargets.needsExclusive) {
434        // We got an exclusive response, but we have deferred targets
435        // which are waiting to request an exclusive copy (not because
436        // of a pending invalidate).  This can happen if the original
437        // request was for a read-only (non-exclusive) block, but we
438        // got an exclusive copy anyway because of the E part of the
439        // MOESI/MESI protocol.  Since we got the exclusive copy
440        // there's no need to defer the targets, so move them up to
441        // the regular target list.
442        assert(!targets.needsExclusive);
443        targets.needsExclusive = true;
444        // if any of the deferred targets were upper-level cache
445        // requests marked downstreamPending, need to clear that
446        assert(!downstreamPending);  // not pending here anymore
447        deferredTargets.clearDownstreamPending();
448        // this clears out deferredTargets too
449        targets.splice(targets.end(), deferredTargets);
450        deferredTargets.resetFlags();
451    }
452}
453
454
455bool
456MSHR::checkFunctional(PacketPtr pkt)
457{
458    // For printing, we treat the MSHR as a whole as single entity.
459    // For other requests, we iterate over the individual targets
460    // since that's where the actual data lies.
461    if (pkt->isPrint()) {
462        pkt->checkFunctional(this, addr, isSecure, size, NULL);
463        return false;
464    } else {
465        return (targets.checkFunctional(pkt) ||
466                deferredTargets.checkFunctional(pkt));
467    }
468}
469
470
471void
472MSHR::print(std::ostream &os, int verbosity, const std::string &prefix) const
473{
474    ccprintf(os, "%s[%x:%x](%s) %s %s %s state: %s %s %s %s %s\n",
475             prefix, addr, addr+size-1,
476             isSecure ? "s" : "ns",
477             isForward ? "Forward" : "",
478             isForwardNoResponse() ? "ForwNoResp" : "",
479             needsExclusive() ? "Excl" : "",
480             _isUncacheable ? "Unc" : "",
481             inService ? "InSvc" : "",
482             downstreamPending ? "DwnPend" : "",
483             hasPostInvalidate() ? "PostInv" : "",
484             hasPostDowngrade() ? "PostDowngr" : "");
485
486    ccprintf(os, "%s  Targets:\n", prefix);
487    targets.print(os, verbosity, prefix + "    ");
488    if (!deferredTargets.empty()) {
489        ccprintf(os, "%s  Deferred Targets:\n", prefix);
490        deferredTargets.print(os, verbosity, prefix + "      ");
491    }
492}
493
494std::string
495MSHR::print() const
496{
497    ostringstream str;
498    print(str);
499    return str.str();
500}
501