noncoherent_xbar.cc revision 10888
1/*
2 * Copyright (c) 2011-2015 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) 2006 The Regents of The University of Michigan
15 * All rights reserved.
16 *
17 * Redistribution and use in source and binary forms, with or without
18 * modification, are permitted provided that the following conditions are
19 * met: redistributions of source code must retain the above copyright
20 * notice, this list of conditions and the following disclaimer;
21 * redistributions in binary form must reproduce the above copyright
22 * notice, this list of conditions and the following disclaimer in the
23 * documentation and/or other materials provided with the distribution;
24 * neither the name of the copyright holders nor the names of its
25 * contributors may be used to endorse or promote products derived from
26 * this software without specific prior written permission.
27 *
28 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
29 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
30 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
31 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
32 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
33 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
34 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
35 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
36 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
37 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
38 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
39 *
40 * Authors: Ali Saidi
41 *          Andreas Hansson
42 *          William Wang
43 */
44
45/**
46 * @file
47 * Definition of a non-coherent crossbar object.
48 */
49
50#include "base/misc.hh"
51#include "base/trace.hh"
52#include "debug/NoncoherentXBar.hh"
53#include "debug/XBar.hh"
54#include "mem/noncoherent_xbar.hh"
55
56NoncoherentXBar::NoncoherentXBar(const NoncoherentXBarParams *p)
57    : BaseXBar(p)
58{
59    // create the ports based on the size of the master and slave
60    // vector ports, and the presence of the default port, the ports
61    // are enumerated starting from zero
62    for (int i = 0; i < p->port_master_connection_count; ++i) {
63        std::string portName = csprintf("%s.master[%d]", name(), i);
64        MasterPort* bp = new NoncoherentXBarMasterPort(portName, *this, i);
65        masterPorts.push_back(bp);
66        reqLayers.push_back(new ReqLayer(*bp, *this,
67                                         csprintf(".reqLayer%d", i)));
68    }
69
70    // see if we have a default slave device connected and if so add
71    // our corresponding master port
72    if (p->port_default_connection_count) {
73        defaultPortID = masterPorts.size();
74        std::string portName = name() + ".default";
75        MasterPort* bp = new NoncoherentXBarMasterPort(portName, *this,
76                                                      defaultPortID);
77        masterPorts.push_back(bp);
78        reqLayers.push_back(new ReqLayer(*bp, *this, csprintf(".reqLayer%d",
79                                                              defaultPortID)));
80    }
81
82    // create the slave ports, once again starting at zero
83    for (int i = 0; i < p->port_slave_connection_count; ++i) {
84        std::string portName = csprintf("%s.slave[%d]", name(), i);
85        QueuedSlavePort* bp = new NoncoherentXBarSlavePort(portName, *this, i);
86        slavePorts.push_back(bp);
87        respLayers.push_back(new RespLayer(*bp, *this,
88                                           csprintf(".respLayer%d", i)));
89    }
90
91    clearPortCache();
92}
93
94NoncoherentXBar::~NoncoherentXBar()
95{
96    for (auto l: reqLayers)
97        delete l;
98    for (auto l: respLayers)
99        delete l;
100}
101
102bool
103NoncoherentXBar::recvTimingReq(PacketPtr pkt, PortID slave_port_id)
104{
105    // determine the source port based on the id
106    SlavePort *src_port = slavePorts[slave_port_id];
107
108    // we should never see express snoops on a non-coherent crossbar
109    assert(!pkt->isExpressSnoop());
110
111    // determine the destination based on the address
112    PortID master_port_id = findPort(pkt->getAddr());
113
114    // test if the layer should be considered occupied for the current
115    // port
116    if (!reqLayers[master_port_id]->tryTiming(src_port)) {
117        DPRINTF(NoncoherentXBar, "recvTimingReq: src %s %s 0x%x BUSY\n",
118                src_port->name(), pkt->cmdString(), pkt->getAddr());
119        return false;
120    }
121
122    DPRINTF(NoncoherentXBar, "recvTimingReq: src %s %s 0x%x\n",
123            src_port->name(), pkt->cmdString(), pkt->getAddr());
124
125    // store size and command as they might be modified when
126    // forwarding the packet
127    unsigned int pkt_size = pkt->hasData() ? pkt->getSize() : 0;
128    unsigned int pkt_cmd = pkt->cmdToIndex();
129
130    // store the old header delay so we can restore it if needed
131    Tick old_header_delay = pkt->headerDelay;
132
133    // a request sees the frontend and forward latency
134    Tick xbar_delay = (frontendLatency + forwardLatency) * clockPeriod();
135
136    // set the packet header and payload delay
137    calcPacketTiming(pkt, xbar_delay);
138
139    // determine how long to be crossbar layer is busy
140    Tick packetFinishTime = clockEdge(Cycles(1)) + pkt->payloadDelay;
141
142    // before forwarding the packet (and possibly altering it),
143    // remember if we are expecting a response
144    const bool expect_response = pkt->needsResponse() &&
145        !pkt->memInhibitAsserted();
146
147    // since it is a normal request, attempt to send the packet
148    bool success = masterPorts[master_port_id]->sendTimingReq(pkt);
149
150    if (!success)  {
151        // inhibited packets should never be forced to retry
152        assert(!pkt->memInhibitAsserted());
153
154        DPRINTF(NoncoherentXBar, "recvTimingReq: src %s %s 0x%x RETRY\n",
155                src_port->name(), pkt->cmdString(), pkt->getAddr());
156
157        // restore the header delay as it is additive
158        pkt->headerDelay = old_header_delay;
159
160        // occupy until the header is sent
161        reqLayers[master_port_id]->failedTiming(src_port,
162                                                clockEdge(Cycles(1)));
163
164        return false;
165    }
166
167    // remember where to route the response to
168    if (expect_response) {
169        assert(routeTo.find(pkt->req) == routeTo.end());
170        routeTo[pkt->req] = slave_port_id;
171    }
172
173    reqLayers[master_port_id]->succeededTiming(packetFinishTime);
174
175    // stats updates
176    pktCount[slave_port_id][master_port_id]++;
177    pktSize[slave_port_id][master_port_id] += pkt_size;
178    transDist[pkt_cmd]++;
179
180    return true;
181}
182
183bool
184NoncoherentXBar::recvTimingResp(PacketPtr pkt, PortID master_port_id)
185{
186    // determine the source port based on the id
187    MasterPort *src_port = masterPorts[master_port_id];
188
189    // determine the destination
190    const auto route_lookup = routeTo.find(pkt->req);
191    assert(route_lookup != routeTo.end());
192    const PortID slave_port_id = route_lookup->second;
193    assert(slave_port_id != InvalidPortID);
194    assert(slave_port_id < respLayers.size());
195
196    // test if the layer should be considered occupied for the current
197    // port
198    if (!respLayers[slave_port_id]->tryTiming(src_port)) {
199        DPRINTF(NoncoherentXBar, "recvTimingResp: src %s %s 0x%x BUSY\n",
200                src_port->name(), pkt->cmdString(), pkt->getAddr());
201        return false;
202    }
203
204    DPRINTF(NoncoherentXBar, "recvTimingResp: src %s %s 0x%x\n",
205            src_port->name(), pkt->cmdString(), pkt->getAddr());
206
207    // store size and command as they might be modified when
208    // forwarding the packet
209    unsigned int pkt_size = pkt->hasData() ? pkt->getSize() : 0;
210    unsigned int pkt_cmd = pkt->cmdToIndex();
211
212    // a response sees the response latency
213    Tick xbar_delay = responseLatency * clockPeriod();
214
215    // set the packet header and payload delay
216    calcPacketTiming(pkt, xbar_delay);
217
218    // determine how long to be crossbar layer is busy
219    Tick packetFinishTime = clockEdge(Cycles(1)) + pkt->payloadDelay;
220
221    // send the packet through the destination slave port, and pay for
222    // any outstanding latency
223    Tick latency = pkt->headerDelay;
224    pkt->headerDelay = 0;
225    slavePorts[slave_port_id]->schedTimingResp(pkt, curTick() + latency);
226
227    // remove the request from the routing table
228    routeTo.erase(route_lookup);
229
230    respLayers[slave_port_id]->succeededTiming(packetFinishTime);
231
232    // stats updates
233    pktCount[slave_port_id][master_port_id]++;
234    pktSize[slave_port_id][master_port_id] += pkt_size;
235    transDist[pkt_cmd]++;
236
237    return true;
238}
239
240void
241NoncoherentXBar::recvReqRetry(PortID master_port_id)
242{
243    // responses never block on forwarding them, so the retry will
244    // always be coming from a port to which we tried to forward a
245    // request
246    reqLayers[master_port_id]->recvRetry();
247}
248
249Tick
250NoncoherentXBar::recvAtomic(PacketPtr pkt, PortID slave_port_id)
251{
252    DPRINTF(NoncoherentXBar, "recvAtomic: packet src %s addr 0x%x cmd %s\n",
253            slavePorts[slave_port_id]->name(), pkt->getAddr(),
254            pkt->cmdString());
255
256    unsigned int pkt_size = pkt->hasData() ? pkt->getSize() : 0;
257    unsigned int pkt_cmd = pkt->cmdToIndex();
258
259    // determine the destination port
260    PortID master_port_id = findPort(pkt->getAddr());
261
262    // stats updates for the request
263    pktCount[slave_port_id][master_port_id]++;
264    pktSize[slave_port_id][master_port_id] += pkt_size;
265    transDist[pkt_cmd]++;
266
267    // forward the request to the appropriate destination
268    Tick response_latency = masterPorts[master_port_id]->sendAtomic(pkt);
269
270    // add the response data
271    if (pkt->isResponse()) {
272        pkt_size = pkt->hasData() ? pkt->getSize() : 0;
273        pkt_cmd = pkt->cmdToIndex();
274
275        // stats updates
276        pktCount[slave_port_id][master_port_id]++;
277        pktSize[slave_port_id][master_port_id] += pkt_size;
278        transDist[pkt_cmd]++;
279    }
280
281    // @todo: Not setting first-word time
282    pkt->payloadDelay = response_latency;
283    return response_latency;
284}
285
286void
287NoncoherentXBar::recvFunctional(PacketPtr pkt, PortID slave_port_id)
288{
289    if (!pkt->isPrint()) {
290        // don't do DPRINTFs on PrintReq as it clutters up the output
291        DPRINTF(NoncoherentXBar,
292                "recvFunctional: packet src %s addr 0x%x cmd %s\n",
293                slavePorts[slave_port_id]->name(), pkt->getAddr(),
294                pkt->cmdString());
295    }
296
297    // since our slave ports are queued ports we need to check them as well
298    for (const auto& p : slavePorts) {
299        // if we find a response that has the data, then the
300        // downstream caches/memories may be out of date, so simply stop
301        // here
302        if (p->checkFunctional(pkt)) {
303            if (pkt->needsResponse())
304                pkt->makeResponse();
305            return;
306        }
307    }
308
309    // determine the destination port
310    PortID dest_id = findPort(pkt->getAddr());
311
312    // forward the request to the appropriate destination
313    masterPorts[dest_id]->sendFunctional(pkt);
314}
315
316unsigned int
317NoncoherentXBar::drain(DrainManager *dm)
318{
319    // sum up the individual layers
320    unsigned int total = 0;
321    for (auto l: reqLayers)
322        total += l->drain(dm);
323    for (auto l: respLayers)
324        total += l->drain(dm);
325    return total;
326}
327
328NoncoherentXBar*
329NoncoherentXBarParams::create()
330{
331    return new NoncoherentXBar(this);
332}
333
334void
335NoncoherentXBar::regStats()
336{
337    // register the stats of the base class and our layers
338    BaseXBar::regStats();
339    for (auto l: reqLayers)
340        l->regStats();
341    for (auto l: respLayers)
342        l->regStats();
343}
344