noncoherent_xbar.cc revision 10572:fc4c90a7d2f5
1/* 2 * Copyright (c) 2011-2014 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 SlavePort* 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 // set the source port for routing of the response 131 pkt->setSrc(slave_port_id); 132 133 calcPacketTiming(pkt); 134 Tick packetFinishTime = pkt->lastWordDelay + curTick(); 135 136 // since it is a normal request, attempt to send the packet 137 bool success = masterPorts[master_port_id]->sendTimingReq(pkt); 138 139 if (!success) { 140 // inhibited packets should never be forced to retry 141 assert(!pkt->memInhibitAsserted()); 142 143 DPRINTF(NoncoherentXBar, "recvTimingReq: src %s %s 0x%x RETRY\n", 144 src_port->name(), pkt->cmdString(), pkt->getAddr()); 145 146 // undo the calculation so we can check for 0 again 147 pkt->firstWordDelay = pkt->lastWordDelay = 0; 148 149 // occupy until the header is sent 150 reqLayers[master_port_id]->failedTiming(src_port, 151 clockEdge(headerCycles)); 152 153 return false; 154 } 155 156 reqLayers[master_port_id]->succeededTiming(packetFinishTime); 157 158 // stats updates 159 pktCount[slave_port_id][master_port_id]++; 160 pktSize[slave_port_id][master_port_id] += pkt_size; 161 transDist[pkt_cmd]++; 162 163 return true; 164} 165 166bool 167NoncoherentXBar::recvTimingResp(PacketPtr pkt, PortID master_port_id) 168{ 169 // determine the source port based on the id 170 MasterPort *src_port = masterPorts[master_port_id]; 171 172 // determine the destination based on what is stored in the packet 173 PortID slave_port_id = pkt->getDest(); 174 assert(slave_port_id != InvalidPortID); 175 assert(slave_port_id < respLayers.size()); 176 177 // test if the layer should be considered occupied for the current 178 // port 179 if (!respLayers[slave_port_id]->tryTiming(src_port)) { 180 DPRINTF(NoncoherentXBar, "recvTimingResp: src %s %s 0x%x BUSY\n", 181 src_port->name(), pkt->cmdString(), pkt->getAddr()); 182 return false; 183 } 184 185 DPRINTF(NoncoherentXBar, "recvTimingResp: src %s %s 0x%x\n", 186 src_port->name(), pkt->cmdString(), pkt->getAddr()); 187 188 // store size and command as they might be modified when 189 // forwarding the packet 190 unsigned int pkt_size = pkt->hasData() ? pkt->getSize() : 0; 191 unsigned int pkt_cmd = pkt->cmdToIndex(); 192 193 calcPacketTiming(pkt); 194 Tick packetFinishTime = pkt->lastWordDelay + curTick(); 195 196 // send the packet through the destination slave port 197 bool success M5_VAR_USED = slavePorts[slave_port_id]->sendTimingResp(pkt); 198 199 // currently it is illegal to block responses... can lead to 200 // deadlock 201 assert(success); 202 203 respLayers[slave_port_id]->succeededTiming(packetFinishTime); 204 205 // stats updates 206 pktCount[slave_port_id][master_port_id]++; 207 pktSize[slave_port_id][master_port_id] += pkt_size; 208 transDist[pkt_cmd]++; 209 210 return true; 211} 212 213void 214NoncoherentXBar::recvRetry(PortID master_port_id) 215{ 216 // responses never block on forwarding them, so the retry will 217 // always be coming from a port to which we tried to forward a 218 // request 219 reqLayers[master_port_id]->recvRetry(); 220} 221 222Tick 223NoncoherentXBar::recvAtomic(PacketPtr pkt, PortID slave_port_id) 224{ 225 DPRINTF(NoncoherentXBar, "recvAtomic: packet src %s addr 0x%x cmd %s\n", 226 slavePorts[slave_port_id]->name(), pkt->getAddr(), 227 pkt->cmdString()); 228 229 unsigned int pkt_size = pkt->hasData() ? pkt->getSize() : 0; 230 unsigned int pkt_cmd = pkt->cmdToIndex(); 231 232 // determine the destination port 233 PortID master_port_id = findPort(pkt->getAddr()); 234 235 // stats updates for the request 236 pktCount[slave_port_id][master_port_id]++; 237 pktSize[slave_port_id][master_port_id] += pkt_size; 238 transDist[pkt_cmd]++; 239 240 // forward the request to the appropriate destination 241 Tick response_latency = masterPorts[master_port_id]->sendAtomic(pkt); 242 243 // add the response data 244 if (pkt->isResponse()) { 245 pkt_size = pkt->hasData() ? pkt->getSize() : 0; 246 pkt_cmd = pkt->cmdToIndex(); 247 248 // stats updates 249 pktCount[slave_port_id][master_port_id]++; 250 pktSize[slave_port_id][master_port_id] += pkt_size; 251 transDist[pkt_cmd]++; 252 } 253 254 // @todo: Not setting first-word time 255 pkt->lastWordDelay = response_latency; 256 return response_latency; 257} 258 259void 260NoncoherentXBar::recvFunctional(PacketPtr pkt, PortID slave_port_id) 261{ 262 if (!pkt->isPrint()) { 263 // don't do DPRINTFs on PrintReq as it clutters up the output 264 DPRINTF(NoncoherentXBar, 265 "recvFunctional: packet src %s addr 0x%x cmd %s\n", 266 slavePorts[slave_port_id]->name(), pkt->getAddr(), 267 pkt->cmdString()); 268 } 269 270 // determine the destination port 271 PortID dest_id = findPort(pkt->getAddr()); 272 273 // forward the request to the appropriate destination 274 masterPorts[dest_id]->sendFunctional(pkt); 275} 276 277unsigned int 278NoncoherentXBar::drain(DrainManager *dm) 279{ 280 // sum up the individual layers 281 unsigned int total = 0; 282 for (auto l: reqLayers) 283 total += l->drain(dm); 284 for (auto l: respLayers) 285 total += l->drain(dm); 286 return total; 287} 288 289NoncoherentXBar* 290NoncoherentXBarParams::create() 291{ 292 return new NoncoherentXBar(this); 293} 294 295void 296NoncoherentXBar::regStats() 297{ 298 // register the stats of the base class and our layers 299 BaseXBar::regStats(); 300 for (auto l: reqLayers) 301 l->regStats(); 302 for (auto l: respLayers) 303 l->regStats(); 304} 305