Encapsulate all ruby-related files in a ruby namespace. Change-Id: If642c9751ecefc35b45c5dd69d85e67813cc5224 Issued-on: https://gem5.atlassian.net/browse/GEM5-984 Signed-off-by: Daniel R. Carvalho <odanrc@yahoo.com.br> Reviewed-on: https://gem5-review.googlesource.com/c/public/gem5/+/47307 Reviewed-by: Bobby R. Bruce <bbruce@ucdavis.edu> Maintainer: Bobby R. Bruce <bbruce@ucdavis.edu> Tested-by: kokoro <noreply+kokoro@google.com>
261 lines
9.2 KiB
C++
261 lines
9.2 KiB
C++
/*
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* Copyright (c) 2017 ARM Limited
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* All rights reserved.
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*
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* The license below extends only to copyright in the software and shall
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* not be construed as granting a license to any other intellectual
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* property including but not limited to intellectual property relating
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* to a hardware implementation of the functionality of the software
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* licensed hereunder. You may use the software subject to the license
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* terms below provided that you ensure that this notice is replicated
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* unmodified and in its entirety in all distributions of the software,
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* modified or unmodified, in source code or in binary form.
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*
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* Copyright (c) 1999-2008 Mark D. Hill and David A. Wood
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "mem/ruby/network/Network.hh"
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#include "base/logging.hh"
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#include "mem/ruby/common/MachineID.hh"
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#include "mem/ruby/network/BasicLink.hh"
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#include "mem/ruby/system/RubySystem.hh"
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namespace gem5
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{
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namespace ruby
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{
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uint32_t Network::m_virtual_networks;
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uint32_t Network::m_control_msg_size;
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uint32_t Network::m_data_msg_size;
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Network::Network(const Params &p)
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: ClockedObject(p)
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{
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m_virtual_networks = p.number_of_virtual_networks;
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m_control_msg_size = p.control_msg_size;
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fatal_if(p.data_msg_size > p.ruby_system->getBlockSizeBytes(),
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"%s: data message size > cache line size", name());
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m_data_msg_size = p.data_msg_size + m_control_msg_size;
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params().ruby_system->registerNetwork(this);
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// Populate localNodeVersions with the version of each MachineType in
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// this network. This will be used to compute a global to local ID.
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// Do this by looking at the ext_node for each ext_link. There is one
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// ext_node per ext_link and it points to an AbstractController.
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// For RubySystems with one network global and local ID are the same.
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std::unordered_map<MachineType, std::vector<NodeID>> localNodeVersions;
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for (auto &it : params().ext_links) {
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AbstractController *cntrl = it->params().ext_node;
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localNodeVersions[cntrl->getType()].push_back(cntrl->getVersion());
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params().ruby_system->registerMachineID(cntrl->getMachineID(), this);
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}
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// Compute a local ID for each MachineType using the same order as SLICC
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NodeID local_node_id = 0;
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for (int i = 0; i < MachineType_base_level(MachineType_NUM); ++i) {
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MachineType mach = static_cast<MachineType>(i);
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if (localNodeVersions.count(mach)) {
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for (auto &ver : localNodeVersions.at(mach)) {
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// Get the global ID Ruby will pass around
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NodeID global_node_id = MachineType_base_number(mach) + ver;
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globalToLocalMap.emplace(global_node_id, local_node_id);
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++local_node_id;
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}
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}
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}
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// Total nodes/controllers in network is equal to the local node count
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// Must make sure this is called after the State Machine constructors
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m_nodes = local_node_id;
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assert(m_nodes != 0);
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assert(m_virtual_networks != 0);
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m_topology_ptr = new Topology(m_nodes, p.routers.size(),
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m_virtual_networks,
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p.ext_links, p.int_links);
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// Allocate to and from queues
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// Queues that are getting messages from protocol
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m_toNetQueues.resize(m_nodes);
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// Queues that are feeding the protocol
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m_fromNetQueues.resize(m_nodes);
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m_ordered.resize(m_virtual_networks);
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m_vnet_type_names.resize(m_virtual_networks);
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for (int i = 0; i < m_virtual_networks; i++) {
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m_ordered[i] = false;
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}
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// Initialize the controller's network pointers
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for (std::vector<BasicExtLink*>::const_iterator i = p.ext_links.begin();
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i != p.ext_links.end(); ++i) {
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BasicExtLink *ext_link = (*i);
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AbstractController *abs_cntrl = ext_link->params().ext_node;
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abs_cntrl->initNetworkPtr(this);
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const AddrRangeList &ranges = abs_cntrl->getAddrRanges();
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if (!ranges.empty()) {
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MachineID mid = abs_cntrl->getMachineID();
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AddrMapNode addr_map_node = {
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.id = mid.getNum(),
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.ranges = ranges
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};
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addrMap.emplace(mid.getType(), addr_map_node);
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}
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}
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// Register a callback function for combining the statistics
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statistics::registerDumpCallback([this]() { collateStats(); });
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for (auto &it : dynamic_cast<Network *>(this)->params().ext_links) {
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it->params().ext_node->initNetQueues();
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}
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}
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Network::~Network()
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{
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for (int node = 0; node < m_nodes; node++) {
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// Delete the Message Buffers
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for (auto& it : m_toNetQueues[node]) {
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delete it;
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}
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for (auto& it : m_fromNetQueues[node]) {
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delete it;
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}
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}
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delete m_topology_ptr;
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}
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uint32_t
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Network::MessageSizeType_to_int(MessageSizeType size_type)
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{
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switch(size_type) {
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case MessageSizeType_Control:
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case MessageSizeType_Request_Control:
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case MessageSizeType_Reissue_Control:
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case MessageSizeType_Response_Control:
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case MessageSizeType_Writeback_Control:
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case MessageSizeType_Broadcast_Control:
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case MessageSizeType_Multicast_Control:
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case MessageSizeType_Forwarded_Control:
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case MessageSizeType_Invalidate_Control:
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case MessageSizeType_Unblock_Control:
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case MessageSizeType_Persistent_Control:
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case MessageSizeType_Completion_Control:
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return m_control_msg_size;
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case MessageSizeType_Data:
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case MessageSizeType_Response_Data:
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case MessageSizeType_ResponseLocal_Data:
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case MessageSizeType_ResponseL2hit_Data:
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case MessageSizeType_Writeback_Data:
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return m_data_msg_size;
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default:
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panic("Invalid range for type MessageSizeType");
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break;
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}
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}
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void
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Network::checkNetworkAllocation(NodeID local_id, bool ordered,
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int network_num,
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std::string vnet_type)
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{
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fatal_if(local_id >= m_nodes, "Node ID is out of range");
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fatal_if(network_num >= m_virtual_networks, "Network id is out of range");
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if (ordered) {
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m_ordered[network_num] = true;
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}
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m_vnet_type_names[network_num] = vnet_type;
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}
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void
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Network::setToNetQueue(NodeID global_id, bool ordered, int network_num,
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std::string vnet_type, MessageBuffer *b)
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{
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NodeID local_id = getLocalNodeID(global_id);
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checkNetworkAllocation(local_id, ordered, network_num, vnet_type);
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while (m_toNetQueues[local_id].size() <= network_num) {
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m_toNetQueues[local_id].push_back(nullptr);
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}
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m_toNetQueues[local_id][network_num] = b;
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}
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void
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Network::setFromNetQueue(NodeID global_id, bool ordered, int network_num,
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std::string vnet_type, MessageBuffer *b)
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{
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NodeID local_id = getLocalNodeID(global_id);
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checkNetworkAllocation(local_id, ordered, network_num, vnet_type);
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while (m_fromNetQueues[local_id].size() <= network_num) {
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m_fromNetQueues[local_id].push_back(nullptr);
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}
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m_fromNetQueues[local_id][network_num] = b;
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}
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NodeID
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Network::addressToNodeID(Addr addr, MachineType mtype)
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{
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// Look through the address maps for entries with matching machine
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// type to get the responsible node for this address.
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const auto &matching_ranges = addrMap.equal_range(mtype);
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for (auto it = matching_ranges.first; it != matching_ranges.second; it++) {
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AddrMapNode &node = it->second;
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auto &ranges = node.ranges;
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for (AddrRange &range: ranges) {
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if (range.contains(addr)) {
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return node.id;
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}
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}
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}
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return MachineType_base_count(mtype);
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}
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NodeID
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Network::getLocalNodeID(NodeID global_id) const
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{
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assert(globalToLocalMap.count(global_id));
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return globalToLocalMap.at(global_id);
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}
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} // namespace ruby
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} // namespace gem5
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