Initial commit of OpenSPARC T2 design and verification files.
[OpenSPARC-T2-DV] / verif / env / common / vera / ccxDevices / basePktClass.vr
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// OpenSPARC T2 Processor File: basePktClass.vr
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#include <vera_defines.vrh>
// Generic CCX Packet. Yes, there is no code in here.
virtual class BasePkt {
protected string name = "Name Me";
public reg [16:0] sendPorts=0; // pkt will be sent from this/these ports (start at)
public reg [16:0] targetPorts=0; // pkt is going to these ports (end at)
public integer arrivalPort=99; // this packet arrived at this port
public integer arrivalTime=0;
public reg pktArrived=0; // set by BFM when the anticipated pkt arrives.
public integer senderPort; // initiating port for this arriving pkt
public reg ccxSourced = 0; // req pkt came in from CCX, not backdoor initiated
public reg ccxSourced2 = 0; // cas/swap req pkt came in from CCX, not backdoor initiated
public integer decGntTarget; // serviceSends task uses this for multicast gnt tracking
public reg [2:0] tid = 0;
public reg [3:0] rtntyp = 4'b1111;
public reg [4:0] rqtyp = 5'b11111;
public integer rtntypU = 0; // identifies specific packet type using defines
public integer rqtypU = 0; // identifies specific packet type using defines
public reg [39:0] addr = 0;
public reg CASstore = 0; // holds true when a CAS request stores to L2. (for ld st sync)
public reg [2:0] atomic = 0; // 1 for CAS1, 2 for CAS2 or ifill response 1=1,2=2
public reg [8:0] atm_wire = 0;
public reg [8:0] req_wire = 9'bxxxxxxxxx;
public integer reqTime;
public integer reqId;
public reg [3:0] lineWay = 4'hf;
public reg [28:0] tag = ~0;
public reg [127:0] signature;
virtual task print(integer atPort);
virtual task loadPkt(reg [145:0] dataIn, integer atPort);
virtual task send(integer fastResp=0);
virtual task recv();
// virtual task cancelRecv();
virtual function reg [145:0] makeSignature();
virtual function reg [145:0] getVector();
// how many bits set?
protected function integer manyHot(reg [63:0] vec) {
manyHot = 0;
while (vec) {
manyHot += vec[0];
vec >>= 1;
}
}
// which bit set? if return is 99, there was 0 or > 1 hot.
// returns the lowest bit number set.
protected function integer whichHot(reg [63:0] vec, reg check=1) {
whichHot = 0;
while(vec[whichHot] !== 1) whichHot++;
// none hot
if (check && vec == 0) whichHot=99;
// >1 hot
if (check && manyHot(vec) > 1) whichHot=99;
}
}