Policy determined by constants. MSI policy added.
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@ -154,7 +154,7 @@ class ThreeStateIncoherence extends IncoherentPolicy {
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def messageUpdatesDataArray (reply: TransactionReply) = (reply.x_type === xactReplyData)
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def messageUpdatesDataArray (reply: TransactionReply) = (reply.x_type === xactReplyData)
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}
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}
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class TwoStateCoherence extends CoherencePolicyWithUncached {
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class MICoherence extends CoherencePolicyWithUncached {
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val tileInvalid :: tileValid :: Nil = Enum(2){ UFix() }
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val tileInvalid :: tileValid :: Nil = Enum(2){ UFix() }
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val globalInvalid :: globalValid :: Nil = Enum(2){ UFix() }
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val globalInvalid :: globalValid :: Nil = Enum(2){ UFix() }
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@ -266,7 +266,7 @@ class TwoStateCoherence extends CoherencePolicyWithUncached {
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}
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}
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}
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}
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class ThreeStateCoherence extends CoherencePolicyWithUncached { //MEI
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class MEICoherence extends CoherencePolicyWithUncached {
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val tileInvalid :: tileExclusiveClean :: tileExclusiveDirty :: Nil = Enum(3){ UFix() }
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val tileInvalid :: tileExclusiveClean :: tileExclusiveDirty :: Nil = Enum(3){ UFix() }
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val globalInvalid :: globalExclusiveClean :: Nil = Enum(2){ UFix() }
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val globalInvalid :: globalExclusiveClean :: Nil = Enum(2){ UFix() }
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@ -398,7 +398,146 @@ class ThreeStateCoherence extends CoherencePolicyWithUncached { //MEI
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}
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}
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}
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}
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class FourStateCoherence extends CoherencePolicyWithUncached {
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class MSICoherence extends CoherencePolicyWithUncached {
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val tileInvalid :: tileShared :: tileExclusiveDirty :: Nil = Enum(3){ UFix() }
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val globalInvalid :: globalShared :: globalExclusive :: Nil = Enum(3){ UFix() }
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val xactInitReadShared :: xactInitReadExclusive :: xactInitReadUncached :: xactInitWriteUncached :: Nil = Enum(4){ UFix() }
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val xactReplyReadShared :: xactReplyReadExclusive :: xactReplyReadUncached :: xactReplyWriteUncached :: xactReplyReadExclusiveAck :: Nil = Enum(5){ UFix() }
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val probeReqInvalidate :: probeReqDowngrade :: probeReqCopy :: Nil = Enum(3){ UFix() }
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val probeRepInvalidateData :: probeRepDowngradeData :: probeRepCopyData :: probeRepInvalidateAck :: probeRepDowngradeAck :: probeRepCopyAck :: Nil = Enum(6){ UFix() }
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def isHit (cmd: Bits, state: UFix): Bool = {
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val (read, write) = cpuCmdToRW(cmd)
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Mux(write, (state === tileExclusiveDirty),
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(state === tileShared || state === tileExclusiveDirty))
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}
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def isValid (state: UFix): Bool = {
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state != tileInvalid
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}
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def needsTransactionOnSecondaryMiss(cmd: Bits, outstanding: TransactionInit): Bool = {
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val (read, write) = cpuCmdToRW(cmd)
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(read && (outstanding.x_type === xactInitReadUncached || outstanding.x_type === xactInitWriteUncached)) ||
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(write && (outstanding.x_type != xactInitReadExclusive))
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}
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def needsTransactionOnCacheControl(cmd: Bits, state: UFix): Bool = {
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MuxLookup(cmd, (state === tileExclusiveDirty), Array(
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M_INV -> (state === tileExclusiveDirty),
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M_CLN -> (state === tileExclusiveDirty)
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))
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}
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def needsWriteback (state: UFix): Bool = {
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needsTransactionOnCacheControl(M_INV, state)
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}
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def newStateOnHit(cmd: Bits, state: UFix): UFix = {
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val (read, write) = cpuCmdToRW(cmd)
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Mux(write, tileExclusiveDirty, state)
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}
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def newStateOnCacheControl(cmd: Bits) = {
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MuxLookup(cmd, tileInvalid, Array(
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M_INV -> tileInvalid,
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M_CLN -> tileShared
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))
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}
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def newStateOnWriteback() = newStateOnCacheControl(M_INV)
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def newStateOnFlush() = newStateOnCacheControl(M_INV)
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def newStateOnTransactionReply(incoming: TransactionReply, outstanding: TransactionInit): UFix = {
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MuxLookup(incoming.x_type, tileInvalid, Array(
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xactReplyReadShared -> tileShared,
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xactReplyReadExclusive -> tileExclusiveDirty,
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xactReplyReadExclusiveAck -> tileExclusiveDirty,
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xactReplyReadUncached -> tileInvalid,
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xactReplyWriteUncached -> tileInvalid
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))
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}
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def newStateOnProbeRequest(incoming: ProbeRequest, state: UFix): Bits = {
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MuxLookup(incoming.p_type, state, Array(
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probeReqInvalidate -> tileInvalid,
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probeReqDowngrade -> tileShared,
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probeReqCopy -> state
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))
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}
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def getTransactionInitTypeOnUncachedRead() = xactInitReadUncached
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def getTransactionInitTypeOnUncachedWrite() = xactInitWriteUncached
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def getTransactionInitTypeOnPrimaryMiss(cmd: Bits, state: UFix): UFix = {
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val (read, write) = cpuCmdToRW(cmd)
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Mux(write || cmd === M_PFW, xactInitReadExclusive, xactInitReadShared)
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}
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def getTransactionInitTypeOnSecondaryMiss(cmd: Bits, state: UFix, outstanding: TransactionInit): UFix = {
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val (read, write) = cpuCmdToRW(cmd)
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Mux(write, xactInitReadExclusive, outstanding.x_type)
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}
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def getTransactionInitTypeOnCacheControl(cmd: Bits): Bits = xactInitWriteUncached
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def getTransactionInitTypeOnWriteback(): Bits = getTransactionInitTypeOnCacheControl(M_INV)
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def newProbeReply (incoming: ProbeRequest, state: UFix): ProbeReply = {
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val reply = Wire() { new ProbeReply() }
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val with_data = MuxLookup(incoming.p_type, probeRepInvalidateData, Array(
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probeReqInvalidate -> probeRepInvalidateData,
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probeReqDowngrade -> probeRepDowngradeData,
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probeReqCopy -> probeRepCopyData
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))
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val without_data = MuxLookup(incoming.p_type, probeRepInvalidateAck, Array(
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probeReqInvalidate -> probeRepInvalidateAck,
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probeReqDowngrade -> probeRepDowngradeAck,
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probeReqCopy -> probeRepCopyAck
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))
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reply.p_type := Mux(needsWriteback(state), with_data, without_data)
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reply.global_xact_id := incoming.global_xact_id
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reply
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}
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def messageHasData (reply: ProbeReply): Bool = {
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(reply.p_type === probeRepInvalidateData ||
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reply.p_type === probeRepDowngradeData ||
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reply.p_type === probeRepCopyData)
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}
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def messageHasData (init: TransactionInit): Bool = {
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(init.x_type === xactInitWriteUncached)
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}
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def messageHasData (reply: TransactionReply): Bool = {
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(reply.x_type != xactReplyWriteUncached && reply.x_type != xactReplyReadExclusiveAck)
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}
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def messageUpdatesDataArray (reply: TransactionReply): Bool = {
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(reply.x_type === xactReplyReadShared || reply.x_type === xactReplyReadExclusive)
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}
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def isCoherenceConflict(addr1: Bits, addr2: Bits): Bool = (addr1 === addr2)
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def getTransactionReplyType(x_type: UFix, count: UFix): Bits = {
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MuxLookup(x_type, xactReplyReadUncached, Array(
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xactInitReadShared -> Mux(count > UFix(0), xactReplyReadShared, xactReplyReadExclusive),
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xactInitReadExclusive -> xactReplyReadExclusive,
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xactInitReadUncached -> xactReplyReadUncached,
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xactInitWriteUncached -> xactReplyWriteUncached
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))
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}
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def getProbeRequestType(x_type: UFix, global_state: UFix): UFix = {
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MuxLookup(x_type, probeReqCopy, Array(
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xactInitReadShared -> probeReqDowngrade,
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xactInitReadExclusive -> probeReqInvalidate,
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xactInitReadUncached -> probeReqCopy,
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xactInitWriteUncached -> probeReqInvalidate
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))
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}
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def needsMemRead(x_type: UFix, global_state: UFix): Bool = {
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(x_type != xactInitWriteUncached)
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}
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def needsMemWrite(x_type: UFix, global_state: UFix): Bool = {
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(x_type === xactInitWriteUncached)
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}
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def needsAckReply(x_type: UFix, global_state: UFix): Bool = {
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(x_type === xactInitWriteUncached)
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}
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}
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class MESICoherence extends CoherencePolicyWithUncached {
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val tileInvalid :: tileShared :: tileExclusiveClean :: tileExclusiveDirty :: Nil = Enum(4){ UFix() }
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val tileInvalid :: tileShared :: tileExclusiveClean :: tileExclusiveDirty :: Nil = Enum(4){ UFix() }
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val globalInvalid :: globalShared :: globalExclusiveClean :: Nil = Enum(3){ UFix() }
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val globalInvalid :: globalShared :: globalExclusiveClean :: Nil = Enum(3){ UFix() }
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@ -439,7 +578,7 @@ class FourStateCoherence extends CoherencePolicyWithUncached {
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def newStateOnCacheControl(cmd: Bits) = {
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def newStateOnCacheControl(cmd: Bits) = {
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MuxLookup(cmd, tileInvalid, Array(
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MuxLookup(cmd, tileInvalid, Array(
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M_INV -> tileInvalid,
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M_INV -> tileInvalid,
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M_CLN -> tileExclusiveClean
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M_CLN -> tileShared
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))
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))
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}
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}
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def newStateOnWriteback() = newStateOnCacheControl(M_INV)
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def newStateOnWriteback() = newStateOnCacheControl(M_INV)
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