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eb001/src/main/scala/Switch/SwitchMux.scala

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Scala
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package Switch
import chisel3._
import chisel3.util._
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import org.chipsalliance.cde.config._
import freechips.rocketchip.diplomacy._
import freechips.rocketchip.tilelink._
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class SwitchMux(edgeOut: TLEdgeOut)(implicit p: Parameters) extends SwitchModule{
class MacTileLinkMasterIO extends Bundle{
val A = Decoupled(new TLBundleA(edgeOut.bundle))
val D = Flipped(Decoupled(new TLBundleD(edgeOut.bundle)))
}
class SwitchMuxIO(implicit p: Parameters) extends SwitchBundle{
val dmaMst = new MacTileLinkMasterIO
val triTx = Input(Bool())
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val rxEnq = Vec(chn, Flipped(new Receive_Enq_Bundle))
val txDeq = Vec(chn, new Transmit_Bundle)
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}
val io: SwitchMuxIO = IO(new SwitchMuxIO)
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val (_, _, isLastD, transDCnt) = edgeOut.count(io.dmaMst.D)
val rxBuff = Module(new RxBuff)
rxBuff.io.enq <> io.rxEnq(0)
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val txBuff = Module(new TxBuff)
txBuff.io.deq <> io.txDeq(0)
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def stateIdle = 0.U
def stateRx = 1.U
def stateTx = 2.U
val stateNxt = Wire(UInt(2.W))
val stateCur = RegNext(stateNxt, stateIdle)
stateNxt :=
Mux1H(Seq(
( stateCur === stateIdle ) -> Mux( rxBuff.io.deq.header.fire, stateRx, Mux( txBuff.io.enq.req.fire, stateTx, stateIdle ) ),
( stateCur === stateRx ) -> Mux( rxBuff.io.deq.ctrl.fire, stateIdle, stateRx ),
( stateCur === stateTx ) -> Mux( txBuff.io.enq.resp.fire, stateIdle, stateTx ),
))
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def ptr = "h80002000".U
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def txLength = 64.U
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def PerPacketCrcEn = true.B
def PerPacketPad = true.B
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rxBuff.io.deq.ctrl.ready := stateCur === stateRx & io.dmaMst.D.fire & isLastD
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val txReqValid = RegInit(false.B)
when( txBuff.io.enq.req.fire ){
txReqValid := false.B
} .elsewhen( io.triTx ){
txReqValid := true.B
}
txBuff.io.enq.req.valid := txReqValid && stateCur === stateIdle
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txBuff.io.enq.req.bits.txLength := txLength
txBuff.io.enq.req.bits.PerPacketCrcEn := PerPacketCrcEn
txBuff.io.enq.req.bits.PerPacketPad := PerPacketPad
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txBuff.io.enq.resp.ready := true.B
val dmaTxAValid = RegInit(false.B)
val dmaTxABits = Reg(new TLBundleA(edgeOut.bundle))
val dmaAddress = Reg( UInt(32.W) )
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when( stateCur === stateIdle ){
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dmaAddress := ptr
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} .elsewhen( io.dmaMst.A.fire ){
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dmaAddress := dmaAddress + 4.U
}
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rxBuff.io.deq.data.ready := io.dmaMst.A.fire & (stateCur === stateRx)
assert( ~(rxBuff.io.deq.data.ready & ~rxBuff.io.deq.data.valid) )
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rxBuff.io.deq.header.ready := ~io.triTx && ~txReqValid
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when( io.dmaMst.A.fire ){
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dmaTxAValid := false.B
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} .elsewhen( txBuff.io.enq.req.fire | (stateCur === stateTx & io.dmaMst.D.fire & isLastD & dmaAddress < (ptr + txLength)) ){
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dmaTxAValid := true.B
dmaTxABits :=
edgeOut.Get(
fromSource = 0.U,
toAddress = dmaAddress >> 2 << 2,
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lgSize = log2Ceil(32/8).U,
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)._2
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} .elsewhen( rxBuff.io.deq.header.fire | (stateCur === stateRx & io.dmaMst.D.fire & isLastD & rxBuff.io.deq.data.valid ) ) {
dmaTxAValid := true.B
dmaTxABits :=
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edgeOut.Put(
fromSource = 0.U,
toAddress = dmaAddress >> 2 << 2,
lgSize = log2Ceil(32/8).U,
data = rxBuff.io.deq.data.bits,
mask = "b1111".U,
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)._2
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}
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io.dmaMst.A.valid := dmaTxAValid
io.dmaMst.A.bits := dmaTxABits
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txBuff.io.enq.data.valid := io.dmaMst.D.valid & stateCur === stateTx
txBuff.io.enq.data.bits := io.dmaMst.D.bits.data
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io.dmaMst.D.ready :=
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Mux1H(Seq(
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( stateCur === stateRx ) -> true.B,
( stateCur === stateTx ) -> txBuff.io.enq.data.ready,
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))
}