归一化mac的发送接收buf

This commit is contained in:
RuigeLee
2023-10-31 17:32:16 +08:00
parent eb8420e7f9
commit 7c78948415
5 changed files with 406 additions and 286 deletions

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@@ -24,7 +24,7 @@ class RxBuffBase extends Module{
val isEnqPo = ~isEnqPi val isEnqPo = ~isEnqPi
val isDeqPi = RegInit(true.B) val isDeqPi = RegInit(true.B)
val isDeqPo = ~isEnqPi val isDeqPo = ~isDeqPi
val buff = for( i <- 0 until 2 ) yield { Module(new Queue( new Mac_Stream_Bundle, 2048 )) } val buff = for( i <- 0 until 2 ) yield { Module(new Queue( new Mac_Stream_Bundle, 2048 )) }

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@@ -5,7 +5,8 @@ import chisel3.util._
import Switch._ import Switch._
import freechips.rocketchip.util._
class MII extends Bundle with MDIO{ class MII extends Bundle with MDIO{
// Tx // Tx
@@ -433,22 +434,8 @@ val rxethmac = withClockAndReset(io.mii.mrx_clk_pad_i.asClock, io.asyncReset)( M
val wishbone = Module(new MacTileLink)
wishbone.io.RetryLimit := RetryLimit
wishbone.io.LateCollLatched := LateCollLatched
wishbone.io.DeferLatched := DeferLatched
wishbone.io.CarrierSenseLost := CarrierSenseLost
PerPacketCrcEn := wishbone.io.PerPacketCrcEn
wishbone.io.r_TxEn := r_TxEn
wishbone.io.r_RxEn := r_RxEn
TxB_IRQ := false.B
TxE_IRQ := false.B
RxB_IRQ := false.B
RxE_IRQ := false.B
@@ -513,35 +500,28 @@ val rxethmac = withClockAndReset(io.mii.mrx_clk_pad_i.asClock, io.asyncReset)( M
val macTileLinkTx = withClockAndReset( io.mii.mtx_clk_pad_i.asClock, io.asyncReset ) (Module(new MacTileLinkTx)) val macTileLinkTx = Module(new MacTileLinkTx)
val txReq_ToAsync = Wire(new AsyncBundle(new Mac_Stream_Bundle))
txReq_ToAsync <> ToAsyncBundle( wishbone.io.txReq )
withClockAndReset(io.mii.mtx_clk_pad_i.asClock, io.asyncReset) {
macTileLinkTx.io.txReq <> FromAsyncBundle( txReq_ToAsync )
}
withClockAndReset( io.mii.mtx_clk_pad_i.asClock, io.asyncReset ){
macTileLinkTx.io.BlockingTxStatusWrite_sync := ShiftRegister( wishbone.io.BlockingTxStatusWrite, 2, false.B, true.B)
}
RstDeferLatched := macTileLinkTx.io.RstDeferLatched RstDeferLatched := macTileLinkTx.io.RstDeferLatched
TxStartFrm := macTileLinkTx.io.TxStartFrm TxStartFrm := macTileLinkTx.io.TxStartFrm
TxEndFrm := macTileLinkTx.io.TxEndFrm TxEndFrm := macTileLinkTx.io.TxEndFrm
TxData := macTileLinkTx.io.TxData TxData := macTileLinkTx.io.TxData
wishbone.io.TxUsedData := TxUsedData
macTileLinkTx.io.TxUsedData := TxUsedData macTileLinkTx.io.TxUsedData := TxUsedData
macTileLinkTx.io.TxAbort := TxAbort macTileLinkTx.io.TxAbort := TxAbort
macTileLinkTx.io.TxDone := TxDone macTileLinkTx.io.TxDone := TxDone
wishbone.io.TxAbortSync := ShiftRegister( TxAbort, 2, false.B, true.B ) macTileLinkTx.io.RetryLimit := RetryLimit
wishbone.io.TxDoneSync := ShiftRegister( TxDone, 2, false.B, true.B ) macTileLinkTx.io.LateCollLatched := LateCollLatched
macTileLinkTx.io.DeferLatched := DeferLatched
macTileLinkTx.io.CarrierSenseLost := CarrierSenseLost
PerPacketCrcEn := macTileLinkTx.io.PerPacketCrcEn
macTileLinkTx.io.r_TxEn := r_TxEn
io.txDeq <> macTileLinkTx.io.txDeq
macTileLinkTx.io.MTxClk := io.mii.mtx_clk_pad_i
macTileLinkTx.io.asyncReset := io.asyncReset
@@ -554,63 +534,30 @@ val rxethmac = withClockAndReset(io.mii.mrx_clk_pad_i.asClock, io.asyncReset)( M
val macTileLinkRx = Module(new MacTileLinkRx)
macTileLinkRx.io.DribbleNibble := DribbleNibble
macTileLinkRx.io.LatchedCrcError := LatchedCrcError
macTileLinkRx.io.RxLateCollision := RxLateCollision
macTileLinkRx.io.LoadRxStatus := LoadRxStatus
val macTileLinkRx = withClockAndReset( io.mii.mrx_clk_pad_i.asClock, io.asyncReset ) ( Module(new MacTileLinkRx) )
val req_ToAsync = Wire(new AsyncBundle(new Mac_Stream_Bundle))
wishbone.io.rxReq <> FromAsyncBundle( req_ToAsync )
withClockAndReset(io.mii.mrx_clk_pad_i.asClock, io.asyncReset) {
req_ToAsync <> ToAsyncBundle( macTileLinkRx.io.rxReq )
}
// wishbone.io.LatchedRxLength_rxclk := macTileLinkRx.io.LatchedRxLength
wishbone.io.RxStatusInLatched_rxclk := macTileLinkRx.io.RxStatusInLatched
// Busy Interrupt
val Busy_IRQ_sync = ShiftRegister(macTileLinkRx.io.Busy_IRQ_rck, 2, false.B, true.B)
Busy_IRQ := Busy_IRQ_sync & ~RegNext(Busy_IRQ_sync, false.B)
withClockAndReset( io.mii.mrx_clk_pad_i.asClock, io.asyncReset ) {
macTileLinkRx.io.Busy_IRQ_syncb := ShiftRegister( Busy_IRQ_sync, 2, false.B, true.B )
macTileLinkRx.io.RxReady := ShiftRegister( wishbone.io.RxReady, 2, false.B, true.B )
}
macTileLinkRx.io.RxData := RxData macTileLinkRx.io.RxData := RxData
macTileLinkRx.io.RxValid := RxValid macTileLinkRx.io.RxValid := RxValid
macTileLinkRx.io.RxStartFrm := RxStartFrm macTileLinkRx.io.RxStartFrm := RxStartFrm
macTileLinkRx.io.RxEndFrm := RxEndFrm macTileLinkRx.io.RxEndFrm := RxEndFrm
Busy_IRQ := macTileLinkRx.io.Busy_IRQ
// macTileLinkRx.io.RxLength := RxByteCnt macTileLinkRx.io.r_RxEn := r_RxEn
macTileLinkRx.io.LoadRxStatus := LoadRxStatus
macTileLinkRx.io.RxStatusIn := Cat(false.B, false.B, false.B, false.B, DribbleNibble, false.B, false.B, LatchedCrcError, RxLateCollision)
wishbone.io.rxEnq <> io.rxEnq macTileLinkRx.io.rxEnq <> io.rxEnq
wishbone.io.txDeq <> io.txDeq
macTileLinkRx.io.MRxClk := io.mii.mrx_clk_pad_i
macTileLinkRx.io.asyncReset := io.asyncReset
TxB_IRQ := false.B
TxE_IRQ := false.B
RxB_IRQ := false.B
RxE_IRQ := false.B
} }

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@@ -3,6 +3,8 @@ package MAC
import chisel3._ import chisel3._
import chisel3.util._ import chisel3.util._
import freechips.rocketchip.util._
class Mac_Stream_Bundle extends Bundle{ class Mac_Stream_Bundle extends Bundle{
val data = UInt(8.W) val data = UInt(8.W)
@@ -14,51 +16,64 @@ class Mac_Stream_Bundle extends Bundle{
class MacTileLinkRxIO extends Bundle{ class MacTileLinkRxIO extends Bundle{
val rxReq = Decoupled(new Mac_Stream_Bundle)
// val LatchedRxLength = Output(UInt(16.W))
val RxStatusInLatched = Output( UInt(9.W) )
// val RxLength = Input(UInt(16.W))
val LoadRxStatus = Input(Bool()) val LoadRxStatus = Input(Bool())
val RxStatusIn = Input(UInt(9.W))
val Busy_IRQ_rck = Output(Bool())
val Busy_IRQ_syncb = Input(Bool())
val RxData = Input(UInt(8.W)) // Received data byte (from PHY) val RxData = Input(UInt(8.W)) // Received data byte (from PHY)
val RxValid = Input(Bool()) val RxValid = Input(Bool())
val RxReady = Input(Bool())
val RxStartFrm = Input(Bool()) val RxStartFrm = Input(Bool())
val RxEndFrm = Input(Bool()) val RxEndFrm = Input(Bool())
val DribbleNibble = Input(Bool())
val LatchedCrcError = Input(Bool())
val RxLateCollision = Input(Bool())
val asyncReset = Input(AsyncReset())
val MRxClk = Input(Bool())
val Busy_IRQ = Output(Bool())
val r_RxEn = Input(Bool()) // Receive enable
val rxEnq = Decoupled(new Mac_Stream_Bundle)
} }
class MacTileLinkRx extends Module with RequireAsyncReset{ class MacTileLinkRx extends Module{
val io = IO(new MacTileLinkRxIO) val io = IO(new MacTileLinkRxIO)
val syncReqBundle = Wire(Decoupled(new Mac_Stream_Bundle))
val asyncReqBundle = Wire(Decoupled(new Mac_Stream_Bundle))
val req_ToAsync = Wire(new AsyncBundle(new Mac_Stream_Bundle))
val ShiftWillEnd = RegInit(false.B) val rxReady = RegInit(false.B)
val rxReadyAsync = Wire(Bool())
val RxStatusInLatched = RegEnable(io.RxStatusIn, 0.U(9.W), io.LoadRxStatus); io.RxStatusInLatched := RxStatusInLatched withClockAndReset( io.MRxClk.asClock, io.asyncReset ) {
rxReadyAsync := ShiftRegister( rxReady, 2, false.B, true.B )
when( io.LoadRxStatus ) {
when( io.RxStatusIn.extract(4) ) { printf("Warning! DribbleNibble!\n"); }
when( io.RxStatusIn.extract(1) ) { printf("Warning! LatchedCrcError!\n"); }
when( io.RxStatusIn.extract(0) ) { printf("Warning! RxLateCollision!\n"); }
} }
// val ShiftEnded_rck = RegInit(false.B); io.ShiftEnded_rck := ShiftEnded_rck withClockAndReset(io.MRxClk.asClock, io.asyncReset){
when( io.LoadRxStatus ) {
when( io.DribbleNibble ) { printf("Warning! DribbleNibble!\n"); }
when( io.LatchedCrcError ) { printf("Warning! LatchedCrcError!\n"); }
when( io.RxLateCollision ) { printf("Warning! RxLateCollision!\n"); }
}
val RxEnableWindow = RegInit(false.B) val RxEnableWindow = RegInit(false.B)
val Busy_IRQ_rck = RegInit(false.B); io.Busy_IRQ_rck := Busy_IRQ_rck
// Indicating start of the reception process // Indicating start of the reception process
val SetWriteRxDataToFifo = val SetWriteRxDataToFifo =
io.RxValid & io.RxReady & (io.RxStartFrm | RxEnableWindow ) io.RxValid & rxReadyAsync & (io.RxStartFrm | RxEnableWindow )
// Generation of the end-of-frame signal // Generation of the end-of-frame signal
@@ -70,11 +85,7 @@ class MacTileLinkRx extends Module with RequireAsyncReset{
when(io.RxValid & io.RxStartFrm & ~io.RxReady){
Busy_IRQ_rck := true.B
} .elsewhen(io.Busy_IRQ_syncb){
Busy_IRQ_rck := false.B
}
val rxFifo = Module(new Queue(new Mac_Stream_Bundle, 4)) val rxFifo = Module(new Queue(new Mac_Stream_Bundle, 4))
@@ -84,7 +95,137 @@ class MacTileLinkRx extends Module with RequireAsyncReset{
rxFifo.io.enq.bits.isLast := io.RxEndFrm rxFifo.io.enq.bits.isLast := io.RxEndFrm
assert( ~(rxFifo.io.enq.valid & ~rxFifo.io.enq.ready) ) assert( ~(rxFifo.io.enq.valid & ~rxFifo.io.enq.ready) )
io.rxReq <> rxFifo.io.deq asyncReqBundle <> rxFifo.io.deq
}
syncReqBundle <> FromAsyncBundle( req_ToAsync )
withClockAndReset(io.MRxClk.asClock, io.asyncReset) {
req_ToAsync <> ToAsyncBundle( asyncReqBundle )
}
// Busy Interrupt
val Busy_IRQ_rck = withClockAndReset(io.MRxClk.asClock, io.asyncReset) {RegInit(false.B)}
val Busy_IRQ_sync = ShiftRegister(Busy_IRQ_rck, 2, false.B, true.B)
io.Busy_IRQ := Busy_IRQ_sync & ~RegNext(Busy_IRQ_sync, false.B)
withClockAndReset( io.MRxClk.asClock, io.asyncReset ) {
val Busy_IRQ_syncb = ShiftRegister( Busy_IRQ_sync, 2, false.B, true.B )
when(io.RxValid & io.RxStartFrm & ~rxReadyAsync){
Busy_IRQ_rck := true.B
} .elsewhen(Busy_IRQ_syncb){
Busy_IRQ_rck := false.B
}
}
when(syncReqBundle.bits.isLast & syncReqBundle.fire ){
rxReady := false.B
} .elsewhen( io.r_RxEn & (io.rxEnq.ready) ){
rxReady := true.B
}
io.rxEnq.bits := syncReqBundle.bits
io.rxEnq.valid := syncReqBundle.valid
syncReqBundle.ready := io.rxEnq.ready
assert( ~(io.rxEnq.valid & ~io.rxEnq.ready), "Assert Failed, rx overrun!" )
} }

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@@ -4,17 +4,14 @@ import chisel3._
import chisel3.util._ import chisel3.util._
import freechips.rocketchip.util._
class MacTileLinkTxIO extends Bundle{ class MacTileLinkTxIO extends Bundle{
val txReq = Flipped(Decoupled(new Mac_Stream_Bundle))
// val txResp = Decoupled()
val RstDeferLatched = Output(Bool()) val RstDeferLatched = Output(Bool())
val BlockingTxStatusWrite_sync = Input(Bool())
val TxStartFrm = Output(Bool()) // Transmit packet start frame val TxStartFrm = Output(Bool()) // Transmit packet start frame
val TxEndFrm = Output(Bool()) // Transmit packet end frame val TxEndFrm = Output(Bool()) // Transmit packet end frame
@@ -24,21 +21,43 @@ class MacTileLinkTxIO extends Bundle{
val TxAbort = Input(Bool()) // Transmit packet abort val TxAbort = Input(Bool()) // Transmit packet abort
val TxDone = Input(Bool()) // Transmission ended val TxDone = Input(Bool()) // Transmission ended
val MTxClk = Input(Bool())
val asyncReset = Input(AsyncReset())
// Tx Status signals
val RetryLimit = Input(Bool()) // Retry limit reached (Retry Max value +1 attempts were made)
val LateCollLatched = Input(Bool()) // Late collision occured
val DeferLatched = Input(Bool()) // Defer indication (Frame was defered before sucessfully sent)
val CarrierSenseLost = Input(Bool()) // Carrier Sense was lost during the frame transmission
val PerPacketCrcEn = Output(Bool()) // Per packet crc enable
//Register
val r_TxEn = Input(Bool()) // Transmit enable
val txDeq = Flipped(Decoupled(new Mac_Stream_Bundle))
} }
class MacTileLinkTx extends Module with RequireAsyncReset{ class MacTileLinkTx extends Module{
val io = IO(new MacTileLinkTxIO) val io = IO(new MacTileLinkTxIO)
val syncReqBundle = Wire(Decoupled(new Mac_Stream_Bundle))
val asyncReqBundle = Wire(Decoupled(new Mac_Stream_Bundle))
val txReq_ToAsync = Wire(new AsyncBundle(new Mac_Stream_Bundle))
withClockAndReset( io.MTxClk.asClock, io.asyncReset ){
io.RstDeferLatched := io.BlockingTxStatusWrite_sync & ~RegNext(io.BlockingTxStatusWrite_sync, false.B)
val TxStartFrm = RegInit(false.B); io.TxStartFrm := TxStartFrm val TxStartFrm = RegInit(false.B); io.TxStartFrm := TxStartFrm
val TxEndFrm = RegInit(false.B); io.TxEndFrm := TxEndFrm val TxEndFrm = RegInit(false.B); io.TxEndFrm := TxEndFrm
val TxData = RegInit(0.U(8.W)); io.TxData := TxData val TxData = RegInit(0.U(8.W)); io.TxData := TxData
val ReadTxDataFromFifo_tck = RegInit(false.B);
// Generating delayed signals // Generating delayed signals
val TxAbort_q = RegNext( io.TxAbort, false.B) val TxAbort_q = RegNext( io.TxAbort, false.B)
@@ -52,7 +71,7 @@ class MacTileLinkTx extends Module with RequireAsyncReset{
Flop := ~Flop Flop := ~Flop
} }
when( io.txReq.valid & io.txReq.bits.isStart ){ when( asyncReqBundle.valid & asyncReqBundle.bits.isStart ){
TxStartFrm := true.B TxStartFrm := true.B
} .elsewhen(TxUsedData_q | io.TxAbort & (~TxAbort_q) ){ } .elsewhen(TxUsedData_q | io.TxAbort & (~TxAbort_q) ){
TxStartFrm := false.B TxStartFrm := false.B
@@ -63,23 +82,155 @@ class MacTileLinkTx extends Module with RequireAsyncReset{
// Tx end frame generation // Tx end frame generation
when(Flop & TxEndFrm | io.TxAbort){ when(Flop & TxEndFrm | io.TxAbort){
TxEndFrm := false.B TxEndFrm := false.B
} .elsewhen( io.txReq.fire & io.txReq.bits.isLast ){ } .elsewhen( asyncReqBundle.fire & asyncReqBundle.bits.isLast ){
TxEndFrm := true.B TxEndFrm := true.B
} }
io.txReq.ready := asyncReqBundle.ready :=
io.txReq.valid & io.txReq.bits.isStart & ~TxStartFrm | asyncReqBundle.valid & asyncReqBundle.bits.isStart & ~TxStartFrm |
io.TxUsedData & Flop & ~TxEndFrm | io.TxUsedData & Flop & ~TxEndFrm |
TxStartFrm & io.TxUsedData & Flop TxStartFrm & io.TxUsedData & Flop
when( io.txReq.fire ){ when( asyncReqBundle.fire ){
TxData := io.txReq.bits.data TxData := asyncReqBundle.bits.data
} }
assert( ~(io.txReq.ready & ~io.txReq.valid) ) assert( ~(asyncReqBundle.ready & ~asyncReqBundle.valid) )
}
txReq_ToAsync <> ToAsyncBundle( syncReqBundle )
withClockAndReset(io.MTxClk.asClock, io.asyncReset) {
asyncReqBundle <> FromAsyncBundle( txReq_ToAsync )
}
val BlockingTxStatusWrite = RegInit(false.B)
withClockAndReset( io.MTxClk.asClock, io.asyncReset ){
val BlockingTxStatusWrite_sync = ShiftRegister( BlockingTxStatusWrite, 2, false.B, true.B)
io.RstDeferLatched := BlockingTxStatusWrite_sync & ~RegNext(BlockingTxStatusWrite_sync, false.B)
}
val TxAbortSync = ShiftRegister( io.TxAbort, 2, false.B, true.B )
val TxDoneSync = ShiftRegister( io.TxDone, 2, false.B, true.B )
val txDonePulse = TxDoneSync & ~RegNext(TxDoneSync, false.B)
val txAbortPulse = TxAbortSync & ~RegNext(TxAbortSync, false.B)
io.PerPacketCrcEn := false.B
when( txDonePulse | txAbortPulse ){
when(io.RetryLimit) {printf("Warning, io.RetryLimit\n")}
when(io.LateCollLatched) {printf("Warning, io.LateCollLatched\n")}
when(io.DeferLatched) {printf("Warning, io.DeferLatched\n")}
when(io.CarrierSenseLost) {printf("Warning, io.CarrierSenseLost\n")}
when(txAbortPulse) {printf("Warning, txAbortPulse\n")}
}
val killTrans = RegInit(false.B)
when( (io.txDeq.fire & io.txDeq.bits.isLast) | ~io.txDeq.valid ){
killTrans := false.B
} .elsewhen( txAbortPulse ){
killTrans := true.B
}
val isTxEnable = RegInit(false.B)
when( io.txDeq.fire & io.txDeq.bits.isLast & ~io.r_TxEn ){
isTxEnable := false.B
} .elsewhen( io.r_TxEn ){
isTxEnable := true.B
}
io.txDeq.ready := Mux( killTrans, true.B, isTxEnable & syncReqBundle.ready )
syncReqBundle.valid := Mux( killTrans, false.B, isTxEnable & io.txDeq.valid )
syncReqBundle.bits := io.txDeq.bits
when(~TxDoneSync & ~TxAbortSync){
BlockingTxStatusWrite := false.B
} .elsewhen(txDonePulse | txAbortPulse){
BlockingTxStatusWrite := true.B
}
} }

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@@ -19,38 +19,9 @@ abstract class MacTileLinkBase() extends Module{
class MacTileLinkIO extends Bundle{ class MacTileLinkIO extends Bundle{
val r_RxEn = Input(Bool()) // Receive enable
val rxReq = Flipped(Decoupled(new Mac_Stream_Bundle))
val RxStatusInLatched_rxclk = Input(UInt(9.W))
val RxReady = Output(Bool())
val txReq = Decoupled(new Mac_Stream_Bundle)
// Tx Status signals
val RetryLimit = Input(Bool()) // Retry limit reached (Retry Max value +1 attempts were made)
val LateCollLatched = Input(Bool()) // Late collision occured
val DeferLatched = Input(Bool()) // Defer indication (Frame was defered before sucessfully sent)
val CarrierSenseLost = Input(Bool()) // Carrier Sense was lost during the frame transmission
val PerPacketCrcEn = Output(Bool()) // Per packet crc enable
//Register
val r_TxEn = Input(Bool()) // Transmit enable
val BlockingTxStatusWrite = Output(Bool())
val TxUsedData = Input(Bool()) // Transmit packet used data
val TxAbortSync = Input(Bool()) // Transmit packet abort
val TxDoneSync = Input(Bool()) // Transmission ended
val rxEnq = Decoupled(new Mac_Stream_Bundle)
val txDeq = Flipped(Decoupled(new Mac_Stream_Bundle))
} }
@@ -59,28 +30,6 @@ abstract class MacTileLinkBase() extends Module{
val RxReady = RegInit(false.B); io.RxReady := RxReady
// RxReady generation
when(io.rxReq.bits.isLast & io.rxReq.fire ){
RxReady := false.B
} .elsewhen( io.r_RxEn & (io.rxEnq.ready) ){
RxReady := true.B
}
io.rxEnq.bits := io.rxReq.bits
io.rxEnq.valid := io.rxReq.valid
io.rxReq.ready := io.rxEnq.ready
assert( ~(io.rxEnq.valid & ~io.rxEnq.ready), "Assert Failed, rx overrun!" )
@@ -99,74 +48,6 @@ abstract class MacTileLinkBase() extends Module{
val txDonePulse = io.TxDoneSync & ~RegNext(io.TxDoneSync, false.B)
val txAbortPulse = io.TxAbortSync & ~RegNext(io.TxAbortSync, false.B)
io.PerPacketCrcEn := false.B
when( txDonePulse | txAbortPulse ){
when(io.RetryLimit) {printf("Warning, io.RetryLimit\n")}
when(io.LateCollLatched) {printf("Warning, io.LateCollLatched\n")}
when(io.DeferLatched) {printf("Warning, io.DeferLatched\n")}
when(io.CarrierSenseLost) {printf("Warning, io.CarrierSenseLost\n")}
when(txAbortPulse) {printf("Warning, txAbortPulse\n")}
}
val killTrans = RegInit(false.B)
when( (io.txDeq.fire & io.txDeq.bits.isLast) | ~io.txDeq.valid ){
killTrans := false.B
} .elsewhen( txAbortPulse ){
killTrans := true.B
}
val isTxEnable = RegInit(false.B)
when( io.txDeq.fire & io.txDeq.bits.isLast & ~io.r_TxEn ){
isTxEnable := false.B
} .elsewhen( io.r_TxEn ){
isTxEnable := true.B
}
io.txDeq.ready := Mux( killTrans, true.B, isTxEnable & io.txReq.ready )
io.txReq.valid := Mux( killTrans, false.B, isTxEnable & io.txDeq.valid )
io.txReq.bits := io.txDeq.bits
val BlockingTxStatusWrite = RegInit(false.B); io.BlockingTxStatusWrite := BlockingTxStatusWrite
when(~io.TxDoneSync & ~io.TxAbortSync){
BlockingTxStatusWrite := false.B
} .elsewhen(txDonePulse | txAbortPulse){
BlockingTxStatusWrite := true.B
}