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eb001/src/main/scala/backBoard/ebus/CDRIn.scala

253 lines
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Scala
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package BACK
import chisel3._
import chisel3.util._
//work in 100MHZ
class CDRInIO extends Bundle{
val axis = Decoupled(new AXIS_Bundle(8))
val serDat = Input(Bool())
val flush = Input(Bool())
}
abstract class CDRInBase extends Module with RequireAsyncReset{
val io: CDRInIO = IO(new CDRInIO)
val syncSerDat = Wire(Bool())
}
trait CDRInMultiSample{ this: CDRInBase =>
val clkNum: Int = 16
require( clkNum == 16 )
//multiCLK 需要按照滞后相位接线即0为最先到达1次先
val multiCLK = IO(Input(Vec(clkNum, Bool())))
val sampleReg = Wire(Vec(clkNum, Bool()))
for( i <- 0 until clkNum ) {
sampleReg(i) := withClockAndReset(multiCLK(i).asClock, reset.asBool){ ShiftRegister( io.serDat, 2 ) }
}
val sampleReg_sync = Wire(Vec(2*clkNum,Bool()))
for( i <- 0 until clkNum ){
sampleReg_sync(i) := ShiftRegister(sampleReg(i), 2)
}
for( i <- clkNum until 2*clkNum ){
sampleReg_sync(i) := ShiftRegister(sampleReg(i-clkNum), 1)
}
/*
val flitReg =
for( i <- 1 until 22 ) yield {
(sampleReg_sync(i-1) & sampleReg_sync(i+0)) |
(sampleReg_sync(i-1) & sampleReg_sync(i+1)) |
(sampleReg_sync(i+0) & sampleReg_sync(i+1))
}
val asyncSerDat = PopCount(flitReg) >= 11.U
*/
val flitReg =
for( i <- 1 until (2*clkNum)-1 ) yield {
(sampleReg_sync(i-1) & sampleReg_sync(i+0)) |
(sampleReg_sync(i-1) & sampleReg_sync(i+1)) |
(sampleReg_sync(i+0) & sampleReg_sync(i+1))
}
val clearCnt = Reg(UInt(4.W))
val checkCnt = Reg(UInt(4.W))
val arbLock = Reg(UInt( (log2Ceil(2*clkNum)).W ))
val arbCali = Reg(UInt( (log2Ceil(2*clkNum)).W ))
val isLock = RegInit(false.B)
when( sampleReg_sync.reduce(_|_) === false.B ){
when( clearCnt =/= 10.U ){
clearCnt := clearCnt + 1.U
}
} .otherwise{
clearCnt := 0.U
}
when( ~isLock ){
checkCnt := 0.U
} .otherwise{
checkCnt := checkCnt + 1.U
}
//优先级电路,优先选择跳变的后一相进行操作,电路上需要做成可调的
when( ~isLock ){
for( i <- 3 until 19 ){
val j = 19 - i - 1
when( flitReg(j) ^ flitReg(j+1) ){
arbLock := j.U
arbCali := j.U
}
}
}.elsewhen( checkCnt.andR ){ //锁定之后只允许每16cycle移动一相位
for( i <- 0 until 22 ){
val j = 22 - i -1
when( flitReg(j) ^ flitReg(j+1) ){
when( (j.U < arbCali) && ((j+3).U >= arbLock) ){
arbCali := arbCali - 1.U
} .elsewhen( (j.U > arbCali) && (j.U <= arbLock + 3.U) ){
arbCali := arbCali + 1.U
}
}
}
}
when( io.flush ){
isLock := false.B
} .elsewhen( ~isLock ){
for( i <- 3 until 19 ){
val j = 19 - i - 1
when( flitReg(j) ^ flitReg(j+1) ){
isLock := true.B
}
}
} .elsewhen( clearCnt === 10.U ){
isLock := false.B
}
val asyncSerDat =
Mux1H(
(for { i <- 0 until 22 } yield {
(arbCali === i.U) -> flitReg(i+(8))
})
)
syncSerDat := asyncSerDat
}
trait CDRInAxis{ this: CDRInBase =>
def HeaderByte: Int = 4
val ETH_PRE = "b1100010001".U(10.W)
val ETH_SFD = "b0110100111".U(10.W)
val STATE_IDLE = 0.U
val STATE_HEADER = 1.U
val STATE_PAYLOAD = 2.U
val stateNext = Wire(UInt(2.W))
val stateCurr = RegNext( stateNext, STATE_IDLE )
val bitCnt = Reg(UInt(4.W))
val byteCnt = RegInit(0.U((12+1).W))
val checkSFD = RegInit( 0.U(20.W) )
when( io.flush ){
checkSFD := 0.U
} .otherwise{
checkSFD := Cat( checkSFD(18,0), syncSerDat )
}
val shiftData = Dualb4b5Decoder(checkSFD(9,0))
val payloadLen = RegInit(0.U(12.W))
when( io.flush ){
payloadLen := 0.U
} .elsewhen( byteCnt === 0.U & bitCnt === 9.U & stateCurr === STATE_HEADER ){
payloadLen := Cat( shiftData, 0.U(4.W) )
} .elsewhen( byteCnt === 1.U & bitCnt === 9.U & stateCurr === STATE_HEADER ){
payloadLen := Cat( payloadLen(11,4), shiftData(7,4) )
}
stateNext :=
Mux( io.flush, STATE_IDLE,
Mux1H(Seq(
(stateCurr === STATE_IDLE) -> ( Mux( checkSFD === Cat(ETH_PRE , ETH_SFD), STATE_HEADER, STATE_IDLE )), //IDLE
(stateCurr === STATE_HEADER) -> ( Mux( (byteCnt === (HeaderByte-1).U) & (bitCnt === 9.U), STATE_PAYLOAD, STATE_HEADER ) ),
(stateCurr === STATE_PAYLOAD) -> ( Mux( (byteCnt === (payloadLen + (4 - 1).U) ) & (bitCnt === 9.U), STATE_IDLE, STATE_PAYLOAD )), // PAYLOAD
)) //crc
)
when( stateCurr === STATE_IDLE & ( checkSFD === Cat(ETH_PRE, ETH_SFD) ) ){ //first align
bitCnt := 0.U
} .otherwise{
when( bitCnt === 9.U ){
bitCnt := 0.U
} .otherwise{
bitCnt := bitCnt + 1.U
}
}
when( io.flush ){
byteCnt := 0.U
} .elsewhen( stateCurr === STATE_IDLE & ( checkSFD === Cat(ETH_PRE, ETH_SFD) ) ){ //first align
byteCnt := 0.U
} .elsewhen( bitCnt === 9.U ){
when( stateCurr === STATE_HEADER ){
byteCnt := Mux( byteCnt =/= (HeaderByte-1).U, byteCnt + 1.U, 0.U )
assert( byteCnt <= (HeaderByte-1).U )
} .elsewhen( stateCurr === STATE_PAYLOAD ){
byteCnt := Mux( byteCnt =/= (payloadLen+ (4-1).U), byteCnt + 1.U, 0.U )
assert( byteCnt <= ( payloadLen+ (4-1).U ) )
}
}
val axis_valid = RegInit(false.B)
val axis_tdata = RegEnable( shiftData, bitCnt === 9.U & ( stateCurr === STATE_HEADER | stateCurr === STATE_PAYLOAD ) )
val axis_tuser = false.B
val axis_tlast = RegInit( false.B )
io.axis.valid := axis_valid
io.axis.bits.tdata := axis_tdata
io.axis.bits.tuser := axis_tuser
io.axis.bits.tlast := axis_tlast
when( io.flush ){
axis_valid := false.B
} .elsewhen( io.axis.fire ){
axis_valid := false.B
} .elsewhen( bitCnt === 9.U & ( stateCurr === STATE_HEADER | stateCurr === STATE_PAYLOAD ) ){
axis_valid := true.B
}
when( io.flush ){
axis_tlast := false.B
} .otherwise{
axis_tlast := (stateCurr === STATE_PAYLOAD & stateNext === STATE_IDLE)
}
}
class MPCDRIn extends CDRInBase
with CDRInAxis
with CDRInMultiSample