top layer and some bugs fixed

This commit is contained in:
RuigeLee
2023-07-03 23:51:01 +08:00
parent 38bcf0dcf0
commit 0303ca21fb
6 changed files with 915 additions and 160 deletions

View File

@@ -1,17 +1,715 @@
package MAC package MAC
import chisel3._ import chisel3._
import chisel3.util import chisel3.util._
import org.chipsalliance.cde.config._
import freechips.rocketchip.diplomacy._
import freechips.rocketchip.tilelink._
class Mac(implicit p: Parameters) extends LazyModule with HasMacParameters{
def isTileLink = false
class MACBase extends Module { // val chipLinkMasterNode = TLManagerNode(Seq(TLSlavePortParameters.v1(
// managers = Seq(TLSlaveParameters.v1(
// address = Seq(AddressSet(0x00000000L, 0x0FFFL)),
// regionType = RegionType.UNCACHED,
// executable = false,
// supportsGet = TransferSizes(32/8, 32/8),
// supportsPutFull = TransferSizes(32/8, 32/8),
// supportsPutPartial = TransferSizes(32/8, 32/8)
class MACIO extends Bundle{ // )),
// beatBytes = 32/8)))
lazy val module = new MacImp(this)
}
} }
trait MacWishboneMasterIO{ this: Bundle =>
val m_wb_adr_o = Output(UInt(32.W))
val m_wb_sel_o = Output(UInt(4.W))
val m_wb_we_o = Output(Bool())
val m_wb_dat_i = Input(UInt(32.W))
val m_wb_dat_o = Output(UInt(32.W))
val m_wb_cyc_o = Output(Bool())
val m_wb_stb_o = Output(Bool())
val m_wb_ack_i = Input(Bool())
val m_wb_err_i = Input(Bool())
val m_wb_cti_o = Output(UInt(3.W))
val m_wb_bte_o = Output(UInt(2.W))
}
trait MacWishboneSlaveIO{ this: Bundle =>
val WB_DAT_I = Input(UInt(32.W)) // WISHBONE data input
val WB_DAT_O = Output(UInt(32.W)) // WISHBONE data output
val WB_ADR_I = Input(UInt(12.W)) // WISHBONE address input
val WB_WE_I = Input(Bool()) // WISHBONE write enable input
val WB_SEL_I = Input(UInt(4.W)) // WISHBONE byte select input
val WB_CYC_I = Input(Bool()) // WISHBONE cycle input
val WB_STB_I = Input(Bool()) // WISHBONE strobe input
val WB_ACK_O = Output(Bool()) // WISHBONE acknowledge output
val WB_ERR_O = Output(Bool()) // WISHBONE error output
}
class MacIO extends Bundle{
// Tx
val mtx_clk_pad_i = Input(Bool())
val mtxd_pad_o = Output(UInt(4.W))
val mtxen_pad_o = Output(Bool())
val mtxerr_pad_o = Output(Bool())
// Rx
val mrx_clk_pad_i = Input(Bool())
val mrxd_pad_i = Input(UInt(4.W))
val mrxdv_pad_i = Input(Bool())
val mrxerr_pad_i = Input(Bool())
// Common Tx and Rx
val mcoll_pad_i = Input(Bool())
val mcrs_pad_i = Input(Bool())
val int_o = Output(Bool())
}
class MacImp(outer: Mac) extends LazyModuleImp(outer){
def isTileLink = false
val io = IO(new MacIO with MDIO with MacWishboneMasterIO with MacWishboneSlaveIO)
//( if(!isTileLink) { IO(new MacIO with MDIO with MacWishboneMasterIO with MacWishboneSlaveIO) } //else {IO(new MacIO with MDIO with MacWishboneMasterIO)} )
val m_wb_adr_tmp = Wire(UInt(30.W))
val wb_dbg_dat0 = Wire(UInt(32.W))
val r_ClkDiv = Wire(UInt(8.W))
val r_MiiNoPre = Wire(Bool())
val r_CtrlData = Wire(UInt(16.W))
val r_FIAD = Wire(UInt(5.W))
val r_RGAD = Wire(UInt(5.W))
val r_WCtrlData = Wire(Bool())
val r_RStat = Wire(Bool())
val r_ScanStat = Wire(Bool())
val NValid_stat = Wire(Bool())
val Busy_stat = Wire(Bool())
val LinkFail = Wire(Bool())
val Prsd = Wire(UInt(16.W))
val WCtrlDataStart = Wire(Bool())
val RStatStart = Wire(Bool())
val UpdateMIIRX_DATAReg = Wire(Bool())
val TxStartFrm = Wire(Bool())
val TxEndFrm = Wire(Bool())
val TxUsedData = Wire(Bool())
val TxData = Wire(UInt(8.W))
val TxRetry = Wire(Bool())
val TxAbort = Wire(Bool())
val TxUnderRun = Wire(Bool())
val TxDone = Wire(Bool())
val RstTxPauseRq = RegInit(Bool())
val TPauseRq = Wire(Bool())
// Connecting Miim module
val miim = Module(new MIIM)
miim.io.Divider := r_ClkDiv
miim.io.NoPre := r_MiiNoPre
miim.io.WCtrlData := r_WCtrlData
miim.io.CtrlData := r_CtrlData
miim.io.Fiad := r_FIAD
miim.io.Rgad := r_RGAD
miim.io.RStat := r_RStat
miim.io.ScanStat := r_ScanStat
miim.io.mdi := io.mdi
Busy_stat := miim.io.Busy
LinkFail := miim.io.LinkFail
NValid_stat := miim.io.Nvalid
Prsd := miim.io.Prsd
WCtrlDataStart := miim.io.WCtrlDataStart
RStatStart := miim.io.RStatStart
UpdateMIIRX_DATAReg := miim.io.UpdateMIIRX_DATAReg
io.mdc := miim.io.mdc
io.mdo := miim.io.mdo
io.mdoEn := miim.io.mdoEn
val RegDataOut = Wire(UInt(32.W))
val r_RecSmall = Wire(Bool())
val r_LoopBck = Wire(Bool())
val r_TxEn = Wire(Bool())
val r_RxEn = Wire(Bool())
val MRxDV_Lb = Wire(Bool())
val MRxErr_Lb = Wire(Bool())
val MRxD_Lb = Wire(UInt(4.W))
val Transmitting = Wire(Bool())
val r_HugEn = Wire(Bool())
val r_DlyCrcEn = Wire(Bool())
val r_MaxFL = Wire(UInt(16.W))
val r_MinFL = Wire(UInt(16.W))
val ShortFrame = Wire(Bool())
val DribbleNibble = Wire(Bool())
val ReceivedPacketTooBig = Wire(Bool())
val r_MAC = Wire(UInt(48.W))
val LoadRxStatus = Wire(Bool())
val r_HASH0 = Wire(UInt(32.W))
val r_HASH1 = Wire(UInt(32.W))
val r_TxBDNum = Wire(UInt(8.W))
val r_IPGT = Wire(UInt(7.W))
val r_IPGR1 = Wire(UInt(7.W))
val r_IPGR2 = Wire(UInt(7.W))
val r_CollValid = Wire(UInt(6.W))
val r_TxPauseTV = Wire(UInt(16.W))
val r_TxPauseRq = Wire(Bool())
val r_MaxRet = Wire(UInt(4.W))
val r_NoBckof = Wire(Bool())
val r_ExDfrEn = Wire(Bool())
val r_TxFlow = Wire(Bool())
val r_IFG = Wire(Bool())
val TxB_IRQ = Wire(Bool())
val TxE_IRQ = Wire(Bool())
val RxB_IRQ = Wire(Bool())
val RxE_IRQ = Wire(Bool())
val Busy_IRQ = Wire(Bool())
val r_Pad = Wire(Bool())
val r_CrcEn = Wire(Bool())
val r_FullD = Wire(Bool())
val r_Pro = Wire(Bool())
val r_Bro = Wire(Bool())
val r_NoPre = Wire(Bool())
val r_RxFlow = Wire(Bool())
val r_PassAll = Wire(Bool())
val TxCtrlEndFrm = Wire(Bool())
val StartTxDone = Wire(Bool())
val SetPauseTimer = Wire(Bool())
val TxUsedDataIn = Wire(Bool())
val TxDoneIn = Wire(Bool())
val TxAbortIn = Wire(Bool())
val PerPacketPad = Wire(Bool())
val PadOut = Wire(Bool())
val PerPacketCrcEn = Wire(Bool())
val CrcEnOut = Wire(Bool())
val TxStartFrmOut = Wire(Bool())
val TxEndFrmOut = Wire(Bool())
val ReceivedPauseFrm = Wire(Bool())
val ControlFrmAddressOK = Wire(Bool())
val RxStatusWriteLatched_sync2 = Wire(Bool())
val LateCollision = Wire(Bool())
val DeferIndication = Wire(Bool())
val LateCollLatched = Wire(Bool())
val DeferLatched = Wire(Bool())
val RstDeferLatched = Wire(Bool())
val CarrierSenseLost = Wire(Bool())
val RegCs = Wire(UInt(4.W))
val ethReg = Module(new MacReg)
ethReg.io.DataIn := io.WB_DAT_I
ethReg.io.Address := io.WB_ADR_I(9,2)
ethReg.io.Rw := io.WB_WE_I
ethReg.io.Cs := RegCs
ethReg.io.WCtrlDataStart := WCtrlDataStart
ethReg.io.RStatStart := RStatStart
ethReg.io.UpdateMIIRX_DATAReg := UpdateMIIRX_DATAReg
ethReg.io.Prsd := Prsd
ethReg.io.NValid_stat := NValid_stat
ethReg.io.Busy_stat := Busy_stat
ethReg.io.LinkFail := LinkFail
ethReg.io.TxB_IRQ := TxB_IRQ
ethReg.io.TxE_IRQ := TxE_IRQ
ethReg.io.RxB_IRQ := RxB_IRQ
ethReg.io.RxE_IRQ := RxE_IRQ
ethReg.io.Busy_IRQ := Busy_IRQ
ethReg.io.RstTxPauseRq := RstTxPauseRq
ethReg.io.TxCtrlEndFrm := TxCtrlEndFrm
ethReg.io.StartTxDone := StartTxDone
ethReg.io.TxClk := io.mtx_clk_pad_i
ethReg.io.RxClk := io.mrx_clk_pad_i
ethReg.io.SetPauseTimer := SetPauseTimer
ethReg.io.dbg_dat := wb_dbg_dat0
RegDataOut := ethReg.io.DataOut
r_RecSmall := ethReg.io.r_RecSmall
r_Pad := ethReg.io.r_Pad
r_HugEn := ethReg.io.r_HugEn
r_CrcEn := ethReg.io.r_CrcEn
r_DlyCrcEn := ethReg.io.r_DlyCrcEn
r_FullD := ethReg.io.r_FullD
r_ExDfrEn := ethReg.io.r_ExDfrEn
r_NoBckof := ethReg.io.r_NoBckof
r_LoopBck := ethReg.io.r_LoopBck
r_IFG := ethReg.io.r_IFG
r_Pro := ethReg.io.r_Pro
r_Bro := ethReg.io.r_Bro
r_NoPre := ethReg.io.r_NoPre
r_TxEn := ethReg.io.r_TxEn
r_RxEn := ethReg.io.r_RxEn
r_HASH0 := ethReg.io.r_HASH0
r_HASH1 := ethReg.io.r_HASH1
r_IPGT := ethReg.io.r_IPGT
r_IPGR1 := ethReg.io.r_IPGR1
r_IPGR2 := ethReg.io.r_IPGR2
r_MinFL := ethReg.io.r_MinFL
r_MaxFL := ethReg.io.r_MaxFL
r_MaxRet := ethReg.io.r_MaxRet
r_CollValid := ethReg.io.r_CollValid
r_TxFlow := ethReg.io.r_TxFlow
r_RxFlow := ethReg.io.r_RxFlow
r_PassAll := ethReg.io.r_PassAll
r_MiiNoPre := ethReg.io.r_MiiNoPre
r_ClkDiv := ethReg.io.r_ClkDiv
r_WCtrlData := ethReg.io.r_WCtrlData
r_RStat := ethReg.io.r_RStat
r_ScanStat := ethReg.io.r_ScanStat
r_RGAD := ethReg.io.r_RGAD
r_FIAD := ethReg.io.r_FIAD
r_CtrlData := ethReg.io.r_CtrlData
r_MAC := ethReg.io.r_MAC
r_TxBDNum := ethReg.io.r_TxBDNum
io.int_o := ethReg.io.int_o
r_TxPauseTV := ethReg.io.r_TxPauseTV
r_TxPauseRq := ethReg.io.r_TxPauseRq
val RxData = Wire(UInt(8.W))
val RxValid = Wire(Bool())
val RxStartFrm = Wire(Bool())
val RxEndFrm = Wire(Bool())
val RxAbort = Wire(Bool())
val WillTransmit = Wire(Bool())
val ResetCollision = Wire(Bool())
val TxDataOut = Wire(UInt(8.W))
val WillSendControlFrame = Wire(Bool())
val ReceiveEnd = Wire(Bool())
val ReceivedPacketGood = Wire(Bool())
val ReceivedLengthOK = Wire(Bool())
val InvalidSymbol = Wire(Bool())
val LatchedCrcError = Wire(Bool())
val RxLateCollision = Wire(Bool())
val RetryCntLatched = Wire(UInt(4.W))
val RetryCnt = Wire(UInt(4.W))
val StartTxAbort = Wire(Bool())
val MaxCollisionOccured = Wire(Bool())
val RetryLimit = Wire(Bool())
val StatePreamble = Wire(Bool())
val StateData = Wire(UInt(2.W))
// Connecting MACControl
val maccontrol = Module(new MacControl)
maccontrol.io.MTxClk := io.mtx_clk_pad_i
maccontrol.io.MRxClk := io.mrx_clk_pad_i
maccontrol.io.TxReset := reset.asBool
maccontrol.io.RxReset := reset.asBool
maccontrol.io.TPauseRq := TPauseRq
maccontrol.io.TxDataIn := TxData
maccontrol.io.TxStartFrmIn := TxStartFrm
maccontrol.io.TxUsedDataIn := TxUsedDataIn
maccontrol.io.TxEndFrmIn := TxEndFrm
maccontrol.io.TxDoneIn := TxDoneIn
maccontrol.io.TxAbortIn := TxAbortIn
maccontrol.io.PadIn := r_Pad | PerPacketPad
maccontrol.io.CrcEnIn := r_CrcEn | PerPacketCrcEn
maccontrol.io.RxData := RxData
maccontrol.io.RxValid := RxValid
maccontrol.io.RxStartFrm := RxStartFrm
maccontrol.io.RxEndFrm := RxEndFrm
maccontrol.io.ReceiveEnd := ReceiveEnd
maccontrol.io.ReceivedPacketGood := ReceivedPacketGood
maccontrol.io.ReceivedLengthOK := ReceivedLengthOK
maccontrol.io.TxFlow := r_TxFlow
maccontrol.io.RxFlow := r_RxFlow
maccontrol.io.DlyCrcEn := r_DlyCrcEn
maccontrol.io.TxPauseTV := r_TxPauseTV
maccontrol.io.MAC := r_MAC
maccontrol.io.RxStatusWriteLatched_sync2 := RxStatusWriteLatched_sync2
maccontrol.io.r_PassAll := r_PassAll
TxDataOut := maccontrol.io.TxDataOut
TxStartFrmOut := maccontrol.io.TxStartFrmOut
TxEndFrmOut := maccontrol.io.TxEndFrmOut
TxDone := maccontrol.io.TxDoneOut
TxAbort := maccontrol.io.TxAbortOut
TxUsedData := maccontrol.io.TxUsedDataOut
PadOut := maccontrol.io.PadOut
CrcEnOut := maccontrol.io.CrcEnOut
WillSendControlFrame := maccontrol.io.WillSendControlFrame
TxCtrlEndFrm := maccontrol.io.TxCtrlEndFrm
ReceivedPauseFrm := maccontrol.io.ReceivedPauseFrm
ControlFrmAddressOK := maccontrol.io.ControlFrmAddressOK
SetPauseTimer := maccontrol.io.SetPauseTimer
val TxCarrierSense = Wire(Bool())
val Collision = Wire(Bool())
val CarrierSense_Tx2 = Wire(Bool())
val RxEnSync = Wire(Bool())
// Muxed MII receive data valid
MRxDV_Lb := Mux(r_LoopBck, io.mtxen_pad_o, io.mrxdv_pad_i & RxEnSync)
// Muxed MII Receive Error
MRxErr_Lb := Mux(r_LoopBck, io.mtxerr_pad_o, io.mrxerr_pad_i & RxEnSync)
// Muxed MII Receive Data
MRxD_Lb := Mux(r_LoopBck, io.mtxd_pad_o, io.mrxd_pad_i)
val txethmac = Module(new MacTx)
txethmac.clock := io.mtx_clk_pad_i
txethmac.reset := reset.asBool
txethmac.io.TxStartFrm := TxStartFrmOut
txethmac.io.TxEndFrm := TxEndFrmOut
txethmac.io.TxUnderRun := TxUnderRun
txethmac.io.TxData := TxDataOut
txethmac.io.CarrierSense := TxCarrierSense
txethmac.io.Collision := Collision
txethmac.io.Pad := PadOut
txethmac.io.CrcEn := CrcEnOut
txethmac.io.FullD := r_FullD
txethmac.io.HugEn := r_HugEn
txethmac.io.DlyCrcEn := r_DlyCrcEn
txethmac.io.MinFL := r_MinFL
txethmac.io.MaxFL := r_MaxFL
txethmac.io.IPGT := r_IPGT
txethmac.io.IPGR1 := r_IPGR1
txethmac.io.IPGR2 := r_IPGR2
txethmac.io.CollValid := r_CollValid
txethmac.io.MaxRet := r_MaxRet
txethmac.io.NoBckof := r_NoBckof
txethmac.io.ExDfrEn := r_ExDfrEn
io.mtxd_pad_o := txethmac.io.MTxD
io.mtxen_pad_o := txethmac.io.MTxEn
io. mtxerr_pad_o := txethmac.io.MTxErr
TxDoneIn := txethmac.io.TxDone
TxRetry := txethmac.io.TxRetry
TxAbortIn := txethmac.io.TxAbort
TxUsedDataIn := txethmac.io.TxUsedData
WillTransmit := txethmac.io.WillTransmit
ResetCollision := txethmac.io.ResetCollision
RetryCnt := txethmac.io.RetryCnt
StartTxDone := txethmac.io.StartTxDone
StartTxAbort := txethmac.io.StartTxAbort
MaxCollisionOccured := txethmac.io.MaxCollisionOccured
LateCollision := txethmac.io.LateCollision
DeferIndication := txethmac.io.DeferIndication
StatePreamble := txethmac.io.StatePreamble
StateData := txethmac.io.StateData
val RxByteCnt = Wire(UInt(16.W))
val RxByteCntEq0 = Wire(Bool())
val RxByteCntGreat2 = Wire(Bool())
val RxByteCntMaxFrame = Wire(Bool())
val RxCrcError = Wire(Bool())
val RxStateIdle = Wire(Bool())
val RxStatePreamble = Wire(Bool())
val RxStateSFD = Wire(Bool())
val RxStateData = Wire(UInt(2.W))
val AddressMiss = Wire(Bool())
val rxethmac = Module(new MacRx)
rxethmac.clock := io.mrx_clk_pad_i
rxethmac.reset := reset.asBool
rxethmac.io.MRxDV := MRxDV_Lb
rxethmac.io.MRxD := MRxD_Lb
rxethmac.io.Transmitting := Transmitting
rxethmac.io.HugEn := r_HugEn
rxethmac.io.DlyCrcEn := r_DlyCrcEn
rxethmac.io.MaxFL := r_MaxFL
rxethmac.io.r_IFG := r_IFG
rxethmac.io.MAC := r_MAC
rxethmac.io.r_Bro := r_Bro
rxethmac.io.r_Pro := r_Pro
rxethmac.io.r_HASH0 := r_HASH0
rxethmac.io.r_HASH1 := r_HASH1
rxethmac.io.PassAll := r_PassAll
rxethmac.io.ControlFrmAddressOK := ControlFrmAddressOK
RxData := rxethmac.io.RxData
RxValid := rxethmac.io.RxValid
RxStartFrm := rxethmac.io.RxStartFrm
RxEndFrm := rxethmac.io.RxEndFrm
RxByteCnt := rxethmac.io.ByteCnt
RxByteCntEq0 := rxethmac.io.ByteCntEq0
RxByteCntGreat2 := rxethmac.io.ByteCntGreat2
RxByteCntMaxFrame := rxethmac.io.ByteCntMaxFrame
RxCrcError := rxethmac.io.CrcError
RxStateIdle := rxethmac.io.StateIdle
RxStatePreamble := rxethmac.io.StatePreamble
RxStateSFD := rxethmac.io.StateSFD
RxStateData := rxethmac.io.StateData
RxAbort := rxethmac.io.RxAbort
AddressMiss := rxethmac.io.AddressMiss
withClockAndReset( io.mtx_clk_pad_i.asClock, reset ) {
// MII Carrier Sense Synchronization
CarrierSense_Tx2 := ShiftRegister(io.mcrs_pad_i, 2, false.B, true.B)
TxCarrierSense := ~r_FullD & CarrierSense_Tx2
val Collision_Tx1 = RegNext(io.mcoll_pad_i, false.B)
val Collision_Tx2 = RegInit(false.B)
when(ResetCollision){
Collision_Tx2 := false.B
} .elsewhen(Collision_Tx1){
Collision_Tx2 := true.B
}
// Synchronized Collision
Collision := ~r_FullD & Collision_Tx2
}
withClockAndReset( io.mrx_clk_pad_i.asClock, reset ) {
val WillTransmit_q = ShiftRegister(WillTransmit, 2, false.B, true.B)
Transmitting := ~r_FullD & WillTransmit_q
RxEnSync := RegEnable(r_RxEn, false.B, ~io.mrxdv_pad_i)
}
// Synchronizing WillSendControlFrame to WB_CLK;
val WillSendControlFrame_sync = ShiftRegisters(WillSendControlFrame, 3, false.B, true.B)
when(true.B){
RstTxPauseRq := WillSendControlFrame_sync(1) & ~WillSendControlFrame_sync(2)
}
withClockAndReset( io.mtx_clk_pad_i.asClock, reset ) {
val TxPauseRq_sync = ShiftRegisters((r_TxPauseRq & r_TxFlow), 3, false.B, true.B )
TPauseRq := RegNext( TxPauseRq_sync(1) & (~TxPauseRq_sync(2)), false.B )
}
val LatchedMRxErr = Wire(Bool())
val RxAbort_latch_wire = Wire(Bool())
val RxAbort_wb = ShiftRegister( RxAbort_latch_wire, 2, false.B, true.B )
withClockAndReset( io.mrx_clk_pad_i.asClock, reset ) {
val RxAbort_latch = RegInit(false.B)
val RxAbortRst = ShiftRegister( RxAbort_wb, 2, false.B, true.B )
// Synchronizing RxAbort to the WISHBONE clock
when(RxAbort | (ShortFrame & ~r_RecSmall) | LatchedMRxErr & ~InvalidSymbol | (ReceivedPauseFrm & (~r_PassAll))){
RxAbort_latch := true.B
} .elsewhen(RxAbortRst){
RxAbort_latch := false.B
}
}
val wishbone = Module(new MacTileLink)
wishbone.io.WB_DAT_I := io.WB_DAT_I
io.WB_DAT_O := wishbone.io.WB_DAT_O
wishbone.io.WB_ADR_I := io.WB_ADR_I
wishbone.io.WB_WE_I := io.WB_WE_I
wishbone.io.WB_SEL_I := io.WB_SEL_I
wishbone.io.WB_CYC_I := io.WB_CYC_I
wishbone.io.WB_STB_I := io.WB_STB_I
io.WB_ACK_O := wishbone.io.WB_ACK_O
io.WB_ERR_O := wishbone.io.WB_ERR_O
m_wb_adr_tmp := wishbone.io.m_wb_adr_o
io.m_wb_sel_o := wishbone.io.m_wb_sel_o
io.m_wb_we_o := wishbone.io.m_wb_we_o
io.m_wb_dat_o := wishbone.io.m_wb_dat_o
io.m_wb_cyc_o := wishbone.io.m_wb_cyc_o
io.m_wb_stb_o := wishbone.io.m_wb_stb_o
wishbone.io.m_wb_dat_i := io.m_wb_dat_i
wishbone.io.m_wb_ack_i := io.m_wb_ack_i
wishbone.io.m_wb_err_i := io.m_wb_err_i
io.m_wb_cti_o := wishbone.io.m_wb_cti_o
io.m_wb_bte_o := wishbone.io.m_wb_bte_o
wishbone.io.InvalidSymbol := InvalidSymbol
wishbone.io.LatchedCrcError := LatchedCrcError
wishbone.io.RxLateCollision := RxLateCollision
wishbone.io.ShortFrame := ShortFrame
wishbone.io.DribbleNibble := DribbleNibble
wishbone.io.ReceivedPacketTooBig := ReceivedPacketTooBig
wishbone.io.RxLength := RxByteCnt
wishbone.io.LoadRxStatus := LoadRxStatus
wishbone.io.ReceivedPacketGood := ReceivedPacketGood
wishbone.io.AddressMiss := AddressMiss
wishbone.io.r_RxFlow := r_RxFlow
wishbone.io.r_PassAll := r_PassAll
wishbone.io.ReceivedPauseFrm := ReceivedPauseFrm
wishbone.io.RetryCntLatched := RetryCntLatched
wishbone.io.RetryLimit := RetryLimit
wishbone.io.LateCollLatched := LateCollLatched
wishbone.io.DeferLatched := DeferLatched
RstDeferLatched := wishbone.io.RstDeferLatched
wishbone.io.CarrierSenseLost := CarrierSenseLost
wishbone.io.MTxClk := io.mtx_clk_pad_i
wishbone.io.TxUsedData := TxUsedData
wishbone.io.TxRetry := TxRetry
wishbone.io.TxAbort := TxAbort
wishbone.io.TxDone := TxDone
TxStartFrm := wishbone.io.TxStartFrm
TxEndFrm := wishbone.io.TxEndFrm
TxData := wishbone.io.TxData
TxUnderRun := wishbone.io.TxUnderRun
PerPacketCrcEn := wishbone.io.PerPacketCrcEn
PerPacketPad := wishbone.io.PerPacketPad
wishbone.io.MRxClk := io.mrx_clk_pad_i
wishbone.io.RxData := RxData
wishbone.io.RxValid := RxValid
wishbone.io.RxStartFrm := RxStartFrm
wishbone.io.RxEndFrm := RxEndFrm
wishbone.io.RxAbort := RxAbort_wb
RxStatusWriteLatched_sync2 := wishbone.io.RxStatusWriteLatched_sync2
wishbone.io.r_TxEn := r_TxEn
wishbone.io.r_RxEn := r_RxEn
wishbone.io.r_TxBDNum := r_TxBDNum
wishbone.io.RegDataOut := RegDataOut
RegCs := wishbone.io.RegCs
TxB_IRQ := wishbone.io.TxB_IRQ
TxE_IRQ := wishbone.io.TxE_IRQ
RxB_IRQ := wishbone.io.RxB_IRQ
RxE_IRQ := wishbone.io.RxE_IRQ
Busy_IRQ := wishbone.io.Busy_IRQ
io.m_wb_adr_o := Cat(m_wb_adr_tmp, 0.U(2.W))
val macstatus = Module(new MacStatus)
macstatus.io.reset := reset.asBool
macstatus.io.MRxClk := io.mrx_clk_pad_i
macstatus.io.RxCrcError := RxCrcError
macstatus.io.MRxErr := MRxErr_Lb
macstatus.io.MRxDV := MRxDV_Lb
macstatus.io.RxStateSFD := RxStateSFD
macstatus.io.RxStateData := RxStateData
macstatus.io.RxStatePreamble := RxStatePreamble
macstatus.io.RxStateIdle := RxStateIdle
macstatus.io.Transmitting := Transmitting
macstatus.io.RxByteCnt := RxByteCnt
macstatus.io.RxByteCntEq0 := RxByteCntEq0
macstatus.io.RxByteCntGreat2 := RxByteCntGreat2
macstatus.io.RxByteCntMaxFrame := RxByteCntMaxFrame
macstatus.io.MRxD := MRxD_Lb
macstatus.io.Collision := io.mcoll_pad_i
macstatus.io.CollValid := r_CollValid
macstatus.io.r_RecSmall := r_RecSmall
macstatus.io.r_MinFL := r_MinFL
macstatus.io.r_MaxFL := r_MaxFL
macstatus.io.r_HugEn := r_HugEn
macstatus.io.StartTxDone := StartTxDone
macstatus.io.StartTxAbort := StartTxAbort
macstatus.io.RetryCnt := RetryCnt
macstatus.io.MTxClk := io.mtx_clk_pad_i
macstatus.io.MaxCollisionOccured := MaxCollisionOccured
macstatus.io.LateCollision := LateCollision
macstatus.io.DeferIndication := DeferIndication
macstatus.io.TxStartFrm := TxStartFrmOut
macstatus.io.StatePreamble := StatePreamble
macstatus.io.StateData := StateData
macstatus.io.CarrierSense := CarrierSense_Tx2
macstatus.io.TxUsedData := TxUsedDataIn
macstatus.io.Loopback := r_LoopBck
macstatus.io.r_FullD := r_FullD
macstatus.io.RstDeferLatched := RstDeferLatched
ReceivedLengthOK := macstatus.io.ReceivedLengthOK
ReceiveEnd := macstatus.io.ReceiveEnd
ReceivedPacketGood := macstatus.io.ReceivedPacketGood
InvalidSymbol := macstatus.io.InvalidSymbol
LatchedCrcError := macstatus.io.LatchedCrcError
RxLateCollision := macstatus.io.RxLateCollision
ShortFrame := macstatus.io.ShortFrame
DribbleNibble := macstatus.io.DribbleNibble
ReceivedPacketTooBig := macstatus.io.ReceivedPacketTooBig
LoadRxStatus := macstatus.io.LoadRxStatus
RetryCntLatched := macstatus.io.RetryCntLatched
RetryLimit := macstatus.io.RetryLimit
LateCollLatched := macstatus.io.LateCollLatched
DeferLatched := macstatus.io.DeferLatched
CarrierSenseLost := macstatus.io.CarrierSenseLost
LatchedMRxErr := macstatus.io.LatchedMRxErr
}

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@@ -3,14 +3,14 @@ package MAC
import chisel3._ import chisel3._
import chisel3.util._ import chisel3.util._
class MDIO extends Bundle{ trait MDIO { this: Bundle =>
val mdi = Input( Bool()) // MII Management Data In val mdi = Input( Bool()) // MII Management Data In
val mdc = Output(Bool()) // MII Management Data Clock val mdc = Output(Bool()) // MII Management Data Clock
val mdo = Output(Bool()) // MII Management Data Output val mdo = Output(Bool()) // MII Management Data Output
val mdoEn = Output(Bool()) // MII Management Data Output Enable val mdoEn = Output(Bool()) // MII Management Data Output Enable
} }
class MIIMIO extends MDIO{ class MIIMIO extends Bundle with MDIO{
val Divider = Input( UInt(8.W) ) // Divider for the host clock // Divider (input clock will be divided by the Divider[7:0]) val Divider = Input( UInt(8.W) ) // Divider for the host clock // Divider (input clock will be divided by the Divider[7:0])
val NoPre = Input(Bool()) // No Preamble (no 32-bit preamble) val NoPre = Input(Bool()) // No Preamble (no 32-bit preamble)

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@@ -4,6 +4,9 @@ import chisel3._
import chisel3.util._ import chisel3.util._
class MacStatusIO extends Bundle{ class MacStatusIO extends Bundle{
val reset = Input(Bool())
val MRxClk = Input(Bool())
val RxCrcError = Input(Bool()) val RxCrcError = Input(Bool())
val MRxErr = Input(Bool()) val MRxErr = Input(Bool())
val MRxDV = Input(Bool()) val MRxDV = Input(Bool())
@@ -57,9 +60,10 @@ class MacStatusIO extends Bundle{
val LatchedMRxErr = Output(Bool()) val LatchedMRxErr = Output(Bool())
} }
class MacStatus extends Module{ class MacStatus extends RawModule{
val io: MacStatusIO = IO(new MacStatusIO) val io: MacStatusIO = IO(new MacStatusIO)
withClockAndReset( io.MRxClk.asClock, io.reset ) {
val LatchedCrcError = RegInit(false.B); io.LatchedCrcError := LatchedCrcError // Crc error val LatchedCrcError = RegInit(false.B); io.LatchedCrcError := LatchedCrcError // Crc error
@@ -140,6 +144,12 @@ class MacStatus extends Module{
ReceivedPacketTooBig := ~io.r_HugEn & io.RxByteCnt > io.r_MaxFL ReceivedPacketTooBig := ~io.r_HugEn & io.RxByteCnt > io.r_MaxFL
} }
}
withClockAndReset( io.MTxClk.asClock, io.reset ) {
val RetryCntLatched = RegEnable( io.RetryCnt, 0.U(4.W), io.StartTxDone | io.StartTxAbort); io.RetryCntLatched := RetryCntLatched val RetryCntLatched = RegEnable( io.RetryCnt, 0.U(4.W), io.StartTxDone | io.StartTxAbort); io.RetryCntLatched := RetryCntLatched
val RetryLimit = RegEnable( io.MaxCollisionOccured, false.B, io.StartTxDone | io.StartTxAbort ); io.RetryLimit := RetryLimit // Latched Retransmission limit val RetryLimit = RegEnable( io.MaxCollisionOccured, false.B, io.StartTxDone | io.StartTxAbort ); io.RetryLimit := RetryLimit // Latched Retransmission limit
val LateCollLatched = RegEnable( io.LateCollision, false.B, io.StartTxDone | io.StartTxAbort); io.LateCollLatched := LateCollLatched // Latched Late Collision val LateCollLatched = RegEnable( io.LateCollision, false.B, io.StartTxDone | io.StartTxAbort); io.LateCollLatched := LateCollLatched // Latched Late Collision
@@ -153,7 +163,6 @@ class MacStatus extends Module{
DeferLatched := false.B DeferLatched := false.B
} }
val CarrierSenseLost = RegInit(false.B); io.CarrierSenseLost := CarrierSenseLost // CarrierSenseLost val CarrierSenseLost = RegInit(false.B); io.CarrierSenseLost := CarrierSenseLost // CarrierSenseLost
when((io.StatePreamble | io.StateData.orR) & ~io.CarrierSense & ~io.Loopback & ~io.Collision & ~io.r_FullD){ when((io.StatePreamble | io.StateData.orR) & ~io.CarrierSense & ~io.Loopback & ~io.Collision & ~io.r_FullD){
@@ -162,6 +171,10 @@ class MacStatus extends Module{
CarrierSenseLost := false.B CarrierSenseLost := false.B
} }
}
} }

View File

@@ -44,28 +44,14 @@ class RxBuffDesc extends Bundle{
abstract class MacTileLinkBase(edge: TLEdgeIn) extends Module{ abstract class MacTileLinkBase() extends Module{
trait MacTileLinkSlaveIO { this: Bundle => // edge: TLEdgeIn
val slvA = Flipped(Decoupled(new TLBundleA(edge.bundle))) // trait MacTileLinkSlaveIO { this: Bundle =>
val slvD = Decoupled(new TLBundleD(edge.bundle)) // val slvA = Flipped(Decoupled(new TLBundleA(edge.bundle)))
} // val slvD = Decoupled(new TLBundleD(edge.bundle))
// }
trait MacWishboneSlaveIO{ this: Bundle =>
// WISHBONE common
val WB_DAT_I = Input(UInt(32.W)) // WISHBONE data input
val WB_DAT_O = Output(UInt(32.W)) // WISHBONE data output
// WISHBONE slave
val WB_ADR_I = Input(UInt(10.W)) // WISHBONE address input
val WB_WE_I = Input(Bool()) // WISHBONE write enable input
// val BDCs = Input(UInt(4.W)) // Buffer descriptors are selected
val WB_SEL_I = Input(UInt(4.W)) // WISHBONE byte select input
val WB_CYC_I = Input(Bool()) // WISHBONE cycle input
val WB_STB_I = Input(Bool()) // WISHBONE strobe input
val WB_ACK_O = Output(Bool()) // WISHBONE acknowledge output
val WB_ERR_O = Output(Bool()) // WISHBONE error output
}
class MacTileLinkIO extends Bundle{ class MacTileLinkIO extends Bundle{
@@ -144,9 +130,10 @@ abstract class MacTileLinkBase(edge: TLEdgeIn) extends Module{
} }
def isTileLink = false.B def isTileLink = false
val io: MacTileLinkIO = if( !isTileLink ) {IO(new MacTileLinkIO with MacWishboneSlaveIO)} else {IO(new MacTileLinkIO with MacTileLinkSlaveIO)} val io = IO(new MacTileLinkIO with MacWishboneSlaveIO)
// if( !isTileLink ) {IO(new MacTileLinkIO with MacWishboneSlaveIO)} else {IO(new MacTileLinkIO with MacTileLinkSlaveIO)}
@@ -421,10 +408,16 @@ abstract class MacTileLinkBase(edge: TLEdgeIn) extends Module{
WbEn := true.B // RxEn access stage and r_TxEn is disabled WbEn := true.B // RxEn access stage and r_TxEn is disabled
RxEn := false.B RxEn := false.B
TxEn := false.B TxEn := false.B
ram_addr := (if( !isTileLink ) {io.WB_ADR_I(7,0)} else {io.slvA.bits.address(9:2)}) // [11:2 ] -> [9:2];
ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data }) ram_addr := io.WB_ADR_I(9,2)
BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} ) ram_di := io.WB_DAT_I
BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)}) BDWrite := BDCs & Fill(4,io.WB_WE_I)
BDRead := BDCs.orR & ~io.WB_WE_I
// ram_addr := (if( !isTileLink ) {io.WB_ADR_I(9,2)} else {io.slvA.bits.address(9,2)}) // [11:2 ] -> [9:2];
// ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data })
// BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} )
// BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)})
} .elsewhen( RAMAccessEnable === BitPat("b010?1") ){ } .elsewhen( RAMAccessEnable === BitPat("b010?1") ){
WbEn := false.B WbEn := false.B
RxEn := false.B RxEn := false.B
@@ -435,20 +428,30 @@ abstract class MacTileLinkBase(edge: TLEdgeIn) extends Module{
WbEn := true.B // TxEn access stage (we always go to wb access stage) WbEn := true.B // TxEn access stage (we always go to wb access stage)
RxEn := false.B RxEn := false.B
TxEn := false.B TxEn := false.B
ram_addr := (if( !isTileLink ) {io.WB_ADR_I(7,0)} else {io.slvA.bits.address(9:2)}) //[11:2 ] ->[9:2] ram_addr := io.WB_ADR_I(9,2)
ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data }) ram_di := io.WB_DAT_I
BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} ) BDWrite := BDCs & Fill(4,io.WB_WE_I)
BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)}) BDRead := BDCs.orR & ~io.WB_WE_I
// ram_addr := (if( !isTileLink ) {io.WB_ADR_I(9,2)} else {io.slvA.bits.address(9,2)}) //[11:2 ] ->[9:2]
// ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data })
// BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} )
// BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)})
} .elsewhen( RAMAccessEnable === BitPat("b10000") ){ } .elsewhen( RAMAccessEnable === BitPat("b10000") ){
WbEn := false.B // WbEn access stage and there is no need for other stages. WbEn needs to be switched off for a bit WbEn := false.B // WbEn access stage and there is no need for other stages. WbEn needs to be switched off for a bit
} .elsewhen( RAMAccessEnable === BitPat("b00000") ){ } .elsewhen( RAMAccessEnable === BitPat("b00000") ){
WbEn := true.B // Idle state. We go to WbEn access stage. WbEn := true.B // Idle state. We go to WbEn access stage.
RxEn := false.B RxEn := false.B
TxEn := false.B TxEn := false.B
ram_addr := (if( !isTileLink ) {io.WB_ADR_I(7,0)} else {io.slvA.bits.address(9:2)}) // [11:2 ] -> [9:2] ram_addr := io.WB_ADR_I(9,2)
ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data }) ram_di := io.WB_DAT_I
BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} ) BDWrite := BDCs & Fill(4,io.WB_WE_I)
BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)}) BDRead := BDCs.orR & ~io.WB_WE_I
// ram_addr := (if( !isTileLink ) {io.WB_ADR_I(9,2)} else {io.slvA.bits.address(9,2)}) // [11:2 ] -> [9:2]
// ram_di := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data })
// BDWrite := (if( !isTileLink ) {BDCs & Fill(4,io.WB_WE_I)} else {BDCs & Fill(4,(io.slvA.bits.opcode === 0.U) || (io.slvA.bits.opcode === 1.U))} )
// BDRead := (if( !isTileLink ) {BDCs.orR & ~io.WB_WE_I} else {BDCs.orR & (io.slvA.bits.opcode === 4.U)})
} }
@@ -750,7 +753,8 @@ val masterStage = Cat(MasterWbTX, MasterWbRX, (ReadTxDataFromMemory & ~BlockRead
TxFifoClear := (TxAbortPacket | TxRetryPacket) TxFifoClear := (TxAbortPacket | TxRetryPacket)
val tx_fifo = Module( new MacFifo(dw = 32, dp = 16) ) val tx_fifo = Module( new MacFifo(dw = 32, dp = 16) )
tx_fifo.io.data_in := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data }) tx_fifo.io.data_in := io.WB_DAT_I
// tx_fifo.io.data_in := (if( !isTileLink ) {io.WB_DAT_I} else { io.slvA.bits.data })
tx_fifo.io.write := MasterWbTX & io.m_wb_ack_i tx_fifo.io.write := MasterWbTX & io.m_wb_ack_i
tx_fifo.io.read := ReadTxDataFromFifo_wb & ~TxBufferEmpty tx_fifo.io.read := ReadTxDataFromFifo_wb & ~TxBufferEmpty
tx_fifo.io.clear := TxFifoClear tx_fifo.io.clear := TxFifoClear
@@ -1165,32 +1169,32 @@ val masterStage = Cat(MasterWbTX, MasterWbRX, (ReadTxDataFromMemory & ~BlockRead
val CsMiss = Wire(Bool()) val CsMiss = Wire(Bool())
if( !isTileLink ){ // if( !isTileLink ){
io.RegCs := Fill(4, io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & ~io.WB_ADR_I.extract(9) & ~io.WB_ADR_I.extract(8)) & io.WB_SEL_I // 0x0 - 0x3FF io.RegCs := Fill(4, io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & ~io.WB_ADR_I.extract(11) & ~io.WB_ADR_I.extract(10)) & io.WB_SEL_I // 0x0 - 0x3FF
BDCs := Fill(4, io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & ~io.WB_ADR_I.extract(9) & io.WB_ADR_I.extract(8)) & io.WB_SEL_I // 0x400 - 0x7FF BDCs := Fill(4, io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & ~io.WB_ADR_I.extract(11) & io.WB_ADR_I.extract(10)) & io.WB_SEL_I // 0x400 - 0x7FF
CsMiss := io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & io.WB_ADR_I.extract(9) // 0x800 - 0xfFF // When access to the address between 0x800 and 0xfff occurs, acknowledge is set but data is not valid. CsMiss := io.WB_STB_I & io.WB_CYC_I & io.WB_SEL_I.orR & io.WB_ADR_I.extract(11) // 0x800 - 0xfFF // When access to the address between 0x800 and 0xfff occurs, acknowledge is set but data is not valid.
io.WB_DAT_O := RegNext(Mux( ((io.RegCs.orR) & ~io.WB_WE_I), io.RegDataOut, BD_WB_DAT_O ), 0.U(32.W)) io.WB_DAT_O := RegNext(Mux( ((io.RegCs.orR) & ~io.WB_WE_I), io.RegDataOut, BD_WB_DAT_O ), 0.U(32.W))
io.WB_ACK_O := RegNext((io.RegCs.orR | BDAck) & ~io.WB_ACK_O, false.B) io.WB_ACK_O := RegNext((io.RegCs.orR | BDAck) & ~io.WB_ACK_O, false.B)
} else { // } else {
io.RegCs := Fill(4, io.slvA.fire & io.slvA.bits.mask.orR & ~io.slvA.bits.address(11) & ~io.slvA.bits.address(10)) & io.slvA.bits.mask // 0x0 - 0x3FF // io.RegCs := Fill(4, io.slvA.fire & io.slvA.bits.mask.orR & ~io.slvA.bits.address(11) & ~io.slvA.bits.address(10)) & io.slvA.bits.mask // 0x0 - 0x3FF
BDCs := Fill(4, io.slvA.fire & io.slvA.bits.mask.orR & ~io.slvA.bits.address(11) & io.slvA.bits.address(10)) & io.slvA.bits.mask // 0x400 - 0x7FF // BDCs := Fill(4, io.slvA.fire & io.slvA.bits.mask.orR & ~io.slvA.bits.address(11) & io.slvA.bits.address(10)) & io.slvA.bits.mask // 0x400 - 0x7FF
CsMiss := io.slvA.fire & io.slvA.bits.mask.orR & io.slvA.bits.address(11) // 0x800 - 0xfFF // When access to the address between 0x800 and 0xfff occurs, acknowledge is set but data is not valid. // CsMiss := io.slvA.fire & io.slvA.bits.mask.orR & io.slvA.bits.address(11) // 0x800 - 0xfFF // When access to the address between 0x800 and 0xfff occurs, acknowledge is set but data is not valid.
io.WB_DAT_O := RegNext(Mux( ((io.RegCs.orR) & (io.slvA.bits.opcode === 4.U)), io.RegDataOut, BD_WB_DAT_O ), 0.U(32.W)) // io.WB_DAT_O := RegNext(Mux( ((io.RegCs.orR) & (io.slvA.bits.opcode === 4.U)), io.RegDataOut, BD_WB_DAT_O ), 0.U(32.W))
val slvAInfo = RegEnable( io.slvA.bits, io.slvA.fire ) // val slvAInfo = RegEnable( io.slvA.bits, io.slvA.fire )
val slvDValid = RegInit(false.B); io.slvD.valid := slvDValid // val slvDValid = RegInit(false.B); io.slvD.valid := slvDValid
when( io.slvD.fire ){ // when( io.slvD.fire ){
slvDValid := false.B // slvDValid := false.B
} .elsewhen(io.RegCs.orR | BDAck){ // } .elsewhen(io.RegCs.orR | BDAck){
slvDValid := true.B // slvDValid := true.B
} // }
io.slvD.bits := // io.slvD.bits :=
} // }
io.WB_ERR_O := RegNext(io.WB_STB_I & io.WB_CYC_I & (~(io.WB_SEL_I.orR) | CsMiss) & ~io.WB_ERR_O, false.B) io.WB_ERR_O := RegNext(io.WB_STB_I & io.WB_CYC_I & (~(io.WB_SEL_I.orR) | CsMiss) & ~io.WB_ERR_O, false.B)

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@@ -0,0 +1,24 @@
package MAC
import chisel3._
import chisel3.stage._
import freechips.rocketchip.diplomacy._
import org.chipsalliance.cde.config._
case object MacParamsKey extends Field[MacSetting]
case class MacSetting(){
}
trait HasMacParameters {
implicit val p: Parameters
val riftSetting = p(MacParamsKey)
}
class MacCfg extends Config((_, _, _) => {
case MacParamsKey => MacSetting()
})

View File

@@ -3,11 +3,27 @@ package test
import MAC._ import MAC._
import chisel3._ import chisel3._
import chisel3.stage._ import chisel3.stage._
import freechips.rocketchip.diplomacy._
import org.chipsalliance.cde.config._
object testModule extends App { object testModule extends App {
(new chisel3.stage.ChiselStage).execute( Array("--target-dir", "generated/", "-e", "verilog" ) ++ args, Seq( // (new chisel3.stage.ChiselStage).execute( Array("--target-dir", "generated/", "-e", "verilog" ) ++ args, Seq(
// ChiselGeneratorAnnotation(() => {
// new Mac
// })
// ))
val cfg = new MacCfg
(new chisel3.stage.ChiselStage).execute( Array("--show-registrations", "--full-stacktrace", "--target-dir", "generated/Main") ++ args, Seq(
ChiselGeneratorAnnotation(() => { ChiselGeneratorAnnotation(() => {
new MacTileLink val soc = LazyModule(new Mac()(cfg))
soc.module
}) })
)) ))
} }