compile and realign pass

This commit is contained in:
RuigeLee
2023-07-04 10:00:08 +08:00
parent 0303ca21fb
commit fd9bebe897
5 changed files with 243 additions and 2319 deletions

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@@ -1,18 +0,0 @@
[
{
"class":"firrtl.EmitAllModulesAnnotation",
"emitter":"firrtl.VerilogEmitter"
},
{
"class":"firrtl.transforms.BlackBoxTargetDirAnno",
"targetDir":"generated/"
},
{
"class":"firrtl.transforms.CombinationalPath",
"sink":"~MIIM|MIIM>io_Busy",
"sources":[
"~MIIM|MIIM>io_RStat",
"~MIIM|MIIM>io_WCtrlData"
]
}
]

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@@ -1,355 +0,0 @@
circuit MIIM :
module MIIM :
input clock : Clock
input reset : UInt<1>
output io : { flip mdi : UInt<1>, mdc : UInt<1>, mdo : UInt<1>, mdoEn : UInt<1>, flip Divider : UInt<8>, flip NoPre : UInt<1>, flip WCtrlData : UInt<1>, flip CtrlData : UInt<16>, flip Fiad : UInt<5>, flip Rgad : UInt<5>, flip RStat : UInt<1>, flip ScanStat : UInt<1>, Busy : UInt<1>, LinkFail : UInt<1>, Nvalid : UInt<1>, Prsd : UInt<16>, WCtrlDataStart : UInt<1>, RStatStart : UInt<1>, UpdateMIIRX_DATAReg : UInt<1>}
wire ByteSelect : UInt<1>[4] @[MII.scala 42:24]
reg Counter : UInt<8>, clock with :
reset => (reset, UInt<8>("h1")) @[MII.scala 46:25]
reg mdc : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 47:20]
node _mdcEn_T = eq(Counter, UInt<1>("h0")) @[MII.scala 48:27]
node _mdcEn_T_1 = not(mdc) @[MII.scala 48:38]
node mdcEn = and(_mdcEn_T, _mdcEn_T_1) @[MII.scala 48:36]
node _mdcEn_n_T = eq(Counter, UInt<1>("h0")) @[MII.scala 49:27]
node mdcEn_n = and(_mdcEn_n_T, mdc) @[MII.scala 49:36]
reg ShiftReg : UInt<8>, clock with :
reset => (reset, UInt<8>("h0")) @[MII.scala 51:25]
reg Prsd : UInt<16>, clock with :
reset => (reset, UInt<16>("h0")) @[MII.scala 52:25]
reg LinkFail : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 53:25]
reg BitCounter : UInt<7>, clock with :
reset => (reset, UInt<7>("h0")) @[MII.scala 56:27]
node EndOp = eq(BitCounter, UInt<6>("h3f")) @[MII.scala 57:26]
reg InProgress : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 60:27]
reg InProgress_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
InProgress_q_0 <= InProgress @[Reg.scala 36:22]
reg InProgress_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
InProgress_q_1 <= InProgress_q_0 @[Reg.scala 36:22]
reg InProgress_q_2 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
InProgress_q_2 <= InProgress_q_1 @[Reg.scala 36:22]
node _EndBusy_T = not(InProgress_q_1) @[MII.scala 62:32]
node _EndBusy_T_1 = and(_EndBusy_T, InProgress_q_2) @[MII.scala 62:49]
reg EndBusy_r : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
EndBusy_r <= _EndBusy_T_1 @[Reg.scala 36:22]
reg EndBusy : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
EndBusy <= EndBusy_r @[Reg.scala 36:22]
reg WriteOp : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 64:27]
io.mdc <= mdc @[MII.scala 69:10]
io.LinkFail <= LinkFail @[MII.scala 70:15]
io.Prsd <= Prsd @[MII.scala 71:11]
node _TempDivider_T = lt(io.Divider, UInt<2>("h2")) @[MII.scala 82:39]
node TempDivider = mux(_TempDivider_T, UInt<2>("h2"), io.Divider) @[MII.scala 82:26]
node _CounterPreset_T = shr(TempDivider, 1) @[MII.scala 83:37]
node _CounterPreset_T_1 = sub(_CounterPreset_T, UInt<1>("h1")) @[MII.scala 83:44]
node CounterPreset = tail(_CounterPreset_T_1, 1) @[MII.scala 83:44]
node _T = eq(Counter, UInt<1>("h0")) @[MII.scala 85:17]
when _T : @[MII.scala 85:27]
node _mdc_T = not(mdc) @[MII.scala 86:12]
mdc <= _mdc_T @[MII.scala 86:9]
Counter <= CounterPreset @[MII.scala 87:13]
else :
node _Counter_T = sub(Counter, UInt<1>("h1")) @[MII.scala 89:24]
node _Counter_T_1 = tail(_Counter_T, 1) @[MII.scala 89:24]
Counter <= _Counter_T_1 @[MII.scala 89:13]
node _LatchByte0_T = not(WriteOp) @[MII.scala 97:47]
node _LatchByte0_T_1 = and(InProgress, _LatchByte0_T) @[MII.scala 97:45]
node _LatchByte0_T_2 = eq(BitCounter, UInt<6>("h3f")) @[MII.scala 97:69]
node _LatchByte0_T_3 = and(_LatchByte0_T_1, _LatchByte0_T_2) @[MII.scala 97:56]
reg LatchByte0_r : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
LatchByte0_r <= _LatchByte0_T_3 @[Reg.scala 36:22]
reg LatchByte0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
LatchByte0 <= LatchByte0_r @[Reg.scala 36:22]
node _LatchByte1_T = not(WriteOp) @[MII.scala 98:47]
node _LatchByte1_T_1 = and(InProgress, _LatchByte1_T) @[MII.scala 98:45]
node _LatchByte1_T_2 = eq(BitCounter, UInt<6>("h37")) @[MII.scala 98:69]
node _LatchByte1_T_3 = and(_LatchByte1_T_1, _LatchByte1_T_2) @[MII.scala 98:56]
reg LatchByte1_r : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
LatchByte1_r <= _LatchByte1_T_3 @[Reg.scala 36:22]
reg LatchByte1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
LatchByte1 <= LatchByte1_r @[Reg.scala 36:22]
node _ByteSelect_0_T = eq(BitCounter, UInt<1>("h0")) @[MII.scala 100:58]
node _ByteSelect_0_T_1 = and(io.NoPre, _ByteSelect_0_T) @[MII.scala 100:44]
node _ByteSelect_0_T_2 = not(io.NoPre) @[MII.scala 100:71]
node _ByteSelect_0_T_3 = eq(BitCounter, UInt<6>("h20")) @[MII.scala 100:95]
node _ByteSelect_0_T_4 = and(_ByteSelect_0_T_2, _ByteSelect_0_T_3) @[MII.scala 100:81]
node _ByteSelect_0_T_5 = or(_ByteSelect_0_T_1, _ByteSelect_0_T_4) @[MII.scala 100:68]
node _ByteSelect_0_T_6 = and(InProgress, _ByteSelect_0_T_5) @[MII.scala 100:31]
ByteSelect[0] <= _ByteSelect_0_T_6 @[MII.scala 100:17]
node _ByteSelect_1_T = eq(BitCounter, UInt<6>("h28")) @[MII.scala 101:45]
node _ByteSelect_1_T_1 = and(InProgress, _ByteSelect_1_T) @[MII.scala 101:31]
ByteSelect[1] <= _ByteSelect_1_T_1 @[MII.scala 101:17]
node _ByteSelect_2_T = and(InProgress, WriteOp) @[MII.scala 102:31]
node _ByteSelect_2_T_1 = eq(BitCounter, UInt<6>("h30")) @[MII.scala 102:55]
node _ByteSelect_2_T_2 = and(_ByteSelect_2_T, _ByteSelect_2_T_1) @[MII.scala 102:41]
ByteSelect[2] <= _ByteSelect_2_T_2 @[MII.scala 102:17]
node _ByteSelect_3_T = and(InProgress, WriteOp) @[MII.scala 103:31]
node _ByteSelect_3_T_1 = eq(BitCounter, UInt<6>("h38")) @[MII.scala 103:55]
node _ByteSelect_3_T_2 = and(_ByteSelect_3_T, _ByteSelect_3_T_1) @[MII.scala 103:41]
ByteSelect[3] <= _ByteSelect_3_T_2 @[MII.scala 103:17]
when mdcEn_n : @[MII.scala 105:16]
node _T_1 = or(ByteSelect[0], ByteSelect[1]) @[MII.scala 106:29]
node _T_2 = or(_T_1, ByteSelect[2]) @[MII.scala 106:29]
node _T_3 = or(_T_2, ByteSelect[3]) @[MII.scala 106:29]
when _T_3 : @[MII.scala 106:34]
node _ShiftReg_T = not(WriteOp) @[MII.scala 108:44]
node _ShiftReg_T_1 = bits(io.Fiad, 4, 1) @[MII.scala 108:70]
node ShiftReg_lo = cat(WriteOp, _ShiftReg_T_1) @[Cat.scala 33:92]
node ShiftReg_hi = cat(UInt<2>("h1"), _ShiftReg_T) @[Cat.scala 33:92]
node _ShiftReg_T_2 = cat(ShiftReg_hi, ShiftReg_lo) @[Cat.scala 33:92]
node _ShiftReg_T_3 = bits(io.Fiad, 0, 0) @[MII.scala 109:45]
node _ShiftReg_T_4 = bits(io.Rgad, 4, 0) @[MII.scala 109:57]
node ShiftReg_hi_1 = cat(_ShiftReg_T_3, _ShiftReg_T_4) @[Cat.scala 33:92]
node _ShiftReg_T_5 = cat(ShiftReg_hi_1, UInt<2>("h2")) @[Cat.scala 33:92]
node _ShiftReg_T_6 = bits(io.CtrlData, 15, 8) @[MII.scala 110:37]
node _ShiftReg_T_7 = bits(io.CtrlData, 7, 0) @[MII.scala 111:37]
node _ShiftReg_T_8 = mux(ByteSelect[0], _ShiftReg_T_2, UInt<1>("h0")) @[Mux.scala 27:73]
node _ShiftReg_T_9 = mux(ByteSelect[1], _ShiftReg_T_5, UInt<1>("h0")) @[Mux.scala 27:73]
node _ShiftReg_T_10 = mux(ByteSelect[2], _ShiftReg_T_6, UInt<1>("h0")) @[Mux.scala 27:73]
node _ShiftReg_T_11 = mux(ByteSelect[3], _ShiftReg_T_7, UInt<1>("h0")) @[Mux.scala 27:73]
node _ShiftReg_T_12 = or(_ShiftReg_T_8, _ShiftReg_T_9) @[Mux.scala 27:73]
node _ShiftReg_T_13 = or(_ShiftReg_T_12, _ShiftReg_T_10) @[Mux.scala 27:73]
node _ShiftReg_T_14 = or(_ShiftReg_T_13, _ShiftReg_T_11) @[Mux.scala 27:73]
wire _ShiftReg_WIRE : UInt<8> @[Mux.scala 27:73]
_ShiftReg_WIRE <= _ShiftReg_T_14 @[Mux.scala 27:73]
ShiftReg <= _ShiftReg_WIRE @[MII.scala 107:16]
else :
node _ShiftReg_T_15 = bits(ShiftReg, 6, 0) @[MII.scala 114:31]
node _ShiftReg_T_16 = cat(_ShiftReg_T_15, io.mdi) @[Cat.scala 33:92]
ShiftReg <= _ShiftReg_T_16 @[MII.scala 114:16]
when LatchByte0 : @[MII.scala 115:23]
node _Prsd_T = bits(Prsd, 15, 8) @[MII.scala 116:25]
node _Prsd_T_1 = bits(ShiftReg, 6, 0) @[MII.scala 116:41]
node Prsd_hi = cat(_Prsd_T, _Prsd_T_1) @[Cat.scala 33:92]
node _Prsd_T_2 = cat(Prsd_hi, io.mdi) @[Cat.scala 33:92]
Prsd <= _Prsd_T_2 @[MII.scala 116:14]
node _T_4 = eq(io.Rgad, UInt<1>("h1")) @[MII.scala 117:22]
when _T_4 : @[MII.scala 117:30]
node _LinkFail_T = bits(ShiftReg, 1, 1) @[MII.scala 118:40]
node _LinkFail_T_1 = not(_LinkFail_T) @[MII.scala 118:23]
LinkFail <= _LinkFail_T_1 @[MII.scala 118:20]
else :
when LatchByte1 : @[MII.scala 120:30]
node _Prsd_T_3 = bits(ShiftReg, 6, 0) @[MII.scala 121:29]
node _Prsd_T_4 = bits(Prsd, 7, 0) @[MII.scala 121:48]
node Prsd_hi_1 = cat(_Prsd_T_3, io.mdi) @[Cat.scala 33:92]
node _Prsd_T_5 = cat(Prsd_hi_1, _Prsd_T_4) @[Cat.scala 33:92]
Prsd <= _Prsd_T_5 @[MII.scala 121:14]
node _SerialEn_T = and(WriteOp, InProgress) @[MII.scala 131:29]
node _SerialEn_T_1 = gt(BitCounter, UInt<5>("h1f")) @[MII.scala 131:57]
node _SerialEn_T_2 = eq(BitCounter, UInt<1>("h0")) @[MII.scala 131:81]
node _SerialEn_T_3 = and(_SerialEn_T_2, io.NoPre) @[MII.scala 131:91]
node _SerialEn_T_4 = or(_SerialEn_T_1, _SerialEn_T_3) @[MII.scala 131:64]
node _SerialEn_T_5 = and(_SerialEn_T, _SerialEn_T_4) @[MII.scala 131:42]
node _SerialEn_T_6 = not(WriteOp) @[MII.scala 132:20]
node _SerialEn_T_7 = and(_SerialEn_T_6, InProgress) @[MII.scala 132:29]
node _SerialEn_T_8 = gt(BitCounter, UInt<5>("h1f")) @[MII.scala 132:58]
node _SerialEn_T_9 = lt(BitCounter, UInt<6>("h2e")) @[MII.scala 132:78]
node _SerialEn_T_10 = and(_SerialEn_T_8, _SerialEn_T_9) @[MII.scala 132:65]
node _SerialEn_T_11 = eq(BitCounter, UInt<1>("h0")) @[MII.scala 132:104]
node _SerialEn_T_12 = and(_SerialEn_T_11, io.NoPre) @[MII.scala 132:114]
node _SerialEn_T_13 = or(_SerialEn_T_10, _SerialEn_T_12) @[MII.scala 132:87]
node _SerialEn_T_14 = and(_SerialEn_T_7, _SerialEn_T_13) @[MII.scala 132:42]
node SerialEn = or(_SerialEn_T_5, _SerialEn_T_14) @[MII.scala 131:107]
node _mdoEn_T = lt(BitCounter, UInt<6>("h20")) @[MII.scala 134:66]
node _mdoEn_T_1 = and(InProgress, _mdoEn_T) @[MII.scala 134:54]
node _mdoEn_T_2 = or(SerialEn, _mdoEn_T_1) @[MII.scala 134:40]
reg mdoEn_r : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdoEn_r <= _mdoEn_T_2 @[Reg.scala 36:22]
reg mdoEn_r_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdoEn_r_1 <= mdoEn_r @[Reg.scala 36:22]
reg mdoEn : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdoEn <= mdoEn_r_1 @[Reg.scala 36:22]
node _mdo_2d_T = not(SerialEn) @[MII.scala 135:27]
node _mdo_2d_T_1 = lt(BitCounter, UInt<6>("h20")) @[MII.scala 135:49]
node _mdo_2d_T_2 = and(_mdo_2d_T, _mdo_2d_T_1) @[MII.scala 135:37]
reg mdo_2d : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdo_2d <= _mdo_2d_T_2 @[Reg.scala 36:22]
node _mdo_d_T = bits(ShiftReg, 7, 7) @[MII.scala 136:43]
node _mdo_d_T_1 = or(_mdo_d_T, mdo_2d) @[MII.scala 136:47]
reg mdo_d : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdo_d <= _mdo_d_T_1 @[Reg.scala 36:22]
reg mdo : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn_n : @[Reg.scala 36:18]
mdo <= mdo_d @[Reg.scala 36:22]
io.mdo <= mdo @[MII.scala 138:10]
io.mdoEn <= mdoEn @[MII.scala 139:12]
reg WCtrlData_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
WCtrlData_q_0 <= io.WCtrlData @[Reg.scala 36:22]
reg WCtrlData_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
WCtrlData_q_1 <= WCtrlData_q_0 @[Reg.scala 36:22]
reg WCtrlData_q_2 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
WCtrlData_q_2 <= WCtrlData_q_1 @[Reg.scala 36:22]
reg WCtrlDataStart : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 147:31]
reg WCtrlDataStart_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
WCtrlDataStart_q_0 <= WCtrlDataStart @[Reg.scala 36:22]
reg WCtrlDataStart_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
WCtrlDataStart_q_1 <= WCtrlDataStart_q_0 @[Reg.scala 36:22]
node _WriteDataOp_T = not(WCtrlDataStart_q_1) @[MII.scala 149:44]
node WriteDataOp = and(WCtrlDataStart_q_0, _WriteDataOp_T) @[MII.scala 149:42]
io.WCtrlDataStart <= WCtrlDataStart @[MII.scala 150:21]
wire StartOp : UInt<1> @[MII.scala 156:21]
when EndBusy : @[MII.scala 160:18]
WCtrlDataStart <= UInt<1>("h0") @[MII.scala 161:20]
else :
node _T_5 = not(WCtrlData_q_2) @[MII.scala 162:33]
node _T_6 = and(WCtrlData_q_1, _T_5) @[MII.scala 162:31]
when _T_6 : @[MII.scala 162:50]
WCtrlDataStart <= UInt<1>("h1") @[MII.scala 163:20]
node _WCtrlDataStart_q0_T = not(EndBusy) @[MII.scala 167:62]
reg WCtrlDataStart_q0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when _WCtrlDataStart_q0_T : @[Reg.scala 36:18]
WCtrlDataStart_q0 <= WCtrlDataStart @[Reg.scala 36:22]
node _UpdateMIIRX_DATAReg_T = not(WCtrlDataStart_q0) @[MII.scala 168:47]
node _UpdateMIIRX_DATAReg_T_1 = and(EndBusy, _UpdateMIIRX_DATAReg_T) @[MII.scala 168:45]
reg UpdateMIIRX_DATAReg : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 168:36]
UpdateMIIRX_DATAReg <= _UpdateMIIRX_DATAReg_T_1 @[MII.scala 168:36]
io.UpdateMIIRX_DATAReg <= UpdateMIIRX_DATAReg @[MII.scala 169:26]
reg RStat_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
RStat_q_0 <= io.RStat @[Reg.scala 36:22]
reg RStat_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
RStat_q_1 <= RStat_q_0 @[Reg.scala 36:22]
reg RStat_q_2 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
RStat_q_2 <= RStat_q_1 @[Reg.scala 36:22]
reg RStatStart : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 174:27]
reg RStatStart_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
RStatStart_q_0 <= RStatStart @[Reg.scala 36:22]
reg RStatStart_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
RStatStart_q_1 <= RStatStart_q_0 @[Reg.scala 36:22]
node _ReadStatusOp_T = not(RStatStart_q_1) @[MII.scala 176:44]
node ReadStatusOp = and(RStatStart_q_0, _ReadStatusOp_T) @[MII.scala 176:42]
io.RStatStart <= RStatStart @[MII.scala 177:17]
when EndBusy : @[MII.scala 179:18]
RStatStart <= UInt<1>("h0") @[MII.scala 180:16]
else :
node _T_7 = not(RStat_q_2) @[MII.scala 181:28]
node _T_8 = and(RStat_q_1, _T_7) @[MII.scala 181:26]
when _T_8 : @[MII.scala 181:40]
RStatStart <= UInt<1>("h1") @[MII.scala 182:16]
when mdcEn : @[MII.scala 188:14]
when StartOp : @[MII.scala 189:19]
InProgress <= UInt<1>("h1") @[MII.scala 190:18]
else :
when EndOp : @[MII.scala 191:24]
InProgress <= UInt<1>("h0") @[MII.scala 192:18]
reg ScanStat_q_0 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
ScanStat_q_0 <= io.ScanStat @[Reg.scala 36:22]
reg ScanStat_q_1 : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when UInt<1>("h1") : @[Reg.scala 36:18]
ScanStat_q_1 <= ScanStat_q_0 @[Reg.scala 36:22]
reg SyncStatmdcEn : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[Reg.scala 35:20]
when mdcEn : @[Reg.scala 36:18]
SyncStatmdcEn <= ScanStat_q_1 @[Reg.scala 36:22]
node _ScanStatusOp_T = not(InProgress) @[MII.scala 200:44]
node _ScanStatusOp_T_1 = and(SyncStatmdcEn, _ScanStatusOp_T) @[MII.scala 200:42]
node _ScanStatusOp_T_2 = not(InProgress_q_0) @[MII.scala 200:58]
node _ScanStatusOp_T_3 = and(_ScanStatusOp_T_1, _ScanStatusOp_T_2) @[MII.scala 200:56]
node _ScanStatusOp_T_4 = not(InProgress_q_1) @[MII.scala 200:77]
node ScanStatusOp = and(_ScanStatusOp_T_3, _ScanStatusOp_T_4) @[MII.scala 200:75]
reg Nvalid : UInt<1>, clock with :
reset => (reset, UInt<1>("h0")) @[MII.scala 203:23]
io.Nvalid <= Nvalid @[MII.scala 204:13]
node _T_9 = not(InProgress_q_1) @[MII.scala 206:9]
node _T_10 = and(_T_9, InProgress_q_2) @[MII.scala 206:26]
when _T_10 : @[MII.scala 206:46]
Nvalid <= UInt<1>("h0") @[MII.scala 207:12]
else :
node _T_11 = not(SyncStatmdcEn) @[MII.scala 208:32]
node _T_12 = and(ScanStat_q_1, _T_11) @[MII.scala 208:30]
when _T_12 : @[MII.scala 208:48]
Nvalid <= UInt<1>("h1") @[MII.scala 209:12]
when mdcEn : @[MII.scala 215:14]
when StartOp : @[MII.scala 216:19]
node _T_13 = not(InProgress) @[MII.scala 217:13]
when _T_13 : @[MII.scala 217:26]
node _WriteOp_T = mux(WriteDataOp, UInt<1>("h1"), UInt<1>("h0")) @[MII.scala 218:23]
WriteOp <= _WriteOp_T @[MII.scala 218:17]
else :
when EndOp : @[MII.scala 220:24]
WriteOp <= UInt<1>("h0") @[MII.scala 221:15]
when mdcEn : @[MII.scala 226:16]
when InProgress : @[MII.scala 227:24]
node _T_14 = eq(BitCounter, UInt<1>("h0")) @[MII.scala 228:35]
node _T_15 = and(io.NoPre, _T_14) @[MII.scala 228:22]
when _T_15 : @[MII.scala 228:45]
BitCounter <= UInt<6>("h21") @[MII.scala 229:20]
else :
node _BitCounter_T = add(BitCounter, UInt<1>("h1")) @[MII.scala 231:34]
node _BitCounter_T_1 = tail(_BitCounter_T, 1) @[MII.scala 231:34]
BitCounter <= _BitCounter_T_1 @[MII.scala 231:20]
else :
BitCounter <= UInt<1>("h0") @[MII.scala 234:18]
node _StartOp_T = or(WriteDataOp, ReadStatusOp) @[MII.scala 239:26]
node _StartOp_T_1 = or(_StartOp_T, ScanStatusOp) @[MII.scala 239:41]
StartOp <= _StartOp_T_1 @[MII.scala 239:11]
node _io_Busy_T = or(io.WCtrlData, WCtrlDataStart) @[MII.scala 240:27]
node _io_Busy_T_1 = or(_io_Busy_T, io.RStat) @[MII.scala 240:44]
node _io_Busy_T_2 = or(_io_Busy_T_1, RStatStart) @[MII.scala 240:55]
node _io_Busy_T_3 = or(_io_Busy_T_2, SyncStatmdcEn) @[MII.scala 240:68]
node _io_Busy_T_4 = or(_io_Busy_T_3, EndBusy) @[MII.scala 240:84]
node _io_Busy_T_5 = or(_io_Busy_T_4, InProgress) @[MII.scala 240:94]
node _io_Busy_T_6 = or(_io_Busy_T_5, InProgress_q_2) @[MII.scala 240:107]
node _io_Busy_T_7 = or(_io_Busy_T_6, Nvalid) @[MII.scala 240:125]
io.Busy <= _io_Busy_T_7 @[MII.scala 240:11]

View File

@@ -1,542 +0,0 @@
module MIIM(
input clock,
input reset,
input io_mdi,
output io_mdc,
output io_mdo,
output io_mdoEn,
input [7:0] io_Divider,
input io_NoPre,
input io_WCtrlData,
input [15:0] io_CtrlData,
input [4:0] io_Fiad,
input [4:0] io_Rgad,
input io_RStat,
input io_ScanStat,
output io_Busy,
output io_LinkFail,
output io_Nvalid,
output [15:0] io_Prsd,
output io_WCtrlDataStart,
output io_RStatStart,
output io_UpdateMIIRX_DATAReg
);
`ifdef RANDOMIZE_REG_INIT
reg [31:0] _RAND_0;
reg [31:0] _RAND_1;
reg [31:0] _RAND_2;
reg [31:0] _RAND_3;
reg [31:0] _RAND_4;
reg [31:0] _RAND_5;
reg [31:0] _RAND_6;
reg [31:0] _RAND_7;
reg [31:0] _RAND_8;
reg [31:0] _RAND_9;
reg [31:0] _RAND_10;
reg [31:0] _RAND_11;
reg [31:0] _RAND_12;
reg [31:0] _RAND_13;
reg [31:0] _RAND_14;
reg [31:0] _RAND_15;
reg [31:0] _RAND_16;
reg [31:0] _RAND_17;
reg [31:0] _RAND_18;
reg [31:0] _RAND_19;
reg [31:0] _RAND_20;
reg [31:0] _RAND_21;
reg [31:0] _RAND_22;
reg [31:0] _RAND_23;
reg [31:0] _RAND_24;
reg [31:0] _RAND_25;
reg [31:0] _RAND_26;
reg [31:0] _RAND_27;
reg [31:0] _RAND_28;
reg [31:0] _RAND_29;
reg [31:0] _RAND_30;
reg [31:0] _RAND_31;
reg [31:0] _RAND_32;
reg [31:0] _RAND_33;
reg [31:0] _RAND_34;
reg [31:0] _RAND_35;
reg [31:0] _RAND_36;
reg [31:0] _RAND_37;
reg [31:0] _RAND_38;
reg [31:0] _RAND_39;
reg [31:0] _RAND_40;
`endif // RANDOMIZE_REG_INIT
reg [7:0] Counter; // @[MII.scala 46:25]
reg mdc; // @[MII.scala 47:20]
wire _mdcEn_T = Counter == 8'h0; // @[MII.scala 48:27]
wire _mdcEn_T_1 = ~mdc; // @[MII.scala 48:38]
wire mdcEn = Counter == 8'h0 & ~mdc; // @[MII.scala 48:36]
wire mdcEn_n = _mdcEn_T & mdc; // @[MII.scala 49:36]
reg [7:0] ShiftReg; // @[MII.scala 51:25]
reg [15:0] Prsd; // @[MII.scala 52:25]
reg LinkFail; // @[MII.scala 53:25]
reg [6:0] BitCounter; // @[MII.scala 56:27]
wire EndOp = BitCounter == 7'h3f; // @[MII.scala 57:26]
reg InProgress; // @[MII.scala 60:27]
reg InProgress_q_0; // @[Reg.scala 35:20]
reg InProgress_q_1; // @[Reg.scala 35:20]
reg InProgress_q_2; // @[Reg.scala 35:20]
wire _EndBusy_T = ~InProgress_q_1; // @[MII.scala 62:32]
wire _EndBusy_T_1 = ~InProgress_q_1 & InProgress_q_2; // @[MII.scala 62:49]
reg EndBusy_r; // @[Reg.scala 35:20]
reg EndBusy; // @[Reg.scala 35:20]
reg WriteOp; // @[MII.scala 64:27]
wire [7:0] TempDivider = io_Divider < 8'h2 ? 8'h2 : io_Divider; // @[MII.scala 82:26]
wire [6:0] CounterPreset = TempDivider[7:1] - 7'h1; // @[MII.scala 83:44]
wire [7:0] _Counter_T_1 = Counter - 8'h1; // @[MII.scala 89:24]
wire _LatchByte0_T = ~WriteOp; // @[MII.scala 97:47]
wire _LatchByte0_T_1 = InProgress & ~WriteOp; // @[MII.scala 97:45]
wire _LatchByte0_T_3 = InProgress & ~WriteOp & EndOp; // @[MII.scala 97:56]
reg LatchByte0_r; // @[Reg.scala 35:20]
reg LatchByte0; // @[Reg.scala 35:20]
wire _LatchByte1_T_3 = _LatchByte0_T_1 & BitCounter == 7'h37; // @[MII.scala 98:56]
reg LatchByte1_r; // @[Reg.scala 35:20]
reg LatchByte1; // @[Reg.scala 35:20]
wire _ByteSelect_0_T = BitCounter == 7'h0; // @[MII.scala 100:58]
wire _ByteSelect_0_T_1 = io_NoPre & BitCounter == 7'h0; // @[MII.scala 100:44]
wire ByteSelect_0 = InProgress & (io_NoPre & BitCounter == 7'h0 | ~io_NoPre & BitCounter == 7'h20); // @[MII.scala 100:31]
wire ByteSelect_1 = InProgress & BitCounter == 7'h28; // @[MII.scala 101:31]
wire _ByteSelect_2_T = InProgress & WriteOp; // @[MII.scala 102:31]
wire ByteSelect_2 = InProgress & WriteOp & BitCounter == 7'h30; // @[MII.scala 102:41]
wire ByteSelect_3 = _ByteSelect_2_T & BitCounter == 7'h38; // @[MII.scala 103:41]
wire [7:0] _ShiftReg_T_2 = {2'h1,_LatchByte0_T,WriteOp,io_Fiad[4:1]}; // @[Cat.scala 33:92]
wire [7:0] _ShiftReg_T_5 = {io_Fiad[0],io_Rgad,2'h2}; // @[Cat.scala 33:92]
wire [7:0] _ShiftReg_T_8 = ByteSelect_0 ? _ShiftReg_T_2 : 8'h0; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_9 = ByteSelect_1 ? _ShiftReg_T_5 : 8'h0; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_10 = ByteSelect_2 ? io_CtrlData[15:8] : 8'h0; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_11 = ByteSelect_3 ? io_CtrlData[7:0] : 8'h0; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_12 = _ShiftReg_T_8 | _ShiftReg_T_9; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_13 = _ShiftReg_T_12 | _ShiftReg_T_10; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_14 = _ShiftReg_T_13 | _ShiftReg_T_11; // @[Mux.scala 27:73]
wire [7:0] _ShiftReg_T_16 = {ShiftReg[6:0],io_mdi}; // @[Cat.scala 33:92]
wire [15:0] _Prsd_T_2 = {Prsd[15:8],ShiftReg[6:0],io_mdi}; // @[Cat.scala 33:92]
wire _GEN_11 = io_Rgad == 5'h1 ? ~ShiftReg[1] : LinkFail; // @[MII.scala 117:30 118:20 53:25]
wire [15:0] _Prsd_T_5 = {ShiftReg[6:0],io_mdi,Prsd[7:0]}; // @[Cat.scala 33:92]
wire [15:0] _GEN_12 = LatchByte1 ? _Prsd_T_5 : Prsd; // @[MII.scala 120:30 121:14 52:25]
wire _SerialEn_T_1 = BitCounter > 7'h1f; // @[MII.scala 131:57]
wire _SerialEn_T_3 = _ByteSelect_0_T & io_NoPre; // @[MII.scala 131:91]
wire _SerialEn_T_14 = _LatchByte0_T & InProgress & (_SerialEn_T_1 & BitCounter < 7'h2e | _SerialEn_T_3); // @[MII.scala 132:42]
wire SerialEn = WriteOp & InProgress & (BitCounter > 7'h1f | _ByteSelect_0_T & io_NoPre) | _SerialEn_T_14; // @[MII.scala 131:107]
wire _mdoEn_T = BitCounter < 7'h20; // @[MII.scala 134:66]
wire _mdoEn_T_2 = SerialEn | InProgress & BitCounter < 7'h20; // @[MII.scala 134:40]
reg mdoEn_r; // @[Reg.scala 35:20]
reg mdoEn_r_1; // @[Reg.scala 35:20]
reg mdoEn; // @[Reg.scala 35:20]
wire _mdo_2d_T_2 = ~SerialEn & _mdoEn_T; // @[MII.scala 135:37]
reg mdo_2d; // @[Reg.scala 35:20]
wire _mdo_d_T_1 = ShiftReg[7] | mdo_2d; // @[MII.scala 136:47]
reg mdo_d; // @[Reg.scala 35:20]
reg mdo; // @[Reg.scala 35:20]
reg WCtrlData_q_0; // @[Reg.scala 35:20]
reg WCtrlData_q_1; // @[Reg.scala 35:20]
reg WCtrlData_q_2; // @[Reg.scala 35:20]
reg WCtrlDataStart; // @[MII.scala 147:31]
reg WCtrlDataStart_q_0; // @[Reg.scala 35:20]
reg WCtrlDataStart_q_1; // @[Reg.scala 35:20]
wire WriteDataOp = WCtrlDataStart_q_0 & ~WCtrlDataStart_q_1; // @[MII.scala 149:42]
wire _GEN_32 = WCtrlData_q_1 & ~WCtrlData_q_2 | WCtrlDataStart; // @[MII.scala 162:50 163:20 147:31]
wire _WCtrlDataStart_q0_T = ~EndBusy; // @[MII.scala 167:62]
reg WCtrlDataStart_q0; // @[Reg.scala 35:20]
reg UpdateMIIRX_DATAReg; // @[MII.scala 168:36]
reg RStat_q_0; // @[Reg.scala 35:20]
reg RStat_q_1; // @[Reg.scala 35:20]
reg RStat_q_2; // @[Reg.scala 35:20]
reg RStatStart; // @[MII.scala 174:27]
reg RStatStart_q_0; // @[Reg.scala 35:20]
reg RStatStart_q_1; // @[Reg.scala 35:20]
wire ReadStatusOp = RStatStart_q_0 & ~RStatStart_q_1; // @[MII.scala 176:42]
wire _GEN_40 = RStat_q_1 & ~RStat_q_2 | RStatStart; // @[MII.scala 181:40 182:16 174:27]
wire _GEN_42 = EndOp ? 1'h0 : InProgress; // @[MII.scala 191:24 192:18 60:27]
reg SyncStatmdcEn; // @[Reg.scala 35:20]
wire _ScanStatusOp_T = ~InProgress; // @[MII.scala 200:44]
wire ScanStatusOp = SyncStatmdcEn & ~InProgress & ~InProgress_q_0 & _EndBusy_T; // @[MII.scala 200:75]
wire StartOp = WriteDataOp | ReadStatusOp | ScanStatusOp; // @[MII.scala 239:41]
wire _GEN_43 = StartOp | _GEN_42; // @[MII.scala 189:19 190:18]
reg ScanStat_q_0; // @[Reg.scala 35:20]
reg ScanStat_q_1; // @[Reg.scala 35:20]
reg Nvalid; // @[MII.scala 203:23]
wire _GEN_48 = ScanStat_q_1 & ~SyncStatmdcEn | Nvalid; // @[MII.scala 208:48 209:12 203:23]
wire [6:0] _BitCounter_T_1 = BitCounter + 7'h1; // @[MII.scala 231:34]
assign io_mdc = mdc; // @[MII.scala 69:10]
assign io_mdo = mdo; // @[MII.scala 138:10]
assign io_mdoEn = mdoEn; // @[MII.scala 139:12]
assign io_Busy = io_WCtrlData | WCtrlDataStart | io_RStat | RStatStart | SyncStatmdcEn | EndBusy | InProgress |
InProgress_q_2 | Nvalid; // @[MII.scala 240:125]
assign io_LinkFail = LinkFail; // @[MII.scala 70:15]
assign io_Nvalid = Nvalid; // @[MII.scala 204:13]
assign io_Prsd = Prsd; // @[MII.scala 71:11]
assign io_WCtrlDataStart = WCtrlDataStart; // @[MII.scala 150:21]
assign io_RStatStart = RStatStart; // @[MII.scala 177:17]
assign io_UpdateMIIRX_DATAReg = UpdateMIIRX_DATAReg; // @[MII.scala 169:26]
always @(posedge clock) begin
if (reset) begin // @[MII.scala 46:25]
Counter <= 8'h1; // @[MII.scala 46:25]
end else if (_mdcEn_T) begin // @[MII.scala 85:27]
Counter <= {{1'd0}, CounterPreset}; // @[MII.scala 87:13]
end else begin
Counter <= _Counter_T_1; // @[MII.scala 89:13]
end
if (reset) begin // @[MII.scala 47:20]
mdc <= 1'h0; // @[MII.scala 47:20]
end else if (_mdcEn_T) begin // @[MII.scala 85:27]
mdc <= _mdcEn_T_1; // @[MII.scala 86:9]
end
if (reset) begin // @[MII.scala 51:25]
ShiftReg <= 8'h0; // @[MII.scala 51:25]
end else if (mdcEn_n) begin // @[MII.scala 105:16]
if (ByteSelect_0 | ByteSelect_1 | ByteSelect_2 | ByteSelect_3) begin // @[MII.scala 106:34]
ShiftReg <= _ShiftReg_T_14; // @[MII.scala 107:16]
end else begin
ShiftReg <= _ShiftReg_T_16; // @[MII.scala 114:16]
end
end
if (reset) begin // @[MII.scala 52:25]
Prsd <= 16'h0; // @[MII.scala 52:25]
end else if (mdcEn_n) begin // @[MII.scala 105:16]
if (!(ByteSelect_0 | ByteSelect_1 | ByteSelect_2 | ByteSelect_3)) begin // @[MII.scala 106:34]
if (LatchByte0) begin // @[MII.scala 115:23]
Prsd <= _Prsd_T_2; // @[MII.scala 116:14]
end else begin
Prsd <= _GEN_12;
end
end
end
if (reset) begin // @[MII.scala 53:25]
LinkFail <= 1'h0; // @[MII.scala 53:25]
end else if (mdcEn_n) begin // @[MII.scala 105:16]
if (!(ByteSelect_0 | ByteSelect_1 | ByteSelect_2 | ByteSelect_3)) begin // @[MII.scala 106:34]
if (LatchByte0) begin // @[MII.scala 115:23]
LinkFail <= _GEN_11;
end
end
end
if (reset) begin // @[MII.scala 56:27]
BitCounter <= 7'h0; // @[MII.scala 56:27]
end else if (mdcEn) begin // @[MII.scala 226:16]
if (InProgress) begin // @[MII.scala 227:24]
if (_ByteSelect_0_T_1) begin // @[MII.scala 228:45]
BitCounter <= 7'h21; // @[MII.scala 229:20]
end else begin
BitCounter <= _BitCounter_T_1; // @[MII.scala 231:20]
end
end else begin
BitCounter <= 7'h0; // @[MII.scala 234:18]
end
end
if (reset) begin // @[MII.scala 60:27]
InProgress <= 1'h0; // @[MII.scala 60:27]
end else if (mdcEn) begin // @[MII.scala 188:14]
InProgress <= _GEN_43;
end
if (reset) begin // @[Reg.scala 35:20]
InProgress_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
InProgress_q_0 <= InProgress; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
InProgress_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
InProgress_q_1 <= InProgress_q_0; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
InProgress_q_2 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
InProgress_q_2 <= InProgress_q_1; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
EndBusy_r <= 1'h0; // @[Reg.scala 35:20]
end else begin
EndBusy_r <= _EndBusy_T_1;
end
if (reset) begin // @[Reg.scala 35:20]
EndBusy <= 1'h0; // @[Reg.scala 35:20]
end else begin
EndBusy <= EndBusy_r;
end
if (reset) begin // @[MII.scala 64:27]
WriteOp <= 1'h0; // @[MII.scala 64:27]
end else if (mdcEn) begin // @[MII.scala 215:14]
if (StartOp) begin // @[MII.scala 216:19]
if (_ScanStatusOp_T) begin // @[MII.scala 217:26]
WriteOp <= WriteDataOp; // @[MII.scala 218:17]
end
end else if (EndOp) begin // @[MII.scala 220:24]
WriteOp <= 1'h0; // @[MII.scala 221:15]
end
end
if (reset) begin // @[Reg.scala 35:20]
LatchByte0_r <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
LatchByte0_r <= _LatchByte0_T_3; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
LatchByte0 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
LatchByte0 <= LatchByte0_r; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
LatchByte1_r <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
LatchByte1_r <= _LatchByte1_T_3; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
LatchByte1 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
LatchByte1 <= LatchByte1_r; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdoEn_r <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdoEn_r <= _mdoEn_T_2; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdoEn_r_1 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdoEn_r_1 <= mdoEn_r; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdoEn <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdoEn <= mdoEn_r_1; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdo_2d <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdo_2d <= _mdo_2d_T_2; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdo_d <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdo_d <= _mdo_d_T_1; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
mdo <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn_n) begin // @[Reg.scala 36:18]
mdo <= mdo_d; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlData_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else begin
WCtrlData_q_0 <= io_WCtrlData;
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlData_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else begin
WCtrlData_q_1 <= WCtrlData_q_0;
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlData_q_2 <= 1'h0; // @[Reg.scala 35:20]
end else begin
WCtrlData_q_2 <= WCtrlData_q_1;
end
if (reset) begin // @[MII.scala 147:31]
WCtrlDataStart <= 1'h0; // @[MII.scala 147:31]
end else if (EndBusy) begin // @[MII.scala 160:18]
WCtrlDataStart <= 1'h0; // @[MII.scala 161:20]
end else begin
WCtrlDataStart <= _GEN_32;
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlDataStart_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
WCtrlDataStart_q_0 <= WCtrlDataStart; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlDataStart_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
WCtrlDataStart_q_1 <= WCtrlDataStart_q_0; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
WCtrlDataStart_q0 <= 1'h0; // @[Reg.scala 35:20]
end else if (_WCtrlDataStart_q0_T) begin // @[Reg.scala 36:18]
WCtrlDataStart_q0 <= WCtrlDataStart; // @[Reg.scala 36:22]
end
if (reset) begin // @[MII.scala 168:36]
UpdateMIIRX_DATAReg <= 1'h0; // @[MII.scala 168:36]
end else begin
UpdateMIIRX_DATAReg <= EndBusy & ~WCtrlDataStart_q0; // @[MII.scala 168:36]
end
if (reset) begin // @[Reg.scala 35:20]
RStat_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else begin
RStat_q_0 <= io_RStat;
end
if (reset) begin // @[Reg.scala 35:20]
RStat_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else begin
RStat_q_1 <= RStat_q_0;
end
if (reset) begin // @[Reg.scala 35:20]
RStat_q_2 <= 1'h0; // @[Reg.scala 35:20]
end else begin
RStat_q_2 <= RStat_q_1;
end
if (reset) begin // @[MII.scala 174:27]
RStatStart <= 1'h0; // @[MII.scala 174:27]
end else if (EndBusy) begin // @[MII.scala 179:18]
RStatStart <= 1'h0; // @[MII.scala 180:16]
end else begin
RStatStart <= _GEN_40;
end
if (reset) begin // @[Reg.scala 35:20]
RStatStart_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
RStatStart_q_0 <= RStatStart; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
RStatStart_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
RStatStart_q_1 <= RStatStart_q_0; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
SyncStatmdcEn <= 1'h0; // @[Reg.scala 35:20]
end else if (mdcEn) begin // @[Reg.scala 36:18]
SyncStatmdcEn <= ScanStat_q_1; // @[Reg.scala 36:22]
end
if (reset) begin // @[Reg.scala 35:20]
ScanStat_q_0 <= 1'h0; // @[Reg.scala 35:20]
end else begin
ScanStat_q_0 <= io_ScanStat;
end
if (reset) begin // @[Reg.scala 35:20]
ScanStat_q_1 <= 1'h0; // @[Reg.scala 35:20]
end else begin
ScanStat_q_1 <= ScanStat_q_0;
end
if (reset) begin // @[MII.scala 203:23]
Nvalid <= 1'h0; // @[MII.scala 203:23]
end else if (_EndBusy_T_1) begin // @[MII.scala 206:46]
Nvalid <= 1'h0; // @[MII.scala 207:12]
end else begin
Nvalid <= _GEN_48;
end
end
// Register and memory initialization
`ifdef RANDOMIZE_GARBAGE_ASSIGN
`define RANDOMIZE
`endif
`ifdef RANDOMIZE_INVALID_ASSIGN
`define RANDOMIZE
`endif
`ifdef RANDOMIZE_REG_INIT
`define RANDOMIZE
`endif
`ifdef RANDOMIZE_MEM_INIT
`define RANDOMIZE
`endif
`ifndef RANDOM
`define RANDOM $random
`endif
`ifdef RANDOMIZE_MEM_INIT
integer initvar;
`endif
`ifndef SYNTHESIS
`ifdef FIRRTL_BEFORE_INITIAL
`FIRRTL_BEFORE_INITIAL
`endif
initial begin
`ifdef RANDOMIZE
`ifdef INIT_RANDOM
`INIT_RANDOM
`endif
`ifndef VERILATOR
`ifdef RANDOMIZE_DELAY
#`RANDOMIZE_DELAY begin end
`else
#0.002 begin end
`endif
`endif
`ifdef RANDOMIZE_REG_INIT
_RAND_0 = {1{`RANDOM}};
Counter = _RAND_0[7:0];
_RAND_1 = {1{`RANDOM}};
mdc = _RAND_1[0:0];
_RAND_2 = {1{`RANDOM}};
ShiftReg = _RAND_2[7:0];
_RAND_3 = {1{`RANDOM}};
Prsd = _RAND_3[15:0];
_RAND_4 = {1{`RANDOM}};
LinkFail = _RAND_4[0:0];
_RAND_5 = {1{`RANDOM}};
BitCounter = _RAND_5[6:0];
_RAND_6 = {1{`RANDOM}};
InProgress = _RAND_6[0:0];
_RAND_7 = {1{`RANDOM}};
InProgress_q_0 = _RAND_7[0:0];
_RAND_8 = {1{`RANDOM}};
InProgress_q_1 = _RAND_8[0:0];
_RAND_9 = {1{`RANDOM}};
InProgress_q_2 = _RAND_9[0:0];
_RAND_10 = {1{`RANDOM}};
EndBusy_r = _RAND_10[0:0];
_RAND_11 = {1{`RANDOM}};
EndBusy = _RAND_11[0:0];
_RAND_12 = {1{`RANDOM}};
WriteOp = _RAND_12[0:0];
_RAND_13 = {1{`RANDOM}};
LatchByte0_r = _RAND_13[0:0];
_RAND_14 = {1{`RANDOM}};
LatchByte0 = _RAND_14[0:0];
_RAND_15 = {1{`RANDOM}};
LatchByte1_r = _RAND_15[0:0];
_RAND_16 = {1{`RANDOM}};
LatchByte1 = _RAND_16[0:0];
_RAND_17 = {1{`RANDOM}};
mdoEn_r = _RAND_17[0:0];
_RAND_18 = {1{`RANDOM}};
mdoEn_r_1 = _RAND_18[0:0];
_RAND_19 = {1{`RANDOM}};
mdoEn = _RAND_19[0:0];
_RAND_20 = {1{`RANDOM}};
mdo_2d = _RAND_20[0:0];
_RAND_21 = {1{`RANDOM}};
mdo_d = _RAND_21[0:0];
_RAND_22 = {1{`RANDOM}};
mdo = _RAND_22[0:0];
_RAND_23 = {1{`RANDOM}};
WCtrlData_q_0 = _RAND_23[0:0];
_RAND_24 = {1{`RANDOM}};
WCtrlData_q_1 = _RAND_24[0:0];
_RAND_25 = {1{`RANDOM}};
WCtrlData_q_2 = _RAND_25[0:0];
_RAND_26 = {1{`RANDOM}};
WCtrlDataStart = _RAND_26[0:0];
_RAND_27 = {1{`RANDOM}};
WCtrlDataStart_q_0 = _RAND_27[0:0];
_RAND_28 = {1{`RANDOM}};
WCtrlDataStart_q_1 = _RAND_28[0:0];
_RAND_29 = {1{`RANDOM}};
WCtrlDataStart_q0 = _RAND_29[0:0];
_RAND_30 = {1{`RANDOM}};
UpdateMIIRX_DATAReg = _RAND_30[0:0];
_RAND_31 = {1{`RANDOM}};
RStat_q_0 = _RAND_31[0:0];
_RAND_32 = {1{`RANDOM}};
RStat_q_1 = _RAND_32[0:0];
_RAND_33 = {1{`RANDOM}};
RStat_q_2 = _RAND_33[0:0];
_RAND_34 = {1{`RANDOM}};
RStatStart = _RAND_34[0:0];
_RAND_35 = {1{`RANDOM}};
RStatStart_q_0 = _RAND_35[0:0];
_RAND_36 = {1{`RANDOM}};
RStatStart_q_1 = _RAND_36[0:0];
_RAND_37 = {1{`RANDOM}};
SyncStatmdcEn = _RAND_37[0:0];
_RAND_38 = {1{`RANDOM}};
ScanStat_q_0 = _RAND_38[0:0];
_RAND_39 = {1{`RANDOM}};
ScanStat_q_1 = _RAND_39[0:0];
_RAND_40 = {1{`RANDOM}};
Nvalid = _RAND_40[0:0];
`endif // RANDOMIZE_REG_INIT
`endif // RANDOMIZE
end // initial
`ifdef FIRRTL_AFTER_INITIAL
`FIRRTL_AFTER_INITIAL
`endif
`endif // SYNTHESIS
endmodule

File diff suppressed because it is too large Load Diff

View File

@@ -85,16 +85,7 @@ class MacImp(outer: Mac) extends LazyModuleImp(outer){
//( 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))
@@ -111,6 +102,27 @@ val WCtrlDataStart = Wire(Bool())
val RStatStart = Wire(Bool())
val UpdateMIIRX_DATAReg = Wire(Bool())
dontTouch( m_wb_adr_tmp )
dontTouch( r_ClkDiv )
dontTouch( r_MiiNoPre )
dontTouch( r_CtrlData )
dontTouch( r_FIAD )
dontTouch( r_RGAD )
dontTouch( r_WCtrlData )
dontTouch( r_RStat )
dontTouch( r_ScanStat )
dontTouch( NValid_stat )
dontTouch( Busy_stat )
dontTouch( LinkFail )
dontTouch( Prsd )
dontTouch( WCtrlDataStart )
dontTouch( RStatStart )
dontTouch( UpdateMIIRX_DATAReg )
val TxStartFrm = Wire(Bool())
val TxEndFrm = Wire(Bool())
val TxUsedData = Wire(Bool())
@@ -119,14 +131,23 @@ val TxRetry = Wire(Bool())
val TxAbort = Wire(Bool())
val TxUnderRun = Wire(Bool())
val TxDone = Wire(Bool())
val RstTxPauseRq = RegInit(Bool())
val TPauseRq = Wire(Bool())
dontTouch(TxStartFrm)
dontTouch(TxEndFrm )
dontTouch(TxUsedData)
dontTouch(TxData )
dontTouch(TxRetry )
dontTouch(TxAbort )
dontTouch(TxUnderRun)
dontTouch(TxDone )
dontTouch(TPauseRq )
val RstTxPauseRq = RegInit(false.B)
// Connecting Miim module
val miim = Module(new MIIM)
@@ -169,7 +190,6 @@ 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))
@@ -192,20 +212,16 @@ 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())
@@ -235,13 +251,81 @@ val LateCollLatched = Wire(Bool())
val DeferLatched = Wire(Bool())
val RstDeferLatched = Wire(Bool())
val CarrierSenseLost = Wire(Bool())
val RegCs = Wire(UInt(4.W))
dontTouch(RegDataOut )
dontTouch(r_RecSmall )
dontTouch(r_LoopBck )
dontTouch(r_TxEn )
dontTouch(r_RxEn )
dontTouch(MRxDV_Lb )
dontTouch(MRxErr_Lb )
dontTouch(MRxD_Lb )
dontTouch(Transmitting )
dontTouch(r_HugEn )
dontTouch(r_DlyCrcEn )
dontTouch(r_MaxFL )
dontTouch(r_MinFL )
dontTouch(ShortFrame )
dontTouch(DribbleNibble )
dontTouch(ReceivedPacketTooBig )
dontTouch(r_MAC )
dontTouch(LoadRxStatus )
dontTouch(r_HASH0 )
dontTouch(r_HASH1 )
dontTouch(r_TxBDNum )
dontTouch(r_IPGT )
dontTouch(r_IPGR1 )
dontTouch(r_IPGR2 )
dontTouch(r_CollValid )
dontTouch(r_TxPauseTV )
dontTouch(r_TxPauseRq )
dontTouch(r_MaxRet )
dontTouch(r_NoBckof )
dontTouch(r_ExDfrEn )
dontTouch(r_TxFlow )
dontTouch(r_IFG )
dontTouch(TxB_IRQ )
dontTouch(TxE_IRQ )
dontTouch(RxB_IRQ )
dontTouch(RxE_IRQ )
dontTouch(Busy_IRQ )
dontTouch(r_Pad )
dontTouch(r_CrcEn )
dontTouch(r_FullD )
dontTouch(r_Pro )
dontTouch(r_Bro )
dontTouch(r_NoPre )
dontTouch(r_RxFlow )
dontTouch(r_PassAll )
dontTouch(TxCtrlEndFrm )
dontTouch(StartTxDone )
dontTouch(SetPauseTimer )
dontTouch(TxUsedDataIn )
dontTouch(TxDoneIn )
dontTouch(TxAbortIn )
dontTouch(PerPacketPad )
dontTouch(PadOut )
dontTouch(PerPacketCrcEn )
dontTouch(CrcEnOut )
dontTouch(TxStartFrmOut )
dontTouch(TxEndFrmOut )
dontTouch(ReceivedPauseFrm )
dontTouch(ControlFrmAddressOK )
dontTouch(RxStatusWriteLatched_sync2 )
dontTouch(LateCollision )
dontTouch(DeferIndication )
dontTouch(LateCollLatched )
dontTouch(DeferLatched )
dontTouch(RstDeferLatched )
dontTouch(CarrierSenseLost )
dontTouch(RegCs )
val ethReg = Module(new MacReg)
@@ -267,7 +351,7 @@ 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
ethReg.io.dbg_dat := 0.U
RegDataOut := ethReg.io.DataOut
r_RecSmall := ethReg.io.r_RecSmall
@@ -319,7 +403,6 @@ 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))
@@ -338,6 +421,30 @@ val RetryLimit = Wire(Bool())
val StatePreamble = Wire(Bool())
val StateData = Wire(UInt(2.W))
dontTouch(RxData )
dontTouch(RxValid )
dontTouch(RxStartFrm )
dontTouch(RxEndFrm )
dontTouch(RxAbort )
dontTouch(WillTransmit )
dontTouch(ResetCollision )
dontTouch(TxDataOut )
dontTouch(WillSendControlFrame)
dontTouch(ReceiveEnd )
dontTouch(ReceivedPacketGood )
dontTouch(ReceivedLengthOK )
dontTouch(InvalidSymbol )
dontTouch(LatchedCrcError )
dontTouch(RxLateCollision )
dontTouch(RetryCntLatched )
dontTouch(RetryCnt )
dontTouch(StartTxAbort )
dontTouch(MaxCollisionOccured )
dontTouch(RetryLimit )
dontTouch(StatePreamble )
dontTouch(StateData )
// Connecting MACControl
val maccontrol = Module(new MacControl)
@@ -390,14 +497,13 @@ SetPauseTimer := maccontrol.io.SetPauseTimer
val TxCarrierSense = Wire(Bool())
val Collision = Wire(Bool())
val CarrierSense_Tx2 = Wire(Bool())
val RxEnSync = Wire(Bool())
dontTouch(TxCarrierSense )
dontTouch(Collision )
dontTouch(CarrierSense_Tx2)
dontTouch(RxEnSync )
// Muxed MII receive data valid
@@ -411,7 +517,7 @@ 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.clock := io.mtx_clk_pad_i.asClock
txethmac.reset := reset.asBool
txethmac.io.TxStartFrm := TxStartFrmOut
txethmac.io.TxEndFrm := TxEndFrmOut
@@ -468,8 +574,19 @@ val RxStateData = Wire(UInt(2.W))
val AddressMiss = Wire(Bool())
dontTouch(RxByteCnt )
dontTouch(RxByteCntEq0 )
dontTouch(RxByteCntGreat2 )
dontTouch(RxByteCntMaxFrame)
dontTouch(RxCrcError )
dontTouch(RxStateIdle )
dontTouch(RxStatePreamble )
dontTouch(RxStateSFD )
dontTouch(RxStateData )
dontTouch(AddressMiss )
val rxethmac = Module(new MacRx)
rxethmac.clock := io.mrx_clk_pad_i
rxethmac.clock := io.mrx_clk_pad_i.asClock
rxethmac.reset := reset.asBool
rxethmac.io.MRxDV := MRxDV_Lb
rxethmac.io.MRxD := MRxD_Lb
@@ -560,7 +677,7 @@ val rxethmac = Module(new MacRx)
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 RxAbort_latch = RegInit(false.B); RxAbort_latch_wire := RxAbort_latch
val RxAbortRst = ShiftRegister( RxAbort_wb, 2, false.B, true.B )
// Synchronizing RxAbort to the WISHBONE clock