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eb001/src/main/scala/backBoard/shin/SpiInterface.scala

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Scala
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package BACK
import chisel3._
import chisel3.util._
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class QSPIInterfaceIO extends Bundle{
val sck = Input(Bool())
val mosi = Input(UInt(4.W))
val miso = Output(UInt(4.W))
val isDirIn = Output(Bool())
val csn = Input(Bool())
}
class SSPIInterfaceIO extends Bundle{
val sck = Input(Bool())
val mosi = Input(Bool())
val miso = Output(Bool())
val csn = Input(Bool())
}
class RegAccessInterfaceIO extends Bundle{
val addrSel = Output(UInt(16.W))
val dataw = Output( UInt(8.W) )
val datar = Input( UInt(8.W) )
val isEnW = Output(Bool())
val isEnR = Output(Bool())
}
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abstract class SpiInterfaceBase extends Module{
val io = IO(new RegAccessInterfaceIO)
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val sck = Wire(Bool())
val csn = Wire(Bool())
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//数据信号相对SCK的稳定应该由外部主机保证因此认为SCK采样时刻数据都是稳定正确的
val shiftSCK = ShiftRegisters(sck, 3, false.B, true.B)
val shiftCSn = ShiftRegisters(csn, 3, true.B, true.B)
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val isSckPosedge = ~shiftSCK(2) & shiftSCK(1)
val isSckPosedgeNext = ShiftRegisters(isSckPosedge, 2, false.B, true.B)
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val isSckNegedge = shiftSCK(2) & ~shiftSCK(1) //确定下降沿放数据到数据线上
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val exRego = Reg(UInt(8.W))
val exRegi = Reg(UInt(8.W))
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val addrSel = Reg(UInt(16.W))
val spiCmd = Reg(UInt(8.W))
val isSpiWrite = spiCmd === 0.U
val isSpiRead = spiCmd === 1.U
val bitSel = Reg(UInt(3.W))
val byteSel = Reg(UInt(12.W))
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io.isEnR :=
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(isSckPosedgeNext(0) & ~shiftCSn(1) & bitSel === 0.U & exRegi === 1.U & byteSel === 3.U ) |
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(isSckPosedgeNext(0) & ~shiftCSn(1) & bitSel === 0.U & isSpiRead & byteSel >= 4.U)
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io.isEnW := isSckPosedgeNext(0) & ~shiftCSn(1) & bitSel === 0.U & isSpiWrite & byteSel >= 4.U
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io.dataw := exRegi
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io.addrSel :=
Mux( isSpiRead, addrSel + 1.U, addrSel )//覆盖三种情况
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val readData = RegEnable(io.datar, io.isEnR)
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when( shiftCSn(2) & ~shiftCSn(1) ){
byteSel := 0.U
} .elsewhen( isSckPosedge & ~shiftCSn(1) ){
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when( bitSel.andR ){
byteSel := byteSel + 1.U
}
}
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when( shiftCSn(2) & ~shiftCSn(1) ){ //CS下跳
addrSel := 0.U
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} .elsewhen(isSckPosedgeNext(0) & ~shiftCSn(1) & bitSel === 0.U & byteSel === 1.U){ //CS为低且SCK上跳的第0byte
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addrSel := exRegi
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} .elsewhen(isSckPosedgeNext(0) & ~shiftCSn(1) & bitSel === 0.U & byteSel === 2.U) {//CS为低且SCK上跳的第0byte
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addrSel := Cat(exRegi, addrSel(7,0))
} .otherwise{ // byteSel > 1.U
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when( isSckPosedgeNext(1) & byteSel > 3.U & bitSel === 0.U ){
addrSel := addrSel + 1.U
}
}
when( shiftCSn(2) & ~shiftCSn(1) ){ //CS下跳
spiCmd := "hFF".U
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} .elsewhen( isSckPosedgeNext(0) & ~shiftCSn(1) & byteSel === 3.U & bitSel === 0.U ){ //CS为低且SCK上跳的第0byte
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spiCmd := exRegi
}
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}
class SSpiInterface extends SpiInterfaceBase{
val spi = IO(new SSPIInterfaceIO)
sck := spi.sck
csn := spi.csn
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spi.miso := exRego.extract(7)
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when( shiftCSn(2) & ~shiftCSn(1) ){
bitSel := 0.U
} .elsewhen( isSckPosedge & ~shiftCSn(1) ){
bitSel := bitSel + 1.U
}
val shiftMOSI = ShiftRegisters(spi.mosi, 3)
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//输入看SCK上升沿
when( isSckPosedge & ~shiftCSn(1) ){
when( bitSel === 0.U ){
exRegi := Cat( 0.U, shiftMOSI(1) )
}.otherwise{
exRegi := Cat( exRegi(6 ,0), shiftMOSI(1) )
}
}
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//输出在SCK下降沿准备数据
when( shiftCSn(2) & ~shiftCSn(1) ){ //CS下跳
exRego := 0.U //第一个byte 地址0
} .elsewhen( isSckNegedge & ~shiftCSn(1) ){
when( bitSel === 0.U ){
when((byteSel === 1.U || byteSel === 2.U) ){
exRego := 0.U //地址1cmd
} .elsewhen( isSpiRead ){
exRego := io.datar
}
}.otherwise{
exRego := exRego << 1
}
}
}
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class QSpiInterface extends SpiInterfaceBase{
val qspi = IO(new QSPIInterfaceIO)
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sck := qspi.sck
csn := qspi.csn
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qspi.miso := exRego(7, 4)
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qspi.isDirIn := isSpiWrite
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when( shiftCSn(2) & ~shiftCSn(1) ){
bitSel := 0.U
} .elsewhen( isSckPosedge & ~shiftCSn(1) ){
bitSel := ~bitSel
}
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val shiftMOSI = ShiftRegisters(qspi.mosi, 3)
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//输入看SCK上升沿
when( isSckPosedge & ~shiftCSn(1) ){
when( bitSel === 0.U ){
exRegi := Cat( 0.U, shiftMOSI(1) )
}.otherwise{
exRegi := Cat( exRegi(3 ,0), shiftMOSI(1) )
}
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}
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//输出在SCK下降沿准备数据
when( shiftCSn(2) & ~shiftCSn(1) ){ //CS下跳
exRego := 0.U //第一个byte 地址0
} .elsewhen( isSckNegedge & ~shiftCSn(1) ){
when( bitSel === 0.U ){
when((byteSel === 1.U || byteSel === 2.U) ){
exRego := 0.U //地址1cmd
} .elsewhen( isSpiRead ){
exRego := readData
}
}.otherwise{
exRego := exRego << 4
}
}
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}