147 lines
3.5 KiB
Scala
147 lines
3.5 KiB
Scala
// See LICENSE for license details.
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package uncore.agents
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import Chisel._
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abstract class Decoding
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{
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def uncorrected: UInt
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def corrected: UInt
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def correctable: Bool
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def uncorrectable: Bool
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def error = correctable || uncorrectable
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}
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abstract class Code
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{
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def width(w0: Int): Int
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def encode(x: UInt): UInt
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def decode(x: UInt): Decoding
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}
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class IdentityCode extends Code
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{
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def width(w0: Int) = w0
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def encode(x: UInt) = x
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def decode(y: UInt) = new Decoding {
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def uncorrected = y
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def corrected = y
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def correctable = Bool(false)
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def uncorrectable = Bool(false)
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}
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}
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class ParityCode extends Code
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{
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def width(w0: Int) = w0+1
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def encode(x: UInt) = Cat(x.xorR, x)
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def decode(y: UInt) = new Decoding {
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def uncorrected = y(y.getWidth-2,0)
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def corrected = uncorrected
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def correctable = Bool(false)
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def uncorrectable = y.xorR
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}
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}
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class SECCode extends Code
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{
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def width(k: Int) = {
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val m = log2Floor(k) + 1
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k + m + (if((1 << m) < m+k+1) 1 else 0)
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}
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def encode(x: UInt) = {
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val k = x.getWidth
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require(k > 0)
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val n = width(k)
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val y = for (i <- 1 to n) yield {
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if (isPow2(i)) {
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val r = for (j <- 1 to n; if j != i && (j & i) != 0)
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yield x(mapping(j))
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r reduce (_^_)
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} else
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x(mapping(i))
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}
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Vec(y).toBits
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}
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def decode(y: UInt) = new Decoding {
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val n = y.getWidth
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require(n > 0 && !isPow2(n))
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val p2 = for (i <- 0 until log2Up(n)) yield 1 << i
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val syndrome = p2 map { i =>
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val r = for (j <- 1 to n; if (j & i) != 0)
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yield y(j-1)
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r reduce (_^_)
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}
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val s = Vec(syndrome).toBits
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private def swizzle(z: UInt) = Vec((1 to n).filter(i => !isPow2(i)).map(i => z(i-1))).toBits
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def uncorrected = swizzle(y)
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def corrected = swizzle(((y.toUInt << 1) ^ UIntToOH(s)) >> 1)
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def correctable = s.orR
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def uncorrectable = Bool(false)
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}
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private def mapping(i: Int) = i-1-log2Up(i)
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}
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class SECDEDCode extends Code
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{
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private val sec = new SECCode
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private val par = new ParityCode
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def width(k: Int) = sec.width(k)+1
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def encode(x: UInt) = par.encode(sec.encode(x))
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def decode(x: UInt) = new Decoding {
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val secdec = sec.decode(x(x.getWidth-2,0))
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val pardec = par.decode(x)
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def uncorrected = secdec.uncorrected
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def corrected = secdec.corrected
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def correctable = pardec.uncorrectable
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def uncorrectable = !pardec.uncorrectable && secdec.correctable
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}
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}
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object ErrGen
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{
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// generate a 1-bit error with approximate probability 2^-f
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def apply(width: Int, f: Int): UInt = {
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require(width > 0 && f >= 0 && log2Up(width) + f <= 16)
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UIntToOH(LFSR16()(log2Up(width)+f-1,0))(width-1,0)
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}
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def apply(x: UInt, f: Int): UInt = x ^ apply(x.getWidth, f)
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}
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class SECDEDTest extends Module
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{
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val code = new SECDEDCode
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val k = 4
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val n = code.width(k)
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val io = new Bundle {
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val original = Bits(OUTPUT, k)
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val encoded = Bits(OUTPUT, n)
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val injected = Bits(OUTPUT, n)
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val uncorrected = Bits(OUTPUT, k)
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val corrected = Bits(OUTPUT, k)
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val correctable = Bool(OUTPUT)
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val uncorrectable = Bool(OUTPUT)
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}
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val c = Counter(Bool(true), 1 << k)
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val numErrors = Counter(c._2, 3)._1
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val e = code.encode(c._1)
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val i = e ^ Mux(numErrors < UInt(1), UInt(0), ErrGen(n, 1)) ^ Mux(numErrors < UInt(2), UInt(0), ErrGen(n, 1))
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val d = code.decode(i)
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io.original := c._1
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io.encoded := e
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io.injected := i
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io.uncorrected := d.uncorrected
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io.corrected := d.corrected
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io.correctable := d.correctable
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io.uncorrectable := d.uncorrectable
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}
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