Use async queue to connect serdesser + other components

This commit is contained in:
abejgonzalez
2021-03-19 20:49:49 -07:00
3 changed files with 46 additions and 30 deletions

View File

@@ -152,24 +152,27 @@ class WithSimAXIMemOverSerialTL extends OverrideHarnessBinder({
ports.map({ port =>
// DOC include start: HarnessClockInstantiatorEx
val memOverSerialTLClockBundle = p(HarnessClockInstantiatorKey).requestClockBundle("mem_over_serial_tl_clock", memFreq)
val harnessMultiClockAXIRAM = SerialAdapter.connectHarnessMultiClockAXIRAM(
system.serdesser.get,
port,
memOverSerialTLClockBundle,
th.harnessReset)
withClockAndReset(th.harnessClock, th.harnessReset) {
val memOverSerialTLClockBundle = p(HarnessClockInstantiatorKey).requestClockBundle("mem_over_serial_tl_clock", memFreq)
val serial_bits = SerialAdapter.asyncQueue(port, th.harnessClock, th.harnessReset)
val harnessMultiClockAXIRAM = SerialAdapter.connectHarnessMultiClockAXIRAM(
system.serdesser.get,
serial_bits,
memOverSerialTLClockBundle,
th.harnessReset)
// DOC include end: HarnessClockInstantiatorEx
val success = SerialAdapter.connectSimSerial(harnessMultiClockAXIRAM.module.io.tsi_ser, port.clock, th.harnessReset.asBool)
when (success) { th.success := true.B }
val success = SerialAdapter.connectSimSerial(harnessMultiClockAXIRAM.module.io.tsi_ser, th.harnessClock, th.harnessReset.asBool)
when (success) { th.success := true.B }
// connect SimDRAM from the AXI port coming from the harness multi clock axi ram
(harnessMultiClockAXIRAM.mem_axi4 zip harnessMultiClockAXIRAM.memNode.edges.in).map { case (axi_port, edge) =>
val memSize = sVal.memParams.size
val lineSize = p(CacheBlockBytes)
val mem = Module(new SimDRAM(memSize, lineSize, BigInt(memFreq.toInt), edge.bundle)).suggestName("simdram")
mem.io.axi <> axi_port.bits
mem.io.clock := axi_port.clock
mem.io.reset := axi_port.reset
// connect SimDRAM from the AXI port coming from the harness multi clock axi ram
(harnessMultiClockAXIRAM.mem_axi4 zip harnessMultiClockAXIRAM.memNode.edges.in).map { case (axi_port, edge) =>
val memSize = sVal.memParams.size
val lineSize = p(CacheBlockBytes)
val mem = Module(new SimDRAM(memSize, lineSize, BigInt(memFreq.toInt), edge.bundle)).suggestName("simdram")
mem.io.axi <> axi_port.bits
mem.io.clock := axi_port.clock
mem.io.reset := axi_port.reset
}
}
})
})
@@ -279,8 +282,11 @@ class WithSerialAdapterTiedOff extends OverrideHarnessBinder({
(system: CanHavePeripheryTLSerial, th: HasHarnessSignalReferences, ports: Seq[ClockedIO[SerialIO]]) => {
implicit val p = chipyard.iobinders.GetSystemParameters(system)
ports.map({ port =>
val ram = SerialAdapter.connectHarnessRAM(system.serdesser.get, port, th.harnessReset)
SerialAdapter.tieoff(ram.module.io.tsi_ser)
val bits = SerialAdapter.asyncQueue(port, th.harnessClock, th.harnessReset)
withClockAndReset(th.harnessClock, th.harnessReset) {
val ram = SerialAdapter.connectHarnessRAM(system.serdesser.get, bits, th.harnessReset)
SerialAdapter.tieoff(ram.module.io.tsi_ser)
}
})
}
})
@@ -289,9 +295,12 @@ class WithSimSerial extends OverrideHarnessBinder({
(system: CanHavePeripheryTLSerial, th: HasHarnessSignalReferences, ports: Seq[ClockedIO[SerialIO]]) => {
implicit val p = chipyard.iobinders.GetSystemParameters(system)
ports.map({ port =>
val ram = SerialAdapter.connectHarnessRAM(system.serdesser.get, port, th.harnessReset)
val success = SerialAdapter.connectSimSerial(ram.module.io.tsi_ser, port.clock, th.harnessReset.asBool)
when (success) { th.success := true.B }
val bits = SerialAdapter.asyncQueue(port, th.harnessClock, th.harnessReset)
withClockAndReset(th.harnessClock, th.harnessReset) {
val ram = SerialAdapter.connectHarnessRAM(system.serdesser.get, bits, th.harnessReset)
val success = SerialAdapter.connectSimSerial(ram.module.io.tsi_ser, th.harnessClock, th.harnessReset.asBool)
when (success) { th.success := true.B }
}
})
}
})