add udpip target for hw tests (untested)
This commit is contained in:
parent
fa5ee3ba5c
commit
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@ -6,7 +6,6 @@ from liteeth.core.udp import LiteEthUDP
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class LiteEthIPCore(Module, AutoCSR):
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def __init__(self, phy, mac_address, ip_address):
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self.phy = phy
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self.submodules.mac = LiteEthMAC(phy, 8, interface="crossbar", with_hw_preamble_crc=True)
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self.submodules.arp = LiteEthARP(self.mac, mac_address, ip_address)
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self.submodules.ip = LiteEthIP(self.mac, mac_address, ip_address, self.arp.table)
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@ -25,7 +25,7 @@ class LiteEthMAC(Module, AutoCSR):
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def __init__(self, phy, dw, interface="crossbar", endianness="be",
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with_hw_preamble_crc=True):
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self.submodules.core = LiteEthMACCore(phy, dw, endianness, with_hw_preamble_crc)
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self.csrs = None
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self.csrs = []
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if interface == "crossbar":
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self.submodules.crossbar = LiteEthMACCrossbar()
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self.submodules.packetizer = LiteEthMACPacketizer()
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@ -0,0 +1,126 @@
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#!/usr/bin/env python3
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import sys, os, argparse, subprocess, struct, importlib
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from mibuild.tools import write_to_file
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from migen.util.misc import autotype
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from migen.fhdl import verilog, edif
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from migen.fhdl.structure import _Fragment
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from mibuild import tools
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from mibuild.xilinx_common import *
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from misoclib.gensoc import cpuif
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from liteeth.common import *
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def _import(default, name):
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return importlib.import_module(default + "." + name)
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def _get_args():
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parser = argparse.ArgumentParser(formatter_class=argparse.RawDescriptionHelpFormatter,
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description="""\
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LiteEth - based on Migen.
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This program builds and/or loads LiteEth components.
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One or several actions can be specified:
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clean delete previous build(s).
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build-rtl build verilog rtl.
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build-bitstream build-bitstream build FPGA bitstream.
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build-csr-csv save CSR map into CSV file.
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load-bitstream load bitstream into volatile storage.
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all clean, build-csr-csv, build-bitstream, load-bitstream.
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""")
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parser.add_argument("-t", "--target", default="udpip", help="Core type to build")
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parser.add_argument("-s", "--sub-target", default="", help="variant of the Core type to build")
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parser.add_argument("-p", "--platform", default=None, help="platform to build for")
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parser.add_argument("-Ot", "--target-option", default=[], nargs=2, action="append", help="set target-specific option")
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parser.add_argument("-Op", "--platform-option", default=[("programmer", "vivado")], nargs=2, action="append", help="set platform-specific option")
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parser.add_argument("--csr_csv", default="./test/csr.csv", help="CSV file to save the CSR map into")
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parser.add_argument("action", nargs="+", help="specify an action")
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return parser.parse_args()
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# Note: misoclib need to be installed as a python library
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if __name__ == "__main__":
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args = _get_args()
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# create top-level Core object
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target_module = _import("targets", args.target)
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if args.sub_target:
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top_class = getattr(target_module, args.sub_target)
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else:
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top_class = target_module.default_subtarget
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if args.platform is None:
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platform_name = top_class.default_platform
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else:
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platform_name = args.platform
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platform_module = _import("platforms", platform_name)
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platform_kwargs = dict((k, autotype(v)) for k, v in args.platform_option)
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platform = platform_module.Platform(**platform_kwargs)
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build_name = top_class.__name__.lower() + "-" + platform_name
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top_kwargs = dict((k, autotype(v)) for k, v in args.target_option)
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soc = top_class(platform, **top_kwargs)
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soc.finalize()
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# decode actions
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action_list = ["clean", "build-csr-csv", "build-bitstream", "load-bitstream", "all"]
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actions = {k: False for k in action_list}
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for action in args.action:
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if action in actions:
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actions[action] = True
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else:
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print("Unknown action: "+action+". Valid actions are:")
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for a in action_list:
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print(" "+a)
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sys.exit(1)
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print("""
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__ _ __ ______ __
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/ / (_) /____ / __/ /_/ /
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/ /__/ / __/ -_) _// __/ _ \\
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/____/_/\__/\__/___/\__/_//_/
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A small footprint and configurable
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Ethernet core
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====== Building options: ======
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System Clk: {} MHz
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===============================""".format(
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soc.clk_freq/1000000
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)
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)
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# dependencies
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if actions["all"]:
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actions["clean"] = True
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actions["build-csr-csv"] = True
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actions["build-bitstream"] = True
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actions["load-bitstream"] = True
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if actions["build-bitstream"]:
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actions["clean"] = True
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actions["build-csr-csv"] = True
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actions["build-bitstream"] = True
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actions["load-bitstream"] = True
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if actions["clean"]:
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subprocess.call(["rm", "-rf", "build/*"])
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if actions["build-csr-csv"]:
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csr_csv = cpuif.get_csr_csv(soc.cpu_csr_regions)
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write_to_file(args.csr_csv, csr_csv)
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if actions["build-bitstream"]:
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platform.build(soc, build_name=build_name)
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if actions["load-bitstream"]:
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prog = platform.create_programmer()
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prog.load_bitstream("build/" + build_name + platform.bitstream_ext)
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@ -0,0 +1,124 @@
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from mibuild.generic_platform import *
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from mibuild.crg import SimpleCRG
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from mibuild.xilinx_common import CRG_DS
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from mibuild.xilinx_ise import XilinxISEPlatform
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from mibuild.xilinx_vivado import XilinxVivadoPlatform
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from mibuild.programmer import *
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def _run_vivado(cmds):
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with subprocess.Popen("vivado -mode tcl", stdin=subprocess.PIPE, shell=True) as process:
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process.stdin.write(cmds.encode("ASCII"))
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process.communicate()
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class VivadoProgrammer(Programmer):
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needs_bitreverse = False
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def load_bitstream(self, bitstream_file):
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cmds = """open_hw
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connect_hw_server
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open_hw_target [lindex [get_hw_targets -of_objects [get_hw_servers localhost]] 0]
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set_property PROBES.FILE {{}} [lindex [get_hw_devices] 0]
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set_property PROGRAM.FILE {{{bitstream}}} [lindex [get_hw_devices] 0]
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program_hw_devices [lindex [get_hw_devices] 0]
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refresh_hw_device [lindex [get_hw_devices] 0]
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quit
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""".format(bitstream=bitstream_file)
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_run_vivado(cmds)
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def flash(self, address, data_file):
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raise NotImplementedError
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_io = [
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("user_led", 0, Pins("AB8"), IOStandard("LVCMOS15")),
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("user_led", 1, Pins("AA8"), IOStandard("LVCMOS15")),
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("user_led", 2, Pins("AC9"), IOStandard("LVCMOS15")),
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("user_led", 3, Pins("AB9"), IOStandard("LVCMOS15")),
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("user_led", 4, Pins("AE26"), IOStandard("LVCMOS25")),
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("user_led", 5, Pins("G19"), IOStandard("LVCMOS25")),
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("user_led", 6, Pins("E18"), IOStandard("LVCMOS25")),
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("user_led", 7, Pins("F16"), IOStandard("LVCMOS25")),
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("cpu_reset", 0, Pins("AB7"), IOStandard("LVCMOS15")),
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("clk200", 0,
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Subsignal("p", Pins("AD12"), IOStandard("LVDS")),
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Subsignal("n", Pins("AD11"), IOStandard("LVDS"))
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),
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("clk156", 0,
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Subsignal("p", Pins("K28"), IOStandard("LVDS_25")),
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Subsignal("n", Pins("K29"), IOStandard("LVDS_25"))
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),
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("serial", 0,
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Subsignal("cts", Pins("L27")),
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Subsignal("rts", Pins("K23")),
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Subsignal("tx", Pins("K24")),
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Subsignal("rx", Pins("M19")),
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IOStandard("LVCMOS25")
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),
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("eth_clocks", 0,
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Subsignal("tx", Pins("M28")),
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Subsignal("gtx", Pins("K30")),
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Subsignal("rx", Pins("U27")),
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IOStandard("LVCMOS25")
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),
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("eth", 0,
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Subsignal("rst_n", Pins("L20")),
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Subsignal("int_n", Pins("N30")),
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Subsignal("mdio", Pins("J21")),
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Subsignal("mdc", Pins("R23")),
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Subsignal("dv", Pins("R28")),
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Subsignal("rx_er", Pins("V26")),
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Subsignal("rx_data", Pins("U30 U25 T25 U28 R19 T27 T26 T28")),
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Subsignal("tx_en", Pins("M27")),
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Subsignal("tx_er", Pins("N29")),
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Subsignal("tx_data", Pins("N27 N25 M29 L28 J26 K26 L30 J28")),
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Subsignal("col", Pins("W19")),
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Subsignal("crs", Pins("R30")),
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IOStandard("LVCMOS25")
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),
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]
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def Platform(*args, toolchain="vivado", programmer="xc3sprog", **kwargs):
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if toolchain == "ise":
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xilinx_platform = XilinxISEPlatform
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elif toolchain == "vivado":
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xilinx_platform = XilinxVivadoPlatform
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else:
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raise ValueError
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class RealPlatform(xilinx_platform):
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bitgen_opt = "-g LCK_cycle:6 -g Binary:Yes -w -g ConfigRate:12 -g SPI_buswidth:4"
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def __init__(self, crg_factory=lambda p: CRG_DS(p, "clk200", "cpu_reset")):
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xilinx_platform.__init__(self, "xc7k325t-ffg900-2", _io, crg_factory)
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def create_programmer(self):
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if programmer == "xc3sprog":
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return XC3SProg("jtaghs1_fast", "bscan_spi_kc705.bit")
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elif programmer == "vivado":
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return VivadoProgrammer()
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else:
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raise ValueError
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def do_finalize(self, fragment):
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try:
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self.add_period_constraint(self.lookup_request("clk156").p, 6.4)
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except ConstraintError:
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pass
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try:
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self.add_period_constraint(self.lookup_request("clk200").p, 5.0)
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except ConstraintError:
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pass
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try:
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self.add_period_constraint(self.lookup_request("eth_clocks").rx, 8.0)
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except ConstraintError:
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pass
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return RealPlatform(*args, **kwargs)
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@ -0,0 +1,211 @@
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import os, atexit
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from migen.bank import csrgen
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from migen.bus import wishbone, csr
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from migen.bus import wishbone2csr
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from migen.genlib.cdc import *
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from migen.genlib.resetsync import AsyncResetSynchronizer
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from migen.bank.description import *
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from misoclib import identifier
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from litescope.common import *
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from litescope.bridge.uart2wb import LiteScopeUART2WB
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from litescope.frontend.la import LiteScopeLA
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from litescope.core.port import LiteScopeTerm
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from liteeth.common import *
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from liteeth.phy.gmii import LiteEthPHYGMII
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from liteeth.core import LiteEthUDPIPCore
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class _CRG(Module):
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def __init__(self, platform):
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self.clock_domains.cd_sys = ClockDomain()
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self.reset = Signal()
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clk200 = platform.request("clk200")
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clk200_se = Signal()
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self.specials += Instance("IBUFDS", i_I=clk200.p, i_IB=clk200.n, o_O=clk200_se)
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pll_locked = Signal()
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pll_fb = Signal()
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pll_sys = Signal()
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self.specials += [
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Instance("PLLE2_BASE",
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p_STARTUP_WAIT="FALSE", o_LOCKED=pll_locked,
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# VCO @ 1GHz
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p_REF_JITTER1=0.01, p_CLKIN1_PERIOD=5.0,
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p_CLKFBOUT_MULT=5, p_DIVCLK_DIVIDE=1,
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i_CLKIN1=clk200_se, i_CLKFBIN=pll_fb, o_CLKFBOUT=pll_fb,
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# 166MHz
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p_CLKOUT0_DIVIDE=6, p_CLKOUT0_PHASE=0.0, o_CLKOUT0=pll_sys,
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p_CLKOUT1_DIVIDE=2, p_CLKOUT1_PHASE=0.0, #o_CLKOUT1=,
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p_CLKOUT2_DIVIDE=2, p_CLKOUT2_PHASE=0.0, #o_CLKOUT2=,
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p_CLKOUT3_DIVIDE=2, p_CLKOUT3_PHASE=0.0, #o_CLKOUT3=,
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p_CLKOUT4_DIVIDE=2, p_CLKOUT4_PHASE=0.0, #o_CLKOUT4=
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),
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Instance("BUFG", i_I=pll_sys, o_O=self.cd_sys.clk),
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AsyncResetSynchronizer(self.cd_sys, ~pll_locked | platform.request("cpu_reset") | self.reset),
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]
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class GenSoC(Module):
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csr_base = 0x00000000
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csr_data_width = 32
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csr_map = {
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"bridge": 0,
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"identifier": 1,
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}
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interrupt_map = {}
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cpu_type = None
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def __init__(self, platform, clk_freq):
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self.clk_freq = clk_freq
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# UART <--> Wishbone bridge
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self.submodules.bridge = LiteScopeUART2WB(platform.request("serial"), clk_freq, baud=921600)
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# CSR bridge 0x00000000 (shadow @0x00000000)
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self.submodules.wishbone2csr = wishbone2csr.WB2CSR(bus_csr=csr.Interface(self.csr_data_width))
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self._wb_masters = [self.bridge.wishbone]
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self._wb_slaves = [(lambda a: a[23:25] == 0, self.wishbone2csr.wishbone)]
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self.cpu_csr_regions = [] # list of (name, origin, busword, csr_list/Memory)
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# CSR
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self.submodules.identifier = identifier.Identifier(0, int(clk_freq), 0)
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def add_cpu_memory_region(self, name, origin, length):
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self.cpu_memory_regions.append((name, origin, length))
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def add_cpu_csr_region(self, name, origin, busword, obj):
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self.cpu_csr_regions.append((name, origin, busword, obj))
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def do_finalize(self):
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# Wishbone
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self.submodules.wishbonecon = wishbone.InterconnectShared(self._wb_masters,
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self._wb_slaves, register=True)
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# CSR
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self.submodules.csrbankarray = csrgen.BankArray(self,
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lambda name, memory: self.csr_map[name if memory is None else name + "_" + memory.name_override],
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data_width=self.csr_data_width)
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self.submodules.csrcon = csr.Interconnect(self.wishbone2csr.csr, self.csrbankarray.get_buses())
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for name, csrs, mapaddr, rmap in self.csrbankarray.banks:
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self.add_cpu_csr_region(name, 0xe0000000+0x800*mapaddr, flen(rmap.bus.dat_w), csrs)
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for name, memory, mapaddr, mmap in self.csrbankarray.srams:
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self.add_cpu_csr_region(name, 0xe0000000+0x800*mapaddr, flen(rmap.bus.dat_w), memory)
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class UDPIPBISTGeneratorUnit(Module):
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def __init__(self):
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self.start = Signal()
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self.src_port = Signal(16)
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self.dst_port = Signal(16)
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self.ip_address = Signal(32)
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self.length = Signal(16)
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self.done = Signal()
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self.source = source = Source(eth_udp_user_description(8))
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###
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counter = Counter(bits_sign=16)
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self.submodules += counter
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self.fsm = fsm = FSM(reset_state="IDLE")
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self.submodules += fsm
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fsm.act("IDLE",
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self.done.eq(1),
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counter.reset.eq(1),
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If(self.start,
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NextState("SEND")
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)
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)
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self.comb += [
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source.sop.eq(counter.value == 0),
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source.eop.eq(counter.value == (self.length-1)),
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source.src_port.eq(self.src_port),
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source.dst_port.eq(self.dst_port),
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source.ip_address.eq(self.ip_address),
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source.data.eq(counter.value)
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]
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fsm.act("SEND",
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source.stb.eq(1),
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If(source.stb & source.ack,
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counter.ce.eq(1),
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If(source.eop,
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NextState("IDLE")
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)
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)
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)
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class UDPIPBISTGenerator(UDPIPBISTGeneratorUnit, AutoCSR):
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def __init__(self):
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self._start = CSR()
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self._src_port = CSRStorage(16)
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self._dst_port = CSRStorage(16)
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self._ip_address = CSRStorage(32)
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self._length = CSRStorage(16)
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self._done = CSRStatus()
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###
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UDPIPBISTGeneratorUnit.__init__(self)
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self.comb += [
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self.start.eq(self._start.r & self._start.re),
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self.src_port.eq(self._src_port.storage),
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self.dst_port.eq(self._dst_port.storage),
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self.ip_address.eq(self._ip_address.storage),
|
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self.length.eq(self._length.storage),
|
||||
self._done.status.eq(self.done)
|
||||
]
|
||||
|
||||
class UDPIPSoC(GenSoC, AutoCSR):
|
||||
default_platform = "kc705"
|
||||
csr_map = {
|
||||
"ethphy": 11,
|
||||
"udpipcore": 12,
|
||||
"bist_generator": 13
|
||||
}
|
||||
csr_map.update(GenSoC.csr_map)
|
||||
def __init__(self, platform):
|
||||
clk_freq = 166*1000000
|
||||
GenSoC.__init__(self, platform, clk_freq)
|
||||
self.submodules.crg = _CRG(platform)
|
||||
|
||||
# Ethernet PHY and UDP/IP
|
||||
self.submodules.ethphy = LiteEthPHYGMII(platform.request("eth_clocks"), platform.request("eth"))
|
||||
self.submodules.udpipcore = LiteEthUDPIPCore(self.ethphy, 0x12345678, 0x10e2d5000000)
|
||||
|
||||
# BIST
|
||||
self.submodules.bist_generator = UDPIPBISTGenerator()
|
||||
self.comb += [
|
||||
Record.connect(self.bist_generator.source, self.udpipcore.sink),
|
||||
self.udpipcore.source.ack.eq(1)
|
||||
]
|
||||
|
||||
class UDPIPSoCDevel(UDPIPSoC, AutoCSR):
|
||||
csr_map = {
|
||||
"la": 20
|
||||
}
|
||||
csr_map.update(UDPIPSoC.csr_map)
|
||||
def __init__(self, platform):
|
||||
UDPIPSoC.__init__(self, platform)
|
||||
|
||||
debug = (
|
||||
Signal(),
|
||||
Signal()
|
||||
)
|
||||
|
||||
self.submodules.la = LiteScopeLA(debug, 2048)
|
||||
self.la.trigger.add_port(LiteScopeTerm(self.la.dw))
|
||||
atexit.register(self.exit, platform)
|
||||
|
||||
def do_finalize(self):
|
||||
UDPIPSoC.do_finalize(self)
|
||||
|
||||
def exit(self, platform):
|
||||
if platform.vns is not None:
|
||||
self.la.export(platform.vns, "../test/la.csv")
|
||||
|
||||
default_subtarget = UDPIPSoC
|
|
@ -0,0 +1,9 @@
|
|||
from litescope.host.driver import LiteScopeUART2WBDriver
|
||||
|
||||
csr_csv_file = "./csr.csv"
|
||||
busword = 32
|
||||
debug_wb = False
|
||||
|
||||
com = 2
|
||||
baud = 921600
|
||||
wb = LiteScopeUART2WBDriver(com, baud, csr_csv_file, busword, debug_wb)
|
|
@ -0,0 +1,10 @@
|
|||
from config import *
|
||||
|
||||
wb.open()
|
||||
regs = wb.regs
|
||||
###
|
||||
print("sysid : 0x%04x" %regs.identifier_sysid.read())
|
||||
print("revision : 0x%04x" %regs.identifier_revision.read())
|
||||
print("frequency : %d MHz" %(regs.identifier_frequency.read()/1000000))
|
||||
###
|
||||
wb.close()
|
|
@ -0,0 +1,20 @@
|
|||
from config import *
|
||||
import time
|
||||
|
||||
wb.open()
|
||||
regs = wb.regs
|
||||
###
|
||||
regs.ethphy_crg_reset.write(1)
|
||||
regs.ethphy_crg_reset.write(0)
|
||||
time.sleep(5)
|
||||
regs.bist_generator_src_port.write(0x1234)
|
||||
regs.bist_generator_dst_port.write(0x5678)
|
||||
regs.bist_generator_ip_address.write(0x12345678)
|
||||
regs.bist_generator_length.write(64)
|
||||
|
||||
for i in range(16):
|
||||
regs.bist_generator_start.write(1)
|
||||
time.sleep(1)
|
||||
|
||||
###
|
||||
wb.close()
|
Loading…
Reference in New Issue