forked from M-Labs/artiq
coredevice/analyzer: basic VCD writing
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e4615e7b37
commit
cdcb57effe
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@ -1,8 +1,13 @@
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from enum import Enum
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from operator import itemgetter
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from collections import namedtuple
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from itertools import count
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from enum import Enum
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import struct
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import importlib
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import logging
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from artiq.coredevice import ttl
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logger = logging.getLogger(__name__)
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@ -75,3 +80,100 @@ def decode_dump(data):
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position += 32
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return messages
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def vcd_codes():
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codechars = [chr(i) for i in range(33, 127)]
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for n in count():
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q, r = divmod(n, len(codechars))
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code = codechars[r]
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while q > 0:
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q, r = divmod(q, len(codechars))
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code = codechars[r] + code
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yield code
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class VCDChannel:
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def __init__(self, out, code):
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self.out = out
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self.code = code
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def set_value(self, value):
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if len(value) > 1:
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self.out.write("b" + value + " " + self.code + "\n")
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else:
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self.out.write(value + self.code + "\n")
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class VCDManager:
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def __init__(self, filename):
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self.out = open(filename, "w")
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self.codes = vcd_codes()
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self.current_time = None
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def get_channel(self, name, width):
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code = next(self.codes)
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self.out.write("$var wire {width} {code} {name} $end\n"
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.format(name=name, code=code, width=width))
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return VCDChannel(self.out, code)
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def set_time(self, time):
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if time != self.current_time:
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self.out.write("#{}\n".format(time))
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self.current_time = time
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def close(self):
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self.out.close()
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class TTLHandler:
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def __init__(self, vcd_manager, name):
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self.channel_value = vcd_manager.get_channel(name, 1)
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self.last_value = "X"
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self.oe = True
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def process_message(self, message):
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if isinstance(message, OutputMessage):
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if message.address == 0:
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self.last_value = str(message.data)
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if self.oe:
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self.channel_value.set_value(self.last_value)
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elif messages.address == 1:
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self.oe = bool(message.data)
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if self.oe:
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self.channel_value.set_value(self.last_value)
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else:
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self.channel_value.set_value("X")
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def create_channel_handlers(vcd_manager, devices):
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channel_handlers = dict()
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for name, desc in sorted(devices.items(), key=itemgetter(0)):
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if isinstance(desc, dict) and desc["type"] == "local":
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module = importlib.import_module(desc["module"])
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device_class = getattr(module, desc["class"])
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if device_class in {ttl.TTLOut, ttl.TTLInOut}:
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channel = desc["arguments"]["channel"]
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channel_handlers[channel] = TTLHandler(vcd_manager, name)
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return channel_handlers
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def get_message_time(message):
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return getattr(message, "timestamp", message.rtio_counter)
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def messages_to_vcd(filename, devices, messages):
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messages = [m for m in messages if get_message_time(m)] # TODO: remove this hack
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messages = sorted(messages, key=get_message_time)
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vcd_manager = VCDManager(filename)
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try:
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channel_handlers = create_channel_handlers(vcd_manager, devices)
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vcd_manager.set_time(0)
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if messages:
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start_time = get_message_time(messages[0])
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for message in messages:
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if message.channel in channel_handlers:
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vcd_manager.set_time(
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get_message_time(message) - start_time)
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channel_handlers[message.channel].process_message(message)
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finally:
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vcd_manager.close()
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@ -5,7 +5,7 @@ import struct
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from artiq.master.databases import DeviceDB
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from artiq.master.worker_db import DeviceManager
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from artiq.coredevice.analyzer import decode_dump
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from artiq.coredevice.analyzer import decode_dump, messages_to_vcd
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def get_argparser():
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@ -46,7 +46,12 @@ def get_argparser():
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subparsers.add_parser("cfg-erase", help="erase core device config")
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subparsers.add_parser("analyzer-dump")
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p_analyzer = subparsers.add_parser("analyzer-dump",
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help="dump analyzer contents")
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p_analyzer.add_argument("-m", default=False, action="store_true",
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help="print raw messages")
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p_analyzer.add_argument("-f", type=str, default="",
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help="format and write contents to VCD file")
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return parser
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@ -79,9 +84,12 @@ def main():
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elif args.action == "cfg-erase":
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comm.flash_storage_erase()
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elif args.action == "analyzer-dump":
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dump = comm.get_analyzer_dump()
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for msg in decode_dump(dump):
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print(msg)
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messages = decode_dump(comm.get_analyzer_dump())
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if args.m:
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for message in messages:
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print(message)
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if args.f:
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messages_to_vcd(args.f, device_mgr.get_device_db(), messages)
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finally:
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device_mgr.close_devices()
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