gem5/tests/configs/tgen-simple-mem.py
Sascha Bischoff e940bac278 mem: Auto-generate CommMonitor trace file names
Splits the CommMonitor trace_file parameter into three parameters. Previously,
the trace was only enabled if the trace_file parameter was set, and would be
written to this file. This patch adds in a trace_enable and trace_compress
parameter to the CommMonitor.

No trace is generated if trace_enable is set to False. If it is set to True, the
trace is written to a file based on the name of the SimObject in the simulation
hierarchy. For example, system.cluster.il1_commmonitor.trc. This filename can be
overridden by additionally specifying a file name to the trace_file parameter
(more on this later).

The trace_compress parameter will append .gz to any filename if set to True.
This enables compression of the generated traces. If the file name already ends
in .gz, then no changes are made.

The trace_file parameter will override the name set by the trace_enable
parameter. In the case that the specified name does not end in .gz but
trace_compress is set to true, .gz is appended to the supplied file name.
2014-05-09 18:58:46 -04:00

76 lines
3.4 KiB
Python

# Copyright (c) 2012 ARM Limited
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# Authors: Andreas Hansson
import m5
from m5.objects import *
# both traffic generator and communication monitor are only available
# if we have protobuf support, so potentially skip this test
require_sim_object("TrafficGen")
require_sim_object("CommMonitor")
# even if this is only a traffic generator, call it cpu to make sure
# the scripts are happy
cpu = TrafficGen(config_file = "tests/quick/se/70.tgen/tgen-simple-mem.cfg")
# system simulated
system = System(cpu = cpu, physmem = SimpleMemory(),
membus = NoncoherentBus(width = 16),
clk_domain = SrcClockDomain(clock = '1GHz',
voltage_domain =
VoltageDomain()))
# add a communication monitor, and also trace all the packets
system.monitor = CommMonitor(trace_file = "monitor.ptrc.gz",
trace_enable = True)
# connect the traffic generator to the bus via a communication monitor
system.cpu.port = system.monitor.slave
system.monitor.master = system.membus.slave
# connect the system port even if it is not used in this example
system.system_port = system.membus.slave
# connect memory to the membus
system.physmem.port = system.membus.master
# -----------------------
# run simulation
# -----------------------
root = Root(full_system = False, system = system)
root.system.mem_mode = 'timing'