The following command was run: ``` pre-commit run --all-files ``` This ensures all the files in the repository are formatted to pass our checks. Change-Id: Ia2fe3529a50ad925d1076a612d60a4280adc40de Reviewed-on: https://gem5-review.googlesource.com/c/public/gem5/+/62572 Tested-by: kokoro <noreply+kokoro@google.com> Reviewed-by: Andreas Sandberg <andreas.sandberg@arm.com> Maintainer: Jason Lowe-Power <power.jg@gmail.com> Reviewed-by: Jason Lowe-Power <power.jg@gmail.com>
280 lines
9.0 KiB
Python
280 lines
9.0 KiB
Python
# Copyright (c) 2016-2017, 2020, 2022 Arm Limited
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# All rights reserved.
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#
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# The license below extends only to copyright in the software and shall
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# not be construed as granting a license to any other intellectual
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# property including but not limited to intellectual property relating
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# to a hardware implementation of the functionality of the software
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# licensed hereunder. You may use the software subject to the license
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# terms below provided that you ensure that this notice is replicated
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# unmodified and in its entirety in all distributions of the software,
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# modified or unmodified, in source code or in binary form.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are
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# met: redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer;
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# redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in the
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# documentation and/or other materials provided with the distribution;
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# neither the name of the copyright holders nor the names of its
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# contributors may be used to endorse or promote products derived from
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# this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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"""This script is the full system example script from the ARM
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Research Starter Kit on System Modeling. More information can be found
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at: http://www.arm.com/ResearchEnablement/SystemModeling
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"""
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import os
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import m5
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from m5.util import addToPath
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from m5.objects import *
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from m5.options import *
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import argparse
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m5.util.addToPath("../..")
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from common import SysPaths
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from common import ObjectList
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from common import MemConfig
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from common.cores.arm import O3_ARM_v7a, HPI
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import devices
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default_kernel = "vmlinux.arm64"
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default_disk = "linaro-minimal-aarch64.img"
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default_root_device = "/dev/vda1"
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# Pre-defined CPU configurations. Each tuple must be ordered as : (cpu_class,
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# l1_icache_class, l1_dcache_class, l2_Cache_class). Any of
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# the cache class may be 'None' if the particular cache is not present.
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cpu_types = {
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"atomic": (AtomicSimpleCPU, None, None, None),
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"minor": (MinorCPU, devices.L1I, devices.L1D, devices.L2),
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"hpi": (HPI.HPI, HPI.HPI_ICache, HPI.HPI_DCache, HPI.HPI_L2),
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"o3": (
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O3_ARM_v7a.O3_ARM_v7a_3,
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O3_ARM_v7a.O3_ARM_v7a_ICache,
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O3_ARM_v7a.O3_ARM_v7a_DCache,
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O3_ARM_v7a.O3_ARM_v7aL2,
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),
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}
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def create_cow_image(name):
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"""Helper function to create a Copy-on-Write disk image"""
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image = CowDiskImage()
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image.child.image_file = SysPaths.disk(name)
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return image
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def create(args):
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"""Create and configure the system object."""
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if args.script and not os.path.isfile(args.script):
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print("Error: Bootscript %s does not exist" % args.script)
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sys.exit(1)
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cpu_class = cpu_types[args.cpu][0]
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mem_mode = cpu_class.memory_mode()
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# Only simulate caches when using a timing CPU (e.g., the HPI model)
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want_caches = True if mem_mode == "timing" else False
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system = devices.SimpleSystem(
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want_caches,
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args.mem_size,
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mem_mode=mem_mode,
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workload=ArmFsLinux(object_file=SysPaths.binary(args.kernel)),
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readfile=args.script,
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)
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MemConfig.config_mem(args, system)
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# Add the PCI devices we need for this system. The base system
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# doesn't have any PCI devices by default since they are assumed
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# to be added by the configuration scripts needing them.
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system.pci_devices = [
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# Create a VirtIO block device for the system's boot
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# disk. Attach the disk image using gem5's Copy-on-Write
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# functionality to avoid writing changes to the stored copy of
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# the disk image.
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PciVirtIO(vio=VirtIOBlock(image=create_cow_image(args.disk_image)))
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]
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# Attach the PCI devices to the system. The helper method in the
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# system assigns a unique PCI bus ID to each of the devices and
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# connects them to the IO bus.
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for dev in system.pci_devices:
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system.attach_pci(dev)
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# Wire up the system's memory system
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system.connect()
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# Add CPU clusters to the system
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system.cpu_cluster = [
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devices.CpuCluster(
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system, args.num_cores, args.cpu_freq, "1.0V", *cpu_types[args.cpu]
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)
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]
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# Create a cache hierarchy for the cluster. We are assuming that
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# clusters have core-private L1 caches and an L2 that's shared
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# within the cluster.
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system.addCaches(want_caches, last_cache_level=2)
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# Setup gem5's minimal Linux boot loader.
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system.realview.setupBootLoader(system, SysPaths.binary)
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if args.dtb:
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system.workload.dtb_filename = args.dtb
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else:
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# No DTB specified: autogenerate DTB
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system.workload.dtb_filename = os.path.join(
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m5.options.outdir, "system.dtb"
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)
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system.generateDtb(system.workload.dtb_filename)
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if args.initrd:
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system.workload.initrd_filename = args.initrd
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# Linux boot command flags
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kernel_cmd = [
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# Tell Linux to use the simulated serial port as a console
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"console=ttyAMA0",
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# Hard-code timi
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"lpj=19988480",
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# Disable address space randomisation to get a consistent
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# memory layout.
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"norandmaps",
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# Tell Linux where to find the root disk image.
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"root=%s" % args.root_device,
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# Mount the root disk read-write by default.
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"rw",
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# Tell Linux about the amount of physical memory present.
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"mem=%s" % args.mem_size,
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]
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system.workload.command_line = " ".join(kernel_cmd)
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return system
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def run(args):
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cptdir = m5.options.outdir
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if args.checkpoint:
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print("Checkpoint directory: %s" % cptdir)
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while True:
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event = m5.simulate()
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exit_msg = event.getCause()
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if exit_msg == "checkpoint":
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print("Dropping checkpoint at tick %d" % m5.curTick())
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cpt_dir = os.path.join(m5.options.outdir, "cpt.%d" % m5.curTick())
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m5.checkpoint(os.path.join(cpt_dir))
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print("Checkpoint done.")
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else:
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print(exit_msg, " @ ", m5.curTick())
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break
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sys.exit(event.getCode())
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def main():
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parser = argparse.ArgumentParser(epilog=__doc__)
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parser.add_argument(
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"--dtb", type=str, default=None, help="DTB file to load"
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)
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parser.add_argument(
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"--kernel", type=str, default=default_kernel, help="Linux kernel"
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)
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parser.add_argument(
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"--initrd",
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type=str,
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default=None,
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help="initrd/initramfs file to load",
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)
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parser.add_argument(
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"--disk-image",
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type=str,
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default=default_disk,
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help="Disk to instantiate",
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)
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parser.add_argument(
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"--root-device",
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type=str,
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default=default_root_device,
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help="OS device name for root partition (default: {})".format(
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default_root_device
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),
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)
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parser.add_argument(
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"--script", type=str, default="", help="Linux bootscript"
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)
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parser.add_argument(
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"--cpu",
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type=str,
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choices=list(cpu_types.keys()),
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default="atomic",
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help="CPU model to use",
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)
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parser.add_argument("--cpu-freq", type=str, default="4GHz")
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parser.add_argument(
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"--num-cores", type=int, default=1, help="Number of CPU cores"
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)
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parser.add_argument(
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"--mem-type",
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default="DDR3_1600_8x8",
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choices=ObjectList.mem_list.get_names(),
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help="type of memory to use",
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)
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parser.add_argument(
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"--mem-channels", type=int, default=1, help="number of memory channels"
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)
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parser.add_argument(
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"--mem-ranks",
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type=int,
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default=None,
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help="number of memory ranks per channel",
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)
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parser.add_argument(
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"--mem-size",
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action="store",
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type=str,
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default="2GB",
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help="Specify the physical memory size",
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)
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parser.add_argument("--checkpoint", action="store_true")
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parser.add_argument("--restore", type=str, default=None)
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args = parser.parse_args()
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root = Root(full_system=True)
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root.system = create(args)
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if args.restore is not None:
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m5.instantiate(args.restore)
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else:
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m5.instantiate()
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run(args)
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if __name__ == "__m5_main__":
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main()
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