221 lines
8.9 KiB
Python
Executable File
221 lines
8.9 KiB
Python
Executable File
#!/usr/bin/env python3
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import sys
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import os
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import argparse
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import subprocess
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import struct
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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 simplify
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from misoclib.soc import cpuif
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from misoclib.mem.sdram.phy import initsequence
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from misoc_import import misoc_import
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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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MiSoC - a high performance and small footprint SoC based on Migen.
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This program builds and/or loads MiSoC 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-bitstream build FPGA bitstream. Implies build-bios on targets with
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integrated BIOS.
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build-headers build software header files with CPU/CSR/IRQ/SDRAM_PHY definitions.
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build-csr-csv save CSR map into CSV file.
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build-bios build BIOS. Implies build-header.
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load-bitstream load bitstream into volatile storage.
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flash-bitstream load bitstream into non-volatile storage.
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flash-bios load BIOS into non-volatile storage.
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all clean, build-bitstream, build-bios, flash-bitstream, flash-bios.
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Load/flash actions use the existing outputs, and do not trigger new builds.
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""")
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parser.add_argument("-t", "--target", default="mlabs_video", help="SoC type to build")
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parser.add_argument("-s", "--sub-target", default="", help="variant of the SoC 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=[], nargs=2, action="append", help="set platform-specific option")
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parser.add_argument("-X", "--external", default="", help="use external directory for targets, platforms and imports")
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parser.add_argument("--csr_csv", default="csr.csv", help="CSV file to save the CSR map into")
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parser.add_argument("-d", "--decorate", default=[], action="append", help="apply simplification decorator to top-level")
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parser.add_argument("-Ob", "--build-option", default=[], nargs=2, action="append", help="set build option")
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parser.add_argument("-f", "--flash-proxy-dir", default=None, help="set search directory for flash proxy bitstreams")
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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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if __name__ == "__main__":
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args = _get_args()
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external_target = ""
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external_platform = ""
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if args.external:
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external_target = os.path.join(args.external, "targets")
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external_platform = os.path.join(args.external, "platforms")
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sys.path.insert(0, os.path.abspath(args.external))
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# create top-level SoC object
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target_module = misoc_import("targets", external_target, 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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if hasattr(top_class, "default_platform"):
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platform_name = top_class.default_platform
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else:
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raise ValueError("Target has no default platform, specify a platform with -p your_platform")
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else:
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platform_name = args.platform
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platform_module = misoc_import("mibuild.platforms", external_platform, 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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if args.external:
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platform.soc_ext_path = os.path.abspath(args.external)
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build_name = args.target + "-" + 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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memory_regions = soc.get_memory_regions()
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csr_regions = soc.get_csr_regions()
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# decode actions
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action_list = ["clean", "build-bitstream", "build-headers", "build-csr-csv", "build-bios",
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"load-bitstream", "flash-bitstream", "flash-bios", "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: {}. Valid actions are:".format(action))
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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 high performance and small footprint SoC based on Migen
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====== Building for: ======
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Platform: {}
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Target: {}
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Subtarget: {}
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CPU type: {}
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===========================""".format(platform_name, args.target, top_class.__name__, soc.cpu_type))
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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-bitstream"] = True
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actions["build-bios"] = True
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if not actions["load-bitstream"]:
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actions["flash-bitstream"] = True
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if not soc.integrated_rom_size:
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actions["flash-bios"] = True
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if actions["build-bitstream"] and soc.integrated_rom_size:
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actions["build-bios"] = True
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if actions["build-bios"]:
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actions["build-headers"] = True
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if actions["clean"]:
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subprocess.call(["rm", "-rf", "build/*"])
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subprocess.call(["make", "-C", os.path.join("software", "libcompiler-rt"), "clean"])
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subprocess.call(["make", "-C", os.path.join("software", "libbase"), "clean"])
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subprocess.call(["make", "-C", os.path.join("software", "libnet"), "clean"])
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subprocess.call(["make", "-C", os.path.join("software", "bios"), "clean"])
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if actions["build-headers"]:
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boilerplate = """/*
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* Platform: {}
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* Target: {}
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* Subtarget: {}
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* CPU type: {}
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*/
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""".format(platform_name, args.target, top_class.__name__, soc.cpu_type)
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genhdir = os.path.join("software", "include", "generated")
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if soc.cpu_type != "none":
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cpu_mak = cpuif.get_cpu_mak(soc.cpu_type)
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write_to_file(os.path.join(genhdir, "cpu.mak"), cpu_mak)
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linker_output_format = cpuif.get_linker_output_format(soc.cpu_type)
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write_to_file(os.path.join(genhdir, "output_format.ld"), linker_output_format)
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linker_regions = cpuif.get_linker_regions(memory_regions)
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write_to_file(os.path.join(genhdir, "regions.ld"), boilerplate + linker_regions)
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for sdram_phy in ["sdrphy", "ddrphy"]:
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if hasattr(soc, sdram_phy):
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sdram_phy_header = initsequence.get_sdram_phy_header(getattr(soc, sdram_phy).settings)
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write_to_file(os.path.join(genhdir, "sdram_phy.h"), boilerplate + sdram_phy_header)
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mem_header = cpuif.get_mem_header(memory_regions, getattr(soc, "flash_boot_address", None))
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write_to_file(os.path.join(genhdir, "mem.h"), boilerplate + mem_header)
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csr_header = cpuif.get_csr_header(csr_regions, soc.get_constants())
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write_to_file(os.path.join(genhdir, "csr.h"), boilerplate + csr_header)
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if actions["build-csr-csv"]:
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csr_csv = cpuif.get_csr_csv(csr_regions)
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write_to_file(args.csr_csv, csr_csv)
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if actions["build-bios"]:
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ret = subprocess.call(["make", "-C", os.path.join("software", "bios")])
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if ret:
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raise OSError("BIOS build failed")
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bios_file = os.path.join("software", "bios", "bios.bin")
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if actions["build-bitstream"]:
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if soc.integrated_rom_size:
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with open(bios_file, "rb") as boot_file:
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boot_data = []
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while True:
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w = boot_file.read(4)
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if not w:
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break
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boot_data.append(struct.unpack(">I", w)[0])
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soc.init_rom(boot_data)
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for decorator in args.decorate:
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soc = getattr(simplify, decorator)(soc)
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build_kwargs = dict((k, autotype(v)) for k, v in args.build_option)
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vns = platform.build(soc, build_name=build_name, **build_kwargs)
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soc.do_exit(vns)
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if actions["load-bitstream"]:
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prog = platform.create_programmer()
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prog.load_bitstream(os.path.join("build", build_name + platform.bitstream_ext))
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if actions["flash-bitstream"]:
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prog = platform.create_programmer()
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prog.set_flash_proxy_dir(args.flash_proxy_dir)
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if prog.needs_bitreverse:
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flashbit = os.path.join("build", build_name + ".fpg")
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subprocess.call([os.path.join("tools", "byteswap"),
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os.path.join("build", build_name + ".bin"),
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flashbit])
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else:
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flashbit = os.path.join("build", build_name + ".bin")
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prog.flash(0, flashbit)
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if actions["flash-bios"]:
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prog = platform.create_programmer()
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prog.set_flash_proxy_dir(args.flash_proxy_dir)
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prog.flash(soc.cpu_reset_address, bios_file)
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