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The "sp_mk_generator.py" is responsible for processing the SP layout file, which contains information about the SPs to be deployed on top of the SPM, to generate the "sp_gen.mk" file which appends information specific to each SP that shall help with packing all SPs into a fip binary. Before this patch the "sp_mk_generator.py" was a monolithic script, which has now been broken down into functions for each identified configuration action. Signed-off-by: J-Alves <joao.alves@arm.com> Change-Id: I8ee7487f2e07d53e508d17d0fe4510e22957f5ca
220 lines
8.2 KiB
Python
220 lines
8.2 KiB
Python
#!/usr/bin/python3
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# Copyright (c) 2020-2022, Arm Limited. All rights reserved.
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#
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# SPDX-License-Identifier: BSD-3-Clause
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"""
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This script is invoked by Make system and generates secure partition makefile.
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It expects platform provided secure partition layout file which contains list
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of Secure Partition Images and Partition manifests(PM).
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Layout file can exist outside of TF-A tree and the paths of Image and PM files
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must be relative to it.
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This script parses the layout file and generates a make file which updates
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FDT_SOURCES, FIP_ARGS, CRT_ARGS and SPTOOL_ARGS which are used in later build
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steps.
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If the SP entry in the layout file has a "uuid" field the scripts gets the UUID
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from there, otherwise it parses the associated partition manifest and extracts
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the UUID from there.
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param1: Generated mk file "sp_gen.mk"
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param2: "SP_LAYOUT_FILE", json file containing platform provided information
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param3: plat out directory
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param4: CoT parameter
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Generated "sp_gen.mk" file contains triplet of following information for each
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Secure Partition entry
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FDT_SOURCES += sp1.dts
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SPTOOL_ARGS += -i sp1.bin:sp1.dtb -o sp1.pkg
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FIP_ARGS += --blob uuid=XXXXX-XXX...,file=sp1.pkg
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CRT_ARGS += --sp-pkg1 sp1.pkg
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A typical SP_LAYOUT_FILE file will look like
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{
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"SP1" : {
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"image": "sp1.bin",
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"pm": "test/sp1.dts"
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},
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"SP2" : {
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"image": "sp2.bin",
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"pm": "test/sp2.dts",
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"uuid": "1b1820fe-48f7-4175-8999-d51da00b7c9f"
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}
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...
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}
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"""
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import json
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import os
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import re
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import sys
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import uuid
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from spactions import SpSetupActions
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MAX_SP = 8
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UUID_LEN = 4
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# Some helper functions to access args propagated to the action functions in
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# SpSetupActions framework.
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def check_sp_mk_gen(args :dict):
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if "sp_gen_mk" not in args.keys():
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raise Exception(f"Path to file sp_gen.mk needs to be in 'args'.")
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def check_out_dir(args :dict):
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if "out_dir" not in args.keys() or not os.path.isdir(args["out_dir"]):
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raise Exception("Define output folder with \'out_dir\' key.")
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def check_sp_layout_dir(args :dict):
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if "sp_layout_dir" not in args.keys() or not os.path.isdir(args["sp_layout_dir"]):
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raise Exception("Define output folder with \'sp_layout_dir\' key.")
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def write_to_sp_mk_gen(content, args :dict):
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check_sp_mk_gen(args)
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with open(args["sp_gen_mk"], "a") as f:
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f.write(f"{content}\n")
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def get_sp_manifest_full_path(sp_node, args :dict):
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check_sp_layout_dir(args)
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return os.path.join(args["sp_layout_dir"], get_file_from_layout(sp_node["pm"]))
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def get_sp_img_full_path(sp_node, args :dict):
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check_sp_layout_dir(args)
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return os.path.join(args["sp_layout_dir"], get_file_from_layout(sp_node["image"]))
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def get_sp_pkg(sp, args :dict):
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check_out_dir(args)
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return os.path.join(args["out_dir"], f"{sp}.pkg")
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def is_line_in_sp_gen(line, args :dict):
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with open(args["sp_gen_mk"], "r") as f:
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sppkg_rule = [l for l in f if line in l]
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return len(sppkg_rule) is not 0
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def get_file_from_layout(node):
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''' Helper to fetch a file path from sp_layout.json. '''
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if type(node) is dict and "file" in node.keys():
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return node["file"]
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return node
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def get_offset_from_layout(node):
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''' Helper to fetch an offset from sp_layout.json. '''
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if type(node) is dict and "offset" in node.keys():
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return int(node["offset"], 0)
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return None
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def get_image_offset(node):
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''' Helper to fetch image offset from sp_layout.json '''
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return get_offset_from_layout(node["image"])
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def get_pm_offset(node):
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''' Helper to fetch pm offset from sp_layout.json '''
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return get_offset_from_layout(node["pm"])
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@SpSetupActions.sp_action(global_action=True)
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def check_max_sps(sp_layout, _, args :dict):
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''' Check validate the maximum number of SPs is respected. '''
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if len(sp_layout.keys()) > MAX_SP:
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raise Exception(f"Too many SPs in SP layout file. Max: {MAX_SP}")
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return args
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@SpSetupActions.sp_action
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def gen_fdt_sources(sp_layout, sp, args :dict):
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''' Generate FDT_SOURCES values for a given SP. '''
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manifest_path = get_sp_manifest_full_path(sp_layout[sp], args)
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write_to_sp_mk_gen(f"FDT_SOURCES += {manifest_path}", args)
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return args
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@SpSetupActions.sp_action
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def gen_sptool_args(sp_layout, sp, args):
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''' Generate sptool arguments to generate SP Pkg for a given SP. '''
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check_out_dir(args)
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check_sp_layout_dir(args)
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sp_pkg = get_sp_pkg(sp, args)
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sp_dtb_name = os.path.basename(sp_layout[sp]["pm"])[:-1] + "b"
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sp_dtb = os.path.join(args["out_dir"], f"fdts/{sp_dtb_name}")
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sp_bin = os.path.join(args["sp_layout_dir"], sp_layout[sp]["image"])
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write_to_sp_mk_gen(f"SPTOOL_ARGS += -i {sp_bin}:{sp_dtb} -o {sp_pkg}\n", args)
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return args
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@SpSetupActions.sp_action(global_action=True, exec_order=1)
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def check_dualroot(sp_layout, _, args :dict):
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''' Validate the amount of SPs from SiP and Platform owners. '''
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if not args.get("dualroot"):
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return args
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args["split"] = int(MAX_SP / 2)
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owners = [sp_layout[sp].get("owner") for sp in sp_layout]
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args["plat_max_count"] = owners.count("Plat")
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# If it is owned by the platform owner, it is assigned to the SiP.
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args["sip_max_count"] = len(sp_layout.keys()) - args["plat_max_count"]
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if args["sip_max_count"] > args["split"] or args["sip_max_count"] > args["split"]:
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print(f"WARN: SiP Secure Partitions should not be more than {args['split']}")
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# Counters for gen_crt_args.
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args["sip_count"] = 1
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args["plat_count"] = 1
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return args
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@SpSetupActions.sp_action
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def gen_crt_args(sp_layout, sp, args :dict):
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''' Append CRT_ARGS. '''
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# If "dualroot" is configured, 'sp_pkg_idx' depends on whether the SP is owned
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# by the "SiP" or the "Plat".
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if args.get("dualroot"):
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# If the owner is not specified as "Plat", default to "SiP".
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if sp_layout[sp].get("owner") == "Plat":
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if args["plat_count"] > args["plat_max_count"]:
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raise ValueError("plat_count can't surpass plat_max_count in args.")
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sp_pkg_idx = args["plat_count"] + args["split"]
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args["plat_count"] += 1
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else:
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if args["sip_count"] > args["sip_max_count"]:
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raise ValueError("sip_count can't surpass sip_max_count in args.")
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sp_pkg_idx = args["sip_count"]
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args["sip_count"] += 1
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else:
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sp_pkg_idx = [k for k in sp_layout.keys()].index(sp) + 1
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write_to_sp_mk_gen(f"CRT_ARGS += --sp-pkg{sp_pkg_idx} {get_sp_pkg(sp, args)}\n", args)
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return args
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@SpSetupActions.sp_action
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def gen_fiptool_args(sp_layout, sp, args :dict):
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''' Generate arguments for the FIP Tool. '''
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if "uuid" in sp_layout[sp]:
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# Extract the UUID from the JSON file if the SP entry has a 'uuid' field
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uuid_std = uuid.UUID(data[key]['uuid'])
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else:
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with open(get_sp_manifest_full_path(sp_layout[sp], args), "r") as pm_f:
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uuid_lines = [l for l in pm_f if 'uuid' in l]
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assert(len(uuid_lines) is 1)
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# The uuid field in SP manifest is the little endian representation
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# mapped to arguments as described in SMCCC section 5.3.
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# Convert each unsigned integer value to a big endian representation
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# required by fiptool.
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uuid_parsed = re.findall("0x([0-9a-f]+)", uuid_lines[0])
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y = list(map(bytearray.fromhex, uuid_parsed))
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z = [int.from_bytes(i, byteorder='little', signed=False) for i in y]
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uuid_std = uuid.UUID(f'{z[0]:08x}{z[1]:08x}{z[2]:08x}{z[3]:08x}')
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write_to_sp_mk_gen(f"FIP_ARGS += --blob uuid={str(uuid_std)},file={get_sp_pkg(sp, args)}\n", args)
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return args
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def init_sp_actions(sys):
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sp_layout_file = os.path.abspath(sys.argv[2])
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with open(sp_layout_file) as json_file:
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sp_layout = json.load(json_file)
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# Initialize arguments for the SP actions framework
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args = {}
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args["sp_gen_mk"] = os.path.abspath(sys.argv[1])
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args["sp_layout_dir"] = os.path.dirname(sp_layout_file)
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args["out_dir"] = os.path.abspath(sys.argv[3])
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args["dualroot"] = sys.argv[4] == "dualroot"
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#Clear content of file "sp_gen.mk".
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with open(args["sp_gen_mk"], "w"):
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None
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return args, sp_layout
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if __name__ == "__main__":
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args, sp_layout = init_sp_actions(sys)
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SpSetupActions.run_actions(sp_layout, args)
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