mirror of
https://github.com/revng/revng
synced 2026-06-21 14:07:57 +00:00
cdc1120a90
Add the needed changes to `revng mass-testing dump-sections` so that a fat Mach-O does not lead to a crash.
170 lines
4.9 KiB
Python
Executable File
170 lines
4.9 KiB
Python
Executable File
#!/usr/bin/env python3
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#
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# This file is distributed under the MIT License. See LICENSE.md for details.
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#
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# This script prints some information about an executable's sections to stdout,
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# depending on the command line options passed:
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# * With --text-size: the program outputs the size of the `.text` segment (or
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# equivalent) as an integer (in bytes)
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# * Without --text-size: a JSON is returned containing information about all
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# sections
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import argparse
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import json
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import sys
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from subprocess import DEVNULL, PIPE, run
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import yaml
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def find_section_attribute(data: dict, name: str, attr_name: str) -> int | None:
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for section in data["Sections"]:
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if section["Name"]["Value"] == name:
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return section[attr_name]
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return None
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def _set_or_add(num1: int | None, num2: int):
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return num2 if num1 is None else num1 + num2
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def _flag_overlap(flag_set: dict, flags: frozenset[str]):
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new_flags = {f["Name"] for f in flag_set}
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return bool(new_flags & flags)
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def compute_segment_load_size(data: dict):
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size = None
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for segment in data["ProgramHeaders"]:
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if segment["Type"]["Value"] != "PT_LOAD":
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continue
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if _flag_overlap(segment["Flags"]["Flags"], frozenset(("PF_X",))):
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size = _set_or_add(size, segment["FileSize"])
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return size
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def compute_executable_sections_macho(data: dict):
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size = None
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executable_flags = frozenset(("PureInstructions", "SomeInstructions"))
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for section in data["Sections"]:
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if _flag_overlap(section["Attributes"]["Flags"], executable_flags):
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size = _set_or_add(size, section["Size"])
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return size
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def compute_executable_sections_pe(data: dict):
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size = None
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executable_flags = frozenset(("IMAGE_SCN_CNT_CODE", "IMAGE_SCN_MEM_EXECUTE"))
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for section in data["Sections"]:
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if _flag_overlap(section["Characteristics"]["Flags"], executable_flags):
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size = _set_or_add(size, section["RawDataSize"])
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return size
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def _get_text_size(data: dict) -> int:
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format_: str = data["Format"]
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if format_.startswith("elf"):
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res = find_section_attribute(data, ".text", "Size")
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if res is None:
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res = compute_segment_load_size(data)
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elif format_.startswith("Mach-O"):
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res = find_section_attribute(data, "__text", "Size")
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if res is None:
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res = compute_executable_sections_macho(data)
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elif format_.startswith("COFF"):
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res = find_section_attribute(data, ".text", "RawDataSize")
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if res is None:
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res = compute_executable_sections_pe(data)
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else:
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raise ValueError(f"Invalid format: {format_}")
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return res if res is not None else -1
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def get_text_size(data: list | dict) -> int:
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if isinstance(data, dict):
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return _get_text_size(data)
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sizes = [_get_text_size(e) for e in data]
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if all(e == -1 for e in sizes):
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return -1
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return sum(e for e in sizes if e != -1)
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def _normalize_nonelf_output(data: list):
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results = []
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result: dict = {}
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for elem in data:
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assert isinstance(elem, dict)
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assert len(elem) == 1
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if "File" in elem:
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# Start of a new "file"
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result = {}
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results.append(result)
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if "Sections" in elem:
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result["Sections"] = []
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for section in data[4]["Sections"]:
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result["Sections"].append(section["Section"])
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elif "Segment" in elem:
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if "Segments" not in result:
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result["Segments"] = []
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result["Segments"].append(elem["Segment"])
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else:
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result.update(elem)
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if len(results) == 1:
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return results[0]
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else:
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return results
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def readobj(filepath: str):
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proc = run(
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[
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"llvm-readobj",
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"--elf-output-style=JSON",
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"--sections",
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"--segments",
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"--macho-segment",
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filepath,
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],
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stdout=PIPE,
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stderr=DEVNULL,
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check=True,
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text=True,
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)
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data = yaml.safe_load(proc.stdout)
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if len(data) == 1:
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# ELF output
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result = dict(data[0]["FileSummary"])
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result["Sections"] = []
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for section in data[0]["Sections"]:
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result["Sections"].append(section["Section"])
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result["ProgramHeaders"] = []
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for segment in data[0]["ProgramHeaders"]:
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result["ProgramHeaders"].append(segment["ProgramHeader"])
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else:
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return _normalize_nonelf_output(data)
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return result
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def main():
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parser = argparse.ArgumentParser()
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parser.add_argument(
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"--text-size", action="store_true", help="Output the size of the .text section"
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)
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parser.add_argument("input", help="Input file")
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args = parser.parse_args()
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readobj_data = readobj(args.input)
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if args.text_size:
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print(get_text_size(readobj_data))
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else:
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json.dump(readobj_data, sys.stdout)
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if __name__ == "__main__":
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main()
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