# # This file is distributed under the MIT License. See LICENSE.md for details. # import os import shlex import signal import subprocess import sys from dataclasses import dataclass from shutil import which from typing import Any, Dict, Iterable, List, NoReturn, Optional, Union from revng.support import get_root, read_lines from revng.support.collect import collect_files, collect_libraries from revng.support.elf import is_executable additional_bin_paths = read_lines(get_root() / "share/revng/additional-bin-paths") @dataclass class Options: parsed_args: Any remaining_args: List[str] command_prefix: List[str] verbose: bool dry_run: bool keep_temporaries: bool search_prefixes: List[str] def shlex_join(split_command: Iterable[str]) -> str: return " ".join(shlex.quote(arg) for arg in split_command) def log_error(msg: str): sys.stderr.write(msg + "\n") def wrap(args: List[str], command_prefix: List[str]): return command_prefix + args def relative(path: str) -> str: relative_path = os.path.relpath(path, os.getcwd()) if len(relative_path) < len(path): return relative_path else: return path def try_run( command, options: Options, environment: Optional[Dict[str, str]] = None, do_exec=False ) -> Union[int, NoReturn]: if is_executable(command[0]): command = wrap(command, options.command_prefix) if options.verbose: program_path = relative(command[0]) sys.stderr.write("{}\n\n".format(" \\\n ".join([program_path] + command[1:]))) if options.dry_run: return 0 if environment is None: environment = dict(os.environ) if do_exec: return os.execvpe(command[0], command, environment) else: signal.signal(signal.SIGINT, signal.SIG_IGN) process = subprocess.Popen( command, preexec_fn=lambda: signal.signal(signal.SIGINT, signal.SIG_DFL), env=environment, ) return_code = process.wait() signal.signal(signal.SIGINT, signal.SIG_DFL) return return_code def run(command, options: Options, environment: Optional[Dict[str, str]] = None, do_exec=False): result = try_run(command, options, environment, do_exec) if result != 0: sys.exit(result) def get_command(command: str, search_prefixes: Iterable[str]) -> str: for additional_bin_path in additional_bin_paths: for executable in collect_files(search_prefixes, [additional_bin_path], command): return executable path = which(command) if not path: log_error(f'Couldn\'t find "{command}".') assert False return os.path.abspath(path) def interleave(base: List[str], repeat: str): return list(sum(zip([repeat] * len(base), base), ())) def handle_asan(dependencies: Iterable[str], search_prefixes: Iterable[str]) -> List[str]: libasan = [name for name in dependencies if ("libasan." in name or "libclang_rt.asan" in name)] if len(libasan) != 1: return [] libasan_path = relative(libasan[0]) original_asan_options = os.environ.get("ASAN_OPTIONS", "") if original_asan_options: asan_options = dict([option.split("=") for option in original_asan_options.split(":")]) else: asan_options = {} asan_options["abort_on_error"] = "1" asan_options["detect_leaks"] = "0" new_asan_options = ":".join(["=".join(option) for option in asan_options.items()]) # Use `sh` instead of `env` since `env` sometimes is not a real executable # but a shebang script spawning /usr/bin/coreutils, which makes gdb unhappy return [ get_command("sh", search_prefixes), "-c", f'ASAN_OPTIONS={new_asan_options} ld.so --preload {libasan_path} "$0" "$@"', ] def build_command_with_loads(command: str, args: Iterable[str], options: Options) -> List[str]: (to_load, dependencies) = collect_libraries(options.search_prefixes) prefix = handle_asan(dependencies, options.search_prefixes) return ( prefix + [relative(get_command(command, options.search_prefixes))] + interleave(to_load, "-load") + args ) def executable_name() -> str: return os.path.basename(sys.argv[0])