use binaryninja::binaryview::{BinaryView, BinaryViewBase, BinaryViewExt}; use binaryninja::disassembly::{DisassemblyOption, DisassemblySettings}; use binaryninja::function::Function; use binaryninja::linearview::{LinearViewCursor, LinearViewObject}; use clap::Parser; /// Use binaryninja to decompile to C. #[derive(Parser, Debug)] #[clap(version, long_about = None)] struct Args { /// Path to the file to decompile filename: String, } fn decompile_to_c(view: &BinaryView, func: &Function) { let settings = DisassemblySettings::new(); settings.set_option(DisassemblyOption::ShowAddress, false); settings.set_option(DisassemblyOption::WaitForIL, true); let linearview = LinearViewObject::language_representation(view, &settings); let mut cursor = LinearViewCursor::new(&linearview); cursor.seek_to_address(func.highest_address()); let last = view.get_next_linear_disassembly_lines(&mut cursor.duplicate()); let first = view.get_previous_linear_disassembly_lines(&mut cursor); let lines = first.into_iter().chain(last.into_iter()); for line in lines { println!("{}", line.as_ref()); } } fn main() { let args = Args::parse(); eprintln!("Loading plugins..."); binaryninja::headless::init(); eprintln!("Loading binary..."); let bv = binaryninja::open_view(args.filename).expect("Couldn't open file"); eprintln!("Filename: `{}`", bv.file().filename()); eprintln!("File size: `{:#x}`", bv.len()); eprintln!("Function count: {}", bv.functions().len()); for func in &bv.functions() { decompile_to_c(bv.as_ref(), func.as_ref()); } binaryninja::headless::shutdown(); }