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use std::env;
use binaryninja::binaryview::BinaryViewExt;
use binaryninja::hlil::operation::HighLevelILOperand;
use binaryninja::hlil::{HighLevelILFunction, HighLevelILInstruction};
use binaryninja::types::Variable;
fn print_indent(indent: usize) {
print!("{:<indent$}", "")
}
fn print_operation(operation: &HighLevelILInstruction) {
use HighLevelILInstruction::*;
match operation {
Adc(_op) => print!("Adc"),
Sbb(_op) => print!("Sbb"),
Rlc(_op) => print!("Rlc"),
Rrc(_op) => print!("Rrc"),
Add(_op) => print!("Add"),
Sub(_op) => print!("Sub"),
And(_op) => print!("And"),
Or(_op) => print!("Or"),
Xor(_op) => print!("Xor"),
Lsl(_op) => print!("Lsl"),
Lsr(_op) => print!("Lsr"),
Asr(_op) => print!("Asr"),
Rol(_op) => print!("Rol"),
Ror(_op) => print!("Ror"),
Mul(_op) => print!("Mul"),
MuluDp(_op) => print!("MuluDp"),
MulsDp(_op) => print!("MulsDp"),
Divu(_op) => print!("Divu"),
DivuDp(_op) => print!("DivuDp"),
Divs(_op) => print!("Divs"),
DivsDp(_op) => print!("DivsDp"),
Modu(_op) => print!("Modu"),
ModuDp(_op) => print!("ModuDp"),
Mods(_op) => print!("Mods"),
ModsDp(_op) => print!("ModsDp"),
CmpE(_op) => print!("CmpE"),
CmpNe(_op) => print!("CmpNe"),
CmpSlt(_op) => print!("CmpSlt"),
CmpUlt(_op) => print!("CmpUlt"),
CmpSle(_op) => print!("CmpSle"),
CmpUle(_op) => print!("CmpUle"),
CmpSge(_op) => print!("CmpSge"),
CmpUge(_op) => print!("CmpUge"),
CmpSgt(_op) => print!("CmpSgt"),
CmpUgt(_op) => print!("CmpUgt"),
TestBit(_op) => print!("TestBit"),
AddOverflow(_op) => print!("AddOverflow"),
Fadd(_op) => print!("Fadd"),
Fsub(_op) => print!("Fsub"),
Fmul(_op) => print!("Fmul"),
Fdiv(_op) => print!("Fdiv"),
FcmpE(_op) => print!("FcmpE"),
FcmpNe(_op) => print!("FcmpNe"),
FcmpLt(_op) => print!("FcmpLt"),
FcmpLe(_op) => print!("FcmpLe"),
FcmpGe(_op) => print!("FcmpGe"),
FcmpGt(_op) => print!("FcmpGt"),
FcmpO(_op) => print!("FcmpO"),
FcmpUo(_op) => print!("FcmpUo"),
ArrayIndex(_op) => print!("ArrayIndex"),
ArrayIndexSsa(_op) => print!("ArrayIndexSsa"),
Assign(_op) => print!("Assign"),
AssignMemSsa(_op) => print!("AssignMemSsa"),
AssignUnpack(_op) => print!("AssignUnpack"),
AssignUnpackMemSsa(_op) => print!("AssignUnpackMemSsa"),
Block(_op) => print!("Block"),
Call(_op) => print!("Call"),
Tailcall(_op) => print!("Tailcall"),
CallSsa(_op) => print!("CallSsa"),
Case(_op) => print!("Case"),
Const(_op) => print!("Const"),
ConstPtr(_op) => print!("ConstPtr"),
Import(_op) => print!("Import"),
ConstData(_op) => print!("ConstData"),
Deref(_op) => print!("Deref"),
AddressOf(_op) => print!("AddressOf"),
Neg(_op) => print!("Neg"),
Not(_op) => print!("Not"),
Sx(_op) => print!("Sx"),
Zx(_op) => print!("Zx"),
LowPart(_op) => print!("LowPart"),
BoolToInt(_op) => print!("BoolToInt"),
UnimplMem(_op) => print!("UnimplMem"),
Fsqrt(_op) => print!("Fsqrt"),
Fneg(_op) => print!("Fneg"),
Fabs(_op) => print!("Fabs"),
FloatToInt(_op) => print!("FloatToInt"),
IntToFloat(_op) => print!("IntToFloat"),
FloatConv(_op) => print!("FloatConv"),
RoundToInt(_op) => print!("RoundToInt"),
Floor(_op) => print!("Floor"),
Ceil(_op) => print!("Ceil"),
Ftrunc(_op) => print!("Ftrunc"),
DerefFieldSsa(_op) => print!("DerefFieldSsa"),
DerefSsa(_op) => print!("DerefSsa"),
ExternPtr(_op) => print!("ExternPtr"),
FloatConst(_op) => print!("FloatConst"),
For(_op) => print!("For"),
ForSsa(_op) => print!("ForSsa"),
Goto(_op) => print!("Goto"),
Label(_op) => print!("Label"),
If(_op) => print!("If"),
Intrinsic(_op) => print!("Intrinsic"),
IntrinsicSsa(_op) => print!("IntrinsicSsa"),
Jump(_op) => print!("Jump"),
MemPhi(_op) => print!("MemPhi"),
Nop(_op) => print!("Nop"),
Break(_op) => print!("Break"),
Continue(_op) => print!("Continue"),
Noret(_op) => print!("Noret"),
Unreachable(_op) => print!("Unreachable"),
Bp(_op) => print!("Bp"),
Undef(_op) => print!("Undef"),
Unimpl(_op) => print!("Unimpl"),
Ret(_op) => print!("Ret"),
Split(_op) => print!("Split"),
StructField(_op) => print!("StructField"),
DerefField(_op) => print!("DerefField"),
Switch(_op) => print!("Switch"),
Syscall(_op) => print!("Syscall"),
SyscallSsa(_op) => print!("SyscallSsa"),
Trap(_op) => print!("Trap"),
VarDeclare(_op) => print!("VarDeclare"),
Var(_op) => print!("Var"),
VarInit(_op) => print!("VarInit"),
VarInitSsa(_op) => print!("VarInitSsa"),
VarPhi(_op) => print!("VarPhi"),
VarSsa(_op) => print!("VarSsa"),
While(_op) => print!("While"),
DoWhile(_op) => print!("DoWhile"),
WhileSsa(_op) => print!("WhileSsa"),
DoWhileSsa(_op) => print!("DoWhileSsa"),
}
}
fn print_variable(func: &HighLevelILFunction, var: &Variable) {
print!("{}", func.get_function().get_variable_name(var));
}
fn print_il_expr(instr: &HighLevelILInstruction, mut indent: usize) {
print_indent(indent);
print_operation(instr);
println!("");
indent += 1;
use HighLevelILOperand::*;
for (_name, operand) in instr.operands() {
match operand {
Int(int) => {
print_indent(indent);
println!("int 0x{:x}", int);
}
Float(float) => {
print_indent(indent);
println!("int {:e}", float);
}
Expr(expr) => print_il_expr(&expr, indent),
Var(var) => {
print_indent(indent);
print!("var ");
print_variable(instr.function(), &var);
println!();
}
VarSsa(var) => {
print_indent(indent);
print!("ssa var ");
print_variable(instr.function(), &var.variable);
println!("#{}", var.version);
}
IntList(list) => {
print_indent(indent);
print!("index list ");
for i in list {
print!("{i} ");
}
println!();
}
VarSsaList(list) => {
print_indent(indent);
print!("ssa var list ");
for i in list {
print_variable(instr.function(), &i.variable);
print!("#{} ", i.version);
}
println!();
}
ExprList(list) => {
print_indent(indent);
println!("expr list");
for i in list {
print_il_expr(&i, indent + 1);
}
}
Label(label) => println!("label {}", label.name()),
MemberIndex(mem_idx) => println!("member_index {:?}", mem_idx),
ConstantData(_) => println!("constant_data TODO"),
Intrinsic(_) => println!("intrinsic TODO"),
}
}
}
// Standalone executables need to provide a main function for rustc
// Plugins should refer to `binaryninja::command::*` for the various registration callbacks.
fn main() {
let mut args = env::args();
let _ = args.next().unwrap();
let Some(filename) = args.next() else {
panic!("Expected input filename\n");
};
// This loads all the core architecture, platform, etc plugins
// Standalone executables probably need to call this, but plugins do not
println!("Loading plugins...");
binaryninja::headless::init();
// Your code here...
println!("Loading binary...");
let bv = binaryninja::load(filename).expect("Couldn't open binary file");
// Go through all functions in the binary
for func in bv.functions().iter() {
let sym = func.symbol();
println!("Function {}:", sym.full_name());
let Ok(il) = func.high_level_il(true) else {
println!(" Does not have HLIL\n");
continue;
};
// Loop through all blocks in the function
for block in il.basic_blocks().iter() {
// Loop though each instruction in the block
for instr in block.iter() {
// Generically parse the IL tree and display the parts
print_il_expr(&instr, 2);
}
}
println!();
}
// Important! Standalone executables need to call shutdown or they will hang forever
binaryninja::headless::shutdown();
}
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