use core::mem::MaybeUninit;
use cfg_if::cfg_if;
cfg_if! {
if #[cfg(zisk_guest)] {
use core::arch::asm;
use crate::{
ziskos_fcall, ziskos_fcall_param,
zisklib::{FCALL_SECP256K1_FP_INV_ID, FCALL_SECP256K1_FP_SQRT_ID}
};
#[cfg(not(feature = "inputcpy"))]
use crate::ziskos_fcall_get;
#[cfg(feature = "inputcpy")]
use crate::ziskos_inputcpy;
} else {
use zisk_lib_c::{secp256k1_fp_inv_c};
use crate::zisklib::fcalls_impl::secp256k1::secp256k1_fp_sqrt;
}
}
#[allow(unused_variables)]
pub fn fcall_secp256k1_fp_inv(
x: &[u64; 4],
#[cfg(feature = "hints")] hints: &mut Vec<u64>,
) -> [u64; 4] {
#[cfg(not(zisk_guest))]
{
let mut result: [u64; 4] = [0; 4];
secp256k1_fp_inv_c(x, &mut result);
#[cfg(feature = "hints")]
{
hints.push(result.len() as u64);
hints.extend_from_slice(&result);
}
result
}
#[cfg(zisk_guest)]
{
ziskos_fcall_param!(x, 4);
ziskos_fcall!(FCALL_SECP256K1_FP_INV_ID);
#[cfg(not(feature = "inputcpy"))]
{
[ziskos_fcall_get(), ziskos_fcall_get(), ziskos_fcall_get(), ziskos_fcall_get()]
}
#[cfg(feature = "inputcpy")]
{
let mut res: MaybeUninit<[u64; 4]> = MaybeUninit::uninit();
ziskos_inputcpy!(res, 32);
unsafe { res.assume_init() }
}
}
}
#[allow(unused_variables)]
pub fn fcall_secp256k1_fp_sqrt(
x: &[u64; 4],
parity: u64,
#[cfg(feature = "hints")] hints: &mut Vec<u64>,
) -> [u64; 5] {
#[cfg(not(zisk_guest))]
{
let mut result: [u64; 5] = [0; 5];
secp256k1_fp_sqrt(x, parity, &mut result);
#[cfg(feature = "hints")]
{
hints.push(result.len() as u64);
hints.extend_from_slice(&result);
}
result
}
#[cfg(zisk_guest)]
{
ziskos_fcall_param!(x, 4);
ziskos_fcall_param!(parity, 1);
ziskos_fcall!(FCALL_SECP256K1_FP_SQRT_ID);
#[cfg(not(feature = "inputcpy"))]
{
[
ziskos_fcall_get(),
ziskos_fcall_get(),
ziskos_fcall_get(),
ziskos_fcall_get(),
ziskos_fcall_get(),
]
}
#[cfg(feature = "inputcpy")]
{
use core::mem::MaybeUninit;
let mut res: MaybeUninit<[u64; 5]> = MaybeUninit::uninit();
ziskos_inputcpy!(res, 40);
unsafe { res.assume_init() }
}
}
}