use rand_core::impls::fill_bytes_via_next;
use rand_core::le::read_u64_into;
use rand_core::{Error, RngCore, SeedableRng};
#[cfg_attr(not(target_os = "cuda"), derive(Copy, cust_core::DeviceCopy))]
#[derive(Debug, Clone, PartialEq, Eq)]
#[repr(C)]
pub struct Xoshiro256Plus {
s: [u64; 4],
}
impl Xoshiro256Plus {
pub fn jump(&mut self) {
impl_jump!(
u64,
self,
[
0x180ec6d33cfd0aba,
0xd5a61266f0c9392c,
0xa9582618e03fc9aa,
0x39abdc4529b1661c
]
);
}
pub fn long_jump(&mut self) {
impl_jump!(
u64,
self,
[
0x76e15d3efefdcbbf,
0xc5004e441c522fb3,
0x77710069854ee241,
0x39109bb02acbe635
]
);
}
#[cfg(not(target_os = "cuda"))]
pub fn initialize_states(seed: u64, num_states: usize) -> Vec<Self> {
impl_initialize_states!(seed, num_states)
}
}
impl SeedableRng for Xoshiro256Plus {
type Seed = [u8; 32];
#[inline]
fn from_seed(seed: [u8; 32]) -> Xoshiro256Plus {
deal_with_zero_seed!(seed, Self);
let mut state = [0; 4];
read_u64_into(&seed, &mut state);
Xoshiro256Plus { s: state }
}
fn seed_from_u64(seed: u64) -> Xoshiro256Plus {
from_splitmix!(seed)
}
}
impl RngCore for Xoshiro256Plus {
#[inline]
fn next_u32(&mut self) -> u32 {
(self.next_u64() >> 32) as u32
}
#[inline]
fn next_u64(&mut self) -> u64 {
let result_plus = self.s[0].wrapping_add(self.s[3]);
impl_xoshiro_u64!(self);
result_plus
}
#[inline]
fn fill_bytes(&mut self, dest: &mut [u8]) {
fill_bytes_via_next(self, dest);
}
#[inline]
fn try_fill_bytes(&mut self, dest: &mut [u8]) -> Result<(), Error> {
self.fill_bytes(dest);
Ok(())
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn reference() {
let mut rng = Xoshiro256Plus::from_seed([
1, 0, 0, 0, 0, 0, 0, 0, 2, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 0, 0, 0, 0, 0, 4, 0, 0, 0, 0,
0, 0, 0,
]);
let expected = [
5,
211106232532999,
211106635186183,
9223759065350669058,
9250833439874351877,
13862484359527728515,
2346507365006083650,
1168864526675804870,
34095955243042024,
3466914240207415127,
];
for &e in &expected {
assert_eq!(rng.next_u64(), e);
}
}
}