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use crate::prelude::*;
use parking_lot::Mutex;
use rand::distributions::uniform::SampleUniform;
#[derive(Deserialize,Debug,Clone,Default)]
#[serde(transparent)]
pub struct FakeRngSpec(Option<Vec<String>>);
#[derive(Serialize,Deserialize,Error,Debug,Clone)]
#[error("RNG is real")]
pub struct RngIsReal;
impl FakeRngSpec {
pub fn make_game_rng(self) -> RngWrap { RngWrap( match self.0 {
None => None,
Some(ents) => Some(Mutex::new(FakeRng {
i: 0,
ents,
})) }
)}
}
#[derive(Debug)]
pub struct RngWrap (
Option<Mutex<FakeRng>>
);
#[derive(Debug)]
struct FakeRng {
i: usize,
ents: Vec<String>,
}
impl RngWrap {
pub fn is_fake(&self) -> bool { self.0.is_some() }
#[throws(RngIsReal)]
pub fn set_fake(&self, v: Vec<String>, _: AuthorisationSuperuser) {
let mut fake = self.0.as_ref().ok_or(RngIsReal)?.lock();
fake.i = 0;
fake.ents = v;
}
#[throws(as Option)]
fn next_fake(&self) -> String {
let mut fake = self.0.as_ref()?.lock();
let e = fake.ents.get(fake.i)?.clone();
fake.i += 1;
fake.i %= fake.ents.len();
e
}
pub fn shuffle<T:Copy>(&self, slice: &mut [T]) { match self.next_fake() {
None => {
let mut rng = thread_rng();
slice.shuffle(&mut rng);
},
Some(s) => {
let l = slice.len();
let n: usize = s.parse().unwrap_or(0);
let front = slice[0..n].to_owned();
slice.copy_within(n.., 0);
slice[l-n..].copy_from_slice(&front);
},
} }
pub fn range<T>(&self, range: std::ops::Range<T>) -> T
where T: SampleUniform + FromStr + Ord + Default
{
match self.next_fake() {
None => {
let mut rng = thread_rng();
rng.gen_range(range)
},
Some(s) => (||{
let n: T = s.parse().ok()?;
range.contains(&n).then(|| n)
})().unwrap_or_default(),
}
}
}