mod bytes;
mod merkle;
mod serialize;
mod string;
use console::{
network::{error, prelude::*},
types::Field,
};
use snarkvm_ledger_committee::Committee;
use snarkvm_ledger_narwhal_batch_header::BatchHeader;
use snarkvm_ledger_puzzle::{PuzzleSolutions, SolutionID};
#[derive(Clone, Eq, PartialEq)]
pub struct Solutions<N: Network> {
solutions: Option<PuzzleSolutions<N>>,
}
impl<N: Network> Solutions<N> {
pub fn max_aborted_solutions() -> usize {
BatchHeader::<N>::MAX_TRANSMISSIONS_PER_BATCH
* BatchHeader::<N>::MAX_GC_ROUNDS
* Committee::<N>::max_committee_size() as usize
}
}
impl<N: Network> From<Option<PuzzleSolutions<N>>> for Solutions<N> {
fn from(solutions: Option<PuzzleSolutions<N>>) -> Self {
Self { solutions }
}
}
impl<N: Network> Solutions<N> {
pub fn new(solutions: PuzzleSolutions<N>) -> Result<Self> {
Ok(Self { solutions: Some(solutions) })
}
pub fn is_empty(&self) -> bool {
self.solutions.is_none()
}
pub fn len(&self) -> usize {
match &self.solutions {
Some(solutions) => solutions.len(),
None => 0,
}
}
}
impl<N: Network> Solutions<N> {
pub fn solution_ids<'a>(&'a self) -> Box<dyn Iterator<Item = &'a SolutionID<N>> + 'a> {
match &self.solutions {
Some(solutions) => Box::new(solutions.keys()),
None => Box::new(std::iter::empty::<&SolutionID<N>>()),
}
}
}
impl<N: Network> Deref for Solutions<N> {
type Target = Option<PuzzleSolutions<N>>;
fn deref(&self) -> &Self::Target {
&self.solutions
}
}