use clvmr::{allocator::SExp, Allocator, Atom, NodePtr};
use num_bigint::BigInt;
use crate::{
destructure_list, destructure_quote, match_list, match_quote, FromClvm, FromClvmError,
MatchByte,
};
pub trait ClvmDecoder: Sized {
type Node: Clone + FromClvm<Self>;
fn decode_atom(&self, node: &Self::Node) -> Result<Atom<'_>, FromClvmError>;
fn decode_pair(&self, node: &Self::Node) -> Result<(Self::Node, Self::Node), FromClvmError>;
fn decode_bigint(&self, node: &Self::Node) -> Result<BigInt, FromClvmError> {
let atom = self.decode_atom(node)?;
Ok(BigInt::from_signed_bytes_be(atom.as_ref()))
}
fn decode_curried_arg(
&self,
node: &Self::Node,
) -> Result<(Self::Node, Self::Node), FromClvmError> {
let destructure_list!(_, destructure_quote!(first), rest) =
<match_list!(MatchByte<4>, match_quote!(Self::Node), Self::Node)>::from_clvm(
self,
node.clone(),
)?;
Ok((first, rest))
}
fn clone_node(&self, node: &Self::Node) -> Self::Node {
node.clone()
}
}
impl ClvmDecoder for Allocator {
type Node = NodePtr;
fn decode_atom(&self, node: &Self::Node) -> Result<Atom<'_>, FromClvmError> {
if let SExp::Atom = self.sexp(*node) {
Ok(self.atom(*node))
} else {
Err(FromClvmError::ExpectedAtom)
}
}
fn decode_pair(&self, node: &Self::Node) -> Result<(Self::Node, Self::Node), FromClvmError> {
if let SExp::Pair(first, rest) = self.sexp(*node) {
Ok((first, rest))
} else {
Err(FromClvmError::ExpectedPair)
}
}
fn decode_bigint(&self, node: &Self::Node) -> Result<BigInt, FromClvmError> {
if let SExp::Atom = self.sexp(*node) {
Ok(self.number(*node))
} else {
Err(FromClvmError::ExpectedAtom)
}
}
}
impl FromClvm<Allocator> for NodePtr {
fn from_clvm(_decoder: &Allocator, node: NodePtr) -> Result<Self, FromClvmError> {
Ok(node)
}
}