klvmr 0.3.3

Implementation of `klvm` for Chik Network's cryptocurrency
Documentation
use crate::{allocator::NodePtr, Allocator};

use klvm_traits::{KlvmEncoder, ToKlvm, ToKlvmError};

pub trait ToNodePtr {
    fn to_node_ptr(&self, a: &mut Allocator) -> Result<NodePtr, ToKlvmError>;
}

impl<T> ToNodePtr for T
where
    T: ToKlvm<NodePtr>,
{
    fn to_node_ptr(&self, a: &mut Allocator) -> Result<NodePtr, ToKlvmError> {
        self.to_klvm(a)
    }
}

impl ToKlvm<NodePtr> for NodePtr {
    fn to_klvm(
        &self,
        _encoder: &mut impl KlvmEncoder<Node = NodePtr>,
    ) -> Result<NodePtr, ToKlvmError> {
        Ok(*self)
    }
}

#[cfg(test)]
mod tests {
    use crate::{serde::node_to_bytes, Allocator};
    use hex::ToHex;

    use super::*;

    fn encode<T>(a: &mut Allocator, value: T) -> Result<String, ToKlvmError>
    where
        T: ToKlvm<NodePtr>,
    {
        let actual = value.to_klvm(a).unwrap();
        let actual_bytes = node_to_bytes(a, actual).unwrap();
        Ok(actual_bytes.encode_hex())
    }

    #[test]
    fn test_nodeptr() {
        let a = &mut Allocator::new();
        let ptr = a.one();
        assert_eq!(ptr.to_klvm(a).unwrap(), ptr);
    }

    #[test]
    fn test_primitives() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, 0u8), Ok("80".to_owned()));
        assert_eq!(encode(a, 0i8), Ok("80".to_owned()));
        assert_eq!(encode(a, 5u8), Ok("05".to_owned()));
        assert_eq!(encode(a, 5u32), Ok("05".to_owned()));
        assert_eq!(encode(a, 5i32), Ok("05".to_owned()));
        assert_eq!(encode(a, -27i32), Ok("81e5".to_owned()));
        assert_eq!(encode(a, -0), Ok("80".to_owned()));
        assert_eq!(encode(a, -128i8), Ok("8180".to_owned()));
    }

    #[test]
    fn test_reference() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, [1, 2, 3]), encode(a, [1, 2, 3]));
        assert_eq!(encode(a, Some(42)), encode(a, Some(42)));
        assert_eq!(encode(a, Some(&42)), encode(a, Some(42)));
        assert_eq!(encode(a, Some(&42)), encode(a, Some(42)));
    }

    #[test]
    fn test_pair() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, (5, 2)), Ok("ff0502".to_owned()));
        assert_eq!(
            encode(a, (-72, (90121, ()))),
            Ok("ff81b8ff8301600980".to_owned())
        );
        assert_eq!(
            encode(a, (((), ((), ((), (((), ((), ((), ()))), ())))), ())),
            Ok("ffff80ff80ff80ffff80ff80ff80808080".to_owned())
        );
    }

    #[test]
    fn test_nil() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, ()), Ok("80".to_owned()));
    }

    #[test]
    fn test_slice() {
        let a = &mut Allocator::new();
        assert_eq!(
            encode(a, [1, 2, 3, 4].as_slice()),
            Ok("ff01ff02ff03ff0480".to_owned())
        );
        assert_eq!(encode(a, [0; 0].as_slice()), Ok("80".to_owned()));
    }

    #[test]
    fn test_array() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, [1, 2, 3, 4]), Ok("ff01ff02ff03ff0480".to_owned()));
        assert_eq!(encode(a, [0; 0]), Ok("80".to_owned()));
    }

    #[test]
    fn test_vec() {
        let a = &mut Allocator::new();
        assert_eq!(
            encode(a, vec![1, 2, 3, 4]),
            Ok("ff01ff02ff03ff0480".to_owned())
        );
        assert_eq!(encode(a, vec![0; 0]), Ok("80".to_owned()));
    }

    #[test]
    fn test_option() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, Some("hello")), Ok("8568656c6c6f".to_owned()));
        assert_eq!(encode(a, None::<&str>), Ok("80".to_owned()));
        assert_eq!(encode(a, Some("")), Ok("80".to_owned()));
    }

    #[test]
    fn test_str() {
        let a = &mut Allocator::new();
        assert_eq!(encode(a, "hello"), Ok("8568656c6c6f".to_owned()));
        assert_eq!(encode(a, ""), Ok("80".to_owned()));
    }

    #[test]
    fn test_string() {
        let a = &mut Allocator::new();
        assert_eq!(
            encode(a, "hello".to_string()),
            Ok("8568656c6c6f".to_owned())
        );
        assert_eq!(encode(a, "".to_string()), Ok("80".to_owned()));
    }
}