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use super::*;
static STATE_PATH_PREFIX: &str = "path";
impl<N: Network> Parser for StatePath<N> {
#[inline]
fn parse(string: &str) -> ParserResult<Self> {
let parse_state_path = recognize(pair(
pair(tag(STATE_PATH_PREFIX), tag("1")),
many1(terminated(one_of("qpzry9x8gf2tvdw0s3jn54khce6mua7l"), many0(char('_')))),
));
map_res(parse_state_path, |state_path: &str| -> Result<_, Error> {
Self::from_str(&state_path.replace('_', ""))
})(string)
}
}
impl<N: Network> FromStr for StatePath<N> {
type Err = Error;
fn from_str(state_path: &str) -> Result<Self, Self::Err> {
let (hrp, data, variant) = bech32::decode(state_path)?;
if hrp != STATE_PATH_PREFIX {
bail!("Failed to decode state path: '{hrp}' is an invalid prefix")
} else if data.is_empty() {
bail!("Failed to decode state path: data field is empty")
} else if variant != bech32::Variant::Bech32m {
bail!("Found an state path that is not bech32m encoded: {state_path}");
}
Ok(Self::read_le(&Vec::from_base32(&data)?[..])?)
}
}
impl<N: Network> Debug for StatePath<N> {
fn fmt(&self, f: &mut Formatter) -> fmt::Result {
Display::fmt(self, f)
}
}
impl<N: Network> Display for StatePath<N> {
fn fmt(&self, f: &mut Formatter) -> fmt::Result {
let bytes = self.to_bytes_le().map_err(|_| fmt::Error)?;
let string =
bech32::encode(STATE_PATH_PREFIX, bytes.to_base32(), bech32::Variant::Bech32m).map_err(|_| fmt::Error)?;
Display::fmt(&string, f)
}
}
#[cfg(test)]
mod tests {
use super::*;
use snarkvm_console_network::Testnet3;
type CurrentNetwork = Testnet3;
const ITERATIONS: usize = 100;
#[test]
fn test_parse() {
let mut rng = TestRng::default();
assert!(StatePath::<CurrentNetwork>::parse(&format!("{STATE_PATH_PREFIX}1")).is_err());
assert!(StatePath::<CurrentNetwork>::parse("").is_err());
for _ in 0..ITERATIONS {
let expected =
crate::state_path::test_helpers::sample_global_state_path::<CurrentNetwork>(None, &mut rng).unwrap();
let expected = format!("{expected}");
let (remainder, candidate) = StatePath::<CurrentNetwork>::parse(&expected).unwrap();
assert_eq!(format!("{expected}"), candidate.to_string());
assert_eq!(STATE_PATH_PREFIX, candidate.to_string().split('1').next().unwrap());
assert_eq!("", remainder);
}
}
#[test]
fn test_string() {
let mut rng = TestRng::default();
for _ in 0..ITERATIONS {
let expected =
crate::state_path::test_helpers::sample_global_state_path::<CurrentNetwork>(None, &mut rng).unwrap();
let candidate = format!("{expected}");
assert_eq!(expected, StatePath::from_str(&candidate).unwrap());
assert_eq!(STATE_PATH_PREFIX, candidate.to_string().split('1').next().unwrap());
}
}
#[test]
fn test_display() {
let mut rng = TestRng::default();
for _ in 0..ITERATIONS {
let expected =
crate::state_path::test_helpers::sample_global_state_path::<CurrentNetwork>(None, &mut rng).unwrap();
let candidate = expected.to_string();
assert_eq!(format!("{expected}"), candidate);
assert_eq!(STATE_PATH_PREFIX, candidate.split('1').next().unwrap());
let candidate_recovered = StatePath::<CurrentNetwork>::from_str(&candidate.to_string()).unwrap();
assert_eq!(expected, candidate_recovered);
}
}
}