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mod bytes;
mod parse;
use console::{
network::prelude::*,
program::{Literal, ProgramID, Register},
};
#[derive(Clone, PartialEq, Eq, Hash)]
pub enum Operand<N: Network> {
Literal(Literal<N>),
Register(Register<N>),
ProgramID(ProgramID<N>),
Caller,
}
impl<N: Network> From<Literal<N>> for Operand<N> {
#[inline]
fn from(literal: Literal<N>) -> Self {
Operand::Literal(literal)
}
}
impl<N: Network> From<&Literal<N>> for Operand<N> {
#[inline]
fn from(literal: &Literal<N>) -> Self {
Operand::Literal(literal.clone())
}
}
impl<N: Network> From<Register<N>> for Operand<N> {
#[inline]
fn from(register: Register<N>) -> Self {
Operand::Register(register)
}
}
impl<N: Network> From<&Register<N>> for Operand<N> {
#[inline]
fn from(register: &Register<N>) -> Self {
Operand::Register(register.clone())
}
}
#[cfg(test)]
mod tests {
use super::*;
use console::network::Testnet3;
type CurrentNetwork = Testnet3;
#[test]
fn test_operand_from_literal() -> Result<()> {
let literal = Literal::from_str("1field")?;
let expected = Operand::<CurrentNetwork>::Literal(literal.clone());
let operand = Operand::<CurrentNetwork>::from(literal);
assert_eq!(expected, operand);
Ok(())
}
#[test]
fn test_operand_from_register() -> Result<()> {
let register = Register::from_str("r0")?;
let expected = Operand::<CurrentNetwork>::Register(register.clone());
let operand = Operand::<CurrentNetwork>::from(register);
assert_eq!(expected, operand);
Ok(())
}
#[test]
fn test_operand_from_register_member() -> Result<()> {
let register = Register::from_str("r0.owner")?;
let expected = Operand::<CurrentNetwork>::Register(register.clone());
let operand = Operand::<CurrentNetwork>::from(register);
assert_eq!(expected, operand);
Ok(())
}
}