use crate::label::{
AddressLabelBlake3, AddressLabelKeccak256, AddressLabelSha256, AddressLabelSha3_256,
AddressLabelSha512,
};
use crate::onnx::value::OnnxCarrier;
addr_verbs! {
input: OnnxCarrier<'_>,
{ shape: AddressLabelSha256, verb: address_inference },
{ shape: AddressLabelBlake3, verb: address_inference_blake3 },
{ shape: AddressLabelSha3_256, verb: address_inference_sha3_256 },
{ shape: AddressLabelKeccak256, verb: address_inference_keccak256 },
{ shape: AddressLabelSha512, verb: address_inference_sha512 },
}
#[cfg(test)]
mod tests {
use super::*;
use prism::operation::Term;
#[test]
fn verb_arena_is_canonical_k_invariants_branch() {
let arena = address_inference_term_arena::<{ crate::ADDR_INLINE_BYTES }>();
assert!(!arena.is_empty());
assert!(arena.iter().any(|t| matches!(t, Term::Nerve { .. })));
assert!(arena
.iter()
.any(|t| matches!(t, Term::PostnikovTower { .. })));
assert!(arena
.iter()
.any(|t| matches!(t, Term::HomotopyGroups { .. })));
assert!(arena.iter().any(|t| matches!(t, Term::KInvariants { .. })));
}
#[test]
fn verb_arena_contains_no_sigma_residuals() {
let arena = address_inference_term_arena::<{ crate::ADDR_INLINE_BYTES }>();
assert!(!arena.iter().any(|t| matches!(t, Term::FirstAdmit { .. })));
assert!(!arena
.iter()
.any(|t| matches!(t, Term::AxisInvocation { .. })));
}
}