// file: crates/ksp-store-api/unit_tests/model/raw_transaction.rs // version: 3 fn network() -> std::option::Option { return match crate::RawNetworkId::new("mainnet".to_owned()) { std::result::Result::Ok(value) => std::option::Option::Some(value), std::result::Result::Err(_) => std::option::Option::None, }; } fn payload() -> std::option::Option { let format = match crate::RawFormatId::new("ksp.solana.raw_transaction".to_owned()) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return std::option::Option::None, }; return match crate::RawPayload::try_new( format, 1, b"canonical transaction including logs".to_vec().into_boxed_slice(), crate::RawContentHash::new([5_u8; 32]), ) { std::result::Result::Ok(value) => std::option::Option::Some(value), std::result::Result::Err(_) => std::option::Option::None, }; } fn provenance() -> std::option::Option { let provider = match crate::RawProvenanceCode::new("publicnode".to_owned()) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return std::option::Option::None, }; let protocol = match crate::RawProvenanceCode::new("yellowstone_grpc".to_owned()) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return std::option::Option::None, }; let method = match crate::RawProvenanceCode::new("transactions".to_owned()) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return std::option::Option::None, }; let received_at = match crate::RawTimestamp::from_unix_millis(1_000) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return std::option::Option::None, }; return std::option::Option::Some(crate::RawAcquisitionProvenance::new(provider, protocol, method, crate::RawAcquisitionOrigin::Backfill, received_at)); } #[test] fn raw_transaction_identity_is_network_plus_signature_and_payload_remains_whole() { let network = match network() { std::option::Option::Some(value) => value, std::option::Option::None => return, }; let payload = match payload() { std::option::Option::Some(value) => value, std::option::Option::None => return, }; let signature = crate::RawTransactionSignature::new([9_u8; 64]); let reference = crate::RawTransactionReference::new(network, signature); let transaction = crate::RawTransaction::new(reference, 42, std::option::Option::None, payload); assert_eq!(transaction.reference().network().as_str(), "mainnet"); assert_eq!(transaction.reference().signature(), signature); assert_eq!(transaction.slot(), 42); assert!(transaction.block_time().is_none()); assert_eq!(transaction.payload().bytes(), b"canonical transaction including logs"); return; } #[test] fn transaction_observation_is_separate_from_canonical_raw_payload() { let network = match network() { std::option::Option::Some(value) => value, std::option::Option::None => return, }; let provenance = match provenance() { std::option::Option::Some(value) => value, std::option::Option::None => return, }; let signature = crate::RawTransactionSignature::new([11_u8; 64]); let reference = crate::RawTransactionReference::new(network, signature); let observation = crate::RawTransactionObservation::new(crate::RawObservationKey::new([12_u8; 32]), reference, provenance); assert_eq!(observation.transaction().signature(), signature); assert_eq!(observation.observation_key().as_bytes(), &[12_u8; 32]); assert_eq!(observation.provenance().provider().as_str(), "publicnode"); return; } #[test] fn transaction_variant_identity_is_non_zero_and_keeps_transaction_scope() { assert!(crate::RawTransactionVariantId::try_new(0).is_err()); let variant_id = match crate::RawTransactionVariantId::try_new(7) { std::result::Result::Ok(value) => value, std::result::Result::Err(_) => return, }; let network = match network() { std::option::Option::Some(value) => value, std::option::Option::None => return, }; let transaction = crate::RawTransactionReference::new(network, crate::RawTransactionSignature::new([13_u8; 64])); let variant = crate::RawTransactionVariantReference::new(transaction, variant_id); assert_eq!(variant.variant_id().get(), 7); assert_eq!(variant.transaction().network().as_str(), "mainnet"); assert_eq!(crate::RawTransactionVariantOrigin::Native.code(), "native"); assert_eq!(crate::RawTransactionVariantOrigin::Synthetic.code(), "synthetic"); return; } #[test] fn transaction_variant_relation_reason_pairs_are_validated() { let exact = crate::RawTransactionVariantComparison::try_new( crate::RawTransactionVariantRelation::Exact, crate::RawTransactionVariantRelationReason::ExactCanonicalContent, ); assert!(exact.is_ok()); let invalid = crate::RawTransactionVariantComparison::try_new( crate::RawTransactionVariantRelation::Exact, crate::RawTransactionVariantRelationReason::IncomingLogMessagesTruncated, ); assert!(invalid.is_err()); let conflict = crate::RawTransactionVariantComparison::try_new( crate::RawTransactionVariantRelation::Conflict, crate::RawTransactionVariantRelationReason::ContentHashCollision, ); assert!(conflict.is_ok()); let incomparable = crate::RawTransactionVariantComparison::try_new( crate::RawTransactionVariantRelation::Incomparable, crate::RawTransactionVariantRelationReason::PayloadFormatMismatch, ); assert!(incomparable.is_ok()); return; } #[test] fn transaction_variant_codes_and_outcomes_are_stable_backend_neutral_contracts() { assert_eq!(crate::RawTransactionVariantRelation::CompatibleLessComplete.code(), "compatible_less_complete"); assert_eq!(crate::RawTransactionVariantRelationReason::IncomingLogMessagesTruncated.code(), "incoming_log_messages_truncated"); assert_eq!(crate::RawTransactionVariantRelationReason::ContentHashCollision.code(), "content_hash_collision"); assert_eq!(crate::RawTransactionConflictStatus::Open.code(), "open"); assert_eq!(crate::RawTransactionConflictStatus::Resolved.code(), "resolved"); assert_ne!(crate::RawTransactionVariantWriteOutcome::InsertedCanonical, crate::RawTransactionVariantWriteOutcome::ObservedExact); assert_ne!(crate::RawTransactionVariantWriteOutcome::QuarantinedConflict, crate::RawTransactionVariantWriteOutcome::PromotedCompatibleMoreComplete); return; }