v0.1.0-pre.042
This commit is contained in:
@@ -1,5 +1,5 @@
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// file: kb-pipeline/src/lib.rs
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// version: 14
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// version: 15
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#![forbid(unsafe_code)]
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#![deny(unreachable_pub)]
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@@ -20,6 +20,7 @@ mod solana_memo_execution;
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mod solana_stateful;
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mod solana_token2022_correlation;
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mod solana_token2022_crypto_preflight;
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mod solana_token2022_devnet_execution;
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mod solana_token2022_devnet_scenarios;
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mod solana_token2022_execution_orchestration;
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mod solana_token2022_preflight;
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@@ -243,6 +244,14 @@ pub use self::solana_token2022_crypto_preflight::Token2022ProofContextRequiremen
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pub use self::solana_token2022_crypto_preflight::ZK_PROOF_CONTEXT_META_BYTES;
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/// Inspects bounded Token-2022 cryptographic proof contexts.
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pub use self::solana_token2022_crypto_preflight::inspect_token2022_cryptographic_preflight;
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/// Complete request for one Devnet Token-2022 execution.
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pub use self::solana_token2022_devnet_execution::DevnetSplToken2022ExecutionRequest;
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/// Complete result of one Devnet Token-2022 execution.
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pub use self::solana_token2022_devnet_execution::DevnetSplToken2022ExecutionSummary;
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/// Executes one Devnet Token-2022 simulation or authorized submission.
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pub use self::solana_token2022_devnet_execution::execute_devnet_spl_token2022;
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/// Simulates one Devnet Token-2022 operation after stateful preflight.
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pub use self::solana_token2022_devnet_execution::simulate_devnet_spl_token2022;
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/// Stable category of one independent Devnet validation scenario.
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pub use self::solana_token2022_devnet_scenarios::DevnetSplValidationFamily;
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/// Current implementation status of one Devnet validation scenario.
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921
kb-pipeline/src/solana_token2022_devnet_execution.rs
Normal file
921
kb-pipeline/src/solana_token2022_devnet_execution.rs
Normal file
@@ -0,0 +1,921 @@
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// file: kb-pipeline/src/solana_token2022_devnet_execution.rs
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// version: 1
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//! Devnet Token-2022 execution with stateful and canonical post-validation.
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/// Complete request for one Devnet Token-2022 execution.
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#[derive(Clone, Debug, Eq, PartialEq)]
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pub struct DevnetSplToken2022ExecutionRequest {
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/// Stable caller-provided execution identifier.
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pub intent_id: std::string::String,
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/// Endpoint role used for state, balance, blockhash, fee and hydration calls.
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pub query_role: std::string::String,
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/// Endpoint role used for simulation, submission and confirmation polling.
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pub transaction_role: std::string::String,
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/// Exact typed Token-2022 operation.
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pub operation: kb_lib::ExSplToken2022Operation,
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/// Explicitly authorizes signing and submission after successful simulation.
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pub submit: bool,
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/// Explicit operator confirmation required by the active profile.
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pub operator_confirmed: bool,
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/// Number of `getTransaction` retries after the first hydration attempt.
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pub post_validation_max_retries: u32,
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/// Replaces existing core and decode outputs for the submitted signature.
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pub force_post_validation_replay: bool,
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}
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impl crate::DevnetSplToken2022ExecutionRequest {
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/// Creates a conservative simulation-only request.
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pub fn new(
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intent_id: impl std::convert::Into<std::string::String>,
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operation: kb_lib::ExSplToken2022Operation,
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) -> Self {
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return Self {
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intent_id: intent_id.into(),
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query_role: "http_queries".to_string(),
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transaction_role: "http_transactions".to_string(),
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operation,
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submit: false,
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operator_confirmed: false,
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post_validation_max_retries: 10,
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force_post_validation_replay: false,
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};
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}
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/// Validates request-local bounds independently from one profile.
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pub fn validate(&self) -> kb_core::Result<()> {
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if self.intent_id.trim().is_empty() {
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return std::result::Result::Err(kb_core::Error::config(
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"Devnet Token-2022 execution intent id must not be empty",
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));
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}
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if self.query_role.trim().is_empty() || self.transaction_role.trim().is_empty() {
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return std::result::Result::Err(kb_core::Error::config(
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"Devnet Token-2022 execution endpoint roles must not be empty",
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));
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}
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if self.post_validation_max_retries > 20 {
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return std::result::Result::Err(kb_core::Error::config(
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"post-execution getTransaction retries must not exceed 20",
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));
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}
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return std::result::Result::Ok(());
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}
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}
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/// Complete result of one Devnet Token-2022 execution.
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#[derive(Clone, Debug, PartialEq)]
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pub struct DevnetSplToken2022ExecutionSummary {
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/// Profile used by the orchestration.
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pub profile_name: std::string::String,
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/// Exact classified cluster.
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pub cluster: kb_lib::ExApiExecutionCluster,
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/// Genesis hash returned by the selected endpoint.
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pub genesis_hash: std::string::String,
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/// Non-secret persistent wallet description.
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pub wallet: kb_wallet::WalletSummary,
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/// Wallet balance observed before planning.
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pub balance_lamports: u64,
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/// Stateful readiness report produced before plan simulation.
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pub stateful_preflight: crate::Token2022PreflightReport,
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/// Exact prepared Token plan.
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pub plan: kb_lib::ExApiPreparedExecutionPlan,
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/// Recent blockhash used by the exact transaction.
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pub latest_blockhash: kb_onchain_transport::LatestBlockhashResult,
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/// Fee estimate for the exact compiled message.
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pub fee: kb_onchain_transport::FeeForMessageResult,
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/// Exact simulation result bound to the compiled message.
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pub simulation: kb_lib::ExApiExecutionSimulationResult,
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/// Submission result when explicitly authorized.
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pub send_result: std::option::Option<kb_lib::ExApiExecutionSendResult>,
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/// Confirmation result when submitted.
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pub confirmation: std::option::Option<kb_lib::ExApiExecutionConfirmationResult>,
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/// Canonical hydration result for the exact signature.
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pub backfill: std::option::Option<crate::BackfillSummary>,
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/// Core extraction result for the exact signature.
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pub core_extraction: std::option::Option<crate::CoreExtractionSummary>,
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/// First Token decode and materialization replay.
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pub decode_replay: std::option::Option<crate::DecodeReplaySummary>,
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/// Second replay proving idempotence for the same decoder version and input.
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pub idempotence_replay: std::option::Option<crate::DecodeReplaySummary>,
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/// Exact materialized rows produced for the submitted Token transaction.
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pub materializations: std::vec::Vec<kb_store::MaterializedEventQueryRow>,
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/// Aggregated post-execution validation diagnostic.
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pub post_execution: std::option::Option<kb_lib::ExApiPostExecutionDiagnostic>,
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}
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struct PreparedToken2022Execution {
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wallet: kb_wallet::TemporaryWallet,
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unsigned: kb_lib::ExSolanaUnsignedTransaction,
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evidence: kb_lib::ExSolanaSimulationEvidence,
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summary: crate::DevnetSplToken2022ExecutionSummary,
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}
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/// Simulates one Devnet Token-2022 operation after stateful preflight.
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pub async fn simulate_devnet_spl_token2022<O>(
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http_pool: &kb_onchain_transport::HttpEndpointPool,
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profile: &kb_config::ProfileConfig,
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workspace_root: &std::path::Path,
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request: &crate::DevnetSplToken2022ExecutionRequest,
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observer: &O,
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) -> kb_core::Result<crate::DevnetSplToken2022ExecutionSummary>
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where
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O: crate::SolanaExecutionObserver,
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{
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if request.submit {
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return std::result::Result::Err(kb_core::Error::config(
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"simulate_devnet_spl_token2022 requires submit=false",
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));
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}
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let prepared =
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match prepare_execution(http_pool, profile, workspace_root, request, observer).await {
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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return std::result::Result::Ok(prepared.summary);
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}
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/// Executes one Devnet Token-2022 simulation or authorized submission.
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#[allow(clippy::too_many_arguments)]
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pub async fn execute_devnet_spl_token2022<S, O>(
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http_pool: &kb_onchain_transport::HttpEndpointPool,
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store: &S,
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profile: &kb_config::ProfileConfig,
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workspace_root: &std::path::Path,
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request: &crate::DevnetSplToken2022ExecutionRequest,
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decoders: &[std::sync::Arc<dyn kb_lib::DcApiInstructionDecoder>],
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materializers: &[std::sync::Arc<dyn kb_lib::MtApiEventMaterializer>],
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observer: &O,
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) -> kb_core::Result<crate::DevnetSplToken2022ExecutionSummary>
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where
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S: kb_store::RawTransactionStore
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+ kb_store::CoreExtractionStore
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+ kb_store::DecodePipelineStore
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+ Sync,
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O: crate::SolanaExecutionObserver,
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{
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let prepared =
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match prepare_execution(http_pool, profile, workspace_root, request, observer).await {
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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if !request.submit {
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return std::result::Result::Ok(prepared.summary);
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}
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if !prepared.summary.simulation.success {
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return std::result::Result::Err(kb_core::Error::new(
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"execution_simulation_failed",
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crate::simulation_failure_message(&prepared.summary.simulation),
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));
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}
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if let std::result::Result::Err(error) = validate_profile_wallet_signers(
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prepared.unsigned.required_signer_pubkeys(),
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prepared.summary.wallet.public_key.as_str(),
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) {
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return std::result::Result::Err(error);
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}
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let send_evaluation = match kb_lib::ExSafetyChecker
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.evaluate_send(&prepared.summary.plan, &prepared.summary.simulation)
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{
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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if send_evaluation.decision == kb_lib::ExSafetyDecision::Deny {
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return std::result::Result::Err(kb_core::Error::new(
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"execution_send_denied",
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crate::violation_message(send_evaluation.violations.as_slice()),
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));
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}
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let signed = match prepared
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.unsigned
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.sign_after_simulation(&prepared.evidence, &[prepared.wallet.as_signer()])
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{
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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if let std::result::Result::Err(error) = signed.verify_signatures() {
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return std::result::Result::Err(error);
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}
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let signature = signed.primary_signature().clone();
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let mut summary = prepared.summary;
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let mut diagnostic = kb_lib::ExApiPostExecutionDiagnostic {
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signature: signature.clone(),
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canonical_inserted: false,
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core_extracted: false,
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decode_replayed: false,
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materialized: false,
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diagnostics: std::vec::Vec::new(),
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};
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let send_config = match kb_onchain_transport::SendTransactionConfig::from_execution_config(
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&profile.execution,
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std::option::Option::Some(summary.latest_blockhash.context.slot),
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) {
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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let sent = match http_pool
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.send_transaction_for_role(
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request.transaction_role.as_str(),
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signed.transaction_base64().as_str(),
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&signature,
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&send_config,
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)
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.await
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{
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => {
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diagnostic.diagnostics.push(format!("Token-2022 submission failed: {error}"));
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
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},
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};
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summary.send_result =
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std::option::Option::Some(sent.to_execution_result(kb_lib::ExApiExecutionCluster::Devnet));
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let confirmation_config =
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match kb_onchain_transport::ConfirmTransactionConfig::from_execution_config(
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&profile.execution,
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std::option::Option::Some(summary.latest_blockhash.last_valid_block_height),
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std::option::Option::Some(summary.latest_blockhash.context.slot),
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) {
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => return std::result::Result::Err(error),
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};
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let confirmation = match http_pool
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.confirm_transaction_for_roles(
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request.transaction_role.as_str(),
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request.query_role.as_str(),
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kb_lib::ExApiExecutionCluster::Devnet,
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&signature,
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&confirmation_config,
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)
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.await
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{
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => {
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diagnostic.diagnostics.push(format!("Token-2022 confirmation failed: {error}"));
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
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},
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};
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let confirmation_status = confirmation.status;
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summary.confirmation = std::option::Option::Some(confirmation);
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if !matches!(
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confirmation_status,
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kb_lib::ExApiExecutionConfirmationStatus::Confirmed
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| kb_lib::ExApiExecutionConfirmationStatus::Finalized
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) {
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diagnostic.diagnostics.push(format!(
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"Token-2022 post-validation stopped at confirmation status {confirmation_status:?}"
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));
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
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}
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let backfill = match crate::hydrate_signature(
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http_pool,
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store,
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profile,
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request.query_role.as_str(),
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request.post_validation_max_retries,
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observer,
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&signature,
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)
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.await
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{
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std::result::Result::Ok(value) => value,
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std::result::Result::Err(error) => {
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diagnostic.diagnostics.push(format!("Token-2022 hydration failed: {error}"));
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
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},
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};
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diagnostic.canonical_inserted = crate::canonical_available(&backfill);
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summary.backfill = std::option::Option::Some(backfill);
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if !diagnostic.canonical_inserted {
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diagnostic.diagnostics.push(
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"confirmed Token-2022 transaction was unavailable for canonical hydration".to_string(),
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);
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
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}
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let extraction = match crate::execute_core_extraction(
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store,
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&crate::CoreExtractionRequest {
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source: crate::CoreExtractionSource::Signatures(std::vec![signature.0.clone()]),
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limit: 1,
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max_concurrent_extractions: 1,
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force_replay: request.force_post_validation_replay,
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},
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observer,
|
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)
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.await
|
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{
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std::result::Result::Ok(value) => value,
|
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std::result::Result::Err(error) => {
|
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diagnostic
|
||||
.diagnostics
|
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.push(format!("Token-2022 core extraction failed: {error}"));
|
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summary.post_execution = std::option::Option::Some(diagnostic);
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return std::result::Result::Ok(summary);
|
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},
|
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};
|
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diagnostic.core_extracted = extraction.failed == 0
|
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&& !extraction.cancelled
|
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&& extraction.selected == 1
|
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&& extraction.extracted.saturating_add(extraction.skipped) >= 1;
|
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summary.core_extraction = std::option::Option::Some(extraction);
|
||||
if !diagnostic.core_extracted {
|
||||
diagnostic
|
||||
.diagnostics
|
||||
.push("Token-2022 core extraction did not complete".to_string());
|
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summary.post_execution = std::option::Option::Some(diagnostic);
|
||||
return std::result::Result::Ok(summary);
|
||||
}
|
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let first_replay = match crate::replay_program(
|
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store,
|
||||
&signature,
|
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false,
|
||||
request.force_post_validation_replay,
|
||||
&[kb_program_ids::SPL_TOKEN2022_PROGRAM_ID],
|
||||
decoders,
|
||||
materializers,
|
||||
observer,
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => {
|
||||
diagnostic.diagnostics.push(format!("Token-2022 decode replay failed: {error}"));
|
||||
summary.post_execution = std::option::Option::Some(diagnostic);
|
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return std::result::Result::Ok(summary);
|
||||
},
|
||||
};
|
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diagnostic.decode_replayed = crate::decode_completed(&first_replay);
|
||||
summary.decode_replay = std::option::Option::Some(first_replay);
|
||||
let filter = match kb_store::MaterializedEventFilter::new(
|
||||
std::option::Option::None,
|
||||
std::option::Option::None,
|
||||
std::option::Option::Some(signature.0.clone()),
|
||||
64,
|
||||
) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let rows = match kb_store::DecodePipelineStore::list_materialized_events(store, &filter).await {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => {
|
||||
diagnostic
|
||||
.diagnostics
|
||||
.push(format!("Token-2022 materialization query failed: {error}"));
|
||||
summary.post_execution = std::option::Option::Some(diagnostic);
|
||||
return std::result::Result::Ok(summary);
|
||||
},
|
||||
};
|
||||
summary.materializations = rows
|
||||
.into_iter()
|
||||
.filter(|row| return row.source_decoder_name == "spl_token2022")
|
||||
.collect();
|
||||
diagnostic.materialized =
|
||||
!summary.plan.policy.post_execution_validation.materialization_required
|
||||
|| !summary.materializations.is_empty();
|
||||
let second_replay = match crate::replay_program(
|
||||
store,
|
||||
&signature,
|
||||
true,
|
||||
request.force_post_validation_replay,
|
||||
&[kb_program_ids::SPL_TOKEN2022_PROGRAM_ID],
|
||||
decoders,
|
||||
materializers,
|
||||
observer,
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => {
|
||||
diagnostic
|
||||
.diagnostics
|
||||
.push(format!("Token-2022 idempotence replay failed: {error}"));
|
||||
summary.post_execution = std::option::Option::Some(diagnostic);
|
||||
return std::result::Result::Ok(summary);
|
||||
},
|
||||
};
|
||||
let idempotent = second_replay.failed_inputs == 0
|
||||
&& second_replay.processors.iter().all(|processor| {
|
||||
return processor.failed == 0
|
||||
&& processor.materialized_outputs == 0
|
||||
&& processor.materialization_refused == 0;
|
||||
});
|
||||
summary.idempotence_replay = std::option::Option::Some(second_replay);
|
||||
if !idempotent {
|
||||
diagnostic
|
||||
.diagnostics
|
||||
.push("second Token-2022 replay did not prove a clean idempotent skip".to_string());
|
||||
} else if diagnostic.canonical_inserted
|
||||
&& diagnostic.core_extracted
|
||||
&& diagnostic.decode_replayed
|
||||
&& diagnostic.materialized
|
||||
{
|
||||
diagnostic.diagnostics.push(
|
||||
"Token-2022 completed canonical hydration, core extraction, decode, materialization and idempotence validation"
|
||||
.to_string(),
|
||||
);
|
||||
}
|
||||
summary.post_execution = std::option::Option::Some(diagnostic);
|
||||
return std::result::Result::Ok(summary);
|
||||
}
|
||||
|
||||
async fn prepare_execution<O>(
|
||||
http_pool: &kb_onchain_transport::HttpEndpointPool,
|
||||
profile: &kb_config::ProfileConfig,
|
||||
workspace_root: &std::path::Path,
|
||||
request: &crate::DevnetSplToken2022ExecutionRequest,
|
||||
observer: &O,
|
||||
) -> kb_core::Result<PreparedToken2022Execution>
|
||||
where
|
||||
O: crate::SolanaExecutionObserver,
|
||||
{
|
||||
if let std::result::Result::Err(error) = request.validate() {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
if let std::result::Result::Err(error) = validate_profile(profile, request) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
if let std::result::Result::Err(error) = crate::ensure_not_cancelled(observer, "token_validate")
|
||||
{
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
let genesis = match http_pool.get_genesis_hash_for_role(request.query_role.as_str()).await {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
if genesis.classified_cluster
|
||||
!= std::option::Option::Some(kb_lib::ExApiExecutionCluster::Devnet)
|
||||
{
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_cluster_mismatch",
|
||||
format!(
|
||||
"expected Devnet genesis hash but endpoint returned {} classified as {:?}",
|
||||
genesis.genesis_hash, genesis.classified_cluster
|
||||
),
|
||||
));
|
||||
}
|
||||
let preflight_request = match preflight_request(request) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let readiness = match crate::inspect_token2022_preflight(http_pool, &preflight_request).await {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let wallet = match crate::load_profile_wallet(profile, workspace_root).await {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let wallet_summary = wallet.summary();
|
||||
let fee_payer = kb_lib::MdPubkey(wallet_summary.public_key.clone());
|
||||
let balance = match http_pool
|
||||
.get_balance_for_role(
|
||||
request.query_role.as_str(),
|
||||
&fee_payer,
|
||||
&kb_onchain_transport::GetBalanceConfig::confirmed(),
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
if balance.lamports < profile.execution.max_fee_lamports {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_balance_insufficient",
|
||||
format!(
|
||||
"Devnet wallet balance {} is below the configured fee ceiling {}",
|
||||
balance.lamports, profile.execution.max_fee_lamports
|
||||
),
|
||||
));
|
||||
}
|
||||
let plan = match build_plan(profile, request, fee_payer.clone()) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let plan_evaluation = match kb_lib::ExSafetyChecker.evaluate_prepared_plan(&plan) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
if plan_evaluation.decision == kb_lib::ExSafetyDecision::Deny {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_plan_denied",
|
||||
crate::violation_message(plan_evaluation.violations.as_slice()),
|
||||
));
|
||||
}
|
||||
let latest_blockhash = match http_pool
|
||||
.get_latest_blockhash_for_role(
|
||||
request.query_role.as_str(),
|
||||
&kb_onchain_transport::GetLatestBlockhashConfig::confirmed(),
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let unsigned = match kb_lib::executor_solana_build_legacy_transaction(
|
||||
&plan,
|
||||
latest_blockhash.blockhash.as_str(),
|
||||
) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let fee = match http_pool
|
||||
.get_fee_for_message_for_role(
|
||||
request.query_role.as_str(),
|
||||
unsigned.message_base64().as_str(),
|
||||
&kb_onchain_transport::GetFeeForMessageConfig::new(
|
||||
kb_onchain_transport::RpcCommitmentLevel::Confirmed,
|
||||
std::option::Option::Some(latest_blockhash.context.slot),
|
||||
),
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
if fee.fee_lamports.is_none() {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_fee_unavailable",
|
||||
"getFeeForMessage returned null for the selected recent blockhash",
|
||||
));
|
||||
}
|
||||
let unsigned_base64 = match unsigned.transaction_base64() {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let simulation_config = match kb_onchain_transport::SimulateTransactionConfig::new(
|
||||
kb_onchain_transport::RpcCommitmentLevel::Confirmed,
|
||||
false,
|
||||
false,
|
||||
std::option::Option::Some(latest_blockhash.context.slot),
|
||||
true,
|
||||
std::option::Option::None,
|
||||
) {
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
crate::emit(
|
||||
observer,
|
||||
crate::SolanaExecutionProgressLevel::Info,
|
||||
"spl_token2022_simulation",
|
||||
format!("simulating exact Token-2022 message {}", unsigned.message_hash()),
|
||||
std::option::Option::None,
|
||||
);
|
||||
let simulation_rpc = match http_pool
|
||||
.simulate_transaction_for_role(
|
||||
request.transaction_role.as_str(),
|
||||
unsigned_base64.as_str(),
|
||||
&simulation_config,
|
||||
)
|
||||
.await
|
||||
{
|
||||
std::result::Result::Ok(value) => value,
|
||||
std::result::Result::Err(error) => return std::result::Result::Err(error),
|
||||
};
|
||||
let simulation = simulation_rpc.to_execution_result(
|
||||
kb_lib::ExApiExecutionCluster::Devnet,
|
||||
kb_lib::ExApiExecutionBlockhashKind::Latest,
|
||||
std::option::Option::Some(
|
||||
simulation_rpc.context.slot.saturating_sub(latest_blockhash.context.slot),
|
||||
),
|
||||
std::option::Option::None,
|
||||
std::option::Option::None,
|
||||
std::option::Option::Some(&fee),
|
||||
);
|
||||
let evidence = unsigned.bind_simulation(simulation.clone());
|
||||
let summary = crate::DevnetSplToken2022ExecutionSummary {
|
||||
profile_name: profile.name.clone(),
|
||||
cluster: kb_lib::ExApiExecutionCluster::Devnet,
|
||||
genesis_hash: genesis.genesis_hash,
|
||||
wallet: wallet_summary,
|
||||
balance_lamports: balance.lamports,
|
||||
stateful_preflight: readiness,
|
||||
plan,
|
||||
latest_blockhash,
|
||||
fee,
|
||||
simulation,
|
||||
send_result: std::option::Option::None,
|
||||
confirmation: std::option::Option::None,
|
||||
backfill: std::option::Option::None,
|
||||
core_extraction: std::option::Option::None,
|
||||
decode_replay: std::option::Option::None,
|
||||
idempotence_replay: std::option::Option::None,
|
||||
materializations: std::vec::Vec::new(),
|
||||
post_execution: std::option::Option::None,
|
||||
};
|
||||
return std::result::Result::Ok(PreparedToken2022Execution {
|
||||
wallet,
|
||||
unsigned,
|
||||
evidence,
|
||||
summary,
|
||||
});
|
||||
}
|
||||
|
||||
fn preflight_request(
|
||||
request: &crate::DevnetSplToken2022ExecutionRequest,
|
||||
) -> kb_core::Result<crate::Token2022PreflightRequest> {
|
||||
let operation = match &request.operation {
|
||||
kb_lib::ExSplToken2022Operation::Instruction { value } => value.as_ref(),
|
||||
kb_lib::ExSplToken2022Operation::Batch { instructions: _ } => {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_spl_token2022_batch_not_supported",
|
||||
"Devnet Token-2022 validation scenarios require one non-batch operation",
|
||||
));
|
||||
},
|
||||
};
|
||||
let mut requirements = std::vec::Vec::new();
|
||||
match operation {
|
||||
kb_lib::ExSplTokenSingleOperation::MintToChecked {
|
||||
mint,
|
||||
destination,
|
||||
authority,
|
||||
amount: _,
|
||||
decimals,
|
||||
} => {
|
||||
requirements.push(mint_requirement("mint", mint, std::option::Option::Some(*decimals)));
|
||||
requirements.push(account_requirement(
|
||||
"destination",
|
||||
destination,
|
||||
mint,
|
||||
std::option::Option::None,
|
||||
));
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::TransferChecked {
|
||||
source,
|
||||
mint,
|
||||
destination,
|
||||
authority,
|
||||
amount: _,
|
||||
decimals,
|
||||
} => {
|
||||
requirements.push(account_requirement(
|
||||
"source",
|
||||
source,
|
||||
mint,
|
||||
std::option::Option::Some(authority.authority.clone()),
|
||||
));
|
||||
requirements.push(mint_requirement("mint", mint, std::option::Option::Some(*decimals)));
|
||||
requirements.push(account_requirement(
|
||||
"destination",
|
||||
destination,
|
||||
mint,
|
||||
std::option::Option::None,
|
||||
));
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::ApproveChecked {
|
||||
source,
|
||||
mint,
|
||||
delegate: _,
|
||||
authority,
|
||||
amount: _,
|
||||
decimals,
|
||||
} => {
|
||||
requirements.push(account_requirement(
|
||||
"source",
|
||||
source,
|
||||
mint,
|
||||
std::option::Option::Some(authority.authority.clone()),
|
||||
));
|
||||
requirements.push(mint_requirement("mint", mint, std::option::Option::Some(*decimals)));
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::Revoke { source, authority } => {
|
||||
requirements.push(account_requirement(
|
||||
"source",
|
||||
source,
|
||||
&kb_lib::MdPubkey(std::string::String::new()),
|
||||
std::option::Option::Some(authority.authority.clone()),
|
||||
));
|
||||
requirements[0].expected_mint = std::option::Option::None;
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::BurnChecked {
|
||||
source,
|
||||
mint,
|
||||
authority,
|
||||
amount: _,
|
||||
decimals,
|
||||
} => {
|
||||
requirements.push(account_requirement(
|
||||
"source",
|
||||
source,
|
||||
mint,
|
||||
std::option::Option::Some(authority.authority.clone()),
|
||||
));
|
||||
requirements.push(mint_requirement("mint", mint, std::option::Option::Some(*decimals)));
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::FreezeAccount { account, mint, authority }
|
||||
| kb_lib::ExSplTokenSingleOperation::ThawAccount { account, mint, authority } => {
|
||||
requirements.push(account_requirement(
|
||||
"account",
|
||||
account,
|
||||
mint,
|
||||
std::option::Option::None,
|
||||
));
|
||||
requirements.push(mint_requirement("mint", mint, std::option::Option::None));
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
kb_lib::ExSplTokenSingleOperation::CloseAccount { account, destination: _, authority } => {
|
||||
requirements.push(account_requirement(
|
||||
"account",
|
||||
account,
|
||||
&kb_lib::MdPubkey(std::string::String::new()),
|
||||
std::option::Option::Some(authority.authority.clone()),
|
||||
));
|
||||
requirements[0].expected_mint = std::option::Option::None;
|
||||
if let std::result::Result::Err(error) = validate_single_authority(authority) {
|
||||
return std::result::Result::Err(error);
|
||||
}
|
||||
},
|
||||
_ => {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_spl_token2022_devnet_operation_unsupported",
|
||||
format!(
|
||||
"Token-2022 Devnet validation does not expose {}",
|
||||
operation.operation_code()
|
||||
),
|
||||
));
|
||||
},
|
||||
}
|
||||
return std::result::Result::Ok(crate::Token2022PreflightRequest {
|
||||
query_role: request.query_role.clone(),
|
||||
min_context_slot: std::option::Option::None,
|
||||
max_accounts: crate::MAX_TOKEN2022_PREFLIGHT_ACCOUNTS,
|
||||
max_total_data_bytes: crate::MAX_TOKEN2022_PREFLIGHT_TOTAL_BYTES,
|
||||
requirements,
|
||||
elgamal_registry: std::option::Option::None,
|
||||
});
|
||||
}
|
||||
|
||||
fn validate_single_authority(authority: &kb_lib::ExSplTokenAuthority) -> kb_core::Result<()> {
|
||||
if !authority.multisig_signers.is_empty() {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_spl_token2022_devnet_multisig_not_supported",
|
||||
"the Devnet validation UI currently supports one profile-wallet authority",
|
||||
));
|
||||
}
|
||||
return std::result::Result::Ok(());
|
||||
}
|
||||
|
||||
fn mint_requirement(
|
||||
role: &str,
|
||||
mint: &kb_lib::MdPubkey,
|
||||
decimals: std::option::Option<u8>,
|
||||
) -> crate::Token2022PreflightRequirement {
|
||||
return crate::Token2022PreflightRequirement {
|
||||
role: role.to_string(),
|
||||
account: mint.clone(),
|
||||
kind: kb_lib::DcToken2022StateKind::Mint,
|
||||
max_data_bytes: 65_536,
|
||||
expected_mint: std::option::Option::None,
|
||||
expected_owner: std::option::Option::None,
|
||||
expected_decimals: decimals,
|
||||
required_extensions: std::vec::Vec::new(),
|
||||
context: crate::Token2022StatefulContext::default(),
|
||||
};
|
||||
}
|
||||
|
||||
fn account_requirement(
|
||||
role: &str,
|
||||
account: &kb_lib::MdPubkey,
|
||||
mint: &kb_lib::MdPubkey,
|
||||
owner: std::option::Option<kb_lib::MdPubkey>,
|
||||
) -> crate::Token2022PreflightRequirement {
|
||||
return crate::Token2022PreflightRequirement {
|
||||
role: role.to_string(),
|
||||
account: account.clone(),
|
||||
kind: kb_lib::DcToken2022StateKind::Account,
|
||||
max_data_bytes: 65_536,
|
||||
expected_mint: std::option::Option::Some(mint.clone()),
|
||||
expected_owner: owner,
|
||||
expected_decimals: std::option::Option::None,
|
||||
required_extensions: std::vec::Vec::new(),
|
||||
context: crate::Token2022StatefulContext::default(),
|
||||
};
|
||||
}
|
||||
|
||||
fn validate_profile(
|
||||
profile: &kb_config::ProfileConfig,
|
||||
request: &crate::DevnetSplToken2022ExecutionRequest,
|
||||
) -> kb_core::Result<()> {
|
||||
if profile.wallet.cluster != "devnet" {
|
||||
return std::result::Result::Err(kb_core::Error::config(
|
||||
"Token-2022 Devnet orchestration requires a Devnet wallet profile",
|
||||
));
|
||||
}
|
||||
if !profile.wallet.temporary_wallet_enabled || !profile.wallet.temporary_wallet_persist {
|
||||
return std::result::Result::Err(kb_core::Error::config(
|
||||
"Token-2022 Devnet orchestration requires an enabled persistent temporary wallet",
|
||||
));
|
||||
}
|
||||
if !profile.execution.require_simulation {
|
||||
return std::result::Result::Err(kb_core::Error::config(
|
||||
"Token-2022 Devnet orchestration requires simulation",
|
||||
));
|
||||
}
|
||||
if request.submit && !profile.wallet.devnet_send_enabled {
|
||||
return std::result::Result::Err(kb_core::Error::config(
|
||||
"Devnet transaction submission is disabled by the wallet profile",
|
||||
));
|
||||
}
|
||||
if request.submit
|
||||
&& profile.execution.require_operator_confirmation
|
||||
&& !request.operator_confirmed
|
||||
{
|
||||
return std::result::Result::Err(kb_core::Error::config(
|
||||
"Token-2022 Devnet submission requires explicit operator confirmation",
|
||||
));
|
||||
}
|
||||
return std::result::Result::Ok(());
|
||||
}
|
||||
|
||||
fn build_plan(
|
||||
profile: &kb_config::ProfileConfig,
|
||||
request: &crate::DevnetSplToken2022ExecutionRequest,
|
||||
fee_payer: kb_lib::MdPubkey,
|
||||
) -> kb_core::Result<kb_lib::ExApiPreparedExecutionPlan> {
|
||||
let materialization_required = operation_requires_materialization(&request.operation);
|
||||
let authorized_signers = std::vec![fee_payer.clone()];
|
||||
let intent = kb_lib::ExSplToken2022ExecutionIntent {
|
||||
intent_id: request.intent_id.clone(),
|
||||
fee_payer,
|
||||
policy: kb_lib::ExApiExecutionPolicy {
|
||||
cluster: kb_lib::ExApiExecutionClusterPolicy {
|
||||
expected_cluster: kb_lib::ExApiExecutionCluster::Devnet,
|
||||
allow_mainnet: false,
|
||||
mainnet_confirmation: false,
|
||||
},
|
||||
simulation: kb_lib::ExApiExecutionSimulationPolicy::Required,
|
||||
blockhash: kb_lib::ExApiExecutionBlockhashPolicy {
|
||||
kind: kb_lib::ExApiExecutionBlockhashKind::Latest,
|
||||
max_age_slots: std::option::Option::Some(
|
||||
profile.execution.recent_blockhash_max_age_slots,
|
||||
),
|
||||
nonce_account: std::option::Option::None,
|
||||
nonce_authority: std::option::Option::None,
|
||||
},
|
||||
cost_limit: kb_lib::ExApiExecutionCostLimit {
|
||||
max_spend_lamports: std::option::Option::Some(
|
||||
profile.execution.devnet_max_spend_lamports,
|
||||
),
|
||||
max_fee_lamports: std::option::Option::Some(profile.execution.max_fee_lamports),
|
||||
max_compute_unit_price_micro_lamports: std::option::Option::Some(
|
||||
profile.execution.max_compute_unit_price_micro_lamports,
|
||||
),
|
||||
},
|
||||
authorized_signers,
|
||||
dry_run: !request.submit,
|
||||
post_execution_validation: kb_lib::ExApiPostExecutionValidationPolicy {
|
||||
canonical_insert_required: true,
|
||||
core_extraction_required: true,
|
||||
decode_replay_required: true,
|
||||
materialization_required,
|
||||
},
|
||||
},
|
||||
operation: request.operation.clone(),
|
||||
};
|
||||
return kb_lib::ExApiTypedInstructionExecutor::build_prepared_plan(
|
||||
&kb_lib::ExSplToken2022Executor,
|
||||
&intent,
|
||||
);
|
||||
}
|
||||
|
||||
fn operation_requires_materialization(_operation: &kb_lib::ExSplToken2022Operation) -> bool {
|
||||
return true;
|
||||
}
|
||||
|
||||
fn validate_profile_wallet_signers(
|
||||
required_signers: &[std::string::String],
|
||||
wallet_pubkey: &str,
|
||||
) -> kb_core::Result<()> {
|
||||
if required_signers.iter().any(|value| return value.as_str() != wallet_pubkey) {
|
||||
return std::result::Result::Err(kb_core::Error::new(
|
||||
"execution_spl_token2022_external_signer_unavailable",
|
||||
format!(
|
||||
"the Devnet Token orchestrator can sign only with profile wallet {}; required signers are {}",
|
||||
wallet_pubkey,
|
||||
required_signers.join(",")
|
||||
),
|
||||
));
|
||||
}
|
||||
return std::result::Result::Ok(());
|
||||
}
|
||||
Reference in New Issue
Block a user