1use std::collections::HashMap;
10use std::fmt;
11use std::sync::Arc;
12use std::time::Instant;
13
14use chrono::{DateTime, TimeDelta, Utc};
15use rust_decimal::Decimal;
16use serde_json::Value;
17use tracing::{error, info, warn};
18use uuid::Uuid;
19
20#[cfg(feature = "prometheus")]
21use ironflow_core::metric_names::{
22 RUN_BUDGET_EXCEEDED_TOTAL, RUN_COST_USD, RUN_DURATION_SECONDS, RUNS_ACTIVE, RUNS_TOTAL,
23};
24use ironflow_core::provider::AgentProvider;
25use ironflow_store::error::StoreError;
26use ironflow_store::models::{
27 NewRun, Run, RunActor, RunCreation, RunFilter, RunStatus, RunUpdate, StepStatus, StepUpdate,
28 TriggerKind,
29};
30use ironflow_store::store::Store;
31#[cfg(feature = "prometheus")]
32use metrics::{counter, gauge, histogram};
33
34use crate::artifact::ArtifactSink;
35use crate::budget::{BudgetConfig, month_start};
36use crate::context::WorkflowContext;
37use crate::error::EngineError;
38use crate::executor::StepResult;
39use crate::guard::{WorkflowGuardConfig, new_shared_guard_state};
40use crate::handler::{WorkflowHandler, WorkflowInfo};
41use crate::log_sender::LogSender;
42use crate::notify::{Event, EventPublisher, EventSubscriber, WorkflowEventBus};
43use crate::retry_policy::{backoff_for_retry, is_run_retryable};
44use crate::schedule::CronSchedule;
45
46#[derive(Debug, Clone)]
65pub struct WorkflowResult {
66 pub run: Run,
68 pub steps: Vec<StepResult>,
70}
71
72#[derive(Debug, Clone, Default)]
91pub struct EnqueueOptions {
92 pub max_retries: u32,
94 pub labels: HashMap<String, String>,
96 pub scheduled_at: Option<DateTime<Utc>>,
99 pub max_cost_usd: Option<Decimal>,
103 pub created_by: Option<RunActor>,
106 pub idempotency_key: Option<String>,
112}
113
114pub struct Engine {
155 store: Arc<dyn Store>,
156 provider: Arc<dyn AgentProvider>,
157 handlers: HashMap<String, Arc<dyn WorkflowHandler>>,
158 event_publisher: EventPublisher,
159 log_sender: Option<LogSender>,
160 budget: BudgetConfig,
161 artifact_sink: Option<Arc<dyn ArtifactSink>>,
162 guard_config: Option<WorkflowGuardConfig>,
163 event_bus: Option<WorkflowEventBus>,
164}
165
166fn validate_category(handler_name: &str, category: &str) -> Result<(), EngineError> {
176 let reject = |reason: &str| {
177 Err(EngineError::InvalidWorkflow(format!(
178 "handler '{handler_name}' has invalid category '{category}': {reason}"
179 )))
180 };
181
182 if category.is_empty() {
183 return reject("empty category");
184 }
185 if category.starts_with('/') {
186 return reject("leading '/'");
187 }
188 if category.ends_with('/') {
189 return reject("trailing '/'");
190 }
191 for segment in category.split('/') {
192 if segment.is_empty() {
193 return reject("empty segment (double '/')");
194 }
195 if segment.trim().is_empty() {
196 return reject("whitespace-only segment");
197 }
198 }
199 Ok(())
200}
201
202impl Engine {
203 pub fn new(store: Arc<dyn Store>, provider: Arc<dyn AgentProvider>) -> Self {
219 Self {
220 store,
221 provider,
222 handlers: HashMap::new(),
223 event_publisher: EventPublisher::new(),
224 log_sender: None,
225 budget: BudgetConfig::new(),
226 artifact_sink: None,
227 guard_config: None,
228 event_bus: None,
229 }
230 }
231
232 pub fn with_budget_config(mut self, budget: BudgetConfig) -> Self {
253 self.budget = budget;
254 self
255 }
256
257 pub fn budget_config(&self) -> &BudgetConfig {
259 &self.budget
260 }
261
262 pub fn with_guard_config(mut self, config: WorkflowGuardConfig) -> Self {
284 self.guard_config = Some(config);
285 self
286 }
287
288 pub fn guard_config(&self) -> Option<&WorkflowGuardConfig> {
290 self.guard_config.as_ref()
291 }
292
293 pub fn set_log_sender(&mut self, sender: LogSender) {
299 self.log_sender = Some(sender);
300 }
301
302 pub fn set_artifact_sink(&mut self, sink: Arc<dyn ArtifactSink>) {
320 self.artifact_sink = Some(sink);
321 }
322
323 pub fn artifact_sink(&self) -> Option<&Arc<dyn ArtifactSink>> {
325 self.artifact_sink.as_ref()
326 }
327
328 pub fn set_event_bus(&mut self, bus: WorkflowEventBus) {
345 self.event_bus = Some(bus);
346 }
347
348 pub fn event_bus(&self) -> Option<&WorkflowEventBus> {
350 self.event_bus.as_ref()
351 }
352
353 pub fn store(&self) -> &Arc<dyn Store> {
355 &self.store
356 }
357
358 pub fn provider(&self) -> &Arc<dyn AgentProvider> {
360 &self.provider
361 }
362
363 fn build_context(&self, run: &Run) -> WorkflowContext {
372 let handlers = self.handlers.clone();
373 let resolver: crate::context::HandlerResolver =
374 Arc::new(move |name: &str| handlers.get(name).cloned());
375 let mut ctx = WorkflowContext::with_handler_resolver(
376 run.id,
377 run.workflow_name.clone(),
378 self.store.clone(),
379 self.provider.clone(),
380 resolver,
381 );
382 ctx.carry_over_run_totals(run.retry_count + 1, run.cost_usd, run.duration_ms);
383 ctx.set_max_cost_usd(run.max_cost_usd);
384 if let Some(ref sender) = self.log_sender {
385 ctx.set_log_sender(sender.clone());
386 }
387 if let Some(ref sink) = self.artifact_sink {
388 ctx.set_artifact_sink(sink.clone());
389 }
390 if let Some(ref bus) = self.event_bus {
391 ctx.set_event_bus(bus.clone());
392 }
393 ctx
394 }
395
396 fn build_context_with_guard(
402 &self,
403 run: &Run,
404 handler: &dyn WorkflowHandler,
405 ) -> WorkflowContext {
406 let mut ctx = self.build_context(run);
407 let guard_config = handler.guard_config().or_else(|| self.guard_config.clone());
408 if let Some(config) = guard_config {
409 ctx.set_guard(config, new_shared_guard_state());
410 }
411 ctx
412 }
413
414 async fn check_monthly_quota(&self, workflow_name: &str) -> Result<(), EngineError> {
425 let Some(limit) = self.budget.monthly_cost_limit_usd else {
426 return Ok(());
427 };
428
429 let stats = self
430 .store
431 .get_stats(RunFilter {
432 created_after: Some(month_start(Utc::now())),
433 ..RunFilter::default()
434 })
435 .await?;
436
437 if stats.total_cost_usd < limit {
438 return Ok(());
439 }
440
441 warn!(
442 workflow = %workflow_name,
443 limit_usd = %limit,
444 spent_usd = %stats.total_cost_usd,
445 "monthly cost quota exhausted, refusing new run"
446 );
447
448 #[cfg(feature = "prometheus")]
449 counter!(
450 RUN_BUDGET_EXCEEDED_TOTAL,
451 "workflow" => workflow_name.to_string(),
452 "scope" => "monthly",
453 )
454 .increment(1);
455
456 Err(EngineError::MonthlyBudgetExceeded {
457 limit_usd: limit,
458 spent_usd: stats.total_cost_usd,
459 })
460 }
461
462 pub fn register(&mut self, handler: impl WorkflowHandler + 'static) -> Result<(), EngineError> {
506 let name = handler.name().to_string();
507 if self.handlers.contains_key(&name) {
508 return Err(EngineError::InvalidWorkflow(format!(
509 "handler '{}' already registered",
510 name
511 )));
512 }
513 if let Some(category) = handler.category() {
514 validate_category(&name, category)?;
515 }
516 self.handlers.insert(name, Arc::new(handler));
517 Ok(())
518 }
519
520 pub fn register_boxed(&mut self, handler: Box<dyn WorkflowHandler>) -> Result<(), EngineError> {
527 let name = handler.name().to_string();
528 if self.handlers.contains_key(&name) {
529 return Err(EngineError::InvalidWorkflow(format!(
530 "handler '{}' already registered",
531 name
532 )));
533 }
534 if let Some(category) = handler.category() {
535 validate_category(&name, category)?;
536 }
537 self.handlers.insert(name, Arc::from(handler));
538 Ok(())
539 }
540
541 pub fn get_handler(&self, name: &str) -> Option<&Arc<dyn WorkflowHandler>> {
543 self.handlers.get(name)
544 }
545
546 pub fn handler_names(&self) -> Vec<&str> {
548 self.handlers.keys().map(|s| s.as_str()).collect()
549 }
550
551 pub fn handler_info(&self, name: &str) -> Option<WorkflowInfo> {
553 self.handlers.get(name).map(|h| h.describe())
554 }
555
556 pub fn scheduled_handlers(&self) -> Vec<(&str, &CronSchedule)> {
580 self.handlers
581 .iter()
582 .filter_map(|(name, handler)| handler.schedule().map(|sched| (name.as_str(), sched)))
583 .collect()
584 }
585
586 pub fn subscribe(
611 &mut self,
612 subscriber: impl EventSubscriber + 'static,
613 event_types: &[&'static str],
614 ) {
615 self.event_publisher.subscribe(subscriber, event_types);
616 }
617
618 pub fn event_publisher(&self) -> &EventPublisher {
623 &self.event_publisher
624 }
625
626 #[tracing::instrument(name = "engine.run_handler", skip_all, fields(workflow = %handler_name))]
656 pub async fn run_handler(
657 &self,
658 handler_name: &str,
659 trigger: TriggerKind,
660 payload: Value,
661 ) -> Result<WorkflowResult, EngineError> {
662 let handler = self
663 .handlers
664 .get(handler_name)
665 .ok_or_else(|| {
666 EngineError::InvalidWorkflow(format!("no handler registered: {handler_name}"))
667 })?
668 .clone();
669
670 self.check_monthly_quota(handler_name).await?;
671
672 let handler_version = handler.version().map(str::to_string);
673 let max_cost_usd = self
674 .budget
675 .resolve_run_cap(None, handler.default_max_cost_usd());
676 let run = self
677 .store
678 .create_run(NewRun {
679 created_by: None,
680 workflow_name: handler_name.to_string(),
681 trigger,
682 payload,
683 max_retries: 0,
684 handler_version,
685 labels: handler.default_labels(),
686 scheduled_at: None,
687 idempotency_key: None,
688 max_cost_usd,
689 })
690 .await?
691 .into_run();
692
693 let run_id = run.id;
694 info!(run_id = %run_id, handler_version = run.handler_version.as_deref().unwrap_or(""), "run created");
695
696 self.store
697 .update_run_status(run_id, RunStatus::Running)
698 .await?;
699
700 #[cfg(feature = "prometheus")]
701 gauge!(RUNS_ACTIVE, "workflow" => handler_name.to_string()).increment(1.0);
702
703 let run_start = Instant::now();
704 let mut ctx = self.build_context_with_guard(&run, handler.as_ref());
705
706 let result = handler.execute(&mut ctx).await;
707 self.finalize_run(run_id, handler_name, result, &ctx, run_start, run.labels)
708 .await
709 }
710
711 #[tracing::instrument(name = "engine.enqueue_handler", skip_all, fields(workflow = %handler_name))]
722 pub async fn enqueue_handler(
723 &self,
724 handler_name: &str,
725 trigger: TriggerKind,
726 payload: Value,
727 max_retries: u32,
728 ) -> Result<Run, EngineError> {
729 self.enqueue_handler_with_options(
730 handler_name,
731 trigger,
732 payload,
733 EnqueueOptions {
734 max_retries,
735 ..Default::default()
736 },
737 )
738 .await
739 .map(RunCreation::into_run)
740 }
741
742 #[tracing::instrument(name = "engine.enqueue_handler_with_options", skip_all, fields(workflow = %handler_name))]
787 pub async fn enqueue_handler_with_options(
788 &self,
789 handler_name: &str,
790 trigger: TriggerKind,
791 payload: Value,
792 options: EnqueueOptions,
793 ) -> Result<RunCreation, EngineError> {
794 let EnqueueOptions {
795 max_retries,
796 labels,
797 scheduled_at,
798 max_cost_usd,
799 created_by,
800 idempotency_key,
801 } = options;
802
803 let handler = self.handlers.get(handler_name).ok_or_else(|| {
804 EngineError::InvalidWorkflow(format!("no handler registered: {handler_name}"))
805 })?;
806
807 self.check_monthly_quota(handler_name).await?;
808
809 let handler_version = handler.version().map(str::to_string);
810 let mut merged_labels = handler.default_labels();
811 merged_labels.extend(labels);
812 let resolved_cap = self
813 .budget
814 .resolve_run_cap(max_cost_usd, handler.default_max_cost_usd());
815
816 let creation = self
817 .store
818 .create_run(NewRun {
819 workflow_name: handler_name.to_string(),
820 trigger,
821 payload,
822 max_retries,
823 handler_version,
824 labels: merged_labels,
825 scheduled_at,
826 created_by,
827 idempotency_key,
828 max_cost_usd: resolved_cap,
829 })
830 .await?;
831
832 match &creation {
833 RunCreation::Created(run) => info!(
834 run_id = %run.id,
835 workflow = %handler_name,
836 max_cost_usd = ?resolved_cap,
837 "handler run enqueued"
838 ),
839 RunCreation::Existing(run) => info!(
840 run_id = %run.id,
841 workflow = %handler_name,
842 "idempotent replay, nothing enqueued"
843 ),
844 }
845
846 Ok(creation)
847 }
848
849 #[tracing::instrument(name = "engine.execute_handler_run", skip_all, fields(run_id = %run_id))]
858 pub async fn execute_handler_run(&self, run_id: Uuid) -> Result<WorkflowResult, EngineError> {
859 let run = self
860 .store
861 .get_run(run_id)
862 .await?
863 .ok_or(EngineError::Store(StoreError::RunNotFound(run_id)))?;
864
865 let handler = self
866 .handlers
867 .get(&run.workflow_name)
868 .ok_or_else(|| {
869 EngineError::InvalidWorkflow(format!(
870 "no handler registered: {}",
871 run.workflow_name
872 ))
873 })?
874 .clone();
875
876 #[cfg(feature = "prometheus")]
877 gauge!(RUNS_ACTIVE, "workflow" => run.workflow_name.clone()).increment(1.0);
878
879 let run_start = Instant::now();
880 let mut ctx = self.build_context_with_guard(&run, handler.as_ref());
881
882 if run.retry_count > 0 {
885 ctx.load_replay_steps().await?;
886 }
887
888 let result = handler.execute(&mut ctx).await;
889 self.finalize_run(
890 run_id,
891 &run.workflow_name,
892 result,
893 &ctx,
894 run_start,
895 run.labels,
896 )
897 .await
898 }
899
900 #[tracing::instrument(name = "engine.execute_run", skip_all, fields(run_id = %run_id))]
908 pub async fn execute_run(&self, run_id: Uuid) -> Result<WorkflowResult, EngineError> {
909 self.execute_handler_run(run_id).await
910 }
911
912 #[tracing::instrument(name = "engine.resume_run", skip_all, fields(run_id = %run_id))]
926 pub async fn resume_run(&self, run_id: Uuid) -> Result<WorkflowResult, EngineError> {
927 let run = self
928 .store
929 .get_run(run_id)
930 .await?
931 .ok_or(EngineError::Store(StoreError::RunNotFound(run_id)))?;
932
933 let handler = self
934 .handlers
935 .get(&run.workflow_name)
936 .ok_or_else(|| {
937 EngineError::InvalidWorkflow(format!(
938 "no handler registered: {}",
939 run.workflow_name
940 ))
941 })?
942 .clone();
943
944 info!(run_id = %run_id, workflow = %run.workflow_name, "resuming run after approval");
945
946 let run_start = Instant::now();
947 let mut ctx = self.build_context_with_guard(&run, handler.as_ref());
948 ctx.load_replay_steps().await?;
949
950 let result = handler.execute(&mut ctx).await;
951 self.finalize_run(
952 run_id,
953 &run.workflow_name,
954 result,
955 &ctx,
956 run_start,
957 run.labels,
958 )
959 .await
960 }
961
962 pub async fn fail_or_schedule_retry(
1007 &self,
1008 run_id: Uuid,
1009 error: &str,
1010 retryable: bool,
1011 cost_usd: Option<Decimal>,
1012 duration_ms: Option<u64>,
1013 ) -> Result<RunStatus, EngineError> {
1014 let run = self
1015 .store
1016 .get_run(run_id)
1017 .await?
1018 .ok_or(EngineError::Store(StoreError::RunNotFound(run_id)))?;
1019
1020 let has_attempts_left = run.retry_count < run.max_retries;
1021 let update = if retryable && has_attempts_left {
1022 let backoff = backoff_for_retry(run.retry_count);
1023 let scheduled_at = Utc::now() + TimeDelta::milliseconds(backoff.as_millis() as i64);
1024
1025 info!(
1026 run_id = %run_id,
1027 workflow = %run.workflow_name,
1028 attempt = run.retry_count + 1,
1029 max_retries = run.max_retries,
1030 backoff_secs = backoff.as_secs(),
1031 scheduled_at = %scheduled_at,
1032 "run failed, scheduling retry"
1033 );
1034
1035 RunUpdate {
1036 status: Some(RunStatus::Retrying),
1037 error: Some(error.to_string()),
1038 increment_retry: true,
1039 cost_usd,
1040 duration_ms,
1041 scheduled_at: Some(scheduled_at),
1042 ..RunUpdate::default()
1043 }
1044 } else {
1045 RunUpdate {
1046 status: Some(RunStatus::Failed),
1047 error: Some(error.to_string()),
1048 cost_usd,
1049 duration_ms,
1050 completed_at: Some(Utc::now()),
1051 ..RunUpdate::default()
1052 }
1053 };
1054
1055 let status = update.status.unwrap_or(RunStatus::Failed);
1056 self.store.update_run(run_id, update).await?;
1057 self.fail_orphaned_steps(run_id, error).await?;
1058
1059 Ok(status)
1060 }
1061
1062 pub async fn fail_orphaned_steps(
1076 &self,
1077 run_id: Uuid,
1078 error_message: &str,
1079 ) -> Result<(), EngineError> {
1080 let steps = self.store.list_steps(run_id).await?;
1081 let now = Utc::now();
1082
1083 for step in steps {
1084 if step.status.state.is_terminal() {
1085 continue;
1086 }
1087
1088 let (target_status, error) = match step.status.state {
1089 StepStatus::Running | StepStatus::AwaitingApproval => {
1090 let err = if step.error.is_some() {
1091 None
1092 } else {
1093 Some(error_message.to_string())
1094 };
1095 (StepStatus::Failed, err)
1096 }
1097 StepStatus::Pending => (StepStatus::Skipped, None),
1098 _ => continue,
1099 };
1100
1101 if let Err(e) = self
1102 .store
1103 .update_step(
1104 step.id,
1105 StepUpdate {
1106 status: Some(target_status),
1107 error,
1108 completed_at: Some(now),
1109 ..StepUpdate::default()
1110 },
1111 )
1112 .await
1113 {
1114 warn!(
1115 run_id = %run_id,
1116 step_id = %step.id,
1117 step_name = %step.name,
1118 error = %e,
1119 "failed to cleanup orphaned step"
1120 );
1121 } else {
1122 info!(
1123 run_id = %run_id,
1124 step_id = %step.id,
1125 step_name = %step.name,
1126 from = %step.status.state,
1127 to = %target_status,
1128 "cleaned up orphaned step"
1129 );
1130 }
1131 }
1132
1133 Ok(())
1134 }
1135
1136 async fn finalize_run(
1142 &self,
1143 run_id: Uuid,
1144 workflow_name: &str,
1145 result: Result<(), EngineError>,
1146 ctx: &WorkflowContext,
1147 run_start: Instant,
1148 run_labels: HashMap<String, String>,
1149 ) -> Result<WorkflowResult, EngineError> {
1150 let total_duration = ctx.carried_duration_ms() + run_start.elapsed().as_millis() as u64;
1153 let completed_at = Utc::now();
1154
1155 let final_status;
1156 let final_run;
1157
1158 match result {
1159 Ok(()) => {
1160 final_status = if ctx.has_allowed_failure() {
1161 RunStatus::Warning
1162 } else {
1163 RunStatus::Completed
1164 };
1165 final_run = self
1166 .store
1167 .update_run_returning(
1168 run_id,
1169 RunUpdate {
1170 status: Some(final_status),
1171 cost_usd: Some(ctx.total_cost_usd()),
1172 duration_ms: Some(total_duration),
1173 completed_at: Some(completed_at),
1174 ..RunUpdate::default()
1175 },
1176 )
1177 .await?;
1178
1179 info!(
1180 run_id = %run_id,
1181 status = %final_status,
1182 cost_usd = %ctx.total_cost_usd(),
1183 duration_ms = total_duration,
1184 "run completed"
1185 );
1186 }
1187 Err(EngineError::ApprovalRequired {
1188 run_id: approval_run_id,
1189 step_id,
1190 ref message,
1191 }) => {
1192 final_status = RunStatus::AwaitingApproval;
1193 final_run = self
1194 .store
1195 .update_run_returning(
1196 run_id,
1197 RunUpdate {
1198 status: Some(RunStatus::AwaitingApproval),
1199 cost_usd: Some(ctx.total_cost_usd()),
1200 duration_ms: Some(total_duration),
1201 ..RunUpdate::default()
1202 },
1203 )
1204 .await?;
1205
1206 info!(
1207 run_id = %approval_run_id,
1208 step_id = %step_id,
1209 message = %message,
1210 "run awaiting approval"
1211 );
1212 }
1213 Err(err) => {
1214 let guardrail_stop = matches!(
1218 err,
1219 EngineError::RunBudgetExceeded { .. } | EngineError::WorkflowGuardRejected(_)
1220 );
1221
1222 final_status = if guardrail_stop {
1223 if let Err(store_err) = self
1224 .store
1225 .update_run(
1226 run_id,
1227 RunUpdate {
1228 status: Some(RunStatus::Cancelled),
1229 error: Some(err.to_string()),
1230 cost_usd: Some(ctx.total_cost_usd()),
1231 duration_ms: Some(total_duration),
1232 completed_at: Some(completed_at),
1233 ..RunUpdate::default()
1234 },
1235 )
1236 .await
1237 {
1238 error!(run_id = %run_id, store_error = %store_err, "failed to persist run cancellation");
1239 }
1240 if let Err(cleanup_err) = self
1241 .fail_orphaned_steps(run_id, "run stopped: guardrail limit reached")
1242 .await
1243 {
1244 error!(run_id = %run_id, store_error = %cleanup_err, "failed to cleanup orphaned steps");
1245 }
1246 RunStatus::Cancelled
1247 } else {
1248 self.fail_or_schedule_retry(
1249 run_id,
1250 &err.to_string(),
1251 is_run_retryable(&err),
1252 Some(ctx.total_cost_usd()),
1253 Some(total_duration),
1254 )
1255 .await
1256 .unwrap_or_else(|store_err| {
1257 error!(run_id = %run_id, store_error = %store_err, "failed to persist run failure");
1258 RunStatus::Failed
1259 })
1260 };
1261
1262 if matches!(err, EngineError::RunBudgetExceeded { .. }) {
1263 self.on_run_budget_exceeded(workflow_name, run_id, &err);
1264 }
1265
1266 error!(run_id = %run_id, status = %final_status, error = %err, "run stopped");
1267
1268 self.publish_run_status_changed(
1269 workflow_name,
1270 run_id,
1271 final_status,
1272 Some(err.to_string()),
1273 ctx,
1274 total_duration,
1275 run_labels,
1276 );
1277
1278 #[cfg(feature = "prometheus")]
1279 self.emit_run_metrics(workflow_name, final_status, total_duration, ctx);
1280
1281 return Err(err);
1282 }
1283 }
1284
1285 self.publish_run_status_changed(
1286 workflow_name,
1287 run_id,
1288 final_status,
1289 None,
1290 ctx,
1291 total_duration,
1292 run_labels,
1293 );
1294
1295 #[cfg(feature = "prometheus")]
1296 self.emit_run_metrics(workflow_name, final_status, total_duration, ctx);
1297
1298 Ok(WorkflowResult {
1299 run: final_run,
1300 steps: ctx.step_results().to_vec(),
1301 })
1302 }
1303
1304 #[cfg(feature = "prometheus")]
1306 fn emit_run_metrics(
1307 &self,
1308 workflow_name: &str,
1309 status: RunStatus,
1310 duration_ms: u64,
1311 ctx: &WorkflowContext,
1312 ) {
1313 let status_str = status.to_string();
1314 let wf = workflow_name.to_string();
1315
1316 counter!(RUNS_TOTAL, "workflow" => wf.clone(), "status" => status_str.clone()).increment(1);
1317 histogram!(RUN_DURATION_SECONDS, "workflow" => wf.clone(), "status" => status_str)
1318 .record(duration_ms as f64 / 1000.0);
1319 histogram!(RUN_COST_USD, "workflow" => wf.clone()).record(
1320 ctx.total_cost_usd()
1321 .to_string()
1322 .parse::<f64>()
1323 .unwrap_or(0.0),
1324 );
1325 gauge!(RUNS_ACTIVE, "workflow" => wf).decrement(1.0);
1326 }
1327
1328 fn on_run_budget_exceeded(&self, workflow_name: &str, run_id: Uuid, err: &EngineError) {
1334 let EngineError::RunBudgetExceeded {
1335 limit_usd,
1336 spent_usd,
1337 step_budget_usd,
1338 ..
1339 } = err
1340 else {
1341 return;
1342 };
1343
1344 #[cfg(feature = "prometheus")]
1345 counter!(
1346 RUN_BUDGET_EXCEEDED_TOTAL,
1347 "workflow" => workflow_name.to_string(),
1348 "scope" => "run",
1349 )
1350 .increment(1);
1351
1352 self.event_publisher.publish(Event::RunBudgetExceeded {
1353 run_id,
1354 workflow_name: workflow_name.to_string(),
1355 limit_usd: *limit_usd,
1356 spent_usd: *spent_usd,
1357 step_budget_usd: *step_budget_usd,
1358 at: Utc::now(),
1359 });
1360 }
1361
1362 #[allow(clippy::too_many_arguments)]
1367 fn publish_run_status_changed(
1368 &self,
1369 workflow_name: &str,
1370 run_id: Uuid,
1371 to: RunStatus,
1372 error: Option<String>,
1373 ctx: &WorkflowContext,
1374 duration_ms: u64,
1375 labels: HashMap<String, String>,
1376 ) {
1377 let now = Utc::now();
1378 let cost_usd = ctx.total_cost_usd();
1379 let wf = workflow_name.to_string();
1380
1381 self.event_publisher.publish(Event::RunStatusChanged {
1382 run_id,
1383 workflow_name: wf.clone(),
1384 from: RunStatus::Running,
1385 to,
1386 error: error.clone(),
1387 cost_usd,
1388 duration_ms,
1389 labels: labels.clone(),
1390 at: now,
1391 });
1392
1393 if to == RunStatus::Failed {
1394 self.event_publisher.publish(Event::RunFailed {
1395 run_id,
1396 workflow_name: wf,
1397 error,
1398 cost_usd,
1399 duration_ms,
1400 labels,
1401 at: now,
1402 });
1403 }
1404 }
1405}
1406
1407impl fmt::Debug for Engine {
1408 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1409 f.debug_struct("Engine")
1410 .field("handlers", &self.handlers.keys().collect::<Vec<_>>())
1411 .finish_non_exhaustive()
1412 }
1413}
1414
1415#[cfg(test)]
1416mod tests {
1417 use super::*;
1418 use crate::config::ShellConfig;
1419 use crate::handler::{HandlerFuture, WorkflowHandler};
1420 use ironflow_core::providers::claude::ClaudeCodeProvider;
1421 use ironflow_core::providers::record_replay::RecordReplayProvider;
1422 use ironflow_store::memory::InMemoryStore;
1423 use ironflow_store::models::StepStatus;
1424 use serde_json::json;
1425
1426 struct EchoWorkflow;
1428
1429 impl WorkflowHandler for EchoWorkflow {
1430 fn name(&self) -> &str {
1431 "echo-workflow"
1432 }
1433
1434 fn describe(&self) -> WorkflowInfo {
1435 WorkflowInfo {
1436 description: "A simple workflow that echoes hello".to_string(),
1437 source_code: None,
1438 sub_workflows: Vec::new(),
1439 category: None,
1440 version: self.version().map(str::to_string),
1441 compatible_versions: Vec::new(),
1442 input_schema: None,
1443 default_labels: HashMap::new(),
1444 schedule: self.schedule().cloned(),
1445 default_max_cost_usd: self.default_max_cost_usd(),
1446 }
1447 }
1448
1449 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
1450 Box::pin(async move {
1451 ctx.shell("greet", ShellConfig::new("echo hello")).await?;
1452 Ok(())
1453 })
1454 }
1455 }
1456
1457 struct FailingWorkflow;
1459
1460 impl WorkflowHandler for FailingWorkflow {
1461 fn name(&self) -> &str {
1462 "failing-workflow"
1463 }
1464
1465 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
1466 Box::pin(async move {
1467 ctx.shell("fail", ShellConfig::new("exit 1")).await?;
1468 Ok(())
1469 })
1470 }
1471 }
1472
1473 fn create_test_engine() -> Engine {
1474 let store = Arc::new(InMemoryStore::new());
1475 let inner = ClaudeCodeProvider::new();
1476 let provider: Arc<dyn AgentProvider> = Arc::new(RecordReplayProvider::replay(
1477 inner,
1478 "/tmp/ironflow-fixtures",
1479 ));
1480 Engine::new(store, provider)
1481 }
1482
1483 #[test]
1484 fn engine_new_creates_instance() {
1485 let engine = create_test_engine();
1486 assert_eq!(engine.handler_names().len(), 0);
1487 }
1488
1489 #[test]
1490 fn engine_register_handler() {
1491 let mut engine = create_test_engine();
1492 let result = engine.register(EchoWorkflow);
1493 assert!(result.is_ok());
1494 assert_eq!(engine.handler_names().len(), 1);
1495 assert!(engine.handler_names().contains(&"echo-workflow"));
1496 }
1497
1498 #[test]
1499 fn engine_register_duplicate_returns_error() {
1500 let mut engine = create_test_engine();
1501 engine.register(EchoWorkflow).unwrap();
1502 let result = engine.register(EchoWorkflow);
1503 assert!(result.is_err());
1504 }
1505
1506 #[test]
1507 fn engine_get_handler_found() {
1508 let mut engine = create_test_engine();
1509 engine.register(EchoWorkflow).unwrap();
1510 let handler = engine.get_handler("echo-workflow");
1511 assert!(handler.is_some());
1512 }
1513
1514 #[test]
1515 fn engine_get_handler_not_found() {
1516 let engine = create_test_engine();
1517 let handler = engine.get_handler("nonexistent");
1518 assert!(handler.is_none());
1519 }
1520
1521 #[test]
1522 fn engine_handler_names_lists_all() {
1523 let mut engine = create_test_engine();
1524 engine.register(EchoWorkflow).unwrap();
1525 engine.register(FailingWorkflow).unwrap();
1526 let names = engine.handler_names();
1527 assert_eq!(names.len(), 2);
1528 assert!(names.contains(&"echo-workflow"));
1529 assert!(names.contains(&"failing-workflow"));
1530 }
1531
1532 #[test]
1533 fn engine_handler_info_returns_description() {
1534 let mut engine = create_test_engine();
1535 engine.register(EchoWorkflow).unwrap();
1536 let info = engine.handler_info("echo-workflow");
1537 assert!(info.is_some());
1538 let info = info.unwrap();
1539 assert_eq!(info.description, "A simple workflow that echoes hello");
1540 }
1541
1542 struct CategorizedWorkflow;
1543
1544 impl WorkflowHandler for CategorizedWorkflow {
1545 fn name(&self) -> &str {
1546 "categorized"
1547 }
1548 fn category(&self) -> Option<&str> {
1549 Some("data/etl")
1550 }
1551 fn execute<'a>(
1552 &'a self,
1553 _ctx: &'a mut WorkflowContext,
1554 ) -> crate::handler::HandlerFuture<'a> {
1555 Box::pin(async move { Ok(()) })
1556 }
1557 }
1558
1559 #[test]
1560 fn engine_default_describe_propagates_category() {
1561 let mut engine = create_test_engine();
1562 engine.register(CategorizedWorkflow).unwrap();
1563 let info = engine.handler_info("categorized").unwrap();
1564 assert_eq!(info.category.as_deref(), Some("data/etl"));
1565 }
1566
1567 #[test]
1568 fn engine_default_describe_without_category() {
1569 let mut engine = create_test_engine();
1570 engine.register(EchoWorkflow).unwrap();
1571 let info = engine.handler_info("echo-workflow").unwrap();
1572 assert!(info.category.is_none());
1573 }
1574
1575 struct ScheduledWorkflow {
1580 schedule: CronSchedule,
1581 }
1582
1583 impl ScheduledWorkflow {
1584 fn new() -> Self {
1585 Self {
1586 schedule: CronSchedule::new("0 0 * * * *").unwrap(),
1587 }
1588 }
1589 }
1590
1591 impl WorkflowHandler for ScheduledWorkflow {
1592 fn name(&self) -> &str {
1593 "scheduled"
1594 }
1595 fn schedule(&self) -> Option<&CronSchedule> {
1596 Some(&self.schedule)
1597 }
1598 fn execute<'a>(
1599 &'a self,
1600 _ctx: &'a mut WorkflowContext,
1601 ) -> crate::handler::HandlerFuture<'a> {
1602 Box::pin(async move { Ok(()) })
1603 }
1604 }
1605
1606 #[test]
1607 fn engine_default_describe_propagates_schedule() {
1608 let mut engine = create_test_engine();
1609 engine.register(ScheduledWorkflow::new()).unwrap();
1610 let info = engine.handler_info("scheduled").unwrap();
1611 assert_eq!(
1612 info.schedule.as_ref().map(|s| s.as_str()),
1613 Some("0 0 * * * *")
1614 );
1615 }
1616
1617 #[test]
1618 fn engine_default_describe_without_schedule() {
1619 let mut engine = create_test_engine();
1620 engine.register(EchoWorkflow).unwrap();
1621 let info = engine.handler_info("echo-workflow").unwrap();
1622 assert!(info.schedule.is_none());
1623 }
1624
1625 #[test]
1626 fn scheduled_handlers_returns_only_scheduled() {
1627 let mut engine = create_test_engine();
1628 engine.register(EchoWorkflow).unwrap();
1629 engine.register(ScheduledWorkflow::new()).unwrap();
1630 engine.register(FailingWorkflow).unwrap();
1631
1632 let scheduled = engine.scheduled_handlers();
1633 assert_eq!(scheduled.len(), 1);
1634 assert_eq!(scheduled[0].0, "scheduled");
1635 assert_eq!(scheduled[0].1.as_str(), "0 0 * * * *");
1636 }
1637
1638 #[test]
1639 fn scheduled_handlers_empty_when_none_scheduled() {
1640 let mut engine = create_test_engine();
1641 engine.register(EchoWorkflow).unwrap();
1642 engine.register(FailingWorkflow).unwrap();
1643
1644 let scheduled = engine.scheduled_handlers();
1645 assert!(scheduled.is_empty());
1646 }
1647
1648 struct BadCategoryWorkflow(&'static str);
1649
1650 impl WorkflowHandler for BadCategoryWorkflow {
1651 fn name(&self) -> &str {
1652 "bad-category"
1653 }
1654 fn category(&self) -> Option<&str> {
1655 Some(self.0)
1656 }
1657 fn execute<'a>(
1658 &'a self,
1659 _ctx: &'a mut WorkflowContext,
1660 ) -> crate::handler::HandlerFuture<'a> {
1661 Box::pin(async move { Ok(()) })
1662 }
1663 }
1664
1665 #[test]
1666 fn engine_register_rejects_empty_category() {
1667 let mut engine = create_test_engine();
1668 let err = engine.register(BadCategoryWorkflow("")).unwrap_err();
1669 match err {
1670 EngineError::InvalidWorkflow(msg) => assert!(msg.contains("empty category")),
1671 other => panic!("expected InvalidWorkflow, got {other:?}"),
1672 }
1673 }
1674
1675 #[test]
1676 fn engine_register_rejects_leading_slash_category() {
1677 let mut engine = create_test_engine();
1678 let err = engine
1679 .register(BadCategoryWorkflow("/data/etl"))
1680 .unwrap_err();
1681 match err {
1682 EngineError::InvalidWorkflow(msg) => assert!(msg.contains("leading '/'")),
1683 other => panic!("expected InvalidWorkflow, got {other:?}"),
1684 }
1685 }
1686
1687 #[test]
1688 fn engine_register_rejects_trailing_slash_category() {
1689 let mut engine = create_test_engine();
1690 let err = engine
1691 .register(BadCategoryWorkflow("data/etl/"))
1692 .unwrap_err();
1693 match err {
1694 EngineError::InvalidWorkflow(msg) => assert!(msg.contains("trailing '/'")),
1695 other => panic!("expected InvalidWorkflow, got {other:?}"),
1696 }
1697 }
1698
1699 #[test]
1700 fn engine_register_rejects_double_slash_category() {
1701 let mut engine = create_test_engine();
1702 let err = engine
1703 .register(BadCategoryWorkflow("data//etl"))
1704 .unwrap_err();
1705 match err {
1706 EngineError::InvalidWorkflow(msg) => assert!(msg.contains("empty segment")),
1707 other => panic!("expected InvalidWorkflow, got {other:?}"),
1708 }
1709 }
1710
1711 #[test]
1712 fn engine_register_rejects_whitespace_only_segment_category() {
1713 let mut engine = create_test_engine();
1714 let err = engine
1715 .register(BadCategoryWorkflow("data/ /etl"))
1716 .unwrap_err();
1717 match err {
1718 EngineError::InvalidWorkflow(msg) => assert!(msg.contains("whitespace-only segment")),
1719 other => panic!("expected InvalidWorkflow, got {other:?}"),
1720 }
1721 }
1722
1723 #[test]
1724 fn engine_register_accepts_valid_nested_category() {
1725 let mut engine = create_test_engine();
1726 assert!(engine.register(CategorizedWorkflow).is_ok());
1727 }
1728
1729 #[tokio::test]
1730 async fn engine_unknown_workflow_returns_error() {
1731 let engine = create_test_engine();
1732 let result = engine
1733 .run_handler("unknown", TriggerKind::Manual, json!({}))
1734 .await;
1735 assert!(result.is_err());
1736 match result {
1737 Err(EngineError::InvalidWorkflow(msg)) => {
1738 assert!(msg.contains("no handler registered"));
1739 }
1740 _ => panic!("expected InvalidWorkflow error"),
1741 }
1742 }
1743
1744 #[tokio::test]
1745 async fn engine_enqueue_handler_creates_pending_run() {
1746 let mut engine = create_test_engine();
1747 engine.register(EchoWorkflow).unwrap();
1748
1749 let run = engine
1750 .enqueue_handler("echo-workflow", TriggerKind::Manual, json!({}), 0)
1751 .await
1752 .unwrap();
1753 assert_eq!(run.status.state, RunStatus::Pending);
1754 assert_eq!(run.workflow_name, "echo-workflow");
1755 }
1756
1757 #[tokio::test]
1758 async fn enqueue_handler_leaves_the_run_unattributed() {
1759 let mut engine = create_test_engine();
1760 engine.register(EchoWorkflow).unwrap();
1761
1762 let run = engine
1763 .enqueue_handler("echo-workflow", TriggerKind::Manual, json!({}), 0)
1764 .await
1765 .unwrap();
1766
1767 assert!(run.created_by.is_none());
1768 }
1769
1770 #[tokio::test]
1771 async fn enqueue_handler_with_options_records_the_author() {
1772 let mut engine = create_test_engine();
1773 engine.register(EchoWorkflow).unwrap();
1774 let actor = RunActor::User {
1775 user_id: Uuid::now_v7(),
1776 };
1777
1778 let run = engine
1779 .enqueue_handler_with_options(
1780 "echo-workflow",
1781 TriggerKind::Api,
1782 json!({}),
1783 EnqueueOptions {
1784 created_by: Some(actor.clone()),
1785 ..Default::default()
1786 },
1787 )
1788 .await
1789 .unwrap()
1790 .into_run();
1791
1792 assert_eq!(run.created_by, Some(actor));
1793 }
1794
1795 #[tokio::test]
1796 async fn enqueue_handler_with_options_accepts_no_author() {
1797 let mut engine = create_test_engine();
1798 engine.register(EchoWorkflow).unwrap();
1799
1800 let run = engine
1801 .enqueue_handler_with_options(
1802 "echo-workflow",
1803 TriggerKind::Cron {
1804 schedule: "0 * * * * *".to_string(),
1805 },
1806 json!({}),
1807 EnqueueOptions::default(),
1808 )
1809 .await
1810 .unwrap()
1811 .into_run();
1812
1813 assert!(run.created_by.is_none());
1814 }
1815
1816 #[tokio::test]
1817 async fn run_handler_leaves_the_run_unattributed() {
1818 let mut engine = create_test_engine();
1819 engine.register(EchoWorkflow).unwrap();
1820
1821 let run = engine
1822 .run_handler("echo-workflow", TriggerKind::Manual, json!({}))
1823 .await
1824 .unwrap()
1825 .run;
1826
1827 assert!(run.created_by.is_none());
1828 }
1829
1830 #[tokio::test]
1831 async fn engine_register_boxed() {
1832 let mut engine = create_test_engine();
1833 let handler: Box<dyn WorkflowHandler> = Box::new(EchoWorkflow);
1834 let result = engine.register_boxed(handler);
1835 assert!(result.is_ok());
1836 assert_eq!(engine.handler_names().len(), 1);
1837 }
1838
1839 #[tokio::test]
1840 async fn engine_store_and_provider_accessors() {
1841 let store = Arc::new(InMemoryStore::new());
1842 let inner = ClaudeCodeProvider::new();
1843 let provider: Arc<dyn AgentProvider> = Arc::new(RecordReplayProvider::replay(
1844 inner,
1845 "/tmp/ironflow-fixtures",
1846 ));
1847 let engine = Engine::new(store.clone(), provider.clone());
1848
1849 let _ = engine.store();
1851 let _ = engine.provider();
1852 }
1853
1854 use crate::operation::{Operation, OperationContext};
1859 use async_trait::async_trait;
1860 use ironflow_core::error::OperationError;
1861 use ironflow_store::models::StepKind;
1862
1863 struct FakeGitlabOp {
1864 project_id: u64,
1865 title: String,
1866 }
1867
1868 #[async_trait]
1869 impl Operation for FakeGitlabOp {
1870 fn kind(&self) -> &str {
1871 "gitlab"
1872 }
1873
1874 async fn execute(&self, _ctx: &OperationContext) -> Result<Value, OperationError> {
1875 Ok(json!({
1876 "issue_id": 42,
1877 "project_id": self.project_id,
1878 "title": self.title,
1879 }))
1880 }
1881
1882 fn input(&self) -> Option<Value> {
1883 Some(json!({
1884 "project_id": self.project_id,
1885 "title": self.title,
1886 }))
1887 }
1888 }
1889
1890 struct FailingOp;
1891
1892 #[async_trait]
1893 impl Operation for FailingOp {
1894 fn kind(&self) -> &str {
1895 "broken-service"
1896 }
1897
1898 async fn execute(&self, _ctx: &OperationContext) -> Result<Value, OperationError> {
1899 Err(OperationError::Http {
1900 status: None,
1901 message: "service unavailable".to_string(),
1902 })
1903 }
1904 }
1905
1906 struct OperationWorkflow;
1907
1908 impl WorkflowHandler for OperationWorkflow {
1909 fn name(&self) -> &str {
1910 "operation-workflow"
1911 }
1912
1913 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
1914 Box::pin(async move {
1915 let op = FakeGitlabOp {
1916 project_id: 123,
1917 title: "Bug report".to_string(),
1918 };
1919 ctx.operation("create-issue", &op).await?;
1920 Ok(())
1921 })
1922 }
1923 }
1924
1925 struct FailingOperationWorkflow;
1926
1927 impl WorkflowHandler for FailingOperationWorkflow {
1928 fn name(&self) -> &str {
1929 "failing-operation-workflow"
1930 }
1931
1932 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
1933 Box::pin(async move {
1934 ctx.operation("broken-call", &FailingOp).await?;
1935 Ok(())
1936 })
1937 }
1938 }
1939
1940 struct MixedWorkflow;
1941
1942 impl WorkflowHandler for MixedWorkflow {
1943 fn name(&self) -> &str {
1944 "mixed-workflow"
1945 }
1946
1947 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
1948 Box::pin(async move {
1949 ctx.shell("build", ShellConfig::new("echo built")).await?;
1950 let op = FakeGitlabOp {
1951 project_id: 456,
1952 title: "Deploy done".to_string(),
1953 };
1954 let result = ctx.operation("notify-gitlab", &op).await?;
1955 assert_eq!(result.output["issue_id"], 42);
1956 Ok(())
1957 })
1958 }
1959 }
1960
1961 #[tokio::test]
1962 async fn operation_step_happy_path() {
1963 let mut engine = create_test_engine();
1964 engine.register(OperationWorkflow).unwrap();
1965
1966 let run = engine
1967 .run_handler("operation-workflow", TriggerKind::Manual, json!({}))
1968 .await
1969 .unwrap()
1970 .run;
1971
1972 assert_eq!(run.status.state, RunStatus::Completed);
1973
1974 let steps = engine.store().list_steps(run.id).await.unwrap();
1975
1976 assert_eq!(steps.len(), 1);
1977 assert_eq!(steps[0].name, "create-issue");
1978 assert_eq!(steps[0].kind, StepKind::Custom("gitlab".to_string()));
1979 assert_eq!(
1980 steps[0].status.state,
1981 ironflow_store::models::StepStatus::Completed
1982 );
1983
1984 let output = steps[0].output.as_ref().unwrap();
1985 assert_eq!(output["issue_id"], 42);
1986 assert_eq!(output["project_id"], 123);
1987
1988 let input = steps[0].input.as_ref().unwrap();
1989 assert_eq!(input["project_id"], 123);
1990 assert_eq!(input["title"], "Bug report");
1991 }
1992
1993 #[tokio::test]
1994 async fn operation_step_failure_marks_run_failed() {
1995 let mut engine = create_test_engine();
1996 engine.register(FailingOperationWorkflow).unwrap();
1997
1998 let result = engine
1999 .run_handler("failing-operation-workflow", TriggerKind::Manual, json!({}))
2000 .await;
2001
2002 assert!(result.is_err());
2003 }
2004
2005 #[tokio::test]
2006 async fn operation_mixed_with_shell_steps() {
2007 let mut engine = create_test_engine();
2008 engine.register(MixedWorkflow).unwrap();
2009
2010 let run = engine
2011 .run_handler("mixed-workflow", TriggerKind::Manual, json!({}))
2012 .await
2013 .unwrap()
2014 .run;
2015
2016 assert_eq!(run.status.state, RunStatus::Completed);
2017
2018 let steps = engine.store().list_steps(run.id).await.unwrap();
2019
2020 assert_eq!(steps.len(), 2);
2021 assert_eq!(steps[0].kind, StepKind::Shell);
2022 assert_eq!(steps[1].kind, StepKind::Custom("gitlab".to_string()));
2023 assert_eq!(steps[0].position, 0);
2024 assert_eq!(steps[1].position, 1);
2025 }
2026
2027 use crate::config::ApprovalConfig;
2032
2033 struct SingleApprovalWorkflow;
2034
2035 impl WorkflowHandler for SingleApprovalWorkflow {
2036 fn name(&self) -> &str {
2037 "single-approval"
2038 }
2039
2040 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
2041 Box::pin(async move {
2042 ctx.shell("build", ShellConfig::new("echo built")).await?;
2043 ctx.approval("gate", ApprovalConfig::new("OK?")).await?;
2044 ctx.shell("deploy", ShellConfig::new("echo deployed"))
2045 .await?;
2046 Ok(())
2047 })
2048 }
2049 }
2050
2051 struct DoubleApprovalWorkflow;
2052
2053 impl WorkflowHandler for DoubleApprovalWorkflow {
2054 fn name(&self) -> &str {
2055 "double-approval"
2056 }
2057
2058 fn execute<'a>(&'a self, ctx: &'a mut WorkflowContext) -> HandlerFuture<'a> {
2059 Box::pin(async move {
2060 ctx.shell("build", ShellConfig::new("echo built")).await?;
2061 ctx.approval("staging-gate", ApprovalConfig::new("Deploy staging?"))
2062 .await?;
2063 ctx.shell("deploy-staging", ShellConfig::new("echo staging"))
2064 .await?;
2065 ctx.approval("prod-gate", ApprovalConfig::new("Deploy prod?"))
2066 .await?;
2067 ctx.shell("deploy-prod", ShellConfig::new("echo prod"))
2068 .await?;
2069 Ok(())
2070 })
2071 }
2072 }
2073
2074 #[tokio::test]
2075 async fn approval_pauses_run() {
2076 let mut engine = create_test_engine();
2077 engine.register(SingleApprovalWorkflow).unwrap();
2078
2079 let run = engine
2080 .run_handler("single-approval", TriggerKind::Manual, json!({}))
2081 .await
2082 .unwrap()
2083 .run;
2084
2085 assert_eq!(run.status.state, RunStatus::AwaitingApproval);
2086
2087 let steps = engine.store().list_steps(run.id).await.unwrap();
2088 assert_eq!(steps.len(), 2); assert_eq!(steps[0].kind, StepKind::Shell);
2090 assert_eq!(steps[0].status.state, StepStatus::Completed);
2091 assert_eq!(steps[1].kind, StepKind::Approval);
2092 assert_eq!(steps[1].status.state, StepStatus::AwaitingApproval);
2093 }
2094
2095 #[tokio::test]
2096 async fn approval_resume_completes_run() {
2097 let mut engine = create_test_engine();
2098 engine.register(SingleApprovalWorkflow).unwrap();
2099
2100 let run = engine
2102 .run_handler("single-approval", TriggerKind::Manual, json!({}))
2103 .await
2104 .unwrap()
2105 .run;
2106 assert_eq!(run.status.state, RunStatus::AwaitingApproval);
2107
2108 engine
2110 .store()
2111 .update_run_status(run.id, RunStatus::Running)
2112 .await
2113 .unwrap();
2114
2115 let resumed = engine.resume_run(run.id).await.unwrap().run;
2117 assert_eq!(resumed.status.state, RunStatus::Completed);
2118
2119 let steps = engine.store().list_steps(run.id).await.unwrap();
2120 assert_eq!(steps.len(), 3); assert_eq!(steps[0].name, "build");
2122 assert_eq!(steps[0].status.state, StepStatus::Completed);
2123 assert_eq!(steps[1].name, "gate");
2124 assert_eq!(steps[1].kind, StepKind::Approval);
2125 assert_eq!(steps[1].status.state, StepStatus::Completed);
2126 assert_eq!(steps[2].name, "deploy");
2127 assert_eq!(steps[2].status.state, StepStatus::Completed);
2128 }
2129
2130 #[tokio::test]
2131 async fn double_approval_two_resumes() {
2132 let mut engine = create_test_engine();
2133 engine.register(DoubleApprovalWorkflow).unwrap();
2134
2135 let run = engine
2137 .run_handler("double-approval", TriggerKind::Manual, json!({}))
2138 .await
2139 .unwrap()
2140 .run;
2141 assert_eq!(run.status.state, RunStatus::AwaitingApproval);
2142
2143 let steps = engine.store().list_steps(run.id).await.unwrap();
2144 assert_eq!(steps.len(), 2); engine
2148 .store()
2149 .update_run_status(run.id, RunStatus::Running)
2150 .await
2151 .unwrap();
2152
2153 let resumed = engine.resume_run(run.id).await.unwrap().run;
2154 assert_eq!(resumed.status.state, RunStatus::AwaitingApproval);
2155
2156 let steps = engine.store().list_steps(run.id).await.unwrap();
2157 assert_eq!(steps.len(), 4); engine
2161 .store()
2162 .update_run_status(run.id, RunStatus::Running)
2163 .await
2164 .unwrap();
2165
2166 let final_run = engine.resume_run(run.id).await.unwrap().run;
2167 assert_eq!(final_run.status.state, RunStatus::Completed);
2168
2169 let steps = engine.store().list_steps(run.id).await.unwrap();
2170 assert_eq!(steps.len(), 5);
2171 assert_eq!(steps[0].name, "build");
2172 assert_eq!(steps[1].name, "staging-gate");
2173 assert_eq!(steps[2].name, "deploy-staging");
2174 assert_eq!(steps[3].name, "prod-gate");
2175 assert_eq!(steps[4].name, "deploy-prod");
2176
2177 for step in &steps {
2178 assert_eq!(step.status.state, StepStatus::Completed);
2179 }
2180 }
2181
2182 use ironflow_store::models::{NewStep, StepUpdate, step_trace_id};
2187
2188 async fn create_step_with_status(
2189 store: &Arc<dyn Store>,
2190 run_id: Uuid,
2191 name: &str,
2192 position: u32,
2193 status: StepStatus,
2194 ) -> ironflow_store::models::Step {
2195 let step = store
2196 .create_step(NewStep {
2197 run_id,
2198 trace_id: step_trace_id(run_id, name, position),
2199 name: name.to_string(),
2200 kind: StepKind::Shell,
2201 position,
2202 input: None,
2203 is_error_handler: false,
2204 })
2205 .await
2206 .unwrap();
2207
2208 match status {
2209 StepStatus::Pending => {}
2210 StepStatus::Running => {
2211 store
2212 .update_step(
2213 step.id,
2214 StepUpdate {
2215 status: Some(StepStatus::Running),
2216 ..StepUpdate::default()
2217 },
2218 )
2219 .await
2220 .unwrap();
2221 }
2222 StepStatus::Completed => {
2223 store
2224 .update_step(
2225 step.id,
2226 StepUpdate {
2227 status: Some(StepStatus::Running),
2228 ..StepUpdate::default()
2229 },
2230 )
2231 .await
2232 .unwrap();
2233 store
2234 .update_step(
2235 step.id,
2236 StepUpdate {
2237 status: Some(StepStatus::Completed),
2238 ..StepUpdate::default()
2239 },
2240 )
2241 .await
2242 .unwrap();
2243 }
2244 StepStatus::AwaitingApproval => {
2245 store
2246 .update_step(
2247 step.id,
2248 StepUpdate {
2249 status: Some(StepStatus::Running),
2250 ..StepUpdate::default()
2251 },
2252 )
2253 .await
2254 .unwrap();
2255 store
2256 .update_step(
2257 step.id,
2258 StepUpdate {
2259 status: Some(StepStatus::AwaitingApproval),
2260 ..StepUpdate::default()
2261 },
2262 )
2263 .await
2264 .unwrap();
2265 }
2266 _ => panic!("unsupported status for test helper: {status}"),
2267 }
2268
2269 store.get_step(step.id).await.unwrap().unwrap()
2270 }
2271
2272 #[tokio::test]
2273 async fn fail_orphaned_steps_marks_running_as_failed() {
2274 let engine = create_test_engine();
2275 let run = engine
2276 .store()
2277 .create_run(NewRun {
2278 created_by: None,
2279 workflow_name: "test".to_string(),
2280 trigger: TriggerKind::Manual,
2281 payload: json!({}),
2282 max_retries: 0,
2283 handler_version: None,
2284 labels: HashMap::new(),
2285 scheduled_at: None,
2286 idempotency_key: None,
2287 max_cost_usd: None,
2288 })
2289 .await
2290 .unwrap()
2291 .into_run();
2292
2293 let step = create_step_with_status(
2294 engine.store(),
2295 run.id,
2296 "running-step",
2297 0,
2298 StepStatus::Running,
2299 )
2300 .await;
2301
2302 engine
2303 .fail_orphaned_steps(run.id, "parent run timed out")
2304 .await
2305 .unwrap();
2306
2307 let updated = engine.store().get_step(step.id).await.unwrap().unwrap();
2308 assert_eq!(updated.status.state, StepStatus::Failed);
2309 assert_eq!(updated.error.as_deref(), Some("parent run timed out"));
2310 assert!(updated.completed_at.is_some());
2311 }
2312
2313 #[tokio::test]
2314 async fn fail_orphaned_steps_marks_pending_as_skipped() {
2315 let engine = create_test_engine();
2316 let run = engine
2317 .store()
2318 .create_run(NewRun {
2319 created_by: None,
2320 workflow_name: "test".to_string(),
2321 trigger: TriggerKind::Manual,
2322 payload: json!({}),
2323 max_retries: 0,
2324 handler_version: None,
2325 labels: HashMap::new(),
2326 scheduled_at: None,
2327 idempotency_key: None,
2328 max_cost_usd: None,
2329 })
2330 .await
2331 .unwrap()
2332 .into_run();
2333
2334 let step = create_step_with_status(
2335 engine.store(),
2336 run.id,
2337 "pending-step",
2338 0,
2339 StepStatus::Pending,
2340 )
2341 .await;
2342
2343 engine
2344 .fail_orphaned_steps(run.id, "parent run timed out")
2345 .await
2346 .unwrap();
2347
2348 let updated = engine.store().get_step(step.id).await.unwrap().unwrap();
2349 assert_eq!(updated.status.state, StepStatus::Skipped);
2350 assert!(updated.error.is_none());
2351 assert!(updated.completed_at.is_some());
2352 }
2353
2354 #[tokio::test]
2355 async fn fail_orphaned_steps_marks_awaiting_approval_as_failed() {
2356 let engine = create_test_engine();
2357 let run = engine
2358 .store()
2359 .create_run(NewRun {
2360 created_by: None,
2361 workflow_name: "test".to_string(),
2362 trigger: TriggerKind::Manual,
2363 payload: json!({}),
2364 max_retries: 0,
2365 handler_version: None,
2366 labels: HashMap::new(),
2367 scheduled_at: None,
2368 idempotency_key: None,
2369 max_cost_usd: None,
2370 })
2371 .await
2372 .unwrap()
2373 .into_run();
2374
2375 let step = create_step_with_status(
2376 engine.store(),
2377 run.id,
2378 "approval-step",
2379 0,
2380 StepStatus::AwaitingApproval,
2381 )
2382 .await;
2383
2384 engine
2385 .fail_orphaned_steps(run.id, "parent run timed out")
2386 .await
2387 .unwrap();
2388
2389 let updated = engine.store().get_step(step.id).await.unwrap().unwrap();
2390 assert_eq!(updated.status.state, StepStatus::Failed);
2391 assert_eq!(updated.error.as_deref(), Some("parent run timed out"));
2392 assert!(updated.completed_at.is_some());
2393 }
2394
2395 #[tokio::test]
2396 async fn fail_orphaned_steps_skips_terminal_steps() {
2397 let engine = create_test_engine();
2398 let run = engine
2399 .store()
2400 .create_run(NewRun {
2401 created_by: None,
2402 workflow_name: "test".to_string(),
2403 trigger: TriggerKind::Manual,
2404 payload: json!({}),
2405 max_retries: 0,
2406 handler_version: None,
2407 labels: HashMap::new(),
2408 scheduled_at: None,
2409 idempotency_key: None,
2410 max_cost_usd: None,
2411 })
2412 .await
2413 .unwrap()
2414 .into_run();
2415
2416 let completed_step =
2417 create_step_with_status(engine.store(), run.id, "done", 0, StepStatus::Completed).await;
2418 let running_step =
2419 create_step_with_status(engine.store(), run.id, "in-flight", 1, StepStatus::Running)
2420 .await;
2421
2422 engine
2423 .fail_orphaned_steps(run.id, "parent run timed out")
2424 .await
2425 .unwrap();
2426
2427 let completed = engine
2428 .store()
2429 .get_step(completed_step.id)
2430 .await
2431 .unwrap()
2432 .unwrap();
2433 assert_eq!(completed.status.state, StepStatus::Completed);
2434
2435 let failed = engine
2436 .store()
2437 .get_step(running_step.id)
2438 .await
2439 .unwrap()
2440 .unwrap();
2441 assert_eq!(failed.status.state, StepStatus::Failed);
2442 }
2443
2444 #[tokio::test]
2445 async fn fail_orphaned_steps_mixed_states() {
2446 let engine = create_test_engine();
2447 let run = engine
2448 .store()
2449 .create_run(NewRun {
2450 created_by: None,
2451 workflow_name: "test".to_string(),
2452 trigger: TriggerKind::Manual,
2453 payload: json!({}),
2454 max_retries: 0,
2455 handler_version: None,
2456 labels: HashMap::new(),
2457 scheduled_at: None,
2458 idempotency_key: None,
2459 max_cost_usd: None,
2460 })
2461 .await
2462 .unwrap()
2463 .into_run();
2464
2465 let s_completed =
2466 create_step_with_status(engine.store(), run.id, "step-1", 0, StepStatus::Completed)
2467 .await;
2468 let s_running =
2469 create_step_with_status(engine.store(), run.id, "step-2", 1, StepStatus::Running).await;
2470 let s_pending =
2471 create_step_with_status(engine.store(), run.id, "step-3", 2, StepStatus::Pending).await;
2472
2473 engine.fail_orphaned_steps(run.id, "timeout").await.unwrap();
2474
2475 let r_completed = engine
2476 .store()
2477 .get_step(s_completed.id)
2478 .await
2479 .unwrap()
2480 .unwrap();
2481 assert_eq!(r_completed.status.state, StepStatus::Completed);
2482
2483 let r_running = engine
2484 .store()
2485 .get_step(s_running.id)
2486 .await
2487 .unwrap()
2488 .unwrap();
2489 assert_eq!(r_running.status.state, StepStatus::Failed);
2490 assert_eq!(r_running.error.as_deref(), Some("timeout"));
2491
2492 let r_pending = engine
2493 .store()
2494 .get_step(s_pending.id)
2495 .await
2496 .unwrap()
2497 .unwrap();
2498 assert_eq!(r_pending.status.state, StepStatus::Skipped);
2499 assert!(r_pending.error.is_none());
2500 }
2501
2502 #[tokio::test]
2503 async fn fail_orphaned_steps_no_steps_is_noop() {
2504 let engine = create_test_engine();
2505 let run = engine
2506 .store()
2507 .create_run(NewRun {
2508 created_by: None,
2509 workflow_name: "test".to_string(),
2510 trigger: TriggerKind::Manual,
2511 payload: json!({}),
2512 max_retries: 0,
2513 handler_version: None,
2514 labels: HashMap::new(),
2515 scheduled_at: None,
2516 idempotency_key: None,
2517 max_cost_usd: None,
2518 })
2519 .await
2520 .unwrap()
2521 .into_run();
2522
2523 let result = engine.fail_orphaned_steps(run.id, "timeout").await;
2524 assert!(result.is_ok());
2525 }
2526
2527 #[tokio::test]
2528 async fn fail_orphaned_steps_preserves_existing_error() {
2529 let engine = create_test_engine();
2530 let run = engine
2531 .store()
2532 .create_run(NewRun {
2533 created_by: None,
2534 workflow_name: "test".to_string(),
2535 trigger: TriggerKind::Manual,
2536 payload: json!({}),
2537 max_retries: 0,
2538 handler_version: None,
2539 labels: HashMap::new(),
2540 scheduled_at: None,
2541 idempotency_key: None,
2542 max_cost_usd: None,
2543 })
2544 .await
2545 .unwrap()
2546 .into_run();
2547
2548 let step_with_error = create_step_with_status(
2549 engine.store(),
2550 run.id,
2551 "already-errored",
2552 0,
2553 StepStatus::Running,
2554 )
2555 .await;
2556
2557 engine
2558 .store()
2559 .update_step(
2560 step_with_error.id,
2561 StepUpdate {
2562 error: Some("real error from provider".to_string()),
2563 ..StepUpdate::default()
2564 },
2565 )
2566 .await
2567 .unwrap();
2568
2569 let step_no_error = create_step_with_status(
2570 engine.store(),
2571 run.id,
2572 "no-error-yet",
2573 1,
2574 StepStatus::Running,
2575 )
2576 .await;
2577
2578 engine
2579 .fail_orphaned_steps(run.id, "parent run failed")
2580 .await
2581 .unwrap();
2582
2583 let updated_with = engine
2584 .store()
2585 .get_step(step_with_error.id)
2586 .await
2587 .unwrap()
2588 .unwrap();
2589 assert_eq!(updated_with.status.state, StepStatus::Failed);
2590 assert_eq!(
2591 updated_with.error.as_deref(),
2592 Some("real error from provider"),
2593 );
2594
2595 let updated_without = engine
2596 .store()
2597 .get_step(step_no_error.id)
2598 .await
2599 .unwrap()
2600 .unwrap();
2601 assert_eq!(updated_without.status.state, StepStatus::Failed);
2602 assert_eq!(updated_without.error.as_deref(), Some("parent run failed"),);
2603 }
2604}