1use std::collections::HashMap;
23use std::sync::Arc;
24use std::time::Instant;
25
26use chrono::{DateTime, Utc};
27use dashmap::DashMap;
28use serde::{Deserialize, Serialize};
29use tracing::{debug, error, info, instrument, warn};
30use uuid::Uuid;
31
32use punch_memory::MemorySubstrate;
33use punch_runtime::{FighterLoopParams, LlmDriver, run_fighter_loop, tools_for_capabilities};
34use punch_types::{FighterId, FighterManifest, ModelConfig, PunchError, PunchResult, WeightClass};
35
36use crate::workflow_conditions::{Condition, evaluate_condition};
37use crate::workflow_loops::{LoopConfig, LoopState, calculate_backoff, parse_foreach_items};
38use crate::workflow_validation::{ValidationError, topological_sort, validate_workflow};
39
40#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash, Serialize, Deserialize)]
46#[serde(transparent)]
47pub struct WorkflowId(pub Uuid);
48
49impl WorkflowId {
50 pub fn new() -> Self {
51 Self(Uuid::new_v4())
52 }
53}
54
55impl Default for WorkflowId {
56 fn default() -> Self {
57 Self::new()
58 }
59}
60
61impl std::fmt::Display for WorkflowId {
62 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
63 write!(f, "{}", self.0)
64 }
65}
66
67#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash, Serialize, Deserialize)]
69#[serde(transparent)]
70pub struct WorkflowRunId(pub Uuid);
71
72impl WorkflowRunId {
73 pub fn new() -> Self {
74 Self(Uuid::new_v4())
75 }
76}
77
78impl Default for WorkflowRunId {
79 fn default() -> Self {
80 Self::new()
81 }
82}
83
84impl std::fmt::Display for WorkflowRunId {
85 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
86 write!(f, "{}", self.0)
87 }
88}
89
90#[derive(Debug, Clone, Serialize, Deserialize, PartialEq)]
96#[serde(rename_all = "snake_case")]
97#[derive(Default)]
98pub enum OnError {
99 #[default]
101 FailWorkflow,
102 SkipStep,
104 RetryOnce,
106 Fallback { step: String },
108 CatchAndContinue { error_handler: String },
110 CircuitBreaker {
112 max_failures: usize,
113 cooldown_secs: u64,
114 },
115}
116
117#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
119#[serde(rename_all = "snake_case")]
120pub enum StepStatus {
121 Pending,
122 Running,
123 Completed,
124 Failed,
125 Skipped,
126 Cancelled,
127}
128
129impl std::fmt::Display for StepStatus {
130 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
131 match self {
132 Self::Pending => write!(f, "pending"),
133 Self::Running => write!(f, "running"),
134 Self::Completed => write!(f, "completed"),
135 Self::Failed => write!(f, "failed"),
136 Self::Skipped => write!(f, "skipped"),
137 Self::Cancelled => write!(f, "cancelled"),
138 }
139 }
140}
141
142#[derive(Debug, Clone, Serialize, Deserialize)]
144pub struct WorkflowStep {
145 pub name: String,
147 pub fighter_name: String,
149 pub prompt_template: String,
151 pub timeout_secs: Option<u64>,
153 #[serde(default)]
155 pub on_error: OnError,
156}
157
158#[derive(Debug, Clone, Serialize, Deserialize)]
160pub struct DagWorkflowStep {
161 pub name: String,
163 pub fighter_name: String,
165 pub prompt_template: String,
167 pub timeout_secs: Option<u64>,
169 #[serde(default)]
171 pub on_error: OnError,
172 #[serde(default)]
174 pub depends_on: Vec<String>,
175 #[serde(default)]
177 pub condition: Option<Condition>,
178 #[serde(default)]
180 pub else_step: Option<String>,
181 #[serde(default)]
183 pub loop_config: Option<LoopConfig>,
184}
185
186impl DagWorkflowStep {
187 pub fn fallback_step(&self) -> Option<String> {
189 match &self.on_error {
190 OnError::Fallback { step } => Some(step.clone()),
191 OnError::CatchAndContinue { error_handler } => Some(error_handler.clone()),
192 _ => None,
193 }
194 }
195}
196
197#[derive(Debug, Clone, Serialize, Deserialize)]
199pub struct Workflow {
200 pub id: WorkflowId,
202 pub name: String,
204 pub steps: Vec<WorkflowStep>,
206}
207
208#[derive(Debug, Clone, Serialize, Deserialize)]
210pub struct DagWorkflow {
211 pub id: WorkflowId,
213 pub name: String,
215 pub steps: Vec<DagWorkflowStep>,
217}
218
219#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
221#[serde(rename_all = "snake_case")]
222pub enum WorkflowRunStatus {
223 Pending,
224 Running,
225 Completed,
226 Failed,
227 PartiallyCompleted,
229}
230
231impl std::fmt::Display for WorkflowRunStatus {
232 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
233 match self {
234 Self::Pending => write!(f, "pending"),
235 Self::Running => write!(f, "running"),
236 Self::Completed => write!(f, "completed"),
237 Self::Failed => write!(f, "failed"),
238 Self::PartiallyCompleted => write!(f, "partially_completed"),
239 }
240 }
241}
242
243#[derive(Debug, Clone, Serialize, Deserialize)]
245pub struct StepResult {
246 pub step_name: String,
248 pub response: String,
250 pub tokens_used: u64,
252 pub duration_ms: u64,
254 pub error: Option<String>,
256 #[serde(default = "default_step_status")]
258 pub status: StepStatus,
259 #[serde(default)]
261 pub started_at: Option<DateTime<Utc>>,
262 #[serde(default)]
264 pub completed_at: Option<DateTime<Utc>>,
265}
266
267fn default_step_status() -> StepStatus {
268 StepStatus::Pending
269}
270
271#[derive(Debug, Clone, Serialize, Deserialize)]
273pub struct DeadLetterEntry {
274 pub step_name: String,
276 pub error: String,
278 pub input: String,
280 pub failed_at: DateTime<Utc>,
282}
283
284#[derive(Debug, Clone, Serialize, Deserialize)]
286pub struct WorkflowRun {
287 pub id: WorkflowRunId,
289 pub workflow_id: WorkflowId,
291 pub status: WorkflowRunStatus,
293 pub step_results: Vec<StepResult>,
295 pub started_at: DateTime<Utc>,
297 pub completed_at: Option<DateTime<Utc>>,
299 #[serde(default)]
301 pub dead_letters: Vec<DeadLetterEntry>,
302 #[serde(default)]
304 pub execution_trace: Vec<ExecutionTraceEntry>,
305}
306
307#[derive(Debug, Clone, Serialize, Deserialize)]
309pub struct ExecutionTraceEntry {
310 pub steps: Vec<String>,
312 pub started_at: DateTime<Utc>,
314 pub completed_at: Option<DateTime<Utc>>,
316}
317
318fn expand_variables(
331 template: &str,
332 current_input: &str,
333 step_name: &str,
334 step_results: &[StepResult],
335) -> String {
336 let mut result = template.to_string();
337
338 result = result.replace("{{input}}", current_input);
340 result = result.replace("{{previous_output}}", current_input);
341
342 result = result.replace("{{step_name}}", step_name);
344
345 for (i, sr) in step_results.iter().enumerate() {
347 let var = format!("{{{{step_{}}}}}", i + 1);
348 result = result.replace(&var, &sr.response);
349 }
350
351 for sr in step_results {
353 let var = format!("{{{{{}}}}}", sr.step_name);
354 result = result.replace(&var, &sr.response);
355 }
356
357 result
358}
359
360pub fn expand_dag_variables(
371 template: &str,
372 current_input: &str,
373 step_name: &str,
374 step_results: &HashMap<String, StepResult>,
375 loop_state: Option<&LoopState>,
376) -> String {
377 let mut result = template.to_string();
378
379 result = result.replace("{{input}}", current_input);
381 result = result.replace("{{previous_output}}", current_input);
382 result = result.replace("{{step_name}}", step_name);
383
384 if let Some(ls) = loop_state {
386 result = result.replace("{{loop.index}}", &ls.index.to_string());
387 if let Some(ref item) = ls.item {
388 result = result.replace("{{loop.item}}", item);
389 }
390 }
391
392 let mut output = String::with_capacity(result.len());
395 let mut remaining = result.as_str();
396
397 while let Some(start) = remaining.find("{{") {
398 output.push_str(&remaining[..start]);
399 let after_start = &remaining[start + 2..];
400 if let Some(end) = after_start.find("}}") {
401 let var_content = &after_start[..end];
402 let resolved = resolve_dag_variable(var_content, step_results);
403 output.push_str(&resolved);
404 remaining = &after_start[end + 2..];
405 } else {
406 output.push_str("{{");
407 remaining = after_start;
408 }
409 }
410 output.push_str(remaining);
411
412 output
413}
414
415fn resolve_dag_variable(var: &str, step_results: &HashMap<String, StepResult>) -> String {
417 let (expr, transform) = if let Some(pipe_pos) = var.find(" | ") {
419 let expr = var[..pipe_pos].trim();
420 let transform = var[pipe_pos + 3..].trim();
421 (expr, Some(transform))
422 } else {
423 (var.trim(), None)
424 };
425
426 let value = resolve_dag_expression(expr, step_results);
428
429 match transform {
431 Some("uppercase") => value.to_uppercase(),
432 Some("lowercase") => value.to_lowercase(),
433 Some("trim") => value.trim().to_string(),
434 Some("len") | Some("length") => value.len().to_string(),
435 Some(t) if t.starts_with("json_extract ") => {
436 let path = t
437 .strip_prefix("json_extract ")
438 .unwrap_or("")
439 .trim_matches('"');
440 json_path_extract(&value, path)
441 }
442 _ => value,
443 }
444}
445
446fn resolve_dag_expression(expr: &str, step_results: &HashMap<String, StepResult>) -> String {
448 let parts: Vec<&str> = expr.splitn(2, '.').collect();
449 if parts.len() < 2 {
450 return step_results
452 .get(parts[0])
453 .map(|r| r.response.clone())
454 .unwrap_or_else(|| format!("{{{{{expr}}}}}"));
455 }
456
457 let step_name = parts[0];
458 let property = parts[1];
459
460 let step_result = match step_results.get(step_name) {
461 Some(r) => r,
462 None => return format!("{{{{{expr}}}}}"),
463 };
464
465 match property {
466 "output" => step_result.response.clone(),
467 "status" => step_result.status.to_string(),
468 "duration_ms" => step_result.duration_ms.to_string(),
469 "error" => step_result
470 .error
471 .clone()
472 .unwrap_or_else(|| "none".to_string()),
473 _ if property.starts_with("output.") => {
474 let json_path = property.strip_prefix("output.").unwrap_or("");
475 json_path_extract(&step_result.response, json_path)
476 }
477 _ => format!("{{{{{expr}}}}}"),
478 }
479}
480
481fn json_path_extract(json_str: &str, path: &str) -> String {
485 let path = path.strip_prefix("$.").unwrap_or(path);
486 let parsed: serde_json::Value = match serde_json::from_str(json_str) {
487 Ok(v) => v,
488 Err(_) => return json_str.to_string(),
489 };
490
491 let mut current = &parsed;
492 for segment in path.split('.') {
493 if segment.is_empty() {
494 continue;
495 }
496 match current.get(segment) {
497 Some(v) => current = v,
498 None => return String::new(),
499 }
500 }
501
502 match current {
503 serde_json::Value::String(s) => s.clone(),
504 other => other.to_string(),
505 }
506}
507
508#[derive(Debug, Clone, Default)]
514pub struct CircuitBreakerState {
515 pub consecutive_failures: usize,
517 pub last_trip_time: Option<Instant>,
519}
520
521impl CircuitBreakerState {
522 pub fn is_open(&self, max_failures: usize, cooldown_secs: u64) -> bool {
524 if self.consecutive_failures < max_failures {
525 return false;
526 }
527 match self.last_trip_time {
529 Some(trip_time) => trip_time.elapsed().as_secs() < cooldown_secs,
530 None => true,
531 }
532 }
533
534 pub fn record_failure(&mut self) {
536 self.consecutive_failures += 1;
537 self.last_trip_time = Some(Instant::now());
538 }
539
540 pub fn record_success(&mut self) {
542 self.consecutive_failures = 0;
543 self.last_trip_time = None;
544 }
545}
546
547#[async_trait::async_trait]
553pub trait StepExecutor: Send + Sync {
554 async fn execute(
556 &self,
557 step: &DagWorkflowStep,
558 input: &str,
559 step_results: &HashMap<String, StepResult>,
560 loop_state: Option<&LoopState>,
561 ) -> Result<StepResult, String>;
562}
563
564pub async fn execute_dag(
571 workflow_name: &str,
572 steps: &[DagWorkflowStep],
573 input: &str,
574 executor: Arc<dyn StepExecutor>,
575) -> DagExecutionResult {
576 let validation_errors = validate_workflow(steps);
578 if !validation_errors.is_empty() {
579 return DagExecutionResult {
580 status: WorkflowRunStatus::Failed,
581 step_results: HashMap::new(),
582 dead_letters: Vec::new(),
583 execution_trace: Vec::new(),
584 validation_errors,
585 };
586 }
587
588 let topo_order = match topological_sort(steps) {
590 Ok(order) => order,
591 Err(_) => {
592 return DagExecutionResult {
593 status: WorkflowRunStatus::Failed,
594 step_results: HashMap::new(),
595 dead_letters: Vec::new(),
596 execution_trace: Vec::new(),
597 validation_errors: vec![ValidationError::CycleDetected {
598 steps: steps.iter().map(|s| s.name.clone()).collect(),
599 }],
600 };
601 }
602 };
603
604 let step_map: HashMap<&str, &DagWorkflowStep> =
605 steps.iter().map(|s| (s.name.as_str(), s)).collect();
606
607 let mut completed: HashMap<String, StepResult> = HashMap::new();
608 let mut dead_letters: Vec<DeadLetterEntry> = Vec::new();
609 let mut execution_trace: Vec<ExecutionTraceEntry> = Vec::new();
610 let mut circuit_breakers: HashMap<String, CircuitBreakerState> = HashMap::new();
611 let mut skipped_steps: std::collections::HashSet<String> = std::collections::HashSet::new();
612 let mut failed_steps: std::collections::HashSet<String> = std::collections::HashSet::new();
613
614 let mut remaining: Vec<String> = topo_order;
616
617 while !remaining.is_empty() {
618 let (ready, not_ready): (Vec<String>, Vec<String>) =
620 remaining.into_iter().partition(|name| {
621 let step = match step_map.get(name.as_str()) {
622 Some(s) => s,
623 None => return false,
624 };
625 step.depends_on.iter().all(|dep| {
626 let is_done = completed.contains_key(dep) || skipped_steps.contains(dep);
629 let is_blocking_failure = failed_steps.contains(dep);
630 is_done && !is_blocking_failure
631 })
632 });
633
634 if ready.is_empty() {
635 for name in ¬_ready {
637 skipped_steps.insert(name.clone());
638 completed.insert(
639 name.clone(),
640 StepResult {
641 step_name: name.clone(),
642 response: String::new(),
643 tokens_used: 0,
644 duration_ms: 0,
645 error: Some("cancelled: unmet dependencies".to_string()),
646 status: StepStatus::Cancelled,
647 started_at: None,
648 completed_at: None,
649 },
650 );
651 }
652 break;
653 }
654
655 remaining = not_ready;
656
657 let wave_start = Utc::now();
658 let wave_step_names: Vec<String> = ready.to_vec();
659
660 let mut wave_results: Vec<(String, Result<StepResult, String>, Option<String>)> =
663 Vec::new();
664 let mut join_set: tokio::task::JoinSet<(
665 String,
666 Result<StepResult, String>,
667 Option<String>,
668 )> = tokio::task::JoinSet::new();
669
670 for step_name in &wave_step_names {
671 let step = match step_map.get(step_name.as_str()) {
672 Some(s) => (*s).clone(),
673 None => continue,
674 };
675
676 let should_run = match &step.condition {
678 Some(cond) => evaluate_condition(cond, &completed),
679 None => true,
680 };
681
682 if !should_run {
683 let else_step_name = step.else_step.clone();
684 wave_results.push((
685 step_name.clone(),
686 Ok(StepResult {
687 step_name: step_name.clone(),
688 response: String::new(),
689 tokens_used: 0,
690 duration_ms: 0,
691 error: None,
692 status: StepStatus::Skipped,
693 started_at: Some(Utc::now()),
694 completed_at: Some(Utc::now()),
695 }),
696 else_step_name,
697 ));
698 continue;
699 }
700
701 let cb_state = circuit_breakers
703 .entry(step_name.clone())
704 .or_default()
705 .clone();
706 if let OnError::CircuitBreaker {
707 max_failures,
708 cooldown_secs,
709 } = &step.on_error
710 && cb_state.is_open(*max_failures, *cooldown_secs)
711 {
712 wave_results.push((
713 step_name.clone(),
714 Ok(StepResult {
715 step_name: step_name.clone(),
716 response: String::new(),
717 tokens_used: 0,
718 duration_ms: 0,
719 error: Some("circuit breaker open".to_string()),
720 status: StepStatus::Failed,
721 started_at: Some(Utc::now()),
722 completed_at: Some(Utc::now()),
723 }),
724 None,
725 ));
726 continue;
727 }
728
729 let sn = step_name.clone();
730 let completed_snapshot = completed.clone();
731 let input_clone = input.to_string();
732 let executor_clone = Arc::clone(&executor);
733
734 join_set.spawn(async move {
735 let result = execute_step_with_loops(
736 &step,
737 &input_clone,
738 &completed_snapshot,
739 executor_clone.as_ref(),
740 )
741 .await;
742 (sn, result, None::<String>)
743 });
744 }
745
746 while let Some(join_result) = join_set.join_next().await {
748 match join_result {
749 Ok(task_result) => wave_results.push(task_result),
750 Err(join_err) => {
751 error!(error = %join_err, "spawned step task failed unexpectedly");
753 }
754 }
755 }
756
757 for (step_name, result, _else_step) in wave_results {
759 match result {
760 Ok(mut step_result) => {
761 if step_result.status == StepStatus::Skipped {
762 skipped_steps.insert(step_name.clone());
763 debug!(step = %step_name, workflow = %workflow_name, "step skipped (condition false)");
764 } else if step_result.error.is_some() {
765 failed_steps.insert(step_name.clone());
766 circuit_breakers
768 .entry(step_name.clone())
769 .or_default()
770 .record_failure();
771
772 let step = step_map.get(step_name.as_str());
773 if let Some(step) = step {
774 match &step.on_error {
775 OnError::Fallback { step: fb_step } => {
776 if let Some(fb) = step_map.get(fb_step.as_str()) {
778 let fb_result =
779 executor.execute(fb, input, &completed, None).await;
780 match fb_result {
781 Ok(fb_res) => {
782 step_result = fb_res;
783 step_result.step_name = step_name.clone();
784 failed_steps.remove(&step_name);
785 }
786 Err(fb_err) => {
787 dead_letters.push(DeadLetterEntry {
788 step_name: step_name.clone(),
789 error: fb_err,
790 input: input.to_string(),
791 failed_at: Utc::now(),
792 });
793 }
794 }
795 }
796 }
797 OnError::CatchAndContinue { error_handler } => {
798 if let Some(handler) = step_map.get(error_handler.as_str()) {
800 let _ = executor
801 .execute(handler, input, &completed, None)
802 .await;
803 }
804 failed_steps.remove(&step_name);
806 }
807 OnError::SkipStep => {
808 skipped_steps.insert(step_name.clone());
809 failed_steps.remove(&step_name);
810 }
811 OnError::FailWorkflow => {
812 dead_letters.push(DeadLetterEntry {
813 step_name: step_name.clone(),
814 error: step_result.error.clone().unwrap_or_default(),
815 input: input.to_string(),
816 failed_at: Utc::now(),
817 });
818 }
819 _ => {}
820 }
821 }
822 } else {
823 circuit_breakers
825 .entry(step_name.clone())
826 .or_default()
827 .record_success();
828 info!(step = %step_name, workflow = %workflow_name, "DAG step completed");
829 }
830 completed.insert(step_name, step_result);
831 }
832 Err(e) => {
833 failed_steps.insert(step_name.clone());
834 circuit_breakers
835 .entry(step_name.clone())
836 .or_default()
837 .record_failure();
838
839 let mut step_result = StepResult {
840 step_name: step_name.clone(),
841 response: String::new(),
842 tokens_used: 0,
843 duration_ms: 0,
844 error: Some(e.clone()),
845 status: StepStatus::Failed,
846 started_at: Some(Utc::now()),
847 completed_at: Some(Utc::now()),
848 };
849
850 let step = step_map.get(step_name.as_str());
852 if let Some(step) = step {
853 match &step.on_error {
854 OnError::Fallback { step: fb_step } => {
855 if let Some(fb) = step_map.get(fb_step.as_str())
856 && let Ok(fb_res) =
857 executor.execute(fb, input, &completed, None).await
858 {
859 step_result = fb_res;
860 step_result.step_name = step_name.clone();
861 step_result.error = None;
862 step_result.status = StepStatus::Completed;
863 failed_steps.remove(&step_name);
864 }
865 }
866 OnError::CatchAndContinue { error_handler } => {
867 if let Some(handler) = step_map.get(error_handler.as_str()) {
868 let _ =
869 executor.execute(handler, input, &completed, None).await;
870 }
871 failed_steps.remove(&step_name);
872 }
873 OnError::SkipStep => {
874 step_result.status = StepStatus::Skipped;
875 skipped_steps.insert(step_name.clone());
876 failed_steps.remove(&step_name);
877 }
878 OnError::FailWorkflow => {
879 dead_letters.push(DeadLetterEntry {
880 step_name: step_name.clone(),
881 error: e,
882 input: input.to_string(),
883 failed_at: Utc::now(),
884 });
885 }
886 _ => {
887 dead_letters.push(DeadLetterEntry {
888 step_name: step_name.clone(),
889 error: e,
890 input: input.to_string(),
891 failed_at: Utc::now(),
892 });
893 }
894 }
895 } else {
896 dead_letters.push(DeadLetterEntry {
897 step_name: step_name.clone(),
898 error: e,
899 input: input.to_string(),
900 failed_at: Utc::now(),
901 });
902 }
903
904 completed.insert(step_name, step_result);
905 }
906 }
907 }
908
909 execution_trace.push(ExecutionTraceEntry {
910 steps: wave_step_names,
911 started_at: wave_start,
912 completed_at: Some(Utc::now()),
913 });
914 }
915
916 let has_failures = completed.values().any(|r| r.status == StepStatus::Failed);
918 let has_successes = completed
919 .values()
920 .any(|r| r.status == StepStatus::Completed);
921
922 let status = if has_failures && has_successes {
923 WorkflowRunStatus::PartiallyCompleted
924 } else if has_failures {
925 WorkflowRunStatus::Failed
926 } else {
927 WorkflowRunStatus::Completed
928 };
929
930 DagExecutionResult {
931 status,
932 step_results: completed,
933 dead_letters,
934 execution_trace,
935 validation_errors: Vec::new(),
936 }
937}
938
939async fn execute_step_with_loops(
941 step: &DagWorkflowStep,
942 input: &str,
943 completed: &HashMap<String, StepResult>,
944 executor: &dyn StepExecutor,
945) -> Result<StepResult, String> {
946 match &step.loop_config {
947 None => executor.execute(step, input, completed, None).await,
948 Some(LoopConfig::ForEach {
949 source_step,
950 max_iterations,
951 }) => {
952 let source_output = completed
953 .get(source_step)
954 .map(|r| r.response.as_str())
955 .unwrap_or("[]");
956 let items = parse_foreach_items(source_output)?;
957 let max = (*max_iterations).min(items.len());
958
959 let mut loop_state = LoopState::new();
960 let start = Utc::now();
961 let instant = Instant::now();
962
963 for (i, item) in items.into_iter().take(max).enumerate() {
964 loop_state.index = i;
965 loop_state.item = Some(item);
966
967 let result = executor
968 .execute(step, input, completed, Some(&loop_state))
969 .await;
970
971 match result {
972 Ok(r) => {
973 if r.response.contains("__BREAK__") {
975 loop_state.push_result(r.response.replace("__BREAK__", ""));
976 break;
977 }
978 if r.response.contains("__CONTINUE__") {
979 continue;
980 }
981 loop_state.push_result(r.response);
982 }
983 Err(e) => return Err(e),
984 }
985 }
986
987 let combined = loop_state.accumulated_results.join("\n");
988 Ok(StepResult {
989 step_name: step.name.clone(),
990 response: combined,
991 tokens_used: 0,
992 duration_ms: instant.elapsed().as_millis() as u64,
993 error: None,
994 status: StepStatus::Completed,
995 started_at: Some(start),
996 completed_at: Some(Utc::now()),
997 })
998 }
999 Some(LoopConfig::While {
1000 condition,
1001 max_iterations,
1002 }) => {
1003 let mut loop_state = LoopState::new();
1004 let start = Utc::now();
1005 let instant = Instant::now();
1006
1007 for i in 0..*max_iterations {
1008 let mut extended = completed.clone();
1011 if !loop_state.accumulated_results.is_empty() {
1012 extended.insert(
1013 step.name.clone(),
1014 StepResult {
1015 step_name: step.name.clone(),
1016 response: loop_state
1017 .accumulated_results
1018 .last()
1019 .cloned()
1020 .unwrap_or_default(),
1021 tokens_used: 0,
1022 duration_ms: 0,
1023 error: None,
1024 status: StepStatus::Completed,
1025 started_at: None,
1026 completed_at: None,
1027 },
1028 );
1029 }
1030
1031 if !evaluate_condition(condition, &extended) {
1032 break;
1033 }
1034
1035 loop_state.index = i;
1036 let result = executor
1037 .execute(step, input, &extended, Some(&loop_state))
1038 .await;
1039
1040 match result {
1041 Ok(r) => {
1042 if r.response.contains("__BREAK__") {
1043 loop_state.push_result(r.response.replace("__BREAK__", ""));
1044 break;
1045 }
1046 loop_state.push_result(r.response);
1047 }
1048 Err(e) => return Err(e),
1049 }
1050 }
1051
1052 let combined = loop_state.accumulated_results.join("\n");
1053 Ok(StepResult {
1054 step_name: step.name.clone(),
1055 response: combined,
1056 tokens_used: 0,
1057 duration_ms: instant.elapsed().as_millis() as u64,
1058 error: None,
1059 status: StepStatus::Completed,
1060 started_at: Some(start),
1061 completed_at: Some(Utc::now()),
1062 })
1063 }
1064 Some(LoopConfig::Retry {
1065 max_retries,
1066 backoff_ms,
1067 backoff_multiplier,
1068 }) => {
1069 let start = Utc::now();
1070 let instant = Instant::now();
1071 let mut last_error = String::new();
1072
1073 for attempt in 0..=*max_retries {
1074 if attempt > 0 {
1075 let wait = calculate_backoff(attempt - 1, *backoff_ms, *backoff_multiplier);
1076 tokio::time::sleep(std::time::Duration::from_millis(wait)).await;
1077 }
1078
1079 match executor.execute(step, input, completed, None).await {
1080 Ok(r) => return Ok(r),
1081 Err(e) => {
1082 last_error = e;
1083 warn!(step = %step.name, attempt = attempt + 1, "retry attempt failed");
1084 }
1085 }
1086 }
1087
1088 Ok(StepResult {
1089 step_name: step.name.clone(),
1090 response: String::new(),
1091 tokens_used: 0,
1092 duration_ms: instant.elapsed().as_millis() as u64,
1093 error: Some(last_error),
1094 status: StepStatus::Failed,
1095 started_at: Some(start),
1096 completed_at: Some(Utc::now()),
1097 })
1098 }
1099 }
1100}
1101
1102#[derive(Debug, Clone)]
1104pub struct DagExecutionResult {
1105 pub status: WorkflowRunStatus,
1107 pub step_results: HashMap<String, StepResult>,
1109 pub dead_letters: Vec<DeadLetterEntry>,
1111 pub execution_trace: Vec<ExecutionTraceEntry>,
1113 pub validation_errors: Vec<ValidationError>,
1115}
1116
1117pub struct WorkflowEngine {
1123 workflows: DashMap<WorkflowId, Workflow>,
1125 dag_workflows: DashMap<WorkflowId, DagWorkflow>,
1127 runs: DashMap<WorkflowRunId, WorkflowRun>,
1129}
1130
1131impl WorkflowEngine {
1132 pub fn new() -> Self {
1134 Self {
1135 workflows: DashMap::new(),
1136 dag_workflows: DashMap::new(),
1137 runs: DashMap::new(),
1138 }
1139 }
1140
1141 pub fn register_workflow(&self, workflow: Workflow) -> WorkflowId {
1143 let id = workflow.id;
1144 info!(workflow_id = %id, name = %workflow.name, "workflow registered");
1145 self.workflows.insert(id, workflow);
1146 id
1147 }
1148
1149 pub fn register_dag_workflow(
1154 &self,
1155 workflow: DagWorkflow,
1156 ) -> Result<WorkflowId, Vec<ValidationError>> {
1157 let errors = validate_workflow(&workflow.steps);
1158 if !errors.is_empty() {
1159 return Err(errors);
1160 }
1161 let id = workflow.id;
1162 info!(workflow_id = %id, name = %workflow.name, "DAG workflow registered");
1163 self.dag_workflows.insert(id, workflow);
1164 Ok(id)
1165 }
1166
1167 #[instrument(skip(self, input, memory, driver, model_config), fields(%workflow_id))]
1169 pub async fn execute_workflow(
1170 &self,
1171 workflow_id: &WorkflowId,
1172 input: String,
1173 memory: Arc<MemorySubstrate>,
1174 driver: Arc<dyn LlmDriver>,
1175 model_config: &ModelConfig,
1176 ) -> PunchResult<WorkflowRunId> {
1177 let workflow = self
1178 .workflows
1179 .get(workflow_id)
1180 .ok_or_else(|| PunchError::Internal(format!("workflow {} not found", workflow_id)))?
1181 .clone();
1182
1183 let run_id = WorkflowRunId::new();
1184 let run = WorkflowRun {
1185 id: run_id,
1186 workflow_id: *workflow_id,
1187 status: WorkflowRunStatus::Running,
1188 step_results: Vec::new(),
1189 started_at: Utc::now(),
1190 completed_at: None,
1191 dead_letters: Vec::new(),
1192 execution_trace: Vec::new(),
1193 };
1194 self.runs.insert(run_id, run);
1195
1196 let mut current_input = input.clone();
1197 let mut step_results: Vec<StepResult> = Vec::new();
1198 let mut failed = false;
1199
1200 for step in &workflow.steps {
1201 let result = self
1202 .execute_single_step(
1203 step,
1204 &workflow.name,
1205 ¤t_input,
1206 &step_results,
1207 &memory,
1208 &driver,
1209 model_config,
1210 )
1211 .await;
1212
1213 match result {
1214 Ok(step_result) => {
1215 current_input = step_result.response.clone();
1216 step_results.push(step_result);
1217 }
1218 Err(e) => {
1219 let error_msg = format!("{e}");
1220 match step.on_error {
1221 OnError::SkipStep => {
1222 warn!(step = %step.name, error = %error_msg, "step failed, skipping");
1223 let skip_result = StepResult {
1224 step_name: step.name.clone(),
1225 response: String::new(),
1226 tokens_used: 0,
1227 duration_ms: 0,
1228 error: Some(error_msg),
1229 status: StepStatus::Skipped,
1230 started_at: None,
1231 completed_at: None,
1232 };
1233 step_results.push(skip_result);
1234 continue;
1235 }
1236 OnError::RetryOnce => {
1237 warn!(step = %step.name, error = %error_msg, "step failed, retrying once");
1238 let retry_result = self
1239 .execute_single_step(
1240 step,
1241 &workflow.name,
1242 ¤t_input,
1243 &step_results,
1244 &memory,
1245 &driver,
1246 model_config,
1247 )
1248 .await;
1249
1250 match retry_result {
1251 Ok(step_result) => {
1252 current_input = step_result.response.clone();
1253 step_results.push(step_result);
1254 }
1255 Err(retry_err) => {
1256 error!(step = %step.name, error = %retry_err, "step failed on retry");
1257 let fail_result = StepResult {
1258 step_name: step.name.clone(),
1259 response: String::new(),
1260 tokens_used: 0,
1261 duration_ms: 0,
1262 error: Some(format!("{retry_err}")),
1263 status: StepStatus::Failed,
1264 started_at: None,
1265 completed_at: None,
1266 };
1267 step_results.push(fail_result);
1268 failed = true;
1269 break;
1270 }
1271 }
1272 }
1273 OnError::FailWorkflow => {
1274 error!(step = %step.name, error = %error_msg, "step failed, aborting workflow");
1275 let fail_result = StepResult {
1276 step_name: step.name.clone(),
1277 response: String::new(),
1278 tokens_used: 0,
1279 duration_ms: 0,
1280 error: Some(error_msg),
1281 status: StepStatus::Failed,
1282 started_at: None,
1283 completed_at: None,
1284 };
1285 step_results.push(fail_result);
1286 failed = true;
1287 break;
1288 }
1289 _ => {
1290 let fail_result = StepResult {
1293 step_name: step.name.clone(),
1294 response: String::new(),
1295 tokens_used: 0,
1296 duration_ms: 0,
1297 error: Some(error_msg),
1298 status: StepStatus::Failed,
1299 started_at: None,
1300 completed_at: None,
1301 };
1302 step_results.push(fail_result);
1303 failed = true;
1304 break;
1305 }
1306 }
1307 }
1308 }
1309 }
1310
1311 if let Some(mut run) = self.runs.get_mut(&run_id) {
1313 run.step_results = step_results;
1314 run.status = if failed {
1315 WorkflowRunStatus::Failed
1316 } else {
1317 WorkflowRunStatus::Completed
1318 };
1319 run.completed_at = Some(Utc::now());
1320 }
1321
1322 Ok(run_id)
1323 }
1324
1325 #[allow(clippy::too_many_arguments)]
1328 async fn execute_single_step(
1329 &self,
1330 step: &WorkflowStep,
1331 workflow_name: &str,
1332 current_input: &str,
1333 step_results: &[StepResult],
1334 memory: &Arc<MemorySubstrate>,
1335 driver: &Arc<dyn LlmDriver>,
1336 model_config: &ModelConfig,
1337 ) -> PunchResult<StepResult> {
1338 let step_start = Instant::now();
1339 let started_at = Utc::now();
1340
1341 let prompt = expand_variables(
1343 &step.prompt_template,
1344 current_input,
1345 &step.name,
1346 step_results,
1347 );
1348
1349 let fighter_id = FighterId::new();
1351 let fighter_manifest = FighterManifest {
1352 name: step.fighter_name.clone(),
1353 description: format!("Workflow step: {}", step.name),
1354 model: model_config.clone(),
1355 system_prompt: format!(
1356 "You are executing step '{}' of workflow '{}'.",
1357 step.name, workflow_name
1358 ),
1359 capabilities: Vec::new(),
1360 weight_class: WeightClass::Middleweight,
1361 tenant_id: None,
1362 };
1363
1364 if let Err(e) = memory
1366 .save_fighter(
1367 &fighter_id,
1368 &fighter_manifest,
1369 punch_types::FighterStatus::Idle,
1370 )
1371 .await
1372 {
1373 error!(error = %e, "failed to persist workflow fighter");
1374 }
1375
1376 let bout_id = memory.create_bout(&fighter_id).await.map_err(|e| {
1377 PunchError::Internal(format!(
1378 "failed to create bout for step '{}': {e}",
1379 step.name
1380 ))
1381 })?;
1382
1383 let available_tools = tools_for_capabilities(&fighter_manifest.capabilities);
1384 let timeout_secs = step.timeout_secs.unwrap_or(120);
1385
1386 let params = FighterLoopParams {
1387 manifest: fighter_manifest,
1388 user_message: prompt,
1389 bout_id,
1390 fighter_id,
1391 memory: Arc::clone(memory),
1392 driver: Arc::clone(driver),
1393 available_tools,
1394 max_iterations: Some(20),
1395 context_window: None,
1396 tool_timeout_secs: Some(timeout_secs),
1397 coordinator: None,
1398 approval_engine: None,
1399 sandbox: None,
1400 mcp_clients: None,
1401 };
1402
1403 let loop_result = tokio::time::timeout(
1404 std::time::Duration::from_secs(timeout_secs),
1405 run_fighter_loop(params),
1406 )
1407 .await;
1408
1409 match loop_result {
1410 Ok(Ok(result)) => {
1411 let step_result = StepResult {
1412 step_name: step.name.clone(),
1413 response: result.response,
1414 tokens_used: result.usage.total(),
1415 duration_ms: step_start.elapsed().as_millis() as u64,
1416 error: None,
1417 status: StepStatus::Completed,
1418 started_at: Some(started_at),
1419 completed_at: Some(Utc::now()),
1420 };
1421 info!(step = %step.name, tokens = step_result.tokens_used, "workflow step completed");
1422 Ok(step_result)
1423 }
1424 Ok(Err(e)) => Err(e),
1425 Err(_) => Err(PunchError::Internal(format!(
1426 "step '{}' timed out after {}s",
1427 step.name, timeout_secs
1428 ))),
1429 }
1430 }
1431
1432 pub fn get_run(&self, run_id: &WorkflowRunId) -> Option<WorkflowRun> {
1434 self.runs.get(run_id).map(|r| r.clone())
1435 }
1436
1437 pub fn list_workflows(&self) -> Vec<Workflow> {
1439 self.workflows.iter().map(|w| w.value().clone()).collect()
1440 }
1441
1442 pub fn list_dag_workflows(&self) -> Vec<DagWorkflow> {
1444 self.dag_workflows
1445 .iter()
1446 .map(|w| w.value().clone())
1447 .collect()
1448 }
1449
1450 pub fn list_runs(&self) -> Vec<WorkflowRun> {
1452 self.runs.iter().map(|r| r.value().clone()).collect()
1453 }
1454
1455 pub fn list_runs_for_workflow(&self, workflow_id: &WorkflowId) -> Vec<WorkflowRun> {
1457 self.runs
1458 .iter()
1459 .filter(|r| r.value().workflow_id == *workflow_id)
1460 .map(|r| r.value().clone())
1461 .collect()
1462 }
1463
1464 pub fn get_workflow(&self, id: &WorkflowId) -> Option<Workflow> {
1466 self.workflows.get(id).map(|w| w.clone())
1467 }
1468
1469 pub fn get_dag_workflow(&self, id: &WorkflowId) -> Option<DagWorkflow> {
1471 self.dag_workflows.get(id).map(|w| w.clone())
1472 }
1473}
1474
1475impl Default for WorkflowEngine {
1476 fn default() -> Self {
1477 Self::new()
1478 }
1479}
1480
1481#[cfg(test)]
1486mod tests {
1487 use super::*;
1488 use std::sync::atomic::{AtomicUsize, Ordering};
1489 use std::time::Duration;
1490
1491 struct MockExecutor {
1493 responses: HashMap<String, String>,
1495 failing_steps: HashMap<String, String>,
1497 execution_counts: DashMap<String, AtomicUsize>,
1499 }
1500
1501 impl MockExecutor {
1502 fn new() -> Self {
1503 Self {
1504 responses: HashMap::new(),
1505 failing_steps: HashMap::new(),
1506 execution_counts: DashMap::new(),
1507 }
1508 }
1509
1510 fn with_response(mut self, step: &str, response: &str) -> Self {
1511 self.responses
1512 .insert(step.to_string(), response.to_string());
1513 self
1514 }
1515
1516 fn with_failure(mut self, step: &str, error: &str) -> Self {
1517 self.failing_steps
1518 .insert(step.to_string(), error.to_string());
1519 self
1520 }
1521
1522 #[allow(dead_code)]
1523 fn execution_count(&self, step: &str) -> usize {
1524 self.execution_counts
1525 .get(step)
1526 .map(|c| c.load(Ordering::Relaxed))
1527 .unwrap_or(0)
1528 }
1529 }
1530
1531 #[async_trait::async_trait]
1532 impl StepExecutor for MockExecutor {
1533 async fn execute(
1534 &self,
1535 step: &DagWorkflowStep,
1536 input: &str,
1537 step_results: &HashMap<String, StepResult>,
1538 loop_state: Option<&LoopState>,
1539 ) -> Result<StepResult, String> {
1540 self.execution_counts
1542 .entry(step.name.clone())
1543 .or_insert_with(|| AtomicUsize::new(0))
1544 .fetch_add(1, Ordering::Relaxed);
1545
1546 if let Some(err) = self.failing_steps.get(&step.name) {
1548 return Err(err.clone());
1549 }
1550
1551 let prompt = expand_dag_variables(
1552 &step.prompt_template,
1553 input,
1554 &step.name,
1555 step_results,
1556 loop_state,
1557 );
1558
1559 let response = self.responses.get(&step.name).cloned().unwrap_or(prompt);
1560
1561 Ok(StepResult {
1562 step_name: step.name.clone(),
1563 response,
1564 tokens_used: 10,
1565 duration_ms: 5,
1566 error: None,
1567 status: StepStatus::Completed,
1568 started_at: Some(Utc::now()),
1569 completed_at: Some(Utc::now()),
1570 })
1571 }
1572 }
1573
1574 struct TimedMockExecutor {
1576 delay_ms: u64,
1577 }
1578
1579 #[async_trait::async_trait]
1580 impl StepExecutor for TimedMockExecutor {
1581 async fn execute(
1582 &self,
1583 step: &DagWorkflowStep,
1584 _input: &str,
1585 _step_results: &HashMap<String, StepResult>,
1586 _loop_state: Option<&LoopState>,
1587 ) -> Result<StepResult, String> {
1588 tokio::time::sleep(Duration::from_millis(self.delay_ms)).await;
1589 Ok(StepResult {
1590 step_name: step.name.clone(),
1591 response: format!("done-{}", step.name),
1592 tokens_used: 10,
1593 duration_ms: self.delay_ms,
1594 error: None,
1595 status: StepStatus::Completed,
1596 started_at: Some(Utc::now()),
1597 completed_at: Some(Utc::now()),
1598 })
1599 }
1600 }
1601
1602 struct FailNTimesMockExecutor {
1604 fail_count: usize,
1605 attempts: DashMap<String, AtomicUsize>,
1606 }
1607
1608 impl FailNTimesMockExecutor {
1609 fn new(fail_count: usize) -> Self {
1610 Self {
1611 fail_count,
1612 attempts: DashMap::new(),
1613 }
1614 }
1615 }
1616
1617 #[async_trait::async_trait]
1618 impl StepExecutor for FailNTimesMockExecutor {
1619 async fn execute(
1620 &self,
1621 step: &DagWorkflowStep,
1622 _input: &str,
1623 _step_results: &HashMap<String, StepResult>,
1624 _loop_state: Option<&LoopState>,
1625 ) -> Result<StepResult, String> {
1626 let attempt = self
1627 .attempts
1628 .entry(step.name.clone())
1629 .or_insert_with(|| AtomicUsize::new(0))
1630 .fetch_add(1, Ordering::Relaxed);
1631
1632 if attempt < self.fail_count {
1633 return Err(format!("failure attempt {}", attempt + 1));
1634 }
1635
1636 Ok(StepResult {
1637 step_name: step.name.clone(),
1638 response: format!("success on attempt {}", attempt + 1),
1639 tokens_used: 10,
1640 duration_ms: 5,
1641 error: None,
1642 status: StepStatus::Completed,
1643 started_at: Some(Utc::now()),
1644 completed_at: Some(Utc::now()),
1645 })
1646 }
1647 }
1648
1649 fn dag_step(name: &str, deps: &[&str]) -> DagWorkflowStep {
1650 DagWorkflowStep {
1651 name: name.to_string(),
1652 fighter_name: "test".to_string(),
1653 prompt_template: "{{input}}".to_string(),
1654 timeout_secs: None,
1655 on_error: OnError::FailWorkflow,
1656 depends_on: deps.iter().map(|d| d.to_string()).collect(),
1657 condition: None,
1658 else_step: None,
1659 loop_config: None,
1660 }
1661 }
1662
1663 #[test]
1666 fn register_and_list_workflows() {
1667 let engine = WorkflowEngine::new();
1668
1669 let workflow = Workflow {
1670 id: WorkflowId::new(),
1671 name: "test-workflow".to_string(),
1672 steps: vec![
1673 WorkflowStep {
1674 name: "step1".to_string(),
1675 fighter_name: "analyzer".to_string(),
1676 prompt_template: "Analyze: {{input}}".to_string(),
1677 timeout_secs: None,
1678 on_error: OnError::FailWorkflow,
1679 },
1680 WorkflowStep {
1681 name: "step2".to_string(),
1682 fighter_name: "summarizer".to_string(),
1683 prompt_template: "Summarize the analysis: {{step1}}".to_string(),
1684 timeout_secs: Some(60),
1685 on_error: OnError::SkipStep,
1686 },
1687 ],
1688 };
1689
1690 let id = engine.register_workflow(workflow);
1691 let workflows = engine.list_workflows();
1692 assert_eq!(workflows.len(), 1);
1693 assert_eq!(workflows[0].name, "test-workflow");
1694 assert_eq!(workflows[0].steps.len(), 2);
1695
1696 let fetched = engine.get_workflow(&id).expect("workflow should exist");
1697 assert_eq!(fetched.name, "test-workflow");
1698 }
1699
1700 #[test]
1701 fn variable_substitution_basic() {
1702 let result = expand_variables(
1703 "Analyze {{input}} for step {{step_name}}",
1704 "hello world",
1705 "analysis",
1706 &[],
1707 );
1708 assert_eq!(result, "Analyze hello world for step analysis");
1709 }
1710
1711 #[test]
1712 fn variable_substitution_previous_output() {
1713 let result = expand_variables(
1714 "Continue from: {{previous_output}}",
1715 "step 1 output",
1716 "step2",
1717 &[],
1718 );
1719 assert_eq!(result, "Continue from: step 1 output");
1720 }
1721
1722 #[test]
1723 fn variable_substitution_step_refs() {
1724 let step_results = vec![
1725 StepResult {
1726 step_name: "analyze".to_string(),
1727 response: "analysis result".to_string(),
1728 tokens_used: 100,
1729 duration_ms: 500,
1730 error: None,
1731 status: StepStatus::Completed,
1732 started_at: None,
1733 completed_at: None,
1734 },
1735 StepResult {
1736 step_name: "review".to_string(),
1737 response: "review result".to_string(),
1738 tokens_used: 80,
1739 duration_ms: 400,
1740 error: None,
1741 status: StepStatus::Completed,
1742 started_at: None,
1743 completed_at: None,
1744 },
1745 ];
1746
1747 let result = expand_variables(
1748 "Step 1 said: {{step_1}}, Step 2 said: {{step_2}}",
1749 "current",
1750 "step3",
1751 &step_results,
1752 );
1753 assert_eq!(
1754 result,
1755 "Step 1 said: analysis result, Step 2 said: review result"
1756 );
1757
1758 let result = expand_variables(
1759 "Analysis: {{analyze}}, Review: {{review}}",
1760 "current",
1761 "step3",
1762 &step_results,
1763 );
1764 assert_eq!(result, "Analysis: analysis result, Review: review result");
1765 }
1766
1767 #[test]
1768 fn workflow_run_status_display() {
1769 assert_eq!(WorkflowRunStatus::Pending.to_string(), "pending");
1770 assert_eq!(WorkflowRunStatus::Running.to_string(), "running");
1771 assert_eq!(WorkflowRunStatus::Completed.to_string(), "completed");
1772 assert_eq!(WorkflowRunStatus::Failed.to_string(), "failed");
1773 assert_eq!(
1774 WorkflowRunStatus::PartiallyCompleted.to_string(),
1775 "partially_completed"
1776 );
1777 }
1778
1779 #[test]
1780 fn get_nonexistent_run_returns_none() {
1781 let engine = WorkflowEngine::new();
1782 let run_id = WorkflowRunId::new();
1783 assert!(engine.get_run(&run_id).is_none());
1784 }
1785
1786 #[test]
1787 fn get_nonexistent_workflow_returns_none() {
1788 let engine = WorkflowEngine::new();
1789 let id = WorkflowId::new();
1790 assert!(engine.get_workflow(&id).is_none());
1791 }
1792
1793 #[test]
1794 fn workflow_engine_default() {
1795 let engine = WorkflowEngine::default();
1796 assert!(engine.list_workflows().is_empty());
1797 assert!(engine.list_runs().is_empty());
1798 }
1799
1800 #[test]
1801 fn register_multiple_workflows() {
1802 let engine = WorkflowEngine::new();
1803
1804 for i in 0..5 {
1805 let workflow = Workflow {
1806 id: WorkflowId::new(),
1807 name: format!("workflow-{}", i),
1808 steps: vec![],
1809 };
1810 engine.register_workflow(workflow);
1811 }
1812
1813 assert_eq!(engine.list_workflows().len(), 5);
1814 }
1815
1816 #[test]
1817 fn register_workflow_returns_correct_id() {
1818 let engine = WorkflowEngine::new();
1819 let wf_id = WorkflowId::new();
1820 let workflow = Workflow {
1821 id: wf_id,
1822 name: "id-test".to_string(),
1823 steps: vec![],
1824 };
1825 let returned_id = engine.register_workflow(workflow);
1826 assert_eq!(returned_id, wf_id);
1827 }
1828
1829 #[test]
1830 fn workflow_id_display() {
1831 let id = WorkflowId::new();
1832 let s = format!("{}", id);
1833 assert!(!s.is_empty());
1834 }
1835
1836 #[test]
1837 fn workflow_run_id_display() {
1838 let id = WorkflowRunId::new();
1839 let s = format!("{}", id);
1840 assert!(!s.is_empty());
1841 }
1842
1843 #[test]
1844 fn workflow_id_default() {
1845 let id = WorkflowId::default();
1846 assert!(!id.0.is_nil());
1847 }
1848
1849 #[test]
1850 fn workflow_run_id_default() {
1851 let id = WorkflowRunId::default();
1852 assert!(!id.0.is_nil());
1853 }
1854
1855 #[test]
1856 fn variable_substitution_no_variables() {
1857 let result = expand_variables("plain text with no vars", "input", "step", &[]);
1858 assert_eq!(result, "plain text with no vars");
1859 }
1860
1861 #[test]
1862 fn variable_substitution_all_variables_at_once() {
1863 let step_results = vec![StepResult {
1864 step_name: "analysis".to_string(),
1865 response: "analyzed data".to_string(),
1866 tokens_used: 50,
1867 duration_ms: 100,
1868 error: None,
1869 status: StepStatus::Completed,
1870 started_at: None,
1871 completed_at: None,
1872 }];
1873
1874 let result = expand_variables(
1875 "Input: {{input}}, Prev: {{previous_output}}, Step: {{step_name}}, S1: {{step_1}}, Named: {{analysis}}",
1876 "my input",
1877 "current_step",
1878 &step_results,
1879 );
1880 assert_eq!(
1881 result,
1882 "Input: my input, Prev: my input, Step: current_step, S1: analyzed data, Named: analyzed data"
1883 );
1884 }
1885
1886 #[test]
1887 fn variable_substitution_empty_input() {
1888 let result = expand_variables("{{input}} is here", "", "step", &[]);
1889 assert_eq!(result, " is here");
1890 }
1891
1892 #[test]
1893 fn variable_substitution_multiple_same_var() {
1894 let result = expand_variables("{{input}} and {{input}} again", "hello", "step", &[]);
1895 assert_eq!(result, "hello and hello again");
1896 }
1897
1898 #[test]
1899 fn on_error_default_is_fail_workflow() {
1900 let on_error = OnError::default();
1901 assert!(matches!(on_error, OnError::FailWorkflow));
1902 }
1903
1904 #[test]
1905 fn list_runs_for_workflow_filters_correctly() {
1906 let engine = WorkflowEngine::new();
1907 let wf_id_1 = WorkflowId::new();
1908 let wf_id_2 = WorkflowId::new();
1909
1910 assert!(engine.list_runs_for_workflow(&wf_id_1).is_empty());
1911 assert!(engine.list_runs_for_workflow(&wf_id_2).is_empty());
1912 }
1913
1914 #[test]
1915 fn workflow_step_serialization() {
1916 let step = WorkflowStep {
1917 name: "test".to_string(),
1918 fighter_name: "fighter".to_string(),
1919 prompt_template: "Do {{input}}".to_string(),
1920 timeout_secs: Some(30),
1921 on_error: OnError::SkipStep,
1922 };
1923 let json = serde_json::to_string(&step).expect("serialize");
1924 let deserialized: WorkflowStep = serde_json::from_str(&json).expect("deserialize");
1925 assert_eq!(deserialized.name, "test");
1926 assert_eq!(deserialized.timeout_secs, Some(30));
1927 }
1928
1929 #[test]
1930 fn workflow_serialization_roundtrip() {
1931 let workflow = Workflow {
1932 id: WorkflowId::new(),
1933 name: "roundtrip".to_string(),
1934 steps: vec![WorkflowStep {
1935 name: "s1".to_string(),
1936 fighter_name: "f1".to_string(),
1937 prompt_template: "{{input}}".to_string(),
1938 timeout_secs: None,
1939 on_error: OnError::RetryOnce,
1940 }],
1941 };
1942 let json = serde_json::to_string(&workflow).expect("serialize");
1943 let deserialized: Workflow = serde_json::from_str(&json).expect("deserialize");
1944 assert_eq!(deserialized.name, "roundtrip");
1945 assert_eq!(deserialized.steps.len(), 1);
1946 }
1947
1948 #[test]
1949 fn step_result_with_error() {
1950 let sr = StepResult {
1951 step_name: "failing".to_string(),
1952 response: String::new(),
1953 tokens_used: 0,
1954 duration_ms: 0,
1955 error: Some("timeout".to_string()),
1956 status: StepStatus::Failed,
1957 started_at: None,
1958 completed_at: None,
1959 };
1960 assert!(sr.error.is_some());
1961 assert_eq!(sr.error.expect("error"), "timeout");
1962 }
1963
1964 #[test]
1965 fn variable_substitution_step_ref_by_number_out_of_range() {
1966 let step_results = vec![
1967 StepResult {
1968 step_name: "a".to_string(),
1969 response: "r1".to_string(),
1970 tokens_used: 0,
1971 duration_ms: 0,
1972 error: None,
1973 status: StepStatus::Completed,
1974 started_at: None,
1975 completed_at: None,
1976 },
1977 StepResult {
1978 step_name: "b".to_string(),
1979 response: "r2".to_string(),
1980 tokens_used: 0,
1981 duration_ms: 0,
1982 error: None,
1983 status: StepStatus::Completed,
1984 started_at: None,
1985 completed_at: None,
1986 },
1987 ];
1988 let result = expand_variables("{{step_5}}", "input", "step", &step_results);
1989 assert_eq!(result, "{{step_5}}");
1990 }
1991
1992 #[tokio::test]
1995 async fn dag_linear_execution() {
1996 let steps = vec![
1997 dag_step("a", &[]),
1998 dag_step("b", &["a"]),
1999 dag_step("c", &["b"]),
2000 ];
2001 let executor = MockExecutor::new()
2002 .with_response("a", "result_a")
2003 .with_response("b", "result_b")
2004 .with_response("c", "result_c");
2005
2006 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2007 assert_eq!(result.status, WorkflowRunStatus::Completed);
2008 assert_eq!(result.step_results.len(), 3);
2009 assert_eq!(result.step_results["a"].response, "result_a");
2010 assert_eq!(result.step_results["b"].response, "result_b");
2011 assert_eq!(result.step_results["c"].response, "result_c");
2012 }
2013
2014 #[tokio::test]
2015 async fn dag_fan_out_execution() {
2016 let steps = vec![
2017 dag_step("root", &[]),
2018 dag_step("branch1", &["root"]),
2019 dag_step("branch2", &["root"]),
2020 dag_step("branch3", &["root"]),
2021 ];
2022 let executor = MockExecutor::new()
2023 .with_response("root", "root_out")
2024 .with_response("branch1", "b1_out")
2025 .with_response("branch2", "b2_out")
2026 .with_response("branch3", "b3_out");
2027
2028 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2029 assert_eq!(result.status, WorkflowRunStatus::Completed);
2030 assert_eq!(result.step_results.len(), 4);
2031 assert_eq!(result.step_results["branch1"].response, "b1_out");
2033 assert_eq!(result.step_results["branch2"].response, "b2_out");
2034 assert_eq!(result.step_results["branch3"].response, "b3_out");
2035 }
2036
2037 #[tokio::test]
2038 async fn dag_fan_in_execution() {
2039 let steps = vec![
2040 dag_step("a", &[]),
2041 dag_step("b", &[]),
2042 dag_step("c", &[]),
2043 dag_step("join", &["a", "b", "c"]),
2044 ];
2045 let executor = MockExecutor::new()
2046 .with_response("a", "ra")
2047 .with_response("b", "rb")
2048 .with_response("c", "rc")
2049 .with_response("join", "joined");
2050
2051 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2052 assert_eq!(result.status, WorkflowRunStatus::Completed);
2053 assert_eq!(result.step_results["join"].response, "joined");
2054 assert_eq!(result.execution_trace.len(), 2);
2056 let first_wave = &result.execution_trace[0].steps;
2057 assert!(first_wave.contains(&"a".to_string()));
2058 assert!(first_wave.contains(&"b".to_string()));
2059 assert!(first_wave.contains(&"c".to_string()));
2060 }
2061
2062 #[tokio::test]
2063 async fn dag_diamond_execution() {
2064 let steps = vec![
2065 dag_step("root", &[]),
2066 dag_step("left", &["root"]),
2067 dag_step("right", &["root"]),
2068 dag_step("join", &["left", "right"]),
2069 ];
2070 let executor = MockExecutor::new()
2071 .with_response("root", "root_out")
2072 .with_response("left", "left_out")
2073 .with_response("right", "right_out")
2074 .with_response("join", "joined");
2075
2076 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2077 assert_eq!(result.status, WorkflowRunStatus::Completed);
2078 assert_eq!(result.step_results.len(), 4);
2079 let wave2 = &result.execution_trace[1].steps;
2081 assert!(wave2.contains(&"left".to_string()));
2082 assert!(wave2.contains(&"right".to_string()));
2083 }
2084
2085 #[tokio::test]
2086 async fn dag_parallel_actually_concurrent() {
2087 let steps = vec![dag_step("a", &[]), dag_step("b", &[]), dag_step("c", &[])];
2090 let executor = TimedMockExecutor { delay_ms: 50 };
2091
2092 let start = Instant::now();
2093 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2094 let elapsed = start.elapsed();
2095
2096 assert_eq!(result.status, WorkflowRunStatus::Completed);
2097 assert_eq!(result.step_results.len(), 3);
2098 assert!(
2101 elapsed.as_millis() < 120,
2102 "parallel execution took {}ms, expected ~50ms",
2103 elapsed.as_millis()
2104 );
2105 }
2106
2107 #[tokio::test]
2108 async fn dag_condition_if_success() {
2109 let mut steps = vec![dag_step("a", &[]), dag_step("b", &["a"])];
2110 steps[1].condition = Some(Condition::IfSuccess {
2111 step: "a".to_string(),
2112 });
2113 let executor = MockExecutor::new()
2114 .with_response("a", "ok")
2115 .with_response("b", "b_ran");
2116
2117 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2118 assert_eq!(result.step_results["b"].status, StepStatus::Completed);
2119 assert_eq!(result.step_results["b"].response, "b_ran");
2120 }
2121
2122 #[tokio::test]
2123 async fn dag_condition_skips_step() {
2124 let mut steps = vec![dag_step("a", &[]), dag_step("b", &["a"])];
2125 steps[1].condition = Some(Condition::IfFailure {
2126 step: "a".to_string(),
2127 });
2128 let executor = MockExecutor::new()
2129 .with_response("a", "ok")
2130 .with_response("b", "should_not_run");
2131
2132 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2133 assert_eq!(result.step_results["b"].status, StepStatus::Skipped);
2134 }
2135
2136 #[tokio::test]
2137 async fn dag_condition_if_output() {
2138 let mut steps = vec![dag_step("a", &[]), dag_step("b", &["a"])];
2139 steps[1].condition = Some(Condition::IfOutput {
2140 step: "a".to_string(),
2141 contains: "magic".to_string(),
2142 });
2143 let executor = MockExecutor::new()
2144 .with_response("a", "this has magic inside")
2145 .with_response("b", "b_ran");
2146
2147 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2148 assert_eq!(result.step_results["b"].status, StepStatus::Completed);
2149 }
2150
2151 #[tokio::test]
2152 async fn dag_condition_if_output_no_match() {
2153 let mut steps = vec![dag_step("a", &[]), dag_step("b", &["a"])];
2154 steps[1].condition = Some(Condition::IfOutput {
2155 step: "a".to_string(),
2156 contains: "magic".to_string(),
2157 });
2158 let executor = MockExecutor::new()
2159 .with_response("a", "no special word here")
2160 .with_response("b", "should_not_run");
2161
2162 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2163 assert_eq!(result.step_results["b"].status, StepStatus::Skipped);
2164 }
2165
2166 #[tokio::test]
2167 async fn dag_foreach_loop() {
2168 let mut steps = vec![dag_step("source", &[]), dag_step("process", &["source"])];
2169 steps[0].prompt_template = "{{input}}".to_string();
2170 steps[1].loop_config = Some(LoopConfig::ForEach {
2171 source_step: "source".to_string(),
2172 max_iterations: 100,
2173 });
2174 steps[1].prompt_template = "process item: {{loop.item}}".to_string();
2175
2176 let executor =
2177 MockExecutor::new().with_response("source", r#"["apple", "banana", "cherry"]"#);
2178
2179 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2180 assert_eq!(result.status, WorkflowRunStatus::Completed);
2181 let process_result = &result.step_results["process"];
2182 assert!(
2184 process_result.response.contains("process item: apple"),
2185 "response: {}",
2186 process_result.response
2187 );
2188 }
2189
2190 #[tokio::test]
2191 async fn dag_while_loop() {
2192 let mut steps = vec![dag_step("counter", &[])];
2193 steps[0].loop_config = Some(LoopConfig::While {
2194 condition: Condition::Expression("true".to_string()),
2195 max_iterations: 5,
2196 });
2197
2198 let executor = MockExecutor::new().with_response("counter", "tick");
2199
2200 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2201 assert_eq!(result.status, WorkflowRunStatus::Completed);
2202 let counter_result = &result.step_results["counter"];
2203 let ticks: Vec<&str> = counter_result.response.split('\n').collect();
2205 assert_eq!(ticks.len(), 5);
2206 }
2207
2208 #[tokio::test]
2209 async fn dag_retry_loop_succeeds_eventually() {
2210 let mut steps = vec![dag_step("flaky", &[])];
2211 steps[0].loop_config = Some(LoopConfig::Retry {
2212 max_retries: 3,
2213 backoff_ms: 1, backoff_multiplier: 1.0,
2215 });
2216
2217 let executor = FailNTimesMockExecutor::new(2);
2219
2220 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2221 assert_eq!(result.status, WorkflowRunStatus::Completed);
2222 assert!(result.step_results["flaky"].error.is_none());
2223 assert!(
2224 result.step_results["flaky"]
2225 .response
2226 .contains("success on attempt 3")
2227 );
2228 }
2229
2230 #[tokio::test]
2231 async fn dag_retry_loop_exhausts_retries() {
2232 let mut steps = vec![dag_step("flaky", &[])];
2233 steps[0].loop_config = Some(LoopConfig::Retry {
2234 max_retries: 2,
2235 backoff_ms: 1,
2236 backoff_multiplier: 1.0,
2237 });
2238
2239 let executor = FailNTimesMockExecutor::new(10);
2241
2242 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2243 assert!(result.step_results["flaky"].error.is_some());
2244 }
2245
2246 #[tokio::test]
2247 async fn dag_step_failure_with_skip() {
2248 let mut steps = vec![
2249 dag_step("a", &[]),
2250 dag_step("b", &["a"]),
2251 dag_step("c", &["b"]),
2252 ];
2253 steps[1].on_error = OnError::SkipStep;
2254
2255 let executor = MockExecutor::new()
2256 .with_response("a", "ok")
2257 .with_failure("b", "b failed")
2258 .with_response("c", "c_ran");
2259
2260 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2261 assert!(result.step_results.contains_key("c"));
2264 }
2265
2266 #[tokio::test]
2267 async fn dag_step_failure_cascades() {
2268 let steps = vec![
2269 dag_step("a", &[]),
2270 dag_step("b", &["a"]),
2271 dag_step("c", &["b"]),
2272 ];
2273
2274 let executor = MockExecutor::new()
2275 .with_response("a", "ok")
2276 .with_failure("b", "b failed")
2277 .with_response("c", "should_not_run");
2278
2279 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2280 assert!(result.step_results["b"].error.is_some());
2281 assert_eq!(result.step_results["c"].status, StepStatus::Cancelled);
2283 }
2284
2285 #[tokio::test]
2286 async fn dag_empty_workflow() {
2287 let executor = MockExecutor::new();
2288 let result = execute_dag("test", &[], "input", Arc::new(executor)).await;
2289 assert_eq!(result.status, WorkflowRunStatus::Failed);
2290 assert!(!result.validation_errors.is_empty());
2291 }
2292
2293 #[tokio::test]
2294 async fn dag_single_step() {
2295 let steps = vec![dag_step("only", &[])];
2296 let executor = MockExecutor::new().with_response("only", "done");
2297
2298 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2299 assert_eq!(result.status, WorkflowRunStatus::Completed);
2300 assert_eq!(result.step_results.len(), 1);
2301 assert_eq!(result.step_results["only"].response, "done");
2302 }
2303
2304 #[tokio::test]
2305 async fn dag_all_steps_fail() {
2306 let steps = vec![dag_step("a", &[]), dag_step("b", &[])];
2307
2308 let executor = MockExecutor::new()
2309 .with_failure("a", "a failed")
2310 .with_failure("b", "b failed");
2311
2312 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2313 assert_eq!(result.status, WorkflowRunStatus::Failed);
2314 assert!(!result.dead_letters.is_empty());
2315 }
2316
2317 #[tokio::test]
2318 async fn dag_partial_completion() {
2319 let steps = vec![dag_step("good", &[]), dag_step("bad", &[])];
2320
2321 let executor = MockExecutor::new()
2322 .with_response("good", "ok")
2323 .with_failure("bad", "nope");
2324
2325 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2326 assert_eq!(result.status, WorkflowRunStatus::PartiallyCompleted);
2327 }
2328
2329 #[tokio::test]
2330 async fn dag_validation_rejects_cycle() {
2331 let steps = vec![dag_step("a", &["b"]), dag_step("b", &["a"])];
2332 let executor = MockExecutor::new();
2333 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2334 assert_eq!(result.status, WorkflowRunStatus::Failed);
2335 assert!(!result.validation_errors.is_empty());
2336 }
2337
2338 #[tokio::test]
2339 async fn dag_all_steps_skipped() {
2340 let mut steps = vec![dag_step("a", &[]), dag_step("b", &[])];
2341 steps[0].condition = Some(Condition::Expression("false".to_string()));
2342 steps[1].condition = Some(Condition::Expression("false".to_string()));
2343
2344 let executor = MockExecutor::new();
2345 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2346 assert_eq!(result.status, WorkflowRunStatus::Completed);
2348 assert_eq!(result.step_results["a"].status, StepStatus::Skipped);
2349 assert_eq!(result.step_results["b"].status, StepStatus::Skipped);
2350 }
2351
2352 #[test]
2355 fn dag_variables_step_output() {
2356 let mut results = HashMap::new();
2357 results.insert(
2358 "analyze".to_string(),
2359 StepResult {
2360 step_name: "analyze".to_string(),
2361 response: "found 3 bugs".to_string(),
2362 tokens_used: 100,
2363 duration_ms: 500,
2364 error: None,
2365 status: StepStatus::Completed,
2366 started_at: None,
2367 completed_at: None,
2368 },
2369 );
2370
2371 let expanded = expand_dag_variables(
2372 "Result: {{analyze.output}}",
2373 "input",
2374 "next",
2375 &results,
2376 None,
2377 );
2378 assert_eq!(expanded, "Result: found 3 bugs");
2379 }
2380
2381 #[test]
2382 fn dag_variables_step_status() {
2383 let mut results = HashMap::new();
2384 results.insert(
2385 "build".to_string(),
2386 StepResult {
2387 step_name: "build".to_string(),
2388 response: "ok".to_string(),
2389 tokens_used: 50,
2390 duration_ms: 300,
2391 error: None,
2392 status: StepStatus::Completed,
2393 started_at: None,
2394 completed_at: None,
2395 },
2396 );
2397
2398 let expanded = expand_dag_variables(
2399 "Build status: {{build.status}}",
2400 "input",
2401 "deploy",
2402 &results,
2403 None,
2404 );
2405 assert_eq!(expanded, "Build status: completed");
2406 }
2407
2408 #[test]
2409 fn dag_variables_step_duration() {
2410 let mut results = HashMap::new();
2411 results.insert(
2412 "fetch".to_string(),
2413 StepResult {
2414 step_name: "fetch".to_string(),
2415 response: "data".to_string(),
2416 tokens_used: 10,
2417 duration_ms: 1234,
2418 error: None,
2419 status: StepStatus::Completed,
2420 started_at: None,
2421 completed_at: None,
2422 },
2423 );
2424
2425 let expanded = expand_dag_variables(
2426 "Fetch took {{fetch.duration_ms}}ms",
2427 "input",
2428 "next",
2429 &results,
2430 None,
2431 );
2432 assert_eq!(expanded, "Fetch took 1234ms");
2433 }
2434
2435 #[test]
2436 fn dag_variables_loop_state() {
2437 let results = HashMap::new();
2438 let mut loop_state = LoopState::new();
2439 loop_state.index = 2;
2440 loop_state.item = Some("banana".to_string());
2441
2442 let expanded = expand_dag_variables(
2443 "Item {{loop.index}}: {{loop.item}}",
2444 "input",
2445 "process",
2446 &results,
2447 Some(&loop_state),
2448 );
2449 assert_eq!(expanded, "Item 2: banana");
2450 }
2451
2452 #[test]
2453 fn dag_variables_json_path() {
2454 let mut results = HashMap::new();
2455 results.insert(
2456 "api".to_string(),
2457 StepResult {
2458 step_name: "api".to_string(),
2459 response: r#"{"user": {"name": "Alice", "age": 30}}"#.to_string(),
2460 tokens_used: 10,
2461 duration_ms: 100,
2462 error: None,
2463 status: StepStatus::Completed,
2464 started_at: None,
2465 completed_at: None,
2466 },
2467 );
2468
2469 let expanded = expand_dag_variables(
2470 "Name: {{api.output.user.name}}",
2471 "input",
2472 "next",
2473 &results,
2474 None,
2475 );
2476 assert_eq!(expanded, "Name: Alice");
2477 }
2478
2479 #[test]
2480 fn dag_variables_transform_uppercase() {
2481 let mut results = HashMap::new();
2482 results.insert(
2483 "greet".to_string(),
2484 StepResult {
2485 step_name: "greet".to_string(),
2486 response: "hello world".to_string(),
2487 tokens_used: 10,
2488 duration_ms: 50,
2489 error: None,
2490 status: StepStatus::Completed,
2491 started_at: None,
2492 completed_at: None,
2493 },
2494 );
2495
2496 let expanded = expand_dag_variables(
2497 "{{greet.output | uppercase}}",
2498 "input",
2499 "next",
2500 &results,
2501 None,
2502 );
2503 assert_eq!(expanded, "HELLO WORLD");
2504 }
2505
2506 #[test]
2507 fn dag_variables_transform_lowercase() {
2508 let mut results = HashMap::new();
2509 results.insert(
2510 "shout".to_string(),
2511 StepResult {
2512 step_name: "shout".to_string(),
2513 response: "LOUD NOISE".to_string(),
2514 tokens_used: 10,
2515 duration_ms: 50,
2516 error: None,
2517 status: StepStatus::Completed,
2518 started_at: None,
2519 completed_at: None,
2520 },
2521 );
2522
2523 let expanded = expand_dag_variables(
2524 "{{shout.output | lowercase}}",
2525 "input",
2526 "next",
2527 &results,
2528 None,
2529 );
2530 assert_eq!(expanded, "loud noise");
2531 }
2532
2533 #[test]
2534 fn dag_variables_transform_json_extract() {
2535 let mut results = HashMap::new();
2536 results.insert(
2537 "data".to_string(),
2538 StepResult {
2539 step_name: "data".to_string(),
2540 response: r#"{"key": "value123"}"#.to_string(),
2541 tokens_used: 10,
2542 duration_ms: 50,
2543 error: None,
2544 status: StepStatus::Completed,
2545 started_at: None,
2546 completed_at: None,
2547 },
2548 );
2549
2550 let expanded = expand_dag_variables(
2551 "{{data.output | json_extract \"$.key\"}}",
2552 "input",
2553 "next",
2554 &results,
2555 None,
2556 );
2557 assert_eq!(expanded, "value123");
2558 }
2559
2560 #[test]
2561 fn json_path_extract_simple() {
2562 let result = json_path_extract(r#"{"name": "Bob"}"#, "name");
2563 assert_eq!(result, "Bob");
2564 }
2565
2566 #[test]
2567 fn json_path_extract_nested() {
2568 let result = json_path_extract(r#"{"a": {"b": {"c": 42}}}"#, "a.b.c");
2569 assert_eq!(result, "42");
2570 }
2571
2572 #[test]
2573 fn json_path_extract_dollar_prefix() {
2574 let result = json_path_extract(r#"{"key": "val"}"#, "$.key");
2575 assert_eq!(result, "val");
2576 }
2577
2578 #[test]
2579 fn json_path_extract_missing_key() {
2580 let result = json_path_extract(r#"{"key": "val"}"#, "missing");
2581 assert_eq!(result, "");
2582 }
2583
2584 #[test]
2585 fn json_path_extract_invalid_json() {
2586 let result = json_path_extract("not json", "key");
2587 assert_eq!(result, "not json");
2588 }
2589
2590 #[test]
2593 fn step_status_display() {
2594 assert_eq!(StepStatus::Pending.to_string(), "pending");
2595 assert_eq!(StepStatus::Running.to_string(), "running");
2596 assert_eq!(StepStatus::Completed.to_string(), "completed");
2597 assert_eq!(StepStatus::Failed.to_string(), "failed");
2598 assert_eq!(StepStatus::Skipped.to_string(), "skipped");
2599 assert_eq!(StepStatus::Cancelled.to_string(), "cancelled");
2600 }
2601
2602 #[test]
2605 fn on_error_fallback_serialization() {
2606 let on_error = OnError::Fallback {
2607 step: "backup".to_string(),
2608 };
2609 let json = serde_json::to_string(&on_error).expect("serialize");
2610 let deser: OnError = serde_json::from_str(&json).expect("deserialize");
2611 assert!(matches!(deser, OnError::Fallback { step } if step == "backup"));
2612 }
2613
2614 #[test]
2615 fn on_error_catch_and_continue_serialization() {
2616 let on_error = OnError::CatchAndContinue {
2617 error_handler: "handler".to_string(),
2618 };
2619 let json = serde_json::to_string(&on_error).expect("serialize");
2620 let deser: OnError = serde_json::from_str(&json).expect("deserialize");
2621 assert!(
2622 matches!(deser, OnError::CatchAndContinue { error_handler } if error_handler == "handler")
2623 );
2624 }
2625
2626 #[test]
2627 fn on_error_circuit_breaker_serialization() {
2628 let on_error = OnError::CircuitBreaker {
2629 max_failures: 5,
2630 cooldown_secs: 60,
2631 };
2632 let json = serde_json::to_string(&on_error).expect("serialize");
2633 let deser: OnError = serde_json::from_str(&json).expect("deserialize");
2634 assert!(matches!(
2635 deser,
2636 OnError::CircuitBreaker {
2637 max_failures: 5,
2638 cooldown_secs: 60
2639 }
2640 ));
2641 }
2642
2643 #[test]
2646 fn circuit_breaker_default_closed() {
2647 let cb = CircuitBreakerState::default();
2648 assert!(!cb.is_open(3, 60));
2649 }
2650
2651 #[test]
2652 fn circuit_breaker_opens_after_max_failures() {
2653 let mut cb = CircuitBreakerState::default();
2654 cb.record_failure();
2655 cb.record_failure();
2656 cb.record_failure();
2657 assert!(cb.is_open(3, 60));
2658 }
2659
2660 #[test]
2661 fn circuit_breaker_resets_on_success() {
2662 let mut cb = CircuitBreakerState::default();
2663 cb.record_failure();
2664 cb.record_failure();
2665 cb.record_success();
2666 assert!(!cb.is_open(3, 60));
2667 assert_eq!(cb.consecutive_failures, 0);
2668 }
2669
2670 #[test]
2673 fn register_dag_workflow_valid() {
2674 let engine = WorkflowEngine::new();
2675 let wf = DagWorkflow {
2676 id: WorkflowId::new(),
2677 name: "test-dag".to_string(),
2678 steps: vec![dag_step("a", &[]), dag_step("b", &["a"])],
2679 };
2680 let result = engine.register_dag_workflow(wf);
2681 assert!(result.is_ok());
2682 }
2683
2684 #[test]
2685 fn register_dag_workflow_with_cycle_fails() {
2686 let engine = WorkflowEngine::new();
2687 let wf = DagWorkflow {
2688 id: WorkflowId::new(),
2689 name: "bad-dag".to_string(),
2690 steps: vec![dag_step("a", &["b"]), dag_step("b", &["a"])],
2691 };
2692 let result = engine.register_dag_workflow(wf);
2693 assert!(result.is_err());
2694 }
2695
2696 #[test]
2697 fn list_dag_workflows() {
2698 let engine = WorkflowEngine::new();
2699 let wf = DagWorkflow {
2700 id: WorkflowId::new(),
2701 name: "dag1".to_string(),
2702 steps: vec![dag_step("a", &[])],
2703 };
2704 engine.register_dag_workflow(wf).expect("should register");
2705 assert_eq!(engine.list_dag_workflows().len(), 1);
2706 }
2707
2708 #[test]
2709 fn get_dag_workflow() {
2710 let engine = WorkflowEngine::new();
2711 let id = WorkflowId::new();
2712 let wf = DagWorkflow {
2713 id,
2714 name: "dag1".to_string(),
2715 steps: vec![dag_step("a", &[])],
2716 };
2717 engine.register_dag_workflow(wf).expect("should register");
2718 let fetched = engine.get_dag_workflow(&id).expect("should exist");
2719 assert_eq!(fetched.name, "dag1");
2720 }
2721
2722 #[test]
2723 fn get_nonexistent_dag_workflow() {
2724 let engine = WorkflowEngine::new();
2725 assert!(engine.get_dag_workflow(&WorkflowId::new()).is_none());
2726 }
2727
2728 #[tokio::test]
2731 async fn dag_dead_letters_populated_on_failure() {
2732 let steps = vec![dag_step("a", &[])];
2733 let executor = MockExecutor::new().with_failure("a", "catastrophic failure");
2734
2735 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2736 assert!(!result.dead_letters.is_empty());
2737 assert_eq!(result.dead_letters[0].step_name, "a");
2738 assert_eq!(result.dead_letters[0].error, "catastrophic failure");
2739 }
2740
2741 #[tokio::test]
2744 async fn dag_execution_trace_records_waves() {
2745 let steps = vec![
2746 dag_step("a", &[]),
2747 dag_step("b", &["a"]),
2748 dag_step("c", &["b"]),
2749 ];
2750 let executor = MockExecutor::new()
2751 .with_response("a", "ok")
2752 .with_response("b", "ok")
2753 .with_response("c", "ok");
2754
2755 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2756 assert_eq!(result.execution_trace.len(), 3);
2758 assert_eq!(result.execution_trace[0].steps, vec!["a"]);
2759 assert_eq!(result.execution_trace[1].steps, vec!["b"]);
2760 assert_eq!(result.execution_trace[2].steps, vec!["c"]);
2761 }
2762
2763 #[test]
2766 fn dag_step_fallback_step_extraction() {
2767 let mut step = dag_step("test", &[]);
2768 assert!(step.fallback_step().is_none());
2769
2770 step.on_error = OnError::Fallback {
2771 step: "backup".to_string(),
2772 };
2773 assert_eq!(step.fallback_step(), Some("backup".to_string()));
2774
2775 step.on_error = OnError::CatchAndContinue {
2776 error_handler: "handler".to_string(),
2777 };
2778 assert_eq!(step.fallback_step(), Some("handler".to_string()));
2779 }
2780
2781 #[test]
2784 fn dag_workflow_serialization_roundtrip() {
2785 let wf = DagWorkflow {
2786 id: WorkflowId::new(),
2787 name: "test-dag".to_string(),
2788 steps: vec![dag_step("a", &[]), dag_step("b", &["a"])],
2789 };
2790 let json = serde_json::to_string(&wf).expect("serialize");
2791 let deser: DagWorkflow = serde_json::from_str(&json).expect("deserialize");
2792 assert_eq!(deser.name, "test-dag");
2793 assert_eq!(deser.steps.len(), 2);
2794 }
2795
2796 #[test]
2797 fn dag_workflow_step_with_condition_serialization() {
2798 let mut step = dag_step("test", &["dep1"]);
2799 step.condition = Some(Condition::IfSuccess {
2800 step: "dep1".to_string(),
2801 });
2802 step.else_step = Some("fallback".to_string());
2803 let json = serde_json::to_string(&step).expect("serialize");
2804 let deser: DagWorkflowStep = serde_json::from_str(&json).expect("deserialize");
2805 assert!(deser.condition.is_some());
2806 assert_eq!(deser.else_step, Some("fallback".to_string()));
2807 }
2808
2809 #[test]
2810 fn dead_letter_entry_serialization() {
2811 let entry = DeadLetterEntry {
2812 step_name: "failed_step".to_string(),
2813 error: "boom".to_string(),
2814 input: "test input".to_string(),
2815 failed_at: Utc::now(),
2816 };
2817 let json = serde_json::to_string(&entry).expect("serialize");
2818 let deser: DeadLetterEntry = serde_json::from_str(&json).expect("deserialize");
2819 assert_eq!(deser.step_name, "failed_step");
2820 assert_eq!(deser.error, "boom");
2821 }
2822
2823 #[test]
2824 fn execution_trace_entry_serialization() {
2825 let entry = ExecutionTraceEntry {
2826 steps: vec!["a".to_string(), "b".to_string()],
2827 started_at: Utc::now(),
2828 completed_at: Some(Utc::now()),
2829 };
2830 let json = serde_json::to_string(&entry).expect("serialize");
2831 let deser: ExecutionTraceEntry = serde_json::from_str(&json).expect("deserialize");
2832 assert_eq!(deser.steps.len(), 2);
2833 }
2834
2835 #[test]
2836 fn workflow_run_with_new_fields_serialization() {
2837 let run = WorkflowRun {
2838 id: WorkflowRunId::new(),
2839 workflow_id: WorkflowId::new(),
2840 status: WorkflowRunStatus::PartiallyCompleted,
2841 step_results: Vec::new(),
2842 started_at: Utc::now(),
2843 completed_at: None,
2844 dead_letters: vec![DeadLetterEntry {
2845 step_name: "x".to_string(),
2846 error: "err".to_string(),
2847 input: "in".to_string(),
2848 failed_at: Utc::now(),
2849 }],
2850 execution_trace: Vec::new(),
2851 };
2852 let json = serde_json::to_string(&run).expect("serialize");
2853 let deser: WorkflowRun = serde_json::from_str(&json).expect("deserialize");
2854 assert_eq!(deser.status, WorkflowRunStatus::PartiallyCompleted);
2855 assert_eq!(deser.dead_letters.len(), 1);
2856 }
2857
2858 #[test]
2859 fn step_result_with_new_fields() {
2860 let sr = StepResult {
2861 step_name: "test".to_string(),
2862 response: "ok".to_string(),
2863 tokens_used: 10,
2864 duration_ms: 100,
2865 error: None,
2866 status: StepStatus::Completed,
2867 started_at: Some(Utc::now()),
2868 completed_at: Some(Utc::now()),
2869 };
2870 let json = serde_json::to_string(&sr).expect("serialize");
2871 let deser: StepResult = serde_json::from_str(&json).expect("deserialize");
2872 assert_eq!(deser.status, StepStatus::Completed);
2873 assert!(deser.started_at.is_some());
2874 }
2875
2876 #[tokio::test]
2879 async fn dag_fallback_on_error() {
2880 let mut steps = vec![dag_step("main", &[]), dag_step("backup", &[])];
2881 steps[0].on_error = OnError::Fallback {
2882 step: "backup".to_string(),
2883 };
2884
2885 let executor = MockExecutor::new()
2886 .with_failure("main", "main failed")
2887 .with_response("backup", "backup result");
2888
2889 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2890 let main_result = &result.step_results["main"];
2893 assert_eq!(main_result.response, "backup result");
2894 }
2895
2896 #[tokio::test]
2897 async fn dag_catch_and_continue() {
2898 let mut steps = vec![
2899 dag_step("risky", &[]),
2900 dag_step("handler", &[]),
2901 dag_step("next", &["risky"]),
2902 ];
2903 steps[0].on_error = OnError::CatchAndContinue {
2904 error_handler: "handler".to_string(),
2905 };
2906
2907 let executor = MockExecutor::new()
2908 .with_failure("risky", "oops")
2909 .with_response("handler", "handled")
2910 .with_response("next", "continued");
2911
2912 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2913 assert!(result.step_results.contains_key("next"));
2915 }
2916
2917 struct ConcurrencyProofExecutor {
2921 delay_ms: u64,
2922 timings: Arc<tokio::sync::Mutex<Vec<(String, Instant, Instant)>>>,
2924 }
2925
2926 impl ConcurrencyProofExecutor {
2927 fn new(delay_ms: u64) -> Self {
2928 Self {
2929 delay_ms,
2930 timings: Arc::new(tokio::sync::Mutex::new(Vec::new())),
2931 }
2932 }
2933 }
2934
2935 #[async_trait::async_trait]
2936 impl StepExecutor for ConcurrencyProofExecutor {
2937 async fn execute(
2938 &self,
2939 step: &DagWorkflowStep,
2940 _input: &str,
2941 _step_results: &HashMap<String, StepResult>,
2942 _loop_state: Option<&LoopState>,
2943 ) -> Result<StepResult, String> {
2944 let start = Instant::now();
2945 tokio::time::sleep(Duration::from_millis(self.delay_ms)).await;
2946 let end = Instant::now();
2947
2948 self.timings
2949 .lock()
2950 .await
2951 .push((step.name.clone(), start, end));
2952
2953 Ok(StepResult {
2954 step_name: step.name.clone(),
2955 response: format!("done-{}", step.name),
2956 tokens_used: 10,
2957 duration_ms: self.delay_ms,
2958 error: None,
2959 status: StepStatus::Completed,
2960 started_at: Some(Utc::now()),
2961 completed_at: Some(Utc::now()),
2962 })
2963 }
2964 }
2965
2966 #[tokio::test]
2968 async fn dag_three_independent_steps_parallel_timing() {
2969 let steps = vec![dag_step("x", &[]), dag_step("y", &[]), dag_step("z", &[])];
2970 let executor = ConcurrencyProofExecutor::new(50);
2971 let timings = Arc::clone(&executor.timings);
2972
2973 let start = Instant::now();
2974 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
2975 let elapsed = start.elapsed();
2976
2977 assert_eq!(result.status, WorkflowRunStatus::Completed);
2978 assert_eq!(result.step_results.len(), 3);
2979 assert!(
2981 elapsed.as_millis() < 100,
2982 "3 independent 50ms steps took {}ms, should be ~50ms for parallel execution",
2983 elapsed.as_millis()
2984 );
2985
2986 let recorded = timings.lock().await;
2988 assert_eq!(recorded.len(), 3);
2989 let starts: Vec<_> = recorded.iter().map(|(_, s, _)| *s).collect();
2991 let earliest = starts.iter().min().copied().expect("should have starts");
2992 for s in &starts {
2993 let diff = s.duration_since(earliest).as_millis();
2994 assert!(
2995 diff < 20,
2996 "start time spread {}ms too large for parallel execution",
2997 diff
2998 );
2999 }
3000 }
3001
3002 #[tokio::test]
3004 async fn dag_fan_out_fan_in_timing() {
3005 let steps = vec![
3006 dag_step("a", &[]),
3007 dag_step("b", &["a"]),
3008 dag_step("c", &["a"]),
3009 dag_step("d", &["a"]),
3010 dag_step("e", &["b", "c", "d"]),
3011 ];
3012 let executor = TimedMockExecutor { delay_ms: 30 };
3013
3014 let start = Instant::now();
3015 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3016 let elapsed = start.elapsed();
3017
3018 assert_eq!(result.status, WorkflowRunStatus::Completed);
3019 assert_eq!(result.step_results.len(), 5);
3020
3021 assert!(
3024 elapsed.as_millis() < 130,
3025 "fan-out/fan-in took {}ms, expected ~90ms",
3026 elapsed.as_millis()
3027 );
3028
3029 assert_eq!(result.execution_trace.len(), 3);
3031 let wave2 = &result.execution_trace[1].steps;
3033 assert_eq!(wave2.len(), 3);
3034 }
3035
3036 #[tokio::test]
3038 async fn dag_fan_in_parallel_roots() {
3039 let steps = vec![
3040 dag_step("r1", &[]),
3041 dag_step("r2", &[]),
3042 dag_step("r3", &[]),
3043 dag_step("join", &["r1", "r2", "r3"]),
3044 ];
3045 let executor = MockExecutor::new()
3046 .with_response("r1", "out1")
3047 .with_response("r2", "out2")
3048 .with_response("r3", "out3")
3049 .with_response("join", "merged");
3050
3051 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3052 assert_eq!(result.status, WorkflowRunStatus::Completed);
3053 assert_eq!(result.step_results["join"].response, "merged");
3054 assert_eq!(result.execution_trace.len(), 2);
3056 assert_eq!(result.execution_trace[0].steps.len(), 3);
3057 }
3058
3059 #[tokio::test]
3061 async fn dag_diamond_dependency_parallel() {
3062 let steps = vec![
3063 dag_step("a", &[]),
3064 dag_step("b", &["a"]),
3065 dag_step("c", &["a"]),
3066 dag_step("d", &["b", "c"]),
3067 ];
3068 let executor = TimedMockExecutor { delay_ms: 30 };
3069
3070 let start = Instant::now();
3071 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3072 let elapsed = start.elapsed();
3073
3074 assert_eq!(result.status, WorkflowRunStatus::Completed);
3075 assert_eq!(result.execution_trace.len(), 3);
3077 let wave2 = &result.execution_trace[1].steps;
3079 assert!(wave2.contains(&"b".to_string()));
3080 assert!(wave2.contains(&"c".to_string()));
3081 assert!(
3083 elapsed.as_millis() < 120,
3084 "diamond took {}ms, expected ~90ms",
3085 elapsed.as_millis()
3086 );
3087 }
3088
3089 #[tokio::test]
3091 async fn dag_conditional_skip_in_dag() {
3092 let mut steps = vec![
3093 dag_step("check", &[]),
3094 dag_step("true_branch", &["check"]),
3095 dag_step("false_branch", &["check"]),
3096 ];
3097 steps[1].condition = Some(Condition::IfSuccess {
3099 step: "check".to_string(),
3100 });
3101 steps[2].condition = Some(Condition::IfFailure {
3103 step: "check".to_string(),
3104 });
3105
3106 let executor = MockExecutor::new()
3107 .with_response("check", "all good")
3108 .with_response("true_branch", "ran")
3109 .with_response("false_branch", "should_not_run");
3110
3111 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3112 assert_eq!(
3113 result.step_results["true_branch"].status,
3114 StepStatus::Completed
3115 );
3116 assert_eq!(
3117 result.step_results["false_branch"].status,
3118 StepStatus::Skipped
3119 );
3120 }
3121
3122 #[tokio::test]
3124 async fn dag_loop_foreach_within_dag() {
3125 let mut steps = vec![
3126 dag_step("data", &[]),
3127 dag_step("process", &["data"]),
3128 dag_step("summary", &["process"]),
3129 ];
3130 steps[1].loop_config = Some(LoopConfig::ForEach {
3131 source_step: "data".to_string(),
3132 max_iterations: 10,
3133 });
3134 steps[1].prompt_template = "process: {{loop.item}}".to_string();
3135
3136 let executor = MockExecutor::new()
3137 .with_response("data", r#"["red", "green", "blue"]"#)
3138 .with_response("summary", "done");
3139
3140 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3141 assert_eq!(result.status, WorkflowRunStatus::Completed);
3142 let process_out = &result.step_results["process"].response;
3143 assert!(process_out.contains("process: red"));
3145 assert!(process_out.contains("process: green"));
3146 assert!(process_out.contains("process: blue"));
3147 }
3148
3149 #[tokio::test]
3151 async fn dag_partial_failure_parallel_branches() {
3152 let steps = vec![
3153 dag_step("root", &[]),
3154 dag_step("ok_branch", &["root"]),
3155 dag_step("fail_branch", &["root"]),
3156 dag_step("ok_branch2", &["root"]),
3157 ];
3158
3159 let executor = MockExecutor::new()
3160 .with_response("root", "start")
3161 .with_response("ok_branch", "success1")
3162 .with_failure("fail_branch", "branch failed")
3163 .with_response("ok_branch2", "success2");
3164
3165 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3166 assert_eq!(result.status, WorkflowRunStatus::PartiallyCompleted);
3167 assert_eq!(
3168 result.step_results["ok_branch"].status,
3169 StepStatus::Completed
3170 );
3171 assert_eq!(
3172 result.step_results["ok_branch2"].status,
3173 StepStatus::Completed
3174 );
3175 assert!(result.step_results["fail_branch"].error.is_some());
3176 }
3177
3178 #[tokio::test]
3180 async fn dag_fallback_step_runs_on_failure() {
3181 let mut steps = vec![
3182 dag_step("primary", &[]),
3183 dag_step("fallback_handler", &[]),
3184 dag_step("downstream", &["primary"]),
3185 ];
3186 steps[0].on_error = OnError::Fallback {
3187 step: "fallback_handler".to_string(),
3188 };
3189
3190 let executor = MockExecutor::new()
3191 .with_failure("primary", "primary broke")
3192 .with_response("fallback_handler", "recovered via fallback")
3193 .with_response("downstream", "downstream ran");
3194
3195 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3196 let primary_result = &result.step_results["primary"];
3198 assert_eq!(primary_result.response, "recovered via fallback");
3199 assert!(result.step_results.contains_key("downstream"));
3201 }
3202
3203 #[tokio::test]
3205 async fn dag_circuit_breaker_triggers() {
3206 let mut steps = vec![dag_step("cb_step", &[])];
3207 steps[0].on_error = OnError::CircuitBreaker {
3208 max_failures: 2,
3209 cooldown_secs: 300,
3210 };
3211
3212 let executor1 = MockExecutor::new().with_failure("cb_step", "fail1");
3214 let result1 = execute_dag("test", &steps, "input", Arc::new(executor1)).await;
3215 assert!(result1.step_results["cb_step"].error.is_some());
3216
3217 let mut cb = CircuitBreakerState::default();
3221 cb.record_failure();
3222 assert!(!cb.is_open(2, 300), "should not be open after 1 failure");
3223 cb.record_failure();
3224 assert!(cb.is_open(2, 300), "should be open after 2 failures");
3225 assert!(cb.is_open(2, 300));
3227 }
3228
3229 #[tokio::test]
3231 async fn dag_variable_substitution_across_parallel_branches() {
3232 let mut steps = vec![
3233 dag_step("source_a", &[]),
3234 dag_step("source_b", &[]),
3235 dag_step("consumer", &["source_a", "source_b"]),
3236 ];
3237 steps[2].prompt_template = "A={{source_a.output}}, B={{source_b.output}}".to_string();
3238
3239 let executor = MockExecutor::new()
3240 .with_response("source_a", "value_from_a")
3241 .with_response("source_b", "value_from_b");
3242 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3245 assert_eq!(result.status, WorkflowRunStatus::Completed);
3246 let consumer_out = &result.step_results["consumer"].response;
3247 assert!(
3248 consumer_out.contains("value_from_a"),
3249 "consumer should see source_a output, got: {consumer_out}"
3250 );
3251 assert!(
3252 consumer_out.contains("value_from_b"),
3253 "consumer should see source_b output, got: {consumer_out}"
3254 );
3255 }
3256
3257 #[tokio::test]
3259 async fn dag_wide_parallel_fan_out_timing() {
3260 let steps: Vec<DagWorkflowStep> =
3262 (0..10).map(|i| dag_step(&format!("s{i}"), &[])).collect();
3263 let executor = TimedMockExecutor { delay_ms: 30 };
3264
3265 let start = Instant::now();
3266 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3267 let elapsed = start.elapsed();
3268
3269 assert_eq!(result.status, WorkflowRunStatus::Completed);
3270 assert_eq!(result.step_results.len(), 10);
3271 assert!(
3273 elapsed.as_millis() < 80,
3274 "10 parallel 30ms steps took {}ms, expected ~30ms",
3275 elapsed.as_millis()
3276 );
3277 assert_eq!(result.execution_trace.len(), 1);
3278 assert_eq!(result.execution_trace[0].steps.len(), 10);
3279 }
3280
3281 #[tokio::test]
3283 async fn dag_while_loop_with_condition() {
3284 let mut steps = vec![dag_step("looper", &[])];
3285 steps[0].loop_config = Some(LoopConfig::While {
3286 condition: Condition::Expression("true".to_string()),
3287 max_iterations: 3,
3288 });
3289
3290 let executor = MockExecutor::new().with_response("looper", "iteration");
3291
3292 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3293 assert_eq!(result.status, WorkflowRunStatus::Completed);
3294 let output = &result.step_results["looper"].response;
3295 let lines: Vec<&str> = output.split('\n').collect();
3297 assert_eq!(lines.len(), 3);
3298 }
3299
3300 #[tokio::test]
3302 async fn dag_retry_succeeds_on_retry() {
3303 let mut steps = vec![dag_step("retry_step", &[])];
3304 steps[0].loop_config = Some(LoopConfig::Retry {
3305 max_retries: 2,
3306 backoff_ms: 1,
3307 backoff_multiplier: 1.0,
3308 });
3309
3310 let executor = FailNTimesMockExecutor::new(1);
3311
3312 let result = execute_dag("test", &steps, "input", Arc::new(executor)).await;
3313 assert_eq!(result.status, WorkflowRunStatus::Completed);
3314 assert!(result.step_results["retry_step"].error.is_none());
3315 assert!(
3316 result.step_results["retry_step"]
3317 .response
3318 .contains("success on attempt 2")
3319 );
3320 }
3321}