1use crate::engine::{
2 agenda::{ActivationGroupManager, AgendaManager},
3 analytics::RuleAnalytics,
4 facts::Facts,
5 knowledge_base::KnowledgeBase,
6 plugin::{PluginConfig, PluginHealth, PluginInfo, PluginManager, PluginStats, RulePlugin},
7 workflow::WorkflowEngine,
8};
9use crate::errors::{Result, RuleEngineError};
10use crate::types::{ActionType, Value};
11use chrono::{DateTime, Utc};
12use std::collections::HashMap;
13use std::sync::Arc;
14use std::time::{Duration, Instant};
15
16pub type CustomFunction = Box<dyn Fn(&[Value], &Facts) -> Result<Value> + Send + Sync>;
18
19pub type ActionHandler = Box<dyn Fn(&HashMap<String, Value>, &Facts) -> Result<()> + Send + Sync>;
21
22#[derive(Debug, Clone)]
24pub struct EngineConfig {
25 pub max_cycles: usize,
27 pub timeout: Option<Duration>,
29 pub enable_stats: bool,
31 pub debug_mode: bool,
33}
34
35impl Default for EngineConfig {
36 fn default() -> Self {
37 Self {
38 max_cycles: 100,
39 timeout: Some(Duration::from_secs(30)),
40 enable_stats: true,
41 debug_mode: false,
42 }
43 }
44}
45
46#[derive(Debug, Clone)]
48pub struct GruleExecutionResult {
49 pub cycle_count: usize,
51 pub rules_evaluated: usize,
53 pub rules_fired: usize,
55 pub execution_time: Duration,
57}
58
59pub struct RustRuleEngine {
61 knowledge_base: KnowledgeBase,
62 config: EngineConfig,
63 custom_functions: HashMap<String, CustomFunction>,
64 action_handlers: HashMap<String, ActionHandler>,
65 analytics: Option<RuleAnalytics>,
66 agenda_manager: AgendaManager,
67 activation_group_manager: ActivationGroupManager,
68 fired_rules_global: std::collections::HashSet<String>,
70 workflow_engine: WorkflowEngine,
72 plugin_manager: PluginManager,
74}
75
76impl RustRuleEngine {
77 pub fn execute_with_callback<F>(&mut self, facts: &Facts, mut on_rule_fired: F) -> Result<GruleExecutionResult>
79 where
80 F: FnMut(&str, &str),
81 {
82 use chrono::Utc;
83 let timestamp = Utc::now();
84 let start_time = std::time::Instant::now();
85 let mut cycle_count = 0;
86 let mut rules_evaluated = 0;
87 let mut rules_fired = 0;
88
89 self.sync_workflow_agenda_activations();
90
91 for cycle in 0..self.config.max_cycles {
92 cycle_count = cycle + 1;
93 let mut any_rule_fired = false;
94 let mut fired_rules_in_cycle = std::collections::HashSet::new();
95 self.activation_group_manager.reset_cycle();
96
97 if let Some(timeout) = self.config.timeout {
98 if start_time.elapsed() > timeout {
99 return Err(crate::errors::RuleEngineError::EvaluationError {
100 message: "Execution timeout exceeded".to_string(),
101 });
102 }
103 }
104
105 let mut rules = self.knowledge_base.get_rules().clone();
106 rules.sort_by(|a, b| b.salience.cmp(&a.salience));
107 let rules: Vec<_> = rules
108 .iter()
109 .filter(|rule| self.agenda_manager.should_evaluate_rule(rule))
110 .collect();
111
112 for rule in &rules {
113 if !rule.enabled {
114 continue;
115 }
116 if !rule.is_active_at(timestamp) {
117 continue;
118 }
119 if !self.agenda_manager.can_fire_rule(rule) {
120 continue;
121 }
122 if !self.activation_group_manager.can_fire(rule) {
123 continue;
124 }
125 if rule.no_loop && self.fired_rules_global.contains(&rule.name) {
126 continue;
127 }
128 rules_evaluated += 1;
129 let condition_result = self.evaluate_conditions(&rule.conditions, facts)?;
130 if condition_result {
131 for action in &rule.actions {
132 self.execute_action(action, facts)?;
133 }
134 rules_fired += 1;
135 any_rule_fired = true;
136 fired_rules_in_cycle.insert(rule.name.clone());
137 if rule.no_loop {
138 self.fired_rules_global.insert(rule.name.clone());
139 }
140 self.agenda_manager.mark_rule_fired(rule);
141 self.activation_group_manager.mark_fired(rule);
142 on_rule_fired(&rule.name, "facts"); }
145 }
146 if !any_rule_fired {
147 break;
148 }
149 self.sync_workflow_agenda_activations();
150 }
151 let execution_time = start_time.elapsed();
152 Ok(crate::engine::GruleExecutionResult {
153 cycle_count,
154 rules_evaluated,
155 rules_fired,
156 execution_time,
157 })
158 }
159 pub fn new(knowledge_base: KnowledgeBase) -> Self {
161 Self {
162 knowledge_base,
163 config: EngineConfig::default(),
164 custom_functions: HashMap::new(),
165 action_handlers: HashMap::new(),
166 analytics: None,
167 agenda_manager: AgendaManager::new(),
168 activation_group_manager: ActivationGroupManager::new(),
169 fired_rules_global: std::collections::HashSet::new(),
170 workflow_engine: WorkflowEngine::new(),
171 plugin_manager: PluginManager::with_default_config(),
172 }
173 }
174
175 pub fn with_config(knowledge_base: KnowledgeBase, config: EngineConfig) -> Self {
177 Self {
178 knowledge_base,
179 config,
180 custom_functions: HashMap::new(),
181 action_handlers: HashMap::new(),
182 analytics: None,
183 agenda_manager: AgendaManager::new(),
184 activation_group_manager: ActivationGroupManager::new(),
185 fired_rules_global: std::collections::HashSet::new(),
186 workflow_engine: WorkflowEngine::new(),
187 plugin_manager: PluginManager::with_default_config(),
188 }
189 }
190
191 pub fn register_function<F>(&mut self, name: &str, func: F)
193 where
194 F: Fn(&[Value], &Facts) -> Result<Value> + Send + Sync + 'static,
195 {
196 self.custom_functions
197 .insert(name.to_string(), Box::new(func));
198 }
199
200 pub fn register_action_handler<F>(&mut self, action_type: &str, handler: F)
202 where
203 F: Fn(&HashMap<String, Value>, &Facts) -> Result<()> + Send + Sync + 'static,
204 {
205 self.action_handlers
206 .insert(action_type.to_string(), Box::new(handler));
207 }
208
209 pub fn enable_analytics(&mut self, analytics: RuleAnalytics) {
211 self.analytics = Some(analytics);
212 }
213
214 pub fn reset_no_loop_tracking(&mut self) {
216 self.fired_rules_global.clear();
217 }
218
219 pub fn disable_analytics(&mut self) {
221 self.analytics = None;
222 }
223
224 pub fn analytics(&self) -> Option<&RuleAnalytics> {
226 self.analytics.as_ref()
227 }
228
229 pub fn has_function(&self, name: &str) -> bool {
231 self.custom_functions.contains_key(name)
232 }
233
234 pub fn has_action_handler(&self, action_type: &str) -> bool {
236 self.action_handlers.contains_key(action_type)
237 }
238
239 pub fn get_ready_tasks(&mut self) -> Vec<crate::engine::workflow::ScheduledTask> {
241 self.workflow_engine.get_ready_tasks()
242 }
243
244 pub fn execute_scheduled_tasks(&mut self, facts: &Facts) -> Result<()> {
246 let ready_tasks = self.get_ready_tasks();
247 for task in ready_tasks {
248 if let Some(rule) = self
249 .knowledge_base
250 .get_rules()
251 .iter()
252 .find(|r| r.name == task.rule_name)
253 {
254 if self.config.debug_mode {
255 println!("⚡ Executing scheduled task: {}", task.rule_name);
256 }
257
258 if self.evaluate_conditions(&rule.conditions, facts)? {
260 for action in &rule.actions {
261 self.execute_action(action, facts)?;
262 }
263 }
264 }
265 }
266 Ok(())
267 }
268
269 pub fn activate_agenda_group(&mut self, group: String) {
271 self.workflow_engine.activate_agenda_group(group.clone());
272 self.agenda_manager.set_focus(&group);
273 }
274
275 pub fn knowledge_base(&self) -> &KnowledgeBase {
277 &self.knowledge_base
278 }
279
280 pub fn knowledge_base_mut(&mut self) -> &mut KnowledgeBase {
282 &mut self.knowledge_base
283 }
284
285 fn sync_workflow_agenda_activations(&mut self) {
287 while let Some(agenda_group) = self.workflow_engine.get_next_pending_agenda_activation() {
289 if self.config.debug_mode {
290 println!("🔄 Syncing workflow agenda activation: {}", agenda_group);
291 }
292 self.agenda_manager.set_focus(&agenda_group);
293 }
294 }
295
296 pub fn set_agenda_focus(&mut self, group: &str) {
298 self.agenda_manager.set_focus(group);
299 }
300
301 pub fn get_active_agenda_group(&self) -> &str {
303 self.agenda_manager.get_active_group()
304 }
305
306 pub fn pop_agenda_focus(&mut self) -> Option<String> {
308 self.agenda_manager.pop_focus()
309 }
310
311 pub fn clear_agenda_focus(&mut self) {
313 self.agenda_manager.clear_focus();
314 }
315
316 pub fn get_agenda_groups(&self) -> Vec<String> {
318 self.agenda_manager
319 .get_agenda_groups(&self.knowledge_base.get_rules())
320 }
321
322 pub fn get_activation_groups(&self) -> Vec<String> {
324 self.activation_group_manager
325 .get_activation_groups(&self.knowledge_base.get_rules())
326 }
327
328 pub fn start_workflow(&mut self, workflow_name: Option<String>) -> String {
332 self.workflow_engine.start_workflow(workflow_name)
333 }
334
335 pub fn get_workflow_stats(&self) -> crate::engine::workflow::WorkflowStats {
337 self.workflow_engine.get_workflow_stats()
338 }
339
340 pub fn get_workflow(
342 &self,
343 workflow_id: &str,
344 ) -> Option<&crate::engine::workflow::WorkflowState> {
345 self.workflow_engine.get_workflow(workflow_id)
346 }
347
348 pub fn cleanup_completed_workflows(&mut self, older_than: Duration) {
350 self.workflow_engine.cleanup_completed_workflows(older_than);
351 }
352
353 pub fn execute_workflow_step(
355 &mut self,
356 agenda_group: &str,
357 facts: &Facts,
358 ) -> Result<GruleExecutionResult> {
359 self.set_agenda_focus(agenda_group);
361
362 let result = self.execute(facts)?;
364
365 self.process_workflow_actions(facts)?;
367
368 Ok(result)
369 }
370
371 pub fn execute_workflow(
373 &mut self,
374 agenda_groups: Vec<&str>,
375 facts: &Facts,
376 ) -> Result<crate::engine::workflow::WorkflowResult> {
377 let start_time = Instant::now();
378 let mut total_steps = 0;
379
380 if self.config.debug_mode {
381 println!(
382 "🔄 Starting workflow execution with {} steps",
383 agenda_groups.len()
384 );
385 }
386
387 for (i, group) in agenda_groups.iter().enumerate() {
388 if self.config.debug_mode {
389 println!("📋 Executing workflow step {}: {}", i + 1, group);
390 }
391
392 let step_result = self.execute_workflow_step(group, facts)?;
393 total_steps += 1;
394
395 if step_result.rules_fired == 0 {
396 if self.config.debug_mode {
397 println!("⏸️ No rules fired in step '{}', stopping workflow", group);
398 }
399 break;
400 }
401 }
402
403 let execution_time = start_time.elapsed();
404
405 Ok(crate::engine::workflow::WorkflowResult::success(
406 total_steps,
407 execution_time,
408 ))
409 }
410
411 fn process_workflow_actions(&mut self, facts: &Facts) -> Result<()> {
413 while let Some(group) = self.workflow_engine.get_next_agenda_group() {
415 self.set_agenda_focus(&group);
416 }
417
418 let ready_tasks = self.workflow_engine.get_ready_tasks();
420 for task in ready_tasks {
421 if self.config.debug_mode {
422 println!("⚡ Executing scheduled task: {}", task.rule_name);
423 }
424
425 if let Some(rule) = self
427 .knowledge_base
428 .get_rules()
429 .iter()
430 .find(|r| r.name == task.rule_name)
431 {
432 if self.evaluate_conditions(&rule.conditions, facts)? {
434 for action in &rule.actions {
435 self.execute_action(action, facts)?;
436 }
437 }
438 }
439 }
440
441 Ok(())
442 }
443
444 pub fn execute(&mut self, facts: &Facts) -> Result<GruleExecutionResult> {
446 self.execute_at_time(facts, Utc::now())
447 }
448
449 pub fn execute_at_time(
451 &mut self,
452 facts: &Facts,
453 timestamp: DateTime<Utc>,
454 ) -> Result<GruleExecutionResult> {
455 let start_time = Instant::now();
456 let mut cycle_count = 0;
457 let mut rules_evaluated = 0;
458 let mut rules_fired = 0;
459
460 self.sync_workflow_agenda_activations();
462
463 if self.config.debug_mode {
464 println!(
465 "🚀 Starting rule execution with {} rules (agenda group: {})",
466 self.knowledge_base.get_rules().len(),
467 self.agenda_manager.get_active_group()
468 );
469 }
470
471 for cycle in 0..self.config.max_cycles {
472 cycle_count = cycle + 1;
473 let mut any_rule_fired = false;
474 let mut fired_rules_in_cycle = std::collections::HashSet::new();
475
476 self.activation_group_manager.reset_cycle();
478
479 if let Some(timeout) = self.config.timeout {
481 if start_time.elapsed() > timeout {
482 return Err(RuleEngineError::EvaluationError {
483 message: "Execution timeout exceeded".to_string(),
484 });
485 }
486 }
487
488 let mut rules = self.knowledge_base.get_rules().clone();
490 rules.sort_by(|a, b| b.salience.cmp(&a.salience));
491
492 let rules: Vec<_> = rules
494 .iter()
495 .filter(|rule| self.agenda_manager.should_evaluate_rule(rule))
496 .collect();
497
498 for rule in &rules {
499 if !rule.enabled {
500 continue;
501 }
502
503 if !rule.is_active_at(timestamp) {
505 continue;
506 }
507
508 if !self.agenda_manager.can_fire_rule(rule) {
510 continue;
511 }
512
513 if !self.activation_group_manager.can_fire(rule) {
515 continue;
516 }
517
518 if rule.no_loop && self.fired_rules_global.contains(&rule.name) {
520 continue;
521 }
522
523 rules_evaluated += 1;
524 let rule_start = Instant::now();
525
526 if self.config.debug_mode {
527 println!("📝 Evaluating rule: {}", rule.name);
528 }
529
530 let condition_result = self.evaluate_conditions(&rule.conditions, facts)?;
532 if self.config.debug_mode {
533 println!(
534 " 🔍 Condition result for '{}': {}",
535 rule.name, condition_result
536 );
537 }
538
539 if condition_result {
540 if self.config.debug_mode {
541 println!(
542 "🔥 Rule '{}' fired (salience: {})",
543 rule.name, rule.salience
544 );
545 }
546
547 for action in &rule.actions {
549 self.execute_action(action, facts)?;
550 }
551
552 let rule_duration = rule_start.elapsed();
553
554 if let Some(analytics) = &mut self.analytics {
556 analytics.record_execution(&rule.name, rule_duration, true, true, None, 0);
557 }
558
559 rules_fired += 1;
560 any_rule_fired = true;
561
562 fired_rules_in_cycle.insert(rule.name.clone());
564
565 if rule.no_loop {
567 self.fired_rules_global.insert(rule.name.clone());
568 }
569
570 self.agenda_manager.mark_rule_fired(rule);
572 self.activation_group_manager.mark_fired(rule);
573 } else {
574 let rule_duration = rule_start.elapsed();
575
576 if let Some(analytics) = &mut self.analytics {
578 analytics.record_execution(
579 &rule.name,
580 rule_duration,
581 false,
582 false,
583 None,
584 0,
585 );
586 }
587 }
588 }
589
590 if !any_rule_fired {
592 break;
593 }
594
595 self.sync_workflow_agenda_activations();
597 }
598
599 let execution_time = start_time.elapsed();
600
601 Ok(GruleExecutionResult {
602 cycle_count,
603 rules_evaluated,
604 rules_fired,
605 execution_time,
606 })
607 }
608
609 fn evaluate_conditions(
611 &self,
612 conditions: &crate::engine::rule::ConditionGroup,
613 facts: &Facts,
614 ) -> Result<bool> {
615 use crate::engine::pattern_matcher::PatternMatcher;
616 use crate::engine::rule::ConditionGroup;
617
618 match conditions {
619 ConditionGroup::Single(condition) => self.evaluate_single_condition(condition, facts),
620 ConditionGroup::Compound {
621 left,
622 operator,
623 right,
624 } => {
625 let left_result = self.evaluate_conditions(left, facts)?;
626 let right_result = self.evaluate_conditions(right, facts)?;
627
628 match operator {
629 crate::types::LogicalOperator::And => Ok(left_result && right_result),
630 crate::types::LogicalOperator::Or => Ok(left_result || right_result),
631 crate::types::LogicalOperator::Not => Err(RuleEngineError::EvaluationError {
632 message: "NOT operator should not appear in compound conditions"
633 .to_string(),
634 }),
635 }
636 }
637 ConditionGroup::Not(condition) => {
638 let result = self.evaluate_conditions(condition, facts)?;
639 Ok(!result)
640 }
641 ConditionGroup::Exists(condition) => {
643 Ok(PatternMatcher::evaluate_exists(condition, facts))
644 }
645 ConditionGroup::Forall(condition) => {
646 Ok(PatternMatcher::evaluate_forall(condition, facts))
647 }
648 }
649 }
650
651 fn evaluate_rule_conditions(
653 &self,
654 rule: &crate::engine::rule::Rule,
655 facts: &Facts,
656 ) -> Result<bool> {
657 self.evaluate_conditions(&rule.conditions, facts)
658 }
659
660 fn evaluate_single_condition(
662 &self,
663 condition: &crate::engine::rule::Condition,
664 facts: &Facts,
665 ) -> Result<bool> {
666 use crate::engine::rule::ConditionExpression;
667
668 let result = match &condition.expression {
669 ConditionExpression::Field(field_name) => {
670 let field_value = facts
672 .get_nested(field_name)
673 .or_else(|| facts.get(field_name));
674
675 if self.config.debug_mode {
676 println!(
677 " 🔎 Evaluating field condition: {} {} {:?}",
678 field_name,
679 format!("{:?}", condition.operator).to_lowercase(),
680 condition.value
681 );
682 println!(" Field value: {:?}", field_value);
683 }
684
685 if let Some(value) = field_value {
686 condition.operator.evaluate(&value, &condition.value)
687 } else {
688 false
689 }
690 }
691 ConditionExpression::FunctionCall { name, args } => {
692 if self.config.debug_mode {
694 println!(
695 " 🔎 Evaluating function condition: {}({:?}) {} {:?}",
696 name,
697 args,
698 format!("{:?}", condition.operator).to_lowercase(),
699 condition.value
700 );
701 }
702
703 if let Some(function) = self.custom_functions.get(name) {
704 let arg_values: Vec<Value> = args
706 .iter()
707 .map(|arg| {
708 facts
709 .get_nested(arg)
710 .or_else(|| facts.get(arg))
711 .unwrap_or(Value::String(arg.clone()))
712 })
713 .collect();
714
715 match function(&arg_values, facts) {
717 Ok(result_value) => {
718 if self.config.debug_mode {
719 println!(" Function result: {:?}", result_value);
720 }
721 condition.operator.evaluate(&result_value, &condition.value)
722 }
723 Err(e) => {
724 if self.config.debug_mode {
725 println!(" Function error: {}", e);
726 }
727 false
728 }
729 }
730 } else {
731 if self.config.debug_mode {
732 println!(" Function '{}' not found", name);
733 }
734 false
735 }
736 }
737 ConditionExpression::Test { name, args } => {
738 if self.config.debug_mode {
740 println!(" 🧪 Evaluating test CE: test({}({:?}))", name, args);
741 }
742
743 if let Some(function) = self.custom_functions.get(name) {
744 let arg_values: Vec<Value> = args
746 .iter()
747 .map(|arg| {
748 let resolved = facts
749 .get_nested(arg)
750 .or_else(|| facts.get(arg))
751 .unwrap_or(Value::String(arg.clone()));
752 if self.config.debug_mode {
753 println!(" Resolving arg '{}' -> {:?}", arg, resolved);
754 }
755 resolved
756 })
757 .collect();
758
759 match function(&arg_values, facts) {
761 Ok(result_value) => {
762 if self.config.debug_mode {
763 println!(" Test result: {:?}", result_value);
764 }
765 match result_value {
767 Value::Boolean(b) => b,
768 Value::Integer(i) => i != 0,
769 Value::Number(f) => f != 0.0,
770 Value::String(s) => !s.is_empty(),
771 _ => false,
772 }
773 }
774 Err(e) => {
775 if self.config.debug_mode {
776 println!(" Test function error: {}", e);
777 }
778 false
779 }
780 }
781 } else {
782 if self.config.debug_mode {
783 println!(" Test function '{}' not found", name);
784 }
785 false
786 }
787 }
788 };
789
790 if self.config.debug_mode {
791 println!(" Result: {}", result);
792 }
793
794 Ok(result)
795 }
796
797 fn execute_action(&mut self, action: &ActionType, facts: &Facts) -> Result<()> {
799 match action {
800 ActionType::Set { field, value } => {
801 if let Err(_) = facts.set_nested(field, value.clone()) {
803 facts.set(field, value.clone());
805 }
806 if self.config.debug_mode {
807 println!(" ✅ Set {field} = {value:?}");
808 }
809 }
810 ActionType::Log { message } => {
811 println!("📋 LOG: {}", message);
812 }
813 ActionType::Call { function, args } => {
814 let result = self.execute_function_call(function, args, facts)?;
815 if self.config.debug_mode {
816 println!(" 📞 Called {function}({args:?}) -> {result}");
817 }
818 }
819 ActionType::MethodCall {
820 object,
821 method,
822 args,
823 } => {
824 let result = self.execute_method_call(object, method, args, facts)?;
825 if self.config.debug_mode {
826 println!(" 🔧 Called {object}.{method}({args:?}) -> {result}");
827 }
828 }
829 ActionType::Update { object } => {
830 if self.config.debug_mode {
831 println!(" 🔄 Updated {object}");
832 }
833 }
836 ActionType::Custom {
837 action_type,
838 params,
839 } => {
840 if let Some(handler) = self.action_handlers.get(action_type) {
841 if self.config.debug_mode {
842 println!(
843 " 🎯 Executing custom action: {action_type} with params: {params:?}"
844 );
845 }
846
847 let resolved_params = self.resolve_action_parameters(params, facts)?;
849
850 handler(&resolved_params, facts)?;
852 } else {
853 if self.config.debug_mode {
854 println!(" ⚠️ No handler registered for custom action: {action_type}");
855 println!(
856 " Available handlers: {:?}",
857 self.action_handlers.keys().collect::<Vec<_>>()
858 );
859 }
860
861 return Err(RuleEngineError::EvaluationError {
863 message: format!(
864 "No action handler registered for '{action_type}'. Use engine.register_action_handler() to add custom action handlers."
865 ),
866 });
867 }
868 }
869 ActionType::ActivateAgendaGroup { group } => {
871 if self.config.debug_mode {
872 println!(" 🎯 Activating agenda group: {}", group);
873 }
874 self.workflow_engine.activate_agenda_group(group.clone());
876 self.agenda_manager.set_focus(group);
877 }
878 ActionType::ScheduleRule {
879 rule_name,
880 delay_ms,
881 } => {
882 if self.config.debug_mode {
883 println!(
884 " ⏰ Scheduling rule '{}' to execute in {}ms",
885 rule_name, delay_ms
886 );
887 }
888 self.workflow_engine
889 .schedule_rule(rule_name.clone(), *delay_ms, None);
890 }
891 ActionType::CompleteWorkflow { workflow_name } => {
892 if self.config.debug_mode {
893 println!(" ✅ Completing workflow: {}", workflow_name);
894 }
895 self.workflow_engine
896 .complete_workflow(workflow_name.clone());
897 }
898 ActionType::SetWorkflowData { key, value } => {
899 if self.config.debug_mode {
900 println!(" 💾 Setting workflow data: {} = {:?}", key, value);
901 }
902 let workflow_id = "default_workflow";
905 self.workflow_engine
906 .set_workflow_data(workflow_id, key.clone(), value.clone());
907 }
908 }
909 Ok(())
910 }
911
912 fn execute_function_call(
914 &self,
915 function: &str,
916 args: &[Value],
917 facts: &Facts,
918 ) -> Result<String> {
919 let function_lower = function.to_lowercase();
920
921 match function_lower.as_str() {
923 "log" | "print" | "println" => self.handle_log_function(args),
924 "update" | "refresh" => self.handle_update_function(args),
925 "now" | "timestamp" => self.handle_timestamp_function(),
926 "random" => self.handle_random_function(args),
927 "format" | "sprintf" => self.handle_format_function(args),
928 "length" | "size" | "count" => self.handle_length_function(args),
929 "sum" | "add" => self.handle_sum_function(args),
930 "max" | "maximum" => self.handle_max_function(args),
931 "min" | "minimum" => self.handle_min_function(args),
932 "avg" | "average" => self.handle_average_function(args),
933 "round" => self.handle_round_function(args),
934 "floor" => self.handle_floor_function(args),
935 "ceil" | "ceiling" => self.handle_ceil_function(args),
936 "abs" | "absolute" => self.handle_abs_function(args),
937 "contains" | "includes" => self.handle_contains_function(args),
938 "startswith" | "begins_with" => self.handle_starts_with_function(args),
939 "endswith" | "ends_with" => self.handle_ends_with_function(args),
940 "lowercase" | "tolower" => self.handle_lowercase_function(args),
941 "uppercase" | "toupper" => self.handle_uppercase_function(args),
942 "trim" | "strip" => self.handle_trim_function(args),
943 "split" => self.handle_split_function(args),
944 "join" => self.handle_join_function(args),
945 _ => {
946 self.handle_custom_function(function, args, facts)
948 }
949 }
950 }
951
952 fn handle_log_function(&self, args: &[Value]) -> Result<String> {
954 let message = if args.is_empty() {
955 "".to_string()
956 } else if args.len() == 1 {
957 args[0].to_string()
958 } else {
959 args.iter()
960 .map(|v| v.to_string())
961 .collect::<Vec<_>>()
962 .join(" ")
963 };
964
965 println!("📋 {}", message);
966 Ok(message)
967 }
968
969 fn handle_update_function(&self, args: &[Value]) -> Result<String> {
971 if let Some(arg) = args.first() {
972 Ok(format!("Updated: {}", arg.to_string()))
973 } else {
974 Ok("Updated".to_string())
975 }
976 }
977
978 fn handle_timestamp_function(&self) -> Result<String> {
980 use std::time::{SystemTime, UNIX_EPOCH};
981 let timestamp = SystemTime::now()
982 .duration_since(UNIX_EPOCH)
983 .map_err(|e| RuleEngineError::EvaluationError {
984 message: format!("Failed to get timestamp: {}", e),
985 })?
986 .as_secs();
987 Ok(timestamp.to_string())
988 }
989
990 fn handle_random_function(&self, args: &[Value]) -> Result<String> {
992 use std::collections::hash_map::DefaultHasher;
993 use std::hash::{Hash, Hasher};
994
995 let mut hasher = DefaultHasher::new();
997 std::time::SystemTime::now().hash(&mut hasher);
998 let random_value = hasher.finish();
999
1000 if args.is_empty() {
1001 Ok((random_value % 100).to_string()) } else if let Some(Value::Number(max)) = args.first() {
1003 let max_val = *max as u64;
1004 Ok((random_value % max_val).to_string())
1005 } else {
1006 Ok(random_value.to_string())
1007 }
1008 }
1009
1010 fn handle_format_function(&self, args: &[Value]) -> Result<String> {
1012 if args.is_empty() {
1013 return Ok("".to_string());
1014 }
1015
1016 let template = args[0].to_string();
1017 let values: Vec<String> = args[1..].iter().map(|v| v.to_string()).collect();
1018
1019 let mut result = template;
1021 for (i, value) in values.iter().enumerate() {
1022 result = result.replace(&format!("{{{}}}", i), value);
1023 }
1024
1025 Ok(result)
1026 }
1027
1028 fn handle_length_function(&self, args: &[Value]) -> Result<String> {
1030 if let Some(arg) = args.first() {
1031 match arg {
1032 Value::String(s) => Ok(s.len().to_string()),
1033 Value::Array(arr) => Ok(arr.len().to_string()),
1034 Value::Object(obj) => Ok(obj.len().to_string()),
1035 _ => Ok("1".to_string()), }
1037 } else {
1038 Ok("0".to_string())
1039 }
1040 }
1041
1042 fn handle_sum_function(&self, args: &[Value]) -> Result<String> {
1044 let sum = args.iter().fold(0.0, |acc, val| match val {
1045 Value::Number(n) => acc + n,
1046 Value::Integer(i) => acc + (*i as f64),
1047 _ => acc,
1048 });
1049 Ok(sum.to_string())
1050 }
1051
1052 fn handle_max_function(&self, args: &[Value]) -> Result<String> {
1054 let max = args.iter().fold(f64::NEG_INFINITY, |acc, val| match val {
1055 Value::Number(n) => acc.max(*n),
1056 Value::Integer(i) => acc.max(*i as f64),
1057 _ => acc,
1058 });
1059 Ok(max.to_string())
1060 }
1061
1062 fn handle_min_function(&self, args: &[Value]) -> Result<String> {
1064 let min = args.iter().fold(f64::INFINITY, |acc, val| match val {
1065 Value::Number(n) => acc.min(*n),
1066 Value::Integer(i) => acc.min(*i as f64),
1067 _ => acc,
1068 });
1069 Ok(min.to_string())
1070 }
1071
1072 fn handle_average_function(&self, args: &[Value]) -> Result<String> {
1074 if args.is_empty() {
1075 return Ok("0".to_string());
1076 }
1077
1078 let (sum, count) = args.iter().fold((0.0, 0), |(sum, count), val| match val {
1079 Value::Number(n) => (sum + n, count + 1),
1080 Value::Integer(i) => (sum + (*i as f64), count + 1),
1081 _ => (sum, count),
1082 });
1083
1084 if count > 0 {
1085 Ok((sum / count as f64).to_string())
1086 } else {
1087 Ok("0".to_string())
1088 }
1089 }
1090
1091 fn handle_round_function(&self, args: &[Value]) -> Result<String> {
1093 if let Some(Value::Number(n)) = args.first() {
1094 Ok(n.round().to_string())
1095 } else if let Some(Value::Integer(i)) = args.first() {
1096 Ok(i.to_string())
1097 } else {
1098 Err(RuleEngineError::EvaluationError {
1099 message: "round() requires a numeric argument".to_string(),
1100 })
1101 }
1102 }
1103
1104 fn handle_floor_function(&self, args: &[Value]) -> Result<String> {
1105 if let Some(Value::Number(n)) = args.first() {
1106 Ok(n.floor().to_string())
1107 } else if let Some(Value::Integer(i)) = args.first() {
1108 Ok(i.to_string())
1109 } else {
1110 Err(RuleEngineError::EvaluationError {
1111 message: "floor() requires a numeric argument".to_string(),
1112 })
1113 }
1114 }
1115
1116 fn handle_ceil_function(&self, args: &[Value]) -> Result<String> {
1117 if let Some(Value::Number(n)) = args.first() {
1118 Ok(n.ceil().to_string())
1119 } else if let Some(Value::Integer(i)) = args.first() {
1120 Ok(i.to_string())
1121 } else {
1122 Err(RuleEngineError::EvaluationError {
1123 message: "ceil() requires a numeric argument".to_string(),
1124 })
1125 }
1126 }
1127
1128 fn handle_abs_function(&self, args: &[Value]) -> Result<String> {
1129 if let Some(Value::Number(n)) = args.first() {
1130 Ok(n.abs().to_string())
1131 } else if let Some(Value::Integer(i)) = args.first() {
1132 Ok(i.abs().to_string())
1133 } else {
1134 Err(RuleEngineError::EvaluationError {
1135 message: "abs() requires a numeric argument".to_string(),
1136 })
1137 }
1138 }
1139
1140 fn handle_contains_function(&self, args: &[Value]) -> Result<String> {
1142 if args.len() >= 2 {
1143 let haystack = args[0].to_string();
1144 let needle = args[1].to_string();
1145 Ok(haystack.contains(&needle).to_string())
1146 } else {
1147 Err(RuleEngineError::EvaluationError {
1148 message: "contains() requires 2 arguments".to_string(),
1149 })
1150 }
1151 }
1152
1153 fn handle_starts_with_function(&self, args: &[Value]) -> Result<String> {
1154 if args.len() >= 2 {
1155 let text = args[0].to_string();
1156 let prefix = args[1].to_string();
1157 Ok(text.starts_with(&prefix).to_string())
1158 } else {
1159 Err(RuleEngineError::EvaluationError {
1160 message: "startswith() requires 2 arguments".to_string(),
1161 })
1162 }
1163 }
1164
1165 fn handle_ends_with_function(&self, args: &[Value]) -> Result<String> {
1166 if args.len() >= 2 {
1167 let text = args[0].to_string();
1168 let suffix = args[1].to_string();
1169 Ok(text.ends_with(&suffix).to_string())
1170 } else {
1171 Err(RuleEngineError::EvaluationError {
1172 message: "endswith() requires 2 arguments".to_string(),
1173 })
1174 }
1175 }
1176
1177 fn handle_lowercase_function(&self, args: &[Value]) -> Result<String> {
1178 if let Some(arg) = args.first() {
1179 Ok(arg.to_string().to_lowercase())
1180 } else {
1181 Err(RuleEngineError::EvaluationError {
1182 message: "lowercase() requires 1 argument".to_string(),
1183 })
1184 }
1185 }
1186
1187 fn handle_uppercase_function(&self, args: &[Value]) -> Result<String> {
1188 if let Some(arg) = args.first() {
1189 Ok(arg.to_string().to_uppercase())
1190 } else {
1191 Err(RuleEngineError::EvaluationError {
1192 message: "uppercase() requires 1 argument".to_string(),
1193 })
1194 }
1195 }
1196
1197 fn handle_trim_function(&self, args: &[Value]) -> Result<String> {
1198 if let Some(arg) = args.first() {
1199 Ok(arg.to_string().trim().to_string())
1200 } else {
1201 Err(RuleEngineError::EvaluationError {
1202 message: "trim() requires 1 argument".to_string(),
1203 })
1204 }
1205 }
1206
1207 fn handle_split_function(&self, args: &[Value]) -> Result<String> {
1208 if args.len() >= 2 {
1209 let text = args[0].to_string();
1210 let delimiter = args[1].to_string();
1211 let parts: Vec<String> = text.split(&delimiter).map(|s| s.to_string()).collect();
1212 Ok(format!("{:?}", parts)) } else {
1214 Err(RuleEngineError::EvaluationError {
1215 message: "split() requires 2 arguments".to_string(),
1216 })
1217 }
1218 }
1219
1220 fn handle_join_function(&self, args: &[Value]) -> Result<String> {
1221 if args.len() >= 2 {
1222 let delimiter = args[0].to_string();
1223 let parts: Vec<String> = args[1..].iter().map(|v| v.to_string()).collect();
1224 Ok(parts.join(&delimiter))
1225 } else {
1226 Err(RuleEngineError::EvaluationError {
1227 message: "join() requires at least 2 arguments".to_string(),
1228 })
1229 }
1230 }
1231
1232 fn handle_custom_function(
1234 &self,
1235 function: &str,
1236 args: &[Value],
1237 facts: &Facts,
1238 ) -> Result<String> {
1239 if let Some(custom_func) = self.custom_functions.get(function) {
1241 if self.config.debug_mode {
1242 println!("🎯 Calling registered function: {}({:?})", function, args);
1243 }
1244
1245 match custom_func(args, facts) {
1246 Ok(result) => Ok(result.to_string()),
1247 Err(e) => Err(e),
1248 }
1249 } else {
1250 if self.config.debug_mode {
1252 println!("⚠️ Custom function '{}' not registered", function);
1253 }
1254
1255 Err(RuleEngineError::EvaluationError {
1256 message: format!("Function '{}' is not registered. Use engine.register_function() to add custom functions.", function),
1257 })
1258 }
1259 }
1260
1261 fn execute_method_call(
1263 &self,
1264 object_name: &str,
1265 method: &str,
1266 args: &[Value],
1267 facts: &Facts,
1268 ) -> Result<String> {
1269 let Some(object_value) = facts.get(object_name) else {
1271 return Err(RuleEngineError::EvaluationError {
1272 message: format!("Object '{}' not found in facts", object_name),
1273 });
1274 };
1275
1276 let method_lower = method.to_lowercase();
1277
1278 if method_lower.starts_with("set") && args.len() == 1 {
1280 return self.handle_setter_method(object_name, method, &args[0], object_value, facts);
1281 }
1282
1283 if method_lower.starts_with("get") && args.is_empty() {
1285 return self.handle_getter_method(object_name, method, &object_value);
1286 }
1287
1288 match method_lower.as_str() {
1290 "tostring" => Ok(object_value.to_string()),
1291 "update" => {
1292 facts.add_value(object_name, object_value)?;
1293 Ok(format!("Updated {}", object_name))
1294 }
1295 "reset" => self.handle_reset_method(object_name, object_value, facts),
1296 _ => self.handle_property_access_or_fallback(
1297 object_name,
1298 method,
1299 args.len(),
1300 &object_value,
1301 ),
1302 }
1303 }
1304
1305 fn handle_setter_method(
1307 &self,
1308 object_name: &str,
1309 method: &str,
1310 new_value: &Value,
1311 mut object_value: Value,
1312 facts: &Facts,
1313 ) -> Result<String> {
1314 let property_name = Self::extract_property_name_from_setter(method);
1315
1316 match object_value {
1317 Value::Object(ref mut obj) => {
1318 obj.insert(property_name.clone(), new_value.clone());
1319 facts.add_value(object_name, object_value)?;
1320 Ok(format!(
1321 "Set {} to {}",
1322 property_name,
1323 new_value.to_string()
1324 ))
1325 }
1326 _ => Err(RuleEngineError::EvaluationError {
1327 message: format!("Cannot call setter on non-object type: {}", object_name),
1328 }),
1329 }
1330 }
1331
1332 fn handle_getter_method(
1334 &self,
1335 object_name: &str,
1336 method: &str,
1337 object_value: &Value,
1338 ) -> Result<String> {
1339 let property_name = Self::extract_property_name_from_getter(method);
1340
1341 match object_value {
1342 Value::Object(obj) => {
1343 if let Some(value) = obj.get(&property_name) {
1344 Ok(value.to_string())
1345 } else {
1346 Err(RuleEngineError::EvaluationError {
1347 message: format!(
1348 "Property '{}' not found on object '{}'",
1349 property_name, object_name
1350 ),
1351 })
1352 }
1353 }
1354 _ => Err(RuleEngineError::EvaluationError {
1355 message: format!("Cannot call getter on non-object type: {}", object_name),
1356 }),
1357 }
1358 }
1359
1360 fn handle_reset_method(
1362 &self,
1363 object_name: &str,
1364 mut object_value: Value,
1365 facts: &Facts,
1366 ) -> Result<String> {
1367 match object_value {
1368 Value::Object(ref mut obj) => {
1369 obj.clear();
1370 facts.add_value(object_name, object_value)?;
1371 Ok(format!("Reset {}", object_name))
1372 }
1373 _ => Err(RuleEngineError::EvaluationError {
1374 message: format!("Cannot reset non-object type: {}", object_name),
1375 }),
1376 }
1377 }
1378
1379 fn handle_property_access_or_fallback(
1381 &self,
1382 object_name: &str,
1383 method: &str,
1384 arg_count: usize,
1385 object_value: &Value,
1386 ) -> Result<String> {
1387 if let Value::Object(obj) = object_value {
1388 if let Some(value) = obj.get(method) {
1390 return Ok(value.to_string());
1391 }
1392
1393 let capitalized_method = Self::capitalize_first_letter(method);
1395 if let Some(value) = obj.get(&capitalized_method) {
1396 return Ok(value.to_string());
1397 }
1398 }
1399
1400 Ok(format!(
1402 "Called {}.{} with {} args",
1403 object_name, method, arg_count
1404 ))
1405 }
1406
1407 fn extract_property_name_from_setter(method: &str) -> String {
1409 let property_name = &method[3..]; Self::capitalize_first_letter(property_name)
1411 }
1412
1413 fn extract_property_name_from_getter(method: &str) -> String {
1415 let property_name = &method[3..]; Self::capitalize_first_letter(property_name)
1417 }
1418
1419 fn capitalize_first_letter(s: &str) -> String {
1421 if s.is_empty() {
1422 return String::new();
1423 }
1424 let mut chars = s.chars();
1425 match chars.next() {
1426 None => String::new(),
1427 Some(first) => first.to_uppercase().collect::<String>() + chars.as_str(),
1428 }
1429 }
1430
1431 fn resolve_action_parameters(
1433 &self,
1434 params: &HashMap<String, Value>,
1435 facts: &Facts,
1436 ) -> Result<HashMap<String, Value>> {
1437 let mut resolved = HashMap::new();
1438
1439 for (key, value) in params {
1440 let resolved_value = match value {
1441 Value::String(s) => {
1442 if s.contains('.') {
1444 if let Some(fact_value) = facts.get_nested(s) {
1446 fact_value
1447 } else {
1448 value.clone()
1450 }
1451 } else {
1452 value.clone()
1453 }
1454 }
1455 _ => value.clone(),
1456 };
1457 resolved.insert(key.clone(), resolved_value);
1458 }
1459
1460 Ok(resolved)
1461 }
1462
1463 pub fn load_plugin(
1467 &mut self,
1468 plugin: std::sync::Arc<dyn crate::engine::plugin::RulePlugin>,
1469 ) -> Result<()> {
1470 plugin.register_actions(self)?;
1472 plugin.register_functions(self)?;
1473
1474 self.plugin_manager.load_plugin(plugin)
1476 }
1477
1478 pub fn unload_plugin(&mut self, name: &str) -> Result<()> {
1480 self.plugin_manager.unload_plugin(name)
1481 }
1482
1483 pub fn hot_reload_plugin(
1485 &mut self,
1486 name: &str,
1487 new_plugin: std::sync::Arc<dyn crate::engine::plugin::RulePlugin>,
1488 ) -> Result<()> {
1489 self.plugin_manager.unload_plugin(name)?;
1491
1492 new_plugin.register_actions(self)?;
1494 new_plugin.register_functions(self)?;
1495
1496 self.plugin_manager.load_plugin(new_plugin)
1498 }
1499
1500 pub fn get_plugin_info(&self, name: &str) -> Option<&crate::engine::plugin::PluginMetadata> {
1502 self.plugin_manager.get_plugin_info(name)
1503 }
1504
1505 pub fn list_plugins(&self) -> Vec<PluginInfo> {
1507 self.plugin_manager.list_plugins()
1508 }
1509
1510 pub fn get_plugin_stats(&self) -> PluginStats {
1512 self.plugin_manager.get_stats()
1513 }
1514
1515 pub fn plugin_health_check(&mut self) -> HashMap<String, crate::engine::plugin::PluginHealth> {
1517 self.plugin_manager.plugin_health_check()
1518 }
1519
1520 pub fn configure_plugins(&mut self, config: PluginConfig) {
1522 self.plugin_manager = PluginManager::new(config);
1523 }
1524}