1use crate::engine::module::{ExportItem, ExportList, ImportType, ItemType, ModuleManager};
2use crate::engine::rule::{Condition, ConditionGroup, Rule};
3use crate::errors::{Result, RuleEngineError};
4use crate::types::{ActionType, Operator, Value};
5use chrono::{DateTime, Utc};
6use rexile::Pattern;
7use std::collections::HashMap;
8use std::sync::OnceLock;
9
10#[cfg(feature = "streaming")]
12pub mod stream_syntax;
13
14static RULE_REGEX: OnceLock<Pattern> = OnceLock::new();
16static RULE_SPLIT_REGEX: OnceLock<Pattern> = OnceLock::new();
17static DEFMODULE_REGEX: OnceLock<Pattern> = OnceLock::new();
18static DEFMODULE_SPLIT_REGEX: OnceLock<Pattern> = OnceLock::new();
19static WHEN_THEN_REGEX: OnceLock<Pattern> = OnceLock::new();
20static SALIENCE_REGEX: OnceLock<Pattern> = OnceLock::new();
21static TEST_CONDITION_REGEX: OnceLock<Pattern> = OnceLock::new();
22static TYPED_TEST_CONDITION_REGEX: OnceLock<Pattern> = OnceLock::new();
23static FUNCTION_CALL_REGEX: OnceLock<Pattern> = OnceLock::new();
24static CONDITION_REGEX: OnceLock<Pattern> = OnceLock::new();
25static METHOD_CALL_REGEX: OnceLock<Pattern> = OnceLock::new();
26static FUNCTION_BINDING_REGEX: OnceLock<Pattern> = OnceLock::new();
27static MULTIFIELD_COLLECT_REGEX: OnceLock<Pattern> = OnceLock::new();
28static MULTIFIELD_COUNT_REGEX: OnceLock<Pattern> = OnceLock::new();
29static MULTIFIELD_FIRST_REGEX: OnceLock<Pattern> = OnceLock::new();
30static MULTIFIELD_LAST_REGEX: OnceLock<Pattern> = OnceLock::new();
31static MULTIFIELD_EMPTY_REGEX: OnceLock<Pattern> = OnceLock::new();
32static MULTIFIELD_NOT_EMPTY_REGEX: OnceLock<Pattern> = OnceLock::new();
33static SIMPLE_CONDITION_REGEX: OnceLock<Pattern> = OnceLock::new();
34
35fn rule_regex() -> &'static Pattern {
37 RULE_REGEX.get_or_init(|| {
38 Pattern::new(r#"rule\s+(?:"([^"]+)"|([a-zA-Z_]\w*))\s*([^{]*)\{(.+)\}"#)
39 .expect("Invalid rule regex pattern")
40 })
41}
42
43fn rule_split_regex() -> &'static Pattern {
44 RULE_SPLIT_REGEX.get_or_init(|| {
45 Pattern::new(r#"(?s)rule\s+(?:"[^"]+"|[a-zA-Z_]\w*).*?\}"#)
46 .expect("Invalid rule split regex pattern")
47 })
48}
49
50fn defmodule_regex() -> &'static Pattern {
51 DEFMODULE_REGEX.get_or_init(|| {
52 Pattern::new(r#"defmodule\s+([A-Z_]\w*)\s*\{([^}]*)\}"#)
53 .expect("Invalid defmodule regex pattern")
54 })
55}
56
57fn defmodule_split_regex() -> &'static Pattern {
58 DEFMODULE_SPLIT_REGEX.get_or_init(|| {
59 Pattern::new(r#"(?s)defmodule\s+[A-Z_]\w*\s*\{[^}]*\}"#)
60 .expect("Invalid defmodule split regex pattern")
61 })
62}
63
64fn when_then_regex() -> &'static Pattern {
65 WHEN_THEN_REGEX.get_or_init(|| {
66 Pattern::new(r"when\s+(.+?)\s+then\s+(.+)").expect("Invalid when-then regex pattern")
67 })
68}
69
70fn salience_regex() -> &'static Pattern {
71 SALIENCE_REGEX
72 .get_or_init(|| Pattern::new(r"salience\s+(\d+)").expect("Invalid salience regex pattern"))
73}
74
75fn test_condition_regex() -> &'static Pattern {
76 TEST_CONDITION_REGEX.get_or_init(|| {
77 Pattern::new(r#"^test\s*\(\s*([a-zA-Z_]\w*)\s*\(([^)]*)\)\s*\)$"#)
78 .expect("Invalid test condition regex")
79 })
80}
81
82fn typed_test_condition_regex() -> &'static Pattern {
83 TYPED_TEST_CONDITION_REGEX.get_or_init(|| {
84 Pattern::new(r#"\$(\w+)\s*:\s*(\w+)\s*\(\s*(.+?)\s*\)"#)
85 .expect("Invalid typed test condition regex")
86 })
87}
88
89fn function_call_regex() -> &'static Pattern {
90 FUNCTION_CALL_REGEX.get_or_init(|| {
91 Pattern::new(r#"([a-zA-Z_]\w*)\s*\(([^)]*)\)\s*(>=|<=|==|!=|>|<|contains|startsWith|endsWith|matches|in)\s*(.+)"#)
92 .expect("Invalid function call regex")
93 })
94}
95
96fn condition_regex() -> &'static Pattern {
97 CONDITION_REGEX.get_or_init(|| {
98 Pattern::new(r#"([a-zA-Z_][a-zA-Z0-9_]*(?:\.[a-zA-Z_][a-zA-Z0-9_]*)*(?:\s*[+\-*/%]\s*[a-zA-Z0-9_\.]+)*)\s*(>=|<=|==|!=|>|<|contains|startsWith|endsWith|matches|in)\s*(.+)"#)
99 .expect("Invalid condition regex")
100 })
101}
102
103fn method_call_regex() -> &'static Pattern {
104 METHOD_CALL_REGEX.get_or_init(|| {
105 Pattern::new(r#"\$(\w+)\.(\w+)\s*\(([^)]*)\)"#).expect("Invalid method call regex")
106 })
107}
108
109fn function_binding_regex() -> &'static Pattern {
110 FUNCTION_BINDING_REGEX.get_or_init(|| {
111 Pattern::new(r#"(\w+)\s*\(\s*(.+?)?\s*\)"#).expect("Invalid function binding regex")
112 })
113}
114
115fn multifield_collect_regex() -> &'static Pattern {
116 MULTIFIELD_COLLECT_REGEX.get_or_init(|| {
117 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+(\$\?[a-zA-Z_]\w*)$"#)
118 .expect("Invalid multifield collect regex")
119 })
120}
121
122fn multifield_count_regex() -> &'static Pattern {
123 MULTIFIELD_COUNT_REGEX.get_or_init(|| {
124 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+count\s*(>=|<=|==|!=|>|<)\s*(.+)$"#)
125 .expect("Invalid multifield count regex")
126 })
127}
128
129fn multifield_first_regex() -> &'static Pattern {
130 MULTIFIELD_FIRST_REGEX.get_or_init(|| {
131 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+first(?:\s+(\$[a-zA-Z_]\w*))?$"#)
132 .expect("Invalid multifield first regex")
133 })
134}
135
136fn multifield_last_regex() -> &'static Pattern {
137 MULTIFIELD_LAST_REGEX.get_or_init(|| {
138 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+last(?:\s+(\$[a-zA-Z_]\w*))?$"#)
139 .expect("Invalid multifield last regex")
140 })
141}
142
143fn multifield_empty_regex() -> &'static Pattern {
144 MULTIFIELD_EMPTY_REGEX.get_or_init(|| {
145 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+empty$"#)
146 .expect("Invalid multifield empty regex")
147 })
148}
149
150fn multifield_not_empty_regex() -> &'static Pattern {
151 MULTIFIELD_NOT_EMPTY_REGEX.get_or_init(|| {
152 Pattern::new(r#"^([a-zA-Z_]\w*\.[a-zA-Z_]\w*)\s+not_empty$"#)
153 .expect("Invalid multifield not_empty regex")
154 })
155}
156
157fn simple_condition_regex() -> &'static Pattern {
158 SIMPLE_CONDITION_REGEX.get_or_init(|| {
159 Pattern::new(r#"(\w+)\s*(>=|<=|==|!=|>|<)\s*(.+)"#).expect("Invalid simple condition regex")
160 })
161}
162
163pub struct GRLParser;
166
167#[derive(Debug, Default)]
169struct RuleAttributes {
170 pub no_loop: bool,
171 pub lock_on_active: bool,
172 pub agenda_group: Option<String>,
173 pub activation_group: Option<String>,
174 pub date_effective: Option<DateTime<Utc>>,
175 pub date_expires: Option<DateTime<Utc>>,
176}
177
178#[derive(Debug, Clone)]
180pub struct ParsedGRL {
181 pub rules: Vec<Rule>,
183 pub module_manager: ModuleManager,
185 pub rule_modules: HashMap<String, String>,
187}
188
189impl Default for ParsedGRL {
190 fn default() -> Self {
191 Self::new()
192 }
193}
194
195impl ParsedGRL {
196 pub fn new() -> Self {
197 Self {
198 rules: Vec::new(),
199 module_manager: ModuleManager::new(),
200 rule_modules: HashMap::new(),
201 }
202 }
203}
204
205impl GRLParser {
206 pub fn parse_rule(grl_text: &str) -> Result<Rule> {
219 let mut parser = GRLParser;
220 parser.parse_single_rule(grl_text)
221 }
222
223 pub fn parse_rules(grl_text: &str) -> Result<Vec<Rule>> {
225 let mut parser = GRLParser;
226 parser.parse_multiple_rules(grl_text)
227 }
228
229 pub fn parse_with_modules(grl_text: &str) -> Result<ParsedGRL> {
247 let mut parser = GRLParser;
248 parser.parse_grl_with_modules(grl_text)
249 }
250
251 fn parse_grl_with_modules(&mut self, grl_text: &str) -> Result<ParsedGRL> {
252 let mut result = ParsedGRL::new();
253
254 for module_match in defmodule_split_regex().find_iter(grl_text) {
256 let module_def = module_match.as_str();
257 self.parse_and_register_module(module_def, &mut result.module_manager)?;
258 }
259
260 let rules_text = defmodule_split_regex().replace_all(grl_text, "");
262
263 let rules = self.parse_multiple_rules(&rules_text)?;
265
266 for rule in rules {
268 let module_name = self.extract_module_from_context(grl_text, &rule.name);
269 result
270 .rule_modules
271 .insert(rule.name.clone(), module_name.clone());
272
273 if let Ok(module) = result.module_manager.get_module_mut(&module_name) {
275 module.add_rule(&rule.name);
276 }
277
278 result.rules.push(rule);
279 }
280
281 Ok(result)
282 }
283
284 fn parse_and_register_module(
285 &self,
286 module_def: &str,
287 manager: &mut ModuleManager,
288 ) -> Result<()> {
289 if let Some(captures) = defmodule_regex().captures(module_def) {
291 let module_name = captures.get(1).unwrap().to_string();
292 let module_body = captures.get(2).unwrap();
293
294 let _ = manager.create_module(&module_name);
296 let module = manager.get_module_mut(&module_name)?;
297
298 if let Some(export_type) = self.extract_directive(module_body, "export:") {
300 let exports = if export_type.trim() == "all" {
301 ExportList::All
302 } else if export_type.trim() == "none" {
303 ExportList::None
304 } else {
305 ExportList::Specific(vec![ExportItem {
307 item_type: ItemType::All,
308 pattern: export_type.trim().to_string(),
309 }])
310 };
311 module.set_exports(exports);
312 }
313
314 let import_lines: Vec<&str> = module_body
316 .lines()
317 .filter(|line| line.trim().starts_with("import:"))
318 .collect();
319
320 for import_line in import_lines {
321 if let Some(import_spec) = self.extract_directive(import_line, "import:") {
322 self.parse_import_spec(&module_name, &import_spec, manager)?;
324 }
325 }
326 }
327
328 Ok(())
329 }
330
331 fn extract_directive(&self, text: &str, directive: &str) -> Option<String> {
332 if let Some(pos) = text.find(directive) {
333 let after_directive = &text[pos + directive.len()..];
334
335 let end = after_directive
337 .find("import:")
338 .or_else(|| after_directive.find("export:"))
339 .unwrap_or(after_directive.len());
340
341 Some(after_directive[..end].trim().to_string())
342 } else {
343 None
344 }
345 }
346
347 fn parse_import_spec(
348 &self,
349 importing_module: &str,
350 spec: &str,
351 manager: &mut ModuleManager,
352 ) -> Result<()> {
353 let parts: Vec<&str> = spec.splitn(2, '(').collect();
355 if parts.is_empty() {
356 return Ok(());
357 }
358
359 let source_module = parts[0].trim().to_string();
360 let rest = if parts.len() > 1 { parts[1] } else { "" };
361
362 if rest.contains("rules") {
364 manager.import_from(importing_module, &source_module, ImportType::AllRules, "*")?;
365 }
366
367 if rest.contains("templates") {
368 manager.import_from(
369 importing_module,
370 &source_module,
371 ImportType::AllTemplates,
372 "*",
373 )?;
374 }
375
376 Ok(())
377 }
378
379 fn extract_module_from_context(&self, grl_text: &str, rule_name: &str) -> String {
380 if let Some(rule_pos) = grl_text
382 .find(&format!("rule \"{}\"", rule_name))
383 .or_else(|| grl_text.find(&format!("rule {}", rule_name)))
384 {
385 let before = &grl_text[..rule_pos];
387 if let Some(module_pos) = before.rfind(";; MODULE:") {
388 let after_module_marker = &before[module_pos + 10..];
389 if let Some(end_of_line) = after_module_marker.find('\n') {
390 let module_line = &after_module_marker[..end_of_line].trim();
391 if let Some(first_word) = module_line.split_whitespace().next() {
393 return first_word.to_string();
394 }
395 }
396 }
397 }
398
399 "MAIN".to_string()
401 }
402
403 fn parse_single_rule(&mut self, grl_text: &str) -> Result<Rule> {
404 let cleaned = self.clean_text(grl_text);
405
406 let captures =
408 rule_regex()
409 .captures(&cleaned)
410 .ok_or_else(|| RuleEngineError::ParseError {
411 message: format!("Invalid GRL rule format. Input: {}", cleaned),
412 })?;
413
414 let rule_name = if let Some(quoted_name) = captures.get(1) {
416 quoted_name.to_string()
417 } else if let Some(unquoted_name) = captures.get(2) {
418 unquoted_name.to_string()
419 } else {
420 return Err(RuleEngineError::ParseError {
421 message: "Could not extract rule name".to_string(),
422 });
423 };
424
425 let attributes_section = captures.get(3).unwrap_or("");
427
428 let rule_body = captures.get(4).unwrap();
430
431 let salience = self.extract_salience(attributes_section)?;
433
434 let when_then_captures =
436 when_then_regex()
437 .captures(rule_body)
438 .ok_or_else(|| RuleEngineError::ParseError {
439 message: "Missing when or then clause".to_string(),
440 })?;
441
442 let when_clause = when_then_captures.get(1).unwrap().trim();
443 let then_clause = when_then_captures.get(2).unwrap().trim();
444
445 let conditions = self.parse_when_clause(when_clause)?;
447 let actions = self.parse_then_clause(then_clause)?;
448
449 let attributes = self.parse_rule_attributes(attributes_section)?;
451
452 let mut rule = Rule::new(rule_name, conditions, actions);
454 rule = rule.with_priority(salience);
455
456 if attributes.no_loop {
458 rule = rule.with_no_loop(true);
459 }
460 if attributes.lock_on_active {
461 rule = rule.with_lock_on_active(true);
462 }
463 if let Some(agenda_group) = attributes.agenda_group {
464 rule = rule.with_agenda_group(agenda_group);
465 }
466 if let Some(activation_group) = attributes.activation_group {
467 rule = rule.with_activation_group(activation_group);
468 }
469 if let Some(date_effective) = attributes.date_effective {
470 rule = rule.with_date_effective(date_effective);
471 }
472 if let Some(date_expires) = attributes.date_expires {
473 rule = rule.with_date_expires(date_expires);
474 }
475
476 Ok(rule)
477 }
478
479 fn parse_multiple_rules(&mut self, grl_text: &str) -> Result<Vec<Rule>> {
480 let mut rules = Vec::new();
483
484 for rule_match in rule_split_regex().find_iter(grl_text) {
485 let rule_text = rule_match.as_str();
486 let rule = self.parse_single_rule(rule_text)?;
487 rules.push(rule);
488 }
489
490 Ok(rules)
491 }
492
493 fn parse_rule_attributes(&self, rule_header: &str) -> Result<RuleAttributes> {
495 let mut attributes = RuleAttributes::default();
496
497 let mut attrs_section = rule_header.to_string();
501
502 let quoted_regex = Pattern::new(r#""[^"]*""#).map_err(|e| RuleEngineError::ParseError {
504 message: format!("Invalid quoted string regex: {}", e),
505 })?;
506 attrs_section = quoted_regex.replace_all(&attrs_section, "").to_string();
507
508 if let Some(rule_pos) = attrs_section.find("rule") {
510 let after_rule = &attrs_section[rule_pos + 4..];
512 if let Some(first_keyword) = after_rule
513 .find("salience")
514 .or_else(|| after_rule.find("no-loop"))
515 .or_else(|| after_rule.find("lock-on-active"))
516 .or_else(|| after_rule.find("agenda-group"))
517 .or_else(|| after_rule.find("activation-group"))
518 .or_else(|| after_rule.find("date-effective"))
519 .or_else(|| after_rule.find("date-expires"))
520 {
521 attrs_section = after_rule[first_keyword..].to_string();
522 }
523 }
524
525 let no_loop_regex =
527 Pattern::new(r"\bno-loop\b").map_err(|e| RuleEngineError::ParseError {
528 message: format!("Invalid no-loop regex: {}", e),
529 })?;
530 let lock_on_active_regex =
531 Pattern::new(r"\block-on-active\b").map_err(|e| RuleEngineError::ParseError {
532 message: format!("Invalid lock-on-active regex: {}", e),
533 })?;
534
535 if no_loop_regex.is_match(&attrs_section) {
536 attributes.no_loop = true;
537 }
538 if lock_on_active_regex.is_match(&attrs_section) {
539 attributes.lock_on_active = true;
540 }
541
542 if let Some(agenda_group) = self.extract_quoted_attribute(rule_header, "agenda-group")? {
544 attributes.agenda_group = Some(agenda_group);
545 }
546
547 if let Some(activation_group) =
549 self.extract_quoted_attribute(rule_header, "activation-group")?
550 {
551 attributes.activation_group = Some(activation_group);
552 }
553
554 if let Some(date_str) = self.extract_quoted_attribute(rule_header, "date-effective")? {
556 attributes.date_effective = Some(self.parse_date_string(&date_str)?);
557 }
558
559 if let Some(date_str) = self.extract_quoted_attribute(rule_header, "date-expires")? {
561 attributes.date_expires = Some(self.parse_date_string(&date_str)?);
562 }
563
564 Ok(attributes)
565 }
566
567 fn extract_quoted_attribute(&self, header: &str, attribute: &str) -> Result<Option<String>> {
569 let pattern = format!(r#"{}\s+"([^"]+)""#, attribute);
570 let regex = Pattern::new(&pattern).map_err(|e| RuleEngineError::ParseError {
571 message: format!("Invalid attribute regex for {}: {}", attribute, e),
572 })?;
573
574 if let Some(captures) = regex.captures(header) {
575 if let Some(value) = captures.get(1) {
576 return Ok(Some(value.to_string()));
577 }
578 }
579
580 Ok(None)
581 }
582
583 fn parse_date_string(&self, date_str: &str) -> Result<DateTime<Utc>> {
585 if let Ok(date) = DateTime::parse_from_rfc3339(date_str) {
587 return Ok(date.with_timezone(&Utc));
588 }
589
590 let formats = ["%Y-%m-%d", "%Y-%m-%dT%H:%M:%S", "%d-%b-%Y", "%d-%m-%Y"];
592
593 for format in &formats {
594 if let Ok(naive_date) = chrono::NaiveDateTime::parse_from_str(date_str, format) {
595 return Ok(naive_date.and_utc());
596 }
597 if let Ok(naive_date) = chrono::NaiveDate::parse_from_str(date_str, format) {
598 let datetime =
599 naive_date
600 .and_hms_opt(0, 0, 0)
601 .ok_or_else(|| RuleEngineError::ParseError {
602 message: format!("Invalid time for date: {}", naive_date),
603 })?;
604 return Ok(datetime.and_utc());
605 }
606 }
607
608 Err(RuleEngineError::ParseError {
609 message: format!("Unable to parse date: {}", date_str),
610 })
611 }
612
613 fn extract_salience(&self, attributes_section: &str) -> Result<i32> {
615 if let Some(captures) = salience_regex().captures(attributes_section) {
616 if let Some(salience_match) = captures.get(1) {
617 return salience_match
618 .parse::<i32>()
619 .map_err(|e| RuleEngineError::ParseError {
620 message: format!("Invalid salience value: {}", e),
621 });
622 }
623 }
624
625 Ok(0) }
627
628 fn clean_text(&self, text: &str) -> String {
629 text.lines()
630 .map(|line| line.trim())
631 .filter(|line| !line.is_empty() && !line.starts_with("//"))
632 .collect::<Vec<_>>()
633 .join(" ")
634 }
635
636 fn parse_when_clause(&self, when_clause: &str) -> Result<ConditionGroup> {
637 let trimmed = when_clause.trim();
639
640 let clause = if trimmed.starts_with('(') && trimmed.ends_with(')') {
642 let inner = &trimmed[1..trimmed.len() - 1];
644 if self.is_balanced_parentheses(inner) {
645 inner
646 } else {
647 trimmed
648 }
649 } else {
650 trimmed
651 };
652
653 if let Some(parts) = self.split_logical_operator(clause, "||") {
655 return self.parse_or_parts(parts);
656 }
657
658 if let Some(parts) = self.split_logical_operator(clause, "&&") {
660 return self.parse_and_parts(parts);
661 }
662
663 if clause.trim_start().starts_with("!") {
665 return self.parse_not_condition(clause);
666 }
667
668 if clause.trim_start().starts_with("exists(") {
670 return self.parse_exists_condition(clause);
671 }
672
673 if clause.trim_start().starts_with("forall(") {
675 return self.parse_forall_condition(clause);
676 }
677
678 if clause.trim_start().starts_with("accumulate(") {
680 return self.parse_accumulate_condition(clause);
681 }
682
683 self.parse_single_condition(clause)
685 }
686
687 fn is_balanced_parentheses(&self, text: &str) -> bool {
688 let mut count = 0;
689 for ch in text.chars() {
690 match ch {
691 '(' => count += 1,
692 ')' => {
693 count -= 1;
694 if count < 0 {
695 return false;
696 }
697 }
698 _ => {}
699 }
700 }
701 count == 0
702 }
703
704 fn split_logical_operator(&self, clause: &str, operator: &str) -> Option<Vec<String>> {
705 let mut parts = Vec::new();
706 let mut current_part = String::new();
707 let mut paren_count = 0;
708 let mut chars = clause.chars().peekable();
709
710 while let Some(ch) = chars.next() {
711 match ch {
712 '(' => {
713 paren_count += 1;
714 current_part.push(ch);
715 }
716 ')' => {
717 paren_count -= 1;
718 current_part.push(ch);
719 }
720 '&' if operator == "&&" && paren_count == 0 && chars.peek() == Some(&'&') => {
721 chars.next(); parts.push(current_part.trim().to_string());
723 current_part.clear();
724 }
725 '|' if operator == "||" && paren_count == 0 && chars.peek() == Some(&'|') => {
726 chars.next(); parts.push(current_part.trim().to_string());
728 current_part.clear();
729 }
730 _ => {
731 current_part.push(ch);
732 }
733 }
734 }
735
736 if !current_part.trim().is_empty() {
737 parts.push(current_part.trim().to_string());
738 }
739
740 if parts.len() > 1 {
741 Some(parts)
742 } else {
743 None
744 }
745 }
746
747 fn parse_or_parts(&self, parts: Vec<String>) -> Result<ConditionGroup> {
748 let mut conditions = Vec::new();
749 for part in parts {
750 let condition = self.parse_when_clause(&part)?;
751 conditions.push(condition);
752 }
753
754 if conditions.is_empty() {
755 return Err(RuleEngineError::ParseError {
756 message: "No conditions found in OR".to_string(),
757 });
758 }
759
760 let mut iter = conditions.into_iter();
761 let mut result = iter
762 .next()
763 .expect("Iterator cannot be empty after empty check");
764 for condition in iter {
765 result = ConditionGroup::or(result, condition);
766 }
767
768 Ok(result)
769 }
770
771 fn parse_and_parts(&self, parts: Vec<String>) -> Result<ConditionGroup> {
772 let mut conditions = Vec::new();
773 for part in parts {
774 let condition = self.parse_when_clause(&part)?;
775 conditions.push(condition);
776 }
777
778 if conditions.is_empty() {
779 return Err(RuleEngineError::ParseError {
780 message: "No conditions found in AND".to_string(),
781 });
782 }
783
784 let mut iter = conditions.into_iter();
785 let mut result = iter
786 .next()
787 .expect("Iterator cannot be empty after empty check");
788 for condition in iter {
789 result = ConditionGroup::and(result, condition);
790 }
791
792 Ok(result)
793 }
794
795 fn parse_not_condition(&self, clause: &str) -> Result<ConditionGroup> {
796 let inner_clause = clause
797 .strip_prefix('!')
798 .ok_or_else(|| RuleEngineError::ParseError {
799 message: format!("Expected '!' prefix in NOT condition: {}", clause),
800 })?
801 .trim();
802 let inner_condition = self.parse_when_clause(inner_clause)?;
803 Ok(ConditionGroup::not(inner_condition))
804 }
805
806 fn parse_exists_condition(&self, clause: &str) -> Result<ConditionGroup> {
807 let clause = clause.trim_start();
808 if !clause.starts_with("exists(") || !clause.ends_with(")") {
809 return Err(RuleEngineError::ParseError {
810 message: "Invalid exists syntax. Expected: exists(condition)".to_string(),
811 });
812 }
813
814 let inner_clause = &clause[7..clause.len() - 1]; let inner_condition = self.parse_when_clause(inner_clause)?;
817 Ok(ConditionGroup::exists(inner_condition))
818 }
819
820 fn parse_forall_condition(&self, clause: &str) -> Result<ConditionGroup> {
821 let clause = clause.trim_start();
822 if !clause.starts_with("forall(") || !clause.ends_with(")") {
823 return Err(RuleEngineError::ParseError {
824 message: "Invalid forall syntax. Expected: forall(condition)".to_string(),
825 });
826 }
827
828 let inner_clause = &clause[7..clause.len() - 1]; let inner_condition = self.parse_when_clause(inner_clause)?;
831 Ok(ConditionGroup::forall(inner_condition))
832 }
833
834 fn parse_accumulate_condition(&self, clause: &str) -> Result<ConditionGroup> {
835 let clause = clause.trim_start();
836 if !clause.starts_with("accumulate(") || !clause.ends_with(")") {
837 return Err(RuleEngineError::ParseError {
838 message: "Invalid accumulate syntax. Expected: accumulate(pattern, function)"
839 .to_string(),
840 });
841 }
842
843 let inner = &clause[11..clause.len() - 1]; let parts = self.split_accumulate_parts(inner)?;
848
849 if parts.len() != 2 {
850 return Err(RuleEngineError::ParseError {
851 message: format!(
852 "Invalid accumulate syntax. Expected 2 parts (pattern, function), got {}",
853 parts.len()
854 ),
855 });
856 }
857
858 let pattern_part = parts[0].trim();
859 let function_part = parts[1].trim();
860
861 let (source_pattern, extract_field, source_conditions) =
863 self.parse_accumulate_pattern(pattern_part)?;
864
865 let (function, function_arg) = self.parse_accumulate_function(function_part)?;
867
868 let result_var = "$result".to_string();
872
873 Ok(ConditionGroup::accumulate(
874 result_var,
875 source_pattern,
876 extract_field,
877 source_conditions,
878 function,
879 function_arg,
880 ))
881 }
882
883 fn split_accumulate_parts(&self, content: &str) -> Result<Vec<String>> {
884 let mut parts = Vec::new();
885 let mut current = String::new();
886 let mut paren_depth = 0;
887
888 for ch in content.chars() {
889 match ch {
890 '(' => {
891 paren_depth += 1;
892 current.push(ch);
893 }
894 ')' => {
895 paren_depth -= 1;
896 current.push(ch);
897 }
898 ',' if paren_depth == 0 => {
899 parts.push(current.trim().to_string());
900 current.clear();
901 }
902 _ => {
903 current.push(ch);
904 }
905 }
906 }
907
908 if !current.trim().is_empty() {
909 parts.push(current.trim().to_string());
910 }
911
912 Ok(parts)
913 }
914
915 fn parse_accumulate_pattern(&self, pattern: &str) -> Result<(String, String, Vec<String>)> {
916 let pattern = pattern.trim();
923
924 let paren_pos = pattern
926 .find('(')
927 .ok_or_else(|| RuleEngineError::ParseError {
928 message: format!("Invalid accumulate pattern: missing '(' in '{}'", pattern),
929 })?;
930
931 let source_pattern = pattern[..paren_pos].trim().to_string();
932
933 if !pattern.ends_with(')') {
935 return Err(RuleEngineError::ParseError {
936 message: format!("Invalid accumulate pattern: missing ')' in '{}'", pattern),
937 });
938 }
939
940 let inner = &pattern[paren_pos + 1..pattern.len() - 1];
941
942 let parts = self.split_pattern_parts(inner)?;
944
945 let mut extract_field = String::new();
946 let mut source_conditions = Vec::new();
947
948 for part in parts {
949 let part = part.trim();
950
951 if part.contains(':') && part.starts_with('$') {
953 if let Some(colon_pos) = part.find(':') {
954 extract_field = part[colon_pos + 1..].trim().to_string();
955 }
956 } else if part.contains("==")
957 || part.contains("!=")
958 || part.contains(">=")
959 || part.contains("<=")
960 || part.contains('>')
961 || part.contains('<')
962 {
963 source_conditions.push(part.to_string());
965 }
966 }
967
968 Ok((source_pattern, extract_field, source_conditions))
969 }
970
971 fn split_pattern_parts(&self, content: &str) -> Result<Vec<String>> {
972 let mut parts = Vec::new();
973 let mut current = String::new();
974 let mut paren_depth = 0;
975 let mut in_quotes = false;
976 let mut quote_char = ' ';
977
978 for ch in content.chars() {
979 match ch {
980 '"' | '\'' if !in_quotes => {
981 in_quotes = true;
982 quote_char = ch;
983 current.push(ch);
984 }
985 '"' | '\'' if in_quotes && ch == quote_char => {
986 in_quotes = false;
987 current.push(ch);
988 }
989 '(' if !in_quotes => {
990 paren_depth += 1;
991 current.push(ch);
992 }
993 ')' if !in_quotes => {
994 paren_depth -= 1;
995 current.push(ch);
996 }
997 ',' if !in_quotes && paren_depth == 0 => {
998 parts.push(current.trim().to_string());
999 current.clear();
1000 }
1001 _ => {
1002 current.push(ch);
1003 }
1004 }
1005 }
1006
1007 if !current.trim().is_empty() {
1008 parts.push(current.trim().to_string());
1009 }
1010
1011 Ok(parts)
1012 }
1013
1014 fn parse_accumulate_function(&self, function_str: &str) -> Result<(String, String)> {
1015 let function_str = function_str.trim();
1018
1019 let paren_pos = function_str
1020 .find('(')
1021 .ok_or_else(|| RuleEngineError::ParseError {
1022 message: format!(
1023 "Invalid accumulate function: missing '(' in '{}'",
1024 function_str
1025 ),
1026 })?;
1027
1028 let function_name = function_str[..paren_pos].trim().to_string();
1029
1030 if !function_str.ends_with(')') {
1031 return Err(RuleEngineError::ParseError {
1032 message: format!(
1033 "Invalid accumulate function: missing ')' in '{}'",
1034 function_str
1035 ),
1036 });
1037 }
1038
1039 let args = &function_str[paren_pos + 1..function_str.len() - 1];
1040 let function_arg = args.trim().to_string();
1041
1042 Ok((function_name, function_arg))
1043 }
1044
1045 fn parse_single_condition(&self, clause: &str) -> Result<ConditionGroup> {
1046 let trimmed_clause = clause.trim();
1048 let clause_to_parse = if trimmed_clause.starts_with('(') && trimmed_clause.ends_with(')') {
1049 trimmed_clause[1..trimmed_clause.len() - 1].trim()
1050 } else {
1051 trimmed_clause
1052 };
1053
1054 #[cfg(feature = "streaming")]
1057 if clause_to_parse.contains("from stream(") {
1058 return self.parse_stream_pattern_condition(clause_to_parse);
1059 }
1060
1061 if let Some(captures) = multifield_collect_regex().captures(clause_to_parse) {
1068 let field = captures.get(1).unwrap().to_string();
1069 let variable = captures.get(2).unwrap().to_string();
1070
1071 let condition = Condition::with_multifield_collect(field, variable);
1074 return Ok(ConditionGroup::single(condition));
1075 }
1076
1077 if let Some(captures) = multifield_count_regex().captures(clause_to_parse) {
1084 let field = captures.get(1).unwrap().to_string();
1085 let operator_str = captures.get(2).unwrap();
1086 let value_str = captures.get(3).unwrap().trim();
1087
1088 let operator = Operator::from_str(operator_str).ok_or_else(|| {
1089 RuleEngineError::InvalidOperator {
1090 operator: operator_str.to_string(),
1091 }
1092 })?;
1093
1094 let value = self.parse_value(value_str)?;
1095
1096 let condition = Condition::with_multifield_count(field, operator, value);
1097 return Ok(ConditionGroup::single(condition));
1098 }
1099
1100 if let Some(captures) = multifield_first_regex().captures(clause_to_parse) {
1103 let field = captures.get(1).unwrap().to_string();
1104 let variable = captures.get(2).map(|m| m.to_string());
1105
1106 let condition = Condition::with_multifield_first(field, variable);
1107 return Ok(ConditionGroup::single(condition));
1108 }
1109
1110 if let Some(captures) = multifield_last_regex().captures(clause_to_parse) {
1113 let field = captures.get(1).unwrap().to_string();
1114 let variable = captures.get(2).map(|m| m.to_string());
1115
1116 let condition = Condition::with_multifield_last(field, variable);
1117 return Ok(ConditionGroup::single(condition));
1118 }
1119
1120 if let Some(captures) = multifield_empty_regex().captures(clause_to_parse) {
1123 let field = captures.get(1).unwrap().to_string();
1124
1125 let condition = Condition::with_multifield_empty(field);
1126 return Ok(ConditionGroup::single(condition));
1127 }
1128
1129 if let Some(captures) = multifield_not_empty_regex().captures(clause_to_parse) {
1132 let field = captures.get(1).unwrap().to_string();
1133
1134 let condition = Condition::with_multifield_not_empty(field);
1135 return Ok(ConditionGroup::single(condition));
1136 }
1137
1138 if let Some(captures) = test_condition_regex().captures(clause_to_parse) {
1143 let function_name = captures.get(1).unwrap().to_string();
1144 let args_str = captures.get(2).unwrap();
1145
1146 let args: Vec<String> = if args_str.trim().is_empty() {
1148 Vec::new()
1149 } else {
1150 args_str
1151 .split(',')
1152 .map(|arg| arg.trim().to_string())
1153 .collect()
1154 };
1155
1156 let condition = Condition::with_test(function_name, args);
1157 return Ok(ConditionGroup::single(condition));
1158 }
1159
1160 if let Some(captures) = typed_test_condition_regex().captures(clause_to_parse) {
1162 let _object_name = captures.get(1).unwrap();
1163 let _object_type = captures.get(2).unwrap();
1164 let conditions_str = captures.get(3).unwrap();
1165
1166 return self.parse_conditions_within_object(conditions_str);
1168 }
1169
1170 if let Some(captures) = function_call_regex().captures(clause_to_parse) {
1172 let function_name = captures.get(1).unwrap().to_string();
1173 let args_str = captures.get(2).unwrap();
1174 let operator_str = captures.get(3).unwrap();
1175 let value_str = captures.get(4).unwrap().trim();
1176
1177 let args: Vec<String> = if args_str.trim().is_empty() {
1179 Vec::new()
1180 } else {
1181 args_str
1182 .split(',')
1183 .map(|arg| arg.trim().to_string())
1184 .collect()
1185 };
1186
1187 let operator = Operator::from_str(operator_str).ok_or_else(|| {
1188 RuleEngineError::InvalidOperator {
1189 operator: operator_str.to_string(),
1190 }
1191 })?;
1192
1193 let value = self.parse_value(value_str)?;
1194
1195 let condition = Condition::with_function(function_name, args, operator, value);
1196 return Ok(ConditionGroup::single(condition));
1197 }
1198
1199 let captures = condition_regex().captures(clause_to_parse).ok_or_else(|| {
1203 RuleEngineError::ParseError {
1204 message: format!("Invalid condition format: {}", clause_to_parse),
1205 }
1206 })?;
1207
1208 let left_side = captures.get(1).unwrap().trim().to_string();
1209 let operator_str = captures.get(2).unwrap();
1210 let value_str = captures.get(3).unwrap().trim();
1211
1212 let operator =
1213 Operator::from_str(operator_str).ok_or_else(|| RuleEngineError::InvalidOperator {
1214 operator: operator_str.to_string(),
1215 })?;
1216
1217 let value = self.parse_value(value_str)?;
1218
1219 if left_side.contains('+')
1221 || left_side.contains('-')
1222 || left_side.contains('*')
1223 || left_side.contains('/')
1224 || left_side.contains('%')
1225 {
1226 let test_expr = format!("{} {} {}", left_side, operator_str, value_str);
1229 let condition = Condition::with_test(test_expr, vec![]);
1230 Ok(ConditionGroup::single(condition))
1231 } else {
1232 let condition = Condition::new(left_side, operator, value);
1234 Ok(ConditionGroup::single(condition))
1235 }
1236 }
1237
1238 fn parse_conditions_within_object(&self, conditions_str: &str) -> Result<ConditionGroup> {
1239 let parts: Vec<&str> = conditions_str.split("&&").collect();
1241
1242 let mut conditions = Vec::new();
1243 for part in parts {
1244 let trimmed = part.trim();
1245 let condition = self.parse_simple_condition(trimmed)?;
1246 conditions.push(condition);
1247 }
1248
1249 if conditions.is_empty() {
1251 return Err(RuleEngineError::ParseError {
1252 message: "No conditions found".to_string(),
1253 });
1254 }
1255
1256 let mut iter = conditions.into_iter();
1257 let mut result = iter
1258 .next()
1259 .expect("Iterator cannot be empty after empty check");
1260 for condition in iter {
1261 result = ConditionGroup::and(result, condition);
1262 }
1263
1264 Ok(result)
1265 }
1266
1267 fn parse_simple_condition(&self, clause: &str) -> Result<ConditionGroup> {
1268 let captures = simple_condition_regex().captures(clause).ok_or_else(|| {
1270 RuleEngineError::ParseError {
1271 message: format!("Invalid simple condition format: {}", clause),
1272 }
1273 })?;
1274
1275 let field = captures.get(1).unwrap().to_string();
1276 let operator_str = captures.get(2).unwrap();
1277 let value_str = captures.get(3).unwrap().trim();
1278
1279 let operator =
1280 Operator::from_str(operator_str).ok_or_else(|| RuleEngineError::InvalidOperator {
1281 operator: operator_str.to_string(),
1282 })?;
1283
1284 let value = self.parse_value(value_str)?;
1285
1286 let condition = Condition::new(field, operator, value);
1287 Ok(ConditionGroup::single(condition))
1288 }
1289
1290 fn parse_value(&self, value_str: &str) -> Result<Value> {
1291 let trimmed = value_str.trim();
1292
1293 if trimmed.starts_with('[') && trimmed.ends_with(']') {
1295 return self.parse_array_literal(trimmed);
1296 }
1297
1298 if (trimmed.starts_with('"') && trimmed.ends_with('"'))
1300 || (trimmed.starts_with('\'') && trimmed.ends_with('\''))
1301 {
1302 let unquoted = &trimmed[1..trimmed.len() - 1];
1303 return Ok(Value::String(unquoted.to_string()));
1304 }
1305
1306 if trimmed.eq_ignore_ascii_case("true") {
1308 return Ok(Value::Boolean(true));
1309 }
1310 if trimmed.eq_ignore_ascii_case("false") {
1311 return Ok(Value::Boolean(false));
1312 }
1313
1314 if trimmed.eq_ignore_ascii_case("null") {
1316 return Ok(Value::Null);
1317 }
1318
1319 if let Ok(int_val) = trimmed.parse::<i64>() {
1321 return Ok(Value::Integer(int_val));
1322 }
1323
1324 if let Ok(float_val) = trimmed.parse::<f64>() {
1325 return Ok(Value::Number(float_val));
1326 }
1327
1328 if self.is_expression(trimmed) {
1331 return Ok(Value::Expression(trimmed.to_string()));
1332 }
1333
1334 if trimmed.contains('.') {
1336 return Ok(Value::String(trimmed.to_string()));
1337 }
1338
1339 if self.is_identifier(trimmed) {
1343 return Ok(Value::Expression(trimmed.to_string()));
1344 }
1345
1346 Ok(Value::String(trimmed.to_string()))
1348 }
1349
1350 fn is_identifier(&self, s: &str) -> bool {
1353 if s.is_empty() {
1354 return false;
1355 }
1356 let first_char = s.chars().next().expect("Cannot be empty after empty check");
1357 if !first_char.is_alphabetic() && first_char != '_' {
1358 return false;
1359 }
1360
1361 let first_char = s.chars().next().unwrap();
1363 if !first_char.is_alphabetic() && first_char != '_' {
1364 return false;
1365 }
1366
1367 s.chars().all(|c| c.is_alphanumeric() || c == '_')
1369 }
1370
1371 fn is_expression(&self, s: &str) -> bool {
1373 let has_operator = s.contains('+')
1375 || s.contains('-')
1376 || s.contains('*')
1377 || s.contains('/')
1378 || s.contains('%');
1379
1380 let has_field_ref = s.contains('.');
1382
1383 let has_spaces = s.contains(' ');
1385
1386 has_operator && (has_field_ref || has_spaces)
1388 }
1389
1390 fn parse_array_literal(&self, array_str: &str) -> Result<Value> {
1392 let content = array_str.trim();
1393 if !content.starts_with('[') || !content.ends_with(']') {
1394 return Err(RuleEngineError::ParseError {
1395 message: format!("Invalid array literal: {}", array_str),
1396 });
1397 }
1398
1399 let inner = content[1..content.len() - 1].trim();
1400 if inner.is_empty() {
1401 return Ok(Value::Array(vec![]));
1402 }
1403
1404 let mut elements = Vec::new();
1406 let mut current_element = String::new();
1407 let mut in_quotes = false;
1408 let mut quote_char = ' ';
1409
1410 for ch in inner.chars() {
1411 match ch {
1412 '"' | '\'' if !in_quotes => {
1413 in_quotes = true;
1414 quote_char = ch;
1415 current_element.push(ch);
1416 }
1417 c if in_quotes && c == quote_char => {
1418 in_quotes = false;
1419 current_element.push(ch);
1420 }
1421 ',' if !in_quotes => {
1422 if !current_element.trim().is_empty() {
1423 elements.push(current_element.trim().to_string());
1424 }
1425 current_element.clear();
1426 }
1427 _ => {
1428 current_element.push(ch);
1429 }
1430 }
1431 }
1432
1433 if !current_element.trim().is_empty() {
1435 elements.push(current_element.trim().to_string());
1436 }
1437
1438 let mut array_values = Vec::new();
1440 for elem in elements {
1441 let value = self.parse_value(&elem)?;
1442 array_values.push(value);
1443 }
1444
1445 Ok(Value::Array(array_values))
1446 }
1447
1448 fn parse_then_clause(&self, then_clause: &str) -> Result<Vec<ActionType>> {
1449 let statements: Vec<&str> = then_clause
1450 .split(';')
1451 .map(|s| s.trim())
1452 .filter(|s| !s.is_empty())
1453 .collect();
1454
1455 let mut actions = Vec::new();
1456
1457 for statement in statements {
1458 let action = self.parse_action_statement(statement)?;
1459 actions.push(action);
1460 }
1461
1462 Ok(actions)
1463 }
1464
1465 fn parse_action_statement(&self, statement: &str) -> Result<ActionType> {
1466 let trimmed = statement.trim();
1467
1468 if let Some(captures) = method_call_regex().captures(trimmed) {
1470 let object = captures.get(1).unwrap().to_string();
1471 let method = captures.get(2).unwrap().to_string();
1472 let args_str = captures.get(3).unwrap();
1473
1474 let args = if args_str.trim().is_empty() {
1475 Vec::new()
1476 } else {
1477 self.parse_method_args(args_str)?
1478 };
1479
1480 return Ok(ActionType::MethodCall {
1481 object,
1482 method,
1483 args,
1484 });
1485 }
1486
1487 if let Some(plus_eq_pos) = trimmed.find("+=") {
1489 let field = trimmed[..plus_eq_pos].trim().to_string();
1491 let value_str = trimmed[plus_eq_pos + 2..].trim();
1492 let value = self.parse_value(value_str)?;
1493
1494 return Ok(ActionType::Append { field, value });
1495 }
1496
1497 if let Some(eq_pos) = trimmed.find('=') {
1499 let field = trimmed[..eq_pos].trim().to_string();
1500 let value_str = trimmed[eq_pos + 1..].trim();
1501 let value = self.parse_value(value_str)?;
1502
1503 return Ok(ActionType::Set { field, value });
1504 }
1505
1506 if let Some(captures) = function_binding_regex().captures(trimmed) {
1508 let function_name = captures.get(1).unwrap();
1509 let args_str = captures.get(2).unwrap_or("");
1510
1511 match function_name.to_lowercase().as_str() {
1512 "retract" => {
1513 let object_name = if let Some(stripped) = args_str.strip_prefix('$') {
1515 stripped.to_string()
1516 } else {
1517 args_str.to_string()
1518 };
1519 Ok(ActionType::Retract {
1520 object: object_name,
1521 })
1522 }
1523 "log" => {
1524 let message = if args_str.is_empty() {
1525 "Log message".to_string()
1526 } else {
1527 let value = self.parse_value(args_str.trim())?;
1528 value.to_string()
1529 };
1530 Ok(ActionType::Log { message })
1531 }
1532 "activateagendagroup" | "activate_agenda_group" => {
1533 let agenda_group = if args_str.is_empty() {
1534 return Err(RuleEngineError::ParseError {
1535 message: "ActivateAgendaGroup requires agenda group name".to_string(),
1536 });
1537 } else {
1538 let value = self.parse_value(args_str.trim())?;
1539 match value {
1540 Value::String(s) => s,
1541 _ => value.to_string(),
1542 }
1543 };
1544 Ok(ActionType::ActivateAgendaGroup {
1545 group: agenda_group,
1546 })
1547 }
1548 "schedulerule" | "schedule_rule" => {
1549 let parts: Vec<&str> = args_str.split(',').collect();
1551 if parts.len() != 2 {
1552 return Err(RuleEngineError::ParseError {
1553 message: "ScheduleRule requires delay_ms and rule_name".to_string(),
1554 });
1555 }
1556
1557 let delay_ms = self.parse_value(parts[0].trim())?;
1558 let rule_name = self.parse_value(parts[1].trim())?;
1559
1560 let delay_ms = match delay_ms {
1561 Value::Integer(i) => i as u64,
1562 Value::Number(f) => f as u64,
1563 _ => {
1564 return Err(RuleEngineError::ParseError {
1565 message: "ScheduleRule delay_ms must be a number".to_string(),
1566 })
1567 }
1568 };
1569
1570 let rule_name = match rule_name {
1571 Value::String(s) => s,
1572 _ => rule_name.to_string(),
1573 };
1574
1575 Ok(ActionType::ScheduleRule {
1576 delay_ms,
1577 rule_name,
1578 })
1579 }
1580 "completeworkflow" | "complete_workflow" => {
1581 let workflow_id = if args_str.is_empty() {
1582 return Err(RuleEngineError::ParseError {
1583 message: "CompleteWorkflow requires workflow_id".to_string(),
1584 });
1585 } else {
1586 let value = self.parse_value(args_str.trim())?;
1587 match value {
1588 Value::String(s) => s,
1589 _ => value.to_string(),
1590 }
1591 };
1592 Ok(ActionType::CompleteWorkflow {
1593 workflow_name: workflow_id,
1594 })
1595 }
1596 "setworkflowdata" | "set_workflow_data" => {
1597 let data_str = args_str.trim();
1599
1600 let (key, value) = if let Some(eq_pos) = data_str.find('=') {
1602 let key = data_str[..eq_pos].trim().trim_matches('"');
1603 let value_str = data_str[eq_pos + 1..].trim();
1604 let value = self.parse_value(value_str)?;
1605 (key.to_string(), value)
1606 } else {
1607 return Err(RuleEngineError::ParseError {
1608 message: "SetWorkflowData data must be in key=value format".to_string(),
1609 });
1610 };
1611
1612 Ok(ActionType::SetWorkflowData { key, value })
1613 }
1614 _ => {
1615 let params = if args_str.is_empty() {
1617 HashMap::new()
1618 } else {
1619 self.parse_function_args_as_params(args_str)?
1620 };
1621
1622 Ok(ActionType::Custom {
1623 action_type: function_name.to_string(),
1624 params,
1625 })
1626 }
1627 }
1628 } else {
1629 Ok(ActionType::Custom {
1631 action_type: "statement".to_string(),
1632 params: {
1633 let mut params = HashMap::new();
1634 params.insert("statement".to_string(), Value::String(trimmed.to_string()));
1635 params
1636 },
1637 })
1638 }
1639 }
1640
1641 fn parse_method_args(&self, args_str: &str) -> Result<Vec<Value>> {
1642 if args_str.trim().is_empty() {
1643 return Ok(Vec::new());
1644 }
1645
1646 let mut args = Vec::new();
1648 let parts: Vec<&str> = args_str.split(',').collect();
1649
1650 for part in parts {
1651 let trimmed = part.trim();
1652
1653 if trimmed.contains('+')
1655 || trimmed.contains('-')
1656 || trimmed.contains('*')
1657 || trimmed.contains('/')
1658 {
1659 args.push(Value::String(trimmed.to_string()));
1661 } else {
1662 args.push(self.parse_value(trimmed)?);
1663 }
1664 }
1665
1666 Ok(args)
1667 }
1668
1669 fn parse_function_args_as_params(&self, args_str: &str) -> Result<HashMap<String, Value>> {
1671 let mut params = HashMap::new();
1672
1673 if args_str.trim().is_empty() {
1674 return Ok(params);
1675 }
1676
1677 let parts: Vec<&str> = args_str.split(',').collect();
1679 for (i, part) in parts.iter().enumerate() {
1680 let trimmed = part.trim();
1681 let value = self.parse_value(trimmed)?;
1682
1683 params.insert(i.to_string(), value);
1685 }
1686
1687 Ok(params)
1688 }
1689
1690 #[cfg(feature = "streaming")]
1693 fn parse_stream_pattern_condition(&self, clause: &str) -> Result<ConditionGroup> {
1694 use crate::engine::rule::{StreamWindow, StreamWindowType};
1695 use crate::parser::grl::stream_syntax::parse_stream_pattern;
1696
1697 let parse_result =
1699 parse_stream_pattern(clause).map_err(|e| RuleEngineError::ParseError {
1700 message: format!("Failed to parse stream pattern: {:?}", e),
1701 })?;
1702
1703 let (_, pattern) = parse_result;
1704
1705 let window = pattern.source.window.map(|w| StreamWindow {
1707 duration: w.duration,
1708 window_type: match w.window_type {
1709 crate::parser::grl::stream_syntax::WindowType::Sliding => StreamWindowType::Sliding,
1710 crate::parser::grl::stream_syntax::WindowType::Tumbling => {
1711 StreamWindowType::Tumbling
1712 }
1713 crate::parser::grl::stream_syntax::WindowType::Session { timeout } => {
1714 StreamWindowType::Session { timeout }
1715 }
1716 },
1717 });
1718
1719 Ok(ConditionGroup::stream_pattern(
1720 pattern.var_name,
1721 pattern.event_type,
1722 pattern.source.stream_name,
1723 window,
1724 ))
1725 }
1726}
1727
1728#[cfg(test)]
1729mod tests {
1730 use super::GRLParser;
1731
1732 #[test]
1733 fn test_parse_simple_rule() {
1734 let grl = r#"
1735 rule "CheckAge" salience 10 {
1736 when
1737 User.Age >= 18
1738 then
1739 log("User is adult");
1740 }
1741 "#;
1742
1743 let rules = GRLParser::parse_rules(grl).unwrap();
1744 assert_eq!(rules.len(), 1);
1745 let rule = &rules[0];
1746 assert_eq!(rule.name, "CheckAge");
1747 assert_eq!(rule.salience, 10);
1748 assert_eq!(rule.actions.len(), 1);
1749 }
1750
1751 #[test]
1752 fn test_parse_complex_condition() {
1753 let grl = r#"
1754 rule "ComplexRule" {
1755 when
1756 User.Age >= 18 && User.Country == "US"
1757 then
1758 User.Qualified = true;
1759 }
1760 "#;
1761
1762 let rules = GRLParser::parse_rules(grl).unwrap();
1763 assert_eq!(rules.len(), 1);
1764 let rule = &rules[0];
1765 assert_eq!(rule.name, "ComplexRule");
1766 }
1767
1768 #[test]
1769 fn test_parse_new_syntax_with_parentheses() {
1770 let grl = r#"
1771 rule "Default Rule" salience 10 {
1772 when
1773 (user.age >= 18)
1774 then
1775 set(user.status, "approved");
1776 }
1777 "#;
1778
1779 let rules = GRLParser::parse_rules(grl).unwrap();
1780 assert_eq!(rules.len(), 1);
1781 let rule = &rules[0];
1782 assert_eq!(rule.name, "Default Rule");
1783 assert_eq!(rule.salience, 10);
1784 assert_eq!(rule.actions.len(), 1);
1785
1786 match &rule.actions[0] {
1788 crate::types::ActionType::Custom {
1789 action_type,
1790 params,
1791 } => {
1792 assert_eq!(action_type, "set");
1793 assert_eq!(
1794 params.get("0"),
1795 Some(&crate::types::Value::String("user.status".to_string()))
1796 );
1797 assert_eq!(
1798 params.get("1"),
1799 Some(&crate::types::Value::String("approved".to_string()))
1800 );
1801 }
1802 _ => panic!("Expected Custom action, got: {:?}", rule.actions[0]),
1803 }
1804 }
1805
1806 #[test]
1807 fn test_parse_complex_nested_conditions() {
1808 let grl = r#"
1809 rule "Complex Business Rule" salience 10 {
1810 when
1811 (((user.vipStatus == true) && (order.amount > 500)) || ((date.isHoliday == true) && (order.hasCoupon == true)))
1812 then
1813 apply_discount(20000);
1814 }
1815 "#;
1816
1817 let rules = GRLParser::parse_rules(grl).unwrap();
1818 assert_eq!(rules.len(), 1);
1819 let rule = &rules[0];
1820 assert_eq!(rule.name, "Complex Business Rule");
1821 assert_eq!(rule.salience, 10);
1822 assert_eq!(rule.actions.len(), 1);
1823
1824 match &rule.actions[0] {
1826 crate::types::ActionType::Custom {
1827 action_type,
1828 params,
1829 } => {
1830 assert_eq!(action_type, "apply_discount");
1831 assert_eq!(params.get("0"), Some(&crate::types::Value::Integer(20000)));
1832 }
1833 _ => panic!("Expected Custom action, got: {:?}", rule.actions[0]),
1834 }
1835 }
1836
1837 #[test]
1838 fn test_parse_no_loop_attribute() {
1839 let grl = r#"
1840 rule "NoLoopRule" no-loop salience 15 {
1841 when
1842 User.Score < 100
1843 then
1844 set(User.Score, User.Score + 10);
1845 }
1846 "#;
1847
1848 let rules = GRLParser::parse_rules(grl).unwrap();
1849 assert_eq!(rules.len(), 1);
1850 let rule = &rules[0];
1851 assert_eq!(rule.name, "NoLoopRule");
1852 assert_eq!(rule.salience, 15);
1853 assert!(rule.no_loop, "Rule should have no-loop=true");
1854 }
1855
1856 #[test]
1857 fn test_parse_no_loop_different_positions() {
1858 let grl1 = r#"
1860 rule "Rule1" no-loop salience 10 {
1861 when User.Age >= 18
1862 then log("adult");
1863 }
1864 "#;
1865
1866 let grl2 = r#"
1868 rule "Rule2" salience 10 no-loop {
1869 when User.Age >= 18
1870 then log("adult");
1871 }
1872 "#;
1873
1874 let rules1 = GRLParser::parse_rules(grl1).unwrap();
1875 let rules2 = GRLParser::parse_rules(grl2).unwrap();
1876
1877 assert_eq!(rules1.len(), 1);
1878 assert_eq!(rules2.len(), 1);
1879
1880 assert!(rules1[0].no_loop, "Rule1 should have no-loop=true");
1881 assert!(rules2[0].no_loop, "Rule2 should have no-loop=true");
1882
1883 assert_eq!(rules1[0].salience, 10);
1884 assert_eq!(rules2[0].salience, 10);
1885 }
1886
1887 #[test]
1888 fn test_parse_without_no_loop() {
1889 let grl = r#"
1890 rule "RegularRule" salience 5 {
1891 when
1892 User.Active == true
1893 then
1894 log("active user");
1895 }
1896 "#;
1897
1898 let rules = GRLParser::parse_rules(grl).unwrap();
1899 assert_eq!(rules.len(), 1);
1900 let rule = &rules[0];
1901 assert_eq!(rule.name, "RegularRule");
1902 assert!(!rule.no_loop, "Rule should have no-loop=false by default");
1903 }
1904
1905 #[test]
1906 fn test_parse_exists_pattern() {
1907 let grl = r#"
1908 rule "ExistsRule" salience 20 {
1909 when
1910 exists(Customer.tier == "VIP")
1911 then
1912 System.premiumActive = true;
1913 }
1914 "#;
1915
1916 let rules = GRLParser::parse_rules(grl).unwrap();
1917 assert_eq!(rules.len(), 1);
1918 let rule = &rules[0];
1919 assert_eq!(rule.name, "ExistsRule");
1920 assert_eq!(rule.salience, 20);
1921
1922 match &rule.conditions {
1924 crate::engine::rule::ConditionGroup::Exists(_) => {
1925 }
1927 _ => panic!(
1928 "Expected EXISTS condition group, got: {:?}",
1929 rule.conditions
1930 ),
1931 }
1932 }
1933
1934 #[test]
1935 fn test_parse_forall_pattern() {
1936 let grl = r#"
1937 rule "ForallRule" salience 15 {
1938 when
1939 forall(Order.status == "processed")
1940 then
1941 Shipping.enabled = true;
1942 }
1943 "#;
1944
1945 let rules = GRLParser::parse_rules(grl).unwrap();
1946 assert_eq!(rules.len(), 1);
1947 let rule = &rules[0];
1948 assert_eq!(rule.name, "ForallRule");
1949
1950 match &rule.conditions {
1952 crate::engine::rule::ConditionGroup::Forall(_) => {
1953 }
1955 _ => panic!(
1956 "Expected FORALL condition group, got: {:?}",
1957 rule.conditions
1958 ),
1959 }
1960 }
1961
1962 #[test]
1963 fn test_parse_combined_patterns() {
1964 let grl = r#"
1965 rule "CombinedRule" salience 25 {
1966 when
1967 exists(Customer.tier == "VIP") && !exists(Alert.priority == "high")
1968 then
1969 System.vipMode = true;
1970 }
1971 "#;
1972
1973 let rules = GRLParser::parse_rules(grl).unwrap();
1974 assert_eq!(rules.len(), 1);
1975 let rule = &rules[0];
1976 assert_eq!(rule.name, "CombinedRule");
1977
1978 match &rule.conditions {
1980 crate::engine::rule::ConditionGroup::Compound {
1981 left,
1982 operator,
1983 right,
1984 } => {
1985 assert_eq!(*operator, crate::types::LogicalOperator::And);
1986
1987 match left.as_ref() {
1989 crate::engine::rule::ConditionGroup::Exists(_) => {
1990 }
1992 _ => panic!("Expected EXISTS in left side, got: {:?}", left),
1993 }
1994
1995 match right.as_ref() {
1997 crate::engine::rule::ConditionGroup::Not(inner) => {
1998 match inner.as_ref() {
1999 crate::engine::rule::ConditionGroup::Exists(_) => {
2000 }
2002 _ => panic!("Expected EXISTS inside NOT, got: {:?}", inner),
2003 }
2004 }
2005 _ => panic!("Expected NOT in right side, got: {:?}", right),
2006 }
2007 }
2008 _ => panic!("Expected compound condition, got: {:?}", rule.conditions),
2009 }
2010 }
2011
2012 #[test]
2013 fn test_parse_in_operator() {
2014 let grl = r#"
2015 rule "TestInOperator" salience 75 {
2016 when
2017 User.role in ["admin", "moderator", "vip"]
2018 then
2019 User.access = "granted";
2020 }
2021 "#;
2022
2023 let rules = GRLParser::parse_rules(grl).unwrap();
2024 assert_eq!(rules.len(), 1);
2025 let rule = &rules[0];
2026 assert_eq!(rule.name, "TestInOperator");
2027 assert_eq!(rule.salience, 75);
2028
2029 match &rule.conditions {
2031 crate::engine::rule::ConditionGroup::Single(cond) => {
2032 println!("Condition: {:?}", cond);
2034 assert_eq!(cond.operator, crate::types::Operator::In);
2035
2036 match &cond.value {
2038 crate::types::Value::Array(arr) => {
2039 assert_eq!(arr.len(), 3);
2040 assert_eq!(arr[0], crate::types::Value::String("admin".to_string()));
2041 assert_eq!(arr[1], crate::types::Value::String("moderator".to_string()));
2042 assert_eq!(arr[2], crate::types::Value::String("vip".to_string()));
2043 }
2044 _ => panic!("Expected Array value, got {:?}", cond.value),
2045 }
2046 }
2047 _ => panic!("Expected Single condition, got: {:?}", rule.conditions),
2048 }
2049 }
2050
2051 #[test]
2052 fn test_parse_startswith_endswith_operators() {
2053 let grl = r#"
2054 rule "StringMethods" salience 50 {
2055 when
2056 User.email startsWith "admin@" &&
2057 User.filename endsWith ".txt"
2058 then
2059 User.validated = true;
2060 }
2061 "#;
2062
2063 let rules = GRLParser::parse_rules(grl).unwrap();
2064 assert_eq!(rules.len(), 1);
2065 let rule = &rules[0];
2066 assert_eq!(rule.name, "StringMethods");
2067 assert_eq!(rule.salience, 50);
2068
2069 match &rule.conditions {
2071 crate::engine::rule::ConditionGroup::Compound {
2072 left,
2073 operator,
2074 right,
2075 } => {
2076 assert_eq!(*operator, crate::types::LogicalOperator::And);
2077
2078 match left.as_ref() {
2080 crate::engine::rule::ConditionGroup::Single(cond) => {
2081 assert_eq!(cond.operator, crate::types::Operator::StartsWith);
2082 }
2083 _ => panic!("Expected Single condition for startsWith, got: {:?}", left),
2084 }
2085
2086 match right.as_ref() {
2088 crate::engine::rule::ConditionGroup::Single(cond) => {
2089 assert_eq!(cond.operator, crate::types::Operator::EndsWith);
2090 }
2091 _ => panic!("Expected Single condition for endsWith, got: {:?}", right),
2092 }
2093 }
2094 _ => panic!("Expected Compound condition, got: {:?}", rule.conditions),
2095 }
2096 }
2097}