1#[cfg(windows)]
11#[global_allocator]
12static GLOBAL: mimalloc::MiMalloc = mimalloc::MiMalloc;
13
14pub mod rlogic;
15pub mod table_evaluate;
16pub mod table_metadata;
17pub mod topo_sort;
18pub mod parse_schema;
19
20pub mod parsed_schema;
21pub mod parsed_schema_cache;
22pub mod json_parser;
23pub mod path_utils;
24pub mod eval_data;
25pub mod eval_cache;
26pub mod subform_methods;
27
28#[cfg(feature = "ffi")]
30pub mod ffi;
31
32#[cfg(feature = "wasm")]
34pub mod wasm;
35
36use indexmap::{IndexMap, IndexSet};
38pub use rlogic::{
39 CompiledLogic, CompiledLogicStore, Evaluator,
40 LogicId, RLogic, RLogicConfig,
41 CompiledLogicId, CompiledLogicStoreStats,
42};
43use serde::{Deserialize, Serialize};
44pub use table_metadata::TableMetadata;
45pub use path_utils::ArrayMetadata;
46pub use eval_data::EvalData;
47pub use eval_cache::{EvalCache, CacheKey, CacheStats};
48pub use parsed_schema::ParsedSchema;
49pub use parsed_schema_cache::{ParsedSchemaCache, ParsedSchemaCacheStats, PARSED_SCHEMA_CACHE};
50use serde::de::Error as _;
51
52#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
54pub enum ReturnFormat {
55 #[default]
58 Nested,
59 Flat,
62 Array,
65}
66use serde_json::{Value};
67
68#[cfg(feature = "parallel")]
69use rayon::prelude::*;
70
71use std::mem;
72use std::sync::{Arc, Mutex};
73use std::time::Instant;
74use std::cell::RefCell;
75
76thread_local! {
78 static TIMING_ENABLED: RefCell<bool> = RefCell::new(std::env::var("JSONEVAL_TIMING").is_ok());
79 static TIMING_DATA: RefCell<Vec<(String, std::time::Duration)>> = RefCell::new(Vec::new());
80}
81
82#[inline]
84fn is_timing_enabled() -> bool {
85 TIMING_ENABLED.with(|enabled| *enabled.borrow())
86}
87
88pub fn enable_timing() {
90 TIMING_ENABLED.with(|enabled| {
91 *enabled.borrow_mut() = true;
92 });
93}
94
95pub fn disable_timing() {
97 TIMING_ENABLED.with(|enabled| {
98 *enabled.borrow_mut() = false;
99 });
100}
101
102#[inline]
104fn record_timing(label: &str, duration: std::time::Duration) {
105 if is_timing_enabled() {
106 TIMING_DATA.with(|data| {
107 data.borrow_mut().push((label.to_string(), duration));
108 });
109 }
110}
111
112pub fn print_timing_summary() {
114 if !is_timing_enabled() {
115 return;
116 }
117
118 TIMING_DATA.with(|data| {
119 let timings = data.borrow();
120 if timings.is_empty() {
121 return;
122 }
123
124 eprintln!("\nš Timing Summary (JSONEVAL_TIMING enabled)");
125 eprintln!("{}", "=".repeat(60));
126
127 let mut total = std::time::Duration::ZERO;
128 for (label, duration) in timings.iter() {
129 eprintln!("{:40} {:>12?}", label, duration);
130 total += *duration;
131 }
132
133 eprintln!("{}", "=".repeat(60));
134 eprintln!("{:40} {:>12?}", "TOTAL", total);
135 eprintln!();
136 });
137}
138
139pub fn clear_timing_data() {
141 TIMING_DATA.with(|data| {
142 data.borrow_mut().clear();
143 });
144}
145
146macro_rules! time_block {
148 ($label:expr, $block:block) => {{
149 let _start = if is_timing_enabled() {
150 Some(Instant::now())
151 } else {
152 None
153 };
154 let result = $block;
155 if let Some(start) = _start {
156 record_timing($label, start.elapsed());
157 }
158 result
159 }};
160}
161
162pub fn version() -> &'static str {
164 env!("CARGO_PKG_VERSION")
165}
166
167fn clean_float_noise(value: Value) -> Value {
170 const EPSILON: f64 = 1e-10;
171
172 match value {
173 Value::Number(n) => {
174 if let Some(f) = n.as_f64() {
175 if f.abs() < EPSILON {
176 Value::Number(serde_json::Number::from(0))
178 } else if f.fract().abs() < EPSILON {
179 Value::Number(serde_json::Number::from(f.round() as i64))
181 } else {
182 Value::Number(n)
183 }
184 } else {
185 Value::Number(n)
186 }
187 }
188 Value::Array(arr) => {
189 Value::Array(arr.into_iter().map(clean_float_noise).collect())
190 }
191 Value::Object(obj) => {
192 Value::Object(obj.into_iter().map(|(k, v)| (k, clean_float_noise(v))).collect())
193 }
194 _ => value,
195 }
196}
197
198#[derive(Debug, Clone, Serialize, Deserialize)]
200pub struct DependentItem {
201 pub ref_path: String,
202 pub clear: Option<Value>, pub value: Option<Value>, }
205
206pub struct JSONEval {
207 pub schema: Arc<Value>,
208 pub engine: Arc<RLogic>,
209 pub evaluations: Arc<IndexMap<String, LogicId>>,
211 pub tables: Arc<IndexMap<String, Value>>,
212 pub table_metadata: Arc<IndexMap<String, TableMetadata>>,
214 pub dependencies: Arc<IndexMap<String, IndexSet<String>>>,
215 pub sorted_evaluations: Arc<Vec<Vec<String>>>,
218 pub dependents_evaluations: Arc<IndexMap<String, Vec<DependentItem>>>,
221 pub rules_evaluations: Arc<Vec<String>>,
223 pub fields_with_rules: Arc<Vec<String>>,
225 pub others_evaluations: Arc<Vec<String>>,
227 pub value_evaluations: Arc<Vec<String>>,
229 pub layout_paths: Arc<Vec<String>>,
231 pub options_templates: Arc<Vec<(String, String, String)>>,
233 pub subforms: IndexMap<String, Box<JSONEval>>,
236 pub context: Value,
237 pub data: Value,
238 pub evaluated_schema: Value,
239 pub eval_data: EvalData,
240 pub eval_cache: EvalCache,
242 pub cache_enabled: bool,
245 eval_lock: Mutex<()>,
247 cached_msgpack_schema: Option<Vec<u8>>,
250}
251
252impl Clone for JSONEval {
253 fn clone(&self) -> Self {
254 Self {
255 cache_enabled: self.cache_enabled,
256 schema: Arc::clone(&self.schema),
257 engine: Arc::clone(&self.engine),
258 evaluations: self.evaluations.clone(),
259 tables: self.tables.clone(),
260 table_metadata: self.table_metadata.clone(),
261 dependencies: self.dependencies.clone(),
262 sorted_evaluations: self.sorted_evaluations.clone(),
263 dependents_evaluations: self.dependents_evaluations.clone(),
264 rules_evaluations: self.rules_evaluations.clone(),
265 fields_with_rules: self.fields_with_rules.clone(),
266 others_evaluations: self.others_evaluations.clone(),
267 value_evaluations: self.value_evaluations.clone(),
268 layout_paths: self.layout_paths.clone(),
269 options_templates: self.options_templates.clone(),
270 subforms: self.subforms.clone(),
271 context: self.context.clone(),
272 data: self.data.clone(),
273 evaluated_schema: self.evaluated_schema.clone(),
274 eval_data: self.eval_data.clone(),
275 eval_cache: EvalCache::new(), eval_lock: Mutex::new(()), cached_msgpack_schema: self.cached_msgpack_schema.clone(),
278 }
279 }
280}
281
282impl JSONEval {
283 pub fn new(
284 schema: &str,
285 context: Option<&str>,
286 data: Option<&str>,
287 ) -> Result<Self, serde_json::Error> {
288 time_block!("JSONEval::new() [total]", {
289 let schema_val: Value = time_block!(" parse schema JSON", {
291 serde_json::from_str(schema)?
292 });
293 let context: Value = time_block!(" parse context JSON", {
294 json_parser::parse_json_str(context.unwrap_or("{}")).map_err(serde_json::Error::custom)?
295 });
296 let data: Value = time_block!(" parse data JSON", {
297 json_parser::parse_json_str(data.unwrap_or("{}")).map_err(serde_json::Error::custom)?
298 });
299 let evaluated_schema = schema_val.clone();
300 let engine_config = RLogicConfig::default();
302
303 let mut instance = time_block!(" create instance struct", {
304 Self {
305 schema: Arc::new(schema_val),
306 evaluations: Arc::new(IndexMap::new()),
307 tables: Arc::new(IndexMap::new()),
308 table_metadata: Arc::new(IndexMap::new()),
309 dependencies: Arc::new(IndexMap::new()),
310 sorted_evaluations: Arc::new(Vec::new()),
311 dependents_evaluations: Arc::new(IndexMap::new()),
312 rules_evaluations: Arc::new(Vec::new()),
313 fields_with_rules: Arc::new(Vec::new()),
314 others_evaluations: Arc::new(Vec::new()),
315 value_evaluations: Arc::new(Vec::new()),
316 layout_paths: Arc::new(Vec::new()),
317 options_templates: Arc::new(Vec::new()),
318 subforms: IndexMap::new(),
319 engine: Arc::new(RLogic::with_config(engine_config)),
320 context: context.clone(),
321 data: data.clone(),
322 evaluated_schema: evaluated_schema.clone(),
323 eval_data: EvalData::with_schema_data_context(&evaluated_schema, &data, &context),
324 eval_cache: EvalCache::new(),
325 cache_enabled: true, eval_lock: Mutex::new(()),
327 cached_msgpack_schema: None, }
329 });
330 time_block!(" parse_schema", {
331 parse_schema::legacy::parse_schema(&mut instance).map_err(serde_json::Error::custom)?
332 });
333 Ok(instance)
334 })
335 }
336
337 pub fn new_from_msgpack(
349 schema_msgpack: &[u8],
350 context: Option<&str>,
351 data: Option<&str>,
352 ) -> Result<Self, String> {
353 let cached_msgpack = schema_msgpack.to_vec();
355
356 let schema_val: Value = rmp_serde::from_slice(schema_msgpack)
358 .map_err(|e| format!("Failed to deserialize MessagePack schema: {}", e))?;
359
360 let context: Value = json_parser::parse_json_str(context.unwrap_or("{}"))
361 .map_err(|e| format!("Failed to parse context: {}", e))?;
362 let data: Value = json_parser::parse_json_str(data.unwrap_or("{}"))
363 .map_err(|e| format!("Failed to parse data: {}", e))?;
364 let evaluated_schema = schema_val.clone();
365 let engine_config = RLogicConfig::default();
366
367 let mut instance = Self {
368 schema: Arc::new(schema_val),
369 evaluations: Arc::new(IndexMap::new()),
370 tables: Arc::new(IndexMap::new()),
371 table_metadata: Arc::new(IndexMap::new()),
372 dependencies: Arc::new(IndexMap::new()),
373 sorted_evaluations: Arc::new(Vec::new()),
374 dependents_evaluations: Arc::new(IndexMap::new()),
375 rules_evaluations: Arc::new(Vec::new()),
376 fields_with_rules: Arc::new(Vec::new()),
377 others_evaluations: Arc::new(Vec::new()),
378 value_evaluations: Arc::new(Vec::new()),
379 layout_paths: Arc::new(Vec::new()),
380 options_templates: Arc::new(Vec::new()),
381 subforms: IndexMap::new(),
382 engine: Arc::new(RLogic::with_config(engine_config)),
383 context: context.clone(),
384 data: data.clone(),
385 evaluated_schema: evaluated_schema.clone(),
386 eval_data: EvalData::with_schema_data_context(&evaluated_schema, &data, &context),
387 eval_cache: EvalCache::new(),
388 cache_enabled: true, eval_lock: Mutex::new(()),
390 cached_msgpack_schema: Some(cached_msgpack), };
392 parse_schema::legacy::parse_schema(&mut instance)?;
393 Ok(instance)
394 }
395
396 pub fn with_parsed_schema(
424 parsed: Arc<ParsedSchema>,
425 context: Option<&str>,
426 data: Option<&str>,
427 ) -> Result<Self, String> {
428 let context: Value = json_parser::parse_json_str(context.unwrap_or("{}"))
429 .map_err(|e| format!("Failed to parse context: {}", e))?;
430 let data: Value = json_parser::parse_json_str(data.unwrap_or("{}"))
431 .map_err(|e| format!("Failed to parse data: {}", e))?;
432
433 let evaluated_schema = parsed.schema.clone();
434
435 let engine = parsed.engine.clone();
438
439 let mut subforms = IndexMap::new();
442 for (path, subform_parsed) in &parsed.subforms {
443 let subform_eval = JSONEval::with_parsed_schema(
445 subform_parsed.clone(),
446 Some("{}"),
447 None
448 )?;
449 subforms.insert(path.clone(), Box::new(subform_eval));
450 }
451
452 let instance = Self {
453 schema: Arc::clone(&parsed.schema),
454 evaluations: Arc::clone(&parsed.evaluations),
456 tables: Arc::clone(&parsed.tables),
457 table_metadata: Arc::clone(&parsed.table_metadata),
458 dependencies: Arc::clone(&parsed.dependencies),
459 sorted_evaluations: Arc::clone(&parsed.sorted_evaluations),
460 dependents_evaluations: Arc::clone(&parsed.dependents_evaluations),
461 rules_evaluations: Arc::clone(&parsed.rules_evaluations),
462 fields_with_rules: Arc::clone(&parsed.fields_with_rules),
463 others_evaluations: Arc::clone(&parsed.others_evaluations),
464 value_evaluations: Arc::clone(&parsed.value_evaluations),
465 layout_paths: Arc::clone(&parsed.layout_paths),
466 options_templates: Arc::clone(&parsed.options_templates),
467 subforms,
468 engine,
469 context: context.clone(),
470 data: data.clone(),
471 evaluated_schema: (*evaluated_schema).clone(),
472 eval_data: EvalData::with_schema_data_context(&evaluated_schema, &data, &context),
473 eval_cache: EvalCache::new(),
474 cache_enabled: true, eval_lock: Mutex::new(()),
476 cached_msgpack_schema: None, };
478
479 Ok(instance)
480 }
481
482 pub fn reload_schema(
483 &mut self,
484 schema: &str,
485 context: Option<&str>,
486 data: Option<&str>,
487 ) -> Result<(), String> {
488 let schema_val: Value = serde_json::from_str(schema).map_err(|e| format!("failed to parse schema: {e}"))?;
490 let context: Value = json_parser::parse_json_str(context.unwrap_or("{}"))?;
491 let data: Value = json_parser::parse_json_str(data.unwrap_or("{}"))?;
492 self.schema = Arc::new(schema_val);
493 self.context = context.clone();
494 self.data = data.clone();
495 self.evaluated_schema = (*self.schema).clone();
496 self.engine = Arc::new(RLogic::new());
497 self.dependents_evaluations = Arc::new(IndexMap::new());
498 self.rules_evaluations = Arc::new(Vec::new());
499 self.fields_with_rules = Arc::new(Vec::new());
500 self.others_evaluations = Arc::new(Vec::new());
501 self.value_evaluations = Arc::new(Vec::new());
502 self.layout_paths = Arc::new(Vec::new());
503 self.options_templates = Arc::new(Vec::new());
504 self.subforms.clear();
505 parse_schema::legacy::parse_schema(self)?;
506
507 self.eval_data = EvalData::with_schema_data_context(&self.evaluated_schema, &data, &context);
509
510 self.eval_cache.clear();
512
513 self.cached_msgpack_schema = None;
515
516 Ok(())
517 }
518
519 pub fn set_timezone_offset(&mut self, offset_minutes: Option<i32>) {
541 let mut config = RLogicConfig::default();
543 if let Some(offset) = offset_minutes {
544 config = config.with_timezone_offset(offset);
545 }
546
547 self.engine = Arc::new(RLogic::with_config(config));
550
551 let _ = parse_schema::legacy::parse_schema(self);
554
555 self.eval_cache.clear();
557 }
558
559 pub fn reload_schema_msgpack(
571 &mut self,
572 schema_msgpack: &[u8],
573 context: Option<&str>,
574 data: Option<&str>,
575 ) -> Result<(), String> {
576 let schema_val: Value = rmp_serde::from_slice(schema_msgpack)
578 .map_err(|e| format!("failed to deserialize MessagePack schema: {e}"))?;
579
580 let context: Value = json_parser::parse_json_str(context.unwrap_or("{}"))?;
581 let data: Value = json_parser::parse_json_str(data.unwrap_or("{}"))?;
582
583 self.schema = Arc::new(schema_val);
584 self.context = context.clone();
585 self.data = data.clone();
586 self.evaluated_schema = (*self.schema).clone();
587 self.engine = Arc::new(RLogic::new());
588 self.dependents_evaluations = Arc::new(IndexMap::new());
589 self.rules_evaluations = Arc::new(Vec::new());
590 self.fields_with_rules = Arc::new(Vec::new());
591 self.others_evaluations = Arc::new(Vec::new());
592 self.value_evaluations = Arc::new(Vec::new());
593 self.layout_paths = Arc::new(Vec::new());
594 self.options_templates = Arc::new(Vec::new());
595 self.subforms.clear();
596 parse_schema::legacy::parse_schema(self)?;
597
598 self.eval_data = EvalData::with_schema_data_context(&self.evaluated_schema, &data, &context);
600
601 self.eval_cache.clear();
603
604 self.cached_msgpack_schema = Some(schema_msgpack.to_vec());
606
607 Ok(())
608 }
609
610 pub fn reload_schema_parsed(
624 &mut self,
625 parsed: Arc<ParsedSchema>,
626 context: Option<&str>,
627 data: Option<&str>,
628 ) -> Result<(), String> {
629 let context: Value = json_parser::parse_json_str(context.unwrap_or("{}"))?;
630 let data: Value = json_parser::parse_json_str(data.unwrap_or("{}"))?;
631
632 self.schema = Arc::clone(&parsed.schema);
634 self.evaluations = parsed.evaluations.clone();
635 self.tables = parsed.tables.clone();
636 self.table_metadata = parsed.table_metadata.clone();
637 self.dependencies = parsed.dependencies.clone();
638 self.sorted_evaluations = parsed.sorted_evaluations.clone();
639 self.dependents_evaluations = parsed.dependents_evaluations.clone();
640 self.rules_evaluations = parsed.rules_evaluations.clone();
641 self.fields_with_rules = parsed.fields_with_rules.clone();
642 self.others_evaluations = parsed.others_evaluations.clone();
643 self.value_evaluations = parsed.value_evaluations.clone();
644 self.layout_paths = parsed.layout_paths.clone();
645 self.options_templates = parsed.options_templates.clone();
646
647 self.engine = parsed.engine.clone();
649
650 let mut subforms = IndexMap::new();
652 for (path, subform_parsed) in &parsed.subforms {
653 let subform_eval = JSONEval::with_parsed_schema(
654 subform_parsed.clone(),
655 Some("{}"),
656 None
657 )?;
658 subforms.insert(path.clone(), Box::new(subform_eval));
659 }
660 self.subforms = subforms;
661
662 self.context = context.clone();
663 self.data = data.clone();
664 self.evaluated_schema = (*self.schema).clone();
665
666 self.eval_data = EvalData::with_schema_data_context(&self.evaluated_schema, &data, &context);
668
669 self.eval_cache.clear();
671
672 self.cached_msgpack_schema = None;
674
675 Ok(())
676 }
677
678 pub fn reload_schema_from_cache(
692 &mut self,
693 cache_key: &str,
694 context: Option<&str>,
695 data: Option<&str>,
696 ) -> Result<(), String> {
697 let parsed = PARSED_SCHEMA_CACHE.get(cache_key)
699 .ok_or_else(|| format!("Schema '{}' not found in cache", cache_key))?;
700
701 self.reload_schema_parsed(parsed, context, data)
703 }
704
705 pub fn evaluate(&mut self, data: &str, context: Option<&str>, paths: Option<&[String]>) -> Result<(), String> {
716 time_block!("evaluate() [total]", {
717 let data: Value = time_block!(" parse data", {
719 json_parser::parse_json_str(data)?
720 });
721 let context: Value = time_block!(" parse context", {
722 json_parser::parse_json_str(context.unwrap_or("{}"))?
723 });
724
725 self.data = data.clone();
726
727 let changed_data_paths: Vec<String> = if let Some(obj) = data.as_object() {
729 obj.keys().map(|k| k.clone()).collect()
730 } else {
731 Vec::new()
732 };
733
734 time_block!(" replace_data_and_context", {
736 self.eval_data.replace_data_and_context(data, context);
737 });
738
739 time_block!(" purge_cache", {
742 self.purge_cache_for_changed_data(&changed_data_paths);
743 });
744
745 self.evaluate_internal(paths)
747 })
748 }
749
750 fn evaluate_internal(&mut self, paths: Option<&[String]>) -> Result<(), String> {
753 time_block!(" evaluate_internal() [total]", {
754 let _lock = self.eval_lock.lock().unwrap();
756
757 let normalized_paths_storage; let normalized_paths = if let Some(p_list) = paths {
760 normalized_paths_storage = p_list.iter()
761 .flat_map(|p| {
762 let ptr = path_utils::dot_notation_to_schema_pointer(p);
763 let with_props = if ptr.starts_with("#/") {
765 format!("#/properties/{}", &ptr[2..])
766 } else {
767 ptr.clone()
768 };
769 vec![ptr, with_props]
770 })
771 .collect::<Vec<_>>();
772 Some(normalized_paths_storage.as_slice())
773 } else {
774 None
775 };
776
777 let eval_batches: Vec<Vec<String>> = (*self.sorted_evaluations).clone();
779
780 let eval_data_values = self.eval_data.clone();
785 time_block!(" evaluate values", {
786 #[cfg(feature = "parallel")]
787 if self.value_evaluations.len() > 100 {
788 let value_results: Mutex<Vec<(String, Value)>> = Mutex::new(Vec::with_capacity(self.value_evaluations.len()));
789
790 self.value_evaluations.par_iter().for_each(|eval_key| {
791 if let Some(filter_paths) = normalized_paths {
793 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
794 return;
795 }
796 }
797
798 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
801
802 if let Some(_) = self.try_get_cached(eval_key, &eval_data_values) {
804 return;
805 }
806
807 if let Some(logic_id) = self.evaluations.get(eval_key) {
809 if let Ok(val) = self.engine.run(logic_id, eval_data_values.data()) {
810 let cleaned_val = clean_float_noise(val);
811 self.cache_result(eval_key, Value::Null, &eval_data_values);
813 value_results.lock().unwrap().push((pointer_path, cleaned_val));
814 }
815 }
816 });
817
818 for (result_path, value) in value_results.into_inner().unwrap() {
820 if let Some(pointer_value) = self.evaluated_schema.pointer_mut(&result_path) {
821 *pointer_value = value;
822 }
823 }
824 }
825
826 #[cfg(feature = "parallel")]
828 let value_eval_items = if self.value_evaluations.len() > 100 { &self.value_evaluations[0..0] } else { &self.value_evaluations };
829
830 #[cfg(not(feature = "parallel"))]
831 let value_eval_items = &self.value_evaluations;
832
833 for eval_key in value_eval_items.iter() {
834 if let Some(filter_paths) = normalized_paths {
836 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
837 continue;
838 }
839 }
840
841 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
842
843 if let Some(_) = self.try_get_cached(eval_key, &eval_data_values) {
845 continue;
846 }
847
848 if let Some(logic_id) = self.evaluations.get(eval_key) {
850 if let Ok(val) = self.engine.run(logic_id, eval_data_values.data()) {
851 let cleaned_val = clean_float_noise(val);
852 println!("[DEBUG] Evaluated {} = {:?}", eval_key, cleaned_val);
853 self.cache_result(eval_key, Value::Null, &eval_data_values);
855
856 println!("[DEBUG] pointer_path: {}", pointer_path);
857 if let Some(pointer_value) = self.evaluated_schema.pointer_mut(&pointer_path) {
858 println!("[DEBUG] Successfully updated pointer");
859 *pointer_value = cleaned_val;
860 } else {
861 println!("[DEBUG] Failed to find pointer in schema");
862 }
863 }
864 } else {
865 println!("[DEBUG] No logic_id found for {}", eval_key);
866 }
867 }
868 });
869
870 time_block!(" process batches", {
871 for batch in eval_batches {
872 if batch.is_empty() {
874 continue;
875 }
876
877 if let Some(filter_paths) = normalized_paths {
880 if !filter_paths.is_empty() {
881 let batch_has_match = batch.iter().any(|eval_key| {
882 filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str()))
883 });
884 if !batch_has_match {
885 continue;
886 }
887 }
888 }
889
890 let eval_data_snapshot = self.eval_data.clone();
897
898 #[cfg(feature = "parallel")]
902 if batch.len() > 1000 {
903 let results: Mutex<Vec<(String, String, Value)>> = Mutex::new(Vec::with_capacity(batch.len()));
904 batch.par_iter().for_each(|eval_key| {
905 if let Some(filter_paths) = normalized_paths {
907 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
908 return;
909 }
910 }
911
912 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
913
914 if let Some(_) = self.try_get_cached(eval_key, &eval_data_snapshot) {
916 return;
917 }
918
919 let is_table = self.table_metadata.contains_key(eval_key);
921
922 if is_table {
923 if let Ok(rows) = table_evaluate::evaluate_table(self, eval_key, &eval_data_snapshot) {
925 let value = Value::Array(rows);
926 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
928 results.lock().unwrap().push((eval_key.clone(), pointer_path, value));
929 }
930 } else {
931 if let Some(logic_id) = self.evaluations.get(eval_key) {
932 if let Ok(val) = self.engine.run(logic_id, eval_data_snapshot.data()) {
934 let cleaned_val = clean_float_noise(val);
935 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
937 results.lock().unwrap().push((eval_key.clone(), pointer_path, cleaned_val));
938 }
939 }
940 }
941 });
942
943 for (_eval_key, path, value) in results.into_inner().unwrap() {
945 let cleaned_value = clean_float_noise(value);
946
947 self.eval_data.set(&path, cleaned_value.clone());
948 if let Some(schema_value) = self.evaluated_schema.pointer_mut(&path) {
950 *schema_value = cleaned_value;
951 }
952 }
953 continue;
954 }
955
956 #[cfg(not(feature = "parallel"))]
958 let batch_items = &batch;
959
960 #[cfg(feature = "parallel")]
961 let batch_items = if batch.len() > 1000 { &batch[0..0] } else { &batch }; for eval_key in batch_items {
964 if let Some(filter_paths) = paths {
966 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
967 continue;
968 }
969 }
970
971 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
972
973 if let Some(_) = self.try_get_cached(eval_key, &eval_data_snapshot) {
975 continue;
976 }
977
978 let is_table = self.table_metadata.contains_key(eval_key);
980
981 if is_table {
982 if let Ok(rows) = table_evaluate::evaluate_table(self, eval_key, &eval_data_snapshot) {
983 let value = Value::Array(rows);
984 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
986
987 let cleaned_value = clean_float_noise(value);
988 self.eval_data.set(&pointer_path, cleaned_value.clone());
989 if let Some(schema_value) = self.evaluated_schema.pointer_mut(&pointer_path) {
990 *schema_value = cleaned_value;
991 }
992 }
993 } else {
994 if let Some(logic_id) = self.evaluations.get(eval_key) {
995 if let Ok(val) = self.engine.run(logic_id, eval_data_snapshot.data()) {
996 let cleaned_val = clean_float_noise(val);
997 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
999
1000 self.eval_data.set(&pointer_path, cleaned_val.clone());
1001 if let Some(schema_value) = self.evaluated_schema.pointer_mut(&pointer_path) {
1002 *schema_value = cleaned_val;
1003 }
1004 }
1005 }
1006 }
1007 }
1008 }
1009 });
1010
1011 drop(_lock);
1013
1014 self.evaluate_others(paths);
1015
1016 Ok(())
1017 })
1018 }
1019
1020 pub fn get_evaluated_schema(&mut self, skip_layout: bool) -> Value {
1030 time_block!("get_evaluated_schema()", {
1031 if !skip_layout {
1032 self.resolve_layout_internal();
1033 }
1034
1035 self.evaluated_schema.clone()
1036 })
1037 }
1038
1039 pub fn get_evaluated_schema_msgpack(&mut self, skip_layout: bool) -> Result<Vec<u8>, String> {
1056 if !skip_layout {
1057 self.resolve_layout_internal();
1058 }
1059
1060 rmp_serde::to_vec(&self.evaluated_schema)
1064 .map_err(|e| format!("Failed to serialize schema to MessagePack: {}", e))
1065 }
1066
1067 pub fn get_schema_value(&mut self) -> Value {
1071 if !self.data.is_object() {
1073 self.data = Value::Object(serde_json::Map::new());
1074 }
1075
1076 for eval_key in self.value_evaluations.iter() {
1078 let clean_key = eval_key.replace("#", "");
1079 let path = clean_key.replace("/properties", "").replace("/value", "");
1080
1081 let value = match self.evaluated_schema.pointer(&clean_key) {
1083 Some(v) => v.clone(),
1084 None => continue,
1085 };
1086
1087 let path_parts: Vec<&str> = path.split('/').filter(|s| !s.is_empty()).collect();
1089
1090 if path_parts.is_empty() {
1091 continue;
1092 }
1093
1094 let mut current = &mut self.data;
1096 for (i, part) in path_parts.iter().enumerate() {
1097 let is_last = i == path_parts.len() - 1;
1098
1099 if is_last {
1100 if let Some(obj) = current.as_object_mut() {
1102 obj.insert(part.to_string(), clean_float_noise(value.clone()));
1103 }
1104 } else {
1105 if let Some(obj) = current.as_object_mut() {
1107 current = obj.entry(part.to_string())
1108 .or_insert_with(|| Value::Object(serde_json::Map::new()));
1109 } else {
1110 break;
1112 }
1113 }
1114 }
1115 }
1116
1117 clean_float_noise(self.data.clone())
1118 }
1119
1120 pub fn get_evaluated_schema_without_params(&mut self, skip_layout: bool) -> Value {
1131 if !skip_layout {
1132 self.resolve_layout_internal();
1133 }
1134
1135 if let Value::Object(mut map) = self.evaluated_schema.clone() {
1137 map.remove("$params");
1138 Value::Object(map)
1139 } else {
1140 self.evaluated_schema.clone()
1141 }
1142 }
1143
1144 pub fn get_evaluated_schema_by_path(&mut self, path: &str, skip_layout: bool) -> Option<Value> {
1156 if !skip_layout {
1157 self.resolve_layout_internal();
1158 }
1159
1160 let pointer = if path.is_empty() {
1162 "".to_string()
1163 } else {
1164 format!("/{}", path.replace(".", "/"))
1165 };
1166
1167 self.evaluated_schema.pointer(&pointer).cloned()
1168 }
1169
1170 pub fn get_evaluated_schema_by_paths(&mut self, paths: &[String], skip_layout: bool, format: Option<ReturnFormat>) -> Value {
1183 let format = format.unwrap_or_default();
1184 if !skip_layout {
1185 self.resolve_layout_internal();
1186 }
1187
1188 let mut result = serde_json::Map::new();
1189
1190 for path in paths {
1191 let pointer = if path.is_empty() {
1193 "".to_string()
1194 } else {
1195 format!("/{}", path.replace(".", "/"))
1196 };
1197
1198 if let Some(value) = self.evaluated_schema.pointer(&pointer) {
1200 self.insert_at_path(&mut result, path, value.clone());
1203 }
1204 }
1205
1206 self.convert_to_format(result, paths, format)
1207 }
1208
1209 fn insert_at_path(&self, obj: &mut serde_json::Map<String, Value>, path: &str, value: Value) {
1211 if path.is_empty() {
1212 if let Value::Object(map) = value {
1214 for (k, v) in map {
1215 obj.insert(k, v);
1216 }
1217 }
1218 return;
1219 }
1220
1221 let parts: Vec<&str> = path.split('.').collect();
1222 if parts.is_empty() {
1223 return;
1224 }
1225
1226 let mut current = obj;
1227 let last_index = parts.len() - 1;
1228
1229 for (i, part) in parts.iter().enumerate() {
1230 if i == last_index {
1231 current.insert(part.to_string(), value);
1233 break;
1234 } else {
1235 current = current
1237 .entry(part.to_string())
1238 .or_insert_with(|| Value::Object(serde_json::Map::new()))
1239 .as_object_mut()
1240 .unwrap();
1241 }
1242 }
1243 }
1244
1245 fn convert_to_format(&self, result: serde_json::Map<String, Value>, paths: &[String], format: ReturnFormat) -> Value {
1247 match format {
1248 ReturnFormat::Nested => Value::Object(result),
1249 ReturnFormat::Flat => {
1250 let mut flat = serde_json::Map::new();
1252 self.flatten_object(&result, String::new(), &mut flat);
1253 Value::Object(flat)
1254 }
1255 ReturnFormat::Array => {
1256 let values: Vec<Value> = paths.iter()
1258 .map(|path| {
1259 let pointer = if path.is_empty() {
1260 "".to_string()
1261 } else {
1262 format!("/{}", path.replace(".", "/"))
1263 };
1264 Value::Object(result.clone()).pointer(&pointer).cloned().unwrap_or(Value::Null)
1265 })
1266 .collect();
1267 Value::Array(values)
1268 }
1269 }
1270 }
1271
1272 fn flatten_object(&self, obj: &serde_json::Map<String, Value>, prefix: String, result: &mut serde_json::Map<String, Value>) {
1274 for (key, value) in obj {
1275 let new_key = if prefix.is_empty() {
1276 key.clone()
1277 } else {
1278 format!("{}.{}", prefix, key)
1279 };
1280
1281 if let Value::Object(nested) = value {
1282 self.flatten_object(nested, new_key, result);
1283 } else {
1284 result.insert(new_key, value.clone());
1285 }
1286 }
1287 }
1288
1289 pub fn get_schema_by_path(&self, path: &str) -> Option<Value> {
1300 let pointer = if path.is_empty() {
1302 "".to_string()
1303 } else {
1304 format!("/{}", path.replace(".", "/"))
1305 };
1306
1307 self.schema.pointer(&pointer).cloned()
1308 }
1309
1310 pub fn get_schema_by_paths(&self, paths: &[String], format: Option<ReturnFormat>) -> Value {
1322 let format = format.unwrap_or_default();
1323 let mut result = serde_json::Map::new();
1324
1325 for path in paths {
1326 let pointer = if path.is_empty() {
1328 "".to_string()
1329 } else {
1330 format!("/{}", path.replace(".", "/"))
1331 };
1332
1333 if let Some(value) = self.schema.pointer(&pointer) {
1335 self.insert_at_path(&mut result, path, value.clone());
1338 }
1339 }
1340
1341 self.convert_to_format(result, paths, format)
1342 }
1343
1344 #[inline]
1347 fn should_cache_dependency(key: &str) -> bool {
1348 if key.starts_with("/$") || key.starts_with('$') {
1349 key == "$context" || key.starts_with("$context.") || key.starts_with("/$context")
1351 } else {
1352 true
1353 }
1354 }
1355
1356 fn try_get_cached(&self, eval_key: &str, eval_data: &EvalData) -> Option<Value> {
1359 if !self.cache_enabled {
1361 return None;
1362 }
1363
1364 let deps = self.dependencies.get(eval_key)?;
1366
1367 let cache_key = if deps.is_empty() {
1369 CacheKey::simple(eval_key.to_string())
1370 } else {
1371 let filtered_deps: IndexSet<String> = deps
1373 .iter()
1374 .filter(|dep_key| JSONEval::should_cache_dependency(dep_key))
1375 .cloned()
1376 .collect();
1377
1378 let dep_values: Vec<(String, &Value)> = filtered_deps
1380 .iter()
1381 .filter_map(|dep_key| {
1382 eval_data.get(dep_key).map(|v| (dep_key.clone(), v))
1383 })
1384 .collect();
1385
1386 CacheKey::new(eval_key.to_string(), &filtered_deps, &dep_values)
1387 };
1388
1389 self.eval_cache.get(&cache_key).map(|arc_val| (*arc_val).clone())
1391 }
1392
1393 fn cache_result(&self, eval_key: &str, value: Value, eval_data: &EvalData) {
1395 if !self.cache_enabled {
1397 return;
1398 }
1399
1400 let deps = match self.dependencies.get(eval_key) {
1402 Some(d) => d,
1403 None => {
1404 let cache_key = CacheKey::simple(eval_key.to_string());
1406 self.eval_cache.insert(cache_key, value);
1407 return;
1408 }
1409 };
1410
1411 let filtered_deps: IndexSet<String> = deps
1413 .iter()
1414 .filter(|dep_key| JSONEval::should_cache_dependency(dep_key))
1415 .cloned()
1416 .collect();
1417
1418 let dep_values: Vec<(String, &Value)> = filtered_deps
1419 .iter()
1420 .filter_map(|dep_key| {
1421 eval_data.get(dep_key).map(|v| (dep_key.clone(), v))
1422 })
1423 .collect();
1424
1425 let cache_key = CacheKey::new(eval_key.to_string(), &filtered_deps, &dep_values);
1426 self.eval_cache.insert(cache_key, value);
1427 }
1428
1429 fn purge_cache_for_changed_data_with_comparison(
1433 &self,
1434 changed_data_paths: &[String],
1435 old_data: &Value,
1436 new_data: &Value
1437 ) {
1438 if changed_data_paths.is_empty() {
1439 return;
1440 }
1441
1442 let mut actually_changed_paths = Vec::new();
1444 for path in changed_data_paths {
1445 let old_val = old_data.pointer(path);
1446 let new_val = new_data.pointer(path);
1447
1448 if old_val != new_val {
1450 actually_changed_paths.push(path.clone());
1451 }
1452 }
1453
1454 if actually_changed_paths.is_empty() {
1456 return;
1457 }
1458
1459 let mut affected_eval_keys = IndexSet::new();
1461
1462 for (eval_key, deps) in self.dependencies.iter() {
1463 let is_affected = deps.iter().any(|dep| {
1465 actually_changed_paths.iter().any(|changed_path| {
1467 dep == changed_path ||
1469 dep.starts_with(&format!("{}/", changed_path)) ||
1470 changed_path.starts_with(&format!("{}/", dep))
1471 })
1472 });
1473
1474 if is_affected {
1475 affected_eval_keys.insert(eval_key.clone());
1476 }
1477 }
1478
1479 self.eval_cache.retain(|cache_key, _| {
1482 !affected_eval_keys.contains(&cache_key.eval_key)
1483 });
1484 }
1485
1486 fn purge_cache_for_changed_data(&self, changed_data_paths: &[String]) {
1489 if changed_data_paths.is_empty() {
1490 return;
1491 }
1492
1493 let mut affected_eval_keys = IndexSet::new();
1495
1496 for (eval_key, deps) in self.dependencies.iter() {
1497 let is_affected = deps.iter().any(|dep| {
1499 changed_data_paths.iter().any(|changed_path| {
1501 dep == changed_path ||
1503 dep.starts_with(&format!("{}/", changed_path)) ||
1504 changed_path.starts_with(&format!("{}/", dep))
1505 })
1506 });
1507
1508 if is_affected {
1509 affected_eval_keys.insert(eval_key.clone());
1510 }
1511 }
1512
1513 self.eval_cache.retain(|cache_key, _| {
1516 !affected_eval_keys.contains(&cache_key.eval_key)
1517 });
1518 }
1519
1520 pub fn cache_stats(&self) -> CacheStats {
1522 self.eval_cache.stats()
1523 }
1524
1525 pub fn clear_cache(&mut self) {
1527 self.eval_cache.clear();
1528 for subform in self.subforms.values_mut() {
1529 subform.clear_cache();
1530 }
1531 }
1532
1533 pub fn cache_len(&self) -> usize {
1535 self.eval_cache.len()
1536 }
1537
1538 pub fn enable_cache(&mut self) {
1541 self.cache_enabled = true;
1542 for subform in self.subforms.values_mut() {
1543 subform.enable_cache();
1544 }
1545 }
1546
1547 pub fn disable_cache(&mut self) {
1551 self.cache_enabled = false;
1552 self.eval_cache.clear(); for subform in self.subforms.values_mut() {
1554 subform.disable_cache();
1555 }
1556 }
1557
1558 pub fn is_cache_enabled(&self) -> bool {
1560 self.cache_enabled
1561 }
1562
1563 fn evaluate_others(&mut self, paths: Option<&[String]>) {
1564 time_block!(" evaluate_others()", {
1565 time_block!(" evaluate_options_templates", {
1567 self.evaluate_options_templates(paths);
1568 });
1569
1570 let combined_count = self.rules_evaluations.len() + self.others_evaluations.len();
1573 if combined_count == 0 {
1574 return;
1575 }
1576
1577 time_block!(" evaluate rules+others", {
1578 let eval_data_snapshot = self.eval_data.clone();
1579
1580 let normalized_paths: Option<Vec<String>> = paths.map(|p_list| {
1581 p_list.iter()
1582 .flat_map(|p| {
1583 let ptr = path_utils::dot_notation_to_schema_pointer(p);
1584 let with_props = if ptr.starts_with("#/") {
1586 format!("#/properties/{}", &ptr[2..])
1587 } else {
1588 ptr.clone()
1589 };
1590 vec![ptr, with_props]
1591 })
1592 .collect()
1593 });
1594
1595 #[cfg(feature = "parallel")]
1596 {
1597 let combined_results: Mutex<Vec<(String, Value)>> = Mutex::new(Vec::with_capacity(combined_count));
1598
1599 self.rules_evaluations
1600 .par_iter()
1601 .chain(self.others_evaluations.par_iter())
1602 .for_each(|eval_key| {
1603 if let Some(filter_paths) = normalized_paths.as_ref() {
1605 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
1606 return;
1607 }
1608 }
1609
1610 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
1611
1612 if let Some(_) = self.try_get_cached(eval_key, &eval_data_snapshot) {
1614 return;
1615 }
1616
1617 if let Some(logic_id) = self.evaluations.get(eval_key) {
1619 if let Ok(val) = self.engine.run(logic_id, eval_data_snapshot.data()) {
1620 let cleaned_val = clean_float_noise(val);
1621 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
1623 combined_results.lock().unwrap().push((pointer_path, cleaned_val));
1624 }
1625 }
1626 });
1627
1628 for (result_path, value) in combined_results.into_inner().unwrap() {
1630 if let Some(pointer_value) = self.evaluated_schema.pointer_mut(&result_path) {
1631 if !result_path.starts_with("$") && result_path.contains("/rules/") && !result_path.ends_with("/value") {
1634 match pointer_value.as_object_mut() {
1635 Some(pointer_obj) => {
1636 pointer_obj.remove("$evaluation");
1637 pointer_obj.insert("value".to_string(), value);
1638 },
1639 None => continue,
1640 }
1641 } else {
1642 *pointer_value = value;
1643 }
1644 }
1645 }
1646 }
1647
1648 #[cfg(not(feature = "parallel"))]
1649 {
1650 let combined_evals: Vec<&String> = self.rules_evaluations.iter()
1652 .chain(self.others_evaluations.iter())
1653 .collect();
1654
1655 for eval_key in combined_evals {
1656 if let Some(filter_paths) = normalized_paths.as_ref() {
1658 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| eval_key.starts_with(p.as_str()) || p.starts_with(eval_key.as_str())) {
1659 continue;
1660 }
1661 }
1662
1663 let pointer_path = path_utils::normalize_to_json_pointer(eval_key);
1664
1665 if let Some(_) = self.try_get_cached(eval_key, &eval_data_snapshot) {
1667 continue;
1668 }
1669
1670 if let Some(logic_id) = self.evaluations.get(eval_key) {
1672 if let Ok(val) = self.engine.run(logic_id, eval_data_snapshot.data()) {
1673 let cleaned_val = clean_float_noise(val);
1674 self.cache_result(eval_key, Value::Null, &eval_data_snapshot);
1676
1677 if let Some(pointer_value) = self.evaluated_schema.pointer_mut(&pointer_path) {
1678 if !pointer_path.starts_with("$") && pointer_path.contains("/rules/") && !pointer_path.ends_with("/value") {
1679 match pointer_value.as_object_mut() {
1680 Some(pointer_obj) => {
1681 pointer_obj.remove("$evaluation");
1682 pointer_obj.insert("value".to_string(), cleaned_val);
1683 },
1684 None => continue,
1685 }
1686 } else {
1687 *pointer_value = cleaned_val;
1688 }
1689 }
1690 }
1691 }
1692 }
1693 }
1694 });
1695 });
1696 }
1697
1698 fn evaluate_options_templates(&mut self, paths: Option<&[String]>) {
1700 let templates_to_eval = self.options_templates.clone();
1702
1703 for (path, template_str, params_path) in templates_to_eval.iter() {
1705 if let Some(filter_paths) = paths {
1709 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| path.starts_with(p.as_str()) || p.starts_with(path.as_str())) {
1710 continue;
1711 }
1712 }
1713
1714 if let Some(params) = self.evaluated_schema.pointer(¶ms_path) {
1715 if let Ok(evaluated) = self.evaluate_template(&template_str, params) {
1716 if let Some(target) = self.evaluated_schema.pointer_mut(&path) {
1717 *target = Value::String(evaluated);
1718 }
1719 }
1720 }
1721 }
1722 }
1723
1724 fn evaluate_template(&self, template: &str, params: &Value) -> Result<String, String> {
1726 let mut result = template.to_string();
1727
1728 if let Value::Object(params_map) = params {
1730 for (key, value) in params_map {
1731 let placeholder = format!("{{{}}}", key);
1732 if let Some(str_val) = value.as_str() {
1733 result = result.replace(&placeholder, str_val);
1734 } else {
1735 result = result.replace(&placeholder, &value.to_string());
1737 }
1738 }
1739 }
1740
1741 Ok(result)
1742 }
1743
1744 pub fn compile_logic(&self, logic_str: &str) -> Result<CompiledLogicId, String> {
1760 rlogic::compiled_logic_store::compile_logic(logic_str)
1761 }
1762
1763 pub fn compile_logic_value(&self, logic: &Value) -> Result<CompiledLogicId, String> {
1780 rlogic::compiled_logic_store::compile_logic_value(logic)
1781 }
1782
1783 pub fn run_logic(&mut self, logic_id: CompiledLogicId, data: Option<&Value>, context: Option<&Value>) -> Result<Value, String> {
1800 let compiled_logic = rlogic::compiled_logic_store::get_compiled_logic(logic_id)
1802 .ok_or_else(|| format!("Compiled logic ID {:?} not found in store", logic_id))?;
1803
1804 let eval_data_value = if let Some(input_data) = data {
1808 let context_value = context.unwrap_or(&self.context);
1809
1810 self.eval_data.replace_data_and_context(input_data.clone(), context_value.clone());
1811 self.eval_data.data()
1812 } else {
1813 self.eval_data.data()
1814 };
1815
1816 let evaluator = Evaluator::new();
1818 let result = evaluator.evaluate(&compiled_logic, &eval_data_value)?;
1819
1820 Ok(clean_float_noise(result))
1821 }
1822
1823 pub fn compile_and_run_logic(&mut self, logic_str: &str, data: Option<&str>, context: Option<&str>) -> Result<Value, String> {
1839 let compiled_logic = self.compile_logic(logic_str)?;
1841
1842 let data_value = if let Some(data_str) = data {
1844 Some(json_parser::parse_json_str(data_str)?)
1845 } else {
1846 None
1847 };
1848
1849 let context_value = if let Some(ctx_str) = context {
1850 Some(json_parser::parse_json_str(ctx_str)?)
1851 } else {
1852 None
1853 };
1854
1855 self.run_logic(compiled_logic, data_value.as_ref(), context_value.as_ref())
1857 }
1858
1859 pub fn resolve_layout(&mut self, evaluate: bool) -> Result<(), String> {
1869 if evaluate {
1870 let data_str = serde_json::to_string(&self.data)
1872 .map_err(|e| format!("Failed to serialize data: {}", e))?;
1873 self.evaluate(&data_str, None, None)?;
1874 }
1875
1876 self.resolve_layout_internal();
1877 Ok(())
1878 }
1879
1880 fn resolve_layout_internal(&mut self) {
1881 time_block!(" resolve_layout_internal()", {
1882 let layout_paths = self.layout_paths.clone();
1885
1886 time_block!(" resolve_layout_elements", {
1887 for layout_path in layout_paths.iter() {
1888 self.resolve_layout_elements(layout_path);
1889 }
1890 });
1891
1892 time_block!(" propagate_parent_conditions", {
1894 for layout_path in layout_paths.iter() {
1895 self.propagate_parent_conditions(layout_path);
1896 }
1897 });
1898 });
1899 }
1900
1901 fn propagate_parent_conditions(&mut self, layout_elements_path: &str) {
1903 let normalized_path = path_utils::normalize_to_json_pointer(layout_elements_path);
1905
1906 let elements = if let Some(Value::Array(arr)) = self.evaluated_schema.pointer_mut(&normalized_path) {
1908 mem::take(arr)
1909 } else {
1910 return;
1911 };
1912
1913 let mut updated_elements = Vec::with_capacity(elements.len());
1915 for element in elements {
1916 updated_elements.push(self.apply_parent_conditions(element, false, false));
1917 }
1918
1919 if let Some(target) = self.evaluated_schema.pointer_mut(&normalized_path) {
1921 *target = Value::Array(updated_elements);
1922 }
1923 }
1924
1925 fn apply_parent_conditions(&self, element: Value, parent_hidden: bool, parent_disabled: bool) -> Value {
1927 if let Value::Object(mut map) = element {
1928 let mut element_hidden = parent_hidden;
1930 let mut element_disabled = parent_disabled;
1931
1932 if let Some(Value::Object(condition)) = map.get("condition") {
1934 if let Some(Value::Bool(hidden)) = condition.get("hidden") {
1935 element_hidden = element_hidden || *hidden;
1936 }
1937 if let Some(Value::Bool(disabled)) = condition.get("disabled") {
1938 element_disabled = element_disabled || *disabled;
1939 }
1940 }
1941
1942 if let Some(Value::Object(hide_layout)) = map.get("hideLayout") {
1944 if let Some(Value::Bool(all_hidden)) = hide_layout.get("all") {
1946 if *all_hidden {
1947 element_hidden = true;
1948 }
1949 }
1950 }
1951
1952 if parent_hidden || parent_disabled {
1954 if map.contains_key("condition") || map.contains_key("$ref") || map.contains_key("$fullpath") {
1956 let mut condition = if let Some(Value::Object(c)) = map.get("condition") {
1957 c.clone()
1958 } else {
1959 serde_json::Map::new()
1960 };
1961
1962 if parent_hidden {
1963 condition.insert("hidden".to_string(), Value::Bool(true));
1964 }
1965 if parent_disabled {
1966 condition.insert("disabled".to_string(), Value::Bool(true));
1967 }
1968
1969 map.insert("condition".to_string(), Value::Object(condition));
1970 }
1971
1972 if parent_hidden && (map.contains_key("hideLayout") || map.contains_key("type")) {
1974 let mut hide_layout = if let Some(Value::Object(h)) = map.get("hideLayout") {
1975 h.clone()
1976 } else {
1977 serde_json::Map::new()
1978 };
1979
1980 hide_layout.insert("all".to_string(), Value::Bool(true));
1982 map.insert("hideLayout".to_string(), Value::Object(hide_layout));
1983 }
1984 }
1985
1986 if map.contains_key("$parentHide") {
1989 map.insert("$parentHide".to_string(), Value::Bool(parent_hidden));
1990 }
1991
1992 if let Some(Value::Array(elements)) = map.get("elements") {
1994 let mut updated_children = Vec::with_capacity(elements.len());
1995 for child in elements {
1996 updated_children.push(self.apply_parent_conditions(
1997 child.clone(),
1998 element_hidden,
1999 element_disabled,
2000 ));
2001 }
2002 map.insert("elements".to_string(), Value::Array(updated_children));
2003 }
2004
2005 return Value::Object(map);
2006 }
2007
2008 element
2009 }
2010
2011 fn resolve_layout_elements(&mut self, layout_elements_path: &str) {
2013 let normalized_path = path_utils::normalize_to_json_pointer(layout_elements_path);
2015
2016 let elements = if let Some(Value::Array(arr)) = self.schema.pointer(&normalized_path) {
2020 arr.clone()
2021 } else {
2022 return;
2023 };
2024
2025 let parent_path = normalized_path
2027 .trim_start_matches('/')
2028 .replace("/elements", "")
2029 .replace('/', ".");
2030
2031 let mut resolved_elements = Vec::with_capacity(elements.len());
2033 for (index, element) in elements.iter().enumerate() {
2034 let element_path = if parent_path.is_empty() {
2035 format!("elements.{}", index)
2036 } else {
2037 format!("{}.elements.{}", parent_path, index)
2038 };
2039 let resolved = self.resolve_element_ref_recursive(element.clone(), &element_path);
2040 resolved_elements.push(resolved);
2041 }
2042
2043 if let Some(target) = self.evaluated_schema.pointer_mut(&normalized_path) {
2045 *target = Value::Array(resolved_elements);
2046 }
2047 }
2048
2049 fn resolve_element_ref_recursive(&self, element: Value, path_context: &str) -> Value {
2052 let resolved = self.resolve_element_ref(element);
2054
2055 if let Value::Object(mut map) = resolved {
2057 if !map.contains_key("$parentHide") {
2061 map.insert("$parentHide".to_string(), Value::Bool(false));
2062 }
2063
2064 if !map.contains_key("$fullpath") {
2066 map.insert("$fullpath".to_string(), Value::String(path_context.to_string()));
2067 }
2068
2069 if !map.contains_key("$path") {
2070 let last_segment = path_context.split('.').last().unwrap_or(path_context);
2072 map.insert("$path".to_string(), Value::String(last_segment.to_string()));
2073 }
2074
2075 if let Some(Value::Array(elements)) = map.get("elements") {
2077 let mut resolved_nested = Vec::with_capacity(elements.len());
2078 for (index, nested_element) in elements.iter().enumerate() {
2079 let nested_path = format!("{}.elements.{}", path_context, index);
2080 resolved_nested.push(self.resolve_element_ref_recursive(nested_element.clone(), &nested_path));
2081 }
2082 map.insert("elements".to_string(), Value::Array(resolved_nested));
2083 }
2084
2085 return Value::Object(map);
2086 }
2087
2088 resolved
2089 }
2090
2091 fn resolve_element_ref(&self, element: Value) -> Value {
2093 match element {
2094 Value::Object(mut map) => {
2095 if let Some(Value::String(ref_path)) = map.get("$ref").cloned() {
2097 let dotted_path = path_utils::pointer_to_dot_notation(&ref_path);
2099
2100 let last_segment = dotted_path.split('.').last().unwrap_or(&dotted_path);
2102
2103 map.insert("$fullpath".to_string(), Value::String(dotted_path.clone()));
2105 map.insert("$path".to_string(), Value::String(last_segment.to_string()));
2106 map.insert("$parentHide".to_string(), Value::Bool(false));
2107
2108 let normalized_path = if ref_path.starts_with('#') || ref_path.starts_with('/') {
2111 path_utils::normalize_to_json_pointer(&ref_path)
2113 } else {
2114 let schema_pointer = path_utils::dot_notation_to_schema_pointer(&ref_path);
2116 let schema_path = path_utils::normalize_to_json_pointer(&schema_pointer);
2117
2118 if self.evaluated_schema.pointer(&schema_path).is_some() {
2120 schema_path
2121 } else {
2122 let with_properties = format!("/properties/{}", ref_path.replace('.', "/properties/"));
2124 with_properties
2125 }
2126 };
2127
2128 if let Some(referenced_value) = self.evaluated_schema.pointer(&normalized_path) {
2130 let resolved = referenced_value.clone();
2132
2133 if let Value::Object(mut resolved_map) = resolved {
2135 map.remove("$ref");
2137
2138 if let Some(Value::Object(layout_obj)) = resolved_map.remove("$layout") {
2141 let mut result = layout_obj.clone();
2143
2144 resolved_map.remove("properties");
2146
2147 for (key, value) in resolved_map {
2149 if key != "type" || !result.contains_key("type") {
2150 result.insert(key, value);
2151 }
2152 }
2153
2154 for (key, value) in map {
2156 result.insert(key, value);
2157 }
2158
2159 return Value::Object(result);
2160 } else {
2161 for (key, value) in map {
2163 resolved_map.insert(key, value);
2164 }
2165
2166 return Value::Object(resolved_map);
2167 }
2168 } else {
2169 return resolved;
2171 }
2172 }
2173 }
2174
2175 Value::Object(map)
2177 }
2178 _ => element,
2179 }
2180 }
2181
2182 pub fn evaluate_dependents(
2191 &mut self,
2192 changed_paths: &[String],
2193 data: Option<&str>,
2194 context: Option<&str>,
2195 re_evaluate: bool,
2196 ) -> Result<Value, String> {
2197 let _lock = self.eval_lock.lock().unwrap();
2199
2200 if let Some(data_str) = data {
2202 let old_data = self.eval_data.clone_data_without(&["$params"]);
2204
2205 let data_value = json_parser::parse_json_str(data_str)?;
2206 let context_value = if let Some(ctx) = context {
2207 json_parser::parse_json_str(ctx)?
2208 } else {
2209 Value::Object(serde_json::Map::new())
2210 };
2211 self.eval_data.replace_data_and_context(data_value.clone(), context_value);
2212
2213 let data_paths: Vec<String> = changed_paths
2217 .iter()
2218 .map(|path| {
2219 format!("/{}", path.replace('.', "/"))
2221 })
2222 .collect();
2223 self.purge_cache_for_changed_data_with_comparison(&data_paths, &old_data, &data_value);
2224 }
2225
2226 let mut result = Vec::new();
2227 let mut processed = IndexSet::new();
2228
2229 let mut to_process: Vec<(String, bool)> = changed_paths
2232 .iter()
2233 .map(|path| (path_utils::dot_notation_to_schema_pointer(path), false))
2234 .collect(); while let Some((current_path, is_transitive)) = to_process.pop() {
2238 if processed.contains(¤t_path) {
2239 continue;
2240 }
2241 processed.insert(current_path.clone());
2242
2243 let current_data_path = path_utils::normalize_to_json_pointer(¤t_path)
2245 .replace("/properties/", "/")
2246 .trim_start_matches('#')
2247 .to_string();
2248 let mut current_value = self.eval_data.data().pointer(¤t_data_path)
2249 .cloned()
2250 .unwrap_or(Value::Null);
2251
2252 if let Some(dependent_items) = self.dependents_evaluations.get(¤t_path) {
2254 for dep_item in dependent_items {
2255 let ref_path = &dep_item.ref_path;
2256 let pointer_path = path_utils::normalize_to_json_pointer(ref_path);
2257 let data_path = pointer_path.replace("/properties/", "/");
2259
2260 let current_ref_value = self.eval_data.data().pointer(&data_path)
2261 .cloned()
2262 .unwrap_or(Value::Null);
2263
2264 let field = self.evaluated_schema.pointer(&pointer_path).cloned();
2266
2267 let parent_path = if let Some(last_slash) = pointer_path.rfind("/properties") {
2269 &pointer_path[..last_slash]
2270 } else {
2271 "/"
2272 };
2273 let mut parent_field = if parent_path.is_empty() || parent_path == "/" {
2274 self.evaluated_schema.clone()
2275 } else {
2276 self.evaluated_schema.pointer(parent_path).cloned()
2277 .unwrap_or_else(|| Value::Object(serde_json::Map::new()))
2278 };
2279
2280 if let Value::Object(ref mut map) = parent_field {
2282 map.remove("properties");
2283 map.remove("$layout");
2284 }
2285
2286 let mut change_obj = serde_json::Map::new();
2287 change_obj.insert("$ref".to_string(), Value::String(path_utils::pointer_to_dot_notation(&data_path)));
2288 if let Some(f) = field {
2289 change_obj.insert("$field".to_string(), f);
2290 }
2291 change_obj.insert("$parentField".to_string(), parent_field);
2292 change_obj.insert("transitive".to_string(), Value::Bool(is_transitive));
2293
2294 let mut add_transitive = false;
2295 let mut add_deps = false;
2296 if let Some(clear_val) = &dep_item.clear {
2298 let clear_val_clone = clear_val.clone();
2299 let should_clear = Self::evaluate_dependent_value_static(&self.engine, &self.evaluations, &self.eval_data, &clear_val_clone, ¤t_value, ¤t_ref_value)?;
2300 let clear_bool = match should_clear {
2301 Value::Bool(b) => b,
2302 _ => false,
2303 };
2304
2305 if clear_bool {
2306 if data_path == current_data_path {
2308 current_value = Value::Null;
2309 }
2310 self.eval_data.set(&data_path, Value::Null);
2311 change_obj.insert("clear".to_string(), Value::Bool(true));
2312 add_transitive = true;
2313 add_deps = true;
2314 }
2315 }
2316
2317 if let Some(value_val) = &dep_item.value {
2319 let value_val_clone = value_val.clone();
2320 let computed_value = Self::evaluate_dependent_value_static(&self.engine, &self.evaluations, &self.eval_data, &value_val_clone, ¤t_value, ¤t_ref_value)?;
2321 let cleaned_val = clean_float_noise(computed_value.clone());
2322
2323 if cleaned_val != current_ref_value && cleaned_val != Value::Null {
2324 if data_path == current_data_path {
2326 current_value = cleaned_val.clone();
2327 }
2328 self.eval_data.set(&data_path, cleaned_val.clone());
2329 change_obj.insert("value".to_string(), cleaned_val);
2330 add_transitive = true;
2331 add_deps = true;
2332 }
2333 }
2334
2335 if add_deps {
2337 result.push(Value::Object(change_obj));
2338 }
2339
2340 if add_transitive {
2342 to_process.push((ref_path.clone(), true));
2343 }
2344 }
2345 }
2346 }
2347
2348 if re_evaluate {
2352 drop(_lock); self.evaluate_internal(None)?;
2354 }
2355
2356 Ok(Value::Array(result))
2357 }
2358
2359 fn evaluate_dependent_value_static(
2361 engine: &RLogic,
2362 evaluations: &IndexMap<String, LogicId>,
2363 eval_data: &EvalData,
2364 value: &Value,
2365 changed_field_value: &Value,
2366 changed_field_ref_value: &Value
2367 ) -> Result<Value, String> {
2368 match value {
2369 Value::String(eval_key) => {
2371 if let Some(logic_id) = evaluations.get(eval_key) {
2372 let mut internal_context = serde_json::Map::new();
2375 internal_context.insert("$value".to_string(), changed_field_value.clone());
2376 internal_context.insert("$refValue".to_string(), changed_field_ref_value.clone());
2377 let context_value = Value::Object(internal_context);
2378
2379 let result = engine.run_with_context(logic_id, eval_data.data(), &context_value)
2380 .map_err(|e| format!("Failed to evaluate dependent logic '{}': {}", eval_key, e))?;
2381 Ok(result)
2382 } else {
2383 Ok(value.clone())
2385 }
2386 }
2387 Value::Object(map) if map.contains_key("$evaluation") => {
2390 Err("Dependent evaluation contains unparsed $evaluation - schema was not properly parsed".to_string())
2391 }
2392 _ => Ok(value.clone()),
2394 }
2395 }
2396
2397 pub fn validate(
2400 &mut self,
2401 data: &str,
2402 context: Option<&str>,
2403 paths: Option<&[String]>
2404 ) -> Result<ValidationResult, String> {
2405 let _lock = self.eval_lock.lock().unwrap();
2407
2408 let old_data = self.eval_data.clone_data_without(&["$params"]);
2410
2411 let data_value = json_parser::parse_json_str(data)?;
2413 let context_value = if let Some(ctx) = context {
2414 json_parser::parse_json_str(ctx)?
2415 } else {
2416 Value::Object(serde_json::Map::new())
2417 };
2418
2419 self.eval_data.replace_data_and_context(data_value.clone(), context_value);
2421
2422 let changed_data_paths: Vec<String> = if let Some(obj) = data_value.as_object() {
2425 obj.keys().map(|k| format!("/{}", k)).collect()
2426 } else {
2427 Vec::new()
2428 };
2429 self.purge_cache_for_changed_data_with_comparison(&changed_data_paths, &old_data, &data_value);
2430
2431 drop(_lock);
2433
2434 self.evaluate_others(paths);
2439
2440 self.evaluated_schema = self.get_evaluated_schema(false);
2442
2443 let mut errors: IndexMap<String, ValidationError> = IndexMap::new();
2444
2445 for field_path in self.fields_with_rules.iter() {
2448 if let Some(filter_paths) = paths {
2450 if !filter_paths.is_empty() && !filter_paths.iter().any(|p| field_path.starts_with(p.as_str()) || p.starts_with(field_path.as_str())) {
2451 continue;
2452 }
2453 }
2454
2455 self.validate_field(field_path, &data_value, &mut errors);
2456 }
2457
2458 let has_error = !errors.is_empty();
2459
2460 Ok(ValidationResult {
2461 has_error,
2462 errors,
2463 })
2464 }
2465
2466 fn validate_field(
2468 &self,
2469 field_path: &str,
2470 data: &Value,
2471 errors: &mut IndexMap<String, ValidationError>
2472 ) {
2473 if errors.contains_key(field_path) {
2475 return;
2476 }
2477
2478 let schema_path = path_utils::dot_notation_to_schema_pointer(field_path);
2480
2481 let pointer_path = schema_path.trim_start_matches('#');
2483
2484 let field_schema = match self.evaluated_schema.pointer(pointer_path) {
2486 Some(s) => s,
2487 None => {
2488 let alt_path = format!("/properties{}", pointer_path);
2490 match self.evaluated_schema.pointer(&alt_path) {
2491 Some(s) => s,
2492 None => return,
2493 }
2494 }
2495 };
2496
2497 if let Value::Object(schema_map) = field_schema {
2499 if let Some(Value::Object(condition)) = schema_map.get("condition") {
2500 if let Some(Value::Bool(true)) = condition.get("hidden") {
2501 return;
2502 }
2503 }
2504
2505 let rules = match schema_map.get("rules") {
2507 Some(Value::Object(r)) => r,
2508 _ => return,
2509 };
2510
2511 let field_data = self.get_field_data(field_path, data);
2513
2514 for (rule_name, rule_value) in rules {
2516 self.validate_rule(
2517 field_path,
2518 rule_name,
2519 rule_value,
2520 &field_data,
2521 schema_map,
2522 field_schema,
2523 errors
2524 );
2525 }
2526 }
2527 }
2528
2529 fn get_field_data(&self, field_path: &str, data: &Value) -> Value {
2531 let parts: Vec<&str> = field_path.split('.').collect();
2532 let mut current = data;
2533
2534 for part in parts {
2535 match current {
2536 Value::Object(map) => {
2537 current = map.get(part).unwrap_or(&Value::Null);
2538 }
2539 _ => return Value::Null,
2540 }
2541 }
2542
2543 current.clone()
2544 }
2545
2546 fn validate_rule(
2548 &self,
2549 field_path: &str,
2550 rule_name: &str,
2551 rule_value: &Value,
2552 field_data: &Value,
2553 schema_map: &serde_json::Map<String, Value>,
2554 _schema: &Value,
2555 errors: &mut IndexMap<String, ValidationError>
2556 ) {
2557 if errors.contains_key(field_path) {
2559 return;
2560 }
2561
2562 let mut disabled_field = false;
2563 if let Some(Value::Object(condition)) = schema_map.get("condition") {
2565 if let Some(Value::Bool(true)) = condition.get("disabled") {
2566 disabled_field = true;
2567 }
2568 }
2569
2570 let schema_path = path_utils::dot_notation_to_schema_pointer(field_path);
2573 let rule_path = format!("{}/rules/{}", schema_path.trim_start_matches('#'), rule_name);
2574
2575 let evaluated_rule = if let Some(eval_rule) = self.evaluated_schema.pointer(&rule_path) {
2577 eval_rule.clone()
2578 } else {
2579 rule_value.clone()
2580 };
2581
2582 let (rule_active, rule_message, rule_code, rule_data) = match &evaluated_rule {
2584 Value::Object(rule_obj) => {
2585 let active = rule_obj.get("value").unwrap_or(&Value::Bool(false));
2586
2587 let message = match rule_obj.get("message") {
2589 Some(Value::String(s)) => s.clone(),
2590 Some(Value::Object(msg_obj)) if msg_obj.contains_key("value") => {
2591 msg_obj.get("value")
2592 .and_then(|v| v.as_str())
2593 .unwrap_or("Validation failed")
2594 .to_string()
2595 }
2596 Some(msg_val) => msg_val.as_str().unwrap_or("Validation failed").to_string(),
2597 None => "Validation failed".to_string()
2598 };
2599
2600 let code = rule_obj.get("code")
2601 .and_then(|c| c.as_str())
2602 .map(|s| s.to_string());
2603
2604 let data = rule_obj.get("data").map(|d| {
2606 if let Value::Object(data_obj) = d {
2607 let mut cleaned_data = serde_json::Map::new();
2608 for (key, value) in data_obj {
2609 if let Value::Object(val_obj) = value {
2611 if val_obj.len() == 1 && val_obj.contains_key("value") {
2612 cleaned_data.insert(key.clone(), val_obj["value"].clone());
2613 } else {
2614 cleaned_data.insert(key.clone(), value.clone());
2615 }
2616 } else {
2617 cleaned_data.insert(key.clone(), value.clone());
2618 }
2619 }
2620 Value::Object(cleaned_data)
2621 } else {
2622 d.clone()
2623 }
2624 });
2625
2626 (active.clone(), message, code, data)
2627 }
2628 _ => (evaluated_rule.clone(), "Validation failed".to_string(), None, None)
2629 };
2630
2631 let error_code = rule_code.or_else(|| Some(format!("{}.{}", field_path, rule_name)));
2633
2634 let is_empty = matches!(field_data, Value::Null) ||
2635 (field_data.is_string() && field_data.as_str().unwrap_or("").is_empty()) ||
2636 (field_data.is_array() && field_data.as_array().unwrap().is_empty());
2637
2638 match rule_name {
2639 "required" => {
2640 if !disabled_field && rule_active == Value::Bool(true) {
2641 if is_empty {
2642 errors.insert(field_path.to_string(), ValidationError {
2643 rule_type: "required".to_string(),
2644 message: rule_message,
2645 code: error_code.clone(),
2646 pattern: None,
2647 field_value: None,
2648 data: None,
2649 });
2650 }
2651 }
2652 }
2653 "minLength" => {
2654 if !is_empty {
2655 if let Some(min) = rule_active.as_u64() {
2656 let len = match field_data {
2657 Value::String(s) => s.len(),
2658 Value::Array(a) => a.len(),
2659 _ => 0
2660 };
2661 if len < min as usize {
2662 errors.insert(field_path.to_string(), ValidationError {
2663 rule_type: "minLength".to_string(),
2664 message: rule_message,
2665 code: error_code.clone(),
2666 pattern: None,
2667 field_value: None,
2668 data: None,
2669 });
2670 }
2671 }
2672 }
2673 }
2674 "maxLength" => {
2675 if !is_empty {
2676 if let Some(max) = rule_active.as_u64() {
2677 let len = match field_data {
2678 Value::String(s) => s.len(),
2679 Value::Array(a) => a.len(),
2680 _ => 0
2681 };
2682 if len > max as usize {
2683 errors.insert(field_path.to_string(), ValidationError {
2684 rule_type: "maxLength".to_string(),
2685 message: rule_message,
2686 code: error_code.clone(),
2687 pattern: None,
2688 field_value: None,
2689 data: None,
2690 });
2691 }
2692 }
2693 }
2694 }
2695 "minValue" => {
2696 if !is_empty {
2697 if let Some(min) = rule_active.as_f64() {
2698 if let Some(val) = field_data.as_f64() {
2699 if val < min {
2700 errors.insert(field_path.to_string(), ValidationError {
2701 rule_type: "minValue".to_string(),
2702 message: rule_message,
2703 code: error_code.clone(),
2704 pattern: None,
2705 field_value: None,
2706 data: None,
2707 });
2708 }
2709 }
2710 }
2711 }
2712 }
2713 "maxValue" => {
2714 if !is_empty {
2715 if let Some(max) = rule_active.as_f64() {
2716 if let Some(val) = field_data.as_f64() {
2717 if val > max {
2718 errors.insert(field_path.to_string(), ValidationError {
2719 rule_type: "maxValue".to_string(),
2720 message: rule_message,
2721 code: error_code.clone(),
2722 pattern: None,
2723 field_value: None,
2724 data: None,
2725 });
2726 }
2727 }
2728 }
2729 }
2730 }
2731 "pattern" => {
2732 if !is_empty {
2733 if let Some(pattern) = rule_active.as_str() {
2734 if let Some(text) = field_data.as_str() {
2735 if let Ok(regex) = regex::Regex::new(pattern) {
2736 if !regex.is_match(text) {
2737 errors.insert(field_path.to_string(), ValidationError {
2738 rule_type: "pattern".to_string(),
2739 message: rule_message,
2740 code: error_code.clone(),
2741 pattern: Some(pattern.to_string()),
2742 field_value: Some(text.to_string()),
2743 data: None,
2744 });
2745 }
2746 }
2747 }
2748 }
2749 }
2750 }
2751 "evaluation" => {
2752 if let Value::Array(eval_array) = &evaluated_rule {
2755 for (idx, eval_item) in eval_array.iter().enumerate() {
2756 if let Value::Object(eval_obj) = eval_item {
2757 let eval_result = eval_obj.get("value").unwrap_or(&Value::Bool(true));
2759
2760 let is_falsy = match eval_result {
2762 Value::Bool(false) => true,
2763 Value::Null => true,
2764 Value::Number(n) => n.as_f64() == Some(0.0),
2765 Value::String(s) => s.is_empty(),
2766 Value::Array(a) => a.is_empty(),
2767 _ => false,
2768 };
2769
2770 if is_falsy {
2771 let eval_code = eval_obj.get("code")
2772 .and_then(|c| c.as_str())
2773 .map(|s| s.to_string())
2774 .or_else(|| Some(format!("{}.evaluation.{}", field_path, idx)));
2775
2776 let eval_message = eval_obj.get("message")
2777 .and_then(|m| m.as_str())
2778 .unwrap_or("Validation failed")
2779 .to_string();
2780
2781 let eval_data = eval_obj.get("data").cloned();
2782
2783 errors.insert(field_path.to_string(), ValidationError {
2784 rule_type: "evaluation".to_string(),
2785 message: eval_message,
2786 code: eval_code,
2787 pattern: None,
2788 field_value: None,
2789 data: eval_data,
2790 });
2791
2792 break;
2794 }
2795 }
2796 }
2797 }
2798 }
2799 _ => {
2800 if !is_empty {
2804 let is_falsy = match &rule_active {
2806 Value::Bool(false) => true,
2807 Value::Null => true,
2808 Value::Number(n) => n.as_f64() == Some(0.0),
2809 Value::String(s) => s.is_empty(),
2810 Value::Array(a) => a.is_empty(),
2811 _ => false,
2812 };
2813
2814 if is_falsy {
2815 errors.insert(field_path.to_string(), ValidationError {
2816 rule_type: "evaluation".to_string(),
2817 message: rule_message,
2818 code: error_code.clone(),
2819 pattern: None,
2820 field_value: None,
2821 data: rule_data,
2822 });
2823 }
2824 }
2825 }
2826 }
2827 }
2828}
2829
2830#[derive(Debug, Clone, Serialize, Deserialize)]
2832pub struct ValidationError {
2833 #[serde(rename = "type")]
2834 pub rule_type: String,
2835 pub message: String,
2836 #[serde(skip_serializing_if = "Option::is_none")]
2837 pub code: Option<String>,
2838 #[serde(skip_serializing_if = "Option::is_none")]
2839 pub pattern: Option<String>,
2840 #[serde(skip_serializing_if = "Option::is_none")]
2841 pub field_value: Option<String>,
2842 #[serde(skip_serializing_if = "Option::is_none")]
2843 pub data: Option<Value>,
2844}
2845
2846#[derive(Debug, Clone, Serialize, Deserialize)]
2848pub struct ValidationResult {
2849 pub has_error: bool,
2850 pub errors: IndexMap<String, ValidationError>,
2851}
2852