1#![allow(
19 clippy::missing_panics_doc,
20 clippy::missing_errors_doc,
21 clippy::similar_names,
22 clippy::result_large_err, reason = "this module doesn't currently comply with these lints"
24)]
25
26mod id;
27use cedar_policy_core::pst::error_body;
28#[cfg(feature = "entity-manifest")]
29use cedar_policy_core::validator::entity_manifest;
30#[cfg(feature = "entity-manifest")]
32pub use cedar_policy_core::validator::entity_manifest::{
33 AccessTrie, EntityManifest, EntityRoot, Fields, RootAccessTrie,
34};
35use cedar_policy_core::validator::json_schema;
36use cedar_policy_core::validator::typecheck::{PolicyCheck, Typechecker};
37pub use id::*;
38
39#[cfg(feature = "deprecated-schema-compat")]
40mod deprecated_schema_compat;
41
42mod err;
43pub use err::*;
44
45#[cfg(feature = "tpe")]
46mod tpe;
47#[cfg(feature = "tpe")]
48pub use tpe::*;
49
50pub use ast::Effect;
51pub use authorizer::Decision;
52#[cfg(feature = "partial-eval")]
53use cedar_policy_core::ast::BorrowedRestrictedExpr;
54use cedar_policy_core::ast::{self, RequestSchema, RestrictedExpr};
55use cedar_policy_core::authorizer::{self};
56use cedar_policy_core::entities::{ContextSchema, Dereference};
57use cedar_policy_core::est::{self, TemplateLink};
58use cedar_policy_core::evaluator::Evaluator;
59#[cfg(feature = "partial-eval")]
60use cedar_policy_core::evaluator::RestrictedEvaluator;
61use cedar_policy_core::extensions::Extensions;
62use cedar_policy_core::parser;
63pub use cedar_policy_core::pst;
64use cedar_policy_core::FromNormalizedStr;
65use itertools::{Either, Itertools};
66use linked_hash_map::LinkedHashMap;
67use miette::Diagnostic;
68use ref_cast::RefCast;
69use serde::{Deserialize, Serialize};
70use smol_str::SmolStr;
71use std::collections::{BTreeMap, BTreeSet, HashMap, HashSet};
72use std::io::Read;
73use std::str::FromStr;
74use std::sync::Arc;
75
76#[expect(
77 clippy::unwrap_used,
78 reason = "`CARGO_PKG_VERSION` should return a valid SemVer version string"
79)]
80pub(crate) mod version {
81 use semver::Version;
82 use std::sync::LazyLock;
83
84 static SDK_VERSION: LazyLock<Version> =
86 LazyLock::new(|| env!("CARGO_PKG_VERSION").parse().unwrap());
87 static LANG_VERSION: LazyLock<Version> = LazyLock::new(|| Version::new(4, 5, 0));
90
91 pub fn get_sdk_version() -> Version {
93 SDK_VERSION.clone()
94 }
95 pub fn get_lang_version() -> Version {
97 LANG_VERSION.clone()
98 }
99}
100
101#[repr(transparent)]
103#[derive(Debug, Clone, PartialEq, Eq, RefCast, Hash)]
104pub struct Entity(pub(crate) ast::Entity);
105
106#[doc(hidden)] impl AsRef<ast::Entity> for Entity {
108 fn as_ref(&self) -> &ast::Entity {
109 &self.0
110 }
111}
112
113#[doc(hidden)]
114impl From<ast::Entity> for Entity {
115 fn from(entity: ast::Entity) -> Self {
116 Self(entity)
117 }
118}
119
120impl Entity {
121 pub fn new(
143 uid: EntityUid,
144 attrs: HashMap<String, RestrictedExpression>,
145 parents: HashSet<EntityUid>,
146 ) -> Result<Self, EntityAttrEvaluationError> {
147 Self::new_with_tags(uid, attrs, parents, [])
148 }
149
150 pub fn new_no_attrs(uid: EntityUid, parents: HashSet<EntityUid>) -> Self {
155 Self(ast::Entity::new_with_attr_partial_value(
158 uid.into(),
159 [],
160 HashSet::new(),
161 parents.into_iter().map(EntityUid::into).collect(),
162 [],
163 ))
164 }
165
166 pub fn new_with_tags(
171 uid: EntityUid,
172 attrs: impl IntoIterator<Item = (String, RestrictedExpression)>,
173 parents: impl IntoIterator<Item = EntityUid>,
174 tags: impl IntoIterator<Item = (String, RestrictedExpression)>,
175 ) -> Result<Self, EntityAttrEvaluationError> {
176 Ok(Self(ast::Entity::new(
179 uid.into(),
180 attrs.into_iter().map(|(k, v)| (k.into(), v.0)),
181 HashSet::new(),
182 parents.into_iter().map(EntityUid::into).collect(),
183 tags.into_iter().map(|(k, v)| (k.into(), v.0)),
184 Extensions::all_available(),
185 )?))
186 }
187
188 pub fn with_uid(uid: EntityUid) -> Self {
199 Self(ast::Entity::with_uid(uid.into()))
200 }
201
202 pub fn deep_eq(&self, other: &Self) -> bool {
211 self.0.deep_eq(&other.0)
212 }
213
214 pub fn uid(&self) -> EntityUid {
225 self.0.uid().clone().into()
226 }
227
228 pub fn attr(&self, attr: &str) -> Option<Result<EvalResult, PartialValueToValueError>> {
249 match ast::Value::try_from(self.0.get(attr)?.clone()) {
250 Ok(v) => Some(Ok(EvalResult::from(v))),
251 Err(e) => Some(Err(e)),
252 }
253 }
254
255 pub fn attrs(
260 &self,
261 ) -> impl Iterator<Item = (&str, Result<EvalResult, PartialValueToValueError>)> {
262 self.0.attrs().map(|(k, v)| {
263 (
264 k.as_ref(),
265 ast::Value::try_from(v.clone()).map(EvalResult::from),
266 )
267 })
268 }
269
270 pub fn tag(&self, tag: &str) -> Option<Result<EvalResult, PartialValueToValueError>> {
275 match ast::Value::try_from(self.0.get_tag(tag)?.clone()) {
276 Ok(v) => Some(Ok(EvalResult::from(v))),
277 Err(e) => Some(Err(e)),
278 }
279 }
280
281 pub fn tags(
286 &self,
287 ) -> impl Iterator<Item = (&str, Result<EvalResult, PartialValueToValueError>)> {
288 self.0.tags().map(|(k, v)| {
289 (
290 k.as_ref(),
291 ast::Value::try_from(v.clone()).map(EvalResult::from),
292 )
293 })
294 }
295
296 pub fn into_inner(
298 self,
299 ) -> (
300 EntityUid,
301 HashMap<String, RestrictedExpression>,
302 HashSet<EntityUid>,
303 ) {
304 let (uid, attrs, ancestors, mut parents, _) = self.0.into_inner();
305 parents.extend(ancestors);
306
307 let attrs = attrs
308 .into_iter()
309 .map(|(k, v)| {
310 (
311 k.to_string(),
312 match v {
313 ast::PartialValue::Value(val) => {
314 RestrictedExpression(ast::RestrictedExpr::from(val))
315 }
316 ast::PartialValue::Residual(exp) => {
317 RestrictedExpression(ast::RestrictedExpr::new_unchecked(exp))
318 }
319 },
320 )
321 })
322 .collect();
323
324 (
325 uid.into(),
326 attrs,
327 parents.into_iter().map(Into::into).collect(),
328 )
329 }
330
331 pub fn from_json_value(
334 value: serde_json::Value,
335 schema: Option<&Schema>,
336 ) -> Result<Self, EntitiesError> {
337 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
338 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
339 schema.as_ref(),
340 Extensions::all_available(),
341 cedar_policy_core::entities::TCComputation::ComputeNow,
342 );
343 eparser.single_from_json_value(value).map(Self)
344 }
345
346 pub fn from_json_str(
349 src: impl AsRef<str>,
350 schema: Option<&Schema>,
351 ) -> Result<Self, EntitiesError> {
352 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
353 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
354 schema.as_ref(),
355 Extensions::all_available(),
356 cedar_policy_core::entities::TCComputation::ComputeNow,
357 );
358 eparser.single_from_json_str(src).map(Self)
359 }
360
361 pub fn from_json_file(f: impl Read, schema: Option<&Schema>) -> Result<Self, EntitiesError> {
364 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
365 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
366 schema.as_ref(),
367 Extensions::all_available(),
368 cedar_policy_core::entities::TCComputation::ComputeNow,
369 );
370 eparser.single_from_json_file(f).map(Self)
371 }
372
373 pub fn write_to_json(&self, f: impl std::io::Write) -> Result<(), EntitiesError> {
381 self.0.write_to_json(f)
382 }
383
384 pub fn to_json_value(&self) -> Result<serde_json::Value, EntitiesError> {
392 self.0.to_json_value()
393 }
394
395 pub fn to_json_string(&self) -> Result<String, EntitiesError> {
403 self.0.to_json_string()
404 }
405}
406
407impl std::fmt::Display for Entity {
408 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
409 write!(f, "{}", self.0)
410 }
411}
412
413#[repr(transparent)]
416#[derive(Debug, Clone, Default, PartialEq, Eq, RefCast)]
417pub struct Entities(pub(crate) cedar_policy_core::entities::Entities);
418
419#[doc(hidden)] impl AsRef<cedar_policy_core::entities::Entities> for Entities {
421 fn as_ref(&self) -> &cedar_policy_core::entities::Entities {
422 &self.0
423 }
424}
425
426#[doc(hidden)]
427impl From<cedar_policy_core::entities::Entities> for Entities {
428 fn from(entities: cedar_policy_core::entities::Entities) -> Self {
429 Self(entities)
430 }
431}
432
433use entities_errors::EntitiesError;
434
435impl Entities {
436 pub fn empty() -> Self {
443 Self(cedar_policy_core::entities::Entities::new())
444 }
445
446 pub fn get(&self, uid: &EntityUid) -> Option<&Entity> {
448 match self.0.entity(uid.as_ref()) {
449 Dereference::Residual(_) | Dereference::NoSuchEntity => None,
450 Dereference::Data(e) => Some(Entity::ref_cast(e)),
451 }
452 }
453
454 #[doc = include_str!("../experimental_warning.md")]
458 #[must_use]
459 #[cfg(feature = "partial-eval")]
460 pub fn partial(self) -> Self {
461 Self(self.0.partial())
462 }
463
464 pub fn iter(&self) -> impl Iterator<Item = &Entity> {
466 self.0.iter().map(Entity::ref_cast)
467 }
468
469 pub fn deep_eq(&self, other: &Self) -> bool {
475 self.0.deep_eq(&other.0)
476 }
477
478 pub fn from_entities(
497 entities: impl IntoIterator<Item = Entity>,
498 schema: Option<&Schema>,
499 ) -> Result<Self, EntitiesError> {
500 cedar_policy_core::entities::Entities::from_entities(
501 entities.into_iter().map(|e| e.0),
502 schema
503 .map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0))
504 .as_ref(),
505 cedar_policy_core::entities::TCComputation::ComputeNow,
506 Extensions::all_available(),
507 )
508 .map(Entities)
509 }
510
511 pub fn add_entities(
528 self,
529 entities: impl IntoIterator<Item = Entity>,
530 schema: Option<&Schema>,
531 ) -> Result<Self, EntitiesError> {
532 Ok(Self(
533 self.0.add_entities(
534 entities.into_iter().map(|e| Arc::new(e.0)),
535 schema
536 .map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0))
537 .as_ref(),
538 cedar_policy_core::entities::TCComputation::ComputeNow,
539 Extensions::all_available(),
540 )?,
541 ))
542 }
543
544 pub fn remove_entities(
551 self,
552 entity_ids: impl IntoIterator<Item = EntityUid>,
553 ) -> Result<Self, EntitiesError> {
554 Ok(Self(self.0.remove_entities(
555 entity_ids.into_iter().map(|euid| euid.0),
556 cedar_policy_core::entities::TCComputation::ComputeNow,
557 )?))
558 }
559
560 pub fn upsert_entities(
575 self,
576 entities: impl IntoIterator<Item = Entity>,
577 schema: Option<&Schema>,
578 ) -> Result<Self, EntitiesError> {
579 Ok(Self(
580 self.0.upsert_entities(
581 entities.into_iter().map(|e| Arc::new(e.0)),
582 schema
583 .map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0))
584 .as_ref(),
585 cedar_policy_core::entities::TCComputation::ComputeNow,
586 Extensions::all_available(),
587 )?,
588 ))
589 }
590
591 pub fn add_entities_from_json_str(
612 self,
613 json: &str,
614 schema: Option<&Schema>,
615 ) -> Result<Self, EntitiesError> {
616 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
617 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
618 schema.as_ref(),
619 Extensions::all_available(),
620 cedar_policy_core::entities::TCComputation::ComputeNow,
621 );
622 let new_entities = eparser.iter_from_json_str(json)?.map(Arc::new);
623 Ok(Self(self.0.add_entities(
624 new_entities,
625 schema.as_ref(),
626 cedar_policy_core::entities::TCComputation::ComputeNow,
627 Extensions::all_available(),
628 )?))
629 }
630
631 pub fn add_entities_from_json_value(
652 self,
653 json: serde_json::Value,
654 schema: Option<&Schema>,
655 ) -> Result<Self, EntitiesError> {
656 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
657 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
658 schema.as_ref(),
659 Extensions::all_available(),
660 cedar_policy_core::entities::TCComputation::ComputeNow,
661 );
662 let new_entities = eparser.iter_from_json_value(json)?.map(Arc::new);
663 Ok(Self(self.0.add_entities(
664 new_entities,
665 schema.as_ref(),
666 cedar_policy_core::entities::TCComputation::ComputeNow,
667 Extensions::all_available(),
668 )?))
669 }
670
671 pub fn add_entities_from_json_file(
693 self,
694 json: impl std::io::Read,
695 schema: Option<&Schema>,
696 ) -> Result<Self, EntitiesError> {
697 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
698 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
699 schema.as_ref(),
700 Extensions::all_available(),
701 cedar_policy_core::entities::TCComputation::ComputeNow,
702 );
703 let new_entities = eparser.iter_from_json_file(json)?.map(Arc::new);
704 Ok(Self(self.0.add_entities(
705 new_entities,
706 schema.as_ref(),
707 cedar_policy_core::entities::TCComputation::ComputeNow,
708 Extensions::all_available(),
709 )?))
710 }
711
712 pub fn from_json_str(json: &str, schema: Option<&Schema>) -> Result<Self, EntitiesError> {
763 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
764 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
765 schema.as_ref(),
766 Extensions::all_available(),
767 cedar_policy_core::entities::TCComputation::ComputeNow,
768 );
769 eparser.from_json_str(json).map(Entities)
770 }
771
772 pub fn from_json_value(
818 json: serde_json::Value,
819 schema: Option<&Schema>,
820 ) -> Result<Self, EntitiesError> {
821 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
822 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
823 schema.as_ref(),
824 Extensions::all_available(),
825 cedar_policy_core::entities::TCComputation::ComputeNow,
826 );
827 eparser.from_json_value(json).map(Entities)
828 }
829
830 pub fn from_json_file(
854 json: impl std::io::Read,
855 schema: Option<&Schema>,
856 ) -> Result<Self, EntitiesError> {
857 let schema = schema.map(|s| cedar_policy_core::validator::CoreSchema::new(&s.0));
858 let eparser = cedar_policy_core::entities::EntityJsonParser::new(
859 schema.as_ref(),
860 Extensions::all_available(),
861 cedar_policy_core::entities::TCComputation::ComputeNow,
862 );
863 eparser.from_json_file(json).map(Entities)
864 }
865
866 pub fn is_ancestor_of(&self, a: &EntityUid, b: &EntityUid) -> bool {
869 match self.0.entity(b.as_ref()) {
870 Dereference::Data(b) => b.is_descendant_of(a.as_ref()),
871 _ => a == b, }
873 }
874
875 pub fn ancestors<'a>(
878 &'a self,
879 euid: &EntityUid,
880 ) -> Option<impl Iterator<Item = &'a EntityUid>> {
881 let entity = match self.0.entity(euid.as_ref()) {
882 Dereference::Residual(_) | Dereference::NoSuchEntity => None,
883 Dereference::Data(e) => Some(e),
884 }?;
885 Some(entity.ancestors().map(EntityUid::ref_cast))
886 }
887
888 pub fn len(&self) -> usize {
890 self.0.len()
891 }
892
893 pub fn is_empty(&self) -> bool {
895 self.0.is_empty()
896 }
897
898 pub fn write_to_json(&self, f: impl std::io::Write) -> std::result::Result<(), EntitiesError> {
906 self.0.write_to_json(f)
907 }
908
909 pub fn to_json_value(&self) -> Result<serde_json::Value, EntitiesError> {
917 self.0.to_json_value()
918 }
919
920 #[doc = include_str!("../experimental_warning.md")]
921 pub fn to_dot_str(&self) -> String {
925 let mut dot_str = String::new();
926 #[expect(clippy::unwrap_used, reason = "writing to a String cannot fail")]
927 self.0.to_dot_str(&mut dot_str).unwrap();
928 dot_str
929 }
930}
931
932pub fn validate_scope_variables(
939 principal: &EntityUid,
940 action: &EntityUid,
941 resource: &EntityUid,
942 schema: &Schema,
943) -> std::result::Result<(), RequestValidationError> {
944 Ok(RequestSchema::validate_scope_variables(
945 &schema.0,
946 Some(&principal.0),
947 Some(&action.0),
948 Some(&resource.0),
949 )?)
950}
951
952pub mod entities {
954
955 #[derive(Debug)]
957 pub struct IntoIter {
958 pub(super) inner: <cedar_policy_core::entities::Entities as IntoIterator>::IntoIter,
959 }
960
961 impl Iterator for IntoIter {
962 type Item = super::Entity;
963
964 fn next(&mut self) -> Option<Self::Item> {
965 self.inner.next().map(super::Entity)
966 }
967 fn size_hint(&self) -> (usize, Option<usize>) {
968 self.inner.size_hint()
969 }
970 }
971}
972
973impl IntoIterator for Entities {
974 type Item = Entity;
975 type IntoIter = entities::IntoIter;
976
977 fn into_iter(self) -> Self::IntoIter {
978 Self::IntoIter {
979 inner: self.0.into_iter(),
980 }
981 }
982}
983
984#[repr(transparent)]
986#[derive(Debug, Clone, RefCast)]
987pub struct Authorizer(authorizer::Authorizer);
988
989#[doc(hidden)] impl AsRef<authorizer::Authorizer> for Authorizer {
991 fn as_ref(&self) -> &authorizer::Authorizer {
992 &self.0
993 }
994}
995
996impl Default for Authorizer {
997 fn default() -> Self {
998 Self::new()
999 }
1000}
1001
1002impl Authorizer {
1003 pub fn new() -> Self {
1060 Self(authorizer::Authorizer::new())
1061 }
1062
1063 pub fn is_authorized(&self, r: &Request, p: &PolicySet, e: &Entities) -> Response {
1117 self.0.is_authorized(r.0.clone(), &p.ast, &e.0).into()
1118 }
1119
1120 #[doc = include_str!("../experimental_warning.md")]
1125 #[cfg(feature = "partial-eval")]
1126 pub fn is_authorized_partial(
1127 &self,
1128 query: &Request,
1129 policy_set: &PolicySet,
1130 entities: &Entities,
1131 ) -> PartialResponse {
1132 let response = self
1133 .0
1134 .is_authorized_core(query.0.clone(), &policy_set.ast, &entities.0);
1135 PartialResponse(response)
1136 }
1137}
1138
1139#[derive(Debug, PartialEq, Eq, Clone)]
1141pub struct Response {
1142 pub(crate) decision: Decision,
1144 pub(crate) diagnostics: Diagnostics,
1146}
1147
1148#[doc = include_str!("../experimental_warning.md")]
1153#[cfg(feature = "partial-eval")]
1154#[repr(transparent)]
1155#[derive(Debug, Clone, RefCast)]
1156pub struct PartialResponse(cedar_policy_core::authorizer::PartialResponse);
1157
1158#[cfg(feature = "partial-eval")]
1159impl PartialResponse {
1160 pub fn decision(&self) -> Option<Decision> {
1163 self.0.decision()
1164 }
1165
1166 pub fn concretize(self) -> Response {
1169 self.0.concretize().into()
1170 }
1171
1172 pub fn definitely_satisfied(&self) -> impl Iterator<Item = Policy> + '_ {
1175 self.0.definitely_satisfied().map(Policy::from_ast)
1176 }
1177
1178 pub fn definitely_errored(&self) -> impl Iterator<Item = &PolicyId> {
1180 self.0.definitely_errored().map(PolicyId::ref_cast)
1181 }
1182
1183 pub fn may_be_determining(&self) -> impl Iterator<Item = Policy> + '_ {
1191 self.0.may_be_determining().map(Policy::from_ast)
1192 }
1193
1194 pub fn must_be_determining(&self) -> impl Iterator<Item = Policy> + '_ {
1202 self.0.must_be_determining().map(Policy::from_ast)
1203 }
1204
1205 pub fn nontrivial_residuals(&'_ self) -> impl Iterator<Item = Policy> + '_ {
1210 self.0.nontrivial_residuals().map(Policy::from_ast)
1211 }
1212
1213 pub fn all_residuals(&'_ self) -> impl Iterator<Item = Policy> + '_ {
1218 self.0.all_residuals().map(Policy::from_ast)
1219 }
1220
1221 pub fn unknown_entities(&self) -> HashSet<EntityUid> {
1223 let mut entity_uids = HashSet::new();
1224 for policy in self.0.all_residuals() {
1225 entity_uids.extend(policy.unknown_entities().into_iter().map(Into::into));
1226 }
1227 entity_uids
1228 }
1229
1230 pub fn get(&self, id: &PolicyId) -> Option<Policy> {
1232 self.0.get(id.as_ref()).map(Policy::from_ast)
1233 }
1234
1235 #[expect(
1237 clippy::needless_pass_by_value,
1238 reason = "don't want to change signature of deprecated public function"
1239 )]
1240 #[deprecated = "use reauthorize_with_bindings"]
1241 pub fn reauthorize(
1242 &self,
1243 mapping: HashMap<SmolStr, RestrictedExpression>,
1244 auth: &Authorizer,
1245 es: &Entities,
1246 ) -> Result<Self, ReauthorizationError> {
1247 self.reauthorize_with_bindings(mapping.iter().map(|(k, v)| (k.as_str(), v)), auth, es)
1248 }
1249
1250 pub fn reauthorize_with_bindings<'m>(
1253 &self,
1254 mapping: impl IntoIterator<Item = (&'m str, &'m RestrictedExpression)>,
1255 auth: &Authorizer,
1256 es: &Entities,
1257 ) -> Result<Self, ReauthorizationError> {
1258 let exts = Extensions::all_available();
1259 let evaluator = RestrictedEvaluator::new(exts);
1260 let mapping = mapping
1261 .into_iter()
1262 .map(|(name, expr)| {
1263 evaluator
1264 .interpret(BorrowedRestrictedExpr::new_unchecked(expr.0.as_ref()))
1265 .map(|v| (name.into(), v))
1266 })
1267 .collect::<Result<HashMap<_, _>, EvaluationError>>()?;
1268 let r = self.0.reauthorize(&mapping, &auth.0, &es.0)?;
1269 Ok(Self(r))
1270 }
1271}
1272
1273#[cfg(feature = "partial-eval")]
1274#[doc(hidden)]
1275impl From<cedar_policy_core::authorizer::PartialResponse> for PartialResponse {
1276 fn from(pr: cedar_policy_core::authorizer::PartialResponse) -> Self {
1277 Self(pr)
1278 }
1279}
1280
1281#[derive(Debug, PartialEq, Eq, Clone)]
1283pub struct Diagnostics {
1284 reason: HashSet<PolicyId>,
1287 errors: Vec<AuthorizationError>,
1290}
1291
1292#[doc(hidden)]
1293impl From<authorizer::Diagnostics> for Diagnostics {
1294 fn from(diagnostics: authorizer::Diagnostics) -> Self {
1295 Self {
1296 reason: diagnostics.reason.into_iter().map(PolicyId::new).collect(),
1297 errors: diagnostics.errors.into_iter().map(Into::into).collect(),
1298 }
1299 }
1300}
1301
1302impl Diagnostics {
1303 pub fn reason(&self) -> impl Iterator<Item = &PolicyId> {
1360 self.reason.iter()
1361 }
1362
1363 pub fn errors(&self) -> impl Iterator<Item = &AuthorizationError> + '_ {
1419 self.errors.iter()
1420 }
1421
1422 pub(crate) fn into_components(
1424 self,
1425 ) -> (
1426 impl Iterator<Item = PolicyId>,
1427 impl Iterator<Item = AuthorizationError>,
1428 ) {
1429 (self.reason.into_iter(), self.errors.into_iter())
1430 }
1431}
1432
1433impl Response {
1434 pub fn new(
1436 decision: Decision,
1437 reason: HashSet<PolicyId>,
1438 errors: Vec<AuthorizationError>,
1439 ) -> Self {
1440 Self {
1441 decision,
1442 diagnostics: Diagnostics { reason, errors },
1443 }
1444 }
1445
1446 pub fn decision(&self) -> Decision {
1448 self.decision
1449 }
1450
1451 pub fn diagnostics(&self) -> &Diagnostics {
1453 &self.diagnostics
1454 }
1455}
1456
1457#[doc(hidden)]
1458impl From<authorizer::Response> for Response {
1459 fn from(a: authorizer::Response) -> Self {
1460 Self {
1461 decision: a.decision,
1462 diagnostics: a.diagnostics.into(),
1463 }
1464 }
1465}
1466
1467#[derive(Default, Eq, PartialEq, Copy, Clone, Debug, Serialize, Deserialize)]
1469#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
1470#[cfg_attr(feature = "wasm", tsify(into_wasm_abi, from_wasm_abi))]
1471#[serde(rename_all = "camelCase")]
1472#[non_exhaustive]
1473pub enum ValidationMode {
1474 #[default]
1477 Strict,
1478 #[doc = include_str!("../experimental_warning.md")]
1480 #[cfg(feature = "permissive-validate")]
1481 Permissive,
1482 #[doc = include_str!("../experimental_warning.md")]
1484 #[cfg(feature = "partial-validate")]
1485 Partial,
1486}
1487
1488#[doc(hidden)]
1489impl From<ValidationMode> for cedar_policy_core::validator::ValidationMode {
1490 fn from(mode: ValidationMode) -> Self {
1491 match mode {
1492 ValidationMode::Strict => Self::Strict,
1493 #[cfg(feature = "permissive-validate")]
1494 ValidationMode::Permissive => Self::Permissive,
1495 #[cfg(feature = "partial-validate")]
1496 ValidationMode::Partial => Self::Partial,
1497 }
1498 }
1499}
1500
1501#[repr(transparent)]
1503#[derive(Debug, Clone, RefCast)]
1504pub struct Validator(cedar_policy_core::validator::Validator);
1505
1506#[doc(hidden)] impl AsRef<cedar_policy_core::validator::Validator> for Validator {
1508 fn as_ref(&self) -> &cedar_policy_core::validator::Validator {
1509 &self.0
1510 }
1511}
1512
1513impl Validator {
1514 pub fn new(schema: Schema) -> Self {
1517 Self(cedar_policy_core::validator::Validator::new(schema.0))
1518 }
1519
1520 pub fn schema(&self) -> &Schema {
1522 RefCast::ref_cast(self.0.schema())
1523 }
1524
1525 pub fn validate(&self, pset: &PolicySet, mode: ValidationMode) -> ValidationResult {
1533 ValidationResult::from(self.0.validate(&pset.ast, mode.into()))
1534 }
1535
1536 pub fn validate_with_level(
1544 &self,
1545 pset: &PolicySet,
1546 mode: ValidationMode,
1547 max_deref_level: u32,
1548 ) -> ValidationResult {
1549 ValidationResult::from(
1550 self.0
1551 .validate_with_level(&pset.ast, mode.into(), max_deref_level),
1552 )
1553 }
1554}
1555
1556#[derive(Debug, Clone)]
1559pub struct SchemaFragment {
1560 value: cedar_policy_core::validator::ValidatorSchemaFragment<
1561 cedar_policy_core::validator::ConditionalName,
1562 cedar_policy_core::validator::ConditionalName,
1563 >,
1564 lossless:
1565 cedar_policy_core::validator::json_schema::Fragment<cedar_policy_core::validator::RawName>,
1566}
1567
1568#[doc(hidden)] impl
1570 AsRef<
1571 cedar_policy_core::validator::ValidatorSchemaFragment<
1572 cedar_policy_core::validator::ConditionalName,
1573 cedar_policy_core::validator::ConditionalName,
1574 >,
1575 > for SchemaFragment
1576{
1577 fn as_ref(
1578 &self,
1579 ) -> &cedar_policy_core::validator::ValidatorSchemaFragment<
1580 cedar_policy_core::validator::ConditionalName,
1581 cedar_policy_core::validator::ConditionalName,
1582 > {
1583 &self.value
1584 }
1585}
1586
1587#[doc(hidden)] impl
1589 TryFrom<
1590 cedar_policy_core::validator::json_schema::Fragment<cedar_policy_core::validator::RawName>,
1591 > for SchemaFragment
1592{
1593 type Error = SchemaError;
1594 fn try_from(
1595 json_frag: cedar_policy_core::validator::json_schema::Fragment<
1596 cedar_policy_core::validator::RawName,
1597 >,
1598 ) -> Result<Self, Self::Error> {
1599 Ok(Self {
1600 value: json_frag.clone().try_into()?,
1601 lossless: json_frag,
1602 })
1603 }
1604}
1605
1606fn get_annotation_by_key(
1607 annotations: &est::Annotations,
1608 annotation_key: impl AsRef<str>,
1609) -> Option<&str> {
1610 annotations
1611 .0
1612 .get(&annotation_key.as_ref().parse().ok()?)
1613 .map(|value| annotation_value_to_str_ref(value.as_ref()))
1614}
1615
1616fn annotation_value_to_str_ref(value: Option<&ast::Annotation>) -> &str {
1617 value.map_or("", |a| a.as_ref())
1618}
1619
1620fn annotations_to_pairs(annotations: &est::Annotations) -> impl Iterator<Item = (&str, &str)> {
1621 annotations
1622 .0
1623 .iter()
1624 .map(|(key, value)| (key.as_ref(), annotation_value_to_str_ref(value.as_ref())))
1625}
1626
1627impl SchemaFragment {
1628 pub fn namespace_annotations(
1634 &self,
1635 namespace: EntityNamespace,
1636 ) -> Option<impl Iterator<Item = (&str, &str)>> {
1637 self.lossless
1638 .0
1639 .get(&Some(namespace.0))
1640 .map(|ns_def| annotations_to_pairs(&ns_def.annotations))
1641 }
1642
1643 pub fn namespace_annotation(
1652 &self,
1653 namespace: EntityNamespace,
1654 annotation_key: impl AsRef<str>,
1655 ) -> Option<&str> {
1656 let ns = self.lossless.0.get(&Some(namespace.0))?;
1657 get_annotation_by_key(&ns.annotations, annotation_key)
1658 }
1659
1660 pub fn common_type_annotations(
1666 &self,
1667 namespace: Option<EntityNamespace>,
1668 ty: &str,
1669 ) -> Option<impl Iterator<Item = (&str, &str)>> {
1670 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1671 let ty = json_schema::CommonTypeId::new(ast::UnreservedId::from_normalized_str(ty).ok()?)
1672 .ok()?;
1673 ns_def
1674 .common_types
1675 .get(&ty)
1676 .map(|ty| annotations_to_pairs(&ty.annotations))
1677 }
1678
1679 pub fn common_type_annotation(
1688 &self,
1689 namespace: Option<EntityNamespace>,
1690 ty: &str,
1691 annotation_key: impl AsRef<str>,
1692 ) -> Option<&str> {
1693 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1694 let ty = json_schema::CommonTypeId::new(ast::UnreservedId::from_normalized_str(ty).ok()?)
1695 .ok()?;
1696 get_annotation_by_key(&ns_def.common_types.get(&ty)?.annotations, annotation_key)
1697 }
1698
1699 pub fn entity_type_annotations(
1705 &self,
1706 namespace: Option<EntityNamespace>,
1707 ty: &str,
1708 ) -> Option<impl Iterator<Item = (&str, &str)>> {
1709 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1710 let ty = ast::UnreservedId::from_normalized_str(ty).ok()?;
1711 ns_def
1712 .entity_types
1713 .get(&ty)
1714 .map(|ty| annotations_to_pairs(&ty.annotations))
1715 }
1716
1717 pub fn entity_type_annotation(
1726 &self,
1727 namespace: Option<EntityNamespace>,
1728 ty: &str,
1729 annotation_key: impl AsRef<str>,
1730 ) -> Option<&str> {
1731 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1732 let ty = ast::UnreservedId::from_normalized_str(ty).ok()?;
1733 get_annotation_by_key(&ns_def.entity_types.get(&ty)?.annotations, annotation_key)
1734 }
1735
1736 pub fn action_annotations(
1741 &self,
1742 namespace: Option<EntityNamespace>,
1743 id: &EntityId,
1744 ) -> Option<impl Iterator<Item = (&str, &str)>> {
1745 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1746 ns_def
1747 .actions
1748 .get(id.unescaped())
1749 .map(|a| annotations_to_pairs(&a.annotations))
1750 }
1751
1752 pub fn action_annotation(
1760 &self,
1761 namespace: Option<EntityNamespace>,
1762 id: &EntityId,
1763 annotation_key: impl AsRef<str>,
1764 ) -> Option<&str> {
1765 let ns_def = self.lossless.0.get(&namespace.map(|n| n.0))?;
1766 get_annotation_by_key(
1767 &ns_def.actions.get(id.unescaped())?.annotations,
1768 annotation_key,
1769 )
1770 }
1771
1772 pub fn namespaces(&self) -> impl Iterator<Item = Option<EntityNamespace>> + '_ {
1776 self.value.namespaces().filter_map(|ns| {
1777 match ns.map(|ns| ast::Name::try_from(ns.clone())) {
1778 Some(Ok(n)) => Some(Some(EntityNamespace(n))),
1779 None => Some(None), Some(Err(_)) => {
1781 None
1788 }
1789 }
1790 })
1791 }
1792
1793 pub fn from_json_str(src: &str) -> Result<Self, SchemaError> {
1796 let lossless = cedar_policy_core::validator::json_schema::Fragment::from_json_str(src)?;
1797 Ok(Self {
1798 value: lossless.clone().try_into()?,
1799 lossless,
1800 })
1801 }
1802
1803 pub fn from_json_value(json: serde_json::Value) -> Result<Self, SchemaError> {
1806 let lossless = cedar_policy_core::validator::json_schema::Fragment::from_json_value(json)?;
1807 Ok(Self {
1808 value: lossless.clone().try_into()?,
1809 lossless,
1810 })
1811 }
1812
1813 pub fn from_cedarschema_file(
1815 r: impl std::io::Read,
1816 ) -> Result<(Self, impl Iterator<Item = SchemaWarning>), CedarSchemaError> {
1817 let (lossless, warnings) =
1818 cedar_policy_core::validator::json_schema::Fragment::from_cedarschema_file(
1819 r,
1820 Extensions::all_available(),
1821 )?;
1822 Ok((
1823 Self {
1824 value: lossless.clone().try_into()?,
1825 lossless,
1826 },
1827 warnings,
1828 ))
1829 }
1830
1831 pub fn from_cedarschema_str(
1833 src: &str,
1834 ) -> Result<(Self, impl Iterator<Item = SchemaWarning>), CedarSchemaError> {
1835 let (lossless, warnings) =
1836 cedar_policy_core::validator::json_schema::Fragment::from_cedarschema_str(
1837 src,
1838 Extensions::all_available(),
1839 )?;
1840 Ok((
1841 Self {
1842 value: lossless.clone().try_into()?,
1843 lossless,
1844 },
1845 warnings,
1846 ))
1847 }
1848
1849 pub fn from_json_file(file: impl std::io::Read) -> Result<Self, SchemaError> {
1852 let lossless = cedar_policy_core::validator::json_schema::Fragment::from_json_file(file)?;
1853 Ok(Self {
1854 value: lossless.clone().try_into()?,
1855 lossless,
1856 })
1857 }
1858
1859 pub fn to_json_value(self) -> Result<serde_json::Value, SchemaError> {
1861 serde_json::to_value(self.lossless).map_err(|e| SchemaError::JsonSerialization(e.into()))
1862 }
1863
1864 pub fn to_json_string(&self) -> Result<String, SchemaError> {
1866 serde_json::to_string(&self.lossless).map_err(|e| SchemaError::JsonSerialization(e.into()))
1867 }
1868
1869 pub fn to_cedarschema(&self) -> Result<String, ToCedarSchemaError> {
1872 let str = self.lossless.to_cedarschema()?;
1873 Ok(str)
1874 }
1875}
1876
1877impl TryInto<Schema> for SchemaFragment {
1878 type Error = SchemaError;
1879
1880 fn try_into(self) -> Result<Schema, Self::Error> {
1884 Ok(Schema(
1885 cedar_policy_core::validator::ValidatorSchema::from_schema_fragments(
1886 [self.value],
1887 Extensions::all_available(),
1888 )?,
1889 ))
1890 }
1891}
1892
1893impl FromStr for SchemaFragment {
1894 type Err = CedarSchemaError;
1895 fn from_str(src: &str) -> Result<Self, Self::Err> {
1901 Self::from_cedarschema_str(src).map(|(frag, _)| frag)
1902 }
1903}
1904
1905#[repr(transparent)]
1907#[derive(Debug, Clone, RefCast)]
1908pub struct Schema(pub(crate) cedar_policy_core::validator::ValidatorSchema);
1909
1910#[doc(hidden)] impl AsRef<cedar_policy_core::validator::ValidatorSchema> for Schema {
1912 fn as_ref(&self) -> &cedar_policy_core::validator::ValidatorSchema {
1913 &self.0
1914 }
1915}
1916
1917#[doc(hidden)]
1918impl From<cedar_policy_core::validator::ValidatorSchema> for Schema {
1919 fn from(schema: cedar_policy_core::validator::ValidatorSchema) -> Self {
1920 Self(schema)
1921 }
1922}
1923
1924impl FromStr for Schema {
1925 type Err = CedarSchemaError;
1926
1927 fn from_str(schema_src: &str) -> Result<Self, Self::Err> {
1934 Self::from_cedarschema_str(schema_src).map(|(schema, _)| schema)
1935 }
1936}
1937
1938impl Schema {
1939 pub fn from_schema_fragments(
1944 fragments: impl IntoIterator<Item = SchemaFragment>,
1945 ) -> Result<Self, SchemaError> {
1946 Ok(Self(
1947 cedar_policy_core::validator::ValidatorSchema::from_schema_fragments(
1948 fragments.into_iter().map(|f| f.value),
1949 Extensions::all_available(),
1950 )?,
1951 ))
1952 }
1953
1954 pub fn from_json_value(json: serde_json::Value) -> Result<Self, SchemaError> {
1957 Ok(Self(
1958 cedar_policy_core::validator::ValidatorSchema::from_json_value(
1959 json,
1960 Extensions::all_available(),
1961 )?,
1962 ))
1963 }
1964
1965 pub fn from_json_str(json: &str) -> Result<Self, SchemaError> {
1968 Ok(Self(
1969 cedar_policy_core::validator::ValidatorSchema::from_json_str(
1970 json,
1971 Extensions::all_available(),
1972 )?,
1973 ))
1974 }
1975
1976 pub fn from_json_file(file: impl std::io::Read) -> Result<Self, SchemaError> {
1979 Ok(Self(
1980 cedar_policy_core::validator::ValidatorSchema::from_json_file(
1981 file,
1982 Extensions::all_available(),
1983 )?,
1984 ))
1985 }
1986
1987 pub fn from_cedarschema_file(
1989 file: impl std::io::Read,
1990 ) -> Result<(Self, impl Iterator<Item = SchemaWarning> + 'static), CedarSchemaError> {
1991 let (schema, warnings) =
1992 cedar_policy_core::validator::ValidatorSchema::from_cedarschema_file(
1993 file,
1994 Extensions::all_available(),
1995 )?;
1996 Ok((Self(schema), warnings))
1997 }
1998
1999 pub fn from_cedarschema_str(
2001 src: &str,
2002 ) -> Result<(Self, impl Iterator<Item = SchemaWarning>), CedarSchemaError> {
2003 let (schema, warnings) =
2004 cedar_policy_core::validator::ValidatorSchema::from_cedarschema_str(
2005 src,
2006 Extensions::all_available(),
2007 )?;
2008 Ok((Self(schema), warnings))
2009 }
2010
2011 pub fn action_entities(&self) -> Result<Entities, EntitiesError> {
2014 Ok(Entities(self.0.action_entities()?))
2015 }
2016
2017 pub fn principals(&self) -> impl Iterator<Item = &EntityTypeName> {
2042 self.0.principals().map(RefCast::ref_cast)
2043 }
2044
2045 pub fn resources(&self) -> impl Iterator<Item = &EntityTypeName> {
2069 self.0.resources().map(RefCast::ref_cast)
2070 }
2071
2072 pub fn principals_for_action(
2078 &self,
2079 action: &EntityUid,
2080 ) -> Option<impl Iterator<Item = &EntityTypeName>> {
2081 self.0
2082 .principals_for_action(&action.0)
2083 .map(|iter| iter.map(RefCast::ref_cast))
2084 }
2085
2086 pub fn resources_for_action(
2092 &self,
2093 action: &EntityUid,
2094 ) -> Option<impl Iterator<Item = &EntityTypeName>> {
2095 self.0
2096 .resources_for_action(&action.0)
2097 .map(|iter| iter.map(RefCast::ref_cast))
2098 }
2099
2100 pub fn request_envs(&self) -> impl Iterator<Item = RequestEnv> + '_ {
2103 self.0
2104 .unlinked_request_envs(cedar_policy_core::validator::ValidationMode::Strict)
2105 .map(Into::into)
2106 }
2107
2108 pub fn ancestors<'a>(
2114 &'a self,
2115 ty: &'a EntityTypeName,
2116 ) -> Option<impl Iterator<Item = &'a EntityTypeName> + 'a> {
2117 self.0
2118 .ancestors(&ty.0)
2119 .map(|iter| iter.map(RefCast::ref_cast))
2120 }
2121
2122 pub fn action_groups(&self) -> impl Iterator<Item = &EntityUid> {
2124 self.0.action_groups().map(RefCast::ref_cast)
2125 }
2126
2127 pub fn entity_types(&self) -> impl Iterator<Item = &EntityTypeName> {
2129 self.0
2130 .entity_types()
2131 .map(|ety| RefCast::ref_cast(ety.name()))
2132 }
2133
2134 pub fn actions(&self) -> impl Iterator<Item = &EntityUid> {
2136 self.0.actions().map(RefCast::ref_cast)
2137 }
2138
2139 pub fn actions_for_principal_and_resource<'a: 'b, 'b>(
2143 &'a self,
2144 principal_type: &'b EntityTypeName,
2145 resource_type: &'b EntityTypeName,
2146 ) -> impl Iterator<Item = &'a EntityUid> + 'b {
2147 self.0
2148 .actions_for_principal_and_resource(&principal_type.0, &resource_type.0)
2149 .map(RefCast::ref_cast)
2150 }
2151}
2152
2153pub fn schema_str_to_json_with_resolved_types(
2163 schema_str: &str,
2164) -> Result<(serde_json::Value, Vec<SchemaWarning>), CedarSchemaError> {
2165 let (json_schema_fragment, warnings) =
2167 json_schema::Fragment::from_cedarschema_str(schema_str, Extensions::all_available())
2168 .map_err(
2169 |e: cedar_policy_core::validator::CedarSchemaError| -> CedarSchemaError {
2170 e.into()
2171 },
2172 )?;
2173
2174 let warnings_as_schema_warnings: Vec<SchemaWarning> = warnings.collect();
2175
2176 let fully_resolved_fragment =
2178 match json_schema_fragment.to_internal_name_fragment_with_resolved_types() {
2179 Ok(fragment) => fragment,
2180 Err(e) => {
2181 return Err(e.into());
2183 }
2184 };
2185
2186 let json_value = serde_json::to_value(&fully_resolved_fragment).map_err(|e| {
2188 let schema_error = SchemaError::JsonSerialization(
2189 cedar_policy_core::validator::schema_errors::JsonSerializationError::from(e),
2190 );
2191 CedarSchemaError::Schema(schema_error)
2192 })?;
2193
2194 Ok((json_value, warnings_as_schema_warnings))
2195}
2196
2197#[cfg(test)]
2202mod test_schema_str_to_json_with_resolved_types {
2203 use super::*;
2204
2205 #[test]
2206 fn test_unresolved_type_error() {
2207 let schema_str = r#"entity User = { "name": MyName };"#;
2208
2209 let result = schema_str_to_json_with_resolved_types(schema_str);
2210
2211 match result {
2213 Ok(_) => panic!("Expected error but got success - MyName should not be resolved"),
2214 Err(CedarSchemaError::Schema(SchemaError::TypeNotDefined(type_not_defined_error))) => {
2215 let error_message = format!("{}", type_not_defined_error);
2217 assert!(
2218 error_message.contains("MyName"),
2219 "Expected error message to contain 'MyName', but got: {}",
2220 error_message
2221 );
2222
2223 assert!(
2225 error_message.contains("failed to resolve type"),
2226 "Expected error message to mention 'failed to resolve type', but got: {}",
2227 error_message
2228 );
2229 }
2230 Err(CedarSchemaError::Schema(other_schema_error)) => {
2231 panic!(
2232 "Expected TypeNotDefined error, but got different SchemaError: {:?}",
2233 other_schema_error
2234 );
2235 }
2236 Err(CedarSchemaError::Parse(parse_error)) => {
2237 panic!(
2238 "Expected TypeNotDefined error, but got parse error: {:?}",
2239 parse_error
2240 );
2241 }
2242 Err(CedarSchemaError::Io(io_error)) => {
2243 panic!(
2244 "Expected TypeNotDefined error, but got IO error: {:?}",
2245 io_error
2246 );
2247 }
2248 }
2249 }
2250
2251 #[test]
2252 fn test_successful_resolution() {
2253 let schema_str = r#"
2254 type MyName = String;
2255 entity User = { "name": MyName };
2256 "#;
2257
2258 let result = schema_str_to_json_with_resolved_types(schema_str);
2259
2260 match result {
2261 Ok((json_value, warnings)) => {
2262 assert!(json_value.is_object(), "Expected JSON object");
2264
2265 let json_str = serde_json::to_string(&json_value).unwrap();
2267 assert!(
2268 !json_str.contains("EntityOrCommon"),
2269 "JSON should not contain unresolved EntityOrCommon types: {}",
2270 json_str
2271 );
2272
2273 assert!(
2275 json_str.contains("MyName"),
2276 "JSON should contain resolved MyName type reference: {}",
2277 json_str
2278 );
2279
2280 assert_eq!(warnings.len(), 0, "Expected no warnings for valid schema");
2282 }
2283 Err(e) => panic!("Expected success but got error: {:?}", e),
2284 }
2285 }
2286}
2287#[derive(Debug, Clone)]
2290pub struct ValidationResult {
2291 validation_errors: Vec<ValidationError>,
2292 validation_warnings: Vec<ValidationWarning>,
2293}
2294
2295impl ValidationResult {
2296 pub fn validation_passed(&self) -> bool {
2300 self.validation_errors.is_empty()
2301 }
2302
2303 pub fn validation_passed_without_warnings(&self) -> bool {
2306 self.validation_errors.is_empty() && self.validation_warnings.is_empty()
2307 }
2308
2309 pub fn validation_errors(&self) -> impl Iterator<Item = &ValidationError> {
2311 self.validation_errors.iter()
2312 }
2313
2314 pub fn validation_warnings(&self) -> impl Iterator<Item = &ValidationWarning> {
2316 self.validation_warnings.iter()
2317 }
2318
2319 fn first_error_or_warning(&self) -> Option<&dyn Diagnostic> {
2320 self.validation_errors
2321 .first()
2322 .map(|e| e as &dyn Diagnostic)
2323 .or_else(|| {
2324 self.validation_warnings
2325 .first()
2326 .map(|w| w as &dyn Diagnostic)
2327 })
2328 }
2329
2330 pub(crate) fn into_errors_and_warnings(
2331 self,
2332 ) -> (
2333 impl Iterator<Item = ValidationError>,
2334 impl Iterator<Item = ValidationWarning>,
2335 ) {
2336 (
2337 self.validation_errors.into_iter(),
2338 self.validation_warnings.into_iter(),
2339 )
2340 }
2341}
2342
2343#[doc(hidden)]
2344impl From<cedar_policy_core::validator::ValidationResult> for ValidationResult {
2345 fn from(r: cedar_policy_core::validator::ValidationResult) -> Self {
2346 let (errors, warnings) = r.into_errors_and_warnings();
2347 Self {
2348 validation_errors: errors.map(ValidationError::from).collect(),
2349 validation_warnings: warnings.map(ValidationWarning::from).collect(),
2350 }
2351 }
2352}
2353
2354impl std::fmt::Display for ValidationResult {
2355 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
2356 match self.first_error_or_warning() {
2357 Some(diagnostic) => write!(f, "{diagnostic}"),
2358 None => write!(f, "no errors or warnings"),
2359 }
2360 }
2361}
2362
2363impl std::error::Error for ValidationResult {
2364 fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
2365 self.first_error_or_warning()
2366 .and_then(std::error::Error::source)
2367 }
2368
2369 fn description(&self) -> &str {
2370 #[expect(
2371 deprecated,
2372 reason = "description() is deprecated but we still want to forward it"
2373 )]
2374 self.first_error_or_warning()
2375 .map_or("no errors or warnings", std::error::Error::description)
2376 }
2377
2378 fn cause(&self) -> Option<&dyn std::error::Error> {
2379 #[expect(
2380 deprecated,
2381 reason = "cause() is deprecated but we still want to forward it"
2382 )]
2383 self.first_error_or_warning()
2384 .and_then(std::error::Error::cause)
2385 }
2386}
2387
2388impl Diagnostic for ValidationResult {
2392 fn related(&self) -> Option<Box<dyn Iterator<Item = &dyn Diagnostic> + '_>> {
2393 let mut related = self
2394 .validation_errors
2395 .iter()
2396 .map(|err| err as &dyn Diagnostic)
2397 .chain(
2398 self.validation_warnings
2399 .iter()
2400 .map(|warn| warn as &dyn Diagnostic),
2401 );
2402 related.next().map(move |first| match first.related() {
2403 Some(first_related) => Box::new(first_related.chain(related)),
2404 None => Box::new(related) as Box<dyn Iterator<Item = _>>,
2405 })
2406 }
2407
2408 fn severity(&self) -> Option<miette::Severity> {
2409 self.first_error_or_warning()
2410 .map_or(Some(miette::Severity::Advice), Diagnostic::severity)
2411 }
2412
2413 fn labels(&self) -> Option<Box<dyn Iterator<Item = miette::LabeledSpan> + '_>> {
2414 self.first_error_or_warning().and_then(Diagnostic::labels)
2415 }
2416
2417 fn source_code(&self) -> Option<&dyn miette::SourceCode> {
2418 self.first_error_or_warning()
2419 .and_then(Diagnostic::source_code)
2420 }
2421
2422 fn code(&self) -> Option<Box<dyn std::fmt::Display + '_>> {
2423 self.first_error_or_warning().and_then(Diagnostic::code)
2424 }
2425
2426 fn url(&self) -> Option<Box<dyn std::fmt::Display + '_>> {
2427 self.first_error_or_warning().and_then(Diagnostic::url)
2428 }
2429
2430 fn help(&self) -> Option<Box<dyn std::fmt::Display + '_>> {
2431 self.first_error_or_warning().and_then(Diagnostic::help)
2432 }
2433
2434 fn diagnostic_source(&self) -> Option<&dyn Diagnostic> {
2435 self.first_error_or_warning()
2436 .and_then(Diagnostic::diagnostic_source)
2437 }
2438}
2439
2440pub fn confusable_string_checker<'a>(
2446 templates: impl Iterator<Item = &'a Template> + 'a,
2447) -> impl Iterator<Item = ValidationWarning> + 'a {
2448 cedar_policy_core::validator::confusable_string_checks(templates.map(|t| &t.ast))
2449 .map(std::convert::Into::into)
2450}
2451
2452#[derive(Debug, Clone, Hash, PartialEq, Eq, PartialOrd, Ord)]
2464pub struct EntityNamespace(pub(crate) ast::Name);
2465
2466#[doc(hidden)] impl AsRef<ast::Name> for EntityNamespace {
2468 fn as_ref(&self) -> &ast::Name {
2469 &self.0
2470 }
2471}
2472
2473impl FromStr for EntityNamespace {
2476 type Err = ParseErrors;
2477
2478 fn from_str(namespace_str: &str) -> Result<Self, Self::Err> {
2479 ast::Name::from_normalized_str(namespace_str)
2480 .map(EntityNamespace)
2481 .map_err(Into::into)
2482 }
2483}
2484
2485impl std::fmt::Display for EntityNamespace {
2486 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
2487 write!(f, "{}", self.0)
2488 }
2489}
2490
2491#[derive(Debug, Clone, Default)]
2492pub(crate) struct StringifiedPolicySet {
2496 pub policies: Vec<String>,
2498 pub policy_templates: Vec<String>,
2500}
2501
2502#[derive(Debug, Clone, Default)]
2504pub struct PolicySet {
2505 pub(crate) ast: ast::PolicySet,
2508 policies: LinkedHashMap<PolicyId, Policy>,
2510 templates: LinkedHashMap<PolicyId, Template>,
2512}
2513
2514impl PartialEq for PolicySet {
2515 fn eq(&self, other: &Self) -> bool {
2516 self.ast.eq(&other.ast)
2518 }
2519}
2520impl Eq for PolicySet {}
2521
2522#[doc(hidden)] impl AsRef<ast::PolicySet> for PolicySet {
2524 fn as_ref(&self) -> &ast::PolicySet {
2525 &self.ast
2526 }
2527}
2528
2529#[doc(hidden)]
2530impl From<ast::PolicySet> for PolicySet {
2531 fn from(pset: ast::PolicySet) -> Self {
2532 Self::from_ast(pset)
2533 }
2534}
2535
2536impl FromStr for PolicySet {
2537 type Err = ParseErrors;
2538
2539 fn from_str(policies: &str) -> Result<Self, Self::Err> {
2546 let (texts, pset) = parser::parse_policyset_and_also_return_policy_text(policies)?;
2547 #[expect(clippy::expect_used, reason = "By the invariant on `parse_policyset_and_also_return_policy_text(policies)`, every `PolicyId` in `pset.policies()` occurs as a key in `text`.")]
2548 let policies = pset.policies().map(|p|
2549 (
2550 PolicyId::new(p.id().clone()),
2551 Policy { lossless: LosslessPolicy::policy_or_template_text(*texts.get(p.id()).expect("internal invariant violation: policy id exists in asts but not texts")), ast: p.clone() }
2552 )
2553 ).collect();
2554 #[expect(
2555 clippy::expect_used,
2556 reason = "By the invariant on `parse_policyset_and_also_return_policy_text(policies)`, every `PolicyId` in `pset.templates()` also occurs as a key in `text`."
2557 )]
2558 let templates = pset
2559 .templates()
2560 .map(|t| {
2561 (
2562 PolicyId::new(t.id().clone()),
2563 Template {
2564 lossless: LosslessTemplate::from_text(*texts.get(t.id()).expect(
2565 "internal invariant violation: template id exists in asts but not ests",
2566 )),
2567 ast: t.clone(),
2568 },
2569 )
2570 })
2571 .collect();
2572 Ok(Self {
2573 ast: pset,
2574 policies,
2575 templates,
2576 })
2577 }
2578}
2579
2580impl PolicySet {
2581 fn from_est(est: &est::PolicySet) -> Result<Self, PolicySetError> {
2583 let ast: ast::PolicySet = est.clone().try_into()?;
2584 #[expect(
2585 clippy::expect_used,
2586 reason = "Since conversion from EST to AST succeeded, every `PolicyId` in `ast.policies()` occurs in `est`"
2587 )]
2588 let policies = ast
2589 .policies()
2590 .map(|p| {
2591 (
2592 PolicyId::new(p.id().clone()),
2593 Policy {
2594 lossless: LosslessPolicy::Est(est.get_policy(p.id()).expect(
2595 "internal invariant violation: policy id exists in asts but not ests",
2596 )),
2597 ast: p.clone(),
2598 },
2599 )
2600 })
2601 .collect();
2602 #[expect(
2603 clippy::expect_used,
2604 reason = "Since conversion from EST to AST succeeded, every `PolicyId` in `ast.templates()` occurs in `est`"
2605 )]
2606 let templates = ast
2607 .templates()
2608 .map(|t| {
2609 (
2610 PolicyId::new(t.id().clone()),
2611 Template {
2612 lossless: LosslessTemplate::Est(est.get_template(t.id()).expect(
2613 "internal invariant violation: template id exists in asts but not ests",
2614 )),
2615 ast: t.clone(),
2616 },
2617 )
2618 })
2619 .collect();
2620 Ok(Self {
2621 ast,
2622 policies,
2623 templates,
2624 })
2625 }
2626
2627 pub(crate) fn from_ast(ast: ast::PolicySet) -> Self {
2629 let templates = ast
2630 .templates()
2631 .cloned()
2632 .map(|t| (PolicyId::new(t.id().clone()), t.into()))
2633 .collect();
2634 let policies = ast
2635 .policies()
2636 .cloned()
2637 .map(|p| (PolicyId::new(p.id().clone()), p.into()))
2638 .collect();
2639 Self {
2640 ast,
2641 policies,
2642 templates,
2643 }
2644 }
2645
2646 pub fn from_pst(pst_set: pst::PolicySet) -> Result<Self, PolicySetError> {
2653 let mut set = Self::new();
2654 for (id, template) in pst_set.templates {
2655 if id != template.id {
2656 return Err(policy_set_errors::InconsistentPolicyId {
2657 map_key: id.into(),
2658 inner_id: template.id.into(),
2659 }
2660 .into());
2661 }
2662 let ast_template: ast::Template = template.clone().try_into()?;
2663 set.ast.add_template(ast_template.clone())?;
2664 set.templates.insert(
2665 id.into(),
2666 Template {
2667 ast: ast_template,
2668 lossless: LosslessTemplate::Pst(template),
2669 },
2670 );
2671 }
2672 for (id, static_policy) in pst_set.policies {
2673 if &id != static_policy.id() {
2674 return Err(policy_set_errors::InconsistentPolicyId {
2675 map_key: id.into(),
2676 inner_id: static_policy.id().clone().into(),
2677 }
2678 .into());
2679 }
2680 let pst_policy = pst::Policy::Static(static_policy);
2681 let ast_policy: ast::Policy = pst_policy.clone().try_into()?;
2682 set.ast.add(ast_policy.clone())?;
2683 set.policies.insert(
2684 id.into(),
2685 Policy {
2686 ast: ast_policy,
2687 lossless: LosslessPolicy::Pst(pst_policy),
2688 },
2689 );
2690 }
2691 for link in pst_set.template_links {
2692 let vals: HashMap<SlotId, EntityUid> = link
2693 .values
2694 .into_iter()
2695 .map(|(k, v)| {
2696 let ast_uid = ast::EntityUID::from(v);
2697 (k.into(), EntityUid(ast_uid))
2698 })
2699 .collect();
2700 set.link(link.template_id.into(), link.new_id.into(), vals)?;
2701 }
2702 Ok(set)
2703 }
2704
2705 pub fn from_json_str(src: impl AsRef<str>) -> Result<Self, PolicySetError> {
2707 let est: est::PolicySet = serde_json::from_str(src.as_ref())
2708 .map_err(|e| policy_set_errors::JsonPolicySetError { inner: e })?;
2709 Self::from_est(&est)
2710 }
2711
2712 pub fn from_json_value(src: serde_json::Value) -> Result<Self, PolicySetError> {
2714 let est: est::PolicySet = serde_json::from_value(src)
2715 .map_err(|e| policy_set_errors::JsonPolicySetError { inner: e })?;
2716 Self::from_est(&est)
2717 }
2718
2719 pub fn from_json_file(r: impl std::io::Read) -> Result<Self, PolicySetError> {
2721 let est: est::PolicySet = serde_json::from_reader(r)
2722 .map_err(|e| policy_set_errors::JsonPolicySetError { inner: e })?;
2723 Self::from_est(&est)
2724 }
2725
2726 pub fn to_json(self) -> Result<serde_json::Value, PolicySetError> {
2728 let est = self.est()?;
2729 let value = serde_json::to_value(est)
2730 .map_err(|e| policy_set_errors::JsonPolicySetError { inner: e })?;
2731 Ok(value)
2732 }
2733
2734 pub fn to_pst(&self) -> Result<pst::PolicySet, PolicySetError> {
2744 let templates = self
2745 .templates
2746 .iter()
2747 .map(|(id, t)| Ok((id.clone().into(), t.to_pst()?)))
2748 .collect::<Result<_, pst::PstConstructionError>>()?;
2749 let mut policies = LinkedHashMap::new();
2750 let mut template_links = Vec::new();
2751 for (id, policy) in &self.policies {
2752 if policy.is_static() {
2753 if let pst::Policy::Static(sp) = policy.to_pst()? {
2754 policies.insert(id.clone().into(), sp);
2755 }
2756 } else {
2757 template_links.push(pst::TemplateLink {
2758 template_id: policy.ast.template().id().clone().into(),
2759 new_id: id.clone().into(),
2760 values: policy
2761 .ast
2762 .env()
2763 .iter()
2764 .map(|(k, v)| ((*k).into(), v.clone().into()))
2765 .collect(),
2766 });
2767 }
2768 }
2769 Ok(pst::PolicySet {
2770 templates,
2771 policies,
2772 template_links,
2773 })
2774 }
2775
2776 pub fn try_into_pst(self) -> Result<pst::PolicySet, PolicySetError> {
2781 let templates = self
2782 .templates
2783 .into_iter()
2784 .map(|(id, t)| Ok((id.into(), t.try_into_pst()?)))
2785 .collect::<Result<_, pst::PstConstructionError>>()?;
2786 let mut policies = LinkedHashMap::new();
2787 let mut template_links = Vec::new();
2788 for (id, policy) in self.policies {
2789 if policy.is_static() {
2790 if let pst::Policy::Static(sp) = policy.try_into_pst()? {
2791 policies.insert(id.into(), sp);
2792 }
2793 } else {
2794 template_links.push(pst::TemplateLink {
2795 template_id: policy.ast.template().id().clone().into(),
2796 new_id: id.into(),
2797 values: policy
2798 .ast
2799 .env()
2800 .iter()
2801 .map(|(k, v)| ((*k).into(), v.clone().into()))
2802 .collect(),
2803 });
2804 }
2805 }
2806 Ok(pst::PolicySet {
2807 templates,
2808 policies,
2809 template_links,
2810 })
2811 }
2812
2813 fn est(self) -> Result<est::PolicySet, PolicyToJsonError> {
2815 let (static_policies, template_links): (Vec<_>, Vec<_>) =
2816 fold_partition(self.policies, is_static_or_link)?;
2817 let static_policies = static_policies.into_iter().collect::<LinkedHashMap<_, _>>();
2818 let templates = self
2819 .templates
2820 .into_iter()
2821 .map(|(id, template)| {
2822 template
2823 .lossless
2824 .est(|| template.ast.clone().into())
2825 .map(|est| (id.into(), est))
2826 })
2827 .collect::<Result<LinkedHashMap<_, _>, _>>()?;
2828 let est = est::PolicySet {
2829 templates,
2830 static_policies,
2831 template_links,
2832 };
2833
2834 Ok(est)
2835 }
2836
2837 pub fn to_cedar(&self) -> Option<String> {
2856 match self.stringify() {
2857 Some(StringifiedPolicySet {
2858 policies,
2859 policy_templates,
2860 }) => {
2861 let policies_as_vec = policies
2862 .into_iter()
2863 .chain(policy_templates)
2864 .collect::<Vec<_>>();
2865 Some(policies_as_vec.join("\n\n"))
2866 }
2867 None => None,
2868 }
2869 }
2870
2871 pub(crate) fn stringify(&self) -> Option<StringifiedPolicySet> {
2888 let policies = self
2889 .policies
2890 .values()
2891 .sorted_by_key(|p| AsRef::<str>::as_ref(p.id()))
2895 .map(Policy::to_cedar)
2896 .collect::<Option<Vec<_>>>()?;
2897 let policy_templates = self
2898 .templates
2899 .values()
2900 .sorted_by_key(|t| AsRef::<str>::as_ref(t.id()))
2901 .map(Template::to_cedar)
2902 .collect_vec();
2903
2904 Some(StringifiedPolicySet {
2905 policies,
2906 policy_templates,
2907 })
2908 }
2909
2910 pub fn new() -> Self {
2912 Self {
2913 ast: ast::PolicySet::new(),
2914 policies: LinkedHashMap::new(),
2915 templates: LinkedHashMap::new(),
2916 }
2917 }
2918
2919 pub fn from_policies(
2921 policies: impl IntoIterator<Item = Policy>,
2922 ) -> Result<Self, PolicySetError> {
2923 let mut set = Self::new();
2924 for policy in policies {
2925 set.add(policy)?;
2926 }
2927 Ok(set)
2928 }
2929
2930 pub fn merge(
2945 &mut self,
2946 other: &Self,
2947 rename_duplicates: bool,
2948 ) -> Result<HashMap<PolicyId, PolicyId>, PolicySetError> {
2949 match self.ast.merge_policyset(&other.ast, rename_duplicates) {
2950 Ok(renaming) => {
2951 let renaming: HashMap<PolicyId, PolicyId> = renaming
2952 .into_iter()
2953 .map(|(old_pid, new_pid)| (PolicyId::new(old_pid), PolicyId::new(new_pid)))
2954 .collect();
2955
2956 for (old_pid, op) in &other.policies {
2957 let pid = renaming.get(old_pid).unwrap_or(old_pid);
2958 if !self.policies.contains_key(pid) {
2959 let lossless = if renaming.contains_key(old_pid) {
2960 op.lossless.new_id(pid.clone())
2961 } else {
2962 op.lossless.clone()
2963 };
2964 #[expect(
2965 clippy::unwrap_used,
2966 reason = "`pid` is the new id of a policy from `other`, so it will be in `self` after merging"
2967 )]
2968 let new_p = Policy {
2969 ast: self.ast.get(pid.as_ref()).unwrap().clone(),
2972 lossless,
2973 };
2974 self.policies.insert(pid.clone(), new_p);
2975 }
2976 }
2977 for (old_pid, ot) in &other.templates {
2978 let pid = renaming.get(old_pid).unwrap_or(old_pid);
2979 if !self.templates.contains_key(pid) {
2980 let lossless = if renaming.contains_key(old_pid) {
2981 ot.lossless.new_id(pid.clone())
2982 } else {
2983 ot.lossless.clone()
2984 };
2985 #[expect(
2986 clippy::unwrap_used,
2987 reason = "`pid` is the new id of a template from `other`, so it will be in `self` after merging"
2988 )]
2989 let new_t = Template {
2990 ast: self.ast.get_template(pid.as_ref()).unwrap().clone(),
2991 lossless,
2992 };
2993 self.templates.insert(pid.clone(), new_t);
2994 }
2995 }
2996
2997 Ok(renaming)
2998 }
2999 Err(ast::PolicySetError::Occupied { id }) => Err(PolicySetError::AlreadyDefined(
3000 policy_set_errors::AlreadyDefined {
3001 id: PolicyId::new(id),
3002 },
3003 )),
3004 }
3005 }
3006
3007 pub fn add(&mut self, policy: Policy) -> Result<(), PolicySetError> {
3011 if policy.is_static() {
3012 let id = PolicyId::new(policy.ast.id().clone());
3013 self.ast.add(policy.ast.clone())?;
3014 self.policies.insert(id, policy);
3015 Ok(())
3016 } else {
3017 Err(PolicySetError::ExpectedStatic(
3018 policy_set_errors::ExpectedStatic::new(),
3019 ))
3020 }
3021 }
3022
3023 pub fn remove_static(&mut self, policy_id: PolicyId) -> Result<Policy, PolicySetError> {
3027 let Some(policy) = self.policies.remove(&policy_id) else {
3028 return Err(PolicySetError::PolicyNonexistent(
3029 policy_set_errors::PolicyNonexistentError { policy_id },
3030 ));
3031 };
3032 if self
3033 .ast
3034 .remove_static(&ast::PolicyID::from_string(&policy_id))
3035 .is_ok()
3036 {
3037 Ok(policy)
3038 } else {
3039 self.policies.insert(policy_id.clone(), policy);
3041 Err(PolicySetError::PolicyNonexistent(
3042 policy_set_errors::PolicyNonexistentError { policy_id },
3043 ))
3044 }
3045 }
3046
3047 pub fn add_template(&mut self, template: Template) -> Result<(), PolicySetError> {
3049 let id = PolicyId::new(template.ast.id().clone());
3050 self.ast.add_template(template.ast.clone())?;
3051 self.templates.insert(id, template);
3052 Ok(())
3053 }
3054
3055 pub fn remove_template(&mut self, template_id: PolicyId) -> Result<Template, PolicySetError> {
3060 let Some(template) = self.templates.remove(&template_id) else {
3061 return Err(PolicySetError::TemplateNonexistent(
3062 policy_set_errors::TemplateNonexistentError { template_id },
3063 ));
3064 };
3065 #[expect(clippy::panic, reason = "We just found the policy in self.templates")]
3067 match self
3068 .ast
3069 .remove_template(&ast::PolicyID::from_string(&template_id))
3070 {
3071 Ok(_) => Ok(template),
3072 Err(ast::PolicySetTemplateRemovalError::RemoveTemplateWithLinksError(_)) => {
3073 self.templates.insert(template_id.clone(), template);
3074 Err(PolicySetError::RemoveTemplateWithActiveLinks(
3075 policy_set_errors::RemoveTemplateWithActiveLinksError { template_id },
3076 ))
3077 }
3078 Err(ast::PolicySetTemplateRemovalError::NotTemplateError(_)) => {
3079 self.templates.insert(template_id.clone(), template);
3080 Err(PolicySetError::RemoveTemplateNotTemplate(
3081 policy_set_errors::RemoveTemplateNotTemplateError { template_id },
3082 ))
3083 }
3084 Err(ast::PolicySetTemplateRemovalError::RemovePolicyNoTemplateError(_)) => {
3085 panic!("Found template policy in self.templates but not in self.ast");
3086 }
3087 }
3088 }
3089
3090 pub fn get_linked_policies(
3093 &self,
3094 template_id: PolicyId,
3095 ) -> Result<impl Iterator<Item = &PolicyId>, PolicySetError> {
3096 self.ast
3097 .get_linked_policies(&ast::PolicyID::from_string(&template_id))
3098 .map_or_else(
3099 |_| {
3100 Err(PolicySetError::TemplateNonexistent(
3101 policy_set_errors::TemplateNonexistentError { template_id },
3102 ))
3103 },
3104 |v| Ok(v.map(PolicyId::ref_cast)),
3105 )
3106 }
3107
3108 pub fn policies(&self) -> impl Iterator<Item = &Policy> {
3112 self.policies.values()
3113 }
3114
3115 pub fn templates(&self) -> impl Iterator<Item = &Template> {
3117 self.templates.values()
3118 }
3119
3120 pub fn template(&self, id: &PolicyId) -> Option<&Template> {
3122 self.templates.get(id)
3123 }
3124
3125 pub fn policy(&self, id: &PolicyId) -> Option<&Policy> {
3127 self.policies.get(id)
3128 }
3129
3130 pub fn annotation(&self, id: &PolicyId, key: impl AsRef<str>) -> Option<&str> {
3135 self.ast
3136 .get(id.as_ref())?
3137 .annotation(&key.as_ref().parse().ok()?)
3138 .map(AsRef::as_ref)
3139 }
3140
3141 pub fn template_annotation(&self, id: &PolicyId, key: impl AsRef<str>) -> Option<&str> {
3146 self.ast
3147 .get_template(id.as_ref())?
3148 .annotation(&key.as_ref().parse().ok()?)
3149 .map(AsRef::as_ref)
3150 }
3151
3152 pub fn is_empty(&self) -> bool {
3154 debug_assert_eq!(
3155 self.ast.is_empty(),
3156 self.policies.is_empty() && self.templates.is_empty()
3157 );
3158 self.ast.is_empty()
3159 }
3160
3161 pub fn num_of_policies(&self) -> usize {
3165 self.policies.len()
3166 }
3167
3168 pub fn num_of_templates(&self) -> usize {
3170 self.templates.len()
3171 }
3172
3173 pub fn link(
3182 &mut self,
3183 template_id: PolicyId,
3184 new_id: PolicyId,
3185 vals: HashMap<SlotId, EntityUid>,
3186 ) -> Result<(), PolicySetError> {
3187 let unwrapped_vals: HashMap<ast::SlotId, ast::EntityUID> = vals
3188 .into_iter()
3189 .map(|(key, value)| (key.into(), value.into()))
3190 .collect();
3191
3192 let Some(template) = self.templates.get(&template_id) else {
3197 return Err(if self.policies.contains_key(&template_id) {
3198 policy_set_errors::ExpectedTemplate::new().into()
3199 } else {
3200 policy_set_errors::LinkingError {
3201 inner: ast::LinkingError::NoSuchTemplate {
3202 id: template_id.into(),
3203 },
3204 }
3205 .into()
3206 });
3207 };
3208
3209 let linked_ast = self.ast.link(
3210 template_id.into(),
3211 new_id.clone().into(),
3212 unwrapped_vals.clone(),
3213 )?;
3214
3215 #[expect(
3216 clippy::expect_used,
3217 reason = "`lossless.link()` will not fail after `ast.link()` succeeds"
3218 )]
3219 let linked_lossless = template
3220 .lossless
3221 .clone()
3222 .link(
3223 new_id.clone().into(),
3224 unwrapped_vals.iter().map(|(k, v)| (*k, v)),
3225 )
3226 .expect("ast.link() didn't fail above, so this shouldn't fail");
3231 self.policies.insert(
3232 new_id,
3233 Policy {
3234 ast: linked_ast.clone(),
3235 lossless: linked_lossless,
3236 },
3237 );
3238 Ok(())
3239 }
3240
3241 #[doc = include_str!("../experimental_warning.md")]
3243 #[cfg(feature = "partial-eval")]
3244 pub fn unknown_entities(&self) -> HashSet<EntityUid> {
3245 let mut entity_uids = HashSet::new();
3246 for policy in self.policies.values() {
3247 entity_uids.extend(policy.unknown_entities());
3248 }
3249 entity_uids
3250 }
3251
3252 pub fn unlink(&mut self, policy_id: PolicyId) -> Result<Policy, PolicySetError> {
3255 let Some(policy) = self.policies.remove(&policy_id) else {
3256 return Err(PolicySetError::LinkNonexistent(
3257 policy_set_errors::LinkNonexistentError { policy_id },
3258 ));
3259 };
3260 #[expect(clippy::panic, reason = "We just found the policy in self.policies")]
3262 match self.ast.unlink(&ast::PolicyID::from_string(&policy_id)) {
3263 Ok(_) => Ok(policy),
3264 Err(ast::PolicySetUnlinkError::NotLinkError(_)) => {
3265 self.policies.insert(policy_id.clone(), policy);
3267 Err(PolicySetError::UnlinkLinkNotLink(
3268 policy_set_errors::UnlinkLinkNotLinkError { policy_id },
3269 ))
3270 }
3271 Err(ast::PolicySetUnlinkError::UnlinkingError(_)) => {
3272 panic!("Found linked policy in self.policies but not in self.ast")
3273 }
3274 }
3275 }
3276}
3277
3278impl std::fmt::Display for PolicySet {
3279 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3280 let mut policies = self.policies().peekable();
3282 while let Some(policy) = policies.next() {
3283 policy.lossless.fmt(|| policy.ast.clone().into(), f)?;
3284 if policies.peek().is_some() {
3285 writeln!(f)?;
3286 }
3287 }
3288 Ok(())
3289 }
3290}
3291
3292fn is_static_or_link(
3295 (id, policy): (PolicyId, Policy),
3296) -> Result<Either<(ast::PolicyID, est::Policy), TemplateLink>, PolicyToJsonError> {
3297 match policy.template_id() {
3298 Some(template_id) => {
3299 let values = policy
3300 .ast
3301 .env()
3302 .iter()
3303 .map(|(id, euid)| (*id, euid.clone()))
3304 .collect();
3305 Ok(Either::Right(TemplateLink {
3306 new_id: id.into(),
3307 template_id: template_id.clone().into(),
3308 values,
3309 }))
3310 }
3311 None => policy
3312 .lossless
3313 .est(|| policy.ast.clone().into())
3314 .map(|est| Either::Left((id.into(), est))),
3315 }
3316}
3317
3318#[expect(
3321 clippy::redundant_pub_crate,
3322 reason = "can't be private because it's used in tests"
3323)]
3324pub(crate) fn fold_partition<T, A, B, E>(
3325 i: impl IntoIterator<Item = T>,
3326 f: impl Fn(T) -> Result<Either<A, B>, E>,
3327) -> Result<(Vec<A>, Vec<B>), E> {
3328 let mut lefts = vec![];
3329 let mut rights = vec![];
3330
3331 for item in i {
3332 match f(item)? {
3333 Either::Left(left) => lefts.push(left),
3334 Either::Right(right) => rights.push(right),
3335 }
3336 }
3337
3338 Ok((lefts, rights))
3339}
3340
3341#[derive(Debug, Clone, PartialEq, Eq, Hash, PartialOrd, Ord)]
3345pub struct RequestEnv {
3346 pub(crate) principal: EntityTypeName,
3347 pub(crate) action: EntityUid,
3348 pub(crate) resource: EntityTypeName,
3349 pub(crate) principal_slot: Option<EntityTypeName>,
3350 pub(crate) resource_slot: Option<EntityTypeName>,
3351}
3352
3353impl RequestEnv {
3354 pub fn new(principal: EntityTypeName, action: EntityUid, resource: EntityTypeName) -> Self {
3356 Self {
3357 principal,
3358 action,
3359 resource,
3360 principal_slot: None,
3361 resource_slot: None,
3362 }
3363 }
3364
3365 pub fn new_request_env_with_slots(
3367 principal: EntityTypeName,
3368 action: EntityUid,
3369 resource: EntityTypeName,
3370 principal_slot: Option<EntityTypeName>,
3371 resource_slot: Option<EntityTypeName>,
3372 ) -> Self {
3373 Self {
3374 principal,
3375 action,
3376 resource,
3377 principal_slot,
3378 resource_slot,
3379 }
3380 }
3381
3382 pub fn principal(&self) -> &EntityTypeName {
3384 &self.principal
3385 }
3386
3387 pub fn action(&self) -> &EntityUid {
3389 &self.action
3390 }
3391
3392 pub fn resource(&self) -> &EntityTypeName {
3394 &self.resource
3395 }
3396
3397 pub fn principal_slot(&self) -> Option<&EntityTypeName> {
3399 self.principal_slot.as_ref()
3400 }
3401
3402 pub fn resource_slot(&self) -> Option<&EntityTypeName> {
3404 self.resource_slot.as_ref()
3405 }
3406}
3407
3408#[doc(hidden)]
3409impl From<cedar_policy_core::validator::types::RequestEnv<'_>> for RequestEnv {
3410 fn from(renv: cedar_policy_core::validator::types::RequestEnv<'_>) -> Self {
3411 match renv {
3412 cedar_policy_core::validator::types::RequestEnv::DeclaredAction {
3413 principal,
3414 action,
3415 resource,
3416 principal_slot,
3417 resource_slot,
3418 ..
3419 } => Self {
3420 principal: principal.clone().into(),
3421 action: action.clone().into(),
3422 resource: resource.clone().into(),
3423 principal_slot: principal_slot.map(EntityTypeName::from),
3424 resource_slot: resource_slot.map(EntityTypeName::from),
3425 },
3426 #[expect(
3427 clippy::unreachable,
3428 reason = "partial validation is not enabled and hence `RequestEnv::UndeclaredAction` should not show up"
3429 )]
3430 cedar_policy_core::validator::types::RequestEnv::UndeclaredAction => {
3431 unreachable!("used unsupported feature")
3432 }
3433 }
3434 }
3435}
3436
3437fn get_valid_request_envs(ast: &ast::Template, s: &Schema) -> impl Iterator<Item = RequestEnv> {
3442 let tc = Typechecker::new(
3443 &s.0,
3444 cedar_policy_core::validator::ValidationMode::default(),
3445 );
3446 tc.typecheck_by_request_env(ast)
3447 .filter_map(|(env, pc)| {
3448 if matches!(pc, PolicyCheck::Success(_)) {
3449 Some(env.into())
3450 } else {
3451 None
3452 }
3453 })
3454 .collect::<BTreeSet<_>>()
3455 .into_iter()
3456}
3457
3458#[derive(Debug, Clone)]
3464pub struct Template {
3465 pub(crate) ast: ast::Template,
3468
3469 pub(crate) lossless: LosslessTemplate,
3477}
3478
3479impl PartialEq for Template {
3480 fn eq(&self, other: &Self) -> bool {
3481 self.ast.eq(&other.ast)
3483 }
3484}
3485impl Eq for Template {}
3486
3487#[doc(hidden)] impl AsRef<ast::Template> for Template {
3489 fn as_ref(&self) -> &ast::Template {
3490 &self.ast
3491 }
3492}
3493
3494#[doc(hidden)]
3495impl From<ast::Template> for Template {
3496 fn from(template: ast::Template) -> Self {
3497 Self::from_ast(template)
3498 }
3499}
3500
3501impl Template {
3502 pub fn from_pst(pst_template: pst::Template) -> Result<Self, pst::PstConstructionError> {
3505 let ast: ast::Template = pst_template.clone().try_into()?;
3506 if ast.slots().count() == 0 {
3507 return Err(error_body::ExpectedTemplateWithSlotsError.into());
3508 }
3509 Ok(Self {
3510 ast,
3511 lossless: LosslessTemplate::Pst(pst_template),
3512 })
3513 }
3514
3515 pub fn to_pst(&self) -> Result<pst::Template, pst::PstConstructionError> {
3517 self.lossless
3518 .pst(|| pst::Template::try_from(self.ast.clone()))
3519 .map(|t| t.with_id(self.ast.id().clone().into()))
3520 }
3521
3522 pub fn try_into_pst(self) -> Result<pst::Template, pst::PstConstructionError> {
3526 self.lossless
3527 .try_into_pst(|| pst::Template::try_from(self.ast))
3528 }
3529
3530 pub fn parse(id: Option<PolicyId>, src: impl AsRef<str>) -> Result<Self, ParseErrors> {
3536 let ast = parser::parse_template(id.map(Into::into), src.as_ref())?;
3537 Ok(Self {
3538 ast,
3539 lossless: LosslessTemplate::from_text(Some(src.as_ref())),
3540 })
3541 }
3542
3543 pub fn id(&self) -> &PolicyId {
3545 PolicyId::ref_cast(self.ast.id())
3546 }
3547
3548 #[must_use]
3550 pub fn new_id(&self, id: PolicyId) -> Self {
3551 Self {
3552 ast: self.ast.new_id(id.clone().into()),
3553 lossless: self.lossless.new_id(id),
3554 }
3555 }
3556
3557 pub fn effect(&self) -> Effect {
3559 self.ast.effect()
3560 }
3561
3562 pub fn has_non_scope_constraint(&self) -> bool {
3564 self.ast.non_scope_constraints().is_some()
3565 }
3566
3567 pub fn annotation(&self, key: impl AsRef<str>) -> Option<&str> {
3572 self.ast
3573 .annotation(&key.as_ref().parse().ok()?)
3574 .map(AsRef::as_ref)
3575 }
3576
3577 pub fn annotations(&self) -> impl Iterator<Item = (&str, &str)> {
3581 self.ast
3582 .annotations()
3583 .map(|(k, v)| (k.as_ref(), v.as_ref()))
3584 }
3585
3586 pub fn slots(&self) -> impl Iterator<Item = &SlotId> {
3588 self.ast.slots().map(|slot| SlotId::ref_cast(&slot.id))
3589 }
3590
3591 pub fn principal_constraint(&self) -> TemplatePrincipalConstraint {
3593 match self.ast.principal_constraint().as_inner() {
3594 ast::PrincipalOrResourceConstraint::Any => TemplatePrincipalConstraint::Any,
3595 ast::PrincipalOrResourceConstraint::In(eref) => {
3596 TemplatePrincipalConstraint::In(match eref {
3597 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3598 ast::EntityReference::Slot(_) => None,
3599 })
3600 }
3601 ast::PrincipalOrResourceConstraint::Eq(eref) => {
3602 TemplatePrincipalConstraint::Eq(match eref {
3603 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3604 ast::EntityReference::Slot(_) => None,
3605 })
3606 }
3607 ast::PrincipalOrResourceConstraint::Is(entity_type) => {
3608 TemplatePrincipalConstraint::Is(entity_type.as_ref().clone().into())
3609 }
3610 ast::PrincipalOrResourceConstraint::IsIn(entity_type, eref) => {
3611 TemplatePrincipalConstraint::IsIn(
3612 entity_type.as_ref().clone().into(),
3613 match eref {
3614 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3615 ast::EntityReference::Slot(_) => None,
3616 },
3617 )
3618 }
3619 }
3620 }
3621
3622 pub fn action_constraint(&self) -> ActionConstraint {
3624 match self.ast.action_constraint() {
3626 ast::ActionConstraint::Any => ActionConstraint::Any,
3627 ast::ActionConstraint::In(ids) => {
3628 ActionConstraint::In(ids.iter().map(|id| id.as_ref().clone().into()).collect())
3629 }
3630 ast::ActionConstraint::Eq(id) => ActionConstraint::Eq(id.as_ref().clone().into()),
3631 #[cfg(feature = "tolerant-ast")]
3632 #[expect(clippy::unimplemented, reason = "experimental feature")]
3633 ast::ActionConstraint::ErrorConstraint => {
3634 unimplemented!("internal ErrorConstraint cannot be represented in the public API")
3635 }
3636 }
3637 }
3638
3639 pub fn resource_constraint(&self) -> TemplateResourceConstraint {
3641 match self.ast.resource_constraint().as_inner() {
3642 ast::PrincipalOrResourceConstraint::Any => TemplateResourceConstraint::Any,
3643 ast::PrincipalOrResourceConstraint::In(eref) => {
3644 TemplateResourceConstraint::In(match eref {
3645 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3646 ast::EntityReference::Slot(_) => None,
3647 })
3648 }
3649 ast::PrincipalOrResourceConstraint::Eq(eref) => {
3650 TemplateResourceConstraint::Eq(match eref {
3651 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3652 ast::EntityReference::Slot(_) => None,
3653 })
3654 }
3655 ast::PrincipalOrResourceConstraint::Is(entity_type) => {
3656 TemplateResourceConstraint::Is(entity_type.as_ref().clone().into())
3657 }
3658 ast::PrincipalOrResourceConstraint::IsIn(entity_type, eref) => {
3659 TemplateResourceConstraint::IsIn(
3660 entity_type.as_ref().clone().into(),
3661 match eref {
3662 ast::EntityReference::EUID(e) => Some(e.as_ref().clone().into()),
3663 ast::EntityReference::Slot(_) => None,
3664 },
3665 )
3666 }
3667 }
3668 }
3669
3670 pub fn from_json(
3676 id: Option<PolicyId>,
3677 json: serde_json::Value,
3678 ) -> Result<Self, PolicyFromJsonError> {
3679 let est: est::Policy = serde_json::from_value(json)
3680 .map_err(|e| entities_json_errors::JsonDeserializationError::Serde(e.into()))
3681 .map_err(cedar_policy_core::est::FromJsonError::from)?;
3682 Self::from_est(id, est)
3683 }
3684
3685 fn from_est(id: Option<PolicyId>, est: est::Policy) -> Result<Self, PolicyFromJsonError> {
3686 Ok(Self {
3687 ast: est.clone().try_into_ast_template(id.map(PolicyId::into))?,
3688 lossless: LosslessTemplate::Est(est),
3689 })
3690 }
3691
3692 pub(crate) fn from_ast(ast: ast::Template) -> Self {
3693 Self {
3694 lossless: LosslessTemplate::Est(ast.clone().into()),
3695 ast,
3696 }
3697 }
3698
3699 pub fn to_json(&self) -> Result<serde_json::Value, PolicyToJsonError> {
3701 let est = self.lossless.est(|| self.ast.clone().into())?;
3702 serde_json::to_value(est).map_err(Into::into)
3703 }
3704
3705 pub fn to_cedar(&self) -> String {
3714 match &self.lossless {
3715 LosslessTemplate::Empty | LosslessTemplate::Est(_) | LosslessTemplate::Pst(_) => {
3716 self.ast.to_string()
3717 }
3718 LosslessTemplate::Text(text) => text.clone(),
3719 }
3720 }
3721
3722 pub fn get_valid_request_envs(&self, s: &Schema) -> impl Iterator<Item = RequestEnv> {
3727 get_valid_request_envs(&self.ast, s)
3728 }
3729}
3730
3731impl std::fmt::Display for Template {
3732 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3733 self.lossless.fmt(|| self.ast.clone().into(), f)
3735 }
3736}
3737
3738impl FromStr for Template {
3739 type Err = ParseErrors;
3740
3741 fn from_str(src: &str) -> Result<Self, Self::Err> {
3742 Self::parse(None, src)
3743 }
3744}
3745
3746#[derive(Debug, Clone, PartialEq, Eq)]
3748pub enum PrincipalConstraint {
3749 Any,
3751 In(EntityUid),
3753 Eq(EntityUid),
3755 Is(EntityTypeName),
3757 IsIn(EntityTypeName, EntityUid),
3759}
3760
3761#[derive(Debug, Clone, PartialEq, Eq)]
3763pub enum TemplatePrincipalConstraint {
3764 Any,
3766 In(Option<EntityUid>),
3769 Eq(Option<EntityUid>),
3772 Is(EntityTypeName),
3774 IsIn(EntityTypeName, Option<EntityUid>),
3777}
3778
3779impl TemplatePrincipalConstraint {
3780 pub fn has_slot(&self) -> bool {
3782 match self {
3783 Self::Any | Self::Is(_) => false,
3784 Self::In(o) | Self::Eq(o) | Self::IsIn(_, o) => o.is_none(),
3785 }
3786 }
3787}
3788
3789#[derive(Debug, Clone, PartialEq, Eq)]
3791pub enum ActionConstraint {
3792 Any,
3794 In(Vec<EntityUid>),
3796 Eq(EntityUid),
3798}
3799
3800#[derive(Debug, Clone, PartialEq, Eq)]
3802pub enum ResourceConstraint {
3803 Any,
3805 In(EntityUid),
3807 Eq(EntityUid),
3809 Is(EntityTypeName),
3811 IsIn(EntityTypeName, EntityUid),
3813}
3814
3815#[derive(Debug, Clone, PartialEq, Eq)]
3817pub enum TemplateResourceConstraint {
3818 Any,
3820 In(Option<EntityUid>),
3823 Eq(Option<EntityUid>),
3826 Is(EntityTypeName),
3828 IsIn(EntityTypeName, Option<EntityUid>),
3831}
3832
3833impl TemplateResourceConstraint {
3834 pub fn has_slot(&self) -> bool {
3836 match self {
3837 Self::Any | Self::Is(_) => false,
3838 Self::In(o) | Self::Eq(o) | Self::IsIn(_, o) => o.is_none(),
3839 }
3840 }
3841}
3842
3843#[derive(Debug, Clone)]
3845pub struct Policy {
3846 pub(crate) ast: ast::Policy,
3849 pub(crate) lossless: LosslessPolicy,
3858}
3859
3860impl PartialEq for Policy {
3861 fn eq(&self, other: &Self) -> bool {
3862 self.ast.eq(&other.ast)
3864 }
3865}
3866impl Eq for Policy {}
3867
3868#[doc(hidden)] impl AsRef<ast::Policy> for Policy {
3870 fn as_ref(&self) -> &ast::Policy {
3871 &self.ast
3872 }
3873}
3874
3875#[doc(hidden)]
3876impl From<ast::Policy> for Policy {
3877 fn from(policy: ast::Policy) -> Self {
3878 Self::from_ast(policy)
3879 }
3880}
3881
3882#[doc(hidden)]
3883impl From<ast::StaticPolicy> for Policy {
3884 fn from(policy: ast::StaticPolicy) -> Self {
3885 ast::Policy::from(policy).into()
3886 }
3887}
3888
3889impl Policy {
3890 pub fn from_pst(pst_policy: pst::Policy) -> Result<Self, pst::PstConstructionError> {
3893 let ast = ast::Policy::try_from(pst_policy.clone())?;
3894 Ok(Self {
3895 ast,
3896 lossless: LosslessPolicy::Pst(pst_policy),
3897 })
3898 }
3899
3900 pub fn template_id(&self) -> Option<&PolicyId> {
3903 if self.is_static() {
3904 None
3905 } else {
3906 Some(PolicyId::ref_cast(self.ast.template().id()))
3907 }
3908 }
3909
3910 pub fn template_links(&self) -> Option<HashMap<SlotId, EntityUid>> {
3913 if self.is_static() {
3914 None
3915 } else {
3916 let wrapped_vals: HashMap<SlotId, EntityUid> = self
3917 .ast
3918 .env()
3919 .iter()
3920 .map(|(key, value)| ((*key).into(), value.clone().into()))
3921 .collect();
3922 Some(wrapped_vals)
3923 }
3924 }
3925
3926 pub fn effect(&self) -> Effect {
3928 self.ast.effect()
3929 }
3930
3931 pub fn has_non_scope_constraint(&self) -> bool {
3933 self.ast.non_scope_constraints().is_some()
3934 }
3935
3936 pub fn annotation(&self, key: impl AsRef<str>) -> Option<&str> {
3941 self.ast
3942 .annotation(&key.as_ref().parse().ok()?)
3943 .map(AsRef::as_ref)
3944 }
3945
3946 pub fn annotations(&self) -> impl Iterator<Item = (&str, &str)> {
3950 self.ast
3951 .annotations()
3952 .map(|(k, v)| (k.as_ref(), v.as_ref()))
3953 }
3954
3955 pub fn id(&self) -> &PolicyId {
3957 PolicyId::ref_cast(self.ast.id())
3958 }
3959
3960 #[must_use]
3962 pub fn new_id(&self, id: PolicyId) -> Self {
3963 Self {
3964 ast: self.ast.new_id(id.clone().into()),
3965 lossless: self.lossless.new_id(id),
3966 }
3967 }
3968
3969 pub fn is_static(&self) -> bool {
3971 self.ast.is_static()
3972 }
3973
3974 pub fn principal_constraint(&self) -> PrincipalConstraint {
3976 let slot_id = ast::SlotId::principal();
3977 match self.ast.template().principal_constraint().as_inner() {
3978 ast::PrincipalOrResourceConstraint::Any => PrincipalConstraint::Any,
3979 ast::PrincipalOrResourceConstraint::In(eref) => {
3980 PrincipalConstraint::In(self.convert_entity_reference(eref, slot_id).clone())
3981 }
3982 ast::PrincipalOrResourceConstraint::Eq(eref) => {
3983 PrincipalConstraint::Eq(self.convert_entity_reference(eref, slot_id).clone())
3984 }
3985 ast::PrincipalOrResourceConstraint::Is(entity_type) => {
3986 PrincipalConstraint::Is(entity_type.as_ref().clone().into())
3987 }
3988 ast::PrincipalOrResourceConstraint::IsIn(entity_type, eref) => {
3989 PrincipalConstraint::IsIn(
3990 entity_type.as_ref().clone().into(),
3991 self.convert_entity_reference(eref, slot_id).clone(),
3992 )
3993 }
3994 }
3995 }
3996
3997 pub fn action_constraint(&self) -> ActionConstraint {
3999 match self.ast.template().action_constraint() {
4001 ast::ActionConstraint::Any => ActionConstraint::Any,
4002 ast::ActionConstraint::In(ids) => ActionConstraint::In(
4003 ids.iter()
4004 .map(|euid| EntityUid::ref_cast(euid.as_ref()))
4005 .cloned()
4006 .collect(),
4007 ),
4008 ast::ActionConstraint::Eq(id) => ActionConstraint::Eq(EntityUid::ref_cast(id).clone()),
4009 #[cfg(feature = "tolerant-ast")]
4010 #[expect(clippy::unimplemented, reason = "experimental feature")]
4011 ast::ActionConstraint::ErrorConstraint => {
4012 unimplemented!("internal ErrorConstraint cannot be represented in the public API")
4013 }
4014 }
4015 }
4016
4017 pub fn resource_constraint(&self) -> ResourceConstraint {
4019 let slot_id = ast::SlotId::resource();
4020 match self.ast.template().resource_constraint().as_inner() {
4021 ast::PrincipalOrResourceConstraint::Any => ResourceConstraint::Any,
4022 ast::PrincipalOrResourceConstraint::In(eref) => {
4023 ResourceConstraint::In(self.convert_entity_reference(eref, slot_id).clone())
4024 }
4025 ast::PrincipalOrResourceConstraint::Eq(eref) => {
4026 ResourceConstraint::Eq(self.convert_entity_reference(eref, slot_id).clone())
4027 }
4028 ast::PrincipalOrResourceConstraint::Is(entity_type) => {
4029 ResourceConstraint::Is(entity_type.as_ref().clone().into())
4030 }
4031 ast::PrincipalOrResourceConstraint::IsIn(entity_type, eref) => {
4032 ResourceConstraint::IsIn(
4033 entity_type.as_ref().clone().into(),
4034 self.convert_entity_reference(eref, slot_id).clone(),
4035 )
4036 }
4037 }
4038 }
4039
4040 fn convert_entity_reference<'a>(
4047 &'a self,
4048 r: &'a ast::EntityReference,
4049 slot: ast::SlotId,
4050 ) -> &'a EntityUid {
4051 match r {
4052 ast::EntityReference::EUID(euid) => EntityUid::ref_cast(euid),
4053 #[expect(
4054 clippy::unwrap_used,
4055 reason = "This `unwrap` here is safe due the invariant (values total map) on policies"
4056 )]
4057 ast::EntityReference::Slot(_) => {
4058 EntityUid::ref_cast(self.ast.env().get(&slot).unwrap())
4059 }
4060 }
4061 }
4062
4063 pub fn parse(id: Option<PolicyId>, policy_src: impl AsRef<str>) -> Result<Self, ParseErrors> {
4072 let inline_ast = parser::parse_policy(id.map(Into::into), policy_src.as_ref())?;
4073 let (_, ast) = ast::Template::link_static_policy(inline_ast);
4074 Ok(Self {
4075 ast,
4076 lossless: LosslessPolicy::policy_or_template_text(Some(policy_src.as_ref())),
4077 })
4078 }
4079
4080 pub fn from_json(
4146 id: Option<PolicyId>,
4147 json: serde_json::Value,
4148 ) -> Result<Self, PolicyFromJsonError> {
4149 let est: est::Policy = serde_json::from_value(json)
4150 .map_err(|e| entities_json_errors::JsonDeserializationError::Serde(e.into()))
4151 .map_err(cedar_policy_core::est::FromJsonError::from)?;
4152 Self::from_est(id, est)
4153 }
4154
4155 pub fn get_valid_request_envs(&self, s: &Schema) -> impl Iterator<Item = RequestEnv> {
4160 get_valid_request_envs(self.ast.template(), s)
4161 }
4162
4163 pub fn entity_literals(&self) -> Vec<EntityUid> {
4165 self.ast
4166 .condition()
4167 .subexpressions()
4168 .filter_map(|e| match e.expr_kind() {
4169 cedar_policy_core::ast::ExprKind::Lit(
4170 cedar_policy_core::ast::Literal::EntityUID(euid),
4171 ) => Some(EntityUid((*euid).as_ref().clone())),
4172 _ => None,
4173 })
4174 .collect()
4175 }
4176
4177 pub fn sub_entity_literals(
4180 &self,
4181 mapping: BTreeMap<EntityUid, EntityUid>,
4182 ) -> Result<Self, PolicyFromJsonError> {
4183 #[expect(
4184 clippy::expect_used,
4185 reason = "This can't fail for a policy that was already constructed"
4186 )]
4187 let cloned_est = self
4188 .lossless
4189 .est(|| self.ast.clone().into())
4190 .expect("Internal error, failed to construct est.");
4191
4192 let mapping = mapping.into_iter().map(|(k, v)| (k.0, v.0)).collect();
4193
4194 #[expect(
4195 clippy::expect_used,
4196 reason = "This can't fail for a policy that was already constructed"
4197 )]
4198 let est = cloned_est
4199 .sub_entity_literals(&mapping)
4200 .expect("Internal error, failed to sub entity literals.");
4201
4202 let ast = est
4203 .clone()
4204 .try_into_ast_policy(Some(self.ast.id().clone()))?;
4205
4206 Ok(Self {
4207 ast,
4208 lossless: LosslessPolicy::Est(est),
4209 })
4210 }
4211
4212 fn from_est(id: Option<PolicyId>, est: est::Policy) -> Result<Self, PolicyFromJsonError> {
4213 Ok(Self {
4214 ast: est.clone().try_into_ast_policy(id.map(PolicyId::into))?,
4215 lossless: LosslessPolicy::Est(est),
4216 })
4217 }
4218
4219 pub fn to_json(&self) -> Result<serde_json::Value, PolicyToJsonError> {
4238 let est = self.lossless.est(|| self.ast.clone().into())?;
4239 serde_json::to_value(est).map_err(Into::into)
4240 }
4241
4242 pub fn to_cedar(&self) -> Option<String> {
4257 match &self.lossless {
4258 LosslessPolicy::Empty | LosslessPolicy::Est(_) | LosslessPolicy::Pst(_) => {
4259 Some(self.ast.to_string())
4260 }
4261 LosslessPolicy::Text { text, slots } => {
4262 if slots.is_empty() {
4263 Some(text.clone())
4264 } else {
4265 None
4266 }
4267 }
4268 }
4269 }
4270
4271 pub fn to_pst(&self) -> Result<pst::Policy, pst::PstConstructionError> {
4273 self.lossless
4274 .pst(|| pst::Policy::try_from(self.ast.clone()))
4275 .map(|p| p.new_id(self.ast.id().clone().into()))
4276 }
4277
4278 pub fn try_into_pst(self) -> Result<pst::Policy, pst::PstConstructionError> {
4281 self.lossless
4282 .try_into_pst(|| pst::Policy::try_from(self.ast.clone()))
4283 }
4284
4285 #[doc = include_str!("../experimental_warning.md")]
4287 #[cfg(feature = "partial-eval")]
4288 pub fn unknown_entities(&self) -> HashSet<EntityUid> {
4289 self.ast
4290 .unknown_entities()
4291 .into_iter()
4292 .map(Into::into)
4293 .collect()
4294 }
4295
4296 pub(crate) fn from_ast(ast: ast::Policy) -> Self {
4302 Self {
4318 ast,
4319 lossless: LosslessPolicy::Empty,
4320 }
4321 }
4322}
4323
4324impl std::fmt::Display for Policy {
4325 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
4326 self.lossless.fmt(|| self.ast.clone().into(), f)
4328 }
4329}
4330
4331impl FromStr for Policy {
4332 type Err = ParseErrors;
4333 fn from_str(policy: &str) -> Result<Self, Self::Err> {
4341 Self::parse(None, policy)
4342 }
4343}
4344
4345#[derive(Debug, Clone)]
4348pub(crate) enum LosslessTemplate {
4349 Empty,
4351 Est(est::Policy),
4353 Pst(pst::Template),
4355 Text(String),
4357}
4358
4359impl LosslessTemplate {
4360 fn from_text(text: Option<impl Into<String>>) -> Self {
4362 text.map_or(Self::Empty, |text| Self::Text(text.into()))
4363 }
4364
4365 fn new_id(&self, id: PolicyId) -> Self {
4368 match self {
4369 Self::Pst(pst) => {
4370 let mut pst = pst.clone();
4371 pst.id = id.into();
4372 Self::Pst(pst)
4373 }
4374 other => other.clone(),
4375 }
4376 }
4377
4378 fn est(
4380 &self,
4381 fallback_est: impl FnOnce() -> est::Policy,
4382 ) -> Result<est::Policy, PolicyToJsonError> {
4383 match self {
4384 Self::Empty => Ok(fallback_est()),
4385 Self::Est(est) => Ok(est.clone()),
4386 Self::Pst(pst) => Ok(pst.clone().try_into()?),
4387 Self::Text(text) => {
4388 Ok(parser::parse_policy_or_template_to_est(text).map_err(ParseErrors::from)?)
4389 }
4390 }
4391 }
4392
4393 fn pst(
4395 &self,
4396 fallback_pst: impl FnOnce() -> Result<pst::Template, pst::PstConstructionError>,
4397 ) -> Result<pst::Template, pst::PstConstructionError> {
4398 match self {
4399 Self::Empty => fallback_pst(),
4400 Self::Est(est) => Ok(est.clone().try_into()?),
4401 Self::Pst(pst) => Ok(pst.clone()),
4402 Self::Text(text) => Ok(parser::parse_policy_or_template_to_est(text)?.try_into()?),
4403 }
4404 }
4405
4406 fn try_into_pst(
4408 self,
4409 fallback_pst: impl FnOnce() -> Result<pst::Template, pst::PstConstructionError>,
4410 ) -> Result<pst::Template, pst::PstConstructionError> {
4411 match self {
4412 Self::Empty => fallback_pst(),
4413 Self::Est(est) => Ok(est.try_into()?),
4414 Self::Pst(pst) => Ok(pst),
4415 Self::Text(text) => Ok(parser::parse_policy_or_template_to_est(&text)?.try_into()?),
4416 }
4417 }
4418
4419 fn link<'a>(
4421 self,
4422 link_id: ast::PolicyID,
4423 vals: impl IntoIterator<Item = (ast::SlotId, &'a ast::EntityUID)>,
4424 ) -> Result<LosslessPolicy, est::LinkingError> {
4425 match self {
4426 Self::Empty => Ok(LosslessPolicy::Empty),
4427 Self::Est(est) => {
4428 let unwrapped_vals: HashMap<
4429 ast::SlotId,
4430 cedar_policy_core::entities::EntityUidJson,
4431 > = vals.into_iter().map(|(k, v)| (k, v.into())).collect();
4432 Ok(LosslessPolicy::Est(est.link(&unwrapped_vals)?))
4433 }
4434 Self::Pst(template) => {
4435 let values: HashMap<pst::SlotId, pst::EntityUID> = vals
4436 .into_iter()
4437 .map(|(k, v)| (k.into(), v.clone().into()))
4438 .collect();
4439 let pst_policy = pst::LinkedPolicy::new(Arc::new(template), values, link_id.into())
4440 .map_err(est::LinkingError::from)?;
4441 Ok(LosslessPolicy::Pst(pst::Policy::Linked(pst_policy)))
4442 }
4443 Self::Text(text) => {
4444 let slots = vals.into_iter().map(|(k, v)| (k, v.clone())).collect();
4445 Ok(LosslessPolicy::Text { text, slots })
4446 }
4447 }
4448 }
4449
4450 fn fmt(
4451 &self,
4452 fallback_est: impl FnOnce() -> est::Policy,
4453 f: &mut std::fmt::Formatter<'_>,
4454 ) -> std::fmt::Result {
4455 match self {
4456 Self::Empty => match self.est(fallback_est) {
4457 Ok(est) => write!(f, "{est}"),
4458 Err(e) => write!(f, "<invalid policy: {e}>"),
4459 },
4460 Self::Pst(pst) => write!(f, "{pst}"), Self::Est(est) => write!(f, "{est}"),
4462 Self::Text(text) => write!(f, "{text}"),
4463 }
4464 }
4465}
4466
4467#[derive(Debug, Clone)]
4470pub(crate) enum LosslessPolicy {
4471 Empty,
4473 Est(est::Policy),
4475 Pst(pst::Policy),
4477 Text {
4479 text: String,
4481 slots: HashMap<ast::SlotId, ast::EntityUID>,
4484 },
4485}
4486
4487impl LosslessPolicy {
4488 fn policy_or_template_text(text: Option<impl Into<String>>) -> Self {
4490 text.map_or(Self::Empty, |text| Self::Text {
4491 text: text.into(),
4492 slots: HashMap::new(),
4493 })
4494 }
4495
4496 fn new_id(&self, id: PolicyId) -> Self {
4499 match self {
4500 Self::Pst(pst) => Self::Pst(pst.new_id(id.into())),
4501 other => other.clone(),
4502 }
4503 }
4504
4505 fn est(
4507 &self,
4508 fallback_est: impl FnOnce() -> est::Policy,
4509 ) -> Result<est::Policy, PolicyToJsonError> {
4510 match self {
4511 Self::Empty => Ok(fallback_est()),
4512 Self::Est(est) => Ok(est.clone()),
4513 Self::Pst(pst) => {
4514 match pst {
4517 pst::Policy::Static(sp) => Ok(sp.body().clone().try_into()?),
4518 pst::Policy::Linked(lp) => {
4519 let static_policy = lp.into_static_policy()?;
4520 Ok(static_policy.body().clone().try_into()?)
4521 }
4522 }
4523 }
4524 Self::Text { text, slots } => {
4525 let est =
4526 parser::parse_policy_or_template_to_est(text).map_err(ParseErrors::from)?;
4527 if slots.is_empty() {
4528 Ok(est)
4529 } else {
4530 let unwrapped_vals = slots.iter().map(|(k, v)| (*k, v.into())).collect();
4531 Ok(est.link(&unwrapped_vals)?)
4532 }
4533 }
4534 }
4535 }
4536
4537 fn pst(
4539 &self,
4540 fallback_pst: impl FnOnce() -> Result<pst::Policy, pst::PstConstructionError>,
4541 ) -> Result<pst::Policy, pst::PstConstructionError> {
4542 match self {
4543 Self::Empty => fallback_pst(),
4544 Self::Est(est) => {
4545 let template: pst::Template = est.clone().try_into()?;
4546 Ok(pst::Policy::Static(pst::StaticPolicy::try_from(template)?))
4547 }
4548 Self::Pst(pst) => Ok(pst.clone()),
4549 Self::Text { text, slots } => {
4550 let template: pst::Template =
4551 parser::parse_policy_or_template_to_est(text)?.try_into()?;
4552 if slots.is_empty() {
4553 Ok(pst::Policy::Static(pst::StaticPolicy::try_from(template)?))
4554 } else {
4555 let pst_vals: HashMap<pst::SlotId, pst::EntityUID> = slots
4556 .iter()
4557 .map(|(k, v)| ((*k).into(), v.clone().into()))
4558 .collect();
4559 let static_policy = template.link(&pst_vals)?;
4560 Ok(pst::Policy::Static(static_policy))
4561 }
4562 }
4563 }
4564 }
4565
4566 fn try_into_pst(
4568 self,
4569 fallback_pst: impl FnOnce() -> Result<pst::Policy, pst::PstConstructionError>,
4570 ) -> Result<pst::Policy, pst::PstConstructionError> {
4571 match self {
4572 Self::Empty => fallback_pst(),
4573 Self::Est(est) => {
4574 let template: pst::Template = est.try_into()?;
4575 Ok(pst::Policy::Static(pst::StaticPolicy::try_from(template)?))
4576 }
4577 Self::Pst(pst) => Ok(pst),
4578 Self::Text { text, slots } => {
4579 let template: pst::Template =
4580 parser::parse_policy_or_template_to_est(&text)?.try_into()?;
4581 if slots.is_empty() {
4582 Ok(pst::Policy::Static(pst::StaticPolicy::try_from(template)?))
4583 } else {
4584 let pst_vals: HashMap<pst::SlotId, pst::EntityUID> = slots
4585 .into_iter()
4586 .map(|(k, v)| (pst::SlotId::from(k), v.into()))
4587 .collect();
4588 let static_policy = template.link(&pst_vals)?;
4589 Ok(pst::Policy::Static(static_policy))
4590 }
4591 }
4592 }
4593 }
4594
4595 fn fmt(
4596 &self,
4597 fallback_est: impl FnOnce() -> est::Policy,
4598 f: &mut std::fmt::Formatter<'_>,
4599 ) -> std::fmt::Result {
4600 match self {
4601 Self::Empty => match self.est(fallback_est) {
4602 Ok(est) => write!(f, "{est}"),
4603 Err(e) => write!(f, "<invalid policy: {e}>"),
4604 },
4605 Self::Pst(pst) => write!(f, "{pst}"), Self::Est(est) => write!(f, "{est}"),
4607 Self::Text { text, slots } => {
4608 if slots.is_empty() {
4609 write!(f, "{text}")
4610 } else {
4611 match self.est(fallback_est) {
4612 Ok(est) => write!(f, "{est}"),
4613 Err(e) => write!(f, "<invalid linked policy: {e}>"),
4614 }
4615 }
4616 }
4617 }
4618 }
4619}
4620
4621#[repr(transparent)]
4623#[derive(Debug, Clone, RefCast)]
4624pub struct Expression(pub(crate) ast::Expr);
4625
4626#[doc(hidden)] impl AsRef<ast::Expr> for Expression {
4628 fn as_ref(&self) -> &ast::Expr {
4629 &self.0
4630 }
4631}
4632
4633#[doc(hidden)]
4634impl From<ast::Expr> for Expression {
4635 fn from(expr: ast::Expr) -> Self {
4636 Self(expr)
4637 }
4638}
4639
4640impl Expression {
4641 pub fn new_string(value: String) -> Self {
4643 Self(ast::Expr::val(value))
4644 }
4645
4646 pub fn new_bool(value: bool) -> Self {
4648 Self(ast::Expr::val(value))
4649 }
4650
4651 pub fn new_long(value: ast::Integer) -> Self {
4653 Self(ast::Expr::val(value))
4654 }
4655
4656 pub fn new_record(
4660 fields: impl IntoIterator<Item = (String, Self)>,
4661 ) -> Result<Self, ExpressionConstructionError> {
4662 Ok(Self(ast::Expr::record(
4663 fields.into_iter().map(|(k, v)| (SmolStr::from(k), v.0)),
4664 )?))
4665 }
4666
4667 pub fn new_set(values: impl IntoIterator<Item = Self>) -> Self {
4669 Self(ast::Expr::set(values.into_iter().map(|v| v.0)))
4670 }
4671
4672 pub fn new_ip(src: impl AsRef<str>) -> Self {
4676 let src_expr = ast::Expr::val(src.as_ref());
4677 Self(ast::Expr::call_extension_fn(
4678 ip_extension_name(),
4679 vec![src_expr],
4680 ))
4681 }
4682
4683 pub fn new_decimal(src: impl AsRef<str>) -> Self {
4687 let src_expr = ast::Expr::val(src.as_ref());
4688 Self(ast::Expr::call_extension_fn(
4689 decimal_extension_name(),
4690 vec![src_expr],
4691 ))
4692 }
4693
4694 pub fn new_datetime(src: impl AsRef<str>) -> Self {
4698 let src_expr = ast::Expr::val(src.as_ref());
4699 Self(ast::Expr::call_extension_fn(
4700 datetime_extension_name(),
4701 vec![src_expr],
4702 ))
4703 }
4704
4705 pub fn new_duration(src: impl AsRef<str>) -> Self {
4709 let src_expr = ast::Expr::val(src.as_ref());
4710 Self(ast::Expr::call_extension_fn(
4711 duration_extension_name(),
4712 vec![src_expr],
4713 ))
4714 }
4715}
4716
4717#[cfg(test)]
4718impl Expression {
4719 pub(crate) fn into_inner(self) -> ast::Expr {
4722 self.0
4723 }
4724}
4725
4726impl FromStr for Expression {
4727 type Err = ParseErrors;
4728
4729 fn from_str(expression: &str) -> Result<Self, Self::Err> {
4731 ast::Expr::from_str(expression)
4732 .map(Expression)
4733 .map_err(Into::into)
4734 }
4735}
4736
4737impl std::fmt::Display for Expression {
4738 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
4739 write!(f, "{}", &self.0)
4740 }
4741}
4742
4743#[repr(transparent)]
4759#[derive(Debug, Clone, RefCast, PartialEq, Eq)]
4760pub struct RestrictedExpression(pub(crate) ast::RestrictedExpr);
4761
4762#[doc(hidden)] impl AsRef<ast::RestrictedExpr> for RestrictedExpression {
4764 fn as_ref(&self) -> &ast::RestrictedExpr {
4765 &self.0
4766 }
4767}
4768
4769#[doc(hidden)]
4770impl From<ast::RestrictedExpr> for RestrictedExpression {
4771 fn from(expr: ast::RestrictedExpr) -> Self {
4772 Self(expr)
4773 }
4774}
4775
4776impl RestrictedExpression {
4777 pub fn new_string(value: String) -> Self {
4779 Self(ast::RestrictedExpr::val(value))
4780 }
4781
4782 pub fn new_bool(value: bool) -> Self {
4784 Self(ast::RestrictedExpr::val(value))
4785 }
4786
4787 pub fn new_long(value: ast::Integer) -> Self {
4789 Self(ast::RestrictedExpr::val(value))
4790 }
4791
4792 pub fn new_entity_uid(value: EntityUid) -> Self {
4794 Self(ast::RestrictedExpr::val(ast::EntityUID::from(value)))
4795 }
4796
4797 pub fn new_record(
4801 fields: impl IntoIterator<Item = (String, Self)>,
4802 ) -> Result<Self, ExpressionConstructionError> {
4803 Ok(Self(ast::RestrictedExpr::record(
4804 fields.into_iter().map(|(k, v)| (SmolStr::from(k), v.0)),
4805 )?))
4806 }
4807
4808 pub fn new_set(values: impl IntoIterator<Item = Self>) -> Self {
4810 Self(ast::RestrictedExpr::set(values.into_iter().map(|v| v.0)))
4811 }
4812
4813 pub fn new_ip(src: impl AsRef<str>) -> Self {
4817 let src_expr = ast::RestrictedExpr::val(src.as_ref());
4818 Self(ast::RestrictedExpr::call_extension_fn(
4819 ip_extension_name(),
4820 [src_expr],
4821 ))
4822 }
4823
4824 pub fn new_decimal(src: impl AsRef<str>) -> Self {
4828 let src_expr = ast::RestrictedExpr::val(src.as_ref());
4829 Self(ast::RestrictedExpr::call_extension_fn(
4830 decimal_extension_name(),
4831 [src_expr],
4832 ))
4833 }
4834
4835 pub fn new_datetime(src: impl AsRef<str>) -> Self {
4839 let src_expr = ast::RestrictedExpr::val(src.as_ref());
4840 Self(ast::RestrictedExpr::call_extension_fn(
4841 datetime_extension_name(),
4842 [src_expr],
4843 ))
4844 }
4845
4846 pub fn new_duration(src: impl AsRef<str>) -> Self {
4850 let src_expr = ast::RestrictedExpr::val(src.as_ref());
4851 Self(ast::RestrictedExpr::call_extension_fn(
4852 duration_extension_name(),
4853 [src_expr],
4854 ))
4855 }
4856
4857 #[cfg(feature = "partial-eval")]
4859 pub fn new_unknown(name: impl AsRef<str>) -> Self {
4860 Self(ast::RestrictedExpr::unknown(ast::Unknown::new_untyped(
4861 name.as_ref(),
4862 )))
4863 }
4864}
4865
4866#[cfg(test)]
4867impl RestrictedExpression {
4868 pub(crate) fn into_inner(self) -> ast::RestrictedExpr {
4871 self.0
4872 }
4873}
4874
4875fn decimal_extension_name() -> ast::Name {
4876 #[expect(
4877 clippy::unwrap_used,
4878 reason = "This is a constant and is known to be safe, verified by a test"
4879 )]
4880 ast::Name::unqualified_name("decimal".parse().unwrap())
4881}
4882
4883fn ip_extension_name() -> ast::Name {
4884 #[expect(
4885 clippy::unwrap_used,
4886 reason = "This is a constant and is known to be safe, verified by a test"
4887 )]
4888 ast::Name::unqualified_name("ip".parse().unwrap())
4889}
4890
4891fn datetime_extension_name() -> ast::Name {
4892 #[expect(
4893 clippy::unwrap_used,
4894 reason = "This is a constant and is known to be safe, verified by a test"
4895 )]
4896 ast::Name::unqualified_name("datetime".parse().unwrap())
4897}
4898
4899fn duration_extension_name() -> ast::Name {
4900 #[expect(
4901 clippy::unwrap_used,
4902 reason = "This is a constant and is known to be safe, verified by a test"
4903 )]
4904 ast::Name::unqualified_name("duration".parse().unwrap())
4905}
4906
4907impl FromStr for RestrictedExpression {
4908 type Err = RestrictedExpressionParseError;
4909
4910 fn from_str(expression: &str) -> Result<Self, Self::Err> {
4912 ast::RestrictedExpr::from_str(expression)
4913 .map(RestrictedExpression)
4914 .map_err(Into::into)
4915 }
4916}
4917
4918#[doc = include_str!("../experimental_warning.md")]
4923#[cfg(feature = "partial-eval")]
4924#[derive(Debug, Clone)]
4925pub struct RequestBuilder<S> {
4926 principal: ast::EntityUIDEntry,
4927 action: ast::EntityUIDEntry,
4928 resource: ast::EntityUIDEntry,
4929 context: Option<ast::Context>,
4931 schema: S,
4932}
4933
4934#[doc = include_str!("../experimental_warning.md")]
4936#[cfg(feature = "partial-eval")]
4937#[derive(Debug, Clone, Copy)]
4938pub struct UnsetSchema;
4939
4940#[cfg(feature = "partial-eval")]
4941impl Default for RequestBuilder<UnsetSchema> {
4942 fn default() -> Self {
4943 Self {
4944 principal: ast::EntityUIDEntry::unknown(),
4945 action: ast::EntityUIDEntry::unknown(),
4946 resource: ast::EntityUIDEntry::unknown(),
4947 context: None,
4948 schema: UnsetSchema,
4949 }
4950 }
4951}
4952
4953#[cfg(feature = "partial-eval")]
4954impl<S> RequestBuilder<S> {
4955 #[must_use]
4960 pub fn principal(self, principal: EntityUid) -> Self {
4961 Self {
4962 principal: ast::EntityUIDEntry::known(principal.into(), None),
4963 ..self
4964 }
4965 }
4966
4967 #[must_use]
4971 pub fn unknown_principal_with_type(self, principal_type: EntityTypeName) -> Self {
4972 Self {
4973 principal: ast::EntityUIDEntry::unknown_with_type(principal_type.0, None),
4974 ..self
4975 }
4976 }
4977
4978 #[must_use]
4983 pub fn action(self, action: EntityUid) -> Self {
4984 Self {
4985 action: ast::EntityUIDEntry::known(action.into(), None),
4986 ..self
4987 }
4988 }
4989
4990 #[must_use]
4995 pub fn resource(self, resource: EntityUid) -> Self {
4996 Self {
4997 resource: ast::EntityUIDEntry::known(resource.into(), None),
4998 ..self
4999 }
5000 }
5001
5002 #[must_use]
5006 pub fn unknown_resource_with_type(self, resource_type: EntityTypeName) -> Self {
5007 Self {
5008 resource: ast::EntityUIDEntry::unknown_with_type(resource_type.0, None),
5009 ..self
5010 }
5011 }
5012
5013 #[must_use]
5015 pub fn context(self, context: Context) -> Self {
5016 Self {
5017 context: Some(context.0),
5018 ..self
5019 }
5020 }
5021}
5022
5023#[cfg(feature = "partial-eval")]
5024impl RequestBuilder<UnsetSchema> {
5025 #[must_use]
5027 pub fn schema(self, schema: &Schema) -> RequestBuilder<&Schema> {
5028 RequestBuilder {
5029 principal: self.principal,
5030 action: self.action,
5031 resource: self.resource,
5032 context: self.context,
5033 schema,
5034 }
5035 }
5036
5037 pub fn build(self) -> Request {
5039 Request(ast::Request::new_unchecked(
5040 self.principal,
5041 self.action,
5042 self.resource,
5043 self.context,
5044 ))
5045 }
5046}
5047
5048#[cfg(feature = "partial-eval")]
5049impl RequestBuilder<&Schema> {
5050 pub fn build(self) -> Result<Request, RequestValidationError> {
5052 Ok(Request(ast::Request::new_with_unknowns(
5053 self.principal,
5054 self.action,
5055 self.resource,
5056 self.context,
5057 Some(&self.schema.0),
5058 Extensions::all_available(),
5059 )?))
5060 }
5061}
5062
5063#[repr(transparent)]
5072#[derive(Debug, Clone, RefCast)]
5073pub struct Request(pub(crate) ast::Request);
5074
5075#[doc(hidden)] impl AsRef<ast::Request> for Request {
5077 fn as_ref(&self) -> &ast::Request {
5078 &self.0
5079 }
5080}
5081
5082#[doc(hidden)]
5083impl From<ast::Request> for Request {
5084 fn from(req: ast::Request) -> Self {
5085 Self(req)
5086 }
5087}
5088
5089impl PartialEq for Request {
5090 fn eq(&self, other: &Self) -> bool {
5091 self.principal() == other.principal()
5092 && self.action() == other.action()
5093 && self.resource() == other.resource()
5094 && self.context() == other.context()
5095 }
5096}
5097
5098impl Request {
5099 #[doc = include_str!("../experimental_warning.md")]
5101 #[cfg(feature = "partial-eval")]
5102 pub fn builder() -> RequestBuilder<UnsetSchema> {
5103 RequestBuilder::default()
5104 }
5105
5106 pub fn new(
5119 principal: EntityUid,
5120 action: EntityUid,
5121 resource: EntityUid,
5122 context: Context,
5123 schema: Option<&Schema>,
5124 ) -> Result<Self, RequestValidationError> {
5125 Ok(Self(ast::Request::new(
5126 (principal.into(), None),
5127 (action.into(), None),
5128 (resource.into(), None),
5129 context.0,
5130 schema.map(|schema| &schema.0),
5131 Extensions::all_available(),
5132 )?))
5133 }
5134
5135 pub fn context(&self) -> Option<&Context> {
5138 self.0.context().map(Context::ref_cast)
5139 }
5140
5141 pub fn principal(&self) -> Option<&EntityUid> {
5144 match self.0.principal() {
5145 ast::EntityUIDEntry::Known { euid, .. } => Some(EntityUid::ref_cast(euid.as_ref())),
5146 ast::EntityUIDEntry::Unknown { .. } => None,
5147 }
5148 }
5149
5150 pub fn action(&self) -> Option<&EntityUid> {
5153 match self.0.action() {
5154 ast::EntityUIDEntry::Known { euid, .. } => Some(EntityUid::ref_cast(euid.as_ref())),
5155 ast::EntityUIDEntry::Unknown { .. } => None,
5156 }
5157 }
5158
5159 pub fn resource(&self) -> Option<&EntityUid> {
5162 match self.0.resource() {
5163 ast::EntityUIDEntry::Known { euid, .. } => Some(EntityUid::ref_cast(euid.as_ref())),
5164 ast::EntityUIDEntry::Unknown { .. } => None,
5165 }
5166 }
5167}
5168
5169#[repr(transparent)]
5171#[derive(Debug, Clone, PartialEq, Eq, RefCast)]
5172pub struct Context(ast::Context);
5173
5174#[doc(hidden)] impl AsRef<ast::Context> for Context {
5176 fn as_ref(&self) -> &ast::Context {
5177 &self.0
5178 }
5179}
5180
5181impl Context {
5182 pub fn empty() -> Self {
5189 Self(ast::Context::empty())
5190 }
5191
5192 pub fn from_pairs(
5209 pairs: impl IntoIterator<Item = (String, RestrictedExpression)>,
5210 ) -> Result<Self, ContextCreationError> {
5211 Ok(Self(ast::Context::from_pairs(
5212 pairs.into_iter().map(|(k, v)| (SmolStr::from(k), v.0)),
5213 Extensions::all_available(),
5214 )?))
5215 }
5216
5217 pub fn get(&self, key: &str) -> Option<EvalResult> {
5241 match &self.0 {
5242 ast::Context::Value(map) => map.get(key).map(|v| EvalResult::from(v.clone())),
5243 ast::Context::RestrictedResidual(_) => None,
5244 }
5245 }
5246
5247 pub fn from_json_str(
5277 json: &str,
5278 schema: Option<(&Schema, &EntityUid)>,
5279 ) -> Result<Self, ContextJsonError> {
5280 let schema = schema
5281 .map(|(s, uid)| Self::get_context_schema(s, uid))
5282 .transpose()?;
5283 let context = cedar_policy_core::entities::ContextJsonParser::new(
5284 schema.as_ref(),
5285 Extensions::all_available(),
5286 )
5287 .from_json_str(json)?;
5288 Ok(Self(context))
5289 }
5290
5291 pub fn from_json_value(
5341 json: serde_json::Value,
5342 schema: Option<(&Schema, &EntityUid)>,
5343 ) -> Result<Self, ContextJsonError> {
5344 let schema = schema
5345 .map(|(s, uid)| Self::get_context_schema(s, uid))
5346 .transpose()?;
5347 let context = cedar_policy_core::entities::ContextJsonParser::new(
5348 schema.as_ref(),
5349 Extensions::all_available(),
5350 )
5351 .from_json_value(json)?;
5352 Ok(Self(context))
5353 }
5354
5355 pub fn from_json_file(
5387 json: impl std::io::Read,
5388 schema: Option<(&Schema, &EntityUid)>,
5389 ) -> Result<Self, ContextJsonError> {
5390 let schema = schema
5391 .map(|(s, uid)| Self::get_context_schema(s, uid))
5392 .transpose()?;
5393 let context = cedar_policy_core::entities::ContextJsonParser::new(
5394 schema.as_ref(),
5395 Extensions::all_available(),
5396 )
5397 .from_json_file(json)?;
5398 Ok(Self(context))
5399 }
5400
5401 pub fn to_json_value(
5403 &self,
5404 ) -> Result<serde_json::Value, entities_json_errors::JsonSerializationError> {
5405 self.0.to_json_value()
5406 }
5407
5408 fn get_context_schema(
5410 schema: &Schema,
5411 action: &EntityUid,
5412 ) -> Result<impl ContextSchema, ContextJsonError> {
5413 cedar_policy_core::validator::context_schema_for_action(&schema.0, action.as_ref())
5414 .ok_or_else(|| ContextJsonError::missing_action(action.clone()))
5415 }
5416
5417 pub fn merge(
5421 self,
5422 other_context: impl IntoIterator<Item = (String, RestrictedExpression)>,
5423 ) -> Result<Self, ContextCreationError> {
5424 Self::from_pairs(self.into_iter().chain(other_context))
5425 }
5426
5427 pub fn validate(
5434 &self,
5435 schema: &crate::Schema,
5436 action: &EntityUid,
5437 ) -> std::result::Result<(), RequestValidationError> {
5438 Ok(RequestSchema::validate_context(
5440 &schema.0,
5441 &self.0,
5442 action.as_ref(),
5443 Extensions::all_available(),
5444 )?)
5445 }
5446}
5447
5448mod context {
5450 use super::{ast, RestrictedExpression};
5451
5452 #[derive(Debug)]
5454 pub struct IntoIter {
5455 pub(super) inner: <ast::Context as IntoIterator>::IntoIter,
5456 }
5457
5458 impl Iterator for IntoIter {
5459 type Item = (String, RestrictedExpression);
5460
5461 fn next(&mut self) -> Option<Self::Item> {
5462 self.inner
5463 .next()
5464 .map(|(k, v)| (k.to_string(), RestrictedExpression(v)))
5465 }
5466 }
5467}
5468
5469impl IntoIterator for Context {
5470 type Item = (String, RestrictedExpression);
5471
5472 type IntoIter = context::IntoIter;
5473
5474 fn into_iter(self) -> Self::IntoIter {
5475 Self::IntoIter {
5476 inner: self.0.into_iter(),
5477 }
5478 }
5479}
5480
5481#[doc(hidden)]
5482impl From<ast::Context> for Context {
5483 fn from(c: ast::Context) -> Self {
5484 Self(c)
5485 }
5486}
5487
5488impl std::fmt::Display for Request {
5489 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
5490 write!(f, "{}", self.0)
5491 }
5492}
5493
5494impl std::fmt::Display for Context {
5495 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
5496 write!(f, "{}", self.0)
5497 }
5498}
5499
5500#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
5502pub enum EvalResult {
5503 Bool(bool),
5505 Long(ast::Integer),
5507 String(String),
5509 EntityUid(EntityUid),
5511 Set(Set),
5513 Record(Record),
5515 ExtensionValue(String),
5517 }
5519
5520#[derive(Debug, Clone, Eq, PartialEq, PartialOrd, Ord)]
5522pub struct Set(BTreeSet<EvalResult>);
5523
5524impl Set {
5525 pub fn iter(&self) -> impl Iterator<Item = &EvalResult> {
5527 self.0.iter()
5528 }
5529
5530 pub fn contains(&self, elem: &EvalResult) -> bool {
5532 self.0.contains(elem)
5533 }
5534
5535 pub fn len(&self) -> usize {
5537 self.0.len()
5538 }
5539
5540 pub fn is_empty(&self) -> bool {
5542 self.0.is_empty()
5543 }
5544}
5545
5546#[derive(Debug, Clone, Eq, PartialEq, PartialOrd, Ord)]
5548pub struct Record(BTreeMap<String, EvalResult>);
5549
5550impl Record {
5551 pub fn iter(&self) -> impl Iterator<Item = (&String, &EvalResult)> {
5553 self.0.iter()
5554 }
5555
5556 pub fn contains_attribute(&self, key: impl AsRef<str>) -> bool {
5558 self.0.contains_key(key.as_ref())
5559 }
5560
5561 pub fn get(&self, key: impl AsRef<str>) -> Option<&EvalResult> {
5563 self.0.get(key.as_ref())
5564 }
5565
5566 pub fn len(&self) -> usize {
5568 self.0.len()
5569 }
5570
5571 pub fn is_empty(&self) -> bool {
5573 self.0.is_empty()
5574 }
5575}
5576
5577#[doc(hidden)]
5578impl From<ast::Value> for EvalResult {
5579 fn from(v: ast::Value) -> Self {
5580 match v.value {
5581 ast::ValueKind::Lit(ast::Literal::Bool(b)) => Self::Bool(b),
5582 ast::ValueKind::Lit(ast::Literal::Long(i)) => Self::Long(i),
5583 ast::ValueKind::Lit(ast::Literal::String(s)) => Self::String(s.to_string()),
5584 ast::ValueKind::Lit(ast::Literal::EntityUID(e)) => {
5585 Self::EntityUid(ast::EntityUID::clone(&e).into())
5586 }
5587 ast::ValueKind::Set(set) => Self::Set(Set(set
5588 .authoritative
5589 .iter()
5590 .map(|v| v.clone().into())
5591 .collect())),
5592 ast::ValueKind::Record(record) => Self::Record(Record(
5593 record
5594 .iter()
5595 .map(|(k, v)| (k.to_string(), v.clone().into()))
5596 .collect(),
5597 )),
5598 ast::ValueKind::ExtensionValue(ev) => {
5599 Self::ExtensionValue(RestrictedExpr::from(ev.as_ref().clone()).to_string())
5600 }
5601 }
5602 }
5603}
5604
5605#[doc(hidden)]
5606#[expect(
5607 clippy::fallible_impl_from,
5608 reason = "see the panic safety comments below"
5609)]
5610impl From<EvalResult> for Expression {
5611 fn from(res: EvalResult) -> Self {
5612 match res {
5613 EvalResult::Bool(b) => Self::new_bool(b),
5614 EvalResult::Long(l) => Self::new_long(l),
5615 EvalResult::String(s) => Self::new_string(s),
5616 EvalResult::EntityUid(eid) => {
5617 Self::from(ast::Expr::from(ast::Value::from(ast::EntityUID::from(eid))))
5618 }
5619 EvalResult::Set(set) => Self::new_set(set.iter().cloned().map(Self::from)),
5620 EvalResult::Record(r) =>
5621 {
5622 #[expect(
5623 clippy::unwrap_used,
5624 reason = "record originates from EvalResult so should not panic when reconstructing as an Expression"
5625 )]
5626 Self::new_record(r.iter().map(|(k, v)| (k.clone(), Self::from(v.clone())))).unwrap()
5627 }
5628 EvalResult::ExtensionValue(s) => {
5629 #[expect(
5630 clippy::unwrap_used,
5631 reason = "the string s is constructed using RestrictedExpr::to_string() so should not panic when being parsed back into a RestrictedExpr"
5632 )]
5633 let expr: ast::Expr = ast::RestrictedExpr::from_str(&s).unwrap().into();
5634 Self::from(expr)
5635 }
5636 }
5637 }
5638}
5639
5640impl std::fmt::Display for EvalResult {
5641 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
5642 match self {
5643 Self::Bool(b) => write!(f, "{b}"),
5644 Self::Long(l) => write!(f, "{l}"),
5645 Self::String(s) => write!(f, "\"{}\"", s.escape_debug()),
5646 Self::EntityUid(uid) => write!(f, "{uid}"),
5647 Self::Set(s) => {
5648 write!(f, "[")?;
5649 for (i, ev) in s.iter().enumerate() {
5650 write!(f, "{ev}")?;
5651 if (i + 1) < s.len() {
5652 write!(f, ", ")?;
5653 }
5654 }
5655 write!(f, "]")?;
5656 Ok(())
5657 }
5658 Self::Record(r) => {
5659 write!(f, "{{")?;
5660 for (i, (k, v)) in r.iter().enumerate() {
5661 write!(f, "\"{}\": {v}", k.escape_debug())?;
5662 if (i + 1) < r.len() {
5663 write!(f, ", ")?;
5664 }
5665 }
5666 write!(f, "}}")?;
5667 Ok(())
5668 }
5669 Self::ExtensionValue(s) => write!(f, "{s}"),
5670 }
5671 }
5672}
5673
5674pub fn eval_expression(
5679 request: &Request,
5680 entities: &Entities,
5681 expr: &Expression,
5682) -> Result<EvalResult, EvaluationError> {
5683 let all_ext = Extensions::all_available();
5684 let eval = Evaluator::new(request.0.clone(), &entities.0, all_ext);
5685 Ok(EvalResult::from(
5686 eval.interpret(&expr.0, &ast::SlotEnv::new())?,
5688 ))
5689}
5690
5691#[cfg(test)]
5693mod test_access {
5694 use cedar_policy_core::ast;
5695
5696 use super::*;
5697
5698 fn schema() -> Schema {
5699 let src = r#"
5700 type Task = {
5701 "id": Long,
5702 "name": String,
5703 "state": String,
5704};
5705
5706type T = String;
5707
5708type Tasks = Set<Task>;
5709entity List in [Application] = {
5710 "editors": Team,
5711 "name": String,
5712 "owner": User,
5713 "readers": Team,
5714 "tasks": Tasks,
5715};
5716entity Application;
5717entity User in [Team, Application] = {
5718 "joblevel": Long,
5719 "location": String,
5720};
5721
5722entity CoolList;
5723
5724entity Team in [Team, Application];
5725
5726action Read, Write, Create;
5727
5728action DeleteList, EditShare, UpdateList, CreateTask, UpdateTask, DeleteTask in Write appliesTo {
5729 principal: [User],
5730 resource : [List]
5731};
5732
5733action GetList in Read appliesTo {
5734 principal : [User],
5735 resource : [List, CoolList]
5736};
5737
5738action GetLists in Read appliesTo {
5739 principal : [User],
5740 resource : [Application]
5741};
5742
5743action CreateList in Create appliesTo {
5744 principal : [User],
5745 resource : [Application]
5746};
5747
5748 "#;
5749
5750 src.parse().unwrap()
5751 }
5752
5753 #[test]
5754 fn principals() {
5755 let schema = schema();
5756 let principals = schema.principals().collect::<HashSet<_>>();
5757 assert_eq!(principals.len(), 1);
5758 let user: EntityTypeName = "User".parse().unwrap();
5759 assert!(principals.contains(&user));
5760 let principals = schema.principals().collect::<Vec<_>>();
5761 assert!(principals.len() > 1);
5762 assert!(principals.iter().all(|ety| **ety == user));
5763 assert!(principals.iter().all(|ety| ety.0.loc().is_some()));
5764
5765 let et = ast::EntityType::EntityType(ast::Name::from_normalized_str("User").unwrap());
5766 let et = schema.0.get_entity_type(&et).unwrap();
5767 assert!(et.loc.is_some());
5768 }
5769
5770 #[cfg(feature = "extended-schema")]
5771 #[test]
5772 fn common_types_extended() {
5773 use cool_asserts::assert_matches;
5774
5775 use cedar_policy_core::validator::{types::Type, LocatedCommonType};
5776
5777 let schema = schema();
5778 assert_eq!(schema.0.common_types().collect::<HashSet<_>>().len(), 3);
5779 let task_type = LocatedCommonType {
5780 name: "Task".into(),
5781 name_loc: None,
5782 type_loc: None,
5783 };
5784 assert!(schema.0.common_types().contains(&task_type));
5785
5786 let tasks_type = LocatedCommonType {
5787 name: "Tasks".into(),
5788 name_loc: None,
5789 type_loc: None,
5790 };
5791 assert!(schema.0.common_types().contains(&tasks_type));
5792 assert!(schema.0.common_types().all(|ct| ct.name_loc.is_some()));
5793 assert!(schema.0.common_types().all(|ct| ct.type_loc.is_some()));
5794
5795 let tasks_type = LocatedCommonType {
5796 name: "T".into(),
5797 name_loc: None,
5798 type_loc: None,
5799 };
5800 assert!(schema.0.common_types().contains(&tasks_type));
5801
5802 let et = ast::EntityType::EntityType(ast::Name::from_normalized_str("List").unwrap());
5803 let et = schema.0.get_entity_type(&et).unwrap();
5804 let attrs = et.attributes();
5805
5806 let t = attrs.get_attr("tasks").unwrap();
5808 assert!(t.loc.is_some());
5809 assert_matches!(t.attr_type.as_ref(), cedar_policy_core::validator::types::Type::Set { ref element_type } => {
5810 let el = element_type.as_ref().unwrap();
5811 assert_matches!(el.as_ref(), Type::Record{ attrs, .. } => {
5812 assert!(attrs.get_attr("name").unwrap().loc.is_some());
5813 assert!(attrs.get_attr("id").unwrap().loc.is_some());
5814 assert!(attrs.get_attr("state").unwrap().loc.is_some());
5815 });
5816 });
5817 }
5818
5819 #[cfg(feature = "extended-schema")]
5820 #[test]
5821 fn namespace_extended() {
5822 let schema = schema();
5823 assert_eq!(schema.0.namespaces().collect::<HashSet<_>>().len(), 1);
5824 let default_namespace = schema.0.namespaces().last().unwrap();
5825 assert_eq!(default_namespace.name, SmolStr::from("__cedar"));
5826 assert!(default_namespace.name_loc.is_none());
5827 assert!(default_namespace.def_loc.is_none());
5828 }
5829
5830 #[test]
5831 fn empty_schema_principals_and_resources() {
5832 let empty: Schema = "".parse().unwrap();
5833 assert!(empty.principals().next().is_none());
5834 assert!(empty.resources().next().is_none());
5835 }
5836
5837 #[test]
5838 fn resources() {
5839 let schema = schema();
5840 let resources = schema.resources().cloned().collect::<HashSet<_>>();
5841 let expected: HashSet<EntityTypeName> = HashSet::from([
5842 "List".parse().unwrap(),
5843 "Application".parse().unwrap(),
5844 "CoolList".parse().unwrap(),
5845 ]);
5846 assert_eq!(resources, expected);
5847 assert!(resources.iter().all(|ety| ety.0.loc().is_some()));
5848 }
5849
5850 #[test]
5851 fn principals_for_action() {
5852 let schema = schema();
5853 let delete_list: EntityUid = r#"Action::"DeleteList""#.parse().unwrap();
5854 let delete_user: EntityUid = r#"Action::"DeleteUser""#.parse().unwrap();
5855 let got = schema
5856 .principals_for_action(&delete_list)
5857 .unwrap()
5858 .cloned()
5859 .collect::<Vec<_>>();
5860 assert_eq!(got, vec!["User".parse().unwrap()]);
5861 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
5862 assert!(schema.principals_for_action(&delete_user).is_none());
5863 }
5864
5865 #[test]
5866 fn resources_for_action() {
5867 let schema = schema();
5868 let delete_list: EntityUid = r#"Action::"DeleteList""#.parse().unwrap();
5869 let delete_user: EntityUid = r#"Action::"DeleteUser""#.parse().unwrap();
5870 let create_list: EntityUid = r#"Action::"CreateList""#.parse().unwrap();
5871 let get_list: EntityUid = r#"Action::"GetList""#.parse().unwrap();
5872 let got = schema
5873 .resources_for_action(&delete_list)
5874 .unwrap()
5875 .cloned()
5876 .collect::<Vec<_>>();
5877 assert_eq!(got, vec!["List".parse().unwrap()]);
5878 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
5879 let got = schema
5880 .resources_for_action(&create_list)
5881 .unwrap()
5882 .cloned()
5883 .collect::<Vec<_>>();
5884 assert_eq!(got, vec!["Application".parse().unwrap()]);
5885 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
5886 let got = schema
5887 .resources_for_action(&get_list)
5888 .unwrap()
5889 .cloned()
5890 .collect::<HashSet<_>>();
5891 assert_eq!(
5892 got,
5893 HashSet::from(["List".parse().unwrap(), "CoolList".parse().unwrap()])
5894 );
5895 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
5896 assert!(schema.principals_for_action(&delete_user).is_none());
5897 }
5898
5899 #[test]
5900 fn principal_parents() {
5901 let schema = schema();
5902 let user: EntityTypeName = "User".parse().unwrap();
5903 let parents = schema
5904 .ancestors(&user)
5905 .unwrap()
5906 .cloned()
5907 .collect::<HashSet<_>>();
5908 assert!(parents.iter().all(|ety| ety.0.loc().is_some()));
5909 let expected = HashSet::from(["Team".parse().unwrap(), "Application".parse().unwrap()]);
5910 assert_eq!(parents, expected);
5911 let parents = schema
5912 .ancestors(&"List".parse().unwrap())
5913 .unwrap()
5914 .cloned()
5915 .collect::<HashSet<_>>();
5916 assert!(parents.iter().all(|ety| ety.0.loc().is_some()));
5917 let expected = HashSet::from(["Application".parse().unwrap()]);
5918 assert_eq!(parents, expected);
5919 assert!(schema.ancestors(&"Foo".parse().unwrap()).is_none());
5920 let parents = schema
5921 .ancestors(&"CoolList".parse().unwrap())
5922 .unwrap()
5923 .cloned()
5924 .collect::<HashSet<_>>();
5925 assert!(parents.iter().all(|ety| ety.0.loc().is_some()));
5926 let expected = HashSet::from([]);
5927 assert_eq!(parents, expected);
5928 }
5929
5930 #[test]
5931 fn action_groups() {
5932 let schema = schema();
5933 let groups = schema.action_groups().cloned().collect::<HashSet<_>>();
5934 let expected = ["Read", "Write", "Create"]
5935 .into_iter()
5936 .map(|ty| format!("Action::\"{ty}\"").parse().unwrap())
5937 .collect::<HashSet<EntityUid>>();
5938 #[cfg(feature = "extended-schema")]
5939 assert!(groups.iter().all(|ety| ety.0.loc().is_some()));
5940 assert_eq!(groups, expected);
5941 }
5942
5943 #[test]
5944 fn actions() {
5945 let schema = schema();
5946 let actions = schema.actions().cloned().collect::<HashSet<_>>();
5947 let expected = [
5948 "Read",
5949 "Write",
5950 "Create",
5951 "DeleteList",
5952 "EditShare",
5953 "UpdateList",
5954 "CreateTask",
5955 "UpdateTask",
5956 "DeleteTask",
5957 "GetList",
5958 "GetLists",
5959 "CreateList",
5960 ]
5961 .into_iter()
5962 .map(|ty| format!("Action::\"{ty}\"").parse().unwrap())
5963 .collect::<HashSet<EntityUid>>();
5964 assert_eq!(actions, expected);
5965 #[cfg(feature = "extended-schema")]
5966 assert!(actions.iter().all(|ety| ety.0.loc().is_some()));
5967 }
5968
5969 #[test]
5970 fn actions_for_principal_and_resource() {
5971 let schema = schema();
5972 let pty: EntityTypeName = "User".parse().unwrap();
5973 let rty: EntityTypeName = "Application".parse().unwrap();
5974 let actions = schema
5975 .actions_for_principal_and_resource(&pty, &rty)
5976 .cloned()
5977 .collect::<HashSet<EntityUid>>();
5978 let expected = ["GetLists", "CreateList"]
5979 .into_iter()
5980 .map(|ty| format!("Action::\"{ty}\"").parse().unwrap())
5981 .collect::<HashSet<EntityUid>>();
5982 assert_eq!(actions, expected);
5983 }
5984
5985 #[test]
5986 fn entities() {
5987 let schema = schema();
5988 let entities = schema.entity_types().cloned().collect::<HashSet<_>>();
5989 let expected = ["List", "Application", "User", "CoolList", "Team"]
5990 .into_iter()
5991 .map(|ty| ty.parse().unwrap())
5992 .collect::<HashSet<EntityTypeName>>();
5993 assert_eq!(entities, expected);
5994 }
5995}
5996
5997#[cfg(test)]
5998mod test_access_namespace {
5999 use super::*;
6000
6001 fn schema() -> Schema {
6002 let src = r#"
6003 namespace Foo {
6004 type Task = {
6005 "id": Long,
6006 "name": String,
6007 "state": String,
6008};
6009
6010type Tasks = Set<Task>;
6011entity List in [Application] = {
6012 "editors": Team,
6013 "name": String,
6014 "owner": User,
6015 "readers": Team,
6016 "tasks": Tasks,
6017};
6018entity Application;
6019entity User in [Team, Application] = {
6020 "joblevel": Long,
6021 "location": String,
6022};
6023
6024entity CoolList;
6025
6026entity Team in [Team, Application];
6027
6028action Read, Write, Create;
6029
6030action DeleteList, EditShare, UpdateList, CreateTask, UpdateTask, DeleteTask in Write appliesTo {
6031 principal: [User],
6032 resource : [List]
6033};
6034
6035action GetList in Read appliesTo {
6036 principal : [User],
6037 resource : [List, CoolList]
6038};
6039
6040action GetLists in Read appliesTo {
6041 principal : [User],
6042 resource : [Application]
6043};
6044
6045action CreateList in Create appliesTo {
6046 principal : [User],
6047 resource : [Application]
6048};
6049 }
6050
6051 "#;
6052
6053 src.parse().unwrap()
6054 }
6055
6056 #[test]
6057 fn principals() {
6058 let schema = schema();
6059 let principals = schema.principals().collect::<HashSet<_>>();
6060 assert_eq!(principals.len(), 1);
6061 let user: EntityTypeName = "Foo::User".parse().unwrap();
6062 assert!(principals.contains(&user));
6063 let principals = schema.principals().collect::<Vec<_>>();
6064 assert!(principals.len() > 1);
6065 assert!(principals.iter().all(|ety| **ety == user));
6066 assert!(principals.iter().all(|ety| ety.0.loc().is_some()));
6067 }
6068
6069 #[test]
6070 fn empty_schema_principals_and_resources() {
6071 let empty: Schema = "".parse().unwrap();
6072 assert!(empty.principals().next().is_none());
6073 assert!(empty.resources().next().is_none());
6074 }
6075
6076 #[test]
6077 fn resources() {
6078 let schema = schema();
6079 let resources = schema.resources().cloned().collect::<HashSet<_>>();
6080 let expected: HashSet<EntityTypeName> = HashSet::from([
6081 "Foo::List".parse().unwrap(),
6082 "Foo::Application".parse().unwrap(),
6083 "Foo::CoolList".parse().unwrap(),
6084 ]);
6085 assert_eq!(resources, expected);
6086 assert!(resources.iter().all(|ety| ety.0.loc().is_some()));
6087 }
6088
6089 #[test]
6090 fn principals_for_action() {
6091 let schema = schema();
6092 let delete_list: EntityUid = r#"Foo::Action::"DeleteList""#.parse().unwrap();
6093 let delete_user: EntityUid = r#"Foo::Action::"DeleteUser""#.parse().unwrap();
6094 let got = schema
6095 .principals_for_action(&delete_list)
6096 .unwrap()
6097 .cloned()
6098 .collect::<Vec<_>>();
6099 assert_eq!(got, vec!["Foo::User".parse().unwrap()]);
6100 assert!(schema.principals_for_action(&delete_user).is_none());
6101 }
6102
6103 #[test]
6104 fn resources_for_action() {
6105 let schema = schema();
6106 let delete_list: EntityUid = r#"Foo::Action::"DeleteList""#.parse().unwrap();
6107 let delete_user: EntityUid = r#"Foo::Action::"DeleteUser""#.parse().unwrap();
6108 let create_list: EntityUid = r#"Foo::Action::"CreateList""#.parse().unwrap();
6109 let get_list: EntityUid = r#"Foo::Action::"GetList""#.parse().unwrap();
6110 let got = schema
6111 .resources_for_action(&delete_list)
6112 .unwrap()
6113 .cloned()
6114 .collect::<Vec<_>>();
6115 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
6116
6117 assert_eq!(got, vec!["Foo::List".parse().unwrap()]);
6118 let got = schema
6119 .resources_for_action(&create_list)
6120 .unwrap()
6121 .cloned()
6122 .collect::<Vec<_>>();
6123 assert_eq!(got, vec!["Foo::Application".parse().unwrap()]);
6124 assert!(got.iter().all(|ety| ety.0.loc().is_some()));
6125
6126 let got = schema
6127 .resources_for_action(&get_list)
6128 .unwrap()
6129 .cloned()
6130 .collect::<HashSet<_>>();
6131 assert_eq!(
6132 got,
6133 HashSet::from([
6134 "Foo::List".parse().unwrap(),
6135 "Foo::CoolList".parse().unwrap()
6136 ])
6137 );
6138 assert!(schema.principals_for_action(&delete_user).is_none());
6139 }
6140
6141 #[test]
6142 fn principal_parents() {
6143 let schema = schema();
6144 let user: EntityTypeName = "Foo::User".parse().unwrap();
6145 let parents = schema
6146 .ancestors(&user)
6147 .unwrap()
6148 .cloned()
6149 .collect::<HashSet<_>>();
6150 let expected = HashSet::from([
6151 "Foo::Team".parse().unwrap(),
6152 "Foo::Application".parse().unwrap(),
6153 ]);
6154 assert_eq!(parents, expected);
6155 let parents = schema
6156 .ancestors(&"Foo::List".parse().unwrap())
6157 .unwrap()
6158 .cloned()
6159 .collect::<HashSet<_>>();
6160 let expected = HashSet::from(["Foo::Application".parse().unwrap()]);
6161 assert_eq!(parents, expected);
6162 assert!(schema.ancestors(&"Foo::Foo".parse().unwrap()).is_none());
6163 let parents = schema
6164 .ancestors(&"Foo::CoolList".parse().unwrap())
6165 .unwrap()
6166 .cloned()
6167 .collect::<HashSet<_>>();
6168 let expected = HashSet::from([]);
6169 assert_eq!(parents, expected);
6170 }
6171
6172 #[test]
6173 fn action_groups() {
6174 let schema = schema();
6175 let groups = schema.action_groups().cloned().collect::<HashSet<_>>();
6176 let expected = ["Read", "Write", "Create"]
6177 .into_iter()
6178 .map(|ty| format!("Foo::Action::\"{ty}\"").parse().unwrap())
6179 .collect::<HashSet<EntityUid>>();
6180 assert_eq!(groups, expected);
6181 }
6182
6183 #[test]
6184 fn actions() {
6185 let schema = schema();
6186 let actions = schema.actions().cloned().collect::<HashSet<_>>();
6187 let expected = [
6188 "Read",
6189 "Write",
6190 "Create",
6191 "DeleteList",
6192 "EditShare",
6193 "UpdateList",
6194 "CreateTask",
6195 "UpdateTask",
6196 "DeleteTask",
6197 "GetList",
6198 "GetLists",
6199 "CreateList",
6200 ]
6201 .into_iter()
6202 .map(|ty| format!("Foo::Action::\"{ty}\"").parse().unwrap())
6203 .collect::<HashSet<EntityUid>>();
6204 assert_eq!(actions, expected);
6205 }
6206
6207 #[test]
6208 fn entities() {
6209 let schema = schema();
6210 let entities = schema.entity_types().cloned().collect::<HashSet<_>>();
6211 let expected = [
6212 "Foo::List",
6213 "Foo::Application",
6214 "Foo::User",
6215 "Foo::CoolList",
6216 "Foo::Team",
6217 ]
6218 .into_iter()
6219 .map(|ty| ty.parse().unwrap())
6220 .collect::<HashSet<EntityTypeName>>();
6221 assert_eq!(entities, expected);
6222 }
6223
6224 #[test]
6225 fn test_request_context() {
6226 let context =
6228 Context::from_json_str(r#"{"testKey": "testValue", "numKey": 42}"#, None).unwrap();
6229
6230 let principal: EntityUid = "User::\"alice\"".parse().unwrap();
6232 let action: EntityUid = "Action::\"view\"".parse().unwrap();
6233 let resource: EntityUid = "Resource::\"doc123\"".parse().unwrap();
6234
6235 let request = Request::new(
6237 principal, action, resource, context, None, )
6239 .unwrap();
6240
6241 let retrieved_context = request.context().expect("Context should be present");
6243
6244 assert!(retrieved_context.get("testKey").is_some());
6246 assert!(retrieved_context.get("numKey").is_some());
6247 assert!(retrieved_context.get("nonexistent").is_none());
6248 }
6249
6250 #[cfg(feature = "extended-schema")]
6251 #[test]
6252 fn namespace_extended() {
6253 let schema = schema();
6254 assert_eq!(schema.0.namespaces().collect::<HashSet<_>>().len(), 2);
6255 let default_namespace = schema
6256 .0
6257 .namespaces()
6258 .filter(|n| n.name == *"__cedar")
6259 .last()
6260 .unwrap();
6261 assert!(default_namespace.name_loc.is_none());
6262 assert!(default_namespace.def_loc.is_none());
6263
6264 let default_namespace = schema
6265 .0
6266 .namespaces()
6267 .filter(|n| n.name == *"Foo")
6268 .last()
6269 .unwrap();
6270 assert!(default_namespace.name_loc.is_some());
6271 assert!(default_namespace.def_loc.is_some());
6272 }
6273}
6274
6275#[cfg(test)]
6276mod test_lossless_empty {
6277 use super::{LosslessPolicy, LosslessTemplate, Policy, PolicyId, Template};
6278 use cedar_policy_core::pst;
6279 use cool_asserts::assert_matches;
6280
6281 #[test]
6282 fn test_lossless_empty_policy() {
6283 const STATIC_POLICY_TEXT: &str = "permit(principal,action,resource);";
6284 let policy0 = Policy::parse(Some(PolicyId::new("policy0")), STATIC_POLICY_TEXT)
6285 .expect("Failed to parse");
6286 let lossy_policy0 = Policy {
6287 ast: policy0.ast.clone(),
6288 lossless: LosslessPolicy::policy_or_template_text(None::<&str>),
6289 };
6290 assert_eq!(
6292 lossy_policy0.to_cedar(),
6293 Some(String::from(
6294 "permit(\n principal,\n action,\n resource\n);"
6295 ))
6296 );
6297 let lossy_policy0_est = lossy_policy0
6299 .lossless
6300 .est(|| policy0.ast.clone().into())
6301 .unwrap();
6302 assert_eq!(lossy_policy0_est, policy0.ast.into());
6303 }
6304
6305 #[test]
6306 fn test_lossless_empty_template() {
6307 const TEMPLATE_TEXT: &str = "permit(principal == ?principal,action,resource);";
6308 let template0 = Template::parse(Some(PolicyId::new("template0")), TEMPLATE_TEXT)
6309 .expect("Failed to parse");
6310 let lossy_template0 = Template {
6311 ast: template0.ast.clone(),
6312 lossless: LosslessTemplate::from_text(None::<&str>),
6313 };
6314 assert_eq!(
6316 lossy_template0.to_cedar(),
6317 String::from("permit(\n principal == ?principal,\n action,\n resource\n);")
6318 );
6319 let lossy_template0_est = lossy_template0
6321 .lossless
6322 .est(|| template0.ast.clone().into())
6323 .unwrap();
6324 assert_eq!(lossy_template0_est, template0.ast.into());
6325 }
6326
6327 #[test]
6328 fn try_into_pst_empty_policy() {
6329 let p = Policy::parse(
6330 Some(PolicyId::new("p")),
6331 "permit(principal,action,resource);",
6332 )
6333 .expect("parse");
6334 let empty = Policy {
6335 ast: p.ast,
6336 lossless: LosslessPolicy::policy_or_template_text(None::<&str>),
6337 };
6338 assert_matches!(
6339 empty.try_into_pst().unwrap().body(),
6340 pst::Template {
6341 effect: pst::Effect::Permit,
6342 principal: pst::PrincipalConstraint::Any,
6343 resource: pst::ResourceConstraint::Any,
6344 action: pst::ActionConstraint::Any,
6345 ..
6346 },
6347 );
6348 }
6349
6350 #[test]
6351 fn try_into_pst_empty_template() {
6352 let t = Template::parse(
6353 Some(PolicyId::new("t")),
6354 "permit(principal == ?principal,action,resource);",
6355 )
6356 .expect("parse");
6357 let empty = Template {
6358 ast: t.ast,
6359 lossless: LosslessTemplate::from_text(None::<&str>),
6360 };
6361 assert_matches!(
6362 empty.try_into_pst().unwrap(),
6363 pst::Template {
6364 effect: pst::Effect::Permit,
6365 principal: pst::PrincipalConstraint::Eq(pst::EntityOrSlot::Slot(
6366 pst::SlotId::Principal
6367 )),
6368 resource: pst::ResourceConstraint::Any,
6369 action: pst::ActionConstraint::Any,
6370 ..
6371 },
6372 );
6373 }
6374}
6375
6376#[doc = include_str!("../experimental_warning.md")]
6383#[deprecated = "The `entity-manifest` experimental feature and all associated functions are deprecated. Migrate to `PolicySet::is_authorized_batch` for efficient authorization with on-demand entity loading."]
6384#[cfg(feature = "entity-manifest")]
6385pub fn compute_entity_manifest(
6386 validator: &Validator,
6387 pset: &PolicySet,
6388) -> Result<EntityManifest, EntityManifestError> {
6389 entity_manifest::compute_entity_manifest(&validator.0, &pset.ast).map_err(Into::into)
6390}