icydb_schema/node/
entity.rs

1use crate::{MAX_INDEX_FIELDS, prelude::*};
2use std::{any::Any, collections::HashSet};
3
4///
5/// Entity
6///
7
8#[derive(Clone, Debug, Serialize)]
9pub struct Entity {
10    pub def: Def,
11    pub store: &'static str,
12    pub primary_key: &'static str,
13
14    #[serde(default, skip_serializing_if = "Option::is_none")]
15    pub name: Option<&'static str>,
16
17    #[serde(default, skip_serializing_if = "<[_]>::is_empty")]
18    pub indexes: &'static [Index],
19
20    pub fields: FieldList,
21    pub ty: Type,
22}
23
24impl Entity {
25    #[must_use]
26    pub fn get_pk_field(&self) -> &Field {
27        self.fields
28            .get(self.primary_key)
29            .unwrap_or_else(|| panic!("missing primary key field '{}'", self.primary_key))
30    }
31
32    #[must_use]
33    pub fn resolved_name(&self) -> &'static str {
34        self.name.unwrap_or(self.def.ident)
35    }
36}
37
38impl MacroNode for Entity {
39    fn as_any(&self) -> &dyn Any {
40        self
41    }
42}
43
44impl TypeNode for Entity {
45    fn ty(&self) -> &Type {
46        &self.ty
47    }
48}
49
50impl ValidateNode for Entity {
51    fn validate(&self) -> Result<(), ErrorTree> {
52        let mut errs = ErrorTree::new();
53        let schema = schema_read();
54
55        // primary key must exist and be single-valued
56        match self.fields.get(self.primary_key) {
57            Some(pk) => {
58                if !matches!(pk.value.cardinality, Cardinality::One) {
59                    err!(
60                        errs,
61                        "primary key '{0}' must have cardinality One",
62                        self.primary_key
63                    );
64                }
65            }
66            None => {
67                err!(errs, "missing primary key field '{0}'", self.primary_key);
68            }
69        }
70
71        // entity name length/encoding
72        if let Err(msg) = crate::build::validate::validate_entity_name(self.resolved_name()) {
73            err!(errs, "{msg}");
74        }
75
76        // store
77        match schema.cast_node::<Store>(self.store) {
78            Ok(store) if !matches!(store.ty, StoreType::Data) => {
79                err!(errs, "store is not type Data");
80            }
81            Ok(_) => {}
82            Err(e) => errs.add(e),
83        }
84
85        // Load and validate index references
86        let mut resolved_indexes = Vec::new();
87
88        // check indexes have proper fields
89        for index in self.indexes {
90            // index store
91            match schema.cast_node::<Store>(index.store) {
92                Ok(store) if !matches!(store.ty, StoreType::Index) => {
93                    err!(errs, "store is not type Index");
94                }
95                Ok(_) => {}
96                Err(e) => errs.add(e),
97            }
98
99            // basic length checks
100            if index.fields.is_empty() {
101                err!(errs, "index must reference at least one field");
102            }
103            if index.fields.len() > MAX_INDEX_FIELDS {
104                err!(
105                    errs,
106                    "index has {} fields; maximum is {}",
107                    index.fields.len(),
108                    MAX_INDEX_FIELDS
109                );
110            }
111
112            // no duplicate fields in a single index definition
113            let mut seen = HashSet::new();
114            // Check all fields in the index exist on the entity
115            for field in index.fields {
116                if !seen.insert(*field) {
117                    err!(errs, "index contains duplicate field '{field}'");
118                }
119                if let Some(field) = self.fields.get(field) {
120                    if field.value.cardinality == Cardinality::Many {
121                        err!(errs, "cannot add an index field with many cardinality");
122                    }
123                } else {
124                    err!(errs, "index field '{field}' not found");
125                }
126            }
127
128            if let Err(msg) =
129                crate::build::validate::validate_index_name_len(self.resolved_name(), index.fields)
130            {
131                err!(errs, "{msg}");
132            }
133            resolved_indexes.push(index);
134        }
135
136        // Check for redundant indexes (prefix relationships)
137        for (i, a) in resolved_indexes.iter().enumerate() {
138            for b in resolved_indexes.iter().skip(i + 1) {
139                if a.unique == b.unique {
140                    if a.is_prefix_of(b) {
141                        err!(
142                            errs,
143                            "index {:?} is redundant (prefix of {:?})",
144                            a.fields,
145                            b.fields
146                        );
147                    } else if b.is_prefix_of(a) {
148                        err!(
149                            errs,
150                            "index {:?} is redundant (prefix of {:?})",
151                            b.fields,
152                            a.fields
153                        );
154                    }
155                }
156            }
157        }
158
159        errs.result()
160    }
161}
162
163impl VisitableNode for Entity {
164    fn route_key(&self) -> String {
165        self.def.path()
166    }
167
168    fn drive<V: Visitor>(&self, v: &mut V) {
169        self.def.accept(v);
170        self.fields.accept(v);
171        self.ty.accept(v);
172    }
173}