badness_parser/bib/
ast.rs1pub mod nodes;
8
9pub use nodes::{Entry, EntryType, Field, FieldName, Key, StringEntry, Value};
10
11use rowan::TextRange;
12
13use crate::bib::syntax::{SyntaxKind, SyntaxNode};
14
15pub trait AstNode {
17 fn can_cast(kind: SyntaxKind) -> bool
18 where
19 Self: Sized;
20 fn cast(syntax: SyntaxNode) -> Option<Self>
21 where
22 Self: Sized;
23 fn syntax(&self) -> &SyntaxNode;
24}
25
26pub fn child<N: AstNode>(parent: &SyntaxNode) -> Option<N> {
28 parent.children().find_map(N::cast)
29}
30
31pub fn children<N: AstNode>(parent: &SyntaxNode) -> impl Iterator<Item = N> {
33 parent.children().filter_map(N::cast)
34}
35
36pub fn entry_type(entry: &SyntaxNode) -> Option<String> {
42 child::<EntryType>(entry).and_then(|t| t.text())
43}
44
45pub fn cite_key(entry: &SyntaxNode) -> Option<(String, TextRange)> {
48 let key = child::<Key>(entry)?;
49 key.text().map(|text| (text, key.syntax().text_range()))
50}
51
52pub fn string_def_name(string_entry: &SyntaxNode) -> Option<(String, TextRange)> {
56 let name = child::<Field>(string_entry)?.name_node()?;
57 name.text().map(|text| (text, name.syntax().text_range()))
58}
59
60pub fn fields(entry: &SyntaxNode) -> impl Iterator<Item = SyntaxNode> {
62 children::<Field>(entry).map(|f| f.syntax().clone())
63}
64
65pub fn field_name(field: &SyntaxNode) -> Option<String> {
67 child::<FieldName>(field).and_then(|n| n.text())
68}
69
70pub fn field_value(field: &SyntaxNode) -> Option<SyntaxNode> {
72 child::<Value>(field).map(|v| v.syntax().clone())
73}
74
75pub fn value_text_cleaned(value: &SyntaxNode) -> String {
79 let raw = value.text().to_string();
80 let trimmed = raw.trim();
81 let inner = trimmed
82 .strip_prefix('{')
83 .and_then(|s| s.strip_suffix('}'))
84 .or_else(|| trimmed.strip_prefix('"').and_then(|s| s.strip_suffix('"')))
85 .unwrap_or(trimmed);
86 inner.split_whitespace().collect::<Vec<_>>().join(" ")
87}
88
89pub fn value_macro_uses(value: &SyntaxNode) -> impl Iterator<Item = (String, TextRange)> {
94 nodes::macro_uses_of(value)
95}
96
97#[cfg(test)]
98mod tests {
99 use super::*;
100 use crate::bib::parse;
101
102 fn node(src: &str, kind: SyntaxKind) -> SyntaxNode {
103 parse(src)
104 .syntax()
105 .descendants()
106 .find(|n| n.kind() == kind)
107 .unwrap_or_else(|| panic!("a {kind:?} node"))
108 }
109
110 #[test]
111 fn entry_type_reads_word() {
112 let entry = node("@article{k, title = {Hi}}\n", SyntaxKind::ENTRY);
113 assert_eq!(entry_type(&entry).as_deref(), Some("article"));
114 }
115
116 #[test]
117 fn cite_key_reassembles_colon_key() {
118 let entry = node("@book{westfahl:space, title = {X}}\n", SyntaxKind::ENTRY);
119 let (key, _range) = cite_key(&entry).expect("a key");
120 assert_eq!(key, "westfahl:space");
121 }
122
123 #[test]
124 fn cite_key_none_without_key() {
125 let entry = node("@misc{", SyntaxKind::ENTRY);
126 assert_eq!(cite_key(&entry), None);
127 }
128
129 #[test]
130 fn string_def_name_reads_field_name() {
131 let s = node("@string{jan = \"January\"}\n", SyntaxKind::STRING_ENTRY);
132 let (name, _range) = string_def_name(&s).expect("a name");
133 assert_eq!(name, "jan");
134 }
135
136 #[test]
137 fn fields_and_names() {
138 let entry = node("@misc{k, a = {x}, b = 3}\n", SyntaxKind::ENTRY);
139 let names: Vec<_> = fields(&entry).filter_map(|f| field_name(&f)).collect();
140 assert_eq!(names, vec!["a", "b"]);
141 }
142
143 #[test]
144 fn value_macro_uses_finds_word_not_number() {
145 let field = node("@misc{k, t = pub # {x} # 2020}\n", SyntaxKind::FIELD);
146 let value = field_value(&field).expect("a value");
147 let uses: Vec<_> = value_macro_uses(&value).map(|(n, _)| n).collect();
148 assert_eq!(uses, vec!["pub"]);
149 }
150
151 #[test]
152 fn cast_is_kind_exact() {
153 let entry = node("@article{k, title = {Hi}}\n", SyntaxKind::ENTRY);
154 assert!(Entry::cast(entry.clone()).is_some());
155 assert!(Field::cast(entry).is_none());
156 }
157
158 #[test]
159 fn entry_wrapper_reads_type_key_and_fields() {
160 let entry = Entry::cast(node("@article{k, a = {x}, b = 3}\n", SyntaxKind::ENTRY)).unwrap();
161 assert_eq!(entry.entry_type().as_deref(), Some("article"));
162 assert_eq!(entry.cite_key().map(|(k, _)| k).as_deref(), Some("k"));
163 let names: Vec<_> = entry.fields().filter_map(|f| f.name()).collect();
164 assert_eq!(names, vec!["a", "b"]);
165 }
166}