1use crate::token::Token;
2
3const MAX_STRING_LITERAL: usize = 16 * 1024 * 1024;
6
7#[derive(Debug)]
8pub struct LexError {
9 pub message: String,
10 pub position: usize,
11}
12
13impl std::fmt::Display for LexError {
14 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
15 write!(f, "at position {}: {}", self.position, self.message)
16 }
17}
18
19impl std::error::Error for LexError {}
20
21pub fn lex(input: &str) -> Result<Vec<Token>, LexError> {
35 let mut tokens = Vec::new();
36 let chars: Vec<char> = input.chars().collect();
37 let mut pos = 0;
38
39 while pos < chars.len() {
40 if chars[pos].is_whitespace() {
42 pos += 1;
43 continue;
44 }
45
46 if chars[pos] == '#' {
48 while pos < chars.len() && chars[pos] != '\n' {
49 pos += 1;
50 }
51 continue;
52 }
53
54 if chars[pos] == '.'
56 && pos + 1 < chars.len()
57 && (chars[pos + 1].is_alphabetic() || chars[pos + 1] == '_')
58 {
59 pos += 1; let start = pos;
61 while pos < chars.len() && (chars[pos].is_alphanumeric() || chars[pos] == '_') {
62 pos += 1;
63 }
64 let name: String = chars[start..pos].iter().collect();
65 tokens.push(Token::DotIdent(name));
66 continue;
67 }
68
69 if chars[pos] == '$' {
71 pos += 1;
72 let start = pos;
73 while pos < chars.len() && (chars[pos].is_alphanumeric() || chars[pos] == '_') {
74 pos += 1;
75 }
76 let name: String = chars[start..pos].iter().collect();
77 tokens.push(Token::Param(name));
78 continue;
79 }
80
81 if chars[pos] == '"' {
83 pos += 1;
84 let mut s = String::new();
85 while pos < chars.len() && chars[pos] != '"' {
86 if chars[pos] == '\\' && pos + 1 < chars.len() {
87 match chars[pos + 1] {
88 '"' => {
89 s.push('"');
90 pos += 2;
91 }
92 '\\' => {
93 s.push('\\');
94 pos += 2;
95 }
96 'n' => {
97 s.push('\n');
98 pos += 2;
99 }
100 't' => {
101 s.push('\t');
102 pos += 2;
103 }
104 _ => {
105 s.push(chars[pos + 1]);
106 pos += 2;
107 }
108 }
109 } else {
110 s.push(chars[pos]);
111 pos += 1;
112 }
113 }
114 if pos >= chars.len() {
115 return Err(LexError {
116 message: "unterminated string".into(),
117 position: pos,
118 });
119 }
120 pos += 1; if s.len() > MAX_STRING_LITERAL {
122 return Err(LexError {
123 message: format!(
124 "string literal exceeds maximum size of {}MB",
125 MAX_STRING_LITERAL / (1024 * 1024)
126 ),
127 position: pos,
128 });
129 }
130 tokens.push(Token::StringLit(s));
131 continue;
132 }
133
134 if chars[pos].is_ascii_digit()
136 || (chars[pos] == '-' && pos + 1 < chars.len() && chars[pos + 1].is_ascii_digit())
137 {
138 let start = pos;
139 if chars[pos] == '-' {
140 pos += 1;
141 }
142 while pos < chars.len() && chars[pos].is_ascii_digit() {
143 pos += 1;
144 }
145 if pos < chars.len()
146 && chars[pos] == '.'
147 && pos + 1 < chars.len()
148 && chars[pos + 1].is_ascii_digit()
149 {
150 pos += 1;
151 while pos < chars.len() && chars[pos].is_ascii_digit() {
152 pos += 1;
153 }
154 let s: String = chars[start..pos].iter().collect();
155 let value = s.parse::<f64>().map_err(|_| LexError {
156 message: format!("float literal out of range: {s}"),
157 position: start,
158 })?;
159 tokens.push(Token::FloatLit(value));
160 } else {
161 let s: String = chars[start..pos].iter().collect();
162 let value = s.parse::<i64>().map_err(|_| LexError {
163 message: format!("integer literal out of range for i64: {s}"),
164 position: start,
165 })?;
166 tokens.push(Token::IntLit(value));
167 }
168 continue;
169 }
170
171 if chars[pos].is_alphabetic() || chars[pos] == '_' {
173 let start = pos;
174 while pos < chars.len() && (chars[pos].is_alphanumeric() || chars[pos] == '_') {
175 pos += 1;
176 }
177 let word: String = chars[start..pos].iter().collect();
178 let token = match word.as_str() {
179 "type" => Token::Type,
180 "filter" => Token::Filter,
181 "order" => Token::Order,
182 "limit" => Token::Limit,
183 "offset" => Token::Offset,
184 "insert" => Token::Insert,
185 "update" => Token::Update,
186 "delete" => Token::Delete,
187 "upsert" => Token::Upsert,
188 "conflict" => Token::Conflict,
189 "select" => Token::Select,
190 "required" => Token::Required,
191 "multi" => Token::Multi,
192 "link" => Token::Link,
193 "index" => Token::Index,
194 "on" => Token::On,
195 "asc" => Token::Asc,
196 "desc" => Token::Desc,
197 "and" => Token::And,
198 "or" => Token::Or,
199 "not" => Token::Not,
200 "exists" => Token::Exists,
201 "let" => Token::Let,
202 "as" => Token::As,
203 "match" => Token::Match,
204 "group" => Token::Group,
205 "join" => Token::Join,
206 "inner" => Token::Inner,
207 "left" => Token::LeftKw,
208 "right" => Token::RightKw,
209 "outer" => Token::Outer,
210 "cross" => Token::Cross,
211 "transaction" => Token::Transaction,
212 "begin" => Token::Begin,
213 "commit" => Token::Commit,
214 "rollback" => Token::Rollback,
215 "view" => Token::View,
216 "materialized" => Token::Materialized,
217 "materialize" => Token::Materialized,
218 "refresh" => Token::Refresh,
219 "union" => Token::Union,
220 "having" => Token::Having,
221 "distinct" => Token::Distinct,
222 "in" => Token::In,
223 "between" => Token::Between,
224 "like" => Token::Like,
225 "count" => Token::Count,
226 "avg" => Token::Avg,
227 "sum" => Token::Sum,
228 "min" => Token::Min,
229 "max" => Token::Max,
230 "is" => Token::Is,
231 "null" => Token::Null,
232 "upper" => Token::Upper,
233 "lower" => Token::Lower,
234 "length" => Token::Length,
235 "trim" => Token::Trim,
236 "substring" => Token::Substring,
237 "concat" => Token::Concat,
238 "abs" => Token::Abs,
239 "round" => Token::Round,
240 "ceil" => Token::Ceil,
241 "floor" => Token::Floor,
242 "sqrt" => Token::Sqrt,
243 "pow" => Token::Pow,
244 "now" => Token::Now,
245 "extract" => Token::Extract,
246 "date_add" => Token::DateAdd,
247 "date_diff" => Token::DateDiff,
248 "cast" => Token::Cast,
249 "case" => Token::Case,
250 "when" => Token::When,
251 "then" => Token::Then,
252 "else" => Token::Else,
253 "end" => Token::End,
254 "over" => Token::Over,
255 "partition" => Token::Partition,
256 "row_number" => Token::RowNumber,
257 "rank" => Token::Rank,
258 "dense_rank" => Token::DenseRank,
259 "alter" => Token::Alter,
260 "drop" => Token::Drop,
261 "add" => Token::Add,
262 "column" => Token::Column,
263 "explain" => Token::Explain,
264 "true" => Token::BoolLit(true),
265 "false" => Token::BoolLit(false),
266 _ => Token::Ident(word),
267 };
268 tokens.push(token);
269 continue;
270 }
271
272 if pos + 1 < chars.len() {
274 let two: String = chars[pos..pos + 2].iter().collect();
275 match two.as_str() {
276 ":=" => {
277 tokens.push(Token::Assign);
278 pos += 2;
279 continue;
280 }
281 "->" => {
282 tokens.push(Token::Arrow);
283 pos += 2;
284 continue;
285 }
286 "!=" => {
287 tokens.push(Token::Neq);
288 pos += 2;
289 continue;
290 }
291 "<=" => {
292 tokens.push(Token::Lte);
293 pos += 2;
294 continue;
295 }
296 ">=" => {
297 tokens.push(Token::Gte);
298 pos += 2;
299 continue;
300 }
301 "??" => {
302 tokens.push(Token::Coalesce);
303 pos += 2;
304 continue;
305 }
306 _ => {}
307 }
308 }
309
310 let token = match chars[pos] {
312 '=' => Token::Eq,
313 '<' => Token::Lt,
314 '>' => Token::Gt,
315 '|' => Token::Pipe,
316 '+' => Token::Plus,
317 '-' => Token::Minus,
318 '*' => Token::Star,
319 '/' => Token::Slash,
320 '{' => Token::LBrace,
321 '}' => Token::RBrace,
322 '(' => Token::LParen,
323 ')' => Token::RParen,
324 ',' => Token::Comma,
325 ':' => Token::Colon,
326 '.' => Token::Dot,
327 c => {
328 return Err(LexError {
329 message: format!("unexpected character: {c}"),
330 position: pos,
331 })
332 }
333 };
334 tokens.push(token);
335 pos += 1;
336 }
337
338 tokens.push(Token::Eof);
339 Ok(tokens)
340}
341
342#[cfg(test)]
343mod tests {
344 use super::*;
345 use crate::token::Token;
346
347 #[test]
348 fn test_lex_simple_query() {
349 let tokens = lex("User filter .age > 30").unwrap();
350 assert_eq!(
351 tokens,
352 vec![
353 Token::Ident("User".into()),
354 Token::Filter,
355 Token::DotIdent("age".into()),
356 Token::Gt,
357 Token::IntLit(30),
358 Token::Eof,
359 ]
360 );
361 }
362
363 #[test]
364 fn test_lex_projection() {
365 let tokens = lex("User { name, email }").unwrap();
366 assert_eq!(
367 tokens,
368 vec![
369 Token::Ident("User".into()),
370 Token::LBrace,
371 Token::Ident("name".into()),
372 Token::Comma,
373 Token::Ident("email".into()),
374 Token::RBrace,
375 Token::Eof,
376 ]
377 );
378 }
379
380 #[test]
381 fn test_lex_insert() {
382 let tokens = lex(r#"insert User { name := "Alice", age := 30 }"#).unwrap();
383 assert_eq!(
384 tokens,
385 vec![
386 Token::Insert,
387 Token::Ident("User".into()),
388 Token::LBrace,
389 Token::Ident("name".into()),
390 Token::Assign,
391 Token::StringLit("Alice".into()),
392 Token::Comma,
393 Token::Ident("age".into()),
394 Token::Assign,
395 Token::IntLit(30),
396 Token::RBrace,
397 Token::Eof,
398 ]
399 );
400 }
401
402 #[test]
403 fn test_lex_params() {
404 let tokens = lex("User filter .age > $min_age").unwrap();
405 assert_eq!(
406 tokens,
407 vec![
408 Token::Ident("User".into()),
409 Token::Filter,
410 Token::DotIdent("age".into()),
411 Token::Gt,
412 Token::Param("min_age".into()),
413 Token::Eof,
414 ]
415 );
416 }
417
418 #[test]
419 fn test_lex_string_with_escapes() {
420 let tokens = lex(r#""hello \"world\"""#).unwrap();
421 assert_eq!(
422 tokens,
423 vec![Token::StringLit("hello \"world\"".into()), Token::Eof,]
424 );
425 }
426
427 #[test]
428 fn test_lex_aggregation() {
429 let tokens = lex("count(User)").unwrap();
430 assert_eq!(
431 tokens,
432 vec![
433 Token::Count,
434 Token::LParen,
435 Token::Ident("User".into()),
436 Token::RParen,
437 Token::Eof,
438 ]
439 );
440 }
441
442 #[test]
446 fn test_lex_intlit_overflow_returns_err() {
447 let err = lex("4444444441111111144444").expect_err("must error, not panic");
449 assert!(
450 err.message.contains("integer literal out of range"),
451 "unexpected message: {}",
452 err.message
453 );
454 assert_eq!(err.position, 0);
455 }
456
457 #[test]
461 fn test_lex_fuzz_repro_issue_24() {
462 let input = "as\t\t\t\t\t\t\t\t\t\t\t\t\t44444444411111114444\t\t\t\t\t\t";
463 let err = lex(input).expect_err("fuzz reproducer must now error, not panic");
464 assert!(err.message.contains("integer literal"));
465 }
466}