1use std::collections::HashMap;
49use anyhow::{bail, Result};
50use serde_json::{json, Value};
51
52use crate::db::Db;
53use crate::index::OrderedValue;
54use crate::store::Node;
55
56#[derive(Debug, Clone, PartialEq)]
59enum Tok {
60 Kw(String, String),
69 Ident(String), Str(String), Num(f64), Op(String), Punct(char), Eof,
75}
76
77struct Lexer<'a> {
78 src: &'a str,
79 pos: usize,
80}
81
82impl<'a> Lexer<'a> {
83 fn new(src: &'a str) -> Self { Self { src, pos: 0 } }
84
85 fn peek_char(&self) -> Option<char> { self.src[self.pos..].chars().next() }
86
87 fn skip_ws(&mut self) {
88 while let Some(c) = self.peek_char() {
89 if c.is_whitespace() { self.pos += c.len_utf8(); } else { break; }
90 }
91 }
92
93 fn next_tok(&mut self) -> Tok {
94 self.skip_ws();
95 if self.pos >= self.src.len() { return Tok::Eof; }
96
97 let c = self.peek_char().unwrap();
98
99 if c == '"' {
111 self.pos += 1;
112 let mut s = String::new();
113 while let Some(ch) = self.peek_char() {
114 if ch == '"' {
115 break;
116 }
117 if ch == '\\' {
118 let next = self.src[self.pos + 1..].chars().next();
122 if next == Some('"') {
123 s.push('"');
124 self.pos += 1 + 1; continue;
126 }
127 }
128 s.push(ch);
129 self.pos += ch.len_utf8();
130 }
131 if self.peek_char() == Some('"') {
132 self.pos += 1;
133 }
134 return Tok::Str(s);
135 }
136
137 if self.pos + 2 < self.src.len() && &self.src[self.pos..self.pos + 3] == "!~*" {
141 self.pos += 3;
142 return Tok::Op("!~*".to_string());
143 }
144
145 if self.pos + 1 < self.src.len() {
147 let two = &self.src[self.pos..self.pos+2];
148 if matches!(two, "!=" | ">=" | "<=" | "!~" | "~*") {
149 self.pos += 2;
150 return Tok::Op(two.to_string());
151 }
152 }
153
154 if matches!(c, '=' | '>' | '<' | '~') {
156 self.pos += 1;
157 return Tok::Op(c.to_string());
158 }
159
160 if matches!(c, '(' | ')' | ',') {
165 self.pos += 1;
166 return Tok::Punct(c);
167 }
168
169 if c.is_ascii_digit() || (c == '-' && self.src[self.pos+1..].starts_with(|d: char| d.is_ascii_digit())) {
171 let start = self.pos;
172 if c == '-' { self.pos += 1; }
173 while let Some(d) = self.peek_char() {
174 if d.is_ascii_digit() || d == '.' { self.pos += 1; } else { break; }
175 }
176 let n: f64 = self.src[start..self.pos].parse().unwrap_or(0.0);
177 return Tok::Num(n);
178 }
179
180 if c.is_alphabetic() || c == '_' {
182 let start = self.pos;
183 while let Some(ch) = self.peek_char() {
184 if ch.is_alphanumeric() || ch == '_' || ch == '.' || ch == ':' {
185 self.pos += ch.len_utf8();
186 } else { break; }
187 }
188 let word = &self.src[start..self.pos];
189 let upper = word.to_uppercase();
190 let keywords = ["FROM","AS","OF","VALID","WHERE","AND","OR","ORDER","BY",
191 "ASC","DESC","LIMIT","OFFSET","GROUP","HAVING",
192 "COUNT","SUM","AVG","MIN","MAX",
193 "TRACE","TRAVERSE","REVERSE","SEARCH","NOT","NULL","TRUE","FALSE",
194 "IN","BETWEEN","LIKE","ILIKE","IS"];
195 if keywords.contains(&upper.as_str()) {
196 return Tok::Kw(upper, word.to_string());
197 }
198 return Tok::Ident(word.to_string());
199 }
200
201 self.pos += c.len_utf8();
203 self.next_tok()
204 }
205
206 fn tokenize(&mut self) -> Vec<Tok> {
207 let mut toks = vec![];
208 loop {
209 let t = self.next_tok();
210 if t == Tok::Eof { break; }
211 toks.push(t);
212 }
213 toks
214 }
215}
216
217#[derive(Debug, Clone)]
226pub enum Pred {
227 Cmp { field: String, op: String, value: Value },
229 In { field: String, values: Vec<Value>, negated: bool },
231 Between { field: String, low: Value, high: Value, negated: bool },
233 Like { field: String, pattern: String, negated: bool, ci: bool },
236 Regex { field: String, pattern: String, negated: bool, ci: bool },
255 IsNull { field: String, negated: bool },
257 And(Vec<Pred>),
258 Or(Vec<Pred>),
259 Not(Box<Pred>),
260}
261
262#[derive(Debug, Clone, PartialEq)]
263pub enum GroupAgg { Count, Sum, Avg, Min, Max }
264
265impl GroupAgg {
266 fn name(&self) -> &'static str {
267 match self {
268 GroupAgg::Count => "count", GroupAgg::Sum => "sum",
269 GroupAgg::Avg => "avg", GroupAgg::Min => "min",
270 GroupAgg::Max => "max",
271 }
272 }
273}
274
275#[derive(Debug, Clone, PartialEq)]
280pub struct OrderKey {
281 pub field: String,
282 pub desc: bool,
283}
284
285#[derive(Debug, Clone)]
292pub struct Aggregate {
293 pub group_field: Option<String>,
294 pub agg: GroupAgg,
295 pub agg_field: Option<String>,
297}
298
299#[derive(Debug, Clone)]
300pub struct Query {
301 pub coll: String,
302 pub as_of: Option<u64>,
303 pub valid_as_of: Option<String>,
304 pub where_: Option<Pred>,
305 pub search: Option<String>,
306 pub order_by: Vec<OrderKey>,
307 pub limit: Option<usize>,
308 pub offset: Option<usize>,
309 pub aggregate: Option<Aggregate>,
310 pub having: Option<Pred>,
314 pub trace: Option<String>, pub trace_rev: bool,
316 pub traverse: Option<String>, }
318
319struct Parser { toks: Vec<Tok>, pos: usize }
322
323impl Parser {
324 fn new(toks: Vec<Tok>) -> Self { Self { toks, pos: 0 } }
325
326 fn peek(&self) -> &Tok { self.toks.get(self.pos).unwrap_or(&Tok::Eof) }
327 fn advance(&mut self) -> Tok { let t = self.peek().clone(); self.pos += 1; t }
328
329 fn expect_kw(&mut self, kw: &str) -> Result<()> {
330 match self.advance() {
331 Tok::Kw(k, _) if k == kw => Ok(()),
332 other => bail!("expected keyword {}, got {:?}", kw, other),
333 }
334 }
335
336 fn parse_value(&mut self) -> Result<Value> {
343 Ok(match self.advance() {
344 Tok::Str(s) => Value::String(s),
345 Tok::Num(n) => json!(n),
346 Tok::Kw(k, _) if k == "NULL" => Value::Null,
347 Tok::Kw(k, _) if k == "TRUE" => Value::Bool(true),
348 Tok::Kw(k, _) if k == "FALSE" => Value::Bool(false),
349 Tok::Ident(s) => Value::String(s),
350 other => bail!("expected a value (string, number, TRUE, FALSE or NULL), got {:?}", other),
351 })
352 }
353
354 fn peek_kw(&self, kw: &str) -> bool {
355 matches!(self.peek(), Tok::Kw(k, _) if k == kw)
356 }
357
358 fn eat_kw(&mut self, kw: &str) -> bool {
359 if self.peek_kw(kw) { self.advance(); true } else { false }
360 }
361
362 fn expect_punct(&mut self, c: char) -> Result<()> {
363 match self.advance() {
364 Tok::Punct(p) if p == c => Ok(()),
365 other => bail!("expected '{}', got {:?}", c, other),
366 }
367 }
368
369 fn parse_agg_kw(&mut self) -> Result<GroupAgg> {
370 Ok(match self.advance() {
371 Tok::Kw(a, _) if a == "COUNT" => GroupAgg::Count,
372 Tok::Kw(a, _) if a == "SUM" => GroupAgg::Sum,
373 Tok::Kw(a, _) if a == "AVG" => GroupAgg::Avg,
374 Tok::Kw(a, _) if a == "MIN" => GroupAgg::Min,
375 Tok::Kw(a, _) if a == "MAX" => GroupAgg::Max,
376 other => bail!("expected an aggregate (COUNT/SUM/AVG/MIN/MAX), got {:?}", other),
377 })
378 }
379
380 fn parse_field(&mut self, ctx: &str) -> Result<String> {
381 match self.advance() {
382 Tok::Ident(s) | Tok::Kw(_, s) => Ok(s),
383 other => bail!("{}: expected field name, got {:?}", ctx, other),
384 }
385 }
386
387 fn parse_pred(&mut self) -> Result<Pred> { self.parse_or() }
390
391 fn parse_or(&mut self) -> Result<Pred> {
392 let mut terms = vec![self.parse_and()?];
393 while self.eat_kw("OR") {
394 terms.push(self.parse_and()?);
395 }
396 Ok(if terms.len() == 1 { terms.pop().unwrap() } else { Pred::Or(terms) })
397 }
398
399 fn parse_and(&mut self) -> Result<Pred> {
400 let mut terms = vec![self.parse_not()?];
401 while self.peek_kw("AND") {
402 self.advance();
405 terms.push(self.parse_not()?);
406 }
407 Ok(if terms.len() == 1 { terms.pop().unwrap() } else { Pred::And(terms) })
408 }
409
410 fn parse_not(&mut self) -> Result<Pred> {
411 if self.eat_kw("NOT") {
412 return Ok(Pred::Not(Box::new(self.parse_not()?)));
413 }
414 self.parse_primary()
415 }
416
417 fn parse_primary(&mut self) -> Result<Pred> {
418 if matches!(self.peek(), Tok::Punct('(')) {
419 self.advance();
420 let inner = self.parse_pred()?;
421 self.expect_punct(')')?;
422 return Ok(inner);
423 }
424 self.parse_comparison()
425 }
426
427 fn parse_comparison(&mut self) -> Result<Pred> {
428 let field = self.parse_field("WHERE")?;
429
430 if self.eat_kw("IS") {
432 let negated = self.eat_kw("NOT");
433 if !self.eat_kw("NULL") {
434 bail!("WHERE: expected NULL after IS{}", if negated { " NOT" } else { "" });
435 }
436 return Ok(Pred::IsNull { field, negated });
437 }
438
439 let negated = self.eat_kw("NOT");
441
442 if self.eat_kw("IN") {
443 self.expect_punct('(')?;
444 let mut values = vec![];
445 loop {
446 values.push(self.parse_value()?);
447 if matches!(self.peek(), Tok::Punct(',')) { self.advance(); continue; }
448 break;
449 }
450 self.expect_punct(')')?;
451 if values.is_empty() {
452 bail!("WHERE: IN () needs at least one value");
453 }
454 return Ok(Pred::In { field, values, negated });
455 }
456
457 if self.eat_kw("BETWEEN") {
458 let low = self.parse_value()?;
459 if !self.eat_kw("AND") {
460 bail!("WHERE: BETWEEN expects AND between its bounds");
461 }
462 let high = self.parse_value()?;
463 return Ok(Pred::Between { field, low, high, negated });
464 }
465
466 let ci = self.peek_kw("ILIKE");
467 if ci || self.peek_kw("LIKE") {
468 self.advance();
469 let pattern = match self.advance() {
470 Tok::Str(s) => s,
471 Tok::Ident(s) => s,
472 other => bail!("WHERE: LIKE expects a pattern string, got {:?}", other),
473 };
474 return Ok(Pred::Like { field, pattern, negated, ci });
475 }
476
477 if negated {
478 bail!("WHERE: NOT must be followed by IN, BETWEEN, LIKE or ILIKE \
479 (use `NOT (field = value)` or `field != value` to negate a comparison)");
480 }
481
482 let op = match self.advance() {
483 Tok::Op(s) => s,
484 other => bail!("WHERE: expected operator, got {:?}", other),
485 };
486
487 if matches!(op.as_str(), "~" | "~*" | "!~" | "!~*") {
492 let pattern = match self.advance() {
493 Tok::Str(s) => s,
494 Tok::Ident(s) => s,
495 other => bail!("WHERE: {} expects a pattern string, got {:?}", op, other),
496 };
497 if let Some(why) = regex_error(&pattern) {
501 bail!("WHERE: {} — in {:?}. The supported subset is ^ $ . | ( ) \
502 [ ] * + ? and literal text. Matching the rest approximately \
503 would silently include or exclude rows, so it is refused \
504 instead", why, pattern);
505 }
506 return Ok(Pred::Regex {
507 field,
508 pattern,
509 negated: op.starts_with('!'),
510 ci: op.ends_with('*'),
511 });
512 }
513
514 let value = self.parse_value()?;
515 Ok(Pred::Cmp { field, op, value })
516 }
517
518 fn parse(&mut self) -> Result<Query> {
519 self.expect_kw("FROM")?;
520 let coll = match self.advance() {
521 Tok::Ident(s) | Tok::Kw(_, s) => s,
522 other => bail!("expected collection name, got {:?}", other),
523 };
524
525 let mut q = Query {
526 coll, as_of: None, valid_as_of: None,
527 where_: None, search: None,
528 order_by: vec![],
529 limit: None, offset: None,
530 aggregate: None, having: None,
531 trace: None, trace_rev: false,
532 traverse: None,
533 };
534
535 loop {
536 match self.peek() {
537 Tok::Eof => break,
538
539 Tok::Kw(k, _) if k == "AS" => {
540 self.advance();
541 self.expect_kw("OF")?;
542 match self.advance() {
543 Tok::Num(n) => q.as_of = Some(n as u64),
544 other => bail!("AS OF expects sequence number, got {:?}", other),
545 }
546 }
547
548 Tok::Kw(k, _) if k == "VALID" => {
549 self.advance();
550 self.expect_kw("AS")?;
551 self.expect_kw("OF")?;
552 match self.advance() {
553 Tok::Str(s) => q.valid_as_of = Some(s),
554 other => bail!("VALID AS OF expects date string, got {:?}", other),
555 }
556 }
557
558 Tok::Kw(k, _) if k == "WHERE" => {
559 self.advance();
560 let pred = self.parse_pred()?;
561 q.where_ = Some(match q.where_.take() {
564 None => pred,
565 Some(prev) => Pred::And(vec![prev, pred]),
566 });
567 }
568
569 Tok::Kw(k, _) if k == "SEARCH" => {
570 self.advance();
571 match self.advance() {
572 Tok::Str(s) => q.search = Some(s),
573 other => bail!("SEARCH expects quoted string, got {:?}", other),
574 }
575 }
576
577 Tok::Kw(k, _) if k == "ORDER" => {
578 self.advance();
579 self.expect_kw("BY")?;
580 loop {
583 let field = self.parse_field("ORDER BY")?;
584 let desc = if self.eat_kw("DESC") {
588 true
589 } else {
590 self.eat_kw("ASC");
591 false
592 };
593 q.order_by.push(OrderKey { field, desc });
594 if matches!(self.peek(), Tok::Punct(',')) { self.advance(); continue; }
595 break;
596 }
597 }
598
599 Tok::Kw(k, _) if k == "LIMIT" => {
600 self.advance();
601 match self.advance() {
602 Tok::Num(n) if n >= 0.0 => q.limit = Some(n as usize),
603 other => bail!("LIMIT expects a non-negative number, got {:?}", other),
604 }
605 }
606
607 Tok::Kw(k, _) if k == "OFFSET" => {
608 self.advance();
609 match self.advance() {
610 Tok::Num(n) if n >= 0.0 => q.offset = Some(n as usize),
611 other => bail!("OFFSET expects a non-negative number, got {:?}", other),
612 }
613 }
614
615 Tok::Kw(k, _) if k == "HAVING" => {
616 self.advance();
617 let pred = self.parse_pred()?;
618 q.having = Some(match q.having.take() {
619 None => pred,
620 Some(prev) => Pred::And(vec![prev, pred]),
621 });
622 }
623
624 Tok::Kw(k, _) if matches!(k.as_str(), "COUNT" | "SUM" | "AVG" | "MIN" | "MAX") => {
627 let agg = self.parse_agg_kw()?;
628 let agg_field = match agg {
629 GroupAgg::Count => None,
630 _ => Some(self.parse_field("aggregate")?),
631 };
632 if q.aggregate.is_some() {
633 bail!("only one aggregate per query");
634 }
635 q.aggregate = Some(Aggregate { group_field: None, agg, agg_field });
636 }
637
638 Tok::Kw(k, _) if k == "GROUP" => {
639 self.advance();
640 self.expect_kw("BY")?;
641 let field = match self.advance() {
642 Tok::Ident(s) | Tok::Kw(_, s) => s,
643 other => bail!("GROUP BY: expected field, got {:?}", other),
644 };
645 let agg = if matches!(self.peek(),
650 Tok::Kw(a, _) if matches!(a.as_str(), "COUNT"|"SUM"|"AVG"|"MIN"|"MAX"))
651 {
652 self.parse_agg_kw()?
653 } else {
654 GroupAgg::Count
655 };
656 let agg_field = match agg {
663 GroupAgg::Count => None,
664 _ => Some(self.parse_field("GROUP BY aggregate")?),
665 };
666 if q.aggregate.is_some() {
667 bail!("only one aggregate per query");
668 }
669 q.aggregate = Some(Aggregate {
670 group_field: Some(field), agg, agg_field,
671 });
672 }
673
674 Tok::Kw(k, _) if k == "TRACE" => {
675 self.advance();
676 let edge = match self.advance() {
677 Tok::Ident(s) | Tok::Kw(_, s) => s,
678 other => bail!("TRACE: expected edge type, got {:?}", other),
679 };
680 q.trace = Some(edge);
681 if let Tok::Kw(k, _) = self.peek() {
682 if k == "REVERSE" { self.advance(); q.trace_rev = true; }
683 }
684 }
685
686 Tok::Kw(k, _) if k == "TRAVERSE" => {
687 self.advance();
688 let rel = match self.advance() {
689 Tok::Ident(s) | Tok::Kw(_, s) => s,
690 other => bail!("TRAVERSE: expected relation name, got {:?}", other),
691 };
692 q.traverse = Some(rel);
693 }
694
695 other => bail!(
698 "unexpected {:?} in query. Expected one of: AS OF, VALID AS OF, \
699 WHERE, SEARCH, ORDER BY, LIMIT, OFFSET, GROUP BY, HAVING, \
700 COUNT, SUM, AVG, MIN, MAX, TRACE, TRAVERSE",
701 other
702 ),
703 }
704 }
705
706 Ok(q)
707 }
708}
709
710fn field_value(node: &Node, field: &str) -> Value {
715 match field {
716 "_id" => Value::String(node.id.clone()),
717 "_coll" => Value::String(node.coll.clone()),
718 "_hash" => Value::String(node.hash.clone()),
719 "_seq" => json!(node.seq),
720 _ => node.data.get(field).cloned().unwrap_or(Value::Null),
721 }
722}
723
724fn cmp_op(a: &Value, op: &str, b: &Value) -> bool {
725 if matches!(op, "<" | "<=" | ">" | ">=") && a.is_null() {
746 return false;
747 }
748 let a = OrderedValue::from(a);
749 let b = OrderedValue::from(b);
750 match op {
751 "=" => a == b,
752 "!=" => a != b,
753 ">" => a > b,
754 "<" => a < b,
755 ">=" => a >= b,
756 "<=" => a <= b,
757 _ => false,
758 }
759}
760
761fn as_text(v: &Value) -> String {
765 match v {
766 Value::String(s) => s.clone(),
767 Value::Null => String::new(),
768 other => other.to_string(),
769 }
770}
771
772fn like_match(value: &str, pattern: &str, ci: bool) -> bool {
777 let (v, p): (Vec<char>, Vec<char>) = if ci {
778 (value.to_lowercase().chars().collect(), pattern.to_lowercase().chars().collect())
779 } else {
780 (value.chars().collect(), pattern.chars().collect())
781 };
782
783 let mut vi = 0usize;
784 let mut pi = 0usize;
785 let mut star: Option<(usize, usize)> = None;
787
788 while vi < v.len() {
789 if pi < p.len() && (p[pi] == '_' || p[pi] == v[vi]) {
790 vi += 1;
791 pi += 1;
792 } else if pi < p.len() && p[pi] == '%' {
793 star = Some((pi, vi));
794 pi += 1;
795 } else if let Some((sp, sv)) = star {
796 pi = sp + 1;
798 vi = sv + 1;
799 star = Some((sp, vi));
800 } else {
801 return false;
802 }
803 }
804 while pi < p.len() && p[pi] == '%' { pi += 1; }
806 pi == p.len()
807}
808
809#[derive(Debug, Clone, PartialEq)]
828enum ReNode {
829 Char(char),
830 Any,
831 Class { items: Vec<(char, char)>, negated: bool },
833 Start,
834 End,
835 Group(Vec<Vec<ReItem>>),
836}
837
838#[derive(Debug, Clone, Copy, PartialEq)]
839enum ReQuant { One, Opt, Star, Plus }
840
841#[derive(Debug, Clone, PartialEq)]
842struct ReItem { node: ReNode, quant: ReQuant }
843
844fn regex_compile(pattern: &str) -> Result<Vec<Vec<ReItem>>, String> {
846 let p: Vec<char> = pattern.chars().collect();
847 let mut pos = 0usize;
848 let alt = regex_parse_alt(&p, &mut pos, 0)?;
849 if pos < p.len() {
850 return Err(format!("regex {:?} has an unmatched ')'", pattern));
852 }
853 Ok(alt)
854}
855
856fn regex_parse_alt(p: &[char], pos: &mut usize, depth: usize) -> Result<Vec<Vec<ReItem>>, String> {
857 let mut branches = vec![];
858 loop {
859 let mut seq: Vec<ReItem> = vec![];
860 while *pos < p.len() {
861 let c = p[*pos];
862 if c == '|' || c == ')' {
863 break;
864 }
865 *pos += 1;
866 let node = match c {
867 '.' => ReNode::Any,
868 '^' => ReNode::Start,
869 '$' => ReNode::End,
870 '(' => {
871 let inner = regex_parse_alt(p, pos, depth + 1)?;
872 if *pos >= p.len() || p[*pos] != ')' {
873 return Err("regex has an unmatched '('".to_string());
874 }
875 *pos += 1;
876 ReNode::Group(inner)
877 }
878 '[' => {
879 let negated = *pos < p.len() && p[*pos] == '^';
880 if negated {
881 *pos += 1;
882 }
883 let mut items = vec![];
884 let mut first = true;
885 loop {
886 if *pos >= p.len() {
887 return Err("regex has an unmatched '['".to_string());
888 }
889 let ch = p[*pos];
890 if ch == ']' && !first {
891 *pos += 1;
892 break;
893 }
894 first = false;
895 if ch == '[' && p.get(*pos + 1) == Some(&':') {
896 return Err(
897 "regex uses a POSIX character class like [[:alpha:]], \
898 which this engine does not implement".to_string(),
899 );
900 }
901 let lo = if ch == '\\' {
902 *pos += 1;
903 *p.get(*pos).ok_or("regex ends inside an escape")?
904 } else {
905 ch
906 };
907 *pos += 1;
908 if *pos + 1 < p.len() && p[*pos] == '-' && p[*pos + 1] != ']' {
910 let hi = p[*pos + 1];
911 *pos += 2;
912 if hi < lo {
913 return Err(format!("regex range {}-{} is reversed", lo, hi));
914 }
915 items.push((lo, hi));
916 } else {
917 items.push((lo, lo));
918 }
919 }
920 ReNode::Class { items, negated }
921 }
922 '{' | '}' => {
923 return Err(format!(
924 "regex uses {:?} (an interval like a{{2,3}}), which this engine \
925 does not implement", c
926 ))
927 }
928 '*' | '+' | '?' => {
929 return Err(format!("regex has a {:?} with nothing to repeat", c))
930 }
931 '\\' => {
932 let e = *p.get(*pos).ok_or("regex ends inside an escape")?;
933 *pos += 1;
934 if e.is_ascii_digit() {
935 return Err("regex uses a back-reference like \\1, which this \
936 engine does not implement".to_string());
937 }
938 if matches!(e, 'd' | 'D' | 'w' | 'W' | 's' | 'S' | 'b' | 'B') {
939 return Err(format!(
940 "regex uses the shorthand class \\{}, which this engine does \
941 not implement — write the [..] class out", e
942 ));
943 }
944 ReNode::Char(e)
945 }
946 other => ReNode::Char(other),
947 };
948 let quant = match p.get(*pos) {
949 Some('*') => { *pos += 1; ReQuant::Star }
950 Some('+') => { *pos += 1; ReQuant::Plus }
951 Some('?') => { *pos += 1; ReQuant::Opt }
952 _ => ReQuant::One,
953 };
954 if quant != ReQuant::One && matches!(node, ReNode::Start | ReNode::End) {
955 return Err("regex repeats an anchor, which is meaningless".to_string());
956 }
957 seq.push(ReItem { node, quant });
958 }
959 branches.push(seq);
960 if *pos < p.len() && p[*pos] == '|' {
961 *pos += 1;
962 continue;
963 }
964 if *pos < p.len() && p[*pos] == ')' && depth == 0 {
965 return Err("regex has an unmatched ')'".to_string());
966 }
967 return Ok(branches);
968 }
969}
970
971fn re_class_hit(items: &[(char, char)], negated: bool, c: char) -> bool {
972 items.iter().any(|(lo, hi)| *lo <= c && c <= *hi) != negated
973}
974
975fn re_atom(node: &ReNode, t: &[char], pos: usize, k: &dyn Fn(usize) -> bool) -> bool {
977 match node {
978 ReNode::Char(c) => pos < t.len() && t[pos] == *c && k(pos + 1),
979 ReNode::Any => pos < t.len() && k(pos + 1),
980 ReNode::Class { items, negated } => {
981 pos < t.len() && re_class_hit(items, *negated, t[pos]) && k(pos + 1)
982 }
983 ReNode::Start => pos == 0 && k(pos),
984 ReNode::End => pos == t.len() && k(pos),
985 ReNode::Group(alt) => alt.iter().any(|seq| re_seq(seq, t, pos, k)),
986 }
987}
988
989fn re_star(node: &ReNode, rest: &[ReItem], t: &[char], pos: usize, k: &dyn Fn(usize) -> bool) -> bool {
991 re_atom(node, t, pos, &|p| p != pos && re_star(node, rest, t, p, k)) || re_seq(rest, t, pos, k)
993}
994
995fn re_seq(seq: &[ReItem], t: &[char], pos: usize, k: &dyn Fn(usize) -> bool) -> bool {
996 let Some(item) = seq.first() else { return k(pos) };
997 let rest = &seq[1..];
998 match item.quant {
999 ReQuant::One => re_atom(&item.node, t, pos, &|p| re_seq(rest, t, p, k)),
1000 ReQuant::Opt => {
1001 re_atom(&item.node, t, pos, &|p| re_seq(rest, t, p, k)) || re_seq(rest, t, pos, k)
1002 }
1003 ReQuant::Star => re_star(&item.node, rest, t, pos, k),
1004 ReQuant::Plus => re_atom(&item.node, t, pos, &|p| re_star(&item.node, rest, t, p, k)),
1005 }
1006}
1007
1008fn regex_error(pattern: &str) -> Option<String> {
1014 regex_compile(pattern).err()
1015}
1016
1017fn regex_match(value: &str, pattern: &str, ci: bool) -> bool {
1023 let (v, p) = if ci {
1024 (value.to_lowercase(), pattern.to_lowercase())
1025 } else {
1026 (value.to_string(), pattern.to_string())
1027 };
1028 let Ok(alt) = regex_compile(&p) else { return false };
1029 let t: Vec<char> = v.chars().collect();
1030 let done = |_: usize| true;
1031 (0..=t.len()).any(|start| alt.iter().any(|seq| re_seq(seq, &t, start, &done)))
1032}
1033
1034pub fn regex_match_pub(value: &str, pattern: &str, ci: bool) -> bool {
1042 regex_match(value, pattern, ci)
1043}
1044
1045pub fn regex_error_pub(pattern: &str) -> Option<String> {
1048 regex_error(pattern)
1049}
1050
1051pub fn like_match_pub(value: &str, pattern: &str, ci: bool) -> bool {
1053 like_match(value, pattern, ci)
1054}
1055
1056fn eval_pred_with(get: &dyn Fn(&str) -> Value, pred: &Pred) -> bool {
1063 match pred {
1064 Pred::Cmp { field, op, value } => cmp_op(&get(field), op, value),
1065
1066 Pred::In { field, values, negated } => {
1067 let fv = get(field);
1068 let hit = values.iter().any(|v| cmp_op(&fv, "=", v));
1069 hit != *negated
1070 }
1071
1072 Pred::Between { field, low, high, negated } => {
1073 let fv = get(field);
1074 let hit = cmp_op(&fv, ">=", low) && cmp_op(&fv, "<=", high);
1076 hit != *negated
1077 }
1078
1079 Pred::Like { field, pattern, negated, ci } => {
1080 let fv = get(field);
1081 if fv.is_null() { return false; }
1085 let hit = like_match(&as_text(&fv), pattern, *ci);
1086 hit != *negated
1087 }
1088
1089 Pred::Regex { field, pattern, negated, ci } => {
1090 let fv = get(field);
1091 if fv.is_null() { return false; }
1096 let hit = regex_match(&as_text(&fv), pattern, *ci);
1097 hit != *negated
1098 }
1099
1100 Pred::IsNull { field, negated } => {
1101 get(field).is_null() != *negated
1105 }
1106
1107 Pred::And(terms) => terms.iter().all(|t| eval_pred_with(get, t)),
1108 Pred::Or(terms) => terms.iter().any(|t| eval_pred_with(get, t)),
1109 Pred::Not(inner) => !eval_pred_with(get, inner),
1110 }
1111}
1112
1113fn eval_pred(node: &Node, pred: &Pred) -> bool {
1114 eval_pred_with(&|f| field_value(node, f), pred)
1115}
1116
1117fn eval_pred_json(obj: &Value, pred: &Pred) -> bool {
1119 eval_pred_with(&|f| obj.get(f).cloned().unwrap_or(Value::Null), pred)
1120}
1121
1122fn sort_by_keys<T>(rows: &mut [T], keys: &[OrderKey], get: impl Fn(&T, &str) -> Value) {
1125 rows.sort_by(|a, b| {
1126 for k in keys {
1127 let av = OrderedValue::from(&get(a, &k.field));
1128 let bv = OrderedValue::from(&get(b, &k.field));
1129 let ord = if k.desc { bv.cmp(&av) } else { av.cmp(&bv) };
1130 if ord != std::cmp::Ordering::Equal {
1131 return ord;
1132 }
1133 }
1134 std::cmp::Ordering::Equal
1135 });
1136}
1137
1138fn paginate<T>(rows: Vec<T>, offset: Option<usize>, limit: Option<usize>) -> Vec<T> {
1143 let mut it = rows;
1144 if let Some(off) = offset {
1145 if off >= it.len() {
1146 return vec![];
1147 }
1148 it.drain(..off);
1149 }
1150 if let Some(n) = limit {
1151 it.truncate(n);
1152 }
1153 it
1154}
1155
1156fn aggregate_rows(rows: &[Node], spec: &Aggregate) -> Vec<Value> {
1169 struct Group { count: usize, nums: Vec<f64>, ints: Vec<i64>, all_int: bool }
1179
1180 let mut order: Vec<String> = vec![];
1183 let mut groups: HashMap<String, Group> = HashMap::new();
1184
1185 const WHOLE: &str = "";
1188
1189 for node in rows {
1190 let key = match spec.group_field {
1198 None => WHOLE.to_string(),
1199 Some(ref gf) => match field_value(node, gf) {
1200 Value::Null => "null".to_string(),
1201 v => as_text(&v),
1202 },
1203 };
1204 let entry = groups.entry(key.clone()).or_insert_with(|| {
1205 order.push(key.clone());
1206 Group { count: 0, nums: vec![], ints: vec![], all_int: true }
1207 });
1208 entry.count += 1;
1209 if let Some(ref af) = spec.agg_field {
1210 if let Value::Number(n) = field_value(node, af) {
1213 if let Some(i) = n.as_i64() {
1214 entry.ints.push(i);
1215 entry.nums.push(i as f64);
1216 } else if let Some(f) = n.as_f64() {
1217 entry.all_int = false;
1218 entry.nums.push(f);
1219 }
1220 }
1221 }
1222 }
1223
1224 if spec.group_field.is_none() && order.is_empty() {
1228 order.push(WHOLE.to_string());
1229 groups.insert(WHOLE.to_string(),
1230 Group { count: 0, nums: vec![], ints: vec![], all_int: true });
1231 }
1232
1233 order.into_iter().map(|k| {
1234 let g = &groups[&k];
1235 let mut obj = serde_json::Map::new();
1236 if let Some(ref gf) = spec.group_field {
1237 obj.insert(gf.clone(), Value::String(k.clone()));
1238 }
1239 obj.insert("count".to_string(), json!(g.count));
1240
1241 let int_path = g.all_int && !g.ints.is_empty();
1245 let agg_val: Value = match spec.agg {
1246 GroupAgg::Count => json!(g.count),
1247 _ if g.nums.is_empty() => Value::Null,
1248 GroupAgg::Sum if int_path => {
1251 match g.ints.iter().try_fold(0i64, |a, &b| a.checked_add(b)) {
1252 Some(t) => json!(t),
1253 None => json!(g.nums.iter().sum::<f64>()),
1254 }
1255 }
1256 GroupAgg::Min if int_path => json!(g.ints.iter().min().copied().unwrap()),
1257 GroupAgg::Max if int_path => json!(g.ints.iter().max().copied().unwrap()),
1258 GroupAgg::Sum => json!(g.nums.iter().sum::<f64>()),
1259 GroupAgg::Avg => json!(g.nums.iter().sum::<f64>() / g.nums.len() as f64),
1261 GroupAgg::Min => json!(g.nums.iter().cloned().fold(f64::INFINITY, f64::min)),
1262 GroupAgg::Max => json!(g.nums.iter().cloned().fold(f64::NEG_INFINITY, f64::max)),
1263 };
1264
1265 if let Some(ref af) = spec.agg_field {
1267 obj.insert(format!("{}_{}", spec.agg.name(), af), agg_val.clone());
1268 }
1269 obj.insert("value".to_string(), agg_val);
1274 Value::Object(obj)
1275 }).collect()
1276}
1277
1278#[derive(Debug, Clone)]
1287enum IndexPlan {
1288 Range {
1290 field: String,
1291 low: Option<Value>,
1292 high: Option<Value>,
1293 low_incl: bool,
1294 high_incl: bool,
1295 },
1296 Values { field: String, values: Vec<Value> },
1298}
1299
1300impl IndexPlan {
1301 fn field(&self) -> &str {
1302 match self {
1303 IndexPlan::Range { field, .. } => field,
1304 IndexPlan::Values { field, .. } => field,
1305 }
1306 }
1307}
1308
1309fn collect_index_constraints(pred: &Pred, out: &mut Vec<IndexPlan>) {
1322 match pred {
1323 Pred::And(terms) => {
1324 for t in terms {
1325 collect_index_constraints(t, out);
1326 }
1327 }
1328
1329 Pred::Cmp { field, op, value } => {
1330 if field == "_id" {
1332 return;
1333 }
1334 match op.as_str() {
1335 "=" => out.push(IndexPlan::Values {
1336 field: field.clone(),
1337 values: vec![value.clone()],
1338 }),
1339 ">" | ">=" => out.push(IndexPlan::Range {
1340 field: field.clone(),
1341 low: Some(value.clone()),
1342 high: None,
1343 low_incl: op == ">=",
1344 high_incl: true,
1345 }),
1346 "<" | "<=" => out.push(IndexPlan::Range {
1347 field: field.clone(),
1348 low: None,
1349 high: Some(value.clone()),
1350 low_incl: true,
1351 high_incl: op == "<=",
1352 }),
1353 _ => {}
1356 }
1357 }
1358
1359 Pred::Between { field, low, high, negated: false } => {
1360 out.push(IndexPlan::Range {
1361 field: field.clone(),
1362 low: Some(low.clone()),
1363 high: Some(high.clone()),
1364 low_incl: true, high_incl: true,
1366 });
1367 }
1368
1369 Pred::In { field, values, negated: false } => {
1370 out.push(IndexPlan::Values {
1371 field: field.clone(),
1372 values: values.clone(),
1373 });
1374 }
1375
1376 _ => {}
1382 }
1383}
1384
1385fn choose_index_plan(db: &Db, coll: &str, pred: &Pred) -> Option<IndexPlan> {
1392 let mut raw = vec![];
1393 collect_index_constraints(pred, &mut raw);
1394 raw.retain(|p| db.has_sorted_index(coll, p.field()));
1395 if raw.is_empty() {
1396 return None;
1397 }
1398
1399 let mut merged: Vec<IndexPlan> = vec![];
1401 for plan in raw {
1402 let field = plan.field().to_string();
1403 let existing = merged.iter().position(|m| m.field() == field);
1404 match (existing, plan) {
1405 (None, p) => merged.push(p),
1406
1407 (Some(i), IndexPlan::Range { low, high, low_incl, high_incl, .. }) => {
1409 if let IndexPlan::Range {
1410 low: ref mut elow, high: ref mut ehigh,
1411 low_incl: ref mut eli, high_incl: ref mut ehi, ..
1412 } = merged[i] {
1413 if let Some(l) = low {
1414 let tighter = match elow {
1415 None => true,
1416 Some(cur) => OrderedValue::from(&l) > OrderedValue::from(&*cur),
1417 };
1418 if tighter { *elow = Some(l); *eli = low_incl; }
1419 }
1420 if let Some(h) = high {
1421 let tighter = match ehigh {
1422 None => true,
1423 Some(cur) => OrderedValue::from(&h) < OrderedValue::from(&*cur),
1424 };
1425 if tighter { *ehigh = Some(h); *ehi = high_incl; }
1426 }
1427 }
1428 }
1432
1433 (Some(i), p @ IndexPlan::Values { .. }) => {
1435 if matches!(merged[i], IndexPlan::Range { .. }) {
1436 merged[i] = p;
1437 }
1438 }
1439 }
1440 }
1441
1442 let mut best: Option<(usize, IndexPlan)> = None;
1446 for plan in merged {
1447 let card = match &plan {
1448 IndexPlan::Range { field, low, high, low_incl, high_incl } => db
1449 .range_cardinality(coll, field, low.as_ref(), high.as_ref(),
1450 *low_incl, *high_incl)
1451 .unwrap_or(usize::MAX),
1452 IndexPlan::Values { field, values } => values
1453 .iter()
1454 .map(|v| db.range_cardinality(coll, field, Some(v), Some(v), true, true)
1455 .unwrap_or(usize::MAX))
1456 .fold(0usize, |a, b| a.saturating_add(b)),
1457 };
1458 if best.as_ref().map(|(c, _)| card < *c).unwrap_or(true) {
1459 best = Some((card, plan));
1460 }
1461 }
1462 best.map(|(_, p)| p)
1463}
1464
1465fn id_point_lookup(pred: &Pred) -> Option<String> {
1466 match pred {
1467 Pred::Cmp { field, op, value } if field == "_id" && op == "=" => {
1468 if let Value::String(s) = value { Some(s.clone()) } else { None }
1469 }
1470 Pred::And(terms) => terms.iter().find_map(id_point_lookup),
1471 _ => None,
1472 }
1473}
1474
1475fn matches_valid_as_of(node: &Node, date: &str) -> bool {
1476 let from_ok = node.valid_from.as_deref().map(|f| f <= date).unwrap_or(true);
1480 let to_ok = node.valid_to.as_deref().map(|t| t > date).unwrap_or(true);
1481 from_ok && to_ok
1482}
1483
1484fn node_contains_text(node: &Node, text: &str) -> bool {
1485 let s = node.data.to_string().to_lowercase();
1486 s.contains(&text.to_lowercase())
1487}
1488
1489pub fn node_to_json(node: &Node) -> Value {
1493 let mut obj = if let Value::Object(m) = &node.data {
1494 m.clone()
1495 } else {
1496 serde_json::Map::new()
1497 };
1498 obj.insert("_id".to_string(), Value::String(node.id.clone()));
1499 obj.insert("_hash".to_string(), Value::String(node.hash.clone()));
1500 obj.insert("_seq".to_string(), json!(node.seq));
1501 obj.insert("_coll".to_string(), Value::String(node.coll.clone()));
1502 if let Some(ref vf) = node.valid_from {
1503 obj.insert("_valid_from".to_string(), Value::String(vf.clone()));
1504 }
1505 if let Some(ref vt) = node.valid_to {
1506 obj.insert("_valid_to".to_string(), Value::String(vt.clone()));
1507 }
1508 if !node.caused_by.is_empty() {
1509 obj.insert("_caused_by".to_string(), Value::Array(
1510 node.caused_by.iter().map(|h| Value::String(h.clone())).collect()
1511 ));
1512 }
1513 Value::Object(obj)
1514}
1515
1516pub fn parse(nql: &str) -> Result<Query> {
1525 let mut lexer = Lexer::new(nql);
1526 let toks = lexer.tokenize();
1527 let mut parser = Parser::new(toks);
1528 parser.parse()
1529}
1530
1531pub fn execute(db: &Db, nql: &str) -> Result<Vec<Value>> {
1532 let q = parse(nql)?;
1535
1536 let id_eq_fast_path: Option<String> = if q.as_of.is_none() && q.trace.is_none() {
1543 q.where_.as_ref().and_then(id_point_lookup)
1544 } else { None };
1545
1546 let candidates: Vec<Node> = if let Some(ref target_id) = id_eq_fast_path {
1547 db.get(&q.coll, target_id).into_iter().collect()
1549 } else if let Some(seq_target) = q.as_of {
1550 db.list_ids_including_deleted(&q.coll).into_iter()
1560 .filter_map(|id| db.get_as_of(&q.coll, &id, seq_target))
1561 .collect()
1562 } else if let Some(plan) = q.where_.as_ref()
1563 .filter(|_| q.as_of.is_none())
1572 .and_then(|p| choose_index_plan(db, &q.coll, p))
1573 {
1574 let got = match &plan {
1577 IndexPlan::Range { field, low, high, low_incl, high_incl } => db.range_scan(
1578 &q.coll, field, low.as_ref(), high.as_ref(), *low_incl, *high_incl),
1579 IndexPlan::Values { field, values } => db.index_lookup(&q.coll, field, values),
1580 };
1581 match got {
1582 Some(nodes) => nodes,
1583 None => db.list(&q.coll),
1586 }
1587 } else if q.order_by.len() == 1 && q.aggregate.is_none() {
1588 let key = &q.order_by[0];
1603 let has_post_filters = q.where_.is_some()
1604 || q.search.is_some()
1605 || q.valid_as_of.is_some();
1606 let limit = if has_post_filters {
1607 9_999_999
1608 } else {
1609 match q.limit {
1613 Some(n) => n.saturating_add(q.offset.unwrap_or(0)),
1614 None => 9_999_999,
1615 }
1616 };
1617 if key.desc {
1618 db.order_by_desc(&q.coll, &key.field, limit)
1619 } else {
1620 db.order_by_asc(&q.coll, &key.field, limit)
1621 }
1622 } else if let (Some(n), true) = (q.limit, q.where_.is_none()
1623 && q.search.is_none() && q.trace.is_none()
1624 && q.traverse.is_none() && q.aggregate.is_none()
1625 && q.order_by.is_empty() && q.offset.is_none()
1626 && q.valid_as_of.is_none()) {
1627 db.id_index
1632 .list_ids(&q.coll)
1633 .into_iter()
1634 .take(n)
1635 .filter_map(|id| db.get(&q.coll, &id))
1636 .collect()
1637 } else {
1638 db.list(&q.coll)
1640 };
1641
1642 let mut rows: Vec<Node> = candidates.into_iter()
1645 .filter(|n| q.where_.as_ref().map(|p| eval_pred(n, p)).unwrap_or(true))
1646 .filter(|n| q.valid_as_of.as_deref()
1647 .map(|d| matches_valid_as_of(n, d))
1648 .unwrap_or(true))
1649 .filter(|n| q.search.as_deref()
1650 .map(|t| node_contains_text(n, t))
1651 .unwrap_or(true))
1652 .collect();
1653
1654 if let Some(ref _edge_type) = q.trace {
1657 let limit = q.limit.unwrap_or(1000);
1658 let mut traced: Vec<Node> = vec![];
1659 for root in &rows {
1660 let chain = db.trace(&root.hash, q.trace_rev, limit);
1661 traced.extend(chain);
1662 }
1663 rows = traced;
1664 }
1665
1666 if let Some(ref rel) = q.traverse {
1669 let mut traversed: Vec<Node> = vec![];
1670 for root in &rows {
1671 let frm = format!("{}:{}", root.coll, root.id);
1672 let neighbors = db.neighbors(&frm, rel);
1673 traversed.extend(neighbors);
1674 }
1675 rows = traversed;
1676 }
1677
1678 if let Some(ref spec) = q.aggregate {
1696 let mut out = aggregate_rows(&rows, spec);
1697
1698 if let Some(ref pred) = q.having {
1701 out.retain(|row| eval_pred_json(row, pred));
1702 }
1703
1704 if !q.order_by.is_empty() {
1705 sort_by_keys(&mut out, &q.order_by,
1706 |row, f| row.get(f).cloned().unwrap_or(Value::Null));
1707 } else if let Some(ref gf) = spec.group_field {
1708 let gf = gf.clone();
1716 out.sort_by(|a, b| {
1717 as_text(&a.get(&gf).cloned().unwrap_or(Value::Null))
1718 .cmp(&as_text(&b.get(&gf).cloned().unwrap_or(Value::Null)))
1719 });
1720 }
1721
1722 return Ok(paginate(out, q.offset, q.limit));
1723 }
1724
1725 if q.having.is_some() {
1726 bail!("HAVING requires an aggregate — add GROUP BY <field>, or use WHERE \
1727 to filter individual rows");
1728 }
1729
1730 if !q.order_by.is_empty() {
1733 let index_path_held = q.order_by.len() == 1
1737 && q.as_of.is_none()
1738 && q.where_.is_none()
1739 && q.search.is_none()
1740 && q.valid_as_of.is_none()
1741 && q.trace.is_none()
1742 && q.traverse.is_none();
1743 if !index_path_held {
1744 sort_by_keys(&mut rows, &q.order_by,
1745 |n, f| field_value(n, f));
1746 }
1747 }
1748
1749 let rows = paginate(rows, q.offset, q.limit);
1752
1753 Ok(rows.into_iter().map(|n| node_to_json(&n)).collect())
1756}
1757
1758pub fn query(db: &Db, nql: &str) -> Result<(Vec<Value>, usize)> {
1760 let rows = execute(db, nql)?;
1761 let count = rows.len();
1762 Ok((rows, count))
1763}
1764
1765pub fn query_rows(rows: Vec<Value>, nql: &str) -> Result<Vec<Value>> {
1786 let q = parse(nql)?;
1787
1788 for (unsupported, clause) in [
1789 (q.as_of.is_some(), "AS OF"),
1790 (q.valid_as_of.is_some(), "VALID AS OF"),
1791 (q.trace.is_some(), "TRACE"),
1792 (q.traverse.is_some(), "TRAVERSE"),
1793 (q.search.is_some(), "SEARCH"),
1794 (q.aggregate.is_some(), "an aggregate"),
1795 (q.having.is_some(), "HAVING"),
1796 ] {
1797 if unsupported {
1798 bail!("{} is not supported on the catalogue table {:?} — a catalogue \
1799 is synthesised from the current database, so it has no history, \
1800 no causal edges and nothing to aggregate. Query the collection \
1801 itself for those", clause, q.coll);
1802 }
1803 }
1804
1805 let get = |row: &Value, field: &str| -> Value {
1806 row.get(field).cloned().unwrap_or(Value::Null)
1807 };
1808
1809 let mut kept: Vec<Value> = match &q.where_ {
1810 None => rows,
1811 Some(pred) => rows
1812 .into_iter()
1813 .filter(|r| eval_pred_with(&|f| get(r, f), pred))
1814 .collect(),
1815 };
1816
1817 if !q.order_by.is_empty() {
1818 sort_by_keys(&mut kept, &q.order_by, get);
1819 }
1820 Ok(paginate(kept, q.offset, q.limit))
1821}
1822
1823#[cfg(test)]
1824mod tests {
1825 use super::*;
1826 use tempfile::tempdir;
1827 use crate::db::Db;
1828
1829 fn setup() -> (tempfile::TempDir, Db) {
1834 let dir = tempdir().unwrap();
1835 let db = Db::open(dir.path(), None).unwrap();
1836 db.create_sorted_index("blocks", "height");
1837 for h in 1u64..=5 {
1838 db.put("blocks", &h.to_string(),
1839 serde_json::json!({"height": h, "hash": format!("000{}", h), "n_tx": h * 2}),
1840 vec![], None, None).unwrap();
1841 }
1842 (dir, db)
1843 }
1844
1845 #[test]
1846 fn from_all() {
1847 let (_tmp, db) = setup();
1848 let (rows, count) = query(&db, "FROM blocks").unwrap();
1849 assert_eq!(count, 5);
1850 let _ = rows;
1851 }
1852
1853 #[test]
1854 fn where_eq() {
1855 let (_tmp, db) = setup();
1856 let (rows, count) = query(&db, r#"FROM blocks WHERE _id = "3""#).unwrap();
1857 assert_eq!(count, 1);
1858 assert_eq!(rows[0]["_id"], "3");
1859 }
1860
1861 #[test]
1862 fn order_by_limit() {
1863 let (_tmp, db) = setup();
1864 let (rows, count) = query(&db, "FROM blocks ORDER BY height ASC LIMIT 3").unwrap();
1865 assert_eq!(count, 3);
1866 assert_eq!(rows[0]["height"], 1);
1867 assert_eq!(rows[2]["height"], 3);
1868 }
1869
1870 #[test]
1871 fn order_by_desc() {
1872 let (_tmp, db) = setup();
1873 let (rows, _) = query(&db, "FROM blocks ORDER BY height DESC LIMIT 2").unwrap();
1874 assert_eq!(rows[0]["height"], 5);
1875 }
1876
1877 #[test]
1878 fn where_gt() {
1879 let (_tmp, db) = setup();
1880 let (rows, _) = query(&db, "FROM blocks WHERE height > 3").unwrap();
1881 assert_eq!(rows.len(), 2);
1882 }
1883
1884 #[test]
1891 fn where_order_limit_does_not_truncate_before_filter() {
1892 let (_tmp, db) = setup();
1893 let (rows, count) =
1894 query(&db, "FROM blocks WHERE n_tx >= 8 ORDER BY height LIMIT 2").unwrap();
1895 assert_eq!(count, 2, "both matching rows must survive the limit");
1896 let heights: Vec<u64> = rows.iter()
1897 .filter_map(|r| r["height"].as_u64())
1898 .collect();
1899 assert_eq!(heights, vec![4, 5]);
1900 let (rows_d, _) =
1902 query(&db, "FROM blocks WHERE n_tx >= 8 ORDER BY height DESC LIMIT 1").unwrap();
1903 assert_eq!(rows_d.len(), 1);
1904 assert_eq!(rows_d[0]["height"], 5);
1905 }
1906
1907 fn setup_text() -> (tempfile::TempDir, Db) {
1915 let dir = tempdir().unwrap();
1916 let db = Db::open(dir.path(), None).unwrap();
1917 let rows = [
1918 ("1", serde_json::json!({"status": "open", "miner": "Acme Pool", "fee": 10})),
1919 ("2", serde_json::json!({"status": "pending", "miner": "acme solo", "fee": 20})),
1920 ("3", serde_json::json!({"status": "closed", "miner": "Zenith", "fee": 30})),
1921 ("4", serde_json::json!({"status": "open", "fee": 40})),
1922 ("5", serde_json::json!({"status": "voided", "miner": Value::Null, "fee": 50})),
1923 ];
1924 for (id, data) in rows {
1925 db.put("jobs", id, data, vec![], None, None).unwrap();
1926 }
1927 (dir, db)
1928 }
1929
1930 fn ids(rows: &[Value]) -> Vec<String> {
1931 let mut v: Vec<String> = rows.iter()
1932 .filter_map(|r| r["_id"].as_str().map(String::from))
1933 .collect();
1934 v.sort();
1935 v
1936 }
1937
1938 #[test]
1939 fn where_in_list() {
1940 let (_tmp, db) = setup();
1941 let (rows, _) = query(&db, "FROM blocks WHERE height IN (2, 4)").unwrap();
1942 assert_eq!(ids(&rows), vec!["2", "4"]);
1943 }
1944
1945 #[test]
1946 fn where_in_strings() {
1947 let (_tmp, db) = setup_text();
1948 let (rows, _) = query(&db, r#"FROM jobs WHERE status IN ("open", "closed")"#).unwrap();
1949 assert_eq!(ids(&rows), vec!["1", "3", "4"]);
1950 }
1951
1952 #[test]
1953 fn where_not_in() {
1954 let (_tmp, db) = setup();
1955 let (rows, _) = query(&db, "FROM blocks WHERE height NOT IN (1, 2, 3)").unwrap();
1956 assert_eq!(ids(&rows), vec!["4", "5"]);
1957 }
1958
1959 #[test]
1960 fn where_in_single_value_equals_eq() {
1961 let (_tmp, db) = setup();
1962 let (a, _) = query(&db, "FROM blocks WHERE height IN (3)").unwrap();
1963 let (b, _) = query(&db, "FROM blocks WHERE height = 3").unwrap();
1964 assert_eq!(ids(&a), ids(&b));
1965 }
1966
1967 #[test]
1968 fn where_between_is_inclusive() {
1969 let (_tmp, db) = setup();
1970 let (rows, _) = query(&db, "FROM blocks WHERE height BETWEEN 2 AND 4").unwrap();
1971 assert_eq!(ids(&rows), vec!["2", "3", "4"]);
1973 }
1974
1975 #[test]
1976 fn where_not_between() {
1977 let (_tmp, db) = setup();
1978 let (rows, _) = query(&db, "FROM blocks WHERE height NOT BETWEEN 2 AND 4").unwrap();
1979 assert_eq!(ids(&rows), vec!["1", "5"]);
1980 }
1981
1982 #[test]
1986 fn between_and_does_not_swallow_the_conjunction() {
1987 let (_tmp, db) = setup();
1988 let (rows, _) = query(
1989 &db, "FROM blocks WHERE height BETWEEN 2 AND 4 AND n_tx > 4").unwrap();
1990 assert_eq!(ids(&rows), vec!["3", "4"]);
1992 }
1993
1994 #[test]
1995 fn where_like_prefix_suffix_and_infix() {
1996 let (_tmp, db) = setup_text();
1997 let (pre, _) = query(&db, r#"FROM jobs WHERE miner LIKE "Acme%""#).unwrap();
1998 assert_eq!(ids(&pre), vec!["1"]);
1999 let (suf, _) = query(&db, r#"FROM jobs WHERE miner LIKE "%Pool""#).unwrap();
2000 assert_eq!(ids(&suf), vec!["1"]);
2001 let (inf, _) = query(&db, r#"FROM jobs WHERE status LIKE "%pen%""#).unwrap();
2002 assert_eq!(ids(&inf), vec!["1", "2", "4"]); }
2004
2005 #[test]
2006 fn where_like_underscore_matches_exactly_one_char() {
2007 let (_tmp, db) = setup_text();
2008 let (rows, _) = query(&db, r#"FROM jobs WHERE status LIKE "open_""#).unwrap();
2009 assert!(rows.is_empty(), "`open_` must not match the 4-char value `open`");
2010 let (rows2, _) = query(&db, r#"FROM jobs WHERE status LIKE "ope_""#).unwrap();
2011 assert_eq!(ids(&rows2), vec!["1", "4"]);
2012 }
2013
2014 #[test]
2015 fn where_ilike_is_case_insensitive_and_like_is_not() {
2016 let (_tmp, db) = setup_text();
2017 let (ci, _) = query(&db, r#"FROM jobs WHERE miner ILIKE "acme%""#).unwrap();
2018 assert_eq!(ci.len(), 2, "ILIKE matches both `Acme Pool` and `acme solo`");
2019 let (cs, _) = query(&db, r#"FROM jobs WHERE miner LIKE "acme%""#).unwrap();
2020 assert_eq!(ids(&cs), vec!["2"], "LIKE stays case-sensitive");
2021 }
2022
2023 #[test]
2026 fn like_backtracks_across_multiple_wildcards() {
2027 assert!(like_match("abcabcabd", "%abc%abd", false));
2028 assert!(like_match("aaa", "%a", false));
2029 assert!(like_match("", "%", false));
2030 assert!(like_match("x", "%%%", false));
2031 assert!(!like_match("abc", "%abd", false));
2032 assert!(!like_match("ab", "ab_", false));
2033 assert!(like_match("héllo wörld", "h_llo w%d", false));
2034 }
2035
2036 #[test]
2039 fn regex_anchors_behave_as_posix_says() {
2040 assert!(regex_match("pg_catalog", "^pg_", false));
2042 assert!(regex_match("pg_toast_1", "^pg_toast", false));
2043 assert!(!regex_match("public", "^pg_", false));
2044 assert!(!regex_match("my_pg_stuff", "^pg_", false));
2047
2048 assert!(regex_match("report.sql", "sql$", false));
2049 assert!(!regex_match("sql_report", "sql$", false));
2050 assert!(regex_match("public", "^public$", false));
2052 assert!(!regex_match("public2", "^public$", false));
2053 assert!(regex_match("xxpg_yy", "pg_", false));
2055 assert!(!regex_match("xxqg_yy", "pg_", false));
2056 }
2057
2058 #[test]
2059 fn regex_dot_matches_exactly_one_character() {
2060 assert!(regex_match("abc", "a.c", false));
2061 assert!(!regex_match("ac", "a.c", false), "`.` is one char, not zero");
2062 assert!(!regex_match("abbc", "a.c", false), "`.` is one char, not many");
2063 assert!(regex_match("héllo", "h.llo", false));
2065 }
2066
2067 #[test]
2068 fn regex_case_insensitivity_is_opt_in() {
2069 assert!(regex_match("PG_CATALOG", "^pg_", true));
2070 assert!(!regex_match("PG_CATALOG", "^pg_", false),
2071 "`~` is case SENSITIVE; only `~*` folds case");
2072 }
2073
2074 #[test]
2075 fn an_empty_regex_matches_anything() {
2076 assert!(regex_match("anything", "", false));
2078 assert!(regex_match("", "", false));
2079 assert!(regex_match("x", "$", false));
2080 }
2081
2082 #[test]
2083 fn regex_groups_alternation_classes_and_quantifiers_match_as_ERE_says() {
2084 assert!(regex_match("orders", "^(orders)$", false));
2087 assert!(!regex_match("orders2", "^(orders)$", false));
2088 assert!(regex_match("orders", "^(ord.*)$", false));
2089 assert!(regex_match("ord", "^(ord.*)$", false), "`.*` may match nothing");
2090 assert!(!regex_match("xord", "^(ord.*)$", false));
2091 assert!(regex_match("drivers", "^(orders|drivers)$", false));
2093 assert!(!regex_match("riders", "^(orders|drivers)$", false));
2094 assert!(regex_match("b", "a|b", false));
2095 assert!(regex_match("aaab", "^a+b$", false));
2097 assert!(!regex_match("b", "^a+b$", false));
2098 assert!(regex_match("b", "^a*b$", false));
2099 assert!(regex_match("ab", "^a?b$", false));
2100 assert!(!regex_match("aab", "^a?b$", false));
2101 assert!(regex_match("aXb", "^a.+b$", false));
2102 assert!(regex_match("pg_toast_9", "^pg_[a-z]+_[0-9]$", false));
2104 assert!(!regex_match("pg_toast_x", "^pg_[a-z]+_[0-9]$", false));
2105 assert!(regex_match("x", "^[^0-9]$", false));
2106 assert!(!regex_match("5", "^[^0-9]$", false));
2107 assert!(regex_match("a-b", "^a[-]b$", false));
2108 assert!(regex_match("a.b", "^a\\.b$", false));
2110 assert!(!regex_match("axb", "^a\\.b$", false));
2111 assert!(regex_match("(x)", "^\\(x\\)$", false));
2112 assert!(regex_match("q", "^()*q$", false));
2114 assert!(regex_match("héllo", "^h.l+o$", false));
2116 }
2117
2118 #[test]
2119 fn an_unsupported_regex_construct_is_REFUSED_BY_NAME_not_approximated() {
2120 for (pat, needle) in [
2124 ("a{2}", "interval"),
2125 ("[[:alpha:]]", "POSIX character class"),
2126 ("(a)\\1", "back-reference"),
2127 ("\\d+", "shorthand class"),
2128 ("(ab", "unmatched '('"),
2129 ("ab)", "unmatched ')'"),
2130 ("[ab", "unmatched '['"),
2131 ("*a", "nothing to repeat"),
2132 ("[z-a]", "reversed"),
2133 ] {
2134 let why = regex_error(pat).unwrap_or_else(|| {
2135 panic!("{:?} must be refused, not matched approximately", pat)
2136 });
2137 assert!(why.contains(needle), "{:?}: {:?} should name {:?}", pat, why, needle);
2138 assert!(!regex_match("aa", pat, false));
2140 }
2141 for pat in ["^pg_", "sql$", "^public$", "a.c", "plain", "", "^(orders)$",
2142 "a+b", "a*b", "a?b", "[ab]", "(a|b)", "a\\.b", "a[-]b"] {
2143 assert_eq!(regex_error(pat), None, "{:?} is in the subset", pat);
2144 }
2145 }
2146
2147 #[test]
2148 fn the_regex_operators_parse_in_all_four_spellings() {
2149 for (nql, negated, ci) in [
2150 (r#"FROM t WHERE nspname ~ "^pg_""#, false, false),
2151 (r#"FROM t WHERE nspname ~* "^pg_""#, false, true),
2152 (r#"FROM t WHERE nspname !~ "^pg_""#, true, false),
2153 (r#"FROM t WHERE nspname !~* "^pg_""#, true, true),
2154 ] {
2155 let q = parse(nql).unwrap_or_else(|e| panic!("{}: {}", nql, e));
2156 match q.where_.expect("a predicate") {
2157 Pred::Regex { field, pattern, negated: n, ci: c } => {
2158 assert_eq!(field, "nspname");
2159 assert_eq!(pattern, "^pg_");
2160 assert_eq!((n, c), (negated, ci), "{}", nql);
2161 }
2162 other => panic!("{} parsed as {:?}", nql, other),
2163 }
2164 }
2165 }
2166
2167 #[test]
2168 fn a_bad_regex_is_rejected_at_parse_time_with_the_offending_char() {
2169 let e = parse(r#"FROM t WHERE x ~ "a{2}""#).unwrap_err().to_string();
2170 assert!(e.contains("interval"), "the error must name the construct: {}", e);
2171 assert!(e.contains("refused"), "{}", e);
2172 }
2173
2174 #[test]
2175 fn a_regex_over_a_missing_field_is_false_in_both_polarities() {
2176 let (_tmp, db) = setup_items();
2179 let (m, _) = query(&db, r#"FROM items WHERE nosuchfield ~ "x""#).unwrap();
2180 assert!(m.is_empty());
2181 let (n, _) = query(&db, r#"FROM items WHERE nosuchfield !~ "x""#).unwrap();
2182 assert!(n.is_empty(), "NOT over NULL must not match either");
2183 }
2184
2185 #[test]
2186 fn the_regex_operator_works_end_to_end_over_stored_documents() {
2187 let (_tmp, db) = setup_items();
2188 let (all, _) = query(&db, "FROM items").unwrap();
2189 let want: Vec<String> = all.iter()
2190 .filter_map(|r| r["_id"].as_str().map(str::to_string)).collect();
2191 let (got, _) = query(&db, r#"FROM items WHERE _id ~ """#).unwrap();
2194 assert_eq!(got.len(), want.len());
2195 let (none, _) = query(&db, r#"FROM items WHERE _id !~ """#).unwrap();
2197 assert!(none.is_empty());
2198 }
2199
2200 #[test]
2201 fn where_not_like() {
2202 let (_tmp, db) = setup_text();
2203 let (rows, _) = query(&db, r#"FROM jobs WHERE status NOT LIKE "open""#).unwrap();
2204 assert_eq!(ids(&rows), vec!["2", "3", "5"]);
2205 }
2206
2207 #[test]
2211 fn like_over_null_is_false_in_both_polarities() {
2212 let (_tmp, db) = setup_text();
2213 let (pos, _) = query(&db, r#"FROM jobs WHERE miner LIKE "%""#).unwrap();
2214 let (neg, _) = query(&db, r#"FROM jobs WHERE miner NOT LIKE "%""#).unwrap();
2215 assert!(!ids(&pos).contains(&"4".to_string()));
2216 assert!(!ids(&neg).contains(&"4".to_string()));
2217 assert!(!ids(&pos).contains(&"5".to_string()));
2218 assert!(!ids(&neg).contains(&"5".to_string()));
2219 }
2220
2221 #[test]
2224 fn where_is_null_catches_absent_and_explicit_null() {
2225 let (_tmp, db) = setup_text();
2226 let (rows, _) = query(&db, "FROM jobs WHERE miner IS NULL").unwrap();
2227 assert_eq!(ids(&rows), vec!["4", "5"]);
2228 }
2229
2230 #[test]
2231 fn where_is_not_null() {
2232 let (_tmp, db) = setup_text();
2233 let (rows, _) = query(&db, "FROM jobs WHERE miner IS NOT NULL").unwrap();
2234 assert_eq!(ids(&rows), vec!["1", "2", "3"]);
2235 }
2236
2237 #[test]
2238 fn where_or() {
2239 let (_tmp, db) = setup();
2240 let (rows, _) = query(&db, "FROM blocks WHERE height = 1 OR height = 5").unwrap();
2241 assert_eq!(ids(&rows), vec!["1", "5"]);
2242 }
2243
2244 #[test]
2247 fn and_binds_tighter_than_or() {
2248 let (_tmp, db) = setup();
2249 let (rows, _) = query(
2250 &db, "FROM blocks WHERE height = 1 OR height = 5 AND n_tx = 10").unwrap();
2251 assert_eq!(ids(&rows), vec!["1", "5"]);
2252 let (rows2, _) = query(
2253 &db, "FROM blocks WHERE height = 1 OR height = 5 AND n_tx = 99").unwrap();
2254 assert_eq!(ids(&rows2), vec!["1"], "the AND arm must not match");
2255 }
2256
2257 #[test]
2259 fn parens_override_precedence() {
2260 let (_tmp, db) = setup();
2261 let (rows, _) = query(
2262 &db, "FROM blocks WHERE (height = 1 OR height = 5) AND n_tx = 10").unwrap();
2263 assert_eq!(ids(&rows), vec!["5"]);
2264 }
2265
2266 #[test]
2267 fn nested_parens() {
2268 let (_tmp, db) = setup();
2269 let (rows, _) = query(
2270 &db,
2271 "FROM blocks WHERE ((height >= 2 AND height <= 4) OR height = 1) AND n_tx != 6",
2272 ).unwrap();
2273 assert_eq!(ids(&rows), vec!["1", "2", "4"]);
2274 }
2275
2276 #[test]
2277 fn not_negates_a_group() {
2278 let (_tmp, db) = setup();
2279 let (rows, _) = query(&db, "FROM blocks WHERE NOT (height > 2)").unwrap();
2280 assert_eq!(ids(&rows), vec!["1", "2"]);
2281 }
2282
2283 #[test]
2287 fn prefix_not_before_a_comparison() {
2288 let (_tmp, db) = setup();
2289 let (rows, _) = query(&db, "FROM blocks WHERE NOT height = 1").unwrap();
2290 assert_eq!(ids(&rows), vec!["2", "3", "4", "5"]);
2291 let (double, _) = query(&db, "FROM blocks WHERE NOT NOT height = 1").unwrap();
2292 assert_eq!(ids(&double), vec!["1"]);
2293 let (mixed, _) = query(&db, "FROM blocks WHERE NOT height = 1 AND height < 4").unwrap();
2294 assert_eq!(ids(&mixed), vec!["2", "3"]);
2295 }
2296
2297 #[test]
2301 fn id_equality_under_or_does_not_become_a_point_lookup() {
2302 let (_tmp, db) = setup();
2303 let (rows, _) = query(&db, r#"FROM blocks WHERE _id = "1" OR height > 3"#).unwrap();
2304 assert_eq!(ids(&rows), vec!["1", "4", "5"],
2305 "the OR arm must survive the id fast path");
2306 }
2307
2308 #[test]
2310 fn id_equality_under_and_still_point_looks_up() {
2311 let (_tmp, db) = setup();
2312 let (hit, _) = query(&db, r#"FROM blocks WHERE _id = "3" AND n_tx = 6"#).unwrap();
2313 assert_eq!(ids(&hit), vec!["3"]);
2314 let (miss, _) = query(&db, r#"FROM blocks WHERE _id = "3" AND n_tx = 999"#).unwrap();
2315 assert!(miss.is_empty(), "the second conjunct must still be applied");
2316 }
2317
2318 #[test]
2319 fn metadata_fields_are_filterable() {
2320 let (_tmp, db) = setup();
2321 let (rows, _) = query(&db, "FROM blocks WHERE _seq >= 0 AND _coll = blocks").unwrap();
2322 assert_eq!(rows.len(), 5);
2323
2324 let first = rows.iter()
2330 .filter_map(|r| r.get("_seq").and_then(|v| v.as_u64()))
2331 .min()
2332 .expect("five rows carrying _seq");
2333 let (tail, _) = query(&db, &format!("FROM blocks WHERE _seq > {}", first)).unwrap();
2334 assert_eq!(tail.len(), 4);
2335 }
2336
2337 #[test]
2339 fn a_reserved_collection_never_leaks_into_a_user_query() {
2340 let (_tmp, db) = setup();
2341 let (rows, _) = query(&db, "FROM blocks").unwrap();
2342 assert!(
2343 rows.iter().all(|r| r.get("_coll").and_then(|v| v.as_str()) == Some("blocks")),
2344 "a query for one collection returned rows from another"
2345 );
2346 assert!(
2347 !db.collections().iter().any(|c| crate::namespace::is_reserved(c)),
2348 "the registry is not a user collection"
2349 );
2350 }
2351
2352 #[test]
2353 fn combined_with_order_and_limit() {
2354 let (_tmp, db) = setup();
2355 let (rows, _) = query(
2356 &db,
2357 "FROM blocks WHERE height IN (1, 3, 5) ORDER BY height DESC LIMIT 2",
2358 ).unwrap();
2359 let heights: Vec<u64> = rows.iter().filter_map(|r| r["height"].as_u64()).collect();
2360 assert_eq!(heights, vec![5, 3]);
2361 }
2362
2363 #[test]
2369 fn unknown_clauses_are_errors_not_silent_skips() {
2370 let (_tmp, db) = setup();
2371 for bad in [
2372 "FROM blocks ORDRE BY height", "FROM blocks WHERE height > 3 JUNK", "FROM blocks SELECT height", "FROM blocks LIMIT", "FROM blocks OFFSET", "FROM blocks ORDER BY", "FROM blocks ORDER BY height,", ] {
2380 assert!(query(&db, bad).is_err(), "`{}` must be rejected, not silently reinterpreted", bad);
2381 }
2382 }
2383
2384 #[test]
2385 fn malformed_predicates_are_errors() {
2386 let (_tmp, db) = setup();
2387 for bad in [
2388 "FROM blocks WHERE height >", "FROM blocks WHERE height IN (", "FROM blocks WHERE height IN ()", "FROM blocks WHERE height BETWEEN 1", "FROM blocks WHERE height BETWEEN 1 3", "FROM blocks WHERE (height = 1", "FROM blocks WHERE height IS 3", "FROM blocks WHERE height NOT = 1", "FROM blocks WHERE height LIKE", ] {
2398 assert!(query(&db, bad).is_err(), "`{}` must be a parse error", bad);
2399 }
2400 }
2401
2402 #[test]
2406 fn asc_is_accepted_explicitly() {
2407 let (_tmp, db) = setup();
2408 let (asc, _) = query(&db, "FROM blocks ORDER BY height ASC").unwrap();
2409 let (plain, _) = query(&db, "FROM blocks ORDER BY height").unwrap();
2410 assert_eq!(asc[0]["height"], 1);
2411 assert_eq!(plain[0]["height"], 1);
2412 }
2413
2414 #[test]
2417 fn new_keywords_are_case_insensitive() {
2418 let (_tmp, db) = setup();
2419 let (rows, _) = query(&db, "from blocks where height between 2 and 3").unwrap();
2420 assert_eq!(ids(&rows), vec!["2", "3"]);
2421 let (rows2, _) = query(&db, "FROM blocks Where height In (1) Or height In (2)").unwrap();
2422 assert_eq!(ids(&rows2), vec!["1", "2"]);
2423 }
2424
2425 #[test]
2426 fn group_by_count() {
2427 let (_tmp, db) = setup();
2428 let (rows, _) = query(&db, "FROM blocks GROUP BY n_tx COUNT").unwrap();
2429 assert_eq!(rows.len(), 5); }
2431
2432 fn twin(fields: &[&str]) -> (tempfile::TempDir, tempfile::TempDir, Db, Db) {
2444 let d1 = tempdir().unwrap();
2445 let d2 = tempdir().unwrap();
2446 let indexed = Db::open(d1.path(), None).unwrap();
2447 let plain = Db::open(d2.path(), None).unwrap();
2448 for f in fields {
2449 indexed.create_sorted_index("t", f);
2450 }
2451 let rows: Vec<(String, Value)> = (0..40u64).map(|i| {
2454 let mut o = serde_json::Map::new();
2455 if i % 7 != 0 {
2456 o.insert("fee".into(), json!(i % 13));
2457 }
2458 if i % 11 == 0 {
2459 o.insert("note".into(), Value::Null);
2460 } else {
2461 o.insert("note".into(), json!(format!("n{}", i % 5)));
2462 }
2463 o.insert("rank".into(), json!(40 - i));
2464 (i.to_string(), Value::Object(o))
2465 }).collect();
2466 for (id, doc) in &rows {
2467 indexed.put("t", id, doc.clone(), vec![], None, None).unwrap();
2468 plain.put("t", id, doc.clone(), vec![], None, None).unwrap();
2469 }
2470 (d1, d2, indexed, plain)
2471 }
2472
2473 fn same(a: &Db, b: &Db, nql: &str) -> (Vec<String>, Vec<String>) {
2474 let ga = {
2475 let (rows, _) = query(a, nql).unwrap();
2476 let mut v: Vec<String> = rows.iter()
2477 .filter_map(|r| r["_id"].as_str().map(String::from)).collect();
2478 v.sort(); v
2479 };
2480 let gb = {
2481 let (rows, _) = query(b, nql).unwrap();
2482 let mut v: Vec<String> = rows.iter()
2483 .filter_map(|r| r["_id"].as_str().map(String::from)).collect();
2484 v.sort(); v
2485 };
2486 (ga, gb)
2487 }
2488
2489 #[test]
2490 fn indexed_and_unindexed_agree_on_every_predicate_shape() {
2491 let (_t1, _t2, idx, plain) = twin(&["fee", "note", "rank"]);
2492 for nql in [
2493 "FROM t WHERE fee > 5",
2495 "FROM t WHERE fee >= 5",
2496 "FROM t WHERE fee < 5",
2497 "FROM t WHERE fee <= 5",
2498 "FROM t WHERE fee = 5",
2499 "FROM t WHERE fee BETWEEN 3 AND 8",
2500 "FROM t WHERE fee NOT BETWEEN 3 AND 8",
2501 "FROM t WHERE fee IN (1, 5, 9)",
2502 "FROM t WHERE fee NOT IN (1, 5, 9)",
2503 "FROM t WHERE fee != 5",
2504 "FROM t WHERE fee > 3 AND fee < 9",
2506 "FROM t WHERE fee >= 3 AND fee <= 9",
2507 "FROM t WHERE fee > 3 AND fee < 9 AND fee != 5",
2508 "FROM t WHERE fee BETWEEN 2 AND 10 AND fee > 6",
2509 "FROM t WHERE fee > 5 AND rank < 20",
2511 "FROM t WHERE fee IN (2, 3) AND rank > 10",
2512 "FROM t WHERE fee = 4 AND rank = 8",
2513 "FROM t WHERE fee IS NULL",
2515 "FROM t WHERE fee IS NOT NULL",
2516 "FROM t WHERE note IS NULL",
2517 "FROM t WHERE note IS NOT NULL",
2518 "FROM t WHERE fee IS NULL AND rank > 20",
2519 r#"FROM t WHERE note LIKE "n_""#,
2521 r#"FROM t WHERE fee > 5 AND note LIKE "n1""#,
2522 r#"FROM t WHERE note NOT LIKE "n1" AND fee < 4"#,
2523 "FROM t WHERE fee > 11 OR rank > 38",
2525 "FROM t WHERE fee = 1 OR note IS NULL",
2526 "FROM t WHERE (fee > 11 OR rank > 38) AND rank < 39",
2527 "FROM t WHERE fee IN (1) OR fee IN (2)",
2528 "FROM t WHERE NOT (fee > 5)",
2530 "FROM t WHERE NOT (fee IN (1, 2))",
2531 "FROM t WHERE NOT (fee > 5) AND rank < 30",
2532 "FROM t WHERE fee > 5 ORDER BY rank DESC LIMIT 5",
2534 "FROM t WHERE fee BETWEEN 2 AND 8 ORDER BY fee, rank DESC",
2535 "FROM t WHERE fee > 5 GROUP BY note COUNT",
2536 "FROM t WHERE fee > 5 COUNT",
2537 "FROM t WHERE fee > 5 ORDER BY rank LIMIT 3 OFFSET 2",
2538 "FROM t WHERE fee > 9999",
2540 "FROM t WHERE fee IN (9999)",
2541 "FROM t WHERE fee BETWEEN 100 AND 200",
2542 ] {
2543 let (a, b) = same(&idx, &plain, nql);
2544 assert_eq!(a, b, "indexed and unindexed disagree on `{}`", nql);
2545 }
2546 }
2547
2548 #[test]
2552 fn index_path_still_honours_order_by() {
2553 let (_t1, _t2, idx, plain) = twin(&["fee", "rank"]);
2554 for nql in [
2555 "FROM t WHERE fee > 4 ORDER BY rank",
2556 "FROM t WHERE fee > 4 ORDER BY rank DESC",
2557 "FROM t WHERE fee > 4 ORDER BY note, rank DESC",
2558 "FROM t WHERE fee BETWEEN 2 AND 9 ORDER BY rank LIMIT 4",
2559 "FROM t WHERE fee IN (3, 6) ORDER BY rank DESC LIMIT 2",
2560 ] {
2561 let ra = query(&idx, nql).unwrap().0;
2562 let rb = query(&plain, nql).unwrap().0;
2563 let ia: Vec<&str> = ra.iter().filter_map(|r| r["_id"].as_str()).collect();
2564 let ib: Vec<&str> = rb.iter().filter_map(|r| r["_id"].as_str()).collect();
2565 assert_eq!(ia, ib, "row ORDER differs on `{}`", nql);
2566 }
2567 }
2568
2569 #[test]
2578 fn an_ordering_comparison_against_a_missing_field_is_false() {
2579 let dir = tempdir().unwrap();
2580 let db = Db::open(dir.path(), None).unwrap();
2581 db.put("t", "has", json!({"fee": 1}), vec![], None, None).unwrap();
2582 db.put("t", "none", json!({"other": 1}), vec![], None, None).unwrap();
2583 db.put("t", "null", json!({"fee": Value::Null}), vec![], None, None).unwrap();
2584
2585 for nql in ["FROM t WHERE fee < 5", "FROM t WHERE fee <= 5"] {
2586 let (r, _) = query(&db, nql).unwrap();
2587 let ids: Vec<&str> = r.iter().filter_map(|x| x["_id"].as_str()).collect();
2588 assert_eq!(ids, vec!["has"],
2589 "`{}` must not match a row whose fee is absent or null", nql);
2590 }
2591 for nql in ["FROM t WHERE fee > 0", "FROM t WHERE fee >= 0"] {
2592 let (r, _) = query(&db, nql).unwrap();
2593 let ids: Vec<&str> = r.iter().filter_map(|x| x["_id"].as_str()).collect();
2594 assert_eq!(ids, vec!["has"], "`{}`", nql);
2595 }
2596 let (b, _) = query(&db, "FROM t WHERE fee BETWEEN 0 AND 9").unwrap();
2598 assert_eq!(b.len(), 1);
2599
2600 let (ne, _) = query(&db, "FROM t WHERE fee != 5").unwrap();
2603 assert_eq!(ne.len(), 3, "!= still matches absent and null fields");
2604 let (isnull, _) = query(&db, "FROM t WHERE fee = NULL").unwrap();
2605 assert_eq!(isnull.len(), 2, "absent and explicit-null both equal NULL");
2606
2607 let d2 = tempdir().unwrap();
2610 let idx = Db::open(d2.path(), None).unwrap();
2611 idx.create_sorted_index("t", "fee");
2612 idx.put("t", "has", json!({"fee": 1}), vec![], None, None).unwrap();
2613 idx.put("t", "none", json!({"other": 1}), vec![], None, None).unwrap();
2614 idx.put("t", "null", json!({"fee": Value::Null}), vec![], None, None).unwrap();
2615 for nql in ["FROM t WHERE fee < 5", "FROM t WHERE fee <= 5",
2616 "FROM t WHERE fee > 0", "FROM t WHERE fee BETWEEN 0 AND 9"] {
2617 let (a, _) = query(&db, nql).unwrap();
2618 let (b, _) = query(&idx, nql).unwrap();
2619 let ia: Vec<&str> = a.iter().filter_map(|x| x["_id"].as_str()).collect();
2620 let ib: Vec<&str> = b.iter().filter_map(|x| x["_id"].as_str()).collect();
2621 assert_eq!(ia, ib, "indexed and unindexed disagree on `{}`", nql);
2622 }
2623 }
2624
2625 #[test]
2630 fn is_null_never_uses_the_index() {
2631 let (_t1, _t2, idx, plain) = twin(&["fee"]);
2632 let (a, b) = same(&idx, &plain, "FROM t WHERE fee IS NULL");
2633 assert_eq!(a, b);
2634 assert_eq!(a, vec!["0", "14", "21", "28", "35", "7"]);
2636 assert!(!a.is_empty(), "the fixture must actually contain absent fields");
2637 }
2638
2639 #[test]
2642 fn a_disjunct_is_never_used_to_narrow() {
2643 let (_t1, _t2, idx, plain) = twin(&["fee", "rank"]);
2644 let nql = "FROM t WHERE fee = 1 OR rank = 40";
2645 let (a, b) = same(&idx, &plain, nql);
2646 assert_eq!(a, b);
2647 assert!(a.contains(&"0".to_string()),
2650 "the OR arm matching a doc with no indexed field must survive: {:?}", a);
2651 assert!(a.len() > 1, "both arms must contribute: {:?}", a);
2652 }
2653
2654 #[test]
2658 fn as_of_does_not_use_the_current_version_index() {
2659 let dir = tempdir().unwrap();
2660 let db = Db::open(dir.path(), None).unwrap();
2661 db.create_sorted_index("t", "fee");
2662 db.put("t", "a", json!({"fee": 5}), vec![], None, None).unwrap();
2663 let snap = db.put("t", "b", json!({"fee": 5}), vec![], None, None).unwrap().seq;
2664 db.put("t", "a", json!({"fee": 999}), vec![], None, None).unwrap();
2666 db.put("t", "b", json!({"fee": 999}), vec![], None, None).unwrap();
2667
2668 let (now, _) = query(&db, "FROM t WHERE fee = 5").unwrap();
2670 assert!(now.is_empty(), "current versions have fee 999: {:?}", now);
2671
2672 let (then, _) = query(&db, &format!("FROM t AS OF {} WHERE fee = 5", snap)).unwrap();
2675 let mut ids: Vec<&str> = then.iter().filter_map(|r| r["_id"].as_str()).collect();
2676 ids.sort();
2677 assert_eq!(ids, vec!["a", "b"], "AS OF must see the historical values");
2678
2679 let (r, _) = query(&db, &format!("FROM t AS OF {} WHERE fee BETWEEN 1 AND 9", snap)).unwrap();
2681 assert_eq!(r.len(), 2);
2682 let (i, _) = query(&db, &format!("FROM t AS OF {} WHERE fee IN (5)", snap)).unwrap();
2683 assert_eq!(i.len(), 2);
2684 }
2685
2686 #[test]
2688 fn the_index_path_returns_current_versions_only() {
2689 let dir = tempdir().unwrap();
2690 let db = Db::open(dir.path(), None).unwrap();
2691 db.create_sorted_index("t", "fee");
2692 for i in 0..5u64 {
2693 db.put("t", &i.to_string(), json!({"fee": i}), vec![], None, None).unwrap();
2694 }
2695 db.put("t", "0", json!({"fee": 100}), vec![], None, None).unwrap();
2696
2697 let (low, _) = query(&db, "FROM t WHERE fee BETWEEN 0 AND 4").unwrap();
2698 let mut ids: Vec<&str> = low.iter().filter_map(|r| r["_id"].as_str()).collect();
2699 ids.sort();
2700 assert_eq!(ids, vec!["1", "2", "3", "4"],
2701 "doc 0 moved to fee 100 and must not appear in 0..4");
2702
2703 let (high, _) = query(&db, "FROM t WHERE fee = 100").unwrap();
2704 assert_eq!(high.len(), 1);
2705 assert_eq!(high[0]["_id"], "0");
2706 assert_eq!(high[0]["fee"], json!(100), "the CURRENT value, not the old one");
2707 }
2708
2709 #[test]
2712 fn index_scans_do_not_duplicate_rows() {
2713 let dir = tempdir().unwrap();
2714 let db = Db::open(dir.path(), None).unwrap();
2715 db.create_sorted_index("t", "fee");
2716 for i in 0..6u64 {
2717 db.put("t", &i.to_string(), json!({"fee": i % 2}), vec![], None, None).unwrap();
2718 }
2719 let (dup, _) = query(&db, "FROM t WHERE fee IN (0, 0, 1, 1)").unwrap();
2720 assert_eq!(dup.len(), 6, "each row once despite repeated IN arms");
2721 let (r, _) = query(&db, "FROM t WHERE fee BETWEEN 0 AND 1").unwrap();
2722 assert_eq!(r.len(), 6);
2723 let mut ids: Vec<&str> = dup.iter().filter_map(|r| r["_id"].as_str()).collect();
2724 ids.sort();
2725 ids.dedup();
2726 assert_eq!(ids.len(), 6, "no duplicate _ids");
2727 }
2728
2729 #[test]
2731 fn index_ranges_work_on_strings() {
2732 let dir = tempdir().unwrap();
2733 let db = Db::open(dir.path(), None).unwrap();
2734 db.create_sorted_index("t", "name");
2735 for (i, n) in ["alpha", "bravo", "charlie", "delta", "echo"].iter().enumerate() {
2736 db.put("t", &i.to_string(), json!({"name": n}), vec![], None, None).unwrap();
2737 }
2738 let (r, _) = query(&db, r#"FROM t WHERE name BETWEEN "bravo" AND "delta""#).unwrap();
2739 let mut got: Vec<&str> = r.iter().filter_map(|x| x["name"].as_str()).collect();
2740 got.sort();
2741 assert_eq!(got, vec!["bravo", "charlie", "delta"]);
2742 let (gt, _) = query(&db, r#"FROM t WHERE name > "charlie""#).unwrap();
2743 assert_eq!(gt.len(), 2);
2744 }
2745
2746 #[test]
2749 fn same_field_bounds_are_merged_tightest_wins() {
2750 let (_t1, _t2, idx, plain) = twin(&["fee"]);
2751 for (a_nql, b_nql) in [
2752 ("FROM t WHERE fee > 2 AND fee > 6", "FROM t WHERE fee > 6"),
2753 ("FROM t WHERE fee > 6 AND fee > 2", "FROM t WHERE fee > 6"),
2754 ("FROM t WHERE fee < 9 AND fee < 4", "FROM t WHERE fee < 4"),
2755 ("FROM t WHERE fee BETWEEN 0 AND 12 AND fee >= 5 AND fee <= 7",
2756 "FROM t WHERE fee >= 5 AND fee <= 7"),
2757 ] {
2758 let (ia, _) = same(&idx, &plain, a_nql);
2759 let (ib, _) = same(&idx, &plain, b_nql);
2760 assert_eq!(ia, ib, "`{}` should equal `{}`", a_nql, b_nql);
2761 }
2762 }
2763
2764 #[test]
2767 fn a_predicate_on_an_unindexed_field_still_answers() {
2768 let (_t1, _t2, idx, plain) = twin(&["fee"]); for nql in [
2770 "FROM t WHERE rank > 30",
2771 "FROM t WHERE rank BETWEEN 10 AND 20",
2772 "FROM t WHERE rank IN (40, 39)",
2773 "FROM t WHERE rank > 30 AND fee > 2",
2774 ] {
2775 let (a, b) = same(&idx, &plain, nql);
2776 assert_eq!(a, b, "`{}`", nql);
2777 }
2778 }
2779
2780 #[test]
2783 fn range_cardinality_counts_without_reading() {
2784 let dir = tempdir().unwrap();
2785 let db = Db::open(dir.path(), None).unwrap();
2786 db.create_sorted_index("t", "fee");
2787 for i in 0..20u64 {
2788 db.put("t", &i.to_string(), json!({"fee": i}), vec![], None, None).unwrap();
2789 }
2790 assert_eq!(db.range_cardinality("t", "fee", None, None, true, true), Some(20));
2791 assert_eq!(
2792 db.range_cardinality("t", "fee", Some(&json!(5)), Some(&json!(9)), true, true),
2793 Some(5), "5..=9 inclusive is five values");
2794 assert_eq!(
2795 db.range_cardinality("t", "fee", Some(&json!(5)), Some(&json!(9)), false, false),
2796 Some(3), "exclusive bounds drop both ends");
2797 assert_eq!(
2798 db.range_cardinality("t", "fee", Some(&json!(18)), None, true, true),
2799 Some(2));
2800 assert_eq!(
2801 db.range_cardinality("t", "fee", Some(&json!(999)), None, true, true),
2802 Some(0), "an empty range is 0, not an error");
2803 assert_eq!(db.range_cardinality("t", "nope", None, None, true, true), None);
2805 }
2806
2807 #[test]
2811 fn the_narrower_index_is_preferred() {
2812 let dir = tempdir().unwrap();
2813 let db = Db::open(dir.path(), None).unwrap();
2814 db.create_sorted_index("t", "wide");
2815 db.create_sorted_index("t", "narrow");
2816 for i in 0..100u64 {
2817 db.put("t", &i.to_string(),
2818 json!({"wide": i % 2, "narrow": i}), vec![], None, None).unwrap();
2819 }
2820 let wide = db.range_cardinality("t", "wide", Some(&json!(0)), Some(&json!(0)), true, true);
2822 let narrow = db.range_cardinality("t", "narrow", Some(&json!(7)), Some(&json!(7)), true, true);
2823 assert_eq!(wide, Some(50));
2824 assert_eq!(narrow, Some(1));
2825 let (r, _) = query(&db, "FROM t WHERE wide = 0 AND narrow = 7").unwrap();
2827 assert!(r.is_empty(), "narrow 7 has wide 1, so nothing matches");
2828 let (r2, _) = query(&db, "FROM t WHERE wide = 0 AND narrow = 8").unwrap();
2829 assert_eq!(r2.len(), 1);
2830 assert_eq!(r2[0]["_id"], "8");
2831 }
2832
2833 fn heights(rows: &[Value]) -> Vec<u64> {
2837 rows.iter().filter_map(|r| r["height"].as_u64()).collect()
2838 }
2839
2840 #[test]
2841 fn offset_skips_result_rows() {
2842 let (_tmp, db) = setup();
2843 let (rows, _) = query(&db, "FROM blocks ORDER BY height OFFSET 2").unwrap();
2844 assert_eq!(heights(&rows), vec![3, 4, 5]);
2845 }
2846
2847 #[test]
2848 fn offset_with_limit_pages() {
2849 let (_tmp, db) = setup();
2850 let mut seen = vec![];
2854 for page in 0..3 {
2855 let (rows, _) = query(
2856 &db,
2857 &format!("FROM blocks ORDER BY height LIMIT 2 OFFSET {}", page * 2),
2858 ).unwrap();
2859 seen.extend(heights(&rows));
2860 }
2861 assert_eq!(seen, vec![1, 2, 3, 4, 5]);
2862 }
2863
2864 #[test]
2865 fn offset_past_the_end_is_an_empty_page() {
2866 let (_tmp, db) = setup();
2867 let (rows, count) = query(&db, "FROM blocks OFFSET 99").unwrap();
2868 assert!(rows.is_empty());
2869 assert_eq!(count, 0);
2870 let (zero, _) = query(&db, "FROM blocks OFFSET 0").unwrap();
2871 assert_eq!(zero.len(), 5, "OFFSET 0 skips nothing");
2872 }
2873
2874 #[test]
2875 fn offset_applies_after_the_filter() {
2876 let (_tmp, db) = setup();
2877 let (rows, _) = query(
2880 &db, "FROM blocks WHERE n_tx >= 6 ORDER BY height OFFSET 1").unwrap();
2881 assert_eq!(heights(&rows), vec![4, 5]);
2882 }
2883
2884 #[test]
2885 fn order_by_multiple_keys() {
2886 let dir = tempdir().unwrap();
2887 let db = Db::open(dir.path(), None).unwrap();
2888 for (i, (s, f)) in [("open", 30), ("open", 10), ("closed", 20),
2891 ("open", 20), ("closed", 5)].iter().enumerate() {
2892 db.put("t", &i.to_string(),
2893 serde_json::json!({"status": s, "fee": f}), vec![], None, None).unwrap();
2894 }
2895 let (rows, _) = query(&db, "FROM t ORDER BY status, fee DESC").unwrap();
2896 let got: Vec<(String, u64)> = rows.iter()
2897 .map(|r| (r["status"].as_str().unwrap().to_string(), r["fee"].as_u64().unwrap()))
2898 .collect();
2899 assert_eq!(got, vec![
2900 ("closed".into(), 20), ("closed".into(), 5),
2901 ("open".into(), 30), ("open".into(), 20), ("open".into(), 10),
2902 ]);
2903 }
2904
2905 #[test]
2906 fn order_by_mixed_directions() {
2907 let dir = tempdir().unwrap();
2908 let db = Db::open(dir.path(), None).unwrap();
2909 for (i, (a, b)) in [(1, 1), (1, 2), (2, 1), (2, 2)].iter().enumerate() {
2910 db.put("t", &i.to_string(),
2911 serde_json::json!({"a": a, "b": b}), vec![], None, None).unwrap();
2912 }
2913 let (rows, _) = query(&db, "FROM t ORDER BY a DESC, b ASC").unwrap();
2914 let got: Vec<(u64, u64)> = rows.iter()
2915 .map(|r| (r["a"].as_u64().unwrap(), r["b"].as_u64().unwrap()))
2916 .collect();
2917 assert_eq!(got, vec![(2, 1), (2, 2), (1, 1), (1, 2)]);
2918 }
2919
2920 #[test]
2925 fn limit_applies_to_grouped_rows_not_to_the_input() {
2926 let dir = tempdir().unwrap();
2927 let db = Db::open(dir.path(), None).unwrap();
2928 for i in 0..12 {
2929 let status = ["open", "closed", "void"][i % 3];
2931 db.put("t", &i.to_string(),
2932 serde_json::json!({"status": status, "fee": i}),
2933 vec![], None, None).unwrap();
2934 }
2935 let (all, _) = query(&db, "FROM t GROUP BY status COUNT").unwrap();
2936 assert_eq!(all.len(), 3);
2937 let total: u64 = all.iter().filter_map(|r| r["count"].as_u64()).sum();
2938 assert_eq!(total, 12, "every input row must be counted");
2939
2940 let (limited, _) = query(&db, "FROM t GROUP BY status COUNT LIMIT 2").unwrap();
2943 assert_eq!(limited.len(), 2, "LIMIT caps the number of groups");
2944 for r in &limited {
2945 assert_eq!(r["count"], json!(4),
2946 "each group keeps its true count, got {:?}", r);
2947 }
2948 }
2949
2950 #[test]
2955 fn order_by_sorts_the_grouped_rows() {
2956 let dir = tempdir().unwrap();
2957 let db = Db::open(dir.path(), None).unwrap();
2958 for (i, s) in ["a", "b", "b", "b", "c", "c"].iter().enumerate() {
2960 db.put("t", &i.to_string(),
2961 serde_json::json!({"g": s, "n": i}), vec![], None, None).unwrap();
2962 }
2963 let (rows, _) = query(&db, "FROM t GROUP BY g COUNT ORDER BY count DESC").unwrap();
2964 let got: Vec<(String, u64)> = rows.iter()
2965 .map(|r| (r["g"].as_str().unwrap().to_string(), r["count"].as_u64().unwrap()))
2966 .collect();
2967 assert_eq!(got, vec![("b".into(), 3), ("c".into(), 2), ("a".into(), 1)]);
2968
2969 let (by_key, _) = query(&db, "FROM t GROUP BY g COUNT ORDER BY g DESC").unwrap();
2971 let keys: Vec<&str> = by_key.iter().map(|r| r["g"].as_str().unwrap()).collect();
2972 assert_eq!(keys, vec!["c", "b", "a"]);
2973 }
2974
2975 #[test]
2976 fn order_by_an_aggregate_key() {
2977 let (_tmp, db) = setup_items();
2978 let (rows, _) = query(
2979 &db, "FROM items GROUP BY cat SUM price ORDER BY sum_price DESC").unwrap();
2980 let cats: Vec<&str> = rows.iter().map(|r| r["cat"].as_str().unwrap()).collect();
2981 assert_eq!(cats, vec!["y", "x"], "y sums to 60, x to 15");
2982 }
2983
2984 #[test]
2985 fn offset_and_limit_page_grouped_rows() {
2986 let dir = tempdir().unwrap();
2987 let db = Db::open(dir.path(), None).unwrap();
2988 for i in 0..9 {
2989 db.put("t", &i.to_string(),
2990 serde_json::json!({"g": format!("g{}", i % 3)}), vec![], None, None).unwrap();
2991 }
2992 let (page, _) = query(
2993 &db, "FROM t GROUP BY g COUNT ORDER BY g LIMIT 1 OFFSET 1").unwrap();
2994 assert_eq!(page.len(), 1);
2995 assert_eq!(page[0]["g"], "g1");
2996 }
2997
2998 #[test]
3001 fn having_filters_groups_by_count() {
3002 let dir = tempdir().unwrap();
3003 let db = Db::open(dir.path(), None).unwrap();
3004 for (i, s) in ["a", "b", "b", "b", "c", "c"].iter().enumerate() {
3005 db.put("t", &i.to_string(),
3006 serde_json::json!({"g": s, "n": i}), vec![], None, None).unwrap();
3007 }
3008 let (rows, _) = query(&db, "FROM t GROUP BY g COUNT HAVING count > 1").unwrap();
3009 let mut keys: Vec<&str> = rows.iter().map(|r| r["g"].as_str().unwrap()).collect();
3010 keys.sort();
3011 assert_eq!(keys, vec!["b", "c"], "the single-row group `a` is filtered out");
3012 }
3013
3014 #[test]
3015 fn having_filters_on_the_aggregate_value() {
3016 let (_tmp, db) = setup_items();
3017 let (rows, _) = query(
3019 &db, "FROM items GROUP BY cat SUM price HAVING sum_price > 20").unwrap();
3020 assert_eq!(rows.len(), 1);
3021 assert_eq!(rows[0]["cat"], "y");
3022 }
3023
3024 #[test]
3027 fn having_supports_the_whole_predicate_surface() {
3028 let (_tmp, db) = setup_items();
3029 let (in_, _) = query(
3030 &db, r#"FROM items GROUP BY cat COUNT HAVING cat IN ("x")"#).unwrap();
3031 assert_eq!(in_.len(), 1);
3032 assert_eq!(in_[0]["cat"], "x");
3033
3034 let (btw, _) = query(
3035 &db, "FROM items GROUP BY cat SUM price HAVING sum_price BETWEEN 10 AND 20").unwrap();
3036 assert_eq!(btw.len(), 1);
3037 assert_eq!(btw[0]["cat"], "x");
3038
3039 let (like, _) = query(
3040 &db, r#"FROM items GROUP BY cat COUNT HAVING cat LIKE "y""#).unwrap();
3041 assert_eq!(like.len(), 1);
3042
3043 let (or_, _) = query(
3044 &db, "FROM items GROUP BY cat SUM price HAVING sum_price < 20 OR count = 3").unwrap();
3045 assert_eq!(or_.len(), 2);
3046 }
3047
3048 #[test]
3051 fn where_and_having_are_different_stages() {
3052 let (_tmp, db) = setup_items();
3053 let (w, _) = query(
3055 &db, "FROM items WHERE price > 10 GROUP BY cat SUM price").unwrap();
3056 let x = w.iter().find(|r| r["cat"] == "x");
3057 assert!(x.is_none(), "x's rows (0,5,10) are all filtered out by WHERE");
3058
3059 let (h, _) = query(
3061 &db, "FROM items GROUP BY cat SUM price HAVING sum_price > 10").unwrap();
3062 assert_eq!(h.len(), 2, "both groups sum above 10 when nothing is pre-filtered");
3063 }
3064
3065 #[test]
3066 fn having_without_an_aggregate_is_an_error() {
3067 let (_tmp, db) = setup();
3068 assert!(query(&db, "FROM blocks HAVING height > 3").is_err());
3072 }
3073
3074 #[test]
3080 fn bare_count_returns_one_row() {
3081 let (_tmp, db) = setup();
3082 let (rows, _) = query(&db, "FROM blocks COUNT").unwrap();
3083 assert_eq!(rows.len(), 1);
3084 assert_eq!(rows[0]["count"], json!(5));
3085 assert_eq!(rows[0]["value"], json!(5));
3086 }
3087
3088 #[test]
3089 fn bare_count_respects_the_filter() {
3090 let (_tmp, db) = setup();
3091 let (rows, _) = query(&db, "FROM blocks WHERE height > 3 COUNT").unwrap();
3092 assert_eq!(rows[0]["count"], json!(2));
3093 }
3094
3095 #[test]
3096 fn bare_sum_avg_min_max() {
3097 let (_tmp, db) = setup();
3098 let (s, _) = query(&db, "FROM blocks SUM n_tx").unwrap();
3100 assert_eq!(s[0]["sum_n_tx"], json!(30), "integer inputs give an integer sum");
3101 let (a, _) = query(&db, "FROM blocks AVG n_tx").unwrap();
3102 assert_eq!(a[0]["avg_n_tx"], json!(6.0));
3103 let (mn, _) = query(&db, "FROM blocks MIN n_tx").unwrap();
3104 assert_eq!(mn[0]["min_n_tx"], json!(2));
3105 let (mx, _) = query(&db, "FROM blocks MAX n_tx").unwrap();
3106 assert_eq!(mx[0]["max_n_tx"], json!(10));
3107 }
3108
3109 #[test]
3117 fn integer_aggregates_stay_integers_and_keep_full_precision() {
3118 let dir = tempdir().unwrap();
3119 let db = Db::open(dir.path(), None).unwrap();
3120 let big: [i64; 3] = [9_007_199_254_740_993, 9_007_199_254_740_995, 1];
3123 for (i, v) in big.iter().enumerate() {
3124 db.put("t", &i.to_string(), serde_json::json!({"v": v}),
3125 vec![], None, None).unwrap();
3126 }
3127 let (s, _) = query(&db, "FROM t SUM v").unwrap();
3128 assert_eq!(s[0]["sum_v"], json!(18_014_398_509_481_989i64),
3129 "exact i64 sum, not a rounded f64");
3130 assert!(s[0]["sum_v"].is_i64(), "must serialise as an integer");
3131
3132 let (mx, _) = query(&db, "FROM t MAX v").unwrap();
3133 assert_eq!(mx[0]["max_v"], json!(9_007_199_254_740_995i64));
3134 let (mn, _) = query(&db, "FROM t MIN v").unwrap();
3135 assert_eq!(mn[0]["min_v"], json!(1));
3136 }
3137
3138 #[test]
3141 fn a_single_float_makes_the_aggregate_fractional() {
3142 let dir = tempdir().unwrap();
3143 let db = Db::open(dir.path(), None).unwrap();
3144 db.put("t", "1", serde_json::json!({"v": 1}), vec![], None, None).unwrap();
3145 db.put("t", "2", serde_json::json!({"v": 2.5}), vec![], None, None).unwrap();
3146 let (s, _) = query(&db, "FROM t SUM v").unwrap();
3147 assert_eq!(s[0]["sum_v"], json!(3.5));
3148 let (a, _) = query(&db, "FROM t AVG v").unwrap();
3150 assert_eq!(a[0]["avg_v"], json!(1.75));
3151 }
3152
3153 #[test]
3156 fn booleans_are_not_aggregated_as_numbers() {
3157 let dir = tempdir().unwrap();
3158 let db = Db::open(dir.path(), None).unwrap();
3159 db.put("t", "1", serde_json::json!({"v": true}), vec![], None, None).unwrap();
3160 db.put("t", "2", serde_json::json!({"v": 5}), vec![], None, None).unwrap();
3161 let (s, _) = query(&db, "FROM t SUM v").unwrap();
3162 assert_eq!(s[0]["sum_v"], json!(5), "the bool contributes nothing");
3163 assert_eq!(s[0]["count"], json!(2), "but it still counts toward the group");
3164 }
3165
3166 #[test]
3169 fn bare_count_of_nothing_is_zero_not_empty() {
3170 let (_tmp, db) = setup();
3171 let (rows, count) = query(&db, "FROM blocks WHERE height > 999 COUNT").unwrap();
3172 assert_eq!(count, 1, "still exactly one row");
3173 assert_eq!(rows[0]["count"], json!(0));
3174
3175 let (g, _) = query(&db, "FROM blocks WHERE height > 999 GROUP BY height COUNT").unwrap();
3177 assert!(g.is_empty());
3178 }
3179
3180 #[test]
3181 fn bare_aggregate_over_an_empty_collection() {
3182 let (_tmp, db) = setup();
3183 let (rows, _) = query(&db, "FROM nonexistent COUNT").unwrap();
3184 assert_eq!(rows[0]["count"], json!(0));
3185 let (s, _) = query(&db, "FROM nonexistent SUM n_tx").unwrap();
3186 assert_eq!(s[0]["sum_n_tx"], Value::Null, "sum of nothing is null, not 0");
3187 }
3188
3189 #[test]
3190 fn bare_aggregate_carries_no_group_key() {
3191 let (_tmp, db) = setup();
3192 let (rows, _) = query(&db, "FROM blocks COUNT").unwrap();
3193 if let Value::Object(m) = &rows[0] {
3194 let mut keys: Vec<&String> = m.keys().collect();
3195 keys.sort();
3196 assert_eq!(keys, vec!["count", "value"]);
3197 } else {
3198 panic!("expected an object");
3199 }
3200 }
3201
3202 #[test]
3209 fn a_field_named_like_a_keyword_is_still_addressable() {
3210 let dir = tempdir().unwrap();
3211 let db = Db::open(dir.path(), None).unwrap();
3212 db.put("t", "1", serde_json::json!({
3213 "count": 5, "min": 1, "max": 9, "sum": 3, "avg": 2,
3214 "value": "keep", "limit": 7, "offset": 8, "group": "g1", "search": "s",
3215 }), vec![], None, None).unwrap();
3216 db.put("t", "2", serde_json::json!({
3217 "count": 1, "min": 0, "max": 2, "sum": 0, "avg": 0,
3218 "value": "drop", "limit": 0, "offset": 0, "group": "g2", "search": "t",
3219 }), vec![], None, None).unwrap();
3220
3221 for (nql, want) in [
3222 ("FROM t WHERE count > 3", "1"),
3223 ("FROM t WHERE min = 1", "1"),
3224 ("FROM t WHERE max >= 9", "1"),
3225 ("FROM t WHERE sum = 3", "1"),
3226 ("FROM t WHERE avg = 2", "1"),
3227 (r#"FROM t WHERE value = "keep""#, "1"),
3228 ("FROM t WHERE limit = 7", "1"),
3229 ("FROM t WHERE offset = 8", "1"),
3230 (r#"FROM t WHERE group = "g1""#, "1"),
3231 ] {
3232 let (rows, _) = query(&db, nql).unwrap();
3233 assert_eq!(rows.len(), 1, "`{}` matched {} rows", nql, rows.len());
3234 assert_eq!(rows[0]["_id"], want, "`{}`", nql);
3235 }
3236
3237 let (ord, _) = query(&db, "FROM t ORDER BY count DESC").unwrap();
3239 assert_eq!(ord[0]["_id"], "1");
3240 let (grp, _) = query(&db, "FROM t GROUP BY group COUNT").unwrap();
3241 assert_eq!(grp.len(), 2);
3242 let keys: Vec<&str> = grp.iter().filter_map(|r| r["group"].as_str()).collect();
3243 assert!(keys.contains(&"g1") && keys.contains(&"g2"), "{:?}", grp);
3244 }
3245
3246 #[test]
3249 fn keyword_matching_stays_case_insensitive() {
3250 let dir = tempdir().unwrap();
3251 let db = Db::open(dir.path(), None).unwrap();
3252 db.put("t", "1", serde_json::json!({"Count": 5, "n": 1}),
3253 vec![], None, None).unwrap();
3254 let (rows, _) = query(&db, "from t where Count = 5 order by n").unwrap();
3256 assert_eq!(rows.len(), 1);
3257 let (miss, _) = query(&db, "FROM t WHERE count = 5").unwrap();
3259 assert!(miss.is_empty(), "`count` and `Count` are distinct field names");
3260 }
3261
3262 #[test]
3263 fn two_aggregates_is_an_error() {
3264 let (_tmp, db) = setup();
3265 assert!(query(&db, "FROM blocks COUNT SUM n_tx").is_err());
3266 assert!(query(&db, "FROM blocks GROUP BY height COUNT SUM n_tx").is_err());
3267 }
3268
3269 #[test]
3270 fn bare_aggregate_with_having() {
3271 let (_tmp, db) = setup();
3272 let (keep, _) = query(&db, "FROM blocks COUNT HAVING count > 3").unwrap();
3273 assert_eq!(keep.len(), 1);
3274 let (drop, _) = query(&db, "FROM blocks COUNT HAVING count > 99").unwrap();
3275 assert!(drop.is_empty());
3276 }
3277
3278 fn setup_items() -> (tempfile::TempDir, Db) {
3283 let dir = tempdir().unwrap();
3284 let db = Db::open(dir.path(), None).unwrap();
3285 for i in 0..6 {
3286 db.put("items", &i.to_string(),
3287 serde_json::json!({"cat": if i < 3 {"x"} else {"y"}, "price": i * 5}),
3288 vec![], None, None).unwrap();
3289 }
3290 (dir, db)
3291 }
3292
3293 fn group(rows: &[Value], field: &str, key: &str) -> Value {
3294 rows.iter()
3295 .find(|r| r[field] == Value::String(key.to_string()))
3296 .unwrap_or_else(|| panic!("no group {:?} in {:?}", key, rows))
3297 .clone()
3298 }
3299
3300 #[test]
3306 fn group_by_aggregates_the_target_field_not_the_group_field() {
3307 let (_tmp, db) = setup_items();
3308
3309 let (mins, _) = query(&db, "FROM items GROUP BY cat MIN price").unwrap();
3310 assert_eq!(group(&mins, "cat", "x")["min_price"], json!(0));
3311 assert_eq!(group(&mins, "cat", "y")["min_price"], json!(15));
3312
3313 let (maxs, _) = query(&db, "FROM items GROUP BY cat MAX price").unwrap();
3314 assert_eq!(group(&maxs, "cat", "y")["max_price"], json!(25));
3315 assert_eq!(group(&maxs, "cat", "x")["max_price"], json!(10));
3316
3317 let (sums, _) = query(&db, "FROM items GROUP BY cat SUM price").unwrap();
3318 assert_eq!(group(&sums, "cat", "x")["sum_price"], json!(15)); assert_eq!(group(&sums, "cat", "y")["sum_price"], json!(60)); let (avgs, _) = query(&db, "FROM items GROUP BY cat AVG price").unwrap();
3322 assert_eq!(group(&avgs, "cat", "x")["avg_price"], json!(5.0));
3323 assert_eq!(group(&avgs, "cat", "y")["avg_price"], json!(20.0));
3324 }
3325
3326 #[test]
3338 fn aggregates_see_node_metadata_not_only_the_payload() {
3339 let (_tmp, db) = setup_items();
3340 let (all, _) = query(&db, "FROM items").unwrap();
3341 let want = all.iter().filter_map(|r| r.get("_seq")?.as_i64()).max().unwrap();
3342
3343 let (rows, _) = query(&db, "FROM items MAX _seq").unwrap();
3344 assert_eq!(rows[0]["max__seq"], json!(want),
3345 "MAX _seq must equal the highest sequence in the result");
3346 assert_ne!(rows[0]["max__seq"], Value::Null, "a null here is a silent wrong answer");
3347
3348 let (rows, _) = query(&db, "FROM items MIN _seq").unwrap();
3349 assert_eq!(rows[0]["min__seq"], json!(
3350 all.iter().filter_map(|r| r.get("_seq")?.as_i64()).min().unwrap()));
3351
3352 let (rows, _) = query(&db, "FROM items GROUP BY _seq COUNT").unwrap();
3354 assert_eq!(rows.len(), all.len(), "one group per distinct sequence");
3355 assert!(rows.iter().all(|r| r["_seq"] != Value::Null),
3356 "the group key must be the sequence, not null");
3357 }
3358
3359 #[test]
3363 fn group_by_emits_python_parity_keys_and_the_value_alias() {
3364 let (_tmp, db) = setup_items();
3365 let (rows, _) = query(&db, "FROM items GROUP BY cat SUM price").unwrap();
3366 let x = group(&rows, "cat", "x");
3367 assert_eq!(x["sum_price"], json!(15), "python-parity key");
3368 assert_eq!(x["value"], json!(15), "back-compat alias must agree");
3369 assert_eq!(x["count"], json!(3), "count is the group size");
3370 }
3371
3372 #[test]
3376 fn count_is_group_size_while_aggregate_skips_non_numeric() {
3377 let dir = tempdir().unwrap();
3378 let db = Db::open(dir.path(), None).unwrap();
3379 db.put("t", "1", serde_json::json!({"g": "a", "n": 10}), vec![], None, None).unwrap();
3380 db.put("t", "2", serde_json::json!({"g": "a", "n": 20}), vec![], None, None).unwrap();
3381 db.put("t", "3", serde_json::json!({"g": "a", "n": "N/A"}), vec![], None, None).unwrap();
3382
3383 let (rows, _) = query(&db, "FROM t GROUP BY g AVG n").unwrap();
3384 let a = group(&rows, "g", "a");
3385 assert_eq!(a["count"], json!(3), "every row counts toward the group");
3386 assert_eq!(a["avg_n"], json!(15.0), "only the two numeric rows average");
3387 }
3388
3389 #[test]
3391 fn empty_aggregate_input_is_null() {
3392 let dir = tempdir().unwrap();
3393 let db = Db::open(dir.path(), None).unwrap();
3394 db.put("t", "1", serde_json::json!({"g": "a", "n": "x"}), vec![], None, None).unwrap();
3395 let (rows, _) = query(&db, "FROM t GROUP BY g MIN n").unwrap();
3396 assert_eq!(rows[0]["min_n"], Value::Null);
3397 assert_eq!(rows[0]["count"], json!(1));
3398 }
3399
3400 #[test]
3403 fn bare_group_by_without_an_aggregate_counts() {
3404 let (_tmp, db) = setup_items();
3405 let (rows, _) = query(&db, "FROM items GROUP BY cat").unwrap();
3406 assert_eq!(rows.len(), 2);
3407 assert_eq!(group(&rows, "cat", "x")["count"], json!(3));
3408 assert_eq!(group(&rows, "cat", "y")["count"], json!(3));
3409 }
3410
3411 #[test]
3413 fn aggregate_without_a_target_field_is_an_error() {
3414 let (_tmp, db) = setup_items();
3415 for bad in [
3416 "FROM items GROUP BY cat SUM",
3417 "FROM items GROUP BY cat AVG",
3418 "FROM items GROUP BY cat MIN",
3419 ] {
3420 assert!(query(&db, bad).is_err(), "`{}` must be rejected", bad);
3421 }
3422 }
3423
3424 #[test]
3427 fn group_order_is_stable_across_runs() {
3428 let (_tmp, db) = setup_items();
3429 let first = query(&db, "FROM items GROUP BY cat SUM price").unwrap().0;
3430 for _ in 0..8 {
3431 let again = query(&db, "FROM items GROUP BY cat SUM price").unwrap().0;
3432 assert_eq!(first, again);
3433 }
3434 }
3435
3436 #[test]
3438 fn group_by_after_an_in_predicate() {
3439 let (_tmp, db) = setup_items();
3440 let (rows, _) = query(
3441 &db, "FROM items WHERE price IN (0, 5, 25) GROUP BY cat SUM price").unwrap();
3442 assert_eq!(group(&rows, "cat", "x")["sum_price"], json!(5));
3443 assert_eq!(group(&rows, "cat", "y")["sum_price"], json!(25));
3444 }
3445
3446 #[test]
3447 fn search() {
3448 let (_tmp, db) = setup();
3449 let (rows, _) = query(&db, r#"FROM blocks SEARCH "0003""#).unwrap();
3450 assert_eq!(rows.len(), 1);
3451 }
3452
3453 #[test]
3454 fn as_of() {
3455 let dir = tempdir().unwrap();
3456 let db = Db::open(dir.path(), None).unwrap();
3457 let v1 = db.put("docs", "x", serde_json::json!({"v": 1}), vec![], None, None).unwrap();
3458 db.put("docs", "x", serde_json::json!({"v": 2}), vec![], None, None).unwrap();
3459 let (rows, _) = query(&db, &format!("FROM docs AS OF {}", v1.seq)).unwrap();
3460 assert_eq!(rows[0]["v"], 1);
3461 }
3462
3463 #[test]
3464 fn valid_as_of() {
3465 let dir = tempdir().unwrap();
3466 let db = Db::open(dir.path(), None).unwrap();
3467 db.put("events", "e1", serde_json::json!({"type": "a"}), vec![],
3468 Some("2025-01-01".to_string()), Some("2025-06-01".to_string())).unwrap();
3469 db.put("events", "e2", serde_json::json!({"type": "b"}), vec![],
3470 Some("2026-01-01".to_string()), None).unwrap();
3471 let (rows, _) = query(&db, r#"FROM events VALID AS OF "2025-03-01""#).unwrap();
3472 assert_eq!(rows.len(), 1);
3473 assert_eq!(rows[0]["type"], "a");
3474 }
3475
3476 #[test]
3479 fn escaped_quote_matches_a_value_containing_a_quote() {
3480 let dir = tempdir().unwrap();
3481 let db = Db::open(dir.path(), None).unwrap();
3482 db.put("m", "q", serde_json::json!({ "name": "say \"hi\"" }), vec![], None, None)
3483 .unwrap();
3484 db.put("m", "p", serde_json::json!({ "name": "plain" }), vec![], None, None).unwrap();
3485
3486 let (rows, count) = query(&db, r#"FROM m WHERE name = "say \"hi\"""#).unwrap();
3488 assert_eq!(count, 1, "the escaped-quote literal matches exactly one row");
3489 assert_eq!(rows[0]["_id"], "q");
3490 }
3491
3492 #[test]
3493 fn raw_backslash_still_matches_literally() {
3494 let dir = tempdir().unwrap();
3498 let db = Db::open(dir.path(), None).unwrap();
3499 db.put("m", "b", serde_json::json!({ "p": "back\\slash" }), vec![], None, None).unwrap();
3500
3501 let (rows, count) = query(&db, r#"FROM m WHERE p = "back\slash""#).unwrap();
3502 assert_eq!(count, 1, "a raw backslash literal matches as before");
3503 assert_eq!(rows[0]["_id"], "b");
3504 }
3505
3506 #[test]
3507 fn a_quote_can_no_longer_inject_trailing_clauses() {
3508 let dir = tempdir().unwrap();
3513 let db = Db::open(dir.path(), None).unwrap();
3514 db.put("m", "x", serde_json::json!({ "v": "a\"b" }), vec![], None, None).unwrap();
3515 let (rows, count) = query(&db, r#"FROM m WHERE v = "a\"b""#).unwrap();
3516 assert_eq!(count, 1);
3517 assert_eq!(rows[0]["_id"], "x");
3518 }
3519}
3520
3521#[cfg(test)]
3522mod tests_traverse {
3523 use super::*;
3524 use tempfile::tempdir;
3525 use crate::db::Db;
3526
3527 #[test]
3528 fn traverse_one_hop() {
3529 let db = Db::in_memory();
3530 db.put("driver", "d1", serde_json::json!({"name": "Bob"}), vec![], None, None).unwrap();
3531 db.put("driver", "d2", serde_json::json!({"name": "Carol"}), vec![], None, None).unwrap();
3532 db.put("trip", "t1", serde_json::json!({"status": "req"}), vec![], None, None).unwrap();
3533 db.put("trip", "t2", serde_json::json!({"status": "ok"}), vec![], None, None).unwrap();
3534
3535 db.link("driver:d1", "handles", "trip:t1").unwrap();
3536 db.link("driver:d1", "handles", "trip:t2").unwrap();
3537
3538 let (rows, count) = query(&db, r#"FROM driver WHERE _id = "d1" TRAVERSE handles"#).unwrap();
3539 assert_eq!(count, 2);
3540 let ids: std::collections::HashSet<&str> = rows.iter()
3541 .filter_map(|r| r["_id"].as_str())
3542 .collect();
3543 assert!(ids.contains("t1") && ids.contains("t2"));
3544 }
3545
3546 #[test]
3547 fn traverse_returns_empty_when_no_links() {
3548 let db = Db::in_memory();
3549 db.put("driver", "d1", serde_json::json!({"name": "Bob"}), vec![], None, None).unwrap();
3550 let (rows, count) = query(&db, r#"FROM driver WHERE _id = "d1" TRAVERSE handles"#).unwrap();
3551 assert_eq!(count, 0);
3552 assert!(rows.is_empty());
3553 }
3554
3555 #[test]
3556 fn traverse_multi_source() {
3557 let db = Db::in_memory();
3559 db.put("driver", "d1", serde_json::json!({"status": "active"}), vec![], None, None).unwrap();
3560 db.put("driver", "d2", serde_json::json!({"status": "active"}), vec![], None, None).unwrap();
3561 db.put("trip", "t1", serde_json::json!({"n": 1}), vec![], None, None).unwrap();
3562 db.put("trip", "t2", serde_json::json!({"n": 2}), vec![], None, None).unwrap();
3563 db.put("trip", "t3", serde_json::json!({"n": 3}), vec![], None, None).unwrap();
3564
3565 db.link("driver:d1", "handles", "trip:t1").unwrap();
3566 db.link("driver:d1", "handles", "trip:t2").unwrap();
3567 db.link("driver:d2", "handles", "trip:t3").unwrap();
3568
3569 let (_rows, count) = query(&db, r#"FROM driver WHERE status = "active" TRAVERSE handles"#).unwrap();
3570 assert_eq!(count, 3);
3571 }
3572
3573 #[test]
3574 fn traverse_nql_keyword_case_insensitive() {
3575 let db = Db::in_memory();
3577 db.put("driver", "d1", serde_json::json!({}), vec![], None, None).unwrap();
3578 db.put("trip", "t1", serde_json::json!({}), vec![], None, None).unwrap();
3579 db.link("driver:d1", "handles", "trip:t1").unwrap();
3580 let (r1, c1) = query(&db, r#"FROM driver WHERE _id = "d1" TRAVERSE handles"#).unwrap();
3582 assert_eq!(c1, 1);
3583 let (r2, c2) = query(&db, r#"FROM driver WHERE _id = "d1" traverse handles"#).unwrap();
3585 assert_eq!(c2, 1);
3586 assert_eq!(r1[0]["_id"], r2[0]["_id"]);
3587 }
3588
3589 #[test]
3590 fn traverse_durable() {
3591 let dir = tempdir().unwrap();
3592 {
3593 let db = Db::open(dir.path(), None).unwrap();
3594 db.put("driver", "d1", serde_json::json!({"name": "Bob"}), vec![], None, None).unwrap();
3595 db.put("trip", "t1", serde_json::json!({"status": "req"}), vec![], None, None).unwrap();
3596 db.link("driver:d1", "handles", "trip:t1").unwrap();
3597 }
3598 let db2 = Db::open(dir.path(), None).unwrap();
3599 db2.startup_ready.store(true, std::sync::atomic::Ordering::SeqCst);
3600 let (rows, count) = query(&db2, r#"FROM driver WHERE _id = "d1" TRAVERSE handles"#).unwrap();
3601 assert_eq!(count, 1);
3602 assert_eq!(rows[0]["_id"], "t1");
3603 }
3604}