1use std::collections::HashMap;
2
3use crate::compiler::ir::*;
4use crate::compiler::ir::{CompileResult, JoinType};
5use crate::sql::dialect::SqlDialect;
6
7pub struct ClickHouseDialect;
8
9impl ClickHouseDialect {
10 pub fn new() -> Self {
11 Self
12 }
13}
14
15impl Default for ClickHouseDialect {
16 fn default() -> Self {
17 Self::new()
18 }
19}
20
21impl SqlDialect for ClickHouseDialect {
22 fn compile(&self, ir: &QueryIR) -> CompileResult {
23 if let Some(ref builder) = ir.custom_query_builder {
24 return (builder.0)(ir);
25 }
26
27 let mut bindings = Vec::new();
28 let mut alias_remap: Vec<(String, String)> = Vec::new();
29
30 if ir.joins.is_empty() {
31 let inner_sql = self.compile_inner(ir, &mut bindings, &mut alias_remap);
32 return CompileResult { sql: inner_sql, bindings, alias_remap };
33 }
34
35 let mut ir_mod = ir.clone();
40 let mut mc_counter = 0u32;
41 for sel in &mut ir_mod.selects {
42 if let SelectExpr::Column { column, alias } = sel {
43 if column.contains('(') && alias.is_none() {
44 let a = format!("__mc_{mc_counter}");
45 mc_counter += 1;
46 alias_remap.push((a.clone(), column.clone()));
47 *alias = Some(a);
48 }
49 }
50 }
51
52 let mut jc_counter = 0u32;
53 for join in &mut ir_mod.joins {
54 for sel in &mut join.selects {
55 if let SelectExpr::Column { column, alias } = sel {
56 if column.contains('(') && alias.is_none() {
57 let a = format!("__jc_{jc_counter}");
58 jc_counter += 1;
59 *alias = Some(a);
60 }
61 }
62 }
63 }
64
65 let inner_sql = self.compile_inner(&ir_mod, &mut bindings, &mut alias_remap);
66
67 let main_cols: Vec<String> = ir_mod.selects.iter().map(|s| {
71 let col = match s {
72 SelectExpr::Column { column, alias } => alias.as_ref().unwrap_or(column).clone(),
73 SelectExpr::Aggregate { alias, .. } | SelectExpr::DimAggregate { alias, .. } => alias.clone(),
74 };
75 format!("_main.`{}` AS `{}`", col, col)
76 }).collect();
77
78 let mut sql = String::from("SELECT ");
79 sql.push_str(&main_cols.join(", "));
80
81 for join in &ir_mod.joins {
83 for sel in &join.selects {
84 let col_name = match sel {
85 SelectExpr::Column { column, alias } => alias.as_ref().unwrap_or(column).clone(),
86 SelectExpr::Aggregate { alias, .. } | SelectExpr::DimAggregate { alias, .. } => alias.clone(),
87 };
88 let outer_alias = format!("{}.{}", join.alias, col_name);
89 if let SelectExpr::Column { column, alias: Some(_) } = sel {
90 if column.contains('(') {
91 let outer_original = format!("{}.{}", join.alias, column);
92 alias_remap.push((outer_alias.clone(), outer_original));
93 }
94 }
95 sql.push_str(&format!(", {}.`{}` AS `{}`",
96 join.alias, col_name, outer_alias));
97 }
98 }
99
100 sql.push_str(&format!(" FROM ({}) AS _main", inner_sql));
101
102 let main_alias_map: HashMap<String, String> = ir_mod.selects.iter()
105 .filter_map(|s| {
106 if let SelectExpr::Column { column, alias: Some(a) } = s {
107 if column.contains('(') { Some((column.clone(), a.clone())) } else { None }
108 } else { None }
109 })
110 .collect();
111
112 for join in &ir_mod.joins {
113 let join_kw = join.join_type.sql_keyword();
114
115 if join.is_aggregate {
116 sql.push_str(&format!(" {} (SELECT ", join_kw));
118 let mut sub_parts: Vec<String> = Vec::new();
119 for gb_col in &join.group_by {
120 sub_parts.push(quote_col(gb_col));
121 }
122 for sel in &join.selects {
123 match sel {
124 SelectExpr::Column { column, alias } => {
125 let col = if column.contains('(') { column.clone() } else { format!("`{column}`") };
126 if let Some(a) = alias {
127 sub_parts.push(format!("{col} AS `{a}`"));
128 } else if column.contains('(') || !join.group_by.contains(column) {
129 sub_parts.push(col);
130 }
131 }
132 SelectExpr::Aggregate { function, column, alias, condition } => {
133 let func = function.to_lowercase();
134 let qcol = quote_col(column);
135 let expr = match (func.as_str(), column.as_str(), condition) {
136 ("count", "*", None) => format!("count() AS `{alias}`"),
137 ("count", "*", Some(cond)) => format!("countIf({cond}) AS `{alias}`"),
138 ("count", _, None) => format!("uniqExact({qcol}) AS `{alias}`"),
139 ("count", _, Some(cond)) => format!("uniqExactIf({qcol}, {cond}) AS `{alias}`"),
140 ("uniq", _, None) => format!("uniq({qcol}) AS `{alias}`"),
141 ("uniq", _, Some(cond)) => format!("uniqIf({qcol}, {cond}) AS `{alias}`"),
142 (f, _, None) => format!("{f}({qcol}) AS `{alias}`"),
143 (f, _, Some(cond)) => format!("{f}If({qcol}, {cond}) AS `{alias}`"),
144 };
145 sub_parts.push(expr);
146 }
147 SelectExpr::DimAggregate { agg_type, value_column, compare_column, alias, condition } => {
148 let func = match agg_type {
149 DimAggType::ArgMax => "argMax",
150 DimAggType::ArgMin => "argMin",
151 };
152 let qv = quote_col(value_column);
153 let qc = quote_col(compare_column);
154 let expr = match condition {
155 None => format!("{func}({qv}, {qc}) AS `{alias}`"),
156 Some(cond) => format!("{func}If({qv}, {qc}, {cond}) AS `{alias}`"),
157 };
158 sub_parts.push(expr);
159 }
160 }
161 }
162 sql.push_str(&sub_parts.join(", "));
163 sql.push_str(&format!(" FROM `{}`.`{}`", join.schema, join.table));
164 if !join.group_by.is_empty() {
165 sql.push_str(" GROUP BY ");
166 let gb: Vec<String> = join.group_by.iter().map(|c| quote_col(c)).collect();
167 sql.push_str(&gb.join(", "));
168 }
169 sql.push_str(&format!(") AS {}", join.alias));
170 } else {
171 sql.push_str(&format!(" {} `{}`.`{}` AS {}",
173 join_kw, join.schema, join.table, join.alias));
174 if join.use_final {
175 sql.push_str(" FINAL");
176 }
177 }
178
179 if join.join_type == JoinType::Cross {
180 continue;
182 }
183
184 let on_parts: Vec<String> = join.conditions.iter().map(|(local, remote)| {
186 let local_ref = main_alias_map.get(local).unwrap_or(local);
187 format!("_main.`{}` = {}.`{}`", local_ref, join.alias, remote)
188 }).collect();
189 sql.push_str(" ON ");
190 sql.push_str(&on_parts.join(" AND "));
191 }
192
193 CompileResult { sql, bindings, alias_remap }
194 }
195
196 fn quote_identifier(&self, name: &str) -> String {
197 format!("`{name}`")
198 }
199
200 fn name(&self) -> &str {
201 "ClickHouse"
202 }
203}
204
205impl ClickHouseDialect {
206 fn compile_inner(
207 &self,
208 ir: &QueryIR,
209 bindings: &mut Vec<SqlValue>,
210 alias_remap: &mut Vec<(String, String)>,
211 ) -> String {
212 let mut sql = String::new();
213
214 let mut augmented_selects = ir.selects.clone();
215 let mut agg_alias_map: HashMap<String, String> = HashMap::new();
216 let mut alias_counter = 0u32;
217
218 let having_cols: std::collections::HashSet<String> =
219 collect_filter_columns(&ir.having).into_iter().collect();
220 let has_having_agg = having_cols.iter().any(|c| c.contains('('));
221
222 if has_having_agg {
223 for sel in &mut augmented_selects {
224 if let SelectExpr::Column { column, alias } = sel {
225 if column.contains('(') && having_cols.contains(column.as_str()) {
226 if alias.is_none() {
227 let a = format!("__f_{alias_counter}");
228 alias_counter += 1;
229 alias_remap.push((a.clone(), column.clone()));
230 agg_alias_map.insert(column.clone(), a.clone());
231 *alias = Some(a);
232 } else if let Some(existing) = alias {
233 agg_alias_map.insert(column.clone(), existing.clone());
234 }
235 }
236 }
237 }
238 for col in &having_cols {
239 if col.contains('(') && !agg_alias_map.contains_key(col.as_str()) {
240 let a = format!("__f_{alias_counter}");
241 alias_counter += 1;
242 agg_alias_map.insert(col.clone(), a.clone());
243 augmented_selects.push(SelectExpr::Column {
244 column: col.clone(),
245 alias: Some(a),
246 });
247 }
248 }
249 }
250
251 for sel in &augmented_selects {
252 if let SelectExpr::DimAggregate { agg_type, value_column, compare_column, alias, .. } = sel {
253 let func = match agg_type {
254 DimAggType::ArgMax => "argMax",
255 DimAggType::ArgMin => "argMin",
256 };
257 let qv = quote_col(value_column);
258 let qc = quote_col(compare_column);
259 let expr = format!("{func}({qv}, {qc})");
260 agg_alias_map.insert(expr, alias.clone());
261 }
262 }
263
264 sql.push_str("SELECT ");
265 let select_parts: Vec<String> = augmented_selects.iter().map(|s| match s {
266 SelectExpr::Column { column, alias } => {
267 let col = if column.contains('(') { column.clone() } else { format!("`{column}`") };
268 match alias {
269 Some(a) => format!("{col} AS `{a}`"),
270 None => col,
271 }
272 },
273 SelectExpr::Aggregate { function, column, alias, condition } => {
274 let func = function.to_uppercase();
275 let qcol = quote_col(column);
276 match (func.as_str(), column.as_str(), condition) {
277 ("COUNT", "*", None) => format!("count() AS `{alias}`"),
278 ("COUNT", "*", Some(cond)) => format!("countIf({cond}) AS `{alias}`"),
279 ("COUNT", _, None) => format!("uniqExact({qcol}) AS `{alias}`"),
280 ("COUNT", _, Some(cond)) => format!("uniqExactIf({qcol}, {cond}) AS `{alias}`"),
281 ("UNIQ", _, None) => format!("uniq({qcol}) AS `{alias}`"),
282 ("UNIQ", _, Some(cond)) => format!("uniqIf({qcol}, {cond}) AS `{alias}`"),
283 (_, _, None) => format!("{f}({qcol}) AS `{alias}`", f = func.to_lowercase()),
284 (_, _, Some(cond)) => format!("{f}If({qcol}, {cond}) AS `{alias}`", f = func.to_lowercase()),
285 }
286 }
287 SelectExpr::DimAggregate { agg_type, value_column, compare_column, alias, condition } => {
288 let func = match agg_type {
289 DimAggType::ArgMax => "argMax",
290 DimAggType::ArgMin => "argMin",
291 };
292 let qv = quote_col(value_column);
293 let qc = quote_col(compare_column);
294 match condition {
295 None => format!("{func}({qv}, {qc}) AS `{alias}`"),
296 Some(cond) => format!("{func}If({qv}, {qc}, {cond}) AS `{alias}`"),
297 }
298 }
299 }).collect();
300 sql.push_str(&select_parts.join(", "));
301
302 if let Some(ref subquery) = ir.from_subquery {
303 sql.push_str(&format!(" FROM ({}) AS _t", subquery));
304 } else {
305 sql.push_str(&format!(" FROM `{}`.`{}`", ir.schema, ir.table));
306 if ir.use_final {
307 sql.push_str(" FINAL");
308 }
309 }
310
311 let where_clause = compile_filter(&ir.filters, bindings);
312 if !where_clause.is_empty() {
313 sql.push_str(" WHERE ");
314 sql.push_str(&where_clause);
315 }
316
317 let effective_group_by = if !ir.group_by.is_empty() {
318 ir.group_by.clone()
319 } else {
320 let has_agg_cols = augmented_selects.iter().any(|s| match s {
321 SelectExpr::Column { column, .. } => column.contains("Merge("),
322 SelectExpr::Aggregate { .. } | SelectExpr::DimAggregate { .. } => true,
323 });
324 if has_agg_cols {
325 augmented_selects.iter().filter_map(|s| match s {
326 SelectExpr::Column { column, alias } if !contains_aggregate_expr(column) && alias.is_none() => {
327 Some(column.clone())
328 }
329 _ => None,
330 }).collect()
331 } else {
332 vec![]
333 }
334 };
335
336 if !effective_group_by.is_empty() {
337 sql.push_str(" GROUP BY ");
338 let cols: Vec<String> = effective_group_by.iter().map(|c| quote_col(c)).collect();
339 sql.push_str(&cols.join(", "));
340 }
341
342 if has_having_agg {
343 let having_clause = compile_filter_with_aliases(&ir.having, bindings, &agg_alias_map);
344 if !having_clause.is_empty() {
345 sql.push_str(" HAVING ");
346 sql.push_str(&having_clause);
347 }
348 } else {
349 let having_clause = compile_filter(&ir.having, bindings);
350 if !having_clause.is_empty() {
351 sql.push_str(" HAVING ");
352 sql.push_str(&having_clause);
353 }
354 }
355
356 if !ir.order_by.is_empty() {
357 sql.push_str(" ORDER BY ");
358 let parts: Vec<String> = ir.order_by.iter().map(|o| {
359 let col = if o.column.contains('(') {
360 agg_alias_map.get(&o.column)
361 .map(|a| format!("`{a}`"))
362 .unwrap_or_else(|| o.column.clone())
363 } else {
364 format!("`{}`", o.column)
365 };
366 let dir = if o.descending { "DESC" } else { "ASC" };
367 format!("{col} {dir}")
368 }).collect();
369 sql.push_str(&parts.join(", "));
370 }
371
372 if let Some(ref lb) = ir.limit_by {
373 let by_cols: Vec<String> = lb.columns.iter().map(|c| format!("`{c}`")).collect();
374 sql.push_str(&format!(" LIMIT {} BY {}", lb.count, by_cols.join(", ")));
375 if lb.offset > 0 {
376 sql.push_str(&format!(" OFFSET {}", lb.offset));
377 }
378 }
379
380 sql.push_str(&format!(" LIMIT {}", ir.limit));
381 if ir.offset > 0 {
382 sql.push_str(&format!(" OFFSET {}", ir.offset));
383 }
384
385 sql
386 }
387}
388
389fn collect_filter_columns(node: &FilterNode) -> Vec<String> {
391 match node {
392 FilterNode::Empty => vec![],
393 FilterNode::Condition { column, .. } => vec![column.clone()],
394 FilterNode::And(children) | FilterNode::Or(children) => {
395 children.iter().flat_map(collect_filter_columns).collect()
396 }
397 FilterNode::ArrayIncludes { array_columns, .. } => array_columns.clone(),
398 }
399}
400
401fn compile_filter_with_aliases(
404 node: &FilterNode,
405 bindings: &mut Vec<SqlValue>,
406 aliases: &HashMap<String, String>,
407) -> String {
408 match node {
409 FilterNode::Empty => String::new(),
410 FilterNode::Condition { column, op, value } => {
411 let effective_col = aliases.get(column)
412 .map(|a| a.as_str())
413 .unwrap_or(column.as_str());
414 compile_condition(effective_col, op, value, bindings)
415 }
416 FilterNode::And(children) => {
417 let parts: Vec<String> = children.iter()
418 .map(|c| compile_filter_with_aliases(c, bindings, aliases))
419 .filter(|s| !s.is_empty())
420 .collect();
421 match parts.len() {
422 0 => String::new(),
423 1 => parts.into_iter().next().unwrap(),
424 _ => format!("({})", parts.join(" AND ")),
425 }
426 }
427 FilterNode::Or(children) => {
428 let parts: Vec<String> = children.iter()
429 .map(|c| compile_filter_with_aliases(c, bindings, aliases))
430 .filter(|s| !s.is_empty())
431 .collect();
432 match parts.len() {
433 0 => String::new(),
434 1 => parts.into_iter().next().unwrap(),
435 _ => format!("({})", parts.join(" OR ")),
436 }
437 }
438 FilterNode::ArrayIncludes { array_columns, element_conditions } => {
439 compile_array_includes(array_columns, element_conditions, bindings)
440 }
441 }
442}
443
444fn compile_filter(node: &FilterNode, bindings: &mut Vec<SqlValue>) -> String {
445 match node {
446 FilterNode::Empty => String::new(),
447 FilterNode::Condition { column, op, value } => {
448 compile_condition(column, op, value, bindings)
449 }
450 FilterNode::And(children) => {
451 let parts: Vec<String> = children.iter()
452 .map(|c| compile_filter(c, bindings))
453 .filter(|s| !s.is_empty())
454 .collect();
455 match parts.len() {
456 0 => String::new(),
457 1 => parts.into_iter().next().unwrap(),
458 _ => format!("({})", parts.join(" AND ")),
459 }
460 }
461 FilterNode::Or(children) => {
462 let parts: Vec<String> = children.iter()
463 .map(|c| compile_filter(c, bindings))
464 .filter(|s| !s.is_empty())
465 .collect();
466 match parts.len() {
467 0 => String::new(),
468 1 => parts.into_iter().next().unwrap(),
469 _ => format!("({})", parts.join(" OR ")),
470 }
471 }
472 FilterNode::ArrayIncludes { array_columns, element_conditions } => {
473 compile_array_includes(array_columns, element_conditions, bindings)
474 }
475 }
476}
477
478fn compile_array_includes(
480 array_columns: &[String],
481 element_conditions: &[Vec<FilterNode>],
482 bindings: &mut Vec<SqlValue>,
483) -> String {
484 let params: Vec<String> = (0..array_columns.len())
485 .map(|i| format!("_p{i}"))
486 .collect();
487 let arrays_sql: Vec<String> = array_columns.iter()
488 .map(|c| quote_col(c))
489 .collect();
490 let arrays_ref = arrays_sql.join(", ");
491 let params_ref = params.join(", ");
492
493 let col_to_param: std::collections::HashMap<&str, &str> = array_columns.iter()
494 .zip(params.iter())
495 .map(|(c, p)| (c.as_str(), p.as_str()))
496 .collect();
497
498 let exists_parts: Vec<String> = element_conditions.iter().map(|conds| {
499 let cond_parts: Vec<String> = conds.iter()
500 .map(|c| compile_filter_with_param_remap(c, bindings, &col_to_param))
501 .filter(|s| !s.is_empty())
502 .collect();
503 let cond_sql = match cond_parts.len() {
504 0 => "1".to_string(),
505 1 => cond_parts.into_iter().next().unwrap(),
506 _ => format!("({})", cond_parts.join(" AND ")),
507 };
508 format!("arrayExists(({params_ref}) -> {cond_sql}, {arrays_ref})")
509 }).collect();
510
511 match exists_parts.len() {
512 0 => String::new(),
513 1 => exists_parts.into_iter().next().unwrap(),
514 _ => format!("({})", exists_parts.join(" AND ")),
515 }
516}
517
518fn compile_filter_with_param_remap(
521 node: &FilterNode,
522 bindings: &mut Vec<SqlValue>,
523 col_to_param: &std::collections::HashMap<&str, &str>,
524) -> String {
525 match node {
526 FilterNode::Empty => String::new(),
527 FilterNode::Condition { column, op, value } => {
528 if let Some(¶m) = col_to_param.get(column.as_str()) {
529 compile_condition_raw(param, op, value, bindings)
530 } else {
531 compile_condition(column, op, value, bindings)
532 }
533 }
534 FilterNode::And(children) => {
535 let parts: Vec<String> = children.iter()
536 .map(|c| compile_filter_with_param_remap(c, bindings, col_to_param))
537 .filter(|s| !s.is_empty())
538 .collect();
539 match parts.len() {
540 0 => String::new(),
541 1 => parts.into_iter().next().unwrap(),
542 _ => format!("({})", parts.join(" AND ")),
543 }
544 }
545 FilterNode::Or(children) => {
546 let parts: Vec<String> = children.iter()
547 .map(|c| compile_filter_with_param_remap(c, bindings, col_to_param))
548 .filter(|s| !s.is_empty())
549 .collect();
550 match parts.len() {
551 0 => String::new(),
552 1 => parts.into_iter().next().unwrap(),
553 _ => format!("({})", parts.join(" OR ")),
554 }
555 }
556 FilterNode::ArrayIncludes { array_columns, element_conditions } => {
557 compile_array_includes(array_columns, element_conditions, bindings)
558 }
559 }
560}
561
562fn quote_col(column: &str) -> String {
563 if column.contains('(') {
564 column.to_string()
565 } else {
566 format!("`{column}`")
567 }
568}
569
570fn compile_condition_raw(
573 col: &str, op: &CompareOp, value: &SqlValue, bindings: &mut Vec<SqlValue>,
574) -> String {
575 compile_condition_inner(col, op, value, bindings)
576}
577
578fn compile_condition(
579 column: &str, op: &CompareOp, value: &SqlValue, bindings: &mut Vec<SqlValue>,
580) -> String {
581 let col = quote_col(column);
582 compile_condition_inner(&col, op, value, bindings)
583}
584
585fn compile_condition_inner(
586 col: &str, op: &CompareOp, value: &SqlValue, bindings: &mut Vec<SqlValue>,
587) -> String {
588 match op {
589 CompareOp::In | CompareOp::NotIn => {
590 if let SqlValue::String(csv) = value {
591 let items: Vec<&str> = csv.split(',').collect();
592 let placeholders: Vec<&str> = items.iter().map(|_| "?").collect();
593 for item in &items {
594 bindings.push(SqlValue::String(item.trim().to_string()));
595 }
596 format!("{col} {} ({})", op.sql_op(), placeholders.join(", "))
597 } else {
598 bindings.push(value.clone());
599 format!("{col} {} (?)", op.sql_op())
600 }
601 }
602 CompareOp::Includes | CompareOp::NotIncludes => {
603 if let SqlValue::String(s) = value {
604 bindings.push(SqlValue::String(format!("%{s}%")));
605 } else {
606 bindings.push(value.clone());
607 }
608 format!("{col} {} ?", op.sql_op())
609 }
610 CompareOp::IlikeIncludes => {
611 if let SqlValue::String(s) = value {
612 bindings.push(SqlValue::String(format!("%{s}%")));
613 } else {
614 bindings.push(value.clone());
615 }
616 format!("{col} ilike ?")
617 }
618 CompareOp::NotIlikeIncludes => {
619 if let SqlValue::String(s) = value {
620 bindings.push(SqlValue::String(format!("%{s}%")));
621 } else {
622 bindings.push(value.clone());
623 }
624 format!("{col} NOT ilike ?")
625 }
626 CompareOp::StartsWith | CompareOp::IlikeStartsWith => {
627 if let SqlValue::String(s) = value {
628 bindings.push(SqlValue::String(format!("{s}%")));
629 } else {
630 bindings.push(value.clone());
631 }
632 format!("{col} {} ?", op.sql_op())
633 }
634 CompareOp::EndsWith => {
635 if let SqlValue::String(s) = value {
636 bindings.push(SqlValue::String(format!("%{s}")));
637 } else {
638 bindings.push(value.clone());
639 }
640 format!("{col} LIKE ?")
641 }
642 CompareOp::IsNull | CompareOp::IsNotNull => {
643 format!("{col} {}", op.sql_op())
644 }
645 _ => {
646 if let SqlValue::Expression(expr) = value {
647 format!("{col} {} {expr}", op.sql_op())
648 } else {
649 bindings.push(value.clone());
650 format!("{col} {} ?", op.sql_op())
651 }
652 }
653 }
654}
655
656#[cfg(test)]
657mod tests {
658 use super::*;
659
660 fn ch() -> ClickHouseDialect { ClickHouseDialect::new() }
661
662 #[test]
663 fn test_simple_select() {
664 let ir = QueryIR {
665 cube: "DEXTrades".into(), schema: "default".into(),
666 table: "dwd_dex_trades".into(),
667 selects: vec![
668 SelectExpr::Column { column: "tx_hash".into(), alias: None },
669 SelectExpr::Column { column: "token_a_amount".into(), alias: None },
670 ],
671 filters: FilterNode::Empty, having: FilterNode::Empty,
672 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
673 limit_by: None,
674 use_final: false,
675 joins: vec![],
676 custom_query_builder: None,
677 from_subquery: None,
678 };
679 let r = ch().compile(&ir);
680 assert_eq!(r.sql, "SELECT `tx_hash`, `token_a_amount` FROM `default`.`dwd_dex_trades` LIMIT 10");
681 assert!(r.bindings.is_empty());
682 }
683
684 #[test]
685 fn test_final_keyword() {
686 let ir = QueryIR {
687 cube: "T".into(), schema: "db".into(), table: "tokens".into(),
688 selects: vec![SelectExpr::Column { column: "id".into(), alias: None }],
689 filters: FilterNode::Empty, having: FilterNode::Empty,
690 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
691 limit_by: None,
692 use_final: true,
693 joins: vec![],
694 custom_query_builder: None,
695 from_subquery: None,
696 };
697 let r = ch().compile(&ir);
698 assert!(r.sql.contains("FROM `db`.`tokens` FINAL"), "FINAL should be appended, got: {}", r.sql);
699 }
700
701 #[test]
702 fn test_uniq_uses_native_function() {
703 let ir = QueryIR {
704 cube: "T".into(), schema: "db".into(), table: "t".into(),
705 selects: vec![
706 SelectExpr::Aggregate { function: "UNIQ".into(), column: "wallet".into(), alias: "__uniq".into(), condition: None },
707 ],
708 filters: FilterNode::Empty, having: FilterNode::Empty,
709 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
710 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
711 };
712 let r = ch().compile(&ir);
713 assert!(r.sql.contains("uniq(`wallet`) AS `__uniq`"), "ClickHouse should use native uniq(), got: {}", r.sql);
714 }
715
716 #[test]
717 fn test_count_star() {
718 let ir = QueryIR {
719 cube: "T".into(), schema: "db".into(), table: "t".into(),
720 selects: vec![
721 SelectExpr::Aggregate { function: "COUNT".into(), column: "*".into(), alias: "__count".into(), condition: None },
722 ],
723 filters: FilterNode::Empty, having: FilterNode::Empty,
724 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
725 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
726 };
727 let r = ch().compile(&ir);
728 assert!(r.sql.contains("count() AS `__count`"), "ClickHouse should use count() not COUNT(*), got: {}", r.sql);
729 }
730
731 #[test]
732 fn test_aggregate_lowercase() {
733 let ir = QueryIR {
734 cube: "T".into(), schema: "db".into(), table: "t".into(),
735 selects: vec![
736 SelectExpr::Aggregate { function: "SUM".into(), column: "amount".into(), alias: "__sum".into(), condition: None },
737 SelectExpr::Aggregate { function: "AVG".into(), column: "price".into(), alias: "__avg".into(), condition: None },
738 ],
739 filters: FilterNode::Empty, having: FilterNode::Empty,
740 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
741 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
742 };
743 let r = ch().compile(&ir);
744 assert!(r.sql.contains("sum(`amount`) AS `__sum`"), "ClickHouse functions should be lowercase, got: {}", r.sql);
745 assert!(r.sql.contains("avg(`price`) AS `__avg`"), "got: {}", r.sql);
746 }
747
748 #[test]
749 fn test_where_and_order() {
750 let ir = QueryIR {
751 cube: "T".into(), schema: "db".into(), table: "t".into(),
752 selects: vec![SelectExpr::Column { column: "id".into(), alias: None }],
753 filters: FilterNode::And(vec![
754 FilterNode::Condition { column: "chain_id".into(), op: CompareOp::Eq, value: SqlValue::Int(1) },
755 FilterNode::Condition { column: "amount_usd".into(), op: CompareOp::Gt, value: SqlValue::Float(1000.0) },
756 ]),
757 having: FilterNode::Empty, group_by: vec![],
758 order_by: vec![OrderExpr { column: "block_timestamp".into(), descending: true }],
759 limit: 25, offset: 0,
760 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
761 };
762 let r = ch().compile(&ir);
763 assert!(r.sql.contains("WHERE (`chain_id` = ? AND `amount_usd` > ?)"));
764 assert!(r.sql.contains("ORDER BY `block_timestamp` DESC"));
765 assert_eq!(r.bindings.len(), 2);
766 }
767
768 #[test]
769 fn test_having_with_aggregate_expr() {
770 let ir = QueryIR {
771 cube: "T".into(), schema: "db".into(), table: "t".into(),
772 selects: vec![
773 SelectExpr::Column { column: "token_address".into(), alias: None },
774 SelectExpr::Aggregate { function: "SUM".into(), column: "amount_usd".into(), alias: "__sum".into(), condition: None },
775 ],
776 filters: FilterNode::Empty,
777 having: FilterNode::Condition {
778 column: "sum(`amount_usd`)".into(), op: CompareOp::Gt, value: SqlValue::Float(1000000.0),
779 },
780 group_by: vec!["token_address".into()], order_by: vec![], limit: 25, offset: 0,
781 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
782 };
783 let r = ch().compile(&ir);
784 assert!(r.sql.contains("GROUP BY `token_address`"));
785 assert!(r.sql.contains("HAVING `__f_0` > ?"), "expected alias in HAVING, got: {}", r.sql);
786 assert!(r.sql.contains("sum(`amount_usd`) AS `__f_0`"), "expected alias in SELECT, got: {}", r.sql);
787 assert_eq!(r.bindings.len(), 1);
788 }
789
790 #[test]
791 fn test_having_appends_missing_agg_column() {
792 let ir = QueryIR {
793 cube: "T".into(), schema: "db".into(), table: "t".into(),
794 selects: vec![
795 SelectExpr::Column { column: "pool_address".into(), alias: None },
796 SelectExpr::Column { column: "argMaxMerge(latest_liquidity_usd_state)".into(), alias: None },
797 ],
798 filters: FilterNode::Empty,
799 having: FilterNode::And(vec![
800 FilterNode::Condition {
801 column: "argMaxMerge(latest_liquidity_usd_state)".into(),
802 op: CompareOp::Gt, value: SqlValue::Float(2.0),
803 },
804 FilterNode::Condition {
805 column: "argMaxMerge(latest_token_a_amount_state)".into(),
806 op: CompareOp::Gt, value: SqlValue::Float(3.0),
807 },
808 ]),
809 group_by: vec!["pool_address".into()], order_by: vec![], limit: 25, offset: 0,
810 limit_by: None, use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
811 };
812 let r = ch().compile(&ir);
813 assert!(r.sql.contains("argMaxMerge(latest_liquidity_usd_state) AS `__f_0`"),
814 "existing HAVING col should be aliased, got: {}", r.sql);
815 assert!(r.sql.contains("argMaxMerge(latest_token_a_amount_state) AS `__f_1`"),
816 "missing agg col should be appended, got: {}", r.sql);
817 assert!(r.sql.contains("HAVING (`__f_0` > ? AND `__f_1` > ?)"),
818 "HAVING should use aliases, got: {}", r.sql);
819 assert_eq!(r.bindings.len(), 2);
820 assert_eq!(r.alias_remap.len(), 1);
821 assert_eq!(r.alias_remap[0], ("__f_0".to_string(), "argMaxMerge(latest_liquidity_usd_state)".to_string()));
822 }
823
824 #[test]
825 fn test_limit_by() {
826 let ir = QueryIR {
827 cube: "T".into(), schema: "db".into(), table: "t".into(),
828 selects: vec![
829 SelectExpr::Column { column: "owner".into(), alias: None },
830 SelectExpr::Column { column: "amount".into(), alias: None },
831 ],
832 filters: FilterNode::Empty, having: FilterNode::Empty,
833 group_by: vec![],
834 order_by: vec![OrderExpr { column: "amount".into(), descending: true }],
835 limit: 100, offset: 0,
836 limit_by: Some(LimitByExpr { count: 3, offset: 0, columns: vec!["owner".into()] }),
837 use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
838 };
839 let r = ch().compile(&ir);
840 let sql = &r.sql;
841 assert!(sql.contains("LIMIT 3 BY `owner`"), "LIMIT BY should be present, got: {sql}");
842 assert!(sql.contains("ORDER BY `amount` DESC"), "ORDER BY should be present, got: {sql}");
843 assert!(sql.contains("LIMIT 100"), "outer LIMIT should be present, got: {sql}");
844 let order_by_pos = sql.find("ORDER BY").unwrap();
845 let limit_by_pos = sql.find("LIMIT 3 BY").unwrap();
846 let limit_pos = sql.rfind("LIMIT 100").unwrap();
847 assert!(order_by_pos < limit_by_pos, "ORDER BY should come before LIMIT BY in ClickHouse");
848 assert!(limit_by_pos < limit_pos, "LIMIT BY should come before outer LIMIT");
849 }
850
851 #[test]
852 fn test_limit_by_with_offset() {
853 let ir = QueryIR {
854 cube: "T".into(), schema: "db".into(), table: "t".into(),
855 selects: vec![SelectExpr::Column { column: "id".into(), alias: None }],
856 filters: FilterNode::Empty, having: FilterNode::Empty,
857 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
858 limit_by: Some(LimitByExpr { count: 5, offset: 2, columns: vec!["token".into(), "wallet".into()] }),
859 use_final: false, joins: vec![], custom_query_builder: None, from_subquery: None,
860 };
861 let r = ch().compile(&ir);
862 assert!(r.sql.contains("LIMIT 5 BY `token`, `wallet` OFFSET 2"), "multi-column LIMIT BY with offset, got: {}", r.sql);
863 }
864
865 #[test]
866 fn test_join_direct() {
867 let ir = QueryIR {
868 cube: "DEXTrades".into(), schema: "dexes_dwd".into(),
869 table: "sol_dex_trades".into(),
870 selects: vec![
871 SelectExpr::Column { column: "tx_hash".into(), alias: None },
872 SelectExpr::Column { column: "buy_token_address".into(), alias: None },
873 ],
874 filters: FilterNode::Empty, having: FilterNode::Empty,
875 group_by: vec![], order_by: vec![], limit: 25, offset: 0,
876 limit_by: None, use_final: false,
877 joins: vec![JoinExpr {
878 schema: "dexes_dim".into(), table: "sol_tokens".into(),
879 alias: "_j0".into(),
880 conditions: vec![("buy_token_address".into(), "token_address".into())],
881 selects: vec![
882 SelectExpr::Column { column: "name".into(), alias: None },
883 SelectExpr::Column { column: "symbol".into(), alias: None },
884 ],
885 group_by: vec![], use_final: true, is_aggregate: false,
886 target_cube: "TokenSearch".into(), join_field: "joinBuyToken".into(),
887 join_type: JoinType::Left,
888 }],
889 custom_query_builder: None,
890 from_subquery: None,
891 };
892 let r = ch().compile(&ir);
893 assert!(r.sql.contains("FROM (SELECT"), "main query should be wrapped, got: {}", r.sql);
894 assert!(r.sql.contains("LEFT JOIN `dexes_dim`.`sol_tokens` AS _j0 FINAL"),
895 "direct JOIN with FINAL after alias, got: {}", r.sql);
896 assert!(r.sql.contains("_main.`buy_token_address` = _j0.`token_address`"),
897 "ON condition, got: {}", r.sql);
898 assert!(r.sql.contains("_j0.`name` AS `_j0.name`"), "joined col alias, got: {}", r.sql);
899 }
900
901 #[test]
902 fn test_join_aggregate_subquery() {
903 let ir = QueryIR {
904 cube: "DEXTrades".into(), schema: "dexes_dwd".into(),
905 table: "sol_dex_trades".into(),
906 selects: vec![
907 SelectExpr::Column { column: "tx_hash".into(), alias: None },
908 SelectExpr::Column { column: "buy_token_address".into(), alias: None },
909 ],
910 filters: FilterNode::Empty, having: FilterNode::Empty,
911 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
912 limit_by: None, use_final: false,
913 joins: vec![JoinExpr {
914 schema: "dexes_dws".into(), table: "sol_token_market_cap".into(),
915 alias: "_j0".into(),
916 conditions: vec![("buy_token_address".into(), "token_address".into())],
917 selects: vec![
918 SelectExpr::Column { column: "argMaxMerge(latest_market_cap_usd_state)".into(), alias: None },
919 ],
920 group_by: vec!["token_address".into()],
921 use_final: false, is_aggregate: true,
922 target_cube: "TokenMarketCap".into(), join_field: "joinBuyTokenMarketCap".into(),
923 join_type: JoinType::Left,
924 }],
925 custom_query_builder: None,
926 from_subquery: None,
927 };
928 let r = ch().compile(&ir);
929 assert!(r.sql.contains("LEFT JOIN (SELECT"), "aggregate should use subquery, got: {}", r.sql);
930 assert!(r.sql.contains("GROUP BY `token_address`"), "subquery GROUP BY, got: {}", r.sql);
931 assert!(r.sql.contains("FROM `dexes_dws`.`sol_token_market_cap`"), "subquery FROM, got: {}", r.sql);
932 assert!(r.sql.contains("argMaxMerge(latest_market_cap_usd_state) AS `__jc_0`"),
933 "join func expr should be aliased in subquery, got: {}", r.sql);
934 assert!(r.sql.contains("_j0.`__jc_0` AS `_j0.__jc_0`"),
935 "outer SELECT should use alias for join func col, got: {}", r.sql);
936 }
937
938 #[test]
939 fn test_join_main_query_func_expression_columns() {
940 let ir = QueryIR {
941 cube: "TokenHolders".into(), schema: "dws".into(),
942 table: "sol_token_holders".into(),
943 selects: vec![
944 SelectExpr::Column { column: "token".into(), alias: None },
945 SelectExpr::Column { column: "holder".into(), alias: None },
946 SelectExpr::Column { column: "argMaxMerge(latest_balance)".into(), alias: None },
947 SelectExpr::Column { column: "argMaxMerge(latest_balance_usd)".into(), alias: None },
948 SelectExpr::Column { column: "minMerge(first_seen)".into(), alias: None },
949 SelectExpr::Column { column: "maxMerge(last_seen)".into(), alias: None },
950 ],
951 filters: FilterNode::Empty, having: FilterNode::Empty,
952 group_by: vec![], order_by: vec![
953 OrderExpr { column: "argMaxMerge(latest_balance_usd)".into(), descending: true },
954 ],
955 limit: 100, offset: 0,
956 limit_by: None, use_final: false,
957 joins: vec![JoinExpr {
958 schema: "dim".into(), table: "sol_tokens".into(),
959 alias: "_j0".into(),
960 conditions: vec![("token".into(), "token_address".into())],
961 selects: vec![
962 SelectExpr::Column { column: "name".into(), alias: None },
963 SelectExpr::Column { column: "symbol".into(), alias: None },
964 ],
965 group_by: vec![], use_final: true, is_aggregate: false,
966 target_cube: "TokenSearch".into(), join_field: "joinToken".into(),
967 join_type: JoinType::Left,
968 }],
969 custom_query_builder: None,
970 from_subquery: None,
971 };
972 let r = ch().compile(&ir);
973 let sql = &r.sql;
974
975 assert!(sql.contains("_main.`__mc_0` AS `__mc_0`"),
976 "func expr should use alias __mc_0 in outer SELECT, got: {sql}");
977 assert!(sql.contains("_main.`__mc_1` AS `__mc_1`"),
978 "func expr should use alias __mc_1, got: {sql}");
979 assert!(sql.contains("_main.`token` AS `token`"),
980 "simple col should be backtick-quoted, got: {sql}");
981
982 assert!(!sql.contains("_main.argMaxMerge("),
983 "outer SELECT must NOT have bare _main.argMaxMerge(...), got: {sql}");
984
985 assert!(sql.contains("argMaxMerge(latest_balance) AS `__mc_0`"),
986 "inner query should alias func expr, got: {sql}");
987
988 assert!(r.alias_remap.iter().any(|(a, o)| a == "__mc_0" && o == "argMaxMerge(latest_balance)"),
989 "alias_remap should map __mc_0 → original, got: {:?}", r.alias_remap);
990 assert!(r.alias_remap.iter().any(|(a, o)| a == "__mc_1" && o == "argMaxMerge(latest_balance_usd)"),
991 "alias_remap should map __mc_1, got: {:?}", r.alias_remap);
992 }
993
994 #[test]
995 fn test_join_inner_type() {
996 let ir = QueryIR {
997 cube: "DEXTrades".into(), schema: "dexes_dwd".into(),
998 table: "sol_dex_trades".into(),
999 selects: vec![
1000 SelectExpr::Column { column: "tx_hash".into(), alias: None },
1001 ],
1002 filters: FilterNode::Empty, having: FilterNode::Empty,
1003 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1004 limit_by: None, use_final: false,
1005 joins: vec![JoinExpr {
1006 schema: "dexes_dim".into(), table: "sol_tokens".into(),
1007 alias: "_j0".into(),
1008 conditions: vec![("buy_token_address".into(), "token_address".into())],
1009 selects: vec![
1010 SelectExpr::Column { column: "name".into(), alias: None },
1011 ],
1012 group_by: vec![], use_final: false, is_aggregate: false,
1013 target_cube: "TokenSearch".into(), join_field: "joinBuyToken".into(),
1014 join_type: JoinType::Inner,
1015 }],
1016 custom_query_builder: None,
1017 from_subquery: None,
1018 };
1019 let r = ch().compile(&ir);
1020 assert!(r.sql.contains("INNER JOIN `dexes_dim`.`sol_tokens` AS _j0"),
1021 "should use INNER JOIN, got: {}", r.sql);
1022 }
1023
1024 #[test]
1025 fn test_join_full_outer_type() {
1026 let ir = QueryIR {
1027 cube: "T".into(), schema: "db".into(), table: "t".into(),
1028 selects: vec![
1029 SelectExpr::Column { column: "id".into(), alias: None },
1030 ],
1031 filters: FilterNode::Empty, having: FilterNode::Empty,
1032 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1033 limit_by: None, use_final: false,
1034 joins: vec![JoinExpr {
1035 schema: "db2".into(), table: "t2".into(),
1036 alias: "_j0".into(),
1037 conditions: vec![("id".into(), "ref_id".into())],
1038 selects: vec![
1039 SelectExpr::Column { column: "val".into(), alias: None },
1040 ],
1041 group_by: vec![], use_final: false, is_aggregate: false,
1042 target_cube: "Other".into(), join_field: "joinOther".into(),
1043 join_type: JoinType::Full,
1044 }],
1045 custom_query_builder: None,
1046 from_subquery: None,
1047 };
1048 let r = ch().compile(&ir);
1049 assert!(r.sql.contains("FULL OUTER JOIN `db2`.`t2` AS _j0"),
1050 "should use FULL OUTER JOIN, got: {}", r.sql);
1051 }
1052
1053 #[test]
1054 fn test_custom_query_builder() {
1055 let ir = QueryIR {
1056 cube: "Custom".into(), schema: "db".into(), table: "t".into(),
1057 selects: vec![
1058 SelectExpr::Column { column: "id".into(), alias: None },
1059 ],
1060 filters: FilterNode::Empty, having: FilterNode::Empty,
1061 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1062 limit_by: None, use_final: false, joins: vec![],
1063 custom_query_builder: Some(QueryBuilderFn(std::sync::Arc::new(|_ir| {
1064 CompileResult {
1065 sql: "SELECT 1 FROM custom_view".into(),
1066 bindings: vec![],
1067 alias_remap: vec![],
1068 }
1069 }))),
1070 from_subquery: None,
1071 };
1072 let r = ch().compile(&ir);
1073 assert_eq!(r.sql, "SELECT 1 FROM custom_view",
1074 "custom builder should bypass standard compilation, got: {}", r.sql);
1075 }
1076
1077 #[test]
1078 fn test_from_subquery() {
1079 let ir = QueryIR {
1080 cube: "DEXTradeByTokens".into(), schema: "dwd".into(),
1081 table: "sol_trades".into(),
1082 selects: vec![
1083 SelectExpr::Column { column: "amount".into(), alias: None },
1084 SelectExpr::Column { column: "side_type".into(), alias: None },
1085 ],
1086 filters: FilterNode::Condition {
1087 column: "token".into(), op: CompareOp::Eq,
1088 value: SqlValue::String("SOL".into()),
1089 },
1090 having: FilterNode::Empty,
1091 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1092 limit_by: None, use_final: false, joins: vec![],
1093 custom_query_builder: None,
1094 from_subquery: Some(
1095 "SELECT amount, 'buy' AS side_type, token FROM dwd.sol_a UNION ALL SELECT amount, 'sell' AS side_type, token FROM dwd.sol_b".into()
1096 ),
1097 };
1098 let r = ch().compile(&ir);
1099 assert!(r.sql.starts_with("SELECT `amount`, `side_type` FROM (SELECT"),
1100 "should use subquery in FROM, got: {}", r.sql);
1101 assert!(r.sql.contains("UNION ALL"),
1102 "subquery should contain UNION ALL, got: {}", r.sql);
1103 assert!(r.sql.contains(") AS _t"),
1104 "subquery should be aliased as _t, got: {}", r.sql);
1105 assert!(r.sql.contains("WHERE `token` = ?"),
1106 "WHERE clause should be applied to subquery result, got: {}", r.sql);
1107 assert!(!r.sql.contains("FROM `dwd`.`sol_trades`"),
1108 "should NOT use schema.table when from_subquery is set, got: {}", r.sql);
1109 }
1110
1111 #[test]
1112 fn test_array_includes_single_condition() {
1113 let ir = QueryIR {
1114 cube: "Instructions".into(), schema: "dexes_dwd2".into(),
1115 table: "sol_instructions".into(),
1116 selects: vec![SelectExpr::Column { column: "tx_hash".into(), alias: None }],
1117 filters: FilterNode::ArrayIncludes {
1118 array_columns: vec![
1119 "instruction_arg_names".into(),
1120 "instruction_arg_types".into(),
1121 "instruction_arg_values".into(),
1122 ],
1123 element_conditions: vec![vec![
1124 FilterNode::Condition {
1125 column: "instruction_arg_names".into(),
1126 op: CompareOp::Eq,
1127 value: SqlValue::String("amount_in".into()),
1128 },
1129 ]],
1130 },
1131 having: FilterNode::Empty,
1132 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1133 limit_by: None, use_final: false, joins: vec![],
1134 custom_query_builder: None, from_subquery: None,
1135 };
1136 let r = ch().compile(&ir);
1137 assert!(r.sql.contains("arrayExists((_p0, _p1, _p2) -> _p0 = ?"),
1138 "should generate arrayExists with lambda params, got: {}", r.sql);
1139 assert!(r.sql.contains("`instruction_arg_names`, `instruction_arg_types`, `instruction_arg_values`"),
1140 "should reference all parallel array columns, got: {}", r.sql);
1141 assert_eq!(r.bindings.len(), 1);
1142 }
1143
1144 #[test]
1145 fn test_array_includes_multiple_conditions() {
1146 let ir = QueryIR {
1147 cube: "Instructions".into(), schema: "dexes_dwd2".into(),
1148 table: "sol_instructions".into(),
1149 selects: vec![SelectExpr::Column { column: "tx_hash".into(), alias: None }],
1150 filters: FilterNode::ArrayIncludes {
1151 array_columns: vec![
1152 "instruction_arg_names".into(),
1153 "instruction_arg_values".into(),
1154 ],
1155 element_conditions: vec![
1156 vec![
1157 FilterNode::Condition {
1158 column: "instruction_arg_names".into(),
1159 op: CompareOp::Eq,
1160 value: SqlValue::String("amount_in".into()),
1161 },
1162 FilterNode::Condition {
1163 column: "instruction_arg_values".into(),
1164 op: CompareOp::Gt,
1165 value: SqlValue::String("10000".into()),
1166 },
1167 ],
1168 vec![
1169 FilterNode::Condition {
1170 column: "instruction_arg_names".into(),
1171 op: CompareOp::Eq,
1172 value: SqlValue::String("owner".into()),
1173 },
1174 ],
1175 ],
1176 },
1177 having: FilterNode::Empty,
1178 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1179 limit_by: None, use_final: false, joins: vec![],
1180 custom_query_builder: None, from_subquery: None,
1181 };
1182 let r = ch().compile(&ir);
1183 let sql = &r.sql;
1184 let count = sql.matches("arrayExists").count();
1185 assert_eq!(count, 2, "should have two arrayExists calls (AND-ed), got: {sql}");
1186 assert!(sql.contains(" AND arrayExists("),
1187 "two arrayExists should be AND-ed, got: {sql}");
1188 assert_eq!(r.bindings.len(), 3);
1189 }
1190
1191 #[test]
1192 fn test_array_includes_with_in_operator() {
1193 let ir = QueryIR {
1194 cube: "Instructions".into(), schema: "dexes_dwd2".into(),
1195 table: "sol_instructions".into(),
1196 selects: vec![SelectExpr::Column { column: "tx_hash".into(), alias: None }],
1197 filters: FilterNode::ArrayIncludes {
1198 array_columns: vec![
1199 "instruction_arg_names".into(),
1200 "instruction_arg_values".into(),
1201 ],
1202 element_conditions: vec![vec![
1203 FilterNode::Condition {
1204 column: "instruction_arg_names".into(),
1205 op: CompareOp::Eq,
1206 value: SqlValue::String("authorityType".into()),
1207 },
1208 FilterNode::Condition {
1209 column: "instruction_arg_values".into(),
1210 op: CompareOp::In,
1211 value: SqlValue::String("0,1".into()),
1212 },
1213 ]],
1214 },
1215 having: FilterNode::Empty,
1216 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1217 limit_by: None, use_final: false, joins: vec![],
1218 custom_query_builder: None, from_subquery: None,
1219 };
1220 let r = ch().compile(&ir);
1221 assert!(r.sql.contains("arrayExists((_p0, _p1) -> (_p0 = ? AND _p1 IN (?, ?))"),
1222 "should generate arrayExists with AND-ed conditions, got: {}", r.sql);
1223 assert_eq!(r.bindings.len(), 3);
1224 }
1225
1226 #[test]
1227 fn test_array_includes_combined_with_regular_filter() {
1228 let ir = QueryIR {
1229 cube: "Instructions".into(), schema: "dexes_dwd2".into(),
1230 table: "sol_instructions".into(),
1231 selects: vec![SelectExpr::Column { column: "tx_hash".into(), alias: None }],
1232 filters: FilterNode::And(vec![
1233 FilterNode::Condition {
1234 column: "instruction_program_address".into(),
1235 op: CompareOp::Eq,
1236 value: SqlValue::String("pAMMBay6oceH9fJKBRHGP5D4bD4sWpmSwMn52FMfXEA".into()),
1237 },
1238 FilterNode::ArrayIncludes {
1239 array_columns: vec!["instruction_arg_names".into(), "instruction_arg_values".into()],
1240 element_conditions: vec![vec![
1241 FilterNode::Condition {
1242 column: "instruction_arg_names".into(),
1243 op: CompareOp::Eq,
1244 value: SqlValue::String("amount".into()),
1245 },
1246 ]],
1247 },
1248 ]),
1249 having: FilterNode::Empty,
1250 group_by: vec![], order_by: vec![], limit: 10, offset: 0,
1251 limit_by: None, use_final: false, joins: vec![],
1252 custom_query_builder: None, from_subquery: None,
1253 };
1254 let r = ch().compile(&ir);
1255 let sql = &r.sql;
1256 assert!(sql.contains("`instruction_program_address` = ?"),
1257 "should have regular condition, got: {sql}");
1258 assert!(sql.contains("arrayExists("),
1259 "should have arrayExists, got: {sql}");
1260 assert!(sql.contains(" AND "),
1261 "regular + array conditions should be AND-ed, got: {sql}");
1262 }
1263}