1use alloc::format;
19use alloc::string::{String, ToString};
20use alloc::vec::Vec;
21
22use spg_sql::ast::{BinOp, CastTarget, ColumnName, Expr, Literal, UnOp};
23use spg_storage::{ColumnSchema, DataType, Row, Value};
24
25#[derive(Debug, Clone)]
29pub struct EvalContext<'a> {
30 pub columns: &'a [ColumnSchema],
31 pub table_alias: Option<&'a str>,
32 pub params: &'a [Value],
37}
38
39impl<'a> EvalContext<'a> {
40 pub const fn new(columns: &'a [ColumnSchema], table_alias: Option<&'a str>) -> Self {
41 Self {
42 columns,
43 table_alias,
44 params: &[],
45 }
46 }
47
48 #[must_use]
52 pub const fn with_params(mut self, params: &'a [Value]) -> Self {
53 self.params = params;
54 self
55 }
56}
57
58#[derive(Debug, Clone, PartialEq)]
59pub enum EvalError {
60 ColumnNotFound { name: String },
61 UnknownQualifier { qualifier: String },
62 DivisionByZero,
63 TypeMismatch { detail: String },
64 PlaceholderOutOfRange { n: u16, bound: u16 },
68}
69
70impl core::fmt::Display for EvalError {
71 fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
72 match self {
73 Self::ColumnNotFound { name } => write!(f, "column not found: {name}"),
74 Self::UnknownQualifier { qualifier } => {
75 write!(f, "unknown table qualifier: {qualifier}")
76 }
77 Self::DivisionByZero => f.write_str("division by zero"),
78 Self::TypeMismatch { detail } => write!(f, "type mismatch: {detail}"),
79 Self::PlaceholderOutOfRange { n, bound } => write!(
80 f,
81 "parameter ${n} referenced but only {bound} bound by client"
82 ),
83 }
84 }
85}
86
87pub fn eval_expr(expr: &Expr, row: &Row, ctx: &EvalContext<'_>) -> Result<Value, EvalError> {
88 match expr {
89 Expr::Literal(l) => Ok(literal_to_value(l)),
90 Expr::Column(c) => resolve_column(c, row, ctx),
91 Expr::Placeholder(n) => {
92 let idx = usize::from(*n).saturating_sub(1);
93 ctx.params
94 .get(idx)
95 .cloned()
96 .ok_or_else(|| EvalError::PlaceholderOutOfRange {
97 n: *n,
98 bound: u16::try_from(ctx.params.len()).unwrap_or(u16::MAX),
99 })
100 }
101 Expr::Unary { op, expr } => {
102 let v = eval_expr(expr, row, ctx)?;
103 apply_unary(*op, v)
104 }
105 Expr::Binary { lhs, op, rhs } => {
106 let l = eval_expr(lhs, row, ctx)?;
107 let r = eval_expr(rhs, row, ctx)?;
108 apply_binary(*op, l, r)
109 }
110 Expr::Cast { expr, target } => {
111 let v = eval_expr(expr, row, ctx)?;
112 cast_value(v, *target)
113 }
114 Expr::IsNull { expr, negated } => {
115 let v = eval_expr(expr, row, ctx)?;
116 let is_null = matches!(v, Value::Null);
117 Ok(Value::Bool(if *negated { !is_null } else { is_null }))
118 }
119 Expr::FunctionCall { name, args } => {
120 let evaluated: Result<Vec<Value>, _> =
121 args.iter().map(|a| eval_expr(a, row, ctx)).collect();
122 apply_function(name, &evaluated?)
123 }
124 Expr::Like {
125 expr,
126 pattern,
127 negated,
128 } => {
129 let v = eval_expr(expr, row, ctx)?;
130 let p = eval_expr(pattern, row, ctx)?;
131 let (text, pat) = match (v, p) {
133 (Value::Null, _) | (_, Value::Null) => return Ok(Value::Null),
134 (Value::Text(a), Value::Text(b)) => (a, b),
135 (Value::Text(_), other) | (other, _) => {
136 return Err(EvalError::TypeMismatch {
137 detail: format!("LIKE requires text operands, got {:?}", other.data_type()),
138 });
139 }
140 };
141 let m = like_match(&text, &pat);
142 Ok(Value::Bool(if *negated { !m } else { m }))
143 }
144 Expr::Extract { field, source } => {
145 let v = eval_expr(source, row, ctx)?;
146 extract_field(*field, &v)
147 }
148 Expr::ScalarSubquery(_) | Expr::Exists { .. } | Expr::InSubquery { .. } => {
152 Err(EvalError::TypeMismatch {
153 detail: "subquery reached row eval — engine resolver bug".into(),
154 })
155 }
156 Expr::WindowFunction { .. } => Err(EvalError::TypeMismatch {
161 detail: "window function reached row eval — engine rewrite bug".into(),
162 }),
163 }
164}
165
166fn extract_field(field: spg_sql::ast::ExtractField, v: &Value) -> Result<Value, EvalError> {
170 use spg_sql::ast::ExtractField as F;
171 if matches!(v, Value::Null) {
172 return Ok(Value::Null);
173 }
174 if let Value::Interval { months, micros } = *v {
178 let years = months / 12;
179 let mons = months % 12;
180 let secs_total = micros / 1_000_000;
181 let frac = micros % 1_000_000;
182 let result = match field {
183 F::Year => i64::from(years),
184 F::Month => i64::from(mons),
185 F::Day => micros / 86_400_000_000,
186 F::Hour => (secs_total / 3600) % 24,
187 F::Minute => (secs_total / 60) % 60,
188 F::Second => secs_total % 60,
189 F::Microsecond => (secs_total % 60) * 1_000_000 + frac,
190 };
191 return Ok(Value::BigInt(result));
192 }
193 let (days, day_micros) = match *v {
194 Value::Date(d) => (d, 0_i64),
195 Value::Timestamp(t) => {
196 let days = t.div_euclid(86_400_000_000);
197 let day_micros = t.rem_euclid(86_400_000_000);
198 (i32::try_from(days).unwrap_or(i32::MAX), day_micros)
199 }
200 _ => {
201 return Err(EvalError::TypeMismatch {
202 detail: format!(
203 "EXTRACT requires DATE / TIMESTAMP / INTERVAL, got {:?}",
204 v.data_type()
205 ),
206 });
207 }
208 };
209 let (y, m, d) = civil_components(days);
210 let secs = day_micros / 1_000_000;
211 let hh = secs / 3600;
212 let mm = (secs / 60) % 60;
213 let ss = secs % 60;
214 let frac = day_micros % 1_000_000;
215 let result = match field {
216 F::Year => i64::from(y),
217 F::Month => i64::from(m),
218 F::Day => i64::from(d),
219 F::Hour => hh,
220 F::Minute => mm,
221 F::Second => ss,
222 F::Microsecond => ss * 1_000_000 + frac,
223 };
224 Ok(Value::BigInt(result))
225}
226
227fn civil_components(days: i32) -> (i32, u32, u32) {
230 civil_from_days(days)
231}
232
233fn like_match(text: &str, pattern: &str) -> bool {
238 let text: Vec<char> = text.chars().collect();
239 let pat: Vec<char> = pattern.chars().collect();
240 like_match_inner(&text, 0, &pat, 0)
241}
242
243fn like_match_inner(text: &[char], mut ti: usize, pat: &[char], mut pi: usize) -> bool {
244 while pi < pat.len() {
245 match pat[pi] {
246 '%' => {
247 while pi < pat.len() && pat[pi] == '%' {
249 pi += 1;
250 }
251 if pi == pat.len() {
252 return true;
253 }
254 for k in ti..=text.len() {
255 if like_match_inner(text, k, pat, pi) {
256 return true;
257 }
258 }
259 return false;
260 }
261 '_' => {
262 if ti >= text.len() {
263 return false;
264 }
265 ti += 1;
266 pi += 1;
267 }
268 '\\' if pi + 1 < pat.len() => {
269 let want = pat[pi + 1];
270 if ti >= text.len() || text[ti] != want {
271 return false;
272 }
273 ti += 1;
274 pi += 2;
275 }
276 c => {
277 if ti >= text.len() || text[ti] != c {
278 return false;
279 }
280 ti += 1;
281 pi += 1;
282 }
283 }
284 }
285 ti == text.len()
286}
287
288fn apply_function(name: &str, args: &[Value]) -> Result<Value, EvalError> {
291 match name.to_ascii_lowercase().as_str() {
292 "length" => {
293 if args.len() != 1 {
294 return Err(EvalError::TypeMismatch {
295 detail: format!("length() takes 1 arg, got {}", args.len()),
296 });
297 }
298 match &args[0] {
299 Value::Null => Ok(Value::Null),
300 Value::Text(s) => {
301 let n = i32::try_from(s.chars().count()).unwrap_or(i32::MAX);
302 Ok(Value::Int(n))
303 }
304 other => Err(EvalError::TypeMismatch {
305 detail: format!("length() needs text, got {:?}", other.data_type()),
306 }),
307 }
308 }
309 "upper" => {
310 if args.len() != 1 {
311 return Err(EvalError::TypeMismatch {
312 detail: format!("upper() takes 1 arg, got {}", args.len()),
313 });
314 }
315 match &args[0] {
316 Value::Null => Ok(Value::Null),
317 Value::Text(s) => Ok(Value::Text(s.to_uppercase())),
318 other => Err(EvalError::TypeMismatch {
319 detail: format!("upper() needs text, got {:?}", other.data_type()),
320 }),
321 }
322 }
323 "lower" => {
324 if args.len() != 1 {
325 return Err(EvalError::TypeMismatch {
326 detail: format!("lower() takes 1 arg, got {}", args.len()),
327 });
328 }
329 match &args[0] {
330 Value::Null => Ok(Value::Null),
331 Value::Text(s) => Ok(Value::Text(s.to_lowercase())),
332 other => Err(EvalError::TypeMismatch {
333 detail: format!("lower() needs text, got {:?}", other.data_type()),
334 }),
335 }
336 }
337 "abs" => {
338 if args.len() != 1 {
339 return Err(EvalError::TypeMismatch {
340 detail: format!("abs() takes 1 arg, got {}", args.len()),
341 });
342 }
343 match &args[0] {
344 Value::Null => Ok(Value::Null),
345 Value::Int(n) => Ok(Value::Int(n.wrapping_abs())),
346 Value::BigInt(n) => Ok(Value::BigInt(n.wrapping_abs())),
347 Value::Float(x) => Ok(Value::Float(x.abs())),
348 other => Err(EvalError::TypeMismatch {
349 detail: format!("abs() needs numeric, got {:?}", other.data_type()),
350 }),
351 }
352 }
353 "coalesce" => {
354 for a in args {
355 if !matches!(a, Value::Null) {
356 return Ok(a.clone());
357 }
358 }
359 Ok(Value::Null)
360 }
361 "date_trunc" => date_trunc(args),
362 "date_part" => date_part(args),
363 "age" => age(args),
364 "to_char" => to_char(args),
365 "encode" => encode_text(args),
367 "decode" => decode_text(args),
368 "error_on_null" => error_on_null(args),
369 other => Err(EvalError::TypeMismatch {
370 detail: format!("unknown function `{other}`"),
371 }),
372 }
373}
374
375fn encode_text(args: &[Value]) -> Result<Value, EvalError> {
381 if args.len() != 2 {
382 return Err(EvalError::TypeMismatch {
383 detail: format!("encode() takes 2 args, got {}", args.len()),
384 });
385 }
386 if matches!(args[0], Value::Null) || matches!(args[1], Value::Null) {
387 return Ok(Value::Null);
388 }
389 let bytes: &[u8] = match &args[0] {
390 Value::Text(s) => s.as_bytes(),
391 other => {
392 return Err(EvalError::TypeMismatch {
393 detail: format!(
394 "encode() expects text bytes, got {:?}",
395 other.data_type()
396 ),
397 });
398 }
399 };
400 let fmt = match &args[1] {
401 Value::Text(s) => s.to_ascii_lowercase(),
402 other => {
403 return Err(EvalError::TypeMismatch {
404 detail: format!(
405 "encode() format must be text, got {:?}",
406 other.data_type()
407 ),
408 });
409 }
410 };
411 let out = match fmt.as_str() {
412 "base64" => b64_encode(bytes, B64_STD),
413 "base64url" => b64_encode(bytes, B64_URL),
414 "base32hex" => b32hex_encode(bytes),
415 "hex" => hex_encode(bytes),
416 other => {
417 return Err(EvalError::TypeMismatch {
418 detail: format!("encode(): unknown format `{other}`"),
419 });
420 }
421 };
422 Ok(Value::Text(out))
423}
424
425fn decode_text(args: &[Value]) -> Result<Value, EvalError> {
429 if args.len() != 2 {
430 return Err(EvalError::TypeMismatch {
431 detail: format!("decode() takes 2 args, got {}", args.len()),
432 });
433 }
434 if matches!(args[0], Value::Null) || matches!(args[1], Value::Null) {
435 return Ok(Value::Null);
436 }
437 let text = match &args[0] {
438 Value::Text(s) => s.as_str(),
439 other => {
440 return Err(EvalError::TypeMismatch {
441 detail: format!("decode() expects text, got {:?}", other.data_type()),
442 });
443 }
444 };
445 let fmt = match &args[1] {
446 Value::Text(s) => s.to_ascii_lowercase(),
447 other => {
448 return Err(EvalError::TypeMismatch {
449 detail: format!(
450 "decode() format must be text, got {:?}",
451 other.data_type()
452 ),
453 });
454 }
455 };
456 let bytes = match fmt.as_str() {
457 "base64" => b64_decode(text, B64_STD)?,
458 "base64url" => b64_decode(text, B64_URL)?,
459 "base32hex" => b32hex_decode(text)?,
460 "hex" => hex_decode(text)?,
461 other => {
462 return Err(EvalError::TypeMismatch {
463 detail: format!("decode(): unknown format `{other}`"),
464 });
465 }
466 };
467 let s = String::from_utf8(bytes).map_err(|_| EvalError::TypeMismatch {
468 detail: "decode(): result bytes are not valid UTF-8 (SPG stores raw bytes as Text)".into(),
469 })?;
470 Ok(Value::Text(s))
471}
472
473fn error_on_null(args: &[Value]) -> Result<Value, EvalError> {
477 if args.len() != 1 {
478 return Err(EvalError::TypeMismatch {
479 detail: format!("error_on_null() takes 1 arg, got {}", args.len()),
480 });
481 }
482 if matches!(args[0], Value::Null) {
483 return Err(EvalError::TypeMismatch {
484 detail: "error_on_null(): argument is NULL".into(),
485 });
486 }
487 Ok(args[0].clone())
488}
489
490const B64_STD: &[u8; 64] =
493 b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
494const B64_URL: &[u8; 64] =
495 b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_";
496const B32HEX_ALPHABET: &[u8; 32] = b"0123456789ABCDEFGHIJKLMNOPQRSTUV";
497
498fn b64_encode(bytes: &[u8], alpha: &[u8; 64]) -> String {
499 let mut out = String::with_capacity((bytes.len() + 2) / 3 * 4);
500 let mut i = 0;
501 while i + 3 <= bytes.len() {
502 let n = ((bytes[i] as u32) << 16) | ((bytes[i + 1] as u32) << 8) | (bytes[i + 2] as u32);
503 out.push(alpha[((n >> 18) & 0x3f) as usize] as char);
504 out.push(alpha[((n >> 12) & 0x3f) as usize] as char);
505 out.push(alpha[((n >> 6) & 0x3f) as usize] as char);
506 out.push(alpha[(n & 0x3f) as usize] as char);
507 i += 3;
508 }
509 let rem = bytes.len() - i;
510 if rem == 1 {
511 let n = (bytes[i] as u32) << 16;
512 out.push(alpha[((n >> 18) & 0x3f) as usize] as char);
513 out.push(alpha[((n >> 12) & 0x3f) as usize] as char);
514 out.push('=');
515 out.push('=');
516 } else if rem == 2 {
517 let n = ((bytes[i] as u32) << 16) | ((bytes[i + 1] as u32) << 8);
518 out.push(alpha[((n >> 18) & 0x3f) as usize] as char);
519 out.push(alpha[((n >> 12) & 0x3f) as usize] as char);
520 out.push(alpha[((n >> 6) & 0x3f) as usize] as char);
521 out.push('=');
522 }
523 out
524}
525
526fn b64_decode(text: &str, alpha: &[u8; 64]) -> Result<Vec<u8>, EvalError> {
527 let mut lookup = [255u8; 256];
528 for (i, &c) in alpha.iter().enumerate() {
529 lookup[c as usize] = i as u8;
530 }
531 let mut out = Vec::with_capacity(text.len() * 3 / 4);
532 let mut buf: u32 = 0;
533 let mut bits: u32 = 0;
534 for c in text.bytes() {
535 if c == b'=' {
536 break;
537 }
538 if c == b'\n' || c == b'\r' || c == b' ' {
539 continue;
540 }
541 let v = lookup[c as usize];
542 if v == 255 {
543 return Err(EvalError::TypeMismatch {
544 detail: format!("decode(base64): invalid char {:?}", c as char),
545 });
546 }
547 buf = (buf << 6) | v as u32;
548 bits += 6;
549 if bits >= 8 {
550 bits -= 8;
551 out.push(((buf >> bits) & 0xff) as u8);
552 }
553 }
554 Ok(out)
555}
556
557fn b32hex_encode(bytes: &[u8]) -> String {
558 let mut out = String::with_capacity((bytes.len() * 8 + 4) / 5);
559 let mut buf: u64 = 0;
560 let mut bits: u32 = 0;
561 for &b in bytes {
562 buf = (buf << 8) | b as u64;
563 bits += 8;
564 while bits >= 5 {
565 bits -= 5;
566 out.push(B32HEX_ALPHABET[((buf >> bits) & 0x1f) as usize] as char);
567 }
568 }
569 if bits > 0 {
570 out.push(B32HEX_ALPHABET[((buf << (5 - bits)) & 0x1f) as usize] as char);
571 }
572 while out.len() % 8 != 0 {
574 out.push('=');
575 }
576 out
577}
578
579fn b32hex_decode(text: &str) -> Result<Vec<u8>, EvalError> {
580 let mut lookup = [255u8; 256];
581 for (i, &c) in B32HEX_ALPHABET.iter().enumerate() {
582 lookup[c as usize] = i as u8;
583 let lower = (c as char).to_ascii_lowercase() as u8;
585 lookup[lower as usize] = i as u8;
586 }
587 let mut out = Vec::with_capacity(text.len() * 5 / 8);
588 let mut buf: u64 = 0;
589 let mut bits: u32 = 0;
590 for c in text.bytes() {
591 if c == b'=' {
592 break;
593 }
594 if c == b'\n' || c == b'\r' || c == b' ' {
595 continue;
596 }
597 let v = lookup[c as usize];
598 if v == 255 {
599 return Err(EvalError::TypeMismatch {
600 detail: format!("decode(base32hex): invalid char {:?}", c as char),
601 });
602 }
603 buf = (buf << 5) | v as u64;
604 bits += 5;
605 if bits >= 8 {
606 bits -= 8;
607 out.push(((buf >> bits) & 0xff) as u8);
608 }
609 }
610 Ok(out)
611}
612
613fn hex_encode(bytes: &[u8]) -> String {
614 const HEX: &[u8; 16] = b"0123456789abcdef";
615 let mut out = String::with_capacity(bytes.len() * 2);
616 for &b in bytes {
617 out.push(HEX[(b >> 4) as usize] as char);
618 out.push(HEX[(b & 0xf) as usize] as char);
619 }
620 out
621}
622
623fn hex_decode(text: &str) -> Result<Vec<u8>, EvalError> {
624 let trimmed = text.trim();
625 if trimmed.len() % 2 != 0 {
626 return Err(EvalError::TypeMismatch {
627 detail: "decode(hex): input length must be even".into(),
628 });
629 }
630 let mut out = Vec::with_capacity(trimmed.len() / 2);
631 let mut hi: u8 = 0;
632 for (i, c) in trimmed.bytes().enumerate() {
633 let v = match c {
634 b'0'..=b'9' => c - b'0',
635 b'a'..=b'f' => c - b'a' + 10,
636 b'A'..=b'F' => c - b'A' + 10,
637 _ => {
638 return Err(EvalError::TypeMismatch {
639 detail: format!("decode(hex): invalid char {:?}", c as char),
640 });
641 }
642 };
643 if i % 2 == 0 {
644 hi = v;
645 } else {
646 out.push((hi << 4) | v);
647 }
648 }
649 Ok(out)
650}
651
652fn date_part(args: &[Value]) -> Result<Value, EvalError> {
657 use spg_sql::ast::ExtractField as F;
658 if args.len() != 2 {
659 return Err(EvalError::TypeMismatch {
660 detail: format!("date_part() takes 2 args, got {}", args.len()),
661 });
662 }
663 if matches!(&args[0], Value::Null) || matches!(&args[1], Value::Null) {
664 return Ok(Value::Null);
665 }
666 let Value::Text(field_name) = &args[0] else {
667 return Err(EvalError::TypeMismatch {
668 detail: format!(
669 "date_part() needs a text field, got {:?}",
670 args[0].data_type()
671 ),
672 });
673 };
674 let field = match field_name.to_ascii_lowercase().as_str() {
675 "year" => F::Year,
676 "month" => F::Month,
677 "day" => F::Day,
678 "hour" => F::Hour,
679 "minute" => F::Minute,
680 "second" => F::Second,
681 "microsecond" | "microseconds" => F::Microsecond,
682 other => {
683 return Err(EvalError::TypeMismatch {
684 detail: format!(
685 "unknown date_part field {other:?}; \
686 supported: year, month, day, hour, minute, second, microsecond"
687 ),
688 });
689 }
690 };
691 extract_field(field, &args[1])
692}
693
694fn age(args: &[Value]) -> Result<Value, EvalError> {
704 if args.is_empty() || args.len() > 2 {
705 return Err(EvalError::TypeMismatch {
706 detail: format!("age() takes 1 or 2 args, got {}", args.len()),
707 });
708 }
709 if args.iter().any(|v| matches!(v, Value::Null)) {
710 return Ok(Value::Null);
711 }
712 let to_micros = |v: &Value| -> Result<i64, EvalError> {
715 match v {
716 Value::Timestamp(t) => Ok(*t),
717 Value::Date(d) => Ok(i64::from(*d) * 86_400_000_000),
718 other => Err(EvalError::TypeMismatch {
719 detail: format!("age() needs DATE or TIMESTAMP, got {:?}", other.data_type()),
720 }),
721 }
722 };
723 if args.len() == 1 {
724 return Err(EvalError::TypeMismatch {
725 detail: "single-arg age() is unsupported in v2.12 \
726 (use age(CURRENT_DATE, t) explicitly)"
727 .into(),
728 });
729 }
730 let a = to_micros(&args[0])?;
731 let b = to_micros(&args[1])?;
732 let delta = a.checked_sub(b).ok_or(EvalError::TypeMismatch {
733 detail: "age() subtraction overflows i64 microseconds".into(),
734 })?;
735 Ok(Value::Interval {
736 months: 0,
737 micros: delta,
738 })
739}
740
741fn to_char(args: &[Value]) -> Result<Value, EvalError> {
747 use core::fmt::Write as _;
748 if args.len() != 2 {
749 return Err(EvalError::TypeMismatch {
750 detail: format!("to_char() takes 2 args, got {}", args.len()),
751 });
752 }
753 if matches!(&args[0], Value::Null) || matches!(&args[1], Value::Null) {
754 return Ok(Value::Null);
755 }
756 let Value::Text(fmt) = &args[1] else {
757 return Err(EvalError::TypeMismatch {
758 detail: format!(
759 "to_char() needs a text format, got {:?}",
760 args[1].data_type()
761 ),
762 });
763 };
764 let (days, day_micros) = match &args[0] {
765 Value::Date(d) => (*d, 0_i64),
766 Value::Timestamp(t) => {
767 let days = t.div_euclid(86_400_000_000);
768 (
769 i32::try_from(days).unwrap_or(i32::MAX),
770 t.rem_euclid(86_400_000_000),
771 )
772 }
773 other => {
774 return Err(EvalError::TypeMismatch {
775 detail: format!(
776 "to_char() needs DATE or TIMESTAMP, got {:?}",
777 other.data_type()
778 ),
779 });
780 }
781 };
782 let (y, mo, d) = civil_from_days(days);
783 let secs = day_micros / 1_000_000;
784 let frac = day_micros % 1_000_000;
785 let hh24 = u32::try_from(secs / 3600).unwrap_or(0);
789 let mi = u32::try_from((secs / 60) % 60).unwrap_or(0);
790 let ss = u32::try_from(secs % 60).unwrap_or(0);
791 let hh12 = match hh24 % 12 {
792 0 => 12,
793 x => x,
794 };
795 let ampm = if hh24 < 12 { "AM" } else { "PM" };
796 let ms = u32::try_from(frac / 1_000).unwrap_or(0); let us = u32::try_from(frac).unwrap_or(0); let mut out = String::with_capacity(fmt.len() + 8);
800 let bytes = fmt.as_bytes();
801 let mut i = 0;
802 while i < bytes.len() {
804 let rest = &bytes[i..];
806 if rest.starts_with(b"YYYY") {
807 let _ = write!(out, "{y:04}");
808 i += 4;
809 } else if rest.starts_with(b"YY") {
810 #[allow(clippy::cast_sign_loss, clippy::cast_possible_truncation)]
811 let yy = (y.rem_euclid(100)) as u32;
812 let _ = write!(out, "{yy:02}");
813 i += 2;
814 } else if rest.starts_with(b"Month") {
815 out.push_str(MONTH_FULL[(mo - 1) as usize]);
816 i += 5;
817 } else if rest.starts_with(b"Mon") {
818 out.push_str(MONTH_ABBR[(mo - 1) as usize]);
819 i += 3;
820 } else if rest.starts_with(b"MM") {
821 let _ = write!(out, "{mo:02}");
822 i += 2;
823 } else if rest.starts_with(b"DD") {
824 let _ = write!(out, "{d:02}");
825 i += 2;
826 } else if rest.starts_with(b"HH24") {
827 let _ = write!(out, "{hh24:02}");
828 i += 4;
829 } else if rest.starts_with(b"HH12") {
830 let _ = write!(out, "{hh12:02}");
831 i += 4;
832 } else if rest.starts_with(b"MI") {
833 let _ = write!(out, "{mi:02}");
834 i += 2;
835 } else if rest.starts_with(b"SS") {
836 let _ = write!(out, "{ss:02}");
837 i += 2;
838 } else if rest.starts_with(b"MS") {
839 let _ = write!(out, "{ms:03}");
840 i += 2;
841 } else if rest.starts_with(b"US") {
842 let _ = write!(out, "{us:06}");
843 i += 2;
844 } else if rest.starts_with(b"AM") || rest.starts_with(b"PM") {
845 out.push_str(ampm);
846 i += 2;
847 } else {
848 out.push(bytes[i] as char);
850 i += 1;
851 }
852 }
853 Ok(Value::Text(out))
854}
855
856const MONTH_FULL: [&str; 12] = [
857 "January",
858 "February",
859 "March",
860 "April",
861 "May",
862 "June",
863 "July",
864 "August",
865 "September",
866 "October",
867 "November",
868 "December",
869];
870const MONTH_ABBR: [&str; 12] = [
871 "Jan", "Feb", "Mar", "Apr", "May", "Jun", "Jul", "Aug", "Sep", "Oct", "Nov", "Dec",
872];
873
874fn date_trunc(args: &[Value]) -> Result<Value, EvalError> {
879 if args.len() != 2 {
880 return Err(EvalError::TypeMismatch {
881 detail: format!("date_trunc() takes 2 args, got {}", args.len()),
882 });
883 }
884 if matches!(&args[0], Value::Null) || matches!(&args[1], Value::Null) {
885 return Ok(Value::Null);
886 }
887 let Value::Text(unit) = &args[0] else {
888 return Err(EvalError::TypeMismatch {
889 detail: format!(
890 "date_trunc() needs a text unit, got {:?}",
891 args[0].data_type()
892 ),
893 });
894 };
895 let micros = match &args[1] {
898 Value::Timestamp(t) => *t,
899 Value::Date(d) => i64::from(*d) * 86_400_000_000,
900 other => {
901 return Err(EvalError::TypeMismatch {
902 detail: format!(
903 "date_trunc() needs DATE or TIMESTAMP, got {:?}",
904 other.data_type()
905 ),
906 });
907 }
908 };
909 let unit_lc = unit.to_ascii_lowercase();
910 let days = micros.div_euclid(86_400_000_000);
911 let day_micros = micros.rem_euclid(86_400_000_000);
912 let day_i32 = i32::try_from(days).unwrap_or(i32::MAX);
913 let (y, m, _) = civil_from_days(day_i32);
914 let truncated = match unit_lc.as_str() {
915 "year" => i64::from(days_from_civil(y, 1, 1)) * 86_400_000_000,
916 "month" => i64::from(days_from_civil(y, m, 1)) * 86_400_000_000,
917 "day" => days * 86_400_000_000,
918 "hour" => days * 86_400_000_000 + (day_micros / 3_600_000_000) * 3_600_000_000,
919 "minute" => days * 86_400_000_000 + (day_micros / 60_000_000) * 60_000_000,
920 "second" => days * 86_400_000_000 + (day_micros / 1_000_000) * 1_000_000,
921 other => {
922 return Err(EvalError::TypeMismatch {
923 detail: format!(
924 "unknown date_trunc unit {other:?}; \
925 supported: year, month, day, hour, minute, second"
926 ),
927 });
928 }
929 };
930 Ok(Value::Timestamp(truncated))
931}
932
933pub fn cast_value(v: Value, target: CastTarget) -> Result<Value, EvalError> {
935 if matches!(v, Value::Null) {
936 return Ok(Value::Null);
937 }
938 match target {
939 CastTarget::Vector => cast_to_vector(v),
940 CastTarget::Text => Ok(Value::Text(value_to_text(&v))),
941 CastTarget::Int => cast_numeric_to_int(v),
942 CastTarget::BigInt => cast_numeric_to_bigint(v),
943 CastTarget::Float => cast_numeric_to_float(v),
944 CastTarget::Bool => cast_to_bool(v),
945 CastTarget::Date => cast_to_date(v),
946 CastTarget::Timestamp => cast_to_timestamp(v),
947 }
948}
949
950fn cast_to_date(v: Value) -> Result<Value, EvalError> {
951 match v {
952 Value::Date(d) => Ok(Value::Date(d)),
953 Value::Int(n) => Ok(Value::Date(n)),
956 Value::BigInt(n) => {
957 i32::try_from(n)
958 .map(Value::Date)
959 .map_err(|_| EvalError::TypeMismatch {
960 detail: "bigint days-since-epoch out of DATE range".into(),
961 })
962 }
963 Value::Timestamp(t) => {
965 let days = t.div_euclid(86_400_000_000);
966 i32::try_from(days)
967 .map(Value::Date)
968 .map_err(|_| EvalError::TypeMismatch {
969 detail: "timestamp out of DATE range".into(),
970 })
971 }
972 Value::Text(s) => parse_date_literal(&s)
973 .map(Value::Date)
974 .ok_or(EvalError::TypeMismatch {
975 detail: format!("cannot parse {s:?} as DATE (expected YYYY-MM-DD)"),
976 }),
977 other => Err(EvalError::TypeMismatch {
978 detail: format!("cannot cast {:?} to DATE", other.data_type()),
979 }),
980 }
981}
982
983fn cast_to_timestamp(v: Value) -> Result<Value, EvalError> {
984 match v {
985 Value::Timestamp(t) => Ok(Value::Timestamp(t)),
986 Value::Int(n) => Ok(Value::Timestamp(i64::from(n))),
990 Value::BigInt(n) => Ok(Value::Timestamp(n)),
991 Value::Date(d) => Ok(Value::Timestamp(i64::from(d) * 86_400_000_000)),
993 Value::Text(s) => {
994 parse_timestamp_literal(&s)
995 .map(Value::Timestamp)
996 .ok_or(EvalError::TypeMismatch {
997 detail: format!(
998 "cannot parse {s:?} as TIMESTAMP \
999 (expected YYYY-MM-DD[ HH:MM:SS[.ffffff]])"
1000 ),
1001 })
1002 }
1003 other => Err(EvalError::TypeMismatch {
1004 detail: format!("cannot cast {:?} to TIMESTAMP", other.data_type()),
1005 }),
1006 }
1007}
1008
1009fn value_to_text(v: &Value) -> String {
1010 match v {
1011 Value::SmallInt(n) => format!("{n}"),
1015 Value::Int(n) => format!("{n}"),
1016 Value::BigInt(n) => format!("{n}"),
1017 Value::Float(x) => format!("{x}"),
1018 Value::Text(s) | Value::Json(s) => s.clone(),
1020 Value::Bool(b) => (if *b { "true" } else { "false" }).into(),
1021 Value::Vector(v) => {
1022 let cells: Vec<String> = v.iter().map(|x| format!("{x}")).collect();
1023 format!("[{}]", cells.join(", "))
1024 }
1025 Value::Sq8Vector(q) => {
1030 let cells: Vec<String> = spg_storage::quantize::dequantize(q)
1031 .iter()
1032 .map(|x| format!("{x}"))
1033 .collect();
1034 format!("[{}]", cells.join(", "))
1035 }
1036 Value::HalfVector(h) => {
1039 let cells: Vec<String> = h.to_f32_vec().iter().map(|x| format!("{x}")).collect();
1040 format!("[{}]", cells.join(", "))
1041 }
1042 Value::Numeric { scaled, scale } => format_numeric(*scaled, *scale),
1043 Value::Date(d) => format_date(*d),
1044 Value::Timestamp(t) => format_timestamp(*t),
1045 Value::Interval { months, micros } => format_interval(*months, *micros),
1046 Value::Null => "NULL".into(),
1047 _ => format!("{v:?}"),
1049 }
1050}
1051
1052pub fn format_date(days: i32) -> String {
1055 let (y, m, d) = civil_from_days(days);
1056 format!("{y:04}-{m:02}-{d:02}")
1057}
1058
1059pub fn format_timestamp(micros: i64) -> String {
1063 const MICROS_PER_DAY: i64 = 86_400_000_000;
1064 let days = micros.div_euclid(MICROS_PER_DAY);
1067 let day_micros = micros.rem_euclid(MICROS_PER_DAY);
1068 let day_i32 = i32::try_from(days).unwrap_or(i32::MAX);
1069 let (y, m, d) = civil_from_days(day_i32);
1070 let secs = day_micros / 1_000_000;
1071 let frac = day_micros % 1_000_000;
1072 let hh = secs / 3600;
1073 let mm = (secs / 60) % 60;
1074 let ss = secs % 60;
1075 if frac == 0 {
1076 format!("{y:04}-{m:02}-{d:02} {hh:02}:{mm:02}:{ss:02}")
1077 } else {
1078 let raw = format!("{frac:06}");
1080 let trimmed = raw.trim_end_matches('0');
1081 format!("{y:04}-{m:02}-{d:02} {hh:02}:{mm:02}:{ss:02}.{trimmed}")
1082 }
1083}
1084
1085#[allow(clippy::cast_possible_truncation, clippy::cast_sign_loss)]
1090fn civil_from_days(days: i32) -> (i32, u32, u32) {
1091 let z = i64::from(days) + 719_468;
1092 let era = z.div_euclid(146_097);
1093 let doe = (z - era * 146_097) as u32;
1097 let yoe = (doe.saturating_sub(doe / 1460) + doe / 36524 - doe / 146_096) / 365;
1098 let y_base = i64::from(yoe) + era * 400;
1099 let doy = doe.saturating_sub(365 * yoe + yoe / 4 - yoe / 100);
1100 let mp = (5 * doy + 2) / 153;
1101 let d = doy.saturating_sub((153 * mp + 2) / 5) + 1;
1102 let m = if mp < 10 { mp + 3 } else { mp - 9 };
1103 let y = if m <= 2 { y_base + 1 } else { y_base };
1104 (y as i32, m, d)
1105}
1106
1107#[allow(clippy::cast_possible_truncation, clippy::cast_sign_loss)]
1110pub fn days_from_civil(y: i32, m: u32, d: u32) -> i32 {
1111 let y_adj = if m <= 2 {
1112 i64::from(y) - 1
1113 } else {
1114 i64::from(y)
1115 };
1116 let era = y_adj.div_euclid(400);
1117 let yoe = (y_adj - era * 400) as u32;
1118 let doy = (153 * (if m > 2 { m - 3 } else { m + 9 }) + 2) / 5 + d.saturating_sub(1);
1119 let doe = yoe * 365 + yoe / 4 - yoe / 100 + doy;
1120 let total = era * 146_097 + i64::from(doe) - 719_468;
1121 i32::try_from(total).unwrap_or(i32::MAX)
1122}
1123
1124pub fn parse_date_literal(s: &str) -> Option<i32> {
1128 let bytes = s.as_bytes();
1129 if bytes.len() != 10 || bytes[4] != b'-' || bytes[7] != b'-' {
1130 return None;
1131 }
1132 let y: i32 = s[0..4].parse().ok()?;
1133 let m: u32 = s[5..7].parse().ok()?;
1134 let d: u32 = s[8..10].parse().ok()?;
1135 if !(1..=12).contains(&m) || !(1..=31).contains(&d) {
1136 return None;
1137 }
1138 Some(days_from_civil(y, m, d))
1139}
1140
1141pub fn parse_timestamp_literal(s: &str) -> Option<i64> {
1146 let trimmed = s.trim();
1147 let (date_part, time_part) = match trimmed.find([' ', 'T']) {
1148 Some(i) => (&trimmed[..i], Some(&trimmed[i + 1..])),
1149 None => (trimmed, None),
1150 };
1151 let days = parse_date_literal(date_part)?;
1152 let day_micros = match time_part {
1153 None => 0,
1154 Some(t) => parse_time_of_day_micros(t)?,
1155 };
1156 Some(i64::from(days) * 86_400_000_000 + day_micros)
1157}
1158
1159fn parse_time_of_day_micros(t: &str) -> Option<i64> {
1160 let (time, frac_str) = match t.split_once('.') {
1161 Some((a, b)) => (a, Some(b)),
1162 None => (t, None),
1163 };
1164 let bytes = time.as_bytes();
1165 if bytes.len() != 8 || bytes[2] != b':' || bytes[5] != b':' {
1166 return None;
1167 }
1168 let hh: i64 = time[0..2].parse().ok()?;
1169 let mm: i64 = time[3..5].parse().ok()?;
1170 let ss: i64 = time[6..8].parse().ok()?;
1171 if !(0..24).contains(&hh) || !(0..60).contains(&mm) || !(0..60).contains(&ss) {
1172 return None;
1173 }
1174 let frac_micros: i64 = match frac_str {
1175 None => 0,
1176 Some(f) => {
1177 if f.is_empty() || f.len() > 9 {
1179 return None;
1180 }
1181 let mut padded = String::with_capacity(6);
1182 padded.push_str(&f[..f.len().min(6)]);
1183 while padded.len() < 6 {
1184 padded.push('0');
1185 }
1186 padded.parse().ok()?
1187 }
1188 };
1189 Some(((hh * 3600 + mm * 60 + ss) * 1_000_000) + frac_micros)
1190}
1191
1192pub fn format_interval(months: i32, micros: i64) -> String {
1197 const MICROS_PER_DAY: i64 = 86_400_000_000;
1198 let mut parts: Vec<String> = Vec::new();
1199 let years = months / 12;
1200 let mons = months % 12;
1201 let unit = |n: i64, singular: &'static str, plural: &'static str| -> &'static str {
1204 if n == 1 { singular } else { plural }
1205 };
1206 if years != 0 {
1207 parts.push(format!(
1208 "{years} {}",
1209 unit(i64::from(years), "year", "years")
1210 ));
1211 }
1212 if mons != 0 {
1213 parts.push(format!("{mons} {}", unit(i64::from(mons), "mon", "mons")));
1214 }
1215 let days = micros / MICROS_PER_DAY;
1216 let mut rem = micros % MICROS_PER_DAY;
1217 if days != 0 {
1218 parts.push(format!("{days} {}", unit(days, "day", "days")));
1219 }
1220 if rem != 0 {
1221 let neg = rem < 0;
1222 if neg {
1223 rem = -rem;
1224 }
1225 let secs = rem / 1_000_000;
1226 let frac = rem % 1_000_000;
1227 let hh = secs / 3600;
1228 let mm = (secs / 60) % 60;
1229 let ss = secs % 60;
1230 let sign = if neg { "-" } else { "" };
1231 if frac == 0 {
1232 parts.push(format!("{sign}{hh:02}:{mm:02}:{ss:02}"));
1233 } else {
1234 let raw = format!("{frac:06}");
1235 let trimmed = raw.trim_end_matches('0');
1236 parts.push(format!("{sign}{hh:02}:{mm:02}:{ss:02}.{trimmed}"));
1237 }
1238 }
1239 if parts.is_empty() {
1240 "0".into()
1241 } else {
1242 parts.join(" ")
1243 }
1244}
1245
1246fn add_months_to_civil(y: i32, m: u32, d: u32, months: i32) -> (i32, u32, u32) {
1249 let total_months = i64::from(y) * 12 + i64::from(m) - 1 + i64::from(months);
1250 let new_year = i32::try_from(total_months.div_euclid(12)).unwrap_or(i32::MAX);
1251 let new_month_zero = total_months.rem_euclid(12);
1252 #[allow(clippy::cast_possible_truncation, clippy::cast_sign_loss)]
1253 let new_month = (new_month_zero as u32) + 1;
1254 let max_day = days_in_month(new_year, new_month);
1255 (new_year, new_month, d.min(max_day))
1256}
1257
1258const fn days_in_month(y: i32, m: u32) -> u32 {
1259 match m {
1260 1 | 3 | 5 | 7 | 8 | 10 | 12 => 31,
1261 2 => {
1262 if y.rem_euclid(4) == 0 && (y.rem_euclid(100) != 0 || y.rem_euclid(400) == 0) {
1264 29
1265 } else {
1266 28
1267 }
1268 }
1269 _ => 30,
1272 }
1273}
1274
1275pub fn format_numeric(scaled: i128, scale: u8) -> String {
1280 if scale == 0 {
1281 return format!("{scaled}");
1282 }
1283 let negative = scaled < 0;
1284 let mag_str = scaled.unsigned_abs().to_string();
1285 let mag_bytes = mag_str.as_bytes();
1286 let scale_u = scale as usize;
1287 let mut out = String::with_capacity(mag_str.len() + 3);
1288 if negative {
1289 out.push('-');
1290 }
1291 if mag_bytes.len() <= scale_u {
1292 out.push('0');
1293 out.push('.');
1294 for _ in mag_bytes.len()..scale_u {
1295 out.push('0');
1296 }
1297 out.push_str(&mag_str);
1298 } else {
1299 let split = mag_bytes.len() - scale_u;
1300 out.push_str(&mag_str[..split]);
1301 out.push('.');
1302 out.push_str(&mag_str[split..]);
1303 }
1304 out
1305}
1306
1307fn cast_numeric_to_int(v: Value) -> Result<Value, EvalError> {
1308 match v {
1309 Value::Int(n) => Ok(Value::Int(n)),
1310 Value::BigInt(n) => i32::try_from(n)
1311 .map(Value::Int)
1312 .map_err(|_| EvalError::TypeMismatch {
1313 detail: format!("bigint {n} does not fit in int"),
1314 }),
1315 #[allow(clippy::cast_possible_truncation)]
1316 Value::Float(x) => Ok(Value::Int(x as i32)),
1317 Value::Text(s) => {
1318 s.trim()
1319 .parse::<i32>()
1320 .map(Value::Int)
1321 .map_err(|_| EvalError::TypeMismatch {
1322 detail: format!("cannot parse {s:?} as int"),
1323 })
1324 }
1325 Value::Bool(b) => Ok(Value::Int(i32::from(b))),
1326 other => Err(EvalError::TypeMismatch {
1327 detail: format!("cannot cast {:?} to int", other.data_type()),
1328 }),
1329 }
1330}
1331
1332fn cast_numeric_to_bigint(v: Value) -> Result<Value, EvalError> {
1333 match v {
1334 Value::Int(n) => Ok(Value::BigInt(i64::from(n))),
1335 Value::BigInt(n) => Ok(Value::BigInt(n)),
1336 #[allow(clippy::cast_possible_truncation)]
1337 Value::Float(x) => Ok(Value::BigInt(x as i64)),
1338 Value::Text(s) => {
1339 s.trim()
1340 .parse::<i64>()
1341 .map(Value::BigInt)
1342 .map_err(|_| EvalError::TypeMismatch {
1343 detail: format!("cannot parse {s:?} as bigint"),
1344 })
1345 }
1346 Value::Bool(b) => Ok(Value::BigInt(i64::from(b))),
1347 other => Err(EvalError::TypeMismatch {
1348 detail: format!("cannot cast {:?} to bigint", other.data_type()),
1349 }),
1350 }
1351}
1352
1353fn cast_numeric_to_float(v: Value) -> Result<Value, EvalError> {
1354 match v {
1355 Value::Int(n) => Ok(Value::Float(f64::from(n))),
1356 #[allow(clippy::cast_precision_loss)]
1357 Value::BigInt(n) => Ok(Value::Float(n as f64)),
1358 Value::Float(x) => Ok(Value::Float(x)),
1359 Value::Text(s) => {
1360 s.trim()
1361 .parse::<f64>()
1362 .map(Value::Float)
1363 .map_err(|_| EvalError::TypeMismatch {
1364 detail: format!("cannot parse {s:?} as float"),
1365 })
1366 }
1367 other => Err(EvalError::TypeMismatch {
1368 detail: format!("cannot cast {:?} to float", other.data_type()),
1369 }),
1370 }
1371}
1372
1373fn cast_to_bool(v: Value) -> Result<Value, EvalError> {
1374 match v {
1375 Value::Bool(b) => Ok(Value::Bool(b)),
1376 Value::Int(n) => Ok(Value::Bool(n != 0)),
1377 Value::BigInt(n) => Ok(Value::Bool(n != 0)),
1378 Value::Text(s) => {
1379 let lo = s.trim().to_ascii_lowercase();
1380 match lo.as_str() {
1381 "true" | "t" | "yes" | "y" | "1" | "on" => Ok(Value::Bool(true)),
1382 "false" | "f" | "no" | "n" | "0" | "off" => Ok(Value::Bool(false)),
1383 _ => Err(EvalError::TypeMismatch {
1384 detail: format!("cannot parse {s:?} as bool"),
1385 }),
1386 }
1387 }
1388 other => Err(EvalError::TypeMismatch {
1389 detail: format!("cannot cast {:?} to bool", other.data_type()),
1390 }),
1391 }
1392}
1393
1394pub fn cast_to_vector(v: Value) -> Result<Value, EvalError> {
1397 match v {
1398 Value::Null => Ok(Value::Null),
1399 Value::Vector(v) => Ok(Value::Vector(v)),
1400 Value::Text(s) => parse_vector_text(&s)
1401 .map(Value::Vector)
1402 .ok_or(EvalError::TypeMismatch {
1403 detail: format!("cannot parse {s:?} as a vector literal"),
1404 }),
1405 other => Err(EvalError::TypeMismatch {
1406 detail: format!("::vector requires text input, got {:?}", other.data_type()),
1407 }),
1408 }
1409}
1410
1411fn parse_vector_text(s: &str) -> Option<Vec<f32>> {
1413 let trimmed = s.trim();
1414 let inner = trimmed.strip_prefix('[')?.strip_suffix(']')?;
1415 let trimmed_inner = inner.trim();
1416 if trimmed_inner.is_empty() {
1417 return Some(Vec::new());
1418 }
1419 let mut out = Vec::new();
1420 for part in trimmed_inner.split(',') {
1421 let f: f32 = part.trim().parse().ok()?;
1422 out.push(f);
1423 }
1424 Some(out)
1425}
1426
1427fn literal_to_value(l: &Literal) -> Value {
1428 match l {
1429 Literal::Integer(n) => {
1430 if let Ok(small) = i32::try_from(*n) {
1431 Value::Int(small)
1432 } else {
1433 Value::BigInt(*n)
1434 }
1435 }
1436 Literal::Float(x) => Value::Float(*x),
1437 Literal::String(s) => Value::Text(s.clone()),
1438 Literal::Vector(v) => Value::Vector(v.clone()),
1439 Literal::Bool(b) => Value::Bool(*b),
1440 Literal::Null => Value::Null,
1441 Literal::Interval { months, micros, .. } => Value::Interval {
1442 months: *months,
1443 micros: *micros,
1444 },
1445 }
1446}
1447
1448fn resolve_column(c: &ColumnName, row: &Row, ctx: &EvalContext<'_>) -> Result<Value, EvalError> {
1449 if let Some(q) = &c.qualifier {
1450 let composite = alloc::format!("{q}.{name}", name = c.name);
1455 if let Some(pos) = ctx.columns.iter().position(|s| s.name == composite) {
1456 return Ok(row.values[pos].clone());
1457 }
1458 let expected = ctx.table_alias.ok_or_else(|| EvalError::UnknownQualifier {
1459 qualifier: q.clone(),
1460 })?;
1461 if q != expected {
1462 return Err(EvalError::UnknownQualifier {
1463 qualifier: q.clone(),
1464 });
1465 }
1466 }
1467 if let Some(pos) = ctx.columns.iter().position(|s| s.name == c.name) {
1468 return Ok(row.values[pos].clone());
1469 }
1470 let suffix = alloc::format!(".{name}", name = c.name);
1473 let mut matches = ctx
1474 .columns
1475 .iter()
1476 .enumerate()
1477 .filter(|(_, s)| s.name.ends_with(&suffix));
1478 let first = matches.next();
1479 let extra = matches.next();
1480 match (first, extra) {
1481 (Some((pos, _)), None) => Ok(row.values[pos].clone()),
1482 (Some(_), Some(_)) => Err(EvalError::TypeMismatch {
1483 detail: alloc::format!("ambiguous column reference: {}", c.name),
1484 }),
1485 _ => Err(EvalError::ColumnNotFound {
1486 name: c.name.clone(),
1487 }),
1488 }
1489}
1490
1491fn apply_unary(op: UnOp, v: Value) -> Result<Value, EvalError> {
1492 match (op, v) {
1493 (_, Value::Null) => Ok(Value::Null),
1494 (UnOp::Neg, Value::Int(n)) => {
1495 n.checked_neg()
1496 .map(Value::Int)
1497 .ok_or(EvalError::TypeMismatch {
1498 detail: "integer overflow on unary -".into(),
1499 })
1500 }
1501 (UnOp::Neg, Value::BigInt(n)) => {
1502 n.checked_neg()
1503 .map(Value::BigInt)
1504 .ok_or(EvalError::TypeMismatch {
1505 detail: "bigint overflow on unary -".into(),
1506 })
1507 }
1508 (UnOp::Neg, Value::Float(x)) => Ok(Value::Float(-x)),
1509 (UnOp::Neg, other) => Err(EvalError::TypeMismatch {
1510 detail: format!("unary - applied to {:?}", other.data_type()),
1511 }),
1512 (UnOp::Not, Value::Bool(b)) => Ok(Value::Bool(!b)),
1513 (UnOp::Not, other) => Err(EvalError::TypeMismatch {
1514 detail: format!("NOT applied to {:?}", other.data_type()),
1515 }),
1516 }
1517}
1518
1519fn apply_binary(op: BinOp, l: Value, r: Value) -> Result<Value, EvalError> {
1520 if let BinOp::And = op {
1523 return and_3vl(l, r);
1524 }
1525 if let BinOp::Or = op {
1526 return or_3vl(l, r);
1527 }
1528 if l.is_null() || r.is_null() {
1530 return Ok(Value::Null);
1531 }
1532 if matches!(l, Value::Numeric { .. }) || matches!(r, Value::Numeric { .. }) {
1535 return apply_binary_numeric(op, l, r);
1536 }
1537 if let Some(result) = apply_binary_calendar(op, &l, &r)? {
1545 return Ok(result);
1546 }
1547 match op {
1548 BinOp::Add => arith(l, r, i64::checked_add, |a, b| a + b, "+"),
1549 BinOp::Sub => arith(l, r, i64::checked_sub, |a, b| a - b, "-"),
1550 BinOp::Mul => arith(l, r, i64::checked_mul, |a, b| a * b, "*"),
1551 BinOp::Div => div_op(l, r),
1552 BinOp::L2Distance => l2_distance(l, r),
1553 BinOp::InnerProduct => inner_product(l, r),
1554 BinOp::CosineDistance => cosine_distance(l, r),
1555 BinOp::Concat => Ok(text_concat(&l, &r)),
1556 BinOp::JsonGet => crate::json::path_get(&l, &r, false),
1557 BinOp::JsonGetText => crate::json::path_get(&l, &r, true),
1558 BinOp::JsonGetPath => crate::json::path_walk(&l, &r, false),
1559 BinOp::JsonGetPathText => crate::json::path_walk(&l, &r, true),
1560 BinOp::JsonContains => crate::json::contains(&l, &r),
1561 BinOp::Eq | BinOp::NotEq | BinOp::Lt | BinOp::LtEq | BinOp::Gt | BinOp::GtEq => {
1562 compare(op, &l, &r)
1563 }
1564 BinOp::And | BinOp::Or => unreachable!("handled above"),
1565 }
1566}
1567
1568fn apply_binary_calendar(op: BinOp, l: &Value, r: &Value) -> Result<Option<Value>, EvalError> {
1572 let int_value = |v: &Value| -> Option<i64> {
1573 match v {
1574 Value::SmallInt(n) => Some(i64::from(*n)),
1575 Value::Int(n) => Some(i64::from(*n)),
1576 Value::BigInt(n) => Some(*n),
1577 _ => None,
1578 }
1579 };
1580 match (l, r) {
1584 (Value::Date(a), Value::Date(b)) if op == BinOp::Sub => {
1585 return Ok(Some(Value::BigInt(i64::from(*a) - i64::from(*b))));
1586 }
1587 (Value::Timestamp(a), Value::Timestamp(b)) if op == BinOp::Sub => {
1588 let delta = a.checked_sub(*b).ok_or(EvalError::TypeMismatch {
1589 detail: "TIMESTAMP - TIMESTAMP overflows i64 microseconds".into(),
1590 })?;
1591 return Ok(Some(Value::BigInt(delta)));
1592 }
1593 _ => {}
1594 }
1595 if let Some(out) = apply_binary_interval(op, l, r)? {
1599 return Ok(Some(out));
1600 }
1601 match (l, r) {
1602 (Value::Date(d), other) if op == BinOp::Add => {
1603 if let Some(n) = int_value(other) {
1604 let days = i64::from(*d).saturating_add(n);
1605 let days32 = i32::try_from(days).map_err(|_| EvalError::TypeMismatch {
1606 detail: "DATE + integer overflows DATE range".into(),
1607 })?;
1608 return Ok(Some(Value::Date(days32)));
1609 }
1610 }
1611 (other, Value::Date(d)) if op == BinOp::Add => {
1612 if let Some(n) = int_value(other) {
1613 let days = i64::from(*d).saturating_add(n);
1614 let days32 = i32::try_from(days).map_err(|_| EvalError::TypeMismatch {
1615 detail: "integer + DATE overflows DATE range".into(),
1616 })?;
1617 return Ok(Some(Value::Date(days32)));
1618 }
1619 }
1620 (Value::Date(d), other) if op == BinOp::Sub => {
1621 if let Some(n) = int_value(other) {
1622 let days = i64::from(*d).saturating_sub(n);
1623 let days32 = i32::try_from(days).map_err(|_| EvalError::TypeMismatch {
1624 detail: "DATE - integer overflows DATE range".into(),
1625 })?;
1626 return Ok(Some(Value::Date(days32)));
1627 }
1628 }
1629 _ => {}
1630 }
1631 Ok(None)
1632}
1633
1634fn apply_binary_interval(op: BinOp, l: &Value, r: &Value) -> Result<Option<Value>, EvalError> {
1642 let (lhs, rhs, sign): (&Value, &Value, i64) = match (l, r, op) {
1645 (Value::Interval { .. }, _, BinOp::Add) => (r, l, 1),
1646 (_, Value::Interval { .. }, BinOp::Add) => (l, r, 1),
1647 (_, Value::Interval { .. }, BinOp::Sub) => (l, r, -1),
1648 _ => return Ok(None),
1649 };
1650 let Value::Interval {
1651 months: rhs_months,
1652 micros: rhs_us,
1653 } = rhs
1654 else {
1655 unreachable!("rhs guaranteed to be Interval by the match above");
1656 };
1657 let signed_months = i64::from(*rhs_months) * sign;
1658 let signed_micros = rhs_us.checked_mul(sign).ok_or(EvalError::TypeMismatch {
1659 detail: "INTERVAL micros overflows on negation".into(),
1660 })?;
1661 match lhs {
1662 Value::Timestamp(t) => Ok(Some(Value::Timestamp(add_interval_to_micros(
1663 *t,
1664 signed_months,
1665 signed_micros,
1666 )?))),
1667 Value::Date(d) => {
1668 let day_aligned = signed_micros.rem_euclid(86_400_000_000) == 0;
1672 if day_aligned {
1673 let micros_per_day = 86_400_000_000_i64;
1674 let days_delta = signed_micros / micros_per_day;
1675 let shifted = shift_date_by_months(*d, signed_months)?;
1676 let new_days =
1677 i64::from(shifted)
1678 .checked_add(days_delta)
1679 .ok_or(EvalError::TypeMismatch {
1680 detail: "DATE ± INTERVAL overflows DATE range".into(),
1681 })?;
1682 let days32 = i32::try_from(new_days).map_err(|_| EvalError::TypeMismatch {
1683 detail: "DATE ± INTERVAL overflows DATE range".into(),
1684 })?;
1685 Ok(Some(Value::Date(days32)))
1686 } else {
1687 let base =
1688 i64::from(*d)
1689 .checked_mul(86_400_000_000)
1690 .ok_or(EvalError::TypeMismatch {
1691 detail: "DATE → TIMESTAMP lift overflows for INTERVAL math".into(),
1692 })?;
1693 Ok(Some(Value::Timestamp(add_interval_to_micros(
1694 base,
1695 signed_months,
1696 signed_micros,
1697 )?)))
1698 }
1699 }
1700 Value::Interval {
1701 months: lhs_months,
1702 micros: lhs_us,
1703 } => {
1704 let new_months = i64::from(*lhs_months)
1705 .checked_add(signed_months)
1706 .and_then(|n| i32::try_from(n).ok())
1707 .ok_or(EvalError::TypeMismatch {
1708 detail: "INTERVAL ± INTERVAL months overflows i32".into(),
1709 })?;
1710 let new_micros = lhs_us
1711 .checked_add(signed_micros)
1712 .ok_or(EvalError::TypeMismatch {
1713 detail: "INTERVAL ± INTERVAL micros overflows i64".into(),
1714 })?;
1715 Ok(Some(Value::Interval {
1716 months: new_months,
1717 micros: new_micros,
1718 }))
1719 }
1720 _ => Err(EvalError::TypeMismatch {
1721 detail: format!(
1722 "operator {op:?} not defined for {:?} and INTERVAL",
1723 lhs.data_type()
1724 ),
1725 }),
1726 }
1727}
1728
1729fn shift_date_by_months(d: i32, months: i64) -> Result<i32, EvalError> {
1731 let (y, m, day) = civil_from_days(d);
1732 let months_i32 = i32::try_from(months).map_err(|_| EvalError::TypeMismatch {
1733 detail: "INTERVAL months delta out of i32 range".into(),
1734 })?;
1735 let (ny, nm, nd) = add_months_to_civil(y, m, day, months_i32);
1736 Ok(days_from_civil(ny, nm, nd))
1737}
1738
1739fn add_interval_to_micros(t: i64, months: i64, micros: i64) -> Result<i64, EvalError> {
1743 let mut out = t;
1744 if months != 0 {
1745 const MICROS_PER_DAY: i64 = 86_400_000_000;
1746 let days = out.div_euclid(MICROS_PER_DAY);
1747 let day_micros = out.rem_euclid(MICROS_PER_DAY);
1748 let day_i32 = i32::try_from(days).map_err(|_| EvalError::TypeMismatch {
1749 detail: "TIMESTAMP day component out of i32 range for INTERVAL months math".into(),
1750 })?;
1751 let shifted_days = shift_date_by_months(day_i32, months)?;
1752 out = i64::from(shifted_days)
1753 .checked_mul(MICROS_PER_DAY)
1754 .and_then(|n| n.checked_add(day_micros))
1755 .ok_or(EvalError::TypeMismatch {
1756 detail: "TIMESTAMP ± INTERVAL months overflows i64 microseconds".into(),
1757 })?;
1758 }
1759 out.checked_add(micros).ok_or(EvalError::TypeMismatch {
1760 detail: "TIMESTAMP ± INTERVAL micros overflows i64".into(),
1761 })
1762}
1763
1764#[allow(clippy::needless_pass_by_value)] fn apply_binary_numeric(op: BinOp, l: Value, r: Value) -> Result<Value, EvalError> {
1769 let float_path = matches!(l, Value::Float(_)) || matches!(r, Value::Float(_));
1773 if float_path {
1774 let af = as_f64(&l)?;
1775 let bf = as_f64(&r)?;
1776 return match op {
1777 BinOp::Add => Ok(Value::Float(af + bf)),
1778 BinOp::Sub => Ok(Value::Float(af - bf)),
1779 BinOp::Mul => Ok(Value::Float(af * bf)),
1780 BinOp::Div => {
1781 if bf == 0.0 {
1782 Err(EvalError::DivisionByZero)
1783 } else {
1784 Ok(Value::Float(af / bf))
1785 }
1786 }
1787 BinOp::Eq | BinOp::NotEq | BinOp::Lt | BinOp::LtEq | BinOp::Gt | BinOp::GtEq => {
1788 let ord = af.partial_cmp(&bf).ok_or(EvalError::TypeMismatch {
1789 detail: "NaN in NUMERIC/Float comparison".into(),
1790 })?;
1791 Ok(Value::Bool(cmp_to_bool(op, ord)))
1792 }
1793 BinOp::Concat => Ok(text_concat(&l, &r)),
1794 other => Err(EvalError::TypeMismatch {
1795 detail: format!("operator {other:?} not defined for NUMERIC and Float"),
1796 }),
1797 };
1798 }
1799 let (a, sa) = numeric_or_widen(&l).ok_or_else(|| EvalError::TypeMismatch {
1801 detail: format!("NUMERIC op against non-numeric {:?}", l.data_type()),
1802 })?;
1803 let (b, sb) = numeric_or_widen(&r).ok_or_else(|| EvalError::TypeMismatch {
1804 detail: format!("NUMERIC op against non-numeric {:?}", r.data_type()),
1805 })?;
1806 match op {
1807 BinOp::Add | BinOp::Sub => {
1808 let target_scale = sa.max(sb);
1809 let lhs = rescale(a, sa, target_scale).ok_or(EvalError::TypeMismatch {
1810 detail: "NUMERIC overflow on rescale".into(),
1811 })?;
1812 let rhs = rescale(b, sb, target_scale).ok_or(EvalError::TypeMismatch {
1813 detail: "NUMERIC overflow on rescale".into(),
1814 })?;
1815 let r = match op {
1816 BinOp::Add => lhs.checked_add(rhs),
1817 BinOp::Sub => lhs.checked_sub(rhs),
1818 _ => unreachable!(),
1819 }
1820 .ok_or(EvalError::TypeMismatch {
1821 detail: "NUMERIC overflow on +/-".into(),
1822 })?;
1823 Ok(Value::Numeric {
1824 scaled: r,
1825 scale: target_scale,
1826 })
1827 }
1828 BinOp::Mul => {
1829 let scaled = a.checked_mul(b).ok_or(EvalError::TypeMismatch {
1830 detail: "NUMERIC overflow on *".into(),
1831 })?;
1832 Ok(Value::Numeric {
1833 scaled,
1834 scale: sa.saturating_add(sb),
1835 })
1836 }
1837 BinOp::Div => {
1838 if b == 0 {
1839 return Err(EvalError::DivisionByZero);
1840 }
1841 let target_scale = sa.max(sb);
1845 let bump = pow10_i128(target_scale.saturating_add(sb).saturating_sub(sa));
1849 let num = a.checked_mul(bump).ok_or(EvalError::TypeMismatch {
1850 detail: "NUMERIC overflow on / scaling".into(),
1851 })?;
1852 let half = if b >= 0 { b / 2 } else { -(b / 2) };
1853 let adj = if (num >= 0) == (b >= 0) {
1854 num + half
1855 } else {
1856 num - half
1857 };
1858 Ok(Value::Numeric {
1859 scaled: adj / b,
1860 scale: target_scale,
1861 })
1862 }
1863 BinOp::Eq | BinOp::NotEq | BinOp::Lt | BinOp::LtEq | BinOp::Gt | BinOp::GtEq => {
1864 let target_scale = sa.max(sb);
1865 let lhs = rescale(a, sa, target_scale).ok_or(EvalError::TypeMismatch {
1866 detail: "NUMERIC overflow on rescale".into(),
1867 })?;
1868 let rhs = rescale(b, sb, target_scale).ok_or(EvalError::TypeMismatch {
1869 detail: "NUMERIC overflow on rescale".into(),
1870 })?;
1871 Ok(Value::Bool(cmp_to_bool(op, lhs.cmp(&rhs))))
1872 }
1873 BinOp::Concat => Ok(text_concat(&l, &r)),
1874 other => Err(EvalError::TypeMismatch {
1875 detail: format!("operator {other:?} not defined for NUMERIC"),
1876 }),
1877 }
1878}
1879
1880fn numeric_or_widen(v: &Value) -> Option<(i128, u8)> {
1884 match v {
1885 Value::Numeric { scaled, scale } => Some((*scaled, *scale)),
1886 Value::Int(n) => Some((i128::from(*n), 0)),
1887 Value::SmallInt(n) => Some((i128::from(*n), 0)),
1888 Value::BigInt(n) => Some((i128::from(*n), 0)),
1889 _ => None,
1890 }
1891}
1892
1893fn rescale(scaled: i128, src: u8, dst: u8) -> Option<i128> {
1894 if src == dst {
1895 return Some(scaled);
1896 }
1897 if dst > src {
1898 scaled.checked_mul(pow10_i128(dst - src))
1899 } else {
1900 let drop = pow10_i128(src - dst);
1901 let half = drop / 2;
1902 let r = if scaled >= 0 {
1903 scaled + half
1904 } else {
1905 scaled - half
1906 };
1907 Some(r / drop)
1908 }
1909}
1910
1911const fn pow10_i128(p: u8) -> i128 {
1912 let mut acc: i128 = 1;
1913 let mut i = 0;
1914 while i < p {
1915 acc *= 10;
1916 i += 1;
1917 }
1918 acc
1919}
1920
1921const fn cmp_to_bool(op: BinOp, ord: core::cmp::Ordering) -> bool {
1922 use core::cmp::Ordering::{Equal, Greater, Less};
1923 match op {
1924 BinOp::Eq => matches!(ord, Equal),
1925 BinOp::NotEq => !matches!(ord, Equal),
1926 BinOp::Lt => matches!(ord, Less),
1927 BinOp::LtEq => matches!(ord, Less | Equal),
1928 BinOp::Gt => matches!(ord, Greater),
1929 BinOp::GtEq => matches!(ord, Greater | Equal),
1930 _ => false,
1931 }
1932}
1933
1934fn text_concat(l: &Value, r: &Value) -> Value {
1938 let a = value_to_text(l);
1939 let b = value_to_text(r);
1940 Value::Text(a + &b)
1941}
1942
1943fn inner_product(l: Value, r: Value) -> Result<Value, EvalError> {
1946 let (a, b) = unwrap_vec_pair(l, r, "<#>")?;
1947 let mut dot: f64 = 0.0;
1948 for (x, y) in a.iter().zip(b.iter()) {
1949 dot += f64::from(*x) * f64::from(*y);
1950 }
1951 Ok(Value::Float(-dot))
1952}
1953
1954fn cosine_distance(l: Value, r: Value) -> Result<Value, EvalError> {
1957 let (a, b) = unwrap_vec_pair(l, r, "<=>")?;
1958 let mut dot: f64 = 0.0;
1959 let mut na: f64 = 0.0;
1960 let mut nb: f64 = 0.0;
1961 for (x, y) in a.iter().zip(b.iter()) {
1962 let xf = f64::from(*x);
1963 let yf = f64::from(*y);
1964 dot += xf * yf;
1965 na += xf * xf;
1966 nb += yf * yf;
1967 }
1968 let denom = sqrt_newton(na) * sqrt_newton(nb);
1969 if denom == 0.0 {
1970 return Ok(Value::Float(f64::NAN));
1971 }
1972 Ok(Value::Float(1.0 - dot / denom))
1973}
1974
1975fn unwrap_vec_pair(l: Value, r: Value, op: &str) -> Result<(Vec<f32>, Vec<f32>), EvalError> {
1976 let to_f32 = |v: Value| -> Option<Vec<f32>> {
1984 match v {
1985 Value::Vector(a) => Some(a),
1986 Value::Sq8Vector(q) => Some(spg_storage::quantize::dequantize(&q)),
1987 Value::HalfVector(h) => Some(h.to_f32_vec()),
1989 _ => None,
1990 }
1991 };
1992 let l_ty = l.data_type();
1993 let r_ty = r.data_type();
1994 match (to_f32(l), to_f32(r)) {
1995 (Some(a), Some(b)) => {
1996 if a.len() != b.len() {
1997 return Err(EvalError::TypeMismatch {
1998 detail: format!("vector dim mismatch in {op}: {} vs {}", a.len(), b.len()),
1999 });
2000 }
2001 Ok((a, b))
2002 }
2003 _ => Err(EvalError::TypeMismatch {
2004 detail: format!("{op} requires two vectors, got {l_ty:?} and {r_ty:?}"),
2005 }),
2006 }
2007}
2008
2009fn arith(
2014 l: Value,
2015 r: Value,
2016 int_op: impl Fn(i64, i64) -> Option<i64>,
2017 float_op: impl Fn(f64, f64) -> f64,
2018 op_name: &str,
2019) -> Result<Value, EvalError> {
2020 let widen = |v: Value| -> Value {
2023 match v {
2024 Value::SmallInt(n) => Value::Int(i32::from(n)),
2025 other => other,
2026 }
2027 };
2028 let l = widen(l);
2029 let r = widen(r);
2030 match (l, r) {
2031 (Value::Int(a), Value::Int(b)) => {
2032 let result = int_op(i64::from(a), i64::from(b)).ok_or(EvalError::TypeMismatch {
2033 detail: format!("integer overflow on {op_name}"),
2034 })?;
2035 if let Ok(small) = i32::try_from(result) {
2036 Ok(Value::Int(small))
2037 } else {
2038 Ok(Value::BigInt(result))
2039 }
2040 }
2041 (Value::Int(a), Value::BigInt(b)) | (Value::BigInt(b), Value::Int(a)) => {
2042 let result = int_op(i64::from(a), b).ok_or(EvalError::TypeMismatch {
2043 detail: format!("bigint overflow on {op_name}"),
2044 })?;
2045 Ok(Value::BigInt(result))
2046 }
2047 (Value::BigInt(a), Value::BigInt(b)) => {
2048 let result = int_op(a, b).ok_or(EvalError::TypeMismatch {
2049 detail: format!("bigint overflow on {op_name}"),
2050 })?;
2051 Ok(Value::BigInt(result))
2052 }
2053 (a, b)
2054 if a.data_type() == Some(DataType::Float) || b.data_type() == Some(DataType::Float) =>
2055 {
2056 let af = as_f64(&a)?;
2057 let bf = as_f64(&b)?;
2058 Ok(Value::Float(float_op(af, bf)))
2059 }
2060 (a, b) => Err(EvalError::TypeMismatch {
2061 detail: format!(
2062 "{op_name} applied to non-numeric: {:?} vs {:?}",
2063 a.data_type(),
2064 b.data_type()
2065 ),
2066 }),
2067 }
2068}
2069
2070#[allow(clippy::many_single_char_names)] fn l2_distance(l: Value, r: Value) -> Result<Value, EvalError> {
2076 let (a, b) = unwrap_vec_pair(l, r, "<->")?;
2081 let mut sum: f64 = 0.0;
2082 for (x, y) in a.iter().zip(b.iter()) {
2083 let d = f64::from(*x) - f64::from(*y);
2084 sum += d * d;
2085 }
2086 Ok(Value::Float(sqrt_newton(sum)))
2087}
2088
2089fn sqrt_newton(x: f64) -> f64 {
2094 if x <= 0.0 {
2095 return 0.0;
2096 }
2097 let mut g = x;
2098 for _ in 0..10 {
2101 g = 0.5 * (g + x / g);
2102 }
2103 g
2104}
2105
2106fn div_op(l: Value, r: Value) -> Result<Value, EvalError> {
2107 let any_float = matches!(l.data_type(), Some(DataType::Float))
2108 || matches!(r.data_type(), Some(DataType::Float));
2109 if any_float {
2110 let a = as_f64(&l)?;
2111 let b = as_f64(&r)?;
2112 if b == 0.0 {
2113 return Err(EvalError::DivisionByZero);
2114 }
2115 return Ok(Value::Float(a / b));
2116 }
2117 arith(
2118 l,
2119 r,
2120 |a, b| {
2121 if b == 0 { None } else { Some(a / b) }
2122 },
2123 |a, b| a / b,
2124 "/",
2125 )
2126 .map_err(|e| match e {
2127 EvalError::TypeMismatch { detail } if detail.contains('/') => EvalError::DivisionByZero,
2130 other => other,
2131 })
2132}
2133
2134fn as_f64(v: &Value) -> Result<f64, EvalError> {
2135 match v {
2136 Value::SmallInt(n) => Ok(f64::from(*n)),
2137 Value::Int(n) => Ok(f64::from(*n)),
2138 #[allow(clippy::cast_precision_loss)]
2139 Value::BigInt(n) => Ok(*n as f64),
2140 Value::Float(x) => Ok(*x),
2141 #[allow(clippy::cast_precision_loss)]
2142 Value::Numeric { scaled, scale } => {
2143 let mut div = 1.0_f64;
2144 for _ in 0..*scale {
2145 div *= 10.0;
2146 }
2147 Ok((*scaled as f64) / div)
2148 }
2149 other => Err(EvalError::TypeMismatch {
2150 detail: format!("cannot convert {:?} to FLOAT", other.data_type()),
2151 }),
2152 }
2153}
2154
2155fn compare(op: BinOp, l: &Value, r: &Value) -> Result<Value, EvalError> {
2156 let ord = match (l, r) {
2157 (Value::Int(a), Value::Int(b)) => i64::from(*a).cmp(&i64::from(*b)),
2158 (Value::Int(a), Value::BigInt(b)) => i64::from(*a).cmp(b),
2159 (Value::BigInt(a), Value::Int(b)) => a.cmp(&i64::from(*b)),
2160 (Value::BigInt(a), Value::BigInt(b)) => a.cmp(b),
2161 (a, b)
2162 if matches!(a.data_type(), Some(DataType::Float))
2163 || matches!(b.data_type(), Some(DataType::Float)) =>
2164 {
2165 let af = as_f64(a)?;
2166 let bf = as_f64(b)?;
2167 af.partial_cmp(&bf).ok_or(EvalError::TypeMismatch {
2168 detail: "NaN in comparison".into(),
2169 })?
2170 }
2171 (Value::Text(a), Value::Text(b)) => a.cmp(b),
2172 (Value::Bool(a), Value::Bool(b)) => a.cmp(b),
2173 (Value::Date(a), Value::Date(b)) => a.cmp(b),
2177 (Value::Timestamp(a), Value::Timestamp(b)) => a.cmp(b),
2178 (Value::Date(a), Value::Timestamp(b)) => (i64::from(*a) * 86_400_000_000).cmp(b),
2179 (Value::Timestamp(a), Value::Date(b)) => a.cmp(&(i64::from(*b) * 86_400_000_000)),
2180 (Value::Date(a), Value::Text(b)) => {
2184 let bd = parse_date_literal(b).ok_or_else(|| EvalError::TypeMismatch {
2185 detail: format!("cannot parse {b:?} as DATE for comparison"),
2186 })?;
2187 a.cmp(&bd)
2188 }
2189 (Value::Text(a), Value::Date(b)) => {
2190 let ad = parse_date_literal(a).ok_or_else(|| EvalError::TypeMismatch {
2191 detail: format!("cannot parse {a:?} as DATE for comparison"),
2192 })?;
2193 ad.cmp(b)
2194 }
2195 (Value::Timestamp(a), Value::Text(b)) => {
2196 let bt = parse_timestamp_literal(b).ok_or_else(|| EvalError::TypeMismatch {
2197 detail: format!("cannot parse {b:?} as TIMESTAMP for comparison"),
2198 })?;
2199 a.cmp(&bt)
2200 }
2201 (Value::Text(a), Value::Timestamp(b)) => {
2202 let at = parse_timestamp_literal(a).ok_or_else(|| EvalError::TypeMismatch {
2203 detail: format!("cannot parse {a:?} as TIMESTAMP for comparison"),
2204 })?;
2205 at.cmp(b)
2206 }
2207 (a, b) => {
2208 return Err(EvalError::TypeMismatch {
2209 detail: format!(
2210 "comparison between {:?} and {:?}",
2211 a.data_type(),
2212 b.data_type()
2213 ),
2214 });
2215 }
2216 };
2217 let result = match op {
2218 BinOp::Eq => ord.is_eq(),
2219 BinOp::NotEq => !ord.is_eq(),
2220 BinOp::Lt => ord.is_lt(),
2221 BinOp::LtEq => ord.is_le(),
2222 BinOp::Gt => ord.is_gt(),
2223 BinOp::GtEq => ord.is_ge(),
2224 BinOp::And
2225 | BinOp::Or
2226 | BinOp::Add
2227 | BinOp::Sub
2228 | BinOp::Mul
2229 | BinOp::Div
2230 | BinOp::L2Distance
2231 | BinOp::InnerProduct
2232 | BinOp::CosineDistance
2233 | BinOp::Concat
2234 | BinOp::JsonGet
2235 | BinOp::JsonGetText
2236 | BinOp::JsonGetPath
2237 | BinOp::JsonGetPathText
2238 | BinOp::JsonContains => {
2239 unreachable!("compare() only called with comparison ops")
2240 }
2241 };
2242 Ok(Value::Bool(result))
2243}
2244
2245fn and_3vl(l: Value, r: Value) -> Result<Value, EvalError> {
2247 match (l, r) {
2248 (Value::Bool(false), _) | (_, Value::Bool(false)) => Ok(Value::Bool(false)),
2249 (Value::Bool(true), Value::Bool(true)) => Ok(Value::Bool(true)),
2250 (Value::Null, _) | (_, Value::Null) => Ok(Value::Null),
2251 (a, b) => Err(EvalError::TypeMismatch {
2252 detail: format!(
2253 "AND on non-boolean: {:?} and {:?}",
2254 a.data_type(),
2255 b.data_type()
2256 ),
2257 }),
2258 }
2259}
2260
2261fn or_3vl(l: Value, r: Value) -> Result<Value, EvalError> {
2262 match (l, r) {
2263 (Value::Bool(true), _) | (_, Value::Bool(true)) => Ok(Value::Bool(true)),
2264 (Value::Bool(false), Value::Bool(false)) => Ok(Value::Bool(false)),
2265 (Value::Null, _) | (_, Value::Null) => Ok(Value::Null),
2266 (a, b) => Err(EvalError::TypeMismatch {
2267 detail: format!(
2268 "OR on non-boolean: {:?} and {:?}",
2269 a.data_type(),
2270 b.data_type()
2271 ),
2272 }),
2273 }
2274}
2275
2276#[cfg(test)]
2277mod tests {
2278 use super::*;
2279 use alloc::vec;
2280 use spg_storage::{ColumnSchema, Row};
2281
2282 fn col(name: &str, ty: DataType) -> ColumnSchema {
2283 ColumnSchema::new(name, ty, true)
2284 }
2285
2286 fn ctx<'a>(cols: &'a [ColumnSchema], alias: Option<&'a str>) -> EvalContext<'a> {
2287 EvalContext::new(cols, alias)
2288 }
2289
2290 fn lit(n: i64) -> Expr {
2291 Expr::Literal(Literal::Integer(n))
2292 }
2293
2294 fn null() -> Expr {
2295 Expr::Literal(Literal::Null)
2296 }
2297
2298 fn col_ref(name: &str) -> Expr {
2299 Expr::Column(ColumnName {
2300 qualifier: None,
2301 name: name.into(),
2302 })
2303 }
2304
2305 #[test]
2306 fn literal_evaluates_to_value() {
2307 let r = Row::new(vec![]);
2308 let cs: [ColumnSchema; 0] = [];
2309 let c = ctx(&cs, None);
2310 assert_eq!(eval_expr(&lit(42), &r, &c).unwrap(), Value::Int(42));
2311 assert_eq!(
2312 eval_expr(&Expr::Literal(Literal::Float(1.5)), &r, &c).unwrap(),
2313 Value::Float(1.5)
2314 );
2315 assert_eq!(eval_expr(&null(), &r, &c).unwrap(), Value::Null);
2316 }
2317
2318 #[test]
2319 fn column_lookup_unqualified() {
2320 let cs = vec![col("a", DataType::Int), col("b", DataType::Text)];
2321 let r = Row::new(vec![Value::Int(7), Value::Text("hi".into())]);
2322 let c = ctx(&cs, None);
2323 assert_eq!(eval_expr(&col_ref("a"), &r, &c).unwrap(), Value::Int(7));
2324 assert_eq!(
2325 eval_expr(&col_ref("b"), &r, &c).unwrap(),
2326 Value::Text("hi".into())
2327 );
2328 }
2329
2330 #[test]
2331 fn column_not_found_errors() {
2332 let cs = vec![col("a", DataType::Int)];
2333 let r = Row::new(vec![Value::Int(0)]);
2334 let c = ctx(&cs, None);
2335 let err = eval_expr(&col_ref("ghost"), &r, &c).unwrap_err();
2336 assert!(matches!(err, EvalError::ColumnNotFound { ref name } if name == "ghost"));
2337 }
2338
2339 #[test]
2340 fn qualified_column_matches_alias() {
2341 let cs = vec![col("a", DataType::Int)];
2342 let r = Row::new(vec![Value::Int(5)]);
2343 let c = ctx(&cs, Some("u"));
2344 let qualified = Expr::Column(ColumnName {
2345 qualifier: Some("u".into()),
2346 name: "a".into(),
2347 });
2348 assert_eq!(eval_expr(&qualified, &r, &c).unwrap(), Value::Int(5));
2349 }
2350
2351 #[test]
2352 fn qualified_column_unknown_alias_errors() {
2353 let cs = vec![col("a", DataType::Int)];
2354 let r = Row::new(vec![Value::Int(5)]);
2355 let c = ctx(&cs, Some("u"));
2356 let wrong = Expr::Column(ColumnName {
2357 qualifier: Some("x".into()),
2358 name: "a".into(),
2359 });
2360 assert!(matches!(
2361 eval_expr(&wrong, &r, &c).unwrap_err(),
2362 EvalError::UnknownQualifier { .. }
2363 ));
2364 }
2365
2366 #[test]
2367 fn arithmetic_with_widening() {
2368 let r = Row::new(vec![]);
2369 let cs: [ColumnSchema; 0] = [];
2370 let c = ctx(&cs, None);
2371 let e = Expr::Binary {
2372 lhs: alloc::boxed::Box::new(lit(2)),
2373 op: BinOp::Add,
2374 rhs: alloc::boxed::Box::new(Expr::Literal(Literal::Float(0.5))),
2375 };
2376 assert_eq!(eval_expr(&e, &r, &c).unwrap(), Value::Float(2.5));
2377 }
2378
2379 #[test]
2380 fn division_by_zero_errors() {
2381 let r = Row::new(vec![]);
2382 let cs: [ColumnSchema; 0] = [];
2383 let c = ctx(&cs, None);
2384 let e = Expr::Binary {
2385 lhs: alloc::boxed::Box::new(lit(1)),
2386 op: BinOp::Div,
2387 rhs: alloc::boxed::Box::new(lit(0)),
2388 };
2389 assert_eq!(
2390 eval_expr(&e, &r, &c).unwrap_err(),
2391 EvalError::DivisionByZero
2392 );
2393 }
2394
2395 #[test]
2396 fn comparison_returns_bool() {
2397 let r = Row::new(vec![]);
2398 let cs: [ColumnSchema; 0] = [];
2399 let c = ctx(&cs, None);
2400 let e = Expr::Binary {
2401 lhs: alloc::boxed::Box::new(lit(1)),
2402 op: BinOp::Lt,
2403 rhs: alloc::boxed::Box::new(lit(2)),
2404 };
2405 assert_eq!(eval_expr(&e, &r, &c).unwrap(), Value::Bool(true));
2406 }
2407
2408 #[test]
2409 fn null_propagates_through_arithmetic() {
2410 let r = Row::new(vec![]);
2411 let cs: [ColumnSchema; 0] = [];
2412 let c = ctx(&cs, None);
2413 let e = Expr::Binary {
2414 lhs: alloc::boxed::Box::new(lit(1)),
2415 op: BinOp::Add,
2416 rhs: alloc::boxed::Box::new(null()),
2417 };
2418 assert_eq!(eval_expr(&e, &r, &c).unwrap(), Value::Null);
2419 }
2420
2421 #[test]
2422 fn and_three_valued_logic() {
2423 let r = Row::new(vec![]);
2424 let cs: [ColumnSchema; 0] = [];
2425 let c = ctx(&cs, None);
2426 let tt = |a: bool, b_null: bool| Expr::Binary {
2427 lhs: alloc::boxed::Box::new(Expr::Literal(Literal::Bool(a))),
2428 op: BinOp::And,
2429 rhs: alloc::boxed::Box::new(if b_null {
2430 null()
2431 } else {
2432 Expr::Literal(Literal::Bool(true))
2433 }),
2434 };
2435 assert_eq!(
2437 eval_expr(&tt(false, true), &r, &c).unwrap(),
2438 Value::Bool(false)
2439 );
2440 assert_eq!(eval_expr(&tt(true, true), &r, &c).unwrap(), Value::Null);
2442 assert_eq!(
2444 eval_expr(&tt(true, false), &r, &c).unwrap(),
2445 Value::Bool(true)
2446 );
2447 }
2448
2449 #[test]
2450 fn or_three_valued_logic() {
2451 let r = Row::new(vec![]);
2452 let cs: [ColumnSchema; 0] = [];
2453 let c = ctx(&cs, None);
2454 let or_with_null = |a: bool| Expr::Binary {
2455 lhs: alloc::boxed::Box::new(Expr::Literal(Literal::Bool(a))),
2456 op: BinOp::Or,
2457 rhs: alloc::boxed::Box::new(null()),
2458 };
2459 assert_eq!(
2461 eval_expr(&or_with_null(true), &r, &c).unwrap(),
2462 Value::Bool(true)
2463 );
2464 assert_eq!(
2466 eval_expr(&or_with_null(false), &r, &c).unwrap(),
2467 Value::Null
2468 );
2469 }
2470
2471 #[test]
2472 fn not_on_null_is_null() {
2473 let r = Row::new(vec![]);
2474 let cs: [ColumnSchema; 0] = [];
2475 let c = ctx(&cs, None);
2476 let e = Expr::Unary {
2477 op: UnOp::Not,
2478 expr: alloc::boxed::Box::new(null()),
2479 };
2480 assert_eq!(eval_expr(&e, &r, &c).unwrap(), Value::Null);
2481 }
2482
2483 #[test]
2484 fn text_comparison_lexicographic() {
2485 let r = Row::new(vec![]);
2486 let cs: [ColumnSchema; 0] = [];
2487 let c = ctx(&cs, None);
2488 let e = Expr::Binary {
2489 lhs: alloc::boxed::Box::new(Expr::Literal(Literal::String("apple".into()))),
2490 op: BinOp::Lt,
2491 rhs: alloc::boxed::Box::new(Expr::Literal(Literal::String("banana".into()))),
2492 };
2493 assert_eq!(eval_expr(&e, &r, &c).unwrap(), Value::Bool(true));
2494 }
2495
2496 #[test]
2497 fn interval_format_basics() {
2498 assert_eq!(format_interval(0, 0), "0");
2499 assert_eq!(format_interval(0, 86_400_000_000), "1 day");
2500 assert_eq!(format_interval(0, -86_400_000_000), "-1 days");
2501 assert_eq!(format_interval(0, 3_600_000_000), "01:00:00");
2502 assert_eq!(
2503 format_interval(0, 86_400_000_000 + 9_000_000),
2504 "1 day 00:00:09"
2505 );
2506 assert_eq!(format_interval(14, 0), "1 year 2 mons");
2507 assert_eq!(format_interval(-1, 0), "-1 mons");
2508 }
2509
2510 #[test]
2511 fn interval_add_to_timestamp_micros_part() {
2512 let ts = i64::from(days_from_civil(2024, 1, 1)) * 86_400_000_000;
2514 let r = add_interval_to_micros(ts, 0, 3_600_000_000).unwrap();
2515 let expected = ts + 3_600_000_000;
2516 assert_eq!(r, expected);
2517 }
2518
2519 #[test]
2520 fn interval_clamp_month_end() {
2521 let d = days_from_civil(2024, 1, 31);
2523 let shifted = shift_date_by_months(d, 1).unwrap();
2524 let (y, m, day) = civil_from_days(shifted);
2525 assert_eq!((y, m, day), (2024, 2, 29));
2526 let d = days_from_civil(2023, 1, 31);
2528 let shifted = shift_date_by_months(d, 1).unwrap();
2529 let (y, m, day) = civil_from_days(shifted);
2530 assert_eq!((y, m, day), (2023, 2, 28));
2531 let d = days_from_civil(2024, 3, 31);
2533 let shifted = shift_date_by_months(d, -1).unwrap();
2534 let (y, m, day) = civil_from_days(shifted);
2535 assert_eq!((y, m, day), (2024, 2, 29));
2536 }
2537
2538 #[test]
2539 fn interval_date_plus_pure_days_stays_date() {
2540 let d = days_from_civil(2024, 6, 1);
2542 let lhs = Value::Date(d);
2543 let rhs = Value::Interval {
2544 months: 0,
2545 micros: 7 * 86_400_000_000,
2546 };
2547 let v = apply_binary_interval(BinOp::Add, &lhs, &rhs)
2548 .unwrap()
2549 .unwrap();
2550 let expected = days_from_civil(2024, 6, 8);
2551 assert_eq!(v, Value::Date(expected));
2552 }
2553
2554 #[test]
2555 fn interval_date_plus_sub_day_lifts_to_timestamp() {
2556 let d = days_from_civil(2024, 6, 1);
2558 let lhs = Value::Date(d);
2559 let rhs = Value::Interval {
2560 months: 0,
2561 micros: 3_600_000_000,
2562 };
2563 let v = apply_binary_interval(BinOp::Add, &lhs, &rhs)
2564 .unwrap()
2565 .unwrap();
2566 let expected = i64::from(d) * 86_400_000_000 + 3_600_000_000;
2567 assert_eq!(v, Value::Timestamp(expected));
2568 }
2569}