1#[macro_use]
2use crate::*;
3use crate::structures::tuple;
4
5#[cfg(not(feature = "no-std"))] use core::fmt;
6#[cfg(feature = "no-std")] use alloc::fmt;
7#[cfg(feature = "no-std")] use alloc::string::String;
8#[cfg(feature = "no-std")] use alloc::vec::Vec;
9use nom::{
10 IResult,
11 branch::alt,
12 sequence::{tuple as nom_tuple, preceded, pair},
13 combinator::{opt, eof, cut},
14 multi::{many1, many_till, many0, separated_list1,separated_list0},
15 Err,
16 Err::Failure
17};
18
19use std::collections::HashMap;
20use colored::*;
21
22use crate::*;
23
24pub fn expression(input: ParseString) -> ParseResult<Expression> {
46 let (input, expr) = match range_expression(input.clone()) {
47 Ok((input, rng)) => (input, Expression::Range(Box::new(rng))),
48 Err(_) => match formula(input.clone()) {
49 Ok((input, Factor::Expression(expr))) => (input, *expr),
50 Ok((input, fctr)) => (input, Expression::Formula(fctr)),
51 Err(err) => {
52 return Err(err);},
53 }
54 };
55 Ok((input, expr))
56}
57
58pub fn formula(input: ParseString) -> ParseResult<Factor> {
60 let (input, factor) = l1(input)?;
61 Ok((input, factor))
62}
63
64pub fn l1(input: ParseString) -> ParseResult<Factor> {
66 let (input, lhs) = l2(input)?;
67 let (input, rhs) = many0(pair(add_sub_operator,cut(l2)))(input)?;
68 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
69 Ok((input, factor))
70}
71
72pub fn l2(input: ParseString) -> ParseResult<Factor> {
74 let (input, lhs) = l3(input)?;
75 let (input, rhs) = many0(pair(alt((mul_div_operator, matrix_operator)),cut(l3)))(input)?;
76 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
77 Ok((input, factor))
78}
79
80pub fn l3(input: ParseString) -> ParseResult<Factor> {
82 let (input, lhs) = l4(input)?;
83 let (input, rhs) = many0(pair(exponent_operator,cut(l4)))(input)?;
84 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
85 Ok((input, factor))
86}
87
88pub fn l4(input: ParseString) -> ParseResult<Factor> {
90 let (input, lhs) = l5(input)?;
91 let (input, rhs) = many0(pair(logic_operator,cut(l5)))(input)?;
92 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
93 Ok((input, factor))
94}
95
96pub fn l5(input: ParseString) -> ParseResult<Factor> {
98 let (input, lhs) = l6(input)?;
99 let (input, rhs) = many0(pair(comparison_operator,cut(l6)))(input)?;
100 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
101 Ok((input, factor))
102}
103
104pub fn l6(input: ParseString) -> ParseResult<Factor> {
106 let (input, lhs) = l7(input)?;
107 let (input, rhs) = many0(pair(table_operator,cut(l7)))(input)?;
108 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
109 Ok((input, factor))
110}
111
112pub fn l7(input: ParseString) -> ParseResult<Factor> {
114 let (input, lhs) = factor(input)?;
115 let (input, rhs) = many0(pair(set_operator,cut(factor)))(input)?;
116 let factor = if rhs.is_empty() { lhs } else { Factor::Term(Box::new(Term { lhs, rhs })) };
117 Ok((input, factor))
118}
119
120pub fn factor(input: ParseString) -> ParseResult<Factor> {
122 let parsers: Vec<(&str, Box<dyn Fn(ParseString) -> ParseResult<Factor>>)> = vec![
123 ("parenthetical_term", Box::new(|i| parenthetical_term(i))),
124 ("negate_factor", Box::new(|i| negate_factor(i))),
125 ("not_factor", Box::new(|i| not_factor(i))),
126 ("structure", Box::new(|i| structure(i).map(|(i, s)| (i, Factor::Expression(Box::new(Expression::Structure(s))))))),
127 ("function_call", Box::new(|i| function_call(i).map(|(i, f)| (i, Factor::Expression(Box::new(Expression::FunctionCall(f))))))),
128 ("literal", Box::new(|i| literal(i).map(|(i, l)| (i, Factor::Expression(Box::new(Expression::Literal(l))))))),
129 ("slice", Box::new(|i| slice(i).map(|(i, s)| (i, Factor::Expression(Box::new(Expression::Slice(s))))))),
130 ("var", Box::new(|i| var(i).map(|(i, v)| (i, Factor::Expression(Box::new(Expression::Var(v))))))),
131 ];
132 let (input, fctr) = alt_best(input, &parsers)?;
133 let (input, transpose) = opt(transpose)(input)?;
134 let fctr = match transpose {
135 Some(_) => Factor::Transpose(Box::new(fctr)),
136 None => fctr,
137 };
138 Ok((input, fctr))
139}
140
141pub fn parenthetical_term(input: ParseString) -> ParseResult<Factor> {
143 let msg1 = "parenthetical_term: Expects expression";
144 let msg2 = "parenthetical_term: Expects right parenthesis `)`";
145 let (input, (_, r)) = range(left_parenthesis)(input)?;
146 let (input, _) = space_tab0(input)?;
147 let (input, frmla) = label!(formula, msg1)(input)?;
148 let (input, _) = space_tab0(input)?;
149 let (input, _) = label!(right_parenthesis, msg2, r)(input)?;
150 Ok((input, Factor::Parenthetical(Box::new(frmla))))
151}
152
153pub fn var(input: ParseString) -> ParseResult<Var> {
155 let ((input, name)) = identifier(input)?;
156 let ((input, kind)) = opt(kind_annotation)(input)?;
157 Ok((input, Var{ name, kind }))
158}
159
160pub fn statement_separator(input: ParseString) -> ParseResult<()> {
162 let (input,_) = nom_tuple((whitespace0,semicolon,whitespace0))(input)?;
163 Ok((input, ()))
164}
165
166pub fn add_sub_operator(input: ParseString) -> ParseResult<FormulaOperator> {
171 let (input, op) = alt((add, subtract))(input)?;
172 Ok((input, FormulaOperator::AddSub(op)))
173}
174
175
176pub fn mul_div_operator(input: ParseString) -> ParseResult<FormulaOperator> {
178 let (input, op) = alt((multiply, divide, modulus))(input)?;
179 Ok((input, FormulaOperator::MulDiv(op)))
180}
181
182pub fn exponent_operator(input: ParseString) -> ParseResult<FormulaOperator> {
184 let (input, op) = exponent(input)?;
185 Ok((input, FormulaOperator::Exponent(op)))
186}
187
188pub fn negate_factor(input: ParseString) -> ParseResult<Factor> {
190 let (input, _) = dash(input)?;
191 let (input, expr) = factor(input)?;
192 Ok((input, Factor::Negate(Box::new(expr))))
193}
194
195pub fn not_factor(input: ParseString) -> ParseResult<Factor> {
197 let (input, _) = not(input)?;
198 let (input, expr) = factor(input)?;
199 Ok((input, Factor::Not(Box::new(expr))))
200}
201
202pub fn add(input: ParseString) -> ParseResult<AddSubOp> {
204 let (input, _) = ws0e(input)?;
205 let (input, _) = tag("+")(input)?;
206 let (input, _) = ws0e(input)?;
207 Ok((input, AddSubOp::Add))
208}
209
210pub fn subtract(input: ParseString) -> ParseResult<AddSubOp> {
211 let (input, _) = alt((spaced_subtract, raw_subtract))(input)?;
212 Ok((input, AddSubOp::Sub))
213}
214
215pub fn raw_subtract(input: ParseString) -> ParseResult<AddSubOp> {
217 let (input, _) = pair(is_not(comment_sigil), tag("-"))(input)?;
218 Ok((input, AddSubOp::Sub))
219}
220
221pub fn spaced_subtract(input: ParseString) -> ParseResult<AddSubOp> {
222 let (input, _) = ws1e(input)?;
223 let (input, _) = raw_subtract(input)?;
224 let (input, _) = ws1e(input)?;
225 Ok((input, AddSubOp::Sub))
226}
227
228pub fn multiply(input: ParseString) -> ParseResult<MulDivOp> {
230 let (input, _) = ws0e(input)?;
231 let (input, _) = pair(is_not(matrix_multiply),alt((tag("*"), tag("×"))))(input)?;
232 let (input, _) = ws0e(input)?;
233 Ok((input, MulDivOp::Mul))
234}
235
236pub fn divide(input: ParseString) -> ParseResult<MulDivOp> {
238 let (input, _) = ws0e(input)?;
239 let (input, _) = pair(is_not(comment_sigil),alt((tag("/"),tag("÷"))))(input)?;
240 let (input, _) = ws0e(input)?;
241 Ok((input, MulDivOp::Div))
242}
243
244pub fn modulus(input: ParseString) -> ParseResult<MulDivOp> {
246 let (input, _) = ws0e(input)?;
247 let (input, _) = tag("%")(input)?;
248 let (input, _) = ws0e(input)?;
249 Ok((input, MulDivOp::Mod))
250}
251
252pub fn exponent(input: ParseString) -> ParseResult<ExponentOp> {
254 let (input, _) = ws0e(input)?;
255 let (input, _) = tag("^")(input)?;
256 let (input, _) = ws0e(input)?;
257 Ok((input, ExponentOp::Exp))
258}
259
260pub fn matrix_operator(input: ParseString) -> ParseResult<FormulaOperator> {
265 let (input, op) = alt((matrix_multiply, matrix_solve, dot_product, cross_product))(input)?;
266 Ok((input, FormulaOperator::Vec(op)))
267}
268
269pub fn matrix_multiply(input: ParseString) -> ParseResult<VecOp> {
271 let (input, _) = ws0e(input)?;
272 let (input, _) = tag("**")(input)?;
273 let (input, _) = ws0e(input)?;
274 Ok((input, VecOp::MatMul))
275}
276
277pub fn matrix_solve(input: ParseString) -> ParseResult<VecOp> {
279 let (input, _) = ws0e(input)?;
280 let (input, _) = tag("\\")(input)?;
281 let (input, _) = ws0e(input)?;
282 Ok((input, VecOp::Solve))
283}
284
285pub fn dot_product(input: ParseString) -> ParseResult<VecOp> {
287 let (input, _) = ws0e(input)?;
288 let (input, _) = alt((tag("·"),tag("•")))(input)?;
289 let (input, _) = ws0e(input)?;
290 Ok((input, VecOp::Dot))
291}
292
293pub fn cross_product(input: ParseString) -> ParseResult<VecOp> {
295 let (input, _) = ws0e(input)?;
296 let (input, _) = tag("⨯")(input)?;
297 let (input, _) = ws0e(input)?;
298 Ok((input, VecOp::Cross))
299}
300
301pub fn transpose(input: ParseString) -> ParseResult<()> {
303 let (input, _) = tag("'")(input)?;
304 Ok((input, ()))
305}
306
307pub fn range_expression(input: ParseString) -> ParseResult<RangeExpression> {
312 let (input, start) = formula(input)?;
313 let (input, op) = range_operator(input)?;
314 let (input, x) = formula(input)?;
315 let (input, y) = opt(nom_tuple((range_operator,formula)))(input)?;
316 let range = match y {
317 Some((op2,terminal)) => RangeExpression{start, increment: Some((op,x)), operator: op2, terminal},
318 None => RangeExpression{start, increment: None, operator: op, terminal: x},
319 };
320 Ok((input, range))
321}
322
323pub fn range_inclusive(input: ParseString) -> ParseResult<RangeOp> {
325 let (input, _) = tag("..=")(input)?;
326 Ok((input, RangeOp::Inclusive))
327}
328
329pub fn range_exclusive(input: ParseString) -> ParseResult<RangeOp> {
331 let (input, _) = tag("..")(input)?;
332 Ok((input, RangeOp::Exclusive))
333}
334
335pub fn range_operator(input: ParseString) -> ParseResult<RangeOp> {
337 let (input, op) = alt((range_inclusive,range_exclusive))(input)?;
338 Ok((input, op))
339}
340
341pub fn comparison_operator(input: ParseString) -> ParseResult<FormulaOperator> {
346 let (input, op) = alt((strict_equal, strict_not_equal, not_equal, equal_to, greater_than_equal, greater_than, less_than_equal, less_than))(input)?;
347 Ok((input, FormulaOperator::Comparison(op)))
348}
349
350pub fn not_equal(input: ParseString) -> ParseResult<ComparisonOp> {
352 let (input, _) = ws0e(input)?;
353 let (input, _) = alt((tag("!="),tag("¬="),tag("≠")))(input)?;
354 let (input, _) = ws0e(input)?;
355 Ok((input, ComparisonOp::NotEqual))
356}
357
358pub fn equal_to(input: ParseString) -> ParseResult<ComparisonOp> {
360 let (input, _) = ws0e(input)?;
361 let (input, _) = tag("==")(input)?;
362 let (input, _) = ws0e(input)?;
363 Ok((input, ComparisonOp::Equal))
364}
365
366pub fn strict_not_equal(input: ParseString) -> ParseResult<ComparisonOp> {
368 let (input, _) = ws0e(input)?;
369 let (input, _) = alt((tag("=!="),tag("=¬=")))(input)?;
370 let (input, _) = ws0e(input)?;
371 Ok((input, ComparisonOp::StrictNotEqual))
372}
373
374pub fn strict_equal(input: ParseString) -> ParseResult<ComparisonOp> {
376 let (input, _) = ws0e(input)?;
377 let (input, _) = alt((tag("=:="),tag("≡")))(input)?;
378 let (input, _) = ws0e(input)?;
379 Ok((input, ComparisonOp::StrictEqual))
380}
381
382pub fn greater_than(input: ParseString) -> ParseResult<ComparisonOp> {
384 let (input, _) = ws0e(input)?;
385 let (input, _) = tag(">")(input)?;
386 let (input, _) = ws0e(input)?;
387 Ok((input, ComparisonOp::GreaterThan))
388}
389
390pub fn less_than(input: ParseString) -> ParseResult<ComparisonOp> {
392 let (input, _) = ws0e(input)?;
393 let (input, _) = tag("<")(input)?;
394 let (input, _) = ws0e(input)?;
395 Ok((input, ComparisonOp::LessThan))
396}
397
398pub fn greater_than_equal(input: ParseString) -> ParseResult<ComparisonOp> {
400 let (input, _) = ws0e(input)?;
401 let (input, _) = alt((tag(">="),tag("≥")))(input)?;
402 let (input, _) = ws0e(input)?;
403 Ok((input, ComparisonOp::GreaterThanEqual))
404}
405
406pub fn less_than_equal(input: ParseString) -> ParseResult<ComparisonOp> {
408 let (input, _) = ws0e(input)?;
409 let (input, _) = alt((tag("<="),tag("≤")))(input)?;
410 let (input, _) = ws0e(input)?;
411 Ok((input, ComparisonOp::LessThanEqual))
412}
413
414pub fn logic_operator(input: ParseString) -> ParseResult<FormulaOperator> {
419 let (input, op) = alt((and, or, xor))(input)?;
420 Ok((input, FormulaOperator::Logic(op)))
421}
422
423pub fn or(input: ParseString) -> ParseResult<LogicOp> {
425 let (input, _) = ws0e(input)?;
426 let (input, _) = alt((tag("||"), tag("∨"), tag("⋁")))(input)?;
427 let (input, _) = ws0e(input)?;
428 Ok((input, LogicOp::Or))
429}
430
431pub fn and(input: ParseString) -> ParseResult<LogicOp> {
433 let (input, _) = ws0e(input)?;
434 let (input, _) = alt((tag("&&"), tag("∧"), tag("⋀")))(input)?;
435 let (input, _) = ws0e(input)?;
436 Ok((input, LogicOp::And))
437}
438
439pub fn not(input: ParseString) -> ParseResult<LogicOp> {
441 let (input, _) = alt((tag("!"), tag("¬")))(input)?;
442 Ok((input, LogicOp::Not))
443}
444
445pub fn xor(input: ParseString) -> ParseResult<LogicOp> {
447 let (input, _) = ws0e(input)?;
448 let (input, _) = alt((tag("^^"), tag("⊕"), tag("⊻")))(input)?;
449 let (input, _) = ws0e(input)?;
450 Ok((input, LogicOp::Xor))
451}
452
453fn table_operator(input: ParseString) -> ParseResult<FormulaOperator> {
458 let (input, op) = alt((join,left_join,right_join,full_join,left_semi_join,left_anti_join))(input)?;
459 Ok((input, FormulaOperator::Table(op)))
460}
461
462fn join(input: ParseString) -> ParseResult<TableOp> {
464 let (input, _) = ws0e(input)?;
465 let (input, _) = tag("⋈")(input)?;
466 let (input, _) = ws0e(input)?;
467 Ok((input, TableOp::InnerJoin))
468}
469
470fn left_join(input: ParseString) -> ParseResult<TableOp> {
472 let (input, _) = ws0e(input)?;
473 let (input, _) = tag("⟕")(input)?;
474 let (input, _) = ws0e(input)?;
475 Ok((input, TableOp::LeftOuterJoin))
476}
477
478fn right_join(input: ParseString) -> ParseResult<TableOp> {
480 let (input, _) = ws0e(input)?;
481 let (input, _) = tag("⟖")(input)?;
482 let (input, _) = ws0e(input)?;
483 Ok((input, TableOp::RightOuterJoin))
484}
485
486fn full_join(input: ParseString) -> ParseResult<TableOp> {
488 let (input, _) = ws0e(input)?;
489 let (input, _) = tag("⟗")(input)?;
490 let (input, _) = ws0e(input)?;
491 Ok((input, TableOp::FullOuterJoin))
492}
493
494fn left_semi_join(input: ParseString) -> ParseResult<TableOp> {
496 let (input, _) = ws0e(input)?;
497 let (input, _) = tag("⋉")(input)?;
498 let (input, _) = ws0e(input)?;
499 Ok((input, TableOp::LeftSemiJoin))
500}
501
502fn left_anti_join(input: ParseString) -> ParseResult<TableOp> {
504 let (input, _) = ws0e(input)?;
505 let (input, _) = tag("▷")(input)?;
506 let (input, _) = ws0e(input)?;
507 Ok((input, TableOp::LeftAntiJoin))
508}
509
510
511pub fn set_operator(input: ParseString) -> ParseResult<FormulaOperator> {
516 let (input, op) = alt((union_op,intersection,difference,complement,subset,superset,proper_subset,proper_superset,element_of,not_element_of))(input)?;
517 Ok((input, FormulaOperator::Set(op)))
518}
519
520pub fn union_op(input: ParseString) -> ParseResult<SetOp> {
522 let (input, _) = ws0e(input)?;
523 let (input, _) = tag("∪")(input)?;
524 let (input, _) = ws0e(input)?;
525 Ok((input, SetOp::Union))
526}
527
528pub fn intersection(input: ParseString) -> ParseResult<SetOp> {
530 let (input, _) = ws0e(input)?;
531 let (input, _) = tag("∩")(input)?;
532 let (input, _) = ws0e(input)?;
533 Ok((input, SetOp::Intersection))
534}
535
536pub fn difference(input: ParseString) -> ParseResult<SetOp> {
538 let (input, _) = ws0e(input)?;
539 let (input, _) = tag("∖")(input)?;
540 let (input, _) = ws0e(input)?;
541 Ok((input, SetOp::Difference))
542}
543
544pub fn complement(input: ParseString) -> ParseResult<SetOp> {
546 let (input, _) = ws0e(input)?;
547 let (input, _) = tag("∁")(input)?;
548 let (input, _) = ws0e(input)?;
549 Ok((input, SetOp::Complement))
550}
551
552pub fn subset(input: ParseString) -> ParseResult<SetOp> {
554 let (input, _) = ws0e(input)?;
555 let (input, _) = tag("⊆")(input)?;
556 let (input, _) = ws0e(input)?;
557 Ok((input, SetOp::Subset))
558}
559
560pub fn superset(input: ParseString) -> ParseResult<SetOp> {
562 let (input, _) = ws0e(input)?;
563 let (input, _) = tag("⊇")(input)?;
564 let (input, _) = ws0e(input)?;
565 Ok((input, SetOp::Superset))
566}
567
568pub fn proper_subset(input: ParseString) -> ParseResult<SetOp> {
570 let (input, _) = ws0e(input)?;
571 let (input, _) = alt((tag("⊊"), tag("⊂")))(input)?;
572 let (input, _) = ws0e(input)?;
573 Ok((input, SetOp::ProperSubset))
574}
575
576pub fn proper_superset(input: ParseString) -> ParseResult<SetOp> {
578 let (input, _) = ws0e(input)?;
579 let (input, _) = alt((tag("⊋"), tag("⊃")))(input)?;
580 let (input, _) = ws0e(input)?;
581 Ok((input, SetOp::ProperSuperset))
582}
583
584pub fn element_of(input: ParseString) -> ParseResult<SetOp> {
586 let (input, _) = ws0e(input)?;
587 let (input, _) = tag("∈")(input)?;
588 let (input, _) = ws0e(input)?;
589 Ok((input, SetOp::ElementOf))
590}
591
592pub fn not_element_of(input: ParseString) -> ParseResult<SetOp> {
594 let (input, _) = ws0e(input)?;
595 let (input, _) = tag("∉")(input)?;
596 let (input, _) = ws0e(input)?;
597 Ok((input, SetOp::NotElementOf))
598}
599
600pub fn subscript(input: ParseString) -> ParseResult<Vec<Subscript>> {
605 let (input, subscripts) = many1(alt((swizzle_subscript,dot_subscript,dot_subscript_int,bracket_subscript,brace_subscript)))(input)?;
606 Ok((input, subscripts))
607}
608
609pub fn slice(input: ParseString) -> ParseResult<Slice> {
611 let (input, name) = identifier(input)?;
612 let (input, ixes) = subscript(input)?;
613 Ok((input, Slice{name, subscript: ixes}))
614}
615
616pub fn slice_ref(input: ParseString) -> ParseResult<SliceRef> {
618 let (input, name) = identifier(input)?;
619 let (input, ixes) = opt(subscript)(input)?;
620 Ok((input, SliceRef{name, subscript: ixes}))
621}
622
623pub fn swizzle_subscript(input: ParseString) -> ParseResult<Subscript> {
625 let (input, _) = period(input)?;
626 let (input, first) = identifier(input)?;
627 let (input, _) = comma(input)?;
628 let (input, mut name) = separated_list1(tag(","),identifier)(input)?;
629 let mut subscripts = vec![first];
630 subscripts.append(&mut name);
631 Ok((input, Subscript::Swizzle(subscripts)))
632}
633
634pub fn dot_subscript(input: ParseString) -> ParseResult<Subscript> {
636 let (input, _) = period(input)?;
637 let (input, name) = identifier(input)?;
638 Ok((input, Subscript::Dot(name)))
639}
640
641pub fn dot_subscript_int(input: ParseString) -> ParseResult<Subscript> {
643 let (input, _) = period(input)?;
644 let (input, name) = integer_literal(input)?;
645 Ok((input, Subscript::DotInt(name)))
646}
647
648pub fn bracket_subscript(input: ParseString) -> ParseResult<Subscript> {
650 let (input, _) = left_bracket(input)?;
651 let (input, subscripts) = separated_list1(list_separator,alt((select_all,range_subscript,formula_subscript)))(input)?;
652 let (input, _) = right_bracket(input)?;
653 Ok((input, Subscript::Bracket(subscripts)))
654}
655
656pub fn brace_subscript(input: ParseString) -> ParseResult<Subscript> {
658 let (input, _) = left_brace(input)?;
659 let (input, subscripts) = separated_list1(list_separator,alt((select_all,range_subscript,formula_subscript)))(input)?;
660 let (input, _) = right_brace(input)?;
661 Ok((input, Subscript::Brace(subscripts)))
662}
663
664pub fn select_all(input: ParseString) -> ParseResult<Subscript> {
666 let (input, lhs) = colon(input)?;
667 Ok((input, Subscript::All))
668}
669
670pub fn formula_subscript(input: ParseString) -> ParseResult<Subscript> {
672 let (input, factor) = formula(input)?;
673 Ok((input, Subscript::Formula(factor)))
674}
675
676pub fn range_subscript(input: ParseString) -> ParseResult<Subscript> {
678 let (input, rng) = range_expression(input)?;
679 Ok((input, Subscript::Range(rng)))
680}